261 lines
6.6 KiB
OpenSCAD
261 lines
6.6 KiB
OpenSCAD
include<round_gates.scad>
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$fn = 32;
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collar_r = 34.7/2;
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collar_h = 8.7; // short collar: 8.7, full: 18
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shaft_r = 9/2; //should roughly match shaft for best feel
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//inner radius at bottom of official collar is 13.2
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cardinal_throw = 10;
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max_throw_square = 14;
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grommet_dist = 6.8; //distance the grommet sits below this component
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grommet_depth = 6.4; //thickness of grommet (when compressed)
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pivot_depth = grommet_dist + grommet_depth / 2;
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VERSION = "V1B";
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CIR = "CIR";
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SQR = "SQR";
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OCT = "OCT";
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OCTR = "OCTR";
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OCTN = "OCTN";
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OCTNR = "OCTNR";
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rotate([0,0,0]){
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/*
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* OCTNR corner test (seems to also match OCTN, nice!)
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* shaft(shaft_r, pivot_depth, [cardinal_throw+1.95,0,45]);
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*/
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juqs(model = OCTNR, ver = VERSION);
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}
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module juqs(model, ver) {
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rotate([0,0,0]) {
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difference() {
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difference() {
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union() {
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base();
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collar(collar_h);
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};
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if(model == CIR)
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translate([0,0,-pivot_depth])
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cir_gate(cardinal_throw, shaft_r);
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if(model == SQR)
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sqr_hollow(max_throw_square, shaft_r, pivot_depth);
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if(model == OCT)
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oct_hollow(cardinal_throw, shaft_r, pivot_depth);
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if(model == OCTR)
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translate([0,0,-pivot_depth])
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octr_gate(cardinal_throw, shaft_r);
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if(model == OCTN)
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octn_hollow(cardinal_throw, shaft_r, pivot_depth, 10);
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if(model == OCTNR)
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translate([0,0,-pivot_depth])
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octnr_gate(cardinal_throw, shaft_r);
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};
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translate([0, -11, -0.1]) {
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modtext = str("JUQS-",model);
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font = "Open Sans:style=Bold";
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fontsize = 3.75;
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mirror([1,0,0]) {
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linear_extrude(0.7){
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text(modtext, font=font, size=fontsize, halign = "center");
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translate([0, -5, 0])
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text(ver, font=font, size=fontsize, halign = "center");
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}
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};
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};
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};
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};
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//oct_hollow(cardinal_throw, shaft_r, pivot_depth);
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};
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module shaft(r, depth, rotation) {
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translate([0,0,-pivot_depth]){
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rotate(rotation)
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cylinder(h = 100, r = shaft_r);
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}
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};
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module base (size = [37.16, 37.1, 2.8], r = 8) {
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w = size.x;
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l = size.y;
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h = size.z;
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corner_offset = [w/2 - r, l/2 - r];
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hull() {
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translate([corner_offset.x, corner_offset.y, 0])
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cylinder(h=h, r=r);
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translate([-corner_offset.x, corner_offset.y, 0])
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cylinder(h=h, r=r);
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translate([corner_offset.x, -corner_offset.y, 0])
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cylinder(h=h, r=r);
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translate([-corner_offset.x, -corner_offset.y, 0])
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cylinder(h=h, r=r);
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};
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};
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// use h=18 for full collar
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module collar (h = 8.7, r = (34.7/2), bezel = 1) {
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union() {
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cylinder(h=h - bezel, r=r);
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translate([0,0,h - bezel]) {
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cylinder(h=bezel, r1 = r, r2= r - bezel);
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}
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}
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}
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module ci_pivot (throw, shaft_r) {
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h = 50;
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top_r = h * tan(throw) + shaft_r;
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cylinder(h = h, r1 = shaft_r, r2 = top_r);
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}
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module ci_bevel (throw, shaft_r, depth, b_height = 1) {
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cylinder(h = 50, r = shaft_r + (depth + b_height) * tan(throw));
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}
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module sq_pivot (throw, shaft_r, depth, sharpness = 1, throw_extend = 0) {
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h = 50;
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shaft_r = shaft_r / sharpness;
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corner_offset = shaft_r * (sharpness - 1);
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translate([0,0,-depth]) {
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hull() {
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translate([corner_offset,0,0])
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rotate([0,throw,0])
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ci_pivot(throw = throw_extend, shaft_r = shaft_r);
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translate([-corner_offset,0,0])
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rotate([0,-throw,0])
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ci_pivot(throw = throw_extend, shaft_r = shaft_r);
