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    Please use this identifier to cite or link to this item: https://ir.lib.ncu.edu.tw/handle/987654321/109013


    Title: Planetary motion combined with two-dimensional vibration-assisted magnetic abrasive finishing
    Authors: 顏炳華;Lee, Yi-Hsun;Wu, Kun-Ling;Bai, Chung-Ting;Liao, Chen-Yuan;Yan, Biing-Hwa
    Contributors: 工學院機械工程學系
    Keywords: Abrasive cutting;Abrasive finishing;Abrasive machining;Abrasives;Acceleration;Austenitic stainless steels;CAE) and Design;Computer-Aided Engineering (CAD;Design of experiments;Engineering;Industrial and Production Engineering;Mechanical Engineering;Media Management;Original Article;Parameters;Planetary rotation;Polishing;Surface properties;Surface roughness;Taguchi methods;Three dimensional motion;Vibration;Weight;Workpieces
    Date: 2015-02-01
    Issue Date: 2026-04-23 15:22:24 (UTC+8)
    Publisher: Springer London;London: Springer London
    Abstract: 摘要: This study develops a new surface polishing approach by combining planetary motion (PM) with two-dimensional vibration-assisted magnetic abrasive finishing (PM-2DVAMAF). Planetary motion involves both rotation and revolution, thus generating radial acceleration, which strengthens the normal force exerted on the workpiece surface, and in turn enhances the cutting power of the abrasives and their polishing performance. Assisted by two-dimensional vibration, PM results in uniform, intersecting, and closely packed polishing paths, which contribute to better surface quality within a shorter processing time. This study also uses the Taguchi experimental design method to obtain the optimal combination of PM-2DVAMAF parameters for surface roughness improvement. The optimal combination obtained includes working gap, 1 mm; amplitude of vibration, 0.1 mm; particle size of steel grit, 0.125 mm; weight of SiC, 3 g; weight of steel particles, 0.5 g; weight of machining fluid, 5 g; frequency of vibration along the X - and Y -directions, 16.67 Hz; and rotational speed of magnet, 500 rpm. Experimental results reveal that 12.5-min PM-2DVAMAF under optimal combination of parameters can reduce surface roughness of a stainless steel SUS304 workpiece from 0.14 to 0.032 μm, an improvement rate of 77.1 %. PM-2DVAMAF can indeed improve surface quality with a short machining time and less abrasives required, both of which contribute to cost reduction and more environmentally friendly machining method in industry.
    其他題名: Int J Adv Manuf Technol
    出版者: London: Springer London
    出版日期: 2015-02-01
    出處: International journal of advanced manufacturing technology, 2015-02, Vol.76 (9-12), p.1865-1877
    資源來源: EBSCOhost Academic Search Premier
    版權: Springer-Verlag London 2014
    版權: The International Journal of Advanced Manufacturing Technology is a copyright of Springer, (2014). All Rights Reserved.
    識別號: ISSN: 0268-3768
    識別號: EISSN: 1433-3015
    識別號: DOI: 10.1007/s00170-014-6370-x
    Appears in Collections:[Departmant of Mechanical Engineering ] journal & Dissertation

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