chiark / gitweb /
poster-tube-lid: Drop commented-out old thing (nfc)
[reprap-play.git] / poster-tube-lid.scad
1 // -*- C -*-
2
3 include <funcs.scad>
4
5 coarse = false;
6
7 main_dia = 71.2 + 0.50 - 2.26;
8 top_thick_middle = 4;
9 top_thick_by_oring = 3.0;
10 top_middle_dr = 11;
11
12 main_cnr = 6.0;
13
14 min_wall = 3;
15
16 rivet_posn = 6.0 + 0.30;
17 rivet_thick = 1.67;
18 rivet_width = 4.15 + 1.0;
19 rivet_tall = 5.51 + 1.49;
20
21 over_rivet_wall = 1.0;
22 side_rivet_gap = 1.5;
23 inside_rivet_gap = 1.5;
24
25 bayo_interf = 0.30;
26 bayo_behind = 3.5;
27 bayo_interf_width = 2.0;
28 bayo_interf_slope = 0.5;
29
30 oring_thick = 5.0;
31 oring_bore = 62.0;
32
33 oring_upper_embed_angle = 80;
34 oring_compress = 0.1; // proportion
35 oring_compress_more = 0.2;
36
37 oring_rm_beside = 8;
38 oring_rm_scale = 2.0;
39 oring_rm_angle = 20;
40
41 side_taper = 1.0;
42
43 bayo_gap = 6.0;
44
45 bayo_entry = bayo_behind/3;
46
47 bayo_slice_size = coarse ? 5 : 1;
48
49 brace_hole_width = 1.0;
50 brace_above_below = 1.2;
51 brace_end_shorter = 0.3;
52
53 jig_thick = 1.4;
54 jig_hole_dia = 3.0;
55 jig_rim = 5;
56 jig_mark = 5;
57
58 strap_hoop_thick = 6;
59 strap_hoop_inside = 10;
60 strap_hoop_strlen = 10;
61 strap_hoop_elevation = 45;
62
63 sm_inner_circum = 218 - 1.90 - 1.00 - 0.50;
64 sm_main_thick = 2.0;
65 sm_main_width = 20;
66
67 sm_bolt_dia = 3.5 + 0.1;
68 sm_bolt_shaft = 21.9;
69 sm_bolt_head_dia = 6.94 + 1.0;
70 sm_bolt_head_thick = 2.14;
71 sm_bolt_nut_width = 5.89 + 0.25;
72 sm_bolt_nut_thick = 3.68;
73 sm_bolt_tighten_allow = 2.0;
74
75 sm_bolt_y_clear = 0.75;
76 sm_bolt_y_over = 0.5;
77
78 sm_closure_cnr = 3.0;
79
80 catch_stalk_h = 4.5;
81 catch_stalk_len = 50;
82 catch_head_th = 3;
83
84 catch_pin_slop = 0.25; // each side, and above
85 catch_pin_slop_x_extra = 0.0; // only on one side
86 catch_stalk_above_gap = 1.5;
87 catch_stalk_eff_bend_rad = catch_stalk_len * 0.75;
88
89 catch_strap_width = 12;
90 catch_stalk_base_width = 15;
91
92 catch_knob_dia = 6;
93 catch_knob_above_gap = 5;
94 catch_knob_height = 5;
95
96 catch_stalk_below_gap = 1.0;
97 catch_stalk_beside_gap = 2.0;
98
99 // calculated
100
101 TAU = PI*2;
102
103 bayo_entry_x = bayo_entry;
104 bayo_entry_z = bayo_entry;
105 bayo_inramp_x = bayo_entry;
106 bayo_inramp_z = bayo_entry;
107
108 oring_mid_dia = oring_bore + oring_thick;
109 oring_outer_dia = oring_mid_dia + oring_thick;
110
111 oring_oblate = (1 - oring_compress);
112
113 oring_y_rad = oring_thick/2 * oring_oblate;
114 oring_x_rad = oring_thick/2 / oring_oblate;
115
116 by_oring_z = oring_y_rad * (1 + cos(oring_upper_embed_angle));
117
118 side_height = rivet_posn + bayo_behind + rivet_thick/2;
119 side_thick = rivet_tall + over_rivet_wall;
120
121 top_z = top_thick_by_oring + oring_y_rad + by_oring_z;
122
123 middle_bot_z = top_z - top_thick_middle;
124
125 bayo_entry = bayo_behind / 3.0;
126 bayo_top_z = bayo_behind + bayo_gap;
127
128 bayo_nom_rad = main_dia/2 + side_thick;
129 bayo_real_rad = main_dia/2 + rivet_tall;
130
131 rivet_entry_width = rivet_width + side_rivet_gap;
132
133 jig_mark_rad = jig_mark + main_dia/2 + jig_thick;
134
135 handling_dia = oring_bore + oring_thick*2 + min_wall*2;
136 handling_angle = 45;
137
138 sm_inner_rad = (sm_inner_circum + sm_bolt_tighten_allow/2) / TAU;
139 sm_outer_rad = sm_inner_rad + sm_main_thick;
140
141 smc_pos = [ 0, sm_inner_rad, 0 ];
142
143 smc_bolt_nut_dia = sm_bolt_nut_width / cos(30);
144 smc_bolt_nut_eff_thick = sm_bolt_nut_thick + sm_bolt_tighten_allow;
145
146 smc_bolt_y = sm_bolt_dia/2 + sm_bolt_y_clear;
147 smc_max_y = smc_bolt_y + sm_bolt_y_over
148   + max(sm_bolt_head_dia/2, smc_bolt_nut_dia/2);
