YAO Bin, LU Jie, CAI Zhiqin, et al. Envelope-Pixel Design for Generating Grinding Wheel Profile in Forming Screw Rotor[J]. 2020, 54(2): 16-23.
DOI:
YAO Bin, LU Jie, CAI Zhiqin, et al. Envelope-Pixel Design for Generating Grinding Wheel Profile in Forming Screw Rotor[J]. 2020, 54(2): 16-23.DOI: 10.7652/xjtuxb202002003.
Envelope-Pixel Design for Generating Grinding Wheel Profile in Forming Screw Rotor
Focusing on high efficiency and high precision manufacturing of screw rotor
which is the core component of the twin-screw compressor
a design scheme based on the envelope-pixel method to generate a grinding wheel profile for forming screw rotor is proposed
which can efficiently complete the design of grinding wheel profile in a graphic space. The enveloping surface of the conjugate motion between the screw rotor and the forming wheel is established with the computer graphics and the meshing theory. Then a specified color is used to light the best approximation pixels of the enveloping surface with Bresenham algorithm
and the boundary pixels of the enveloping surface are captured by boundary tracking for the accurate data of grinding wheel profile. Grinding experiment shows that the deviation between different grinding wheel profiles generated by the envelope-pixel method and the traditional analytical envelope method gets -0.003 mm
and the error of machined rotor in the envelope-
关键词
Keywords
references
SHEN Zhihuang, YAO Bin, CHEN Binqiang, et al. A novel rotor profile error tracing and compensation strategy for high precision machining of screw rotor based on trial cutting of limited samples [J]. Shock and Vibration, 2015, 2015: 978325
ZHAO Y, ZHAO S, WEI W, et al. Precision grinding of screw rotors using CNC method [J]. The International Journal of Advanced Manufacturing Technology, 2017, 89(9/10/11/12): 2967-2979
PARK S Y, LEE H K, YANG G E, et al. A study on the machining of compressor rotors using formed tools [J]. International Journal of Precision Engineering and Manufacturing, 2010, 11(2): 195-200
HSIEH J F. Mathematical model and sensitivity analysis for helical groove machining [J]. International Journal of Machine Tools & Manufacture, 2005, 46(10): 1087-1096
陆如升, 沈志煌, 彭丽文, 等. 磨削螺杆转子砂轮截形计算与仿真验证 [J]. 厦门大学学报(自然科学版), 2011, 50(5): 852-855.LU Rusheng, SHEN Zhihuang, PENG Liwen, et al. Calculation of grinding wheel profile and 3D simulation for grinding screw rotor flute [J]. Journal of Xiamen University(Natural Science), 2011, 50(5): 852-855. [6] WEI Jing, ZHANG Qi, XU Zhezhu, et al. Study on precision grinding of screw rotors using CBN wheel [J]. International Journal of Precision Engineering and Manufacturing, 2010, 11(5): 651-658
WEI Jing, SUN Qingchao, SUN Xujian, et al. A study on rotor profiles design for a novel twin-screw kneader [J]. International Journal of Precision Engineering and Manufacturing, 2013, 14(3): 451-459
WU Yuren, HSU Weihsuan. A general mathematical model for continuous generating machining of screw rotors with worm-shaped tools [J]. Applied Mathematical Modelling, 2014, 38(1): 28-37
TANG Qian, ZHANG Yuanxun, JIANG Zhenwei, et al. Design method for screw forming cutter based on tooth profile composed of discrete points [J]. Journal of Mechanical Design, 2015, 137(8): 085002
吴序堂. 齿轮啮合原理 [M]. 2版. 西安: 西安交通大学出版社, 2009: 76-123
邢子文, 吴华根, 束鹏程. 螺杆压缩机设计理论与关键技术的研究和开发 [J]. 西安交通大学学报, 2007, 41(7): 755-763, 810.XING Ziwen, WU Huagen, SHU Pengcheng. Research and development on design theory and key technology of screw compressors [J]. Journal of Xi’an Jiaotong University, 2007, 41(7): 755-763, 810
WU Yuren, FONG Zhanghua, ZHANG Zhengxiang. Simulation of a cylindrical form grinding process by the radial-ray shooting(RRS)method [J]. Mechanism and Machine Theory, 2010, 45(2): 261-272
LYASHKOV A A, PANCHUK K L. Computer modeling of a pump screw and disc tool cross shaping process [J]. Procedia Engineering, 2015, 113: 174-180
YANG Jian, SUN Fanghong, LU Zheng. Solving the screw compressor rotor-forming grinding wheel using the edge detection method based on the graphic method [J]. Proceedings of the Institution of Mechanical Engineers: Part E Journal of Process Mechanical Engineering, 2019, 233(5): 967-979
SHEN Zhihuang, YAO Bin, TENG Weibin, et al. Generating grinding profile between screw rotor and forming tool by digital graphic scanning(DGS)method [J]. International Journal of Precision Engineering and Manufacturing, 2016, 17(1): 35-41
SHALINI G P. Principles of computer graphics [M]. Berlin, Germany: Springer, 2017: 533
李群辉, 张俊祖, 耿国华. 以轮廓曲线为特征的断裂面匹配 [J]. 西安交通大学报, 2016, 50(9): 105-110.LI Qunhui, ZHANG Junzu, GENG Guohua. Fracture surfaces matching based on contour curve [J]. Journal of Xi’an Jiaotong University, 2016, 50(9): 105-110
蒙雁琦, 胡改玲, 温琳鹏. 区域分割的亚像素相位立体匹配算法 [J]. 西安交通大学学报, 2017, 51(10): 33-38.MENG Yanqi, HU Gailing, WEN Linpeng. A stereo matching algorithm of sub-pixel phases based on region segmention photo elastic method [J]. Journal of Xi’an Jiaotong University, 2017, 51(10): 33-38
MCLEAN I S. Electronic imaging in astronomy [M]. Berlin, Germany: Springer, 2008: 353-384
DUAN Zhenyun, WANG Ning, FU Jingshun, et al. High precision edge detection algorithm for mechanical parts [J]. Measurement Science Review, 2018, 18(2): 65-71
HASHEMIAN A, HOSSEINI S F. An integrated fitting and fairing approach for object reconstruction using smooth NURBS curves and surfaces [J]. Computers & Mathematics with Applications, 2018, 76(7): 1555-1575.