BATTERY SYSTEM WITH OVERCHARGE AND/OR EXHAUSTIVE-DISCHARGE PROTECTION
20170077723 ยท 2017-03-16
Inventors
Cpc classification
Y02T10/70
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
Y02E60/10
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
H01M2220/20
ELECTRICITY
B60L50/64
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
Battery system with overcharge and/or exhaustive-discharge protection, comprising at least one electrical energy store having a first pole which is electrically connected to a first electrode of the electrical energy store, having a second pole which is electrically connected to a second electrode of the electrical energy store, having a rapid-discharge unit for electrically discharging the electrical energy store having a first connection which is electrically connected to the first pole, having a second connection which is electrically connected to the second pole, characterized in that the battery system comprises a tripping unit for tripping the rapid-discharge unit.
Claims
1. A battery system (10, 20, 30) with overcharge and/or exhaustive-discharge protection, the battery system comprising at least one electrical energy store having a first pole (12, 22) which is electrically connected to a first electrode of the electrical energy store, having a second pole (14, 24) which is electrically connected to a second electrode of the electrical energy store, and having a rapid-discharge unit (16, 26, 36) for electrically discharging the electrical energy store, the rapid-discharge unit having a first connection (261, 361) which is electrically connected to the first pole (12, 22), and having a second connection (262, 362) which is electrically connected to the second pole (14, 24), wherein the battery system (10, 20, 30) comprises a tripping unit (17, 27, 37) having an electrically conductive mechanical component (29, 39, 49a, 49b, 49c) for tripping the rapid-discharge unit (16, 26, 36).
2. The battery system (10, 20, 30) according to claim 1, characterized in that the rapid-discharge unit (16, 26, 36) comprises a conductor (25, 35), wherein the conductor (25, 35) is electrically connected to the first connection (261, 361) of the rapid-discharge unit (16, 26, 36) and has an electrically conductive bimetallic strip (25b) and/or a relay (25a) at least in parts.
3. The battery system (10, 20, 30) according to claim 1, characterized in that the rapid-discharge unit (16, 26, 36) comprises an electrically conductive contact-making means (28), wherein the contact-making means (28) is electrically connected to the second connection (262, 362) of the rapid-discharge unit (16, 26, 36).
4. The battery system (10, 20, 30) according to claim 2, characterized in that the rapid-discharge unit (16, 26, 36) comprises an electrically conductive contact-making means (28), wherein the contact-making means (28) is electrically connected to the second connection (262, 362) of the rapid-discharge unit (16, 26, 36).
5. The battery system (10, 20, 30) according to claim 4, characterized in that the material of the contact-making means (28), of the bimetallic strip (25b), of the relay (25a) and/or of a coating of the bimetallic strip (25b) is such that a reversible or irreversible electrical connection between the contact-making means (28) and the conductor (25, 35) is produced owing to a flow of current across an electrically conductive connection between the conductor (25, 35) and the contact-making means (28) between the first pole (12, 22) and the second pole (14, 24).
6. The battery system (10, 20, 30) according to claim 1, characterized in that the mechanical component (29, 39, 49a, 49b, 49c) of the tripping unit (17, 27, 37) is reversibly or irreversibly deformable owing to a force which acts on the mechanical component (29, 39, 49a, 49b, 49c).
7. The battery system (10, 20, 30) according to claim 1, characterized in that the mechanical component (29, 39, 49a, 49b, 49c) is electrically connected directly (390) to the second pole (14, 24) by means of an electrically conductive housing (21, 41) of the electrical energy store and/or by means of an electrical connection.
8. The battery system (10, 20, 30) according to claim 1, characterized in that the first connection (261, 361) of the rapid-discharge unit (16, 26, 36) is electrically connected directly to the first pole (12, 22) by an electrical connection (13, 23, 33), and the second connection (262, 362) of the rapid-discharge unit (16, 26, 36) is electrically connected to the second pole (14, 24) of the electrical energy store by the electrically conductive housing (21, 41) and/or is electrically connected directly to the second pole (14, 24) by an electrical connection (310).
9. The battery system (10, 20, 30) according to claim 1, characterized in that the mechanical component (29, 39, 49a, 49b, 49c) and/or the direct connection (390) to the second pole (14, 24) has a greater resistance than the conductor (25, 35), the contact-making means (28) and/or the direct connection (310) between the second connection (262, 362) of the rapid-discharge unit (16, 26, 36) and the second pole (14, 24).
10. A vehicle comprising a battery system (10, 20, 30) according to claim 1 and at least one electrical energy store.
11. A vehicle according to claim 10, wherein the electrical energy store is a lithium-ion, a lithium-sulfur and/or a lithium-air battery.
Description
DETAILED DESCRIPTION OF THE DRAWINGS
[0015] In the drawing:
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[0024] Like reference symbols denote like apparatus components in all of the figures.
DETAILED DESCRIPTION
[0025]
[0026] The tripping unit 17 can be both designed as an additional component or realized by means of an existing component, for example an overpressure valve in hard-case cells, as a result of which components are advantageously saved.
[0027]
[0028] There is no electrical connection between the mechanical component 29 of the tripping unit 27 and the conductor 25 of the rapid-discharge unit 26 during the normal operating state of the electrical energy store.
[0029]
[0030]
[0031] In the first embodiment of the conductor 25, the bimetallic strip 25b is heated by the current flowing across the mechanical component 29 of the tripping unit 27 and the conductor 25, as a result of which said bimetallic strip deforms and establishes an electrical connection between the electrically conductive contact-making means 28 and the conductor 25. An irreversible electrical connection is produced by a selected material of the electrically conductive contact-making means and/or of the bimetallic strip 25b.
[0032] In the second embodiment of the conductor 25, the flowing current trips a relay 25a which establishes an electrical connection between the electrically conductive contact-making means 28 and the conductor 25.
[0033] Owing to the short circuit which is produced in this way between the first pole 22 and the second pole 24, the electrical energy store is discharged and disconnected from the charging current. As a result, the electrical energy store is moved to a safe state.
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