Effect of initial grain size on dynamic recrystallization of copper

L. Błaż, T. Sakai, J. Jonas
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引用次数: 143

Abstract

AbstractOxygen free high conductivity (OFHC) and electrolytic tough pitch (ETP) copper specimens of different grain sizes (10–800 μm) were tested at various constant true strain rates in a modified Instron testing machine. The temperature range investigated was 725–1075 K. The effect of initial grain size on the transition from multiple to single peak flow was studied. The dependence of the stable dynamic grain size on the temperature corrected strain rate and the steady state stress was determined, as were the density of twins and of deformation bands. The density of twins decreased as the initial grain size was increased and when the recrystallization mechanism changed from static to dynamic. The density of deformation bands increased markedly with initial grain size. As the deformation bands are preferential nucleation sites for new dynamic grains, the results indicate that the initial effective grain size D o *
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初始晶粒尺寸对铜动态再结晶的影响
摘要:在改良的Instron试验机上,对不同晶粒尺寸(10 ~ 800 μm)的无氧高导电性(OFHC)和电韧性(ETP)铜试样进行了恒应变速率下的测试。实验温度范围为725 ~ 1075 K。研究了初始晶粒尺寸对多峰流向单峰流转变的影响。确定了稳定动态晶粒尺寸与温度修正应变速率和稳态应力的关系,以及孪晶和变形带的密度。孪晶密度随着初始晶粒尺寸的增大和再结晶机制由静态向动态转变而减小。变形带密度随初始晶粒尺寸的增大而显著增大。由于变形带是新动态晶粒的优先形核位置,结果表明,初始有效晶粒尺寸D o *
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