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首页> 外文期刊>Structural Engineering and Mechanics >Analyzing the contact problem of a functionally graded layer resting on an elastic half plane with theory of elasticity, finite element method and multilayer perceptron
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Analyzing the contact problem of a functionally graded layer resting on an elastic half plane with theory of elasticity, finite element method and multilayer perceptron

机译:用弹性理论,有限元方法和多层观众分析在弹性半平面上搁置的功能渐变层的接触问题

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摘要

This paper presents a comparative study of analytical method, finite element method (FEM) and Multilayer Perceptron (MLP) for analysis of a contact problem. The problem consists of a functionally graded (FG) layer resting on a half plane and pressed with distributed load from the top. Firstly, analytical solution of the problem is obtained by using theory of elasticity and integral transform techniques. The problem is reduced a system of integral equation in which the contact pressure are unknown functions. The numerical solution of the integral equation was carried out with Gauss-Jacobi integration formulation. Secondly, finite element model of the problem is constituted using ANSYS software and the two-dimensional analysis of the problem is carried out. The results show that contact areas and the contact stresses obtained from FEM provide boundary conditions of the problem as well as analytical results. Thirdly, the contact problem has been extended based on the MLP. The MLP with three-layer was used to calculate the contact distances. Material properties and loading states were created by giving examples of different values were used at the training and test stages of MLP. Program code was rewritten in C++. As a result, average deviation values such as 0.375 and 1.465 was obtained for FEM and MLP respectively. The contact areas and contact stresses obtained from FEM and MLP are very close to results obtained from analytical method. Finally, this study provides evidence that there is a good agreement between three methods and the stiffness parameters has an important effect on the contact stresses and contact areas.
机译:本文介绍了分析方法,有限元法(FEM)和多层感知(MLP)的比较研究,用于分析接触问题。问题包括在半平面上搁置的功能渐变(FG)层,并从顶部按下分布式负载。首先,通过使用弹性理论和整体变换技术来获得问题的分析解决方案。该问题减少了一种整体方程系统,其中接触压力是未知的功能。通过高斯 - 雅戈积分制剂进行整体方程的数值解。其次,使用ANSYS软件构成问题的有限元模型,并执行对问题的二维分析。结果表明,从FEM获得的接触区域和接触应力提供了问题的边界条件以及分析结果。第三,联系问题已基于MLP扩展。用三层的MLP用于计算接触距离。通过在MLP的训练和测试阶段提供不同值的实施例来创建材料性质和装载状态。程序代码在C ++中重写。结果,分别为有限元和MLP获得了平均偏差值,例如0.375和1.465。从FEM和MLP获得的接触区域和接触应力非常接近于从分析方法获得的结果。最后,本研究提供了证据表明,三种方法之间存在良好的一致性,并且刚度参数对接触应力和接触区域具有重要影响。

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