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首页> 外文期刊>Journal of Mechanical Science and Technology >Study on optimization of the circumferential and axial wavy geometrical configuration of hydrodynamic journal bearing
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Study on optimization of the circumferential and axial wavy geometrical configuration of hydrodynamic journal bearing

机译:流体动压滑动轴承周向和轴向波浪形几何构型的优化研究

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This paper is focused on using GA genetic algorithm to find the optimal performance with respect to shape optimization in three dimensions for the hydrodynamic journal bearing. The mathematical model for film thickness was drawn using Fourier series function and axial waviness value (Δ) to represent the journal bearing in circumferential and axial direction, respectively. The objective was then to determine the Fourier coefficients and axial waviness value (Δ) that maximized the load capacity subjected to a given set of constraint. Optimized results show that the presence of cos wave in axial direction, with a positive dimensionless amplitude (+A) and waviness number m = 0.633, improves the load capacity by (8-10)% over the cylindrical plain bearing with the same arbitrary shape and size; in general, the increasing order of Fourier series (n), an axial dimensionless amplitude and LID ratio cause the change in load capacity to become more evident.
机译:本文着重于使用GA遗传算法在流体动力轴颈轴承的三维空间形状优化方面找到最佳性能。使用傅里叶级数函数和轴向波度值(Δ)绘制膜厚度的数学模型,分别表示周向和轴向上的轴颈轴承。然后的目的是确定傅立叶系数和轴向波度值(Δ),该值将在给定的一组约束下使负载能力最大化。优化结果表明,在相同方向上任意形状的圆柱滑动轴承中,存在cos波的轴向方向,其无量纲振幅(+ A)为正,波纹度数m = 0.633,将承载能力提高了(8-10)%和大小;通常,傅立叶级数(n)的增加顺序,轴向无量纲振幅和LID比使负载能力的变化变得更加明显。

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