热等离子喷涂NiTi涂层的显微组织-孔隙率-硬度评价

IF 3.3 Q2 ENGINEERING, MANUFACTURING
Sneha Samal, Jakub Zeman, Stanislav Habr, Oliva Pacherová, Mohit Chandra, Jaromír Kopeček, Petr Šittner
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引用次数: 0

摘要

镍钛涂层的质量影响等离子喷涂材料的热性能、显微组织和力学性能。为了了解涂层的行为,研究人员在两种不同的等离子体功率和不同的进给速率下进行了设计和计划。镍钛作为一种形状记忆层,在基材表面具有抗腐蚀或磨损的保护作用。在本研究中,采用热等离子体喷涂技术制备了NiTi (50 at)多层膜。%)粉末作为原料。这项工作说明了微观结构的研究,涂层的孔隙率,相位检测,硬度值,形状记忆行为,以及不同喷涂参数产生的样品的形成。根据孔隙的各种形状因素与样品的硬度和力学行为的关系,分析了涂层内的孔隙率。本工作将探讨涂层的孔隙率和致密性,这将影响形状记忆行为的性能。NiTi的功能涂层对材料的耐腐蚀性能的耐久性有重要的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation of Microstructure–Porosity–Hardness of Thermal Plasma-Sprayed NiTi Coating Layers
The quality of NiTi coating influences the thermal, microstructural, and mechanical behavior of the material produced by plasma spraying. To understand the behavior of the coating, the study has been designed and planned at two different plasma powers with various feed rates. NiTi as shape memory layers emerge as promising protective coatings on the surface of substrates against corrosion or wear. In the present investigation, NiTi multilayers were produced by thermal plasma spraying using NiTi (50 at. %) powder as the feedstock material. This work illustrates the studies of the microstructure, porosity of the coating layers, phase detection, hardness values, shape memory behavior, and the formation of samples produced by different spraying parameters. The porosity within coating layers has been analyzed based on the various shape factors of pores that correlate with the hardness and mechanical behavior of the samples. This work will explore the quality of the coating in terms of its porosity and compactness, which will affect the performance of the shape memory behavior. The functional coating of NiTi will have a significant influence on the durability of the material’s performance against corrosion.
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来源期刊
Journal of Manufacturing and Materials Processing
Journal of Manufacturing and Materials Processing Engineering-Industrial and Manufacturing Engineering
CiteScore
5.10
自引率
6.20%
发文量
129
审稿时长
11 weeks
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