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首页> 外文期刊>Mechanics of Advanced Materials and Structures >Assess the Accuracy of the Variational Asymptotic Plate and Shell Analysis Using the Generalized Unified Formulation
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Assess the Accuracy of the Variational Asymptotic Plate and Shell Analysis Using the Generalized Unified Formulation

机译:使用广义统一公式评估变分渐近板和壳分析的准确性

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摘要

The accuracy of the Variational Asymptotic Plate and Shell Analysis (VAPAS) is assessed against several higher order, zig zag, and layerwise theories generated by using the invariant axiomatic framework denoted as Generalized Unified Formulation (GUF). These theories are also compared against the elasticity solution developed for the case of a sandwich structure with high Face to Core Stiffness Ratio. GUF allows to use an infinite number of axiomatic theories (Equivalent Single Layer theories with or without zig-zag effects and Layerwise theories as well) with any combination of orders of the displacements and it is an ideal tool to precisely assess the range of applicability of the Variational Asymptotic Plate and Shell Analysis or other theories in general. In fact, all the axiomatic theories generated by GUF are obtained from the kernels or fundamental nuclei of the Generalized Unified Formulation and changing the order of the variables is "naturally" and systematically done with GUF. It is demonstrated that VAPAS achieves accuracy comparable to a fourth (or higher) order zig-zag theory or lower-order layerwise theories with the least number of Degrees of Freedom. The differences between the axiomatic zig-zag models and VAPAS are also assessed. Range of applicability of VAPAS will be discussed in detail and guidelines for new developments based on GUF and VAPAS are provided.
机译:可变渐近板和壳分析(VAPAS)的准确性是通过使用表示为统一统一公式(GUF)的不变公理框架生成的几种更高阶的,之字形和分层理论进行评估的。还将这些理论与针对具有高面心刚度比的夹心结构情况下开发的弹性解决方案进行了比较。 GUF允许以位移阶次的任意组合使用无数的公理理论(具有或不具有之字形效应的等效单层理论以及逐层理论),它是精确评估弹性模量适用范围的理想工具。一般采用变分渐近板壳分析或其他理论。实际上,GUF生成的所有公理理论都是从广义统一公式的内核或基本核中获得的,并且使用GUF可以“自然地”并系统地完成变量顺序的更改。事实证明,VAPAS具有与自由度数最少的四阶(或更高阶)之字形理论或低阶分层理论相当的精度。还评估了公理之字形模型和VAPAS之间的差异。将详细讨论VAPAS的适用范围,并提供基于GUF和VAPAS的新开发的指南。

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