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Laminate Tailoring of Composite Tubular Structures to Improve Crashworthiness Design at Off-Axis Loading

机译:复合管状结构的层压裁缝,以改善离轴载荷下的耐撞性设计

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This paper presents experimental and numerical investigation on the parameters effecting energy absorption capability of composite tubular structures at oblique loading to improve crashworthiness performance. Various inclined angles of 5 ° , 10 ° , 20 ° and 30 ° were selected for the study of off-axis loading. The results indicate that by increasing the lateral inclination angle the mean crushing force and also energy absorption capability of all tested sections decreased. From design perspective, it is necessary to investigate the parameters effecting this phenomenon. The off-axis loading effect that causes significant reduction in energy absorption was investigated and the effected parameters were improved to increase energy absorption capability. To establish this study, 10 ° off-axis loading was chosen to illustrate the obtained improvement in energy absorption capability. Five cases were studied with combinations of ply-orientation and flat trimming with 45 ° chamfer. This method was applied to the integrated 10 ° off-axis loading and the final results showed significant improvement in energy absorption capability of composite absorbers. Finite element model (FEM) was developed to simulate the crushing process of axial and off-axis composite section in LS-DYNA and the results were in good agreement with the experimental data.
机译:本文对影响斜拉荷载作用下复合管状结构能量吸收能力以提高耐撞性能的参数进行了实验和数值研究。选择了5°,10°,20°和30°的各种倾斜角来研究轴外载荷。结果表明,通过增加侧倾角,所有测试截面的平均压碎力和能量吸收能力都会降低。从设计的角度来看,有必要研究影响此现象的参数。研究了导致能量吸收显着减少的轴外负载效应,并改善了影响的参数以提高能量吸收能力。为了建立这项研究,选择了10°轴外载荷来说明能量吸收能力的改善。研究了5例结合层定向和45°倒角平整的案例。将该方法应用于积分的10°轴外载荷,最终结果表明复合吸收体的能量吸收能力有了显着提高。建立了有限元模型,模拟了LS-DYNA轴向和离轴复合截面的破碎过程,其结果与实验数据吻合良好。

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