Measurement Performance Evaluation of a Non-Contact Narrow Shape Measurement with Direction Switching

被引:0
|
作者
Maruno K.
Hariyama T.
Watanabe M.
机构
关键词
3D shape measurement; FMCW; measurement direction switching; narrow shape measurement;
D O I
10.2493/jjspe.90.369
中图分类号
学科分类号
摘要
The narrow inner geometry of machine parts requires high-precision machining and geometric inspection for high-performance products such as hydraulic components. However, it has been difficult to measure 3D inner surface geometry with conventional measurement methods. It is also difficult to measure the reference or datum surface and the narrow inner surface profile by the same measuring tool. Therefore, a novel optical measuring probe that can measure both the narrow profile and the datum surface by a thin probe that can be inserted into the narrow space and measuring the distance in the radial and depth directions was developed. To realize this measuring method, a distance measurement probe based on FMCW (Frequency Modulated Continuous Waves) method and a novel measurement direction switching technology using polarization direction control were developed. Experimental results show that the dimensional measurement accuracy by each measurement direction is micrometer order. The measurement results of a test piece with complex geometries showed good agreement with those obtained by CMM (Coordinate Measuring Machine). © 2024 Japan Society for Precision Engineering. All rights reserved.
引用
下载
收藏
页码:369 / 675
页数:306
相关论文
共 50 条
  • [41] Current measurement with the application of a non-contact thermometer
    Kyaw, TY
    Torii, A
    Doki, K
    Ueda, A
    PROCEEDINGS OF THE 2004 INTERNATIONAL SYMPOSIUM ON MICRO-NANOMECHATRONICS AND HUMAN SCIENCE, 2004, : 289 - 294
  • [42] NON-CONTACT MEASUREMENT OF SCULPTURED SURFACE OF ROTATION
    Zhang GuoxiongLiu ShuguiQiu ZurongYu FushengNaYonglinLeng ChanglinState Key Laboratory of PrecisionMeasuring Technology and Instruments
    Chinese Journal of Mechanical Engineering, 2004, (04) : 571 - 574
  • [43] Non-contact measurement of thermal diffusivity in tissue
    Telenkov, SA
    Youn, JI
    Goodman, DM
    Welch, AJ
    Milner, TE
    PHYSICS IN MEDICINE AND BIOLOGY, 2001, 46 (02): : 551 - 558
  • [44] Non-contact speed measurement of solid surfaces
    Engelberg, T.
    Vom Stein, D.
    Zeitler, R.
    Technisches Messen TM, 64 (10):
  • [45] Non-contact OEM color measurement with JENCOLOR
    不详
    SENSOR REVIEW, 2010, 30 (01) : 80 - 81
  • [46] Optical Methods in Non-contact Velocity Measurement
    Smid, Petr
    PROCEEDINGS OF THE 48TH INTERNATIONAL SCIENTIFIC CONFERENCE ON EXPERIMENTALNI ANALYZA NAPETI 2010 EXPERIMENTAL STRESS ANALYSIS, 2010, : 401 - 406
  • [47] Non-contact stress measurement in PET preforms
    Prasath, R. G. R.
    Danyluk, Steven
    Zagarola, Steve
    POLYMER-PLASTICS TECHNOLOGY AND MATERIALS, 2019, 58 (16): : 1802 - 1809
  • [48] Non-contact measurement of sound speed of tissues
    Hachiya, H
    Ohtsuki, S
    ULTRASONIC TISSUE CHARACTERIZATION, 1996, : 63 - 72
  • [49] A contribution to non-contact skid resistance measurement
    Ueckermann, Andreas
    Wang, Dawei
    Oeser, Markus
    Steinauer, Bernhard
    INTERNATIONAL JOURNAL OF PAVEMENT ENGINEERING, 2015, 16 (07) : 646 - 659
  • [50] Reduction of uncertainty with non-contact measurement of temperature
    Zakharenko, V. A.
    Veprikova, Ya R.
    Ponomarev, D. B.
    XII INTERNATIONAL SCIENTIFIC AND TECHNICAL CONFERENCE APPLIED MECHANICS AND SYSTEMS DYNAMICS, 2019, 1210