Prompt stringlengths 96 2.17k | Code stringlengths 27 249k | 3d_glb stringlengths 24 24 |
|---|---|---|
Create a Nema17 to 8mm threaded rod adapter. Start with a main cylinder 30mm high with a diameter of 20mm. Remove a rectangular slot 1mm wide and 30mm long from the center of the cylinder, running the full height of the part.
Create a central vertical hole through the entire height of the cylinder, consisting of two s... | translate([0,0,0])
difference()
{
cylinder(h=30, d=20, $fn=100);
translate([-10,-0.5,0])
cube([20,1,30]);
translate([0,0,0])
cylinder(d=5, h=15.1, $fn=100);
translate([0,0,15])
cylinder(d=8, h=15.1, $fn=100);
translate([6,10,25])
rotate([90,0,0])
cylinder(d=3.5, h=20, $fn=100);
translate([6,10,5])
rotate(... | glb/cad_f3fd833d3e79.glb |
Create a toolholder carriage consisting of a rectangular base and a vertical bearing holder. Start with a rectangular base measuring 30mm by 40mm with a thickness of 3mm. In this base, create a central circular hole with a diameter of 18mm. Additionally, place four small circular mounting holes, each 3mm in diameter, l... | translate([0,0,0])
difference()
{
cube([30,40,3]);
translate([15,20,0])
cylinder(h=3, d=18, $fn=100);
translate([5,5,0])
cylinder(h=3, d=3, $fn=100);
translate([5,35,0])
cylinder(h=3, d=3, $fn=100);
translate([15,5,0])
cylinder(h=3, d=3, $fn=100);
translate([15,35,0])
cylinder(h=3, d=3, $fn=100);... | glb/cad_ececcc357d6f.glb |
Create a Dual 8mm Rod Holder with Endstop Holder. Start with a central rectangular base measuring 70mm in length, 15mm in width, and 3mm in height. At each end of this base, center a cylinder with a diameter of 19mm and a height of 3mm. Drill a 4mm diameter hole vertically through the center of each of these end cylind... | translate([0,0,0])
difference()
{
cylinder(h=3, d=19, $fn=100);
cylinder(h=3, d=4, $fn=100);
}
translate([5,-7.5,0])
cube([70,15,3]);
translate([80,0,0])
difference()
{
cylinder(h=3, d=19, $fn=100);
cylinder(h=3, d=4, $fn=100);
}
translate([15,7.5,7.5])
rotate([90,0,0])
difference()
{
cylinder(h=15, d=15... | glb/cad_0214bc8c4d9a.glb |
Create a Dual 8mm Rod Holder with Endstop Holder. Start with a central rectangular base measuring 70mm in length, 15mm in width, and 3mm in height. At each end of this base, center a cylindrical mounting disk with a diameter of 19mm and a height of 3mm; bore a 4mm diameter hole through the center of each disk.
Along ... | translate([0,0,0])
difference()
{
cylinder(h=3, d=19, $fn=100);
cylinder(h=3, d=4, $fn=100);
}
translate([5,-7.5,0])
cube([70,15,3]);
translate([80,0,0])
difference()
{
cylinder(h=3, d=19, $fn=100);
cylinder(h=3, d=4, $fn=100);
}
translate([15,7.5,7.5])
rotate([90,0,0])
difference()
{
cylinder(h=15, d=15... | glb/cad_d21ab73dcfb6.glb |
Create a Cable Clip for a 19x19x1.5mm frame by starting with a solid rectangular block measuring 22.5mm in width, 25mm in depth, and 10mm in height. Carve out a central rectangular void measuring 19.5mm wide by 20mm deep and 10mm high, positioned 1.5mm from the front and side edges. To complete the clip, remove two add... | translate([0,0,0])
rotate([0,0,0])
difference()
{
cube([22.5,25,10]);
translate([1.5,1.5,0])
cube([19.5,20,10]);
translate([3.5,21,0])
cube([16,2.5,10]);
translate([3.5,0,0])
cube([16,1.5,10]);
} | glb/cad_84af2767d8e9.glb |
Create a cable clip for a 19x19x1.5mm frame by starting with a solid rectangular block measuring 22.5mm in width, 25mm in depth, and 10mm in height. Carve out a central rectangular void measuring 19.5mm wide by 20mm deep and 10mm high, positioned 1.5mm from the front and side edges. To create the opening for the cable,... | translate([0,0,0])
rotate([0,0,0])
difference()
{
cube([22.5,25,10]);
translate([1.5,1.5,0])
cube([19.5,20,10]);
translate([3.5,21,0])
cube([16,2.5,10]);
translate([21,3.5,0])
cube([1.5,16,10]);
} | glb/cad_ad932eab795c.glb |
Create an adjustable display holder for a DG-18080-11 by starting with a solid rectangular base measuring 66mm wide, 96.5mm deep, and 8mm thick. From this base, remove several rectangular sections to create the internal cavities. First, carve out a central area starting 2mm from the left and 6mm from the front, measuri... | translate([0,0,0])
rotate([0,0,0])
difference()
{
cube([66,96.5,8]);
translate([2,6,0])
cube([60,85,7]);
translate([7,13,0])
cube([49,73,8]);
translate([18,90,0])
cube([30,5,7]);
translate([60,90.5,0])
cube([6,6,1]);
translate([60,0,0])
cube([6,6,1]);
} | glb/cad_c138bb074969.glb |
Create an adjustable display holder by starting with a rectangular base measuring 10mm wide, 96.5mm long, and 8mm thick. Carve a central rectangular slot out of the base that is 3.5mm wide, 53mm long, and 8mm deep, positioned 5.5mm from the side edge and starting 22mm from the end. Remove two small rectangular sections... | translate([0,0,0])
rotate([0,0,0])
difference()
{
cube([10,96.5,8]);
translate([5.5,22,0])
cube([3.5,53,8]);
translate([0,13,0])
cube([6,70,3]);
translate([0,81,0])
cube([1.5,7,1]);
translate([6.5,2,0])
cylinder(h=8, d=3, $fn=100);
translate([6.5,94.5,0])
cylinder(h=8, d=3, $fn=100);
}
translat... | glb/cad_a3d696ca3463.glb |
Create an adjustable display holder for a DG-18080-11. Start with a central rectangular base measuring 20mm in length, 15mm in width, and 3mm in height. On each end of this base, center a cylindrical mounting disk with a diameter of 19mm and a height of 3mm. Drill a 4mm diameter hole vertically through the center of ea... | translate([0,0,0])
difference()
{
cylinder(h=3, d=19, $fn=100);
cylinder(h=3, d=4, $fn=100);
}
translate([5,-7.5,0])
cube([20,15,3]);
translate([30,0,0])
difference()
{
cylinder(h=3, d=19, $fn=100);
cylinder(h=3, d=4, $fn=100);
}
translate([7.5,0,9.5])
rotate([90,0,90])
difference()
{
cylinder(h=3, d=12,... | glb/cad_e85ece93f493.glb |
Create a Frame Connector consisting of a central rectangular block with two circular tabs extending from the bottom. The main body is a cube measuring 20mm in width, 20mm in depth, and 20mm in height. Remove a rectangular section from the center of the front face, creating an opening that is 14mm wide and 20mm high, wh... | translate([0,0,0])
difference()
{
cylinder(h=3, d=19, $fn=100);
cylinder(h=3, d=4, $fn=100);
translate([6,-10,0])
cube([19,19,3]);
}
translate([36,0,0])
difference()
{
cylinder(h=3, d=19, $fn=100);
cylinder(h=3, d=4, $fn=100);
translate([-25,-10,0])
cube([19,19,3]);
}
translate([5,-13.5,0])
difference... | glb/cad_cf7e897c55ad.glb |
Create a dual rod holder by starting with a central rectangular block measuring 70mm in length, 15mm in width, and 3mm in height. At each end of this block, center a circular disc with a diameter of 19mm and a thickness of 3mm. Drill a 4mm diameter hole vertically through the center of each end disc. On the top surface... | translate([0,0,0])
difference()
{
cylinder(h=3, d=19, $fn=100);
cylinder(h=3, d=4, $fn=100);
}
translate([5,-7.5,0])
cube([70,15,3]);
translate([80,0,0])
difference()
{
cylinder(h=3, d=19, $fn=100);
cylinder(h=3, d=4, $fn=100);
}
translate([15,7.5,7.5])
rotate([90,0,0])
difference()
{
cylinder(h=15, d=15... | glb/cad_14d3e70508d6.glb |
Create a Simple Endcap by starting with a square base measuring 19mm by 19mm with a height of 2mm. Centered on top of this base, add a second square block measuring 16mm by 16mm with a height of 5mm. Position this upper block so that there is a uniform 1.5mm margin between its edges and the edges of the base on all sid... | translate ([0,0,0]) {
cube([19,19,2]);
}
translate ([1.5,1.5,2])
cube([16,16,5]); | glb/cad_bd9e0a367a0d.glb |
Create a Simple Endstop Holder by starting with a base plate that is 3mm thick. This base consists of a central rectangular block measuring 26mm by 15mm, flanked on both the left and right sides by circular pads with a diameter of 19mm. Each of these circular pads must have a concentric hole drilled through the center ... | translate([0,0,0])
difference()
{
cylinder(h=3, d=19, $fn=100);
cylinder(h=3, d=4, $fn=100);
}
translate([2,-7.5,0])
cube([26,15,3]);
translate([30,0,0])
difference()
{
cylinder(h=3, d=19, $fn=100);
cylinder(h=3, d=4, $fn=100);
}
translate([5.5,-2.5,44])
rotate([270,0,0])
difference()
{
cube([20,44,5]);
... | glb/cad_f39e0052ad5f.glb |
Create a Simple LM8UU-Holder by starting with a central rectangular block measuring 30mm in width, 20mm in depth, and 10mm in height. Carve a 4mm wide slot through the center of the block along its depth, with a depth of 3mm, but leave two 3mm high sections at the front and back edges to create a channel.
