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A MESH-LESS METHOD FOR SOLVING AIR BEARING PROBLEMS IN HARD DISK DRIVES

机译:一种用于解决硬盘驱动器中空气轴承问题的网眼方法

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In this paper, a mesh-less method, least square finite difference (LSFD) method, was applied to solve the slider air bearing problems in hard disk drives. The LSFD method derives from weighted least square approximation procedure and a Taylor series expansion of pressure distribution to directly discretize the Reynolds equation. The scheme is able to approximate the second-order derivatives to the second-order accuracy in this study. The mesh-free method does not require maintaining detailed structural information about the computational meshes in the computational domain. Furthermore, adaptive node distribution can prevents pressure oscillatory in the high-pressure gradient regions. In addition, Successive Over Relaxation iteration technique is applied to solve nonlinear system equations. Finally, the static flying attitude of the Taper Flat, Tripad and the Transverse Pressure Contour (TPC) sliders are calculated.
机译:在本文中,应用了一种网格的方法,最小二乘有限差(LSFD)方法来解决硬盘驱动器中的滑块空气轴承问题。 LSFD方法源于加权最小二乘近似过程,压力分布的泰勒序列膨胀直接离散化雷诺等式。该方案能够将二阶衍生物近似于本研究中的二阶衍生物。网眼方法不需要维护有关计算域中计算网格的详细结构信息。此外,自适应节点分布可以防止高压梯度区域中的压力振荡。此外,应用于求解迭代技术来解决非线性系统方程。最后,计算了锥形平坦,三级和横向压力轮廓(TPC)滑块的静态飞行姿态。

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