IP Library Granted Patent US 11,148,206
Granted Patent B2
US 11,148,206 · App. 16/328,813 · Granted Oct 19, 2021

Mold lock remediation

Inventors: Ricardo Chin (Shrewsbury, MA); Blake Z. Reeves (Chelsea, MA)
Assignee: Desktop Metal, Inc.
B22F10/20B28B1/001B28B17/0081B29C64/386B29C64/40B33Y50/00B33Y50/02G05B19/4099H04N1/4092B22F10/30B29C64/10B33Y10/00G05B2219/35134G05B2219/49007
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Quick Facts
Patent No.
US 11,148,206
App. No.
16/328,813
Granted
Oct 19, 2021
Kind
B2
Abstract

Mold lock is remediated by performing a layer-by-layer, two-dimensional analysis to identify unconstrained removal paths for any support structure or material within each two-dimensional layer, and then ensuring that aligned draw paths are present for all adjacent layers, all as more specifically described herein. Where locking conditions are identified, a sequence of modification rules are then applied, such as by breaking support structures into multiple, independently removable pieces. By addressing mold lock as a series of interrelated two-dimensional geometric problems, and reserving three-dimensional remediation strategies for more challenging, complex mold lock conditions, substantial advantages can accrue in terms of computational speed and efficiency.

Claims (55)

1. A method for mitigating mold lock in an object to be fabricated, comprising:

slicing a three-dimensional digital model for the object into a first horizontal two-dimensional profile corresponding to a horizontal object layer;

slicing a three-dimensional digital model for a support structure corresponding to the object into a second horizontal two-dimensional profile corresponding to a horizontal support layer;

identifying a draw path for separating the horizontal object layer from the horizontal support layer, the identifying including identifying a range of angles over which a rigid shape of the horizontal object layer can be separated in a straight line from a rigid shape of the horizontal support layer;

identifying if a locked layer is present, the locked layer comprising one of:

a non-existent draw path for separating one of the horizontal object layers from the horizontal support layers; or

the first horizontal support layer being vertically coupled to a second horizontal support layer, with no draw path in common between the two layers;

identifying, as a mold locked region, the locked layer and any vertically contiguous support layers;

dividing the mold locked region with one or more vertical planes into one or more sub regions;

if the one or more sub regions can be horizontally removed, processing a remaining digital model, excluding the one or more sub regions, for mold lock remediation; and

if the one or more sub regions cannot be horizontally removed, remediating the mold locked region by subdividing the mold locked region into a number of volumetric sub regions, and searching for three-dimensional draw paths for removing the volumetric sub regions from the object.

2. The method of claim 1 , wherein the identifying the draw path further comprises identifying the draw path on a layer-by-layer basis, within a plurality of layers in the digital model for the support structure and the object.

3. The method of claim 1 , wherein the three-dimensional digital model includes a raft, the object being fabricated on the raft, and plurality of supports for fabrication with the object.

4. A method for removing geometrically interlocking parts in an object to be fabricated, comprising:

slicing a three-dimensional digital model for the object into a first horizontal two-dimensional profile corresponding to a horizontal object layer;

slicing a three-dimensional digital model for a support structure corresponding to the object into a second horizontal two-dimensional profile corresponding to a horizontal support layer;

identifying a draw path for separating the horizontal object layer from the horizontal support layer;

identifying if a locked layer is present, the locked layer comprising one of:

a non-existent draw path for separating one of the horizontal object layers from the horizontal support layers; or

the first horizontal support layer being vertically coupled to a second horizontal support layer, with no draw path in common between the two layers;

identifying, as a mold locked region, the locked layer and any vertically contiguous support layers;

dividing the mold locked region with one or more vertical planes into one or more subregions;

if the one or more sub regions can be horizontally removed, processing a remaining digital model, excluding the one or more sub regions, for mold lock remediation; and

if the one or more sub regions cannot be horizontally removed, employing one or more three-dimensional remediation strategies to address the mold locked region.

