Claims
- 1. A sodium-sulfur battery comprising:a cell container for a positive electrode, composed of materials in plate-shape and pipe-shape, said materials being a Co base alloy containing Cr and C, and having Cr carbides precipitated in said alloy.
- 2. A sodium-sulfur battery as claimed in claim 1, whereinsaid Co base alloy, wherein Cr carbide is precipitated, contains at least 30 wt. % Co, 18˜28 wt. % Cr, and 0.05˜0.2 wt. % C.
- 3. A sodium-sulfur battery as claimed in claim 2, whereinsaid Co base alloy contains at least one element selected from the group consisting of W, Mo, Ni, Fe, Si, Mn and La.
- 4. A sodium-sulfur battery as claimed in claim 3, whereinsaid Co base alloy contains 3˜15 wt. % W or Mo, and carbides containing at least one of W, Mo, and Cr, which are precipitated in said alloy.
- 5. A sodium-sulfur battery as claimed in claim 1, whereinsaid carbides of at least one of W, Mo, and Cr in said Co base alloy have a spherical shape, a particle diameter of utmost 5 μm, and an area ratio of 20˜80%.
- 6. A battery system including one of a reliable power storage device, a power supply for an electric vehicle, an emergency power supply, an uninterruptible power supply, a peak shift apparatus for an electric power system, and a frequency-voltage stabilizer, whereinsaid sodium-sulfur battery as claimed in claim 1 is used.
- 7. A sodium-sulfur battery comprising:a β-alumina group solid electrolyte having sodium ion conductivity, which separates a cell container for a negative electrode and a cell container for a positive electrode, said cell container for the positive electrode containing molten sulfur or a sulfur compound (sodium polysulfide), and said cell container for the negative electrode containing molten sodium, wherein said cell container for the positive electrode is made of said Co base alloy of claim 1.
- 8. A battery system including one of a reliable power storage device, a power supply for an electric vehicle, an emergency power supply, an uninterruptible power supply, a peak shift apparatus for an electric power system, and a frequency-voltage stabilizer, whereinsaid sodium-sulfur battery as claimed in claim 7 is used.
- 9. A sodium-sulfur battery as claimed in claim 11, wherein said carbides in said Co base alloy have a spherical shape, a particle diameter of utmost 5 μm, and an area ratio of 20˜80%.
- 10. A sodium-sulfur battery comprising:a cell container for a positive electrode, composed of materials in plate shape and pipe-shape, said materials (1) being a Co base alloy, which contains Cr, Ni, C, and W or Mo, and (2) having carbides containing at least one of W, Mo, and Cr, which are precipitated in said alloy.
- 11. A sodium-sulfur battery as claimed in claim 1, whereinsaid Co base alloy, wherein carbides of at least one of W, Mo, and Cr are precipitated, contains 18˜28 wt. % Cr, 15˜25 wt. % Ni, 3˜15 wt. % W or Mo, and 0.05˜0.2 wt. % C.
- 12. A battery system including one of a reliable power storage device, a power supply for an electric vehicle, an emergency power supply, an uninterruptible power supply, a peak shift apparatus for an electric power system, and a frequency-voltage stabilizer, whereinsaid sodium-sulfur battery as claimed in claim 10 is used.
- 13. A sodium-sulfur battery comprising:a β-alumina group solid electrolyte having sodium ion conductivity, which separates a cell container for a negative electrode and a cell container for a positive electrode, said cell container for the positive electrode containing molten sulfur or a sulfur compound (sodium polysulfide), and said cell container for the negative electrode containing molten sodium, wherein said cell container for the positive electrode is made of said Co base alloy of claim 10.
- 14. A battery system including one of a reliable power storage device, a power supply for an electric vehicle, an emergency power supply, an uninterruptible power supply, a peak shift apparatus for an electric power system, and a frequency-voltage stabilizer, whereinsaid sodium-sulfur battery as claimed in claim 13 is used.
- 15. A sodium-sulfur battery comprisinga cell container for positive electrode, composed of materials in plate-shape and pipes which are made of a Co base alloy, which contains (1) Cr and C, or (2) Cr, Ni, C, and W or Mo, wherein at least Cr carbide having utmost 5 μm in diameter is precipitated by heating at 500˜1000° C. for 10 hours as an aging heat treatment.
- 16. A sodium-sulfur battery comprising.a β-alumina group solid electrolyte having sodium ion conductivity, which separates a cell container for a negative electrode and a cell container for a positive electrode, said cell container for the positive electrode containing molten sulfur or a sulfur compound (sodium polysulfide), and said cell container for the negative electrode containing molten sodium, wherein said cell container for the positive electrode is made of said Co base alloy.
- 17. A battery system including one of a reliable power storage device, a power supply for an electric vehicle, an emergency power supply, an uninterruptible power supply, a peak shift apparatus for an electric power system, and a frequency-voltage stabilizer, whereinsaid sodium-sulfur battery as claimed in claim 16 is used.
- 18. A battery system including one of a reliable power storage device, a power supply for an electric vehicle, an emergency power supply, an uninterruptible power supply, a peak shift apparatus for an electric power system, and a frequency-voltage stabilizer, whereinsaid sodium-sulfur battery as claimed in claim 15 is used.
Priority Claims (2)
Number |
Date |
Country |
Kind |
7-179787 |
Jul 1995 |
JP |
|
7-245759 |
Sep 1995 |
JP |
|
Parent Case Info
This application is a Divisional application of Ser. No. 08/680,851, filed Jul. 16, 1996, now U.S. Pat. No. 5,962,160.
Non-Patent Literature Citations (1)
Entry |
R. Bauer, et al., “Some Studies On Sodium/Sulfur Cells”, Journal of Power Sources, 1 (1976/1977) 2, pp. 109-126, (No Month). |