Claims
- 1. A method of fabricating a windshield having electrodes on a surface thereof comprising the steps of:
- providing a composition comprising an electrically conductive metal oxide and a glass frit having a preselected fusion temperature;
- screening the composition on an automotive windshield glass substrate within an automatically wiped area on its surface in a preselected pattern, said substrate having a softening temperature below said fusion temperature;
- disposing said windshield on a support surface; and
- heating said substrate to at least said fusion temperature but less than the substrate melting temperature to cause the substrate to sag against said surface for shaping said substrate and to essentially simultaneously fuse the frit of said composition for bonding said pattern to said wiped area of said substrate surface.
- 2. The method of claim 1 wherein said screening step provides a decorative pattern on said substrate.
- 3. The method of claim 1 wherein said composition is in the form of an ink including an organic binder, and said ink is deposited onto said substrate using a silk screening process.
- 4. A method of fabricating a windshield having electrodes on a surface thereof comprising the steps of:
- providing a composition comprising ruthenium oxide and a glass frit;
- depositing the composition on a windshield glass substrate in a preselected pattern;
- disposing said windshield on a support surface; and
- heating said substrate to cause it to sag against said surface for shaping said substrate and for essentially simultaneously fusing the frit of said composition for bonding said pattern to said substrate.
- 5. A method of fabricating a windshield having electrodes on a surface thereof comprising the steps of:
- providing an ink comprising ruthenium oxide, a glass frit, and an organic binder;
- silk screening the ink onto a windshield glass substrate in a preselected pattern to form electrodes;
- disposing said substrate to cause it to sag against said surface for shaping said substrate and for essentially simultaneously fusing the frit of said composition for bonding said electrodes to said substrate.
- 6. A method of fabricating a windshield having electrodes on a surface thereof comprising the steps of:
- providing an ink comprising ruthenium oxide, a glass frit, and an organic binder;
- silk screening the ink onto a windshield glass substrate in a preselected pattern to form electrodes;
- disposing said windshield on a support surface; and
- heating said substrate above its softening temperature but less than its melting temperature, whereby the frit of said ink is heated above its melting temperature, effective to cause said substrate to sag against said surface for shaping said substrate and to essentially simultaneously fuse the frit of said ink for bonding said electrodes to said substrate.
- 7. A method of fabricating a windshield having electrodes on a surface thereof comprising the steps of:
- providing an ink comprising ruthenium electrically conductive metal oxide, a glass frit, and an organic binder;
- depositing the ink onto a windshield glass substrate in a preselected coating pattern, and substrate having a softening temperature below the fusion temperature of said glass frit in said ink;
- disposing said windshield on a support surface; and
- heating said substrate to a temperature that is above the fusion temperature of said glass frit but below the substrate melting temperature, effective to cause said substrate to sag against said surface for shaping said substrate and to essentially simultaneously fuse the frit of said composition for bonding said coating pattern to said substrate.
- 8. The method of claim 7 wherein the coating pattern of ink is a substantially continuous film over an electrode pattern on said substrate.
- 9. The method of claim 7 wherein the depositing step provides a decorative pattern on said glass substrate.
Parent Case Info
This is a division of application Ser. No. 087,826 filed on Aug. 21, 1987, now U.S. Pat. No. 4,797,605.
US Referenced Citations (7)
Foreign Referenced Citations (2)
Number |
Date |
Country |
9032908 |
Jul 1972 |
JPX |
55-95857 |
Jul 1980 |
JPX |
Divisions (1)
|
Number |
Date |
Country |
Parent |
87826 |
Aug 1987 |
|