Add top bevel
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+21
-17
@@ -11,7 +11,6 @@ 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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@@ -29,12 +28,12 @@ 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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* shaft(shaft_r, pivot_depth, [throw+1.95,0,45]);
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*/
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juqs(model = SQR, ver = VERSION, collar_h = short_collar);
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juqs(model = OCTNR, ver = VERSION, collar_h = short_collar);
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}
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module juqs(model, ver, collar_h = short_collar) {
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module juqs(model, ver, collar_h = short_collar, throw = cardinal_throw) {
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rotate([0,0,0]) {
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difference() {
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difference() {
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@@ -42,20 +41,20 @@ module juqs(model, ver, collar_h = short_collar) {
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base();
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collar(collar_h);
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};
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bevels(collar_h) {
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bevels(collar_h, 0.6) {
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translate([0,0,-pivot_depth]){
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if(model == CIR)
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cir_gate(cardinal_throw, shaft_r);
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cir_gate(throw, shaft_r);
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if(model == SQR)
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shape_gate(sqr_poly, cardinal_throw, shaft_r);
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shape_gate(sqr_poly, throw, shaft_r);
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if(model == OCT)
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shape_gate(oct_poly, cardinal_throw, shaft_r);
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shape_gate(oct_poly, throw, shaft_r, 0.5);
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if(model == OCTR)
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octr_gate(cardinal_throw, shaft_r);
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octr_gate(throw, shaft_r);
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if(model == OCTN)
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shape_gate(octn_poly, cardinal_throw, shaft_r);
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shape_gate(octn_poly, throw, shaft_r, 0.5);
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if(model == OCTNR)
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octnr_gate(cardinal_throw, shaft_r);
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octnr_gate(throw, shaft_r);
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}
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}
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};
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@@ -73,15 +72,20 @@ module juqs(model, ver, collar_h = short_collar) {
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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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//oct_hollow(throw, shaft_r, pivot_depth);
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};
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module bevels(pivot_depth, collar_height, size = 1){
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module bevels(collar_height, size = 0.8){
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translate([0,0,-0.1])
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linear_extrude(size + 0.1)
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projection(cut = true)
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translate([0,0,-size])
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children();
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translate([0,0,collar_height - size])
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linear_extrude(height = size + 0.1, scale = 1 + 0.125 * (size + 0.1))
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projection(cut = true)
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translate([0,0,-(collar_height - size)])
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children();
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children();
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}
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@@ -110,11 +114,11 @@ module base (size = [37.16, 37.1, 2.8], r = 8) {
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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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module collar (h = 8.7, r = (34.7/2), bevel = 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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cylinder(h=h - bevel, r=r);
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translate([0,0,h - bevel]) {
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cylinder(h=bevel, r1 = r, r2= r - bevel);
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}
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}
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}
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