IP Library Granted Patent US 11,975,489
Granted Patent B2
US 11,975,489 · App. 17/535,546 · Granted May 7, 2024

3D printing system and method

Inventors: Nanzhu Zhao (Novi, MI); Sandeep Patil (Farmington Hills, MI); Cheng Sun (Wilmette, IL); Rihan Hai (Evanston, IL)
Assignee: Nissan North America, Inc.
B29C64/314B29C64/129B29C64/232B29C64/245B29C64/264B33Y30/00B33Y40/10
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 11,975,489
App. No.
17/535,546
Granted
May 7, 2024
Kind
B2
Abstract

A 3D printing system includes a tank containing a liquid photopolymer resin. The tank includes an optically transparent window through which light is configured to pass. A heat exchanger is connected to the tank and is configured to cool the liquid polymer resin. A transducer is connected to the tank. The transducer is configured to emit an acoustic wave toward the optically transparent window.

Claims (51)

1. A 3D printing system comprising:

a tank containing a liquid photopolymer resin, the tank including an optically transparent window through which light is configured to pass;

a heat exchanger connected to the tank and configured to cool the liquid polymer resin; and

a transducer connected to the tank, the transducer being configured to emit an acoustic wave toward the optically transparent window,

the heat exchanger and the transducer being disposed on a same wall of the tank, one of the heat exchanger and the transducer being disposed between the transparent window and the other of the heat exchanger and the transducer,

the heat exchanger and the acoustic wave emitted by the transducer being configured to facilitate flow of the liquid polymer resin toward the optically transparent window.

2. The 3D printing system according to claim 1 , wherein

the heat exchanger is configured to cool the liquid polymer resin to facilitate flow of the liquid polymer resin toward the transducer.

3. The 3D printing system according to claim 1 , wherein

the heat exchanger is mounted on an outer surface of the wall of the tank.

4. The 3D printing system according to claim 3 , wherein

the wall is heat dissipative.

5. The 3D printing system according to claim 3 , wherein

the transducer is mounted between the transparent window of the tank and the heat exchanger.

6. The 3D printing system according to claim 1 , wherein

at least a portion of the heat exchanger is disposed lower than an upper surface of the liquid polymer resin in the tank.

7. The 3D printing system according to claim 1 , wherein

the transducer is disposed on an inner surface of the tank, and the heat exchanger is disposed on an outer surface of the tank.

8. The 3D printing system according to claim 1 , wherein

the transducer is disposed on an outer surface of the tank, and the heat exchanger is disposed on an outer surface of the tank.

9. The 3D printing system according to claim 7 , wherein

the heat exchanger is mounted between the transducer and the transparent window of the tank.

10. A 3D printing system comprising:

a tank containing a liquid photopolymer resin, the tank including an optically transparent window through which light is configured to pass;

a rigid base on which an object is configured to be printed;

an arm connected to the rigid base to move the rigid base relative to the tank;

a first transducer connected to the tank and configured to emit a first acoustic wave toward the optically transparent window; and

a second transducer connected to the tank and configured to emit a second acoustic wave toward the optically transparent window, the second transducer being disposed on an opposite side of the tank from the first transducer;

a first heat exchanger connected to the tank and configured to cool the liquid polymer resin, the first heat exchanger and the first transducer being disposed on a first wall of the tank and

a second heat exchanger connected to the tank and configured to cool the liquid polymer resin, the second heat exchanger and the second transducer being disposed on a second wall of the tank,

the first and second heat exchangers and the first and second acoustic waves emitted by the first and second transducers being configured to facilitate flow of the liquid polymer resin toward the optically transparent window.

11. The 3D printing system according to claim 10 , wherein

a non-zero angle is formed between a first direction of the first acoustic wave and a second direction of the second acoustic wave.

12. The 3D printing system according to claim 10 , wherein

a first direction of the first acoustic wave is substantially parallel to a second direction of the second acoustic wave.

13. The 3D printing system according to claim 10 , wherein

the first and second heat exchangers are configured to cool the liquid polymer resin to facilitate flow of the liquid polymer resin toward the first and second transducers, respectively.

14. The 3D printing system according to claim 10 , wherein

the first and second heat exchangers are mounted on outer surfaces of first and second walls, respectively, of the tank.

15. The 3D printing system according to claim 14 , wherein

the first and second walls are heat dissipative.

16. The 3D printing system according to claim 10 , wherein

the first transducer is mounted between the transparent window of the tank and the first heat exchanger, and the second transducer is mounted between the transparent window of the tank and the second heat exchanger.

17. The 3D printing system according to claim 10 , wherein

the first and second transducers are disposed on an inner surface of the tank, and the first and second heat exchangers are disposed on an outer surface of the tank.

18. The 3D printing system according to claim 10 , wherein

the first and second transducers are disposed on an outer surface of the tank, and the first and second heat exchangers are disposed on an outer surface of the tank.

19. The 3D printing system according to claim 10 , wherein

the first heat exchanger is mounted between the first transducer and the transparent window of the tank, and the second heat exchanger is mounted between the second transducer and the transparent window of the tank.

20. The 3D printing system according to claim 10 , wherein

the first and second walls are disposed on opposite sides of the rigid base.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 26, 2024
From: NISSAN NORTH AMERICA, INC.
To: NISSAN MOTOR CO., LTD.
Reel/Frame 069767/0594 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 19, 2022
From: ZHAO, NANZHU; PATIL, SANDEEP
To: NISSAN NORTH AMERICA, INC.
Reel/Frame 060547/0472 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 19, 2022
From: SUN, CHENG; HAI, RIHAN
To: NORTHWESTERN UNIVERSITY
Reel/Frame 060547/0526 →
Continuity (1)
Related Publication 20230158744A1 · May 25, 2023