Experimental research on aluminum alloy blade's surface roughness of integrate rotor based on four-axis high speed milling

被引:2
|
作者
Bu, Guangbin [1 ]
Zhao, Can [2 ]
Zuo, Dunwen [1 ]
机构
[1] Nanjing Univ Aeronaut & Astronaut, Coll Mech & Elect Engn, Nanjing 210016, Peoples R China
[2] Heilongiang Inst Sci Technol, modern Manufacture Engn Ctr, Harbin 150027, Peoples R China
关键词
aluminum alloy; high speed milling; surface roughness; cutting speed; feed;
D O I
10.4028/www.scientific.net/KEM.375-376.390
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
It was carried out that a HSM test for aluminum alloy (2A70) rotor with carbide cutter. It was investigated and analyzed that the influence of different cutting speed and feed speed on the roughness of blade's finished surface. The experiment showed that high quality surface was easy to obtain by increasing the cutting speed and decreasing the feed. But when the cutting speed crossed the critical value, increase in the cutting speed caused slight decrease in the surface roughness. The feed decreased to a very small value, the roughness increased a little. It was expected that best surface roughness and machining efficiency could be obtained by selecting the appropriate cutting speed and feed.
引用
收藏
页码:390 / +
页数:2
相关论文
共 50 条
  • [31] Surface Roughness Investigation of Ultrafine-Grained Aluminum Alloy Subjected to High-Speed Erosion
    N. A. Kazarinov
    A. D. Evstifeev
    Y. V. Petrov
    S. A. Atroshenko
    V. A. Lashkov
    R. Z. Valiev
    A. S. Bondarenko
    Journal of Materials Engineering and Performance, 2016, 25 : 3573 - 3579
  • [32] Surface morphology and microcrack formation for 7050-T7451 aluminum alloy in high speed milling
    Zhaolin Zhong
    Xing Ai
    Zhanqiang Liu
    Jigang Liu
    Qingzhong Xu
    The International Journal of Advanced Manufacturing Technology, 2015, 78 : 281 - 296
  • [33] Surface morphology and microcrack formation for 7050-T7451 aluminum alloy in high speed milling
    Zhong, Zhaolin
    Ai, Xing
    Liu, Zhanqiang
    Liu, Jigang
    Xu, Qingzhong
    INTERNATIONAL JOURNAL OF ADVANCED MANUFACTURING TECHNOLOGY, 2015, 78 (1-4): : 281 - 296
  • [34] Anisotropic Hydrophobic Surface Fabricated by Microstructuring of Aluminum Alloy Using High Speed Micro-milling
    Zhang, Xinxin
    Xu, Jinkai
    Lian, Zhongxu
    Yu, Zhanjiang
    Yu, Huadong
    2015 IEEE INTERNATIONAL CONFERENCE ON MECHATRONICS AND AUTOMATION, 2015, : 1122 - 1126
  • [35] Trochoid-path-based FEM simulation for high-speed milling of aluminum alloy
    Yuan, Ping
    Ke, Ying-Lin
    Dong, Hui-Yue
    Zhejiang Daxue Xuebao (Gongxue Ban)/Journal of Zhejiang University (Engineering Science), 2009, 43 (03): : 570 - 577
  • [36] Experimental investigation on the effects of cooling system on surface quality in high speed milling of an aluminium alloy
    Chirita, B.
    Tampu, N. C.
    Brabie, G.
    Radu, M. C.
    MODTECH INTERNATIONAL CONFERENCE - MODERN TECHNOLOGIES IN INDUSTRIAL ENGINEERING IV, PTS 1-7, 2016, 145
  • [37] Energy consumption and surface roughness maps for low and moderate speed machining of Aluminum alloy 2014: An experimental study
    Shaukat, Umer
    Gohery, Scott
    Molla, Tesfaye
    AIMS MATERIALS SCIENCE, 2023, 10 (04) : 575 - 588
  • [38] Gradient Boosted Trees Predictive Models for Surface Roughness in High-Speed Milling in the Steel and Aluminum Metalworking Industry
    Flores, Victor
    Keith, Brian
    COMPLEXITY, 2019, 2019
  • [39] Control rules of surface integrity and formation of metamorphic layer in high-speed milling of 7055 aluminum alloy
    Yao, Changfeng
    Zuo, Wei
    Wu, Daoxia
    Ren, Junxue
    Zhang, Dinghua
    PROCEEDINGS OF THE INSTITUTION OF MECHANICAL ENGINEERS PART B-JOURNAL OF ENGINEERING MANUFACTURE, 2015, 229 (02) : 187 - 204
  • [40] Research on plasma surface metallurgy low alloy high speed steel power hack saw blade
    Gao Yuan
    He Zhiyong
    Xu Zhong
    JOURNAL OF ADVANCED MATERIALS, 2007, : 34 - 37