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Investigation of Fluid Structure Interaction of a Head Stack Assembly in a Hard Disk Drive

机译:硬盘驱动器中磁头堆栈组件的流体结构相互作用的研究

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摘要

An analysis of three-dimensional, unsteady flow field is conducted in a 3.5-in, 7200 rpm hard disk drive (HDD) using FLUENT software. The analysis is carried out for the head stack assembly (HSA) positioned at the outer diameter (OD). A finite element model (FEM) of the HSA, built in ANSYS, is used for the forced vibration analysis. The flow field analysis yields the aerodynamic forces and moments which are applied to the HSA FEM. The effects of a damper plate and arm holes introduced to the HSA design are investigated. The analysis shows that a damper plate attenuates the root mean square (RMS) of aerodynamic loads acting on the HSA, resulting in a significant reduction of off-track displacement of the heads. It also shows that a weight-saving hole in the arm causes a complex vortex structure inside the hole. The vortex structure exhibits a forming/collapsing frequency of 7 to 9 kHz, which resonates with the structural modes of the HSA, causing additional off-track vibration of the heads.
机译:使用FLUENT软件在3.5英寸7200 rpm硬盘驱动器(HDD)中进行三维非稳态流场分析。对位于外径(OD)处的磁头堆栈组件(HSA)进行分析。 HSAN的有限元模型(FEM)(内置于ANSYS中)用于强制振动分析。流场分析得出施加到HSA FEM上的空气动力和力矩。研究了HSA设计中引入的阻尼板和臂孔的影响。分析表明,减震板会减弱作用在HSA上的空气动力学负载的均方根(RMS),从而显着降低磁头的偏离轨道位移。这也表明,手臂上的减轻重量的孔会在孔内造成复杂的涡旋结构。涡流结构的形成/收缩频率为7至9 kHz,与HSA的结构模式产生共振,从而导致磁头产生额外的偏轨振动。

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