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Analytical and numerical residual stress models for fiber metal laminates-comparison and application

机译:用于纤维金属层压板的分析和数值残余应力模型 - 比较和应用

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Fiber metal laminates (FML) consist of alternately stacked plies of polymer matrix composites and metallic foils. Such material systems exhibit advantageous properties regarding fracture toughness, impact resistance and structural strength. Glass fiber reinforced aluminum (GLARE) with the constituents glass fibers, epoxy resin and aluminum foils is state-of-the-art. To improve the processing of FML thermoplastic matrix systems are promising. Carbon fibers could enhance the stiffness of the laminates. However, both modifications have a serious influence on thermal residual stresses grown by the mismatch of coefficient of thermal expansion and the cooling,down from processing temperature. Finite element analysis (FEA) provides a reliable tool to predict the state of thermal residual stresses for FML made of different constituents. Otherwise, analytical models are an under-estimated but powerful tool, too. Closed formulas based on mechanical relationships can be applied fast and easy. Both, numerical and analytical methods are used to analyze thermal residual stresses caused by processing of different material systems.
机译:纤维金属层压板(FML)包括可交替堆叠的聚合物基质复合材料和金属箔。这种材料系统表现出关于断裂韧性,抗冲击性和结构强度的有利性质。玻璃纤维增​​强铝(眩光)与组分玻璃纤维,环氧树脂和铝箔是最先进的。为了改善FML热塑性矩阵系统的加工是有前途的。碳纤维可以增强层压板的刚度。然而,两种修改对由热膨胀系数和冷却系数的不匹配产生的热残余应力产生严重影响,从加工温度下降。有限元分析(FEA)提供可靠的工具,以预测由不同成分制成的FML的热残余应力的状态。否则,分析模型也是一个估计的但强大的工具。基于机械关系的封闭式公式可以快速且容易地应用。数值和分析方法都用于分析由不同材料系统的加工引起的热残余应力。

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