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首页> 外文期刊>Journal of Materials Science >NUMERICAL STUDY OF THE SPECIMEN SIZE EFFECT IN THE SPLIT HOPKINSON PRESSURE BAR TESTS
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NUMERICAL STUDY OF THE SPECIMEN SIZE EFFECT IN THE SPLIT HOPKINSON PRESSURE BAR TESTS

机译:霍普金森压力棒试验中试样尺寸效应的数值研究

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A numerical and experimental assessment of the compression test in the split Hopkinson pressure bar (SHPB) has been made. The DYNA2D finite element code was employed in the numerical part. The aim of the work was to establish the influence of an important reduction in the specimen diameter on the results. To this end, several numerical experiments were carried out with different diameters. Experimental measurements using the SHPB technique were also performed. The material studied was the 7017 T73 aluminium alloy. In the simulations, stress histories were registered at different places' in the incident and output bars, as well as in the test specimen. Numerical simulations show important three-dimensional effects in the SHPB, increasing for smaller diameters. Experiments show the sa me tendencies evinced by the numerical simulation. Care must be taken to minimize them to achieve the desirable uniaxial stress condition on the specimen. [References: 16]
机译:在分开的霍普金森压力杆(SHPB)中进行了压缩试验的数值和实验评估。数字部分采用了DYNA2D有限元代码。这项工作的目的是确定样品直径的显着减小对结果的影响。为此,进行了几种不同直径的数值实验。还使用SHPB技术进行了实验测量。研究的材料是7017 T73铝合金。在模拟中,应力历史记录在入射和输出条以及试样中的不同位置。数值模拟显示了SHPB中重要的三维效应,对于较小的直径会增加。实验表明,数值模拟表明了相同的趋势。必须注意使它们最小化,以在样品上达到理想的单轴应力条件。 [参考:16]

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