My self designed awesome 3D printer
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  1. // #######################################################
  2. // ################## Config Parameters ##################
  3. // #######################################################
  4. slot = 30; // or 20
  5. slot_off = 1; // distance between adjacent slots
  6. // print area / volume
  7. heatbed_width = 400;
  8. heatbed_length = 400;
  9. heatbed_height = 6;
  10. // distance between heatbed edge and inner t-slot frame edge
  11. frame_off_x = 20;
  12. frame_off_y = 20;
  13. outer_width = heatbed_width + (2 * (slot + frame_off_x));
  14. outer_length = heatbed_length + (2 * (slot + frame_off_y));
  15. // TODO depend on print area height
  16. outer_height = 500;
  17. rail_mount_dist = 12;
  18. y_carriage_pos = 175;
  19. x_carriage_pos = 180;
  20. // distance between heatbed and z-carriage frame
  21. bed_x_off = 20;
  22. bed_y_off = 20;
  23. bed_z_dist = 30;
  24. // display heatbed centered in print volume
  25. bed_draw_height = (outer_height - heatbed_height) / 2;
  26. echo(print_x=heatbed_width, print_y=heatbed_length);
  27. echo(frame_x=outer_width, frame_y=outer_length, frame_z=outer_height);
  28. // #######################################################
  29. // ###################### Libraries ######################
  30. // #######################################################
  31. include <lib/tslot_xy.scad>
  32. include <lib/nema.scad>
  33. include <lib/Belt_Generator.scad>
  34. include <lib/Pulley_T-MXL-XL-HTD-GT2_N-tooth.scad>
  35. include <lib/bearing_idler.scad>
  36. include <lib/rail_mount.scad>
  37. include <lib/linear_bearing.scad>
  38. include <lib/extruder.scad>
  39. module gt2_belt(length) {
  40. //difference() {
  41. // belting("straight", "GT2_2mm", belt_length = length);
  42. // translate([-5, -5, 6])
  43. // cube([length + 10, 10, 10]);
  44. //}
  45. }
  46. // #######################################################
  47. // ######################## Frame ########################
  48. // #######################################################
  49. module slot_angle_connector() {
  50. color("gray")
  51. translate([slot, 0, 0])
  52. rotate([0, -90, 0])
  53. difference() {
  54. cube([slot, slot, slot]);
  55. translate([0, -5, 0])
  56. rotate([0, 45, 0])
  57. cube([2 * slot, 2 * slot, 2 * slot]);
  58. }
  59. }
  60. module foot() {
  61. color("yellow")
  62. translate([0, 0, 10])
  63. cylinder(d = 6, h = 20);
  64. color("yellow")
  65. difference() {
  66. sphere(d = 20);
  67. translate([-15, -15, -30])
  68. cube([30, 30, 30]);
  69. }
  70. }
  71. module lower_frame(double) {
  72. if (double) {
  73. translate([slot + slot_off, 0, slot])
  74. rotate([-90, 0, 0])
  75. tslot_2_x(slot, outer_width - (2 * (slot + slot_off)));
  76. translate([slot + slot_off, outer_length - slot, slot])
  77. rotate([-90, 0, 0])
  78. tslot_2_x(slot, outer_width - (2 * (slot + slot_off)));
  79. translate([0, slot + slot_off, 0])
  80. tslot_2_y(slot, outer_length - (2 * (slot + slot_off)));
  81. translate([outer_width - slot, slot + slot_off, 0])
  82. tslot_2_y(slot, outer_length - (2 * (slot + slot_off)));
  83. } else {
  84. translate([slot + slot_off, 0, 0])
  85. tslot_x(slot, outer_width - (2 * (slot + slot_off)));
  86. translate([slot + slot_off, outer_length - slot, 0])
  87. tslot_x(slot, outer_width - (2 * (slot + slot_off)));
  88. translate([0, slot + slot_off, 0])
  89. tslot_y(slot, outer_length - (2 * (slot + slot_off)));
  90. translate([outer_width - slot, slot + slot_off, 0])
  91. tslot_y(slot, outer_length - (2 * (slot + slot_off)));
  92. }
  93. }
  94. module frame() {
  95. // outer corner pillars
  96. tslot_z(slot, outer_height);
  97. translate([outer_width - slot, 0, 0])
