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A study of specimen thickness effects in the impact tests on polymers by numeric simulations

机译:通过数值模拟研究聚合物冲击试验中样品厚度的影响

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摘要

Experimental data of polymer behaviour at high strain rates in the literature, mostly obtained with a split Hopkinson pressure bar (SHPB), shows a dependence on the thickness of the specimen. This paper investigates this so-called thickness effect and tries to clarify the doubts on the equilibrium assumption in SHPB tests on polymers by numerical simulations. Fictitious specimens of different thickness with rate sensitive polymer-like constitutive model (Eyring's model) are used to simulate basic data of SHPB tests. The comparison between the given behaviours and those derived from the simulated tests provides an objective appreciation of the quality of tests on polymers (with thin or thick specimen). Results of the simulation prove that the equilibrium assumptions can still be safely used in the case of tests on polymers, and indicate that the thickness effect is mainly due to the radial inertia and friction considerations. (C) 1997 Elsevier Science Ltd. All rights reserved. [References: 26]
机译:文献中的高应变速率下的聚合物行为的实验数据(主要是使用剖开式霍普金森压力棒(SHPB)获得)显示了对样品厚度的依赖性。本文研究了这种所谓的厚度效应,并试图通过数值模拟来澄清对聚合物进行SHPB测试时对平衡假设的怀疑。使用速率敏感的类似聚合物的本构模型(Eyring模型)对不同厚度的虚拟样本进行仿真,以模拟SHPB测试的基本数据。将给定行为与模拟测试得出的行为进行比较,可以客观地评估聚合物(薄或厚的试样)的测试质量。仿真结果证明,在对聚合物进行测试时,平衡假设仍然可以安全地使用,并且表明厚度效应主要是由于径向惯性和摩擦考虑。 (C)1997 Elsevier ScienceLtd。保留所有权利。 [参考:26]

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