149 smc_cnr_c_x = sm_bolt_shaft/2 - sm_closure_cnr
150   + sm_bolt_head_thick/2 + smc_bolt_nut_eff_thick/2;
151
152 catch_cr = catch_knob_dia/2 + catch_stalk_beside_gap;
153 catch_strap_thick = sm_main_thick;
154
155 echo("R ", sm_inner_rad, bayo_real_rad, bayo_nom_rad);
156
157 $fs= coarse ? 2.5 : 0.5;
158 $fa= coarse ? 5 : 1;
159
160 include <poster-tube-lid-parametric.scad>
161
162 // bayonet definition
163
164 bayo_a = [ bayo_entry_x, 0 ];
165 bayo_p = [ 0, bayo_entry_z ];
166 bayo_n = [ 0, bayo_behind-bayo_inramp_z ];
167 bayo_m = [ bayo_inramp_x, bayo_behind ];
168 bayo_l = bayo_m + bayo_interf * [ 1/bayo_interf_slope,  1 ];
169 bayo_k = bayo_l + [ bayo_interf_width, 0 ];
170 bayo_j = bayo_k + bayo_interf * [ 1/bayo_interf_slope, -1 ];
171 bayo_i = bayo_j + [ rivet_width + inside_rivet_gap, 0 ];
172 bayo_h = [ bayo_i[0], bayo_behind + bayo_gap + bayo_interf ];
173 bayo_g = [ bayo_m[0] - rivet_width, bayo_h[1] ];
174
175 bayo_e = [-bayo_p[0], bayo_p[1]] - [rivet_entry_width,0];
176 bayo_d = [-bayo_a[0], bayo_a[1]] - [rivet_entry_width,0];
177 bayo_c = bayo_d + [0,-5];
178 bayo_b = bayo_a + [0,-5];
179
180 bayo_f = [ bayo_e[0], bayo_g[1] + (bayo_e[0] - bayo_g[0]) ];
181
182 bayo_polygon = [ bayo_a,
183                  bayo_b,
184                  bayo_c,
185                  bayo_d,
186                  bayo_e,
187                  bayo_f,
188                  bayo_g,
189                  bayo_h,
190                  bayo_i,
191                  bayo_j,
192                  bayo_k,
193                  bayo_l,
194                  bayo_m,
195                  bayo_n,
196                  bayo_p ];
197
198 echo(bayo_polygon);
199
200 // CATCH
201
202 cppxC = 0.41 * sm_inner_rad * TAU;
203
204 // catch pin
205
206 cpp_adj = (bayo_n[0] - bayo_f[0]) * (1 - sm_inner_rad / bayo_nom_rad);
207 // radius scaling due to nom and actual radius difference in
208 // bayo entry construction
209
210 cppa = bayo_f + [1,-1] * catch_pin_slop + [1,0] * cpp_adj;
211 cppb = bayo_g + [1,-1] * catch_pin_slop + [1,0] * cpp_adj;
212 cppd = [ bayo_n[0]
213          - catch_pin_slop - catch_pin_slop_x_extra,
214          -catch_stalk_above_gap ];
215 cppc = [ cppd[0], cppb[1] ];
216 cpph = cppd + [0,-1] * catch_stalk_h;
217 cppe = cppd + [0,-1] * (catch_knob_above_gap + catch_knob_dia/2);
218 cppf = [ cppa[0], cppe[1] ];
219 cppg = [ cppa[0], cpph[1] ];
220 cppB = 0.5 * (cppf + cppe);
221
222 echo("RR", sm_inner_rad / bayo_nom_rad);
223
224 // catch assembly depression below pin
225
226 cppy6 = cppB[1] - (catch_knob_dia/2
227                    + (cppc[1] - cppd[1])
228                    + catch_stalk_below_gap);
229 cpp7 = [ cppB[0], cppy6 + catch_cr ];
230 cpp11 = cpp7 + [1,0] * catch_cr;
231 cppy9 = cppy6 + catch_strap_width * 1/3;
232 cpp9 = [ cpp7[0] + catch_cr * 2, cppy9 ];
233 cpp8 = cpp9 + [0,-1] * catch_cr;
234 cpp10 = cpp8 + [-1,0] * catch_cr;
235 cppC = [ cppxC, cpp9[1] ];
236 cppD = cppC + [0,-1] * catch_strap_width;
237
238 // catch assembly stalk and so on
239
240 cppF = [ cppg[0] - catch_stalk_eff_bend_rad, cppd[1] ];
241 cpp4 = [ cppg[0] - catch_stalk_len, cpph[1] ] + [1,-1] * catch_cr;
242 cpp5 = [ cpp4[0], cppC[1] + catch_cr ];
243 cpp2 = cpp5 + [-1,0] * (catch_cr * 2 + catch_stalk_base_width);
244 cpp2r = cpp2 + [1,0] * catch_cr;
245 cpp2d = cpp2 + [0,-1] * catch_cr;
246 cpp3 = [ cpp2[0] + catch_cr * 2, cppd[1] - catch_cr ];
247 cppA = [ -cppxC, cpp9[1] ];
248 cppE = [ cppA[0], cppD[1] ];
249
250 catch_assembly_dy = -cppy9 + catch_strap_width;
251
252
253 module MainProfile(){
254   main_cnr_pos = [ side_thick, top_z ] - [1,1]*main_cnr;
255   difference(){
256     union(){
