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首页> 外文期刊>Journal of Mechanical Science and Technology >Friction Mechanisms of Silicon Wafer and Silicon Wafer Coated with Diamond-like Carbon Film and Two Monolayers
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Friction Mechanisms of Silicon Wafer and Silicon Wafer Coated with Diamond-like Carbon Film and Two Monolayers

机译:硅片和类金刚石碳膜与两个单层涂层硅片的摩擦机理

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The friction behaviour of Si-wafer, diamond-like carbon (DLC) and two self-assembled momolayers (SAMs) namely dimethyldichlorosilane (DMDC) and diphenyl-dichlorosilane (DPDC) coated on Si-wafer was studied under loading conditions in milli-newton (mN) range. Experiments were performed using a ball-on-flat type reciprocating micro-tribo tester, Glass balls with various radii 0.25 mm, 0.5 mm and 1 mm were used. The applied normal load was in the range of 1.5 mN to 4.8 mN. Results showed that the friction increased with the applied normal load in the case of all the test materials. It was also observed that friction was affected by the ball size. Friction increased with the increase in the ball size in the case of Si-wafer. The SAMs also showed a similar trend, but had lower values of friction than those of Si-wafer. Interestingly, for DLC it was observed that friction decreased with the increase in the ball size. This distinct difference in the behavior of friction in DLC was attributed to the difference in the operating mechanism. It was observed that Si-wafer and DLC exhibited wear, whereas wear was absent in the SAMs. Observations showed that solid-solid adhesion was dominant in Si-wafer, while plowing in DLC. The wear in these two materials significantly influenced their friction. In the case of SAMs their friction behaviour was largely influenced by the nature of their molecular chains.
机译:研究了硅晶片,类金刚石碳(DLC)和两个自组装膜层(SAMs)即二甲基二氯硅烷(DMDC)和涂在硅晶片上的二苯基-二氯硅烷(DPDC)的摩擦行为。 (mN)范围。使用扁平球式往复式微摩擦试验机进行实验,使用半径为0.25mm,0.5mm和1mm的玻璃球。施加的法向载荷在1.5 mN至4.8 mN的范围内。结果表明,在所有测试材料的情况下,摩擦力都随着施加的法向载荷而增加。还观察到,摩擦力受球尺寸的影响。对于硅晶片,摩擦随着球尺寸的增加而增加。 SAM也显示出类似的趋势,但摩擦值低于Si晶圆。有趣的是,对于DLC,观察到摩擦随着球尺寸的增加而减小。 DLC中摩擦行为的这种明显差异归因于操作机制的差异。观察到硅晶片和DLC表现出磨损,而SAM中没有磨损。观察表明,固-固附着力在硅晶圆中占主导地位,而在DLC中则处于耕作状态。这两种材料的磨损显着影响了它们的摩擦。就SAM而言,它们的摩擦行为很大程度上受其分子链的性质影响。

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