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PULSE SHAPING IN 1D ELASTIC WAVEGUIDES FOR SHOCK TESTING

机译:脉冲整形在1D弹性波导中进行休克测试

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Mechanical shock events experienced by electronics systems can be reproduced in the laboratory using Hopkinson bar tests. In these tests a projectile strikes a bar, creating a pulse which travels through the bar into the system. The quality of these tests depends on the closeness of the shape of the incident pulse to the shape specified for the test. This paper introduces a new way to control the shape of the incoming pulse, through the use of elastic metamaterial concepts. Two dispersion-modifying material concepts, phononic crystals, and local resonators, are examined for their wave shaping capabilities in ID elastic waveguides. They are then evaluated using a transfer matrix method to determine the output wave shape in the time domain. The concepts are then optimized for various pulse shapes, showing that they are most effective when they are tuned to introduce dispersion near the fundamental frequency of the incident wave.
机译:电子系统经历的机械冲击事件可以在实验室中使用Hopkinson Bar测试再现。 在这些测试中,弹丸撞击杆,从而创建一个穿过杆进入系统的脉冲。 这些测试的质量取决于入射脉冲形状的近距离对测试指定的形状。 本文介绍了一种通过使用弹性超材料概念来控制入射脉冲形状的新方法。 在ID弹性波导中检查两个分散改性材料概念,声子晶体和局部谐振器。 然后使用传递矩阵方法评估它们以确定时域中的输出波形。 然后针对各种脉冲形状进行优化概念,显示它们在调谐时最有效地引入发生的波浪的基本频率附近的色散。

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