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Modeling and testing the fracture process of impregnated carbon-fiber roving specimens during bending: Part I - Fiber bundle model

机译:建模和测试浸渍碳纤维粗纱试样弯曲过程中的断裂过程:第一部分-纤维束模型

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摘要

A summarizing description of a statistical modeling method partly based on earlier publications is given to predict the total loading and breaking process of fiber bundles generated by tensile tests. This method uses some types of idealized fiber bundles, the so-called fiber bundle cells (basic types: E, EH, ES, and ET) to model the structure of real fibrous structures. Using one of these bundle cells or a composite bundle made of some bundle cells connected in parallel, the expected value and standard deviation of the whole damage process of this bundle can be calculated up to the breakage of the last intact fiber during a mechanical test. As a new application the fracture process of unidirectional composite beam is modeled during the 3P bending test considering the beam is built up of elementary embedded-fiber layers considered as E-type fiber bundle cells in the first step. Formulae for calculating the expected value and standard deviation processes of the bent specimen are elaborated assuming that the fiber breakages determined the failure of layers.
机译:部分基于较早的出版物的统计建模方法的概述,旨在预测拉伸试验产生的纤维束的总载荷和断裂过程。该方法使用某些类型的理想化纤维束,即所谓的纤维束单元(基本类型:E,EH,ES和ET)来对真实纤维结构的结构进行建模。使用这些束单元中的一个或由并联连接的一些束单元制成的复合束,可以计算出该束的整个损伤过程的期望值和标准偏差,直到机械测试期间最后一根完好的纤维的断裂为止。作为一种新的应用,在第一步中,考虑到该梁是由被认为是E型纤维束单元的基本嵌入纤维层构成的,因此在3P弯曲测试期间对单向复合梁的断裂过程进行建模。假定纤维断裂决定了层的破坏,阐述了计算弯曲试样的期望值和标准偏差过程的公式。

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