Minimum Deflection Design of Piezothermoelastic Laminated Composite Plates

T. R. Tauchert, S. Adali, V. Verijenko, Alexa Richter
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引用次数: 1

Abstract

The converse piezo effect is used to minimize the deflection of a given point for antisymmetrically laminated rectangular plates. The piezoelectric layers are bonded to the top and bottom surfaces of the laminate and are subjected to an electrical field. The deformation generated by the piezo effect counteracts the deflections induced by mechanical and/or thermal loads. Moreover, the ply angles can be used as additional design variables to minimize the deflection. In the numerical examples, the mid-point of the plate is specified as the point deflection of which is to be minimized. It is shown that, depending on the magnitudes of the mechanical and thermal loads, the deflection of this point can be reduced to zero by applying a certain voltage to piezoelectric layers.
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压热弹性层合复合材料板的最小挠度设计
反向压电效应用于最小化一个给定点的挠度对不对称层合矩形板。压电层粘合在层压板的顶部和底部表面,并受到电场的作用。压电效应产生的变形抵消了由机械和/或热载荷引起的挠度。此外,铺层角可以用作附加的设计变量,以尽量减少挠度。在数值算例中,将板的中点指定为其挠度最小的点。结果表明,根据机械载荷和热载荷的大小,通过对压电层施加一定的电压,该点的挠度可以减小到零。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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