Material manipulation in three-dimensional printing
US-2018281284-A1 · Oct 4, 2018 · US
US11141918B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11141918-B2 |
| Application number | US-201816761758-A |
| Country | US |
| Kind code | B2 |
| Filing date | Nov 2, 2018 |
| Priority date | Nov 10, 2017 |
| Publication date | Oct 12, 2021 |
| Grant date | Oct 12, 2021 |
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An additive manufacturing machine (910) includes a build unit (920) including a powder dispenser (906) having a hopper (904) for receiving a volume of additive powder (902). A powder supply system (1000) includes a powder supply source (940) and a conveyor (1024) for transporting dispensed additive powder (902) to the hopper (904). A supply sensing system (1060) monitors the additive powder (902) that is dispensed from the powder supply source (940) and transported to the hopper (904) and a hopper sensing system (1040) monitors the additive powder (902) within the hopper (904). Each of these systems includes one or more powder level sensors (1042, 1044, 1062), weight sensors (1050, 1064), and/or vision systems (1054, 1070) for monitoring the additive powder (902).
Opening claim text (preview).
What is claimed is: 1. An additive manufacturing machine defining a vertical direction, the additive manufacturing machine comprising: a build unit comprising a powder dispenser including a hopper for receiving a volume of additive powder; a gantry movably supporting the build unit within the additive manufacturing machine; a hopper sensing system operably coupled to the build unit, the hopper sensing system comprising: a powder level sensor positioned for detecting a level of additive powder within the hopper; and a powder supply system comprising a vibrating conveyor extending between a powder supply source and the hopper for transporting additive powder toward the hopper. 2. The additive manufacturing machine of claim 1 , wherein the hopper sensing system further comprises: a weight sensor operably coupled to the hopper, the weight sensor configured for measuring a weight of additive powder within the hopper. 3. The additive manufacturing machine of claim 1 , wherein the hopper sensing system further comprises a hopper vision system for mapping the additive powder within the hopper. 4. The additive manufacturing machine of claim 3 , wherein the hopper vision system generates an image or visual representation of the amount and distribution of the additive powder within the hopper. 5. The additive manufacturing machine of claim 3 , wherein the hopper vision system comprises a camera or optical laser scanning system fixed to the build unit. 6. The additive manufacturing machine of claim 1 , wherein the hopper sensing system comprises a plurality of powder level sensors operably coupled with the hopper. 7. The additive manufacturing machine of claim 1 , wherein the build unit comprises a scan unit, a weight sensor being positioned between the scan unit and the powder dispenser for determining the weight of the additive powder. 8. The additive manufacturing machine of claim 1 , wherein the powder level sensor is operably coupled with the hopper and is configured for detecting when the additive powder within the hopper reaches a maximum level or a minimum level. 9. The additive manufacturing machine of claim 1 , wherein the powder supply system comprises: the powder supply source for dispensing additive powder during a refill process; the vibrating conveyor extending between the powder supply source and a discharge for transporting dispensed additive powder toward the hopper; and a supply sensing system comprising: a powder level sensor positioned for detecting a level of additive powder within the powder supply source; and a weight sensor operably coupled to the powder supply source, the weight sensor configured for measuring a weight of additive powder within the powder supply source. 10. The additive manufacturing machine of claim 9 , wherein the supply sensing system comprises a plurality of powder level sensors operably coupled with the powder supply source. 11. The additive manufacturing machine of claim 9 , wherein the supply sensing system further comprises a refill vision system positioned adjacent to the discharge of the conveyor for detecting a powder quality of the dispensed additive powder. 12. The additive manufacturing machine of claim 11 , wherein the refill vision system comprises a camera or optical laser scanning system fixed to the powder supply source. 13. The additive manufacturing machine of claim 9 , further comprising a powder quality sensor for measuring at least one characteristic of the dispensed additive powder. 14. An additive manufacturing machine comprising: a build unit comprising a powder dispenser including a hopper for receiving a volume of additive powder; a gantry movably supporting the build unit within the additive manufacturing machine; a powder supply system comprising a vibrating conveyor extending between a powder supply source and the hopper for dispensing additive powder during a refill process; a hopper vision system for mapping the additive powder within the hopper; and a refill vision system positioned proximate the conveyor for detecting a powder quality of dispensed additive powder. 15. The additive manufacturing machine of claim 14 , further comprising a hopper sensing system operably coupled to the build unit, the hopper sensing system comprising: a powder level sensor positioned for detecting a level of additive powder within the hopper; and a weight sensor operably coupled to the hopper, the weight sensor configured for measuring a weight of additive powder within the hopper.
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