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Effects of environmental temperature and humidity on thermal flying height adjustment

机译:环境温度和湿度对飞行高度调节的影响

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摘要

Thermal actuated sliders are being widely used in today’s hard disk drive industry for its advantages of easier control of flying height (FH) and less risk of contacts with the disk. This article uses a coupled-field analysis method, which includes an air bearing model, a heat transfer model and a thermal-structural finite element model to investigate the FH changes of thermal actuated sliders at various environmental conditions. The mechanism of water vapour’s contribution to air bearing pressure loss is explained and a new humidity model is proposed to calculate this pressure loss. The temperature effects are also considered in the simulation models. It is observed that the environmental temperature and humidity have significant effects on slider’s FH changes, but their effects on the thermal protrusion height are limited. A humidity sensitivity study is also made and the results are discussed. It is found that the slider with thermal protrusion on its trailing pad will be more sensitive to the humidity. Besides air bearing stiffness, some other factors such as peak pressure, protrusion shape and air bearing surface (ABS) design will also contribute to the slider’s humidity sensitivity.
机译:热驱动滑块因其易于控制飞行高度(FH)和降低与磁盘接触的风险而在当今的硬盘驱动器行业中被广泛使用。本文使用耦合场分析方法,包括空气轴承模型,传热模型和热结构有限元模型,以研究热致动滑块在各种环境条件下的跳变变化。解释了水蒸气对空气轴承压力损失的影响机理,并提出了一种新的湿度模型来计算该压力损失。在仿真模型中还考虑了温度影响。可以看出,环境温度和湿度对滑块的FH变化有显着影响,但是它们对热突起高度的影响却有限。还进行了湿度敏感性研究并讨论了结果。发现在其尾随垫上具有热突起的滑块对湿度更敏感。除空气轴承刚度外,其他一些因素(例如峰值压力,突出形状和空气轴承表面(ABS)设计)也将有助于滑块的湿度敏感性。

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