IP Library Granted Patent US 11,260,581
Granted Patent B2
US 11,260,581 · App. 17/122,944 · Granted Mar 1, 2022

Jetted material printer with pressure-assisted fluid extraction

Inventors: Philip Eugene Rogren (Half Moon Bay, CA); Morteza Vatani (Los Gatos, CA); Ronald Anthony Rojeski (San Jose, CA)
Assignee: SAKUU CORPORATION
B29C64/147B29C64/245B33Y10/00B33Y30/00B33Y40/00B41J11/0005B41J11/0022B29C64/393B33Y50/02
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Quick Facts
Patent No.
US 11,260,581
App. No.
17/122,944
Granted
Mar 1, 2022
Kind
B2
Abstract

A three-dimensional (3D) inkjet printer is configured to build up an object by printing a series of layers and stacking them to form the object. In order to speed printing, drying of each layer is accelerated by using a pressure differential to extract liquid vehicle from the ink, and by moving the printed layer away from the inkjet print heads before drying so that the inkjet print heads may print the next layer. The dried printed layer may also be conditioned and/or cured. Dried printed layers are stacked at a build station to assemble the finished object.

Claims (30)

1. A three-dimensional (3D) printer, comprising:

a receiver device including a substrate;

an inkjet print head configured to deposit an ink including a suspension of a particulate material in a liquid vehicle onto the substrate to form a printed layer;

a removal system configured to use a pressure differential to remove a portion of the liquid vehicle from the printed layer to form a dried layer; and

a transfer device configured to transfer the dried layer to a build station;

wherein the removal system comprises a vacuum chamber and a liquid-permeable support, both the vacuum chamber and the liquid-permeable support being on an opposite side of the substrate from the inkjet print head; and

wherein the removal system includes a pressure plate and is configured to apply a pressure to a surface of the printed layer opposite the substrate.

2. The 3D printer of claim 1 , wherein:

the substrate is permeable; and

the removal system is configured to evacuate a space on a side of the substrate opposite to the printed layer.

3. The 3D printer of claim 2 , wherein the substrate includes a perforated metal.

4. The 3D printer of claim 2 , wherein the substrate includes a fibrous material.

5. The 3D printer of claim 1 , wherein the receiver device is configured to transport the printed layer away from the inkjet print head before removal of the liquid vehicle from the printed layer.

6. The 3D printer of claim 1 , wherein the removal system is configured to remove the liquid vehicle during transport of the printed layer to the build station.

7. The 3D printer of claim 1 , wherein the transfer device is configured to transfer the dried layer to a stack of printed layers in the build station.

8. The 3D printer of claim 1 , wherein:

the ink includes a binder liquid; and

the printer further comprises a curing system configured to cure the binder liquid to solidify it.

9. The 3D printer of claim 1 , further comprising a conditioning device configured to condition the printed layer to increase a density of the particulate material in the dried layer.

10. The 3D printer of claim 9 , wherein the conditioning device is configured to mechanically compress the particulate material in the dried layer.

11. The 3D printer of claim 9 , wherein the conditioning device is further configured to apply a surface conditioning material to the dried printed layer.

12. The 3D printer of claim 1 , wherein the build station includes an X-Y controller.

13. The 3D printer of claim 12 , wherein the build station further includes a Z-axis controller.

14. The 3D printer of claim 1 , further comprising a printing module configured to form a second printed layer on the substrate using a method other than inkjet printing.

15. An inkjet printer, comprising:

a receiver device including a substrate;

an inkjet print head configured to deposit an ink including a suspension of a particulate material in a liquid vehicle onto the substrate to form a printed layer; and

a removal system configured to use a pressure differential to remove a portion of the liquid vehicle from the printed layer;

wherein the removal system comprises a vacuum chamber and a liquid-permeable support, both the vacuum chamber and the liquid-permeable support being on an opposite side of the substrate from the inkjet print head; and

wherein the removal system includes a pressure plate and is configured to apply a pressure to a surface of the printed layer opposite the substrate.

Assignments (4)
RELEASE OF SECURITY INTEREST Recorded Apr 12, 2024
From: WILLYO EQUITY, LP
To: SAKUU CORPORATION
Reel/Frame 067091/0415 →
SECURITY INTEREST Recorded Sep 5, 2023
From: SAKUU CORPORATION
To: WILLYO EQUITY, LP
Reel/Frame 064793/0082 →
CHANGE OF NAME Recorded May 6, 2021
From: KERACEL, INC.
To: SAKUU CORPORATION
Reel/Frame 056177/0864 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 15, 2020
From: ROJESKI, RONALD; VATANI, MORTEZA; ROGREN, PHILIP E.
To: KERACEL, INC.
Reel/Frame 054658/0677 →
Cited By (1)
US 12,325,184