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Effect of interphase on fibre-bridging toughness of a unidirectional FRP composite thin plate

机译:相间对单向玻璃钢复合薄板纤维桥联韧性的影响

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摘要

A parametric analysis of the toughening mechanisms in a uniaxially fibre reinforced polymer (FRP) thin plate with a power-law hardening shear interphase is presented. An interfacial shear-lag model is used to analyse the relationship between the crack surface traction exerted by the intact fibres and the crack opening displacement (COD). Numerical solutions of the equations governing bridge-toughening are given. Two special kinds of interphase, i.e. linearly elastic and perfect plastic, are discussed. The results demonstrate that the toughening ratio of the composite thin plate is sensitive to several parameters, e.g. the thickness of the interphase between fibre and matrix, the hardening parameter of the interphase, the interfacial shear properties (stiffness and strength), the fibre radius and the far-field load. The results of this investigation will be beneficial to the selection of constitutive materials, the improvement of mechanical behaviour and the fabrication process of FRP composites.
机译:提出了具有幂律硬化剪切界面的单轴纤维增强聚合物(FRP)薄板的增韧机理的参数分析。界面剪切滞后模型用于分析完整纤维施加的裂纹表面牵引力与裂纹开口位移(COD)之间的关系。给出了控制桥梁增韧方程的数值解。讨论了两种特殊的相间,即线弹性和完美塑性。结果表明,复合薄板的增韧率对几个参数敏感,例如,2。纤维和基体之间的相间厚度,相间的硬化参数,界面剪切特性(刚度和强度),纤维半径和远场载荷。这项研究的结果将有利于本构材料的选择,机械性能的改善以及玻璃钢复合材料的制造工艺。

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