At the cent... | translate([0,0,0])
difference()
{
translate([0,-10,0])
cube([30,20,10]);
translate([13,-10,0])
cube([4,20,3]);
translate([13,-10,0])
cube([4,3,20]);
translate([13,7,0])
cube([4,3,20]);
translate([2.5,0,11])
rotate([0,90,0])
cylinder(h=25, d=15, $fn=100);
translate([0,0,11])
rotate([0,90,0])
... | glb/cad_7553746662cf.glb |
Create a Ritter Sport Giftbox by starting with a solid square base measuring 50mm by 50mm with a height of 5mm. From this base, remove three rectangular sections to create a specific open pattern. First, remove a rectangular block 14mm wide, 40mm long, and 5mm deep, positioned 2mm from the left edge and 18mm from the b... | translate([0,0,0])
difference()
{
cube([50,50,5]);
translate([2,18,0])
cube([14,40,5]);
translate([18,2,0])
cube([40,14,5]);
translate([18,18,0])
cube([33,33,5]);
} | glb/cad_decc835ca286.glb |
Create a rod holder by starting with a central rectangular block measuring 20mm in length, 15mm in width, and 3mm in height. On each end of this block, center a cylindrical flange with a diameter of 19mm and a height of 3mm. Drill a 4mm diameter hole vertically through the center of each flange. Across the top of the c... | translate([0,0,0])
difference()
{
cylinder(h=3, d=19, $fn=100);
cylinder(h=3, d=4, $fn=100);
}
translate([5,-7.5,0])
cube([20,15,3]);
translate([30,0,0])
difference()
{
cylinder(h=3, d=19, $fn=100);
cylinder(h=3, d=4, $fn=100);
}
translate([15,7.5,7.5])
rotate([90,0,0])
difference()
{
cylinder(h=15, d=15... | glb/cad_98470e447a1a.glb |
Create a Frame Connector consisting of three distinct cubic sections. First, create a central 19mm cube. Drill a 4mm diameter hole through the center of this cube from the bottom face upward to a height of 16mm, then widen the top 3mm of that hole to a 8mm diameter to create a countersink.
Next, place two smaller 16m... | translate ([0,0,0]) {
difference() {
cube([19,19,19]);
translate([9.5,9.5,0])
cylinder(19,r=2, $fn=100);
translate([9.5,9.5,16])
cylinder(3,r=4, $fn=100);
}
}
translate ([19,1.5,1.5]) {
difference() {
cube([16,16,16]);
translate([8,8,0])
cylinder(19,r=1.5, $fn=100);
}
}
translate ([1.5,19,1.5]) {
... | glb/cad_185cab32b81e.glb |
Create an endcap for a syringe by combining a hollow cylinder and a hollow hemisphere. Start with a cylinder 6mm in diameter and 5mm in height. Remove a concentric cylindrical core from this base with a diameter of 4.5mm to create a thin-walled tube. On top of this cylinder, place a hollow sphere with an outer diameter... | translate([0,0,5])
difference()
{
difference()
{
sphere(d=6, $fn=100);
sphere(d=4.5, $fn=100);
}
translate([-11,-11,-22])
cube(22,22,11);
}
difference()
{
cylinder(h=5, d=6, $fn=100);
translate([0,0,-1])
cylinder(h=6, d=4.5, $fn=100);
} | glb/cad_b31996fd254c.glb |
Create a rectangular base plate measuring 49mm in length, 26mm in width, and 5mm in height. In this base, carve out two cylindrical holes that are each 3mm deep. Position the first hole, which has a radius of 8mm, so its center is at coordinates x=12mm and y=13mm, with the opening starting 2mm above the bottom surface.... | translate ([0,0,0]) {
difference() {
cube([49,26,5]);
translate([12,13,2])
cylinder(r=8, h=3, $fn=50);
translate([35,13,2])
cylinder(r=11, h=3, $fn=50);
}
} | glb/cad_b792e9011466.glb |
Create a liquid stand by starting with a rectangular base measuring 49mm in length, 26mm in width, and 5mm in height. From the top surface of this base, remove two cylindrical holes to create holders. Position the first hole with a radius of 9mm and a depth of 3mm, centered 12mm from the left edge and 13mm from the fro... | translate ([0,0,0]) {
difference() {
cube([49,26,5]);
translate([12,13,2])
cylinder(r=9, h=3, $fn=50);
translate([35,13,2])
cylinder(r=11, h=3, $fn=50);
}
} | glb/cad_294c4ac4c1a3.glb |
Create a Card Cage Holder starting with a rectangular base measuring 30mm wide, 10mm deep, and 5mm high. At each end of the base, centered 5mm from the side edges and 5mm from the front and back, create a vertical hole 3.2mm in diameter that penetrates the full 5mm thickness of the base. Within these holes, create a wi... | translate([0,0,0])
difference(){
cube([30,10,5]);
translate([5,5,0])
cylinder(h=5, r=1.6, $fn=50);
translate([5,5,2])
cylinder(h=3, r=2,5, $fn=50);
translate([25,5,0])
cylinder(h=5, r=1.6, $fn=50);
translate([25,5,2])
cylinder(h=3, r=2,5, $fn=50);
}
difference(){
translate([10,0,05])
cube([10,10,40]);
tra... | glb/cad_bf3cfa7d7566.glb |
Create a Spring Holder for bed leveling consisting of two concentric cylindrical sections with a central hole. First, create a wide, flat base cylinder with a radius of 6mm and a height of 1mm. Centered on top of this base, add a second, smaller cylinder with a radius of 3.5mm and a height of 3mm. Finally, remove a ver... | translate([0,0,0])
difference(){
cylinder(h=1, r=6, $fn=80);
translate([0,0,0])
cylinder(h=1, r=1.6, $fn=80);
}
difference() {
translate([0,0,0])
cylinder(h=3, r=3.5, $fn=80);
translate([0,0,0])
cylinder(h=3, r=1.6, $fn=80);
} | glb/cad_ede835f8b851.glb |
Create an end cap bumper by combining a cylinder and a hemispherical shell. Start with a solid cylinder 10mm high with a radius of 5mm. Create a hollow center by removing a smaller concentric cylinder with a radius of 4mm and a height of 16mm, positioned to leave a 10mm thick wall at the top. Cap the top of the structu... | translate([0,0,10])
difference()
{
difference()
{
sphere(r=5, $fn=80);
sphere(r=4, $fn=80);
}
translate([-11,-11,-22])
cube(22,22,11);
}
difference()
{
cylinder(h=10, r=5, $fn=80);
translate([0,0,-1])
cylinder(h=16, r=4, $fn=80);
} | glb/cad_abc1dff0917e.glb |
Create a display holder for a WINTEK WD-C2704M-1HNN by constructing a base composed of several joined geometric volumes. Start with a rectangular block measuring 4mm by 56mm by 10mm. Attach a second rectangular block measuring 16mm by 15mm by 10mm to the side, and add a cylinder with a radius of 8mm and a height of 10m... | difference() {
union() {
cube([4,56,10]);
translate([8, 15,0]) cylinder(h = 10, r = 8, $fn = 50);
cube([16, 15,10]);
translate([17,6,5]) cube([2,5.75,10], center=true);
translate([17,6,5]) rotate(a=[60,0,0]) cube([2,5.75,10], center=true);
translate([17,6,5]) rotate(a=[120,0,0]) cube([2,5.75,10], center=t... | glb/cad_bf562e4bf00d.glb |
Create a footholder for an EleksMaker A3 by constructing a flat, circular disc with a height of 5mm and an outer radius of 20mm. Remove a concentric cylindrical core from the center with a radius of 12.5mm to create a ring. Within the remaining ring, create four identical vertical holes with a radius of 1.5mm, position... | translate([0,0,0])
rotate([0,0,0])
difference()
{
cylinder (h=5, r=20, $fn=100);
cylinder (h=5, r=12.5, $fn=100);
translate ([16,0,0])
cylinder (h=5, r=1.5, $fn=100);
translate ([-16,0,0])
cylinder (h=5, r=1.5, $fn=100);
translate ([0,1... | glb/cad_b288a7677e52.glb |
Create a case for an ESP8266 sensor. Start by creating a rectangular base measuring 42mm by 62mm with a height of 4mm. Hollow out the center of this base by removing a rectangular block of 40mm by 60mm with a height of 3mm, leaving a 1mm wall thickness around the perimeter.
