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Dynamic modeling of a fully flexible rotor-stator system with bolt joint and rubbing-induced nonlinear vibration
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作者 Hong GUAN Hui MA +4 位作者 Tianrui YANG Yanyan CHEN Yao ZENG Qinqin MU Bangchun WEN 《Applied Mathematics and Mechanics(English Edition)》 2025年第10期1939-1954,I0037-I0048,共28页
In addition to blade-to-casing rubbing,drum-to-labyrinth rubbing is another common interaction in aero-engines.In this study,the labyrinth seal is simplified and modeled as an inner ring.First,considering the flexibil... In addition to blade-to-casing rubbing,drum-to-labyrinth rubbing is another common interaction in aero-engines.In this study,the labyrinth seal is simplified and modeled as an inner ring.First,considering the flexibility of both the drum and inner ring,a novel rubbing force model applicable to drum-inner ring rubbing is proposed,and this model is partially validated with the measured vibration responses.Incorporating both drum-inner ring rubbing faults and bolt joint effects,a dynamic model of the shaft-diskdrum-inner ring-vane-casing system(SDDIRVCS)is established with beam-shell hybrid elements to investigate the nonlinear dynamic responses induced by rubbing at various rotational speeds.The established dynamic model of the SDDIRVCS is validated by the comparison of its modal characteristics with those obtained from the ANSYS simulations.The results indicate that the rotor spectrum is dominated by odd-multiple harmonics,while the stator spectrum exhibits prominent even-multiple harmonics.Moreover,the rubbing location between the drum and the inner ring varies with the dynamic behavior of the rotor system. 展开更多
关键词 shaft-disk-drum-inner ring-vane-casing system(SDDIRVCS) vibration characteristic drum-inner ring rubbing fault bolted joint finite element method(FEM)
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