IP Library Granted Patent US 12,371,383
Granted Patent B2
US 12,371,383 · App. 18/401,228 · Granted Jul 29, 2025

Rare earth aluminate sintered compact and method for producing rare earth aluminate sintered compact

Inventors: Shozo Taketomi (Tokushima, JP); Ryo Yamamoto (Anan, JP); Tomomi Fujii (Anan, JP); Toshiyuki Hirai (Komatsushima, JP)
Assignee: NICHIA CORPORATION
C04B35/44C04B38/0054C09K11/7706C04B2235/5463C04B2235/74C04B2235/785C04B2235/786C04B2235/80
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Quick Facts
Patent No.
US 12,371,383
App. No.
18/401,228
Granted
Jul 29, 2025
Kind
B2
Abstract

A rare earth aluminate sintered compact including rare earth aluminate phosphor crystalline phases and voids, wherein an absolute maximum length of 90% or more by number of rare earth aluminate phosphor crystalline phases is in a range from 0.4 μm to 1.3 μm, and an absolute maximum length of 90% or more by number of voids is in a range from 0.1 μm to 1.2 μm.

Claims (7)

1. A method for producing a rare earth aluminate sintered compact, the method comprising:

providing a raw material mixture obtained by mixing, in a liquid, an oxide particle containing at least one rare earth element Ln 1 selected from the group consisting of Y, La, Lu, Gd, and Tb, an oxide particle containing Ce, an oxide particle containing Al, and optionally, an oxide particle containing at least one element M 1 selected from Ga and Sc;

drying the raw material mixture to form a raw material mixture powder;

forming the raw material mixture powder to obtain a formed body; and

firing the formed body at a temperature in a range from 1300° C. to 1800° C. to obtain a sintered compact, wherein

in the provision of the raw material mixture, a specific surface area, measured by a BET method, of at least one oxide particle selected from the oxide particle containing Ln 1 , the oxide particle containing Ce, the oxide particle containing Al, and the oxide particle containing the element M 1 is 5 m 2 /g or greater,

wherein the raw material mixture further comprises rare earth aluminate phosphor particles formed by a co-precipitation method and having a specific surface area as measured by the BET method that is 5 m 2 /g or greater and not greater than 12 m 2 /g.

Priority Claims (1)
JP 2020-135121 · Aug 7, 2020 · national
Continuity (3)
Division 17444422 · Aug 4, 2021
Related Publication 20240132408A1 · Apr 25, 2024
Related Publication 20240228382A9 · Jul 11, 2024
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