257       translate(main_cnr_pos){
258         intersection(){
259           difference(){
260             circle(r = main_cnr);
261             circle(r = main_cnr * 0.5);
262           }
263           square([10,10]);
264         }
265       }
266       polygon([[ -top_middle_dr,        middle_bot_z      ],
267                [ -top_middle_dr,        top_z             ],
268                [ main_cnr_pos[0],       top_z             ],
269                [ side_thick,            main_cnr_pos[1]   ],
270                [ side_thick,            -side_height      ],
271                [ side_taper,            -side_height      ],
272                [ 0,                     -rivet_posn       ],
273                [ 0,                     by_oring_z        ],
274                [ -oring_x_rad,          by_oring_z        ],
275                ],
276               convexity=10);
277     }
278     translate([ oring_mid_dia/2 - main_dia/2, 0 ])
279       hull(){
280       translate([ 0, oring_y_rad ])
281         scale([ 1/oring_oblate * (oring_compress_more+1) , oring_oblate ])
282         circle(oring_thick/2);
283       translate([ 0, oring_y_rad*2 - oring_thick/2 ])
284         circle(oring_thick/2);
285     }
286   }
287 }
288
289 module StrapHoopProfile(){
290   circle(r = strap_hoop_thick/2);
291 }
292
293 module StrapHoop(){ ////toplevel
294   bigrad = strap_hoop_inside/2 + strap_hoop_thick/2;
295   extralen = strap_hoop_thick * 5;
296
297   intersection(){
298     rotate([strap_hoop_elevation, 0,0]){
299       for (x= [ -1, +1 ] * bigrad) {
300         translate([x, -extralen, 0])
301           rotate([-90,0,0])
302           linear_extrude(height= extralen + strap_hoop_strlen + 0.1,
303                          convexity=10)
304           StrapHoopProfile();
305       }
306       translate([0, strap_hoop_strlen, 0]){
307         intersection(){
308           rotate_extrude(convexity=10)
309             translate([bigrad, 0,0])
310             StrapHoopProfile();
311           translate([0,50,0])
312             cube([100,100,100], center=true);
313         }
314       }
315     }
316     translate([0, 50, 0])
317       cube(100, center=true);
318   }
319 }
320
321 module RotateProjectSlice(offset, slice_size, nom_rad, real_rad){
322   // nom_rad > real_rad
323   rotate([0,0, atan2(offset, nom_rad) ]){
324     intersection(){
325       translate([-offset, -10, 0])
326         rotate([90,0,0])
327         linear_extrude(height= nom_rad*2)
328         children(0);
329       translate([0,0, -25])
330         cylinder(h=50, r= real_rad);
331       translate([0,0, -25])
332         linear_extrude(height= 50)
333         polygon([ [ 0,0 ],
334                   [ -slice_size, -real_rad*2 ],
335                   [ +slice_size, -real_rad*2 ] ]);
336     }
337   }
338 }
339
340 module RotateProject(x_min, x_max, slice_size, nom_rad, real_rad){
341   offs = [ for (i=[ x_min :
342                     slice_size :
343                     x_max + slice_size ]) i ];
344   echo (offs);
345   for (off=offs)
346     RotateProjectSlice(off, slice_size, nom_rad, real_rad)
347     children(0);
348 }
349
350 module BayonetCutout(){
351   RotateProject(bayo_c[0], bayo_i[0], bayo_slice_size,
352                 bayo_nom_rad, 
353                 bayo_real_rad)
354     translate([-0.5 * (bayo_a[0] + bayo_d[0]), 0])
355     polygon(bayo_polygon, convexity=10);
356 }
357
358 module ProfilesDemo(){ ////toplevel
359   translate([-10,0]) MainProfile();
360   translate([+10, -side_height]) polygon(bayo_polygon, convexity=10);
361 }
362
363 module LimitForHandling(){ ////toplevel
364   hull() for (r=[0,180])
365     rotate([0,0,r]) {
