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diff --git a/another.scad b/another.scad
index 38a9aae..7d2dfb3 100644
--- a/another.scad
+++ b/another.scad
@@ -248,147 +248,149 @@ module the_extruder(
248 cylinder(d=mount_screwhead_d,h=body_h+1,$fn=fnd*mount_screwhead_d); 248 cylinder(d=mount_screwhead_d,h=body_h+1,$fn=fnd*mount_screwhead_d);
249 }//for 249 }//for
250 // pushfit 250 // pushfit
251 translate([0,0,filament_elevation]) 251 translate([0,0,filament_elevation])
252 rotate([0,0,45]) translate([pulley_d/2,0,0]) 252 rotate([0,0,45]) translate([pulley_d/2,0,0])
253 rotate([-90,0,0]) 253 rotate([-90,0,0])
254 translate([0,0,mount_d/sqrt(2)/2+mount_screw_d+epsilon]) 254 translate([0,0,mount_d/sqrt(2)/2+mount_screw_d+epsilon])
255 rotate([0,0,180]) { 255 rotate([0,0,180]) {
256 pushfit(pf); 256 pushfit(pf);
257 cylinder(d=filament_guide_d,h=gearbox_d,center=true,$fn=fnd*filament_guide_d); 257 cylinder(d=filament_guide_d,h=gearbox_d,center=true,$fn=fnd*filament_guide_d);
258 translate([0,-filament_guide_d/2/sqrt(2),0]) 258 translate([0,-filament_guide_d/2/sqrt(2),0])
259 rotate([0,0,45]) 259 rotate([0,0,45])
260 cube(size=[filament_guide_d/2,filament_guide_d/2,gearbox_d],center=true); 260 cube(size=[filament_guide_d/2,filament_guide_d/2,gearbox_d],center=true);
261 }//rotate translate rotate translate rotate translate 261 }//rotate translate rotate translate rotate translate
262 // pulley 262 // pulley
263 cylinder(d=pulley_d+pulley_clearance,h=body_h+1,$fn=fnd*(pulley_d+pulley_clearance)); 263 cylinder(d=pulley_d+pulley_clearance,h=body_h+1,$fn=fnd*(pulley_d+pulley_clearance));
264 // leverspace 264 // leverspace
265 hull() for(x=[0,gearbox_d]) 265 hull() for(x=[0,gearbox_d])
266 rotate([0,0,45]) 266 rotate([0,0,45])
267 translate([x,0,ls_z-ls_h/2]) 267 translate([x,0,ls_z-ls_h/2])
268 cylinder(d=idler_d+idler_clearance,h=ls_h,$fn=fnd*(idler_d+idler_clearance)); 268 cylinder(d=idler_d+idler_clearance,h=ls_h,$fn=fnd*(idler_d+idler_clearance));
269 269
270 // idler clearance 270 // idler clearance
271 a=cos(45)*(pulley_d+idler_d)/2; 271 a=cos(45)*(pulley_d+idler_d)/2;
272 b=mount_d/2-a; 272 b=mount_d/2-a;
273 x=sqrt(pow(a,2)+pow(b,2)); 273 x=sqrt(pow(a,2)+pow(b,2));
274 translate([mount_d/2,0,ls_z]) 274 translate([mount_d/2,0,ls_z])
275 intersection() { 275 intersection() {
276 r = x+idler_d/2+idler_clearance; 276 r = x+idler_d/2+idler_clearance;
277 cylinder(r=r,h=ls_h,center=true); 277 cylinder(r=r,h=ls_h,center=true);
278 translate([-r-1,0,-ls_h/2-1]) cube(size=[2*r+2,r+1,ls_h+2]); 278 translate([-r-1,0,-ls_h/2-1]) cube(size=[2*r+2,r+1,ls_h+2]);
279 } 279 }
280 280
281 // back side cutout 281 // back side cutout
282 a0 = asin((mount_screwhead_d+2*extrusion_width)/mount_d); 282 a0 = asin((mount_screwhead_d+2*extrusion_width)/mount_d);
283 a1 = atan((longwing-lever_thickness/2)/(gearbox_d/2)); 283 a1 = atan((longwing-lever_thickness/2)/(gearbox_d/2));
284 translate([0,0,ls_z]) hull() { 284 translate([0,0,ls_z]) hull() {
285 rotate([0,0,-180+a0]) 285 rotate([0,0,-180+a0])
286 rotate_extrude(angle=a1-a0) 286 rotate_extrude(angle=a1-a0)
287 translate([0,-ls_h/2]) 287 translate([0,-ls_h/2])
288 square([sqrt(pow(gearbox_d/2,2)+pow(longwing-lever_thickness/2,2))+1, 288 square([sqrt(pow(gearbox_d/2,2)+pow(longwing-lever_thickness/2,2))+1,
289 ls_h]); 289 ls_h]);
290 cylinder(d=bore_d/2/*TODO:recalculate angles based on this, 290 cylinder(d=bore_d/2/*TODO:recalculate angles based on this,
291 too lazy to do that now*/, 291 too lazy to do that now*/,
