动态再结晶
材料科学
流动应力
应变率
变形(气象学)
软化
热加工
合金
微观结构
压缩(物理)
复合材料
大气温度范围
压力(语言学)
本构方程
活化能
冶金
热力学
有限元法
语言学
化学
有机化学
哲学
物理
作者
Yi Zhang,Alex A. Volinsky,Qianqian Xu,Zhe Chai,Baohong Tian,Ping Liu,Hai T. Tran
标识
DOI:10.1007/s11661-015-3150-7
摘要
Hot deformation behavior of the Cu-2Ni-0.5Si-0.15Ag alloy was investigated by hot compression tests using the Gleeble-1500D thermo-simulator in the 873 K to 1073 K (600 °C to 800 °C) temperatures range with the 0.01 to 5 s−1 strain rate. The flow stress strongly depends on the deformation parameters, including temperature and strain rate. The flow stress decreases with the deformation temperature and increases with the strain rate. The constitutive relationship between the peak stress, the strain rate, and the deformation temperature can be described by the Zener–Hollomon Z parameter in the hyperbolic sine function with the hot deformation activation energy of 316 kJ/mol. The dynamic recrystallization (DRX) is one of the important softening mechanisms of the Cu-2Ni-0.5Si-0.15Ag alloy during hot deformation. The DRX behavior of the Cu-2Ni-0.5Si-0.15Ag alloy is strongly affected by the Z parameter. Lower Z parameter leads to more adequate DRX proceeding.
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