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Elliptical model for surface topography prediction in five-axis flank milling
作者姓名:Liping WANG  Shuyi GE  Hao SIa  Liwen GUAN  Feiyu DUAN  Yuzhe LIU
作者单位:1. Department of Mechanical Engineering, Tsinghua University;2. School of Mechanical and Electrical Engineering, University of Electronic Science and Technology of China;3. Beijing Institute of Astronautical Systems Engineering
基金项目:financially supported by the Major National S&T Program of China (2017ZX04002001);;the Major National S&T Program of China (2016ZX04004004);;the National Natural Science Foundation of China (51675301);
摘    要:In five-axis flank milling operations, the intersecting surfaces of different cutting edges create roughness on the milled surfaces that cannot be ignored in situations with strict requirements,especially in aeronautical manufacturing. To focus on motion problems in milling operations, this paper presents a new model that utilizes elliptical paths as cutting edge trajectories on 3D surface topography machined by peripheral milling. First, the cutter parallel axis offset and location angle are co...

收稿时间:27 February 2019

Elliptical model for surface topography prediction in five-axis flank milling
Liping WANG,Shuyi GE,Hao SIa,Liwen GUAN,Feiyu DUAN,Yuzhe LIU.Elliptical model for surface topography prediction in five-axis flank milling[J].Chinese Journal of Aeronautics,2020,33(4):1361-1374.
Institution:1. Department of Mechanical Engineering, Tsinghua University, Beijing 100084, China;2. School of Mechanical and Electrical Engineering, University of Electronic Science and Technology of China, Chengdu 611731, China;3. Beijing Institute of Astronautical Systems Engineering, Beijing 100076, China
Abstract:In five-axis flank milling operations, the intersecting surfaces of different cutting edges create roughness on the milled surfaces that cannot be ignored in situations with strict requirements, especially in aeronautical manufacturing. To focus on motion problems in milling operations, this paper presents a new model that utilizes elliptical paths as cutting edge trajectories on 3D surface topography machined by peripheral milling. First, the cutter parallel axis offset and location angle are considered, which change the location of the ellipse center and intersection point of the cutting edges. Then, through the proposed model, the predicted surface topography is obtained, and the factors that affect the development tendency of roughness are analyzed. Next, the effects of the cutter location position (CLP) geometric parameters, cutter parallel axis offset and curvature on the roughness are evaluated by a numerical simulation. Finally, machining tests are carried out to validate the model predictions, and the results show that the surface topography predictions correspond well with the experimental results.
Keywords:Cutter runout  Elliptical paths  Five-axis flank milling  Surface topography  Workpiece curvature
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