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Wave propagation in one-dimensional microscopic granular chains

机译:一维微观颗粒链中的波传播

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We employ noncontact optical techniques to generate and measure stress waves in uncompressed, one-dimensional microscopic granular chains, and support our experiments with discrete numerical simulations. We show that the wave propagation through dry particles (150 mu m radius) is highly nonlinear and it is significantly influenced by the presence of defects (e.g., surface roughness, interparticle gaps, and misalignment). We derive an analytical relation between the group velocity and gap size, and define bounds for the formation of highly nonlinear solitary waves as a function of gap size and axial misalignment.
机译:我们采用非接触式光学技术在未压缩的一维微观颗粒链中生成和测量应力波,并通过离散数值模拟来支持我们的实验。我们表明,通过干燥颗粒(半径150μm)的波传播是高度非线性的,并且受到缺陷(例如表面粗糙度,颗粒间间隙和未对准)的存在的影响很大。我们推导了群速度和间隙尺寸之间的解析关系,并定义了高度非线性孤立波的形成范围,该范围是间隙尺寸和轴向未对准的函数。

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