首页> 外文期刊>Journal of mechanics of materials and structures >GEOMETRICALLY NONLINEAR THERMOMECHANICAL RESPONSE OF CIRCULAR SANDWICH PLATES WITH A COMPLIANT CORE
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GEOMETRICALLY NONLINEAR THERMOMECHANICAL RESPONSE OF CIRCULAR SANDWICH PLATES WITH A COMPLIANT CORE

机译:具有顺应性的圆形夹芯板的几何非线性热力学响应

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摘要

The geometrically nonlinear response of a circular sandwich plate that consists of two face sheets and a compliant ("soft") core with mechanical properties that may be either independent or dependent of temperature and subjected to both mechanical loads and thermal induced deformations, but remain elastic linear throughout the loading process, is presented. The mathematical formulation follows the principles of the high-order sandwich panel theory (HS APT) and includes the vertical flexibility of the core in addition to the temperature dependency of the mechanical properties of the core material. The mathematical formulation outlines the set of governing partial differential equations as well the appropriate boundary conditions for a general sandwich layout. The particular case of an axisymmetric circular sandwich plate subjected to axisymmetric mechanical and thermal loads, and with axisymmetric boundary conditions is studied analytically and numerically. The numerical study includes an interaction of mechanical and thermal loads which is presented through results within the plate for various load levels of various structural quantities as well as equilibrium curves of temperatures versus these structural quantities. The results reveal that the combination of mechanical and thermal loads along with a compliant core material with mechanical properties that degrade with increasing temperatures shifts the behavior from a linear and stable (strength controlled) response into a strongly nonlinear response with limit point behavior and associated loss of stability, when large displacements and large rotations (geometrical nonlinearity) are included in the modeling.
机译:圆形夹心板的几何非线性响应,该夹心板由两个面板和一个柔顺的(“软”)芯组成,其柔韧性可以独立于或依赖于温度,并且既受机械载荷又受热引起变形,但保持弹性线性在整个加载过程中。数学公式遵循高阶夹芯板理论(HS APT)的原理,除芯材机械性能的温度依赖性外,还包括芯材的垂直柔韧性。数学公式概述了支配的偏微分方程组以及一般三明治式布局的适当边界条件。对轴对称圆形夹心板在轴对称的机械和热载荷作用下以及轴对称边界条件下的特殊情况进行了分析和数值研究。数值研究包括机械载荷和热载荷的相互作用,这是通过板内各种结构量的各种载荷水平的结果以及温度与这些结构量的平衡曲线得出的。结果表明,机械载荷和热载荷以及顺应性芯材的组合具有随温度升高而降低的机械性能,将行为从线性和稳定(强度控制)响应转变为具有极限点行为和相关损耗的强烈非线性响应建模中包括大位移和大旋转(几何非线性)时的稳定性。

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