Analytical modeling of acoustic emission for monitoring of peripheral milling process

被引:0
|
作者
Liu, Man [1 ]
Liang, Steven Y. [1 ]
机构
[1] Oklahoma State Univ, Stillwater, United States
关键词
Mathematical Models;
D O I
10.1016/0890-6955(91)90039-6
中图分类号
学科分类号
摘要
This paper presents the development of an analytical model relating the acoustic emission (AE) energy content to the cutting process parameters in peripheral milling and the experimental verification of the effects of the cutting parameters on the AE energy measurement to assess the applicability of AE sensing to the monitoring of peripheral milling. The model consists of an oblique cutting component and a rubbing component. It includes the contribution from both the AE attributed to plastic deformation in the primary shear zone and the AE resulting from interfaces between chips and the rake faces of the cutting teeth, between the workpiece and the cutter periphery as well as between the cutter flank and the machined workpiece surface. The adoption of an effective shear angle and a mean friction angle in the model formulation provides insight into the fundamental mechanism of the cutting process responsible for the generation of the acoustic emission. A numerical example following the model development and a series of peripheral milling tests show that the true mean square voltage of the AE signal room peripheral milling increases with the primary cutting parameter (cutter rotating speed, feedrate, axial and radial depths of cut). The result of this work suggests that the energy measurement of the AE signal can be effectively used for the monitoring of peripheral milling processes.
引用
收藏
页码:589 / 606
相关论文
共 50 条
  • [41] ACOUSTIC-EMISSION MONITORING IN-PROCESS WELDS
    CORDEIRO, RR
    THAYER, WE
    MATERIALS EVALUATION, 1981, 39 (10) : A18 - A18
  • [42] Statistical signal parameters of acoustic emission for process monitoring
    Stephan, M
    Fröhlich, KJ
    Frankenstein, B
    Hentschel, D
    Testing, Reliability, and Application of Micro- and Nano-Material Systems III, 2005, 5766 : 150 - 158
  • [43] Process monitoring of centerless grinding using acoustic emission
    Kim, HY
    Kim, SR
    Ahn, JH
    Kim, SH
    JOURNAL OF MATERIALS PROCESSING TECHNOLOGY, 2001, 111 (1-3) : 273 - 278
  • [44] Acoustic emission monitoring of a mechanochemical surface finishing process
    Strombergsson, Daniel
    Marklund, Par
    Edin, Emil
    Zeman, Frida
    TRIBOLOGY INTERNATIONAL, 2017, 112 : 129 - 136
  • [45] Cutting process monitoring by means of acoustic emission method
    Zizka, J.
    Hana, P.
    Hamplova, L.
    Motycka, Z.
    ACOUSTIC EMISSION TESTING, 2006, 13-14 : 105 - +
  • [46] The application of acoustic emission for precision drilling process monitoring
    Everson, CE
    Cheraghi, SH
    INTERNATIONAL JOURNAL OF MACHINE TOOLS & MANUFACTURE, 1999, 39 (03): : 371 - 387
  • [47] Monitoring and analysis of ball milling process based on acoustic signal inversion
    Deng, Jiacheng
    Zhang, Yi
    Huang, Ao
    Wang, Runfeng
    Gu, Huazhi
    He, Jian
    2019 5TH INTERNATIONAL CONFERENCE ON ENERGY EQUIPMENT SCIENCE AND ENGINEERING, 2020, 461
  • [48] IN-PROCESS TOOL WEAR AND CHIP-FORM MONITORING IN FACE MILLING OPERATION USING ACOUSTIC-EMISSION
    KAKADE, S
    VIJAYARAGHAVAN, L
    KRISHNAMURTHY, R
    JOURNAL OF MATERIALS PROCESSING TECHNOLOGY, 1994, 44 (3-4) : 207 - 214
  • [49] Acoustic emission energy transfer rate: A method for monitoring abrasive waterjet milling
    Rabani, Amir
    Marinescu, Iulian
    Axinte, Dragos
    INTERNATIONAL JOURNAL OF MACHINE TOOLS & MANUFACTURE, 2012, 61 : 80 - 89
  • [50] An analytical thermomechanical modelling of peripheral milling process using a predictive machining theory
    Moufki, A.
    Dudzinski, D.
    Le Coz, G.
    MODELLING OF MACHINING OPERATIONS, 2011, 223 : 93 - 100