IP Library Granted Patent US 12692196
Granted Patent B2
US 12692196 · App. 18/027,680 · Granted Jul 28, 2026

Method for producing zirconia sintered body

Inventor: Atsushi Matsuura (Aichi, JP)
Assignee: Kuraray Noritake Dental Inc.
C04B35/48A61K6/818C04B2235/3225C04B2235/6562C04B2235/6567
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Quick Facts
Patent No.
US 12692196
App. No.
18/027,680
Granted
Jul 28, 2026
Kind
B2
Abstract

The present invention provides a method of production of a zirconia sintered body by which a zirconia molded body or zirconia pre-sintered body having a plurality of layers containing different amounts of stabilizer is sintered in a short time period to produce a zirconia sintered body having hardly noticeable stripes between layers differing in yttria content. The present invention relates to a method for producing a zirconia sintered body, comprising a firing step of firing a zirconia molded body or a zirconia pre-sintered body, the zirconia molded body or the zirconia pre-sintered body comprising a plurality of layers containing a stabilizer, the plurality of layers including layers having different stabilizer contents, the firing step comprising at least three stages of temperature-increasing process including a first temperature-increasing step (H1), a second temperature-increasing step (H2), and a third temperature-increasing step (H3), the method satisfying HR2=more than 0° C./min and less than 50° C./min, HR3=5 to 150° C./min, and HR3/HR2>1, where HR2 is a rate of temperature increase in H2, and HR3 is a rate of temperature increase in H3, the temperature-increasing process having start temperatures that are 1,000° C. or less in H1, more than 1,250° C. and 1,450° C. or less in H2, and 1,450° C. or more and 1,550° C. or less in H3, the temperature-increasing process having end temperatures that are more than 1,250° C. and 1,450° C. or less in H1, 1,450° C. or more and 1,550° C. or less in H2, and 1,500° C. or more and 1,750° C. or less in H3.

Claims (23)

1 . A method for producing a zirconia sintered body, comprising:

firing a zirconia molded body or a zirconia pre-sintered body;

wherein:

the zirconia molded body or the zirconia pre-sintered body comprises a plurality of layers containing a stabilizer;

the plurality of layers including layers have different stabilizer contents;

firing comprises continuously increasing or retaining temperature through at least three stages comprising a first temperature-increasing stage (H1), a second temperature-increasing stage (H2), and a third temperature-increasing stage (H3);

the method satisfies HR2=more than 0° C./min and less than 50° C./min, HR3=5° C./min or more and 150° C./min or less, and HR3/HR2>1, where HR2 is a rate of temperature increase in the second temperature-increasing stage (H2), and HR3 is a rate of temperature increase in the third temperature-increasing stage (H3);

start temperatures of the temperature-increasing stages are 1,000° C. or less in H1, more than 1,250° C. and 1,450° C. or less in H2, and 1,450° C. or more and 1,550° C. or less in H3; and

end temperatures of the temperature-increasing stages are more than 1,250° C. and 1,450° C. or less in H1, 1,450° C. or more and 1,550° C. or less in H2, and 1,500° C. or more and 1,750° C. or less in H3.

2 . The method for producing a zirconia sintered body according to claim 1 , wherein HR1 is 40 to 500° C./min, where HR1 is a rate of temperature increase in the first temperature-increasing stage (H1).

3 . The method for producing a zirconia sintered body according to claim 1 , wherein the stabilizer contents in the layers having different stabilizer contents differ by 0.1 mol % or more from one another.

4 . The method for producing a zirconia sintered body according to claim 1 , wherein the stabilizer is yttria.

5 . The method for producing a zirconia sintered body according to claim 4 , wherein a content of the yttria relative to total moles of the zirconia and the yttria is 2.5 mol % or more and 7.5 mol % or less in all of the layers in the plurality of layers.

6 . The method for producing a zirconia sintered body according to claim 1 , wherein HR2 is 2 to 30° C./min.

7 . The method for producing a zirconia sintered body according to claim 1 , wherein HR3 is 10 to 100° C./min.

8 . The method for producing a zirconia sintered body according to claim 1 , wherein HR3/HR2>1.5.

9 . The method for producing a zirconia sintered body according to claim 1 , wherein: firing comprises firing at a highest firing temperature of 1,400 to 1,750° C., and retaining the highest firing temperature for 30 minutes or less.

10 . The method for producing a zirconia sintered body according to claim 9 , wherein firing further comprises a temperature-decreasing in which temperature is decreased at a rate of 10° C./min or more from a highest firing temperature of the temperature-increasing stages to 800° C.

11 . The method for producing a zirconia sintered body according to claim 1 , wherein firing comprises firing for a total firing time of 120 minutes or less from a start of first temperature-increasing stage (H1) to an end of a retention time at a highest firing temperature.

12 . The method for producing a zirconia sintered body according to claim 1 , wherein 55% or more of the zirconia molded body or the zirconia pre-sintered body are monoclinic in crystal system.

13 . The method for producing a zirconia sintered body according to claim 1 , wherein at least a part of the stabilizer is not dissolved in zirconia as a solid solution in the zirconia molded body or the zirconia pre-sintered body.

14 . The method for producing a zirconia sintered body according to claim 1 , wherein the zirconia molded body or the zirconia pre-sintered body has a predetermined shape of a dental product.

15 . The method for producing a zirconia sintered body according to claim 14 , wherein the dental product is a dental prosthesis.