Prompt stringlengths 96 2.17k | Code stringlengths 27 249k | 3d_glb stringlengths 24 24 |
|---|---|---|
Create a wallmount bracket for an 18650 LED torch. Start with a solid rectangular block measuring 32.8mm in width, 14mm in height, and 24mm in depth.
Carve out a central vertical channel to hold the torch, which should be 23.2mm wide and 21mm deep, leaving a 3mm frame around the sides and a 3mm back wall. Within this... | torch_width = 26.8;
groove_depth = 1.4;
frame_width = 3;
groove_height = 2;
torch_thickness = 21;
slop = 0.4;
top_bottom_groove_height = 2;
block_width = torch_width + (frame_width * 2);
block_height = (groove_height * 5) + (top_bottom_groove_height * 2);
block_depth = torch_thickness + frame_width;
module block() ... | glb/cad_65ba0b7bbd59.glb |
Create a set of pipe connectors for a Volleyball Four-Square frame designed for 40mm plastic pipes (outer diameter 41.2mm, inner diameter 36.8mm). Each connector consists of a central vertical socket and a varying number of horizontal arms.
The vertical socket is a cylinder with a height of 51.2mm and an outer diamete... | $fa=1;
$fs = 0.4;
pipe_od = 41.2;
pipe_id = 36.8;
socket_min_d = pipe_od - 0.2;
socket_max_d = pipe_od + 0.8;
socket_thickness = 5;
socket_od = socket_max_d + (socket_thickness * 2);
socket_height = pipe_od + socket_thickness * 2;
arm_min_d = pipe_id - 0.8;
arm_max_d = pipe_id + 1.2;
arm_length = 100;
module centre... | glb/cad_223cee11d43d.glb |
Create a tripod mount for a Logitech C270 webcam. Start with a rectangular base plate measuring 27mm wide, 27mm deep, and 4mm thick. In the center of this base, create a vertical hole with a radius of 2.8mm to accommodate a tripod screw.
Attached to the top of this base, construct a U-shaped grip. The grip consists of... | $fa=1;
$fs=0.4;
module back() {
difference() {
cube([27,4,25]);
}
}
module grip() {
gapwidth = 7.4;
gripwidth=27;
hole_diam=3.1;
gripthickness = 6.8;
gripdepth = 12;
translate([0,-8,25-6.8])
difference() {
union() {
cube([gripwidth, gripdepth, gripthick... | glb/cad_312b5a7ede98.glb |
Create an M5 washer by constructing a thin cylinder with an outer diameter of 15mm and a height of 2mm. Center a concentric circular hole through the entire height of the cylinder with a diameter of 5.5mm to create a flat, ring-shaped disc. | $fs = 0.4;
$fa = 1;
shaft_diam = 5.5;
diam = 15;
thickness = 2;
difference() {
cylinder(d=diam, h=thickness);
translate([0,0,-0.5])
cylinder(d=shaft_diam, h=thickness+1);
} | glb/cad_e0f3bf6efcc8.glb |
Create an Allen Key Holder consisting of a rectangular block with three hexagonal holes. The main block should be 32mm wide, 20mm deep, and 12mm high.
Carve three hexagonal sockets through the 20mm depth of the block. Each socket is composed of a hexagonal prism that narrows as it enters the block. The outer portion ... | $fs=0.4;
$fa=1;
HexKey6mm = 6 + 0;
HexKey5mm = 5 + 0.04;
HexKey3mm = 3 + 0.1;
nut_slop = 0;
in_ratio = 0.4;
in_scale = 1.5;
block_x = HexKey6mm + (HexKey6mm*2) + (HexKey5mm*2) + HexKey5mm;
block_y = 20;
block_z = (HexKey6mm * in_scale) + 3;
module nut(diam=5.5, h=3) {
s = diam+nut_slop;
side_length = (s/2) / co... | glb/cad_a2e53a027da3.glb |
Create a parametric drag chain link with an internal cable passage measuring 20mm wide by 15mm high. The link walls and skin should be 1.8mm thick. The overall outer body height is 18.6mm (15mm internal height plus two 1.8mm skins).
The top of the link features a peaked, house-shaped roof to avoid long horizontal brid... | $fs = 0.4;
$fa = 1;
height_internal = 15;
width_internal = 20;
skin = 1.8;
artic = 0.4;
nub_artic = 0.3;
overhang = 50;
bridge_length = height_internal/2;
nub_diam = 3;
body_width = width_internal + (skin*4) + (artic*2);
body_height = height_internal + (skin*2);
r = body_height / 2;
body_length = (3.5*r) + bridge_len... | glb/cad_ba72cae961cc.glb |
Create a Microsoft LifeCam mount consisting of a main cylindrical body and an attached mounting arm. Start by creating a cylinder with a diameter of 35mm and a height of 23mm. Hollow out the center of this cylinder with a smaller concentric hole 27.5mm in diameter and 40mm deep.
Attached to the side of this cylinder,... | $fn=$preview ? 30 : 120;
rotate([0,-90,0]) life_mount();
module life_mount(){
rotate([90,0,90])
difference(){
union(){
cylinder(d=35, h=23);
translate([3.5,28,23/2]) rotate([0,90,180])
mount_point(link=true);
}
translate([0,0,-5]) cylinder(d=27.5, h=40);
hull() for(Y=[1... | glb/cad_b8805317685a.glb |
Create a set of adjustable feet consisting of a threaded rod, a nut, and a washer.
First, construct a trapezoidal threaded rod with a diameter of 10mm, a length of 12mm, a pitch of 3mm, a thread angle of 15 degrees, and a thread depth of 1.5mm, ensuring the ends are beveled. Pass a square hole measuring 2.6mm by 2.6m... | include <lib/BOSL/constants.scad>
use <lib/BOSL/threading.scad>
$fn=64;
PRINTER_SLOP=0.3;
SCREW_HOLE=2.6;
WASHER_HOLE=3.5;
echo("slop =", PRINTER_SLOP);
translate([-9,0,6])
difference() {
union()
{
rotate([0,0,120])
trapezoidal_threaded_rod(
d=10,
l=12,
pitch=3,
... | glb/cad_7950f171132d.glb |
Create a Twist Lock Connector consisting of two interlocking parts, a male and a female component, both based on a diameter of 23mm and a wall thickness of 3mm.
For the female part, create a cylinder with a radius of 11.5mm and a height of 3mm. Hollow out the center with a cylinder of radius 10mm and height 6mm. Remo... | $fn=100;
clearance=0.5;
wallThickness=3;
twistDia=23;
module twistFemale()
{
translate([0,0,wallThickness/2])
difference()
{
union()
{
difference(){
cylinder(r=twistDia/2,h=wallThickness,center=true);
cylinder(r=twistDia/2-wallThickness+clearance,h=wallThickness*2,center=true);
... | glb/cad_109da7611e9a.glb |
Create a Locking Ball and Socket Joint consisting of three separate components: a ball, a socket, and a locking ring.
First, create the ball component. Form a sphere with a diameter of 30mm. Attach a cylindrical arm to the bottom of the sphere with a diameter of 15mm and a length of 30mm. Taper the transition between ... | BSJ_BALL = 1;
BSJ_SOCKET = 2;
BSJ_RING = 3;
BSJ_SLOPE_FACTOR = 2;
module bsjPiece(type=BSJ_BALL,ballDia=30,length=30,armDia=15,slots=4,gripRidges=24)
{
cageThickness=ballDia/20;
cageGap=cageThickness/4;
ringWidth=ballDia/6;
cageDia = ballDia+cageGap*2+cageThickness*2;
channelDia = cageDia+cageGap*2;
rin... | glb/cad_ddf43049b8c8.glb |
Create a Net Pot Holder for a Weck Jar by constructing a circular disk with a total height of 5mm and an outer diameter of 108mm. From the center of this disk, remove a large cylindrical core with a diameter of 92.5mm that extends through the entire height.
Above this core, create a tapered transition by removing a c... | $fn=128;
glas_d_outer = 108;
glas_d_chamfer = 102.5;
glas_d_inner = 92.5;
glas_h_chamfer = 2.0;
pot_d_rim_outer = 82.0;
pot_d_rim_inner = 73.5;
pot_h_rim = 1.5;
h = 5;
rim_h = 2;
module net_pot_holder() {
difference() {
cylinder(h = h, d = glas_d_outer);
translate([0,0,-0.01]) cylinder(h = glas_h... | glb/cad_72fd4f08a867.glb |
Create a keychain phone stand consisting of two identical legs joined at one end. For each leg, start with a base shape formed by the intersection of a 55mm by 15mm by 2.5mm rectangular block and a cylinder with a radius of 7.8mm and a height of 15mm, positioned so the cylinder creates a rounded end. At the rounded end... | $fn = 100;
Title1 = "John Doe";
Title2 = "xxxxxxxx";
angle = 30;
Ring_hole_size = 4;
difference(){
union(){
leg(Title1);
translate([-3,0,-3]){
rotate([0,45,0]){
leg(Title2);
}
}
}
translate([30,12,-30]){
rotate([0,90-67.5,0]){
... | glb/cad_156550054bf6.glb |
Create a PrintBedOrganizer by constructing a hollow rectangular box with outer dimensions of 170mm width, 230mm length, and 70mm height. The walls of this box must be 20mm thick. Along the two longer side walls, carve out six evenly spaced slots. Each slot should be 5mm thick and 115mm deep, extending from the top edge... | Ancho=170;
Largo =230;
Altura_ranura=70;
Espesor_paredes_caja=20;
Numero_ranuras=6;
Espesor_ranura=5;
Inclinacion=70;
Distancia_entre_ranuras=30;
difference(){
difference(){
cube([Ancho,Largo,Altura_ranura],true);
cube([(Ancho-Espesor_paredes_caja),(Largo-Espesor_paredes_caja),(Altura_ranura+1)],true);
}
for(i... | glb/cad_22d0071199a9.glb |
Create a Tern Kickstand buffer mount by starting with a main cylinder that has a diameter of 21mm and a total height of 33.5mm. Use a facet resolution of 30 sides for all circular elements. Carve a horizontal hole completely through the center of the cylinder with a diameter of 5.8mm, positioning the center of this hol... | id=21;
offs=22.5;
m6_core=5.8;
m6_sw=10;
m6_nut_h=5.5;
$fn=30;
difference(){
cylinder(d=id,h=offs+2*m6_sw);
union(){
translate([0,(id+5)/2,offs])rotate([90,0,0])cylinder(d=m6_core,h=id+5);
translate([0,0,offs])rotate([90,0,0])cylinder(d=m6_core+1,h=id+5);
translate([0,0,(offs+2*m6_sw)... | glb/cad_c99ff40e19b2.glb |
Create a tripod mount for a phone consisting of a rectangular bracket and a circular mounting disc.
