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首页> 外文期刊>Journal of Reinforced Plastics and Composites >Micromechanical modeling of the mechanical behavior of unidirectional composites - A comparative study
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Micromechanical modeling of the mechanical behavior of unidirectional composites - A comparative study

机译:单向复合材料力学行为的微机械建模 - 比较研究

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Laminated fiber reinforced composites are increasingly being used in various load-bearing applications including for instance aerospace and wind energy power industries. Understanding the mechanical behavior of a unidirectional lamina as the basic part of a laminated composite is of great interest from a design perspective and also for the analysis of composite structures. At the micro-level, mechanical behavior of a lamina including stiffness and strength is studied based on the mechanical properties of individual constituents. This study focuses on micromechanical approaches such as strength of materials, elasticity, semi-empirical, and numerical methods for the prediction of the stiffness and strength of a unidirectional lamina. To assess the accuracy of these models, results of each model are compared against experimental results available in the literature for unidirectional composites with different fiber volume fractions. Moreover, recent studies on micromechanical modeling of unidirectional composites are reviewed.
机译:层压纤维增强复合材料越来越多地用于各种承载应用,包括例如航空航天和风能发电行业。理解单向薄片的力学行为作为层压复合材料的基本部分是极大的兴趣,并且还用于分析复合结构。在微观的情况下,基于个体成分的机械性能研究了包括刚度和强度的薄层的力学行为。本研究专注于微机械方法,例如材料的强度,弹性,半实验性和用于预测单向薄膜的刚度和强度的数值方法。为了评估这些模型的准确性,将每个模型的结果与具有不同纤维体积分数的单向复合材料的文献中可用的实验结果进行比较。此外,回顾了最近关于单向复合材料的微机械建模的研究。

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