首页> 外文会议>ASME Pressure Vessels and Piping conference >DETERMINATION OF FIBER ORIENTATION ALONG THE LENGTH OF COMPLEX COMPOSITE STRUCTURES SUBJECTED TO INTERNAL PRESSURE AND AXIAL LOADING
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DETERMINATION OF FIBER ORIENTATION ALONG THE LENGTH OF COMPLEX COMPOSITE STRUCTURES SUBJECTED TO INTERNAL PRESSURE AND AXIAL LOADING

机译:内压和轴向载荷作用下复杂复合结构长度的纤维取向测定

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Axially symmetric fiber-reinforced polymer composite structures such as pressure vessels and piping are being widely used in different industrial applications where combined loading conditions may be applied. It is imperative to determine a suitable fiber angle, or a distribution of fiber angles, along the longitudinal direction of the structure in order to achieve best performance in terms of mechanical behavior and strength for structures subjected to combined loadings. To this end, a theoretical study was conducted providing the relationship between the fiber orientation and the loading conditions applied to a composite structure. The aim of this study is to determine the fiber angle variation along the length of an axially symmetric composite structure with variable cross-section considering different ratios of axial loading and internal pressure. As an initial step, netting analysis design theory was implemented in the present study.
机译:轴向对称的纤维增强聚合物复合结构(例如压力容器和管道)已广泛用于可能应用组合载荷条件的不同工业应用中。必须沿着结构的纵向方向确定合适的纤维角度或纤维角度分布,以便在机械性能和强度方面获得最佳性能,以承受组合载荷。为此,进行了理论研究,提供了纤维取向与应用于复合结构的加载条件之间的关系。这项研究的目的是在考虑轴向载荷和内部压力的不同比率的情况下,确定具有可变横截面的轴对称复合结构沿长度方向的纤维角度变化。作为第一步,在本研究中实施了网状分析设计理论。

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