First, construct the phone bracket as a hollowed-out shell. The outer dimensions of the bracket should be 164mm wide, 25mm deep, and 84mm high. The walls of the shell should be 3mm thick. The corners of the bracket mus... | phoneWidth=158;
phoneDepth=9;
phoneHeight=76;
phoneWidthRadius=8;
phoneHeightRadius=8;
phoneDepthRadius=3;
lip=3;
discRadius=15;
discThickness=6.5;
clearance=0.5;
phoneClearance=1.0;
wallThickness=3;
$fn=100;
module roundedBox(width,depth, height, widthRadius,depthRadius,heightRadius)
{
hull()
{
... | glb/cad_11172e0d7efd.glb |
Create a planetary gear bearing with an outer ring diameter of 51.7mm and a thickness of 15mm. The assembly consists of a sun gear, a ring gear, and five planet gears.
First, create the outer ring gear as a cylinder with a 51.7mm diameter and 15mm height. Subtract a central cylinder with a radius of 25.75mm and a heig... | D=51.7;
T=15;
tol=0.15;
number_of_planets=5;
number_of_teeth_on_planets=7;
approximate_number_of_teeth_on_sun=9;
P=45;
nTwist=1;
w=6.7;
DR=0.5*1;
m=round(number_of_planets);
np=round(number_of_teeth_on_planets);
ns1=approximate_number_of_teeth_on_sun;
k1=round(2/m*(ns1+np));
k= k1*m%2!=0 ? k1+1 : k1;
ns=k*m/2-np... | glb/cad_232afb6e751f.glb |
Create a planter with a water reservoir base and a tapered upper sleeve. Start by creating a solid cylindrical base with a height of 5mm and a diameter of 81mm. On top of this base, add a cylindrical water basin with a height of 30mm and a diameter of 81mm, featuring a wall thickness of 10mm.
Above the basin, constru... | h_innen = 80;
d_oben = 100;
d_unten = 80;
w_dicke = 5;
w_abstand = 1;
$fn=50;
blumentopf(h_innen, d_unten, d_oben, w_dicke, w_abstand);
module becher_ohne_boden(h, d1, d2, wand_dicke){
difference(){
cylinder(h, d1=d1, d2=d2);
cylinder(h, d1=d1-wand_dicke, d2=d2-wand_dicke);
}
}
module bl... | glb/cad_fa05c15899a7.glb |
Create a Puch SRA fuse box cover by starting with a rectangular block measuring 60mm in length, 46mm in width, and 16mm in height. Round all four vertical corners with a radius of 1mm. Hollow out the center of the block to create a walls-only shell with a wall thickness of 1.5mm, leaving the bottom face solid.
On the ... | $fn=80;
height = 16;
length = 60;
width = 46;
radius = 1;
wallthickness = 1.5;
holeStart = 7.5;
numHoles = 4;
holeDistance = 15;
cutoutdepth = 10;
cutoutwidth = 5;
cutoutbevelradius = 1;
screwholediameter = 1.9;
edges = [[0+radius,0+radius,0],
[0+radius,width-radius,0],
[length-radius,width-radius,0],
[... | glb/cad_7057b04e32bb.glb |
Create a USB extension under-desk mount. Start by creating a central rectangular holder with outer dimensions of 22.25mm width, 30mm depth, and 16.45mm height. Remove a central rectangular volume from this holder to create a hollow cavity measuring 17.25mm width, 32mm depth, and 11.45mm height.
Attach a flat mounting ... | difference(){
union() {
translate(v = [0, 0, 6]) {
cube(center = true, size = [52.2500000000, 30, 5]);
}
difference() {
cube(center = true, size = [22.2500000000, 30, 16.4500000000]);
}
difference() {
translate(v = [0, 0, 6]) {
cube(center = true, size = [52.2500000000, 30, 5]);
}
}
}
un... | glb/cad_736d4eaa332f.glb |
Create a protective cover for an ignition coil cable. Start by creating a hollow hemispherical dome with an outer diameter of 22mm and a wall thickness of 2mm. The bottom of this dome should be open, forming a rim that transitions into a cylindrical collar.
Extend a cylindrical tube from the center of the dome's base.... | include <BOSL2/std.scad>
$fn = 90;
dia = 22;
wall = 2;
hook = 1.5;
hookDepth = 1;
hookExtraDepth = 6;
cableOuterFirst = 4;
cableOuterLast = 6;
cableInner = 3;
cableInnerEnd = cableOuterLast - (cableOuterFirst - cableInner);
cableLen = 15;
tilt = 25;
o = 0.01;
module kappe()
{
difference() {
difference() ... | glb/cad_e9896eaa9ca8.glb |
Create a Raspberry Pi Pico Case consisting of a main frame, a lid, and a reset button.
First, construct the main frame as a rounded rectangular box with an outer dimension of approximately 25.7mm by 55.7mm and a height of 10mm. The interior should be hollowed out to fit the board, with a central cavity of 21.7mm by 5... | resolution = 20;
$fn = resolution;
show_frame = true;
show_pico = true;
show_lid = true;
show_button = true;
module rounded_plate(w, h, t, d) {
translate([0, (d/2), 0])
cube([w, (h-d), t]);
translate([(d/2), 0, 0])
cube([(w-d), h, t]);
translate([(d/2), (d/2), 0])
cylinder(h=t, d=d);
trans... | glb/cad_34db381af7df.glb |
Create a small to large switch adapter by starting with a rectangular base plate measuring 23mm in length, 20mm in height, and 1.5mm in depth. Centered on this base, add a second rectangular volume that is 19mm long, 12.5mm high, and 3mm deep. Position this inner volume so it is centered along the length of the base bu... | include <BOSL2/std.scad>
o = 0.01;
outerLen = 23;
outerHeight = 20;
outerDep = 1.5;
innerLen = 19;
innerHeight = 12.5;
innerDep = 3;
innerOffset = 2;
cutoutLen = 15;
cutoutHeight = 8.5;
module outer()
{
cube([outerLen, outerHeight, outerDep]);
}
module inner(){
cube([innerLen, innerHeight, innerDep+2*o]);... | glb/cad_191e83ccdb38.glb |
Create a minimalistic soap dish based on a grid of spikes. Start by creating a flat base plate that is 2mm thick. The base is formed by two intersecting rectangular bars that meet at a central point, with the outer edges of these bars ending in circular pads.
On this base, place a series of square-based pyramids to ac... | x_spikes=10;
y_spikes=5;
square=6;
base_height=2;
pyramid_height=4;
spacing=7;
base_x=(2+x_spikes)*spacing;
base_y=(2+y_spikes)*spacing;
minimum=true;
echo(str("Soap size: ",base_x,"mm x ",base_y,"mm."));
_x_spikes=minimum?ceil(x_spikes/2):x_spikes;
_y_spikes=minimum?ceil(y_spikes/2):y_spikes;
_x_spikes1=1+_x_spik... | glb/cad_663b5b7cf992.glb |
Create a Universal Box for PCB consisting of a main enclosure, a lid, and a PCB mounting plate.
For the main enclosure, create a rectangular shell with outer dimensions of 80mm x 50mm and a height of 40mm. The walls should be 2.4mm thick with all vertical corners rounded to a radius of 8mm. The bottom of the box shou... | velikost_x = 80;
velikost_y = 50;
vyska = 40;
material = 2.4;
zaobleni = 8;
sroub = 3;
sroub_ovr = 0.1;
mezera = 0.2;
pcb_x = 40;
pcb_y = 30;
pcb_z = 5;
top_pcb_x = 20;
top_pcb_y = 10;
tisk ... | glb/cad_b7e41f315983.glb |
Create a COVID Test Stand designed to hold a sample tube. The main body is an octagonal prism with a height of 40mm and an outer radius of 8.7mm. This outer shell has a wall thickness of 1.2mm. Centered within this prism, create an octagonal hole with a radius of 7.5mm and a length of 40mm to accommodate the tube.
