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Microstructure and Tribological Properties of Ti(C,N)/a-C Gradient Composite Films

机译:Ti(C,N)/ a-C梯度复合薄膜的微观结构和摩擦学性能

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摘要

Ti(C, N)/a-C composite films with Ti-containing a-C layer deposited on multilayer Ti(C, N) layer, prepared by sputtering of graphite and titanium targets with closed-field unbalanced magnetron sputtering, have been characterized and measured with X-ray diffraction, transmission electron microscopy, microhardness tester and pin-on-disk tester. Results show that the bottom layers of the composite film exhibit multilayer structure consisting of fine nanocolumnar Ti(C, N) grains and the top layers of the film consist of 2-7 nm TiC nanocrystallites embedded in an amorphous C matrix. As increase of rotation speeds of the substrate, a transition from a multilayer nano-grain to a columnar-grain microstructure has been observed in the Ti(C, N) layer, and smaller and more uniform TiC nanocrystallites are also produced in the a-C layer. The Ti(C, N)/a-C gradient composite films exhibit high microhardness values (~40 Gpa) mostly coming from the bottom Ti(C, N) layer and simultaneously exhibit low friction coefficient (-0.15) coming from the top a-C layer. When wear occurring, the high microhardness of Ti(C, N) layer combining the low friction coefficient of a-C layer has increased the load capacity and wear resistance of the films, and give satisfactory friction performance in the pin-on-disk tests with a wear rate of 3.7×10-17 m3/m.N.
机译:用X射线通过闭环非平衡磁控管溅射石墨和钛靶材制备的多层Ti(C,N)层上沉积了含Ti的aC层的Ti(C,N)/ aC复合膜,并用X进行了测量射线衍射,透射电子显微镜,显微硬度测试仪和针盘测试仪。结果表明,复合膜的底层显示出由细纳米柱Ti(C,N)晶粒组成的多层结构,膜的顶层由嵌入无定形C基质中的2-7 nm TiC纳米晶体组成。随着基板旋转速度的提高,在Ti(C,N)层中观察到了从多层纳米晶粒到柱状晶粒的微观结构的转变,并且在aC层中还产生了更小,更均匀的TiC纳米微晶。 。 Ti(C,N)/ a-C梯度复合膜具有较高的显微硬度值(〜40 Gpa),主要来自底部Ti(C,N)层,同时具有较低的摩擦系数(-0.15)来自顶部a-C层。当发生磨损时,Ti(C,N)层的高显微硬度与aC层的低摩擦系数相结合,增加了薄膜的负载能力和耐磨性,并在针刺磁盘测试中获得了令人满意的摩擦性能。磨损率3.7×10-17 m3 / mN

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