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An equivalent single layer shear deformation plate theory with superposed shape functions for laminated composite plates

机译:一种等效的单层剪切变形板理论,具有层压复合板叠加形状函数

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A SINGLE LAYER SHEAR DEFORMATION PLATE THEORY WITH SUPERPOSED SHAPE FUNCTIONS for laminated composite plates has been proposed. Some of the previously developed, five degrees of freedom shear deformation theories, including parabolic [1], hyperbolic [2], exponential [3] and trigonometric [4] plate theories have been superposed by applying different theories in the different in- plane directions of the composite plate. Statics and dynamics of composite plate problems have been investigated. It was obtained that using different shape functions in the different in-plane directions may decrease the percentage error of stress and deflection. Present hyperbolic-exponential and parabolic-exponential theories predict stiffer properties (give lower bending and stress values, and higher frequency, and buckling loads when compared to the 3-D elasticity). Some improvements were determined for y-z component of the transverse shear stress using hyperbolic-exponential and parabolic-exponential theories for symmetric cross-ply composite plates when compared to available single shape function plate models. Global behaviours (vibration frequency and critical buckling loads) are predicted within %5 accuracy similar to plate theories with single shape functions.
机译:提出了一种具有用于层压复合板叠加形状函数的单层剪切变形板理论。一些以前开发的,五程度的自由剪切变形理论,包括抛物线[1],双曲线[2],指数[3]和三角[4]板理论已经通过应用于不同的面内方向上的不同理论叠加复合板。研究了复合板问题的静态和动态。获得的是,在不同面内方向上使用不同的形状函数可以降低应力和偏转的百分比误差。目前的双曲指数和抛物线指数理论可预测更硬的性能(在与3-D弹性相比时,较低的弯曲和应力值,较高的频率,以及弯曲载荷)。与可用的单个形状功能板型号相比,使用双曲指数和抛物线指数理论确定横向剪切应力的Y-Z分量的一些改进。全局行为(振动频率和关键屈曲负载)预测在与具有单个形状函数的平板理论相似的%5精度范围内。

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