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    Spectral element method for stability analysis of milling processes with discontinuous time-periodicity

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    Spectral element method for stability analysis of milling_Final.pdf (1.448Mb)
    Date
    2017
    Author
    Lehotzky, David
    Insperger, Tamas
    Khasawneh, Firas
    Stepan, Gabor
    Publisher
    International Journal of Advanced Manufacturing Technology
    Metadata
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    Subject
    spectral element method
    stability analysis
    machine tools
    chatter models
    milling
    efficiency
    computational time
    stability boundaries
    convergence
    Abstract
    This paper presents an application of the spectral element method for the stability analysis of regenerative machine tool chatter models in milling operations. An extension of the spectral element method is introduced in order to handle the discontinuities in the cutting force in an effcient way. The efficiency of the method is demonstrated on some well-known machine tool chatter models taken from the literature. Efficiency is characterized by the computational time, the convergence of the stability boundaries and the convergence of critical characteristic multipliers. Results show that, compared to the most widespread methods in machining literature, the spectral element method provides significant improvements in computational time while maintaining high accuracy levels.
    URI
    http://hdl.handle.net/1951/69176
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    • SUNY Polytechnic Institute Faculty and Staff Research, Publications, and Creative Works [63]

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