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rotate([0,0,90]) {
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translate([corner_offset,0,0])
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rotate([0,throw,0])
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ci_pivot(throw = throw_extend, shaft_r = shaft_r);
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translate([-corner_offset,0,0])
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rotate([0,-throw,0])
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ci_pivot(throw = throw_extend, shaft_r = shaft_r);
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}
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};
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}
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}
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module sq_bevel (throw, shaft_r, depth, sharpness = 1, throw_extend = 0, b_height = 1) {
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h = 50;
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shaft_r = shaft_r / sharpness;
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corner_offset = shaft_r * (sharpness - 1) + ((depth + b_height) * tan(throw));
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translate([0,0,-depth]) {
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hull() {
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translate([corner_offset,0,0])
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cylinder(h = h, r = shaft_r + (depth + b_height) * tan(throw_extend));
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translate([-corner_offset,0,0])
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cylinder(h = h, r = shaft_r + (depth + b_height) * tan(throw_extend));
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rotate([0,0,90]) {
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translate([corner_offset,0,0])
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cylinder(h = h, r = shaft_r + (depth + b_height) * tan(throw_extend));
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translate([-corner_offset,0,0])
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cylinder(h = h, r = shaft_r + (depth + b_height) * tan(throw_extend));
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}
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}
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}
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}
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module cir_hollow(slope, shaft_r, depth) {
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translate([0,0,-depth]) {
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ci_pivot(slope, shaft_r);
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ci_bevel(slope, shaft_r, depth);
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}
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}
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module sqr_hollow (slope, shaft_r, depth) {
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rotate([0,0,45]) {
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sq_pivot(slope, shaft_r, depth);
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sq_bevel(slope, shaft_r, depth);
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};
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};
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module oct_hollow (slope, shaft_r, depth) {
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hull() {
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rotate([0,0,45])
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sq_pivot(slope, shaft_r, depth);
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sq_pivot(slope, shaft_r, depth);
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}
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/*
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hull() {
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rotate([0,0,45])
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sq_bevel(slope, shaft_r, depth);
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sq_bevel(slope, shaft_r, depth);
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}
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*/
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};
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//work in progress
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module octn_hollow (slope, shaft_r, depth, sharpness = 1) {
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module octagon(slope, shaft_r, height, sharpness) {
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shaft_r = shaft_r / sharpness;
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cardinal = shaft_r * (sharpness - 1) + (height * tan(slope));
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corner = shaft_r * (sharpness - 1) + (height * tan(slope / 1.2));
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octagon = [
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[cardinal,0],
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[corner,corner],
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[0,cardinal],
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[-corner,corner],
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[-cardinal,0],
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[-corner,-corner],
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[0,-cardinal],
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[corner,-corner],
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];
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polygon(points=octagon);
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};
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hull(){
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translate([0,0,-0.1])
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linear_extrude(0.01)
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minkowski(){
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octagon(slope, shaft_r, depth, sharpness);
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circle(shaft_r / sharpness);
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}
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translate([0,0,collar_h])
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linear_extrude(0.01)
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minkowski(){
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octagon(slope, shaft_r, depth + collar_h, sharpness);
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circle(shaft_r / sharpness);
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}
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}
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};
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module octr_hollow (slope, shaft_r, depth) {
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union(){
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rotate([0,0,45])
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sq_pivot(slope, shaft_r, depth);
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sq_pivot(slope, shaft_r, depth);
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}
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union(){
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rotate([0,0,45])
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sq_bevel(slope, shaft_r, depth);
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sq_bevel(slope, shaft_r, depth);
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}
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};
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module octnr_hollow (slope, shaft_r, depth) {
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union(){
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rotate([0,0,45])
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sq_pivot(slope + 1, shaft_r, depth, 1, 1);
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sq_pivot(slope, shaft_r, depth);
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}
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union(){
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rotate([0,0,45])
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sq_bevel(slope + 1, shaft_r, depth, 1, 1);
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sq_bevel(slope, shaft_r, depth);
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}
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};
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module rotate_about_pt(rotation, pt) {
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translate(pt)
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rotate(rotation)
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translate(-pt)
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children();
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};
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