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Composite materials for wind energy applications: micromechanical modeling and future directions

机译:用于风能应用的复合材料:微机械建模和未来方向

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The strength and reliability of wind turbine blades depend on the properties, mechanical behavior and strengths of the material components (glass or carbon fibers and polymer matrix), and the interaction between them under loading. In this paper, ideas, methods and concepts of micromechanical modelling of materials for wind turbine blades are briefly reviewed. Using the variety of the modeling methods reviewed here, one can predict the strength, stiffness and lifetime of the materials, optimize their microstructures with view on the better usability for wind turbines, or compare the applicability of different groups of the materials to the application in wind turbine blades. Some examples of the analysis of the microstructural effects on the strength and fatigue life of composites are shown.
机译:风力涡轮机叶片的强度和可靠性取决于材料成分(玻璃或碳纤维和聚合物基体)的性能,机械性能和强度,以及它们在负载下的相互作用。在本文中,简要回顾了用于风力涡轮机叶片的材料的微机械建模的思想,方法和概念。使用本文中讨论的各种建模方法,可以预测材料的强度,刚度和寿命,考虑到风力涡轮机的更好可用性来优化其微观结构,或者比较不同组材料在应用中的适用性。风力涡轮机叶片。给出了一些分析微观结构对复合材料强度和疲劳寿命的影响的例子。

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