Cut two rectangular notches into the side w... | translate([0,0,0])
rotate([0,0,0])
difference()
{
cube([42,62,4]);
translate([1,1,1])
cube([40,60,3]);
translate([41,22,2])
cube([2,18,2]);
translate([0,24,3])
cube([1,10,1]);
translate([0,34,2])
cube([1,21,2]);
translate([6,6,0])
cube([30,50,1]);
}
translate([42,21,0])
rotate([0,0,0])
difference... | glb/cad_91c05877f233.glb |
Create a wall mount for an Innokin Disrupter. Start with a rectangular base measuring 10mm wide, 91mm long, and 3mm thick. At the center of the base, add a perpendicular rectangular cross-bar that is 47mm wide, 10mm deep, and 3mm thick, positioned 41mm from the bottom edge. On the ends of this cross-bar, add two small ... | translate([0,0,0])
rotate([0,0,0])
difference()
{
cube([10,91,3]);
translate([5,20,0])
cylinder(h=3, r=1.5, $fn=100);
translate([5,20,1.5])
cylinder(h=1.5, r=3, $fn=100);
translate([5,65,0])
cylinder(h=3, r=1.5, $fn=100);
translate([5,65,1.5])
cylinder(h=1.5, r=3, $fn=100);
}
translate([0,-3,0])
... | glb/cad_0933da0cac96.glb |
Create a Smoke M65 Wallmount by starting with a central rectangular base measuring 10mm wide, 85mm long, and 3mm thick. At each end of this base, add a smaller rectangular block that is 10mm wide, 3mm long, and 8mm thick, positioned so they extend from the sides. Across the center of the assembly, add a perpendicular r... | translate([0,0,0])
rotate([0,0,0])
difference()
{
cube([10,85,3]);
translate([5,20,0])
cylinder(h=3, r=1.5, $fn=100);
translate([5,20,1.5])
cylinder(h=1.5, r=3, $fn=100);
translate([5,65,0])
cylinder(h=3, r=1.5, $fn=100);
translate([5,65,1.5])
cylinder(h=1.5, r=3, $fn=100);
}
translate([0,-3,0])
... | glb/cad_c84454569592.glb |
Create a Plant Clip by designing a flat, 4mm thick geometric ring with a central circular cutout 15mm in diameter and an outer diameter of 21mm. The ring should have a wall thickness of 3mm.
Modify the ring by removing material to create a wide opening on one side, allowing it to snap onto a support. Within the remai... | $fn=128;
t = 6;
stick_d = 8;
plant_d = 15;
linear_extrude(4) {
rotate(-3) translate([0,stick_d/2 + t/2 + plant_d]) stick_clip(stick_d);
rotate(3) translate([0,stick_d/2 + t/2 + plant_d]) scale([-1,1,1]) stick_clip(stick_d);
translate([0,plant_d/2 + 0.5]) difference() {
circle(d=plant_d + t);
circle(d=p... | glb/cad_f3f22ae6e014.glb |
Create a PSU adapter plate by starting with a rectangular block measuring 20mm in length, 10mm in width, and 1mm in height. Apply a corner radius of 2mm to all vertical edges of this block.
On the top face of the plate, create two circular holes, each with a radius of 2mm and a depth of 7mm, centered vertically along... | difference() {
rcorn_cube([20, 10, 1], [2, 5, -5], fn = 30, center = false);
translate([5,5,0]) cylinder (h = 7, r=2, center = true, $fn=100);
translate([15,5,0]) cylinder (h = 7, r=2, center = true, $fn=100);
}
function gz(val) = (val > 0) ? val : 0;
module corner_transl(i, size) {
translate( [(floor(... | glb/cad_92b6c3896fe7.glb |
Create a set of four rectangular spacers, each with a uniform thickness of 2mm. Position the first spacer as a block measuring 47mm by 19mm. Place a second block measuring 18.6mm by 39.5mm, offset from the first. Add a third block measuring 18.6mm by 21mm, positioned 20mm along the X-axis and 30mm along the Y-axis rela... | translate([0,20,0]) cube([18.60,39.5,2]);
translate([20,30,0]) cube([18.60,21,2]);
translate([0,61,0]) cube([31.50,15,2]);
translate([0,0,0]) cube([47,19,2]); | glb/cad_576c18e15edd.glb |
Create a kitchen cabinet shelf stop by constructing a hollow rectangular block. Start with a solid rectangular base that is 24.5mm wide, 40mm deep, and 30mm high. From this base, remove a central rectangular section to create a U-shaped channel. This cutout should be 16.5mm wide, centered along the width, and 40mm deep... | ancho = 24.5;
hondoagarre = 13.5;
hondotope = 30;
alto = 30;
grosor = 4;
difference()
{
union()
{
translate([-ancho/2,-hondotope+grosor,0]) cube([ancho,hondoagarre+hondotope-grosor,alto]);
}
union()
{
translate([-ancho/2+grosor,grosor,-1]) cube([ancho-2*grosor,hondoagarre+hondotope,alto*2]);
}
} | glb/cad_87715f6b91a6.glb |
Create a Raspberry Pi IR camera base for a Misumi 2020 profile. Start by creating a solid rectangular block with a width of 27.25mm, a depth of 62.25mm, and a height of 45mm.
Hollow out the center of this block by removing a smaller rectangular section that leaves walls with a thickness of 3mm on the sides. This inte... | breite = 27.25;
tiefe = 62.25;
hoehe = 45.00;
dicke1 = 3.0;
dicke2 = 3.6;
misumi = 20.00;
misumi_hole = 5.25;
translate([0,0,0]) rotate([0,0,0]) tool_clip();
module tool_clip()
{
difference()
{
union()
{
color("blue") translate([-breite/2,-40,0]) cube([breite,tiefe,hoehe]);
}
union()
... | glb/cad_34b8e0a0e1b0.glb |
Create a Truchet tile by starting with a square base measuring 15mm by 15mm with a height of 2.5mm.
On the top surface of this base, create a raised pattern with a height of 4.5mm. The pattern consists of two concentric semi-circular arcs centered on opposite edges of the square. Each arc should have a thickness of 2... | side = 15;
hTile = 2.5;
hPattern = 4.5;
thickPattern = 2;
magnetType = 2;
hMagnet = 2;
rCylinderMagnet = 3;
horzRectMagnet = 10;
vertRectMagnet = 5;
patternFamily = 7;
$fn = 40;
gap = 5;
draw();
module draw(){
if(patternFamily==0){
drawTile(0, 0, 4);
drawTile(side+gap, 0, 5);
drawTi... | glb/cad_c5cee90d5cdf.glb |
Create a 3D model of an Android Robot figure consisting of a head, body, two arms, two legs, and a base.
Construct the head by combining a sphere with a radius of 35mm, a cylinder with a radius of 31.2mm and height of 12mm at the bottom, and a smaller cylinder with a radius of 31mm and height of 2mm. Add two small cyl... | use <write/Write.scad>
parts_to_render = 2;
Render_Quality = 36;
$fn = Render_Quality;
text_height=10;
text_font = "write/Letters.dxf";
text1 = "Android";
text2 = "OS";
text_shift = 0;
Project_Size = 125;
arm_r = 9*1;
emboss_depth = 3 * 1;
leg_h = 25 * 1;
scale_factor = 156 * 1;
module phex(wid, height, rad)... | glb/cad_c724d822c174.glb |
Create a custom text nameplate by combining a raised text element with a thin rectangular base. First, generate the text "YOUR TEXT HERE" using a bold sans-serif font with a height of 10mm and extrude it to a thickness of 5mm. Position this text atop a rectangular backing plate that is 5mm high in total. The backing pl... | HEIGHT = 5;
SIZE = 10;
MARGIN = 4;
ADJUST = 12;
linear_extrude(HEIGHT)
text("YOUR TEXT HERE", SIZE, font = "Arial:style=Bold" );
translate([-(MARGIN/5), -MARGIN/2,0])
cube([ADJUST*SIZE , SIZE+MARGIN, HEIGHT/3], center=false); | glb/cad_e1607ed6e623.glb |
Create a custom text nameplate that reads "printables.com" using a bold Arial font. Extrude the text to a height of 5mm with a font size of 10mm. To create the backing, add a rectangular base that is 5mm thick in total, but the base layer itself should be a thinner slab with a height of approximately 1.67mm. Position t... | HEIGHT = 5;
SIZE = 10;
MARGIN = 6;
ADJUST = 9.8;
linear_extrude(HEIGHT)
text("printables.com", SIZE, font = "Arial:style=Bold" );
translate([-(MARGIN/5), -MARGIN/2,0])
cube([ADJUST*SIZE , SIZE+MARGIN, HEIGHT/3], center=false); | glb/cad_daa52185e320.glb |
Create a Silicon Wafer Wall Mount by starting with a primary cylinder that has a radius of 103mm and a height of 8mm. From this base, remove a smaller concentric cylinder with a radius of 101mm and a height of 2mm, positioned 3mm from the bottom face. Further hollow out the center by removing a cylinder with a radius o... | $fn=120;
rotate([90,0,0]) {
difference() {
union() {
translate([103,103,0]) cylinder(h=8,r1=103, r2=103);
}
union() {
translate([103,103,3]) #cylinder(h=2,r1=101, r2=101);
translate([103,103,5]) cylinder(h=13,r1=97, r2=97);
translate([0,40,0]) cube([220,166,9])... | glb/cad_1e2984b61da5.glb |
Create a Silicon Wafer Wall Mount by starting with a rectangular base that is 203mm long, 5mm wide, and 3mm thick. At one end of this base, center a cylinder with a radius of 5mm and a height of 3mm. Bore a hole straight through the center of this cylinder with a radius of 2.5mm and a depth of 5mm to create a mounting ... | $fn=120;
rotate([0,0,90]) {
difference() {
union() {
translate([100.5,5.1,0]) cube([5,203,3]);
translate([102.75,212,0]) cylinder(h=3,r1=5,r2=5);
}
union() {
translate([102.75,212,0]) cylinder(h=5,r1=2.5,r2=2.5);
translate([100.5,5,1.5]) cube([5,5.2,1.5]);
... | glb/cad_855858974fb5.glb |
Create a bag tag based on the text "Hello" using a bold, simple font. First, generate the inner text geometry by linearly extruding the word "Hello" at a height of 2.4mm. Next, create a larger outer border by applying an offset of 2.8mm to the text and extruding it to a total height of 2.4mm. From this outer shape, car... | $fn=64;
tstr = "Hello";
font = "Luckiest Guy:style=Regular";
size = 30;
bt = 1.2;
th = 2*bt;
wt = 2.4;
pad= 0.4;
inner=false;
if(inner) {
linear_extrude(height=th) text(tstr, font=font, size=size, halign="center", valign="center");
}
outer=true;
if(outer) {
difference() {
linear_extrude(height=th) offset(wt+pad)... | glb/cad_9b41da9fa893.glb |
Create a 120° Helper tool by starting with a central cylinder 50mm in diameter and 2mm thick. Remove a smaller concentric cylindrical hole from the center with a diameter of 8mm. From the outer edge of this central disk, extend three identical rectangular arms, each measuring 20mm wide and 80mm long, with a thickness o... | linear_extrude(2)
union()
{
for (x=[120,240,360])
rotate(x)
translate([0,15m,0])
square([20,80]);
difference()
{
circle(25);
color("red") circle(4);
};
}; | glb/cad_a4c26ddef90d.glb |
Create a two-part shadowbox designed to house an LED-NIXIE-M clock. The overall outer dimensions of the combined structure are 380mm in length, 64mm in width, and 110mm in height.
