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    Please use this identifier to cite or link to this item: http://ir.lib.ncu.edu.tw/handle/987654321/26851


    Title: Dynamic analysis of a rotating beam subjected to repeating axial and transverse forces for simulating a lathing process
    Authors: Huang,YM;Yang,ML
    Contributors: 機械工程研究所
    Keywords: DEFLECTION DEPENDENT LOAD;SHAFT SUBJECT;MOVING LOAD;RESONANCE;STABILITY
    Date: 2009
    Issue Date: 2010-06-29 18:01:42 (UTC+8)
    Publisher: 中央大學
    Abstract: The dynamics of the workpiece of a lathe is simulated in the presented paper. A rotating Rayleigh beam is chosen as a simple model of the workpiece. The beam or the workpiece is subjected to forces front the cutting tool of the lathe. The external forces, in transverse and axial directions, are traveling in a repeating or periodic motion. The force in the axial direction is a large cutting force resulting in Coupled bending deformation while forces in the transverse directions are the contacting forces. In this paper, the governing equations of the rotating Rayleigh beam are derived by Hamilton's principle. The external, periodic forces resulted from the tool are expressed in Fourier series. Galerkin's method is then chosen for disceretizing the partial differential equations. The instability regions of the responses are determined by using the method of multiple scales and the Floquet theory. Fast Fourier transform gives the frequency domain responses for examining the dynamic characteristics. The numerical results are discussed. Parametric Studies are also performed. (C) 2009 Elsevier Ltd. All rights reserved.
    Relation: INTERNATIONAL JOURNAL OF MECHANICAL SCIENCES
    Appears in Collections:[Graduate Institute of Mechanical Engineering] journal & Dissertation

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