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Interfacial crack arrest in sandwich beams subjected to fatigue loading using a novel crack arresting device – Numerical modelling

机译:采用新型止裂装置对夹层梁进行疲劳荷载时的界面止裂 - 数值模拟

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摘要

A novel crack arresting device is implemented in foam-cored composite sandwich beams and tested using the Sandwich Tear Test (STT) configuration. A finite element model of the setup is developed, and the predictions are correlated with observations and results from a recently conducted experimental fatigue test study. Based on a linear elastic fracture mechanics approach, the developed FE model is utilised to simulate crack propagation and arrest in foam-cored sandwich beam specimens subjected to fatigue loading conditions. The effect of the crack arresters on the fatigue life is analysed, and the predictive results are subsequently compared with the observations from the previously conducted fatigue tests. The FE model predicts the energy release rate and the mode mixity based on the derived crack surface displacements, utilising algorithms for the prediction of accelerated fatigue crack growth as well as the strain field evolution in the vicinity of the crack tip on the surface of the sandwich specimens. It is further shown that the developed finite element analysis methodology can be used to gain a deeper insight onto the physics and behavioural characteristics of the novel peel stopper concept, as well as a design tool that can be used for the implementation of crack arresting devises in engineering applications of sandwich components and structures.
机译:一种新型的止裂装置在泡沫芯复合夹层梁中实现,并使用三明治撕裂测试(STT)配置进行了测试。开发了该装置的有限元模型,并将预测与最近进行的实验疲劳试验研究的观察结果相联系。基于线性弹性断裂力学方法,开发的有限元模型用于模拟疲劳载荷条件下泡沫芯夹心梁试样的裂纹扩展和滞留。分析了裂纹消除器对疲劳寿命的影响,随后将预测结果与先前进行的疲劳测试的观察结果进行了比较。有限元模型基于导出的裂纹表面位移来预测能量释放速率和模式混合,利用算法来预测加速疲劳裂纹的增长以及三明治表面裂纹尖端附近的应变场演化标本。进一步表明,开发的有限元分析方法可用于深入了解新型剥离塞概念的物理特性和行为特性,以及可用于实施裂纹止动装置的设计工具。夹层构件和结构的工程应用。

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