chiark / gitweb /
poster-tube-lid: introduce middle_bot_z (nfc)
[reprap-play.git] / poster-tube-lid.scad
1 // -*- C -*-
2
3 main_dia = 71.2 + 0.50 - 2.26;
4 top_minthick_middle = 4;
5 top_minthick_by_oring = 2.5;
6
7 main_cnr = 4.0;
8
9 rivet_posn = 6.0;
10 rivet_thick = 1.67;
11 rivet_width = 4.15 + 1.0;
12 rivet_tall = 5.51 + 0.49;
13
14 over_rivet_wall = 0.5;
15 side_rivet_gap = 1.5;
16
17 bayo_interf = 1.25;
18 bayo_behind = 3.5;
19 bayo_interf_width = 2.0;
20 bayo_interf_slope = 0.75;
21
22 oring_thick = 5.0;
23 oring_bore = 62.0;
24
25 oring_upper_embed_angle = 80;
26 oring_compress = 0.1; // proportion
27
28 side_taper = 1.0;
29
30 bayo_above_gap = 1.0;
31
32 bayo_entry = bayo_behind/3;
33
34 bayo_slice_size = 1;
35
36 brace_hole_width = 1.0;
37 brace_above_below = 1.2;
38 brace_end_shorter = 0.3;
39
40 jig_thick = 1.4;
41 jig_hole_dia = 3.0;
42 jig_rim = 5;
43 jig_mark = 5;
44
45 // calculated
46
47 bayo_entry_x = bayo_entry;
48 bayo_entry_z = bayo_entry;
49 bayo_inramp_x = bayo_entry;
50 bayo_inramp_z = bayo_entry;
51
52 oring_mid_dia = oring_bore + oring_thick;
53 oring_outer_dia = oring_mid_dia + oring_thick;
54
55 oring_oblate = (1 - oring_compress);
56
57 oring_y_rad = oring_thick/2 * oring_oblate;
58 oring_x_rad = oring_thick/2 / oring_oblate;
59
60 seal_thick = oring_y_rad * (1 + cos(oring_upper_embed_angle));
61
62 side_height = rivet_posn + bayo_behind + rivet_thick/2;
63 side_thick = rivet_tall + over_rivet_wall;
64
65 top_thick = max(top_minthick_middle,
66                 top_minthick_by_oring + oring_y_rad);
67
68 top_z = top_thick + seal_thick;
69
70 middle_bot_z = top_z - top_minthick_middle;
71
72 bayo_entry = bayo_behind / 3.0;
73 bayo_top_z = bayo_behind + rivet_thick + bayo_above_gap;
74 bayo_entry_ramp = bayo_entry + bayo_interf;
75
76 rivet_entry_width = rivet_width + side_rivet_gap;
77
78 jig_mark_rad = jig_mark + main_dia/2 + jig_thick;
79
80 $fs=0.5;
81 $fa=1;
82
83 // bayonet definition
84
85 bayo_a = [ bayo_entry_x, 0 ];
86 bayo_p = [ 0, bayo_entry_z ];
87 bayo_n = [ 0, bayo_behind-bayo_inramp_z ];
88 bayo_m = [ bayo_inramp_x, bayo_behind ];
89 bayo_l = bayo_m + bayo_interf * [ 1/bayo_interf_slope,  1 ];
90 bayo_k = bayo_l + [ bayo_interf_width, 0 ];
91 bayo_j = bayo_k + bayo_interf * [ 1/bayo_interf_slope, -1 ];
92 bayo_i = bayo_j + [ rivet_width, 0 ];
93 bayo_h = [ bayo_i[0], bayo_behind + rivet_thick
94                       + bayo_above_gap + bayo_interf ];
95 bayo_g = [ bayo_m[0] - rivet_width, bayo_h[1] ];
96
97 bayo_e = [-bayo_p[0], bayo_p[1]] - [rivet_entry_width,0];
98 bayo_d = [-bayo_a[0], bayo_a[1]] - [rivet_entry_width,0];
99 bayo_c = bayo_d + [0,-5];
100 bayo_b = bayo_a + [0,-5];
101
102 bayo_f = [ bayo_e[0], bayo_g[1] + (bayo_e[0] - bayo_g[0]) ];
103
104 bayo_polygon = [ bayo_a,
105                  bayo_b,
106                  bayo_c,
107                  bayo_d,
108                  bayo_e,
109                  bayo_f,
110                  bayo_g,
111                  bayo_h,
112                  bayo_i,
113                  bayo_j,
114                  bayo_k,
115                  bayo_l,
116                  bayo_m,
117                  bayo_n,
118                  bayo_p ];
119
120 echo(bayo_polygon);
121
122 module MainProfile(){
123   main_cnr_pos = [ side_thick, top_z ] - [1,1]*main_cnr;
124   difference(){
125     union(){
126       translate(main_cnr_pos){
127         intersection(){
128           difference(){
129             circle(r = main_cnr);
130             circle(r = main_cnr * 0.5);
131           }
132           square([10,10]);
133         }
134       }
135       polygon([[ -11,                   middle_bot_z      ],
136                [ -11,                   top_z             ],
137                [ main_cnr_pos[0],       top_z             ],
138                [ side_thick,            main_cnr_pos[1]   ],
139                [ side_thick,            -side_height      ],
