Stradomski Grzegorz, Fik Joanna, Lis Zbigniew, Rydz Dariusz, Szarek Arkadiusz
Faculty of Production Engineering and Materials Technology, Czestochowa University of Technology, 19 Armii Krajowej Av., 42-201 Czestochowa, Poland.
Faculty of Science and Technology, Jan Dlugosz University in Czestochowa, Armii Krajowej Street 13/15, 42-200 Czestochowa, Poland.
Materials (Basel). 2024 Apr 21;17(8):1914. doi: 10.3390/ma17081914.
Duplex steel and cast steels have a wide range of applications in many industrial sectors, for example, oil extraction, printing, petrochemical industry, energy-exhaust gases desulphurization systems, seawater desalination plants, and the shipbuilding industry. The machine elements can be produced with different techniques, which determine the operational properties. A material with the same chemical composition made as a casting will have worse mechanical properties than, for example, a forged element. This depends on the microstructure, its fragmentation and its morphology. However, the costs of casting are lower than, for example, forging, and, in addition, not all shapes obtainable in the casting process can be made using metal-plastic working methods. This article presents research results concerning the influence of the burnishing process on the properties of the duplex cast steel surface layer. The purpose of the research was to verify the impact of static pressure roller burnishing (SPRB) parameters on the wear of the surface layer of duplex cast steel. The subject of the research was cast steel in the GX2CrNiMoN22-5-3 grade-according to PN-EN 10283:2019-that was burnished using 15 variants of technological parameters. Then, the samples were subjected to surface wear tests using the INSTRON 8874 device. On the basis of the observed wear appearances, the acting wear mechanisms are defined and evaluated according their contribution to the wear behavior. Detailed information about the wear phenomena will help industries to minimize their maintenance losses related to surface wear. The possibility of shaping surface properties by mechanical burnishing is part of the current direction of surface engineering development. This technology, combined with a high-potential material such as duplex cast steel, makes it possible to increase wear resistance.
双相钢和铸钢在许多工业领域有着广泛的应用,例如石油开采、印刷、石化行业、能源废气脱硫系统、海水淡化厂以及造船业。机械零件可以通过不同的工艺生产,这些工艺决定了其使用性能。化学成分相同的材料,铸造而成的零件其机械性能会比锻造零件差。这取决于微观结构、其破碎程度及其形态。然而,铸造成本低于锻造成本,此外,并非所有铸造工艺可获得的形状都能用金属塑性加工方法制造。本文介绍了关于抛光工艺对双相铸钢表面层性能影响的研究结果。该研究的目的是验证静压辊抛光(SPRB)参数对双相铸钢表面层磨损的影响。研究对象是符合PN - EN 10283:2019标准的GX2CrNiMoN22 - 5 - 3级铸钢,采用15种工艺参数组合进行抛光。然后,使用INSTRON 8874设备对样品进行表面磨损测试。根据观察到的磨损外观,确定作用的磨损机制,并根据它们对磨损行为的贡献进行评估。关于磨损现象的详细信息将有助于各行业将与表面磨损相关的维护损失降至最低。通过机械抛光来塑造表面性能的可能性是当前表面工程发展方向的一部分。这项技术与双相铸钢这种高潜力材料相结合,能够提高耐磨性。