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The effect of the elliptical ratio on the tubular energy absorber subjected to lateral loading under quasistatic conditions

机译:在Quasistatic条件下对横向载荷进行横向载荷的管状能量吸收器的效果

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摘要

Tubular systems are proposed to be used as energy absorber because they are cheap and easy to manufacture; recently some researchers use the elliptical tube as energy absorber. In this work, the influence of elliptical ratio (r =D1/D2) on energy absorption capability and load carrying capacity and stress of mild steel elliptical tubes has been investigated both experimentally and numerically, the experimental analyses conducted by using Zwick Type BT1-FB050TN testing instrument. This machine is universal instrument for performing tensile test and compression test, Fig (1) and bending test and it is consider as an important machine for measuring the mechanical properties of materials and structures. The loading frame consist of two vertical lead screws, a moving crosshead and an upper and lower bearing plate which bears the load of the lead screws. The maximum capacity of the loading frame attached to the table mounted unit is 50KN In this study a velocity between 310mm/min was applied to the moving component to ensure the quasistatic conditions whereas velocities between 0.5mm/min and 15 mm/min have been used by many researchers to simulate the quasi-static lateral compression of tubes between various indenters [1-2]. In addition to the experimental work, computational method using ANSYS is used to predict the loading and response of such tubes where series of models was performed with elliptical ratios ranging from 0.5 to 1.5. Comparison of numerical and experimental forcedeflection response is presented. It has been found that with changing the elliptical ratio of the tube the loaddeflection curve change and this leads to change the energy absorbed by tube, the changing of the geometrical shape of the tube leads to change the volume of this tube and hence the mass. By reducing the elliptical ratio to 0.5 the tube will absorb 43.3% more energy and the system will gain 102% more in terms of specific energy, fig (2).
机译:提出了管式系统,因为它们价格便宜,易于制造用作能量吸收;最近一些研究人员使用椭圆形管作为能量吸收器。在这项工作中,椭圆率的影响(R = D1 / D2)上的能量吸收能力和承载软钢椭圆管的能力和应力已经被研究实验和数值,实验分析通过使用的Zwick类型BT1-FB050TN进行测试仪器。本机是用于执行拉伸试验和压缩测试,图(1)和弯曲试验仪普遍,这是考虑作为一个重要的机械,用于测量的材料和结构的机械性能。在装载架包括两个竖直的导螺杆,移动十字头和其带有的导螺杆的负载的上部和下部支承板。安装附加到表格中的装载架的最大容量单位为50KN在这项研究中310毫米之间/ min的速度被施加到移动部件,以确保而0.5毫米/分钟和15mm之间的速度的准静态条件/分钟已经使用许多研究者模拟各种压头[1-2]之间管的准静态的横向压缩。除了实验工作,利用ANSYS计算方法被用于预测装载,并且其中一系列模型用椭圆比为0.5〜1.5进行的这种管的响应。数值模拟和实验forcedeflection响应的比较被呈现。已经发现,与改变管的loaddeflection曲线变化,并且这导致的椭圆率改变能量吸收由管,该管的引线的几何形状的变化来改变该管的体积,并因此质量。通过减小椭圆比至0.5管将吸收更多的43.3%的能量和系统将获得102%的比能量,图(2)的方面。

著录项

  • 作者

    A. Baroutaji; A.G. Olabi;

  • 作者单位
  • 年度 2010
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  • 原文格式 PDF
  • 正文语种 eng
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