Construct the main body as a hollow rectangular shell with a wall thickness of 5mm. The interior cavity should measure 370mm by 59mm by 10... | use <dovetail.scad>;
difference () {
union () {
difference () {
cube ([380,64,110]);
translate ([5,-0.01,5]) {
cube ([370,59,100]);
}
}
translate ([0,0,0]) {
cube ([380,5,30]);
}
}
translate ([0,15,5]) {
... | glb/cad_12e366bb7464.glb |
Create a two-part shadowbox housing for an LED-NIXIE-M clock. The main body is a hollow rectangular shell with outer dimensions of 380mm in length, 64mm in width, and 110mm in height. The walls are 5mm thick.
The shell is split into two symmetrical halves along the length. The bottom half is a U-shaped trough with a ... | use <dovetail.scad>;
difference () {
union () {
difference () {
cube ([380,64,110]);
translate ([5,-0.01,5]) {
cube ([370,59,100]);
}
}
translate ([0,-0,0]) {
cube ([380,5,30]);
}
}
translate ([0,26,5]) {
... | glb/cad_602552e9fb0d.glb |
Create a Parametric Name Tag consisting of a thin rectangular base with rounded corners. The base should be 2mm thick, with a corner rounding radius of 3mm. Add a raised border around the perimeter that is 1mm high and 2mm wide.
On the top surface of the tag, add three lines of embossed text. The top line should be a ... | FontHeight=1;
Greeting=true;
GreetingFontSize=6;
GreetingFont="Arial";
GreetingText="Ahoj, Jmenuji se";
GreetingAlignment="left";
NameFontSize=8;
NameFont="Arial";
NameText="Josef Prusa";
NameAlignment="center";
Extra=true;
ExtraFontSize=6;
ExtraFont="Arial";
ExtraText="CEO Prusa Research";
ExtraAlignment... | glb/cad_e471d5b24b2f.glb |
Create a shadowbox display case for miniature baseball helmets by constructing a grid of six identical compartments arranged in three columns and two rows. Each individual compartment starts as a solid rectangular block measuring 55mm wide, 35mm deep, and 35mm high. Hollow out each block by removing a central rectangul... | for (x = [0:3])
for (y = [0:1])
translate ([(x*50),0,(y*30)]) {
difference () {
cube ([55,35,35]);
translate ([5,-0.01,5]) {
cube ([45,30,25]);
}
}
difference () {
translate ([27.5,15,7]) ... | glb/cad_ca5332dbc637.glb |
Create a Playmobil Tower-Lift-Clip by starting with a main cylinder 14mm in diameter and 2.9mm in height, centered on the origin. Remove a smaller concentric cylinder from the center with a diameter of 9.7mm and a height slightly exceeding 2.9mm to create a ring. From this ring, carve out a rectangular slot 8mm wide an... | Innen =9.7;
Hoehe = 2.9;
Aussen = 14;
Seil_Innen= 3;
Seil_Aussen=8;
$fn=100;
difference() {
cylinder(h=Hoehe,d=Aussen,center=true);
cylinder(h=Hoehe+.2,d=Innen,center=true);
translate ([Innen/2-Seil_Aussen/2+2,0,0])cube([Seil_Aussen,Hoehe,Hoehe+.2],center=true);
translate ([-Innen/2-Seil_Aussen/2+2.5,0,0])... | glb/cad_7c8772a0b8f5.glb |
Create a drying rack replacement hinge consisting of a cylindrical mount and a roller. Start by creating a main cylindrical pipe mount with an outer diameter of 24.5mm and a height of 56.5mm. Bore a central hole through this mount with a diameter of 19.4mm (19.3mm plus 0.1mm tolerance) and a depth of 45mm to accommodat... | $layer_height = 0.2;
include <NopSCADlib/global_defs.scad>
use <NopSCADlib/utils/hanging_hole.scad>
include <NopSCADlib/utils/core/core.scad>
use <NopSCADlib/utils/horiholes.scad>
tolerance = 0.1;
pipe_d = 19.3;
roller_h = 12;
roller_d = 47;
max_roller_d=49;
module roller(big_mount=false){
difference(){
... | glb/cad_13abb8a7f1da.glb |
Create a Bottle Charm consisting of a base plate and raised text. Start by creating a thin rectangular base plate 0.4mm thick, with dimensions that extend 2mm beyond the edges of the text on all sides.
On top of this base, add the desired name as raised text with a height of 0.8mm.
Surround the text and base with a... | include <text_extents.scad>
$fn=256;
text_border = 2;
gap_border = 2;
outer_border = 6;
tolerance = 0.01;
translate([min_x - text_border, min_y - text_border, 0]) cube([(max_x - min_x) + 2 * text_border, (max_y - min_y) + 2 * text_border, .4]);
#include <text_object.scad>
difference() {
hull() {
translate... | glb/cad_92d7ea3df862.glb |
Create a Turbodryer consisting of two separate parts: an end cap and a fan cap.
For the end cap, create a cylinder with a height of 13mm and an outer diameter of 60mm. Remove a central cylindrical hole with a diameter of 50.5mm and a height of 13.2mm. At the base, add a flat circular ring with a diameter of 61mm and a... | Inner_Diameter =50.5;
Wall_Thickness = 2.5;
Fixing_Hole = 2.4;
End_Cap_height = 13;
$fn = 100;
Fanplate_Width = 54;
Fan_Opening_Diameter = 38;
Fan_Fixing_Hole_Diameter = 3.6;
Fan_Fixing_Hole_Distance = 16;
Thickness_End_Plates = 3;
Endkappe ();
translate ([Inner_Diameter + Wall_Thickness + 10,0,0])Luefterkappe ();
mo... | glb/cad_182a3996a50e.glb |
Create an Optimized Calibration Cube with overall dimensions of 100x100x100mm. The structure is an open-frame skeletal design consisting of three intersecting axes.
Construct the X and Y axes as thin rectangular beams that intersect at the center. Each axis should be 100mm long and have a height of approximately 0.7mm... | XLength=100;
YLength=100;
ZLength=100;
XYTipLength = 5;
ZTipLayers = 0;
LayerHeight = 0.35;
FirstLayerHeight = 0.35;
ExtrusionWidth = 0.45;
FirstLayerExtrusionWidth = 0.42;
UseThinWall = 999;
IronTopOnly = 999;
NoSupportingStructure = 999;
NoSkirtBrim = 999;
TowerEdges = 4;
Offset = 0.00;
$fn = TowerEdges;... | glb/cad_c801be048b62.glb |
Create a name plate keychain starting with a rectangular base measuring 75mm in length, 28mm in width, and 2mm in height. At the left end of the base, add a circular ring for a keychain, centered such that it extends slightly beyond the base. On the top surface of the base, place the characters "D0Tch!" using a stylize... | Text = "D0Tch!";
heigth = [3,4,3,4,3,4];
translate([0,-2,0]){
cube([len(Text)*12 ,28,2]);
}
linear_extrude(2){
translate([-8,5,0]){
text("O", 14);
}
}
for (i = [0 : len(Text) -1]){
linear_extrude(heigth[i]){
translate([ 12.5*i , 0 , 0]){
text(Text[i] , 25 , "Chewy" );
... | glb/cad_2ef3f6204fe7.glb |
Create a flower pot saucer by constructing a thin-walled conical ring. The main body is a hollowed cone with a height of 20mm and a wall thickness of 1mm. The base of the cone has a diameter of 100mm, while the top opening flares out to a diameter of 105mm.
