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Influence of Plastic Deformation on Low-Temperature Surface Hardening of Austenitic Stainless Steel by Gaseous Nitriding

机译:塑性变形对气态氮化对奥氏体不锈钢低温表面硬化的影响

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摘要

This article addresses an investigation of the influence of plastic deformation on low-temperature surface hardening by gaseous nitriding of two commercial stainless steels: EN 1.4369 and AISI 304. The materials were plastically deformed to several levels of equivalent strain by conventional tensile straining, plane strain compression, and shear. Gaseous nitriding of the strained material was performed in ammonia gas at atmospheric pressure at various temperatures. Microstructural characterization of the as-deformed state and the nitrided case produced included X-ray diffraction analysis, reflected-light microscopy, and microhardness testing. The results demonstrate that a case of expanded austenite develops and that the presence of plastic deformation has a significant influence on the morphology of the nitrided case. The presence of strain-induced martensite favors the formation of CrN, while a high dislocation density in a fully austenitic structure does not lead to such premature nucleation of CrN.
机译:本文着重研究了塑性变形对气态氮化的两种商用不锈钢EN 1.4369和AISI 304的塑性变形对低温表面硬化的影响。通过传统的拉伸应变,平面应变,将材料塑性变形至等效应变的几个水平压缩和剪切。应变材料的气态氮化是在大气压下于不同温度的氨气中进行的。变形态和渗氮后的组织的微观结构表征包括X射线衍射分析,反射光显微镜和显微硬度测试。结果表明,出现了奥氏体膨胀的情况,塑性变形的存在对渗氮的组织的形态有重大影响。应变诱导马氏体的存在有利于CrN的形成,而在完全奥氏体组织中的高位错密度不会导致CrN的这种过早成核。

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