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Computational analysis of crack formation and propagation in quasi-brittle fibre reinforced composites

机译:准脆性纤维增强复合材料裂纹形成和扩展的计算分析

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Prediction of quasi-brittle behaviour of structural components from fibre reinforced composites under mechanical loads should incorporate such physical processes as elastic, resp. plastic deformation, crack initiation, crack propagation in a matrix, pull out of fibres and rupture of fibres. The computational model for the practically most important case of cementitious composites containing short intentionally or quasi-randomly oriented steel, ceramic, resp. polymeric fibres with its primary import of suppression of tensile stresses in a matrix will be introduced. Its numerical approach relies on the modified extended finite element technique (XFEM), open to the implementation of the cohesive traction separation law.
机译:预测纤维增强复合材料结构部件在机械载荷下的准脆性行为时,应考虑弹性、应力和应力等物理过程。塑性变形、裂纹萌生、基体中的裂纹扩展、纤维拔出和纤维断裂。对于实际最重要的水泥基复合材料,包括短定向或准随机定向的钢、陶瓷和水泥。将介绍主要用于抑制基体中拉伸应力的聚合物纤维。其数值方法依赖于改进的扩展有限元技术(XFEM),该技术可以实现内聚牵引分离定律。

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