Modeling of Metal Powder Densification under Hot Isostatic Pressing

Author:

Wang Jingzhe12ORCID,Srivatsa Shesh3,Wu Zhanfang4,Huang Zaiwang12

Affiliation:

1. State Key Laboratory of Powder Metallurgy, Central South University, Changsha 410083, China

2. Powder Metallurgy Research Institute, Central South University, Changsha 410083, China

3. Srivatsa Consulting LLC, Cincinnati, OH 45249, USA

4. China Iron and Steel Research Institute Group Co., Ltd., Beijing 100081, China

Abstract

The consolidation of metal powders is a complex thermomechanical process, and the temperature has a significant effect on the density distribution in the compact. The consolidation process of metal powders with an average particle size of 10 μm, 25 μm, and 50 μm under hot isostatic pressure was simulated by finite element modeling. The distribution and evolution of the relative density after being hot isostatic pressing (HIP) under 1050 °C/130 MPa/4 h, 1150 °C/130 MPa/4 h, and 1250 °C/130 MPa/4 h conditions were simulated, respectively. The experimental data of HIP at 1050 °C/130 MPa/4 h were used to verify the modeling results via the geometric change in the container. The relative density difference between the simulated results and the experimental results at different positions was less than 2%. This methodology called “modeling prediction, experimental validation” can accelerate experimental discovery in an economic manner.

Funder

National Key Research and Development Program of China

Guangdong Province Key-Area Research and Development Program of China

State Key Laboratory of Powder Metallurgy

Publisher

MDPI AG

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