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METHOD OF MANUFACTURING OPTICAL COMPONENT, AND OPTICAL COMPONENT
To provide a method of manufacturing optical component that is good in parting property, and the optical component.SOLUTION: There is provided a method of manufacturing an optical component, comprising a molding and a sintered body, that includes: preparing the sintered body including a phosphor, an inorganic oxide including aluminum oxide and a composition for molding including an organic binder; forming the molding by arranging the composition for molding to cover at least a part of a circumference of the sintered body; and sintering the sintered body and the molding in a pressurized inert atmosphere of 0.5 to 200 MPa in pressure.SELECTED DRAWING: Figure 1
【課題】見切りがよい光学部品の製造方法及び光学部品を提供する。【解決手段】蛍光体を含む焼結体と、酸化アルミニウムを含む無機酸化物及び有機系バインダーを含む成形体用組成物と、を準備することと、前記焼結体の周囲の少なくとも一部を覆うように前記成形体用組成物を配置して成形体とすることと、前記焼結体と前記成形体を0.5MPa以上200MPa以下の範囲内の加圧された不活性雰囲気で焼成することと、を含み、前記成形体と、前記焼結体とを備える光学部品の製造方法である。【選択図】図1
METHOD OF MANUFACTURING OPTICAL COMPONENT, AND OPTICAL COMPONENT
To provide a method of manufacturing optical component that is good in parting property, and the optical component.SOLUTION: There is provided a method of manufacturing an optical component, comprising a molding and a sintered body, that includes: preparing the sintered body including a phosphor, an inorganic oxide including aluminum oxide and a composition for molding including an organic binder; forming the molding by arranging the composition for molding to cover at least a part of a circumference of the sintered body; and sintering the sintered body and the molding in a pressurized inert atmosphere of 0.5 to 200 MPa in pressure.SELECTED DRAWING: Figure 1
【課題】見切りがよい光学部品の製造方法及び光学部品を提供する。【解決手段】蛍光体を含む焼結体と、酸化アルミニウムを含む無機酸化物及び有機系バインダーを含む成形体用組成物と、を準備することと、前記焼結体の周囲の少なくとも一部を覆うように前記成形体用組成物を配置して成形体とすることと、前記焼結体と前記成形体を0.5MPa以上200MPa以下の範囲内の加圧された不活性雰囲気で焼成することと、を含み、前記成形体と、前記焼結体とを備える光学部品の製造方法である。【選択図】図1
METHOD OF MANUFACTURING OPTICAL COMPONENT, AND OPTICAL COMPONENT
光学部品の製造方法及び光学部品
NOGUCHI TERUHIKO (Autor:in) / HIRAI TOSHIYUKI (Autor:in)
21.09.2023
Patent
Elektronische Ressource
Japanisch