Th... | tubeR=7.5;
standH=40;
thick = 1.2;
module holder(){
depth = standH;
translate([0,0,(tubeR+thick)*cos(22.5)])
rotate([90,22.5,0])
cylinder(r=tubeR+thick, h=depth, $fn=8);
}
module hole(){
translate([0,thick,(tubeR+thick)*cos(22.5)])
rotate([90,22.5,0])
cylinder(r=tubeR, h=standH, $fn=8);
}
module... | glb/cad_905a8d5c4f70.glb |
Create a bed leveling wheel and clip system. Start by constructing a main wheel as a hollow cylinder with an outer radius of 32mm and a height of 10mm, featuring an inner circular cutout with a radius of 30mm. On the bottom face of this wheel, add a thin circular disc with a radius of 32mm and a height of 1mm, which ha... | $fn=100;
klucz="kółko";
klucz="ramię";
klucz="toteż";
if(klucz=="kółko"||klucz=="toteż"){
difference(){
color("lightgreen")cylinder(r=32,h=10);
color("red")translate([0,0,-0.1])cylinder(r=30,h=10.2);
}
difference(){
color("lightgreen")translate([0,0,0])cylinder(r=32,h=1);
color("red")translate([0,0,-.1])cylinder(r=27,... | glb/cad_03ec27bca51a.glb |
Create a honeycomb-patterned bowl with an outer shell and an inner liner. The outer shell is a rectangular box with dimensions 100mm in width, 80mm in depth, and 60mm in height. The shell has a wall thickness of 3mm and rounded corners with a 5mm radius.
The four vertical side walls of the shell are perforated with a... | velikost_x = 100;
velikost_y = 80;
vyska = 60;
material = 3;
ramecek = 4;
zaobleni = 5;
plastev_material = 4;
plastev = 11;
miska_material = 1.2;
miska_mezera = 0.2;
tisk = "om";
$fn=48;
module hexagon(l) {
circle(d=l, $fn=6);
}
... | glb/cad_df926dc6b9c6.glb |
Create a minimalistic pocket operator caddy by starting with a solid rectangular block measuring 208mm in length, 15mm in width, and 54mm in height. Hollow out the center of this block by removing a smaller rectangular volume of 204mm by 11mm by 56mm, positioned 2mm from the front, side, and bottom edges, to create a t... | difference(){
cube([208,15,54]);
translate([2,2,2]) cube([204,11,56]);
}
translate([2,2,2]) cube([5,1.5,52]);
translate([66,2,2]) cube([10,1.5,52]);
translate([132,2,2]) cube([10,1.5,52]);
translate([201,2,2]) cube([5,1.5,52]); | glb/cad_53a7b55a4517.glb |
Create two identical mirrored storage trays for a false drawer. Each tray should have a base length of 178mm, a width of 52mm, and a height of 95mm. The main body is a hollowed-out rectangular container with walls 2mm thick. The bottom and side walls should be 2mm thick, while the top is open.
Round the exterior bott... | $fn=30;
module mount_hole(){
hull(){
translate([0,0,6])
rotate([90,0,0]) cylinder(d=4, h=4);
rotate([90,0,0]) cylinder(d=4, h=4);
}
rotate([90,0,0]) cylinder(d=7, h=4);
}
module sponge(w){
translate([120,2,2]) cube([2,w-4,25]);
translate([8,2,0])
for (i = [1:6])
translate([15*i,0,2]) cube([2,w-4,6]);
... | glb/cad_d421f1c59410.glb |
Create a servo button consisting of two stacked coaxial cylinders. The base is a short, wide cylinder with a radius of 4.3mm and a height of 2.5mm, rendered with a 16-facet resolution. Centered on top of this base, add a second, narrower cylinder with a radius of 2.65mm and a height of 6.192mm, rendered with a 20-facet... | servo_button();
module servo_button(){
cylinder(r=4.3,h=2.5,$fn=16);
cylinder(r=2.65,h=6.192,$fn=20);
} | glb/cad_6705cdf38ecc.glb |
Create a servo shoulder bracket consisting of three main components: a base plate, a channel bracket, and a horn bracket.
First, create a rectangular base plate measuring 37mm by 16mm with a thickness of 3.5mm. In this plate, place four vertical holes with a 1.5mm radius. Two of these holes should have countersunk hea... | shoulder(26,5.5,3.5,2,13);
translate([0,20,0]) shoulder(27,7,3.6,1.75,14);
module shoulder(st,sc,hr1,hr2,hrd){
plate_thick = 3.5;
offset_x = 4; offset_y = 4;
m3_screw_dia = 3;
m3_screw_head_dia = 7;
m3_screw_head_height = 1.75;
m3_nut_wrench_size = 6.5;
m3_nut_height = 1.75;
ch_st = (st/2)-1;
hr_st = -((st... | glb/cad_9f6ec376ca2d.glb |
Create a Mini Quadruped backbone. Start with a main rectangular block measuring 14mm wide, 90mm long, and 8mm high.
Subtract four rectangular cutouts from the top face to accommodate servos; each cutout should be 12.5mm wide and 8mm deep, centered at the front and back ends of the block, positioned 16.5mm from the ce... | backbone(90,14,8,23,12.5);
module backbone(bl,bw,bh,sl,sw){
h_pos = ((bl-20) / 2);
difference(){
translate([-(bw/2),-(bl/2),-(bh/2)]) color("purple") cube([bw,bl,bh]);
for (i = [[-16.5,h_pos,0],[16.5,h_pos,0],[-16.5,-h_pos,0],[16.5,-h_pos,0]]){
translate(i) #cube([sl,sw,bh], center=true);
}
for (i = [[... | glb/cad_27343d3b0306.glb |
Create a robot leg part by starting with a base shape formed from the union of a 28mm x 20mm x 4mm rectangular block and a 2mm x 3mm x 4mm tapered block, combined with a 40mm x 3mm x 4mm rectangular leg extension and a 6mm x 14mm x 4mm top bar. Smooth the corners by adding two cylinders with a 3mm radius and 4mm height... | leg(23,12.5);
module leg(sl,sw){
difference(){
union(){
hull(){
translate([-30,-10,0]) cube([28,20,4]);
translate([5,-1.5,0]) cube([2,3,4]);
}
translate([0,-1.5,0]) cube([40,3,4]);
translate([-33,-7,0]) cube([6,14,4]);
for (i = [ [-30,7,0],[-30,-7,0] ]){
translate(i) cylinder(r=3,h=... | glb/cad_fe16af187008.glb |
Create a parametric smartphone support designed to fit the dimensions of a standard credit card (85.6mm x 53.98mm x 1.7mm).
First, construct a hollow rectangular frame with rounded corners (radius 3.18mm) and a thickness of 1.7mm. The frame should have a central hole on the top edge to accommodate a hinge axis.
Next... | $fn=50;
support_width=22;
phone_thick=10;
angle=10;
card_length=85.6;
card_width=53.98;
card_thick=1.7;
card_radius=3.18;
card_frame=5;
slider_width=5;
slider_flap_thick=1;
slider_flap_depth=2;
tolerance=0.2;
needle=0.6;
needle_frame=0.4;
lock_radius=3;
lock_arm_len=5;
lock_arm_width=3;
print_card=1;
print_WingRight... | glb/cad_723ff0a3c0dc.glb |
Create a thickness gauge consisting of five separate rectangular plates, each with a thickness ranging from 1mm to 5mm in 1mm increments. Each plate should have a width of 10mm and a length of 40mm.
For each plate, center a 4mm diameter hole through the thickness, positioned 4mm from the bottom edge. At the top edge,... | min_finger_thickness = 1;
max_finger_thickness = 5;
bolt_radius = 2;
bolt_padding = bolt_radius * 2;
finger_padding = 3;
finger_width = max(max_finger_thickness, bolt_radius * 2) * 2;
finger_length = max(finger_width * 2.5, 40);
font = "Liberation Sans";
label_padding = (max_finger_thickness * 2) + 5;
letter_size = ... | glb/cad_39d742fb1218.glb |
Create a distance ring for a cheese mill by constructing a hollow cylinder with an outer diameter of 39.5mm, an inner diameter of 36.5mm, and a height of 6mm, centered on the origin. Add three rectangular locking pins to the outer circumference, each measuring 2.7mm wide, 3mm deep, and 1.8mm high. Position these pins s... | $fn=40;
d_outer = 39.5;
d_inner = d_outer-3;
w_pin = 2.7;
d_pin = 3.0;
h_pin = 1.8;
difference() {
union() {
difference() {
cylinder(h=6,d=d_outer,center=true);
cylinder(h=7,d=d_inner,center=true);
}
rotate([0,0, 0]) translate([-w_pin/2,16,-h_pin/2]) cube([w_pin... | glb/cad_ca1652a62d03.glb |
Create a Gridfinity AA Battery Container. Start by constructing a base block that is 1 unit wide, 2 units deep, and 2 units high (based on the Gridfinity pitch). The block should feature the standard Gridfinity beveled underside and lip.
Within this block, create four vertical cylindrical holes to hold AA batteries. E... | include <gridfinity_modules.scad>
battery_height=50;
part = 1;
battery_diameter=14.5;
magnet_holes=false;
pairs_of_batteries=2;
if (magnet_holes) {
basic_cup(pairs_of_batteries/2,1,3,1);
}
else basic_cup(pairs_of_batteries/2,1,3,0);
module basic_cup(num_x=1, num_y=1, num_z=2, bottom_holes=0, chambers=1) {... | glb/cad_673f58ba683c.glb |
Create a Front Reverse Bowden holder by constructing a central body and removing specific voids. Start with a base shape formed by the union of three cylinders, each 10mm in diameter and 12mm high, centered at the origin, at (15, 0, 0), and at (0, 10, 0) and (0, -10, 0). Connect these with a hull that spans the distanc... | $fn=$preview ? 30 : 120;
lack_reverse();
module lack_reverse(){
difference(){
union(){
translate([15,0,0])
hull() for(X=[-1,1])
translate([15*X,0,0])
cylinder(d=10,h=12,center=true);
hull(){
for(Y=[-1,1])
translate([0,10*Y,0])
cylinder(d=... | glb/cad_5181565d28ef.glb |
Create a spool stacker connector with a total height of 10mm. The main body is a hollow cylinder with an outer diameter of 60mm and a wall thickness of 1mm.
