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Impact response of an origami-shaped composite crash box: Experimental analysis and numerical optimization

机译:折纸形复合碰撞箱的影响响应:实验分析和数值优化

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摘要

In this work, an investigation of the crush response of a simplified CFRP origami crash box subjected to axial impact is proposed. Crash boxes are thin-walled structural components of the vehicles designed to absorb energy during impact events at low-medium velocity. In particular, the crash boxes must guarantee a progressive and controlled energy absorption, avoiding peak of force (and thus acceleration) that can lead to passenger injury. In recent years, crash boxes made of carbon fibre reinforced polymer (CFRP) have found application in the automotive sector. However, their brittle failure mode leads to an irregular crushing trend characterized by peak of force. Thereafter, the crushing behaviour of the composite material structures can be improved by modifying their geometrical parameters. Among the most promising solutions, the origami structure is increasingly considered for crash boxes. The origami crash box here considered consists of four axially stacked basic structures. Each basic structure is composed of four trapezoidal faces and four triangular faces. The upper cross section is squared, whereas the lower cross section has an octagonal shape. The structural behaviour of the origami component was investigated according to different sizes of the triangular faces. The numerical models were simulated with the finite element commercial code LS-Dyna in its explicit formulation. The optimal shape of the origami structure in terms of maximum energy absorption and limited force peak was defined in LS-OPT environment. The objective function of the shape optimization algorithm was set to maximize the energy absorption, while limiting the peak of force. The optimal shape defined presented larger sizes in the top basic structures than in the bottom parts, resulting in more inclined faces. The result suggested that more inclined faces in the top part can guarantee a fracture-triggering effect in the crash box, which ensured a smaller peak force.
机译:在这项工作中,提出了对经过轴向冲击的简化CFRP折纸碰撞箱的挤压响应的调查。碰撞盒是薄壁的结构部件,用于在低介质速度下吸收冲击事件期间的能量。特别是,碰撞箱必须保证渐进和控制的能量吸收,避免可能导致乘客损伤的力(并因此加速)。近年来,由碳纤维增强聚合物(CFRP)制成的碰撞箱在汽车领域中均配有应用。然而,它们的脆性故障模式导致不规则的破碎趋势,其特征在于力峰值。此后,通过修改其几何参数,可以改善复合材料结构的破碎行为。在最有前途的解决方案中,折纸结构越来越多地考虑用于碰撞箱。这里的Origami崩溃框由四个轴向堆叠的基本结构组成。每个基本结构由四个梯形面和四个三角形面组成。上横截面是平方的,而下横截面具有八边形形状。根据三角形面的不同尺寸研究了折纸组分的结构行为。用有限元商业代码LS-DYNA模拟数值模型,其明确的制定。在LS-opt环境中定义了在最大能量吸收和有限力峰值方面的折纸结构的最佳形状。形状优化算法的目标函数被设定为最大化能量吸收,同时限制力峰值。最佳形状在顶部基本结构中呈现较大的尺寸,而不是在底部中,导致更倾斜的面。结果表明,顶部中的更多倾斜面可以保证碰撞箱中的裂缝触发效果,这确保了较小的峰值力。

著录项

  • 来源
    《Composite Structures》 |2021年第1期|113093.1-113093.8|共8页
  • 作者单位

    Politecn Torino Dept Mech & Aerosp Engn Turin Italy|Politecn Torino CARS Ctr Automot Res & Sustainable Mobil Turin Italy;

    Politecn Torino Dept Mech & Aerosp Engn Turin Italy|Politecn Torino CARS Ctr Automot Res & Sustainable Mobil Turin Italy;

    Politecn Torino Dept Mech & Aerosp Engn Turin Italy;

    Politecn Torino Dept Mech & Aerosp Engn Turin Italy;

    Politecn Torino Dept Mech & Aerosp Engn Turin Italy|Politecn Torino CARS Ctr Automot Res & Sustainable Mobil Turin Italy;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Compsite materials; crashworthiness; origami structures; shape optimization; crash box;

    机译:复合材料;斗争;折纸结构;形状优化;崩溃箱;

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