Method for increasing the strength of porous ceramic bodies and bodies made therefrom
A porous ceramic body having increased strength is formed by exposing a porous ceramic body to a source of boron and heating the porous body to a sufficient temperature in an oxygen containing atmosphere to form the porous ceramic body. The porous ceramic body has a boron containing oxide glassy phase on at least a portion of the ceramic grains of the porous ceramic body.
1. A method of increasing the strength of a porous ceramic body comprising:
(a) exposing a porous ceramic body comprised of ceramic grains essentially chemically bound together to compounds consisting of a source of boron and one second compound selected from the group consisting of a rare earth compound, ZrO 2 , SnO 2 , SiC, Si 3 N 4 , SiO 2 and Al 2 O 3 and
(b) heating the porous body in an oxygen containing atmosphere to a temperature sufficient to form the porous ceramic body having increased strength.
2. A method of increasing the strength of a porous ceramic body comprising:
(a) exposing a porous ceramic body comprised of ceramic grains essentially chemically bound together to a source of boron and a rare earth compound and
(b) heating the porous body in an oxygen containing atmosphere to a temperature sufficient to form the porous ceramic body having increased strength.
3. A method of increasing the strength of a porous ceramic body comprising:
(a) exposing a porous ceramic body comprised of ceramic grains essentially chemically bound together to compounds consisting of a source of boron and a second compound selected from the group consisting of a rare earth compound, ZrO 2 , SnO 2 , SiC, Si 3 N 4 , Al 2 O 3 and combination thereof and
(b) heating the porous body in an oxygen containing atmosphere to a temperature sufficient to form the porous ceramic body having increased strength.
4. A porous ceramic body comprised of ceramic grains that are fused together, wherein, on at least a portion of the ceramic grains, there is an oxide glassy phase consisting of boron and elements selected from the group consisting of elements in the grains of the ceramic porous body, elements within impurities in the ceramic porous body, elements in a second compound and combination thereof, wherein the second compound is one compound selected from the group consisting of a rare earth compound, ZrO 2 , SnO 2 , SiC, Si 3 N 4 , and Al 2 O 3 .
5. The porous ceramic body of claim 4 , wherein the elements are selected from the group consisting of elements in the grains of the ceramic porous body, elements within impurities in the ceramic porous body and combination thereof.
6. The porous ceramic body of claim 4 , wherein the ceramic grains of the porous ceramic body are comprised of mullite, cordierite, silicon carbide, aluminum titanate or combination thereof.
7. The porous ceramic body of claim 6 , wherein the ceramic grains of the porous ceramic body are mullite, cordierite, silicon carbide or a combination thereof.
8. The porous ceramic body of claim 7 , wherein the ceramic grains of the porous ceramic body are mullite.
9. A method of increasing the strength of a porous ceramic body comprising:
(a) exposing a porous ceramic body comprised of ceramic grains essentially chemically bound together to a compound consisting of a source of boron and
(b) heating the porous body in an oxygen containing atmosphere to a temperature sufficient to form the porous ceramic body having increased strength.
10. The method of claim 9 , wherein the source of boron is selected from the group consisting of boron oxide, boric acid, organic borate, boron carbide, boron nitride, o-carborane, ammonium pentaborate, ammonium tetraphenyl borate, a metal boride, a metal borate and combination thereof.