TY - JOUR
T1 - Development and Application of Integrated Aerodynamic Protuberant Foil Journal and Thrust Bearing in Turboexpander
AU - Lai, Tianwei
AU - Guo, Yu
AU - Wang, Wei
AU - Wang, Yu
AU - Hou, Yu
N1 - Publisher Copyright:
© 2017 Tianwei Lai et al.
PY - 2017
Y1 - 2017
N2 - Foil bearing provides compliant support and moderate Coulomb friction for rotor-bearing system, which is conducive to stability and reliability of high speed rotating machinery. In this paper, both hydrodynamic lubricated foil journal and foil thrust bearings are applied in a 150 m3·h-1 turboexpander for air separation. In the bearings, protuberant foil is chosen as the supporting subfoil due to its merits of easy fabrication and assembly. Static loading and deflection of the bearings are tested, respectively, before integration into the turboexpander. Afterwards, the loading and deflection curves of the journal and thrust bearings are polynomial fitted using least-square method. Then, performance tests are carried out on the rotor-bearing system, including transient speed-up, high speed, and speed-down processes. In the tests, the turboexpander supported by the hydrodynamic foil bearings operates smoothly with repeatability. Maximal rotor speed of the turboexpander reaches 52000 rpm with hydrodynamic lubricated protuberant foil bearings.
AB - Foil bearing provides compliant support and moderate Coulomb friction for rotor-bearing system, which is conducive to stability and reliability of high speed rotating machinery. In this paper, both hydrodynamic lubricated foil journal and foil thrust bearings are applied in a 150 m3·h-1 turboexpander for air separation. In the bearings, protuberant foil is chosen as the supporting subfoil due to its merits of easy fabrication and assembly. Static loading and deflection of the bearings are tested, respectively, before integration into the turboexpander. Afterwards, the loading and deflection curves of the journal and thrust bearings are polynomial fitted using least-square method. Then, performance tests are carried out on the rotor-bearing system, including transient speed-up, high speed, and speed-down processes. In the tests, the turboexpander supported by the hydrodynamic foil bearings operates smoothly with repeatability. Maximal rotor speed of the turboexpander reaches 52000 rpm with hydrodynamic lubricated protuberant foil bearings.
UR - https://www.scopus.com/pages/publications/85042661765
U2 - 10.1155/2017/8430943
DO - 10.1155/2017/8430943
M3 - 文章
AN - SCOPUS:85042661765
SN - 1023-621X
VL - 2017
JO - International Journal of Rotating Machinery
JF - International Journal of Rotating Machinery
M1 - 8430943
ER -