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首页> 外文期刊>Tribology Transactions >A Simulation Scheme with Coupled Dynamic Models for the Slider and the Suspension Lift-Tab during the Unloading Process of a Hard Disk Drive
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A Simulation Scheme with Coupled Dynamic Models for the Slider and the Suspension Lift-Tab during the Unloading Process of a Hard Disk Drive

机译:硬盘驱动器卸载过程中滑块和悬架提升标签耦合动力学模型的仿真方案

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摘要

A numerical scheme was developed to simulate the interaction between the suspension lift-tab and the ramp of a load/unload-type hard disk drive with consideration of the contact and separation states. The suspension stiffnesses and effective masses were determined based on experiments and finite element analysis. The slider motion was simulated with a degenerated two-degree-of-freedom model, and the results were used as input to a single-degree-of-freedom model for the lifttab motion. The ramp profile was converted, based on the lateral velocity of the suspension, to a vertical displacement versus time. Computational efficiency was achieved by using a head- disk constraint, instead of a full air-bearing solution, based on dual-scale considerations. The simulation results show that the maximum indentation depth at the tab-ramp engagement increases with an increase in the effective masses, lateral velocity, or ramp angle or with a decrease in the contact stiffness. The bouncing height and bouncing distance of the lift-tab increase with an increase in the contact stiffness, effective masses, lateral velocity, or with a decrease in the suspension stiffnesses. The air-bearing separation time decreases as the suspension stiffnesses, lateral velocity, or ramp angle increases. The coefficient of friction of the tab-ramp interface was found to have a slight influence on the lift-tab behavior on the inclined portion of the ramp.
机译:考虑到接触和分离状态,开发了一种数值方案来模拟悬架提升片和加载/卸载型硬盘驱动器的斜坡之间的相互作用。根据实验和有限元分析确定悬架刚度和有效质量。使用退化的两自由度模型对滑块运动进行了仿真,并将结果用作提升标签运动的单自由度模型的输入。基于悬架的横向速度,将坡度轮廓转换为垂直位移与时间的关系。基于双尺度考虑,通过使用磁盘头约束而不是完全的空气轴承解决方案来实现计算效率。仿真结果表明,翼片-斜坡接合处的最大压痕深度随着有效质量,横向速度或坡度角的增加或接触刚度的降低而增加。提升舌片的弹跳高度和弹跳距离随着接触刚度,有效质量,横向速度的增加或悬架刚度的降低而增加。空气轴承的分离时间随着悬架刚度,横向速度或坡道角的增加而减少。我们发现,翼片-斜坡界面的摩擦系数对斜面的倾斜部分上的翼片特性有轻微的影响。

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