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Topic 07. Forced Vibration of Single DOF: Undamped System Under Harmonic Excitation

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    117374
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    Topic 07 covers: deriving the equation of motion (EOM) for an undamped single-degree-of-freedom (DOF) system subjected to harmonic excitation; solving the EOM to determine the system's steady-state response; interpreting the dynamic behavior of the vibrating system under harmonic excitation.

    Harmonic excitation is a common form of external forcing encountered in mechanical systems, arising from periodic inputs such as rotating machinery, engines, or unbalanced loads. Understanding how an undamped system responds to harmonic excitation is fundamental for predicting system behavior, identifying resonance conditions, and ensuring structural integrity. This chapter provides a comprehensive analysis of the system's steady-state response, emphasizing the relationship between excitation frequency, amplitude, and phase. Mastering these concepts enables engineers to evaluate system performance, design effective vibration isolation strategies, and optimize mechanical systems to operate safely and efficiently under periodic loading conditions.

    At the end of the chapter, an Extra Sheet is provided on "the Method of Undetermined Coefficients", an approach for determining particular solutions to nonhomogeneous ordinary differential equations.

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    Extra Sheet for Method of Undetermined Coefficients 

    ENGR 317 Extra Sheet - Undetermined Functions_Page_1.jpg

    ENGR 317 Extra Sheet - Undetermined Functions_Page_2.jpg


    This page titled Topic 07. Forced Vibration of Single DOF: Undamped System Under Harmonic Excitation is shared under a CC BY-NC-SA license and was authored, remixed, and/or curated by JuEun Lee.