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首页> 外文期刊>International Journal of Mechanical Sciences >Elastic interaction between nonlinear solitary waves in granular chains and composite beams: Experiments and modelling
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Elastic interaction between nonlinear solitary waves in granular chains and composite beams: Experiments and modelling

机译:粒状链中非线性孤立波之间的弹性相互作用和复合梁:实验与造型

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摘要

We study the elastic interaction between strongly nonlinear solitary waves in lightly pre-compressed granular chains and laminated composite beams using experimental, analytical and numerical approaches. Experiments were conducted using a vertical array of 21 steel beads contacting a simply-supported composite beam at mid-span. A striker bead was dropped from a given height to initiate the propagation of a single solitary wave in the granular chain, whose interaction with the beam resulted in the propagation of multiple reflected solitary waves. The developed apparatus allowed measuring the delays and amplitudes of the reflected waves, and the obtained measurements were found in good agreement with numerical predictions based on a previously developed discrete element (DE) model. The numerical model was further simplified to derive a closed-form analytical solution for the delay of the primary reflected wave whose predictions showed no discernible differences to those obtained from the DE model. Experiments and predictions were performed on beams made of carbon fiber/epoxy and glass fiber/epoxy laminates, and the effects of beam thickness, width and flexural modulus on the characteristics of the reflected solitary waves were studied. We tested composite beams with thickness-to-length ratio in the range of 0.015 < H/L < 0.06 and found that the delays and amplitudes of the reflected nonlinear pulses are highly sensitive to the flexural modulus of the composite beam, concluding that the developed non-destructive technique is capable of measuring basic elastic properties of engineering composites, offering a reliable, time-efficient and cost-sensitive alternative to existing destructive and non-destructive test methods.
机译:我们使用实验,分析和数值方法研究轻质预压制的颗粒链和层压复合梁之间强烈非线性孤立波之间的弹性相互作用。使用垂直阵列的21个钢珠阵列进行实验,在中间跨度接触简单地支撑的复合梁。从给定高度滴下撞针,以引发颗粒链中的单个孤立波的传播,其与光束的相互作用导致多个反射孤立波的传播。允许发达的装置允许测量反射波的延迟和幅度,并且与基于先前显影的离散元件(DE)模型的数值预测,找到所获得的测量值。进一步简化了数值模型以导出用于延迟初级反射波的闭合形式的分析解决方案,其预测显示没有与从DE模型中获得的那些差异的可辨别差异。研究了由碳纤维/环氧树脂/环氧树脂层压板制成的梁进行实验和预测,研究了光束厚度,宽度和弯曲模量对反射孤立波的特性的影响。我们在0.015

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