Update tslot naming and add an insert
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@ -10,7 +10,7 @@
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*
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* Modified to be used in customizer
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*/
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include <./common.scad>;
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//CUSTOMIZER VARIABLES
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ProfileCore = 4.3 * 1; // Profile core Ø (Default M5).
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@ -20,7 +20,7 @@ minkR_PF = 0.05 * 20; // Minkowski radius for the profile corners.
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//CUSTOMIZER VARIABLES END
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module 2020Profile(height, core = ProfileCore) {
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module 2020_profile(height, core = ProfileCore) {
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linear_extrude(height = height, center = true)
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union() {
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difference() {
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@ -29,10 +29,10 @@ module 2020Profile(height, core = ProfileCore) {
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square([1 * 20 - 2 * minkR_PF, 1 * 20 - 2 * minkR_PF], center = true);
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}
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translate([0, 0, 0]) circle(r = core / 2, $fn = 24);
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translate([-0.5 * 20 + 0.087 * 20, 0, 0]) tSlot();
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rotate([0, 0, 180]) translate([-0.5 * 20 + 0.087 * 20, 0, 0]) tSlot();
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translate([0, -0.5 * 20 + 0.087 * 20, 0]) rotate([0, 0, 90]) tSlot();
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translate([0, 0.5 * 20 - 0.087 * 20, 0]) rotate([0, 0, -90]) tSlot();
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translate([-0.5 * 20 + 0.087 * 20, 0, 0]) 2020_tslot();
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rotate([0, 0, 180]) translate([-0.5 * 20 + 0.087 * 20, 0, 0]) 2020_tslot();
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translate([0, -0.5 * 20 + 0.087 * 20, 0]) rotate([0, 0, 90]) 2020_tslot();
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translate([0, 0.5 * 20 - 0.087 * 20, 0]) rotate([0, 0, -90]) 2020_tslot();
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}
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}
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}
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@ -45,7 +45,7 @@ module fillet(rad) {
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}
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}
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module insideCutout() {
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module inside_cutout() {
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minkowski() {
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translate([0, 0, 0]) circle(r = minkR_IC, center = true, $fn = 32);
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hull() {
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@ -55,7 +55,7 @@ module insideCutout() {
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}
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}
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module doubleCutout() {
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module double_cutout() {
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union() {
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minkowski() {
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translate([0, 0, 0]) circle(r = minkR_IC, center = true, $fn = 32);
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@ -89,7 +89,7 @@ module doubleCutout() {
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}
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}
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module tSlot() {
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module 2020_tslot() {
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union() {
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translate([minkR_TS, 0, 0])
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minkowski() {
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@ -106,4 +106,26 @@ module tSlot() {
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scale([1, -1, 1]) translate([0, -0.255 * 20 / 2, 0]) fillet(minkR_TS / 2);
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scale([1, -1, 1]) translate([-0.087 * 20, -0.255 * 20 / 2, 0]) rotate([0, 0, 90]) fillet(minkR_TS / 2);
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}
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}
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module 2020_tslot_insert (pos = [0, 0, 0], rot = [0, 0, 0]) {
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H = 6;
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TopGapY = 7.3;
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TopGapZ = 4.3;
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BottomBevelY = 5;
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BottomBevelZ = -4;
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BevelAngle = 45;
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translate(pos) rotate(rot) difference() {
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cube([10, 10, H], center = true);
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//
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translate([0, TopGapY, TopGapZ]) cube([11, 10, H], center = true);
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translate([0, -TopGapY, TopGapZ]) cube([11, 10, H], center = true);
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//
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translate([0, -BottomBevelY, BottomBevelZ]) rotate([-BevelAngle, 0, 0]) cube([11, 10, H], center = true);
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translate([0, BottomBevelY, BottomBevelZ]) rotate([BevelAngle, 0, 0]) cube([11, 10, H], center = true);
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//nut
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translate([0, 0, -(H/2) + (3/2) - 0.01]) m3_nut(3);
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//bolt
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cylinder(r = R(3.25), h = H + 1, center = true, $fn = 30);
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}
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}
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