Prompt stringlengths 96 2.17k | Code stringlengths 27 249k | 3d_glb stringlengths 24 24 |
|---|---|---|
Create a thin rectangular tray with overall dimensions of 97.8mm in width, 61mm in depth, and 2.6mm in height.
From this base, remove a large central cylindrical void with a diameter of 65mm, centered at X=48.9mm and Y=61mm, which extends vertically through the part. Additionally, remove a rectangular block measuring... | $fn=200;
difference(){
cube([97.8,61,2.6]);
cube([3,45,10]);
translate([94.8,0,0])
cube([3,45,10]);
translate([48.9,61,-1])
rotate([0,0,0])
cylinder(h=400, d=65, center=false);
translate([9.5,53,-1])
rotate([0,0,0])
linear_extrude(250)
difference(){square(8);circle(8);}
translate([89.8,53,-1])
rotate([0,0,0])
li... | glb/cad_5b2d08ba7995.glb |
Create a thin circular token with a total diameter of 36mm and a thickness of 2mm. The token consists of a main disc with a recessed center. To create this recess, remove a smaller concentric cylinder from the center with a diameter of 31.2mm, leaving a rim that is 1.2mm deep. Centered on the raised surface of the inne... | $fn=200;
include <js500Functions.scad>
difference(){
rotate([0,0,90])
cylinder(h=2, d=36, center=false);
translate([0,0,1.2])
rotate([0,0,90])
cylinder(h=200, d=31.2, center=false);
}
#translate([0,0,1.2])
rotate([0,0,0])
linear_extrude(0.4)
text("Mother", valign="center", halign="center", font="Calibri:style=Bo... | glb/cad_31648762fce9.glb |
Create a thin circular token with a diameter of 36mm and a total thickness of 2mm. From the center of this disc, remove a concentric cylindrical hole with a diameter of 31.2mm and a height of 200mm, which creates a ring shape with a wall thickness of 2.4mm on the top and bottom faces. On the top surface of the ring, ce... | $fn=200;
include <js500Functions.scad>
difference(){
rotate([0,0,90])
cylinder(h=2, d=36, center=false);
translate([0,0,1.2])
rotate([0,0,90])
cylinder(h=200, d=31.2, center=false);
}
#translate([0,0,1.2])
rotate([0,0,0])
linear_extrude(0.4)
text("Son", valign="center", halign="center", font="Calibri:style=Bold"... | glb/cad_69fdcf699414.glb |
Create a game organizer insert consisting of two identical mirrored sections. Start by creating a rounded rectangular block measuring 99.2mm wide, 159.2mm long, and 14.6mm high, with corner radii of 5mm.
In each block, carve out two large rectangular wells with rounded bottoms. Position the first well at [2.4, 2.4, 1... | $fn=200;
include <js500Functions.scad>
difference(){
RoundedCube(99.2,159.2,14.6,5);
translate([2.4,2.4,1])
CurvedWell(94.4,85.6,100,10);
translate([2.4,90.4,1])
CurvedWell(94.4,66.4,100,10);
translate([0,15.5,0]){
translate([0,65.5,-1])
rotate([0,0,90])
cylinder(h=50, d=34.8, center=false);
translate([99.2,65.5,... | glb/cad_db129ab27055.glb |
Create a game organizer tray by starting with a rounded rectangular block measuring 52.8mm wide, 97.8mm deep, and 21.8mm high, with corner radii of 5mm.
Subtract a rectangular cutout from the top surface measuring 24mm by 24mm with a depth of 100mm, positioned at x=14.4mm and y=2.4mm, and include a finger hole at the... | $fn=200;
include <js500Functions.scad>
difference(){
RoundedCube(52.8,97.8,21.8,5);
translate([14.4,2.4,1])
RoundedCube(24,24,100,3);
FingerHoleBottom(26.4,0,15,21.8,5,3.7);
translate([26.4,79.65,15.4])
rotate([0,0,0])
cylinder(h=50, d=31.5, center=false);
translate([26.4,82.15,12.4])
rotate([0,0,0])
cylinder(h=50... | glb/cad_bd514a940705.glb |
Create a rectangular organizer block with rounded corners, measuring 183.2mm in length, 113.2mm in width, and 30mm in height, with a corner radius of 5mm.
Within this block, carve out six identical rectangular wells. Arrange these wells in a 3x2 grid. Each well should measure 53mm by 53mm and be 100mm deep, positione... | $fn=200;
include <js500Functions.scad>
difference(){
RoundedCube(183.2,113.2,30,5);
for(i = [0:2]){
for(j = [0:1]){
translate([(i*59.05)+6.05,(j*55.4)+2.4,1])
cube([53,53,100]);
FingerHoleBottom((i*59.05)+32.55,0,30,30,8,2.4);
FingerHoleTop((i*59.05)+32.55,113.2,30,30,8,2.4);
translate([(i*59.05)+32.55,65,28.6])
r... | glb/cad_0c55e4a8db65.glb |
Create a game organizer tray with a base footprint of 174.4mm by 157mm and a height of 20mm. The base should have rounded corners with a radius of 5mm.
Carve out several storage wells from the main body. On the left side, create three curved wells, each 100mm deep and 1mm from the bottom: the first is 70mm by 32mm, th... | $fn=200;
include <js500Functions.scad>
difference(){
RoundedCube(174.4,157,20,5);
translate([-1,66,11])
cube([200,200,100]);
translate([-1,26,14.8])
cube([200,200,100]);
translate([-10,63,11.8])
rotate([90,0,90])
linear_extrude(250)
difference(){square(3);circle(3);}
translate([-10,23,17])
rotate([90,0,90])
linear... | glb/cad_3be13a932a3d.glb |
Create a game organizer insert consisting of two main mirrored sections. Start with a base rounded cube measuring 106.6mm wide, 157mm long, and 20mm high, with corner radii of 5mm.
Within this base, create several recessed compartments. Position a rounded cube of 37mm by 20mm by 100mm with 3mm radii at [67.2, 2.4, 7]... | $fn=200;
include <js500Functions.scad>
difference(){
RoundedCube(106.6,157,20,5);
translate([27,66,11])
cube([200,200,100]);
translate([18,26,14.8])
cube([200,200,100]);
translate([18,23,17])
rotate([90,0,90])
linear_extrude(250)
difference(){square(3);circle(3);}
translate([15,157,17])
rotate([90,0,0])
linear_ext... | glb/cad_0f11a87a9d52.glb |
Create a rectangular organizer tray with rounded corners, measuring 27mm in width, 125mm in length, and 29mm in height, with a corner radius of 5mm.
Carve a rectangular void from the top face, starting 5.6mm down from the top edge, measuring 10mm wide, 127mm long, and 100mm deep.
Center a cylindrical finger hole th... | $fn=200;
include <js500Functions.scad>
difference(){
RoundedCube(27,125,29,5);
translate([-1,-1,23.4])
cube([10,127,100]);
translate([0,62.5,-1])
rotate([0,0,90])
cylinder(h=70, d=46, center=false);
translate([3,36.7,-1])
rotate([0,0,90])
linear_extrude(70)
difference(){square(3);circle(3);}
translate([3,88.3,-1])... | glb/cad_e135c7c62e90.glb |
Create a card holder for a board game organizer. Start with a rounded rectangular block measuring 97.8mm in width, 11.4mm in depth, and 62mm in height, with corner radii of 3mm.
From this block, remove a rectangular section measuring 93mm by 9mm by 100mm, positioned 2.4mm from the left edge and 1.2mm from the front e... | $fn=200;
difference(){
roundedCube(97.8,11.4,62);
translate([2.4,1.2,1])
cube([93,9,100]);
translate([-1,0,-7]){
translate([49.9,100,69])
rotate([90,0,0])
cylinder(h=400, d=65, center=false);
translate([10.3,100,61])
rotate([90,0,0])
linear_extrude(250)
difference(){square(8);circle(8);}
translate([89.6,100,61])... | glb/cad_11a79867c14a.glb |
Create a card holder for a board game organizer. Start with a rounded rectangular block measuring 97.8mm in width, 11.7mm in depth, and 62mm in height, with corner radii of 3mm.
From this block, remove a rectangular section measuring 93mm by 9.3mm with a height of 100mm, positioned 2.4mm from the left edge and 1.2mm ... | $fn=200;
difference(){
roundedCube(97.8,11.7,62);
translate([2.4,1.2,1])
cube([93,9.3,100]);
translate([-1,0,-7]){
translate([49.9,100,69])
rotate([90,0,0])
cylinder(h=400, d=65, center=false);
translate([10.3,100,61])
rotate([90,0,0])
linear_extrude(250)
difference(){square(8);circle(8);}
translate([89.6,100,61... | glb/cad_004f3fcfaef8.glb |
Create a rectangular card organizer tray with rounded corners. The overall external dimensions of the block are 52.8mm in width, 78.8mm in depth, and 14mm in height, with a corner radius of 3mm.
