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Nanostructured TiC/a-C coatings for low friction and wear resistant applications

机译:用于低摩擦和耐磨应用的纳米结构TiC / a-C涂层

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摘要

Closed-field unbalanced and balanced magnetron sputtering was used to deposit nanocrystalline TiC (nc-TiC)/amorphous carbon (a-C) nanocomposite coatings with hydrogenated or hydrogen-free a-C matrix, respectively. The contents of Ti and C in the coatings have been varied over the full range of interest (7-45 at.% Ti) by changing the flow rate of acetylene gas or the locations of substrates relative to the center of C/TiC targets. Different levels of bias and deposition pressure were used to control the nanostructure. The nanocomposite coatings exhibit hardness of 5-35 GPa, hardness/E-modulus ratio up to 0.15, wear rate of 4.8 x 10(-17) m(3)/N m lap, friction coefficient of 0.04 under dry sliding and strong self-lubrication effects. The nanostructure and elemental distribution in the coatings have been characterized with cross-sectional and planar high-resolution transmission electron microscopy (HRTEM) and energy-filtered TEM. The influence of the volume fraction and size distribution of nc-TiC on the coating properties has been examined. (c) 2004 Elsevier B.V. All rights reserved.
机译:使用闭场不平衡和平衡磁控溅射分别沉积具有氢化或无氢a-C基质的纳米晶TiC(nc-TiC)/非晶碳(a-C)纳米复合涂层。通过改变乙炔气体的流速或基材相对于C / TiC靶材中心的位置,可以在整个目标范围内(Ti含量为7-45 at。%)改变Ti和C的含量。使用不同水平的偏压和沉积压力来控制纳米结构。纳米复合涂层的硬度为5-35 GPa,硬度/ E模量比最高为0.15,磨损率为4.8 x 10(-17)m(3)/ N m搭接,干滑摩擦系数为0.04,自强-润滑效果。涂层的纳米结构和元素分布已通过横截面和平面高分辨率透射电子显微镜(HRTEM)和能量过滤TEM进行了表征。研究了nc-TiC的体积分数和尺寸分布对涂层性能的影响。 (c)2004 Elsevier B.V.保留所有权利。

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