CELL HOLDER
20220359942 · 2022-11-10
Inventors
Cpc classification
H01M50/249
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
H01M50/213
ELECTRICITY
H01M50/244
ELECTRICITY
H01M50/229
ELECTRICITY
H01M50/284
ELECTRICITY
International classification
H01M50/213
ELECTRICITY
H01M10/48
ELECTRICITY
H01M50/229
ELECTRICITY
H01M50/244
ELECTRICITY
Abstract
A cell holder for a battery module comprising a plurality of battery cells, said cell holder comprising a body, said body having: a top surface; a bottom surface; a plurality of side surfaces connecting the bottom surface and the top surface; and a plurality of through holes extending between the top surface and the bottom surface, wherein each through hole is arranged to receive at least one battery cell.
Claims
1. A cell holder for a battery module comprising a plurality of battery cells, said cell holder comprising a body, wherein the body is a solid block, said body having: a top surface; a bottom surface; a plurality of side surfaces connecting the bottom surface and the top surface; and a plurality of through holes extending between the top surface and the bottom surface, wherein each through hole is arranged to receive at least one battery cell.
2. The cell holder according to claim 1, wherein the material of the cell holder is a thermally and electrically insulating material.
3. The cell holder according to claim 2, wherein the material of the cell holder is any one of composite polymer material, ceramic, mica, alumina, silicon and any blend of one or all.
4. The cell holder according to claim 1, further comprising a plurality of battery module mounting means for mounting the battery module in a battery pack housing.
5. The cell holder according to claim 1, wherein at least one recess is provided on at least one side surface of the body, said at least one recess being arranged to receive a battery management system board.
6. The cell holder according to claim 1, wherein a first electrical mounting point and a second electrical mounting point for mounting electrical connectors are provided on one side surface of the plurality of side surfaces or on two opposite side surfaces of the plurality of side surfaces of the body.
7. The cell holder according to claim 6, wherein one or more mounting points are provided on the body for mounting protective members for covering the electrical connectors.
8. The cell holder according to claim 1, further comprising at least one member for mounting a cooling assembly of the battery module.
9. The cell holder according to claim 1, further comprising at least one mounting point for mounting at least one temperature sensor.
10. The cell holder according to claim 1, further comprising at least one first frame, wherein the at least one first frame is arranged on at least one of the plurality of side surfaces of the body.
11. The cell holder according to claim 10, wherein the material of the at least one first frame is a composite polymer material.
12. The cell holder according to claim 1, further comprising at least one second frame, wherein the at least one second frame is arranged on the top and/or bottom surface of the body.
13. The cell holder according to claim 12, wherein the material of the at least one second frame is any one of a composite polymer material, metal or a metal alloy.
14. A battery module comprising the cell holder according to claim 1 and a plurality of battery cells, wherein each battery cell is fixed in a through hole of the plurality of through holes of the cell holder.
