Flexspline Pitch Deviation Rapid Measurement Method Using Offset Point Laser Sensors

Author:

Wang Xiaoyi12,Zheng Kunlei1,Xiao Longyuan1,Zhao Chengxiang1ORCID,Liu Mingkang1,Zhu Dongjie1,Yao Tianyang1,Shi Zhaoyao3

Affiliation:

1. School of Mechatronics Engineering, Henan University of Science and Technology, Luoyang 471003, China

2. Henan Key Laboratory of Mechanical Design and Transmission System, Henan University of Science and Technology, Luoyang 471003, China

3. College of Mechanical & Energy Engineering, Beijing University of Technology, Beijing 100241, China

Abstract

Flexsplines in harmonic gear reducers are usually characterized by a large number of teeth, small modulus, and poor stiffness, which makes them difficult to measure using conventional gear measuring centers. In order to efficiently evaluate the quality of flexsplines in harmonic gear reducers, a rapid measurement method for flexspline pitch using offset point laser sensors (PLS) is proposed. This paper investigates the principle of measuring the tooth flank of the flexspline under the offset of the PLS, establishes a model for collecting and analyzing gear surface data, builds an experimental system, calibrates the six pose parameters of the sensor using the geometric features of the flexspline’s outer circular surface, and completes the reconstruction of the left and right gear surfaces of the flexspline based on the measured data. In the experiment, the gear surface obtained by the proposed method is largely consistent with that measured by the video imaging method, and the repeatability of both single pitch deviation and cumulative pitch deviation is within ±3 µm.

Funder

National Natural Science Foundation of China

Publisher

MDPI AG

Reference24 articles.

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3. (2013). Cylindrical Gears-Iso System of Flank Tolerance Classification—Part 1 Definitions and Allowable Values of Deviations Relevant to Flanks of Gear Teeth. Standard No. IS0 1328-1.

4. A method combining laser and vision detection for on-line measurement of small modules gears;Yu;Meas. Sci. Technol.,2024

5. An efficient and accurate measurement method of tooth flank variations for face gears;Tao;Measurement,2023

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