A PROCESS MODEL FOR ROBOTIC DISC GRINDING

被引:6
|
作者
NASRI, H
BOLMSJO, G
机构
[1] Department of Production and Materials Engineering, Lund University
关键词
Cup grinders - Disc grinders - Feeding rate - Grinding force - Robot cell - Robotic disc grinding - Rotary files;
D O I
10.1016/0890-6955(94)P4346-V
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Automation of deburring and cleaning of castings is desirable for many reasons. The major reasons are dangerous working conditions, difficulties in finding workers for cleaning sections, and improved profitability. A suitable robot cell capable of using different tools, such as cup grinders, disc grinders and rotary files, is the solution. This robot should be completed with sensors in order to keep the quality of the cleaned surface at an acceptable level. Although using sensors simplifies both the programming and quality control there are still other problems that need to be solved. These involved selection of machining data, e.g. feeding rate and grinding force in a force controlled operation based on parameters such as tool type, disc grinder and geometry. In order to decrease the programming time, a process model for disc grinders has been developed. This article investigates this process model and pays attention to problems such as wavy or burned surfaces and the effect of a robot's repetition accuracy in the results obtained. Many aspects treated in this article are quite general, and can be applied in other types of grinding operations.
引用
下载
收藏
页码:503 / 510
页数:8
相关论文
共 50 条
  • [1] A MATERIAL REMOVAL MODEL FOR ROBOTIC BELT GRINDING PROCESS
    Wu, Shuihua
    Kazerounian, Kazem
    Gan, Zhongxue
    Sun, Yunquan
    MACHINING SCIENCE AND TECHNOLOGY, 2014, 18 (01) : 15 - 30
  • [2] A local process model for simulation of robotic belt grinding
    Ren, X.
    Cabaravdic, M.
    Zhang, X.
    Kuhlenkoetter, B.
    INTERNATIONAL JOURNAL OF MACHINE TOOLS & MANUFACTURE, 2007, 47 (06): : 962 - 970
  • [3] Parametric modelling and control of the robotic grinding process
    Dai, H.
    Yuen, K. M.
    Elbestawi, M. A.
    INTERNATIONAL JOURNAL OF ADVANCED MANUFACTURING TECHNOLOGY, 1993, 8 (03): : 182 - 192
  • [4] Development of the process model for plunge grinding and optimization of grinding process
    Choi, J.
    Lee, C. W.
    Park, J-H
    PROCEEDINGS OF THE INSTITUTION OF MECHANICAL ENGINEERS PART C-JOURNAL OF MECHANICAL ENGINEERING SCIENCE, 2011, 225 (C11) : 2628 - 2637
  • [5] Characterization and Modeling of Grinding Speed and Belt Wear Condition for Robotic Grinding Process
    Yang, Hsuan-Yu
    Lian, Feng-Li
    2021 IEEE/SICE INTERNATIONAL SYMPOSIUM ON SYSTEM INTEGRATION (SII), 2021, : 66 - 71
  • [6] Quantitative grinding depth model for robotic weld seam grinding systems
    Ge, Jimin
    Deng, Zhaohui
    Li, Zhongyang
    Liu, Wei
    Zhuo, Rongjin
    Wan, Linlin
    Nie, Jiaxu
    JOURNAL OF MANUFACTURING PROCESSES, 2023, 89 : 397 - 409
  • [7] Investigation of cycle time behavior in the robotic grinding process
    Joshi, Kedar
    Melkote, Shreyes N.
    Anderson, Matthew
    Chaudhari, Rahul
    CIRP JOURNAL OF MANUFACTURING SCIENCE AND TECHNOLOGY, 2021, 35 : 315 - 322
  • [8] Process parameter optimization model for robotic abrasive belt grinding of aero-engine blades
    Yang, Zhongqiang
    Huang, Zhi
    Wang, Hongyan
    Wang, Limin
    Yang, Han
    INTERNATIONAL JOURNAL OF ADVANCED MANUFACTURING TECHNOLOGY, 2024, 131 (5-6): : 2039 - 2054
  • [9] Process parameter optimization model for robotic abrasive belt grinding of aero-engine blades
    Zhongqiang Yang
    Zhi Huang
    Hongyan Wang
    Limin Wang
    Han Yang
    The International Journal of Advanced Manufacturing Technology, 2024, 131 : 2039 - 2054
  • [10] Dynamic model of the grinding process
    Zhang, N
    Kirpitchenko, I
    Liu, DK
    JOURNAL OF SOUND AND VIBRATION, 2005, 280 (1-2) : 425 - 432