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79dfbd6fe3
Author | SHA1 | Date | |
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79dfbd6fe3 | |||
e8ca989732 | |||
6c391cb500 | |||
635002d2a6 | |||
6a9d4f2434 |
4
badge_test.json
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4
badge_test.json
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@ -0,0 +1,4 @@
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{
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"parameterSets": "",
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"fileFormatVersion": "1"
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}
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68
badge_test.scad
Normal file
68
badge_test.scad
Normal file
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@ -0,0 +1,68 @@
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$fn=32;
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LAYER_HEIGHT=1;
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NAME="c6hex";
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COLOR_BASE="#ffffff";
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COLOR_LOGO="#7f7f7f";
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COLOR_NAME="#7f7fff";
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module name() {
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translate([18, 4, 0]) text(NAME, font="Roboto:bold");
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}
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module logo() {
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translate([10, 10])
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scale([16, 16])
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circle(d=1, $fn=6);
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}
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module name_outline() {
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minkowski() {
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name();
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circle(r=2.5);
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}
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}
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module logo_outline() {
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minkowski() {
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logo();
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circle(r=2);
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}
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}
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module outline() {
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union() {
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name_outline();
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logo_outline();
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}
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}
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module name_cutout() {
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difference() {
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outline();
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name();
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}
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}
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module logo_cutout() {
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difference() {
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name_cutout();
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logo();
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}
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}
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module name_cutout_plate() {
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linear_extrude(height=LAYER_HEIGHT) name_cutout();
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}
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module logo_cutout_plate() {
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linear_extrude(height=LAYER_HEIGHT) logo_cutout();
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}
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module name_base_plate() {
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linear_extrude(height=LAYER_HEIGHT) outline();
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}
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color(COLOR_BASE) translate([0, 0, 3*LAYER_HEIGHT]) logo_cutout_plate();
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color(COLOR_LOGO) translate([0, 0, 2*LAYER_HEIGHT]) name_cutout_plate();
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color(COLOR_NAME) translate([0, 0, 1*LAYER_HEIGHT]) name_base_plate();
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color(COLOR_BASE) translate([0, 0, 0*LAYER_HEIGHT]) name_base_plate();
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@ -25,6 +25,13 @@
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* licensing terms.
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* licensing terms.
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*/
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*/
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NAME = "c3cat";
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RENDER_COLOR_1 = true; // used for clip body
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RENDER_COLOR_2 = true; // used for logo and one small ear
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RENDER_COLOR_3 = true; // used for name and other small ear
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SMALL_EARS = true;
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$fn=360;
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include <write/Write.scad>
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include <write/Write.scad>
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/**
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/**
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@ -51,13 +58,17 @@ include <write/Write.scad>
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*/
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*/
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scale([0.2, 0.2, 0.2]) {
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scale([0.2, 0.2, 0.2]) {
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difference() {
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difference() {
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scale([5, 5, 5]) rotate(45, [0, 0, 1]) bottle_clip(name="c3cat");
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scale([5, 5, 5]) rotate(45, [0, 0, 1]) bottle_clip(name=NAME);
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translate([ 15*5, 0*5, 18*5]) rotate(80, [0, 1, 0]) catear();
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if (SMALL_EARS) {
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translate([-15*5, 0*5, 18*5]) rotate(-80, [0, 1, 0]) catear();
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translate([ 15*5, 0*5, 18*5]) rotate(80, [0, 1, 0]) catear();
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translate([-15*5, 0*5, 18*5]) rotate(-80, [0, 1, 0]) catear();
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}
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}
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}
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translate([0, 5*5, 0]) catear();
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if (SMALL_EARS) {
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rotate(180) translate([0, 5*5, 0]) catear();
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if (RENDER_COLOR_2) {translate([0, 5*5, 0]) catear();}
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if (RENDER_COLOR_3) {rotate(180) translate([0, 5*5, 0]) catear();}
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}
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}
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}
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module bottle_clip(ru=13, rl=17.5, ht=26, width=2.5, name="c3cat", font="write/orbitron.dxf", logo="") {
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module bottle_clip(ru=13, rl=17.5, ht=26, width=2.5, name="c3cat", font="write/orbitron.dxf", logo="") {
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@ -67,45 +78,65 @@ module bottle_clip(ru=13, rl=17.5, ht=26, width=2.5, name="c3cat", font="write/o
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difference() {
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difference() {
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rotate([0,0,-45]) union() {
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rotate([0,0,-45]) union() {
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// main cylinder
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// main cylinder
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cylinder(r1=rl+width, r2=ru+width, h=ht);
