Claims
- 1. A method of fabricating a voltage limiter especially suitable for use in gapless lightning arresters, said method comprising:
- (a) preparing a composition which is selected to consist essentially of the following ingredients by approximate mole %:
- ______________________________________ ZnO 93.5 Bi.sub.2 O.sub.3 3.0 Co.sub.3 O.sub.4 1.0 M.sub.n O.sub.2 1.0 Sb.sub.2 O.sub.3 1.0 SiO.sub.2 0.5______________________________________
- (b) forming the composition into the desired shape;
- (c) sintering the formed composition for a predetermined period of time at a predetermined temperature such that the composition displays a microstructure including an array of ZnO grains which are separated from one another by an intergranular phase made up of the remaining ingredients of said compositions; and
- (d) the particular amount of ZnO, the particular amount and kinds of additives and the particular sintering time and temperature being such that for a sample 5 cm in diameter by 1 cm high the voltage limiting composition displays an energy absorption capability at least equal to about 50 joules/cm.sup.3 and a nonlinear exponent .alpha. at least equal to about 35 as determined by the following equation for .alpha.: ##EQU2## where V.sub.1 and V.sub.2 are the respective voltages across said sample at currents I.sub.1 and I.sub.2 flowing therethrough and where I.sub.1 and I.sub.2 are 1 ma and 5000 amps, respectively.
- 2. A voltage llimiting composition especially suitable for use in a gapless lightning arrester, said composition consisting of the following ingredients by approximate mole %:
- ______________________________________ ZnO 93.5 Bi.sub.2 O.sub.3 3.0 Co.sub.3 O.sub.4 1.0 M.sub.n O.sub.2 1.0 Sb.sub.2 O.sub.3 1.0 SiO.sub.2 0.5______________________________________
- said composition displaying a microstructure including an array of ZnO grains which are separated from one another by an intergranular phase made up of the remaining ingredients of said composition and being sintered such that for a sample 5 cm in diameter by 1 cm high it displays an energy absorption capability at least equal to about 50 joules/cm.sup.3 and a nonlinear exponent .alpha. at least equal to about 35 as determined by the following equation for .alpha.: ##EQU3## where V.sub.1 and V.sub.2 are the respective voltages across said sample at currents I.sub.1 and I.sub.2 flowing therethrough and where I.sub.1 and I.sub.2 are 1 ma and 500 amps, respectively.
- 3. A method according to claim 1 wherein said composition is sintered at a temperature between about 1100.degree. C. and 1350.degree. C. for a predetermined period of time between about two hours and ten hours.
- 4. A method according to claim 1 wherein said composition is sintered at a temperature of about 1300.degree. C. for about 1.5 hours.
- 5. A method of fabricating a voltage limiter especially suitable for use in gapless lightning arresters, said method comprising:
- (a) preparing a composition which is selected to consist essentially of the following ingredients by approximate mole %:
- ______________________________________ ZnO 93.5 Bi.sub.2 O.sub.3 3.0 Co.sub.3 O.sub.4 1.0 M.sub.n O.sub.2 1.0 Sb.sub.2 O.sub.3 1.0 SiO.sub.2 0.5______________________________________
- (b) forming the composition into the desired shape; and
- (c) sintering the formed composition for about 1.50 hours at a temperature of about 1300.degree. C. such that for a sample 5 cm in diameter by 1 cm high the voltage limiting composition displays an energy absorption capability at least equal to about 50 joules/cm.sup.3 and a nonlinear exponent .alpha. at least equal to about 35 as determined by the following equation for .alpha.: ##EQU4## where V.sub.1 and V.sub.2 are the respective voltages across said sample at currents I.sub.1 and I.sub.2 flowing therethrough and where I.sub.1 and I.sub.2 are 1 ma and 5000 amps, respectively.
- 6. A voltage limiting composition especially suitable for use in a gapless lightning arrester, said commposition consisting essentially of the following ingredients by approximate mole %:
- ______________________________________ ZnO 93.5 Bi.sub.2 O.sub.3 3.0 Co.sub.3 O.sub.4 1.0 M.sub.n O.sub.2 1.0 Sb.sub.2 O.sub.3 1.0 SiO.sub.2 0.5______________________________________
- said composition displaying an energy absorption capability at least equal to about 50 joules/cm.sup.3 and a nonlinear exponent .alpha. at least equal to about 35 as determined by the following equation for .alpha.: ##EQU5## where V.sub.1 and V.sub.2 are the respective voltages across said sample at currents I.sub.1 and I.sub.2 flowing therethrough and where I.sub.1 and I.sub.2 are 1 ma and 5000 amps, respectively.
- 7. The method according to claim 1 wherein said composition is formed to have a density beteween about 2.5 g/cm.sup.3 and 3.5 g/cm.sup.3.
- 8. A composition to claim 2 having a density between about 2.5 g/cm.sup.3 and 3.5 g/cm.sup.3.
Parent Case Info
This application is a continuation of U.S. application Ser. No. 115,448, filed Jan. 25, 1980 (abandoned) which in turn is a continuation of U.S. application Ser. No. 896,349 filed Apr. 14, 1978 (abandoned). Priority of these applications is hereby claimed.
US Referenced Citations (2)
Number |
Name |
Date |
Kind |
3764566 |
Matsuoka et al. |
Oct 1973 |
|
3962144 |
Matsuura et al. |
Jun 1976 |
|
Continuations (2)
|
Number |
Date |
Country |
Parent |
115448 |
Jan 1980 |
|
Parent |
896349 |
Apr 1978 |
|