In the present paper, a new parabolic shear deformation beam theory is developed and applied to investigate the bending behavior of functionally graded (FG) sandwich curved beam. The present theory is exploited to satisfy parabolic variation of shear stress distribution along the thickness direction thereby obviating the use of any shear correction factors. The material properties of FG sandwich beam change continuously from one surface to another according to a power-law function. Three common configurations of FG beams are used for the study, namely: (a) single layer FG beam; (b) sandwich beam with FG face sheets and homogeneous core and (c) sandwich beams with homogeneous face sheets and FG core. The governing equations derived herein are solved by employing the finite element method using a two-noded beam element, developed for this purpose. The robustness and reliability of the developed finite element model are demonstrated by comparing its results with those available by other researchers in existing literature. The comparison studies show that the proposed model is: (a) accurate and comparable with the literature; b) of fast rate of convergence to the reference solution; c) excellent in terms of numerical stability and d) valid for FG sandwich curved beams. Moreover, comprehensive numerical results are presented and discussed in detail to investigate the effects of volume fraction index, radius of curvature, material distributions, length-to-thickness ratio, face-to-core-thickness ratio, loadings and boundary conditions on the static response of FG curved sandwich beam. New referential results are reported which will be serve as a benchmark for future research.
翻译:在本文件中,开发并应用了新的抛光剪切变形光束理论,以调查功能级(FG)三明治三明治曲线横梁的弯曲行为。本理论用于满足厚度方向上剪切应力分布的抛光变异,从而避免使用任何剪剪校正因子。FG三明治束的物质特性根据权力法函数,从一个表面向另一个表面不断变化。FG光束的三种共同结构用于研究,即:(a) 单层FG光束的曲线;(b) 与FG面板和同质核心的三明治比重;(c) 夹面板和FG核心的三明治比重。本理论用于满足剪切面压力分布的偏差分布,通过使用为此目的开发的两点光线元素来解析定的定因子方法。开发的限定要素模型的坚固性和可靠性通过比较其与其他研究人员现有文献中提供的结果而得到证明。比较研究表明,拟议的模型是:(a) 准确和可比的与FG面表层表和直线核心的粘度核心的粘度的比值;bb) 精确度的精确度的精确度的精确度的比值的精确比值,其精确度的比值的比值的比值,其结果的比值的比值将用作的比值的比值的比值的比值的比值的比值的比值的比值比值,其精确性比值,其比值的比值的比值的比值,其比值,其精确值,其精确值,其比值的比值的比值的比值的比值的比值,其比值的比值的比值的比值的比值的比值,其比值的比值的比值,其比值比值比值比值的比值的比值的比值的比值,其比值,其比值的比值,其比值的比值的比值的比值的比值的比值的比值的比值的比值的比值,其比值的比值的比值的比值的比值的比值的比值的比值的比值的比值的比值的比值的比值的比值,其值,其值,其值,其比值