Constitutive Model and Impact Induced Fragmentation of W-Zr Alloy

Yi Zhe Yang, Chuan Ting Wang, Yan Song Yang, Yuan He, Lei Guo, Yong He
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Abstract

In this paper, two types of W-Zr alloy with different proportions were prepared. The dynamic and quasi-static compression mechanical properties of Zr-25%W alloy and Zr-50%W alloy at various strain rates were obtained. The results showed that the tungsten component could improve the mechanical strength of the alloy, while the zirconium component could significantly improve the plasticity of the alloy. The JC constitutive models of two types of W-Zr alloys and the KHL constitutive model of Zr-25%W alloy were proposed. The fitting parameters of JC model and KHL model were determined by the dynamic and quad-static compression tests. Dynamic impact tests of two types of W-Zr alloys were carried out in argon atmosphere at various velocities. The power law distribution theory for brittle materials could also describe the high-speed impact of W-Zr alloy.
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W-Zr 合金的构成模型和冲击诱导碎裂
本文制备了两种不同配比的W-Zr合金。研究了Zr-25%W合金和Zr-50%W合金在不同应变速率下的动态和准静态压缩力学性能。结果表明,钨组分能提高合金的机械强度,而锆组分能显著提高合金的塑性。提出了两种W-Zr合金的JC本构模型和Zr-25%W合金的KHL本构模型。通过动态和四静压试验确定了JC模型和KHL模型的拟合参数。对两种W-Zr合金在氩气环境下进行了不同速度的动态冲击试验。脆性材料的幂律分布理论也可以描述W-Zr合金的高速冲击。
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