等离子喷涂铁基非晶涂层不同滑动条件下磨损机理演变

IF 3.2 3区 材料科学 Q2 MATERIALS SCIENCE, COATINGS & FILMS Journal of Thermal Spray Technology Pub Date : 2024-11-12 DOI:10.1007/s11666-024-01874-5
Md Akif Faridi, Sapan K. Nayak, D. K. V. D. Prasad, Saed Enam Mustafa, D. Arvindha Babu, J. K. N. Murthy, Tapas Laha
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引用次数: 0

摘要

本文研究了大气等离子喷涂法制备铁基非晶/纳米晶涂层在不同滑动磨损参数(外加载荷、滑动速度和滑动距离)下的摩擦学机理。为了解不同磨损参数的作用,采用田口法设计实验,并对实验结果进行方差分析。结果表明,滑动速度是影响大气等离子喷涂铁基非晶/纳米晶涂层磨损率的最重要因素。基于不同的磨损机理,全面了解了滑动参数对磨损过程的影响。研究发现,低滑动速度以磨粒磨损为主,高滑动速度以疲劳磨损为主,少量磨粒磨损。有趣的是,施加载荷和滑动距离的改变并没有引起磨损机制本身的转变;相反,它们表现为磨损机制的严重程度或程度的变化。随着滑动速度和载荷的增加,涂层表面的闪蒸温度和反相材料在磨损过程中的动能都与磨损程度有关。相反,随着滑动距离的增加,涂层的磨损率降低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Evolution of Wear Mechanism Under Different Sliding Conditions of an Fe-Based Amorphous Coating Synthesized by Plasma Spraying

In the present work, tribological mechanisms under different sliding wear parameters, viz. applied load, sliding speed, and sliding distance, have been investigated in an Fe-based amorphous/ nanocrystalline coating synthesized by atmospheric plasma spraying. To understand the role of different wear parameters, Taguchi method was employed to design the experiments, and the results were analyzed using analysis of variance. The results revealed that sliding speed is the most significant contributing factor for wear rate of Fe-based amorphous/ nanocrystalline coating deposited by atmospheric plasma spraying process. A comprehensive understanding of influence of the sliding parameters on the wear process was understood based on different wear mechanisms. It was found that low sliding speeds resulted in predominantly abrasive wear, while high sliding speed led to mainly fatigue wear with a minor amount of abrasive wear. Interestingly, alterations in applied load and sliding distance did not induce a transformation in the wear mechanism itself; rather, they manifested in variations in the severity or extent of the wear mechanism. Increase in sliding speed and applied load led to an increase in the extent of wear loss, which was correlated with flash temperature on the coating surface and kinetic energy of the countermaterial during the wear process. On the contrary, increase in sliding distance caused a decrease in wear rate of the coating.

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来源期刊
Journal of Thermal Spray Technology
Journal of Thermal Spray Technology 工程技术-材料科学:膜
CiteScore
5.20
自引率
25.80%
发文量
198
审稿时长
2.6 months
期刊介绍: From the scientific to the practical, stay on top of advances in this fast-growing coating technology with ASM International''s Journal of Thermal Spray Technology. Critically reviewed scientific papers and engineering articles combine the best of new research with the latest applications and problem solving. A service of the ASM Thermal Spray Society (TSS), the Journal of Thermal Spray Technology covers all fundamental and practical aspects of thermal spray science, including processes, feedstock manufacture, and testing and characterization. The journal contains worldwide coverage of the latest research, products, equipment and process developments, and includes technical note case studies from real-time applications and in-depth topical reviews.
期刊最新文献
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