IP Library › Granted Patent US 11,878,472
Granted Patent B2
US 11,878,472 · App. 17/388,598 · Granted Jan 23, 2024

System for window separation in an additive manufacturing process

Inventors: Christopher Prucha (San Francisco, CA); Joel Ong (San Francisco, CA)
Assignee: Stratasys, Inc.
B29C64/364B01D71/32B29C64/135B29C64/245B29C64/25B29C64/255B29C64/379B33Y30/00
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Quick Facts
Patent No.
US 11,878,472
App. No.
17/388,598
Granted
Jan 23, 2024
Kind
B2
Abstract

An additive manufacturing system including a base assembly and a tray assembly. The base assembly includes a build window, substantially transparent to electromagnetic radiation; a projection system configured to project electromagnetic radiation toward an upper surface of the build window; and a tray seat arranged around a perimeter of the build window. The tray assembly is configured to engage with the base assembly in an engaged configuration and includes: a tray structure defining a registration feature configured to engage the tray seat to locate an aperture proximal to the upper surface of the build window in the engaged configuration; and a separation membrane that is configured to laminate across the upper surface of the build window in response to an evacuation of gas from an interstitial region and configured to separate from the build window in response to injection of gas into the interstitial region.

Claims (113)

1. An additive manufacturing system comprising:

a tray seat;

a build window:

defining a first upper surface vertically offset from the tray seat;

substantially transparent to electromagnetic radiation within a photo-initiating wavelength range;

vertically offset from the tray seat; and

circumscribed by the tray seat;

a projection system configured to project electromagnetic radiation toward the first upper surface of the build window;

a fluid distribution port;

an interstitial gasket surrounding the build window and the fluid distribution port; and

a fluid distribution channel:

circumscribing the build window; and

intersecting the fluid distribution port;

a separation membrane:

tensioned over the build window;

configured to a seal against and cooperate with the interstitial gasket to define an interstitial region between the first upper surface of the build window and a lower surface of the separation membrane; and

configured to separate from the build window in response to injection of fluid, via the fluid distribution port and the fluid distribution channel, into the interstitial region.

2. The additive manufacturing system of claim 1 , wherein the separation membrane is configured to laminate across the first upper surface of the build window.

3. The additive manufacturing system of claim 1 :

further comprising a tray assembly:

defining a tray aperture; and

configured to engage the tray seat and to circumscribe the build window in an engaged configuration;

wherein the build window is offset below the tray aperture in the engaged configuration;

wherein the separation membrane is:

tensioned across the tray aperture;

configured to laminate across the first upper surface of the build window in the engaged configuration; and

configured to delaminate from the build window in response to injection of gas, via the fluid distribution port, into the interstitial region.

4. An additive manufacturing system comprising:

a window platform defining a first upper surface comprising an opening;

a build window:

spanning the opening in the first upper surface of the window platform; and

defining a second upper surface;

a projection system configured to project electromagnetic radiation toward the second upper surface of the build window;

a fluid distribution port inset into the first upper surface of the window platform;

a fluid distribution channel:

circumscribing the build window; and

intersecting the fluid distribution port;

an interstitial gasket circumscribing the first upper surface of the window platform;

a separation membrane:

tensioned over the window platform and the build window;

configured to a seal against and cooperate with the interstitial gasket to define an interstitial region between the second upper surface of the build window and a lower surface of the separation membrane; and

configured to separate from the build window in response to injection of fluid, via the fluid distribution port and the fluid distribution channel, into the interstitial region.

5. The additive manufacturing system of claim 4 , wherein the separation membrane is configured to:

laminate across the second upper surface of the build window; and

to delaminate from the second upper surface of the build window in response to injection of fluid, via the fluid distribution port and the fluid distribution channel, into the interstitial region.

6. The additive manufacturing system of claim 4 :

further comprising a tray assembly:

defining a tray aperture; and

configured to locate on the first upper surface of the window platform and to circumscribe the build window in an engaged configuration;

wherein the build window is offset below the tray aperture in the engaged configuration;

wherein the separation membrane is:

tensioned across the tray aperture;

configured to laminate across the first upper surface of the build window in the engaged configuration; and

configured to delaminate from the build window in response to injection of gas, via the fluid distribution port, into the interstitial region.

7. The additive manufacturing system of claim 6 , wherein the first upper surface of the window platform defines a tray seat configured to locate the tray assembly.

