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Performance evolution of fully and partially textured hydrodynamic journal bearings lubricated with two lubricants

机译:两种润滑剂润滑的完全和部分纹理的流体动力学轴承的性能演化

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This study investigates the evolution of the main hearing performance of partially and fully textured hydrodynamic journal bearing. The viscosity effect is also analysed by the mean of numerical simulations for two types of oil: the oil 1 (ISO VG 32, 31.3 cSt at 40 °C) has a lower viscosity than oil 2 (ISO VG 100, 93 cSt at 40 °C). Reynolds equation is solved by finite difference and Gauss-Seidel methods with over-relaxation for various operating conditions. It is shown that, under hydrodynamic lubrication regime, the improvement of the most important characteristics (the friction coefficient and minimum film thickness) of a textured journal bearing depend strongly on the lubricant viscosity and the journal rotational speed. The fully textured journal bearing is highly favorable at very low speeds while the partially textured journal bearing is more suitable for slightly higher speeds. The gain in bearing performance due to the texturing of the bushing disappears at a critical speed of the journal and then, for higher rotational speeds, the presence of textures becomes detrimental.
机译:本研究调查了部分和完全纹理的流体动力学轴颈轴承的主要听力性能的演变。还通过两种油的数值模拟的平均值分析粘度效应:油1(ISO VG 32,31.3 CST在40℃)的粘度低于油2(ISO VG 100,93 CST 40°。 C)。 Reynolds方程通过有限差异和高斯-Seidel方法来解决,具有各种操作条件的过度放松。结果表明,在流体动力润滑制度下,纹理化轴颈轴承的最重要特性(摩擦系数和最小膜厚度)的提高依赖于润滑剂粘度和轴颈旋转速度。完全纹理的轴颈轴承在非常低的速度下非常有利,而部分纹理的轴颈轴承更适合稍高的速度。由于衬套的纹理化引起的轴承性能的增益在轴颈的临界速度下消失,然后,对于更高的转速,纹理的存在变得有害。

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