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Impact Generated Pulses in Strongly Nonlinear Dissipative Metamaterial.

机译:强非线性耗散超材料中产生冲击的脉冲。

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摘要

This research is conducted to study the propagation of stress pulses with wave length comparable to the size of a unit cell in an one-dimensional chain composed of steel cylinders alternating with toroidal Nitrile rubber O-rings under different levels of precompression or without precompression force by using experiments, numerical simulations and theoretical analysis. Nitrile O-rings are making the system more tunable than the traditional metamaterials composed of steel spherical particles and this metamaterial has better dissipative properties especially for high energy repeatable impact loading. This strongly nonlinear discrete metamaterial can be potentially useful for acoustic and shock/impact mitigating applications.;Investigated metamaterial is strongly nonlinear system with unique properties, where the strong nonlinearity arises from the Hertzian contact interaction or from more general double power interaction law under large compression. If the initial precompression is zero, such a system cannot support a classical sound waves and for this reason it is called a "sonic vacuum".;The static force-displacement relationship for toroidal O-ring is described by a combination of two power-law terms being in satisfactory agreement with experimental observations. This suggests unique tunability and it was demonstrated that the pulse speed indeed is strongly tunable with applied static stress. A strong attenuation of stress pulse was observed at a relatively short distances from the entrance. It is attributed to the viscous dissipation during dynamic deformation of strongly nonlinear viscoelastic O-rings, its dependence on the initial precompression was studied. Several models for this nonlinear metamaterial were numerically investigated to clarify the mechanism of the observed strongly nonlinear dissipation by representing O-rings in the frame of Kelvin-Voigt model: strongly nonlinear massless spring with parallel dashpot with nonlinear damping coefficient being function of initial precompression. Single bell shape waves of different durations and amplitudes were generated in the system without precompression by an impact of strikers with different masses. The viscous dissipation prevents the incoming pulse from splitting into trains of solitary waves typical for non-dissipative strongly nonlinear discrete systems. Very unusual behavior of strikers with relatively large masses in comparison with mass of steel cylinders in the metamaterial was observed in experiments -- strikers did not recoil after impact with investigated metamaterial. Results of numerical modeling were in agreement with speed of stress pulses, their attenuation and strikers behavior observed in experiments.
机译:本研究的目的是研究在不同预压水平或没有预压力的情况下,由钢瓶与环形丁腈橡胶O形圈交替构成的一维链中应力脉冲的波长可与单位晶胞大小相比较的传播。使用实验,数值模拟和理论分析。丁腈O形圈使该系统比由钢球形颗粒组成的传统超材料更具可调性,并且这种超材料具有更好的耗散性能,尤其是对于高能量可重复冲击载荷。这种高度非线性的离散超材料可能会在声学和减震/冲击方面得到潜在的应用。研究的超材料是具有独特属性的强非线性系统,其中强非线性是由赫兹接触相互作用或大压缩下更一般的双幂相互作用定律引起的。如果初始预压缩为零,则该系统无法支持经典声波,因此,它被称为“声波真空”。环形O形圈的静态力-位移关系由两个功率的组合描述:法律条款与实验观察结果令人满意。这表明了独特的可调性,并且证明了在施加静态应力的情况下,脉冲速度的确可以很好地可调。在距入口相对较短的距离处观察到应力脉冲的强烈衰减。这归因于强非线性粘弹性O形圈动态变形过程中的粘性耗散,研究了其对初始预压缩的依赖性。对该非线性超材料的几种模型进行了数值研究,以通过在Kelvin-Voigt模型的框架中表示O形圈来阐明观察到的强烈非线性耗散的机制:具有平行阻尼器的强非线性无质量弹簧,其非线性阻尼系数是初始预压缩的函数。在系统中生成了具有不同持续时间和振幅的单钟形波,而没有受到具有不同质量的撞针的冲击的预压缩。粘性耗散可防止传入脉冲分裂为非耗散强非线性离散系统的典型孤波列。在实验中观察到,与超材料中的钢瓶质量相比,具有较大质量的撞针的行为非常不正常-撞针在受到调查的超材料撞击后不会后坐。数值模拟的结果与应力脉冲的速度,其衰减和在实验中观察到的撞针行为一致。

著录项

  • 作者

    Xu, Yichao.;

  • 作者单位

    University of California, San Diego.;

  • 授予单位 University of California, San Diego.;
  • 学科 Mechanical engineering.
  • 学位 Ph.D.
  • 年度 2016
  • 页码 169 p.
  • 总页数 169
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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