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Investigation on the Tensile Behavior of Fiber Metal Laminates based on Self-Reinforced Polypropylene

机译:基于自增强聚丙烯的纤维金属层压板拉伸行为研究

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Mechanical tests have been carried out to accurately evaluate the tensile properties of fiber metal laminates (FMLs). The FMLs in this paper comprised of a layer of self-reinforced polypropylene (SRPP) sandwiched between two layers of aluminum alloy 5052-H34. In this study, nonlinear tensile and fracture behavior of FMLs under the in-plane loading conditions has been investigated with numerical simulations and theoretical analysis. The numerical simulation based on finite element modeling using the ABAQUS/Explicit and the theoretical constitutive model based on a volume fraction approach and a modified classical lamination theory, which incorporates the elastic-plastic behavior of the aluminum alloy are used to predict the mechanical properties such as stress-strain response and deformation behavior of FMLs. In addition, through comparing the numerical simulations and the theoretical analysis with experimental results, it was concluded that a numerical simulation model adopted describes with sufficient accuracy the overall tensile stressstrain curve.
机译:已经进行了机械测试以准确评估纤维金属层压板(FML)的拉伸性能。本文中的FMLS由夹在两层铝合金5052-H34之间的一层自增强聚丙烯(SRPP)组成。在该研究中,已经研究了数值模拟和理论分析,研究了在面内装载条件下FMLS的非线性拉伸和断裂行为。基于有限元建模的基于体积分数方法的有限元模型的数值模拟和改进的经典层压理论,其包括铝合金弹性塑性行为来预测机械性能作为FMLS的应力 - 应变响应和变形行为。此外,通过比较数值模拟和实验结果的理论分析,得出结论是,采用的数值模拟模型描述了总体拉伸应力曲线的足够精度。

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