BATTERY POUCH, BATTERY CELL AND METHOD OF MAKING A POUCH OR BATTERY CELL
20170229682 ยท 2017-08-10
Inventors
Cpc classification
H02K11/30
ELECTRICITY
Y02P70/50
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
H01M10/425
ELECTRICITY
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
B25F5/02
PERFORMING OPERATIONS; TRANSPORTING
H02K11/0094
ELECTRICITY
H01M50/574
ELECTRICITY
H01M10/0525
ELECTRICITY
H01M2220/30
ELECTRICITY
B25B21/00
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A pouch-type battery comprising: a pouch-type battery case having a joined wall and a cell space within the pouch, a battery cell within the cell space, a terminal tab extending outwardly of the cell space from the battery cell, said joined wall comprising at least a first sealing portion having a first sealing strength, and a second sealing portion having a second sealing strength that is less than the first sealing strength such that the second sealing portion is adapted to fail before said first sealing portion, and an electrical contact located with the second sealing portion and adapted to change contact state upon failure of the second sealing portion.
Claims
1. A pouch-type battery comprising: a pouch-type battery case having a joined wall and a cell space within the pouch, a battery cell within the cell space, a terminal tab extending outwardly of the cell space from the battery cell, said joined wall comprising at least a first sealing portion having a first sealing strength, and a second sealing portion having a second sealing strength that is less than the first sealing strength such that the second sealing portion is adapted to fail before said first sealing portion, and an electrical contact located with the second sealing portion and adapted to change contact state upon failure of the second sealing portion.
2. The pouch-type battery of claim 1 wherein the second sealing portion seals the pouch-type battery case and the terminal tab, the terminal tab forming at least one part of the electrical contact.
3. The pouch-type battery of claim 2 wherein the electrical contact comprises a contact tab in electrical contact with the terminal tab, the contact tab adapted to separate from the terminal tab upon failure of the second sealing portion.
4. The pouch-type battery of any preceding claim wherein the terminal tab comprises one of an anode lead or a cathode lead, and wherein a second terminal tab comprises a second one of the anode lead or the cathode lead, and wherein the terminal tab and second terminal tab extend oppositely outwardly of the pouch-type battery case.
5. The pouch-type battery of any preceding claim wherein he battery cell has a lithium ion or lithium-polymer based chemistry.
6. The pouch-type battery of any preceding claim comprising a plurality of pouch-type battery cases, each accommodating a battery cell interconnected to form a power tool battery.
7. A lithium ion or lithium-polymer battery powered tool comprising a pouch-type battery of any proceeding claim.
8. A method of manufacturing a power tool battery, the method comprising: providing a pouch having a first and second sheets, sealing the first and second sheets along at least two walls to define a cell space between said sheets, disposing a battery cell within the cell space, the battery cell having terminal tab extending outwardly of the cell space, wherein sealing the first and second sheets along at least two walls comprises, sealing at least a first wall portion with a first sealing strength, and sealing at least a second wall portion with a second sealing strength that is less than the first sealing strength such that the second sealing portion is adapted to fail before the first sealing portion, and providing an electrical contact located with the second sealing portion and adapted to change contact state upon failure of the second sealing portion.
9. The method of claim 8 wherein the second sealing portion seals the pouch-type battery case and the terminal tab, the terminal tab forming at least one part of the electrical contact.
10. The method of claim 8 wherein the electrical contact comprises a contact tab in electrical contact with the terminal tab and adapted to separate from the terminal tab upon failure of the second sealing portion.
11. A battery of any preceding claim wherein the battery has a nominal charged internal impedance of less than or equal to approximately 10 milliohms.
12. A battery of any preceding claim wherein the battery has a nominal charged internal impedance of less than or equal to approximately 5 milliohms.
13. The battery of either claims 11 or claim 12 having a capacity of greater than or equal to 2 Ah.
14. The battery of either claims 11 or claim 12 having an output voltage of at least 4 volts and a combined average discharge current of greater than 10 amps.
