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Investigation on manufacturing and mechanical behavior of all-composite sandwich structure with Y-shaped cores

机译:Y型芯全复合夹芯结构的制造及力学性能研究

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A novel all-composite sandwich structure with Y-shaped cores was designed and fabricated by hot-press molding method in this paper. In order to reveal effects of relative density on mechanical behavior, the out-of-plane compressive tests were carried out on composite sandwich structures with different relative densities, varying from 5.34% to 10.53%. Then the effects of relative density on failure modes, mechanical properties, stress-strain curves and energy absorption capacity were studied and analyzed. The results showed that the relative density had visible impact on mechanical behavior of sandwich structure. The stress-strain curves possessed the characteristic of two peaks, and the peak stresses increased as the relative density increased. The numerical simulation based on progressive damage model was developed to reveal the damage evolution process and predict the mechanical properties. Analytical predictions were also presented to predict the compressive strength and stiffness of Y-shaped core, which were compared with numerical results and experimental results. It was observed that the analytical predictions and numerical results were in good agreement with the experimental results. (C) 2018 Elsevier Ltd. All rights reserved.
机译:本文采用热压成型的方法设计制造了一种新型的Y型芯全复合夹芯结构。为了揭示相对密度对机械性能的影响,对具有不同相对密度(从5.34%到10.53%不等)的复合夹层结构进行了面外压缩试验。然后研究并分析了相对密度对破坏模式,力学性能,应力-应变曲线和能量吸收能力的影响。结果表明,相对密度对夹心结构的力学行为有明显的影响。应力-应变曲线具有两个峰值的特征,峰值应力随着相对密度的增加而增加。进行了基于渐进式损伤模型的数值模拟,以揭示损伤的演化过程并预测力学性能。还提出了分析预测来预测Y型芯的抗压强度和刚度,并与数值结果和实验结果进行了比较。观察到的分析预测和数值结果与实验结果吻合良好。 (C)2018 Elsevier Ltd.保留所有权利。

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