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首页> 外文期刊>CERAMICS INTERNATIONAL >Pigments based on Er2O3-Al2O3: Preparation and colouring performance in zirconia ceramics
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Pigments based on Er2O3-Al2O3: Preparation and colouring performance in zirconia ceramics

机译:基于ER2O3-AL2O3的颜料:氧化锆陶瓷的制备和着色性能

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摘要

Two types of pigments, those with ErAlO3 and Er3Al5O12 as the main crystal phase, were synthesized by the gelpolymerization method. The colour performance of the pink pigments in zirconia ceramics was also studied. Field scanning electron microscopy combined with energy dispersion spectrometry, X-ray diffraction (XRD), UV-Vis-NIR absorption spectrometry, and colourimetry were applied for phase composition, microstructure and colour property analyses of pigments and pink ceramics. The experimental results showed that in the Er2O3-Al2O3 system, the Er3Al5O12 phase occurred at a lower temperature and the ErAlO3 phase appeared at a relatively higher temperature, accompanied by a small amount of Er(3)Al(5)O(12 )and Er4Al2O9. Both ErAlO3 and Er3Al5O12 displayed absorption in the visible light range. The calcination temperature had a greater effect on the red tone of ErAlO3 pigments than on Er3Al5O12. The main absorption peaks of Er3Al5O12 in the visible light range were blue-shifted, resulting in a slightly higher yellowness value b*. When zirconia was coloured with these two pigments, neither of them could stably exist at high temperatures. Er3+ might dissolve into the zirconia lattice to form a cubic fluorite solid solution (F-ss), and the remaining Al2O3 phase was distributed in the zirconia solid solution matrix at high temperatures. If the pigment of ErAlO3 is added up to 5 wt%, the redness value a* reached the maximum value.
机译:通过凝胶聚合方法合成了两种类型的颜料,用Eralo3和Er3Al5O12作为主要晶相的颜料。还研究了氧化锆陶瓷中粉红色颜料的颜色性能。现场扫描电子显微镜与能量分散光谱相结合,X射线衍射(XRD),UV-Vis-Nir吸收光谱法和聚葡萄酒用于颜料和粉红色陶瓷的相组成,微观结构和颜色分析。实验结果表明,在ER2O3-AL2O3系统中,在较低温度下发生ER3Al5O12相,在相对较高的温度下出现ERALO3相,伴随少量ER(3)Al(5)O(12)和ER4AL2O9。 Eralo3和ER3Al5O12在可见光范围内显示出吸收。煅烧温度对ERALO3颜料的红色基调具有比ER3AL5O12更大的效果。在可见光范围内的ER3Al5O12的主要吸收峰是蓝移,导致稍高的黄色值B *。当氧化锆用这两种颜料着色时,它们都不会在高温下稳定存在。 ER3 +可以溶解到氧化锆晶格中以形成立方萤石固溶体(F-SS),并且在高温下将其余Al 2 O 3相分布在氧化锆固溶溶液基质中。如果替代替代的颜料高达5wt%,则发红值A *达到最大值。

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