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教授 学历:博士研究生 学位:博士 教育背景: 1.1994-1998年:毕业于西北工业大学材料科学与工程系,学士; 2.2003-2007年:毕业于西北工业大学材料学院,硕士; 3.2006-2011年:毕业于西北工业大学材料学院,博士; 工作经历: 1.1998-2003:山东新华制药股份公司机械厂工艺员、设备管理员; 2.2013-2016:西安建筑科技大学冶金工程学院材料成型及控制工程专业讲师; 3.2016-2023:西安建筑科技大学冶金工程学院材料成型及控制工程专业副教授 4.2023-至今:西安建筑科技大学冶金工程学院材料成型及控制工程专业教授 社会兼职: 第三届西安市青年科学技术协会理事
蔡军
Professor
Paper Publications
Characterization of High Temperature Deformation Behavior of BFe10-1-2 Cupronickel Alloy Using Constitutive Equation and Processing Map
Release time:2024-08-09 Hits:
Affiliation of Author(s):
冶金工程学院
Journal:
稀有金属材料与工程 (SCI)
Key Words:
中文关键字:BFe10-1-2白铜合金;高温变形行为;本构方程;加工图,英文关键字:BFe10-1-2 cupronickel alloy; high temperature defo
Abstract:
High temperature deformation behavior of BFe10-1-2 cupronickel alloy under compression in the temperature range of 1023~1273 K and strain rate range of 0.001~10 s-1 was investigated to acquire the optimum hot deformation processing parameters. The high temperature deformation behavior of BFe10-1-2 cupronickel alloy was characterized based on the analysis of the flow stress, kinetics and processing map. The activation energy for deformation obtained during high temperature compression of BFe10-1-2 cupronickel alloy was 425.299 kJ/mol. A constitutive equation was then developed to describe the flow stress as a function of Zener-Holloman parameter and true strain. By comparing the calculated flow stress and the measured flow stress, the constitutive equation was verified. The results show that the flow stress values obtained from the constitutive equation could track the experimental results. Thereafter, the processing map based on dynamic materials model was established, and the validation of processing map was investigated from the macro appearance and microstructure of compressed BFe10-1-2 cupronickel alloy.
Note:
蔡军
First Author:
wangwen,Kuaishe Wang,caijun
Indexed by:
Journal paper
Volume:
卷:45
Issue:
期:10
Page Number:
页:1938-1942
Translation or Not:
no
Date of Publication:
2016-10-01

Pre One:A Comparative Investigation on the Capability of Modified Zerilli-Armstrong and Arrhenius-Type Constitutive Models to Describe Flow Behavior of BFe10-1-2 Cupronickel Alloy at Elevated Temperature

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