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Three-dimensional thermoelastic analysis of cracked plain weave glass/epoxy composites at cryogenic temperatures

机译:裂纹平纹玻璃/环氧树脂复合材料在低温下的三维热弹性分析

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This paper examines the thermo-mechanical behavior of cracked G-11 woven glass/epoxy laminates with temperature-dependent material properties under tension at cryogenic temperatures. Three-dimensional finite elements are employed to model the architecture of the two-layer woven laminates. It is assumed that the cracks are confined to individual fiber bundles oriented transverse to the tensile load direction and span the thickness of the fiber bundles. The effects of residual thermal stresses caused by differences in the coefficients of thermal expansion of the composite constituents, and cracks on the mechanical behavior of two-layer G-11 woven laminates at cryogenic temperatures are explored. Numerical results for Young's modulus, Poisson's ratio, and stress distributions and concentrations are obtained and discussed in detail.
机译:本文研究了在低温下处于拉伸状态下,具有随温度变化的材料特性的破裂的G-11机织玻璃/环氧树脂层压板的热机械行为。使用三维有限元对两层编织层压板的结构进行建模。假定裂缝被限制在横向于拉伸载荷方向取向的单个纤维束中,并且横跨纤维束的厚度。探索了由复合成分的热膨胀系数差异引起的残余热应力以及裂纹对两层G-11机织层压板在低温下的力学行为的影响。获得并详细讨论了杨氏模量,泊松比以及应力分布和集中的数值结果。

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