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首页> 外文期刊>Research on Chemical Intermediates >Sol-gel derived Ba/SrTiO3-MgF2 solar control coating stack on glass for architectural and automobile applications
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Sol-gel derived Ba/SrTiO3-MgF2 solar control coating stack on glass for architectural and automobile applications

机译:溶胶 - 凝胶衍生的BA / SRTIO3-MGF2太阳能控制涂料玻璃上的建筑和汽车应用

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摘要

Fully dielectric solar control coatings based on alternating layers of Ba (or Sr)TiO3 and MgF2 were deposited on soda lime glass substrates. Three-layered stacks BaTiO3/MgF2/BaTiO3 and SrTiO3/MgF2/SrTiO3 were generated using BaTiO3, SrTiO3 and MgF2 sols deposited on glass using dip coating technique. The multilayered coating stack was fired at 450 degrees C with different heating rates using a conventional muffle furnace and a conveyorized belt furnace, by which two methods of heat treatment were investigated. Heat treatment after deposition of each layer and a consolidated firing of the three-layered stack with intermediate drying between the layers were carried out and optical properties of the coatings compared. The heat treated coatings were characterized for their UV-Vis-NIR transmittance, microstructure, phase purity, thickness and refractive indices. The coating stack based on BaTiO3 as the high refractive index material in conjunction with MgF2 exhibited better solar control properties than SrTiO3 as the high refractive index material. Moreover, a fast firing of the BaTiO3/MgF2/BaTiO3 stack in a conveyorized belt furnace yielded good NIR blocking and solar control properties, whereas slow firing in a muffle furnace exhibited similar to 80% visible light transmittance with an NIR transmittance of similar to psi 75%.
机译:基于Ba(或Sr)TiO3和MgF2的交替层的完全介电太阳能控制涂层沉积在钠钙玻璃基板上。使用浸涂技术使用BATIO3,SRTIO3和MGF2溶胶产生三层堆叠BATIO3 / MGF2 / BATIO3和SRTIO3 / MGF2 / SRTIO3。使用常规的Muffle炉和传送带带炉以不同的加热速率在450℃下以450℃烧制多层涂料堆,通过该传送带炉进行了两种热处理方法。沉积每层后的热处理和具有层之间的中间干燥的三层堆叠的固结烧制,并比较涂层的光学性质。热处理涂层的特征在于它们的UV-Vis-Nir透射率,微观结构,相纯度,厚度和折射率。基于BATIO3作为高折射率材料的涂层叠层结合MGF2表现出比SRTIO3的太阳能控制性能更好,作为高折射率材料。此外,在传送带带炉中的BATIO3 / MGF2 / BATIO3叠加的快速烧制产生了良好的NIR阻塞和太阳能控制性能,而在马弗炉中慢射击呈现出类似于80%的可见光透射率,与PSI类似的透射率。 75%。

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