IP Library Patent Application 17046125
Patent Application
App. No. 17/046,125

ADDITIVE MANUFACTURING DEVICE AND SYSTEM WITH AUTOMATED FAILURE RECOVERY AND/OR FAILURE AVOIDANCE UNIT

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Quick Facts
Patent No.
US None
App. No.
17/046,125
Abstract

An additive manufacturing device for additively manufacturing objects. The additive manufacturing device includes a build vat having a floor and configured to receive at least one build material. The build platform has a build surface for holding and/or supporting an additively manufactured object, a movement mechanism enabling moving the build platform into and out of the build vat, an energy source configured to provide energy to selectively solidify at least a part of the at least one build material in or from the build vat, and a debris elimination system for removing debris from the build vat. The debris elimination system includes a debris detection system configured to detect a presence of debris in the build vat, and/or a debris removal system configured to remove debris from the build vat once detected.

Claims (35)

1 . An additive manufacturing device for additively manufacturing objects, wherein the additive manufacturing device comprises

a build vat having a floor and configured to receive at least one build material,

a build platform having a build surface for holding and/or

supporting at least one object being or having been additively manufactured,

a movement mechanism enabling moving the build platform into and out of the build vat,

an energy source configured to provide energy to selectively solidify at least a part of the at least one build material when contained in the build vat, and

a debris elimination system for removing debris from the build vat the debris elimination system comprising

a debris removal system configured to remove detected debris from the build vat.

2 . The additive manufacturing device according to claim 1 , wherein the additive manufacturing device further comprises a debris detection system configured to detect a presence of debris in the build vat.

3 . The additive manufacturing device according to claim 1 , wherein the debris elimination system comprises a compressible or deformable material configured to compress or deform when pressed against debris located in the at least one build material in the build vat.

4 . The additive manufacturing device according to claim 3 , wherein the additive manufacturing device is configured to move the compressible or deformable material through the at least one build material, when contained in the build vat, towards and/or to the floor of the build vat thereby pushing debris towards and/or to the floor of the build vat.

5 . The additive manufacturing device according to claim 4 , wherein the compressible or deformable material

comprises a number of interspaced cavities or similar defining separate sections of compressible or deformable material, and/or

has a colour having a relatively high contrast with a colour of the at least one build material.

6 . The additive manufacturing device according to claim 4 , wherein the additive manufacturing device is configured to solidify the build material surrounding the debris so that the debris is connected to the compressible or deformable material once the compressible or deformable material has been moved towards or onto the floor of the build vat.

7 . The additive manufacturing device according to claim 2 , wherein the debris detection system comprises

a first camera or imaging device located below the build vat and being configured to capture images through the floor of the build vat from below, and/or

a second camera or imaging device located above the build vat and being configured to capture images, from above, of an upper surface of the floor of the build vat and/or a surface of the at least one build material when the at least one build material is contained in the build vat.

8 . The additive manufacturing device according to claim 7 , wherein one or more captured images is/are processed and analysed to determine whether debris is present in the build vat or not.

9 . The additive manufacturing device according to claim 1 , wherein the additive manufacturing device is configured to selectively solidify at least a part of the at least one build material around or at debris detected in the build vat to promote a removal of the debris.

10 . The additive manufacturing device according to claim 1 , wherein the additive manufacturing device comprises

one or more light sources configured to illuminate a bottom part or an underside of the build vat from below, and/or

one or more light sources configured to illuminate, from above, an upper surface of the floor of the build vat and/or a surface of the at least one build material when the at least one build material is contained in the build vat from above.

11 . The additive manufacturing device according to claim 1 , wherein the at least one build material is transparent or translucent and wherein the additive manufacturing device further comprises a transparent or translucent contrast element located below the build vat and being configured to create a pattern of light and dark areas through the floor of the build vat when being illuminated by one or more light sources from below and/or above.

