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基于热压缩的Cu-15Ni-8Sn合金动态再结晶行为研究 被引量:3
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作者 李立鸿 钟敏 +3 位作者 吴渊 牛冬鑫 罗宗强 张卫文 《精密成形工程》 北大核心 2021年第2期91-95,共5页
目的获得Cu-15Ni-8Sn合金动态再结晶临界模型,描述热变形参数对动态再结晶晶粒尺寸的影响规律。方法基于前期通过Gleeble-3500热模拟机得到的热压缩实验数据,分析Cu-15Ni-8Sn合金在不同热变形参数下的再结晶晶粒尺寸及流变应力数据,采... 目的获得Cu-15Ni-8Sn合金动态再结晶临界模型,描述热变形参数对动态再结晶晶粒尺寸的影响规律。方法基于前期通过Gleeble-3500热模拟机得到的热压缩实验数据,分析Cu-15Ni-8Sn合金在不同热变形参数下的再结晶晶粒尺寸及流变应力数据,采用线性回归拟合等方式建立动态再结晶模型,并利用数值模拟与实验相结合的方法验证模型精确度。结果采用YADA模型描述Cu-15Ni-8Sn合金的动态再结晶,通过线性拟合求得模型参数C_(1)=11895.554,C_(2)=0.1503,C_(3)=0.1553,C_(4)=3.933×10^(−4),C_(5)=2995.6409,数值模拟与实验所得的平均晶粒度分别为16.7μm和15.5μm。结论变形温度和变形速率对Cu-15Ni-8Sn合金热变形中的再结晶过程有重要影响。变形温度越高,临界应变越小,越容易发生动态再结晶,动态再结晶晶粒尺寸越大;应变速率越小,动态再结晶晶粒尺寸越大。研究所构建的Cu-15Ni-8Sn合金动态再结晶临界模型具有较高精度,将为后续该合金热塑性变形工艺设定提供理论基础。 展开更多
关键词 CU-15NI-8SN合金 热压缩 动态再结晶临界模型
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Model of critical strain for dynamic recrystallization in 10%TiC/Cu-Al_2O_3 composite 被引量:4
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作者 杨志强 刘勇 +1 位作者 田保红 张毅 《Journal of Central South University》 SCIE EI CAS 2014年第11期4059-4065,共7页
Using the Gleeble-1500 D simulator, the hot deformation behavior and dynamic recrystallization critical conditions of the 10%Ti C/Cu-Al2O3(volume fraction) composite were investigated by compression tests at the tempe... Using the Gleeble-1500 D simulator, the hot deformation behavior and dynamic recrystallization critical conditions of the 10%Ti C/Cu-Al2O3(volume fraction) composite were investigated by compression tests at the temperatures from 450 °C to 850 °C with the strain rates from 0.001 s-1 to 1 s-1. The results show that the softening mechanism of the dynamic recrystallization is a feature of high-temperature flow true stress-strain curves of the composite, and the peak stress increases with the decreasing deformation temperature or the increasing strain rate. The thermal deformation activation energy was calculated as 170.732 k J/mol and the constitutive equation was established. The inflection point in the lnθ-ε curve appears and the minimum value of-(lnθ)/ε-ε curve is presented when the critical state is attained for this composite. The critical strain increases with the increasing strain rate or the decreasing deformation temperature. There is linear relationship between critical strain and peak strain, i.e., εc=0.572εp. The predicting model of critical strain is described by the function of εc=1.062×10-2Z0.0826. 展开更多
关键词 10%Ti C/Cu-Al2O3 composite hot deformation constitutive equation dynamic recrystallization critical condition
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