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Quadratic Solid–Shell Finite Elements for Geometrically Nonlinear Analysis of Functionally Graded Material Plates

机译:用于功能梯度材料板几何非线性分析的二次固态壳有限元

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摘要

In the current contribution, prismatic and hexahedral quadratic solid–shell (SHB) finite elements are proposed for the geometrically nonlinear analysis of thin structures made of functionally graded material (FGM). The proposed SHB finite elements are developed within a purely 3D framework, with displacements as the only degrees of freedom. Also, the in-plane reduced-integration technique is combined with the assumed-strain method to alleviate various locking phenomena. Furthermore, an arbitrary number of integration points are placed along a special direction, which represents the thickness. The developed elements are coupled with functionally graded behavior for the modeling of thin FGM plates. To this end, the Young modulus of the FGM plate is assumed to vary gradually in the thickness direction, according to a volume fraction distribution. The resulting formulations are implemented into the quasi-static ABAQUS/Standard finite element software in the framework of large displacements and rotations. Popular nonlinear benchmark problems are considered to assess the performance and accuracy of the proposed SHB elements. Comparisons with reference solutions from the literature demonstrate the good capabilities of the developed SHB elements for the 3D simulation of thin FGM plates.
机译:在当前的贡献中,提出了棱柱形和六面体二次固态(SHB)有限元用于功能梯度材料(FGM)制成的薄结构的几何非线性分析。拟议的SHB有限元是在纯3D框架内开发的,其中位移是唯一的自由度。而且,平面内减积分技术与假定应变方法相结合以减轻各种锁定现象。此外,沿着代表厚度的特殊方向放置任意数量的积分点。所开发的元素与功能分级的行为相结合,用于对FGM薄板进行建模。为此,假定FGM板的杨氏模量根据体积分数分布在厚度方向上逐渐变化。在大位移和旋转的框架中,将所得的公式实施到准静态ABAQUS /标准有限元软件中。考虑了流行的非线性基准问题,以评估所提出的SHB元件的性能和准确性。与文献中的参考解决方案进行比较,证明了开发的SHB元件具有良好的功能,可用于薄FGM板的3D模拟。

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