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HYDRODYNAMIC LOAD SUPPORT OF A SLIP WEDGE

机译:滑楔的水力负载支持

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摘要

This paper studies the hydrodynamic load support generated by a slip wedge of a slider bearing. The surface slip property is optimized to obtain a maximum hydrodynamic load support. A multi-linearity method was used to approach the slip control equation of two-dimensional (2-D) wall slip. It is found that the hydrodynamic pressure generated in the slip wedge is greater than that of the traditional geometrical convergent-wedge. Even though the geometrical gap is a parallel or divergent sliding gap, the slip wedge still gives rise to a very big hydrodynamic pressure. The optimized slip wedge gives rise to a maximum hydrodynamic load support as large as 2.5 times of what the Classical Reynolds theory predicts for the geometrical convergent-wedge. Wall slip usually gives a small surface friction drag.
机译:本文研究了由滑动轴承的滑楔产生的流体动力载荷支撑。优化表面滑动性能以获得最大的流体动力负载支持。使用多线性方法来求解二维(2-D)墙滑移的滑移控制方程。发现在滑动楔形件中产生的流体动力压力大于传统的几何会聚楔形物。即使几何间隙是平行的或发散的滑动间隙,滑楔仍然会产生很大的流体动力压力。优化的滑楔产生的最大水力负载支持高达古典雷诺理论所预测的几何会聚楔的2.5倍。壁滑通常会产生较小的表面摩擦阻力。

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