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Tribochemical reactions of Si incorporated diamond-like carbon films during the initial transient period

机译:在初始瞬态期间Si的培养基化学反应掺入金刚石状碳膜

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Tribochemical reactions between Si incorporated diamond-like carbon (Si-DLC) films and steel ball were investigated during initial stage of tribo-test. The films were deposited by r.f.-PACVD using mixtures of diluted silane (SiH_4:H_2=10.90) and benzene gases. Si concentration in the film was varied from 0 to 10 at.percent by adjusting the diluted silane fraction in the reaction gases. A rotating type ball-on-disk wear rig was employed for the tribo-test in ambient atmosphere. When the Si concentration was less than 5 at.percent, initial transient period of high friction coefficient was commonly observed. After the transient period, the friction coefficient becomes lower with increasing contact cycles. The initial transient period becomes shorter and the starting and maximum friction coefficients in transient period decreased with increasing Si concentration. Composition of the debris on the wear scar surface was analyzed by Auger spectroscopy at various stages in the initial transient period. We observed that when the friction coefficient increased in earlier stage of the transient period. We observed that when the frictio coefficient increased in earlier stage of the transient period. We observed that when the friction coefficient increased in earlier stage of the transient period, iron and oxygen was observed in the debris. However, decrease in the friction coefficient in the later stage of the transient period was associated with the formation of silicon rich oxide debris. This result supports the friction mechanism of Si-DLC films that the formation of Si rich oxide debris results in low friction coefficient in ambient atmosphere.
机译:在摩擦试验的初始阶段,研究了Si掺入的金刚石状碳(Si-DLC)膜和钢球之间的致性反应。使用稀释的硅烷(SiH_4:H_2 = 10.90)和苯气体的混合物,通过R.F.-PAPVD沉积膜。通过在反应气体中调节稀释的硅烷级分,将膜中的Si浓度变化为0至10。在环境气氛中使用旋转型球盘磨损器用于摩擦测测试。当Si浓度小于5时,通常观察到高摩擦系数的初始瞬态周期。在瞬态时段之后,随着接触循环的增加,摩擦系数变低。初始瞬态周期变短,瞬态周期中的起始和最大摩擦系数随着Si浓度的增加而降低。在初始瞬态时段的各个阶段,通过螺旋座光谱分析磨损瘢痕表面上的碎屑表面的组成。我们观察到,当瞬态时期的摩擦系数增加时。我们观察到,当瞬态周期的早期阶段时,弗里奇系数增加。我们观察到,当瞬时瞬时阶段的摩擦系数增加时,在碎片中观察到熨斗和氧气。然而,瞬时周期后期摩擦系数的降低与富含硅富氧化物碎片的形成有关。该结果支持Si-DLC膜的摩擦机制,即Si富氧化物碎片的形成导致环境气氛中的低摩擦系数。

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