Inside this ring, add five cylindrical support bumps arrange... | size = 10;
size_bottom = size * 10;
size_top = size_bottom + size_bottom * 0.05;
height = size_bottom * 0.2 <= 20 ? size_bottom * 0.2 : 20;
thickness = 1;
bump_radius = size * 0.25 <= 10 ? size * 0.25 : 10 ;
bump_count = 5;
rev_radius = 360 / bump_count;
bump_middle_indent = size_bottom * 0.1 ;
$fn = 256;
module Pot... | glb/cad_d750e7b4b49e.glb |
Create a can drainer consisting of a shallow cylindrical basin with a wide brim and integrated handles. Start by creating a main cylinder with a radius of 41mm and a height of 25mm. This cylinder should be hollow, with a wall thickness of 2mm. At the base of the cylinder, create a flat circular disc 2mm thick with the ... | radius = 41;
height = 25;
holes = 10;
amputate = false;
handle = 25;
$fn = 16;
union(){
linear_extrude(2)difference(){
circle(radius);
for (i=[-floor(radius/holes)*holes-holes/2:holes:floor(radius/holes)*holes+holes/2]){
for (j=[-floor(radius/holes)*holes-holes/2:holes:floor(radius... | glb/cad_73609b9d71d2.glb |
Create a door track consisting of a flat base and a central vertical fin. The base is a symmetrical polygon with a total length of 45mm, a central width of 25mm, and a thickness of 4.33mm. The base edges taper from the 25mm center width down to 11mm at the far ends.
Centered on this base, add a vertical rectangular f... | dscrews = 23.00;
bth = 4.33;
bwid = 25.0;
blen = 45.0;
blen1 = 11.0;
finth = 4.0;
finl = 25.0;
finh = 15.0;
screwh = 10.0;
screwd = 4.0;
insetamt = 1.5;
difference() {
union() {
linear_extrude(height=bth,center=true) {
polygon(points=[[0.5*blen,0.5*blen1],[0.5*blen1,0.5*bwid],
[-0.5*bl... | glb/cad_d1bf1783f405.glb |
Create a Mittenfinder woodworking tool. Start with a rectangular base measuring 84mm in length, 24mm in width, and 5mm in height, ensuring all edges and corners are rounded with a 2mm radius. Position two vertical cylinders, each 8mm in diameter and 25mm in height, such that they extend upwards from the base. Place the... | $fn=50;
hs=25;
difference()
{
union()
{
minkowski()
{
cube([80,20,4]);
cylinder(r=2,h=1);
}
translate([10,10])
cylinder(hs,d=8);
translate([70,10])
cylinder(hs,d=8);
};
translate([40,10,-1])
color("red")
cylinder(8,d=7);
translate([40,-1,-1])
rotate(-30,0,0)
linear_extrude(8)
circle(r=3,$fn=3);
}; | glb/cad_be4fc1bb97db.glb |
Create a Tokaido characters and tokens holder by starting with a solid rectangular block measuring 98mm wide, 110mm deep, and 60mm high. Carve out a large rectangular cavity from the top, starting 2mm from the left and front edges and 2mm from the bottom, with dimensions of 78mm wide, 105mm deep, and 70mm high. In the ... | difference() {
cube([98, 110, 60]);
translate([2, 2.5, 2])
cube([78, 105, 70]);
translate([40, 53, -1])
cylinder(4, 30, 30);
for(i=[0:1:5]) {
translate([91, 10+(i*18), 48.2])
cylinder(h=12, r=8.3);
}
} | glb/cad_bd5e926fdf68.glb |
Create a cylindrical negative volume to serve as a magnet hole. The cylinder should have a diameter of 8.4mm and a total height of 3.4mm. Position the cylinder so that its base is located at a height of 0mm above the build plate, centered on the X and Y axes. Ensure the cylinder is rendered with a high facet resolution... | $fn=90;
tolerance=0.2;
magnetdiameter=8;
magnetheight=3;
zheightoffset=0;
translate ([0,0,zheightoffset]) {
cylinder (h=magnetheight+tolerance*2, d=magnetdiameter+tolerance*2, center=false);
} | glb/cad_fa9f1a0e3e34.glb |
Create a webbing mount designed to secure a side-release buckle to a flat surface. The main body is a rounded rectangular block 80mm long, 25mm wide, and approximately 45mm high. The base of the mount is completely flat to sit flush against a deck.
At each end of the 80mm length, center a vertical screw hole 4mm in di... | $fn=51;
s=25;
rotate([-90,0,0])
difference(){
union() {
hull() {
translate([0,0,0])sphere(d=s);
translate([80,0,0])sphere(d=s);
}
hull() {
translate([18,0,0])sphere(d=s);
translate([62,0,0])sphere(d=s);
translate([18,0,39+3])sphere... | glb/cad_e38e8ca96666.glb |
Create a Monitor Pipe Support consisting of two separate components: a pipe-mounting part and a monitor-gripping part.
For the pipe-mounting part, create a cylinder with a diameter of 45mm and a height of 15mm. Subtract a smaller concentric cylinder with a diameter of 35mm and a height of 15.02mm to create a ring. Att... | PartToRender="Both";
PipePartHardware="Nuts";
PreviewPolly = 50;
RenderPolly = 100;
$fn = $preview ? PreviewPolly : RenderPolly;
module Slot(Width, Depth, Height, Type="Round"){
if (Type == "Round"){
Width=Width-Height;
translate([Height/2,0,Height/2]) rotate([-90,0,0]) cylinder(h=Depth,d=Heigh... | glb/cad_9f0b72f670c8.glb |
Create an Emotion Display Name Tag consisting of a base plate, a sliding frame, and a mounting attachment.
Start with a rectangular base plate 80mm wide, 40mm high, and 2mm thick. Center a name (e.g., "Mr. Mee6") on the lower half of the plate using a font height of 10mm. Above the name, create a horizontal rail syst... | generate="all";
mount="none";
stati="😀😐😸😕😟";
symbol_font="Symbola";
symbol_boldness=0.010;
name="Mr. Mee6";
font="Z003";
font_boldness=0.001;
width=80;
height=40;
base_h=2;
symbol_h=0.6;
frame_height=2;
frame_border=3;
dovetail_gap=0.15;
eps=0.001+0;
$fa=5+0;
$fs=0.3+0;
stati_index = len(stati)-1;
symb... | glb/cad_146861f32b03.glb |
Create a cover nameplate for a letterbox. Start with a rectangular base plate measuring 62mm in width and 19.3mm in height, with a thickness of 1mm. The four corners of this plate must be rounded with a radius of 1.2mm.
In the center of the base plate, create a rectangular cutout to accommodate an acrylic glass inser... | letterBoxThickness = 1.8;
letterBoxCutOutWidth = 60.8;
letterBoxCutOutHeight = 17.5;
plateOffset = 0.6;
plateEdgeRadius = 1.2;
plateThickness = 1;
hasWindowCutOut = true;
windowInnerOffset = 0.8;
windowThickness = 1.2;
noseWallWidth = 1.2;
module NosePiece(length, wallWidth, bottomThickness){
_reference_n... | glb/cad_b507e92d1cd5.glb |
Create a POV nametag that displays the name "JEANCLAUDE" from one perspective and "VANDAMME" from another. The model consists of a series of vertical geometric intersections placed on a thin rectangular platform 10mm thick.
For each letter position, create a 3D intersection of two extruded text characters. The first c... | $fn=64;
intersection() {
rotate([90,0,0])
translate([-0.6,0,-83.9])
linear_extrude(83.9) {
text("J", size = 100, font = "Tahoma:style=Regular", halign = "left", valign = "baseline");
}
rotate([90,0,90])
translate([0.5,0,0])
linear_extrude(47.7) {
text("V", size = 100, font = "Tahoma:style=Regular", halign ... | glb/cad_9aeee414f24e.glb |
Create a simple PC fan foot by designing a flat, elongated body with a thickness of 2mm. The main shape is formed by a hull connecting two cylinders: a larger cylinder with a diameter of 7.875mm (1.5 times the screw hole diameter) and a smaller cylinder with a diameter of 6mm. Position the center of the smaller cylinde... | ScrewHoleDiamater=5.25;
Thickness=2;
LengthFromHoleCenter=16;
PreviewPolly = 50;
RenderPolly = 100;
$fn = $preview ? PreviewPolly : RenderPolly;
module Body(){
difference(){
hull(){
cylinder(h=Thickness,d=ScrewHoleDiamater*1.5,center=true);
translate([LengthFromHoleCenter-3,0,0]... | glb/cad_39f38f8cbab0.glb |
Create a Lanyard Name Tag by starting with a rectangular base plate measuring 57mm wide, 88mm high, and 2mm thick. Round all four corners of the plate with a radius of 10mm. At the top center of the plate, create a slot-shaped cutout that spans between the two upper rounded corners to allow for a lanyard attachment.
