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Simulation Analysis of Reducing Vibration Based on Piezoelectricity Intelligent Board

机译:基于压电智能板的减振仿真分析

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Intelligent structure was applied widely to aviation and space flight. Intelligent structures are embedded intelligent material in or stick to based body as sensors and activators, which have the functions of sense, identification, judgment controlling and actuation. It introduces the activating control to counteract the original vibration, to reduce the structure vibration. The finite element method, as one of the most efficient numerical value methods, is used to analysis of intelligent structure. The finite equation of intelligent cantileverpiston and its model are established, carry out its' finite element analysis and optimum design. The conclusion is that the chief stress on the root of structure is maximal, so it is the optimal position to distribute PZTs. With the outer force increase, more activators are needed to control simultaneously and the reduced vibration effect is very evidently. The activators' shape has great effect on reducing vibration except the position and number.
机译:智能结构被广泛应用于航空航天。智能结构是将智能材料嵌入或粘在基体中作为传感器和激活器,它们具有感知,识别,判断控制和驱动的功能。它引入了激活控制以抵消原始振动,以减少结构振动。有限元法是最有效的数值方法之一,用于智能结构的分析。建立了智能悬臂活塞的有限方程及其模型,进行了有限元分析和优化设计。结论是结构根部的主应力最大,因此是分布PZT的最佳位置。随着外力的增加,需要更多的活化剂来同时进行控制,降低的振动效果非常明显。除位置和数量外,活化剂的形状对减少振动有很大影响。

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