Inside this main body, create a smaller concentric hollow cylinder with an outer diameter of 50mm and a wall thickness of 1mm. This inner cylinder should extend ... | $fn= $preview ? 16:64;
h=10;
d1=50;
d2=60;
wall=1;
gapH=0.3;
gapV=0.4;
wallS=0.5;
cutW=2;
cutN=[35,50];
layer=0.3;
layers=2;
not=0.001;
inf=100;
cylinderRounded(d=[d1-2*wall,d1],h=h+not);
t([0,0,h]) {
cylinderRounded(d=[d1-4*wall-2*gapH,d2],h=wall);
t([0,0,wall-not]) cylinderRounded(d=[d1-4*wall-2*gapH,d1-2*wall-... | glb/cad_1dc2fd3f557c.glb |
Create a caravan window lock consisting of a series of connected cylindrical components aligned along a central axis. Start with a base cylinder that is 13mm high with a radius of 8mm. Bore a concentric hole through the center of this base with a radius of 2.75mm.
From the side of this base, extend a horizontal cylin... | $fn=80;
keresztTartoAtmero=16/2;
keresztTartoLyukAtmero=5.5/2;
keresztTartoSzelesseg=13;
szarAtmero=9/2;
szarHossz=10.5;
beakasztoAtmero=16/2;
beakasztoVastag=7;
fogoSzarAtmero=9.5/2;
fogoSzarHossz=7;
kupHossz=10;
kupAtmero1=9.5/2;
kupAtmero2=11.5/2;
difference()
{
cylinder(h=keresztTartoSzelesseg, r=keresztTart... | glb/cad_a54cd21fe5d7.glb |
Create a camper lock closure plate by starting with a rectangular base measuring 50mm in length, 10mm in width, and 5mm in thickness. Remove a central rectangular slot from the top face that is 23mm wide and 5mm deep, starting 13.5mm from the left edge and ending 13.5mm from the right edge. At both the left and right e... | $fn=60;
hossz=50;
vastag=5;
szeles=10;
zarnyelvVastagsag=5;
zarnyelvKezdetKintrol=5;
zarnyelvSzelesseg=23;
difference()
{
cube([hossz,szeles,vastag]);
translate([(hossz-zarnyelvSzelesseg)/2,5.1,-1]) cube([zarnyelvSzelesseg,zarnyelvVastagsag,7]);
translate([10-3.5,szeles/2,0]) {
translate([0,0,vastag-0.7]) cyl... | glb/cad_d63efcadbbec.glb |
Create a Game Component Organizer designed to fit within a main box of 287mm x 232mm x 80mm. All walls and bottoms should be 1.5mm thick.
First, create six "Hex Inlay A" trays, each 115.5mm wide, 214.5mm long, and 10mm high. Each tray features a honeycomb grid of hexagonal cells with an outer radius of 23.75mm. The ce... | box_width = 287;
box_length = 232;
box_height = 80;
wall_thkns = 1.5;
ru = 23 + wall_thkns * 0.5;
ri = ru * sqrt(3) / 2;
xdelta = sin(60) * ri * 2;
ydelta = cos(60) * ri * 2;
width_hex_inlay_a = 5 * ru;
length_hex_inlay_a = 9 * ri;
echo("Rest width: ", box_width - width_hex_inlay_a);
stack_num_a = 6;
layer_heigh... | glb/cad_46b5f1128a6e.glb |
Create a rectangular end cap for a Beskar Ingot SSD case with overall dimensions of 7.25mm in height, 73.3mm in width, and 13mm in depth. The main body is a rectangular block, topped with a slightly tapered cap that is 80% of the width and 99% of the height of the base.
Within this body, carve out a central cavity to ... | $fn=20;
EndCap_Width = 73.3;
EndCap_Height = 7.25;
EndCap_Depth = 13.0;
EndCap_Face_Depth = 1.0;
LED_Hole_Pos_X = 0.0;
LED_Hole_Pos_Y = 28.5;
LED_Hole_Radius = 1.2;
USB_Hole_Pos_X = 0.75;
USB_Hole_Pos_Y = -24.0;
USB_Hole_Width = 15.0;
USB_Hole_Height = 3.0;
USB_Hole_Corner_Radius = 1.0;
PCB_Hole_Pos_X = -1.0;
PCB_H... | glb/cad_06449a8e4e1b.glb |
Create a rectangular spacer for a USB SSD case. Construct a solid rectangular prism with a length of 70mm, a width of 6.6mm, and a height of 4.5mm. Center the geometry so that the dimensions are balanced across all axes. | Drive_Cavity_Depth = 4.5;
cube([70.0, 6.6, Drive_Cavity_Depth], center = true); | glb/cad_cbb8509c9d91.glb |
Create a Terraforming Mars Game Component Organizer consisting of several specialized containers.
First, create five player sheet assemblies. Each assembly consists of an outer frame measuring 223.5mm x 163.5mm x 3.3mm with a hollow inner cavity of 221mm x 161mm x 1.5mm. For the inner piece, add a series of small cub... | epsilon = 0.1;
wall_thkns = 1.5;
wall_thkns_x = [wall_thkns, 0, 0];
wall_thkns_y = [0, wall_thkns, 0];
wall_thkns_z = [0, 0, wall_thkns];
wall_thkns_yz = wall_thkns_y + wall_thkns_z;
wall_thkns_xy = wall_thkns_x + wall_thkns_y;
wall_thkns_xyz = wall_thkns_xy + wall_thkns_z;
playersheet_inner = [221, 161, wall_thkns]... | glb/cad_f4c73a8d3320.glb |
Create a toilet brush holder consisting of a hollow, tapered vessel with a rounded top. Start by constructing a conical frustum with a total height of 198mm, a bottom diameter of 76mm, and a top diameter of 92mm. Hollow out the center of this shape by removing a smaller concentric conical frustum, leaving a wall thickn... | Diametro_Inferior = 76;
Diametro_Superior = 92;
Altura = 198;
Grosor = 2;
DI = Diametro_Inferior/2;
DS = Diametro_Superior/2;
altura = Altura-DI;
difference() {
cylinder(altura,DS,DI,$fn=100);
translate([0,0,-1])
cylinder(altura+2,DS-Grosor,DI-Grosor,$fn=100);
}
difference() {
difference() {
translate... | glb/cad_e58d18864e0f.glb |
Create a Mokka Pot Stand by constructing a hexagonal base and three vertical pillars. Start with a hexagonal prism base that is 5mm thick and 30mm in radius. Centered on this base, create a hexagonal hole with a radius of 12mm that extends through the base. Above this hole, add a hexagonal ring with a height of 2mm, tr... | HeigtFinger=50;
Finger(HeigtFinger){2D_Finger_Shape();}
module Finger(HEIGHT){
difference(){
linear_extrude(HEIGHT){
children();
}
translate([0,0,HeigtFinger-7]){
#cylinder(h=7,d1=13,d2=53,$fn=6);
}
cylinder(h=5,r=10,$fn=6);
}
difference(){
... | glb/cad_864d56de86b7.glb |
Create a Squeegee Stand for Shower consisting of a circular base and a central cylindrical socket. Start with a flat circular base 60mm in diameter and 4mm thick. In the center of this base, construct a vertical cylinder with an outer diameter of 29mm and a height of 30mm. This cylinder must be hollow, with an internal... | $fn=100;
postDia=24;
postLength=30;
handleDia=29;
handleThickness=(handleDia-postDia)/2;
wallThickness=2;
baseThickness=4;
tabOffset=7.5;
tabHeight=12;
tabWidth=8.5;
baseDia=60;
difference()
{
union()
{
difference()
{
union()
{
cylinder(d=postDia,h=postLength);
rotate_extrude()
... | glb/cad_583b6d8c5e2d.glb |
Create a pressure relief valve consisting of three main components: a closer, an outer retainer, and an inner retainer. All parts are centered around a central axis for a 4mm bolt.
First, create the closer. Start with a cylindrical base 35.2mm in diameter and 1.6mm thick. Add a 6mm deep cylindrical recess in the cente... | $fs = 0.4;
$fa = 1;
bolt_sizes = [
[3, 5.5, 0.3],
[4, 7, 0.3],
[5, 8, 0.4],
[6, 10, 0.5]
];
hole_diam = 32;
bolt_diam = 4;
bolt_slop = bolt_diam/10;
closer_lip = 2;
closer_base_thickness = 1.6;
closer_base_diam = hole_diam + (2*closer_lip);
vane_thickness = 0.6;
sleeve_thickness = 1.2;
bolthead_depth = 6;
... | glb/cad_d21bd8a28b3c.glb |
Create a Wyzecam Crib Mount by first constructing a main camera holder block measuring 58mm in width, 58mm in depth, and 11mm in height. Hollow out this block by removing a central rectangular section measuring 52mm in width, 56mm in depth, and 7mm in height, positioned 3mm from the front and 3mm from the bottom. Furth... | width = 30;
difference() {
difference() {
rotate([90, 0, 0]) {
cube(size = [58, 58, 11], center = false);
}
translate([3, -2, 3]) {
rotate([90, 0 ,0]) {
cube(size = [52, 56, 7], center = false);
}
}
}
translate([6, -8, 6... | glb/cad_3634481404b0.glb |
Create a corner mount for a motion detector by starting with a right-triangular prism. The prism should have a thickness of 31mm and two legs each measuring 22mm. Orient the prism so that the flat triangular face is the primary surface.