292 h=ls_h,center=true); 292 h=ls_h,center=true);
293 } 293 }
294 294
295 rotate([0,0,-45]) 295 rotate([0,0,-45])
296 translate([0,0,ls_z-ls_h/2]) 296 translate([0,0,ls_z-ls_h/2])
297 cube(size=[gearbox_d,gearbox_d,lever_thickness+lever_v_clearance]); 297 cube(size=[gearbox_d,gearbox_d,lever_thickness+lever_v_clearance]);
298 translate([0,0,ls_z-ls_h/2]) { 298 translate([0,0,ls_z-ls_h/2]) {
299 translate([mount_screwhead_d/2,0,0]) 299 translate([mount_screwhead_d/2,0,0])
300 mirror([0,1,0]) 300 mirror([0,1,0])
301 cube(size=[gearbox_d,gearbox_d/2+1,lever_thickness+lever_v_clearance]); 301 cube(size=[gearbox_d,gearbox_d/2+1,lever_thickness+lever_v_clearance]);
302 } 302 }
303 //translate([-mount_d/2,-longwing,filament_elevation]) 303 //translate([-mount_d/2,-longwing,filament_elevation])
304 if(!tensioner) /* XXX: this seems to be bullshit, but it's so old, that it's historical bullshit */ 304 if(!tensioner) /* XXX: this seems to be bullshit, but it's so old, that it's historical bullshit */
305 translate([mount_d/2,-longwing,filament_elevation]) 305 translate([mount_d/2,-longwing,filament_elevation])
306 rotate([0,-90,0]) difference() { 306 rotate([0,-90,0]) difference() {
307 cylinder(d=spring_d+spring_d_clearance,h=spring_lc+spring_dl,$fn=fnd*(spring_d+spring_d_clearance)); 307 cylinder(d=spring_d+spring_d_clearance,h=spring_lc+spring_dl,$fn=fnd*(spring_d+spring_d_clearance));
308 translate([0,0,spring_lc+spring_dl]) sphere(d=spring_d*3/4,$fn=fnd*spring_d*3/4); 308 translate([0,0,spring_lc+spring_dl]) sphere(d=spring_d*3/4,$fn=fnd*spring_d*3/4);
309 } 309 }
310 310
311 }//difference 311 }//difference
312 312
313 if(supports) intersection() { 313 if(supports) intersection() {
314 difference() { 314 difference() {
315 translate([0,0,ls_z-ls_h/2-epsilon]) 315 translate([0,0,ls_z-ls_h/2-epsilon])
316 cylinder(d=gearbox_d,h=ls_h+2*epsilon,$fn=fnd*gearbox_d); 316 cylinder(d=gearbox_d,h=ls_h+2*epsilon,$fn=fnd*gearbox_d);
317 cylinder(d=pulley_d+pulley_clearance,h=body_h+1,$fn=fnd*(pulley_d+pulley_clearance)); 317 cylinder(d=pulley_d+pulley_clearance,h=body_h+1,$fn=fnd*(pulley_d+pulley_clearance));
318 } 318 }
319 // supports 319 // supports
320 // TODO: hardcoded stuff below… 320 // TODO: hardcoded stuff below…
321 if(false) { // parallel 321 if(false) { // parallel
322 for(y=[-gearbox_d:4:gearbox_d]) 322 for(y=[-gearbox_d:4:gearbox_d])
323 translate([0,y-extrusion_width/2,0]) 323 translate([0,y-extrusion_width/2,0])
324 cube(size=[gearbox_d,extrusion_width,body_h]); 324 cube(size=[gearbox_d,extrusion_width,body_h]);
325 }else{ // radial 325 }else{ // radial
326 for(zr=[-65:(65+50)/7:50]) 326 for(zr=[-65:(65+50)/7:50])
327 rotate([0,0,zr]) translate([0,-extrusion_width/2,0]) 327 rotate([0,0,zr]) translate([0,-extrusion_width/2,0])
328 cube(size=[gearbox_d,extrusion_width,body_h]); 328 cube(size=[gearbox_d,extrusion_width,body_h]);
329 } 329 }
330 } 330 }
331 331
332 }//body module 332 }//body module
333 333
334 module springpad() { 334 module springpad() {
335 smalld=st_screw_d+2*extrusion_width; 335 smalld=st_screw_d+2*extrusion_width;
336 bigd = spring_d+spring_d_clearance/2; 336 bigd = spring_d+spring_d_clearance/2;
337 hf = (bigd-smalld)/2; 337 hf = (bigd-smalld)/2;
338 translate([-gearbox_d/2+st_shell+st_nut_h+st_shell+smalld,-longwing,filament_elevation]) 338 translate([-gearbox_d/2+st_shell+st_nut_h+st_shell+smalld,-longwing,filament_elevation])
339 rotate([0,90,0]) difference() { 339 rotate([0,90,0]) difference() {