Carve out a central rectangular opening for cards that measures 48mm by 74mm and is 100mm deep, starting from a base thickn... | $fn=200;
include <js500Functions.scad>
difference(){
RoundedCube(52.8,78.8,14,3);
translate([2.4,2.4,1])
cube([48,74,100]);
FingerHoleBottom(26.4,0,30,14,5,2.4);
} | glb/cad_44561556933d.glb |
Create a Pill Bottle Label by constructing a hollow cylindrical ring with a height of 15mm. The ring should have an inner diameter of 35mm and a wall thickness of 1mm, resulting in an outer diameter of 37mm. To allow the label to snap onto a bottle, remove a vertical section of the wall to create a gap. This gap should... | inner_diameter = 35;
thickness = 1;
width = 15;
percentage_cut = 10;
$fn = 100;
difference() {
cylinder(h = width, d = inner_diameter + thickness * 2);
cylinder(h = width, d = inner_diameter);
translate([(inner_diameter + thickness * 2) * (1 - (percentage_cut / 100)), 0, width / 2]) {
cube([inner_diameter + thi... | glb/cad_d02cb7ee511e.glb |
Create a protective cap for a Canon F1 finder by constructing a solid block and removing specific volumes to create a hollow shell. Start with a main rectangular body that is 47mm tall, 15mm wide, and 48mm deep. From this block, remove a central core to create a cavity. This cavity is defined by a polygon with vertices... | difference(){
difference(){
translate([-2.31,-24,0])linear_extrude(47) square([15,48]);
translate([0,0,-4])linear_extrude(48)
polygon(points = [ [-1,21],[10,21],[10,22.5],[11.8,22.5],[11.8,21],[12.7,21],
[12.7,-21], [11.8,-21], [11.8, -22.5], [10, -22.5], [10, -21], [-1, -21]]);
}
translate([0,0,5])linear... | glb/cad_b1b0af73d426.glb |
Create a shelf unit clamp with a rectangular body measuring 22mm in width, 48mm in height, and 11.2mm in thickness. Apply a 2mm fillet to all exterior edges.
On the flat face, center two mounting holes along the vertical axis, spaced 32mm apart. Each mounting hole must be a through-hole with a 6mm diameter and a symme... | module offset_3d(r = 1, size = 1000) {
n = $fn==undef ? 12: $fn;
if(r==0) children();
else
if( r>0 )
minkowski(convexity=5){
children();
sphere(r, $fn=n);
}
else {
size2 = size*[1,1,1];
size1 = size2*2... | glb/cad_de85f56459ed.glb |
Create a Sovol SV08 Extruder Housing Clamp. The object is a flat, rectangular-based frame with a height of 3.5mm and a wall thickness of 2.5mm.
The main body is a rounded hollow plate. The bottom edge has a length of 67.5mm and the top edge is slightly shorter at 62.5mm, creating a subtle taper. The total width of th... | eps = 0.01;
ecStandard = 0;
ecEnclosure = 1;
ecType = ecEnclosure;
springTension = 4.0;
wxClampInnerBottom = 62.5;
wxClampInnerTop = wxClampInnerBottom-springTension;
wyClampInner = 64.0;
tWall = 2.5;
wxClampBottom = wxClampInnerBottom+2*tWall;
wxClampTop = wxClampInnerTop+2*tWall;
wyClamp = wyClampInner+2*tWall;
hC... | glb/cad_db5afdfd1590.glb |
Create a d20 cookie cutter with an integrated spring mechanism. Start with a base spring plate 0.8mm thick. This plate consists of a central circle with a radius of 15mm, surrounded by a larger ring with an outer radius of 27mm. Integrate three flexible legs spaced equally around the center; each leg is composed of con... | include <BOSL2/std.scad>
$fn = $preview ? 32 : 64;
clipDelta = 0.001;
flexSpace = 0.1;
springColor = "PowderBlue";
plungerColor = "DarkMagenta";
designColor = "Coral";
cutterColor = "DarkGreen";
drawPlunger = true;
drawCutter = true;
overhangAngle = 40;
springHeight = 0.8;
holeR = 0;
innerR = 15;
spacingW = 6;
l... | glb/cad_dd1e7edc95c8.glb |
Create a battery cover for a speedlite flash. Start by creating a solid rectangular block with rounded corners and edges, measuring 27.3mm in width, 44.1mm in length, and 13.65mm in height. Use a corner radius of 2mm for all edges.
Hollow out the center of this block to create a shell with a wall thickness of 2mm. Th... | scale_factor = 1.05;
width = 26 * scale_factor;
length = 42 * scale_factor;
height = 13 * scale_factor;
wall = 2;
radius = 2;
adjusted_width = width - (radius * 2);
adjusted_length = length - (radius * 2);
adjusted_height = height - (radius * 2);
module rounded_box() {
translate([radius, radius, radius])
mi... | glb/cad_9502309cc471.glb |
Create a Magnetic Target Stencil consisting of a series of concentric rings and a central hub. Start by creating five concentric cylinders, each 3mm thick. The outermost cylinder has a diameter of 200mm, and each subsequent inner cylinder decreases in diameter by 15mm (185mm, 170mm, 155mm, 140mm), leaving a 15mm wide w... | include <BOSL2/std.scad>;
difference(){
union(){
for (x=[1:5]){
difference(){
cylinder(d=40*x,3,$fn=100);
translate([0,0,-.25])
cylinder(d=(40*x)-15,3.5,$fn=100);
}
}
translate([0,0,1.5]){
cuboid([13,198,3]);
cuboid([198,13,3]);
}
translate([58,0,9])
cuboid([30,10,18], rounding=2);
translate([-58,0,9])
cuboid([30,10,1... | glb/cad_5b03f8730533.glb |
Create a Cage for 12 SFP+ modules consisting of two identical blocks of six slots each, positioned one behind the other. Each block is a solid rectangular prism with an overall height of 42.7mm, a width of 102.3mm, and a depth of 31.1mm.
Within each block, carve out six rectangular holes arranged in a 6x1 grid. Each ... | xsfp = 13.7;
ysfp = 8.5;
zsfp = 40;
wall = 2.7;
c = 0.3;
first_layer = 0.2;
com_wall = 1.5;
com_def = 2;
com_h = 20;
group = [6,2];
module klotz(name){
union(){
difference(){
translate([-wall,-wall,-wall])
cube([
(group[0]+1)*wall + group[0]*(xsfp+c),
... | glb/cad_a2b83efe0789.glb |
Create a EuroPlus Pro Insert nozzle box consisting of a main container and a sliding lid.
The main container is a rectangular box with external dimensions of 53.4mm width, 107.4mm depth, and 31.5mm height. The walls and floor have a thickness of 1.26mm. The interior is hollowed out to create a storage cavity, leaving... | $fn= $preview ? 32 : 200;
Boxhoehe=2;
bhoehe = Boxhoehe<=3 ? 2 : 4;
teilung_x=0;
teilung_y=0;
Text1="Txt1";
Text2="Txt2";
Text3="Txt3";
Text4="Txt4";
echo(ord("⌀"));
Textgroesse=8;
Zeilenabstand=2.1;
wandstaerke = 1.26+teilung_x-teilung_x;
wstTeilung = 0.84+teilung_x-teilung_x;
stahoe = 1+teilung_x-teilung_x;
b... | glb/cad_498583b16b7c.glb |
Create a humanoid reference figure called "Demo Dude" with a total height of 6mm. Start by placing a sphere with a 0.5mm radius at the top, centered at coordinates (0, 0, 5.75). Directly below the head, add a small cylindrical neck with a bottom radius of 0.25mm and a top radius of 0.5mm, with a height of 0.125mm, cent... | #resize([0,0,6],true)
union(){
translate([0,0,5.75])
sphere(.5,$fn=36);
translate([0,0,3.825])
resize([1.25,.75,2.5])
cylinder(2.5,1,1.5,true,$fn=36);
translate([.25,0,1.5])
resize([.5,.5,3])
cylinder(3,1,2.5,true,$fn=36);
translate([-.25,0,1.5])
resize([.5,.5,3])
cylinder(3,1,2.5,true,$fn=36);
translate([.725,0,3.... | glb/cad_41082367d3fb.glb |
Create a blinds bracket fixture consisting of a base plate and a vertical back wall. Start by creating a rectangular base plate with a total length of 58mm, a width of 55.5mm, and a thickness of 6mm. From this base, remove a central rectangular section to create a U-shaped channel; this cutout should be 23mm long and 4... | FN = 60;
ItoM = 25.4;
Delta = .1;
wr = 17;
THK = 6;
WH = wr +THK + 10;
W_CO = 49.5;
W = W_CO + 2*THK;
D = 58;
D_CO = 23;
CO_OS1 = (W - W_CO)/2;
CO_OS2 = D - D_CO;
translate([-THK,0,0])
cube([THK,W,WH]);
difference()
{
cube([D,W,THK]);
translate([CO_OS2,CO_OS1,-Delta])
cube([D_CO+Delta,W_CO,THK+2*THK]);
} | glb/cad_f62799dee364.glb |
Create a blinds bracket fixture by constructing a rectangular cuboid. The object should have a width of 13.25mm, a depth of 37mm, and a height of 6mm. | W4 = 53;
W = W4/4;
D = 37;
H = 6;
cube([W,D,H]); | glb/cad_5d6182d44a20.glb |
Create a blinds bracket fixture consisting of a base plate and a vertical back wall. Start by creating a rectangular base plate with dimensions 47mm in length, 50mm in width, and 6mm in thickness. Attached to the back edge of this plate, add a vertical rectangular wall that is 6mm thick, 50mm wide, and 40.8mm high. On ... | FN = 60;
ItoM = 25.4;
wr = 17;
THK = 6;
WH = wr +THK + 10;
W = 50;
D = 47;
HD = (1/16)*ItoM;
H_D = 34.5;
H_CC = 29.2;
H_OS1= (W-H_CC)/2;
H_OS2= H_OS1 + H_CC;
translate([-THK,0,0])
cube([THK,W,WH]);
difference()
{
cube([D,W,THK]);
translate([H_D,H_OS1,-THK/2])
cylinder(d=HD,h=THK*2,$fn=FN);
translate([... | glb/cad_c61b8ebae758.glb |
Create a Test Dimension Cage for an ATX Power Supply. Start by constructing a central rectangular body with dimensions 149.3mm x 85.7mm x 150.8mm.
