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一种用于不同表面特性金属部件的无污染三维光学验证技术的开发。

Development of a Three-Dimensional Optical Verification Technology without Environmental Pollution for Metal Components with Different Surface Properties.

作者信息

Kuo Chil-Chyuan, He Zong-Yan, Lee Chil-Xian

机构信息

Department of Mechanical Engineering, Ming Chi University of Technology, No. 84, Gungjuan Road, New Taipei City 243, Taiwan.

Research Center for Intelligent Medical Devices, Ming Chi University of Technology, No. 84, Gungjuan Road, New Taipei City 243, Taiwan.

出版信息

Materials (Basel). 2022 Sep 4;15(17):6139. doi: 10.3390/ma15176139.

Abstract

Nowadays, the optical measuring approach is widely used in the precision machining industry due to high measurement efficiency. In the industry, measuring devices play a crucial role in the field of quality assurance. In practical engineering, the green measurement approach indeed plays an important role in the industry currently. In this study, a state-of-the-art green technique for three-dimensional (3D) optical measurements without environmental pollution is demonstrated, which is an environmentally friendly optical measurement method. This method can perform precise optical measurement without matte coatings. This work dealt with the possibility of measuring four metal components that were not sprayed with anything. The differences in the optical measurement results between with and without matte coatings were investigated and analyzed. It was found that the research result has practical value in the precision machining industry because average size errors of the four measurement objects with different surface properties can be controlled at about 3 µm, 0.1 µm, 0.5 µm, and 9 µm. A technical database with industrial value was established for optical measurements of metal components with different surface properties without matte coatings, which can serve as an alternative to the conventional 3D optical measurement.

摘要

如今,由于测量效率高,光学测量方法在精密加工行业中得到了广泛应用。在该行业中,测量设备在质量保证领域发挥着至关重要的作用。在实际工程中,绿色测量方法目前在该行业确实发挥着重要作用。在本研究中,展示了一种用于三维(3D)光学测量且无污染的先进绿色技术,这是一种环保型光学测量方法。该方法无需哑光涂层即可进行精确的光学测量。这项工作探讨了测量四个未喷涂任何东西的金属部件的可能性。研究并分析了有无哑光涂层时光学测量结果的差异。结果发现,该研究成果在精密加工行业具有实用价值,因为四个具有不同表面特性的测量对象的平均尺寸误差可控制在约3 µm、0.1 µm、0.5 µm和9 µm。建立了一个具有工业价值的技术数据库,用于对无哑光涂层的不同表面特性的金属部件进行光学测量,可作为传统3D光学测量的替代方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1fa9/9458177/abe84ad514a1/materials-15-06139-g001.jpg

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