首页> 外文会议>ASME(American Society of Mechanical Engineers) Pressure Vessels and Piping Conference 2006 vol.2: Computer Technology >NONLINEAR STATIC ANALYSIS OF ORTHOTROPIC PIEZOELECTRIC SHALLOW CYLINDRICAL SHELL ON ELASTIC FOUNDATION
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NONLINEAR STATIC ANALYSIS OF ORTHOTROPIC PIEZOELECTRIC SHALLOW CYLINDRICAL SHELL ON ELASTIC FOUNDATION

机译:弹性地基上正交各向异性压电扁圆柱壳的非线性静力分析

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摘要

With growth and emergence in the field of adaptive materials, the need arises to study their applications in the field of structural, aerodynamic, aerospace and other fields. These materials can be used as sensors, transducers, and actuators. Although their basic constitutive relations are already developed, but there is still a great deal of scope left in the field of applications. With this aim, a nonlinear static analysis of orthotropic piezoelectric shallow cylindrical shell on Pasternak foundation is investigated in the present work. Basic formulation of the problem is based on strain energy concept, and the governing differential equations are obtained by using Euler's variational principle. Galerkin error minimization technique has been used to solve the governing differential equations. The results are presented for simply supported immovable edge boundary condition. Influences of shell geometry, foundation parameter, and piezoelectric properties on load-deflection characteristics for different radius-to-thickness ratios are studied. Numerical results have been obtained for different values of geometrical parameters in terms of load, displacement, and electric potential. Geometrical parameters are represented through non-dimensional entities η=a~2/Rh, λ = Ka~4/D_(11), and anti mu = Ga~2/D_(11).The resultsrnare compared with nonlinear static analysis of an orthotropic shallow cylindrical shell without piezoelectric layer on Pasternak foundation. It is observed that an increase in the value of piezoelectric constant decreases the deflection of the shallow cylindrical shell under the identical values.
机译:随着自适应材料领域的发展和出现,有必要研究其在结构,空气动力学,航空航天和其他领域中的应用。这些材料可用作传感器,传感器和执行器。尽管它们的基本本构关系已经开发出来,但在应用领域仍然有很多范围。为此,本文研究了Pasternak地基上正交各向异性压电浅圆柱壳的非线性静力分析。该问题的基本表述基于应变能的概念,并利用欧拉变分原理获得了控制微分方程。 Galerkin误差最小化技术已用于求解控制微分方程。给出了简单支持的不可移动边界条件的结果。研究了壳体几何形状,基础参数和压电特性对不同半径-厚度比的载荷-挠度特性的影响。对于几何参数的不同值,在载荷,位移和电势方面均获得了数值结果。几何参数通过无量纲实体η= a〜2 / Rh,λ= Ka〜4 / D_(11)和反mu = Ga〜2 / D_(11)表示。正交各向异性的浅圆柱壳,在Pasternak基础上没有压电层。观察到,在相同值下,压电常数值的增加减小了浅圆柱壳的挠曲。

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