8. The additive manufacturing system of claim 7 , further comprising a resin sealing gasket:

arranged along an edge of the tray aperture; and

configured to buffer the separation membrane from contact with the tray aperture of the tray assembly.

9. The additive manufacturing system of claim 4 , wherein the separation membrane is further configured to seal fluid within the interstitial region up to a differential pressure greater than a maximum operating pressure.

10. The additive manufacturing system of claim 9 , wherein the separation membrane is further configured to seal fluid within the interstitial region up to the differential pressure greater than the maximum operating pressure of 300 kilopascals.

11. An additive manufacturing system comprising:

a separation membrane:

tensioned over a build window vertically offset from a tray seat; and

configured to a seal against and cooperate with an interstitial gasket, surrounding the build window, to define an interstitial region between an upper surface of the build window and a lower surface of the separation membrane;

a fluid distribution port:

fluidically coupled to the interstitial region;

a fluid distribution channel:

circumscribing the build window;

intersecting the fluid distribution port; and

cooperating with the fluid distribution port to direct fluid into the interstitial region to separate the separation membrane from the upper surface of the build window;

a projection system configured to project electromagnetic radiation toward the upper surface of the build window.

12. The additive manufacturing system of claim 11 , wherein the separation membrane is configured to laminate across the upper surface of the build window.

13. The additive manufacturing system of claim 11 , wherein the separation membrane is configured to laminate across the upper surface of the build window without a pressure gradient across the separation membrane.

14. The additive manufacturing system of claim 11 :

further comprising a tray assembly:

defining a tray aperture; and

configured to circumscribe the build window in an engaged configuration; and

wherein the separation membrane is tension across the tray aperture.

15. The additive manufacturing system of claim 14 :

wherein the tray assembly further comprises:

a first tray section comprising a set of tensioning posts; and

a second section comprising:

configured to assemble onto the first tray section; and

comprising a set of negative features configured to receive the set of tensioning posts; and

wherein the separation membrane is:

arranged between the first tray section and the second tray section; and

defining a set of perforations configured to receive the set of tensioning posts the set of tensioning posts tensioning the separation membrane across the tray aperture during assembly of the first tray section and the second tray section around the separation membrane.

16. The additive manufacturing system of claim 15 , wherein the tray assembly further comprises a set of tensioning gaskets:

arranged around the set of tensioning posts; and

configured to distribute tensile forces from the set of tensioning posts across the separation membrane.

17. The additive manufacturing system of claim 11 , further comprising a window platform defining an upper window surface vertically offset from the tray seat and comprising an opening configured to receive and locate the build window.

18. The additive manufacturing system of claim 11 , further comprising a pressure regulation system:

fluidically coupled to the fluid distribution port;

configured to inject fluid into the interstitial region to separate the separation membrane from the build window during a pressurization phase; and

configured to evacuate fluid from the interstitial region to laminate the separation membrane to the build window and during a lamination phase.

19. An additive manufacturing system comprising:

a tray assembly:

defining a tray aperture configured to install on a tray seat, adjacent a build window, in an engaged configuration; and

comprising:

a set of tensioning posts; and

a set of negative features configured to engage the set of positive features

a separation membrane:

tensioned over the build window;

vertically offset above the tray seat;

configured to seal against and cooperate with an interstitial gasket, circumscribing the build window, to define an interstitial region between an upper surface of the build window and a lower surface of the separation membrane;

arranged between the set of positive features and the set of negative features of the tray assembly; and

defining a set of perforations:

inwardly inset from the set of tensioning posts; and

configured to receive the set of tensioning posts, the set of tensioning posts tensioning the separation membrane across the tray aperture during assembly of the tray assembly around the separation membrane;

a fluid distribution port:

fluidically coupled to the interstitial region; and

configured to direct fluid into the interstitial region to separate the separation membrane from the upper surface of the build window; and

a projection system configured to project electromagnetic radiation toward the upper surface of the build window.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 25, 2023
From: PRUCHA, CHRISTOPHER; ONG, JOEL
To: ORIGIN LABORATORIES, INC.
Reel/Frame 065338/0041 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 25, 2023
From: ORIGIN LABORATORIES, INC.
To: STRATASYS, INC.
Reel/Frame 065338/0224 →
Continuity (3)
Continuation 16672415 · Nov 1, 2019
Provisional Application 62754430 · Nov 1, 2018
Related Publication 20210354392A1 · Nov 18, 2021