  98. tslot_z(slot, outer_height);
  99. translate([0, outer_length - slot, 0])
  100. tslot_z(slot, outer_height);
  101. translate([outer_width - slot, outer_length - slot, 0])
  102. tslot_z(slot, outer_height);
  103. lower_frame(false);
  104. // top frame
  105. translate([0, 0, outer_height - slot])
  106. lower_frame(true);
  107. // end caps
  108. color("black")
  109. translate([0, 0, outer_height]) {
  110. cube([slot, slot, 2]);
  111. translate([outer_width - slot, 0, 0])
  112. cube([slot, slot, 2]);
  113. translate([0, outer_length - slot, 0])
  114. cube([slot, slot, 2]);
  115. translate([outer_width - slot, outer_length - slot, 0])
  116. cube([slot, slot, 2]);
  117. }
  118. // feet
  119. translate([slot / 2, slot / 2, -30])
  120. foot();
  121. translate([outer_width - slot / 2, slot / 2, -30])
  122. foot();
  123. translate([slot / 2, outer_length - slot / 2, -30])
  124. foot();
  125. translate([outer_width - slot / 2, outer_length - slot / 2, -30])
  126. foot();
  127. // connecting elements
  128. translate([slot + slot_off, 0, slot + slot_off])
  129. slot_angle_connector();
  130. translate([slot + slot_off, outer_length - slot, slot + slot_off])
  131. slot_angle_connector();
  132. translate([slot + slot_off, 0, outer_height - slot - slot_off - slot])
  133. rotate([0, 90, 0])
  134. slot_angle_connector();
  135. translate([slot + slot_off, outer_length - slot, outer_height - slot - slot_off - slot])
  136. rotate([0, 90, 0])
  137. slot_angle_connector();
  138. translate([outer_width - slot - slot_off, 0, slot + slot_off])
  139. rotate([0, -90, 0])
  140. slot_angle_connector();
  141. translate([outer_width - slot - slot_off, outer_length - slot, slot + slot_off])
  142. rotate([0, -90, 0])
  143. slot_angle_connector();
  144. translate([outer_width - slot - slot_off, 0, outer_height - slot - slot_off - slot])
  145. rotate([0, 180, 0])
  146. slot_angle_connector();
  147. translate([outer_width - slot - slot_off, outer_length - slot, outer_height - slot - slot_off - slot])
  148. rotate([0, 180, 0])
  149. slot_angle_connector();
  150. translate([slot, slot + slot_off, slot + slot_off])
  151. rotate([0, 0, 90])
  152. slot_angle_connector();
  153. translate([slot, slot + slot_off, outer_height - slot - slot_off - slot])
  154. rotate([0, 90, 90])
  155. slot_angle_connector();
  156. translate([0, outer_length - slot - slot_off, slot + slot_off])
  157. rotate([0, 0, -90])
  158. slot_angle_connector();
  159. translate([0, outer_length - slot - slot_off, outer_height - slot - slot_off - slot])
  160. rotate([0, 90, -90])
  161. slot_angle_connector();
  162. translate([outer_width, slot + slot_off, slot + slot_off])
  163. rotate([0, 0, 90])
  164. slot_angle_connector();
  165. translate([outer_width, slot + slot_off, outer_height - slot - slot_off - slot])
  166. rotate([0, 90, 90])
  167. slot_angle_connector();
  168. translate([outer_width - slot, outer_length - slot - slot_off, slot + slot_off])
  169. rotate([0, 0, -90])
  170. slot_angle_connector();
  171. translate([outer_width - slot, outer_length - slot - slot_off, outer_height - slot - slot_off - slot])
  172. rotate([0, 90, -90])
  173. slot_angle_connector();
  174. translate([slot + slot_off, slot + slot_off, slot])
  175. rotate([-90, 0, 0])
  176. slot_angle_connector();
  177. translate([outer_width - slot - slot_off, slot + slot_off, slot])
  178. rotate([-90, 0, 90])
  179. slot_angle_connector();
  180. translate([slot + slot_off, outer_length - slot - slot_off, 0])
  181. rotate([90, 0, 0])
  182. slot_angle_connector();
  183. translate([outer_width - slot - slot_off, outer_length - slot - slot_off, 0])
  184. rotate([90, 0, -90])
  185. slot_angle_connector();
  186. /*
