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Mechanical and tribological properties of hard aluminium-carbon multilayer films prepared by the Laser-Arc technique

机译:激光电弧技术制备的硬铝碳多层膜的力学和摩擦学性能

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摘要

The method of laser-induced vacuum are (Laser-Arc) combines the good controllability of pulsed laser deposition with the high efficiency of a vacuum are technique. One advantage of this technique is the reduction of droplets, allowing the deposition of high-quality amorphous carbon films. These hydrogen-free films, with a very high hardness, exhibit excellent wear resistance and low friction. Multilayer films consisting of aluminium and carbon were deposited on a metallic substrate (90MnV8). A Rockwell C tester was used to assess and the adhesion of the coatings to the substrate. Young moduli of around 420 GPa were measured by the non-destructive ultrasonic surface wave method (US-SAW). The coefficient of friction was investigated by using two different fretting wear tests with the same load but different frequencies and stroke lengths, and values between 0.1 and 0.25 were recorded against steel. The coatings showed an increase in adhesion and a decrease in the tribological properties with increasing aluminium content. (C) 1998 Elsevier Science S.A. All rights reserved. [References: 19]
机译:激光诱导真空法(Laser-Arc)结合了脉冲激光沉积的良好可控制性和真空效率高的技术。该技术的一个优点是减少了液滴,从而可以沉积高质量的非晶碳膜。这些无氢薄膜具有很高的硬度,表现出极好的耐磨性和低摩擦。由铝和碳组成的多层膜沉积在金属基材(90MnV8)上。使用Rockwell C测试仪评估涂层与基材的附着力。通过无损超声表面波方法(US-SAW)测量了约420 GPa的杨氏模量。通过使用两个不同的微动磨损测试来研究摩擦系数,这些测试具有相同的载荷,但具有不同的频率和冲程长度,并且相对于钢记录的值介于0.1到0.25之间。随着铝含量的增加,涂层的附着力增加,摩擦学性能下降。 (C)1998 Elsevier Science S.A.保留所有权利。 [参考:19]

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