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首页> 外文期刊>Tribology Transactions >Microstructure and Wear Properties Analysis of TiAlN Film Deposited on Cam Profile Using Ion Sputtering
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Microstructure and Wear Properties Analysis of TiAlN Film Deposited on Cam Profile Using Ion Sputtering

机译:离子溅射沉积在凸轮轮廓上的TiAlN薄膜的组织和磨损性能分析

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摘要

In this study ion beam sputtering deposition was used as a new surface formation technology for strengthening cam surface during the manufacturing process of indexing cam mechanism. Phase exchanging deformation can be avoided in this manufacturing process. Compared to surface quenching processes, the shape accuracy and dimension accuracy can be improved using this method. The microstructure and properties of TiAlN composite film deposited on the profile surface of a cam (made of AISI 1045 steel) by ion beam sputtering deposition were discussed. The microstructural characterizations were analyzed by X-ray diffraction (XRD) and scanning electron microscopy (SEM). It is shown that the fundamental Bragg peak of {111} in TiAlN coatings increased with a bias voltage reduction. The grain size is about 1 μm. The friction coefficient was tested by a rotating wear tester at different loads and speeds. The minimum friction coefficient can be achieved at 0.187.
机译:在这项研究中,离子束溅射沉积被用作在转位凸轮机构制造过程中强化凸轮表面的新表面形成技术。在该制造过程中可以避免相交换变形。与表面淬火工艺相比,使用这种方法可以提高形状精度和尺寸精度。讨论了通过离子束溅射沉积在凸轮(由AISI 1045钢制成)的轮廓表面上沉积的TiAlN复合膜的微观结构和性能。通过X射线衍射(XRD)和扫描电子显微镜(SEM)分析了微结构特征。结果表明,TiAlN涂层中{111}的基本布拉格峰随偏压的降低而增加。晶粒尺寸为约1μm。摩擦系数通过旋转磨损测试仪在不同的负载和速度下进行测试。最小摩擦系数可以达到0.187。

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