Force-activated thermal battery for use in a wellbore
US-10590746-B2 · Mar 17, 2020 · US
US11905799B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11905799-B2 |
| Application number | US-202117378722-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jul 18, 2021 |
| Priority date | Jul 18, 2021 |
| Publication date | Feb 20, 2024 |
| Grant date | Feb 20, 2024 |
A practical reading order for non-experts. Skip the full description unless you need deep technical detail.
What the patent document calls the invention.
A short plain-language summary of the technical disclosure.
Who owns or filed the patent and who is credited as inventor.
Filing, priority, publication, and grant dates set the timeline.
The legal scope of protection — read this for what is actually claimed.
Technology tags used to group this patent with similar filings.
Prior art links and similar publications in this corpus.
Official abstract text for this publication.
The hybrid battery system includes a primary battery pack, a secondary battery pack, a battery control unit, a battery pack positive terminal, and a battery pack negative terminal. The battery control unit includes a management module and a variable resistor. The primary battery pack supplies power at lower temperatures, while the secondary battery pack supplies power at higher temperatures. The primary battery pack is unsafe at higher temperatures, and the primary cells within the primary battery pack are modified to mitigate the dangers that previously rendered the primary battery pack unusable in a hybrid battery pack at higher temperatures. The invention includes the method of safely operating the hybrid battery system with the modified primary battery cells of the primary battery pack.
Opening claim text (preview).
We claim: 1. A hybrid battery system, comprising: a primary battery pack being comprised of a primary negative terminal and a primary positive terminal, the primary battery pack comprising: a primary first battery cell being comprised of a primary first negative terminal connected to the primary negative terminal and a primary first positive terminal connected to the primary positive terminal; a primary first negative electrode being comprised of a primary first electrode metal and being connected to the primary first negative terminal; a primary first carbon electrode being comprised of primary first carbon materials and being connected to the primary first positive terminal, the primary first carbon electrode having porous structures; a primary first separator between the primary first negative electrode and the primary first carbon electrode; and a primary first cathodic solution being within said primary first battery cell and in contact with said primary first negative electrode, said primary first separator, and said primary first carbon electrode, wherein the primary first cathodic solution comprises a primary first solvent system and a primary first electrolyte salt; a secondary battery pack being comprised of a secondary negative terminal and a secondary positive terminal, the secondary battery pack comprising: a secondary first battery cell being comprised of a secondary first negative terminal connected to the secondary negative terminal and a secondary first positive terminal connected to the secondary positive terminal; a secondary first negative electrode being comprised of a secondary first electrode metal and being connected to the secondary first negative terminal; a secondary first carbon electrode being comprised of secondary first carbon materials and being connected to the secondary first positive terminal, the secondary first carbon electrode having porous structures; a secondary first separator between the secondary first negative electrode and the secondary first carbon electrode; and a secondary first cathodic solution being within said secondary first battery cell and in contact with said secondary first negative electrode, said secondary first separator, and said secondary first carbon electrode, wherein the secondary first cathodic solution comprises a secondary first solvent system and a secondary first electrolyte salt, wherein the primary first electrode metal has a primary first melting point, wherein the primary first battery cell has a primary first rated temperature range; wherein the secondary first electrode metal has a secondary first melting point, wherein the secondary first battery cell has a secondary first rated temperature range; wherein the secondary first rated temperature range is higher than the primary first rated temperature range, wherein the primary first electrode metal has a primary first electrode metal charge capacity, wherein the primary first cathodic solution has a primary first positive charge capacity, wherein the primary first electrode metal charge capacity is lower than the primary first positive charge capacity, wherein the primary first battery cell is comprised of a primary first battery housing with a primary first battery headspace, wherein the secondary first battery cell is comprised of a secondary first battery housing with a secondary first battery headspace, and wherein a primary first battery headspace percentage of said primary first battery housing is greater than a secondary first battery headspace percentage of said secondary first battery housing; a battery control unit being in communication with the primary battery pack and the secondary battery pack, the battery control unit being comprised of a management module and a variable resistor; a battery pack positive terminal connected to the battery control unit; and a battery pack negative terminal connected to the battery control unit. 2. The hybrid battery pack system, according to claim 1 , wherein the primary first electrode metal is comprised of one of a group consisting of an alkaline metal and an alkaline earth metal, and wherein the secondary first electrode metal is comprised of one of a group consisting of an alkaline metal alloy, an alkaline earth metal alloy, and an alkaline metal-alkaline earth metal alloy. 3. The hybrid battery pack system, according to claim 1 , wherein the primary first carbon electrode is further comprised of inert polymer binders, wherein the secondary first carbon electrode is further comprised of inert polymer binders, wherein the primary first separator is comprised of one of a group consisting of: glass fiber and a polymer, said polymer being polypropylene or polyethylene, and wherein the secondary first separator is comprised of one of a group consisting of: glass fiber and a polymer, said polymer being polypropylene or polyethylene. 4. The hybrid battery pack system, according to claim 1 , wherein said primary first negative electrode is further comprised of a primary first porous transition metal layer pressed on said primary first electrode metal. 5. The hybrid battery pack system, according to claim 1 , wherein the primary first solvent system is comprised of at least one of a group consisting of thionyl chloride and sulfuryl chloride, and wherein the secondary first solvent system is comprised of at least one of a group consisting of thionyl chloride and sulfuryl chloride. 6. The hybrid battery pack system, according to claim 5 , wherein the primary first cathodic solution system is further comprised of a co-solvent with a boiling point higher than a boiling point of said primary first solvent system. 7. The hybrid battery pack system, according to claim 6 , wherein the co-solvent is comprised of at least one of a group consisting of nitrobenzene, 2-nitro-m-xylene, 4-nitro-m-xylene, benzoyl chloride, 2-methylbenzoyl chloride, ethylene (glycol) sulfite, dimethyl sulfoxide, trimethyl phosphate, benzonitrile, methyl benzoate, gamma-butyrolactone, propylene carbonate, 3-methoxy propionitrile, and N, N-dimethylformamide. 8. The hybrid battery pack system, according to claim 1 , wherein the primary first electrolyte salt is comprised of at least one of a group consisting of metal tetrachloroaluminate, metal tetrachlorogallate, Metal tetrachloro borate, metal bis(oxalato)borate, metal bis(trifluoromethanesulfonyl)imide, and metal trifluoromethanesulfonate, metal tetrafluoroborate, and metal hexafluoroarsenate, and wherein the secondary first electrolyte salt is comprised of at least one of a group consisting of metal tetrachloroaluminate, metal tetrachlorogallate, Metal tetrachloro borate, metal bis(oxalato)borate, metal bis(trifluoromethanesulfonyl)imide, and metal trifluoromethanesulfonate, metal tetrafluoroborate, and metal hexafluoroarsenate. 9. The hybrid battery pack system, according to claim 1 , wherein the primary battery pack further comprises: a primary second battery cell being comprised of a primary second negative terminal connected to the primary negative terminal and a primary second positive terminal connected to the primary positive terminal; a primary second negative electrode being comprised of a primary second electrode metal and being connected to the primary second negative terminal; a primary second carbon electrode being comprised of primary second carbon materials and being connected to the primary second positive terminal, the primary second carbon electrode having porous structures; a primary second separator between the primary second negative electrode and the primary second carbon electrode; and a primary second cathodic solution being within said primary second battery cell
of the battery · CPC title
with circuits adapted for supplying loads from the battery · CPC title
including monitoring or indicating arrangements · CPC title
Adaptations of electric power generating means for use in boreholes · CPC title
Temperature · CPC title
Related publications grouped by family.
Answers are generated from the same data shown on this page.