ELECTROCHEMICAL CELL AND ITS METHOD OF MANUFACTURE
20220320566 · 2022-10-06
Assignee
Inventors
Cpc classification
H01M10/0585
ELECTRICITY
H01M10/0481
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
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
H01M10/0525
ELECTRICITY
H01M10/049
ELECTRICITY
International classification
Abstract
The invention concerns an electrochemical element and the method for manufacturing same, as well as a battery comprising one or more electrochemical elements, for application in particular in the field of electrochemical elements or Li-ion batteries. The electrochemical element comprises a closed shell (1) defining an internal volume inside which a bundle (2) is arranged, having alternating positive and negative electrodes (3) respectively connected to two positive and negative electrical output terminals and housing separators, the bundle (2) being impregnated with electrolyte. The shell (1) comprises a bottom wall (4) having an internal bottom face (4a), oriented towards the internal volume, and at least one side wall (5, 6) having an internal side face (5a, 6a), oriented towards the internal volume. The internal side face (5a, 6a) joins the internal bottom face (4a) by substantially forming an internal angle (a).
Claims
1. A method for manufacturing an electrochemical cell, said electrochemical cell comprising a closed casing defining an internal volume inside which is arranged an electrode plate group comprising an alternation of positive and negative electrodes connected respectively to two positive and negative electrical output terminals and surrounding separators, said electrode plate group being impregnated with electrolyte, the casing being made of a metallic material and comprising a bottom wall having an inner bottom face, oriented towards the internal volume, and at least one side wall having an inner side face, oriented towards the internal volume, said method comprising, prior to placing the electrode plate group and closing the casing, a step of volume-forming of the casing, wherein the volume-forming step comprises a step of volume-forming by magneto-forming comprising placing the casing to be formed in the vicinity of an electromagnetic field source, and placing a template made of non-electrically conductive material close to the casing, said source being placed on a first side of the casing and said template being placed on a second side of the casing opposite the first side, the shape of the template being configured so as to allow the internal volume of the casing to be formed by pressing the casing against the template under the effect of an electromagnetic field generated by the source, and to obtain an angular junction between the inner side face and the inner bottom face, having an internal angle (a).
2. The method according to claim 1, wherein a first side of the casing to be formed is the side of the face of the casing intended to be oriented towards the internal volume after shaping, said template having at least one portion forming the internal volume in the form of a hollow.
3. The method according to claim 1, wherein a second side of the casing to be formed is the side of the face of the casing intended to be oriented towards the internal volume after shaping, the template having at least one portion forming the internal volume.
4. The method according to claim 1, wherein the volume-forming step comprises, prior to the step of volume-forming by magneto-forming, a step of volume-forming by deep drawing, so as to prepare the casing to be formed by creating an intermediate internal volume with a substantially rounded junction between the inner side face and the inner bottom face.
5. The method according to claim 1, wherein the bottom wall has the shape of a surface generating a solid of revolution, for example a circle, said at least one side wall substantially forming the side wall of a corresponding solid of revolution, for example a cylinder.
6. The method according to claim 1, wherein the bottom wall forms a polygon, for example a rectangle, and the casing comprises a plurality of side walls each having an inner side face facing the internal volume and joining the inner bottom face at one of the sides of said polygon, the inner side face of at least one of the side walls joining the inner bottom face with substantially the formation of an internal angle (a).
7. The method according to claim 6, wherein the inner side faces of each side wall meet the inner bottom face with substantially the formation of an internal angle (a), preferably identical to the internal angle (a) formed by each inner side face with the bottom face.
8. The method according to claim 1, wherein the internal angle (a) is substantially equal to 90°.
9. The method according to claim 1, wherein the bottom wall has an outer bottom face opposite the inner bottom face, and the at least one side wall each have an outer side face opposite the corresponding inner side face, the or at least one of the outer side faces joining the outer bottom face with substantially the formation of an external angle (b), preferably substantially equal to the internal angle (a).
10. The method according to claim 9, wherein the external angle (b) is substantially equal to 90°.
11. The method according to claim 1, wherein the bottom wall and the at least one of the side walls formed of aluminum.
12. The method according to claim 1, wherein the electrode plate group is of the Lithium-ion type.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0035] The features and advantages of the invention will become apparent upon reading the following description, given by way of example, and non-limiting, with reference to the following drawings.
[0036]
[0037]
[0038]
[0039]
DETAILED DESCRIPTION OF THE INVENTION
[0040]
[0041] The electrochemical cell therefore comprises a casing 1, closed for example by a cover (not shown), and defining an internal volume. This internal volume is substantially parallelepipedal in this example.
[0042] The casing 1 is preferably formed in part or in whole in a metallic material, such as aluminum.