340 union() { 340 union() {
341 cylinder(d1=smalld,d2=bigd,h=hf,$fn=fnd*bigd); 341 cylinder(d1=smalld,d2=bigd,h=hf,$fn=fnd*bigd);
342 translate([0,0,hf-epsilon]) 342 translate([0,0,hf-epsilon])
343 cylinder(d=bigd,h=hf*2,$fn=fnd*bigd); 343 cylinder(d=bigd,h=hf*2,$fn=fnd*bigd);
344 translate([0,0,3*hf])
345 sphere(d=spring_d*3/4,$fn=fnd*spring_d*3/4);
344 } 346 }
345 translate([0,0,-epsilon]) 347 translate([0,0,-epsilon])
346 cylinder(d=st_screw_d,h=2*hf+epsilon,$fn=fnd*st_screw_d); 348 cylinder(d=st_screw_d,h=2*hf+epsilon,$fn=fnd*st_screw_d);
347 } 349 }
348 } 350 }
349 351
350 module knob() { 352 module knob() {
351 ch = knob_indent_d/2; 353 ch = knob_indent_d/2;
352 translate([0,0,body_h+epsilon]) { 354 translate([0,0,body_h+epsilon]) {
353 mirror([0,0,1]) translate([0,0,-epsilon]) { 355 mirror([0,0,1]) translate([0,0,-epsilon]) {
354 difference() { 356 difference() {
355 cylinder(d=pulley_d,h=knob_bore_l,$fn=fnd*pulley_d); 357 cylinder(d=pulley_d,h=knob_bore_l,$fn=fnd*pulley_d);
356 translate([0,0,-1]) difference() { 358 translate([0,0,-1]) difference() {
357 cylinder(d=bore_d+knob_bore_d_tolerance,h=knob_bore_l+2); 359 cylinder(d=bore_d+knob_bore_d_tolerance,h=knob_bore_l+2);
358 translate([-bore_d/2-1,bore_dd-bore_d/2+knob_bore_d_tolerance/2,-1]) 360 translate([-bore_d/2-1,bore_dd-bore_d/2+knob_bore_d_tolerance/2,-1])
359 cube([bore_d+2,bore_d/2,knob_bore_l+4]); 361 cube([bore_d+2,bore_d/2,knob_bore_l+4]);
360 } 362 }
361 } 363 }
362 } 364 }
363 difference() { 365 difference() {
364 union() { 366 union() {
365 cylinder(d1=gearbox_d-2*ch,d2=gearbox_d,h=ch+epsilon,$fn=fnd*gearbox_d); 367 cylinder(d1=gearbox_d-2*ch,d2=gearbox_d,h=ch+epsilon,$fn=fnd*gearbox_d);
366 translate([0,0,ch]) 368 translate([0,0,ch])
367 cylinder(d=gearbox_d,h=knob_h-2*ch+epsilon,$fn=fnd*gearbox_d); 369 cylinder(d=gearbox_d,h=knob_h-2*ch+epsilon,$fn=fnd*gearbox_d);
368 translate([0,0,knob_h-ch]) 370 translate([0,0,knob_h-ch])
369 cylinder(d1=gearbox_d,d2=gearbox_d-2*ch,h=ch,$fn=fnd*gearbox_d); 371 cylinder(d1=gearbox_d,d2=gearbox_d-2*ch,h=ch,$fn=fnd*gearbox_d);
370 } 372 }
371 for(a=[0:360/knob_indents:359]) rotate([0,0,a]) 373 for(a=[0:360/knob_indents:359]) rotate([0,0,a])
372 translate([0,gearbox_d/2,-1]) 374 translate([0,gearbox_d/2,-1])
373 cylinder(d=knob_indent_d,h=knob_h+2,$fn=fnd*knob_indent_d); 375 cylinder(d=knob_indent_d,h=knob_h+2,$fn=fnd*knob_indent_d);
374 } 376 }
375 } 377 }
376 }//knob module 378 }//knob module
377 379
378 mirrorleft() 380 mirrorleft()
379 if(what=="lever") color("green",0.7) lever(); 381 if(what=="lever") color("green",0.7) lever();
380 else if(what=="body") color("yellow",0.7) body(); 382 else if(what=="body") color("yellow",0.7) body();
381 else if(what=="knob") color("red",0.7) knob(); 383 else if(what=="knob") color("red",0.7) knob();
382 else if(what=="springpad") color("blue",0.7) springpad(); 384 else if(what=="springpad") color("blue",0.7) springpad();
383 else if(what=="both") { 385 else if(what=="both") {
384 color("green",0.7) lever(); 386 color("green",0.7) lever();
385 color("yellow",0.7) body(); 387 color("yellow",0.7) body();
386 }else{ 388 }else{
387 color("green",0.7) lever(); 389 color("green",0.7) lever();
388 color("yellow",0.7) body(); 390 color("yellow",0.7) body();
389 color("red",0.7) knob(); 391 color("red",0.7) knob();
390 color("blue",0.7) springpad(); 392 color("blue",0.7) springpad();
391 } 393 }
392} 394}
393 395
394the_extruder(what="both",left=false); 396the_extruder(what="both",left=false);