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    Chaotic Response of a Slider Crank Mechanism

    Source: Journal of Vibration and Acoustics:;1991:;volume( 113 ):;issue: 001::page 69
    Author:
    J. Peurach
    ,
    B. H. Tongue
    DOI: 10.1115/1.2930157
    Publisher: The American Society of Mechanical Engineers (ASME)
    Abstract: A physical and corresponding theoretical model of a slider-crank mechanism is presented that approximates the single mode response of a continuous beam under a time periodic excitation in which the spatial distribution of the forcing is in the form of a half sine wave. The purpose of the model is to investigate the existence of chaos in systems having rigid members, as opposed to the highly flexible structures most often seen in chaotic demonstrations. The experimental construct displays complicated dynamical responses, including chaos, while the idealized theoretical model only supports the existence of a period one response. However, it is shown that the addition of an extremely small external perturbation will cause the response to demonstrate what appears to be a robustly chaotic response. A comparison of the Lyapunov exponents between this construct and the experimental model show close agreement.
    keyword(s): Mechanisms , Chaos , Flexible structures AND Waves ,
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      Chaotic Response of a Slider Crank Mechanism

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    http://yetl.yabesh.ir/yetl1/handle/yetl/109537
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    contributor authorJ. Peurach
    contributor authorB. H. Tongue
    date accessioned2017-05-08T23:37:14Z
    date available2017-05-08T23:37:14Z
    date copyrightJanuary, 1991
    date issued1991
    identifier issn1048-9002
    identifier otherJVACEK-28796#69_1.pdf
    identifier urihttp://yetl.yabesh.ir/yetl/handle/yetl/109537
    description abstractA physical and corresponding theoretical model of a slider-crank mechanism is presented that approximates the single mode response of a continuous beam under a time periodic excitation in which the spatial distribution of the forcing is in the form of a half sine wave. The purpose of the model is to investigate the existence of chaos in systems having rigid members, as opposed to the highly flexible structures most often seen in chaotic demonstrations. The experimental construct displays complicated dynamical responses, including chaos, while the idealized theoretical model only supports the existence of a period one response. However, it is shown that the addition of an extremely small external perturbation will cause the response to demonstrate what appears to be a robustly chaotic response. A comparison of the Lyapunov exponents between this construct and the experimental model show close agreement.
    publisherThe American Society of Mechanical Engineers (ASME)
    titleChaotic Response of a Slider Crank Mechanism
    typeJournal Paper
    journal volume113
    journal issue1
    journal titleJournal of Vibration and Acoustics
    identifier doi10.1115/1.2930157
    journal fristpage69
    journal lastpage73
    identifier eissn1528-8927
    keywordsMechanisms
    keywordsChaos
    keywordsFlexible structures AND Waves
    treeJournal of Vibration and Acoustics:;1991:;volume( 113 ):;issue: 001
    contenttypeFulltext
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