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Deformation of EPS Foam Under Combined Compression-Shear Loading: Experimental and Computational Analysis

机译:组合压剪载荷下EPS泡沫的变形:实验与计算分析

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Expanded Polystyrene (EPS) foam material is widely used as an energy absorption engineering material. Its compression behaviour, both quasi-statically and dynamically, has been studied widely. However, its mechanical behaviour under combined compression-shear loading is poorly understood due to the difficulty of performing such tests. A novel test rig is presented to perform combined compression-shear loading tests in quasi-static loading conditions. Different densities of EPS foam were tested with this apparatus using a universal Instron testing machine. The compressive and shear stresses were obtained and compared, the results show that the shear stress at yield of EPS foam under combined compression-shear loading is much lower compared with the compressive stress at yield. On the other side, the compressive stress at yield can as high as 40% lower compared with pure compression. The FEA simulations were performed using the Abaqus/explicit 6.14 code and it is found the numerical predictions and experimental results agree closely, which indicates that our FE models exhibit good reliability in predicting the response of EPS foam under such loading conditions.
机译:膨胀聚苯乙烯(EPS)泡沫材料被广泛用作能量吸收工程材料。准静态和动态压缩特性已得到广泛研究。然而,由于难以进行这样的测试,因此人们对其压缩-剪切组合载荷下的机械性能知之甚少。提出了一种新型的试验台,可以在准静态载荷条件下进行组合的压剪载荷试验。使用通用Instron测试机用该设备测试了不同密度的EPS泡沫。得到并比较了压应力和剪应力,结果表明,与压缩屈服应力相比,组合压剪载荷下EPS泡沫屈服时的切应力要低得多。另一方面,与纯压缩相比,屈服时的压缩应力可低40%。使用Abaqus / explicit 6.14代码进行了有限元分析,发现数值预测和实验结果非常吻合,这表明我们的有限元模型在预测这种载荷条件下EPS泡沫的响应方面表现出良好的可靠性。

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