[0043] Within the internal volume defined by the casing 1, an electrode plate group 2 is arranged. Conventionally, this electrode plate group 2 comprises an alternation of positive and negative electrodes 3 connected respectively to two positive and negative electrical output terminals (not shown). Depending on the type of electrochemical cell, the two output terminals can, for example, be arranged at the top, at the cover. Alternatively, and also by way of example, one of the terminals may be disposed at the top, at the cover, the other being disposed at the bottom region, at the bottom wall 4.
[0044] The electrodes 3 surround separators (not shown), and the electrode plate group 2 is impregnated with electrolyte. It can be, for example, a Lithium-ion electrode plate group 2.
[0045] The casing 1 comprises in particular a bottom wall 4 and at least one side wall 5, 6. In the example shown in
[0046] Also,
[0047] In the remainder of the description, reference will be made to the side wall 5, 6, just as well to designate any of the two 5 or 6, or both 5 and 6, or the whole of the side walls of the casing 1 of an electrochemical cell, the casing 1 of which effectively comprises several side walls, as to designate the single side wall of the casing 1 of an electrochemical cell of the overall shape of an assembly corresponding to a solid of revolution.
[0048] The bottom wall has an inner bottom face 4a, facing the internal volume defined by the casing 1, and an outer bottom face 4b opposite the inner bottom face 4a, therefore facing the outside of the internal volume defined by the casing 1.
[0049] Each side wall 5, 6 also has an internal side face 5a, 6a facing the internal volume to defined by the casing 1, and an external side face 5b, 6b opposite the corresponding internal side face 5a, 6a, therefore oriented towards the outside of the internal volume defined by the casing 1.
[0050] The inner side face 5a, 6a of at least one of the side walls 5, 6, preferably of all the side walls 5, 6, joins the inner bottom face 4a with substantially the formation of an internal angle (a).
[0051] Thus, as can be seen in comparison with
[0052] In the example shown in
[0053] Preferably, the outer side face 5b, 6b of at least one of the side walls 5, 6 also joins the outer bottom face 4b of the bottom wall 4 with substantially the formation of an external angle (b). This external angle (b) may be different from the internal angle or angles (a), but is preferably substantially equal to that of the at least one internal angle (a), for example substantially equal to 90°.
[0054] As already mentioned above, all or part of the casing 1 is preferably made of a metallic material, such as aluminum. In particular, the bottom wall 4 and the at least one of the side walls 5, 6 are formed in this material.
[0055] A plurality of electrochemical cells may be electrically connected, including one or more electrochemical cells as described above, in parallel and/or in series, to form a battery.
[0056] In order to obtain the electrochemical cell of the invention, the volume of the casing 1 is created, prior to the placement of the electrode plate group 2 and the closure of the casing 1.
[0057] The starting material is a sheet formed from the desired material, preferably metallic (such as aluminum), and preferably of circular shape.
[0058] The volume-forming step is designed to allow the desired internal volume to be obtained, with a junction between the internal side face 5a, 6a of at least one of the side walls 5, 6 and the internal bottom face 4a of the bottom wall, substantially angular with internal angle (a).
[0059] Preferably, the material of the sheet intended to form the casing 1 after shaping is therefore metallic. In the following, reference to casing 1 can just as well designate the casing 1 which has been given its volume as this same casing 1 during the volume-forming operation, and thus including the planar sheet at the base of the casing before any volume formation.
[0060] In order to obtain the desired volume, a magneto-forming volume shaping step is carried out, as shown in two examples in
[0061] In the example of
[0062] In the example of
[0063] The shape of the template 10 is thus configured so as to allow the internal volume of the casing 1 to be formed by pressing the casing 1 against the template 10 under the effect of an electromagnetic field generated by the source 9.
[0064] Preferably, as shown in
[0065]
[0066] The applicant/assignee has thus been able to ascertain a significant increase in volumetric and gravimetric energy density, by completely or partly removing the unused area 11 materialized in
[0067] In the example of an electrochemical cell with a rectangular bottom wall 4 of outer dimensions 26.5 mm×148 mm, an increase in 5% of the useful volume has been measured, which avoids the packing of electrodes mentioned above and leads to the increase in volumetric and gravimetric energy density, thanks to the obtaining of internal junctions between the side walls 5, 6 and the bottom wall 4 with an angle substantially equal to 90°. Furthermore, an increase in 20% of the heat exchange surface at the bottom wall 4 has been measured by virtue of these internal junctions at substantially right angles, in particular compared to an electrochemical cell of the prior art as shown in
[0068] It should be borne in mind that the present description is given by way of example and is not limiting of the invention. In particular, in this description, an example of an electrochemical cell of the Li-ion type and of substantially parallelepipedal assembly form is presented in the drawings. Nevertheless, all the considerations presented in this description, except where explicitly mentioned, apply to an electrochemical cell of a type other than Li-ion and another assembly shape other than a strictly parallelepipedal shape, for example a cylindrical shape.