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Chemical coloring on stainless steel by ultrasonic irradiation

机译:超声辐射对不锈钢的化学着色

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摘要

To solve the problems of high temperature and non-uniformity of coloring on stainless steel, a new chemical coloring process, applying ultrasonic irradiation to the traditional chemical coloring process, was developed in this paper. The effects of ultrasonic frequency and power density (sound intensity) on chemical coloring on stainless steel were studied. The uniformity of morphology and colors was observed with the help of polarizing microscope and scanning electron microscopy (SEM), and the surface compositions were characterized by X-ray photoelectric spectroscopy (XPS), meanwhile, the wear resistance and the corrosion resistance were investigated, and the effect mechanism of ultrasonic irradiation on chemical coloring was discussed. These results show that in the process of chemical coloring on stainless steel by ultrasonic irradiation, the film composition is the same as the traditional chemical coloring, and this method can significantly enhance the uniformity, the wear and corrosion resistances of the color film and accelerate the coloring rate which makes the coloring temperature reduced to 40 degrees C. The effects of ultrasonic irradiation on the chemical coloring can be attributed to the coloring rate accelerated and the coloring temperature reduced by thermal-effect, the uniformity of coloring film improved by dispersion-effect, and the wear and corrosion resistances of coloring film enhanced by cavitation-effect. Ultrasonic irradiation not only has an extensive application prospect for chemical coloring on stainless steel but also provides an valuable reference for other chemical coloring.
机译:为了解决不锈钢上着色的高温和不均匀性的问题,本文开发了一种新的化学着色过程,将超声波照射应用于传统的化学着色过程。研究了超声波频率和功率密度(声强)对不锈钢化学着色的影响。通过偏振显微镜和扫描电子显微镜(SEM)的帮助,观察到形态和颜色的均匀性,并且通过X射线光电光谱(XPS)表征表面组合物,同时研究耐磨性和耐腐蚀性,讨论了超声辐射对化学着色的影响机理。这些结果表明,在通过超声波照射的不锈钢上的化学着色过程中,薄膜组合物与传统的化学着色相同,这种方法可以显着提高彩色膜的均匀性,磨损和腐蚀电阻并加速着色率使得着色温度降低至40℃。超声波照射对化学着色的影响可归因于加速和通过热效应降低着色度,通过分散效应提高着色膜的均匀性空化效应增强着色膜的磨损和耐腐蚀性。超声波照射不仅对不锈钢上的化学着色具有广泛的应用前景,而且还为其他化学着色提供了有价值的参考。

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