Add two mounting holes to this face. The first hole is centered 11mm from the sid... | aSide = 22;
bSide = 22;
thickness = 31;
screw_radius = 2;
screw_head_radius = 3.5;
$fn = 100;
difference(){
rotate([90,0,0]) {
linear_extrude(height = thickness) polygon(points = [[0,0],[0,bSide],[aSide,0]]);
};
translate([aSide/2,-thickness/2,bSide-7]) {
rotate([0,90,0]) {
c... | glb/cad_fd8dbe29e0c7.glb |
Create a Desk Cable Passage Guide consisting of two separate parts: a guide and a cover.
To create the guide, start with a cylinder 53mm in diameter and 38mm in total height. Hollow out the center with a concentric hole 45mm in diameter, leaving a wall thickness of 4mm. At the base of this cylinder, add a flat circul... | draw = "both";
lip_thickness = 3;
lip_width = 10;
outside_diameter = 53;
wall_thickness = 4;
inside_diameter = outside_diameter - wall_thickness;
height = 35;
cover_thickness = 6;
cover_hole = 45;
cover_wall_thickness = 2;
cover_lip_thickness = 1;
$fn = 120;
module guide() {
outside_radius = outside_diam... | glb/cad_f950d0401273.glb |
Create a juicer pusher consisting of two cylindrical shafts separated by a ring. Start by creating a bottom cylindrical shaft with a radius of 35mm and a height of 30mm. Position this shaft so its base is at the origin. Above this, add a thin circular ring with a radius of 40mm and a thickness of 5mm, centered on the v... | $fn=150;
top_shaft_height = 54;
bottom_shaft_height = 15;
radius = 35;
cross_section_cut = 34;
ring_thickness = 5;
ring_diameter_offset = 5;
module topShaft() {
translate([0,0,top_shaft_height+(2*bottom_shaft_height)+ring_thickness]) difference(){
cylinder(r=radius, h=2*top_shaft_height, center=true);
translat... | glb/cad_32d11e2d7dfe.glb |
Create a Palm Pen Holder designed as a supportive strap for a writing utensil. The main body consists of two parallel arms, each 110mm long and 24mm wide, connected by a central block. The arms are slightly tapered and curved to fit the contour of a hand, with the thickness varying from 35mm on the thumb side to 26mm o... | hand_width = 110;
thumb_thick = 35;
pinkie_thick = 26;
strap_width = 24;
pen_dia = 12.5;
engr_text="Makers Making Change";
lefty=false;
module naff() { }
delta_thick = (thumb_thick - pinkie_thick)/2;
axis_width = hand_width - (thumb_thick + pinkie_thick)/2;
angle = atan2(delta_thick, axis_width);
strap_thick =... | glb/cad_290e8542cbb7.glb |
Create a soap dish with a rectangular footprint of 80mm in width and 55mm in depth. The main body is a thin shell with a variable thickness that creates a wavy, undulating surface. The top surface should feature seven repeating wave crests across the width, where the height of the material fluctuates to create ridges a... | include <plot_function.scad>
bottom_th=1;
bottom_extend=1;
height_waves=10;
width=80;
depth=55;
waves=7;
radius=width;
minthickpercent=.3;
biggestthickness=4;
bulgepercent=.3;
resolutionx=1;
resolutiony=.2;
taperoff=depth/2*.05;
normtomax = radius-sqrt(pow(radius,2)-pow(depth/2,2)-pow(width/2,2));
echo(normtomax);... | glb/cad_d8ad50efed5a.glb |
Create a 3D Sierpinski tetrahedron by recursively arranging smaller tetrahedra. Start with a fundamental tetrahedron defined by four vertices: three points forming an equilateral triangle on a horizontal plane at z = -1/3, located at [2/3*sqrt(2), 0, -1/3], [2/3*sqrt(2)*cos(120), 2/3*sqrt(2)*sin(120), -1/3], and [2/3*s... | module fundamental() {
polyhedron(
points=[ [2/3*sqrt(2),0,-1/3],
[2/3*sqrt(2)*cos(120),2/3*sqrt(2)*sin(120),-1/3],
[2/3*sqrt(2)*cos(240),2/3*sqrt(2)*sin(240),-1/3],
[0,0,1]
],
faces=[[0,1,2],[0,2,3],[1,0,3],[2,1,3]]
);
}
module pyramid(n) {
... | glb/cad_58b128274f6b.glb |
Create a Z-axis stabilizer brace consisting of a rectangular base and an angled support arm. Start with a rectangular block 40mm wide, 20mm deep, and 20mm high. From this block, remove a rectangular section 41mm wide, 8mm deep, and 13mm high from the bottom front edge. Attached to the top of this base, add a rectangula... | rotate([-90,0,0])
difference(){
union(){
translate([0,-10,17])rotate([-24.37,0,0])cube([40,20,10]);
difference(){
cube([40,20,20]);
translate([-0.001,-0.001,-0.001])cube([41,8,13]);
}}
union(){
translate([20,-2,12])rotate([-24.37,0,0])cylinder(r=3.5,h=20,$fn=360);
translate([20,-3,12])rotate([-24.37,0,0])cylind... | glb/cad_5d415d92a509.glb |
Create a Z-axis stabilizer brace consisting of a rectangular block with a total width of 48mm, a depth of 20mm, and a height of 20mm. From this main block, remove a central rectangular section measuring 51mm by 7mm by 13mm to create a recessed channel.
Add a slanted upper section to the block by attaching a rectangul... | rotate([-90,0,0])
difference(){
union(){
translate([-8,-10,17])rotate([-24.37,0,0])cube([48,20,10]);
difference(){
translate([-8,0,0])cube([48,20,20]);
translate([-10.001,-0.001,-0.001])cube([51,7,13]);
}}
union(){
translate([0,-2,12])rotate([-24.37,0,0])cylinder(r=3.5,h=20,$fn=360);
translate([0,-3,12])rotate(... | glb/cad_4a9f10046334.glb |
Create a Z-axis stabilizer brace consisting of two base components and two top components. For the bases, create a rectangular block 20mm wide, 40mm deep, and 20mm high. Center a vertical cylindrical hole with a 5mm radius and 15mm height through the block, positioned 27.5mm from the front edge. Cut a rectangular slot ... | intersection(){
union(){
scale([1,1,1.2])translate([10,10,0])rotate([90,0,0])cylinder(r=10,h=10,$fn=360);
scale([1,1,1.2])translate([10,40,0])rotate([90,0,0])cylinder(r=10,h=10,$fn=360);
scale([1,1,1.25])translate([10,30,0])rotate([90,0,0])cylinder(r=16,h=20,$fn=360);
}
difference(){
cube([20,40,20]);
union(... | glb/cad_f0625e512699.glb |
Create a Z-axis stabilizer brace consisting of two base components and two top components. For the bases, create a rectangular block 40mm wide, 20mm deep, and 20mm high. Remove a rectangular section from the center measuring 41mm by 8mm by 13mm. Add two cylindrical holes with a radius of 3.5mm and a height of 20mm, ang... | rotate([-90,0,0])
difference(){
union(){
translate([0,-10,17])rotate([-24.37,0,0])cube([40,20,10]);
difference(){
cube([40,20,20]);
translate([-0.001,-0.001,-0.001])cube([41,8,13]);
}}
union(){
translate([20,-2,12])rotate([-24.37,0,0])cylinder(r=3.5,h=20,$fn=360);
translate([20,-3,12])rotate([-24.37,0,0])cylind... | glb/cad_65f75531803f.glb |
Create a Mug Cradle by starting with a solid rectangular block measuring 89mm wide, 100mm deep, and 70mm high. From this base, remove several geometric sections to create the cradle. First, carve out a large vertical cylinder with a diameter of 80mm, centered at X=55 and Y=101, extending from Z=80 down through the bloc... | difference(){
cube([89,100,70]);
translate([55,101,80]){
rotate([90,0,0]){
cylinder(h=102,d=80,$fn=200);
}
}
translate([46,14,-10]){
cube([18,72,100]);
}
translate([80,-1,51]){
cube([10,102,10]);
}
difference(){
translate([14,-1,55]){
... | glb/cad_787fc1bb2a5b.glb |
Create a nose clip for a face mask by constructing a hollowed-out shell based on a specific geometric hull. First, create a solid outer form by taking the convex hull of a 20mm diameter circle at the base, another 20mm diameter circle positioned 15mm above it and offset by -1.75mm on the Y-axis, and a centered rectangu... | difference(){
hull(){
color("yellow") linear_extrude(height=1) circle(d=20, $fn=48);
color("red") translate([0,-1.75,15]) linear_extrude(height=1) circle(d=20, $fn=48);
color("lightblue") translate([0,9.5,8]) cube([25,1,16], center=true);
}
hull(){
color("yellow") translate([0,0,-0.1]) linear_extrude(height=... | glb/cad_6884ab66a6d5.glb |
Create a nose clip for a face mask. Start by constructing the main body as a hollowed shell. The outer boundary is formed by the convex hull of a 20mm diameter circle at the base, another 20mm diameter circle positioned 15mm away along the Y-axis and 15mm up the Z-axis, and a centered rectangular block measuring 25mm b... | difference(){
hull(){
color("yellow") linear_extrude(height=1) circle(d=20, $fn=48);
color("red") translate([0,-1.75,15]) linear_extrude(height=1) circle(d=20, $fn=48);
color("lightblue") translate([0,8,8]) cube([25,1,16], center=true);
}
hull(){
color("yellow") translate([0,0,-0.1]) linear_extrude(height=1)... | glb/cad_f3b4b8296f0e.glb |
Create a thick toilet paper spindle consisting of two symmetrical, interlocking hollow cylindrical halves. Each half is a 90-degree rotated extrusion of a specific profile.
