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Effect of hardening and sealing on color of chemically colored stainless steel

机译:硬化和密封对化学彩色不锈钢颜色的影响

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A light reflection device combined with visible light spectrophotometer was used to measure the reflectance–wavelength curves of colored stainless steel after coloring, hardening and sealing. After these processes, the coordinate in CIE 1931 color coordinate system and brightness of samples were confirmed by chromatometry method, and the effects of hardening and sealing processes on color were determined. In hardening process, the thickness of coloring film increases significantly, the peaks of reflectance–wavelength curves move to the long-wave region, the hue of samples changes clockwise in CIE 1931 coordinate diagram, and the trend of saturation in hardening process is consistent with the saturation of the sample having larger potential difference. In sealing process, the thickness of film increases slightly, the peaks of reflectance–wavelength curves move to the long-wave region, the reflectivity and brightness of samples increase, the hue of samples moves clockwise in CIE 1931 coordinate diagram, and the saturation of some samples decreases.
机译:使用与可见光分光光度计结合的光反射装置测量着色,硬化和密封后有色不锈钢的反射波长曲线。在这些过程之后,通过色谱法确认CIE 1931颜色坐标系和样品亮度的坐标,并确定了硬化和密封过程对颜色的效果。在硬化过程中,着色膜的厚度显着增加,反射波长曲线的峰值移动到长波区域,样品的色调在CIE 1931坐标图中顺时针改变,并且硬化过程中的饱和趋势一致样品的饱和度具有更大的电位差。在密封过程中,膜的厚度略微增加,反射波长曲线的峰值移动到长波区域,样品的反射率和亮度增加,样本的色调在CIE 1931坐标图中顺时针移动,以及饱和的饱和度一些样品减少。

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