  187. translate([slot + slot_off, slot + slot_off, outer_height])
  188. rotate([-90, 0, 0])
  189. slot_angle_connector();
  190. translate([outer_width - slot - slot_off, slot + slot_off, outer_height])
  191. rotate([-90, 0, 90])
  192. slot_angle_connector();
  193. translate([slot + slot_off, outer_length - slot - slot_off, outer_height - slot])
  194. rotate([90, 0, 0])
  195. slot_angle_connector();
  196. translate([outer_width - slot - slot_off, outer_length - slot - slot_off, outer_height - slot])
  197. rotate([90, 0, -90])
  198. slot_angle_connector();
  199. */
  200. }
  201. // #######################################################
  202. // ###################### Mechanics ######################
  203. // #######################################################
  204. module rail(length) {
  205. cylinder(d = rail_dia, h = length);
  206. echo(rail_dia=rail_dia, rail_len=length);
  207. }
  208. module y_rails() {
  209. // y smooth rail on blue side
  210. color("cyan")
  211. translate([rail_dia / 2 + rail_y_off_1, 18, -30])
  212. rotate([-90, 0, 0])
  213. rail(outer_length - slot - nema17_size - (2 * rail_mount_dist));
  214. // y carriage on blue side
  215. translate([rail_y_off_1 - (lm8uu_outer + lm8uu_dia_add) / 2 + y_carriage_rail_support, y_carriage_pos, -slot])
  216. y_carriage(idler_a_blue, idler_b_blue);
  217. // rail mounts for blue side
  218. color("green")
  219. translate([0, 2 * rail_mount_dist, -2 * slot])
  220. rail_mount(slot);
  221. color("green")
  222. translate([0, outer_length - (2 * slot) - nema17_size - rail_mount_dist + 5, -2 * slot])
  223. rail_mount(slot);
  224. // y smooth rail on red side
  225. color("cyan")
  226. translate([outer_width - (2 * slot) - rail_dia / 2 - rail_y_off_1, 18, -30])
  227. rotate([-90, 0, 0])
  228. rail(outer_length - slot - nema17_size - (2 * rail_mount_dist));
  229. // y carriage on red side
  230. translate([outer_width - slot - y_carriage_width - y_carriage_block_width, y_carriage_pos + y_carriage_length, -slot])
  231. rotate([0, 0, 180])
  232. y_carriage(idler_a_red, idler_b_red);
  233. // rail mounts for red side
  234. color("green")
  235. translate([outer_width - (2 * slot), 2 * rail_mount_dist + rail_mount_len, -2 * slot])
  236. rotate([0, 0, 180])
  237. rail_mount(slot);
  238. color("green")
  239. translate([outer_width - (2 * slot), outer_length - (2 * slot) - nema17_size - rail_mount_dist + 5 + rail_mount_len, -2 * slot])
  240. rotate([0, 0, 180])
  241. rail_mount(slot);
  242. }
  243. module x_rails() {
  244. // TODO length calculate properly!
  245. color("cyan")
  246. translate([30, y_carriage_pos, 15])
  247. rotate([0, 90, 0])
  248. rail(outer_width - (4 * slot));
  249. color("cyan")
  250. translate([30, y_carriage_pos + x_rail_dist, 15])
  251. rotate([0, 90, 0])
  252. rail(outer_width - (4 * slot));
  253. //translate([x_carriage_pos, y_carriage_pos - x_carriage_len_add, slot / 2])
  254. // x_carriage();
  255. }
  256. module motion_xy() {
  257. translate([slot, slot, outer_height])
  258. y_rails();
  259. translate([slot, slot + y_carriage_len_add, outer_height - (1.5 * slot)])
  260. x_rails();
  261. // left ("blue") motor
  262. translate([slot, outer_length - slot - nema17_size - nema17_mount_wall, outer_height + nema17_mount_wall])
  263. rotate([180, 0, 90]) {
  264. color("blue")
  265. translate([0, 0, -65])
  266. nema17(65);
  267. color("green")
  268. nema17_mount(slot);
  269. // blue motor pulley
  270. color("magenta")
  271. translate([nema17_size / 2, nema17_size / 2, 22.4])
  272. rotate([180, 0, 0])
  273. gt2_pulley();
  274. // blue gt2 belt at motor
  275. color("blue")
  276. translate([nema17_size / 2, nema17_size / 2 + 6.5, nema17_mount_wall + 1])
  277. rotate([0, 0, 180])
