Analysis of Worm Deformation Behavior of GH2132 Superalloy

Author:

Wang Huizhen,Kou Ming,Yang Yong,Xiong Hua,Guo Shuo,Zhai Yuewen,Zhou Leyu,Zhang Zibo

Abstract

Abstract GH2132 superalloy performances excellent properties, such as the good rupture strength and yield strength below 923K, the fine processing plasticity and the good welding properties. The warm working behavior of GH2132 superalloy at 673 K – 773K is investigated by a thermal simulator in this paper. The results show that the worm working effects at the center of specimen is the most significant compared with other positions. The deformation temperature and strain rate is the key parameters significantly affecting the warm working behavior. The increase of the temperature enhances the recovery softening effect, which reduces the stress and the work hardening effect slightly. The deformation heat is significant with the increasing strain rate, which results in the work hardening behavior does not change markedly. This study provides an important reference for the worm forming of GH2132 superalloy.

Publisher

IOP Publishing

Subject

Computer Science Applications,History,Education

Reference7 articles.

1. Fatigue strength properties of precipitation strengthening stainless steel A286 focused attention on small fatigue;Wu;Procedia Eng.,2011

2. Creep behavior of an A286 type stainless steel;Cicco;Mater. Charact.,2005

3. Discussion on the display of grain size of GH2132 Fe base superalloy;Chen;Spec. Steel Tech.,2017

4. Effects of heat treatment on mechanical properties of GH2132 alloy with large deformation;Chen;Hot Work. Tech.,2012

5. Effects of original grain size and deformation amount after forging on the grain size of GH2132 alloy;Lv;Heat Treat. Metals,2017

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