首页> 外文期刊>Journal of mechanics of materials and structures >TUNING THE PROPAGATION CHARACTERISTICS OF THE TRAPPED AND RELEASED STRONGLY NONLINEAR SOLITARY WAVES IN 1-D COMPOSITE GRANULAR CHAIN OF SPHERES
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TUNING THE PROPAGATION CHARACTERISTICS OF THE TRAPPED AND RELEASED STRONGLY NONLINEAR SOLITARY WAVES IN 1-D COMPOSITE GRANULAR CHAIN OF SPHERES

机译:调整一维复合颗粒链中捕获和释放的强非线性孤波的传播特性

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摘要

After a chain composed of light particles is inserted into a one-dimensional heavy granular chain of spheres, the formed composite chain can trap strongly nonlinear solitary waves (SNSWs) in a light sectional chain The light sectional chain can reduce the peak amplitude of pulse waves imposed on the objects contacting with the end particle of the chain. However, the effects of the light sectional chain's properties on the propagation velocity and amplitude of both the trapped and output pulse waves are unclear. In this study, finite element models with optimal parameters were established to investigate the multireflection behaviors of the output pulse waves. Both the simulation and experimental results demonstrated that the light sectional chain could act as a physical regulator to tune the properties of the output pulse waves in the composite chain. When the material of the light particle was fixed, both the propagation velocity and amplitude of the output pulse waves exhibited the exponentially downward trend as the number of light particles increased. Compared to the light sectional chain of Brass, the PTFE chain could cause more serious attenuation on the amplitude of the pulse waves and reduce the propagation velocity of the output pulse waves Similar phenomena had been reported in simulation results only at the nanoscale. Even at the macroscale, the investigated composite chain could quantitatively tune the propagation characteristics of the trapped and output pulse waves by adjusting the material and number of light particles.
机译:将由轻粒子组成的链插入一维球形重颗粒链后,形成的复合链可以将强非线性孤立波(SNSW)捕获在轻截面链中。轻截面链可以减小脉冲波的峰值幅度强加在与链的末端粒子接触的物体上。但是,光截面链的性质对捕获和输出的脉冲波的传播速度和幅度的影响尚不清楚。在这项研究中,建立了具有最佳参数的有限元模型,以研究输出脉冲波的多反射行为。仿真和实验结果均表明,轻截面链可以充当物理调节器,以调节复合链中输出脉冲波的特性。当固定轻质颗粒的材料时,随着轻质颗粒的数量增加,输出脉冲波的传播速度和幅度都呈指数下降趋势。与黄铜的轻截面链相比,PTFE链可能会严重破坏脉搏波的振幅,并降低输出脉搏波的传播速度,在模拟结果中仅在纳米级报道了类似现象。即使在宏观尺度上,所研究的复合链也可以通过调节光粒子的材料和数量来定量地调节捕获和输出的脉冲波的传播特性。

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