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首页> 外文期刊>International Journal of Fatigue >A numerical study of crack shielding/anti-shielding in layered architectures
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A numerical study of crack shielding/anti-shielding in layered architectures

机译:分层架构裂缝屏蔽/防屏蔽的数值研究

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Previous research has indicated the potential effectiveness of adopting micro-scale layered architectures to improve the fatigue damage resistance of coatings. However, the optimisation of these coatings is difficult due to the existence of many different factors affecting fatigue performance in such micro-scale layered architectures. In particular, the interaction of successive shielding and anti-shielding processes on crack growth resistance is therefore addressed in this paper by numerical simulation analysis. The crack tip fields in a series of layered architectures were simulated based on varying assumed constitutive materials properties to reveal the interaction of shielding/anti-shielding characteristics in complex architectures in a simple exemplar system. The evolution of crack driving force (CDF) with crack length was calculated and linked to fatigue crack life under relatively simple conditions, including straight crack path and Paris law assumptions, to investigate the effect of the ordering of shielding/anti-shielding characteristics on the crack tip field and hence on fatigue crack life. Layered architectures with different numbers, ordering and placing of layers, were assessed and parametric studies of 4 layered architectures were carried out. This allows analysis of the effect of these individual factors on shielding and their interactive effect with anti-shielding in multi-layered architectures. Understanding the combined effect on crack growth performance and overall fatigue life controlled by crack propagation provides insight into the generic design of micro-scale layered architectures.
机译:以前的研究表明采用微尺度分层架构的潜在有效性,以提高涂层的疲劳损伤阻力。然而,由于存在许多影响这种微级分层架构中的疲劳性能的许多不同因素,这些涂层的优化是困难的。特别地,通过数值模拟分析,本文解决了连续屏蔽和抗屏蔽过程对裂纹生长阻力的相互作用。基于变化假定的本组形材料特性模拟了一系列分层架构中的裂缝尖端字段,以揭示在简单的示例系统中复杂架构中的屏蔽/防屏蔽特性的相互作用。在相对简单的条件下计算和与疲劳裂纹寿命的裂缝驱动力(CDF)的演变与疲劳裂缝寿命相对,包括直接裂纹路径和巴黎法律假设,以研究屏蔽/防屏蔽特性的排序对屏蔽/防屏蔽特性的影响裂缝尖端,从而疲劳裂缝寿命。分层架构具有不同的数量,订购和放置层,并进行了对4层架构的参数研究进行了评估。这允许分析这些个性因素对屏蔽的影响及其在多层架构中的抗屏蔽中的互动效果。了解裂纹传播控制的裂缝增长性能和整体疲劳寿命的综合影响为微尺度分层架构的通用设计提供了深入。

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