Move stacking spindle design to shared library
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@ -278,18 +278,20 @@ if (PART == "spiral") {
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gnal_100ft_top();
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gnal_100ft_top();
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} else if (PART == "spacer") {
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} else if (PART == "spacer") {
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gnal_spacer();
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gnal_spacer();
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} else if (PART == "spacer_16") {
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gnal_spacer_16();
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} else if (PART == "insert_s8") {
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} else if (PART == "insert_s8") {
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gnal_spiral_bottom_insert_s8();
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gnal_spiral_bottom_insert_s8();
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} else if (PART == "insert_16") {
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} else if (PART == "insert_16") {
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gnal_spiral_bottom_insert_16();
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gnal_spiral_bottom_insert_16();
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} else if (PART == "insert_single") {
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} else if (PART == "insert_single") {
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gnal_spiral_bottom_insert_single();
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gnal_spiral_bottom_insert_single();
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} else if (PART == "spacer_16") {
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gnal_spacer_16();
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} else if (PART == "spindle_top") {
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} else if (PART == "spindle_top") {
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gnal_spindle_top();
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gnal_spindle_top();
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} else if (PART == "spindle_bottom") {
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} else if (PART == "spindle_bottom") {
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gnal_spindle_bottom();
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gnal_spindle_bottom();
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} else if (PART == "spindle_single") {
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} else if (PART == "spindle_single") {
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gnal_spindle_single();
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gnal_spindle_single();
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} else if (PART == "spindle_stacking") {
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rotate([0, 180, 0]) gnal_stacking_spindle();
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}
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}
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@ -193,39 +193,6 @@ module film_guide (rotations = 40, id = 45.55 - .5, spacing = 2.075, bottom = -2
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}
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}
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module gnal_stacking_spindle () {
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OD = 10.5 + .3;
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IN_LEN = 21;
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LEN = 17.1;
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ALT_LEN = 27.1;
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difference () {
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union () {
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gnal_spindle_base();
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translate([0, 0, -23.75]) gnal_spacer_solid();
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}
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//inner screw negative
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translate([0, 0, -30]) union() {
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if (DEBUG) {
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cylinder(r = OD / 2, h = IN_LEN);
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} else {
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metric_thread (diameter=OD, pitch=PITCH, thread_size = THREAD, length = IN_LEN);
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}
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translate([0, 0, 0.2]) {
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if (DEBUG) {
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cylinder(r = OD / 2, h = IN_LEN);
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} else {
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metric_thread (diameter=OD, pitch=PITCH, thread_size = THREAD, length = IN_LEN);
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}
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}
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}
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}
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difference () {
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outer_screw(LEN - 2);
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}
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}
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PART="spiral";
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PART="spiral";
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if (PART == "spiral") {
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if (PART == "spiral") {
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@ -242,22 +209,21 @@ if (PART == "spiral") {
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gnal_50ft_top();
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gnal_50ft_top();
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} else if (PART == "spacer") {
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} else if (PART == "spacer") {
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gnal_spacer();
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gnal_spacer();
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} else if (PART == "spacer_16") {
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gnal_spacer_16();
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} else if (PART == "insert_s8") {
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} else if (PART == "insert_s8") {
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gnal_spiral_bottom_insert_s8();
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gnal_spiral_bottom_insert_s8();
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} else if (PART == "insert_16") {
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} else if (PART == "insert_16") {
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gnal_spiral_bottom_insert_16();
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gnal_spiral_bottom_insert_16();
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} else if (PART == "insert_single") {
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} else if (PART == "insert_single") {
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gnal_spiral_bottom_insert_single();
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gnal_spiral_bottom_insert_single();
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} else if (PART == "spacer_16") {
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gnal_spacer_16();
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} else if (PART == "spindle_top") {
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} else if (PART == "spindle_top") {
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gnal_spindle_top();
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gnal_spindle_top();
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} else if (PART == "spindle_bottom") {
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} else if (PART == "spindle_bottom") {
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gnal_spindle_bottom();
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gnal_spindle_bottom();
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} else if (PART == "spindle_single") {
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} else if (PART == "spindle_single") {
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gnal_spindle_top();
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gnal_spindle_single();
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} else if (PART == "stacking") {
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} else if (PART == "spindle_stacking") {
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//stacking();
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rotate([0, 180, 0]) gnal_stacking_spindle();
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rotate([0, 180, 0]) gnal_stacking_spindle();
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} else if (PART == "spiral_test") {
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} else if (PART == "spiral_test") {
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difference () {
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difference () {
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@ -18,7 +18,6 @@ include <./Triangles.scad>;
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*/
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*/
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DEBUG = false;
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DEBUG = false;
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FINE = 200;
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FINE = 200;
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OD = 10 + .5;
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OD = 10 + .5;
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@ -792,4 +791,37 @@ module gnal_spindle_single () {
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translate([0, 0, -37.5 - SINGLE_INSERT + (21 / 2) - 1]) {
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translate([0, 0, -37.5 - SINGLE_INSERT + (21 / 2) - 1]) {
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cylinder(r = 10 / 2, h = 21, center = true, $fn = FINE);
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cylinder(r = 10 / 2, h = 21, center = true, $fn = FINE);
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}
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}
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}
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module gnal_stacking_spindle () {
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OD = 10.5 + .3;
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IN_LEN = 21;
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LEN = 17.1;
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ALT_LEN = 27.1;
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difference () {
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union () {
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gnal_spindle_base();
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translate([0, 0, -23.75]) gnal_spacer_solid();
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}
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//inner screw negative
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translate([0, 0, -30]) union() {
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if (DEBUG) {
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cylinder(r = OD / 2, h = IN_LEN);
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} else {
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metric_thread (diameter=OD, pitch=PITCH, thread_size = THREAD, length = IN_LEN);
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}
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translate([0, 0, 0.2]) {
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if (DEBUG) {
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cylinder(r = OD / 2, h = IN_LEN);
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} else {
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metric_thread (diameter=OD, pitch=PITCH, thread_size = THREAD, length = IN_LEN);
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}
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}
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}
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}
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difference () {
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outer_screw(LEN - 2);
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}
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}
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}
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