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Assessment of MITC plate elements based on CUF with respect to distorted meshes

机译:基于CUF相对于扭曲网眼的MITC板元件评估

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This paper discusses the robustness of plate elements based on Mixed Interpolation of Tensorial Components (MITC) technique and the variable kinematics approach of Carrera Unified Formulation (CUF) with respect to the problem of distorted meshes. MITC was originally proposed for Reissner-Mindlin type plates to develop shear locking free plate elements. In the present framework, refined plate elements are obtained by referring to high-order Equivalent Single Layer as well as Layer-Wise models expressed in CUF for the analysis of multilayered anisotropic structures. Four-node and nine-node elements are considered and some applications are developed for both isotropic and multilayered composite plates. Results related to the MITC approach are compared to the isoparametric elements, including selectively reduced quadrature schemes, for both, the static and free-vibration analysis. They show that CUF-MITC elements maintain their effectiveness also in the case of distorted meshes, for all the materials studied and kinematic models considered: the obtained elements are robust as free from shear locking and spurious zero-energy modes.
机译:本文讨论了基于姿态成分(MITC)技术的混合插值的板元件的鲁棒性和Carrera统一配方(CUF)的变量运动学方法关于扭曲网眼的问题。最初提出了MITC用于reissner-mindlin型板,以开发剪切锁定自由板元件。在本框架中,通过参考高阶等同的单层以及在CUF中表达的层面模型来获得精制的板元件,用于分析多层各向异性结构。考虑四个节点和九节点元素,为各向同性和多层复合板开发了一些应用。与MITC方法相关的结果与等偶像元件进行比较,包括静态和自由振动分析的选择性降低的正交方案。它们表明,对于所考虑的所有材料和运动模型的所有材料,CUF-MITC元件也保持其有效性,所以可以考虑的所有材料:所获得的元件非常鲁棒免于剪切锁定和虚假零能量模式。

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