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Numerical and Experimental Investigation on Corrugation Geometry for Metallic Tubes under Lateral Loading

机译:横向载荷下金属管瓦楞几何形状的数值和实验研究

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Energy absorption devices are being used to protect structures from severe damages and reduce injury to occupants during accidents. The integrated characteristics of crash absorption devices can be classified as high energy absorption capacity, light-weight, and cost-effective. One of the thin-walled structures which has drawn the attention of scientists is corrugated tube structure. In this paper, the effect of corrugation geometry on the crushing parameters of an aluminum corrugated tube is investigated. In this regard, different elliptical corrugation shapes were deemed and the compression response was numerically evaluated under lateral quasi-static loading. Finally, the crashworthiness parameters were extracted and compared to determine the influence of corrugation shape on the crashworthy response. Our results showed that using vertical elliptical corrugation decrease the densification point. Moreover, there is a gradual enhancement of mean crushing load by moving from the horizontal elliptical corrugations to the vertical ones. Also, by modifying of corrugation shape, the stress variation pattern changes, significantly.
机译:能量吸收装置用于保护严重损伤的结构,并在事故期间减少占用者的伤害。碰撞吸收装置的综合特性可以被归类为高能量吸收能力,轻量级和成本效益。一种吸引科学家注意的薄壁结构之一是波纹管结构。本文研究了波纹几何形状对铝瓦型管的破碎参数的影响。在这方面,认为不同的椭圆形状形状并在横向准静态载荷下进行数值评价压缩响应。最后,提取了崩溃参数,并进行了比较,以确定波纹形状对Crashworthy反应的影响。我们的结果表明,使用垂直椭圆振荡降低致密化点。此外,通过从水平椭圆形波纹移动到垂直形式,存在逐渐提高平均破碎负载。而且,通过改变波纹形状,应力变化模式显着变化。

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