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if (RENDER_COLOR_1) {cylinder(r1=rl+width, r2=ru+width, h=ht);}
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// text and logo
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// text and logo
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if(logo == "") {
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if(logo == "") {
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color("orange") writecylinder(name, [0,0,0], rl+0.5, ht/13*7, h=ht/13*4, t=max(rl,ru), font=font);
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if (RENDER_COLOR_3) {
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translate([4.7, -rl, ht*1.08]) rotate(-10, [1, 0, 0]) rotate(76, [0, 1, 0]) scale([0.08, 2, 0.08]) color("red") import("catears.stl");
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color("orange")
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writecylinder(name, [0,0,0], rl+0.5, ht/13*7, h=ht/13*4, t=max(rl,ru), font=font);
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}
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if (RENDER_COLOR_2) {
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translate([4.7, -rl, ht*1.08])
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rotate(-10, [1, 0, 0])
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rotate(76, [0, 1, 0])
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scale([0.08, 2, 0.08])
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color("red")
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import("catears.stl");
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}
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} else {
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} else {
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color("orange") writecylinder(name, [0,0,0], rl+0.5, ht/13*7, h=ht/13*4, t=max(rl,ru), font=font);
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if (RENDER_COLOR_3) {
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color("orange")
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writecylinder(name, [0,0,0], rl+0.5, ht/13*7, h=ht/13*4, t=max(rl,ru), font=font);
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}
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// The logo has been split in 3 parts.
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if (RENDER_COLOR_2) {
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// The logo has been split in 3 parts. // well the ohm one was ...
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/*
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/*
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rotate([0,0,-48]) translate([0,0,ht*3/4-0.1])
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rotate([0,0,-48]) translate([0,0,ht*3/4-0.1])
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rotate([90,0,0])
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rotate([90,0,0])
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scale([0.9,0.9,1])
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scale([0.9,0.9,1])
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scale([ht/100,ht/100,1])
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scale([ht/100,ht/100,1])
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translate([-25,-29,0.5])
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translate([-25,-29,0.5])
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linear_extrude(height=max(ru,rl)*2)
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linear_extrude(height=max(ru,rl)*2)
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import("logo_1.dxf");
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import("logo_1.dxf");
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*/
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*/
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translate([0,0,ht*3/4-0.1])
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translate([0,0,ht*3/4-0.1])
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rotate([90,0,0])
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rotate([90,0,0])
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scale([0.8,0.8,1])
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scale([0.8,0.8,1])
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scale([ht/100,ht/100,1])
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scale([ht/100,ht/100,1])
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translate([-18,-22,0.5])
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translate([-18,-22,0.5])
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linear_extrude(height=max(ru,rl)*2)
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linear_extrude(height=max(ru,rl)*2)
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import(logo);
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import(logo);
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/*
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/*
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rotate([0,0,44]) translate([0,0,ht*3/4-0.1])
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rotate([0,0,44]) translate([0,0,ht*3/4-0.1])
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rotate([90,0,0])
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rotate([90,0,0])
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scale([0.7,0.7,1])
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scale([0.7,0.7,1])
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scale([ht/100,ht/100,1])
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scale([ht/100,ht/100,1])
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translate([-25,-26,0.5])
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translate([-25,-26,0.5])
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linear_extrude(height=max(ru,rl)*2)
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linear_extrude(height=max(ru,rl)*2)
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import("logo_3.dxf");
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import("logo_3.dxf");
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*/
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*/
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}
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}
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}
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}
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}
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// inner cylinder which is substracted
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if (RENDER_COLOR_1) {
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translate([0,0,-1])
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// inner cylinder which is substracted
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cylinder(r1=rl, r2=ru, h=ht+2);
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translate([0,0,-1])
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cylinder(r1=rl, r2=ru, h=ht+2);
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} else {
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// main cylinder which is subtracted when not rendering color 1
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cylinder(r1=rl+width, r2=ru+width, h=ht);
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}
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// outer cylinder which is substracted, so the text and the logo end
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// outer cylinder which is substracted, so the text and the logo end
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// somewhere on the outside ;-)
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// somewhere on the outside ;-)
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difference () {
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difference () {
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91
fs-cover-cat.scad
Normal file
91
fs-cover-cat.scad
Normal file
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@ -0,0 +1,91 @@
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/**
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* This requires
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* https://files.printables.com/media/prints/451501/stls/4205518_58958bba-4c36-4995-b4e7-da5abd1ba821/loveboard-cover-r2.stl
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|
*
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||||||
|
* to be placed under `./stls/LoveBoard-cover-R2.stl` in order to work
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* but it needs a run in meshlabs uniform fcae orientation filter for
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* openscad to be happy with it
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*
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* if rendering is missing the ear infill, `Design` > `Flush Caches`
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* may be required.
