Fixed spiral trianglular voids for 50ft spiral
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@ -3,7 +3,6 @@
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include <../libraries/gnal_v3.scad>;
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include <../libraries/gnal_v3.scad>;
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SPOKE_COUNT = 24;
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SPOKE_COUNT = 24;
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PART="";
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module gnal_50ft_spiral (spiral_count = 40, od = 215.75) {
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module gnal_50ft_spiral (spiral_count = 40, od = 215.75) {
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outer_d = 215;
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outer_d = 215;
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@ -70,7 +69,7 @@ module gnal_50ft_spiral (spiral_count = 40, od = 215.75) {
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}
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}
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for (i = [0 : SPOKE_COUNT * 2]) {
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for (i = [0 : SPOKE_COUNT * 2]) {
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rotate([0, 0, (i + 0.5) * (360 / (SPOKE_COUNT * 2)) ]) {
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rotate([0, 0, (i + 0.5) * (360 / (SPOKE_COUNT * 2)) ]) {
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translate([(outer_d / 2) - (spoke_2_len / 2) + 1 , 0, -3.6]) triangle_void_2();
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translate([(outer_d / 2) - (spoke_2_len / 2) + 1 , 0, -3.6]) triangle_void_2(i);
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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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@ -157,9 +156,11 @@ module gnal_50ft_top () {
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module film_guide (rotations = 40, id = 45.55, spacing = 2.075) {
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module film_guide (rotations = 40, id = 45.55, spacing = 2.075) {
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$fn = 200;
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$fn = 200;
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//spiral(rotations, id, spacing, $fn);
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spiral(rotations, id, spacing, $fn);
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}
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}
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PART="spiral";
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if (PART == "spiral") {
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if (PART == "spiral") {
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gnal_50ft_spiral();
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gnal_50ft_spiral();
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} else if (PART == "top") {
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} else if (PART == "top") {
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@ -361,11 +361,12 @@ module gnal_spacer_16 () {
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**/
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**/
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module triangle_void () {
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module triangle_void () {
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length = (81 / 2) - 9;
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length = (81 / 2) - 9 + 10;
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width = 12;
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width = 12;
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height = 4.5 + 2.7;
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height = 4.5 + 2.7;
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ANGLE_A = 34.8;
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ANGLE_A = 34.8;
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ANGLE_B = 180 / SPOKE_COUNT;
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ANGLE_B = 180 / SPOKE_COUNT;
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ANGLE_C = 20;
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difference () {
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difference () {
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translate([-1, 0, 0]) cube([length, width, height], center = true);
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translate([-1, 0, 0]) cube([length, width, height], center = true);
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translate([0, 10.3, 0]) rotate([0, 0, ANGLE_B]) cube([length * 2, width, height + 1], center = true);
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translate([0, 10.3, 0]) rotate([0, 0, ANGLE_B]) cube([length * 2, width, height + 1], center = true);
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@ -373,23 +374,33 @@ module triangle_void () {
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translate([0, 10.3, -.7]) rotate([ANGLE_A, 0, 0]) cube([length *2, width, height * 10], center = true);
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translate([0, 10.3, -.7]) rotate([ANGLE_A, 0, 0]) cube([length *2, width, height * 10], center = true);
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translate([0, -10.3, -.7]) rotate([-ANGLE_A, 0, 0]) cube([length *2, width, height * 10], center = true);
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translate([0, -10.3, -.7]) rotate([-ANGLE_A, 0, 0]) cube([length *2, width, height * 10], center = true);
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}
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translate([(length / 2) + 2, 0, 0]) rotate([0, 0, ANGLE_C]) cube([10, width * 2, height + 1], center = true);
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}
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}
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module triangle_void_2 () {
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}
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length = 43 - 8;
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module triangle_void_2 (i) {
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length = 43 - 8 + 10;
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width = 12;
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width = 12;
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height = 4.5 + 2.7;
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height = 4.5 + 2.7;
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ANGLE_A = 34.8;
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ANGLE_A = 34.8;
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ANGLE_B = 90 / SPOKE_COUNT;
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ANGLE_B = 90 / SPOKE_COUNT;
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ANGLE_C = 20;
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angle_w = 10.2;
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angle_w = 10.2;
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difference () {
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difference () {
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translate([-1, 0, 0]) cube([length, width, height], center = true);
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translate([-3, 0, 0]) cube([length, width, height], center = true);
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translate([0, angle_w, 0]) rotate([0, 0, ANGLE_B]) cube([length *2, width, height * 10], center = true);
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translate([0, angle_w, 0]) rotate([0, 0, ANGLE_B]) cube([length *2, width, height * 10], center = true);
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translate([0, -angle_w, 0]) rotate([0, 0, -ANGLE_B]) cube([length *2, width, height * 10], center = true);
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translate([0, -angle_w, 0]) rotate([0, 0, -ANGLE_B]) cube([length *2, width, height * 10], center = true);
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translate([0, angle_w, -.7]) rotate([ANGLE_A, 0, 0]) cube([length *2, width, height * 10], center = true);
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translate([0, angle_w, -.7]) rotate([ANGLE_A, 0, 0]) cube([length *2, width, height * 10], center = true);
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translate([0, -angle_w, -.7]) rotate([-ANGLE_A, 0, 0]) cube([length *2, width, height * 10], center = true);
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translate([0, -angle_w, -.7]) rotate([-ANGLE_A, 0, 0]) cube([length *2, width, height * 10], center = true);
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if (i % 2 == 0) {
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translate([-(length / 2) - 5, 0, 0]) rotate([0, 0, ANGLE_C]) cube([10, width * 2, height + 1], center = true);
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} else {
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translate([-(length / 2) - 7, 0, 0]) rotate([0, 0, ANGLE_C]) cube([10, width * 2, height + 1], center = true);
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}
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}
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}
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}
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}
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