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Numerical Investigation on the Necessity of a Constant Strain Rate Condition According to Material's Dynamic Response Behavior in the SHPB Test

机译:根据材料动态响应行为在SHPB检验中恒定应变率条件的必要性的数值研究

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The split Hopkinson pressure bar (SHPB) apparatus is frequently used to investigate the dynamic compression properties of various materials at strain rates from 10(2) to 10(4)s(-1). Keeping the strain rate constant during loading is an important condition for obtaining accurate experimental results. However, we do not always need to take additional measures to control the constant strain rate loading conditions for materials with different dynamic response behaviors. To investigate the necessity of a constant strain rate condition in the SHPB test according to the different dynamic mechanical response behaviors of materials, a comprehensive numerical analysis scheme combined with the Cowper-Symonds plastic kinematic model was designed to perform the simulation tests. There are two factors primarily resulting in the errors in the calculated stress-strain response for the representative material model. One of them is the dynamic scale factor, which represents the strain rate sensitivity and controls the variation amplitude of flow stress with the change in strain rate. The other factor is the work-hardening rate, which affects the results by expanding the decrease in strain rate. This paper quantitatively describes the effects of strain rate sensitivity and the strain-hardening modulus on the accuracy of the reconstructed stress-strain behavior of a sample under a constant incident pulse. The conclusion presents several reference guides for the necessity of a constant strain rate condition for different dynamic response behaviors of materials based on the representative constitutive model.
机译:拆分霍普金森压力棒(SHPB)装置经常用于从10(2)至10(4)秒(-1)的应变速率以应变速率研究各种材料的动态压缩性能。在装载过程中保持应变率常数是获得准确实验结果的重要条件。但是,我们并不总是需要采取额外的措施来控制具有不同动态响应行为的材料的恒定应变速率负载条件。为了根据材料的不同动态机械响应行为来研究SHPB测试中恒定应变率条件的必要性,设计了一种与COWPER-SYMONDS塑料运动模型相结合的综合数值分析方案,以执行模拟测试。有两个因素主要导致代表材料模型计算出的应力 - 应变响应中的误差。其中一个是动态比例因子,其表示应变速率灵敏度,并控制流量应力的变化幅度随着应变率的变化。另一个因素是工作 - 硬化率,这通过扩大应变率降低来影响结果。本文定量地描述了应变速率灵敏度和应变硬化模量对恒定入射脉冲下样品的重建应力 - 应变行为的精度的影响。结论是基于代表本构体模型的不同动态响应行为的恒定应变率条件的必要性提供了几种参考指导。

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