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首页> 外文期刊>International Journal of Modern Physics, B. Condensed Matter Physics, Statistical Physics, Applied Physics >NUMERICAL SIMULATIONS OF THE INFLUENCE OF STRIKER BAR LENGTH ON SHPB MEASUREMENTS
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NUMERICAL SIMULATIONS OF THE INFLUENCE OF STRIKER BAR LENGTH ON SHPB MEASUREMENTS

机译:撞杆长度对SHPB测量影响的数值模拟

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Split Hopkinson Pressure Bar (SHPB) has become a frequently used technique for measuring uniaxial compressive stress-strain relationship of various engineering materials under high strain rates. The pulse shape generated in the incident bar is sensitive to the length of the striker bar. In this paper, a finite element simulation of a Split Hopkinson Pressure Bar is performed to estimate the effect of varying length of striker bar on the stress-strain relationship of a material. A series of striker bars with different lengths, from 200mm to 350mm, are employed to obtain the stress-strain response of AL6061-T6 in both simulation and experiment. A comparison is made between the experimental and the computed stress-strain curves. Finally the influence of variation of striker bar length on the sample's stress-strain response is presented.
机译:分裂霍普金森压杆(SHPB)已成为在高应变率下测量各种工程材料的单轴压缩应力-应变关系的常用技术。入射棒中产生的脉冲形状对撞针的长度敏感。在本文中,对分裂式霍普金森压力杆进行了有限元模拟,以估算撞杆长度的变化对材料应力-应变关系的影响。在模拟和实验中,使用一系列长度从200mm至350mm的撞杆来获得AL6061-T6的应力应变响应。在实验和计算的应力-应变曲线之间进行比较。最后,给出了撞针长度的变化对样品应力应变响应的影响。

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