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Effect of aluminum concentration on friction and wear properties of titanium aluminum nitride films

机译:铝浓度对氮化钛铝膜摩擦磨损性能的影响

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It is well known that the hard thin ceramic films are utilized to industrial applications such as cutting tools, molding dies and sliding parts, because of its effect of reducing the wear. Recently, the demand of TiAlN film is expanding, because it has a high oxidation resistance at elevated temperature as well as good wear resistance. In this paper, friction and wear properties of TiAlN films having various concentration ratios of Ti/Al have been studied. The films were deposited by a cathodic arc ion plating method on cemented carbide substrate with a thickness of approximately 3 mum. Composition of the deposited film was evaluated by energy dispersive X-ray spectroscopy. Crystal structure of the deposited film was characterized by X-ray diffraction. Hardness of the films was measured by a nano-indentation tester. Friction and wear tests were carried out by a pin-on-disk tribometer at 300, 473, 673 and 873 K. Compositions of the films deposited from cathode materials that have atomic ratios (Ti:AI) of 50:50, 34:66 and 25:75 in TiAl alloys were Ti0.6Al0.4N, Ti0.42Al0.58N and Ti0.3Al0.7N, respectively. The crystal structure of Ti0.6Al0.4N Ti0.42Al0.58N and Ti0.3Al0.7N were found to be a B1, B4+B1 and B4, respectively. Nano-hardness decreased with increasing Al content in the films. There is no correlation between friction coefficient of each film and test temperature. The width of wear track for each film decreased above the temperature of 673 K. Ti0.6Al0.4N film was worn less than the other films at 873 K. (C) 2003 Elsevier B.V. All rights reserved. [References: 8]
机译:众所周知,硬质陶瓷薄膜由于其减少磨损的作用而被用于工业应用,例如切削工具,模具和滑动部件。近来,由于TiAlN膜在高温下具有高抗氧化性以及良好的耐磨性,因此对TiAlN膜的需求正在扩大。在本文中,已经研究了具有各种浓度的Ti / Al的TiAlN膜的摩擦和磨损性能。通过阴极电弧离子镀方法将膜沉积在厚度约为3μm的硬质合金衬底上。通过能量色散X射线光谱法评价沉积膜的组成。通过X射线衍射表征沉积膜的晶体结构。膜的硬度通过纳米压痕测试仪测量。摩擦和磨损测试是通过销钉盘式摩擦计在300、473、673和873 K上进行的。从阴极材料沉积的膜的组成具有原子比(Ti:Al)为50:50、34:66在TiAl合金中,Ti0.6Al0.4N,Ti0.42Al0.58N和Ti0.3Al0.7N分别为25:75和25:75。发现Ti0.6Al0.4N,Ti0.42Al0.58N和Ti0.3Al0.7N的晶体结构分别为B1,B4 + B1和B4。纳米硬度随膜中铝含量的增加而降低。每个膜的摩擦系数与测试温度之间没有相关性。在673 K的温度以上,每张膜的磨损痕迹宽度减小。在873 K时,Ti0.6Al0.4N膜的磨损少于其他膜。(C)2003 Elsevier B.V.保留所有权利。 [参考:8]

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