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      KCI등재 SCIE SCOPUS

      Characteristics analysis of aero-engine whole vibration response with rolling bearing radial clearance

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      https://www.riss.kr/link?id=A105078367

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      다국어 초록 (Multilingual Abstract)

      For the influence of rolling bearing radial clearance on the whole vibration in the aero-engine whole system, a real engine rotorbearing-casing whole model is established. The rotor and casing systems are modeled by means of FEM; the support systems a...

      For the influence of rolling bearing radial clearance on the whole vibration in the aero-engine whole system, a real engine rotorbearing-casing whole model is established. The rotor and casing systems are modeled by means of FEM; the support systems are modeled by lumped-mass model; rolling bearing radial clearance and strong-nonlinearity of Hertz contact force at four different supports are considered. The coupled system response is obtained by the numerical integral method. The characteristics of the whole vibration response are analyzed. For rolling bearing at a typical support, the rotor, outer ring of rolling bearing and casing response characteristics at different rotating speeds are analyzed. The changing law of contact forces for each ball and the global contact forces at different speeds are analyzed. The influence of the radical clearance on the contact forces on the whole vibration is analyzed. The results show that the contact forces will be larger and the acceleration amplitude jumps obviously when the radial clearance is increased, and due to the variable stiffness of the rolling bearing, the natural frequency will appear when the stiffness changes fiercely, that is frequency-locked phenomenon. When the radical clearance is larger and the rotating speed is between two critical speeds, the rotor squeezes the outer ring now and then. Reducing the radical clearance can reduce the whole vibration and increase the rotor’s stability.

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      참고문헌 (Reference)

      1 A. Muszynska, "Whirl and whip rotor/bearing stability problems" 110 : 443-462, 1986

      2 G. Jang, "Vibration analysis of a rotation system due to the effect of ball bearing waviness" 269 : 709-726, 2004

      3 W. M. Zhai, "Two simple fast integration methods for largescale dynamic problems in engineering" 39 : 4199-4214, 1996

      4 F. F. Ehrich, "Stator whirl rotors in bearing clearance" 381-390, 1967

      5 S. P. Harsha, "Nonlinear dynamic response of a balanced rotor supported by rolling element bearings due to radial internal clearance effect" 41 (41): 688-706, 2006

      6 G. Chen, "Nonlinear dynamic analysis and experiment verication of rotor-ball bearingssupport-stator coupling system for aeroengine with rubbing coupling faults" 132 : 1-9, 2010

      7 J. Wu, "Non-synchronous vibration of a Jeffcott rotor due to internal radial clearance in roller bearings" KIST 446-453, 2010

      8 J. -J. Sinou, "Non-linear dynamics and contacts of an unbalanced exible rotor supported on ball bearings" 44 : 1713-1732, 2009

      9 S. P. Harsha, "Non-linear dynamic behaviors of rolling element bearings due to surface waviness" 272 : 557-580, 2004

      10 F. F. Ehrich, "High order subharmonic response if high speed rotors in bearing clearance" 110 : 9-16, 1988

      1 A. Muszynska, "Whirl and whip rotor/bearing stability problems" 110 : 443-462, 1986

      2 G. Jang, "Vibration analysis of a rotation system due to the effect of ball bearing waviness" 269 : 709-726, 2004

      3 W. M. Zhai, "Two simple fast integration methods for largescale dynamic problems in engineering" 39 : 4199-4214, 1996

      4 F. F. Ehrich, "Stator whirl rotors in bearing clearance" 381-390, 1967

      5 S. P. Harsha, "Nonlinear dynamic response of a balanced rotor supported by rolling element bearings due to radial internal clearance effect" 41 (41): 688-706, 2006

      6 G. Chen, "Nonlinear dynamic analysis and experiment verication of rotor-ball bearingssupport-stator coupling system for aeroengine with rubbing coupling faults" 132 : 1-9, 2010

      7 J. Wu, "Non-synchronous vibration of a Jeffcott rotor due to internal radial clearance in roller bearings" KIST 446-453, 2010

      8 J. -J. Sinou, "Non-linear dynamics and contacts of an unbalanced exible rotor supported on ball bearings" 44 : 1713-1732, 2009

      9 S. P. Harsha, "Non-linear dynamic behaviors of rolling element bearings due to surface waviness" 272 : 557-580, 2004

      10 F. F. Ehrich, "High order subharmonic response if high speed rotors in bearing clearance" 110 : 9-16, 1988

      11 M. Tiwari, "Effect of a ball bearing on the dynamics of a balanced horizontal rotor" 238 (238): 723-756, 2000

      12 M. Tiwari, "Dynamics response of an unbalanced rotor supported on ball bearings" 238 (238): 757-779, 2000

      13 B. Changqing, "Dynamic model of ball bearings with internal clearance and waviness" 294 : 23-48, 2006

      14 H. F. Wang, "Certain type turbofan engine whole vibration model with support looseness fault and casing response characteristics" 1-23, 2014

      15 H. F. Wang, "Asynchronous vibration response characteristics of aero-engine with support looseness fault" 11 : 1-10, 2016

      16 Aeroengine design manual compiling committee, "Aeroengine design manual 19th part: rotor dynamics and wholeengine vibration" Aviation Industry Press 208-226, 2000

      17 C. Guo, "A coupling dynamic model for whole aero-engine vibration and its verification" 27 (27): 242-254, 2012

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      학술지 이력

      학술지 이력
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      외국어명 : KSME International Journal -> Journal of Mechanical Science and Technology
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      학술지 인용정보

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      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 1.04 0.51 0.84
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.74 0.66 0.369 0.12
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