Build a supporting frame around this body using walls that are 6.75mm thick. This frame consists of several intersecting rectangular prisms: place two vertical walls along... | for(
gs = .02,
inmm = 25.4,
minsupwall = 6.75,
depthos = 0,
bolt = 12,
boltpz = 4,
boltpr = 8,
boltpfn = 7
){
difference(){
union(){
translate([(5.872/2)*inmm+(depthos/2),(3.375/2)*inmm+(depthos/2),0])
cube([minsupwall,minsupwall,5.9375*inmm+minsupwall],true);
tra... | glb/cad_d9218a83f0e2.glb |
Create a dust suction hood consisting of a cylindrical base and a rectangular nozzle.
Start by creating a hollow cylindrical base with an outer diameter of 36mm and a wall thickness of 2mm. The cylinder should have a total height of 50mm, but the top 50mm of this section should be a conical chamfer that tapers inward... | Base_Diameter = 32;
Base_Overlap = 50;
Base_Chamfer_Length = 50;
Base_Thickness = 2;
Nozzle_Length = 210;
Nozzle_Outer_A = 39.5;
Nozzle_Outer_B = 29.5;
Nozzle_Fillet_Radius = 5;
Nozzle_Thickness = 2;
Nozzle_Chamfer_A = 40;
Nozzle_Chamfer_B = 40;
$fn=150;
Nozzle_Inner_A = Nozzle_Outer_A - Nozzle_Thickness;
N... | glb/cad_081c21ac9c88.glb |
Create a sprinkler "carrot" for a self-watering flower pot. The main body is a tapered shell created by lofting a cylinder with a 10mm diameter at the base to a cylinder with a 20mm diameter at the top over a height of 42mm. The walls of this body are 1.5mm thick. At the top of the tapered body, add a dome-shaped cap w... | $fn=321;
od=4.5;
difference() {
union() {
difference() {
hull() {
cylinder(r1=10/2, r2=20/2, h=42);
translate([0,0,42+5-.01])
cylinder(r=(2+od+2)/2, h=1.02);
}
hull() {
translate([0,0,1.5])
cylinder(r1=(10-3)/2, r2=(20-3)/2, h=42-2+.02);
tra... | glb/cad_1721d9ddf265.glb |
Create a sprinkler dome for a self-watering flower pot. Start with a main cylindrical body that has an outer radius of 10mm and a height of 24mm. The walls should be 1.5mm thick, leaving an internal cavity. The bottom of the cylinder should be open, with a tapered transition from a radius of 7.5mm at the base to 8.5mm ... | $fn=321;
od=4.5;
difference() {
union() {
difference() {
hull() {
cylinder(r=20/2, h=24);
translate([0,0,24+5-.01])
cylinder(r=(2+od+2)/2, h=1.02);
}
hull() {
translate([0,0,1.5])
cylinder(r=(20-3)/2, h=24-2+.02);
translate([0,0,24+5])
... | glb/cad_e64fff11a7c7.glb |
Create a hose clip for a self-watering flower pot. Start by forming a main body using a hull operation between a 6x2x9.65mm rectangular block positioned at (2,0,0) and a 10x15x3mm rectangular block positioned at (0, 6.65, 0).
Carve a horizontal octagonal hole through the center of this body along the Y-axis, with a r... | $fn=321;
od = 4.65;
difference() {
hull() {
translate([2,0,0]) cube([10-4, 2, 2+od+1]);
translate([0,2+od+2,0]) cube([10, 15, 3]);
}
translate([-.01,(2+od+2)/2,(2+od+2)/2])
rotate([0,90,0]) cylinder(r=od/2+.3, h=10.02, $fn=8);
hull() {
translate([10/2, 2+od+2+1, -.01]) cylinder(r=.75, h=2+od... | glb/cad_b448dec2df82.glb |
Create a shower head and anti-bug cap for an irrigation hose. Start by constructing a base shape that is a union of two parts: a cylinder with a radius of 3.25mm and a height of 9mm, and a hull connecting a cylinder of radius 3.25mm and height 6mm to a wider cylinder of radius 4.25mm and height 1mm.
From this combine... | $fn=88;
od=4.5;
difference() {
union() {
cylinder(r=(1+od+1)/2, h=1+5+3);
hull() {
cylinder(r=(1+od+1)/2, h=1+5);
cylinder(r=(4+od+4)/2, h=1);
}
}
translate([0,0,1])
cylinder(r1=(3+od+3)/2, r2=od/2, h=5.01);
translate([0,0,1+5]) cylinder(r=od/2, h=3.01);
translate([0, 0, -.01]) ... | glb/cad_31f081fc6d07.glb |
Create a hose guide clip designed for a hose with an outer diameter of 4.65mm. Start by creating a central vertical cylinder with a radius of 6.975mm and a height of 4.65mm. Inside this cylinder, remove a central vertical hole with a radius of 2.325mm that passes completely through the part.
To form the spike and ribb... | $fn=321;
od = 4.65;
difference() {
union() {
translate([3*od/2, 3*od/2, 0]) cylinder(r=3*od/2, h=od);
hull() {
translate([3*od/2, 3*od/2, 0]) cylinder(r=3*od/2, h=od/3);
translate([3*od/2-1/2, 120, 0]) cylinder(r=1, h=od/3);
}
hull() {
translate([3*od/2, 3*od/2, 0]) cylinder(r=1/2... | glb/cad_251a555b495d.glb |
Create a self-watering flower pot base with a total height of 25mm. The main body is a rounded square prism with an outer diameter of 139mm and a corner radius of 15mm. The corners are further squared off by an intersecting larger square.
Hollow out the center of this shape to create a wall. The inner cavity should b... | $fn=321;
module w14q(wall=0, height=1) {
linear_extrude(height) {
pd = 140 - 2*wall - 1;
cr = 15 - wall;
union() {
intersection() {
intersection() {
square([pd, pd], center=true);
translate([-1234+pd/2,0,0]) circle(r=1234, $fn=1234);
translate([1234-pd/2,0,0]) ... | glb/cad_120bd4778748.glb |
Create a vertical extension for a flower pot. The main body is a hollow square ring with rounded corners, 25mm in height. The outer profile is a square with a diameter of 164mm and corner radii of 17mm. The interior is hollowed out by a smaller concentric shape; the bottom 23mm of the interior has a wall thickness of 2... | $fn=321;
module w16q(wall=0, height=1) {
linear_extrude(height) {
pd = 167-2 - 2*wall - 1;
cr = 17 - wall;
hull() {
intersection() {
intersection() {
square([pd, pd], center=true);
translate([-1234+pd/2,0,0]) circle(r=1234, $fn=1234);
translate([1234-pd/2,0,0])... | glb/cad_65d8fa37e61e.glb |
Create a Euro coin counter consisting of a series of open-ended trays aligned in a row. Each tray is formed by a semi-cylindrical trough with a wall thickness of 2.5mm. The trays are designed to hold specific coin denominations, with the interior radius of each trough matching the coin size and the overall height of th... | wall=2.5;
offset=1.5;
$fn=50;
module cointray( r, h, c ) {
sr = (sqrt( 2 * r * r ) - r - wall) /2;
cr = r - (wall*4);
translate([0,0,r+wall])
rotate([90,0,0])
union() {
for (i=[0:(c-1)]) {
translate([ (i%2) * offset, 0, h * i+wall])
difference() {
difference() {
difference() {
union()... | glb/cad_a1643ab99586.glb |
Create a Euro coin counter consisting of a sloping base and seven coin trays. Start by creating a solid base block 224mm wide, 150mm deep, and 4mm thick. Add two side walls, each 4mm wide, 150mm deep, and 8mm high, positioned at the far left and right edges of the base.
Construct seven coin trays. Each tray is a recta... | PARTNO=undef;
angl=15;
if(PARTNO==1 || PARTNO==undef) {
difference() {
union() {
rotate([15,0,0]) union() {
translate([-4,0,0]) cube([4,150,8]);
translate([221,0,0]) cube([4,150,8]);
cube([224,150,4]);
}
translate([-4,-4,0]) cube([229,4,8]);
translate([-4,140,0]) cube([229,4,150*sin(angl)]);
translate([-4,-4,0]) cu... | glb/cad_a18a5ee5354b.glb |
Create a Fieldmann angle grinder coupler as a cylindrical disc with a height of 6mm and an outer diameter of 21mm. Centered within this disc, create a vertical cylindrical hole with a diameter of 5mm that passes completely through the part.
Additionally, create four smaller vertical holes, each with a diameter of 3.5... | $fn= $preview ? 16:64;
span = 14;
d=3.5;
dout=21;
din=5;
h=6;
inf=100;
not=0.001;
d(){
cylinderRounded(d=[0,dout],h=h);
for(a=[0:90:359]) r(a) t([span/2,0,0]) cylinderRounded(d=[0,d],h=inf, center=true);
cylinderRounded(d=[0,din],h=inf, center=true);
}
module cylinderRounded(d=[20,40],h=30,center=false,r=[0,0,0,... | glb/cad_f8f32a3e2c21.glb |
Create a FlowSnake alternative cover by constructing a hollowed-out hexagonal prism. Start by creating a solid hexagonal prism with a diameter of 339mm (measured from flat to flat), a height of 32mm, and a facet resolution of 64. From the center of this volume, remove a smaller hexagonal prism with a diameter of 335mm ... | $fn= $preview ? 32:64;
d=[304,328];
dh=335;
h=30;
wall=2;
f=100;
inf=500;
d(){
hex(dh+2*wall,f+wall,h);
t([0,0,wall+15]) hex(dh,f,h);
t([0,0,wall]) hex(dh-2*20,f-20,h);
t([-inf,0,-inf]) cube([2*inf,2*inf,2*inf]);
}
module hex(d=10,r=1,h=5){
hull() {
for(a=[0:60:359]) r(a) t([d/2-r,0,0]) cylinder(r=r,h=h);
}
... | glb/cad_cbb3f075d694.glb |
Create a motor spacer with a thickness of 8mm. Start with a square base measuring 42mm by 42mm, then clip the four corners at 45-degree angles to create an octagonal profile.
