Lithium silicate glass ceramic for fabrication of dental appliances
The present invention relates to preparing an improved lithium silicate glass ceramic for the manufacture of blocks for dental appliance fabrication using a CAD/CAM process and hot pressing system. The lithium silicate material has a chemical composition that is different from those reported in the prior art with 1 to 10% of germanium dioxide in final composition. The softening points are close to the crystallization final temperature of 830° C. indicating that the samples will support the temperature process without shape deformation.
1 . A lithium silicate ceramic glass made from a composition mixture comprising:
up to about 59% wt SiO2;
up to about 20% wt Li 2 O
up to about 10% wt GeO 2 ;
and selected amounts %wt of at least Al 2 O 3 , K 2 O, B 2 O 3 , CaO, F, MgO,CeO 2 and P 2 O 5 .
2 . The lithium silicate ceramic glass recited in claim 1 wherein said composition mixture also comprises one or more of the following components: ZrO 2 , TiO 2 , Er 2 O 3 , V 2 O 5 , MnO 2 , Tb 4 O 7 , Ta 2 O 5 , Sm 2 O 3 , Pr 2 O 3 , Y 2 O 3 , Nb 3 O 5 , SnO, and Eu 2 O 3 .
3 . A lithium silicate ceramic glass made from a composition mixture comprising:
about 58.2% wt SiO 2 ;
about 16.0% wt Li 2 O;
about 4.5% wt K 2 O; and
about 4.5% wt of Al 2 O 3 ; and
about 8.4% wt GeO 2 .
4 . The lithium silicate ceramic glass recited in claim 3 wherein said composition mixture also comprises at least 2.5% wt of each of the following components: P 2 O 5 , ZrO 2 , CeO 2 , Pr 2 O 3 , Y 2 O 3 , and Sm 2 O 3 .
5 . The lithium silicate ceramic glass recited in claim 4 further comprising one or more of the following additional components: TiO 2 , SnO, Eu 2 O 3 , Er 2 O 3 , Nb 2 O 3 and V 2 O 5 .
6 . The lithium silicate glass ceramic recited in claim 1 comprising a molar ratio of (SiO 2 +GeO 2 )/Li 2 O between 1.7 and 2.5.
7 . A method of fabricating dental restorations of lithium silicate glass; the method comprising the steps of:
(a) blending a mix of precursors;
(b) ball milling the mix to homogenize components of the mix;
(c) melting the resulting mix of step (b) for about 1 to 5 hours at a temperature of 1400 to 1500° C.;
(d) pouring the melt of step (c) into graphite molds to form shaped blanks and cooling such blanks to room temperature;
(e) heating the blanks of step (d) at a temperature of 630° to 650° C. for 10 to 40 min;
(f) milling the blanks of step (e) into dental restorations; and
(g) heating the restoration of step (f) at temperature of 350° to 830° C.
8 . A method of fabricating dental restorations of lithium silicate glass; the method comprising the steps of:
(a) blending a mix of precursors;
(b) ball milling the mix to homogenize components of the mix;
(c) melting the resulting mix of step (b) for about 1 to 5 hours at a temperature of 1400 to 1500° C.;
(d) pouring the melt of step (c) into graphite molds to form shaped blanks and cooling such blanks to room temperature;
(e) heating the blanks of step (d) at a temperature of 630° to 650° C. for 10 to 40 min;
(f) hot pressing the blanks of step (e) into dental restorations at a temperature of 800° to 870° C.
9 . The method of claim 7 wherein one of said precursors in step (a) is germanium oxide.
10 . The method of claim 8 wherein one of said precursors in step (a) is germanium oxide.