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Combinatorial exploration of color in gold-based alloys

机译:金基合金中颜色的组合探索

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Combinatorial approaches comprised of combinatorial magnetron co-sputtering deposition and fast screening methods are introduced to study color as a function of composition in Au-based alloys. The microstructures of the thin films and bulk alloys are identified by X-ray diffraction, and their colors of the alloys are characterized by optical reflectivity. The results reveal that when comparing microstructures and reflectivity, thin films are similar to bulk alloys. In Au-Ag-Cu solid solutions, the color of the ternary alloy follows the rule of mixture. For colors resulting from AuAl2 intermetallic, the color of an alloy scales with the percentage of the intermetallic phase and the deviation from its ideal binary composition. In the Au-Al-Cu library, we found a similar to 90 % AuAl2 area fraction compositional window where copper addition can be tuned to improve mechanical properties while keeping purple color, even though Al and CuAl2 phases exist. Moreover, when comparing the color in Au-Cu-Si-Ag amorphous and crystalline state solid solution for the same composition, the colors are essentially identical.
机译:介绍了由组合磁控共溅射沉积和快速筛选方法组成的组合方法,以研究金在金基合金中作为成分的函数的颜色。薄膜和块状合金的微观结构通过X射线衍射鉴定,并且它们的颜色通过光反射率表征。结果表明,比较微观结构和反射率时,薄膜类似于块状合金。在Au-Ag-Cu固溶体中,三元合金的颜色遵循混合规则。对于由AuAl2金属间化合物产生的颜色,合金的颜色与金属间相的百分比以及与其理想二元组成的偏差成比例。在Au-Al-Cu库中,我们发现了类似于90%的AuAl2面积分数组成窗口,即使存在Al和CuAl2相,也可以调整铜的添加以改善机械性能,同时保持紫色。而且,当比较相同组成的Au-Cu-Si-Ag非晶态和结晶态固溶体中的颜色时,颜色基本相同。

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