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Interactive visualization of elasto-plastic behavior through stress paths and yield surfaces in finite element analysis

机译:在有限元分析中通过应力路径和屈服面对弹塑性行为进行交互式可视化

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This paper proposes a new approach for representing elasto-plastic behavior through graphical visualization of the yield surface and the stress path in the principal stress space. The yield surface is defined by the material parameters of a given yield criterion, and the stress path is formed by a number of stress points, each of which is obtained for every increment in the applied force. The superposed images of the yield surface and the stress path can be used as a tool for interpreting the results of finite element analysis based on the assumed elasto-plastic yield theory. The paper describes how to construct the stress path and the yield surface by following procedures ranging from data extraction to graphical rendering. It suggests a framework for the interactive control of visualization and data sampling. Geometric modeling of the yield surface is formulated for various failure criteria that are frequently used in finite element analysis. Examples of stress path and yield surface visualization are presented herein to demonstrate the practical use of this approach. All of the features described in this paper can be implemented easily as a post-processing capability in finite element analysis programs.
机译:本文提出了一种通过屈服面和主应力空间中应力路径的图形化可视化表示弹塑性行为的新方法。屈服面由给定屈服准则的材料参数定义,应力路径由多个应力点形成,每个应力点都是在施加力的每个增量中获得的。屈服面和应力路径的叠加图像可以用作解释基于假定的弹塑性屈服理论的有限元分析结果的工具。本文介绍了如何按照从数据提取到图形绘制的过程来构造应力路径和屈服面。它为可视化和数据采样的交互式控制提供了一个框架。针对有限元分析中经常使用的各种破坏准则,制定了屈服面的几何模型。本文介绍了应力路径和屈服面可视化的示例,以演示该方法的实际使用。本文中描述的所有功能都可以轻松实现为有限元分析程序中的后处理功能。

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