IP Library Granted Patent US 7,842,383
Granted Patent B2
US 7,842,383 · App. 11/289,830 · Granted Nov 30, 2010

Yttrium-aluminum double oxide thermal spraying powder

Assignee: Fujimi Incorporated
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Quick Facts
Patent No.
US 7,842,383
App. No.
11/289,830
Granted
Nov 30, 2010
Kind
B2
Abstract

A thermal spraying powder contains granulated and sintered particles of an yttrium-aluminum double oxide formed by granulating and sintering raw-material particles. The crushing strength of the granulated and sintered particles is 15 MPa or more, and 10% particle size of the granulated and sintered particles is 6 μm or more. The thermal spraying powder is suitable for use in forming a thermal spray coating through plasma spraying.

Claims (10)

1. A thermal spraying powder comprising granulated and sintered particles of an yttrium-aluminum double oxide formed by granulating and sintering raw-material particles, wherein the crushing strength of the granulated and sintered particles is 86 MPa or more, and 10% particle size D 10 of the granulated and sintered particles is 6 μm or more, and wherein, when x-ray diffraction of the thermal spraying powder is measured, the ratio of the intensity of an x-ray diffraction peak of a (222) plane of yttria to the intensity of the maximum peak among an x-ray diffraction peak of a (420) plane of a garnet phase of the yttrium-aluminum double oxide, an x-ray diffraction peak of a (420) plane of a perovskite phase of the yttrium-aluminum double oxide, and an x-ray diffraction peak of a (122) plane of a monoclinic phase of the yttrium-aluminum double oxide is 20% or less.

2. The thermal spraying powder according to claim 1 , wherein the crushing strength of the granulated and sintered particles is 300 MPa or less.

3. The thermal spraying powder according to claim 1 , wherein the average particle size of the raw-material particles after the granulating and sintering is 0.2 to 3.0 μm.

4. The thermal spraying powder according to claim 1 , wherein the particle size dispersion index of the raw-material particles after the granulating and sintering is 0.50 or less.

5. The thermal spraying powder according to claim 1 , wherein the ratio of the number of moles of yttrium in the yttrium-aluminum double oxide in terms of the number of moles of yttria to the number of moles of aluminum in the yttrium-aluminum double oxide in terms of the number of moles of alumina is 0.2 to 4.0.

6. The thermal spraying powder according to claim 1 , wherein the bulk specific gravity of the thermal spraying powder is 0.7 g/cm 3 or more.

7. The thermal spraying powder according to claim 1 , wherein the angle of repose of the thermal spraying powder is 50 degrees or less.

8. The thermal spraying powder according to claim 1 , wherein the aspect ratio of the granulated and sintered particles is 2 or less.

9. A thermal spraying method comprising plasma spraying a thermal spraying powder containing granulated and sintered particles of an yttrium-aluminum double oxide formed by granulating and sintering raw-material particles, wherein the crushing strength of the granulated and sintered particles is 86 MPa or more, and 10% particle size D 10 of the granulated and sintered particles is 6 μm or more, and wherein, when x-ray diffraction of the thermal spraying powder is measured, the ratio of the intensity of an x-ray diffraction peak of a (222) plane of yttria to the intensity of the maximum peak among an x-ray diffraction peak of a (420) plane of a garnet phase of the yttrium-aluminum double oxide, an x-ray diffraction peak of a (420) plane of a perovskite phase of the yttrium-aluminum double oxide, and an x-ray diffraction peak of a (122) plane of a monoclinic phase of the yttrium-aluminum double oxide is 20% or less.

10. A method for forming a thermal spray coating, the method comprising plasma spraying a thermal spraying powder to form the thermal spray coating, wherein the thermal spraying powder contains granulated and sintered particles of an yttrium-aluminum double oxide formed by granulating and sintering raw-material particles, and wherein the crushing strength of the granulated and sintered particles is 86 MPa or more, and 10% particle size D 10 of the granulated and sintered particles is 6 μm or more, and wherein, when x-ray diffraction of the thermal spraying powder is measured, the ratio of the intensity of an x-ray diffraction peak of a (222) plane of yttria to the intensity of the maximum peak among an x-ray diffraction peak of a (420) plane of a garnet phase of the yttrium-aluminum double oxide, an x-ray diffraction peak of a (420) plane of a perovskite phase of the yttrium-aluminum double oxide, and an x-ray diffraction peak of a (122) plane of a monoclinic phase of the yttrium-aluminum double oxide is 20% or less.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 16, 2005
From: KITAMURA, JUNYA; MIZUNO, HIROAKI; ITSUKAICHI, TSUYOSHI
To: FUJIMI INCORPORATED
Reel/Frame 017128/0143 →
Priority Claims (1)
JP 2004-347725 · Nov 30, 2004 · national
Continuity (1)
Related Publication 20060116274A1 · Jun 1, 2006