At the center of the spacer, create a circular cutout with a diameter of 22.2mm. To create a slot, remove a square section from this center hol... | thickness = 8;
motor_size = 42;
thread = 3;
spindle_mount = 22;
slot = "Yes";
tolerance = 0.1;
chamf_cube = (((motor_size/2)/(cos(45)))-((3.5)*(cos(45))))*2;
$fn=32;
difference(){
intersection(){
cube([motor_size, motor_size, thickness], true);
rotate([0,0,45]){
cube([chamf_cube, chamf_cube, thic... | glb/cad_fbc992e2e222.glb |
Create a webcam stand by constructing a central vertical support and a wide base. Start with a vertical cylinder that tapers from a radius of 8mm at the bottom to 15mm at the top over a height of 70mm. Integrate this cylinder into a base formed by the union of two mirrored shapes: each shape is a hull created between a... | rotate([0, 0, 180]){
difference() {
union(){
mirror([1,0,0]){
hull(){
difference() {
scale([2, 1, 1]){
sphere(r=10);
}
translate([-15, 0, 0]){
cube([30, 30, 30], center=true);
}
}
translate([35... | glb/cad_970e8cece88b.glb |
Create a Standing Möbius sculpture. Start by constructing a Möbius strip centered on a circle with a radius of 60mm. The strip is formed by a series of connected segments, each 15mm wide and 50mm thick, rotating around the center. As the strip completes a full 360-degree circuit, it must undergo a half-twist of 180 deg... | module mobius_strip() {
for (i = [0 : abs(step) : 360]) {
hull(){
rotate([0, 0, i]){
translate([radius, 0, 0]){
rotate([0, (start + i * (halftwist * 0.5)), 0]){
cube([width, delta, thickness], center=true);
}
}
}
rotate([0, 0, (i + step)]){
... | glb/cad_a70566fd1897.glb |
Create a reverse door hook by extruding a specific 2D profile to a height of 20mm. The profile consists of a constant wall thickness of 2mm. Start with a semi-circular hook at the bottom, created by a 12mm radius outer arc and a 10mm radius inner arc, both centered to form a U-shape. From the ends of this arc, extend t... | door_width = 26+14.4;
edge_width = 14.5;
edge_height = 13;
thickness = 2;
height = 20;
length = 40;
opposite_length = 20;
hook_radius = 10;
delta = 0.1;
angle_step = 1;
module basic_shape() {
polygon([[-delta, 0],
[thickness, 0],
[thickness, length+thickness],
[thickness-(door... | glb/cad_c3bcac2724a4.glb |
Create a 4x5 film holder for an Epson V600 scanner. Start by creating a rectangular base plate with a width of 190.5mm (7.5 inches) and a depth of 279.4mm (11 inches), with a thickness of 4mm and rounded corners of 5mm.
In the center of this plate, create a rectangular cutout for the film. This hole should be 95.25mm... | include <BOSL/transforms.scad>
function inchToMillimeter(x) = x*25.4;
slop = 0.15;
printBedDepth=230;
height = 4;
filmHeight = 1;
width = inchToMillimeter(7.5);
depth = min(inchToMillimeter(11),printBedDepth);
holeOffsetX = inchToMillimeter(2.375);
holeOffsetY = inchToMillimeter(3.0);
holeWidth = inchToMillime... | glb/cad_fb35da4ab36b.glb |
Create a Switch Comb retainer clip consisting of a row of 9 identical repeating units. Each unit is based on a rectangular block with a thickness of 2mm and a width and height of 10.5mm (calculated from a 3.25mm hole radius plus 4mm padding).
For each unit, create a main body that is tilted backwards by 10 degrees al... | $fn = 60;
num_switches = 9;
sw_hole_r = 3.25;
rot_x = 10;
pad = 4;
vpad = 0;
thickness = 2;
legend_h = 4.0;
fnt_size = 3;
foot_depth = 10;
legend1 = "pwr";
legend2 = "demo";
legend3 = "bb";
legend4 = "d1";
legend5 = "d2";
legend6 = "d3";
legend7 = "rev1";
legend8 = "rev2";
legend9 = "test";
legend10 ... | glb/cad_ec62ce73aa8d.glb |
Create an enclosure handle consisting of a curved grip and two mounting feet. The grip is formed by a pipe with an outer diameter of 12mm. Construct the main handle section as a U-shape with a 10mm corner radius, featuring a central straight grip section 80mm long. At each end of the U-shape, add a straight pipe segmen... | FN = 90;
Delta = .11;
ItoM = 25.4;
pipe_d = 12;
pipe_l1 = 80;
pipe_l2 = 18;
corner_r = 10;
TB_H = 1.5*ItoM;
TB_W = 1*ItoM;
NUT_THK = 6.0;
NUT_FF = 11.3;
NUT_PP = 12.5;
SCR_CHD = 6.6;
SCR_PHD = 0.0937*ItoM;
SCR_TD = 22+Delta;
NUT_OS1 = TB_H-NUT_THK/2-SCR_TD/2;
NUT_OS2 = -NUT_FF/2+TB_W/2;
NUT_D1 = NUT_PP/2+TB_W/2;
NU... | glb/cad_0197b593aa3a.glb |
Create two identical mounting brackets for a light fixture. Each bracket begins as a rectangular block 38mm wide, 74mm long, and 10.5mm high. From the inner side of each block, remove a rectangular section 17mm wide, 31mm long, and 10.5mm high, positioned 4.5mm from the front edge and 17mm from the side edge.
Within ... | difference(){
union(){
cube([8,74,10.5]);
translate([0,4.5,0]){
union(){
difference(){
cube([23-6,65,10.5]);
translate([16-6,17,0]){
cube([7,31,10.5]);
}
}
translate([18-6,5,0])
cylinder(h=20,r=2.5,$fn=120);
translate([18-6,60,0])
cylinder(h=20,r=2.5,$fn=120);
}
}
}
translate([4,31+2.5,0]){
rotate([0,45,0])
cube... | glb/cad_75a8a321395e.glb |
Create an Optical Water Sensor Mount designed to hold a sensor above a plant saucer. Start with a central block that is 30.5mm wide, 30.5mm deep, and 15mm high.
Carve a vertical cylindrical hole through the center of the block with a diameter of 14.7mm. To allow the sensor to fit, create a larger cylindrical cutout w... | potdiam=7*25.4;
holediam=14.7;
sensordiam=21.5;
sensorhgt=15.0;
wall=2.0;
flen =10;
wxtd =9;
$fn=90;
difference(){
cube([sensordiam+9,sensordiam+9,sensorhgt], center=true);
translate([0,1.5*wall,-wall]) cube([sensordiam+9-2*wall,sensordiam+9,sensorhgt], center=true);
cylinder(h=sensorhgt,r=holediam/2, cen... | glb/cad_115a28d61b13.glb |
Create a name strip for a uniform consisting of a rectangular base and raised text. Start with a base plate measuring 140mm wide, 35mm high, and 1.4mm thick.
Along the top and bottom edges, create a raised border 0.6mm thick (total height 2mm) that frames the plate, leaving a 2.5mm margin from the outer edges and a 3... | ds = 1.4;
dt = 0.8;
t_name = "S. HORVAT";
r_name = false;
t_fkt = "Bereitschaftsleiter";
r_fkt = false;
difference(){
stoff();
naehloecher();
stickrand();
}
stickrand();
schrift();
module stoff(){
color("silver")
translate([0,0, -0.01])
cube([140, 35, ds]);
};
module naehloechpaar(x, y){
... | glb/cad_19bfb18e8c36.glb |
Create a name strip for clothing consisting of a rectangular base and raised text. Start with a rectangular base measuring 140mm in width, 35mm in height, and 1.4mm in thickness.
Create a raised border around the edge of the base by adding a rectangular frame that is 0.8mm thick, leaving a central open area of 135mm ... | ds = 1.4;
dt = 0.8;
t_name = "S. HORVAT";
r_name = false;
difference(){
stoff();
naehloecher();
stickrand();
}
stickrand();
schrift();
module stoff(){
color("white")
translate([0,0, -0.01])
cube([140, 35, ds]);
};
module naehloechpaar(x, y){
$fn=12;
translate([x-2, y, -1])
cylind... | glb/cad_dfcf248b96f1.glb |
Create a circular wall mount for "Platform 9 and 3/4" with a total diameter of 160mm. Start with a base cylinder 160mm in diameter and 2mm thick. On top of this, add a concentric ring 1mm thick with an outer diameter of 160mm and an inner diameter of 148mm. Centered on top, add a red cylinder with a diameter of 140mm a... | $fn=100;
dia=160;
platform_9_and_3_4(dia);
module platform_9_and_3_4(dia){
base(dia);
color("#FFFFFF"){
platform_text(dia);
kings_cross_text(dia);
}
color("#000000"){
9_and_3_4_text(dia);
}
}
module base(dia) {
union(){
color("#000000"){
linear_extrude(2){
circle(d=dia);
... | glb/cad_6363d25affa9.glb |
Create a height and spray reducer for a kitchen faucet by constructing a curved, hollow tube. Start with a pipe that has an outer diameter of 28mm and an inner diameter of 24mm. This pipe should follow a circular arc with a radius of 140mm, sweeping through an angle of 20 degrees. At the end of this curved section, add... | curveradius = 140;
curveangle = 20;
fn=360;
module pipebend (curve_radius=10,bend_angle=30,pipe_od=2,pipe_id=1.8,$fn=fn)
rotate_extrude(angle=bend_angle)
translate([curve_radius, 0])
difference()
{
circle(d=pipe_od);
circle(d=pipe_id);
}
rotate([-90,-20,0])difference() {
group() ... | glb/cad_581e22d5591c.glb |
Create a wall-mounted sign with a total width of 150mm, a height of 34.8mm, and a base depth of 2mm. The overall footprint is a rectangle with chamfered corners, where each corner is clipped by an 8mm angle.
