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Energy-absorption behavior of a metallic double-sine-wave beam under axial crushing

机译:金属双正弦波在轴向挤压下的能量吸收行为

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Energy-absorbing behavior of a metallic double-sine-wave beam under axial crushing is studied in this paper. The aims of the study are to improve the energy-absorbing capability of traditional corrugated beams with sine-wave at single direction and reduce the initial peak force by forcing the beam plasticly deformed at the predetermined intervals along the axial direction. The theoretical approach based on a rigid, perfectly plastic model is adopted to predict the mean crushing force under axial crush loading. Besides, the numerical analysis of energy-absorption behavior of aluminium double-sine-wave beams is conducted by using nonlinear finite element code MSC.DYTRAN. The numerical results are compared well with theoretical predictions and show that although the crushing mean force slightly decreases, the double-sine-wave beam produces better uniform load displacement relationship and lower initial peak force.
机译:本文研究了金属双正弦波在轴向挤压下的能量吸收行为。该研究的目的是通过沿轴向在预定间隔处强制塑性变形的梁来提高传统的单方向正弦波波纹梁的能量吸收能力,并降低初始峰值力。采用基于刚性,完美塑性模型的理论方法来预测轴向挤压载荷下的平均挤压力。此外,利用非线性有限元代码MSC.DYTRAN对铝双正弦波束的能量吸收行为进行了数值分析。数值结果与理论预测值进行了很好的比较,结果表明,尽管破碎平均力略有降低,但双正弦波梁却产生了更好的均匀载荷位移关系和较低的初始峰值力。

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