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首页> 外文期刊>Journal of Sandwich Structures and Materials >Fatigue characterization of Poly Vinyl Chloride (PVC) foam core sandwich composite using the G-control method
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Fatigue characterization of Poly Vinyl Chloride (PVC) foam core sandwich composite using the G-control method

机译:基于G控制方法的聚氯乙烯(PVC)泡沫夹芯复合材料的疲劳表征。

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This paper presents experimental results from cyclic crack propagation tests performed on sandwich specimens with glass/epoxy face sheets and Poly Vinyl Chloride (PVC) foam cores using the G-controlled cyclic energy release rate (G) test procedure. The face material was tested in tension, compression and shear to determine in-plane and out-of-plane mechanical properties, such as Young's modulus, Poisson's ratio and shear modulus. These properties were then used in an analytical model of the mixed-mode bending sandwich specimen to calculate compliance and energy release rate. Finite element analysis was used to determine the mode-mixity of the crack loading. Experimental crack growth cyclic tests were carried out on pre-cracked mixed-mode bending sandwich specimens with H45, H100 and H160 PVC foam cores under two mode-mixities (mode I and mode II dominant). Post-mortem analysis was performed on tested specimens, highlighting the influence of mode mixity and foam density on the crack path. Crack propagation diagrams showing da/dN versus G curves were obtained to establish the Paris-Erdogan relation for each material combination tested at the two mode-mixities. Results showed constant crack growth rates for all the materials tested and revealed the influence on mode-mixity on crack propagation speed and foam density (higher foam density, slower crack propagation).
机译:本文介绍了使用G控制的循环能量释放速率(G)测试程序对带有玻璃/环氧树脂面板和聚氯乙烯(PVC)泡沫芯的夹心样品进行的循环裂纹扩展测试的实验结果。对面材料进行了拉伸,压缩和剪切测试,以确定其平面内和平面外机械性能,例如杨氏模量,泊松比和剪切模量。然后将这些特性用于混合模式弯曲夹心试样的分析模型中,以计算柔度和能量释放率。有限元分析被用来确定裂纹载荷的模式混合。实验裂纹扩展循环试验是在两种模式混合(模式I和模式II主导)下,对具有H45,H100和H160 PVC泡沫芯的预裂纹混合模式弯曲夹心试样进行的。对测试样品进行验后分析,强调了众数混合和泡沫密度对裂纹路径的影响。获得了显示da / dN与G曲线的裂纹扩展图,以建立在两种模式混合下测试的每种材料组合的Paris-Erdogan关系。结果表明,所有测试材料的裂纹扩展速率均恒定,并揭示了模式混合对裂纹扩展速度和泡沫密度的影响(较高的泡沫密度,较慢的裂纹扩展)。

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