Construct the main body by creating a solid plate of this size and depth, then add a raised border around the ... | $fn=40;
width=150;
height=34.8;
edge=3;
edge_adjust=sin(22.5)*edge;
angle=8;
depth=2;
message="Alohmora";
fontSize=16;
myFont="Morris Roman:style=Bold";
union(){
translate([width/2,height/2,0]){
translate([0,0,depth]){
linear_extrude(0.4){
text(message, size=fontSize,valign="center", halign="cent... | glb/cad_9644eba65633.glb |
Create a circular wall mount with a total diameter of 200mm. Start with a base cylinder 2mm thick. On top of this, add a concentric ring 1mm thick with an outer diameter of 200mm and an inner diameter of 185mm. Centered on top of that, add a red cylinder with a diameter of 175mm and a height of 1.6mm.
In the center, p... | $fn=100;
dia=200;
platform_9_and_3_4(dia);
module platform_9_and_3_4(dia){
base(dia);
color("#FFFFFF"){
platform_text(dia);
kings_cross_text(dia);
}
color("#000000"){
WiFi(dia);
}
}
module base(dia) {
union(){
color("#000000"){
linear_extrude(2){
circle(d=dia);
}
... | glb/cad_2e74292be33f.glb |
Create a Dyson accessory holder consisting of a rectangular base and a tilted cylindrical mounting arm. Start with a rectangular base measuring 110mm wide, 60mm deep, and 12mm thick. Centered on this base, create a composite rod structure tilted at a 50-degree angle relative to the vertical axis. This structure consist... | $fn=73;
module rod() {
difference() {
union() {
dia=30.5;
cylinder(h=80,d=dia,center=true);
translate([0,0,40])sphere(d=dia);
translate([0,0,-12.5])
cylinder(h=45,d=dia+3,center=true);
}
translate([+11.8,0,60])cube([8.5,307,100],center=true);
}
}
module screw_hole(x) {
... | glb/cad_c720ca9a1a1c.glb |
Create a Skadis pegboard by starting with a rectangular base plate measuring 80mm by 80mm with a thickness of 4.5mm and rounded corners with a 10mm radius.
Cut a series of oblong holes through the plate, each measuring 4.7mm wide by 15mm high with 2mm rounded ends. Arrange these holes in a staggered grid pattern. The... | Width = 80;
Height = 80;
Thickness = 4.5;
Radius = 10;
Hole_Width = 4.7;
Hole_Height = 15;
Hole_Delta_X = 40;
Hole_Delta_Y = 20;
Hole_Shift = 20;
X_Count = round(Width / Hole_Delta_X) - 1;
Y_Count = round(Height / (2 * Hole_Delta_Y)) - 1;
echo(str("X_Count: ", X_Count));
echo(str("Y_Count: ", Y_Count));
$fn ... | glb/cad_03a8580b4e4c.glb |
Create a connector block air supply inlet by starting with a solid rectangular prism that is 18mm high, 15mm wide, and approximately 14.3mm deep.
Subtract a horizontal cylindrical outlet hole with a diameter of 8mm that passes completely through the block from the front face to the back face, centered vertically at a... | $fs = $preview ? 1 : 0.15;
$fa = $preview ? 3 : 2;
epsilon = 0.01;
block_min_wide = 15;
max_angle = 45;
inlet_angle = 22.5;
glue_z = 5;
tube_in_od = 6.3;
outlet_od = 8;
wall_thick = 2;
block_high = outlet_od + glue_z * 2;
block_calc = outlet_od > tube_in_od ? outlet_od + wall_thick * 2 : tube_in_od + wall_thick * 2;
... | glb/cad_82e8ca0df8fe.glb |
Create a Bosch 1617EVS router jig consisting of a circular base plate and a raised guiding collar. Start with a circular base plate 153.5mm in diameter and 5.6mm thick. In this base, create four screw holes for M5 screws, each 6mm deep, positioned at a radius of 69.25mm from the center, placed at the 0, 90, 180, and 27... | include <../libs/hardware.scad>;
$fn=50;
module bolt_mount(hole_len, type="screw"){
if (type == "screw") {
hole_w_end(hole_len, $M_DIM[M5][2], "round", M5);
} else if (type == "cylinder") {
cylinder(d=$M_DIM[M5][1]+1.2, h=hole_len);
}
}
module screw_placement(hole_len, hole_type){
cir... | glb/cad_0ae949bf16b5.glb |
Create a C03 camera mount consisting of a flat base and a raised central housing. Start with a rectangular base plate 35mm wide, 0.8mm thick, and 3.525mm deep. At each end of this base plate, center a thin ring with an outer diameter of 4.7mm and an inner hole diameter of 0.7mm, both 0.8mm thick.
Construct a central r... | $fa = 1;
$fs = 0.05;
base_w = 35;
hole_d = 0.7;
base_ring_d = 4.7;
base_thickness = 0.8;
holder_w = 13;
holes_w = 17;
cube_w = 4;
cube_h = 6;
conn_w = base_ring_d * 0.75;
module top() {
color("red")
difference() {
translate([0, 0, (cube_h + base_thickness) / 2])
cube([cube_w * 2 + holder_w, conn_w, cu... | glb/cad_b2c27773c7ed.glb |
Create a C03 camera mount consisting of a flat base and a raised central support structure. Start with a rectangular base plate 35mm wide, 3.525mm deep, and 0.8mm thick. At each end of this base, center a thin ring with an outer diameter of 4.7mm and an inner hole diameter of 0.7mm, both 0.8mm thick.
On top of the bas... | $fa = 1;
$fs = 0.05;
base_w = 35;
hole_d = 0.7;
base_ring_d = 4.7;
base_thickness = 0.8;
holder_w = 13;
holes_w = 17;
cube_w = 4;
cube_h = 4;
conn_w = base_ring_d * 0.75;
module top() {
color("red")
difference() {
translate([0, 0, (cube_h + base_thickness) / 2])
cube([cube_w * 2 + holder_w, conn_w, cu... | glb/cad_9f99ebcb79e7.glb |
Create a filter ring pressing tool consisting of a primary outer ring and a secondary internal tightening ring. The main body is a hollow cylinder with an outer diameter of 96.5mm, a wall thickness of 3mm, and a height of 13mm.
Add a pull tab to this main ring by creating a rectangular protrusion 12mm wide that exten... | filter_od = 96.5;
filter_thickness = 3;
filter_depth = 13;
pull_tab_width = 12;
tightening_amount = 2.5;
$fa = 1;
$fs = $preview ? 1.5 : 0.1;
module ring(od, thickness, h) {
difference() {
cylinder(d = od, h = h);
cylinder(d = od - thickness, h = h);
}
}
module tightener() {
intersection(... | glb/cad_da54ccc5de9b.glb |
Create a filter ring pressing tool by constructing a ring with an outer diameter of 10mm, a thickness of 1.6mm, and a height of 15mm. Additionally, create a thin circular disc with a diameter of 7.4mm and a height of 1.2mm. To complete the assembly, add two crossing rectangular bars, each 7.4mm long, 2mm wide, and 2mm ... | include <small-sunlight-filter.scad>
module main() {
diameter = filter_od - filter_thickness - 2;
stiffener_height = 2;
cylinder(h = 1.2, d = diameter);
ring(od = diameter, thickness = filter_thickness, h = stiffener_height);
translate([0, 0, stiffener_height / 2]) cube([diameter, 2, stiffener_heig... | glb/cad_3025dc97c4a4.glb |
Create a control box for electronics consisting of a flat rectangular base plate with a thickness of 3.5mm.
