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Development of gold-bronze metallic glazes in a clay-based system for stoneware bodies

机译:基于粘土体系的金色青铜金属釉面的研制

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摘要

In this study, a triaxial glaze system consisting of red clay, kaoline, quartz, MnO, CuO and CoO is systematically developed to produce gold-bronze raw metallic glazes for stoneware bodies. At first, all of the glazed samples in the developed system were fired in an electrically-heated kiln at 1160 degrees C. Then, the selected successful gold-bronze metallic glazes were applied onto 3-D forms of stoneware bodies and fired at the same conditions. Microstructural characterizations of the glazes are done with scanning electron microscopy (SEM) and energy dispersive x-ray analyses (EDS). This study revealed that triaxial blending of the ceramic raw materials is a beneficial method for glaze production and gold-bronze surfaces are obtained in glazes G 9, G 26, and G 34. It is observed that chemical composition of the glazes directly influence the color and the amount of CuO is more significative than MnO for achieving gold-bronze effect.
机译:在这项研究中,系统开发了一种由红粘土,高岭土,石英,MNO,CUO和COO组成的三轴釉系统,以生产用于荆棘体的金色铜原料金属釉料。 首先,发达系统中的所有玻璃样品在1160℃下在电加热窑中烧制。然后,将选定的成功的金色青铜金属釉涂在三维的粗制品上并在同一个射击 状况。 用扫描电子显微镜(SEM)和能量分散X射线分析(EDS)进行微观结构表征。 该研究表明,陶瓷原料的三轴混合是釉料生产的有益方法,并且在玻璃G 9,G 26和G 34中获得金 - 青铜表面。观察到釉料的化学成分直接影响着颜色 对于实现金 - 青铜效应,CuO的量比MNO更重要。

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