366       for (rs=[-1,+1]) {
367         for (xd=[0,1]) {
368           rotate([0,0, rs * handling_angle/2]) {
369             translate([rs * xd * main_dia/2 * tan(handling_angle/2),
370                        main_dia/2 + side_thick - main_cnr,
371                        top_z - main_cnr]) {
372               mirror([0,0,1])
373                 cylinder(r= main_cnr, h=50);
374               sphere(main_cnr);
375             }
376           }
377         }
378       } 
379     }
380   hull() rotate_extrude(){
381     translate([ handling_dia/2 - main_cnr, top_z - main_cnr ]) {
382       circle(r = main_cnr);
383       mirror([0,1]) square([ main_cnr, 50 ]);
384     }
385   }
386   //cylinder(r= handling_dia/2, h=20);
387 }
388
389 module Cover(){ ////toplevel
390   render() difference(){
391     intersection(){
392       union(){
393         rotate_extrude(convexity=10)
394           translate([main_dia/2, 0])
395           MainProfile();
396         translate([0,0, middle_bot_z])
397           cylinder(h= top_thick_middle, r = main_dia/2 - top_middle_dr + 1);
398       }
399       LimitForHandling();
400     }
401     for (r=[0,180]){
402       rotate([0,0, r])
403         translate([0,0, -side_height])
404         BayonetCutout();
405       rotate([0,0, r + asin((-oring_rm_beside) / (main_dia/2))])
406         translate([0,
407                    oring_mid_dia/2 + oring_thick/4 * oring_rm_scale,
408                    oring_y_rad * 1.5])
409         rotate([-oring_rm_angle, 0, 0])
410         mirror([0,0,1])
411         cylinder(r = oring_thick/4 * oring_rm_scale, h=20);
412     }
413     for (r=[0 : 60 : 179]) {
414       rotate([0,0, r]) {
415         height = top_thick_middle - brace_above_below*2;
416         translate([0,0, middle_bot_z + brace_above_below + height/2 ])
417         cube(center=true, [ oring_bore - brace_end_shorter,
418                             brace_hole_width, height ]);
419       }
420     }
421   }
422   for (r=[0,180])
423     rotate([0,0,r])
424       translate([-implheadcup_large_dia * .5 - implheadcup_thick/2,
425                  -implheadcup_large_dia * .0,
426                  middle_bot_z + 0.1])
427       ImplHeadCup();
428 //  translate(strap_hoop_thick * [-0.5, 0, +1])
429 //    translate([handling_dia/2, 0, -side_height])
430 //    rotate([0,180,0]) rotate([0,0,90])
431 //    StrapHoop();
432 }
433
434 module SavingHole(){
435   translate([0,0, -10])
436     cylinder(r= main_dia/2 - jig_rim, h=20);
437 }
438
439 module Jig(){ ////toplevel
440   difference(){
441     union(){
442       translate([0,0, -side_height]){
443         cylinder(r= main_dia/2 + jig_thick, h= side_height + jig_thick);
444       }
445       translate([-jig_mark_rad, 0, jig_thick - jig_mark])
446         cube([jig_mark_rad*2, jig_mark, jig_mark]);
447     }
448     translate([0,0, -side_height-1])
449       cylinder(r= main_dia/2, h= side_height + 1);
450     SavingHole();
451     translate([0,0, -rivet_posn])
452       rotate([90, 0,0])
453       translate([0,0, -100])
454       cylinder(r= jig_hole_dia/2, h = 200);
455   }
456 }
457
458 module CoverTest2(){ ////toplevel
459   difference(){
460     Cover();
461     SavingHole();
462   }
463 }
464
465 module CoverTest1(){ ////toplevel
466   difference(){
467     CoverTest2();
468     difference(){
469       for (r= [ 40, 147 ]){
470         rotate([0,0, r]){
471           translate([0,0, -10]) {
472             cube([ main_dia*3, main_dia * .53, 18], center=true);
473           }
474         }
475       }
476 //      translate([ 50, 0, 0 ])
477 //      cube([ 100,
478 //             strap_hoop_inside + strap_hoop_thick*2 + 1,
