首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Effects of AFM tip wear on frictional images of laser-patterned diamond-like nanocomposite films
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Effects of AFM tip wear on frictional images of laser-patterned diamond-like nanocomposite films

机译:AFM尖端磨损对激光型金刚石纳米复合膜摩擦图像的影响

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摘要

Contact-mode atomic force microscopy (AFM) techniques (lateral force microscopy, force-distance curves) are applied to study the effects of femtosecond-laser ablation and micropatterning of diamond-like nanocomposite (DLN) films (a-C:H:Si:O films) on the friction behavior at the nano and microscale. A femtosecond laser (wavelength 515 nm, pulse duration 320 fs, pulse repetition rate 101 kHz) is used to fabricate line-like micropatterns (microgrooves) on the DLN films under ablation conditions with a scanning beam. Lateral force microscopy (LFM) studies of the laser-ablated microgrooves have revealed wearing-tip-induced nanofriction changes during AFM imaging with Si tip, characterized by much lower friction forces inside and around the microgrooves compared to the original surface (due to strong influence of the capillary forces on friction forces with increasing radius of the worn tip). Using wear-resistant diamond-coated tips, the friction contrast is found to reverse to higher friction in the laser-modified regions. The increased nanoscale roughness of the ablated DLN surface and redeposited surface layers is considered responsible for the observed nanofriction behavior of both the Si and diamond-coated tips.
机译:接触模式原子力显微镜(AFM)技术(AFM)技术(侧向力显微镜,力 - 距离曲线)研究了型型纳米复合材料(DLN)薄膜的飞秒激光烧蚀和微图示的影响(AC:H:Si:O.电影)纳米和微尺度摩擦行为。飞秒激光器(波长515nm,脉冲持续时间320fs,脉冲重复率101khz)用于制造在具有扫描光束的消融条件下的DLN膜上的线状微图案(微液流)。激光烧蚀微液体的侧向力显微镜(LFM)研究揭示了在用Si尖端的AFM成像期间佩戴尖端诱导的纳米抗性变化,其特征在于与原始表面相比微型血管内部和周围的摩擦力大大(由于强烈影响毛细管力对磨削尖端半径增加的摩擦力。使用耐磨金刚石涂层尖端,发现摩擦对比度反转激光改性区域中的更高摩擦。烧蚀DLN表面的纳米级粗糙度和重新沉积的表面层的增加被认为是Si和金刚石涂层尖端的观察到的纳米反冲行为负责。

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