15. A method of assembling the battery module according to claim 14, the method comprising the steps of: inserting each one of the plurality of battery cells in a through hole of the cell holder; fixing each one of the plurality of the battery cells to the respective through hole.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0012] Embodiments of the present invention which are presented for better understanding the inventive concept of the present invention, but which are not to be seen as limiting the present invention, will now be described with reference to the figures in which:
[0013]
[0014]
[0015]
[0016]
[0017]
[0018]
[0019]
DETAILED DESCRIPTION
[0020]
[0021] The battery module 100 comprises a cell holder 10 in which a plurality of battery cells 40 (seen in
[0022] The battery module 100 comprises further cooling arrangements. In this embodiment of the present invention these cooling arrangements are, by way of example, cold plate assemblies, i.e. a first cold plate assembly 20-1 on the top side (according to the designated direction on the coordinate system in
[0023] In this embodiment of the present invention the first cold plate assembly 20-1 and the second cold plate assembly 20-2 have the function of providing cooling to the plurality of battery cells 40 mounted in the battery module 100 and electrically connecting the plurality of battery cells 40 to each other. For providing cooling to the plurality of battery cells 40 the first cold plate assembly 20-1 and the second cold plate assembly 20-2 shown in
[0024] In other embodiments of the present invention only one cold plate assembly 20-1 may be provided on the top side of the battery module 100 or on the bottom side of the battery module 100. In still other embodiments of the present invention the first cold plate assembly 20-1 and second cold plate assembly 20-2 shown in
[0025] The plurality of battery cells 40 in the battery module 100 are arranged between the first (top) cold plate assembly 20-1 and second (bottom) cold plate assembly 20-2 and are electrically connected to each other via the first (top) cold plate assembly 20-1 and second (bottom) cold plate assembly 20-2 as elaborated above. More specifically, each battery cell 40 is inserted into a through hole 12 (seen in
[0026] The battery module 100 further comprises a plurality of battery module mounting means 11 for mounting the battery module 100 in a housing of a battery pack. In other words, according to the embodiment of the present invention the battery module 100 may be utilized alone or may be packed in the housing of the battery pack. The battery pack may comprise one or more battery modules 100. In other words, the battery pack according to the embodiment of the present invention may have a modular arrangement comprising a battery pack housing and one or more battery module 100. Combining multiple battery modules 100 within the battery pack provides high level of configurability of the battery pack to meet different requirements such as current output and voltage level.
[0027] In the battery module 100, the battery module mounting means 11 may be arranged at the periphery of the cell holder 10.
[0028] Optionally, or in addition, the battery module mounting means 11 may be arranged in the central portion of the cell holder 10. More specifically, the battery module mounting means 11 may be fixed in battery module mounting points provided at the periphery of the cell holder 10. Optionally, or in addition, battery module mounting points for battery module mounting means 11 may also be provided in the central portion of the cell holder 10. The number and the position of such mounting points for the battery module mounting means 11 may depend on the size and the weight of the battery module 100-1, 100-2.
[0029] The same mounting points and/or the same battery module mounting means 11 may be used for mounting the first (top) cold plate assembly 20-1 and the second (bottom) cold plate assembly 20-2 on the cell holder 10 or other one or more arrangements that provide the function of cooling the plurality of battery cells and electrically connecting the plurality of battery cells to each other.
[0030] As shown in
[0031] In addition, the first (top) cold plate assembly 20-1 of the battery module 100-1, 100-2 as shown in
[0032] The first electrical mounting points 13 and second electrical mounting points 13 may be provided on one side of the cell holder 10.
[0033] In other embodiments of the present invention the first electrical mounting points and second electrical mounting points provided on different sides, for example opposite sides, of the cell holder 10.
[0034] In other embodiments of the present invention, in which other one or more arrangements that provide the function of cooling the plurality of battery cells and electrically connecting the plurality of battery cells to each other are provided, other electrical connectors may be used for connecting the main positive and negative terminal of the battery module 100 instead of the side connections 22, 23 shown in
[0035] Further, the battery module 100 comprises at least one battery management system (BMS) module 30 mounted on the cell holder 10. The at least one battery management system module 30 may be mounted in a recess 14 provided on one side surface of the cell holder 10. In general, the battery management system module 30 is an electronic system comprising one or more electronic circuits for managing the plurality of battery cells 40, for example monitoring the voltage of all or at least part of the battery cells 40, monitoring the temperature of all or at least part of the battery cells 40, performing calculations, giving instructions and similar.
[0036]
[0037] As shown in
[0038] The number of battery cells 40 in each group may be varied (for example it can be any number from 1 to n), as well as the number of groups of battery cells, to achieve different output current and voltage level of the battery module 100. Further, the number of battery cells 40 between all battery modules 100 being arranged in the battery pack may be the same. In other embodiment of the present invention, the number of battery cells between all battery modules 100 arranged in the battery pack may be different.
[0039] Each of the battery cells 40 is, when the battery module 100 is assembled, inserted in a respective through hole 12 of the cell holder 10 and fixed in the respective through hole 12.
