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Models for shear properties/behavior of dry fibrous materials at various scales: a review

机译:各种规模的干纤维材料的剪切特性/行为模型:综述

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During forming operations of dry fibrous materials in order to get the composite preforms, the deformation mode is substantially determined by the occurring shear strains. Consideration of the material shear response namely from the theoretical point of view has gained high importance because multi-scale nature and anisotropy of fibrous materials complicates their experimental investigation, which raises the question of the tests realizability, complexity, and cost. This work analyses and classifies the existing theoretical approaches for the shear prediction with respect to the mathematical principles employed, as well as with respect to the architecture of diverse fibrous materials, to which the approach can be applied. Both classifications depend in turn on the main criterion of classification emphasized here - the scale of observation of the shear load. According to the theoretical framework, the approaches form the main groups based either on purely geometrical reasoning, or on finite elements analysis, or on energy minimization, or on forces equilibrium principle. The approaches are compared according to the total of mechanical factors included in their analysis and typical for a certain stage of shear load and a certain scale (micro-, meso-, or macro-). The advantages and difficulties of each of the methods are evaluated.
机译:在干燥纤维材料的成型操作期间,为了获得复合材料预成型坯,变形模式基本上取决于发生的剪切应变。从理论的角度考虑材料的剪切响应已经变得非常重要,因为纤维材料的多尺度性质和各向异性使它们的实验研究变得复杂,这引发了测试的可实现性,复杂性和成本的问题。这项工作相对于所采用的数学原理以及可应用该方法的各种纤维材料的体系结构,对现有的用于剪切预测的理论方法进行了分析和分类。两种分类依次取决于此处强调的主要分类标准-剪切载荷的观测范围。根据理论框架,这些方法基于纯粹的几何推理,有限元分析,能量最小化或力平衡原理构成了主要组。根据分析中所包括的机械因素的总和,比较这些方法的总和,以特定阶段的剪切载荷和一定规模(微观,中观或宏观)为典型。评估了每种方法的优缺点。

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