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Modelling the effect of microstructural randomness on the fracture of composite laminates with stochastic cohesive zone elements

机译:微观结构随机性对具有随机内聚区元素的复合材料层合板断裂的影响建模

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摘要

Fibre reinforced polymer composites (FRPCs) are being increasingly used in structural applications where high specific strength and stiffness are required. The performance of FRPCs is affected by multi-mechanism damage evolution under loading which in turn is affected by microstructural stochasticity in the material. This means that the fracture of a FRPC is a stochastic process. However, to date most analyses of these materials have treated them in a deterministic way. In this paper the effect of stochasticity in FRPCs is investigated through the application of cohesive zone elements in which random properties are introduced. These may be termed 'stochastic cohesive zone elements' and are used in this paper to investigate the effect of microstructural randomness on the fracture behaviour of cross-ply laminate specimens loaded in tension. It is seen from this investigation that microstructure can significantly affect the macroscopic response of FRPC's, emphasizing the need to account for microstructural randomness in order to make accurate prediction of the performance of laminated composite structures.
机译:纤维增强聚合物复合材料(FRPC)越来越多地用于要求高比强度和刚度的结构应用中。 FRPC的性能受载荷作用下多机制损伤演变的影响,而材料受破坏后又受材料的微结构随机性影响。这意味着FRPC的破裂是一个随机过程。但是,迄今为止,对这些材料的大多数分析都以确定性方式对其进行了处理。在本文中,通过应用引入随机属性的内聚区元素,研究了FRPC中随机性的影响。这些可称为“随机内聚区元素”,并在本文中用于研究微观结构随机性对承受张力的交叉层压材料试样的断裂行为的影响。从这项调查中可以看出,微观结构可以显着影响FRPC的宏观响应,强调需要考虑微观结构的随机性,以便对层压复合结构的性能做出准确的预测。

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