Claims
- 1. A composite sintered oxide resistor which is obtained by sintering a powdery oxide mixture containing zinc oxide, magnesium oxide, aluminum oxide, and silicon oxide, free of bismuth oxide, and having crystal grains of zinc oxide.
- 2. An SF.sub.6 gas-insulated neutral grounding with an oxide resistor, which comprises a oxide resistor being a composite sintered oxide resistor which comprises individual crystal grains including zinc oxide grains, obtained by sintering a powdery oxide mixture of zinc oxide as the main component and other oxide of metal or semi-metal than zinc oxide, free from bismuth oxide, the resistor having a voltage-current characteristic such that an increase in current is substantially linearly proportional to an increase in voltage in an operating range, and having a column or cylindrical form and electrodes on both end surfaces excluding the side surface.
- 3. An SF.sub.6 gas-insulated neutral grounding according to claim 2, wherein a void exists at the position corresponding to the grain boundary layer between the individual crystal grains.
- 4. An SF.sub.6 gas-insulated neutral grounding according to claim 2, wherein the metal or the semi-metal element is titanium, silicon, antimony, zirconium, or tin.
- 5. A composite sintered oxide resistor according to claim 2, wherein the individual crystal grains further comprise grains having the following chemical formula: Zn.sub.2 TiO.sub.4, Zn.sub.2 SiO.sub.4, Zn.sub.7 Sb.sub.2 O.sub.12, Zn.sub.2 ZrO.sub.4 or Zn.sub.2 SnO.sub.4.
- 6. An SF.sub.6 gas insulated neutral grounding according to claim 2, wherein the grain boundary layer between the individual crystal grains has an electric resistance equal to that of the crystal grains of zinc oxide.
- 7. An SF.sub.6 gas-insulated neutral grounding according to claim 2, wherein said powder oxide mixture further contains magnesium oxide.
- 8. A composite sintered oxide resistor, obtained by sintering a powdery oxide mixture of zinc oxide as a major component and other oxide of metal or semi-metal than zinc oxide, free from bismuth oxide powder, the resistor having a resistance-temperature coefficient of 5.times.10.sup.-4 .OMEGA./.degree.C. to -5.times.10.sup.4 .OMEGA./.degree.C. at 20.degree. to 500.degree. C., a resistivity of 100 to 4,000 .OMEGA. at 20.degree. C., a withstanding capacity against switching surge of 500 to 800 J/cc and a voltage-current characteristic such that an increase in current is substantially linearly proportional to an increase in voltage in an operating range.
- 9. A gas circuit breaker with an oxide resistor, which comprises an oxide resistor being a composite sintered oxide resistor according to claim 8, wherein a column or cylindrical form and electrodes are provided on the end surfaces excluding the side surface.
- 10. A gas circuit breaker according to claim 9, wherein an insulating glass is provided by baking on the entire side surface of the resistor.
- 11. A composite sintered oxide resistor, which is obtained by sintering a powdery oxide mixture containing 68 to 90% by mole of zinc oxide, 3 to 10% by mole of magnesium oxide, 5 to 15% by mole of aluminum oxide and 1 to 2% by mole of silicon oxide and free from bismuth oxide, having crystal grains of zinc oxide and free from a grain boundary layer having a higher electric resistance than that of the crystal grains of zinc oxide being formed between the crystal grains, and the resistor having substantially linear resistance.
- 12. A gas circuit breaker with an oxide resistor, which comprises an oxide resistor being a composite sintered oxide resistor according to claim 11, wherein a column or cylindrical form and electrodes are provided on the end surfaces excluding the side surface.
- 13. A gas circuit breaker according to claim 12, wherein an insulating glass is provided by baking on the entire side surface of the resistor.
- 14. A composite sintered oxide resistor which is obtained by sintering a powdery oxide mixture consisting essentially of 0.1 to 10% by mole of magnesium oxide and 0.1 to 20% by mole of at least one of yttrium oxide, gallium oxide, lanthanum oxide and indium oxide, the balance being zinc oxide, having crystal grains of zinc oxide, and the resistor having a voltage-current characteristic such that an increase in current is substantially linearly proportional to an increase in voltage in an operating range.
- 15. An SF.sub.6 gas-insulated neutral grounding with an oxide resistor, which comprises an oxide resistor being a composite sintered oxide resistor which comprises individual crystal grains including zinc oxide grains, obtained by sintering a powdery oxide mixture of zinc oxide as the main component and other oxide of metal or semi-metal than zinc oxide, free from bismuth oxide, the resistor having a voltage-current characteristic such that an increase in current is substantially linearly proportional to an increase in voltage in an operating range, and having a column or cylindrical form and electrodes on both end surfaces excluding the side surface, and wherein the electrodes are formed at positions other than the peripheral side surface.
- 16. An SF.sub.6 gas-insulated neutral grounding according to claim 15, wherein said powdery oxide mixture further contains magnesium oxide.
- 17. An SF.sub.6 gas-insulated neutral grounding according to claim 15, wherein the grain boundary layer between the individual crystal grains has an electric resistance equal to that of the crystal grains of zinc oxide.
- 18. An SF.sub.6 gas-insulated neutral grounding according to claim 15, wherein a void exits at the position corresponding to the grain boundary layer between the individual crystal grains.
- 19. An SF.sub.6 gas-insulated neutral grounding according to claim 15, wherein the metal or the semi-metal element is titanium, silicon, antimony, zirconium, or tin.
