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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Jet cooling for rolling bearings: Flow visualization and temperature distribution
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Jet cooling for rolling bearings: Flow visualization and temperature distribution

机译:滚动轴承的射流冷却:流量可视化和温度分布

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摘要

To achieve an efficient cooling for the rolling bearing, a further investigation on cooling methods is necessary. The oil jet cooling for high-speed ball bearings was investigated. The two-phase flow inside the ball bearing 7210 were analysed and verified through tests. The heat transfer was also considered. The circumferential air-oil distribution inside the bearing appears a periodic variation between two adjacent nozzles. The bearing temperature distribution is deeply affected by the air-oil distribution. The higher temperature always appears at the lower oil volume fraction position. The average oil volume fraction increases with a larger nozzle number. The nozzle number should be no more than four considering its effect on the oil volume fraction and the oil supply mechanism complexity. The nozzle number and the jet velocity have larger influences on the oil volume fraction when bearing speed is lower than 20,000 r/min. When bearing speed is larger than 40,000 r/min, the bearing speed affects the oil volume fraction much more than the multiple-nozzle oil jet cooling mechanism parameters. The results are useful for the advanced precision cooling mechanism design of the rolling bearing. (C) 2016 Elsevier Ltd. All rights reserved.
机译:为了实现滚动轴承的有效冷却,有必要进一步研究冷却方法。研究了高速球轴承的喷油冷却。球轴承7210内部的两相流通过测试进行了分析和验证。还考虑了热传递。轴承内部的圆周空气油分布在两个相邻的喷嘴之间出现周期性变化。轴承温度分布受空气-油分布的影响很大。较高的温度始终出现在较低的机油体积分数位置。平均油量分数随着喷嘴数量的增加而增加。考虑到它对机油体积分数和供油机构复杂性的影响,喷嘴数量不应超过四个。当轴承转速低于20,000 r / min时,喷嘴数量和喷射速度对机油体积分数的影响较大。当轴承转速大于40,000 r / min时,轴承转速对机油体积分数的影响远大于多喷嘴喷油冷却机构参数。结果对于滚动轴承的先进精密冷却机构设计很有用。 (C)2016 Elsevier Ltd.保留所有权利。

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