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Hot Deformation Behavior of Ni3Al-based Alloy MX246A
引用本文:Jian-tao WANG,Wei HAN,He-li LUO,Shang-ping LI. Hot Deformation Behavior of Ni3Al-based Alloy MX246A[J]. 钢铁研究学报(英文版), 2014, 21(2): 264-268. DOI: 10.1016/S1006-706X(14)60040-6
作者姓名:Jian-tao WANG  Wei HAN  He-li LUO  Shang-ping LI
作者单位:(Central Iron and Steel Research Institute Group, Beijing 100081, China)
摘    要:The hot deformation behavior of homogenized Nia Al-based alloy MX246A has been characterized on the basis of its flow stress variation obtained by isothermal constant true strain rate compression testing on the MTS 810 machine in the temperature range of 1 150--1225 ℃ and strain rate range of 0. 001-0.1 s-1. Microstructural obser- vation revealed striped secondary γ' phase which was vertical to compression axis, and precipitation of fine ternary γ" phase. The amount of striped secondary γ' phase reduced and that of fine ternary γ' phase increased with increasing temperature and decreasing strain rate. The material exhibited peak stress followed by flow softening, but no obvious steady-state flow behavior. Microstructural investigations have shown no dynamic recrystallization happened. TEM studies indicated that the flow softening was controUed by dynamic recovery mechanism.

关 键 词:热变形行为  Al基合金  低应变速率  透射电子显微镜  温度范围  压缩试验  流动行为  动态再结晶
收稿时间:2012-10-19

Hot Deformation Behavior of Ni3Al-based Alloy MX246A
Jian-tao WANG,Wei HAN,He-li LUO,Shang-ping LI. Hot Deformation Behavior of Ni3Al-based Alloy MX246A[J]. Journal of Iron and Steel Research, 2014, 21(2): 264-268. DOI: 10.1016/S1006-706X(14)60040-6
Authors:Jian-tao WANG  Wei HAN  He-li LUO  Shang-ping LI
Affiliation:Central Iron and Steel Research Institute Group, Beijing 100081, China
Abstract: The hot deformation behavior of homogenized Ni3Al-based alloy MX246A has been characterized on the basis of its flow stress variation obtained by isothermal constant true strain rate compression testing on the MTS 810 machine in the temperature range of 1150-1225 ℃ and strain rate range of 0001-01 s-1. Microstructural observation revealed striped secondary γ′ phase which was vertical to compression axis, and precipitation of fine ternary γ′ phase. The amount of striped secondary γ′ phase reduced and that of fine ternary γ′ phase increased with increasing temperature and decreasing strain rate. The material exhibited peak stress followed by flow softening, but no obvious steady-state flow behavior. Microstructural investigations have shown no dynamic recrystallization happened. TEM studies indicated that the flow softening was controlled by dynamic recovery mechanism.
Keywords:Ni3Al   multiphase alloy   hot deformation   flow stress   softening mechanism    
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