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METAL-BODY SURFACE STATE MONITORING DEVICE AND METHOD FOR MONITORING METAL-BODY SURFACE STATE VORRICHTUNG ZUR ÜBERWACHUNG DES OBERFLÄCHENZUSTANDES VON METALLKÖRPERN UND VERFAHREN ZUR ÜBERWACHUNG DES OBERFLÄCHENZUSTANDES VON METALLKÖRPERN
METAL-BODY SURFACE STATE MONITORING DEVICE AND METHOD FOR MONITORING METAL-BODY SURFACE STATE VORRICHTUNG ZUR ÜBERWACHUNG DES OBERFLÄCHENZUSTANDES VON METALLKÖRPERN UND VERFAHREN ZUR ÜBERWACHUNG DES OBERFLÄCHENZUSTANDES VON METALLKÖRPERN
[Object] To monitor, on a metallic body surface, a region that has a specific hue and a region that does not have the specific hue and has a surface whose roughness varies. [Solution] Included are: a measurement apparatus which includes a line sensor camera which is provided such that an optical axis of the line sensor camera is substantially parallel to a normal direction of a metallic body surface, and first, second, and third illumination light sources each configured to irradiate the metallic body surface with first, second, and third illumination light beams each having a strip shape, the measurement apparatus being configured to measure separately respective reflected light beams of the three illumination light beams that have been emitted; and an arithmetic processing apparatus configured to calculate surface state monitoring information on the basis of luminance values of the reflected light beams. The second and third illumination light sources are provided such that a second angle between an optical axis of the second illumination light source and the optical axis of the line sensor camera is substantially equal to a third angle between an optical axis of the third illumination light source and the optical axis of the line sensor camera, and the first illumination light source is provided such that a first angle between the optical axis of the line sensor camera and an optical axis of the first illumination light source is larger than the second angle. The arithmetic processing apparatus calculates information on a hue of the metallic body surface on the basis of a luminance value of the reflected light beam of the first illumination light beam and information on surface roughness of the metallic body on the basis of luminance values of the respective reflected light beams of the second and third illumination light beams.
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