CA2898103A1

Method and apparatus for three-dimensional fabrication with feed through carrier

Abstract

A method of forming a three-dimensional object, is carried out by (a) providing a carrier and a build plate, the build plate comprising a semipermeable member, the semipermeable member comprising a build surface with the build surface and the carrier defining a build region therebetween, and with the build surface in fluid communication by way of the semipermeable member with a source of polymerization inhibitor; (b) filling the build region with a polymerizable liquid, the polymerizable liquid contacting the build surface; (c) irradiating the build region through the build plate to produce a solid polymerized region in the build region, while forming or maintaining a liquid film release layer comprised of the polymerizable liquid formed between the solid polymerized region and the build surface, the polymerization of which liquid film is inhibited by the polymerization inhibitor; and (d) advancing the carrier with the polymerized region adhered thereto away from the build surface on the build plate to create a subsequent build region between the polymerized region and the build surface; (e) wherein the carrier has at least one channel formed therein, and the filling step is carried out by passing or forcing the polymerizable liquid into the build region through the at least one channel. Apparatus for carrying out the method is also described.

CA2898103A1, drawing sheet 1
Sheet 1 of 16

Term

Projected expiry 10 February 2034.

  1. Priority
  2. Filed
  3. Published
  4. Today
  5. Projected expiry

40 claims: 30 independent, 10 dependent

  1. 1
    CA 02898103 2015-07-13 WO 2014/126834 PCT/US2014/015497 -46THAT WHICH IS CLAIMED IS:1. A method of forming a three-dimensional object, comprising the steps of: (a) providing a carrier and a build plate, said build plate comprising a semipermeable member, said semipermeable member comprising a build surface with said build surface and said carrier defining a build region therebetween, and with said build surface in fluid communication by way of the semipermeable member with a source of polymerization inhibitor;(b) filling said build region with a polymerizable liquid, said polymerizable liquid contacting said build surface;(c) irradiating said build region through said build plate to produce a solid polymerized region in said build region, while forming or maintaining a liquid film release layer comprised of said polymerizable liquid formed between said solid polymerized region and said build surface, the polymerization of which liquid film is inhibited by said polymerization inhibitor;and (d) advancing said carrier with said polymerized region adhered thereto away from said build surface on said build plate to create a subsequent build region between said polymerized region and said build surface;(e) wherein said carrier has at least one channel formed therein, and said filling step is carried out by passing or forcing said polymerizable liquid into said build region through said at least one channel.
  2. 4
    5. The method of claim 4, wherein steps (b) through (e) are carried out concurrently.
  3. 5
    6. The method of any preceding claim, wherein the build plate is substantially fixed or stationary.
  4. 6
    7. The method of any preceding claim, wherein the source of polymerization inhibitor is a reservoir of polymerization inhibitor within the semipermeable member.
  5. 7
    8. The method of any one of claims 1 to 6, wherein the semipermeable member further comprises a feed surface separate from said build surface.
  6. 8
    9. The method of claim 8, wherein the feed surface is in fluid contact with a polymerization inhibitor so as to provide said source of polymerization inhibitor.
  7. 9
    10. The method of any preceding claim, further comprising heating said polymerizable liquid to reduce the viscosity thereof in said build region.
  8. 10
    11. The method of any one of claims 1 to 9, further comprising cooling said polymerizable liquid in said build region to dissipate heat generated by polymerization reactions.
  9. 11
    12. The method of any preceding claim, wherein said advancing step or steps is/are carried out at a cumulative rate of at least 0.1, 1,10,100 or 1000 microns per second.
  10. 12
    13. The method of any preceding claim, wherein excess polymerizable liquid is supplied to said build region, removed or drained therefrom to cool said build region, and then optionally recirculated back to said build region. CA 02898103 2015-07-13 WO 2014/126834 PCT/US2014/015497 -48
  11. 13
    14. The method of any preceding claim, wherein said advancing step is carried out by advancing said carrier vertically from said build surface.
  12. 15
    16. The method of any preceding claim, wherein said semipermeable member has a thickness of from 0.1 or 1 millimeters to 10 or 100 millimeters;and/or wherein said semipermeable member has a permeability to oxygen of at least 7.5x10' 17 m 2 s' i Pa' 1 (10 Barrers);and/or wherein said semipermeable member is formed of a semipermeable fluoropolymer, a rigid gas-permeable polymer, porous glass, or a combination thereof.
  13. 16
    17. The method of any preceding claim, wherein said irradiating step is carried out with actinic radiation.
  14. 17
    18. The method of any preceding claim, wherein said carrier has a soluble sacrificial layer thereon, and said three-dimensional object is formed on said soluble sacrificial layer.
  15. 18
    19. The method of any preceding claim, wherein:the total surface area of the build region occupies at least seventy percent of the total surface area of the build surface;and/or wherein lateral movement of the carrier and object in any direction is not more than thirty percent of the width of said build region in the corresponding direction.
