轴向载荷下铝管拉延头的耐撞性研究

IF 2.1 Q2 ENGINEERING, CIVIL
H. Nikkhah, N. Naveed, Roghaiyeh Assaedi Beiragh, Sina Dadashzadeh, Q. Truong
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引用次数: 1

摘要

本研究旨在研究在轴向准静态载荷下拉条对铝管耐撞性的影响。基于这一设计理念,共开发了12种不同配置的卷边管设计。在每种设计中,还分析了布置胎圈形式对耐撞性能的影响。采用有限元模型,通过实验验证,研究了管的耐撞性能和渐进变形。在此基础上,采用一种多准则决策方法,即与理想解相似的顺序偏好技术,来确定最合适的具有高能量吸收和低冲击力的管子。选择得分最高的管材,研究珠粒形成方向对铝管的影响。因此,该研究确定了一种珠状管结构,该结构具有优异的耐撞性和较低的冲击力。本研究中提出的卷边管设计方法允许利用可变形状的几何形状来开发高效能量吸收结构及其破碎行为。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Crashworthiness investigation of draw bead in aluminum tubes under axial loading condition
This study aims to investigate the effects of the draw beads on the crashworthiness of the aluminum tubes under axial quasi-static loading. Based on this design philosophy, a total of 12 beading tube designs with various configurations were developed. Within each design, the effect of arrangement bead form on the crashworthiness performance was also analyzed. A finite element model, validated using experimental tests, was used to study the crashworthiness performance and progressive deformation of the tubes. Based on the results, a multi-criteria decision-making method known as Technique of Order Preference by Similarity to Ideal Solution was employed to determine the most suitable tube that features high energy absorption and low impact force. The best tube with a high score was selected to investigate the effect of bead formed direction on aluminum tubes. Consequently, the study identified a bead shape tubes configuration that exhibits superior crashworthiness and low impact force. The beading tube design methodology presented in this study allows the exploitation of variable shapes geometries for the development of high-efficiency energy-absorbing structures and their crushing behaviors.
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来源期刊
CiteScore
4.30
自引率
25.00%
发文量
48
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