On one side of the base, construct a PSU bracket assembly to hold a power supply unit. This assembly features two vertical walls, each 15mm long and 29.5mm high, connected by a back wall. One wall includes a re... | use <hardware.scad>
base_cube_thickness = 3.5;
base_cube_holes_corner_inset = 5.0;
led_driver_offset_left = 9.5;
led_driver_offset_top = 10;
led_driver_screw_inset = 5.5;
led_driver_screw_spacing = [ 37.78, 56.25 ];
led_driver_leeway = 13;
led_driver_pcb = [
led_driver_screw_spacing.... | glb/cad_155f438f81f9.glb |
Create a filter ring pressing tool designed to hold a sunlight filter. Start with a base mounting plate that is 8mm thick, measuring 104mm by 68mm. In the four corners of this plate, create four mounting holes: each consists of a 6.5mm diameter screw hole passing through the plate, with a larger 11.75mm diameter hexago... | $fs = $preview ? 2 : 0.5;
$fa = 1;
difference() {
mounting_hole_assembly(thickness = 2 + 5.30 + 26.6);
translate([0, 0, 0.5]) rotate(-45) LED_hole();
translate([0, -1, 2 + 5.30]) bowens_ring_hole();
translate([0, -23.27 - 1, 0]) mirror([0, 1, 0]) difference() {
union() {
translate(... | glb/cad_be0f7cd55db1.glb |
Create a Christmas Tree model consisting of a base, a tiered body, and a star topper. Start with a black base composed of a central cylinder 10mm in diameter and 3mm high, with five small cylinders 2mm in diameter and 1mm high extending outwards from the center at 72-degree intervals, each connected to the center by a ... | n = 20;
function p(i, a, r,delta) = (r + delta * (i % 2)) * [ sin(a), cos(a) ];
module poly(d,delta,n=n) polygon([for (i = [0:n-1]) let(a = i * 360 / n) p(i, a, d,delta)]);
module level(d,sc=0.01) {
linear_extrude(15, scale = sc,convexity=5) poly(d,d);
mirror([0, 0, 1]) linear_extrude(5,convexity=5,scale = 0.1) po... | glb/cad_c563e5a299a6.glb |
Create a Christmas Tree model starting with a central trunk consisting of a cylinder 8mm in diameter and 10mm in height. Build the foliage around this trunk using a series of 12 stacked layers. Each layer is a 20-sided star-shaped polygon that is extruded both 15mm upwards and 5mm downwards to create a thick, tiered ef... | n = 20;
function p(i, a, d) = (d + d * (i % 2)) * [ sin(a), cos(a) ];
module poly(d) polygon([for (i = [0:n-1]) let(a = i * 360 / n) p(i, a, d)]);
module level(d) {
linear_extrude(15, scale = 0.1) poly(d);
mirror([0, 0, 1]) linear_extrude(5, scale = 0.1) poly(d);
}
module tree() {
for (i = [2:14]) {
d = 4e-2*... | glb/cad_2dc48c8c5bec.glb |
Create a double happiness cookie cutter based on the provided symbol geometry. The model consists of a thin cutting wall, a wide base flange, and structural support rods.
First, generate the main cutting wall by extruding the double happiness symbol outline to a total height of 10mm. The wall should taper from a width... | $fn=21;
wallThick = 2;
cutterMinimum = 0.7;
baseHeight = 2;
height = 10;
flangeWidth = 5;
offset=38;
module baseShape(H){
translate([-offset,offset,0])
linear_extrude(height=H)import(file = "drawing.dxf");
}
module outline(){
difference(){
minkowski(){
baseShape(baseHeight/3);
cylinder(h=baseHeig... | glb/cad_c3022c74d443.glb |
Create a Minimalist Name Ornament by constructing a thin circular ring with a diameter of 60mm and a thickness of 1.2mm, extruded to a height of 3mm. At the very top of the ring, centered on the Y-axis, add a small circular hanger loop with an outer diameter of 3mm and a wall thickness of 1.2mm, also extruded to 3mm. T... | name = "Elisa";
name_offset_x=0;
name_offset_y=0;
font_size = 34;
fontname="Alessia";
left_height=40;
left_offset=0.6;
right_height=11;
right_offset=-11;
$fn=100;
module circle_line(diameter, thickness) {
difference() {
circle(diameter, $fn = fn);
circle(diameter-thickness, $fn = fn);
}
}
m... | glb/cad_3287ad9964e1.glb |
Create a protective housing for an Ingenic A1 NVR board. Start with a base platform that is a flat square plate measuring 140mm by 140mm.
Construct a main enclosure box on top of this platform with outer dimensions of 144mm by 144mm and a height of 42mm, using a wall thickness of 2mm. The interior of the box should b... | tad = 0.01;
wall = 2;
thruthewall = 2;
module ssd() {
color("gray") cube([100, 70, 7]);
}
module a1_board() {
color("lightblue") difference() {
cube([120, 50, 2]);
translate([6.7, 17.5, -1]) cylinder(h=4, d=4.4);
translate([66.6, 42.8, -1]) cylinder(h=4, d=4.4);
translate([115.3, 19.5, -1]) cyli... | glb/cad_b5e352bdd809.glb |
Create a shelf holder for adhesive studs by starting with a wedge-shaped base. The base is a 25mm thick prism with a polygonal footprint defined by the coordinates [8, 0], [50, 0], [0, 50], and [0, 8].
From this base, remove several geometric volumes to create the necessary mounting points. First, create a circular c... | module sticker(){
mount_depth = 3.1;
cylinder(d=4.8, h=18);
cylinder(d=24, h=mount_depth);
translate([0,-7.5/2, 0])cube([22,7.5, mount_depth]);
}
wedge_h = 25;
difference(){
translate([0,0, -wedge_h/2]){
linear_extrude(wedge_h)
polygon([
[8, 0],
... | glb/cad_820a37fed80f.glb |
Create two separate mounting plates for a switch cover. The first plate is a thin cover with a height of 1mm. Create a base shape by forming a hull between two cylinders, each 10mm in diameter, positioned 20mm apart center-to-center. From this base, remove a central rectangular cutout measuring 12mm by 4mm and drill tw... | fn = 100;
width = 10;
hole_spacing = 20;
cover_hole = 3;
cover_height = 1;
mounting_hole = 2;
mounting_height = 4;
cover_cut_out= [12, 4];
plate_cut_out = [14, 7];
module mounting_plate_and_cover(width, hole_spacing, height, hole, cut_out, fn){
difference(){
hull(){
cylinder(h=height, d=width, ... | glb/cad_345633c46d3e.glb |
Create a speaker holder for a Fujitsu Futro S920. Start with a base rectangular block measuring 10mm wide, 9mm deep, and 2.7mm high. Remove a central rectangular section from this base, leaving a 5mm wide border around the perimeter. At the center of the base, add a small vertical cylinder with a diameter of 2.6mm and ... | $fn = 20;
spkr_height = 2.7;
top_base = 6.4;
mid_height = top_base - spkr_height;
difference() {
union() {
difference() {
cube([5+5, 4+5, spkr_height]);
translate([5, 4, 0]) cube([5, 5, spkr_height]);
}
translate([0, 0, spkr_height]) cube([5+5, 4+5, mid_height]);
... | glb/cad_eb925abe0373.glb |
Create a Split Pin Pivot consisting of a central shaft, a head, and a retaining barb. Start by creating a central cylinder for the shaft with a diameter of 5mm and a length of 7mm, centered on the origin. At the top end of the shaft, add a circular flange (the head) with a diameter of 8mm and a thickness of 2mm. At the... | $fn = $preview ? 16 : 128;
module pivot_pin(
shaft_diameter = 5,
shaft_length = 10,
flange_diameter = 8,
flange_thickness = 2,
barb_diameter = 5.5,
barb_length = 1,
slit_width = 0.75,
trim_flatness = 0.2
) {
difference() {
union() {
cylinder(h = shaft_length, d ... | glb/cad_853488c38ce0.glb |
Create a U-shaped knob for a wheelchair joystick. The main body is a hollow cylinder with a length of 100mm and an outer diameter of 30mm. The walls of this cylinder must have a uniform thickness of 4mm.
The cylinder is open at both ends, but the bottom section is closed by a flat base that is 4mm thick, creating a U... | Mostrar = "Pomo";
Largo = 100;
Diametro = 30;
Grosor = 4;
Lateral = 20;
Eje = 6;
module Basico() {
intersection() {
translate([0,-Diametro/2,0])
cube([Largo,Diametro,Grosor]);
translate([0,0,Diametro/2]) rotate([0,90,0])
difference() {
cylinder(Largo,d=... | glb/cad_f553f6881408.glb |
Create a T-shaped knob for a wheelchair joystick. Start by constructing the horizontal handle as a cylinder with a diameter of 21mm and a length of 96mm, centered on the X-axis. Apply a 4mm spherical fillet to all edges and ends of this cylinder to ensure the handle is fully rounded. Perpendicular to the center of the ... | Mostrar = "Pomo";
Ancho = 100;
Diametro = 25;
Altura = 30;
Joystick = 6;
Suavizado = 120;
module Pomo() {
minkowski() {
rotate([0,90,0]) cylinder(d= Diametro-4, h= Ancho-4, $fn = Suavizado, center = true);
sphere(d = 4,$fn = Suavizado);
}
translate([0,0,-Altura-Diametro/2]) difference() {
cylinder(d= 16, h= A... | glb/cad_52488a73e2f1.glb |
Create a Syringe Help device consisting of a hollow cylindrical body and a threaded plunger.
First, construct the main body as a cylinder with a diameter of 51mm (Ancho + 6mm) and a total height of 158mm (Largo + 35mm). Create a central vertical void by removing a cylinder with a diameter of 31.5mm (Diametro_E + 0.5m... | use<threads.scad>
Mostrar = "Cuerpo";
Diametro = 31;
Diametro_E = 31;
Ancho = 45;
Estrecho = 30;
Largo = 123;
Grosor = 2;
Suavizado = 200;
module Pestana() {
translate([0,-Diametro/4,6]) cube([1.5,Diametro/2,17],center=true);
translate([-Diametro/4,-Diametro/2+0.75-5,6]) cube([Diametro/2,11.5,17],center=true);... | glb/cad_8c7eb2747d4a.glb |
Create a Joystick mouse with buttonguard by constructing a main housing and a protective upper shell. The main housing is a rectangular box with dimensions 175mm long, 120mm wide, and 70mm high, featuring rounded vertical edges with a 10mm curvature diameter and walls 2.5mm thick. The top of the box is inclined at an 8... | use<threads.scad>
Mostrar = "Alta";
Largo = 175;
Ancho = 120;
Alto = 70;
Alto_Peso = 15;
Angulo = 8;
Grosor =2.5;
Curvado = 10;
Pulsacon = "Ambos";
Protector = "NO";
Grosor_Carcasa = 6;
Distancia = 5;
Largo_Palanca = 25;
Dia_Pomo = 40;
DIM = 21.5;
LMC = 11;
LMR = 45;
DX = 0;
DY = 0;
Diametro_P1 = 28... | glb/cad_638f031188d7.glb |
Create a 3D model of a star topper for an articulated Christmas tree. The star is a 10-pointed star with a radius of 15.25mm. Every other point of the star is half the length of the primary points.