The outer half has an outer diameter of 38.1mm. Its profile includes a main body that transitions into a shoulder with a diameter of 17mm and a le... | p_clearance = 0.2;
p_hook_depth = p_clearance + 0.9;
p_slope = 1.0;
p_outer_diameter = 38.1;
p_shoulder_diameter = 17;
p_shoulder_length = 5;
p_max_barrel_length = 128;
p_min_barrel_length = p_max_barrel_length - 10;
p_spring_rest_length = 77;
p_spring_diameter = 19 + p_clearance;
p_wall_thick = 0.8;
p_tab_length = 4;... | glb/cad_3c289f7e1871.glb |
Create a horizontal belt phone case. Start by constructing the main body as a rounded rectangular shell with external dimensions of 164mm in length, 15mm in width, and 63mm in height, with a wall thickness of 1mm. The bottom of the shell should feature a cutout 20mm wide and 10mm deep to allow for easy device insertion... | $fn= $preview ? 16:64;
wall=1;
phone=[154+5,10+5,77-15];
total=phone+[2*wall,2*wall,wall];
bottomCut=[20,0,10];
belt=[30,5,40+5];
beltShift=[0,0,-2];
springL=50;
springW=5;
coverH=40;
f=3;
f2=1;
f3=10;
inf=100;
not=0.001;
d(){
u(){
t([0,-wall,-wall-not]) cubeRounded(phone+[2*wall,2*wall,wall],center=[1,0,0],... | glb/cad_5fd137431306.glb |
Create a toothbrush and razor holder designed for wall mounting. The main body is a flat backplate with a thickness of 6mm and a total width of 20mm. From this backplate, extend a front face that is 110mm high and 22mm wide, creating a shallow pocket.
Within this front face, create two identical vertical slots to hold... | slot_count = 2;
holding_diameter = 18;
holding_height = 110;
object_clearance_diameter = 50;
rounding_radius = 3;
extra_width = 1;
epsilon = 0.01;
reinforcement_d = 0.4;
insertion_hole_d = holding_diameter;
insertion_height = holding_height;
clearance_d = max(object_clearance_diameter, holding_diameter + roundin... | glb/cad_39ead837bb68.glb |
Create a battery terminal cover with a wall thickness of 1.29mm. The main body is a hollow U-shaped shell with an interior width of 65mm, an interior length of 45mm, and an interior height of 20mm. The shell should have rounded corners with a radius of 1mm.
The top of the cover features a recessed lip that extends 4mm... | inside_width = 65;
inside_length = 45;
inside_height = 20;
wiring_height = 10;
terminal_edge = 4;
terminal_inner = 15;
strap_slot_width = 23;
strap_slot_height = 4;
cover_thickness = 1.29;
epsilon = 0.01;
outer_width = inside_width + cover_thickness * 2;
preview_tab = "";
actual_inside_length = max(inside_len... | glb/cad_6614f6c4d4b8.glb |
Create a hex key holder by designing a solid block that forms a hull around six vertical cylindrical holes. The overall height of the block is 15mm. The six holes are arranged in a linear row with a 1mm gap between them. Each hole is a hexagonal socket designed for a specific metric key size: one 3mm, two 2.5mm, one 2m... | $fs = 0.5;
unit = 1;
sizes = [3, 2.5, 2.5, 2, 1.5, 1.5];
slack = 0.2;
cd_ratio = 1.13;
spacing = 1;
wall = 1.5;
height = 15;
$e = 0.01;
module holes(index = 0, extra = 0, h = height) {
if (index < len(sizes)) {
radius = sizes[index] * cd_ratio * unit / 2;
rotate(360 / 12)
cylinder(r = radius + extra... | glb/cad_6e8bf10ab9ce.glb |
Create a 3.5 mm to BNC connector adapter housing consisting of two symmetrical halves. Each half is a solid block with a hollowed-out interior to accommodate two specific connectors and a central wiring space.
First, create a cylindrical cutout for a BNC connector. This cutout consists of a main bore with a diameter o... | wall_thickness = 0.9;
connection_space = 5;
epsilon = 0.01;
printable();
module printable() {
rotate([90, 0, 0]) {
design();
translate([20, 0, 0]) design();
}
}
module design() {
connector_adapter_box(bnc_space, trs_space) {
bnc_112420_neg();
trs_neg();
}
%posit... | glb/cad_ff963a1090bf.glb |
Create a watch crown for a Casio MDA-100. Start by defining a cross-sectional profile consisting of a rectangle 1.8mm wide by 3.5mm high, with an additional rectangle of 4.7mm by 0.8mm attached to the top side, shifted to create a stepped shoulder. Rotate this profile 360 degrees around a central axis to create a ring ... | $fs = 0.1;
$fa = 1;
module hexagon(l) {
circle(d=l, $fn=6);
}
module base(){
difference(){
union(){
square([1.8,3.5]);
translate([0,2.7])
square([4.7,0.8]);
}
rotate([0,0,45])translate([1.55,2.15,0])square([2.5,2]);
}
}
module couronne_simple(... | glb/cad_9b42df12667a.glb |
Create a Microcassette case consisting of two symmetrical halves that hinge together to enclose a cavity of 51mm x 35mm x 8.8mm. Each half should have a wall thickness of 1mm.
For the base half, create a rectangular shell with the interior dimensions mentioned. Along one long edge, integrate a hinge axis using a cylin... | interior_dimensions = [51, 35, 8.8];
reel_position = [10.5, -1.5];
reel_pin_diameter = 8;
pocket_depth = 12;
wall_thickness = 1;
cover_gap = 0.3;
hinge_plate_gap = 0.2;
hinge_diameter = 3;
hinge_nub_thickness = 1.0;
latch_diameter = 2;
latch_nub_thickness = 0.65;
latch_preload_offset = 0.8;
outer_chamfer = 0.4;
eps... | glb/cad_8ef59b9bdaa7.glb |
Create a coordinate system die by starting with a 20mm cube. Bevel all twelve edges with a 1mm chamfer. On each pair of opposite faces, add centered text labels 1.6mm deep that indicate the axis and direction (X, -X, Y, -Y, Z, and -Z). The text should have a font size of 8mm.
To define the axes, add a 2mm wide square... | part = "preview";
cube_size = 20;
left_handed = false;
axis_thickness = 2;
text_thickness = 1.6;
bevel_size = 1;
epsilon = 0.01;
if (part == "preview") preview();
else if (part == "n") neutral();
else if (part == "x") x_features();
else if (part == "y") y_features();
else if (part == "z") z_features();
module previ... | glb/cad_3e96fe25aa84.glb |
Create a lattice night light shade. Start with a hollow cylinder that has an outer radius of 16mm, an inner radius of 15.2mm, and a total height of 73.6mm. The cylinder should be open at the top.
At the base, create a mounting ring with a thickness of 1.6mm. This ring should have a central circular cutout with a diame... | mount_diameter = 18;
mount_straight_before_clip = 5.29;
clip_nub = 1;
mount_thick = 1.6;
socket_height = 19;
center_to_wall = 16;
inside_height = 72;
clear_wall = 0.8;
epsilon = 0.01;
$fn = 240;
center_to_wall_interior = center_to_wall - clear_wall;
mount_radius = mount_diameter / 2;
y_position_of_entrance_sides = c... | glb/cad_8efd5246024d.glb |
Create a replacement trigger for an automatic drink dispenser. Start with a main rectangular block that is 20mm wide, 15mm long, and 5mm high. From this block, remove two rectangular slots for springs: one on the left side and one on the right side. Each slot should be 2mm wide and 10mm long, extending through the full... | module __Customizer_Limit__ () {}
include <drink-dispenser-switch-param.txt>;
production = 1;
pnghq = 0;
$resolution = (production && !$preview) ? 150 : (pnghq ? 150 : 25);
if (production && !$preview) {
echo("Producing PRODUCTION quality");
echo("Resolution",$resolution);
} else {
echo("Producing DRAFT quali... | glb/cad_3836937f2307.glb |
Create a razor chamfer tool by starting with a central cube measuring 50mm on all sides. Rotate this cube 45 degrees along the X-axis. From this rotated body, remove a central rectangular volume measuring 25mm wide, 150mm long, and 25mm high to create a deep cutout. Additionally, remove a thin slice from the bottom of ... | wide = 50;
hole_height = 8.5;
m2_insert_d = 3;
m2_insert_blind_hole_depth = 5;
cut_angle = 45;
$fn=50;
razor();
difference(){
body();
cutout();
translate([0, 0, -2*wide + wide/6])
cube(4*wide, center=true);
translate([0, (2*wide + wide * sqrt(2) / 4), 0])
cube(4*wide, center=true);
}
modul... | glb/cad_900663f9d9d3.glb |
Create a Batman logo fridge magnet with a total thickness of 4mm. The main body is a stylized bat silhouette created by combining a central oval and several intersecting elliptical arcs to form the wings and head. The top edge is flat, and the overall shape is scaled to be symmetrical.
