基于XFEM的Al 6082-T6 CT试样裂纹扩展疲劳分析

Q3 Materials Science
Ciro Coscione, Francesco Caputo, Guseppe Lamanna
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引用次数: 0

摘要

本研究旨在探讨在构件设计阶段预测裂纹萌生和扩展的可能性,以提高其力学性能。这项工作的第一阶段侧重于收集可用于裂纹扩展分析的数值模型的知识。最通用的模型是XFEM,它允许分析连续域内不连续点的位移场。为了进一步完善数值模型,还实施了连续损伤模型(CDM)和巴黎法等附加子模型。通过参考文献中的实验数据,可以建立两种不同的数值模型,它们显示出良好的数值-实验相关性。这表明数值模型可以通过采用更复杂的几何形状和材料进一步优化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Fatigue Analysis for Crack Propagation on Al 6082-T6 CT Specimen Using XFEM Method

Fatigue Analysis for Crack Propagation on Al 6082-T6 CT Specimen Using XFEM Method

This research aims to investigate the possibility of predicting the initiation and propagation of cracks during the design phase of a component to increase its mechanical performance. The first phase of this work focuses on collecting knowledge about numerical models that can be used for crack propagation analysis. The most versatile model is the XFEM, which allows for the analysis of displacement fields of discontinuities inside a continuous domain. To further refine the numerical model, additional sub-models such as continuum damage modelling (CDM) and Paris' Law have also been implemented. By referencing experimental data available in the literature, it was possible to develop two different numerical models, which showed a good numerical-experimental correlation. This suggests that the numerical model can be further optimized by employing more complex geometries and materials.

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来源期刊
Macromolecular Symposia
Macromolecular Symposia Materials Science-Polymers and Plastics
CiteScore
1.50
自引率
0.00%
发文量
226
期刊介绍: Macromolecular Symposia presents state-of-the-art research articles in the field of macromolecular chemistry and physics. All submitted contributions are peer-reviewed to ensure a high quality of published manuscripts. Accepted articles will be typeset and published as a hardcover edition together with online publication at Wiley InterScience, thereby guaranteeing an immediate international dissemination.
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