利用面向对象的 XFEM 实现双斜裂缝重叠对混合应力强度因子的影响

Rebadj Chabane, Sabah Moussaoui, M. Belgasmia
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引用次数: 0

摘要

研究对象是二维(2D)板材的混合模式应力强度因子(MMSIF)。随着现代技术和先进创新的出现,建筑项目的设计、实施和管理的发展和改进变得更加容易。然而,要制造出没有不可避免的缺陷(如裂缝)的构件是非常困难的,这些缺陷会导致材料老化,并最终缩短其使用寿命。扩展有限元法(XFEM)基于使用统一分割概念的局部富集区过程,克服了标准有限元法在非连续性(裂纹)建模和数值模拟方面的局限性,同时获得了其普遍优势。这使得 XFEM 成为近年来功能强大、应用广泛的数字工具。不连续面(裂缝)领域最常见的问题之一是各向同性裂缝板中多条裂缝并存的现象,必须研究这种现象对裂缝应力强度因子的影响程度,以获得更高的安全可靠性。在此基础上,由于扩展有限元的重要性和众所周知的优点,采用了改进的面向对象编程 (OOP)。本文确定了二维板的 MMSIF,以显示角的相外取向的影响,以及两条倾斜裂缝并置的影响。研究结果表明,本研究获得的结果与文献报道的结果以及理论值之间的趋同性非常显著,而且两者之间的吻合度很高。未来,基于本研究中阐述的以灵活性、可扩展性和模块性为代表的面向对象方法的特点,除了复杂的三维工业问题外,还可以丰富本建议的方法,以包括线性或非线性异质材料建模、动态裂纹扩展等。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Double inclined cracks overlapping effect on mixed stress intensity factors using XFEM object-oriented implementation
The object of research is the Mixed Mode Stress Intensity Factor (MMSIF) of a two-dimensional (2D) plate. With the emergence of modern technologies and advanced innovations which contribute to the development and improvement of the design, implementation and management of construction projects, it has become easier. However, it is very difficult to manufacture components free from unavoidable defects, such as cracks, which lead to material deterioration and ultimately shorten its service life. Based on the process of local enrichment region using partition of unity concept, the extended finite element method (XFEM) has overcome the limitations of the standard FEM method in terms of modeling and numerical simulation of discontinuities (cracks) while gaining its general advantages. This makes XFEM a powerful and widely used digital tool in recent years. One of the most frequently raised problems in the discontinuities field (cracks) is the phenomenon of juxtaposition of multiple cracks in a cracked isotropic plate, which must be studied to determine the extent of its effect on the crack stress intensity factor in order to obtain higher safety reliability. On this basis, an improved object-oriented programming (OOP) with extended finite elements was used because of its great importance and well-known benefits. In this paper, the MMSIF of a 2D plate is determined to show the effect of the out-of-phase orientation of the angle, as well as the effect of the juxtaposition of two inclined cracks. As a result of the research, it is shown that, the convergence between the results obtained in this study with those reported in the literature, and to theoretical values is remarkable, and their close agreement was noted. In the future, based on the object-oriented approach characteristics represented by flexibility, scalability, and modularity, which were explained in this research, this proposed approach can be enriched to include heterogeneous materials modeling, whether linear or nonlinear, crack propagation in dynamics, in addition to Complex 3D industrial problems.
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