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Smart Structures for Shock Wave Attenuation using ER inserts

机译:使用ER插件的冲击波衰减智能结构

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摘要

This Paper demonstrates the possibility of shock wave attenuation propagating through a smart structure that incorporates ER insert. The wave transmission of ER inserted beam is theoretically derived using Mead & Markus model and the theoretical results are compared with the finite element analysis results. To experimentally verify the shock wave attenuation, ER insert in an aluminum plate is made and two piezoceramic disks are used as transmitter and receiver of the wave. The transmitter sends a sine pulse signal such that a component of shock wave travels through the plate structure and the receiver gets the transmitted wave signal. Wave propagation of the ER insert can be adjusted by changing the applied electric field on the ER insert. Details of the experiment are addressed and the possibility of shock wave attenuation is experimentally verified. This kind of smart structure can be used for warship and submarine hull structures to protect fragile and important equipment.
机译:本文演示了通过结合了ER插件的智能结构传播冲击波的可能性。使用Mead&Markus模型从理论上推导了ER插入光束的波传输,并将理论结果与有限元分析结果进行了比较。为了通过实验验证冲击波的衰减,在铝板上制作了ER插入件,并使用两个压电陶瓷盘作为波的发射器和接收器。发送器发送正弦脉冲信号,使冲击波的一部分穿过平板结构,接收器获得发送的波信号。 ER插入件的波传播可以通过更改ER插入件上施加的电场来调整。解决了实验的细节,并通过实验验证了冲击波衰减的可能性。这种智能结构可用于军舰和潜艇船体结构,以保护脆弱的重要设备。

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