479 //             100 ],
480 //           center=true);
481     }
482   }
483 }
484
485 module ImplHeadCupTest(){ ////toplevel
486   for (r=[0,180])
487     rotate([0,0,r])
488       translate([-17,0,0])
489       ImplHeadCup();
490 }
491
492 module SomeStrap(width){
493   // children(0) is to add, (1) subtract
494   difference(){
495     union(){
496       cylinder(r=sm_outer_rad, h=width);
497       StrapMountProtrusion(smc_cnr_c_x + sm_closure_cnr,
498                            smc_max_y,
499                            sm_closure_cnr,
500                            width);
501       children(0);
502     }
503     translate([0,0,-1])
504       cylinder(r=sm_inner_rad, h=width+2);
505     translate(smc_pos)
506       StrapMountBolt(10, width);
507     translate(smc_pos)
508       cube([ sm_bolt_tighten_allow, 40,100 ], center=true);
509     children(1);
510   }
511 }
512
513 module StrapMountBolt(l_delta, strap_width){ ///toplevel
514   // positioned relative to smc_pos
515   translate([(smc_bolt_nut_eff_thick - sm_bolt_head_thick)/2,
516              smc_bolt_y,
517              strap_width/2]){
518     translate([ -sm_bolt_shaft/2-1, 0,0 ]){
519       rotate([0,90,0]) cylinder(r= sm_bolt_dia/2, h= sm_bolt_shaft+2);
520     }
521     translate([ -sm_bolt_shaft/2, 0,0 ])
522       rotate([0,-90,0])
523       cylinder($fn=6, r=smc_bolt_nut_dia/2,
524                h=smc_bolt_nut_eff_thick + l_delta);
525     translate([ sm_bolt_shaft/2, 0,0 ])
526       rotate([0,90,0])
527       cylinder(r=sm_bolt_head_dia/2, h=sm_bolt_head_thick + l_delta);
528   }
529 }
530
531 module StrapMountProtrusion(half_x, max_y, cnr, width){
532   translate(smc_pos){
533     linear_extrude(height=width, convexity=10){
534       hull(){
535         for (m = [0,1]) mirror([m,0,0]) {
536           translate([-(half_x - cnr), max_y - cnr])
537             circle(r=cnr);
538           translate([-half_x, -sm_inner_rad])
539             square([1,1]);
540         }
541       }
542     }
543   }
544 }
545
546 module StrapMount(){ ////toplevel
547   SomeStrap(sm_main_width){
548     rotate([0,0,180]){
549       StrapMountProtrusion(strap_hoop_inside/2 + strap_hoop_thick,
550                            strap_hoop_thick,
551                            sm_closure_cnr);
552       translate(smc_pos +
553                 [0,0, sm_main_width] +
554                 strap_hoop_thick * [ 0, 0.5, -1.0 ])
555         StrapHoop();
556     }
557     union(){ };
558   }
559 }
560
561 module CatchAssemblyCoreProfile(){
562   difference(){
563     union(){
564       hull(){
565         translate(cpp3) circle(r= catch_cr);
566         polygon([ cpp3,
567                   cpp2r,
568                   cpp5,
569                   cpph,
570                   cppd
571                   ]);
572       }
573       polygon([cppD,
574                cppC,
575                cpp9,
576                cpp10,
577                cpp11,
578                cpp4,
579                cpp2r,
580                cpp2d,
581                cppA,
582                cppE
583                ]);
584       translate(cpp8) circle(r= catch_cr);
585     }
586     hull(){
587       translate(cpp4) circle(r= catch_cr);
588       translate(cpp5) circle(r= catch_cr);
589       translate(cpp7) circle(r= catch_cr);
590       polygon([cpp4,
591                cppg,
592                cpph,
593                cpp10,
594                cpp11,
595                ]);
596     }
597     translate(cpp2) circle(r= catch_cr);
598   }
599   // if cpp11 is above cpp10, the subtracted hull above
600   // can go down too far.  Ensure we do not cut off below cppy6.
