de Barros Neto João R, Monção Renan M, Naeem Muhammad, De Sousa Noleto Brenda J, Nunes Maelson S, Bandeira Rafael M, Castro Nicolau Apoena, Feitor Michelle C, Costa Thércio H De C, Libório Maxwell S, M De Sousa Rômulo R
Department of Materials Engineering, Federal University of Piauí, Teresina, Piauí 64049-550, Brazil.
Postgraduate Materials Science and Engineering Program, Federal University of Piauí, Teresina, Piauí 64049-550, Brazil.
ACS Omega. 2024 Sep 24;9(40):41711-41721. doi: 10.1021/acsomega.4c05906. eCollection 2024 Oct 8.
Increasing the mechanical strength of stainless steel is fundamental to expanding its applications and extending its useful life, especially due to its impressive corrosion resistance. However, many processes that make possible increasing the hardness and wear resistance of these steels also compromise their performance when they are subjected to corrosive environments. Because of the need to increase surface hardness without jeopardizing corrosion resistance, this study explores the impact of a surface mechanical rolling treatment (SMRT) with volumetric reductions of 50% and 70%, together with high-temperature plasma nitriding (PN) (450, 500, and 550 °C), on 316L steel. X-ray diffraction analysis analyzed the composition and structure of the resulting coatings. Mechanical strength was assessed using Vickers microhardness, while corrosion resistance was tested in a 3.5%-by-weight NaCl solution. The results indicate a substantial increase in surface hardness in all of the nitrided samples. Notably, the samples were subjected to rolling with 50% and 70% volumetric reduction, and subsequent nitriding at 550 °C showed a reduced impairment of corrosion resistance. This shows that the methodology adopted in this study, consisting of SMRT and PN, can increase the useful life and expand the applicability of stainless steels commonly used in various industry sectors.
提高不锈钢的机械强度对于扩大其应用范围和延长其使用寿命至关重要,特别是考虑到其出色的耐腐蚀性。然而,许多能够提高这些钢硬度和耐磨性的工艺,在它们处于腐蚀性环境中时,也会损害其性能。由于需要在不损害耐腐蚀性的情况下提高表面硬度,本研究探讨了体积减少率分别为50%和70%的表面机械轧制处理(SMRT),以及高温等离子体渗氮(PN)(450、500和550°C)对316L钢的影响。X射线衍射分析研究了所得涂层的成分和结构。使用维氏显微硬度评估机械强度,同时在质量分数为3.5%的NaCl溶液中测试耐腐蚀性。结果表明,所有渗氮样品的表面硬度都有显著提高。值得注意的是,经过50%和70%体积减少率轧制,随后在550°C进行渗氮的样品,其耐腐蚀性的受损程度有所降低。这表明本研究采用的由表面机械轧制处理和等离子体渗氮组成的方法,可以延长不锈钢在各个工业领域常用的使用寿命并扩大其适用性。