140                [ side_taper,            -side_height      ],
141                [ 0,                     -rivet_posn       ],
142                [ 0,                     seal_thick        ],
143                [ -oring_x_rad,          seal_thick        ],
144                ],
145               convexity=10);
146     }
147     translate([ oring_mid_dia/2 - main_dia/2, 0 ])
148       hull(){
149       translate([ 0, oring_y_rad ])
150         scale([ 1/oring_oblate, oring_oblate ])
151         circle(oring_thick/2);
152       translate([ 0, oring_y_rad*2 - oring_thick/2 ])
153         circle(oring_thick/2);
154     }
155   }
156 }
157
158 module RotateProjectSlice(offset, slice_size, nom_rad, real_rad){
159   // nom_rad > real_rad
160   rotate([0,0, atan2(offset, nom_rad) ]){
161     intersection(){
162       translate([-offset, -10, 0])
163         rotate([90,0,0])
164         linear_extrude(height= nom_rad*2)
165         children(0);
166       translate([0,0, -25])
167         cylinder(h=50, r= real_rad);
168       translate([0,0, -25])
169         linear_extrude(height= 50)
170         polygon([ [ 0,0 ],
171                   [ -slice_size, -real_rad*2 ],
172                   [ +slice_size, -real_rad*2 ] ]);
173     }
174   }
175 }
176
177 module RotateProject(x_min, x_max, slice_size, nom_rad, real_rad){
178   offs = [ for (i=[ x_min :
179                     slice_size :
180                     x_max + slice_size ]) i ];
181   echo (offs);
182   for (off=offs)
183     RotateProjectSlice(off, slice_size, nom_rad, real_rad)
184     children(0);
185 }
186
187 module BayonetCutout(){
188   RotateProject(bayo_c[0], bayo_i[0], bayo_slice_size,
189                 main_dia/2 + side_thick, 
190                 main_dia/2 + rivet_tall)
191     polygon(bayo_polygon, convexity=10);
192 }
193
194 module ProfilesDemo(){ ////toplevel
195   translate([-10,0]) MainProfile();
196   translate([+10,0]) polygon(bayo_polygon, convexity=10);
197 }
198
199 module Cover(){ ////toplevel
200   render() difference(){
201     union(){
202       rotate_extrude(convexity=10)
203         translate([main_dia/2, 0])
204         MainProfile();
205       translate([0,0, middle_bot_z])
206         cylinder(h= top_minthick_middle, r = main_dia/2 - 10);
207     }
208     for (r=[0,180])
209       rotate([0,0, r])
210         translate([0,0, -side_height])
211         BayonetCutout();
212     for (r=[0 : 60 : 179]) {
213       rotate([0,0, r]) {
214         height = top_thick - brace_above_below*2;
215         translate([0,0, seal_thick + brace_above_below + height/2 ])
216         cube(center=true, [ oring_bore - brace_end_shorter,
217                             brace_hole_width, height ]);
218       }
219     }
220   }
221 }
222
223 module SavingHole(){
224   translate([0,0, -10])
225     cylinder(r= main_dia/2 - jig_rim, h=20);
226 }
227
228 module Jig(){ ////toplevel
229   difference(){
230     union(){
231       translate([0,0, -side_height]){
232         cylinder(r= main_dia/2 + jig_thick, h= side_height + jig_thick);
233       }
234       translate([-jig_mark_rad, 0, jig_thick - jig_mark])
235         cube([jig_mark_rad*2, jig_mark, jig_mark]);
236     }
237     translate([0,0, -side_height-1])
238       cylinder(r= main_dia/2, h= side_height + 1);
239     SavingHole();
240     translate([0,0, -rivet_posn])
241       rotate([90, 0,0])
242       translate([0,0, -100])
243       cylinder(r= jig_hole_dia/2, h = 200);
244   }
245 }
246
247 module CoverTest2(){ ////toplevel
248   difference(){
249     Cover();
250     SavingHole();
251   }
252 }
253
254 module CoverTest1(){ ////toplevel
255   difference(){
256     CoverTest2();
257     translate([0,0, -10])
258       cube([ main_dia*3, main_dia * .85, 20], center=true);
259   }
260 }
261
262 //ProfilesDemo();
263 //BayonetCutout();
264 //MainProfile();
265 //Cover();
266 //Jig();
267 //CoverTest();