IP Library Patent Application 18116271
Patent Application
App. No. 18/116,271

SYSTEMS AND METHODS FOR MINIMIZING SHRINKAGE OF RESIN-PRINTED PARTS DURING ADDITIVE MANUFACTURING

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Patent No.
US None
App. No.
18/116,271
Abstract

Systems and methods for combatting shrinking forces within drying photopolymers of additive manufacturing processes are disclosed herein. According to at least some embodiments, layers of an additive manufacturing build are split into core components and shell components. Magnetically active additives within the photopolymer resin are then aligned in a first plane while the core section is cured, and a second plane while the outer shell section is cured. According to at least some embodiments, the first plane and the second plane are perpendicular.

Claims (81)

1 . A digital light processing (DLP) printer, comprising:

a reservoir configured to have a photopolymer resin material disposed therein, the photopolymer resin including a plurality of magnetically active additives;

a magnetic field generator;

a build plate disposed above the reservoir and configured to at least move along a vertical axis, away from the reservoir;

a digital light projector configured to project an image of a part to be printed towards the reservoir; and

a processor, configured to:

subdivide a build file into at least one printing layer;

create a first image and a second image for the at least one printing layers;

instruct the magnetic field generator to apply a first magnetic field;

instruct the digital light projector to project the first image;

instruct the magnetic field generator to apply a second magnetic field; and

instruct the digital light projector to project the second image,

wherein the first magnetic field and the second magnetic field are out of phase.

2 . The DLP printer of claim 1 ,

wherein the first image comprises a core image, the core image including an interior area of an image to be printed on the at least one printing layer, and

wherein the second image comprises a shell image, the shell image including a perimeter of the image to be printed on the at least one printing layer.

3 . The DLP printer of claim 2 , wherein the shell image comprises a perimeter of constant thickness.

4 . The DLP printer of claim 1 ,

wherein the first magnetic field comprises a substantially uniform vector field, and

wherein vectors of the substantially uniform vector field are directed in the x-y plane.

5 . The DLP printer of claim 1 ,

wherein the second magnetic field comprises a substantially uniform vector field, and

wherein vectors of the substantially uniform vector field are directed along the z axis.

6 . A method for printing a part using digital light processing (DLP) printing, comprising:

subdividing a build file into at least one printing layer;

plunging a build plate of a DLP printer into a composite resin, the composite resin including magnetically active additives;

curing, with a digital light processor, a first image of the at least one printing layer;

applying a magnetic field having a first phase to the at least one printing layer;

curing, with the digital light processor, a second image of the at least one printing layer;

and

applying a magnetic field having a second phase to the at least one printing layer.

7 The method of claim 6 ,

wherein the first image comprises a core image, the core image including a majority of an image to be printed on the at least one printing layer, and

wherein the second image comprises a shell image, the shell image including a perimeter of the image to be printed on the at least one printing layer.

8 . The method of claim 7 , wherein the shell image comprises a perimeter of constant thickness.

9 . The method of claim 6 ,

wherein the first magnetic field comprises a substantially uniform vector field, and

wherein vectors of the substantially uniform vector field are directed in the x-y plane.

10 . The method of claim 6 ,

wherein the second magnetic field comprises a substantially uniform vector field, and

wherein vectors of the substantially uniform vector field are directed along the z axis.

11 . A digital light processing (DLP) printer, comprising:

a reservoir configured to have a photopolymer resin material disposed therein, the photopolymer resin including a plurality of magnetically active additives;

a build plate disposed above the reservoir and configured to at least move along a vertical axis, away from the reservoir;

a digital light projector configured to project an image of a part to be printed towards the reservoir; and

a processor, configured to:

subdivide a build file into at least one printing layer;

subdivide the at least one printing layer into a plurality of sublayers;

create a first image corresponding to a first sublayer, the first image being in a first checkerboard pattern;

instruct the digital light projector to project the first image;

instruct the build plate to move to a position corresponding to a second sublayer;

create a second image corresponding to the second sublayer, the second image being is in a second checkerboard pattern;

instruct the digital light projector to project the second image;

instruct the build plate to move to a position corresponding to a third sublayer;

create a third image corresponding to the third sublayer, the third image being in the first checkerboard pattern; and

instruct the digital light projector to project the third image.

12 . The DLP printer of claim 11 ,

wherein each of the first image, the second image, and the third image comprises:

an interior area core; and

an edge shell,

wherein the DLP printer further comprises:

a magnetic field generator capable of generating a magnetic field,

wherein the magnetic field generated by the magnetic field generator is in a first phase when the digital light projector is instructed to project the interior area core of each of the first image, the second image, and the third image, and

wherein the magnetic field generated by the magnetic field generator is in a second phase when the digital light projector is instructed to project the edge shell of each of the first image, the second image, and the third image.

13 . A method for printing a part using digital light processing (DLP) printing, comprising:

subdividing a build file into at least one printing layer;

subdividing the at least one printing layer into a plurality of sublayers;

creating a first image corresponding to a first sublayer, the first image being in a first checkerboard pattern;

instructing the digital light projector to project the first image;

instructing the build plate to move to a position corresponding to a second sublayer;

creating a second image corresponding to the second sublayer, the second image being is in a second checkerboard pattern;

instructing the digital light projector to project the second image;

instructing the build plate to move to a position corresponding to a third sublayer;

creating a third image corresponding to the third sublayer, the third image being in the first checkerboard pattern; and

instructing the digital light projector to project the third image.

14 . The method for printing a part of claim 13 ,

wherein each of the first image, the second image, and the third image comprises:

an interior area core; and

an edge shell,

wherein a magnetic field generated by a magnetic field generator is in a first phase when the digital light projector is instructed to project the interior area core of each of the first image, the second image, and the third image, and

wherein the magnetic field is in a second phase when the digital light projector is instructed to project the edge shell of each of the first image, the second image, and the third image.

Assignments (3)
SECURITY INTEREST Recorded Nov 24, 2025
From: 3DFORTIFY INC.
To: FIRST-CITIZENS BANK & TRUST COMPANY
Reel/Frame 073017/0082 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 13, 2023
From: GARGITTER, VERENA; QUINN, ALEXANDER THOMAS
To: 3DFORTIFY INC.
Reel/Frame 064248/0886 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 10, 2023
From: KAUFMAN, TYLER ALEXANDER
To: 3DFORTIFY INC.
Reel/Frame 064198/0925 →