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EVALUATION OF ENERGY ABSORPTION IN NONLINEAR VIBRATION SYSTEM WITH GAPS

机译:带间隙的非线性振动系统能量吸收的评估

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This paper deals with nonlinear vibration characteristics of a continuum system with collision phenomena under random waves with gaps. In order to investigate such a nonlinear vibration characteristic, an experimental apparatus consisting of a nonlinear vibration system was made. Moreover, we propose an analytical model based on the restoring force characteristics of the experiments. In this report, the size of the gap between a mass and a plate is set to 0.5mm or 1.0mm. For this experimental model we also propose an analytical model. We use plates of 1.6mm thickness in the collisions both in the experiment and the analysis. The analytical model is based on an elasto-plasticity solid model. When considering the coefficients of restitution or energy absorption, the experimental results nearly agree with the analytical results. We found that the rate of a collision changes with the size of the gap at each input acceleration level. As the gap size widens, energy absorption decreases for each input acceleration level. Consequently, in order to increase the energy absorption, it becomes necessary to increase the rate of the collision.
机译:本文研究了带间隙的随机波作用下具有碰撞现象的连续系统的非线性振动特性。为了研究这种非线性振动特性,制造了由非线性振动系统组成的实验装置。此外,我们基于实验的恢复力特性提出了一个分析模型。在该报告中,将质量块和板之间的间隙的大小设置为0.5mm或1.0mm。对于此实验模型,我们还提出了一个分析模型。在实验和分析中,我们在碰撞中均使用厚度为1.6mm的板。分析模型基于弹塑性实体模型。考虑恢复系数或能量吸收系数时,实验结果与分析结果几乎一致。我们发现,在每个输入加速度级别,碰撞的速度都随着间隙的大小而变化。随着间隙尺寸的增大,每个输入加速度级别的能量吸收都会减少。因此,为了增加能量吸收,变得必须增加碰撞率。

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