[0040] The battery module 100 comprises further at least one battery management system (BMS) module 30 as elaborated above. By way of example, the battery module 100 shown in
[0041] The BMS 30 is mounted on the side of the battery module 100, and in particular on a side surface of the cell holder 10 and more specifically, is mounted in a recess 14 provided on one side surface of the cell holder 10. For example, in the battery module 100 shown in
[0042] The two plates 20-1, 20-2 at the top and the bottom of the battery module 100 are the above elaborated two cold plate assemblies according to the embodiment of the present invention (first (top) cold plate assembly 20-1 and second (bottom) cold plate assembly 20-2).
[0043]
[0044] The cell holder 10 comprises a body 10-1. The body 10-1 is a solid block. The body 10-1 has a top surface 17, a bottom surface 18, a plurality of side surfaces 19 connecting the bottom surface 18 and the top surface 17, and a plurality of through holes 12 extending between the top surface 17 and the bottom surface 18. Each through hole 12 is arranged to receive at least one battery cell 40.
[0045] In some embodiments of the present invention the body 10-1 has a shape (form) of a parallelepiped. In some embodiments of the present invention the body 10-1 may have a shape of a rectangular parallelepiped. In other embodiments of the present invention the shape of the body 10-1 may differ from that of a rectangular parallelepiped and may be any kind of other shape depending on the packaging constraints of the battery module 100 in the battery pack housing as elaborated above.
[0046] The top surface 17 and the bottom surface 18 are parallel to each other. The side surfaces 19 are perpendicular to the top surface 17 and the bottom surface 18. In one embodiment of the present invention the body 10-1 may have four side surfaces 19, the opposing side surfaces 19 being parallel to each other. In a different embodiment of the present invention the body 10-1 may have more than four side surfaces 19.
[0047] For example, the body 10-1 may have more than four side surfaces 19 since one or more recesses 14, each recess 14 being arranged to receive the battery management system module as elaborated above, each recess having a predetermined depth may be provided on at least one side surface 19. For example, the cell holder shown in
[0048] Further, the body 10-1 may have more than four sides surfaces when the shape of the body 10-1 is other shape different from that of a parallelepiped.
[0049] Each recess 14 may have a depth that enables that the battery management system module (BMS) 30 (shown in
[0050] The through holes 12 have tubular shape with a cross-sectional diameter that enables that at least one battery cell 40 is inserted in each through hole 12. The through holes 12 may have smooth walls. Further, each battery cells 40 may be fixed, for example by gluing, in the respective through hole when inserted in the respective through hole 12. Fixing each battery cell 40 in the respective through hole 12, for example by gluing, even further increases the stability of the mounted battery cells 40, as well as the cell holder 10 and the battery module 100 since each battery cell 40 by being fixed (for example glued) in the respective through hole 12 becomes a structural part of the battery module 100 through the cell holder 10. In this way, each through hole 12 holds firmly at least one battery cell 40 when inserted and fixed in place in all three directions x, y and z.
[0051] As elaborated above, the cell holder 10 may have a shape different from the one shown in
[0052] The material of the cell holder 10 is a thermally insulating material. In addition, the material of the cell holder 10 is an electrically insulating material. The material of the cell holder 10 being thermally insulating material enables that transfer of heat between the different battery cells 40 inserted in the cell holder is suppressed. In other words, the cell holder 10 prevents thermal runaway propagation from one battery cell 40 to the surrounding battery cells 40. The cell holder 10 being electrically insulating material enables that electrical short circuits between different battery cells 40 that may occur when, for example, a housing of a battery cell 40 is damaged are suppressed. In this embodiment of the present invention the material of the cell holder 10 is any one of a composite polymer, ceramic, mica, alumina, silicon and any blend of one or all.
[0053] In this way, the body 10-1 of the cell holder 10 is a solid block and therefore, further to providing thermal and electrical insulation between the plurality of battery cells when inserted and fixed (for example glued) in the respective through holes 12, it acts as a structural component of the battery module 100 when assembled, which in turn is installed in the battery pack as elaborated above. The fixed (for example glued) battery cells also act as a structural component via the cell holder 10. For example, when the battery pack is installed in a vehicle, the cell holder 10 transfers forces from the vehicle chassis as well as aids in overall improvement of the vehicle stiffness.
