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Variation of Kinetic Friction Coefficient with respect to Impact Velocity in Tube Type Energy Absorbers

机译:管式吸能器动摩擦系数相对于冲击速度的变化

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The expansion tube used as a crash element dissipates crash energy through internal deformation energy of the tube and frictional energy. In this paper, in order to study the effects of impact velocity on the characteristics of energy absorption of an expansion tube, friction quasi-static and dynamic experiments were carried out and an inverse method using finite element analysis and the least square method was introduced to calculate the friction coefficient at each impact velocity. The results of the experiments and the finite element analyses show that an increase of the impact velocity increased the strain rate of the tube. Energy absorbed into tube was increased due to the strain rate effect. The friction coefficient in the quasi-static state was higher than that in the dynamic state. The results of a comparison of mean forces and absorbed energies with experimental results indicate that the least square method is appropriate to calculate the friction coefficient in the case of an expansion tube.
机译:用作防撞元件的膨胀管通过管的内部变形能和摩擦能消散碰撞能。为了研究冲击速度对膨胀管能量吸收特性的影响,进行了准静态摩擦和动态试验,并采用了有限元分析和最小二乘法的反演方法。计算每个冲击速度下的摩擦系数。实验和有限元分析的结果表明,冲击速度的增加增加了管的应变率。由于应变率效应,吸收到管中的能量增加了。准静态状态下的摩擦系数高于动态状态下的摩擦系数。将平均力和吸收的能量与实验结果进行比较的结果表明,在膨胀管的情况下,最小二乘法适用于计算摩擦系数。

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