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WAVELENGTH CONVERSION MEMBER MANUFACTURING METHOD AND WAVELENGTH CONVERSION MEMBER
To provide a manufacturing method of a wavelength conversion member which emits light by irradiation with excitation light, and the wavelength conversion member.SOLUTION: A wavelength conversion member manufacturing method includes; preparation of a compact molded from mixed powder containing a Ca-α-sialon phosphor, a YAG-based phosphor as necessary, and alumina particles; and obtaining of a first sintered compact by primarily firing the compact at a temperature of 1000°C or more and 1600°C or less.SELECTED DRAWING: Figure 1
【課題】励起光の照射により発光する波長変換部材の製造方法及び波長変換部材を提供する。【解決手段】Ca−α−サイアロン蛍光体と、必要に応じてYAG系蛍光体と、アルミナ粒子とを含む混合粉体を成形した成形体を準備することと、前記成形体を1000℃以上1600℃以下の範囲の温度で一次焼成し、第一の焼結体を得ることを含む、波長変換部材の製造方法である。【選択図】図1
WAVELENGTH CONVERSION MEMBER MANUFACTURING METHOD AND WAVELENGTH CONVERSION MEMBER
To provide a manufacturing method of a wavelength conversion member which emits light by irradiation with excitation light, and the wavelength conversion member.SOLUTION: A wavelength conversion member manufacturing method includes; preparation of a compact molded from mixed powder containing a Ca-α-sialon phosphor, a YAG-based phosphor as necessary, and alumina particles; and obtaining of a first sintered compact by primarily firing the compact at a temperature of 1000°C or more and 1600°C or less.SELECTED DRAWING: Figure 1
【課題】励起光の照射により発光する波長変換部材の製造方法及び波長変換部材を提供する。【解決手段】Ca−α−サイアロン蛍光体と、必要に応じてYAG系蛍光体と、アルミナ粒子とを含む混合粉体を成形した成形体を準備することと、前記成形体を1000℃以上1600℃以下の範囲の温度で一次焼成し、第一の焼結体を得ることを含む、波長変換部材の製造方法である。【選択図】図1
WAVELENGTH CONVERSION MEMBER MANUFACTURING METHOD AND WAVELENGTH CONVERSION MEMBER
波長変換部材の製造方法及び波長変換部材
FUKUI TOMOYA (Autor:in) / YANAGIHARA ATSUYOSHI (Autor:in)
15.08.2019
Patent
Elektronische Ressource
Japanisch
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