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首页> 外文期刊>Applied Surface Science >Surface modification of soda-lime-silicate glass via the high-temperature electrochemical injection of tin ions
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Surface modification of soda-lime-silicate glass via the high-temperature electrochemical injection of tin ions

机译:通过高温电化学注射锡离子的钠钙 - 硅酸盐玻璃的表面改性

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Under float glass process mimicking conditions, the surface modification of soda-lime-silicate glass was achieved via the electrochemical injection of fin ions. A voltage of 10 V was applied to the 7 mm thick glass at 1000 degrees C for 5 min between molten fin and graphite electrodes. The chemical composition, phase, and microstructure of the glass after cooling were studied using optical, scanning electron and transmission electron microscopies, X-ray diffraction, and Mossbauer spectroscopy. After applying the voltage, the glass was found to exhibit a five-layered structure with different compositions and microstructures, e.g., a glass-ceramic layer consisting of SnO2 crystalline particles dispersed in a SiO2-SnO-Al2O3 glass and a phase-separated spinodal microstructured glass layer, within similar to 200 mu m in depth from the glass/molten fin anode. The depth dependent composition of the surface and the formation of a multilayered structure are discussed and explained in terms of the migration of ions according to the applied electric field and the chemistry of the glass. The properties that the glass is expected to have and the potential of using this method as a novel online surface modification process that can be incorporated into industrial float glass manufacturing are also discussed.
机译:在浮法玻璃工艺模仿条件下,通过电化学注射翅片注射液体注射钠钙硅酸盐玻璃的表面改性。在熔融翅片和石墨电极之间以1000℃施加10V的电压为7mm厚的玻璃。使用光学,扫描电子和透射电子显微镜,X射线衍射和Mossbauer光谱研究冷却后玻璃的化学组成,相和微观结构。施加电压后,发现玻璃具有不同的组合物和微结构的五层结构,例如,由分散在SiO 2 - SnO-Al 2 O 3玻璃中的SnO2结晶颗粒组成的玻璃陶瓷层和相分离的尖刺微结构。玻璃层,与玻璃/熔融翅片阳极相似至200μm。根据所施加的电场和玻璃的化学的迁移,讨论和解释表面的深度依赖性组成和多层结构的形成。还讨论了预期玻璃的特性以及使用该方法作为可以结合到工业浮法玻璃制造中的新型在线表面改性过程的电位。

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