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Multi-Scale Analyses of Three Dimensional Woven Composite 3D Shell With a Cut Out Circle

机译:三维织造复合3D壳的多尺度分析与剪切圆圈

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摘要

A composite material are made by combining two or more constituent materials to obtain the desired material properties of each product type. The matrix material which can be polymer and fiber is used as reinforcing material. Currently, the polymer matrix is widely used in many different fields with differently designed structures such as automotive structures and aviation, aerospace, marine, etc. because of their excellent mechanical properties; in addition, they possess the high level of hardness and durability together with a significant reduction in weight compared to traditional materials. However, during design process of structure, there will be many interruptions created for the purpose of assembling the structures together or for many other design purposes. Therefore, when this structure is subject to load-bearing, its failure occurs at these interruptions due to stress concentration. This paper proposes multi-scale modeling and optimization strategies in evaluation of the effectiveness of fiber orientation in an E-glass/Epoxy woven composite 3D shell with circular holes at the center investigated by FEA results. A multi-scale model approach was developed to predict the mechanical behavior of woven composite 3D shell with circular holes at the center with different designs of material and structural parameters. Based on the analysis result of laminae, we have found that the 3D shell with fiber direction of 45(0) shows the best stress and strain bearing capacity. Thus combining several layers of 45(0) fiber direction in a multi-layer composite 3D shell reduces the stresses concentrated on the cuts of the structures.
机译:通过组合两个或更多个组成材料来获得复合材料以获得每种产物类型的所需材料性质。可以是聚合物和纤维的基质材料用作增强材料。目前,聚合物基质广泛用于许多不同领域,具有不同设计的结构,例如汽车结构和航空,航空航天,海洋等,因为它们的机械性能优异;此外,与传统材料相比,它们具有高水平的硬度和耐用性,重量显着降低。然而,在结构的设计过程中,为在组装结构组装或用于许多其他设计目的的目的,将存在许多中断。因此,当该结构受承载的影响时,由于应力集中,在这些中断发生故障。本文提出了在E玻璃/环氧编织复合复合3D壳中评价纤维取向有效性的多规模建模和优化策略,该孔的圆孔在中央的圆孔中研究了FEA结果。开发了一种多尺度模型方法,以预测具有不同材料设计和结构参数的中心圆孔的编织复合3D壳的机械特性。基于Laminae的分析结果,我们发现具有45(0)的光纤方向的3D壳显示出最佳的应力和应变承载力。因此,在多层复合3D壳中将几个45(0)纤维方向组合减少了集中在结构的切口上的应力。

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