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Probing the yield surface of lightweight solid foams via biaxial and triaxial experiments

机译:通过双轴和三轴实验探测轻质固体泡沫的屈服面

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Current work describes and discusses the results from a unique experimental setup called Multi-Axial Testing Apparatus (MATA) that has been developed to probe the yield surface of cellular solids under both biaxial and triaxial stress paths. As a case study, yield surface of Divinycell H100 foam has been probed in its plane of anisotropy by using the MATA. Extensive experimental results that define the yield surface have been reported and also compared to the predictions from an energy-based yield criterion that we have recently proposed for transversely anisotropic solid foams. An excellent match between experimental data points and model predictions is observed and it is concluded that total strain energy density is the driving force of yielding in solid foams.
机译:当前的工作描述和讨论了一种称为多轴测试设备(MATA)的独特实验装置的结果,该装置已经开发出来用于探测双轴和三轴应力路径下的蜂窝状固体的屈服面。作为案例研究,使用MATA在Divinycell H100泡沫的各向异性平面上探测了其屈服面。已经报道了定义屈服面的大量实验结果,并且还与我们最近针对横向各向异性固体泡沫提出的基于能量的屈服准则的预测进行了比较。观察到实验数据点与模型预测之间的极佳匹配,并且得出结论,总应变能密度是固体泡沫屈服的驱动力。

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