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首页> 外文期刊>Philosophical transactions of the Royal Society. Mathematical, physical, and engineering sciences >Demonstration of accelerating and decelerating nonlinear impulse waves in functionally graded granular chains
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Demonstration of accelerating and decelerating nonlinear impulse waves in functionally graded granular chains

机译:功能渐进颗粒链中加速和减速非线性脉冲波的示范

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We propose a tunable cylinder-based granular system that is functionally graded in its stiffness distribution in space. With no initial compression given to the system, it supports highly nonlinear waves propagating under an impulse excitation. We investigate analytically, numerically and experimentally the ability to accelerate and decelerate the impulse wave without a significant scattering in the space domain. Moreover, the gradient in stiffness results in the scaling of contact forces along the chain. We envision that such tunable systems can be used for manipulating highly nonlinear impulse waves for novel sensing and impact mitigation purposes.
机译:我们提出了一种可调谐的气缸基颗粒系统,其在其空间中的刚度分布中具有功能分析。 没有给系统提供初始压缩,它支持在脉冲激励下传播的高度非线性波。 我们在分析上进行了调查,在数值和实验上,能够加速和减速脉冲波,在空间域中没有显着散射。 此外,刚度的梯度导致沿着链的接触力缩放。 我们设想这种可调谐系统可用于操纵高度非线性脉冲波以进行新颖的传感和影响降低目的。

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