An empirical tool force model for precision machining

被引:136
|
作者
Arcona, C [1 ]
Dow, TA
机构
[1] IBM Corp, San Jose, CA 95193 USA
[2] N Carolina State Univ, Precis Engn Ctr, Raleigh, NC 27695 USA
关键词
D O I
10.1115/1.2830209
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The accuracy of precision machining operations could be improved through tool force feedback. Tool force is ideally suited for use in a control algorithm because it contains information on the instantaneous depth of cut, feed rare and condition of the tool. A tool force model that could form the basis of this new control technique has been developed. By measuring the shear angle from micrographs of chip cross sections, equations for the forces due to chip formation and the friction between the chip and the tool have been written. Furthermore, the effects of elastic deformation of the workpiece (spring back) on chip formation and the measured forces, which can be significant in precision machining have been included in the model. Machining experiments were conducted with a 0 deg rake diamond tool and four metals that are commonly diamond turned. For machining with newly lapped as well as worn tools, the calculated forces were in excellent agreement with the measured values for the array of workpiece materials.
引用
收藏
页码:700 / 707
页数:8
相关论文
共 50 条
  • [1] Empirical tool force model for precision machining
    IBM Corp, San Jose, United States
    J Manuf Sci Eng Trans ASME, 4 (700-707):
  • [2] An Analytical Model for Grinding Force Prediction in Ultra-Precision Machining of WC with PCD Micro Grinding Tool
    Sangjin Maeng
    Pyeong An Lee
    Bo Hyun Kim
    Sangkee Min
    International Journal of Precision Engineering and Manufacturing-Green Technology, 2020, 7 : 1031 - 1045
  • [3] An Analytical Model for Grinding Force Prediction in Ultra-Precision Machining of WC with PCD Micro Grinding Tool
    Maeng, Sangjin
    Lee, Pyeong An
    Kim, Bo Hyun
    Min, Sangkee
    INTERNATIONAL JOURNAL OF PRECISION ENGINEERING AND MANUFACTURING-GREEN TECHNOLOGY, 2020, 7 (06) : 1031 - 1045
  • [4] Model-based precision machining simulation for the prediction of tool life
    Maekawa, K
    PROCEEDINGS OF THE TWELFTH ANNUAL MEETING OF THE AMERICAN SOCIETY FOR PRECISION ENGINEERING, 1997, : 291 - 294
  • [5] A micro machine tool for precision machining
    Dunnwald, G
    INDUSTRIAL DIAMOND REVIEW, 1996, 56 (04): : 105 - 106
  • [6] Precision machining on an open architecture machine tool
    Schofield, S
    Wright, P
    OPEN ARCHITECTURE CONTROL SYSTEMS AND STANDARDS, 1997, 2912 : 184 - 195
  • [7] Regulation of the machining precision by programmed tool correction
    Bekaev A.A.
    Maksimov Y.V.
    Kuz’minskii D.L.
    Strokov P.I.
    Russian Engineering Research, 2017, 37 (10) : 897 - 900
  • [8] Machining Force and Modes for Si Wafer Machining with Rotational Tool
    Yokemura, Nobumasa
    Imai, Kenichiro
    Hashimoto, Hiroshi
    ADVANCES IN ABRASIVE TECHNOLOGY XIII, 2010, 126-128 : 289 - +
  • [9] Influence of the Cutter Geometry on the Cutting Force in Precision Machining
    Rykunov A.N.
    Shuvaev V.G.
    Russian Engineering Research, 2019, 39 (07) : 602 - 604
  • [10] EFFECTS OF TOOL FRACTURE ON MACHINING FORCE DYNAMICS
    LEE, LC
    LEE, KS
    KWOK, KG
    JOURNAL OF MECHANICAL WORKING TECHNOLOGY, 1988, 17 : 205 - 212