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The Quality Study of Recycled Glass Phosphor Waste for LED

机译:LED再生玻璃磷废料的质量研究

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摘要

To study the feasibility and quality of recycled glass phosphor waste for LED packaging, the experiments were conducted to compare optical characteristics between fresh color conversion layer and that made of recycled waste. The fresh color conversion layer was fabricated through sintering pristine mixture of Y.A.G. powder [yellow phosphor (Y_3A1O_(12): Ce~(3+)). Those recycled waste glass phosphor re-melted to form Secondary Molten Glass Phosphor (S.M.G.P.). The experiments on such low melting temperature glass results showed that transmission rates of S.M.G.P. are 9% higher than those of first-sintered glass phosphor, corresponding to 1.25% greater average bubble size and 36% more bubble coverage area in S.M.G.P. In the recent years, high power LED modules and laser projectors have been requiring higher thermal stability by using glass phosphor materials for light mixing. Nevertheless, phosphor and related materials are too expensive to expand their markets. It seems a right trend and research goal that recycling such waste of high thermal stability and quality materials could be preferably one of feasible cost-down solutions. This technical approach could bring out brighter future for solid lighting and light source module industries.
机译:为了研究回收的玻璃荧光粉废料用于LED封装的可行性和质量,进行了实验以比较新鲜的色彩转换层和回收的废料制成的光学特性。通过烧结Y.A.G.的原始混合物制备新鲜的颜色转换层。粉末[黄色磷光体(Y_3AlO_(12):Ce〜(3+))。那些回收的废玻璃磷光体重新熔化形成二次熔融玻璃磷光体(S.M.G.P.)。在这种低熔点玻璃上的实验结果表明,S.M.G.P。比第一次烧结的玻璃荧光粉高9%,相当于S.M.G.P.中平均气泡尺寸增加了1.25%,气泡覆盖面积增加了36%。近年来,通过使用玻璃磷光体材料进行光混合,大功率LED模块和激光投影仪一直要求更高的热稳定性。然而,磷光体和相关材料太昂贵而无法扩展其市场。回收这样的高热稳定性和高质量材料的废物似乎可以作为可行的降低成本的解决方案之一,这似乎是正确的趋势和研究目标。这种技术方法可以为固态照明和光源模块行业带来更光明的未来。

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