薄硬耐蚀涂层构件疲劳性能研究进展

S. Baragetti, Francesco Villa
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引用次数: 9

摘要

在本文中,对物理气相沉积(PVD)和化学气相沉积(CVD)薄硬涂层疲劳行为的实验和数值表征的最新进展进行了广泛的回顾。分析了目前PVD和CVD处理的应用和发展领域,重点介绍了采用这些涂层对各种材料和部件进行防腐所具有的优势。本文报道了近年来有关PVD和CVD涂层试样疲劳行为的实验研究结果。给出了不同涂层工艺在不同基体上的疲劳强度值,包括硬钢以及铝和钛合金。为了评估涂层在腐蚀性环境中的有效性,在可用的情况下,提出了涂层试样的腐蚀疲劳效应。概述了涂层部件表征的理论和数值模型的现状,并为失效的最大循环次数向读者提出。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An Updated Review of the Fatigue Behavior of Components Coated with Thin Hard Corrosion-Resistant Coatings
In the present manuscript, an extended review on the state of the art on the experimental and numerical characterization of the fatigue behavior of Physically Vapor Deposited (PVD) and Chemically Vapor Deposited (CVD) thin hard coatings is presented. The current application and development fields of PVD and CVD treatments are analysed, focusing on the advantages granted by the adoption of these coatings for corrosion protection on various materials and components. The most recent experimental research results related to the fatigue behavior of PVD and CVD coated specimens are reported. Fatigue strength values are presented for various coating processes on different substrates, including hard steel as well as aluminium and titanium light alloys. Corrosion fatigue effects on coated specimens are presented where available, in order to evaluate the coating effectiveness in aggressive environments. An overview on the current state of development of theoretical and numerical models for the characterization of coated components and for the maximum number of cycles to failure is proposed to the reader.
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