  278. gt2_belt(outer_length - (2 * slot) - nema17_size / 2 - x_rail_dist - y_carriage_pos - 15);
  279. color("blue")
  280. translate([-outer_length + (3 * slot) + 10 + nema17_size / 2, nema17_size / 2 - 6.5, nema17_mount_wall + 1])
  281. gt2_belt(outer_length - (3 * slot) - 10);
  282. }
  283. // right ("red") motor
  284. translate([outer_width - slot - nema17_size, outer_length - slot - nema17_size - nema17_mount_wall, outer_height + nema17_mount_wall])
  285. rotate([180, 0, 90]) {
  286. color("red")
  287. translate([0, 0, -65])
  288. nema17(65);
  289. color("green")
  290. nema17_mount(slot);
  291. // red motor pulley
  292. color("cyan")
  293. translate([nema17_size / 2, nema17_size / 2, 8.2])
  294. gt2_pulley();
  295. // red gt2 belt at motor
  296. color("red")
  297. translate([nema17_size / 2, nema17_size / 2 + 6.5, nema17_mount_wall + 8])
  298. rotate([0, 0, 180])
  299. gt2_belt(outer_length - (3 * slot) - 10);
  300. color("red")
  301. translate([nema17_size / 2 - (outer_length - (2 * slot) - nema17_size / 2 - x_rail_dist - y_carriage_pos - 15), nema17_size / 2 - 6.5, nema17_mount_wall + 8])
  302. gt2_belt(outer_length - (2 * slot) - nema17_size / 2 - x_rail_dist - y_carriage_pos - 15);
  303. }
  304. // x carriage belts on blue side
  305. color("blue")
  306. translate([slot + 29, slot + x_rail_dist + 7 + y_carriage_pos, outer_height - 1])
  307. rotate([180, 0, 0])
  308. gt2_belt(x_carriage_pos - 20);
  309. color("red")
  310. translate([slot + 15, slot + 23 + y_carriage_pos, outer_height - 8])
  311. rotate([180, 0, 0])
  312. gt2_belt(x_carriage_pos - 6);
  313. // x carriage belts on red side
  314. color("red")
  315. translate([slot + x_carriage_width + x_carriage_pos - 7, slot + x_rail_dist + 7 + y_carriage_pos, outer_height - 8])
  316. rotate([180, 0, 0])
  317. gt2_belt(outer_width - x_carriage_pos - (2 * slot) - x_carriage_width - 20);
  318. color("blue")
  319. translate([slot + x_carriage_width + x_carriage_pos - 7, slot + 23 + y_carriage_pos, outer_height - 1])
  320. rotate([180, 0, 0])
  321. gt2_belt(outer_width - x_carriage_pos - (2 * slot) - x_carriage_width - 10);
  322. // long back belts
  323. color("blue")
  324. translate([slot + 15, slot + 10, outer_height - 7])
  325. gt2_belt(outer_width - nema17_size - (2 * slot) + 13);
  326. color("red")
  327. translate([slot + 15, slot + 10, outer_height - 14])
  328. gt2_belt(outer_width - nema17_size - (2 * slot) + 13);
  329. // blue belt on red side
  330. color("blue")
  331. translate([outer_width - slot - 15, slot + 10, outer_height - 7])
  332. rotate([0, 0, 90])
  333. gt2_belt(y_carriage_pos + 10);
  334. // red belt on blue side
  335. color("red")
  336. translate([slot + 15, slot + 19 + y_carriage_pos, outer_height - 14])
  337. rotate([0, 0, -90])
  338. gt2_belt(y_carriage_pos + 10);
  339. // idler on blue side
  340. translate([slot + bearing_mount_width + 15, 0, outer_height - slot])
  341. rotate([0, 0, 90])
  342. slot_mount_bracket(slot, true);
  343. // idler on red side
  344. translate([outer_width - slot - 15, 0, outer_height - slot])
  345. rotate([0, 0, 90])
  346. slot_mount_bracket(slot, true);
  347. }
  348. // #######################################################
  349. // ####################### Heatbed #######################
  350. // #######################################################
  351. module heatbed_plate() {
  352. difference() {
  353. color("yellow")
  354. cube([heatbed_width, heatbed_length, heatbed_height]);
  355. #translate([bed_x_off + (slot / 2), bed_y_off + (slot / 2), -bed_z_dist - slot - 1])
  356. cylinder(d = 4.2, h = bed_z_dist + slot + heatbed_height + 2);
  357. #translate([heatbed_width - bed_x_off - (slot / 2), bed_y_off + (slot / 2), -bed_z_dist - slot - 1])
  358. cylinder(d = 4.2, h = bed_z_dist + slot + heatbed_height + 2);
