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WAVELENGTH-CONVERSION LAMINATED COMPOSITE, AND METHOD FOR MANUFACTURING WAVELENGTH-CONVERSION LAMINATE

机译:波长转换层压复合材料以及制造波长转换层压材料的方法

摘要

PROBLEM TO BE SOLVED: To provide a high-rigidity wavelength-conversion laminated composite which enables the suppression of diffusion of an activator from a first layer into a second layer with the aid of an intermediate layer, and enables the emission of light of desired coloration with a high light emission efficiency.SOLUTION: A wavelength-conversion laminated composite comprises: a first layer 2 including a YAG fluorescent material including an activator and AlO; an intermediate layer 4 of AlOin which of all of particles thereof, particles of 20-80 m in diameter account for 90% or more; a second layer 3 including a YAG material which is equal to or less than 10% of the activator content in the first layer and AlO. In the first layer, the volume composition ratio of the activator-doped YAG fluorescent material to AlOis in a range of 10:90 to 60:40. In the second layer, the volume composition ratio of the YAG material to AlOis in a range of 10:90 to 40:60. The wavelength-conversion laminated composite has a connection structure in which AlOparticles are connected to each other in each of the first and second layers and at each interface of the layers.SELECTED DRAWING: Figure 1
机译:要解决的问题:提供一种高刚性的波长转换层压复合材料,该复合材料能够借助中间层抑制活化剂从第一层到第二层的扩散,并能够发出所需颜色的光解决方案:波长转换层压复合材料包括:第一层2,包括YAG荧光材料,所述YAG荧光材料包括活化剂和AlO; AlOin的中间层4,其全部颗粒中,直径为20〜80m的颗粒占90%以上。第二层3包括YAG材料,该材料等于或小于第一层中的活化剂含量的10%和AlO。在第一层中,掺杂有活化剂的YAG荧光材料与AlO 2的体积组成比在10:90至60:40的范围内。在第二层中,YAG材料与AlO的体积组成比在10:90至40:60的范围内。波长转换层压复合材料具有一种连接结构,其中AlO颗粒在第一层和第二层的每一个中以及在这些层的每个界面处相互连接。

著录项

  • 公开/公告号JP6406662B2

    专利类型

  • 公开/公告日2018-10-17

    原文格式PDF

  • 申请/专利权人 クアーズテック株式会社;

    申请/专利号JP20140140319

  • 发明设计人 入江 正樹;

    申请日2014-07-08

  • 分类号G02B5/20;H01L33/50;C09K11;C09K11/08;C09K11/80;

  • 国家 JP

  • 入库时间 2022-08-21 13:11:55

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