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*/
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include <headband.scad>
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use <catear_headband.scad>
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HEIGHT=11;
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THICKNESS=1;
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SIDE_LEN=12;
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BEND_FACTOR=0.15;
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STRETCH_FACTOR=1.2;
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CHAMFER=0;
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CHAMFER_SHAPE="none";
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DEBUG=false;
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|
|
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FILL=true;
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FILL_HEIGHT_FACTOR=0.9;
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|
FILL_HEIGHT_FALLOFF_STEP=0;
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FILL_HEIGHT_FALLOFF_FACTOR=0.98;
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FILL_HEIGHT_FALLOFF_EXPONENT_FACTOR=3;
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FILL_STEP=0.5;
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|
module fs_cover() {
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translate([2.5, 0, 0])
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rotate(180, [0, 0, 1])
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translate([0, 0, 17])
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rotate(90, [1, 0, 0])
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|
import("stls/fs-cover.stl");
|
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|
}
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|
|
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module fs_cover_cat() {
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$fn=90;
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||||||
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union() {
|
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difference() {
|
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|
union() {
|
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for (i=[-1,1])
|
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|
scale([i, 1, 1])
|
||||||
|
translate([-13, 4, 5.5])
|
||||||
|
rotate(-80) {
|
||||||
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union() catear(
|
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|
height=HEIGHT,
|
||||||
|
thickness=THICKNESS,
|
||||||
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side_len=SIDE_LEN,
|
||||||
|
bend_factor=BEND_FACTOR,
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||||||
|
stretch_factor=STRETCH_FACTOR,
|
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|
debug=DEBUG,
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|
chamfer=CHAMFER,
|
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|
chamfer_shape=CHAMFER_SHAPE
|
||||||
|
);
|
||||||
|
if (FILL) {
|
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|
echo("BEGIN FILL");
|
||||||
|
for (i=[FILL_STEP:FILL_STEP:(SIDE_LEN-FILL_STEP)])
|
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|
color([0, (256-i*8)/256,0]) {
|
||||||
|
fill_height=(
|
||||||
|
HEIGHT * FILL_HEIGHT_FACTOR
|
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|
* pow(FILL_HEIGHT_FALLOFF_FACTOR,
|
||||||
|
(SIDE_LEN-1-i)*FILL_HEIGHT_FALLOFF_EXPONENT_FACTOR)
|
||||||
|
- ((SIDE_LEN-1-i)*FILL_HEIGHT_FALLOFF_STEP)
|
||||||
|
);
|
||||||
|
echo([i, fill_height]);
|
||||||
|
translate([0, 0, (fill_height-HEIGHT)/2])
|
||||||
|
union() catear(
|
||||||
|
height=fill_height,
|
||||||
|
thickness=THICKNESS,
|
||||||
|
side_len=i,
|
||||||
|
bend_factor=BEND_FACTOR,
|
||||||
|
stretch_factor=STRETCH_FACTOR,