[0054] Even further, since the material of the cell holder 10 is thermally insulating and hence prevents thermal runaway propagation from one battery cell 40 to other surrounding battery cells 40 the through holes 12 can be provided close to each other which increases the packing density of the battery cells 40 in the battery module 100. This enables that the number of battery cells 40 in the battery module 100 is increased.
[0055] The cell holder 10 comprises further a plurality of battery module mounting means 11 for mounting the battery module 100 in the battery pack housing as elaborated above. The plurality of battery module mounting means 11 are arranged at different positions in different portions of the cell holder 10, for example are arranged at the periphery of the cell holder 10 and/or in the central portion of the cell holder 10.
[0056] Each battery module mounting means 11 is fixed in a corresponding battery module mounting point 11-1. Accordingly, a plurality of battery module mounting points 11-1 are provided in the cell holder 10. The plurality of battery module mounting points 11-1 may be provided on at least one side surface and/or in one or more through holes extending between the top surface 17 and the bottom surface 18 of the body. For example, the plurality of battery module mounting points 11-1 may be provided in through holes in the central portion of the cell holder 10 and/or in through holes provided at the periphery of the cell holder 10 and/or in recesses or cut-outs provided on one or more the side surfaces 19 of the body 10-1 of the cell holder 10.
[0057] Different examples of battery module mounting points 11-1 and battery module mounting means 11 are shown in
[0058]
[0059] The corresponding battery module mounting means 11 may comprise, as shown in
[0060]
[0061] As shown in
[0062] In the battery module mounting means 11 shown in
[0063] As elaborated above, each battery module mounting means 11 is fixed in the corresponding battery module mounting point 11-1. The fixing of each battery module mounting means 11 in the corresponding mounting point 11-1 may be performed in different ways in different embodiments of the present invention.
[0064] In one embodiment of the present invention, the battery module mounting means 11 may be glued in the corresponding mounting point 11-1.
[0065] In other embodiment of the present invention, the battery module mounting means 11 may be overmolded with cell holder material. Accordingly, the battery module holder mounting means 11 by being overmolded with the cell holder material becomes an integral part of the cell holder 10. This way of fixing the battery module holder means 11 further increases the stability of fixed battery module 100 in the battery pack.
[0066] In still other embodiments of the present invention other ways of fixing of the battery module mounting means 11 may also be applied. For example, when the walls of the through hole 12 are provided with threading, the outer part may have corresponding features to enable the fixing.
[0067] In embodiments of the present invention a combination of the different ways of fixing may also be applied.
[0068] In embodiments of the present invention, the battery module mounting means 11 that are fixed in a battery module mounting point provided in a recess or a cut-out on the side surface 19 as shown in
[0069]
[0070]
[0071] The body 10-1 of the cell holder 10 is further provided with two electrical mounting points 13, i.e. a first electrical mounting point 13 and a second electrical mounting point 13 for mounting of electrical connectors. For example, such electrical connectors may include busbars or cables for establishing an electrical connection between different battery modules 100 when mounted in the housing of battery pack. In this way the main positive and negative terminals of the battery module 100 are connected to other battery modules 100 and/or other components on the battery pack.
[0072] By way of a specific example, the side connections 22 and 23 of the first cold plate assembly 20-1 shown in
[0073] The first electrical mounting point 13 and the second electrical mounting point 13 may be, for example, holes extending to a predetermined depth in the body 10-1 of the cell holder 10 parallel to the top surface 17 and the bottom surface 18 (x direction in
[0074]
[0075] The body 10-1 of the cell holder 10 is further provided with one or more mounting points 15 for mounting protective members (not shown in the figure) for covering the electrical connectors for electrically connecting the battery module 100 to other battery modules 100 and/or other components of the battery pack, and accordingly, the positive terminal and the negative terminal of the battery module 100. These mounting points 15, similar to the electrical mounting points 13 for mounting the electrical connectors, may be for example holes extending to a predetermined depth in the body 10-1 of the cell holder 10 parallel to the top surface 17 and bottom surface 18 arranged to receive mounting means. For example, the holes may be threaded holes arranged to receive bolts, screws, rivets, threaded rods and similar mounting means. Instead of holes, these mounting points 15 may also be protruding features such as clips. These mounting points 15 are provided in the vicinity of the mounting points 13 for mounting electrical connectors. The protective members enable protection against high voltage shock.
