Translucent zirconia sintered body, process for producing the same, and use of the same

US9309157B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9309157-B2
Application numberUS-201414473494-A
CountryUS
Kind codeB2
Filing dateAug 29, 2014
Priority dateApr 9, 2008
Publication dateApr 12, 2016
Grant dateApr 12, 2016

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  5. First independent claim

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Abstract

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A subject of the invention relates to providing a powder for a translucent zirconia sintered body which is necessary for the production of a zirconia sintered body having a high sintered-body density and high strength and giving an excellent sense of translucency, without conducting any special sintering, such as HIP sintering. The invention relates to a technique for obtaining, through normal-pressure sintering, a translucent zirconia sintered body characterized by comprising zirconia which contains 2-4 mol % yttria as a stabilizer and has an alumina content of 0.2 wt % or lower, and by having a relative density of 99.8% or higher and a total light transmittance, as measured at a thickness of 1.0 mm, of 35% or higher. It is preferred that a powder containing 0-0.2 wt % alumina with a particle diameter of 0.01-0.5 μm, having a BET specific surface area of 5-16 m 2 /g and an average particle diameter of 0.3-0.7 μm, and having a rate of sintering shrinkage in normal-pressure sintering (Δρ/ΔT; g/cm 3 ·° C.) of 0.0125 or higher but 0.0160 or lower should be subjected to normal-pressure sintering in the atmosphere.

First claim

Opening claim text (preview).

The invention claimed is: 1. A translucent zirconia sintered body characterized by comprising zirconia which contains 2-4 mol % yttria as a stabilizer and has an alumina content of lower than 0.1 wt %, and by having a relative density of 99.8% or higher and a total light transmittance, as measured at a thickness of 1.0 mm, of 35% or higher; wherein relative density means the value obtained by measuring an actual density ρ by the Archimedes method, determining a theoretical density ρo using the following equation (2), and converting these density values to the proportion (ρ/ρo) times 100(%), and in equation (2), the theoretical density of alumina and the theoretical density of zirconia containing 3 mol % yttria were taken as 3.987 (g/cm3) and 6.0956 (g/cm3), respectively, ρo=100/[(X/3.987)+(100-X)/6.0956]  (2) {X is alumina content (% by weight)}. 2. A translucent zirconia sintered body characterized by comprising zirconia which contains 2-4 mol % yttria as a stabilizer and contains no alumina, and by having a relative density of 99.8% or higher and a total light transmittance, as measured at a thickness of 1.0 mm, of 35% or higher; wherein relative density means the value obtained by measuring an actual density ρ by the Archimedes method, determining a theoretical density ρo using the following equation (2), and converting these density values to the proportion (ρ/ρo) times 100(%), and in equation (2), the theoretical density of alumina and the theoretical density of zirconia containing 3 mol % yttria were taken as 3.987 (g/cm3) and 6.0956 (g/cm3), respectively, ρo=100/[(X/3.987)+(100-X)/6.0956]  (2) {X is alumina content (% by weight)}. 3. The translucent zirconia sintered body as claimed in claim 1 which has a crystal grain diameter of 0.20-0.45 μm. 4. The translucent zirconia sintered body as claimed in claim 2 which has a crystal grain diameter of 0.20-045 μm. 5. The translucent zirconia sintered body as claimed in claim 1 which has a monoclinic fraction of 30% or lower after 24-hour immersion in 140° C. hot water. 6. The translucent zirconia sintered body as claimed in claim 2 which has a monoclinic fraction of 30% or lower after 24-hour immersion in 140° C. hot water. 7. The translucent zirconia sintered body as claimed in claim 1 which has a three-point bending strength of 1,000 MPa or higher. 8. The translucent zirconia sintered body as claimed in claim 2 which has a three-point bending strength of 1,000 MPa or higher. 9. A dental material comprising the sintered body as described in claim 1 . 10. A dental material comprising the sintered body as described in claim 2 . 11. The dental material as claimed in claim 9 which is a denture and/or a denture mill blank. 12. The dental material as claimed in claim 10 which is a denture and/or a denture mill blank. 13. The dental material as claimed in claim 11 which is an orthodontic bracket. 14. The dental material as claimed in claim 12 which is an orthodontic bracket.

Assignees

Inventors

Classifications

  • comprising zirconium oxide · CPC title

  • comprising transition metal oxides · CPC title

  • Particle size · CPC title

  • Refractive index · CPC title

  • micrometer sized, i.e. from 1 to 100 micron · CPC title

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What does patent US9309157B2 cover?
A subject of the invention relates to providing a powder for a translucent zirconia sintered body which is necessary for the production of a zirconia sintered body having a high sintered-body density and high strength and giving an excellent sense of translucency, without conducting any special sintering, such as HIP sintering. The invention relates to a technique for obtaining, through normal-…
Who is the assignee on this patent?
Fujisaki Hiroyuki, Kawamura Kiyotaka, Imai Kohei, and 1 more
What technology area does this patent fall under?
Primary CPC classification C04B35/48. Mapped technology areas include Chemistry & Metallurgy.
When was this patent published?
Publication date Tue Apr 12 2016 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).