O... | $fn=200;
width = 57;
height = 88 ;
depth = 2;
edge_radius = 10;
font = "Alfa Slab One:style=Regular";
font_size = 10;
name1 = "Patrick";
name2 = "Bailey";
stl_file = "3dbenchy_fixed.stl";
stl_adjust = [5, 1, 1];
stl_rotate = [-90,-20,30];
stl_scale = [.7,.70,.2];
back(width, height, depth, edge_radius);
translate(... | glb/cad_3a53c5d35c61.glb |
Create a twisty vase with a total height of 200mm. The base is formed by a central circle with a 30mm radius, surrounded by 12 smaller circles each with a radius of approximately 7.85mm (calculated as 30*PI/12), equally spaced around the center. Extrude this base profile upward to a height of 60mm while applying a 27-d... | bottom=30;
middle=50;
top=20;
height=200;
lobe=12;
twist=90;
ratio=.3;
Smoothness=8;
$fn=Smoothness;
union(){
linear_extrude(height=height*ratio, twist=twist*ratio, scale=middle/bottom, slices = Smoothness*ratio) {
union(){
for (i=[0:lobe-1])
rotate(a=360/lobe*i)
... | glb/cad_cb6128bdca5e.glb |
Create a right-angle bracket with a thickness of 2.5mm, a height of 20mm, and a width of 40mm. The bracket consists of two perpendicular arms meeting at a 90-degree angle. The outer corner where the two arms meet should be rounded with a radius of 2.5mm.
On the flat face of each arm, place two bolt holes with a diamet... | full = 1;
csink = 0;
clear = 1;
width = 40;
height = 20;
thick = 2.5;
bolthole_diam = 4;
boltclearance = 0.25;
bolthead_diam = 7.5;
csinkdepth = thick/3;
epsilon = 0.01;
usewidth = width/2+(width/2*full);
spacehole1 = width/4;
spacehole2 = height/2+thick/2;
stagger = (bolthole_diam/2)*clear;
$fs = 0.01;
module leave... | glb/cad_48d34a34afe1.glb |
Create an Irregular Grid Flexible Sheet in the shape of a 90mm diameter disc with a total thickness of 2mm. The disc consists of a network of irregular hexagons that are extruded to the full 2mm height, separated by consistent gaps of 1.5mm to allow for flexibility.
The hexagons should be arranged in a grid with a ba... | module flexHex(l=100,w=60,h=2,grid=10,minThickness=0.6,gap=1.5,irregularity=50,zOffset=.5)
{
d=grid/sin(60)-gap;
wc=ceil(w/grid/sin(60)+4);
lc=ceil(l/grid+4);
rs=rands(-grid/400*irregularity,grid/400*irregularity,wc*lc*4+2);
intersection()
{
union()
{
cube([w,l,minThickness],center=true);
... | glb/cad_3fee5339e28f.glb |
Create a customizable name plate consisting of three stacked lines of text. For the first line, create the text "Cool Guy" with a base thickness of 2mm and a top layer of 3mm; apply a 3.5mm offset to the base to create a rounded border around the letters. Position the second line of text, "Job Title", 11.5mm below the ... | string1 = "Cool Guy";
string2 = "Job Title";
string3 = "Company Name";
union(){
linear_extrude(2) offset(3.5) text(string1);
linear_extrude(3) text(string1);
}
translate([0,-11.5,0])
union(){
linear_extrude(2) offset(3.5) text(string2, size=8);
linear_extrude(3) text(string2, size=8);
}
translate([0,... | glb/cad_c272298b9160.glb |
Create a parametric electrical junction box consisting of a main body and a separate lid.
The main body is a hollow rectangular prism with dimensions 100mm x 100mm x 50mm. The vertical walls should have a thickness of 3mm and the four vertical corners must be rounded with a radius of 8mm. Inside the four corners of t... | $fs = 0.4;
$fa = 1;
junctionbox_width = 100;
junctionbox_height = 100;
junctionbox_thickness = 50;
junctionbox_skin = 3;
junctionbox_radius = 8;
junctionbox_lidscrewdiam = 3;
junctionbox_cablediam = 20.5;
junctionbox_mountscrewdiam = 3;
junctionbox_mountoffset = 20;
nh = 2;
wh = 2;
eh = 2;
sh = 2;
module radiuspanel... | glb/cad_6790c6f56536.glb |
Create a nametag consisting of a base plate and raised 3D text. First, construct the base plate as a thin rounded cuboid with a height of 6mm, a depth of 36mm, and a width calculated as 75% of the total text length multiplied by 20mm. The corners of this plate should have a radius of 12mm.
For the text, use the phras... | name = "Rick Astley";
fontString = "Comic Sans MS:style=Bold";
size = 20;
angle = 42;
module RoundedCuboid(width = 1, depth = 1, height = 1, cornerRadius = 0.25) {
cornerDiameter = 2 * cornerRadius;
xOffset = width - cornerDiameter;
yOffset = depth - cornerDiameter;
xTranslate = -(xOffset / 2);
yT... | glb/cad_8030a20e4624.glb |
Create a panel mount journal bearing consisting of a square base and a central cylindrical sleeve. Start with a square plate 15mm wide and 2mm thick, with corners rounded by a 5mm radius. Centered on this plate, add a cylindrical sleeve that is 8mm tall in total, with a base radius of 8.4mm that tapers or transitions t... | $fa = 1;
$fs = 0.5;
$size = 15;
$thick = 2;
$extend = 3;
$bore = 6.80/2;
$barrel = 12/2;
$screw = 3/2;
difference() {
union() {
minkowski() {
cube([$size, $size, $thick], center=true);
cylinder(r=5);
}
cylinder(h=$thick + $extend, r1=1.4*$barrel, r2=$barrel, center=false);
}
cylinder(h=3... | glb/cad_166fd052f762.glb |
Create a lanyard name tag starting with a rectangular base measuring 77mm wide, 35mm high, and 2mm thick. Round all four corners of the base with a 10mm radius. Hollow out the center of the plate by removing a smaller rounded rectangle from the middle, leaving a 2mm wide border around the perimeter. At the top center o... | $fn=200;
width = 77;
height = 35;
depth = 2;
edge_radius = 10;
font = "Harlow Solid Italic:style=Italic";
font_size = 14;
name1 = "Kyndall";
stl_file = "angel_wing_left.stl";
stl_adjust = [-55, -40, 0];
stl_rotate = [0,0,0];
stl_scale = [3,3,3];
stl_file2 = "angel_wing_right.stl";
stl_adjust2 = [-28, -40, 0];
stl_... | glb/cad_5c2b246b2d1e.glb |
Create a Sheet Goods Storage bin by starting with a solid rectangular block measuring 241mm wide, 292mm deep, and 140mm high, centered on the origin. Hollow out the center of this block to create a bin with walls 12mm thick, leaving the bottom closed and the top open. To create the interior storage area, remove a centr... | x_base_size = 241;
y_base_size = 292;
z_base_size = 140;
wall_thickness = 12;
hardboard_thickness = 5.6;
num_deviders = 5;
{
build_box();
group()
{
}
}
module build_box()
{
difference()
{
box_bb();
group()
{
group()
{
translate([0,0,-(z_base_size/2)-6])
{
... | glb/cad_d51d4234be44.glb |
Create a Column2name nametag by starting with a rectangular base plate that has rounded corners with a radius of 1mm and a thickness of 3mm. The length of this base should be calculated as the number of letters in the name "KAI" multiplied by 15mm, then adjusted by a scale factor of 0.65.
On top of this base, place a ... | name_no = 1;
scale_x = 0.65;
names = ["KAI",
"KATHARINA",
"LINUS",
"JOSCHA",
"MITJA"];
name = names[name_no - 1];
$fa = 0.3;
$fs = 0.3;
text_size = 15;
basis_r = 1;
number_letters = len(name);
basis_x = number_letters * text_size * scale_x;
basis_height = 3;
basis_place_x = basis_x... | glb/cad_0bfcf48ef58d.glb |
Create a Tubular Key consisting of a main hollow tube, a tensioner, and a handle.
