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Hydrodynamic lubrication analysis of two-dimensional section between piston skirt and textured cylinder wall considering slip boundary conditions

机译:考虑滑动边界条件的活塞裙和纹理圆柱墙二维部分的流体动力润滑分析

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摘要

Surface micro-texturing with slip boundary has attracted extensive attention. To accurately investigate the coupling influences of slip and micro-texturing on piston skirt lubrication performance, a comprehensive method called Reynolds-Stokes Galerkin finite element method (R-SGFEM) is proposed. Modified Reynolds equation is employed to calculate slip velocity by Navier slip model, and lubrication flow is solved by Stokes systems using the Galerkin finite element method. This method treats the slip boundary and recirculation in micro-textures skillfully, and is confirmed correct by designed experiments. The effects of slip length and geometric parameters are investigated and discussed. Results show that slip length and texture depth can reverse adjust pressure fluctuation of lubricant. The computing method of no-slip state of internal axial boundary is expressed.
机译:表面微型纹理与滑动边界引起了广泛的关注。 为了准确研究滑动和微纹理对活塞裙润滑性能的耦合影响,提出了一种称为Reynolds-Stokes Galerkin有限元方法(R-SGFEM)的综合方法。 改进的雷诺等式用于通过Navier Slow模型计算滑动速度,并且使用Galerkin有限元方法由Stokes系统解决了润滑流。 该方法巧妙地对微型纹理的滑界和再循环处理,并通过设计的实验确认正确。 研究并讨论了滑动长度和几何参数的影响。 结果表明,滑动长度和纹理深度可以反向调节润滑剂的压力波动。 表示内轴边界的无滑移状态的计算方法。

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