首页> 外文会议>ASME Turbo Expo: Turbomachinery Technical Conference and Exposition >THE INFLUENCE OF AMBIENT PRESSURE ON THE MEASURED LOAD CAPACITY OF BUMP-FOIL AND SPIRAL-GROOVE GAS THRUST BEARINGS AT AMBIENT PRESSURES UP TO 69 BAR ON A NOVEL HIGH-PRESSURE GAS BEARING TEST RIG
【24h】

THE INFLUENCE OF AMBIENT PRESSURE ON THE MEASURED LOAD CAPACITY OF BUMP-FOIL AND SPIRAL-GROOVE GAS THRUST BEARINGS AT AMBIENT PRESSURES UP TO 69 BAR ON A NOVEL HIGH-PRESSURE GAS BEARING TEST RIG

机译:环境压力对新型高压瓦斯测试台上高达69 bar的环境压力下凸面箔片和螺旋槽气体推力轴承测得的载荷能力的影响

获取原文

摘要

This paper will show the influence of ambient pressure on the thrust capacity of bump-foil and spiral-groove gas thrust bearings. The bearings were operating in nitrogen at various pressures up to 69 bar, and were tested to failure. Failure was detected at various pressures by incrementally increasing the thrust load applied to the thrust bearing until the bearing was no longer thermally stable, or until contact was observed by a temperature spike measured by thermocouples within the bearing. These tests were performed on a novel thrust bearing test rig that was developed to allow thrust testing at pressures up to 207 bar cavity pressure at 260°C while rotating at speeds up to 120,000 rpm. The test rig floats on hydrostatic air bearings to allow for the direct measurement of applied thrust load through linkages that connect the stationary thrust loader to the rotor housing. Test results on a 65 mm (2.56 in) bump-foil thrust bearing at 100 krpm show a marked increase in load capacity with gas density, which has not previously been shown experimentally. Results also show that the load capacity of a similarly sized spiral-groove thrust bearing are relatively insensitive to pressure, and supported an order-of-magnitude less load than that observed for the bump-foil thrust bearing. These results are compared with analytical predictions, which agree reasonably with the experimental results. Predicted power loss is also presented for the bump-foil bearing; however, measured power loss was substantially higher.
机译:本文将展示环境压力对凸面箔和螺旋槽气体推力轴承的推力能力的影响。轴承在氮气中在高达69 bar的各种压力下运行,并进行了故障测试。通过逐渐增加施加在推力轴承上的推力载荷直到轴承不再热稳定,或者直到通过轴承内热电偶测得的温度峰值观察到接触为止,才能在各种压力下检测到故障。这些测试是在新型推力轴承试验台上进行的,该试验台经开发可在260°C的压力下,最高207 bar的腔体压力下进行推力测试,同时以最高120,000 rpm的转速旋转。测试装置浮在静压空气轴承上,以便通过将固定推力加载器连接到转子壳体的连杆直接测量施加的推力载荷。在100 krpm的65毫米(2.56英寸)凸面箔片推力轴承上的测试结果表明,随着气体密度的增加,负载能力显着提高,这在以前是没有实验证明的。结果还表明,类似尺寸的螺旋槽推力轴承的载荷能力对压力相对不敏感,并且比颠簸箔推力轴承所观察到的载荷要小一个数量级。将这些结果与分析预测进行比较,分析预测与实验结果合理吻合。还提供了凹凸箔轴承的预计功率损耗。但是,测得的功率损耗明显更高。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号