Start by creating a main tube with an outer diameter of 9.53mm, an inner diameter of 7.92mm, and a length of 13mm. The tube is hollowed out to a depth of 10mm. Along the outer wall of this tube, create seven radial cuts. Each cut is a c... | $fn = 50;
key_code = [1,2,3,4,5,6,7];
tensioner_depth = 1.3;
tensioner_length = 1.5;
tensioner_thickness = 1.3;
tube_length = 13;
tube_OD = 9.53;
tube_ID = 7.92;
tube_depth = 10;
handle_thickness = 1;
handle_width = 10;
handle_height = 13;
cut_radius = 2;
cut_shift = 45;
cut_depths = [-1, 0.41, 0.81, 1.22... | glb/cad_b797702ccfef.glb |
Create a shelf support peg consisting of a cylindrical pin and a flat support bracket. Start by creating a cylinder for the pin with a diameter of 5mm and a length of 7.5mm. Attached to this pin, create a support bracket that is 11mm deep and 2mm thick. The bracket should have rounded corners with a radius of 1.5mm. Th... | $fn = 50;
pin_depth = 7.5;
pin_diameter = 5;
support_thickness_upper = 2;
support_thickness_lower = 1.4;
support_thickness_taper_upper = 0;
support_rib_size = 6;
support_rib_thickness = 1.15;
support_depth = 11;
support_depth_lower = 8.5;
support_length_upper = 8.6;
support_length_lower = 9.6;
edge_radius = 1.5;
... | glb/cad_8d916c5510f1.glb |
Create a Furniture Leg Extension consisting of a hollow rectangular sleeve. Start by creating a solid rectangular block with a total height of 107mm, a width of 26.75mm, and a depth of 26.75mm. From the top of this block, remove a centered rectangular section to create a hollow cavity that is 21.25mm wide and 21.25mm d... | $fn=50;
leg_width = 20.25;
leg_depth = 20.25;
leg_length = 50;
leg_extension = 57;
slop = 0.5;
thickness = 3;
outer_length = leg_length + leg_extension;
inner_width = leg_width + slop;
inner_depth = leg_depth + slop;
difference() {
linear_extrude(height = outer_length, slices = 60) {
offset(r=thick... | glb/cad_e54b16a25fab.glb |
Create a magnetic name tag with a base plate measuring 77mm wide, 35mm high, and 6mm deep. The base should have rounded corners with a radius of 10mm. Hollow out a circular cavity in the center of the base to accommodate a magnet, with the cavity measuring 32.2mm in diameter and 3.3mm in depth, leaving a 0.8mm floor at... | $fn=200;
magnet_dia = 32.2;
magnet_height = 3.3;
magnet_depth = 0.8;
width = 77;
height = 35;
depth = 6;
edge_radius = 10;
font = "Harlow Solid Italic:style=Italic";
font_size = 14;
name1 = "Kyndall";
stl_file = "angel_wing_left.stl";
stl_adjust = [-55, -40, 0];
stl_rotate = [0,0,0];
stl_scale = [3,3,7];
stl_file... | glb/cad_b01f439a821a.glb |
Create a desk organizer box with overall outer dimensions of 100mm width, 100mm depth, and 100mm height. The box should have a wall thickness of 3mm and all vertical corners rounded with a radius of 2mm. The bottom of the box is solid, while the top is open.
On one of the side walls, create a rectangular cutout to al... | width=100;
depth=100;
height=100;
$fn = 100;
round_radius=2;
thickness=3;
h_height=20;
h_depth = 100;
angle=25;
position = 5;
x = (h_height/2 * sin(angle));
t= depth/2 - h_depth/2 + (h_depth/2 - cos(angle)* 0.5 *h_depth) + x;
v= sin(angle)*h_depth/2 + (h_height/2 * cos(angle));
difference(){
union(){
... | glb/cad_f5fd174ae3fa.glb |
Create a Parametric Terminal Block Enclosure consisting of a base and a lid. For a 5A terminal block with 3 connectors, use a pitch of 9.5mm, width of 5.5mm, length of 17.2mm, and height of 14mm.
To construct the base, create a hollow shell with a wall thickness of 1.2mm. The outer profile is a symmetric polygon that ... | $fa=1;
$fs=0.4;
terminal_block = "5A";
num_connectors = 3;
definitions = [
["3A", 8.0, 5.2, 16.0, 2.8, 12.5],
["5A", 9.5, 5.5, 17.2, 3.0, 14.0],
["15A", 11.4, 7.2, 22.0, 3.0, 17.2]
];
block = search(terminal_block, definitions);
pitch = definitions[block[0]][1];
width = definitions[block[0]][2];
gap = pitch -... | glb/cad_1aa4fd42edfc.glb |
Create a 3D Morphing Cubes model consisting of a central sphere and a series of orbiting geometric structures. Start by creating a main sphere with a diameter of 32.5mm. Hollow out the center of this sphere by removing a smaller internal sphere with a diameter of 31mm. To allow for a mounting shaft, create a vertical c... | angles = 12;
floors = 7;
instances = angles*floors;
cubeoffset=4.5;
cubesize=19;
size=2;
module koerper2(x,y,z,rot_x,rot_y,rot_z)
{
rotate([rot_y,rot_z,rot_x]) sphere(d=9,$fs=10);
}
module koerper(x,y,z,rot_x,rot_y,rot_z)
{
rotate([rot_x,rot_y,rot_z]) difference()
{
cube([x,y,z],center=true);
... | glb/cad_0225ca69a42e.glb |
Create a 3D Morphing Cubes model consisting of a central spherical core surrounded by a pattern of smaller cubes. Start by creating a hollow sphere with an outer diameter of 32.5mm and an inner diameter of 31mm. Cut a vertical cylindrical hole through the center of this sphere with a diameter of 14mm and a height of 10... | angles = 12;
floors = 7;
instances = angles*floors;
cubeoffset=4.5;
cubesize=19;
size=2;
module koerper2(x,y,z,rot_x,rot_y,rot_z)
{
rotate([rot_y,rot_z,rot_x]) sphere(d=9,$fs=10);
}
module koerper(x,y,z,rot_x,rot_y,rot_z)
{
rotate([rot_x,rot_y,rot_z]) difference()
{
cube([x,y,z],center=true);
... | glb/cad_c090e4483fac.glb |
Create a 3D Morphing Cubes base. Start by creating a main outer ring using a cylinder with a diameter of 145mm and a height of 40mm, centered on the Z-axis and shifted down by 5mm. Remove a concentric inner cylinder with a diameter of 141mm and a height of 400mm to create a hollow tube.
Cut a rectangular slot for a p... | module glass()
{
sphere(d=140,$fn=100);
cylinder(d=140,h=180,$fn=100);
}
module inner()
{
difference()
{
cylinder(d=140,h=30,$fn=100);
cylinder(d=130,h=30,$fn=100);
translate([0,0,20]) cube([200,50,20],center=true);
}
difference()
{
cylinder(d=140,h=3,$fn=100);
cylinder(d=80,h=3,$fn=100);
... | glb/cad_54ea52587432.glb |
Create a parametric name badge. Start with a base plate 63.8mm wide, 50mm deep, and 2mm thick. The base shape can be a rectangle, ellipse, star, sausage, or heart; for an ellipse, use a circle resized to the width and depth. Add a raised border around the perimeter with a height of 0.6mm above the base surface.
At the... | title="Mr";
first_name="Fred";
surname="Bloggs";
alias="Meganoodle";
job_title="Head Tinkerer";
age=21;
establishment="Tinkerers & Co.";
country="UK";
message="Hi My Name Is";
state_county="Makersville";
line_1="title + name 1st and last";
line_2="alias/nickname";
line_3="job title";
line_4="state/county";
line_5=... | glb/cad_cab7e01def9e.glb |
Create a Button Cell Tray for a wall-mounted battery organizer. Start with a main body shaped as a cylinder with a diameter of 33mm and a height of 60mm, using a 30-facet resolution. Hollow out the center of this cylinder to create a container, leaving a wall thickness of 2mm.
Within this body, carve out a grid of cy... | lr41Dia=7.85;
lr41H=3.5;
b357Dia=11.6;
b357H=5.4;
cr2032Dia=20;
cr2032H=3.2;
cr2025Dia=20;
cr2025H=2.5;
aaaDia=10.5;
aaaH=45;
nDia=11.5;
nH=29;
dcellDia=33;
dcellH=60;
wall=2;
clearance=1;
module tray(d,h)
{
bottom=-d/2-wall;
top=d/4;
hInc=h+wall+clearance;
wInc=d+wall+clearance;
nZ=floor((dcellH-wal... | glb/cad_6af257041b69.glb |
Create a Polychromatic Art in Vasemode by extruding a specific 2D polygon vertically to a height of 100mm while applying a 60-degree twist along the Z-axis. The base polygon is defined by the following coordinates in millimeters: [-50, 50], [-40, 50], [-20, 25], [0, 35], [20, 25], [40, 50], [50, 50], [50, 20], [60, 0],... | linear_extrude(height=100,twist=60,slices=20){
polygon (points=[
[-50,50],
[-40,50],
[-20,25],
[0,35],
[20,25],
[40,50],
[50,50],
[50,20],
[60,0],
[50,-20],
[50,-50],
[40,-50],
[20,-25],
[0,-35],
[-20,-25],
[-40,-50],
[-50,-50],
[-50,-20],
[-60... | glb/cad_349c750f322e.glb |
Create a star-shaped diffuser for a star light. The shape is a flat, five-pointed star with a thickness of 0.4mm. The star is defined by an inner diameter of 40mm and an outer diameter of 80mm. The geometry should be a precise 2D star polygon extruded to the specified thickness, ensuring the points are sharp and the pr... | object = "diffuser";
star_inner_diam = 40;
star_outer_additional = 40;
points = 5;
height = 30;
wall = 2;
led_hole_diam = 5.2;
led_height = 10;
font_size = 30;
letter = "J";
diffuser_thickness = 0.4;
module Star(points, outer, inner, wall=0) {
function x(r, a) = r * sin(a);
function y(r, a) = r * cos(a);
... | glb/cad_b301ef20ed56.glb |
Create a hinge for a 20mm PVC pipe. Start by constructing a main cylindrical body with an outer diameter of 24mm and a height of 24mm. This body should have a central hollow bore with a diameter of 12mm running through its length. At the top of this cylinder, add a flange that is 23mm in diameter and 3mm thick.
