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Low-Temperature Nitriding of Deformed Austenitic Stainless Steels with Various Nitrogen Contents Obtained by Prior High-Temperature Solution Nitriding

机译:先前高温固溶氮化制备不同氮含量的变形奥氏体不锈钢的低温氮化

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摘要

In the past decades, high nitrogen steels (HNS) have been regarded as substitutes for conventional austenitic stainless steels because of their superior mechanical and corrosion properties. However, the main limitation to their wider application is their expensive production process. As an alternative, high-temperature solution nitriding has been applied to produce HNS from three commercially available stainless steel grades (AISI 304L, AISI 316, and EN 1.4369). The nitrogen content in each steel alloy is varied and its influence on the mechanical properties and the stability of the austenite investigated. Both hardness and yield stress increase and the alloys remain ductile. In addition, strain-induced transformation of austenite to martensite is suppressed, which is beneficial for subsequent low-temperature nitriding of the surface of deformed alloys. The combination of high- and low-temperature nitriding results in improved properties of both bulk and surface.
机译:在过去的几十年中,高氮钢(HNS)由于其优越的机械性能和耐腐蚀性能而被视为传统奥氏体不锈钢的替代品。但是,其广泛应用的主要限制是其昂贵的生产过程。作为替代方案,高温溶液氮化已应用于从三种市售不锈钢等级(AISI 304L,AISI 316和EN 1.4369)生产HNS。每种钢合金中的氮含量都不同,并且研究了其对奥氏体力学性能和稳定性的影响。硬度和屈服应力都增加,合金保持韧性。另外,抑制了由应变引起的奥氏体向马氏体的转变,这对于随后的变形合金表面的低温氮化是有利的。高温和低温氮化的结合导致整体和表面性能的改善。

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