12 . The additive manufacturing device according to claim 1 , wherein the floor of the build vat is optically transparent or translucent.

13 . The additive manufacturing device according to claim 1 , wherein the floor of the build vat is energy-transparent in relation to the energy source.

14 . The additive manufacturing device according to claim 1 , wherein the additive manufacturing device comprises a first camera or imaging device located below the build vat and being configured to capture images, from below, of a surface of the floor of the build vat and/or a surface of the at least one build material when the at least one build material is contained in the build vat, and wherein the floor of the build vat is deformable and the first camera or imaging device is configured to capture one or more images of the floor of the build vat when the floor is deformed by a layer release mechanism to release at least a part of a manufactured object.

15 . The additive manufacturing device according to claim 1 , wherein the floor of the build vat is flexible and the additive manufacturing device comprises a layer release mechanism configured to release, by gradual and controlled peeling, a lastly formed layer of a manufactured object from the flexible floor, and wherein a camera is configured to capture a peeling pattern comprising presence or absence of gradual changes in contrast and/or color in areas where release is being achieved, has been achieved, or has partially or fully failed to be achieved.

16 . The additive manufacturing device according to claim 15 , wherein data representing the captured peeling pattern is compared to an expected or previously captured peeling pattern and analysed to determine whether a release failure has taken place or potentially has taken place.

17 . The additive manufacturing device according to claim 3 , wherein the debris detection system comprises

a first camera or imaging device located below the build vat and being configured to capture images through the floor of the build vat from below, and/or

a second camera or imaging device located above the build vat and being configured to capture images, from above, of an upper surface of the floor of the build vat and/or a surface of the at least one build material when the at least one build material is contained in the build vat.

18 . The additive manufacturing device according to claim 2 , wherein the additive manufacturing device comprises a first camera or imaging device located below the build vat and being configured to capture images, from below, of a surface of the floor of the build vat and/or a surface of the at least one build material when the at least one build material is contained in the build vat, and wherein the floor of the build vat is deformable and the first camera or imaging device is configured to capture one or more images of the floor of the build vat when the floor is deformed by a layer release mechanism to release at least a part of a manufactured object.

19 . The additive manufacturing device according to claim 2 , wherein the floor of the build vat is flexible and the additive manufacturing device comprises a layer release mechanism configured to release, by gradual and controlled peeling, a lastly formed layer of a manufactured object from the flexible floor, and wherein a camera is configured to capture a peeling pattern comprising presence or absence of gradual changes in contrast and/or color in areas where release is being achieved, has been achieved, or has partially or fully failed to be achieved.

20 . The additive manufacturing device according to claim 3 , wherein the floor of the build vat is flexible and the additive manufacturing device comprises a layer release mechanism configured to release, by gradual and controlled peeling, a lastly formed layer of a manufactured object from the flexible floor, and wherein a camera is configured to capture a peeling pattern comprising presence or absence of gradual changes in contrast and/or color in areas where release is being achieved, has been achieved, or has partially or fully failed to be achieved.

Assignments (5)
RELEASE OF SECURITY INTEREST Recorded Jun 10, 2025
From: U.S. BANK TRUST COMPANY
To: NEXA3D INC.; NXT FACTORY INC.; NEXA3D APS
Reel/Frame 071534/0581 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 15, 2025
From: NEXA3D APS
To: NEXA3D INC.
Reel/Frame 070523/0210 →
SECURITY INTEREST Recorded Nov 15, 2024
From: NEXA3D INC.; NXT FACTORY INC.; NEXA3D APS
To: U.S. BANK TRUST COMPANY
Reel/Frame 069381/0694 →
CHANGE OF NAME Recorded Oct 9, 2023
From: ADDIFAB APS
To: NEXA3D APS
Reel/Frame 065182/0878 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 29, 2021
From: JESSEN, JON; SØRENSEN, PETER LUND; MADSEN, JAN
To: ADDIFAB APS
Reel/Frame 055088/0385 →