首页> 外文会议>American Society of Mechanical Engineers(ASME)/Society of Tribologists and Lubrication Engineers(STLE) International Joint Tribology Conference; 20071022-24; San Diego,CA(US) >DYNAMIC INDENTAION CHARACTERISTICS OF SPHERICAL SLIDERS COLLIDING WITH STATIONARY MAGNETIC DISKS WITH A THIN LUBRICANT LAYER
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DYNAMIC INDENTAION CHARACTERISTICS OF SPHERICAL SLIDERS COLLIDING WITH STATIONARY MAGNETIC DISKS WITH A THIN LUBRICANT LAYER

机译:薄层润滑脂与球形磁碟结合的动态滑移特征

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We measured the dynamic adhesion force when spherical sliders with a radius of 1 and 2 mm collided with smooth magnetic disks with lubricant layers of zero, 1, 2, and 3 nm thickness to clarify the dynamic interfacial force between a slider and disk in the nanometer region of flying height. From the measured slider velocity, we calculated the relationship between acceleration (acting force) and displacement. We found that a strong adhesion force observed at zero lubricant vanishes when 1-nm thick lubricant with UV is applied. As the mobile lubricant thickness was increased, we observed a clear dynamic adhesion force at the instant of separation. These results indicate that adhesion force is most likely to result from meniscus formation.
机译:我们测量了半径为1和2 mm的球形滑动器与厚度为零,1、2和3 nm的润滑层的光滑磁盘相撞时的动态粘附力,以阐明纳米级中滑动器和磁盘之间的动态界面力飞行高度的区域。根据测得的滑块速度,我们计算出了加速度(作用力)与位移之间的关系。我们发现,当使用1 nm厚的紫外线润滑剂时,在零润滑剂处观察到的强粘附力消失了。随着流动润滑剂厚度的增加,我们在分离的瞬间观察到了明显的动态粘附力。这些结果表明,粘附力最有可能是由弯液面形成引起的。

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