- 20. A composite sintered oxide resistor according to claim 15, wherein the individual crystal grains further comprise grains having the following chemical formula: Zn.sub.2 TiO.sub.4, Zn.sub.2 SiO.sub.4, Zn.sub.7 Sb.sub.2 O.sub.12, Zn.sub.2 ZrO.sub.4 or Zn.sub.2 SnO.sub.4.
- 21. A composite sintered oxide resistor, obtained by sintering a powdery oxide mixture of zinc oxide as the main component and other oxide of metal or semi-metal other than zinc oxide, free from bismuth oxide, so as to form crystal grains of zinc oxide and crystal grains having an electric resistance of 200 .OMEGA.to 3.times.10.sup.13 .OMEGA., the resistor being in a plate form and having electrodes at both end surfaces, and having a voltage-current characteristic such that an increase in current is substantially linearly proportional to an increase in voltage in an operating range.
- 22. A gas circuit breaker with an oxide resistor, which comprises an oxide resistor being a composite sintered oxide resistor according to claim 21, wherein a column or cylindrical form and electrodes are provided on the end surfaces excluding the side surface.
- 23. A gas circuit breaker according to claim 22, wherein an insulating glass is provided by baking on the entire side surface of the resistor.
- 24. A composite sintered oxide resistor which is obtained by sintering a powdery oxide mixture consisting essentially of 68 to 90% by mole of zinc oxide, 3 to 10% by mole of magnesium oxide powder, 5 to 15% by mole of aluminum oxide and 1 to 2% by mole of silicon oxide, having crystal grains of zinc oxide, and the resistor having a voltage-current characteristic such that an increase in current is substantially linear proportional to an increase in voltage in an operating range.
- 25. A composite sintered oxide resistor which is obtained by sintering a powdery oxide mixture consisting essentially of 70 to 92% by mole of zinc oxide, 3 to 10% by mole of magnesium oxide and 5 to 15% by mole of aluminum oxide, having crystal grains of zinc oxide, and the resistor having a voltage-current characteristic such that an increase in current is substantially linearly proportional to an increase in voltage in an operating range.
- 26. A composite sintered oxide resistor which is obtained by sintering a powdery oxide mixture consisting essentially of 65 to 94.8% by mole of zinc oxide, 0.2 to 15% by mole of magnesium oxide powder and 5 to 20% by mole of titanium oxide, having crystal grains of zinc oxide, and the resistor having a voltage-current characteristic such that an increase in current is substantially linearly proportional to an increase in voltage in an operating range.
- 27. A composite sintered oxide resistor which is obtained by sintering a powdery oxide mixture containing 5 to 20% by mole of titanium oxide, 0.2 to 15% by mole of magnesium oxide, and 0.2 to 15% by weight of at least one oxide selected from the group consisting of antimony oxide, silicon oxide, zirconium oxide and tin oxide, the balance being zinc oxide, free from bismuth oxide, having crystal grains of zinc oxide, and the resistor having a voltage-current characteristic such that an increase in current is substantially linearly proportional to an increase in voltage in an operating range.
- 28. A composite sintered oxide resistor according to claim 27, wherein said powdery oxide mixture consists essentially of 65 94.8% by mole of zinc oxide, 5 to 20% by mole of titanium oxide, 0.2 to 15% by mole of magnesium oxide, 0.05 to 5% by mole of antimony oxide, 0.2 to 23% by mole of silicon oxide, 0.1 to 7% by mole of zirconium oxide, and 0.1 to 6% by mole of tin oxide.
- 29. A composite sintered oxide resistor, which is obtained by sintering a powdery oxide mixture containing 0.1 to 10% by mole of magnesium oxide, 0.1 to 20% by mole of at least one of yttrium oxide, aluminum oxide, gallium oxide, lanthanum oxide and indium oxide, and the balance being zinc oxide, free of bismuth oxide, having zinc oxide grains, and the resistor having a voltage-current characteristic such that an increase in current is substantially linearly proportional to an increase in voltage in an operating range.
- 30. A composite sintered oxide resistor according to claim 29, wherein the powdery oxide mixture comprises 70 to 92% by mole of zinc oxide, 3 to 10% by mole of magnesium oxide, and 5 to 15% by mole of aluminum oxide.
- 31. A gas circuit breaker with an oxide resistor, which comprises an oxide resistor being a composite sintered oxide resistor according to claim 10, wherein a column or cylindrical form and electrodes are provided on the end surfaces excluding the side surface.
- 32. A gas circuit breaker according to claim 31, wherein an insulating glass is provided by baking on the entire side surface of the resistor.
- 33. A gas circuit breaker with an oxide resistor, which comprises an oxide resistor being a composite sintered oxide resistor according to claim 29, wherein a column or cylindrical form and electrodes are provided on the end surfaces excluding the side surface.
- 34. A gas circuit breaker according to claim 33, wherein an insulating glass is provided by baking on the entire side surface of the resistor.
Priority Claims (2)
Number |
Date |
Country |
Kind |
59-127474 |
Jun 1984 |
JPX |
|
60-97805 |
May 1985 |
JPX |
|
Parent Case Info
This is a continuation of application Ser. No. 748,166, filed June 24, 1985 U.S. Pat. No. 4,736,183, issued 4/5/88.
US Referenced Citations (6)
Non-Patent Literature Citations (1)
Entry |
"The Physics of Metal Oxide Varistors", Levinson et al., Journal of Applied Physics, vol. 46, No. 3, pp. 1332-1334, Mar. 1975. |
Continuations (1)
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Number |
Date |
Country |
Parent |
748166 |
Jun 1985 |
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