IP Library Granted Patent US 10,843,260
Granted Patent B2
US 10,843,260 · App. 15/151,693 · Granted Nov 24, 2020

Metal powder, method of producing additively-manufactured article, and additively-manufactured article

Inventors: Ryusuke Tsubota (Osaka, JP); Jyunichi Tanaka (Osaka, JP); Yohei Oka (Osaka, JP); Takayuki Nakamoto (Izumi, JP); Takahiro Sugahara (Izumi, JP); Mamoru Takemura (Izumi, JP); Sohei Uchida (Izumi, JP)
Assignees: DAIHEN CORPORATION; OSAKA RESEARCH INSTITUTE OF INDUSTRIAL SCIENCE AND TECHNOLOGY
B22F1/0003B22F3/1055B22F3/24C22C1/0425C22C9/00C22C9/06C22C9/10B22F1/0011B22F9/08B22F2003/1056B22F2003/248B22F2009/0812B22F2009/0828B22F2009/0836B22F2998/10B33Y10/00B33Y70/00B33Y80/00Y02P10/295
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 10,843,260
App. No.
15/151,693
Granted
Nov 24, 2020
Kind
B2
Abstract

A metal powder contains not less than 0.10 mass % and not more than 1.00 mass % of at least one of chromium and silicon, and a balance of copper. The total content of the chromium and the silicon is not more than 1.00 mass %. In accordance with an additive manufacturing method for this metal powder, an additively-manufactured article made from a copper alloy is provided. The additively-manufactured article has both an adequate mechanical strength and an adequate electrical conductivity.

Claims (15)

1. A method of producing an additively-manufactured article, the method comprising:

a first step of forming a powder layer consisting of a copper alloy powder, the copper alloy powder consisting of not less than 0.10 mass % and not more than 1.00 mass % of at least one of chromium and silicon, a total content of the chromium and the silicon being not more than 1.00 mass %, and a balance of copper, an element besides the copper, the chromium, and the silicon being less than 0.10 mass %; and

a second step of forming a shaped layer by melting and/or sintering the copper alloy powder so that metal particles included in the copper alloy powder fuse directly to each other at a predetermined position in the powder layer,

the first step and the second step being successively repeated to stack the shaped layers and produce an additively-manufactured article.

2. The method of producing an additively-manufactured article according to claim 1 , further comprising a heat treatment step of heat-treating the additively-manufactured article.

3. The method of producing an additively-manufactured article according to claim 1 , wherein the copper alloy powder comprises more than 0.51 mass % and not more than 0.94 mass % of chromium; and a balance of copper.

4. The method of producing an additively-manufactured article according to claim 1 , wherein in the second step, the copper alloy powder is melted and/or sintered by irradiating the copper alloy powder with at least one selected from the group consisting of a laser, an electron beam and plasma.

5. A method of producing an additively-manufactured article, the method comprising:

a first step of forming a powder layer consisting of a copper alloy powder, the copper alloy powder consisting of not less than 0.22 mass % and not more than 0.94 mass % of chromium, not less than 98.0 mass % of copper, and an impurity element, the impurity element being an element besides the copper and the chromium, the impurity element being less than 0.10 mass %, and

a second step of forming a shaped layer by melting and/or sintering the copper alloy powder so that metal particles included in the copper alloy powder fuse directly to each other at a predetermined position in the powder layer,

the first step and the second step being successively repeated to stack the shaped layers and produce an additively-manufactured article.

6. The method of producing an additively-manufactured article according to claim 5 , wherein the copper alloy powder comprises not less than 98.5 mass % of copper.

7. The method of producing an additively-manufactured article according to claim 5 , wherein the copper alloy powder comprises not less than 99.0 mass % of copper.

8. The method of producing an additively-manufactured article according to claim 5 , wherein the copper alloy powder comprises more than 0.51 mass % and not more than 0.94 mass % of chromium.

9. The method of producing an additively-manufactured article according to claim 5 , wherein in the second step, the copper alloy powder is melted and/or sintered by irradiating the copper alloy powder with at least one selected from the group consisting of a laser, an electron beam and plasma.

Assignments (3)
CORRECTIVE ASSIGNMENT TO CORRECT THE ASSIGNEE ADDRESS PREVIOUSLY RECORDED AT REEL: 044794 FRAME: 0161. ASSIGNOR(S) HEREBY CONFIRMS THE MERGER . Recorded Feb 12, 2018
From: TECHNOLOGY RESEARCH INSTITUTE OF OSAKA PREFECTURE
To: OSAKA RESEARCH INSTITUTE OF INDUSTRIAL SCIENCE AND TECHNOLOGY
Reel/Frame 045302/0840 →
MERGER Recorded Feb 1, 2018
From: TECHNOLOGY RESEARCH INSTITUTE OF OSAKA PREFECTURE
To: OSAKA RESEARCH INSTITUTE OF INDUSTRIAL SCIENCE AND TECHNOLOGY
Reel/Frame 044794/0161 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 11, 2016
From: TSUBOTA, RYUSUKE; TANAKA, JUNICHI; OKA, YOHEI; NAKAMOTO, TAKAYUKI; SUGAHARA, TAKAHIRO; TAKEMURA, MAMORU; UCHIDA, SOHEI
To: DAIHEN CORPORATION; TECHNOLOGY RESEARCH INSTITUTE OF OSAKA PREFECTURE
Reel/Frame 039121/0319 →
Priority Claims (1)
JP 2015-097974 · May 13, 2015 · national
Continuity (1)
Related Publication 20160332227A1 · Nov 17, 2016