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Numerical Investigation of Transverse Tensile Behaviors of Marine Composites under Different Strain Rates

机译:不同应变率下船用复合材料横向拉伸行为的数值研究

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In this study, the local stress of unidirectional fiber reinforced marine composites under transverse direction tension is conducted by using a representative volume element (RVE). With the application of fracture mechanics theory, the strength and debonding evolution of the fibre-matrix interface is analyzed and simulated by cohesive elements in FEA. The modeling results fit the experimental results in quasi-static conditions well, which demonstrates a proper simulation method for assessing the transverse mechanical properties of marine composites. Considering the complex work environment in ocean, transverse mechanical behaviors of marine composites under different strain rates is investigated, which would provide guidance for the marine composite designers.
机译:在该研究中,通过使用代表性体积元素(RVE)进行横向张力下的单向纤维增强船用复合材料的局部应力。随着裂缝力学理论的应用,通过FEA中的粘性元素分析和模拟纤维 - 基质界面的强度和剥离演化。建模结果适用于准静态条件下的实验结果,这表明了用于评估船舶复合材料横向机械性能的适当模拟方法。考虑到海洋中复杂的工作环境,研究了船用复合材料的横向力学行为,在不同的应变率下进行了调查,这将为海洋复合设计师提供指导。

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