Continuous and semi-continuous additive manufacturing systems and methods

公开(公告)号:
WO2023235370A1
公开(公告)日:
2023-12-07
申请号:
PCT/US2023/023953
申请日:
2023-05-31
授权日:
-
受理局:
世界知识产权组织
专利类型:
发明申请
简单法律状态:
PCT指定期内
法律状态/事件:
PCT未进入指定国(指定期内)
IPC分类号:
B22F10/00 | B22F10/14 | B22F10/28 | B29C67/04
战略新兴产业分类:
先进有色金属材料
国民经济行业分类号:
-
当前申请(专利权)人:
VULCANFORMS INC.
原始申请(专利权)人:
VULCANFORMS INC.
当前申请(专利权)人地址:
20 North Avenue,Burlington, MA 01803 US
工商统一社会信用代码:
-
工商登记状态:
-
工商注册地址:
-
工商成立日期:
2015-07-09
工商企业类型:
-
发明人:
FELDMANN, MARTIN, C. | AGGARWAL, RAGHAV | HART, ANASTASIOS, JOHN | BRUNELL, BRENT, JEROME
代理机构:
-
代理人:
PINKARD, ANDREW, A. ET AL.
摘要:
Systems and methods for additive manufacturing are generally disclosed. Additive manufacturing may be performed in a continuous manner and/or semi-continuous manner by transporting one or more build plates relative to a plurality of printheads that comprise a plurality of energy source arrays and/or binderjet arrays that may be selectively activated to form a desired pattern in a material layer disposed on the one or more build plates. The plurality of energy source arrays may be disposed in a plurality of optical assemblies.
技术问题语段:
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技术功效语段:
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权利要求:
CLAIMS What is claimed is: 1. An additive manufacturing system, comprising: a conveyer configured to transport a plurality of build plates from a first location to a second location; and a plurality of printheads disposed between the first location and the second location, wherein each printhead of the plurality of printheads is configured to selectively activate to selectively fuse one or more portions of a material layer disposed on the plurality of build plates as each build plate of the plurality of build plates is transported by the conveyer from the first location to the second location. 2. The additive manufacturing system of claim 1, wherein the plurality of printheads includes a plurality of energy source arrays, and wherein each energy source array of the plurality of energy source arrays is configured to selectively activate and direct energy towards the plurality of build plates as each build plate is transported by the conveyer from the first location to the second location. 3. The additive manufacturing system of claim 2, further comprising a plurality of optical assemblies disposed between the first location and the second location, and where the plurality of energy source arrays are disposed in the plurality of optical assemblies. 4. The additive manufacturing system of any one of claims 2-3, wherein the plurality of energy source arrays is a plurality of laser energy sources. 5. The additive manufacturing system of any one of claims 2-4, wherein each energy source array of the plurality of energy source arrays is configured to selectively melt the one or more portions of the material layer. 6. The additive manufacturing system of any one of the preceding claims, wherein the plurality of printheads is a plurality of binderjet arrays. 7. The additive manufacturing system of claim 6, wherein the plurality of binderjet arrays are configured to selectively spray a binder towards the one or more build plates as each build plate is transported by the conveyer from the first location to the second location. 8. The additive manufacturing system of any one of the preceding claims, wherein the conveyer is configured to recirculate the build plates from the second location to the first location. 9. The additive manufacturing system of any one of the preceding claims, further comprising the plurality of build plates. 10. The additive manufacturing system of any one of the preceding claims, further comprising one or more height stages configured to control a height of the plurality of build plates relative to the plurality of energy source arrays. 11. The additive manufacturing system of any one of the preceding claims, further comprising one or more rotational stages on the conveyer. 12. The additive manufacturing system of any one of the preceding claims, wherein the printheads of the plurality of printheads are configured to be stationary during part formation. 13. The additive manufacturing system of any one of the preceding claims, wherein a spacing between pixels formed by the plurality of printheads is greater than or equal 0.5 mm and/or less than or equal to 5.0 mm. 14. The additive manufacturing system of any one of the preceding claims, further comprising one or more redundant energy sources. 15. The additive manufacturing system of any one of the preceding claims, further comprising a recoater configured to apply the material layer to the plurality of build plates. 16. The additive manufacturing system of any one of the preceding claims, further comprising a blower disposed on a first side of the plurality of laser energy sources and/or a vacuum disposed on a second side of the plurality of laser energy sources opposite from the first side. 17. A manufacturing method, the method comprising: transporting a build plate from a first location to a second location; and selectively activating one or more of a plurality of printheads disposed between the first location and the second location as the build plate is transported between the first location and the second location to selectively fuse one or more portions of a material layer on a build surface of the build plate. 18. The method of the claim 17, wherein selectively fusing the one or more portions of the material layer includes directing energy towards the build plate as the build plate is transported from the first location to the second location with a plurality of energy source arrays. 19. The method of claim 18, wherein the plurality of energy source arrays are included in a plurality of optical assemblies disposed between the first location and the second location. 20. The method of any one of claims 17-19, wherein the plurality of energy source arrays is a plurality of laser energy sources. 21. The method of any one of claims 17-20, further comprising selectively melting the one or more portions of the material layer with the one or more energy sources. 22. The additive manufacturing system of claim 17, wherein selectively fusing the one or more portions of the material layer includes spraying a binder towards the build plate as the build plate is transported from the first location to the second location with a plurality of binder jet arrays. 23. The method of any one of the preceding claims, further comprising transporting the build plate from the first location to the second location with a conveyor. 24. The method of any one of the preceding claims, further comprising transporting the build plate from the second location to the first location. 25. The method of any one of the preceding claims, further comprising transporting the build plate from the second location to the first location using a closed loop conveyor. 26. The method of any one of the preceding claims, further comprising transporting a plurality of build plates from the first location to the second location and transporting the plurality of build plates from the second position to the first position. 27. The method of any one of the preceding claims, further comprising adjusting a height of the build plate relative to the plurality of printheads. 28. The method of any one of the preceding claims, further comprising rotating the build plate relative to the plurality of energy sources. 29. The method of any one of the preceding claims, further comprising holding the plurality of printheads stationary during part formation. 30. The method of any one of the preceding claims, wherein a spacing between pixels formed by the plurality of printheads is greater than or equal 0.5 mm and/or less than or equal to 2.0 mm. 31. The method of any one of the preceding claims, operating one or more redundant printheads to compensate for a failure of one or more of the plurality of printheads. 32. The method of any one of the preceding claims, further comprising depositing material onto a surface of the build plate with a recoater to form the material layer. 33. The method of any one of the preceding claims, further comprising flowing a gas through a space between the plurality of printheads and the build plate.
技术领域:
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背景技术:
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发明内容:
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具体实施方式:
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