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Weathering of tin oxide coated glass with low IR emissivity

机译:低红外发射率的氧化锡涂层玻璃的耐候性

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The weathering of K-glass has been studied by measuring transmission and reflection in the visible (VIS), near infrared (NIR) and infrared (IR) wavelength ranges, by chemical depth profiling with secondary neutral mass spectrometry (SNMS) and by atomic force microscopy (AFM) imaging. K-glass is a commercial tin oxide coated glass with low IR emissivity. The SnO_2:F-coated side has been exposed to atomosphewric conditions for up to 32 weeks and for up to two years. It could be shown that the optical properties are only affected in the VIS range, but the visible contamination does not influence the high IR reflection. This means that the heat-insulating properties of window glazings with the K-glass coating on the surface do not degrade under atmospheric conditions. Chemical depth profiles did not reveal major changes, except for an increase in the signals of minor elements on the surface, namely sodium, carbon and silicon. AFM showed that after 32 weeks the deep valleys of the rather rough crystalline SnO_2:F are partially filled up. The high transmissio of new K-glass can be regained since contamination or corrosion products can be removed by washing. The coating itself is chemically stable.
机译:通过测量可见光(VIS),近红外(NIR)和红外(IR)波长范围内的透射和反射,通过二次中性质谱(SNMS)进行化学深度分析以及原子力研究了K玻璃的耐候性显微镜(AFM)成像。 K玻璃是具有低IR发射率的商用氧化锡涂层玻璃。 SnO_2:F涂层的一面已暴露于原子条件下长达32周,长达两年。可以证明,光学性能仅在VIS范围内受到影响,但是可见污染并不影响高IR反射。这意味着在大气条件下,表面带有K-玻璃涂层的玻璃窗的隔热性能不会降低。化学深度分布图没有显示主要变化,只是增加了表面上微量元素钠,碳和硅的信号。原子力显微镜显示,在32周后,较粗糙的结晶SnO_2:F的深谷被部分填充。由于可以通过清洗去除污染物或腐蚀产物,因此可以重新获得新型K玻璃的高透光率。涂层本身是化学稳定的。

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