MIXED-MODE STRESS INTENSITY FACTOR EVALUATION BY INTERACTION INTEGRAL METHOD UNDER THERMAL AND MECHANICAL LOADS

IF 0.5 Q4 ENGINEERING, MULTIDISCIPLINARY Journal of the Serbian Society for Computational Mechanics Pub Date : 2022-11-01 DOI:10.24874/jsscm.2022.16.01.08
Ait Ferhat Yazid, Blaoui Mohamed Mossaab, Chorfi Hichem, Abacha Ilyes, Benchikh Lilia, Kebaili Maya, B. Abdelkader
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引用次数: 1

Abstract

The objective of this study is to present numerical aspects related to the implementation of the interaction integral method for the purpose of determining the stress intensity factors in mode I and mixed-mode crack problems of functionally graded materials (FGM) and homogenous materials for a different form of cracking. This numerical development is based on the use of the finite element method (FEM), by the coupling of the Ansys-Matlab calculation codes. To validate the accuracy and reliability of the approach, the results obtained will be compared with other numerical results in the literature. The interaction integral method is one of the methods most compatible with the formulation of the finite element method. Therefore, we are interested in this study, in terms of the presentation of necessary steps which allow the resolution of a problem by finite elements for the mechanical problems. It is very important to note that the principle of the implementation of the “Integral M” technique is using scripts based on the coupling of two commercial software.
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热载荷和机械载荷作用下混合模态应力强度因子的相互作用积分法评价
本研究的目的是介绍与相互作用积分法实施相关的数值方面,以确定不同形式裂纹的功能梯度材料(FGM)和均质材料的模式I和混合模式裂纹问题中的应力强度因子。该数值开发是在使用有限元法(FEM)的基础上,通过耦合Ansys的Matlab计算代码实现的。为了验证该方法的准确性和可靠性,将获得的结果与文献中的其他数值结果进行比较。相互作用积分法是最符合有限元法公式的方法之一。因此,我们对这项研究感兴趣,因为它提供了必要的步骤,可以通过有限元来解决力学问题。需要注意的是,“Integral M”技术的实现原则是使用基于两个商业软件耦合的脚本。
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