Description
DESCRIPTION OF THE DRAWINGS
[0020] Various embodiments of the invention will now be described, by way of example only, with reference to the accompanying drawings in which:
[0021]
[0022]
[0023]
[0024]
[0025]
DETAILED DESCRIPTION OF PREFERRED EMBODIMENTS OF THE INVENTION
[0026] The following description is given by way of example only to illustrate embodiments of the invention. The terminology used is for illustrative purpose only and is not intended to limit the scope or use of the invention, unless the text clearly and explicitly requires otherwise. A skilled person will appreciate that the invention is applicable to pouch-type battery cells generally. Where in the description reference is made to lithium ion or to lithium-polymer battery cells such reference shall be interpreted as referring to both lithium ion and lithium-polymer battery cells, or to pouch-type cells generally unless the context clearly requires otherwise.
[0027] The inventors have filed a PCT application number PCT/CN2014/080868 on 26 Jun. 2014 relating to two or more pouch-type battery cells strung together to form a battery pack, a tool battery and a battery operated tool. The entire contents of PCT/CN2014/080868 filed 26 Jun. 2014 are incorporated herein by reference.
[0028]
[0029] The battery cell is used in a battery that is associated with a battery, tool or charger machine control unit (MCU), or other battery monitoring or protection electronics. To enable the MCU to determine when the pouch-type battery cell has vented due to gas generation during charge and discharge the wall 303, 304 and 305 have a first sealing portion having a first sealing strength, and a second sealing portion 306 that has a second sealing strength that is less than the first sealing strength such that the second sealing portion is adapted to fail before said first sealing portion.
[0030] In a preferred embodiment the second sealing portion 306 seals one of the terminal tabs 34 where it passes through the pouch wall 302. An electrical contact tab 36 is located at the edge of one of the sheet walls at the position of the second sealing portion 306 such that when the pouch sheets are sealed with the terminal tab 34 at the second sealing position the contact tab 36 is in electrical contact with the terminal tab 34. A lead wire 37 is provided with the contact tab 36 such that it can be connected with an MCU, or other electrical circuit, to determine the resistance of the circuit though the contact tab 36 and terminal tab 34. If the pouch 301 vents at the second sealing position the contact state changes and is sensed by the MCU or electrical circuit. It may be the case that a small venting does not completely rupture the wall sealing at the second position 306. Accordingly, a scheme is implemented where in the normal state the contact has a resistance below a threshold, say 10-ohm, and where the resistance rises above the threshold, or a second higher threshold of say 20-ohms, the MCU or electrical circuit interprets the rise as a venting of the pouch 301. Upon venting of the pouch the MCU or electrical protection circuit can take a preventative action such as, for example, shutting down of the battery, or tool or charger as may be in use with the battery at the time. Although in the preferred embodiment the contact includes the terminal tab 34, in some embodiments there may be a separate contact set in the second sealing portion not involving the terminal tab 34.
[0031] Typical sealing strengths for a pouch-type cell might be in a range of 8 kgf (kilogram-force) to 12 kgf In case one a side wall, say 303, is provided with a sealing strength of greater than 12 kgf as opposed to a nominal 9 kgf in the anode or cathode walls 302, 305. Accordingly the pouch can be made to fail in the anode or cathode walls 302, 305 as required. The sealing strength is controlled via the adhesive strength and thickness of the sealing.
[0032] In a further embodiment of the invention the sealing strength along any one of the sides 302, 303, 304 may vary. For example, in such an embodiment side 303 is provided with a first and highest sealing strength. The sealed ends 302, 304 are provided with a third sealing portion having a third sealing strength that is less than the first sealing strength. The second sealing portion 306 has a second sealing strength that is less than the first and third sealing strengths such that the second sealing portion is adapted to fail before said first and third sealing portions. A skilled person will appreciate also that the lowest sealing strength may be located at any position on the sealed sides 302, 303, 304 such that the pouch will fail at that lowest sealing strength location first so that, in combination with some indicator means, a cell rupture signal can be provided to the cell or a tool control means.
[0033] A pouch-type battery cell or a power tool battery of the present invention may also incorporate any of the features set forth in PCT/CN2014/080868 filed 26 Jun. 2014 and incorporated herein, including but not limited to a nominal charged internal impedance of less than or equal to approximately 10 milliohms, or more preferably 5 milliohms, and/or a capacity of greater than or equal 2 Ah, and/or an output voltage of at least 4 volts and a combined average discharge current of greater than 10 amps.