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Structural and tribological characterization of amorphous and crystalline titanium-nickel coatings

机译:无定形和结晶钛镀镍涂层的结构和摩擦学特征

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摘要

The interest in titanium-nickel (TiNi) alloys has increased with the discovery of the versatile properties of these alloys. In this study, the structural, mechanical and tribological properties of amorphous and crystalline TiNi coatings were investigated. The TiNi coatings were deposited with magnetron sputtering system. The crystallization process was conducted in a vacuum heat treatment furnace. The structural properties of the coatings were investigated with XRD, SEM and EDS analyses. Micro-hardness and pin-on-disc wear tests were used to obtain the mechanical and tribological properties of the coatings. AISI D2 steel, AISI 52100 steel, Aluminum 2024 alloy and copper were used as substrate materials, hence the effects of different substrates were also investigated. The highest coating hardness was obtained as 8.5 GPa and the lowest coefficient of friction value was obtained as 0.18. The tribological tests showed that the amorphous and crystalline TiNi coatings have different coefficient of friction and wear rate and using different substrate affects these properties.
机译:随着这些合金的通用性质的发现,对钛 - 镍(TINI)合金的兴趣增加。在该研究中,研究了无定形和结晶TINI涂层的结构,机械和摩擦学特性。用磁控溅射系统沉积TINI涂层。结晶过程在真空热处理炉中进行。用XRD,SEM和EDS分析研究涂层的结构性。使用微硬度和引脚盘磨损试验来获得涂层的机械和摩擦学性质。 AISI D2钢,AISI 52100钢,铝2024合金和铜用作底物材料,因此还研究了不同底物的影响。获得最高涂层硬度为8.5GPa,获得最低系数摩擦值为0.18。摩擦学检测表明,无定形和结晶色素涂层具有不同的摩擦系数和磨损率,并使用不同的底物影响这些性质。

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