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Ultra-High-Speed Performance of Ball Bearings and Annular Seals in Liquid Hydrogen at Up to 3 Million DN (120,000 rpm)

机译:液态氢中的球轴承和环形密封圈的超高速性能可达300万DN(120,000 rpm)

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摘要

The ultra-high-speed performance of a hybrid ceramic 25-mm-bore ball bearing, as well as that of floating-ring seals with a sealing diameter of 30 mm, was determined in liquid hydrogen at speeds to 120,000 rpm, 3 million DN, under thrust loads to 3,140 N and sealed pressures to 1.7 MPaG. The bearings had SisN4 balls and a single outer land-guided retainer. The hybrid ceramic bearing exhibited excellent performance at high load, contrasting with the seized all-steel bearing; however, the ceramic balls developed superficial micro-cracks due to fractional heating. Effective cooling of the bearing was achieved by increasing the jet speed through the nozzles. The bearing power loss drastically increased with increasing speed and cooling flow rate. The critical load capacity without bearing damage was also evaluated. Furthermore, the sealing performance of the one-ring seal was superior to that of the two-ring seal in preventing the sealing ring seizure against the runner.
机译:在液氢中以120,000 rpm,300万DN的速度测定了25毫米混合陶瓷球轴承的超高速性能以及密封直径为30 mm的浮动环密封的超高速性能,在推力载荷下达到3140 N,密封压力下达到1.7 MPaG。轴承具有SisN4滚珠和单个外部滑轨导向保持架。与全钢轴承相比,混合陶瓷轴承在高负荷下表现出出色的性能;然而,由于部分加热,陶瓷球出现了表面微裂纹。通过提高通过喷嘴的喷射速度可以实现轴承的有效冷却。轴承功率损耗随着速度和冷却流量的增加而急剧增加。还评估了没有轴承损坏的临界负载能力。此外,在防止密封环咬住流道方面,一环密封件的密封性能优于二环密封件的密封性能。

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