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Theories and Finite Elements for Multilayered Plates and Shells: A Unified Compact Formulation with Numerical Assessment and Benchmarking

机译:多层板和壳的理论和有限元:具有数值评估和基准的统一紧凑公式

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This work is a sequel of a previous author's article: "Theories and Finite Elements for Multilayered, Anisotropic, Composite Plates and Shell", Archive of Computational Methods in Engineering Vol 9, no 2, 2002; in which a literature overview of available modelings for layered flat and curved structures was given. The two following topics, which were not addressed in the previous work, are detailed in this review: 1. derivation of governing equations and finite element matrices for some of the most relevant plate/shell theories; 2. to present an extensive numerical evaluations of available results, along with assessment and benchmarking. The article content has been divided into four parts. An introduction to this review content is given in Part Ⅰ. A unified description of several modelings based on displacements and transverse stress assumptions is given in Part Ⅱ. The order of the expansion in the thickness directions has been taken as a free parameter. Two-dimensional modelings which include Zig-Zag effects, Interlaminar Continuity as well as Layer-Wise (LW), and Equivalent Single Layer (ESL) description have been addressed. Part Ⅲ quotes governing equations and FE matrices which have been written in a unified manner by making an extensive use of arrays notations. Governing differential equations of double curved shells and finite element matrices of multilayered plates are considered. Principle of Virtual Displacements (PVD) and Reissner's Mixed Variational Theorem (RMVT), have been employed as statements to drive variationally consistent conditions, e.g. C_z~0-Requirements, on the assumed displacements and transverse stress fields. The number of the nodes in the element has been taken as a free parameter. As a results both differential governing equations and finite element matrices have been written in terms of a few 3 x 3 fundamental nuclei which have 9 only terms each. A vast and detailed numerical investigation has been given in Part Ⅳ. Performances of available theories and finite elements have been compared by building about 40 tables and 16 figures. More than fifty available theories and finite elements have been compared to those developed in the framework of the unified notation discussed in Parts Ⅱ and Ⅲ. Closed form solutions and and finite element results related to bending and vibration of plates and shells have been addressed. Zig-zag effects and interlaminar continuity have been evaluated for a number of problems. Different possibilities to get transverse normal stresses have been compared. LW results have been systematically compared to ESL ones. Detailed evaluations of transverse normal stress effects are given. Exhaustive assessment has been conducted in the Tables 28-39 which compare more than 40 models to evaluate local and global response of layered structures. A final Meyer-Piening problem is used to asses two-dimensional modelings vs local effects description.
机译:这项工作是先前作者文章的续集:“多层,各向异性,复合板和壳的理论和有限元”,《工程计算方法》,第9卷,第2期,2002年;其中对分层的平面和弯曲结构的可用模型进行了文献综述。这篇综述详细介绍了以下两个主题,这些主题在以前的工作中没有解决:1.为一些最相关的板/壳理论推导控制方程和有限元矩阵; 2.对可用结果进行广泛的数值评估,以及评估和基准测试。文章内容分为四个部分。在第一部分中介绍了该评论的内容。第二部分给出了基于位移和横向应力假设的几种模型的统一描述。厚度方向上的膨胀顺序被视为自由参数。已经解决了二维模型,其中包括Zig-Zag效应,层间连续性以及明智层(LW)和等效单层(ESL)描述。第三部分引用了控制方程和有限元矩阵,这些方程和有限元矩阵通过广泛使用数组符号以统一的方式编写。考虑了双曲壳的控制微分方程和多层板的有限元矩阵。虚拟位移原理(PVD)和Reissner的混合变分定理(RMVT)已被用作陈述来驱动变化一致的条件,例如C_z〜0-要求,关于假定的位移和横向应力场。元素中的节点数已作为自由参数。结果,微分控制方程和有限元矩阵都用几个3 x 3基本核来写,每个基本核只有9个项。第四部分进行了广泛而详细的数值研究。通过构建约40张表格和16位图形,比较了可用理论和有限元的性能。与在第二部分和第三部分中讨论的统一符号框架中开发的理论和有限元相比,已有50多种理论和有限元进行了比较。已经解决了与板和壳体的弯曲和振动有关的闭合形式解和有限元结果。对于许多问题,已经评估了之字形效应和层间连续性。比较了获得横向法向应力的不同可能性。已将LW结果与ESL结果进行了系统比较。给出了横向法向应力影响的详细评估。在表28-39中进行了详尽的评估,比较了40多个模型以评估分层结构的局部和全局响应。最终的迈耶-派宁问题用于评估二维建模与局部效果描述。

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