Tensile properties of transversely isotropic closed-cell PVC foam under quasi-static and dynamic loadings

Yu Tang, Yue Li, Xiongwen Jiang, Jiuzhou Zhao, Geng Zhao, Wenbo Xie, Wei Zhang
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Abstract

The uniaxial tensile mechanical properties of PVC foam considering the effects of strain rate ([Formula: see text]) and anisotropy ([Formula: see text]) have been investigated by quasi-static and dynamic (Split Hopkinson Tensile Bar, SHTB) tests. Combined high-speed camera system and Digital Image Correlation (DIC) technique, the real-time surface strain field of the specimen during the whole tensile process was obtained. On this basis, the macroscopic response and failure mode of PVC foam were investigated. The failure mechanism of PVC foam under tensile loading was revealed through Scanning Electron Microscope (SEM) images on fracture cross-section of loaded specimen. Finally, based on experimental data, a prediction equation on tensile strength of PVC foam considering the effects of strain rate and loading angle (anisotropy) is proposed. Furthermore, a nonlinear constitutive model is developed to describe the uniaxial tensile mechanical properties of PVC foam.
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准静态和动态载荷下横观各向同性闭孔聚氯乙烯泡沫塑料的拉伸性能
采用准静态和动态(Split Hopkinson拉伸杆,SHTB)试验研究了考虑应变速率([公式:见文])和各向异性([公式:见文])影响的PVC泡沫塑料的单轴拉伸力学性能。结合高速摄像系统和数字图像相关(DIC)技术,实时获得了试样拉伸全过程的表面应变场。在此基础上,研究了聚氯乙烯泡沫材料的宏观响应和破坏模式。通过加载试样断裂截面的扫描电镜(SEM)图像,揭示了PVC泡沫塑料在拉伸载荷作用下的破坏机理。最后,在实验数据的基础上,建立了考虑应变速率和加载角(各向异性)影响的PVC泡沫材料抗拉强度预测方程。此外,建立了描述PVC泡沫材料单轴拉伸力学性能的非线性本构模型。
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