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Analysis of the Slider Off-Track Vibration Caused by the Aerodynamic Loads Associated With Different Components of a Head Stack Assembly in a Disk Drive

机译:磁盘驱动器中磁头组组件不同组件的气动载荷引起的滑块偏离轨道振动的分析

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The paper describes a numerical investigation of the problem of flow-induced, off-track vibration of the slider in a disk drive. The flow field was simulated in a 3.5-in, 10 000 rpm disk drive using FLUENT flow-modeling software, which yielded the aerodynamic forces and moments for various components of the head stack assembly (HSA). The finite-element model of the HSA was developed using ANSYS software. Then off-track vibration of the slider caused by the aerodynamic loads of different HSA components was computed. The computations showed that the arm experiences the largest fluctuations of aerodynamic load. However, the loadbeam base region appears to make the largest contribution to off-track vibration of the slider, due to the vortex shedding generated by the side tabs of the loadbeam base region.
机译:本文描述了磁盘驱动器中滑块引起的流动引起的偏磁振动问题的数值研究。使用FLUENT流动建模软件在3.5英寸,10 000 rpm磁盘驱动器中模拟了流场,该软件产生了磁头堆栈组件(HSA)各个组件的空气动力和力矩。 HSA的有限元模型是使用ANSYS软件开发的。然后,计算了由不同HSA组件的空气动力载荷引起的滑块偏离轨道的振动。计算表明,手臂承受的空气动力负荷波动最大。然而,由于由载荷梁基础区域的侧突片产生的涡旋脱落,使得载荷梁基础区域对滑块的偏离磁道振动的贡献最大。

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