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首页> 外文期刊>Journal of the Mechanics and Physics of Solids >Oscillating vector solitary waves in soft laminates
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Oscillating vector solitary waves in soft laminates

机译:振动载体孤立在软层压板中的孤立波

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Vector solitary waves are nonlinear waves of coupled polarizations that propagate with constant velocity and shape. In mechanics, they hold the potential to control locomotion, mitigate shocks and transfer information, among other functionalities. Recently, such elastic waves were numerically observed in compressible rubber-like laminates. Here, we conduct numerical experiments to characterize the possible vector solitary waves in these laminates, and expose a new type of waves whose amplitude and velocity oscillate periodically without dispersing in time. This oscillation is a manifestation of a periodic transfer of energy between the two wave polarizations, which we consider as internal mode of the solitary wave. We find that the vector solitary waves propagate faster at higher amplitudes, and determine a lower bound for their velocity. We describe a procedure for identifying which initial strains generate such vector solitary waves. This procedure also enables an additional classification between tensile and compressive solitary waves, according to the way that the axial strain changes as the waves propagate.
机译:载体孤波是具有恒定速度和形状的耦合偏振的非线性波。在力学中,它们持有潜力来控制运动,缓解震动和转移信息等功能。最近,在可压缩橡胶状层压板中使用这些弹性波进行了数量观察。这里,我们进行数值实验以表征这些层压板中的可能载体孤立波,并且暴露出一种新型波,其幅度和速度周期性地振荡而不会分散时间。这种振荡是两波偏振之间的定期转移的表现,我们认为是孤立波的内部模式。我们发现矢量孤波在较高幅度下传播得更快,并确定其速度的下限。我们描述了一种识别哪个初始菌株产生这种孤独波的过程。根据波浪传播的方式,该方法还使拉伸和压缩孤波之间的额外分类能够在轴向应变变化的方式之间实现。

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