  359. #translate([bed_x_off + (slot / 2), heatbed_length - bed_y_off - (slot / 2), -bed_z_dist - slot - 1])
  360. cylinder(d = 4.2, h = bed_z_dist + slot + heatbed_height + 2);
  361. #translate([heatbed_width - bed_x_off - (slot / 2), heatbed_length - bed_y_off - (slot / 2), -bed_z_dist - slot - 1])
  362. cylinder(d = 4.2, h = bed_z_dist + slot + heatbed_height + 2);
  363. }
  364. echo(max_bed_heater_width=heatbed_width - (2 * bed_x_off) - slot - 5);
  365. echo(max_bed_heater_length=heatbed_length - (2 * bed_y_off) - slot - 5);
  366. }
  367. module heatbed() {
  368. translate([slot + frame_off_x, slot + frame_off_y, bed_draw_height]) {
  369. //%heatbed_plate();
  370. // t-slots as heatbed frame
  371. translate([bed_x_off, bed_y_off, -slot - bed_z_dist])
  372. tslot_y(slot, heatbed_length - (2 * bed_y_off));
  373. translate([heatbed_width - slot - bed_x_off, bed_y_off, -slot - bed_z_dist])
  374. tslot_y(slot, heatbed_length - (2 * bed_y_off));
  375. translate([slot + bed_x_off + slot_off, bed_y_off, -slot - bed_z_dist])
  376. tslot_x(slot, heatbed_width - 2 * (bed_x_off + slot + slot_off));
  377. translate([slot + bed_x_off + slot_off, heatbed_length - slot - bed_y_off, -slot - bed_z_dist])
  378. tslot_x(slot, heatbed_width - 2 * (bed_x_off + slot + slot_off));
  379. translate([bed_x_off + slot, bed_y_off + slot, -slot - bed_z_dist])
  380. rotate([90, 0, 90])
  381. slot_angle_connector();
  382. translate([bed_x_off + slot, heatbed_length - slot - bed_y_off, -slot - bed_z_dist])
  383. rotate([90, 0, 0])
  384. slot_angle_connector();
  385. translate([heatbed_width - slot - bed_x_off, heatbed_length - slot - bed_y_off, -slot - bed_z_dist])
  386. rotate([90, 0, -90])
  387. slot_angle_connector();
  388. translate([heatbed_width - slot - bed_x_off, bed_y_off + slot, -slot - bed_z_dist])
  389. rotate([90, 0, 180])
  390. slot_angle_connector();
  391. }
  392. }
  393. module motion_z() {
  394. // front left bottom
  395. color("green")
  396. translate([(2 * slot) + 60, slot, slot / 2 + 5])
  397. rotate([-90, 0, 90])
  398. rail_mount(slot);
  399. // front left top
  400. color("green")
  401. translate([(2 * slot) + 60, slot, outer_height - slot / 2 + 5 - slot])
  402. rotate([-90, 0, 90])
  403. rail_mount(slot);
  404. // front left rail
  405. color("cyan")
  406. translate([slot + 60, slot + 15, 6])
  407. rail(outer_height - slot - 12);
  408. // front right bottom
  409. color("green")
  410. translate([outer_width - (2 * slot), slot, slot / 2 + 5])
  411. rotate([-90, 0, 90])
  412. rail_mount(slot);
  413. // front right top
  414. color("green")
  415. translate([outer_width - (2 * slot), slot, outer_height - slot / 2 + 5 - slot])
  416. rotate([-90, 0, 90])
  417. rail_mount(slot);
  418. // front right rail
  419. color("cyan")
  420. translate([outer_width - slot - 60, slot + 15, 6])
  421. rail(outer_height - slot - 12);
  422. }
  423. // #######################################################
  424. // ###################### Extruders ######################
  425. // #######################################################
  426. module extruders() {
  427. w = nema17_size + 25;
  428. translate([0, -bracket_height, outer_height - slot])
  429. rotate([0, 0, 90]) {
  430. translate([0, -(outer_width + w) / 4, 0])
  431. extruder(slot);
  432. translate([0, -(outer_width + w) / 2, 0])
  433. extruder(slot);
  434. translate([0, -(outer_width + w) * 3 / 4, 0])
  435. extruder(slot);
  436. }
  437. }
  438. // ########################################################
  439. // ####################### Assembly #######################
  440. // ########################################################
  441. frame();
  442. motion_xy();
  443. //extruders();
  444. motion_z();
  445. heatbed();