The star consists of three distinct geometric layers combined along the Z-axis. First, create a central flat star plate ... | render_target = "star";
ring_number = 6;
base_width = 5.0;
thickness = 1.8;
branch_angle = 25.0;
scale_factor = 0.75;
branch_depth = 6;
clearance = 0.2;
trunk_radius = 16.85;
branches_per_ring = 7;
ring_spacer_height = 11;
trunk_radius_modifier = thickness;
star_radius = 15.25;
$fs = 0.1;
$fa = 1.0;
small... | glb/cad_2770b2c250dc.glb |
Create an HDD and USB Hub case consisting of a main box and a top cover.
Construct the main box as a rectangular shell with outer dimensions of 158mm x 97mm x 17mm. The walls should be 4mm thick. In the bottom face, create six rectangular cutouts, each 10mm wide and 60mm long, spaced evenly from x=41mm to x=141mm. On... | box_bottom_thickness=2;
box_wall_width=4;
box_wall_height=17;
nvidia_shield_x=158;
nvidia_shield_y=97;
usb_card_x=86;
usb_card_y=28;
difference(){
union(){
translate([box_wall_width,box_wall_width,box_wall_height-box_bottom_thickness]) cube ([nvidia_shield_x-box_wall_width*2, nvidia_shield_y-box_wall_width*2, box_bott... | glb/cad_a60de14ae688.glb |
Create a shut-off valve label consisting of a rectangular base with raised text. The base should be 100mm wide, 50mm high, and 4mm thick, with the four corners rounded by a 5mm radius.
On the top surface of the base, center the text "Valve" on the top line and "Shut-Off" on the line below it. The text should be 10mm ... | HEIGHT = 50;
WIDTH = 100;
BASE_THICKNESS = 4;
CORNER_ROUNDING = 5;
TEXT_THICKNESS = 2;
FONT_SIZE = 10;
FONT_FACE = "Liberation Sans";
TEXT_WIDTH = 90;
LINE_HEIGHT = 1.2;
LABEL1="";
LABEL2="";
LABEL3="";
LABELS = LABEL3 != "" ? [ LABEL1, LABEL2, LABEL3 ] :
LABEL2 != "" ? [ LABEL1, LABEL2 ] :
... | glb/cad_9615a53a7fe6.glb |
Create a Prepper's Emergency Drilled Well Bucket. Start by constructing the main bucket body as a hollow cylinder with an outer diameter of 45mm and a total height of 200mm. The bottom of the bucket is not flat; create a tapered base by adding a conical section that transitions from a 30mm diameter at the very bottom t... | color ("White") bucket();
color ("Chocolate") valve();
module bucket(){
difference(){
union(){
translate([0,0,25])
cylinder(d=45,175,$fn=100);
cylinder(d1=40,d2=45,25,$fn=100);
}
translate([0,0,25])
cylinder(d=40,201,$fn=100);
translate([0,0,-1])
cylinder(d1=30,d2=40,26,$fn=100);
translate([0,25,185])
rotate([90,0,0])... | glb/cad_bdfa6a8b5a4a.glb |
Create a lollipop stick thickener consisting of a main cylindrical body with a tapered top. The main body is a cylinder with a diameter of 20mm and a total height of 110mm. At the top of this cylinder, add a conical section that transitions from the 20mm diameter base down to a diameter of 3mm over a height of 15mm.
... | Mostrar = "1cono";
Forma = "1pieza";
Grosor = 25;
Altura = 120;
Alto_Cono = 15;
Grosor_Palo = 4.2;
module Conos() {
difference() {
minkowski() {
union() {
cylinder(d=Grosor-5,h=Altura-Alto_Cono*2-5,$fn=240);
translate([0,0,Altura-Alto_Cono*2-5]) cylinder(d1=Grosor-5,d2=3,h=Alto_Cono,$fn=240);
translate([0,0,-Alto_Co... | glb/cad_6ae704a10a20.glb |
Create a forearm rest designed to clip onto a table edge. The main body is a solid block with a total width of 200mm and a total depth of 260mm. The part that extends over the table surface has a depth of 170mm.
The structure features a rectangular cutout to accommodate the table edge; this slot is 18.9mm wide to mat... | Borde = "Plano";
GrueMesa = 18.9;
Escotadura = "Derecha";
ProfTotal = 260;
ProfVol = 170;
AnchoTotal = 200;
GrueSoMesa = 5;
GrosMinInf = 7;
GrosMaxInf = 12;
Suavizado = 400;
Redondeo = 4;
RadCuerpo = 520;
RadioBase = (GrosMaxInf)/2;
Calc = RadCuerpo-(AnchoTotal-((RadCuerpo+AnchoTotal/2+AnchoTotal/8)-RadCue... | glb/cad_6eb960db4da8.glb |
Create a dia slide candle holder by starting with a solid cube measuring 60mm on all sides. Hollow out the center of the cube to create a container with walls 5mm thick, leaving the top completely open. In the center of each of the four side walls, create a rectangular window opening that is 34mm wide and 22.5mm high. ... | cube_size = 60;
wall_thickness = 5;
window_width = 34;
window_height = 22.5;
slide_width = 50.6;
slide_height = 50;
slide_thicknes = 2.3;
candle_radius = 21.1;
difference() {
cube(cube_size, center = true);
translate([0, 0, wall_thickness])
cube([cube_size - 2*wall_thickness, cube_size - 2*wall_t... | glb/cad_c0669c2ce6e5.glb |
Create a Volcano Release Trigger consisting of a central axis and a pivoting handle. Start by creating a central axis as a cylinder with a radius of 1.75mm and a total length of 53.5mm. At both ends of this axis, add cylindrical stoppers with a radius of 3.75mm and a depth of 2mm.
Construct a pivoting handle that is 9... | axis_r = 1.75;
axis_length = 53.5;
max_w = 48;
axis_stopper_diff = axis_length - max_w;
axis_stopper_r = 3.75;
axis_stopper_depth = 2;
handle_w = 9;
handle_l = 58;
handle_tip_l = 17;
handle_angle = 20;
plate_thick = axis_r*2;
hook_w = 6;
hook_l = 2;
hook_tip_l = 3;
hook_thickness = 2;
hook_max_thickness = 3;
hook_pl... | glb/cad_6ac6b460c453.glb |
Create an Earplug Case consisting of two symmetrical halves joined by a hinge. Each half is based on a capsule-like shape formed by the hull of a sphere with a diameter of 11mm and a cylinder with a length of 17.5mm, with a wall thickness of 1.6mm.
For the hinge mechanism, create a central pin with a diameter of 0.55m... | $fn=32;
eps=0.004;
main_diameter = 11;
secondary_diameter = 16;
plug_length = 17.5;
wall_width = 1.6;
wire_length = 10;
wire_diameter = .55;
hinge_a_length = 5;
hinge_b_length = (wire_length-hinge_a_length)/2 + .4;
hinge_offset = 1.2;
hinge_diameter = 4;
hinge_spacing = .2;
clip_cylinder_diameter = 2;
clip_distance =... | glb/cad_cf5c8c70f241.glb |
Create a wall mount for a Spoton GPS Fence charger. Start with a solid rectangular block measuring 73.85mm in width, 48.42mm in depth, and 8.46mm in height.
Carve a central rectangular cavity into this block to house the charger. This cavity should measure 69.85mm wide, 44.42mm deep, and 6.46mm high, positioned 2mm f... | include <BOSL/constants.scad>
use <BOSL/masks.scad>
use <BOSL/transforms.scad>
$fa = 0.1;
$fs = 0.1;
walls = 2;
t = 0.2;
module __nope__() {}
charger_d = 44.42;
charger_w = 69.85;
charger_h = 6.46;
charger_h2 = 4.49;
charger_chamfer_r = 6;
charger_chamfer_r2 = 5;
usbc_h_off = 4.15;
usbc_w = 13;
usbc_h = 6.5;
cham... | glb/cad_fdc506412c03.glb |
Create a MediMemo replacement lid with a thickness of 1.5mm. The overall length is 93.9mm. The shape begins with a wide end 20mm wide and 10.1mm long, featuring rounded corners with a 4mm radius. From this wide end, the body tapers symmetrically inward to a narrower end that is 17.3mm wide and 9.4mm long, also featurin... | depth = 1.5;
big_end_width = 20;
bottom_width = 18.4;
top_width = 17.3;
small_end_width = top_width;
big_end_len = 10.1;
small_end_len = 9.4;
total_len = 93.9;
centre_len = total_len - big_end_len - small_end_len;
big_end_radius = 4;
small_end_radius = 3;
label = "";
label_border = 2;
font="Helvetica Neue";
stretch... | glb/cad_a9a149e7f216.glb |
Create a multi-compartment organizer box. Start by constructing a solid rectangular base with a total width of 86mm, a total depth of 50mm, and a total height of 32mm. The base should be centered on the origin.
