IP Library Granted Patent US 12,042,980
Granted Patent B2
US 12,042,980 · App. 17/373,910 · Granted Jul 23, 2024

Methods and apparatus for compensating for material distortion during additive manufacturing

Inventors: Kenneth J. Susnjara (Birdseye, IN); Scott G. Vaal (Jasper, IN)
Assignee: Thermwood Corporation
B29C64/106B29C64/194B29C64/393B33Y40/00B33Y10/00B33Y30/00B33Y50/02
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Quick Facts
Patent No.
US 12,042,980
App. No.
17/373,910
Granted
Jul 23, 2024
Kind
B2
Abstract

Embodiments of the present disclosure are drawn to additive manufacturing methods. An exemplary method may include generating a tool path for forming a component via additive manufacturing, and assessing the tool path to identify a change in direction. The method may also include determining if the change in direction exceeds a predetermined angle, and adding a tangent arc to the tool path before the change in direction if the change in direction exceeds the predetermined angle.

Claims (41)

1. An additive manufacturing apparatus, comprising:

an opening configured to deposit a heated material;

a roller configured to engage the heated material; and

a control system configured to control a position of the opening and the roller, the control system being programmed to:

generate a tool path including a first portion and a second portion, wherein the first portion and the second portion extend in different directions;

cause the opening and the roller to move according to the first portion of the tool path while heated material is deposited from the opening; and

cause the roller to move at least a portion of the heated material toward the second portion,

wherein causing the roller to move at least a portion of the heated material toward the second portion includes moving the roller along a roller path having a shape of an outward bulge with respect to the first portion.

2. The additive manufacturing apparatus of claim 1 , wherein the control system is further programmed to cause the roller to be positioned out of alignment with the first portion before the roller moves according to the second portion.

3. The additive manufacturing apparatus of claim 1 , wherein the tool path includes a transition portion between the first portion and the second portion.

4. The additive manufacturing apparatus of claim 3 , wherein the control system is further programmed to cause the roller to be positioned in alignment with the transition portion such that a central portion of the roller overlaps a portion of the transition portion having a largest deviation with respect to the first portion.

5. The additive manufacturing apparatus of claim 3 , wherein the control system is further programmed to determine a location of the transition portion based on an angle formed by the first portion and the second portion.

6. The additive manufacturing apparatus of claim 3 , wherein the control system is further programmed to determine a shape of the transition portion based on an angle of a change in direction formed by the first portion and the second portion.

7. The additive manufacturing apparatus of claim 3 , wherein the transition portion connects the first portion of the tool path and the second portion of the tool path.

8. The additive manufacturing apparatus of claim 1 , wherein the control system is configured to automatically add a transition portion between the first portion and the second portion to the tool path based on a change in direction defined by the first portion and the second portion.

9. The additive manufacturing apparatus of claim 1 , wherein the roller path is determined based on an angle of a change in direction formed by the first portion and the second portion.

10. An additive manufacturing apparatus, comprising:

an extruder connected to an opening, the opening configured to deposit a heated material;

a roller configured to engage the heated material; and

a control system configured to control a position of the opening and the roller, the control system being programmed to:

generate a tool path including a first portion and a second portion, wherein the first portion and the second portion extend in different directions with the tool path including a transition portion between the first portion and the second portion;

cause the opening and the roller to move according to the first portion of the tool path while heated material is deposited from the opening; and

cause the roller to move at least a portion of the heated material toward the second portion,

wherein causing the roller to move at least a portion of the heated material toward the second portion includes moving the roller along a roller path having a shape of an outward bulge with respect to the first portion.

11. The additive manufacturing apparatus of claim 10 , wherein the control system is further programmed to add the transition portion to the tool path after generating the tool path including the first portion and the second portion.

12. The additive manufacturing apparatus of claim 10 , wherein the control system is further programmed to cause the roller to be positioned out of alignment with the first portion before the roller moves according to the second portion.

13. The additive manufacturing apparatus of claim 10 , wherein the control system is further programmed to cause the roller to be positioned in alignment with the transition portion such that a central portion of the roller overlaps a portion of the transition portion having a largest deviation with respect to the first portion.

14. The additive manufacturing apparatus of claim 10 , wherein the control system is further programmed to determine a location of the transition portion based on an angle formed by the first portion and the second portion.

15. The additive manufacturing apparatus of claim 10 , wherein the control system is further programmed to determine a shape of the transition portion based on an angle of a change in direction formed by the first portion and the second portion.

16. The additive manufacturing apparatus of claim 10 , wherein the transition portion connects the first portion of the tool path and the second portion of the tool path.

17. An additive manufacturing apparatus, comprising:

an opening configured to deposit a heated material;

a roller configured to engage the heated material; and

a control system configured to control a position of the opening and the roller, the control system being programmed to:

generate a tool path including a first portion and a second portion extending in different directions;

assess the tool path to determine an angle formed between the first portion and the second portion;

move the opening along the first portion;

divert the opening along a transition portion while depositing the heated material prior to moving the opening along the second portion; and

engage the deposited heated material with the roller while moving the opening along the second portion of the tool path to move at least a portion of the heated material deposited along the transition portion.

18. The additive manufacturing apparatus of claim 17 , wherein the control system is further programmed to cause the roller to be positioned in alignment with the transition portion and out of alignment with the first portion before the roller moves along the second portion.

19. The additive manufacturing apparatus of claim 17 , wherein the control system is further programmed to determine at least one of a shape and a location of the transition portion based on the angle assessed between the first portion and the second portion.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 22, 2021
From: SUSNJARA, KENNETH J.; VAAL, SCOTT G.
To: THERMWOOD CORPORATION
Reel/Frame 057566/0226 →
Continuity (4)
Continuation 17067376 · Oct 9, 2020
Continuation 16677194 · Nov 7, 2019
Continuation 15435431 · Feb 17, 2017
Related Publication 20210339461A1 · Nov 4, 2021