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Numerical analysis and optimization of surface textures for a tilting pad thrust bearing

机译:倾斜焊盘推力轴承表面纹理的数值分析与优化

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摘要

A thermo-hydrodynamic model previously developed by the authors is applied in this paper to study the influence of surface texturing on the performance of a tilting pad thrust bearing with offset line pivots. Utilizing an interior-point algorithm, texture depth, circumferential extent and radial extent are numerically optimized to improve three bearing performance parameters: minimum film thickness, friction torque and maximum temperature. Results are presented for various operating conditions and texture densities. It is found that, for most cases, optimum texturing parameters depend significantly on the operating conditions, optimization objective and texture density. Whereas minimum film thickness values can be increased by up to 12%, only minor improvements are achievable in terms of friction torque and maximum temperature.
机译:本文应用了先前由作者开发的热流体动力学模型,以研究表面纹理对偏移线枢轴的倾斜垫推力轴承性能的影响。 利用内部点算法,纹理深度,圆周范围和径向范围进行了数控优化,以改善三个轴承性能参数:最小膜厚度,摩擦扭矩和最高温度。 出现了各种操作条件和纹理密度的结果。 结果发现,对于大多数情况,最佳纹理化参数显着取决于操作条件,优化目标和纹理密度。 尽管最小薄膜厚度值可以增加高达12%,但在摩擦扭矩和最高温度方面只能实现微小的改进。

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