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摘要:
The performance of hydrostatic turntables is strongly influenced by the geometry of oil pads. The properly designed structure of oil pads can reduce the power consumption of hydrostatic turntables and improves their service performance. A structural optimization of oil pads on a hydrostatic turntable based on particle swarm optimization is presented to improve the carrying performance and decrease energy costs. Using the finite difference method, the Reynolds equation is resolved to calculate the pressure distribution and flow rate in oil pads. The power cost of oil supply is determined according to the turntable working condition, and minimal energy consumption is set as the optimal solution. The geometrical parameters of the oil pad are chosen as individual elements that will converge to an optimal result by using PSO.
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来源 :
STROJNISKI VESTNIK-JOURNAL OF MECHANICAL ENGINEERING
ISSN: 0039-2480
年份: 2018
期: 2
卷: 64
页码: 95-104
1 . 7 0 0
JCR@2022
ESI学科: ENGINEERING;
ESI高被引阀值:156
JCR分区:3