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A Study of the Movement Path for NC-Electrochemical Machining of an Integral Impeller

A Study of the Movement Path for NC-Electrochemical Machining of an Integral Impeller
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摘要 Aiming at machining an integral impeller used by an aero-engine by NC-Electrochemical Machining ( NC-ECM) , we first describe the fitting of a distorted blade surface with a ruled surface. Then a four-axis NC-electrochemical machining process is analyzed and the movement of the impeller is studied by using an equivalent open-loop plane motion link, and every program segment's feed displacement of three axes is calculated by analytical solution. Through comparing two results which are obtained , respectively, from analytical solution and experimental result, the comparative effectiveness has proved that the analytical solution is useful in calculating the feed displacement. The study is helpful for the programming of the machining process. Aiming at machining an integral impeller used by an aero-engine by NC-Electrochemical Machining ( NC-ECM) , we first describe the fitting of a distorted blade surface with a ruled surface. Then a four-axis NC-electrochemical machining process is analyzed and the movement of the impeller is studied by using an equivalent open-loop plane motion link, and every program segment's feed displacement of three axes is calculated by analytical solution. Through comparing two results which are obtained , respectively, from analytical solution and experimental result, the comparative effectiveness has proved that the analytical solution is useful in calculating the feed displacement. The study is helpful for the programming of the machining process.
出处 《International Journal of Plant Engineering and Management》 2010年第4期251-254,共4页 国际设备工程与管理(英文版)
基金 supported by the pre-research project of national defence science and technology in the Eleventh Five-Year Planunder Grant No.51318030403
关键词 numerical control contour evolution electrochemical machining integral impeller MOVEMENT numerical control contour evolution electrochemical machining integral impeller movement
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