The silhouette is defined by a c... | module __Customizer_Limit__ () {}
include <batman-param.txt>;
production = 1;
pnghq = 0;
$resolution = (production && !$preview) ? 150 : (pnghq ? 150 : 25);
if (production && !$preview) {
echo("Producing PRODUCTION quality");
echo("Resolution",$resolution);
} else {
echo("Producing DRAFT quality");
... | glb/cad_6281ae70538b.glb |
Create a Raspi printserver adapter for an HP MIO slot. Start with a base plate 154mm wide, 26mm deep, and 10mm thick. At the front center, create a rectangular cutout 153mm wide and 14mm high, leaving a face plate. Add two 3.7mm diameter holes centered 71.15mm from the midline on each side, passing through the face pla... | $fn=99;
difference(){
union(){
difference(){
translate([0,-2,-1])cube([152,29+4,10],center=true);
translate([0,-16.9,1.5])cube([153,14,10],center=true);
translate([0,0,1.5]) cube([154,26,10],center=true);
translate([70,0,1.5]) cube([13,30,10],center=true);
translate([-70,0,1.5]) cube([13,30,10],cen... | glb/cad_00810da60bae.glb |
Create a compartment tray with overall dimensions of 159.6mm in width, 104.6mm in depth, and 43mm in height. Start with a solid rectangular block of these dimensions. To create the compartments, remove three rectangular sections from the top, each with a width of 51.2mm and a depth of 101.6mm, leaving a wall thickness ... | width=159.6;
height=43;
depth=104.6;
wallsx=1.5;
wallsy=1.5;
compx=3;
compy=1;
cwidth=((width-wallsx)/compx)-wallsx*1;
cdepth=((depth)/compy);
difference(){
cube([width,depth,height]);
for(a=[0:1:compx-1]){
translate([wallsx+(wallsx*a)+a*cwidth,wallsx,wallsx])
cube([cwidth,depth-(wallsx*2),height]);
}
}
for(a=[0:1:c... | glb/cad_54ea97e5610b.glb |
Create a Raspberry Pi 4 B+ case consisting of a bottom tray and a snap-on top cover. The main internal cavity is sized for a PCB of 85mm by 56mm.
For the bottom part, create a rectangular base with a wall thickness of 1.2mm and rounded corners of 1.2mm. Add four cylindrical mounting pedestals at the PCB mount position... | part = "all";
have_plugrow = 1;
have_open_plugrow = 0;
have_camera = 0;
have_sdcard_support = 1;
have_leds = 1;
mil2mm = 0.0254;
pcb = [85.0, 56.0, 1.5];
pcb2floor = 4.0;
pcb2roof = 17.0;
pcbmntdia = 2.75;
pcbmnt1dx = pcb[0]/2 - 3.5;
pcbmnt1dy = 3.5 - pcb[1]/2;
pcbmnt2dx = pcb[0]/2 - 3.5 - 58.0;
pcbmnt2dy = pcb[1]/... | glb/cad_10ec1d042387.glb |
Create a Pillow Cuddle Arc consisting of a semi-circular curved wall connected to two solid cylindrical pillars. Start by creating a semi-circular shell with an inner radius of 80mm and an outer radius of 86mm, giving the wall a thickness of 6mm. Extrude this semi-circular arc vertically to a height of 10mm. At each en... | $fn=300;
rad = 160/2;
rod_width=15;
rod_size=110;
width=6;
include <textManipulation.scad>
module arc(radius, thick, angle){
intersection(){
union(){
rights = floor(angle/90);
remain = angle-rights*90;
if(angle > 90){
for(i = [0:rights-1]){
rotate(i*90-(rights-1)*90/2){
polygon([[0, 0],... | glb/cad_a9d50d1fb4e9.glb |
Create a Raspberry Pi 3 A+ protective case consisting of a bottom base and a top cover.
For the bottom base, create a rounded rectangular shell with a wall thickness of 1.2mm and corner radii of 1.2mm. The internal cavity should accommodate a PCB of 65mm by 56mm. At the four corners of the interior floor, add cylindr... | part = "all";
have_plugrow = 0;
have_open_plugrow = 0;
have_camera = 0;
have_sdcard_support = 1;
have_leds = 1;
mil2mm = 0.0254;
pcb = [65.0, 56.0, 1.5];
pcb2floor = 4.0;
pcb2roof = 12.0;
pcbmntdia = 2.75;
pcbmnt1dx = pcb[0]/2 - 3.5;
pcbmnt1dy = 3.5 - pcb[1]/2;
pcbmnt2dx = pcb[0]/2 - 3.5 - 58.0;
pcbmnt2dy = pcb[1]/... | glb/cad_8197e19cc601.glb |
Create a protective case for a Raspberry Pi Model B with an integrated prototype board hat. The case consists of a bottom shell and a top cover.
Construct the bottom shell as a hollow rectangular box with external dimensions of approximately 90mm by 62mm and a wall thickness of 1.2mm. The interior should accommodate a... | part = "top";
have_plugrow = 1;
have_open_plugrow = 0;
have_camera = 0;
have_sdcard_support = 1;
have_leds = 0;
is_rev_b = 1;
pin_count = 2;
mil2mm = 0.0254;
pcb = [85.0, 56.0, 1.5];
pcb2floor = 4.0;
pcb2roof = 29.0;
pcbmnt2dia = 2.75;
pcbmnt2dx = 59.5 - pcb[0]/2;
pcbmnt2dy = pcb[1]/2 - 17.8;
pcbmnt3dx = 4.8 - pcb[... | glb/cad_93d0787b95c0.glb |
Create four identical pi-plate-clips arranged in a horizontal row with 1.5mm of space between each. Each clip is a 3D solid with a height of 4mm.
The main body of each clip is a rounded rectangle with a corner radius of 1.5mm. The total width of the body is 5.4mm (the sum of a 2.1mm inset depth and 3.3mm horizontal p... | rows = 1;
cols = 4;
cutter_diameter = 0.25;
pi_pcb_thickness = 1.41 - cutter_diameter;
plate_pcb_thickness = 1.64 - cutter_diameter;
board_space = 16.6;
inset_depth = 2.1;
vertical_padding = 3.3;
horizontal_padding = 3.3;
corner_radius = 1.5;
space_between_clips = 1.5;
$fn = 96;
module rounded_rect(w, h, corn... | glb/cad_f35e814e1911.glb |
Create a Case for SolidRun HummingBoard consisting of a bottom tray and a top cover.
For the bottom tray, create a rectangular box with a base of 85mm by 56mm and a total height of 23mm. The walls should be 1.2mm thick with 1.2mm rounded corners. Inside the tray, leave a central cavity for the PCB, but add four cylin... | part = "all";
have_plugrow = 1;
have_open_plugrow = 0;
have_camera = 0;
have_camera_cable = 0;
have_sdcard_support = 0;
have_leds = 1;
is_rev_b = 1;
mil2mm = 0.0254;
pcb = [85.0, 56.0, 5.5];
pcb2floor = 4.0;
pcb2roof = 23.0;
pcbmnt2dia = 2.75;
pcbmnt2dx = 59.5 - pcb[0]/2;
pcbmnt2dy = pcb[1]/2 - 17.8;
pcbmnt3dx = 4.... | glb/cad_88f08df45bd9.glb |
Create an RC servo connector retaining clip by starting with a main rectangular housing block measuring 32mm in length, 6.5mm in width, and 13mm in height. Centered within this block, remove a volume created by the convex hull of two smaller boxes: one measuring 25mm by 5mm by 11mm and another measuring 30mm by 1.5mm b... | translate([0,20,0])v2();
module v2(){
difference(){
cube([32,6.5,13],center=true);
hull(){
cube([25,5,11],center=true);
cube([30,1.5,6],center=true);
}
translate([0,0,1.5])cube([39,1.5,11],center=true);
hull(){
translate([0,0,5])cube([29,3,8],center=true);
translate... | glb/cad_e0ce042dc9cd.glb |
Create two battery compartment lids of different sizes. For the large lid, start with a base plate measuring 138.5mm by 37.5mm with a thickness of 2mm. Centered on the top surface, add a rectangular block measuring 13mm by 3mm by 7mm, and atop that, place a 20-sided prism cylinder with a 3mm diameter and 13mm length, o... | lidbig();
translate([0,50,0])lidsmall();
module lidsmall(){
difference(){
union(){
cube([66.5,37.5,2],center=true);
translate([0,18,1.5])cube([15.5,6,1.5],center=true);
translate([0,-17,3])cube([13,3,7],center=true);
translate([0,-17,6.5])rotate([0,90,0])
... | glb/cad_791b2e3dc87c.glb |
Create a replacement EURO-BOX face plate by designing a rectangular slab with rounded corners. The main body should be a centered plate with a total width of 89.5mm and a total depth of 42.2mm, and a thickness of 1mm. To achieve the rounded edges, apply a corner radius of 7.5mm to all four corners. Ensure the final geo... | $gap=15;
$fn=99;
front();
module front(){
difference(){
minkowski(){
translate([0,0,0]) cube([89.5-15,42.2-15,1],center=true);
cylinder(r=7.5,h=1);
}
}
} | glb/cad_c0c19b35e607.glb |
Create a mounting plate for a PiCorePlayer. Start with a base rectangular plate measuring 74.5mm by 27.2mm with a thickness of 1mm, ensuring all four corners are rounded with a radius of 7.5mm.
