IP Library Granted Patent US 7,887,316
Granted Patent B2
US 7,887,316 · App. 12/394,573 · Granted Feb 15, 2011

Selective laser sintering powder recycle system

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Quick Facts
Patent No.
US 7,887,316
App. No.
12/394,573
Granted
Feb 15, 2011
Kind
B2
Abstract

A method and apparatus for forming three-dimensional objects by laser sintering that includes the use of dense phase pneumatic conveying to internally recycle overflow powder, and to thoroughly blend overflow, recovered and virgin powder to provide a consistent powder feed mix to a laser sintering machine. Overflow powder from the laser sintering machine is recovered and recycled back into the laser sintering machine for reuse. The approach results in a compact and reliable powder recycle system with complete blending and minimum attrition to the handled powder.

Claims (21)

1. A laser sintering powder recycle system comprising:

(a) a laser sintering machine in which a layerwise build process is performed to produce at least one three-dimensional object, the laser sintering machine comprising a dense phase conveying device for transferring an amount of overflow powder from a receiving device within the laser sintering system directly to a powder feed hopper within the laser sintering system, wherein the overflow powder is kept within the laser sintering system;

(b) a breakout station for receiving a part cake that includes the three-dimensional object from the laser sintering machine and an amount of unfused powder surrounding the three-dimensional object, the breakout station comprising a separation device for separating the unfused powder into recovered powder and spent powder and further comprising a dense phase conveying device for transferring the recovered powder from the breakout station to the powder feed hopper of the laser sintering system;

(c) a virgin powder supply from which virgin powder is transferred to the powder feed hopper of the laser sintering system; and

(d) a powder processing unit that comprises:

(i) a recovered powder inlet for receiving the recovered powder from the breakout station;

(ii) a virgin powder inlet for receiving the virgin powder from the virgin powder supply;

(iii) a blender vessel for blending and storing combinations of recovered powder and virgin powder; and

(iv) a dense phase conveying device for transferring the combined recovered and virgin powder from the blender vessel to the powder feed hopper of the laser sintering machine.

2. A system according to claim 1 wherein the virgin powder supply is in flow communication with a dense phase conveying device for transferring the virgin powder from the virgin powder supply to the powder processing unit.

3. A system according to claim 1 wherein the powder processing unit comprises a virgin powder storage vessel into which virgin powder is transferred from the virgin powder supply.

4. A system according to claim 3 wherein the virgin powder storage vessel comprises a cone in cone blender device.

5. A system according to claim 3 wherein a dense phase conveying device transfers the virgin powder in the virgin powder storage vessel to the blender vessel.

6. A system according to claim 1 wherein the powder processing unit comprises a recovered powder storage vessel that stores and blends quantities of recovered powder.

7. A system according to claim 6 wherein the recovered powder storage vessel comprises a weighing device to accurately weigh the powder contained in the vessel.

8. A system according to claim 1 wherein the blender vessel comprises a weighing device to accurately weigh the powder contained in the vessel.

9. A breakout station for use with a laser sintering machine in which a layerwise build process is performed to produce at least one three-dimensional object from powder deposited by a powder feed hopper, the breakout station comprising:

(a) a worktable for receiving a part cake that includes the three-dimensional object from the laser sintering machine and an amount of unfused powder surrounding the three-dimensional object;

(b) a separation device for separating the unfused powder into recovered powder and spent powder; and

(c) a dense phase conveying system for transferring the recovered powder from the separation device to powder feed hopper,

wherein the breakout station further comprises a screw feeder to feed the unfused powder from the worktable to the separation device and wherein the dense phase conveying system is in flow communication with a powder processing unit that blends the recovered powder with a virgin powder before transferring the blended powder to the powder feed hopper.

Assignments (2)
SECURITY INTEREST Recorded Feb 27, 2019
From: 3D SYSTEMS, INC.
To: HSBC BANK USA, NATIONAL ASSOCIATION, AS ADMINISTRATIVE AGENT
Reel/Frame 048456/0017 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 27, 2009
From: COX, BRIAN DAVID
To: 3D SYSTEMS, INC.
Reel/Frame 022323/0860 →