601   polygon([ cppE,
602             cppD,
603             cpp9,
604             [ cpp9[0],            cppy6 ],
605             [ cpp7[0] - catch_cr, cppy6 ],
606             cpp2d
607             ]);
608 }
609
610 module CatchHeadProfile(){
611   intersection(){
612     translate(cppF){
613       difference(){
614         circle(r = dist2d(cppF, cppd));
615         //circle(r = dist2d(cppF, cppa));
616       }
617     }
618     polygon([ cppa,
619               cppg,
620               cpph,
621               cppd,
622               cppc,
623               cppb ]);
624   }
625   polygon([ cppd,
626             cppg,
627             cppf,
628             cppe,
629             cpph ]);
630 }
631
632
633 module CatchCore(){ /////toplevel
634   linear_extrude(height=catch_strap_thick, convexity=10)
635     CatchAssemblyCoreProfile();
636
637   linear_extrude(height=catch_head_th, convexity=10)
638     CatchHeadProfile();
639
640   translate(concat(cppB,[0])) hull(){
641     translate([0,0, catch_knob_height + catch_head_th - catch_knob_dia/2])
642       sphere(r = catch_knob_dia/2);
643     cylinder(r = catch_knob_dia/2, h = 0.1);
644   }
645 }
646
647 module CatchPreDistort(){ /////toplevel
648   scale(100 / sm_inner_rad)
649     rotate([90,0,0])
650     CatchCore();
651 }
652
653 module CatchAssembly(){ /////toplevel
654   rotate([0,0, -(cppe[0] + cppB[0] + catch_pin_slop) / sm_inner_rad * 360/TAU])
655     translate([0,0, catch_assembly_dy])
656     scale(sm_inner_rad / 100)
657     import(str("poster-tube-lid,CatchPostDistort-fa",
658                (coarse ? 20 : 3),
659                ".stl"),
660            convexity=20);
661
662   SomeStrap(catch_strap_width){
663     union(){ }
664     union(){
665       translate([-200, -200, -200])
666         cube([400, 200, 400]);
667     }
668   }
669 }
670
671 module CatchDemo(){ /////toplevel
672   color("blue") translate([0,0,
673                            -catch_assembly_dy
674              ])
675     CatchAssembly();
676   translate([0,0,+side_height
677              ])
678     Cover();
679 }
680
681 module CatchDemoS(){ /////toplevel
682   color("blue") translate([0,0,
683              -catch_assembly_dy
684              ])
685     CatchAssembly();
686   intersection(){
687     translate([0,0,+side_height
688                ])
689       Cover();
690     mirror([0,1,0]) translate([-250,33,0]) cube([500,500,500]);
691   }
692   color("black")
693     translate([0,-33,0])
694     cube([6.15, 2,2], center=true);
695 }
696
697 module CatchPinProfileDemo(){ /////toplevel
698   echo("G ",
699        cpp2[0] - cpp1[0],
700        bayo_n[0] - bayo_e[0]);
701   color("blue") translate([0,0,
702                            +1,
703              ]) {
704     CatchAssemblyCoreProfile();
705     CatchHeadProfile();
706   }
707   polygon(bayo_polygon, convexity=10);
708 }
709
710 //ProfilesDemo();
711 //BayonetCutout();
712 //MainProfile();
713 //Cover();
714 //Jig();
715 //CoverTest();