5. The method of claim 4 , wherein the three-dimensional digital model includes a raft, the object being fabricated on the raft, and a plurality of supports for fabrication with the object.

6. The method of claim 5 further comprising performing an initial check to determine whether the object can be separated from the support and the raft along a vertical axis.

7. The method of claim 4 wherein dividing the mold locked region further comprises iteratively attempting an increasing number of planar slices until the one or more sub regions can be horizontally removed or a threshold is reached.

8. The method of claim 4 wherein the mold locked region is a first mold locked region, the method further comprising:

identifying a second mold locked region;

removing the second mold locked region from a vertically adjacent volume after fabrication; and

vertically moving the first mold locked region.

9. The method of claim 4 wherein the one or more three-dimensional remediation strategies includes:

subdividing the mold locked region into a number of volumetric sub regions; and

searching for three-dimensional draw paths for removing the volumetric sub regions from the object.

10. The method of claim 4 further comprising, if the one or more three-dimensional remediation strategies fail to remediate the mold lock, providing a notification that an unremediated mold lock condition exists.

11. The method of claim 4 further comprising fabricating the object and the support based on the digital model, the fabricating including fabricating the object includes fabricating an interface layer between the support and the object.

12. The method of claim 4 , wherein the identifying the draw path further comprises identifying a linear path for uncoupling horizontal support from the horizontal object layer within a plane.

13. The method of claim 4 , wherein the identifying the draw path further comprises testing for a linear separation the horizontal object layer from the horizontal support layer in a straight line.

14. A method for removing geometrically interlocking parts in an object to be fabricated, comprising:

slicing a three-dimensional digital model for the object into a first horizontal two-dimensional profile corresponding to a horizontal object layer;

slicing a three-dimensional digital model for a support structure corresponding to the object into a second horizontal two-dimensional profile corresponding to a horizontal support layer;

identifying a draw path for separating the horizontal object layer from the horizontal support layer;

identifying if a locked layer is present;

identifying, as a mold locked region, the locked layer and any vertically contiguous support layers;

dividing the mold locked region with one or more vertical planes into one or more sub regions;

employing a three-dimensional remediation strategy to address the mold locked region.

15. The method of claim 14 ,

if the one or more sub regions can be horizontally removed, processing a remaining digital model, excluding the one or more sub regions, for mold lock remediation; and

if the one or more sub regions cannot be horizontally removed, employing one or more three-dimensional remediation strategies to address the mold locked region.

16. The method of claim 14 , wherein the three dimensional digital model includes a raft, the object for fabrication on the raft, and a plurality of supports for fabrication with the object.

17. The method of claim 14 further comprising performing an initial check to determine whether the object can be separated from the support structure along a vertical axis.

18. The method of claim 14 wherein dividing the mold locked region further comprises iteratively attempting an increasing number of planar slices until the one or more sub regions can be horizontally removed or a threshold is reached.

19. The method of claim 14 wherein the one or more three-dimensional remediation strategies includes vertically moving the mold locked region after fabrication after a second mold locked region is removed from a vertically adjacent volume after fabrication.

20. The method of claim 14 wherein the one or more three-dimensional remediation strategies includes subdividing the mold locked region into a number of volumetric sub regions and searching for three-dimensional draw paths for removing the volumetric sub regions from the object.

21. The method of claim 14 further comprising, if the one or more three-dimensional remediation strategies fail to remediate the mold lock, providing a notification that an unremediated mold lock condition exists.

Assignments (2)
SECURITY INTEREST Recorded Apr 24, 2026
From: ARC IMPACT ACQUISITION CORPORATION
To: IRON HORSE CREDIT LLC
Reel/Frame 075458/0351 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 8, 2021
From: CHIN, RICARDO; REEVES, BLAKE Z.
To: DESKTOP METAL, INC.
Reel/Frame 055870/0166 →