论文标题

通过分支在弯曲的弱界面上通过分支停滞:一项实验和数值研究

Crack arrest through branching at curved weak interfaces: an experimental and numerical study

论文作者

Aranda, M. T., Garcia, I. G., Reinoso, J., Mantic, V., Paggi, M.

论文摘要

研究了由于弯曲的弱界面引起的不及时增长裂纹的停滞现象。弱界面可以产生裂纹路径的偏差,捕获界面处的裂纹,从而导致某些界面几何形状的裂纹生长。这个想法可以用作新型裂纹捕捞剂的技术解决方案,对结构的全球刚度,强度和重量产生了可观的影响。为了利用这一概念,进行了基于光弹性和数字图像相关性的实验活动,显示了弯曲的弱接口可以阻止裂纹的能力。通过修改界面曲率半径,重复几种几何结构的实验。还在基于有限元方法的计算模型的帮助下研究了裂纹偏差和随后停滞的现象。计算预测为解释实验观测的解释提供了理由,并区分了凹面和凸接口的不同行为。因此,如本研究所示,弯曲界面概念促进了获得具有增强断裂抗性能力的结构的新途径,这对于在极端条件下使用的材料和组件至关重要。

The phenomenon of arrest of an unstably-growing crack due to a curved weak interface is investigated. The weak interface can produce the deviation of the crack path, trapping the crack at the interface, leading to stable crack growth for certain interface geometries. This idea could be used as a technical solution for a new type of crack arrester, with a negligible impact on the global stiffness, strength and weight of the structure. In order to exploit this concept, an experimental campaign based on photo-elasticity and digital image correlation is carried out, showing the capability of curved weak interfaces to arrest cracks. The experiment is repeated for several geometrical configurations through the modification of the interface curvature radii. The phenomenon of crack deviation and subsequent arrest at the interface is also investigated with the assistance of a computational model based on the finite element method. The computational predictions provide the rationale for the interpretation of the experimental observations, and distinguish between the different behaviour of concave and convex interfaces. Consequently, as is shown in the present study, the curved interface concept fosters new routes for the attainment of structures with enhanced fracture resistance capacities, which are of paramount importance for materials and components used in extreme conditions.

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