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    Nonlinear Dynamics of a Magnetically Supported Rotor on Safety Auxiliary Bearings

    Source: Journal of Vibration and Acoustics:;1998:;volume( 120 ):;issue: 002::page 596
    Author:
    X. Wang
    ,
    S. Noah
    DOI: 10.1115/1.2893869
    Publisher: The American Society of Mechanical Engineers (ASME)
    Abstract: This study concerns the dynamic response of a rotor landed on auxiliary (catcher) bearings in an Active Magnetic Bearing (AMB) supported rotor, following postulated loss of power or overload of the AMB. An analytical model involving a disk, a shaft and auxiliary bearings on damped flexible supports is constructed and appropriate equations of the nonlinear dynamic system are developed. The equations include a switch function to indicate contact/non-contact events and determine the existence of contact normal forces and tangential friction forces between the shaft and the bearings. Steady state solutions are obtained. An analytical method was formulated and used to yield solutions for cases with well balanced rotors, in absence of any side forces. The Fixed Point Algorithm (FPA) is used to obtain steady state periodic solutions of the unbalanced rotor for various parameters. The FPA is used to determine the stability of the periodic solutions and the type of bifurcation involved. Multiple periodic solutions, quasi-periodic and chaotic responses are detected and discussed. A set of preliminary guidelines for selection of the parameters of the catcher bearings is given.
    keyword(s): Safety , Bearings , Rotors , Nonlinear dynamics , Force , Equations , Steady state , Switches , Magnetic bearings , Nonlinear dynamical systems , Stability , Friction , Algorithms , Disks , Bifurcation AND Dynamic response ,
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      Nonlinear Dynamics of a Magnetically Supported Rotor on Safety Auxiliary Bearings

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    http://yetl.yabesh.ir/yetl1/handle/yetl/121477
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    contributor authorX. Wang
    contributor authorS. Noah
    date accessioned2017-05-08T23:58:29Z
    date available2017-05-08T23:58:29Z
    date copyrightApril, 1998
    date issued1998
    identifier issn1048-9002
    identifier otherJVACEK-28843#596_1.pdf
    identifier urihttp://yetl.yabesh.ir/yetl/handle/yetl/121477
    description abstractThis study concerns the dynamic response of a rotor landed on auxiliary (catcher) bearings in an Active Magnetic Bearing (AMB) supported rotor, following postulated loss of power or overload of the AMB. An analytical model involving a disk, a shaft and auxiliary bearings on damped flexible supports is constructed and appropriate equations of the nonlinear dynamic system are developed. The equations include a switch function to indicate contact/non-contact events and determine the existence of contact normal forces and tangential friction forces between the shaft and the bearings. Steady state solutions are obtained. An analytical method was formulated and used to yield solutions for cases with well balanced rotors, in absence of any side forces. The Fixed Point Algorithm (FPA) is used to obtain steady state periodic solutions of the unbalanced rotor for various parameters. The FPA is used to determine the stability of the periodic solutions and the type of bifurcation involved. Multiple periodic solutions, quasi-periodic and chaotic responses are detected and discussed. A set of preliminary guidelines for selection of the parameters of the catcher bearings is given.
    publisherThe American Society of Mechanical Engineers (ASME)
    titleNonlinear Dynamics of a Magnetically Supported Rotor on Safety Auxiliary Bearings
    typeJournal Paper
    journal volume120
    journal issue2
    journal titleJournal of Vibration and Acoustics
    identifier doi10.1115/1.2893869
    journal fristpage596
    journal lastpage606
    identifier eissn1528-8927
    keywordsSafety
    keywordsBearings
    keywordsRotors
    keywordsNonlinear dynamics
    keywordsForce
    keywordsEquations
    keywordsSteady state
    keywordsSwitches
    keywordsMagnetic bearings
    keywordsNonlinear dynamical systems
    keywordsStability
    keywordsFriction
    keywordsAlgorithms
    keywordsDisks
    keywordsBifurcation AND Dynamic response
    treeJournal of Vibration and Acoustics:;1998:;volume( 120 ):;issue: 002
    contenttypeFulltext
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