Optics and Precision Engineering, Volume. 30, Issue 22, 2869(2022)

Measurement comparison for class-1 gear involute artifact in China

Siying LING1,2、*, Ming LING1, Zhaoyao SHI3, Lin BO4, and Liding WANG1,2
Author Affiliations
  • 1Key Laboratory for Micro/ Nano Technology and System of Liaoning Province,Dalian University of Technology, Dalian6023, China
  • 2Key Laboratory for Precision & Non-traditional Machining of Ministry of Education,Dalian University of Technology, Dalian11603, China
  • 3Beijing Engineering Research Centre of Precision Measurement Technology and Instruments, Beijing Institute of Technology, Beijing100124, China
  • 4State Key Laboratory of Mechanical Transmission, Chongqing University, Chongqing000, China
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    Figures & Tables(7)
    GIA for measurement comparison
    Deference between measurement results of participating metrological laboratories and reference value of profile form deviation ffα
    • Table 1. Design parameters of GIA

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      Table 1. Design parameters of GIA

      FlankDesigned base radius rb/mm

      Equivalent normal module

      mn/mm

      Equivalent number of teeth

      z

      Working transverse pressure angle αn/(°)

      Helix angle

      β/(°)

      Facewidth

      b/mm

      Roll path length

      ρ/mm

      15017.736 30620080~49
      210023.648 39920080~83
      310023.648 39920080~83
      413123.234 551220080~95
    • Table 2. Participating metrological laboratories, involute measuring instruments and measuring temperature

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      Table 2. Participating metrological laboratories, involute measuring instruments and measuring temperature

      计量室渐开线测量仪器测量温度/℃
      中国计量科学研究院Klingenberg P-10019.8
      东北国家计量测试中心Klingenberg P-4019.9
      重庆市计量质量检测研究院Klingenberg P-6519.7
    • Table 3. Measurement results, reference value and uncertainties U95 of profile form deviation f

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      Table 3. Measurement results, reference value and uncertainties U95 of profile form deviation f

      Flank

      Evaluation range

      /mm

      Base radius

      rb/mm

      Measurement results of profile form deviation

      f/μm

      Reference value of profile form deviation f/μm(U95=±0.53 μm)

      a

      U95rb/Lα μm)

      b

      U95rb/Lα μm)

      c

      U95rb/Lα μm)

      a

      U95=±1.0 μm)

      b

      U95=±1.0 μm)

      c

      U95=±0.8 μm)

      13, 46]A50.009 250.008 450.008 70.40.40.40.40
      8, 46]B50.009 250.008 450.008 40.20.30.30.27
      25, 78]A99.993 799.994 999.993 50.40.40.30.36
      10, 78]B99.993 799.994 999.993 60.30.40.30.33
      35, 78]A99.994 799.996 599.994 20.30.60.40.43
      10, 78]B99.994 799.996 599.994 40.20.50.30.33
      45, 90]A131.015 9131.017 2131.014 70.30.30.40.34
      10, 90]B131.015 9131.017 2131.014 80.30.40.30.33
    • Table 4. Normalized deviation En of profile form deviation f

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      Table 4. Normalized deviation En of profile form deviation f

      Flank

      Evaluation range

      / mm

      Normalized deviation En of profile form deviation f
      abc
      13, 46]A000
      8, 46]B-0.030.010.01
      25, 78]A0.020.02-0.03
      10, 78]B-0.010.03-0.01
      35, 78]A-0.060.08-0.01
      10, 78]B-0.060.08-0.01
      45, 90]A-0.02-0.020.03
      10, 90]B-0.010.03-0.01
    • Table 5. Requirements for class-1 GIA in Chinese standard Gear Involute Artifact GB/T6467-2010

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      Table 5. Requirements for class-1 GIA in Chinese standard Gear Involute Artifact GB/T6467-2010

      Base radius

      rb/mm

      Rolling angle

      θ/(°)

      Evaluation range

      /mm

      Tolerance of profile form deviation

      ffαT/μm

      50443~351.0
      100405~651.0
      131385~821.4
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    Siying LING, Ming LING, Zhaoyao SHI, Lin BO, Liding WANG. Measurement comparison for class-1 gear involute artifact in China[J]. Optics and Precision Engineering, 2022, 30(22): 2869

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    Paper Information

    Category: Micro/Nano Technology and Fine Mechanics

    Received: Jul. 13, 2022

    Accepted: --

    Published Online: Nov. 28, 2022

    The Author Email: LING Siying (lingsy@dlut.edu.cn)

    DOI:10.37188/OPE.20223000.0392

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