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Mechanical Properties of TiN Coating on Nanocrystalline Surface Layer of 304 Stainless Steel

机译:304不锈钢纳米晶表面层TiN涂层的力学性能

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Surface nanocrystallization (SNC) can markedly improve surface mechanical properties of metallic materials and accelerate thermal diffusion of elemental atoms. In this work we study the effects of SNC on structure and mechanical properties of TiN coating on 304 stainless steel substrate. The steel was subjected to 15 min surface mechanical attrition treatment (SMAT) to obtain a nanocrystalline surface layer with thickness about 30 μm. TiN coating was deposited on the surface nanocrystallized and the coarse-grained steel substrates by multi-arc ion plating. X-ray diffraction shows that TiN(lll) orientation of the coating is much reduced due to SNC treatment. Mechanical tests show that the nanocrystalline surface layer has obviously increased surface hardness of the coating system; toughness and adhesion of the coating, impact resistance of the coating system are also improved. Advantages of SNC-hard coating processing over the conventional duplex treatment consisting of thermal diffusion process-hard coating are shortly discussed.
机译:表面纳米晶体化(SNC)可显着改善金属材料的表面力学性能并加速元素原子的热扩散。在这项工作中,我们研究了SNC对304不锈钢基材锡涂层结构和力学性能的影响。将钢进行15分钟的表面机械磨损处理(SMAT),得到厚度约为30μm的纳米晶体表面层。通过多电弧离子镀层沉积在表面纳米晶体和粗粒钢基板上的锡涂层。 X射线衍射表明,由于SNC处理,涂层的锡(LLL)取向大大降低。机械试验表明,纳米晶体表面层明显增加了涂层系统的表面硬度;涂层的韧性和粘附性,还改善了涂层系统的抗冲击性。不久地讨论了由热扩散过程硬涂层组成的传统双工处理的SNC硬涂层处理的优点。

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