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首页> 外文期刊>Journal of Mechanical Science and Technology >Numeric and experimental study of generalized geometrical design of a hydrodynamic journal bearing based on the general film thickness equation
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Numeric and experimental study of generalized geometrical design of a hydrodynamic journal bearing based on the general film thickness equation

机译:基于通用膜厚方程的流体动力滑动轴承广义几何设计的数值和实验研究

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This paper deals with multi-objective shape optimization related to the geometrical design of a hydrodynamic journal bearing. The aim proposed here is to show that optimum shape design with better performance could surpass the limitations of existing bearing profiles. Attempting to remove the difficulty of selecting the weighting factor in multi-objective journal bearing optimization problems, a modified non-dominant sort in genetic algorithm was used as an optimization tool with a penalty to those solutions that violate constraints. Three kinds of optimized shapes were manufactured and taken as experimental objects. Experimental apparatus was described and some experimental data was presented. The comparison was made for the optimized bearings between numeric values and experimental data. The results show that the new method for shape optimization of hydrodynamic journal bearings based on the general film thickness equation is feasible.
机译:本文涉及与流体动力轴颈轴承的几何设计有关的多目标形状优化。这里提出的目的是表明具有更好性能的最佳形状设计可以超越现有轴承轮廓的局限性。为了消除在多目标轴颈轴承优化问题中选择加权因子的困难,将遗传算法中的一种经过改进的非优势排序方法用作优化工具,并对那些违反约束的解决方案进行了惩罚。制造了三种优化形状并作为实验对象。描述了实验装置并提供了一些实验数据。在数值和实验数据之间进行了优化轴承的比较。结果表明,基于一般膜厚方程的流体动力滑动轴承形状优化新方法是可行的。

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