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Deformation Pattern and Energy Absorption Analysis on Initial Fold Crash Box by Oblique Crash Test

机译:斜碰撞试验初始折叠碰撞箱的变形模式和能量吸收分析

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In the previous study, many researchers have done to improve the energy absorption of crash box due to axial impact. In the crash test, crash box is commonly subjected to both axial and oblique. In this study, crash box design with initial fold is modelled by using application software based on Finite Element Analysis. The effect of placement ratio and initial fold angle on crash box subjected to oblique loading is investigated. The placement ratio is set as 1:2, 1:1, and 2:1 measured from the total height of crash box. The initial fold angle is varied with 90°, 60° and 45°. Crash box material is Mild Steel ASTM E-04. Crash box material is assumed as bilinear isotropic hardening material. The crash test is modelled as oblique loading crash test. The oblique loading angle used on impactor is 60°. Based on computer simulation results, it can be showed that the deformation pattern of initial fold crash box occurred as buckling and axial mode. The crash box design with placement ratio 1:2 and initial fold angle 90' produce the highest value of energy absorption.
机译:在以前的研究中,许多研究人员已经完成了由于轴向撞击而改善碰撞箱的能量吸收。在碰撞试验中,碰撞盒通常经受轴向和倾​​斜。在本研究中,通过使用基于有限元分析使用应用软件来建模具有初始折叠的崩溃框设计。研究了对倾斜载荷进行碰撞箱上的放置比和初始折叠角的影响。放置比设定为1:2,1:1和2:1,从碰撞箱的总高度测量。初始折叠角度随90°,60°和45°而变化。碰撞箱材料是温和的钢ASTM E-04。碰撞盒材料被认为是双线性各向同性硬化材料。崩溃测试被建模为斜载碰撞测试。撞击器上使用的倾斜装载角为60°。基于计算机仿真结果,可以显示初始折叠碰撞箱的变形图案作为屈曲和轴向模式。具有放置比1:2和初始折叠角90'的碰撞箱设计产生了最高能量吸收值。

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