IP Library Granted Patent US 10,216,165
Granted Patent B2
US 10,216,165 · App. 15/655,355 · Granted Feb 26, 2019

Systems and methods for controlling additive manufacturing

Inventors: Trevor David Budge (Coeur d'Alene, ID); Kenneth L. Tyler (Coeur D'Alene, ID); Ryan C. Stockett (Lebanon, NH); Blake L. Alfson (Hayden Lake, ID)
Assignee: CC3D LLC
G05B19/045B29C64/118B29C64/165B29C64/209B29C64/321B29C64/393B29C70/382B33Y10/00B33Y30/00B33Y50/02G05B19/402G05B19/41875G06N99/00G05B19/4099G05B2219/2646G05B2219/49023
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Quick Facts
Patent No.
US 10,216,165
App. No.
15/655,355
Granted
Feb 26, 2019
Kind
B2
Abstract

A system is disclosed for use in additively manufacturing a structure. The system may include an additive manufacturing machine, a memory having computer-executable instructions stored thereon, and a processor. The processor may be configured to execute the computer-executable instructions to cause the additive manufacturing machine to discharge a path of composite material, and to make a determination regarding existence of support located at a side of the path of composite material. The processor may be further configured to execute the computer-executable instructions to selectively cause the additive manufacturing machine to compact the path of composite material after discharge with a variable pressure that is based on the determination.

Claims (47)

1. A system for additively manufacturing a structure, comprising:

an additive manufacturing machine;

a memory having computer-executable instructions stored thereon; and

a processor configured to execute the computer-executable instructions to:

cause the additive manufacturing machine to discharge a path of composite material;

make a determination regarding existence of support located at a side of the path of composite material; and

selectively cause the additive manufacturing machine to compact the path of composite material after discharge with a lower pressure when the path of composite material is unsupported and a greater pressure when the path of composite material is supported along at least one side.

2. The system of claim 1 , wherein the processor is configured to execute the computer-executable instructions to cause the additive manufacturing machine to compact the path of composite material in a direction through the composite material toward the support.

3. The system of claim 1 , wherein the processor is configured to execute the computer-executable instructions to cause the additive manufacturing machine to compact the path of composite material with:

a pressure lower than 1 psi when the path of composite material is unsupported; and

a pressure greater than 1 psi when the path of composite material is supported along at least one side.

4. A system for additively manufacturing a structure, comprising:

an additive manufacturing machine;

a memory having computer-executable instructions stored thereon; and

a processor configured to execute the computer-executable instructions to:

cause the additive manufacturing machine to discharge a path of composite material;

make a determination regarding existence of support located at a side of the path of composite material;

selectively cause the additive manufacturing machine to compact the path of composite material after discharge with a variable pressure that is based on the determination;

activate a first compactor of the additive manufacturing machine when the path of composite material is unsupported; and

activate a second compactor of the additive manufacturing machine when the path of composite material is supported along at least one side.

5. The system of claim 1 , wherein the processor is configured to execute the computer-executable instructions to cause the additive manufacturing machine to compact the path of composite material after discharge only when a fabrication plan for the structure stipulates compaction.

6. The system of claim 1 , wherein the processor is configured to execute the computer-executable instructions to selectively cause the additive manufacturing machine to compact the path of composite material after discharge based on at least one of a step between adjacent paths, a density of the composite material, a type of the composite material, and a level of curing of the composite material.

7. The system of claim 1 , wherein the processor is configured to execute the computer-executable instructions to selectively cause the additive manufacturing machine to compact the path of composite material after discharge based on a scanned image of the path of composite material.

8. The system of claim 1 , wherein the processor is configured to execute the computer-executable instructions to make the determination regarding existence of support located at the side of the path of composite material based on at least one of a fabrication plan for the structure that stipulates use of the support and a scanned image of the path of composite material showing the support.

9. A method of fabricating a structure with an additive manufacturing machine, the method comprising:

causing the additive manufacturing machine to discharge a path of composite material;

making a determination regarding existence of support located at a side of the path of composite material; and

selectively causing the additive manufacturing machine to compact the path of composite material after discharge a lower pressure when the path of composite material is unsupported and a greater pressure when the path of composite material is supported along at least one side.

10. The method of claim 9 , wherein selectively causing the additive manufacturing machine to compact the path of composite material includes selectively causing the additive manufacturing machine to compact the path of composite material in a direction through the composite material toward the support.

11. The method of claim 9 , wherein selectively causing the additive manufacturing machine to compact the path of composite material includes selectively causing the additive manufacturing machine to compact the path of composite material with:

a pressure lower than 1 psi when the path of composite material is unsupported; and

a pressure greater than 1 psi when the path of composite material is supported along at least one side.

12. A method of fabricating a structure with an additive manufacturing machine, the method comprising:

causing the additive manufacturing machine to discharge a path of composite material;

making a determination regarding existence of support located at a side of the path of composite material;

selectively causing the additive manufacturing machine to compact the path of composite material after discharge with a variable pressure that is based on the determination

selectively activating a first compactor of the additive manufacturing machine when the path of composite material is unsupported; and

selectively activating a second compactor of the additive manufacturing machine when the path of composite material is supported along at least one side.

13. The method of claim 9 , selectively causing the additive manufacturing machine to compact the path of composite material includes selectively causing the additive manufacturing machine to compact the path of composite material only when a fabrication plan for the structure stipulates compaction.

14. The method of claim 9 , wherein selectively causing the additive manufacturing machine to compact the path of composite material includes selectively causing the additive manufacturing machine to compact the path of composite material includes based on at least one of a step between adjacent paths, a density of the composite material, a type of the composite material, and a level of curing of the composite material.

15. The method of claim 9 , wherein selectively causing the additive manufacturing machine to compact the path of composite material includes selectively causing the additive manufacturing machine to compact the path of composite material based on a scanned image of the path of composite material.

16. The method of claim 9 , wherein making the determination regarding existence of support located at the side of the path of composite material includes making the determination regarding existence of support based on at least one of a fabrication plan for the structure that stipulates use of the support and a scanned image of the path of composite material showing the support.

17. A non-transitory computer readable medium containing computer-executable programming instructions for performing a method of additively manufacturing a structure, the method comprising:

causing an additive manufacturing machine to discharge a path of composite material;

making a determination regarding existence of support located at a side of the path of composite material; and

selectively causing the additive manufacturing machine to compact the path of composite material after discharge in a direction through the composite material toward the support with a lower pressure when the path of composite material is unsupported and a greater pressure when the path of composite material is supported along at least one side.

18. The non-transitory computer readable medium of claim 17 , wherein selectively causing the additive manufacturing machine to compact the path of composite material includes selectively causing the additive manufacturing machine to compact the path of composite material based on at least one of a step between adjacent paths, a density of the composite material, a type of the composite material, and a level of curing of the composite material.

Assignments (2)
CHANGE OF NAME Recorded Jul 16, 2019
From: CC3D LLC
To: CONTINUOUS COMPOSITES INC.
Reel/Frame 049772/0013 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 20, 2017
From: BUDGE, TREVOR DAVID; STOCKETT, RYAN C; ALFSON, BLAKE L; TYLER, KENNETH LYLE
To: CC3D LLC
Reel/Frame 043056/0687 →
Continuity (6)
Provisional Application 62526448 · Jun 29, 2017
Provisional Application 62459398 · Feb 15, 2017
Provisional Application 62449899 · Jan 24, 2017
Provisional Application 62417709 · Nov 4, 2016
Provisional Application 62383801 · Sep 6, 2016
Related Publication 20180067464A1 · Mar 8, 2018