From this solid block, carve out a grid of 18 rectangular cells arranged in 6 columns along the x-axis and 3... | ir = 0;
wt = 2;
ft = 2;
cell_h = 30;
cell_x = 12;
cell_y = 12;
num_cells_x = 6;
num_cells_y = 3;
$fn=32;
module multi_cube(mr)
{
if(mr==0)
{
cube([cell_x,cell_y,cell_h],center=true);
}
else
{
dx = cell_x/2-mr;
dy = cell_y/2-mr;
dz = cell_h/2-mr;
hull()
... | glb/cad_e77a04525766.glb |
Create a Raspberry Pi Zero Camera Case and Mount. The main case is a rectangular box with an outer length of 80mm and a width of 39mm, featuring walls 2.5mm thick. The top face is hollowed out to accommodate a camera board, with a central circular opening 12mm in diameter for the lens.
On the bottom of the case, inte... | nozzle_diameter = 0.4;
wall_thickness = 2.5;
cable_room = 10;
length = 65 + cable_room + 5 + (wall_thickness * 2);
width = 30 + 2+ (wall_thickness * 2);
module support_peg(x, y, z) {
union() {
standoff_height = 4;
translate([x, y, z])
scale([1/10, 1/10, 1/10])
cylin... | glb/cad_97ff7369753c.glb |
Create a sliding back cover for a Raspberry Pi Zero camera case. Start with a solid rectangular base measuring 80mm in length, 35mm in width, and 1mm in height. Hollow out the center of this base by removing a rectangular section that leaves a wall thickness of 2.5mm on all sides, but keep the bottom face solid.
On th... | nozzle_diameter = 0.4;
wall_thickness = 2.5;
cable_room = 10;
length = 65 + cable_room + 5 + (wall_thickness * 2);
width = 30 + 2+ (wall_thickness * 2);
union() {
difference() {
translate([0, 0, 0])
linear_extrude(height = 1)
square([length, width]);
translate([0 + w... | glb/cad_1b061f4da003.glb |
Create a camera mount consisting of a flat rectangular base and a vertical support structure. Start with a base plate measuring 40mm wide, 15mm deep, and 3mm thick. Center two countersunk holes on the base, positioned 13.33mm from the center point toward each end; these holes should have a bottom radius of 1.5mm and a ... | inrad = 2.5;
basex = 40;
basey = 15;
tabz = 20;
thick = 3;
$fn=64;
module tab(){
difference(){
hull(){
cube([basex/2, basey, thick], center=true);
color("lime")translate([basey,0,0]) cylinder(r=basey/2,h = thick,center=true);
}
translate([basex/3,0,0]) cylinder(r... | glb/cad_791c05b2a03d.glb |
Create a tool-less attachment system consisting of a receiver and a matching bolt.
For the receiver, create a rectangular block 18mm long, 5.7mm wide, and 2.5mm deep. Hollow out the center to leave thin outer walls of approximately 0.6mm. Inside the receiver, integrate two opposing spring-like mechanisms. Each spring... | use <catchnhole/catchnhole.scad>;
$fn=50;
$fa = 1; $fs = 0.5;
translate([0,0,0])
receiver();
rotate([90,0,0]) {
translate([0,0,-1])
ball_part(thread_length=0.5);
}
translate([0,5.1,2])
linear_extrude(height = 7.5)
makerbeam_xl_1515(true, false, 0.3, 0.15, 0.1);
module receiver() {
length = 18;
tolera... | glb/cad_139165ce719f.glb |
Create a Christmas Tree model consisting of a central hollow pillar and radiating branches. Start by creating a vertical hollow cylinder for the base with an outer diameter of 10mm, a wall thickness of 2mm, and a height of 100mm.
Construct the branches as long, thin cylinders with a diameter of 2mm. Position the firs... | $fn=128;
module ring(outerDiameter_ring,wallThickness_ring,height_ring){
innerDiameter_ring = outerDiameter_ring - (2 * wallThickness_ring);
translate([0,0,0])color("green")difference() {
cylinder(d = outerDiameter_ring, h = height_ring);
translate([0, 0, -0.5]) cylinder(d = innerDiameter_ring, h = height_rin... | glb/cad_004f08590762.glb |
Create a base for a Christmas Tree with WLED consisting of a rectangular box and two concentric rings. First, construct a rectangular box with outer dimensions of 53mm width, 30mm height, and 8mm depth, featuring a wall thickness of 3.5mm.
Next, create a large outer ring with an outer diameter of 64.5mm, a wall thick... | $fn = 128;
module ring(outerDiameter_ring,wallThickness_ring,height_ring){
innerDiameter_ring = outerDiameter_ring - (2 * wallThickness_ring);
translate([0,0,0])color("green")difference() {
cylinder(d = outerDiameter_ring, h = height_ring);
translate([0, 0, -0.5]) cylinder(d = innerDiameter_ring, h = height_r... | glb/cad_6b796fe84adc.glb |
Create a Ratcheting Light Duty Vise consisting of a base, two jaws, and two ratchets.
Start with a rectangular base 160mm long, 110mm wide, and 10mm high. Carve a central channel through the length of the base with a depth of 5mm. Inside this channel, add a series of ratchet teeth spaced every 2mm, each protruding 2.... | baseWidth = 110;
baseHeight = 10;
baseLength = 160;
jawWidth = 13;
jawHeight = 60;
jawHeightCrossbar = 20;
jawThickness = 6;
jawReinforceFactor = 3;
slideClearance = 0.1;
ratchetHeight = 10;
ratchetThickness = 5;
showBase = true;
showJaw = true;
showRatchet = true;
jawPosition = 22;
ratchetPosition = 51;... | glb/cad_66e1531eee20.glb |
Create a mini bit ratchet tool. The main body is a composite shape formed by the hull of several cylinders: a central cylinder with a 19mm diameter and 12mm height, a 22mm diameter and 8mm height cylinder, and a smaller 6mm diameter and 12mm height cylinder shifted 25mm along the x-axis.
Within this body, create a ce... | $fn = 120;
text_pole = "IN/CLOSE";
text_halign = "right";
text_valign = "top";
rotate_y = 180;
rotate_z = -30;
pos_hex = -2;
union() rotate([0,rotate_y,rotate_z])
{
translate([0,0,0]) oko();
translate([0,0,0]) telo();
}
module t(t, s = 2, style = "")
{
rotate([90, 0, 0])
linear_extrude(height = 1.0)
text(t,... | glb/cad_4ed980e81963.glb |
Create a Cup Cookie Holder designed to clip onto the rim of a glass. Start by constructing a primary curved rim base using a large cylinder with a diameter of 85mm and a height of 2mm. Hollow out the center of this disc by removing a smaller concentric cylinder with a diameter of 75mm and a height of 4mm, and further c... | use<InnerCurve.scad>;
use<HFPartsBox.scad>;
CookieWidth=80;
CookieDepth=20;
CookieHeight=40;
Lable=0;
translate([-CookieWidth/2,CookieDepth+56,CookieHeight])
rotate([180,0,0])
union(){
if(Lable==1){
translate([10,1,20])
BoxLabel();
}
PartsBox(CookieWidth,CookieDepth,CookieHeight,Pull);
}
resize([60,25,10])
Cu... | glb/cad_2921ca345327.glb |
Create a Cup Cookie Holder by constructing a hollow rectangular box with rounded corners. The outer dimensions of the box are 70mm wide, 30mm deep, and 46mm high. The walls and base should be 1.2mm thick. To achieve the rounded corners, use a 6mm diameter circular profile for the corner radii.
The interior of the box... | BoxWidth=70;
BoxDepth=30;
BoxHeight=46;
Pull=1;
PartsBox(BoxWidth,BoxDepth,BoxHeight,Pull);
module PartsBox(BoxWidth,BoxDepth,BoxHeight,Pull){
difference(BoxWidth,BoxDepth,BoxHeight){
OuterShell(BoxWidth,BoxDepth,BoxHeight);
translate([1.2,1.2,2])
resize([BoxWidth-2.4,BoxDepth-2.4,BoxHeight])
OuterS... | glb/cad_978cea4497be.glb |
Create a Cup Cookie Holder by designing a vertical plate with a thickness of 30mm. Start with a rectangular block that is 30mm wide and 30mm high. From the top edge of this block, remove a semi-circular cutout with a radius of 15mm, centered horizontally, so that the top of the object becomes a concave arc. Additionall... | $fn=120;
Radius=15;
Length=30;
InnerCurve(Radius,Length);
module InnerCurve(Radius,Length){
linear_extrude(Length){
difference(){
square(Radius*2);
translate([Radius,Radius,0])
circle(r=Radius);
translate([Radius*2,-Radius,0])
rotate([0,0,45])
square(Radius*4);
}
}
} | glb/cad_5f0cc285e96b.glb |
Create a mini handle for 1/4 inch bits by constructing a central cylinder 20mm in diameter and 12mm high. Remove a hexagonal hole from the center of this cylinder with a diameter of 7.5mm and a depth of 8mm. To create the outer grip, arrange a series of small, pyramid-like protrusions around the perimeter. These protru... | $fn=120;
union(){
for(Theta=[0:10:360] ){
Xpos=10*cos(Theta);
Ypos=10*sin(Theta);
translate([Xpos,Ypos,0])
rotate([0,0,Theta+90])
Grip();
}
difference(){
cylinder(h=12,d=20);
cylinder(h=8,d=7.5,$fn=6);
}
}
module Grip(){
for( Layer=[0:2:10]){
translate([-1,0,Layer])
rotate([9... | glb/cad_47fc6c404e80.glb |
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