IP Library Granted Patent US 10,099,428
Granted Patent B2
US 10,099,428 · App. 14/980,806 · Granted Oct 16, 2018

Three-dimensional fabricating apparatus and method of fabricate three-dimensional shaped object

Inventors: Yoshikazu Ooba (Kanagawa-ken, JP); Koukichi Suzuki (Kanagawa-ken, JP); Yuuya Daicho (Kanagawa-ken, JP)
Assignee: CMET INC.
B29C67/0081B29C64/165B33Y10/00B33Y30/00
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 10,099,428
App. No.
14/980,806
Granted
Oct 16, 2018
Kind
B2
Abstract

A three-dimensional fabricating apparatus has a table on which a powder material is stacked in a layered manner, and a shaping unit which includes a powder material supply device supplying the powder material onto a top surface of the table by every predetermined layer thickness and a binder liquid supply device ejecting a binder liquid to the powder material supplied onto the top surface of the table. The powder material supply device of the shaping unit is movable in one direction in a state adjacent to the top surface of the table and is capable of supplying the powder material onto the top surface of the table at a predetermined supply width while moving the powder material supply device. The binder liquid supply device is capable of moving in the same direction as the powder material supply device in a state adjacent to the top surface of the table.

Claims (24)

1. A three-dimensional fabricating apparatus comprising:

a table on which a powder material is stacked in a layered manner; and

a shaping unit which includes

a powder material supply device supplying the powder material onto a top surface of the table by every predetermined layer thickness, and

a binder liquid supply device ejecting a binder liquid to the powder material supplied onto the top surface of the table so as to bind the powder material,

wherein the powder material supply device of the shaping unit is movable in one direction in a state adjacent to the top surface of the table and is configured to supply the powder material onto the top surface of the table at a predetermined supply width while moving the powder material supply device,

wherein the binder liquid supply device is configured to:

move in the same direction as the powder material supply device in a state adjacent to the top surface of the table,

eject the binder liquid to the top surface of the table at the same ejection width as the powder material supply width of the powder material supply device in maximum, and

move and eject the binder liquid to the powder material supplied onto the top surface of the table in accordance with the movement of the powder material supply device, and

wherein the shaping unit includes a rotation member that is rotatable about an axis of a shaft member extending in the vertical direction,

wherein the rotation member is provided with the powder material supply device and the binder liquid supply device, and

wherein, when the powder material supply device and the binder liquid supply device rotate about the axis of the shaft member along with the rotation member, the powder material layer is formed on the top surface of the table.

2. The three-dimensional fabricating apparatus according to claim 1 , wherein the binder liquid supply device includes an inkjet head which extends horizontally in a direction intersecting the movement direction of the binder liquid supply device and ejects the binder liquid toward the powder material supplied onto the top surface of the table.

3. The three-dimensional fabricating apparatus according to claim 1 , wherein the lower end side of the shaft member is fixed to the top surface of the table, and

wherein, when the rotation member rotates about the axis of the shaft member in one direction, the rotation member rotates along with the powder material supply device and the binder liquid supply device.

4. The three-dimensional fabricating apparatus according to claim 3 , wherein the rotation member is fixed to the lower end side of the shaft member, and

wherein the rotation member gradually and synchronously moves upward while rotating along with the rotation of the shaft member.

5. A three-dimensional shaped object shaping method of fabricating a shaped object while stacking a powder material layer by sequentially repeating a step of supplying a powder material from a powder material supply device onto a top surface of a table which is used to stack the powder material in a layered manner at a predetermined layer thickness and a step of ejecting a binder liquid from a binder liquid supply device to the powder material supplied onto the top surface of the table so that the powder material is bound and layers of a part of a three-dimensional shaped object of a shaping target are formed,

wherein the powder material supply device is moved in one direction while being adjacent to the top surface of the table so that the powder material is supplied onto the top surface of the table at a predetermined supply width,

wherein the powder material layer is formed in a manner such that the binder liquid supply device is moved in the same direction as the powder material supply device in a state adjacent to the top surface of the table so as to follow the movement of the powder material supply device and the binder liquid is ejected to the powder material supplied onto the top surface of the table at the same ejection width as the powder material supply width of the powder material supply device in maximum,

wherein the powder material supply device and the binder liquid supply device are provided in a rotation member being rotatable about an axis of a shaft member extending in the vertical direction, and wherein the powder material supply device and the binder liquid supply device rotate about the axis of the shaft member along with the rotation member while forming the powder material layer on the top surface of the table.

6. The three-dimensional shaped object fabricating method according to claim 5 , wherein, when the rotation member continuously rotates about the axis of the shaft member and gradually moves upward along with the powder material supply device and the binder liquid supply device, the powder material supply device and the binder liquid supply device continuously stack the powder material layer while continuously forming the powder material layer.

7. The three-dimensional shaped object fabricating method according to claim 5 , wherein, when the powder material is supplied from the powder material supply device at a predetermined layer thickness onto the top surface of the table, an additive is mixed with the powder material before the powder material is supplied onto the top surface of the table.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 23, 2017
From: OOBA, YOSHIKAZU; SUZUKI, KOUKICHI; DAICHO, YUUYA
To: CMET INC.
Reel/Frame 043375/0886 →
Priority Claims (1)
JP 2013-137492 · Jun 28, 2013 · national
Continuity (2)
Continuation PCTJP2014067223 · Jun 27, 2014
Related Publication 20160107387A1 · Apr 21, 2016