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Finite Element Simulation of the Mechanical and Thermal Behaviors of a Disk Drive Head Contacting a Disk Asperity

机译:磁盘驱动器磁头接触磁盘粗糙的机械和热行为的有限元模拟

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摘要

Here we present results from finite element analysis mockups for the stresses, strains, and the frictional flash temperatures that occur when a recording head in a disk drive impacts an asperity bump on the rotating disk surface. These simulations also included the very thin carbon protective overcoats that are routinely used to protect the head and disk media surfaces during this impact, allowing us to predict more accurately the wear resistances for these surfaces during these types of impacts. Using these simulations, we are able to perform parametric studies of how the tribological performance of these interfaces is affected by amount of interference, asperity width, material properties, and frictional coefficients. Good agreement is found between these simulation results for flash temperatures from frictional heating and the measured values from a previous experimental study from our laboratory for the temperature rise at the embedded contact sensor within the recording head.
机译:在这里,我们介绍了有限元分析模型的结果,这些结果是当磁盘驱动器中的记录头撞击旋转磁盘表面上的凹凸时发生的应力,应变和摩擦闪光温度的结果。这些模拟还包括非常薄的碳保护外涂层,通常在这种撞击期间用来保护磁头和磁盘介质表面,从而使我们能够更准确地预测在这些撞击类型下这些表面的耐磨性。使用这些模拟,我们能够进行参数研究,研究这些界面的摩擦学性能如何受干扰量,粗糙宽度,材料特性和摩擦系数的影响。这些关于摩擦加热的闪蒸温度的仿真结果与我们实验室先前对记录头内嵌入式接触式传感器的温度升高进行的实验研究得出的测量值之间找到了很好的一致性。

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