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首页> 外文期刊>JSME International Journal. Series A, Solid mechanics and material engineering >Numerical Evaluation of Measurement Accuracy of Non-Coaxial Hopkinson Bar Method
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Numerical Evaluation of Measurement Accuracy of Non-Coaxial Hopkinson Bar Method

机译:非同轴霍普金森棒法测量精度的数值评估

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摘要

The high measurement accuracy in dynamic tension testing is required for designs and numerical simulations based on the accurate modeling of stress - strain relations at various strain-rates. The non-coaxial Hopkinson bar method (NCHBM) is one of the recently proposed methods for dynamic tension tests. In this study, the accuracy of the stress - strain relations obtained on the basis of NCHBM is investigated by FEM. The finite element models of NCHBM apparatus and plate type specimens of various dimensions are made in detail. The target material employed in this study is mainly the mild steel that is proper for the investigation of measurement accuracy. On the other hand, SUS316 stainless steel and A7075 aluminum alloy are modeled as specimen materials for the comparison with the experiments. The effects of the bending, the constraint condition, the rising time, the size and geometry of specimen, and the strain rate are examined systematically.
机译:基于在各种应变率下的应力-应变关系的精确建模,设计和数值模拟需要动态张力测试中的高测量精度。非同轴霍普金森棒法(NCHBM)是最近提出的动态拉伸试验方法之一。在这项研究中,通过有限元法研究了基于NCHBM获得的应力-应变关系的准确性。详细制作了NCHBM装置的有限元模型和各种尺寸的板状试样。本研究中使用的目标材料主要是低碳钢,适合研究测量精度。另一方面,以SUS316不锈钢和A7075铝合金为模型材料,与实验进行了比较。系统地研究了弯曲,约束条件,上升时间,试样的尺寸和几何形状以及应变率的影响。

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