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Noncontact 3D measurement method on hole-structure precision inspection 被引量:1

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摘要 In order to implement 3 D point cloud scanning of small hole structure, which could not be contacted or damaged, we propose a noncontact 3 D measuring method. The system contains a laser triangulation displacement sensor, a Michelson interferometer system and a coordinate measuring machine, with the advantages of non-invasive scanning, fast measurement speed and high precision. Focusing on reconstructing 3 D point cloud data, random sample consensus is used to separate surface data and hole data respectively from the raw dataset. Least square optimization determines the function of the cylinder, as well as hole diameter and inclined angle between the hole and the surface. In the experiment scanning a round hole, the estimated result has diameter error and angle error within 30 μm and 0.2°, respectively. Results manifest the effectiveness and feasibility of this system and express practicality in manufacturing industry.
作者 SHI Hao-tian WU Di PANG Cheng-kai HUANG Hai-yan ZHANG Xuan XU Yan CHEN Xiu-liang WU Guang 施皓天;伍狄;庞程凯;黄海燕;张璇;徐焱;陈修亮;吴光(State Key Laboratory of Precision Spectroscopy,East China Normal University,Shanghai 200241,China;AECC Commercial Aircraft Engine Co.,Ltd.,Shanghai 200241,China)
出处 《Optoelectronics Letters》 EI 2021年第4期231-235,共5页 光电子快报(英文版)
基金 supported by the National Natural Science Foundation of China(Nos.11774095,11804099 and 11621404) the Shanghai Basic Research Project(No.18JC1412200)。
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