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Experimental and Numerical Study on Unreliability of Young's Modulus Measurement by Conventional Split Hopkinson Bar

机译:常规拆分霍普金森栏杨氏模量测量不可靠性的实验与数值研究

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The split Hopkinson bar (SHB) technique has been widely used to determine dynamic plastic/damage properties of materials at high strain rates. But presently, a number of researchers used it to measure the so-called dynamic Young's moduli. This paper aims at the feasibility to determine Young's moduli by conventional SHB. The strain-stress curves of two kinds of metals, 45# steel and LY-12 aluminum, were measured by a conventional SHB facility. The corresponding numerical experiments were performed by ABAQUS/Explicit. The curves obtained by the both procedures agree well in elastic stage (strain range 0-0.5% assumed). But the slopes of the linearly fitted curves, i.e. the so-called dynamic Young's moduli, are much different from the corresponding real values. The significant errors come from the non-uniformity of stress in specimen during the beginning stage of loading process. The results clarify that it is unfeasible to measure Young's moduli by conventional SHB.
机译:分裂霍普金森棒(SHB)技术已被广泛用于确定高应变率的材料的动态塑料/损伤性能。但目前,许多研究人员用它来衡量所谓的动态年轻的模数。本文旨在通过常规SHB确定杨氏模数的可行性。通过传统的SHB设施测量两种金属,45#钢和LY-12铝的应变应力曲线。相应的数值实验由Abaqus /明确进行。通过两种程序获得的曲线在弹性级(应变范围0-0.5%)吻合良好。但是线性拟合曲线的斜坡,即所谓的动态杨的模数与相应的真实值不同。在装载过程的开始阶段期间,显着的误差来自标本中的标本中的压力不均匀性。结果澄清说,通过常规SHB测量杨氏的Moduli是不可行的。

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