首页> 外文会议>Proceedings of the 32nd International Conference on Metallurgical Coatings and Thin Films (ICMCTF-32 2005) >Impact angle effects on the erosion–corrosion of superlattice CrN/NbN PVD coatings
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Impact angle effects on the erosion–corrosion of superlattice CrN/NbN PVD coatings

机译:冲击角对超晶格CrN / NbN PVD涂层腐蚀和腐蚀的影响

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摘要

Wastage due to the combined effects of erosion and corrosion is a serious issue in a wide range of industrial environments. The extent of wastage is dependent on a range of parameters relating to properties of the particle, target and the environment. In such cases, surface engineering (through providing a protective coating) may be used to avoid the deleterious effects of both processes. In recent years, there has been an increasing interest in the potential of CrN/NbN superlattice PVD coatings to provide resistance to erosion–corrosion in such conditions. Initial studies on the effects of velocity have shown that they significantly outperform conventional coatings, although the behaviour depends on the conditions. There is however, poor understanding on the effects of many important tribological variables, such as particle size and impact angle, on the performance of such coatings. In this work, the effect of impact angle on the erosion–corrosion of a range of CrN/NbN superlattice coatings was assessed at a range of applied potentials in a carbonate/bicarbonate solution. The mechanisms of erosion–corrosion of the coatings, as a function of impact angle and applied potential, showed significant differences when these parameters were varied. Erosion–corrosion maps were constructed based on these results showing the change in mechanisms and wastage rates as a function of impact angle and applied potential. Possible reasons for the differences in erosion–corrosion regimes for coated and uncoated specimens are described in this paper. D 2004 Elsevier B.V. All rights reserved.
机译:在各种工业环境中,由于腐蚀和腐蚀的综合作用而造成的浪费是一个严重的问题。浪费的程度取决于与颗粒,目标和环境的特性有关的一系列参数。在这种情况下,可以使用表面工程设计(通过提供保护涂层)来避免这两个过程的有害影响。近年来,人们越来越关注CrN / NbN超晶格PVD涂层在这种条件下提供抗腐蚀的能力。对速度影响的初步研究表明,尽管其性能取决于条件,但它们明显优于常规涂料。但是,人们对许多重要的摩擦学变量(例如粒径和冲击角)对此类涂层性能的影响了解甚少。在这项工作中,在碳酸盐/碳酸氢盐溶液中的一系列施加电势下,评估了冲击角对一系列CrN / NbN超晶格涂层的腐蚀-腐蚀的影响。当这些参数发生变化时,涂层的腐蚀-腐蚀机理与冲击角和施加电势的关系显示出显着差异。根据这些结果绘制了腐蚀-腐蚀图,显示了机理和损耗率随冲击角和施加电势的变化。本文描述了涂层和未涂层​​试样腐蚀-腐蚀方式不同的可能原因。 D 2004 Elsevier B.V.保留所有权利。

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