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Crack channelling mechanisms in brittle coating systems under moisture or temperature gradients

机译:水分或温度梯度下脆性涂层系统中的裂缝通道机制

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Crack channelling is predicted in a brittle coating-substrate system that is subjected to a moisture or temperature gradient in the thickness direction. Competing failure scenarios are identified, and are distinguished by the degree to which the coating-substrate interface delaminates, and whether this delamination is finite or unlimited in nature. Failure mechanism maps are constructed, and illustrate the sensitivity of the active crack channelling mechanism and associated channelling stress to the ratio of coating toughness to interfacial toughness, to the mismatch in elastic modulus and to the mismatch in coefficient of hygral or thermal expansion. The effect of the ratio of coating to substrate thickness upon the failure mechanism and channelling stress is also explored. Closed-form expressions for the steady-state delamination stress are derived, and are used to determine the transition value of moisture state that leads to unlimited delamination. Although the results are applicable to coating-substrate systems in a wide range of applications, the study focusses on the prediction of cracking in historical paintings due to indoor climate fluctuations, with the objective of helping museums developing strategies for the preservation of art objects. For this specific application, crack channelling with delamination needs to be avoided under all circumstances, as it may induce flaking of paint material. In historical paintings, the substrate thickness is typically more than ten times larger than the thickness of the paint layer; for such a system, the failure maps constructed from the numerical simulations indicate that paint delamination is absent if the delamination toughness is larger than approximately half of the mode I toughness of the paint layer. Further, the transition between crack channelling with and without delamination appears to be relatively insensitive to the mismatch in the elastic modulus of the substrate and paint layer. The failure maps developed in this work may provide a useful tool for museum conservators to identify the allowable indoor humidity and temperature fluctuations for which crack channelling with delamination is prevented in historical paintings.
机译:在脆性涂层衬底系统中预测裂缝通道,其在厚度方向上经受水分或温度梯度。鉴定竞争失败情景,并以涂层衬底接口分层的程度分类,以及该分层是否有限或无限制。构建故障机制图,并说明了主动裂纹通道机构的灵敏度和相关的信道应力与涂覆韧性与界面韧性的比率,以弹性模量的错配,并在抽搐或热膨胀系数中的不匹配。还探讨了涂层与衬底厚度在故障机构和信道应力下的效果。推导出用于稳态分层应力的闭合表达,并用于确定水分状态的过渡值,导致无限分层。虽然结果适用于涂层基板系统,但研究由于室内气候波动,研究侧重于历史绘画中的开裂预测,目的是帮助博物馆制定艺术物品保存策略的目标。对于这种特定的应用,需要在所有情况下避免具有分层的裂缝通道,因为它可能会诱导涂料材料的剥落。在历史绘画中,基板厚度通常大于涂料层厚度的十倍。对于这样的系统,由数值模拟构成的故障映射表明如果分层韧性大于涂料层的韧性的大约一半的大约一半,则不存在涂料分层。此外,裂缝沟道之间的过渡与且没有分层的裂缝沟道似乎对基板和涂料层的弹性模量中的不匹配相对不敏感。本工作中开发的故障映射可能为博物馆保护商提供有用的工具,以确定在历史绘画中防止易于使用分层的裂缝疫苗的允许室内湿度和温度波动。

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