Non-destructive analysis of flake properties in automotive paints with full-field optical coherence tomography and 3D segmentation

Automotive coating systems are designed to protect vehicle bodies from corrosion and enhance their aesthetic value. The number, size and orientation of small metallic flakes in the base coat of the paint has a significant effect on the appearance of automotive bodies. It is important for quality ass...

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Veröffentlicht in:Optics express 2017-08, Vol.25 (16), p.18614-18628
Hauptverfasser: Zhang, Jinke, Williams, Bryan M, Lawman, Samuel, Atkinson, David, Zhang, Zijian, Shen, Yaochun, Zheng, Yalin
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container_end_page 18628
container_issue 16
container_start_page 18614
container_title Optics express
container_volume 25
creator Zhang, Jinke
Williams, Bryan M
Lawman, Samuel
Atkinson, David
Zhang, Zijian
Shen, Yaochun
Zheng, Yalin
description Automotive coating systems are designed to protect vehicle bodies from corrosion and enhance their aesthetic value. The number, size and orientation of small metallic flakes in the base coat of the paint has a significant effect on the appearance of automotive bodies. It is important for quality assurance (QA) to be able to measure the properties of these small flakes, which are approximately 10μm in radius, yet current QA techniques are limited to measuring layer thickness. We design and develop a time-domain (TD) full-field (FF) optical coherence tomography (OCT) system to scan automotive panels volumetrically, non-destructively and without contact. We develop and integrate a segmentation method to automatically distinguish flakes and allow measurement of their properties. We test our integrated system on nine sections of five panels and demonstrate that this integrated approach can characterise small flakes in automotive coating systems in 3D, calculating the number, size and orientation accurately and consistently. This has the potential to significantly impact QA testing in the automotive industry.
doi_str_mv 10.1364/OE.25.018614
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title Non-destructive analysis of flake properties in automotive paints with full-field optical coherence tomography and 3D segmentation
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