  16. 19
    20. The method of any preceding claim, wherein said polymerizable liquid comprises a free radical polymerizable liquid and said inhibitor comprises oxygen. CA 02898103 2015-07-13 WO 2014/126834 PCT/US2014/015497 -4921. The method of any one of claims 1 to 19, wherein said polymerizable liquid comprises an acid-catalyzed or cationically polymerizable liquid, and said inhibitor comprises a base.
  17. 20
    22. The method of any preceding claim, wherein said polymerizable liquid further comprises an active agent, a detectable agent, solid particles, or a combination thereof.
  18. 21
    23. The method of any preceding claim, wherein said three-dimensional object comprises a medical device, rod or fibre.
  19. 22
    24. The method of any preceding claim, wherein said irradiating step is carried out by maskless photolithography.
  20. 23
    25. The method of any preceding claim, further comprising the steps of:monitoring or detecting at least one process parameter and/or providing at least one known or predetermined process parameter;and then altering at least one process condition in response to said monitored process parameter or known process parameter.
  21. 24
    26. The method of any preceding claim, wherein the carrier with said polymerized region adhered thereto is unidirectionally advanced away from said build surface on said stationary build plate.
  22. 25
    27. An apparatus for forming a three-dimensional object from a polymerizable liquid, comprising:(a) a support;(b) a carrier operatively associated with said support on which carrier said threedimensional object is formed;(c) at least one channel formed in the carrier;(d) a build plate connected to said support, said build plate comprising a semipermeable member, said semipermeable member comprising a build surface, with said build surface and said carrier defining a build region therebetween;CA 02898103 2015-07-13 WO 2014/126834 PCT/US2014/015497 -50(e) a liquid polymer supply operatively associated with said build plate and configured to supply liquid polymer through said at least one channel into said build region for solidification polymerization;(f) a radiation source operatively associated with said build plate and configured to irradiate said build region through said build plate and form a solid polymerized region therein from said liquid polymer;and (g) the build surface being in fluid communication by way of the semipermeable member with a source of polymerization inhibitor so as to promote formation or maintenance of a liquid film release layer of comprised of said polymerizable liquid formed between said solid polymerized region and said build surface, the polymerization of which liquid film is inhibited by said polymerization inhibitor.
  23. 27
    29. The apparatus of claim 27 or 28, further comprising at least one, or a plurality of, external feed conduits separate from said object, each of said at least one feed conduits in fluid communication with a channel in said carrier, configured for supply of at least one, or a plurality of different, polymerizable liquids from said carrier to said build zone.
  24. 28
    30. The apparatus of any one of claims 27 to 29, wherein the build plate is substantially fixed or stationary.
  25. 29
    31. The apparatus of any one of claims 27 to 30, wherein the source of polymerization inhibitor is a reservoir of polymerization inhibitor within the semipermeable member.
  26. 30
    32. The apparatus of any one of claims 27 to 30, wherein the semipermeable member further comprises a feed surface separate from said build surface.
  27. 32
    34. The apparatus of any one of claims 27 to 33, further comprising a controller operatively associated with said carrier and said light source for advancing said carrier away from said build plate during or after polymerization of liquid in said build region.
  28. 33
    35. The apparatus of any one of claims 27 to 34, further comprising a heater operatively associated with said build plate and/or said liquid polymer supply, said heater onfigured to heat polymerizable liquid supplied into said build region.
  29. 34
    36. The apparatus of any one of claims 27 to 35, further comprising a cooler operatively associated with said build plate and configured to cool polymerizable liquid in said build region.
  30. 36
    38. The apparatus of any one of claims 27 to 37, further comprising a pressure source operatively associated with said liquid polymer supply.
  31. 37
    39. The apparatus of any one of claims 27 to 38, wherein said radiation source comprises a light source.
  32. 38
    40. The apparatus of any one of claims 27 to 39, further comprising a spatial light modulation array operatively associated with said radiation source and said controller and configured to carry out irradiation of the polymerizable liquid by maskless photolithography.
  33. 39
    41. The apparatus of any one of claims 27 to 40, wherein said carrier comprises a plate, post, web, film, reel, or combination thereof operatively associated with at least one actuator. CA 02898103 2015-07-13 WO 2014/126834 PCT/US2014/015497 -5242. The apparatus of claim 34 or any one of claims 35 to 41 depending from claim 34, wherein said carrier comprises a drive, said drive and said controller configured to advance said carrier unidirectionally away from said build surface.
  34. 40
    43. The apparatus of any one of claims 27 to 42, wherein said carrier has a soluble sacrificial layer thereon, and said three-dimensional object is formed on said soluble sacrificial layer.
Independent claims34