On top... | $fn=123;
translate([0,0,3+24]) rotate([180,0,0]) union() {
difference() {
union() {
cylinder(r1=20/2+1.5, r2=20/2+1, h=3);
translate([0,0,3])
cylinder(r1=20/2+1, r2=18/2-.25, h=2);
translate([0,0,3-.01])
cylinder(r1=18/2+.25, r2=18/2, h=24.01);
}
translate([0,0,3]) cylinder(r=12/2, h=24... | glb/cad_3efd57af0917.glb |
Create a hinge for a 20mm PVC pipe. Start by constructing a cylindrical plug with a total height of 24mm. The base of the plug is a cylinder with a radius of 9mm. Above this, add a 2mm tall transition section that tapers slightly to a radius of 8.75mm, topped with a 3mm tall flange with a radius of 11.5mm. Remove a cen... | $fn=123;
translate([0,0,3+24]) rotate([180,0,0]) union() {
difference() {
union() {
cylinder(r1=20/2+1.5, r2=20/2+1, h=3);
translate([0,0,3])
cylinder(r1=20/2+1, r2=18/2-.25, h=2);
translate([0,0,3-.01])
cylinder(r1=18/2+.25, r2=18/2, h=24.01);
}
translate([0,0,3]) cylinder(r=12/2, h=24... | glb/cad_ef54abfb26fe.glb |
Create a hinge for a 20mm PVC pipe. Start with a main cylindrical ring that has an inner diameter of 20mm, an outer diameter of 30mm, and a height of 15mm. Cut a 45-degree opening through the ring to allow the pipe to be inserted.
On one side of the ring, attach a rectangular block that is 15mm wide and 15mm high, cen... | $fn=123;
difference() {
union() {
cylinder(r=20/2+5, h=15);
translate([-20/2-10+1, -20/2-5+2, 0])
cube([10+2, 5+2*20/2+5-4, 15]);
hull() {
translate([-20/2-10+1, -3/2, 0]) cube([1, 3, 15]);
translate([-20/2-10-15/2, -3/2, 15/2])
rotate([-90,0,0]) cylinder(r=15/2, h=3);
}
... | glb/cad_885242ea327a.glb |
Create a radius gauge tool by constructing a central hub and a series of radiating arms. Start with a central cylinder 65mm in diameter and 1.6mm thick. From this hub, create 10 equally spaced arms radiating outwards, each corresponding to a radius from 3mm to 12mm.
For each arm, create a composite shape consisting o... | $e=0.02;
$fn=$preview?18:72;
fm=3;
tw=12;
stp=tw-fm+1;
a=65;
difference() {
union() {
for (r=[fm:tw]) {
rotate([0,0,(r-fm)*360/stp]) {
translate([a-r,0,0]) cylinder(r=r,h=2);
translate([0,-r,0]) cube([a-r,r*2,2]);
#translate([a-r*2,-2,2-$e]) linea... | glb/cad_2ee118fa24a7.glb |
Create a Nefertiti Lanyard Name Tag by starting with a rectangular base plate measuring 57mm wide by 88mm high with a thickness of 2mm. Round all four corners of the plate with a radius of 10mm. Hollow out the center of the plate by removing a smaller rounded rectangle from the middle, leaving a 2mm wide border around ... | $fn=200;
width = 57;
height = 88 ;
depth = 2;
edge_radius = 10;
font = "Alfa Slab One:style=Regular";
font_size = 10;
name1 = "Patrick";
name2 = "Bailey";
stl_file = "nefertiti.stl";
stl_adjust = [-9.8, -10, 17];
stl_rotate = [-90,0,0];
stl_scale = [.30,.30,.30];
back(width, height, depth, edge_radius);
translate(... | glb/cad_d4deb2f1eb58.glb |
Create a shopping cart coin keychain by starting with a main cylindrical disk that has a diameter of 23.25mm and a height of 2.33mm.
On the top surface of the disk, engrave a circular ring with a diameter of 19.25mm and a depth of 0.8mm. Within this ring, create a central circular hole with a diameter of 5mm that pas... | textstring="Thomas";
Fontsize=5;
fontname="Arial";
font_abstand=1;
dia=23.25;
height=2.33;
rand=1.5;
rand_abstand=2;
$fn=32;
cutdepth=.8;
cutoff=dia/9.1;
holder_hole_dia=5;
holder_hole_wider=3;
valign = "center";
halign = "right";
module cutoffcube(cutoffadd)
{
translate([dia/sqrt(2)-cutoff-cutoffadd,-di... | glb/cad_7cf732dedaf1.glb |
Create a 3D name plate by extruding the text "test" using the Coda font. The letters should have a height of 20mm and an extrusion depth of 10mm.
To ensure the model is a single connected piece, add a rectangular connecting bar along the baseline of the text. This bar should have a thickness of 2mm (10% of the font s... | textstring="test";
$fn=64;
fontname="Coda";
add_a_special_character="none";
special_character=9835;
distance_special_char = .6;
RoundedBase=0;
do_shift_font="automatic";
textsize=20;
textheight=10;
baseheight_percent=.33;
baseheight=textheight*baseheight_percent;
basethickness_percent=0.1;
basethickness=text... | glb/cad_034748b7460c.glb |
Create a replacement cap for a hydrogen peroxide bottle. The object is a hollow cylinder with an outer diameter of 21mm and a total height of 17mm. The walls are 1mm thick.
The interior of the cylinder features a right-handed internal screw thread. The thread is designed for a nominal diameter of 19.5mm with a pitch o... | $fn=64;
topWall=1;
d=[17.5,19.5+1];
pitch=3;
h=17;
toothH=-1;
gap=0.5;
direction=1;
wall=1;
f=1;
not=0.001;
t([0,0,topWall-not]) nutThread(d,pitch,h,toothH,gap,wall,direction);
cylinderRounded(d=[0,d[1]+2*wall],h=topWall,r=[0,f,0,0],chamfer=45);
cylinder(d1=4,d2=0,h=5);
module boltThread(d=[5,10],pitch=2,h=10,gap=... | glb/cad_a3598d8c8935.glb |
Create a 120mm fan to 4 inch dryer hose adapter. Start by constructing a transition piece that connects a square top to a circular base. The top is a square box with an outer dimension of 122.4mm x 122.4mm and a height of 25mm. The base is a cylinder with an outer diameter of 103mm and a wall thickness of 3mm, creating... | box_id = 120;
ring_od = 103;
ring_wall = 3;
ring_id = ring_od-2*ring_wall;
box_wall = 1.2;
fan_ht = 25;
fan_hose();
for (a=[0, 180]) rotate([0, 0, a])
translate([box_id/2+box_wall, -55, 40+fan_ht]) screw_up();
module screw_up() {
difference() {
hull() {
translate([-1, -5, -4]) cube([11, 10, 4]);
... | glb/cad_2b8b5348ad9a.glb |
Create a Universal Round Box for PCB consisting of a main cylindrical body, a lid, and a PCB mounting plate.
The main body is a hollow cylinder with an outer diameter of 80mm and a height of 40mm, featuring a wall thickness of 2.4mm. Inside the body, integrate four cylindrical support pillars positioned symmetrically... | velikost = 80;
vyska = 40;
material = 2.4;
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 = 25;
tisk = "bcp";
include <BOSL2/std.scad>
in... | glb/cad_4410381789d0.glb |
Create a Groot name tag shaped like a cross-section of a tree trunk. Start by building a base organic disk with a diameter of 115mm and a height of 3mm. The outer edge should be irregular and jagged, formed by subtracting various randomly sized and positioned small circles (between 40mm and 45mm in diameter) from the m... | name="Groot";
txtsize=76/len(name);
union(){
difference(){
union(){
color("saddlebrown")
trunkgen();
}
translate([0,0,2.5])
color("wheat")
innertrunk(85,3);
}
color("BurlyWood")
translate([0,0,2])
linear_extrude(0.8)
rings(80);
}
color("saddlebrown"){... | glb/cad_f57e41244ad8.glb |
Create a Plant Label Maker consisting of a flat base and raised text. Start by creating a rectangular base with a thickness of 1mm. This base is composed of two joined sections: a wider label area and a narrower stake. The label area should have a width of 10mm and a length calculated as 2.5mm multiplied by the number ... | Text_hight = 2;
Text_size = 6;
Text = "Yukon Gold Potato";
height = 1;
label_width = 10;
label_length = (len(str(Text)) * 2.5) + 2;
earth_stick_witdth = 5;
earth_stick_length = 75 - label_length;
union(){
translate([((label_length + earth_stick_length) / 2), 0, 0]){
cube([earth_stick_length, earth_stick_wi... | glb/cad_1704d1bcde04.glb |
This is a highly complex OpenSCAD script designed to generate a customizable, 3D-printable **Identification Tag** or **Badge**. It utilizes a modular architecture, allowing the user to switch between generating the main object, "print-on-print" (POP) inserts, or specific layer modifiers for advanced multi-material prin... | $vpr = $preview ? [0, 0, 0] : [90 - atan(sin(45)),0,45];
$vpd = 600 + 12;
include <Recymbol/library.scad>
Object_type = 1;
Modifier_type = 1;
Text_index = 1;
Imported_file_index = 1;
Background_index = 1;
Insert_index = 1;
Trim_texts_to_main_area = true;
Trim_backgrounds_to_main_area = true;
Trim_files_to_ma... | glb/cad_1cfa80820620.glb |
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