Kozák Vladislav, Vala Jiří
Institute of Mathematics and Descriptive Geometry, Faculty of Civil Engineering, Brno University of Technology, 613 00 Brno, Czech Republic.
Materials (Basel). 2025 Apr 14;18(8):1787. doi: 10.3390/ma18081787.
The present study utilises the extended finite element method (XFEM) to model fibre-reinforced composites, with a focus on crack initiation and propagation. Silicon nitride-based ceramics were selected as a model material; they represent a broad class of short fibre ceramics and have received a lot of attention in recent decades. Some peculiarities when using the XFEM, including its selected modifications, are discussed in response to applied external stresses, mainly in the viscoelastic range. Promising approaches are recommended, which lead to a more accurate description of these materials under operating conditions, focusing on the correct calculation of the macroscopic stress ahead of the propagating crack front. The authors draw on years of experience with the material and investigate the possible improvements and modifications to the XFEM.
本研究采用扩展有限元法(XFEM)对纤维增强复合材料进行建模,重点关注裂纹的萌生和扩展。选择氮化硅基陶瓷作为模型材料;它们代表了一大类短纤维陶瓷,并且在近几十年受到了广泛关注。针对施加的外部应力,主要是在粘弹性范围内,讨论了使用XFEM时的一些特性,包括其选定的修正方法。推荐了一些有前景的方法,这些方法能够在运行条件下更准确地描述这些材料,重点是对扩展裂纹前沿前方宏观应力的正确计算。作者借鉴了多年来对该材料的经验,并研究了XFEM可能的改进和修正。