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Transient response of head slider with geometry change in head surface of magnetic storage systems

机译:磁存储系统磁头表面几何形状变化时磁头滑块的瞬态响应

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In this study, the dynamic flying characteristics of the worn head sliders are investigated theoretically due to the change in head geometry caused by head and disk contact. The film shapes can be approximated as taper-truncated cycloidal-flat film. Two-dimensional time dependent modified Reynolds equation included molecular slip effect are formulated with neglected the roughness effect. The motion of head slider was assumed to have two degree of freedom in this work. Finite difference approximation with Newton Raphson iterative technique and the fourth order Runge-Kutta method were implemented to obtain the transient response of the slider head with various change in head geometry numerically and compared with IBM3380 type head. The simulation results show the film shape has affects significantly on the static and dynamic characteristic of slider head in magnetic storage systems.
机译:在这项研究中,由于磁头和磁盘接触导致磁头几何形状的变化,因此从理论上对磨损的磁头滑块的动态飞行特性进行了研究。膜的形状可以近似为锥形截断的摆线平膜。忽略了粗糙度效应,提出了包含分子滑移效应的二维时变修正雷诺方程。假定在此工作中磁头滑块的运动具有两个自由度。利用牛顿拉夫森迭代技术和四阶Runge-Kutta方法进行了有限差分逼近,以得到具有各种几何形状变化的磁头的瞬态响应,并与IBM3380型磁头进行了比较。仿真结果表明,薄膜形状对磁存储系统中滑块头的静态和动态特性有很大影响。

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