Electrical circuit based voltage control of electric vehicle batteries
US-2024059152-A1 · Feb 22, 2024 · US
US10068732B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10068732-B2 |
| Application number | US-201615227538-A |
| Country | US |
| Kind code | B2 |
| Filing date | Aug 3, 2016 |
| Priority date | Feb 4, 2014 |
| Publication date | Sep 4, 2018 |
| Grant date | Sep 4, 2018 |
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Official abstract text for this publication.
A circuit breaker includes at least one electrical conductor for connection to an electrical circuit, a housing, a die, a punch movable relative to the housing to pass from a first position to a second position, and a pyrotechnical actuator to make the punch pass from the first position to the second position when ignited. The punch passes from the first position to the second position to cut the at least one electrical conductor into at least two distinct parts, and establish between the punch and the die, at least one electrical arc between the at least two distinct parts when the circuit breaker is connected to a live electrical circuit. When the punch is in the second position, at least one passage is between the at least two distinct part guides the at least one electrical arc between the distinct parts. A punch die unit includes at least one material designed to be withdrawn by ablation by the at least one electrical arc for generating gas suitable for increasing a voltage of the at least one electrical arc.
Opening claim text (preview).
The invention claimed is: 1. A circuit breaker comprising: at least one electrical conductor for connection to an electrical circuit; a housing; a die; a punch movable relative to the housing to pass from a first position to a second position; a pyrotechnical actuator to move the punch from the first position to the second position when ignited; wherein the punch and die are arranged to form a punch-die unit designed, when the punch passes from the first position to the second position to: break the at least one electrical conductor into at least two distinct parts, and establishing, between the punch and the die, at least one electrical arc between the at least two distinct parts when the circuit breaker is connected to the electrical circuit and the electrical circuit is a live electrical circuit, and wherein the punch-die unit, when the punch is in the second position, allows at least one passage between the at least two distinct parts, the at least one passage designed to guide the at least one electrical arc between the at least two distinct parts, and wherein at least one of the punch and the die is at least partially formed of a material designed to be withdrawn by ablation by the at least one electrical arc for generating gas suitable for increasing a voltage of the at least one electrical arc, wherein the punch includes two cutting edges to break the at least one electrical conductor into three distinct parts, and wherein the die includes two cutting chambers when the punch is in the second position. 2. The circuit breaker according to claim 1 , wherein the at least one passage is at least partially limited by the material withdrawable by ablation. 3. The circuit breaker according to claim 1 , wherein the at least one passage is a groove formed in the punch or and/or the die. 4. The circuit breaker according claim 1 , wherein when the punch is in the second position, the punch and the die are arranged with a tight tolerance with exception of the at least one passage. 5. The circuit breaker according to claim 4 , wherein: each of the at least two distinct parts has a cut end separated from each other when the punch is in the second position, and the at least one passage is designed over the shortest path between the cut ends. 6. The circuit breaker according to claim 1 , wherein the die is deformable in an elastic manner so to guarantee a surface contact with the exception of the at least one passage with the punch when the punch is in the second position. 7. The circuit breaker according to claim 1 , wherein the punch in the second position and the housing form at least one cutting chamber and the at least one cutting chamber comprises a vent hole to the outside of the circuit breaker and with a lid breakable beyond a predetermined pressure difference between the at least one cutting chamber and an outside of the circuit breaker. 8. The circuit breaker according to claim 1 , wherein the punch is moveable along a predetermined axis of translation and the die is in a symmetrical manner relative to an axis of translation of the punch. 9. The circuit breaker according to claim 1 , wherein the punch includes at least one bevelled cutting edge to cut the at least one electrical conductor progressively during movement from the first position to the second position. 10. The circuit breaker according to claim 1 , wherein the material designed to be withdrawn by ablation is polyoxymethylene (POM). 11. The circuit breaker according to claim 1 , in combination with a device for distributing current. 12. The circuit breaker according to claim 1 , in combination with an automobile. 13. The automobile according to claim 12 , further comprising means for storing electrical energy and an electrical propulsion device connected to the means for storing electrical energy by the at least one circuit breaker. 14. The circuit breaker according to claim 1 , wherein the at least one passage is at least partially limited by the material withdrawable by ablation. 15. The circuit breaker according to claim 1 , wherein the at least one passage is a groove formed in the punch or and/or the die. 16. The circuit breaker according to claim 1 , wherein the die is deformable in an elastic manner so to guarantee a surface contact with exception of the at least one passage with the punch when the punch is in the second position.
using the switch for a battery cutoff · CPC title
Opening by severing a conductor · CPC title
Cutting off the power supply under fault conditions (protective devices and circuit arrangements in general H01H; H02H) · CPC title
wherein arc-extinguishing gas is evolved from stationary parts · CPC title
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