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Articles

A practical approach for partitioning free-form surfaces

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Pages 992-1001 | Received 09 Dec 2009, Accepted 14 Jun 2009, Published online: 21 Oct 2010

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Feiyan Han, Chuanwei Zhang, Wu Zhang, Wei Guo & Bin Feng. (2020) A dynamic synchronous optimisation method of tool sequence selection and multi-state process models depth distribution for high efficiency machining. International Journal of Production Research 58:20, pages 6145-6158.
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Linqiang Gong, Cheng Fan, Zhi Shen, Zhang Chen & Lei Zhang. (2023) Research on discretization algorithm of free-form surface for robotic polishing. Journal of Manufacturing Processes 92, pages 350-370.
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Liangji Chen, Zhiguang Li, Zhi Liu & Zisen Wei. (2022) Optimization method for complex surface partitioning and cutting parameters in 5-axis machining. MATEC Web of Conferences 358, pages 01035.
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Mandeep Dhanda, Aman Kukreja & S. S. Pande. (2021) Region-Based Efficient Computer Numerical Control Machining Using Point Cloud Data. Journal of Computing and Information Science in Engineering 21:4.
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Rahul A. Mali, T.V.K. Gupta & J. Ramkumar. (2021) A comprehensive review of free-form surface milling– Advances over a decade. Journal of Manufacturing Processes 62, pages 132-167.
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Hai-Long Xie, Jing-Rong Li, Zhao-Yang Liao, Qing-Hui Wang & Xue-Feng Zhou. (2020) A robotic belt grinding approach based on easy-to-grind region partitioning. Journal of Manufacturing Processes 56, pages 830-844.
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Yasutomo SUGISAWA, Keigo TAKASUGI & Naoki ASAKAWA. (2020) Proposal of CAPP System based on Machine Tool Feature加工機の特徴に基づいた工程設計支援システムの提案. Journal of the Japan Society for Precision Engineering 86:5, pages 380-386.
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L. V. Dang, K. Vacharanukul & S. S. Makhanov. (2019) Compact radial zigzag for five-axis machining of STL surfaces. The International Journal of Advanced Manufacturing Technology 105:5-6, pages 1853-1882.
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Tuong Nguyen Van & Natasa Naprstkova. (2019) Matlab-based Calculation Method for Partitioning a Free-form Surface into Regions. Manufacturing Technology 19:3, pages 518-524.
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Yazui Liu, Gang Zhao, Oleksandr Zavalnyi & Wenlei Xiao. (2019) Toolpath generation for partition machining of T-spline surface based on local refinement. The International Journal of Advanced Manufacturing Technology 102:9-12, pages 3051-3064.
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Junhua Zhao, Li Li, Yue Wang & John W. Sutherland. (2019) Impact of surface machining complexity on energy consumption and efficiency in CNC milling. The International Journal of Advanced Manufacturing Technology 102:9-12, pages 2891-2905.
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Nguyen Van Tuong. (2019) Advanced CAD/CAM Techniques for 5-Axis Machining of Free-Form Surfaces. Manufacturing Technology 19:2, pages 332-336.
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L. V. Dang & S.S. Makhanov. (2018) Vector Field Analysis for optimization of the Tool Path of the Five-Axis Milling Machine. Vector Field Analysis for optimization of the Tool Path of the Five-Axis Milling Machine.
A Garcia, E Cuan-Urquizo, A Roman-Flores & E Vazquez. (2018) Tool path generation for sculptured surfaces with 4-axis machining. MATEC Web of Conferences 249, pages 03004.
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Soumiya Bendjebla, Na Cai, Nabil Anwer, Sylvain Lavernhe & Charyar Mehdi-Souzani. (2018) Freeform Machining Features: New Concepts and Classification. Procedia CIRP 67, pages 482-487.
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Xu Liu, Yingguang Li & James Gao. (2015) A multi-perspective dynamic feature concept in adaptive NC machining of complex freeform surfaces. The International Journal of Advanced Manufacturing Technology 82:5-8, pages 1259-1268.
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Armando Roman, Eduardo Barocio, Joel C Huegel & Sanjeev Bedi. (2015) Rolling ball method applied to 3½½-axis machining for tool orientation and positioning and path planning. Advances in Mechanical Engineering 7:12, pages 168781401562007.
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Xu Liu, Yingguang Li, Sibo Ma & Chen-han Lee. (2015) A tool path generation method for freeform surface machining by introducing the tensor property of machining strip width. Computer-Aided Design 66, pages 1-13.
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Li Li, Bing Chen, Fei Liu & Congbo Li. (2014) Complexity analysis and calculation for sculptured surface in multi-axis CNC machining based on surface subdivision. The International Journal of Advanced Manufacturing Technology 71:5-8, pages 1433-1444.
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