首页> 外文期刊>Journal of thermal stresses >OPTIMUM STRUCTURE DESIGN OF A MULTILAYER PIEZO-COMPOSITE DISK FOR CONTROL OF THERMAL STRESS
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OPTIMUM STRUCTURE DESIGN OF A MULTILAYER PIEZO-COMPOSITE DISK FOR CONTROL OF THERMAL STRESS

机译:控制热应力的多层压电复合材料盘的最佳结构设计

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This article deals with a control problem of a thermal stress in a composite circular disk consisting of a transversely isotropic structural layer onto which multiple piezoelectric layers with concentrically arranged electrodes are perfectly bonded. When a prescribed heating temperature distribution acts on the structural layer surface, the optimum structure design of the composite disk is performed so that the maximum thermal stress in the structural layer is minimized subject to constraints on stresses in the piezoelectric layers. A hybrid optimization technique combining the particle swarm optimization with the simplex method is employed for solving the optimum design problem. To resolve the difficulty in solving the problem with many optimization variables, three improvements are added to the hybrid optimization technique and an efficient design method is introduced. For a composite disk constructed of a CFRP layer and cadmium selenide layers, the layer thicknesses, the electrode dimensions, and the voltages applied to the electrodes are determined and the numerical results are presented in tabular and graphical forms. Finally, it is shown from the optimum design results that the highest suppression ratio of the maximum thermal stress reaches 40.8% in the case of a five-layer composite disk and is considered to be almost saturated.
机译:本文涉及由圆形各向同性的结构层组成的复合圆盘中的热应力控制问题,在该结构上,多个压电层与同心排列的电极完美地结合在其上。当规定的加热温度分布作用在结构层表面上时,进行复合盘的最佳结构设计,从而使结构层中的最大热应力最小化,这取决于压电层中的应力。结合粒子群优化和单纯形法的混合优化技术被用于解决最优设计问题。为了解决使用许多优化变量解决问题的困难,对混合优化技术进行了三项改进,并介绍了一种有效的设计方法。对于由CFRP层和硒化镉层构成的复合盘,确定层厚度,电极尺寸和施加到电极的电压,并以表格和图形形式显示数值结果。最后,从最佳设计结果可以看出,在五层复合盘的情况下,最大热应力的最高抑制率达到40.8%,并被认为接近饱和。

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