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Structure and Topography Modifications of Treated AISI 316LN Stainless Steel Surfaces after Friction in Dry Sliding Contact by Case Hardening Process

机译:通过壳体硬化过程摩擦摩擦摩擦摩擦后处理和地形改性

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Austenitic stainless is having corrosion resistance property, but certain mechanical applications require improved resistance to wear, inferior cavitation, susceptibility to sensitization. These steels have numerous favourable circumstances for great cryogenic - properties, anti-corrosion, and bio-compatibility. So these steels have a broad application in low temperature innovation, saltwater applications, nourishment industry, bio-medicine, petro-chemical handling, and so forth when alloyed with nitrogen, austenitic treated steels has a progressively steady austenite structure, better mechanical properties and better wear opposition, which has animated extraordinary enthusiasm for this exploration work. Many surface hardening techniques are available, the best surface modification technique is chosen for improved service performance. Surface engineering is a technique to alter the surface of a material by mechanical or microchemical method without affecting the material properties. The alterations are done on the surfaces subjected to the liquid nitriding process to produce a hardened surface. Chosen for this research workbased on their wide application, the wear behaviour of AISI 316LN stainless steels was investigated. Of the various surface hardening techniques available, nitriding is chosen, so that these nitrogen gets penetrated into the material, in which hard iron chromium nitrides are formed at the surface level. AISI 316LN specimens were subjected to salt bath nitriding process. The specimens were nitrided to 60 minutes, 120 minutes and 180 minutes respectively. The specimens were undergone with wear tests by standardized tribiological wear machine and finally the metallographic studies were made.
机译:奥氏体不锈钢具有耐腐蚀性,但某些机械应用需要改善耐磨性,劣化,敏化易感性。这些钢具有许多有利的情况,可具有很大的低温性,抗腐蚀和生物相容性。因此,这些钢在低温创新,盐水应用,营养工业,生物医药,石油化学处理等方面具有广泛的应用,等等,奥氏体处理钢具有逐步稳定的奥氏体结构,更好的机械性能和更好穿着反对派,这对这项勘探工作进行了动画的非凡热情。有许多表面硬化技术可用,选择最佳表面修改技术,以提高服务性能。表面工程是一种通过机械或微型化学方法改变​​材料表面而不影响材料特性的技术。在经过液体氮化过程的表面上进行改变以产生硬化表面。选择了在广泛应用上工作的研究,研究了AISI 316LN不锈钢的磨损行为。在可获得的各种表面硬化技术中,选择氮化,使得这些氮气被渗透到材料中,其中硬铁铬氮化物形成在表面水平。对AISI 316LN标本进行盐浴氮化过程。试样分别氮化至60分钟,120分钟和180分钟。通过标准化的二手磨料机用磨损试验经历了试样,最后制造了金相研究。

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