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- function segments (diameter) = min (50, max (ceil (diameter*6), 25));
- module metric_thread (diameter=8, pitch=1, length=1, internal=false, n_starts=1,
- thread_size=-1, groove=false, square=false, rectangle=0,
- angle=30, taper=0, leadin=0, leadfac=1.0, test=false)
- {
-
-
- local_thread_size = thread_size == -1 ? pitch : thread_size;
- local_rectangle = rectangle ? rectangle : 1;
- n_segments = segments (diameter);
- h = (test && ! internal) ? 0 : (square || rectangle) ? local_thread_size*local_rectangle/2 : local_thread_size / (2 * tan(angle));
- h_fac1 = (square || rectangle) ? 0.90 : 0.625;
-
- h_fac2 = (square || rectangle) ? 0.95 : 5.3/8;
- tapered_diameter = diameter - length*taper;
- difference () {
- union () {
- if (! groove) {
- if (! test) {
- metric_thread_turns (diameter, pitch, length, internal, n_starts,
- local_thread_size, groove, square, rectangle, angle,
- taper);
- }
- }
- difference () {
-
- if (groove) {
- cylinder (r1=diameter/2, r2=tapered_diameter/2,
- h=length, $fn=n_segments);
- } else if (internal) {
- cylinder (r1=diameter/2 - h*h_fac1, r2=tapered_diameter/2 - h*h_fac1,
- h=length, $fn=n_segments);
- } else {
-
- cylinder (r1=diameter/2 - h*h_fac2, r2=tapered_diameter/2 - h*h_fac2,
- h=length, $fn=n_segments);
- }
- if (groove) {
- if (! test) {
- metric_thread_turns (diameter, pitch, length, internal, n_starts,
- local_thread_size, groove, square, rectangle,
- angle, taper);
- }
- }
- }
-
- if (internal) {
-
- if (leadin == 2 || leadin == 3) {
- cylinder (r1=diameter/2, r2=diameter/2 - h*h_fac1*leadfac, h=h*h_fac1*leadfac,
- $fn=n_segments);
- }
-
- if (leadin == 1 || leadin == 2) {
- translate ([0, 0, length + 0.05 - h*h_fac1*leadfac]) {
- cylinder (r1=tapered_diameter/2 - h*h_fac1*leadfac, h=h*h_fac1*leadfac,
- r2=tapered_diameter/2,
- $fn=n_segments);
- }
- }
- }
- }
- if (! internal) {
-
- if (leadin == 2 || leadin == 3) {
- difference () {
- cylinder (r=diameter/2 + 1, h=h*h_fac1*leadfac, $fn=n_segments);
- cylinder (r2=diameter/2, r1=diameter/2 - h*h_fac1*leadfac, h=h*h_fac1*leadfac,
- $fn=n_segments);
- }
- }
-
- if (leadin == 1 || leadin == 2) {
- translate ([0, 0, length + 0.05 - h*h_fac1*leadfac]) {
- difference () {
- cylinder (r=diameter/2 + 1, h=h*h_fac1*leadfac, $fn=n_segments);
- cylinder (r1=tapered_diameter/2, r2=tapered_diameter/2 - h*h_fac1*leadfac, h=h*h_fac1*leadfac,
- $fn=n_segments);
- }
- }
- }
- }
- }
- }
- module english_thread (diameter=0.25, threads_per_inch=20, length=1,
- internal=false, n_starts=1, thread_size=-1, groove=false,
- square=false, rectangle=0, angle=30, taper=0, leadin=0,
- leadfac=1.0, test=false)
- {
-
- mm_diameter = diameter*25.4;
- mm_pitch = (1.0/threads_per_inch)*25.4;
- mm_length = length*25.4;
- echo (str ("mm_diameter: ", mm_diameter));
- echo (str ("mm_pitch: ", mm_pitch));
- echo (str ("mm_length: ", mm_length));
- metric_thread (mm_diameter, mm_pitch, mm_length, internal, n_starts,
- thread_size, groove, square, rectangle, angle, taper, leadin,
- leadfac, test);
- }
- module metric_thread_turns (diameter, pitch, length, internal, n_starts,
- thread_size, groove, square, rectangle, angle,
