WOUND-TYPE CELL
20170288273 ยท 2017-10-05
Inventors
Cpc classification
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
H01M10/0587
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
H01M50/536
ELECTRICITY
H01M10/0525
ELECTRICITY
International classification
H01M10/0587
ELECTRICITY
H01M10/0525
ELECTRICITY
Abstract
The present disclosure provides a wound-type cell which comprises: a first electrode plate having a first current collector and a first active material layer coated on a surface of the first current collector; a second electrode plate having a second current collector and a second active material layer coated on a surface of the second current collector, and a second winding start end of the second electrode plate is positioned at an inner side of a first winding start end of the first electrode plate in a thickness direction; a separator; a first electrode tab; and a second electrode tab. A third winding start end of the separator is positioned at an outer side of the second winding start end of the second electrode plate in a length direction, extends along a direction away from a second end of the second winding start end and is not folded back.
Claims
1.-11. (canceled)
12. A wound-type cell, comprising: a first electrode plate having a first current collector and a first active material layer coated on a surface of the first current collector; a second electrode plate having a second current collector and a second active material layer coated on a surface of the second current collector, and a second winding start end of the second electrode plate being positioned at an inner side of a first winding start end of the first electrode plate in a thickness direction; a separator provided between the first electrode plate and the second electrode plate to separate the first electrode plate from the second electrode plate; a first electrode tab electrically connected to the first current collector; and a second electrode tab electrically connected to the second current collector; wherein a third winding start end of the separator is positioned at an outer side of the second winding start end of the second electrode plate in a length direction, extends along a direction away from a second end of the second winding start end and is not folded back.
13. The wound-type cell according to claim 12, wherein a length of the third winding start end of the separator is between 1 mm and 5 mm.
14. The wound-type cell according to claim 12, wherein the first electrode plate is a positive electrode plate; the second electrode plate is a negative electrode plate.
15. The wound-type cell according to claim 12, wherein the first electrode tab is provided as one or more in number; the second electrode tab is provided as one or more in number.
16. The wound-type cell according to claim 12, wherein the first electrode plate has a blank first current collector which is positioned at the first winding start end and is not coated with the first active material layer; the second electrode plate has a blank second current collector which is positioned at the second winding start end and is not coated with the second active material layer.
17. The wound-type cell according to claim 12, wherein a side of the second current collector which directly faces the blank first current collector is not coated with the second active material layer; a side of the first current collector which directly faces the blank second current collector is not coated with the first active material layer.
18. The wound-type cell according to claim 12, wherein an inner side of an arc-shaped portion of the second current collector which directly faces a first end of the first winding start end is not coated with the second active material layer.
19. The wound-type cell according to claim 16, wherein the first end of the first winding start end is beyond the second end of the second winding start end in the length direction and a position of the first electrode tab is beyond the second end of the second winding start end in the length direction; or the second end of the second winding start end is beyond the first end of the first winding start end in the length direction and a position of the second electrode tab is beyond the first end of the first winding start end in the length direction.
20. The wound-type cell according to claim 12, wherein the first electrode plate further has a first groove, a bottom of the first groove is a blank first current collector which is exposed and a peripheral side of the first groove is the first active material layer; the second electrode plate further has a second groove, a bottom of the second groove is a blank second current collector and a peripheral side of the second groove is the second active material layer.
21. The wound-type cell according to claim 16, wherein the first electrode tab and the first current collector are integrally formed, or the first electrode tab is formed separately and welded to the corresponding blank first current collector; the second electrode tab and the second current collector are integrally formed, or the second electrode tab is formed separately and welded to the corresponding blank second current collector.
22. The wound-type cell according to claim 20, wherein the first electrode tab and the first current collector are integrally formed, or the first electrode tab is formed separately and welded to the corresponding blank first current collector; the second electrode tab and the second current collector are integrally formed, or the second electrode tab is formed separately and welded to the corresponding blank second current collector.
Description
BRIEF DESCRIPTION OF THE FIGURES
[0007]
[0008]
[0009]
[0010]
[0011]
[0012]
[0013]
[0014]
[0015]
[0016]
[0017]
[0018] Reference numerals are represented as follows: [0019] 1 first electrode plate
[0020] 11 first current collector [0021] 111 blank first current collector
[0022] 12 first active material layer
[0023] 13 first groove [0024] 2 second electrode plate
[0025] 21 second current collector [0026] 211 blank second current collector
[0027] 22 second active material layer
[0028] 23 second groove [0029] 3 separator [0030] 4 first electrode tab [0031] 5 second electrode tab [0032] E1 first winding start end [0033] E11 first end [0034] E2 second winding start end
[0035] E21 second end [0036] E3 third winding start end [0037] C arc-shaped portion [0038] S1 first winding mandrel
[0039] S11 first end surface
[0040] S12 first side surface [0041] S2 second winding mandrel
[0042] S21 second end surface
[0043] S22 second side surface [0044] G clamping groove [0045] L length direction [0046] T thickness direction
DETAILED DESCRIPTION
[0047] Hereinafter a wound-type cell and a winding mandrel according to the present disclosure will be described in detail in combination with the figures.
