Abrasive Wear Resistance of Nodular Cast Iron After Selected Surface Heat and Thermochemical Treatment Processes

IF 0.6 Q4 METALLURGY & METALLURGICAL ENGINEERING Archives of Foundry Engineering Pub Date : 2024-07-19 DOI:10.24425/afe.2024.151287
C. Baron, M. Stawarz, A. Studnicki, J. Jezierski, T. Wróbel, R. Dojka, M. Lenert, K. Piasecki
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Abstract

The article presents the test results on the technology of surface hardening of castings from unalloyed and low-alloy nodular cast iron using the method of surface heat treatment, i.e., induction surface hardening and methods of thermochemical treatment, i.e. gas nitriding, nitrocarburizing, and nitrocarburizing with oxidation. The scope of research included macro- and microhardness measurements using Rockwell and Vickers methods, respectively, as well as metallographic microscopic examinations using a light microscope. Furthermore, abrasive wear resistance tests were performed using the pin-on-disk method in the friction pair of nodular cast iron – SiC abrasive paper and the reciprocating method in the friction pair of nodular cast iron – unalloyed steel. Analysis of the test results shows that the size and depth of surface layer hardening strongly depend on the chemical composition of the nodular cast iron, determining its hardenability and its ability to create diffusion layers. Medium induction surface hardening made it possible to strengthen the surface layer of the tested nodular cast irons to the level of 700 HV0.5 with a hardening depth of up to approximately 4000μm, while various variants of thermochemical treatment provided surface hardness of up to 750 HV0.5 with a hardening depth of up to approximately 200μm. Furthermore, induction surface hardening increased the resistance to abrasive wear of nodular cast iron castings, depending on the test method, by an average of 70 and 45%, while thermochemical treatment on average by 15 and 60%.
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经过选定的表面热处理和热化学处理工艺后的球墨铸铁的耐磨损性
文章介绍了使用表面热处理方法(即感应表面硬化)和热化学处理方法(即气体渗氮、软氮化和氧化软氮化)对非合金和低合金球墨铸铁铸件进行表面硬化的技术试验结果。研究范围包括分别使用洛氏硬度和维氏硬度方法进行宏观和微观硬度测量,以及使用光学显微镜进行金相显微检查。此外,还在球墨铸铁-SiC 砂纸摩擦副中使用了盘上针法,在球墨铸铁-非合金钢摩擦副中使用了往复法,进行了耐磨性测试。对试验结果的分析表明,表面硬化层的大小和深度在很大程度上取决于球墨铸铁的化学成分,决定了其淬透性和形成扩散层的能力。中度感应表面硬化可使受试球墨铸铁的表层强度达到 700 HV0.5,硬化深度可达约 4000μm,而各种热化学处理变体的表面硬度可达 750 HV0.5,硬化深度可达约 200μm。此外,根据不同的测试方法,感应表面硬化可将球墨铸铁铸件的抗磨料磨损性能平均提高 70% 和 45%,而热化学处理可将其平均提高 15% 和 60%。
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来源期刊
Archives of Foundry Engineering
Archives of Foundry Engineering METALLURGY & METALLURGICAL ENGINEERING-
CiteScore
1.10
自引率
16.70%
发文量
0
期刊介绍: Thematic scope includes scientific issues of foundry industry: Theoretical Aspects of Casting Processes, Innovative Foundry Technologies and Materials, Foundry Processes Computer Aiding, Mechanization, Automation and Robotics in Foundry, Transport Systems in Foundry, Castings Quality Management, Environmental Protection. Why subscribe and read
期刊最新文献
Casting Production in Poland Versus European Trends in 21st Century Effect of Composition and Pouring Temperature of Cu-Sn on Fluidity and Mechanical Properties of Investment Casting Kinetic Model for the Decomposition Rate of the Binder in a Foundry Sand Application Abrasive Wear Resistance of Nodular Cast Iron After Selected Surface Heat and Thermochemical Treatment Processes Comparison of the Mechanical Properties of Ductile Cast Iron Intended for Gas Gate Valves with Nickel Cast Iron with an Austenitic Matrix
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