Russo A, Palumbo C, Riccio A
University of Campania "L. Vanvitelli", Department of Engineering, via Roma, 29, 81031, Aversa, CE, Italy.
Heliyon. 2023 Apr 3;9(4):e15060. doi: 10.1016/j.heliyon.2023.e15060. eCollection 2023 Apr.
Delamination is a major failure mode affecting laminated composite structures. This failure mechanism, if not properly monitored, can lead to uncontrolled cracks growth and premature structural collapse. Thus, predicting delamination propagation is mandatory to determine the structural integrity. At present, delamination has been extensively investigated in laminated composite structures but only a few studies have been performed on how the intralaminar damages influence the interfacial release energy and, consequently, the delamination evolution. In this paper, the well-established SMart-Time XB delamination simulation tool, has been coupled with a Hashin Criteria based User-Material Subroutine (UserMat) to study the role of the intralaminar damages in delamination propagation. A benchmark case based on the mixed-mode I/II Single Leg Bending (SLB) specimen for delamination evolution assessment under quasi-static loading has been investigated. Subsequently, a composite material plate, characterized by an artificial circular delamination, under compression has been considered. This study proved to be valuable by underlining the influence of fibre and matrix breakage on the interlaminar damages evolution. Interestingly, taking into account the effect of intralaminar flaws changes the local energy release rates values on the delamination front and, consequently, the crack shape and evolution.
分层是影响层合复合材料结构的一种主要失效模式。这种失效机制如果没有得到适当监测,可能会导致裂纹不受控制地扩展以及结构过早坍塌。因此,预测分层扩展对于确定结构完整性至关重要。目前,分层在层合复合材料结构中已得到广泛研究,但关于层内损伤如何影响界面释放能量以及进而影响分层演变的研究却很少。本文将成熟的SMart-Time XB分层模拟工具与基于Hashin准则的用户材料子程序(UserMat)相结合,以研究层内损伤在分层扩展中的作用。研究了一个基于混合模式I/II单腿弯曲(SLB)试件的基准案例,用于在准静态载荷下评估分层演变。随后,考虑了一个具有人工圆形分层的复合材料板在压缩载荷下的情况。这项研究通过强调纤维和基体断裂对层间损伤演变的影响而被证明是有价值的。有趣的是,考虑层内缺陷的影响会改变分层前沿的局部能量释放率值,从而改变裂纹形状和演变。