[0048] Firstly, a wound-type cell according to a first aspect of the present disclosure will be described.
[0049] Referring to
[0050] In the wound-type cell according to the present disclosure, because the third winding start end E3 of the separator 3 extends along the direction away from the second end E21 of the second winding start end E2 and is not folded back, there is no need to wind back the separator 3 in large length as in the prior art, thereby reducing a usage amount of the separator 3 and the cost of the separator 3. In addition, the way that the third winding start end E3 of the separator 3 extends can avoid the third winding start end E3 overlapping with the second winding start end E2 in the thickness direction T, thereby reducing a thickness of the wound-type cell and improve the energy density of the wound-type cell. At the same time, it is easy to realize automatic production of the wound-type cell of the present disclosure.
[0051] In an embodiment of a wound-type cell according to the present disclosure, a length of the third winding start end E3 of the separator 3 is between 1 mm and 10 mm, preferably, the length of the third winding start end E3 of the separator 3 is between 1 mm and 5 mm.
[0052] In an embodiment of the wound-type cell according to the present disclosure, referring to
[0053] In an embodiment of the wound-type cell according to the present disclosure, referring to
[0054] In an embodiment of the wound-type cell according to the present disclosure, the first electrode plate 1 may be a positive electrode plate or a negative electrode plate, correspondingly, the second electrode plate 2 may be a negative electrode plate or a positive electrode plate. Preferably, the first electrode plate 1 is a positive electrode plate and the second electrode plate 2 is a negative electrode plate, correspondingly, the first active material layer 12 is a positive active material layer, and specifically, the first active material layer 12 may be selected from at least one of lithium cobalt oxide (LiCoO.sub.2), lithium ferric phosphate (LiFePO.sub.4) and lithium manganese oxide (LiMn.sub.2O.sub.4). The second active material layer 22 is a negative active material layer, and specifically, the second active material layer 22 may be selected from at least one of carbon and silicon.
[0055] In an embodiment of the wound-type cell according to the present disclosure, the first electrode tab 4 is provided as one or more in number (referring to
[0056] In an embodiment of the wound-type cell according to the present disclosure, the second electrode tab 5 is provided as one or more in number (referring to
[0057] In an embodiment of the wound-type cell according to the present disclosure, the first current collector 11 is an aluminum foil, the second current collector 21 is a copper foil.
[0058] In an embodiment of the wound-type cell according to the present disclosure, a thickness of the first electrode tab 4 is more than a thickness of the first current collector 11. This can ensure a connection strength and an overcurrent sectional area of the first electrode tab 4.
[0059] In an embodiment of the wound-type cell according to the present disclosure, a thickness of second electrode tab 5 is more than a thickness of the second current collector 21. This can ensure a connection strength and an overcurrent sectional area of the second electrode tab 5.
[0060] In an embodiment of the wound-type cell according to the present disclosure, referring to
[0061] In an embodiment of the wound-type cell according to the present disclosure, referring to
[0062] In an embodiment of the wound-type cell according to the present disclosure, referring to
[0063] In an embodiment of the wound-type cell according to the present disclosure, referring to
[0064] In an embodiment of the wound-type cell according to the present disclosure, referring to
[0065] In an embodiment of the wound-type cell according to the present disclosure, referring to
[0066] In an embodiment of the wound-type cell according to the present disclosure, referring to
[0067] In an embodiment of the wound-type cell according to the present disclosure, the first electrode tab 4 and the first current collector 11 are integrally formed. For example, referring to
[0068] In an embodiment of the wound-type cell according to the present disclosure, the second electrode tab 5 and the second current collector 21 are integrally formed. For example, referring to
[0069] In an embodiment of the wound-type cell according to the present disclosure, the first electrode tab 4 is formed separately and welded to the corresponding blank first current collector 111.
[0070] In an embodiment of the wound-type cell according to the present disclosure, the second electrode tab 5 is formed separately and welded to the corresponding blank second current collector 211.
[0071] In an embodiment of the wound-type cell according to the present disclosure, the welding is laser welding, ultrasonic welding or resistance welding.
[0072] The forming mode of the first electrode tab 4 preferably uses the integrally forming mode. The forming mode of the second electrode tab 5 preferably uses the integrally forming mode.
[0073] Secondly, a winding mandrel according to a second aspect of the present disclosure will be described.
[0074] Referring to
[0075] In an embodiment of the wound-type cell according to the present disclosure, referring to
[0076] In an embodiment of the wound-type cell according to the present disclosure, referring to