On the top surface of this plate, incorporate several cutouts and protrusions. Center a rectangular hole measuring 13.2mm by... | $gap=15;
$fn=99;
back();
font = "Liberation Sans:style=Bold Italic";
module front(){
difference(){
minkowski(){
translate([0,0,0]) cube([89.5-15,42.2-15,1],center=true);
cylinder(r=7.5,h=1);
}
translate([-27.6,-6,0]) cylinder(d=3.2,h=5,center=true);
translate([-38.5,3,0.4]) rotate([180... | glb/cad_ea46ef53a1d1.glb |
Create a PiCorePlayer face and mounting plate consisting of two separate panels.
First, create a front face plate. Start with a rectangular base measuring 74.5mm by 27.2mm with a thickness of 1mm, adding rounded corners with a radius of 7.5mm. Center a circular hole with a 3.2mm diameter through the plate at coordina... | $gap=15;
$fn=99;
translate([0,50,0])front();
back();
font = "Liberation Sans:style=Bold Italic";
module front(){
difference(){
minkowski(){
translate([0,0,0]) cube([89.5-15,42.2-15,1],center=true);
cylinder(r=7.5,h=1);
}
translate([-27.6,-6,0]) cylinder(d=3.2,h=5,center=true);
translate... | glb/cad_66960fa45d23.glb |
Create a mounting plate for a PiCorePlayer. Start with a rectangular base measuring 95mm by 66mm with a thickness of 1.5mm, centered on the origin.
Within this base, create six vertical cylindrical holes with a diameter of 6mm and a height of 15mm. Position these holes at the following coordinates: (37.7, 16, 0), (-1... | module mount(){
difference(){
union(){
cube([95,66,1.5],center=true);
{
translate([85/2-4.8,56/2-12.4,0]) cylinder (5,d=6,$fn=36) ;
translate([-(85/2-25.6),-(56/2-18),0]) cylinder (5,d=6,$fn=36) ;
translate([85/2-4.8,-(56/2-10),0]) cyl... | glb/cad_6d1619436fd9.glb |
Create a mounting plate for a PiCorePlayer. Start with a base plate that is a rounded rectangle with overall dimensions of 74.5mm by 27.2mm and a thickness of 5mm. The corners should have a radius of 7.5mm.
On the top surface of this plate, create two circular holes with a diameter of 8mm. Position the first hole at x... | $gap=15;
$fn=99;
back();
font = "Liberation Sans:style=Bold Italic";
module front(){
difference(){
minkowski(){
translate([0,0,0]) cube([89.5-15,42.2-15,1],center=true);
cylinder(r=7.5,h=1);
}
translate([-27.6,-6,0]) cylinder(d=3.2,h=5,center=true);
translate([-38.5,3,0.4]) rotate([180... | glb/cad_32e2e179c85b.glb |
Create a hex nut test print plate by starting with a central rectangular slab measuring 80mm wide, 30mm deep, and 2mm thick. Along the center line of the plate, create seven hexagonal holes, each with a height of 6mm. These hexagons should be spaced 10mm apart, starting from -30mm and ending at 30mm relative to the cen... | difference(){
translate([0,0,1.5]) cube([80,30,2],center=true);
translate([-30,0,0]) rotate([0,0,30]) cylinder(6,d=6.1,center=true,$fn=6);
translate([-20,0,0]) rotate([0,0,30]) cylinder(6,d=6.2,center=true,$fn=6);
translate([-10,0,0]) rotate([0,0,30]) cylinder(6,d=6.3,center=true,$fn=6);
translate([... | glb/cad_8aad1f7de16d.glb |
Create a hex nut test plate by starting with a central rectangular slab measuring 80mm wide, 30mm deep, and 3mm thick. Along the center line of the slab, create a series of seven hexagonal holes, each 6mm deep. These hexagons must be oriented with a 30-degree rotation and spaced 10mm apart, starting from -30mm and endi... | difference(){
translate([0,0,1.5]) cube([80,30,2],center=true);
translate([-30,0,0]) rotate([0,0,30]) cylinder(6,d=7.7,center=true,$fn=6);
translate([-20,0,0]) rotate([0,0,30]) cylinder(6,d=7.8,center=true,$fn=6);
translate([-10,0,0]) rotate([0,0,30]) cylinder(6,d=7.9,center=true,$fn=6);
translate([... | glb/cad_858a188c6333.glb |
Create a clothes line adapter consisting of a flat base and two raised arms. Start with a base plate that is 3.5mm thick. On this base, create two symmetrical circular protrusions, each 20mm in diameter, centered 28mm apart along a horizontal axis.
Within each 20mm circle, center a 6mm diameter hole. To form the arms... | body($fn = 48);
module body() {
linear_extrude(height = 3.5)
body_shape(false);
linear_extrude(height = 2.3)
body_shape(true);
}
module body_shape(combined = false) {
translate([14, 36])
difference() {
circle(d = 20);
circle(d = 6);
translate([-30, -15])
square([30, 30]);
rotate(-80)
tran... | glb/cad_1de55ae3d621.glb |
Create a TT Motor Wheel with an overall diameter of 50mm and a thickness of 10mm. The outer edge of the wheel should be a zigzag pattern consisting of 60 teeth, alternating between the outer radius of 25mm and an inner radius of 24.5mm.
The interior of the wheel is mostly hollow, defined by a circular cutout with a ra... | $fa = 1;
$fs = 0.4;
wheel_od = 50;
rim_thickness = 2;
tooth_depth = 0.5;
points = 60;
hubradius = 4.2;
wheelwidth = 10;
spokes = 5;
spokewidth = 1.2;
shaftoffset = 1.2;
shaftlength = 7.5;
shaftwasher = 0.6;
shaft_diam = 5.4;
solid_diam = 3.7;
tolerance = 0.3;
wheel_outer_radius = wheel_od/2;
rimradius = wheel_oute... | glb/cad_2ea8676482f8.glb |
Create a Gameboy Cartridge Micro consisting of two interlocking halves: a bottom base and a top cover.
For the bottom half, create a rectangular base 57mm wide, 34.4mm deep, and 1.4mm high. Add a central screw tab at y=31mm with a radius of 3mm and a height of 1mm, featuring a vertical passthrough hole with a 1.1mm ra... | include <BOSL/shapes.scad>
$fa = 1;
$fs = .2;
ff = 0.001;
width = 57;
depth = 34.4;
top();
translate([0, 40, 0]) bottom();
bottom_far_wall_thickness = 1.2;
bottom_handle_width = 1.5;
bottom_height = 1.4;
bottom_side_thickness = 2;
bottom_wall_height = 4.3;
far_wall_tab_depth = 1;
far_wall_tab_width = 1;
far_wall_t... | glb/cad_58970287ddac.glb |
Create a Gameboy Cartridge Mini consisting of two interlocking halves.
For the bottom half, create a base 57mm wide by 52.1mm deep with a height of 1.4mm. Add a central ridge 50mm wide and 0.2mm high. Position a screw post with a 3.5mm radius at y=17mm and an alignment post with a 0.9mm radius at y=41.9mm. Construct ... | include <BOSL/shapes.scad>
$fa = 1;
$fs = 0.1;
ff = 0.001;
width = 57;
depth = 52.1;
translate([-width/2 - 1, 0, 0]) top();
translate([width/2 + 1, 0, 0]) bottom();
alignment_post_height = 2;
alignment_post_r = 0.9;
alignment_post_y = 41.9;
bottom_base_height = 1.4;
bottom_wall_height = 4.3;
bottom_wall_thickness ... | glb/cad_bcfdc7d8d9bb.glb |
Create a Roller Blind Window Clip consisting of two mirrored parts. For each part, start with a main rectangular block measuring 6.3mm by 51.6mm by 23.8mm. From this block, remove a large cylinder with a 42mm diameter and 20mm height, centered at coordinates (25, 18) relative to the block's origin.
Add a rectangular e... | module right() {
difference() {
union(){
difference(){
cube([6.30,51.6,23.8]);
translate([25,18,7.5])
cylinder(d=42,h=20, $fn=100);
}
translate([-20+6.30-4.5,51.6,0])
cube([20+4.5,6.30,23.8]);
tran... | glb/cad_ca2516d837f3.glb |
Create a Gameboy Cartridge shell consisting of a top and bottom half.
For the bottom half, create a base 57mm wide by 64.8mm deep with a height of 1.4mm. Add two side walls 1.8mm thick and 4.3mm high. The right wall should feature a rectangular cutout (lock) 1mm wide, 3mm deep, and 3mm high, with a secondary travel e... | include <BOSL/shapes.scad>
$fa = 1;
$fs = .1;
ff = 0.001;
width = 57;
depth = 64.8;
classic = true;
translate([-width/2 - 1, 0, 0]) top();
translate([width/2 + 1, 0, 0]) bottom();
alignment_post_height = 2;
alignment_post_r = 0.9;
alignment_post_y = 41.9;
bottom_base_height = 1.4;
bottom_wall_thickness = 1.8;
bot... | glb/cad_4b470701b4c2.glb |
Create a pill smasher consisting of two separate parts: a hollow bucket and a matching bolt. To construct the bucket, create a solid cylinder with a diameter of 36mm and a total height of 30mm. Hollow out the center by removing a cylinder with a diameter of 26mm that runs through the entire height. To create the tapere... | bucket();
translate([40,0,15])bolt();
module bucket(){
union(){
difference(){
union(){
translate([0,0,23.75]) cylinder(2.5,d1=36,d2=31,center=true,$fn=99);
translate([0,0,7.5]) cylinder(30,d=36,center=true,$fn=99);
translate([0,0,-8.75]) cylinder(... | glb/cad_7d14920b5b2f.glb |
Subsets and Splits
No community queries yet
The top public SQL queries from the community will appear here once available.