Evolution of the crack patterns in nanostructured films with subsequent wetting and drying cycles

Dave McIlroy, L. Pauchard
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Abstract

Crack patterns in coatings present various morphologies as a signature of the matter to external stresses. Brittle films generally show a network of connected cracks due to a hierarchical formation process. On the contrary, non-sequential crack growth leads to a different morphology with few junctions. The present work focuses on the evolution of both crack networks under the effect of repeated stresses. The experimental work is performed through porous thin films over subsequent wetting and drying processes. The non-connected network of cracks is investigated through nanostructured films exhibiting compliant and elastic properties. Over repeated stresses, this crack network evolves until it reaches stabilization. The stabilization appears when the cracks stop growing and a shielding effect occurs. This behaviour is compared with a more classical connected network of cracks that do not evolve in the plane under the effect of repeated processes.
纳米结构薄膜的裂纹图案随随后的润湿和干燥循环而演变
涂层中的裂纹形态各异,是外部应力作用的标志。脆性薄膜在分层形成过程中通常会出现连接的裂纹网络。相反,非连续的裂纹生长会导致不同的形态,很少有连接点。本研究的重点是这两种裂纹网络在重复应力作用下的演变。实验工作是通过多孔薄膜在随后的润湿和干燥过程中进行的。非连接的裂缝网络通过具有顺应性和弹性特性的纳米结构薄膜进行研究。在反复的应力作用下,这种裂纹网络不断演变,直至达到稳定。当裂纹停止生长并产生屏蔽效应时,稳定化就出现了。我们将这种行为与在重复应力作用下不在平面上演化的传统连通裂纹网络进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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