IP Library › Granted Patent US 10,486,233
Granted Patent B2
US 10,486,233 · App. 15/556,619 · Granted Nov 26, 2019

Method for eliminating hollow defect in atomized alloy powder

Inventors: Zuming Liu (Hunan, CN); Pengfei Su (Hunan, CN); Boyun Huang (Hunan, CN); Qinglong Duan (Hunan, CN); Mengmei Ma (Hunan, CN); Yang Guo (Hunan, CN); Shiqi Chen (Hunan, CN)
Assignee: CENTRAL SOUTH UNIVERSITY
B22F9/04B02C17/20B02C25/00C22C19/056B22F2009/043B22F2998/10B22F2999/00C22C1/0433
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Quick Facts
Patent No.
US 10,486,233
App. No.
15/556,619
Granted
Nov 26, 2019
Kind
B2
Abstract

The invention relates to a method for eliminating hollow defects in atomized superalloy powder, and pertains to the field of powder metallurgy materials. A ball-milling processing is conducted on the atomized alloy powder to eliminate the hollow defect, obtain solid powder and increase powder utilization efficiency. By controlling mill ball diameters, mass ratio of mill balls with different diameters, mass ratio of ball to powder and ball milling time, a multi-directional impact on the powder is achieved, thereby control powder shape and obtain solid spherical powder. The invention eliminates powder hollow defect by using ball milling process and equipment. This invention with high powder utilization efficiency, short ball milling time and simple operating process, can be used for large-scale preparation and application.

Claims (11)

1. A method for eliminating hollow defect in atomized alloy powder, wherein the method comprises mechanical ball milling on the atomized alloy powder to eliminate the powder hollow defect,

wherein four kinds of mill balls characterized by having different diameters are used in the mechanical ball milling process, the four diameters of the mill balls are in ranges of 9-11 mm, 7-9 mm, 5-7 mm, and 4-6 mm respectively, and all of the mill balls are combined according to mass ratio of 1:2.5-3.5:0.5-1.5:4-6 in descending order of the diameters.

2. The method for eliminating the hollow defect in atomized alloy powder according to claim 1 , wherein the ball milling is under the protection of an inert gas.

3. The method for eliminating the hollow defect in atomized alloy powder according to claim 2 , wherein the mechanical ball milling is carried out in any one of a planetary ball mill, stirring ball mill, or drum-type ball mill.

4. The method for eliminating the hollow defect in atomized alloy powder according to claim 3 , wherein the atomized alloy powder is loaded into a ball milling tank with a mass ratio of the balls to powder as (8˜12):1, and the ball milling is performed in the planetary ball mill with a ball mill rotating speed of 250˜350 r/min and ball milling time of 1˜4 h under the protection of an inert gas.

5. The method for eliminating the hollow defect in atomized alloy powder according to claim 3 , wherein the atomized alloy powder is loaded into a ball milling tank with a mass ratio of the balls to powder mass ratio is (8˜15):1, and the ball milling is performed in the stirring ball mill with a ball mill rotating speed of 60˜150 r/min and ball milling time of 2˜6 h under the protection of an inert gas.

6. The method for eliminating the hollow defect in atomized alloy powder according to claim 1 , wherein the four diameters of the mill balls are 10 mm, 8 mm, 6 mm, and 5 mm respectively, which are combined according to mass ratio of 1:3:1:5 in descending order of the diameters.

7. The method for eliminating the hollow defect in atomized alloy powder according to claim 6 , wherein the atomized alloy powder is loaded into a ball milling tank with the balls to powder mass ratio is (8˜12):1, the ball milling is performed in the planetary ball mill with a ball mill rotating speed of 250˜350 r/min, and ball milling time of 1˜4 h under the protection of an inert gas.

8. The method for eliminating the hollow defect in atomized alloy powder according to claim 6 , wherein the atomized alloy powder is loaded into a ball milling tank with the balls to powder mass ratio of (8˜15):1, the ball milling is performed in the stirring ball mill with a ball mill rotating speed of 60˜150 r/min, and ball milling time of 2˜6 h under the protection of an inert gas.

9. The method for eliminating the hollow defect in atomized alloy powder according to claim 1 , wherein the atomized alloy powder is loaded into a ball milling tank with the balls to powder mass ratio of (8˜12):1, the ball milling is performed in the planetary ball mill with a ball mill rotating speed of 250˜350 r/min and ball milling time of 1˜4 h under the protection of an inert gas.

10. The method for eliminating the hollow defect in atomized alloy powder according to claim 1 , wherein the atomized alloy powder is loaded into a ball milling tank with the balls to powder mass ratio of (8˜15):1, the ball milling is performed in the stirring ball mill with a ball mill rotating speed of 60˜150 r/min, and ball milling time of 2˜6 h under the protection of an inert gas.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 17, 2017
From: LIU, ZUMING; SU, PENGFEI; HUANG, BOYUN; DUAN, QINGLONG; MA, MENGMEI; GUO, YANG; CHEN, SHIQI
To: CENTRAL SOUTH UNIVERSITY
Reel/Frame 043610/0017 →
Priority Claims (2)
CN 2015 1 0103202 · Mar 9, 2015 · national
CN 2015 1 0884690 · Dec 3, 2015 · national
Continuity (1)
Related Publication 20180056398A1 · Mar 1, 2018
Cited By (1)
US 12,214,422