Department of Mechanical Engineering, University of the State of Santa Catarina, Santa Catarina, Brazil.
J Hazard Mater. 2011 Sep 15;192(3):1307-13. doi: 10.1016/j.jhazmat.2011.06.034. Epub 2011 Jun 23.
Pigments that meet environmental and technology requirements are the focus of the research in the ceramic sector. This study focuses on the synthesis of ceramic pigment by encapsulation of hematite in crystalline and amorphous silica matrix. Iron oxide from a metal sheet rolling process was used as chromophore. A different content of hematite and silica was homogenized by conventional and high energy milling. The powders obtained after calcinations between 1050 and 1200 °C for 2h were characterized by X-ray diffraction and SEM analysis. The pigments were applied to ceramic enamel and porcelain body. The effect of pigment was measured by comparing Lab* values of the heated samples. Results showed that the color developed is influenced by variables such as oxide content employed, conditions of milling and processing temperature. The results showed that the use of pigment developed does not interfere in microstructural characteristics of pigmented material. The best hue was obtained from samples with 15 wt% of chromophore, heated at 1200 °C in amorphous silica matrix.
满足环境和技术要求的颜料是陶瓷领域研究的重点。本研究专注于通过将赤铁矿封装在结晶和非晶态二氧化硅基质中来合成陶瓷颜料。使用来自金属板轧制过程的氧化铁作为生色团。通过常规和高能球磨使赤铁矿和二氧化硅的不同含量均匀化。在 1050 至 1200°C 下煅烧 2 小时后获得的粉末通过 X 射线衍射和 SEM 分析进行了表征。将颜料施加到陶瓷釉料和瓷体上。通过比较加热样品的 Lab*值来测量颜料的效果。结果表明,所开发的颜色受所使用的氧化物含量、研磨条件和加工温度等变量的影响。结果表明,所开发的颜料的使用不会干扰着色材料的微观结构特征。在非晶态二氧化硅基质中以 15wt%的生色团加热至 1200°C 的样品中获得了最佳色调。