- taper)
- {
-
- n_turns = floor (length/pitch);
- intersection () {
-
- for (i=[-1*n_starts : n_turns+1]) {
- translate ([0, 0, i*pitch]) {
- metric_thread_turn (diameter, pitch, internal, n_starts,
- thread_size, groove, square, rectangle, angle,
- taper, i*pitch);
- }
- }
-
- translate ([0, 0, length/2]) {
- cube ([diameter*3, diameter*3, length], center=true);
- }
- }
- }
- module metric_thread_turn (diameter, pitch, internal, n_starts, thread_size,
- groove, square, rectangle, angle, taper, z)
- {
- n_segments = segments (diameter);
- fraction_circle = 1.0/n_segments;
- for (i=[0 : n_segments-1]) {
- rotate ([0, 0, i*360*fraction_circle]) {
- translate ([0, 0, i*n_starts*pitch*fraction_circle]) {
-
- thread_polyhedron ((diameter - taper*(z + i*n_starts*pitch*fraction_circle))/2,
- pitch, internal, n_starts, thread_size, groove,
- square, rectangle, angle);
- }
- }
- }
- }
- module thread_polyhedron (radius, pitch, internal, n_starts, thread_size,
- groove, square, rectangle, angle)
- {
- n_segments = segments (radius*2);
- fraction_circle = 1.0/n_segments;
- local_rectangle = rectangle ? rectangle : 1;
- h = (square || rectangle) ? thread_size*local_rectangle/2 : thread_size / (2 * tan(angle));
- outer_r = radius + (internal ? h/20 : 0);
-
-
- h_fac1 = (square || rectangle) ? 1.1 : 0.875;
- inner_r = radius - h*h_fac1;
-
- translate_y = groove ? outer_r + inner_r : 0;
- reflect_x = groove ? 1 : 0;
-
-
- x_incr_outer = (! groove ? outer_r : inner_r) * fraction_circle * 2 * PI * 1.02;
- x_incr_inner = (! groove ? inner_r : outer_r) * fraction_circle * 2 * PI * 1.02;
- z_incr = n_starts * pitch * fraction_circle * 1.005;
-
- x1_outer = outer_r * fraction_circle * 2 * PI;
- z0_outer = (outer_r - inner_r) * tan(angle);
-
-
-
- z1_outer = z0_outer + z_incr;
-
- bottom = internal ? 0.235 : 0.25;
- top = internal ? 0.765 : 0.75;
- translate ([0, translate_y, 0]) {
- mirror ([reflect_x, 0, 0]) {
- if (square || rectangle) {
-
-
- polyhedron (
- points = [
- [-x_incr_inner/2, -inner_r, bottom*thread_size],
- [x_incr_inner/2, -inner_r, bottom*thread_size + z_incr],
- [x_incr_inner/2, -inner_r, top*thread_size + z_incr],
- [-x_incr_inner/2, -inner_r, top*thread_size],
- [-x_incr_outer/2, -outer_r, bottom*thread_size],
- [x_incr_outer/2, -outer_r, bottom*thread_size + z_incr],
- [x_incr_outer/2, -outer_r, top*thread_size + z_incr],
- [-x_incr_outer/2, -outer_r, top*thread_size]
- ],
- faces = [
- [0, 3, 7, 4],
- [1, 5, 6, 2],
- [0, 1, 2, 3],
- [4, 7, 6, 5],
-
- [7, 2, 6],
- [7, 3, 2],
- [0, 5, 1],
- [0, 4, 5]
- ]
- );
- } else {
-
-
- polyhedron (
- points = [
- [-x_incr_inner/2, -inner_r, 0],
- [x_incr_inner/2, -inner_r, z_incr],
- [x_incr_inner/2, -inner_r, thread_size + z_incr],
- [-x_incr_inner/2, -inner_r, thread_size],
- [-x_incr_outer/2, -outer_r, z0_outer],
- [x_incr_outer/2, -outer_r, z0_outer + z_incr],
- [x_incr_outer/2, -outer_r, thread_size - z0_outer + z_incr],
- [-x_incr_outer/2, -outer_r, thread_size - z0_outer]
- ],
- faces = [
- [0, 3, 7, 4],
- [1, 5, 6, 2],
- [0, 1, 2, 3],
- [4, 7, 6, 5],
-
- [7, 2, 6],
- [7, 3, 2],
- [0, 5, 1],
- [0, 4, 5]
- ]
- );
- }
- }
- }
- }
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