|
||||||
|
chamfer=0,
|
||||||
|
chamfer_shape=CHAMFER_SHAPE
|
||||||
|
);
|
||||||
|
}
|
||||||
|
echo("END FILL");
|
||||||
|
}
|
||||||
|
}
|
||||||
|
}
|
||||||
|
scale(0.9999) hull() fs_cover();
|
||||||
|
}
|
||||||
|
color("red") fs_cover();
|
||||||
|
}
|
||||||
|
}
|
||||||
|
|
||||||
|
fs_cover_cat();
|
|
@ -12,7 +12,7 @@ RAKE_WIDTH=1;
|
||||||
RAKE_STRETCH=1;
|
RAKE_STRETCH=1;
|
||||||
RAKE_CHAMFER=0.5;
|
RAKE_CHAMFER=0.5;
|
||||||
CHAMFER=1;
|
CHAMFER=1;
|
||||||
CHAMFER_SHAPE="curve";
|
CHAMFER_SHAPE="cone";
|
||||||
|
|
||||||
INSERTICLE_X = 4.6;
|
INSERTICLE_X = 4.6;
|
||||||
INSERTICLE_Y = 7.4;
|
INSERTICLE_Y = 7.4;
|
||||||
|
|
|
@ -2,32 +2,69 @@ include <globals.scad>
|
||||||
|
|
||||||
use <headband.scad>
|
use <headband.scad>
|
||||||
|
|
||||||
|
RENDER_PLA = true;
|
||||||
|
RENDER_PETG = true;
|
||||||
|
|
||||||
module inserticle() {
|
module inserticle() {
|
||||||
cube([INSERTICLE_X, INSERTICLE_Y, INSERTICLE_Z], center=true);
|
cube([INSERTICLE_X, INSERTICLE_Y, INSERTICLE_Z], center=true);
|
||||||
}
|
}
|
||||||
|
|
||||||
module pressfit_headband(debug=DEBUG, size=SIZE, height=HEIGHT, thickness=THICKNESS, part=PART, stretch_len=STRETCH_LEN, tip_len=TIP_LEN, tip_bend=TIP_BEND) {
|
module anchored_inserticle() {
|
||||||
union() {
|
translate([-1, 0, 0]) rotate(90, [0, 1, 0]) inserticle();
|
||||||
color("pink") { $a=48;
|
rotate(90, [0, 1, 0]) {
|
||||||
rotate( $a, [0, 0, 1]) {
|
cube([INSERTICLE_X-2*CHAMFER, INSERTICLE_Y, INSERTICLE_Z], center=true);
|
||||||
translate([-size-4, 0,]) rotate(90, [0, 1, 0]) inserticle();
|
translate([0, 0, INSERTICLE_Z/2+0.5])
|
||||||
translate([-size-3, 0,]) rotate(90, [0, 1, 0]) inserticle();
|
cube([INSERTICLE_X/2, INSERTICLE_Y+2, 1], center=true);
|
||||||
}
|
}
|
||||||
rotate(-$a, [0, 0, 1]) {
|
}
|
||||||
translate([-size-4, 0,]) rotate(90, [0, 1, 0]) inserticle();
|
|
||||||
translate([-size-3, 0,]) rotate(90, [0, 1, 0]) inserticle();
|
module pla_parts(size, a) {
|
||||||
}
|
color("pink") {
|
||||||
|
for (i=[-1, 1]) {
|
||||||
|
union() {
|
||||||
|
rotate(i*a, [0, 0, 1]) {
|
||||||
|
translate([-size-3, 0, 0]) anchored_inserticle();
|
||||||
|
// translate([-size-4, 0,]) rotate(90, [0, 1, 0]) inserticle();
|
||||||
|
// translate([-size-3, 0,]) rotate(90, [0, 1, 0]) {
|
||||||
|
// cube([INSERTICLE_X-2*CHAMFER, INSERTICLE_Y, INSERTICLE_Z], center=true);
|
||||||
|
// translate([0, 0, INSERTICLE_Z/2+0.5])
|
||||||
|
// cube([INSERTICLE_X/2, INSERTICLE_Y+2, 1], center=true);
|
||||||
|
// }
|
||||||
}
|
}
|
||||||
headband(
|
}
|
||||||
size=size,
|
}
|
||||||
height=height,
|
}
|
||||||
thickness=thickness,
|
}
|
||||||
part=part,
|
|
||||||
stretch_len=stretch_len,
|
module petg_parts(size, height, thickness, part, stretch_len, tip_len, tip_bend) {
|
||||||
tip_len=tip_len,
|
headband(
|
||||||
tip_bend=tip_bend
|
size=size,
|
||||||
);
|
height=height,
|
||||||
};
|
thickness=thickness,
|
||||||
|
part=part,
|
||||||
|
stretch_len=stretch_len,
|
||||||
|
tip_len=tip_len,
|
||||||
|
tip_bend=tip_bend
|
||||||
|
);
|
||||||
|
}
|
||||||
|
|
||||||
|
module pressfit_headband(debug=DEBUG, size=SIZE, height=HEIGHT, thickness=THICKNESS, part=PART, stretch_len=STRETCH_LEN, tip_len=TIP_LEN, tip_bend=TIP_BEND, a=48) {
|
||||||
|
if (RENDER_PLA && RENDER_PETG) {
|
||||||
|
union() {
|
||||||
|
petg_parts(size, height, thickness, part, stretch_len, tip_len, tip_bend);
|
||||||
|
pla_parts(size, a);
|
||||||
|
}
|
||||||
|
} else {
|
||||||
|
if (RENDER_PETG) {
|
||||||
|
difference() {
|
||||||
|
petg_parts(size, height, thickness, part, stretch_len, tip_len, tip_bend);
|
||||||
|
pla_parts(size, a);
|
||||||
|
}
|
||||||
|
}
|
||||||
|
if (RENDER_PLA) {
|
||||||
|
pla_parts(size, a);
|
||||||
|
}
|
||||||
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
pressfit_headband();
|
pressfit_headband();
|
||||||
|
|
Loading…
Reference in a new issue