[0076] The cell holder 10 may comprise further at least one member for mounting a cooling assembly of the battery module 100, for example, the above elaborated first cooling assembly 20-1 and second cooling assembly 20-2. As elaborated above, the battery module mounting means 11 may be used for mounting the cooling assembly of the battery module 100-1, 100-2.
[0077] The cell holder 100 may comprise further one or more mounting points for mounting at least one temperature sensor. For example, one or more recesses 16 may be provided on at least one side surface 19 of the body 10-1 as mounting points for mounting one or more temperature sensors. Each recess 16 may be arranged to receive a temperature sensor. The temperature sensor may be mounted by gluing or using mechanical fastening means. When mechanical fastening means are used at least one mounting point for mounting said temperature sensor in the recess 16 may be provided. Still further, one or more holes (or one or more thorough holes) may be provided on predetermined positions on the cell holder 10 as mounting points for mounting one or more temperature sensors. Such one or more holes (or one or more through holes) may be provided between the thorough holes 12 arranged to receive the battery cells 40 with a longitudinal axis that is parallel to the longitudinal axis of the through holes 12 arranged to receive the battery cells 40.
[0078] The cell holder 10 may comprise further at least one first frame (not shown in
[0079] The cell holder 10 may comprise further at least one second frame (not shown in
[0080] Optionally, in some embodiments of the present invention the cell holder 10 may comprise recesses provided on the top surface 17 and/or bottom surface 18 and extending from the openings of the plurality of through holes 12 on the top surface 17 and/or bottom surface 18 to at least one side surface 19. In this way these recesses provide channels for guiding venting gases released by venting of the battery cells 12 when mounted in the battery module 100 in events such as thermal runaway, overcharge, overheating and similar. Such recesses enable that the released vent gasses escape the environment of the plurality of battery cells and hence increase the safety of the battery module 100.
[0081] In the following the steps of assembling the battery module 100 according to the embodiment of the present invention will be elaborated.
[0082] In a first step, each one of the plurality of battery cells 40 is inserted in a through hole 12 of the cell holder 10. The cell holder 10 comes as one part on the assembly line.
[0083] In a further step, each one of the plurality of battery cells is fixed in the respective through hole 12. The fixing may be performed, for example, by gluing.
[0084] If at least one temperature sensor is provided in the battery module 100, in a further step, the at least one temperature sensor is mounted in the provided recess 16 in the body 10-1 of the cell holder or the provided hole or through hole. In addition, one or more temperature sensors may be fixed to one or more battery cells 40.
[0085] In a further step the at least one battery management system module 30 is inserted in the corresponding recess 14 and fixed therein.
[0086] In still further step, the above described at least one cold plate assembly may be mounted on the cell holder 10. In a different embodiment of the present invention, instead of the described at least one cold plate assembly one or more interconnecting busbars may be mounted for electrically connecting the plurality of battery cells 40 to each other. In addition, also a cooling arrangement other than the described cold plate assembly may be mounted.
[0087] Optionally, outer protective layer may also be applied on the battery module 100.
[0088] In summary a cell holder 10 for battery module 100 comprising a plurality of battery cells 40 has been described which enables high density of packing of the battery cells 40 and in the same time acts as a structural component of the battery module 100 when mounted (installed) in the housing of the battery pack such that it transfers forces from the vehicle chassis and aids in overall vehicle stiffness. In addition, since each battery cell 40 is in addition fixed (for example glued) in the respective thorough hole 12 when the battery module 100 is assembled, each battery cell 40 by being fixed (for example glued) in the respective through hole acts as a structural component of the battery module 100 via the cell holder 10.
[0089] Although detailed embodiments have been described, these only serve to provide a better understanding of the invention defined by the appended claims and are not be seen as limiting.