IP Library › Granted Patent US 11,127,569
Granted Patent B2
US 11,127,569 · App. 16/015,832 · Granted Sep 21, 2021

Plasma-resistant member

Inventor: Junichi Iwasawa (Kitakyushu, JP)
Assignee: Toto Ltd.
H01J37/32495C01F17/218C23C4/11C23C16/4404C23C16/50C23C24/04C01P2002/60C01P2002/76C01P2004/02H01J37/32715H01L21/67017H01L21/6831
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Quick Facts
Patent No.
US 11,127,569
App. No.
16/015,832
Granted
Sep 21, 2021
Kind
B2
Abstract

A plasma-resistant member that includes a base material and a layer structural component is provided, wherein the layer structural component includes an yttria polycrystalline body, is formed at a surface of the base material, and has plasma resistance; crystallites that are included in the yttria polycrystalline body included in the layer structural component are not bonded to each other via a heterogenous phase; the yttria polycrystalline body included in the layer structural component has a crystal structure including only cubic, or a crystal structure in which cubic and monoclinic coexist; and an average value of a proportion of monoclinic to cubic inside the yttria polycrystalline body included in the layer structural component is greater than 0% and not more than 60%.

Claims (25)

1. A plasma-resistant member, comprising:

a base material; and

a layer structural component including an yttria polycrystalline body, being formed at a surface of the base material,

the yttria polycrystalline body included in the layer structural component having a crystal structure including only cubic, or a crystal structure in which cubic and monoclinic coexist,

a proportion of monoclinic to cubic inside the yttria polycrystalline body included in the layer structural component being greater than 0% and not more than 25%,

wherein an average crystallite size of the yttria polycrystalline body included in the layer structural component is not less than 12 nanometers and not more than 40 nanometers.

2. The plasma-resistant member according to claim 1 , wherein a standard deviation of a distribution of the proportion of monoclinic to cubic in the yttria polycrystalline body included in the layer structural component is not less than 0% and not more than 15%.

3. A plasma-resistant member, comprising:

a base material; and

a layer structural component including an yttria polycrystalline body, being formed at a surface of the base material,

the yttria polycrystalline body included in the layer structural component having a crystal structure including only cubic, or a crystal structure in which cubic and monoclinic coexist,

a proportion of monoclinic to cubic inside the yttria polycrystalline body included in the layer structural component being greater than 0% and not more than 25%,

an average crystallite size of the yttria polycrystalline body included in the layer structural component being not less than 12 nanometers and not more than 40 nanometers,

a standard deviation of a distribution of a crystallite size of the yttria polycrystalline body included in the layer structural component being not less than 0.1 nanometers and not more than 1.1 nanometers.

4. The plasma-resistant member according to claim 3 , wherein an average lattice strain of the yttria polycrystalline body included in the layer structural component is not less than 0.2% and not more than 0.5%.

5. The plasma-resistant member according to claim 4 , wherein a standard deviation of a distribution of the lattice strain of the yttria polycrystalline body included in the layer structural component is not less than 0.003% and not more than 0.04%.

6. The plasma-resistant member according to claim 1 , wherein a ratio (O/Y) of an atomic concentration of oxygen ( 0 ) to an atomic concentration of yttrium (Y) inside the yttria polycrystalline body included in the layer structural component is not less than 1.3 and not more than 1.8.

7. A plasma-resistant member, comprising:

a base material; and

a layer structural component including an yttria polycrystalline body, being formed at a surface of the base material,

the yttria polycrystalline body included in the layer structural component having a crystal structure including only cubic, or a crystal structure in which cubic and monoclinic coexist,

a proportion of monoclinic to cubic inside the yttria polycrystalline body included in the layer structural component being greater than 0% not more than 25%,

an average lattice strain of the yttria polycrystalline body included in the layer structural component being not less than 0.2% and not more than 0.5%.

8. The plasma-resistant member according to claim 7 , wherein a standard deviation of a distribution of the lattice strain of the yttria polycrystalline body included in the layer structural component is not less than 0.003% and not more than 0.04%.

9. The plasma-resistant member according to claim 1 , wherein the proportion of monoclinic to cubic inside the yttria polycrystalline body included in the layer structural component is greater than 2% and not more than 17%.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 25, 2018
From: IWASAWA, JUNICHI
To: TOTO LTD.
Reel/Frame 046187/0555 →
Priority Claims (1)
JP JP2015-251873 · Dec 24, 2015 · national
Continuity (2)
Continuation PCTJP2015086337 · Dec 25, 2015
Related Publication 20180301321A1 · Oct 18, 2018
Cited By (1)
US 12,738,460