Battery module and battery pack including the same
The battery module design with protective members and potting portions effectively blocks flame transmission and resin leakage, preventing chain ignition and reducing module gaps, thus enhancing safety and efficiency.
Patent Information
- Application Number
- JP2025503461
- Authority / Receiving Office
- JP · JP
- Patent Type
- Applications
- Current Assignee / Owner
- Priority Date
- 2023-04-20
- Filing Date
- 2024-04-19
- Publication Date
- 2025-07-28
- Estimated Expiration
- 2044-04-19
AI Technical Summary
Conventional battery modules and packs face issues with flame transmission leading to chain ignition due to gaps between battery cells, making it difficult to inject flame retardant substances, which increases weight and risk of sequential ignition.
A battery module design with protective members covering negative electrode terminals and partitioning by a potting portion to block flame transmission, along with a structure that prevents potting resin leakage and reduces gaps between modules.
Prevents chain ignition by blocking flame transmission and resin leakage, reducing the distance between battery modules, and minimizing weight increase.
Smart Images

Figure 2025524293000001_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to a battery module and a battery pack including the same, and more particularly, to a battery module for preventing chain ignition and a battery pack for preventing chain ignition.
[0002] This application claims the benefit of priority based on Korean Patent Application No. 10-2023-0051761 filed on April 20, 2023, and all contents disclosed in the document of the Korean patent application are included as part of this specification.
Background Art
[0003] FIG. 1 is a diagram schematically showing a conventional battery module 10, and FIG. 2 is a diagram schematically showing a conventional battery pack 50.
[0004] Referring to FIG. 1, the conventional battery module 10 includes a cell case 20, at least one battery cell 30, 30A, and a cell cover 40. At least one battery cell 30 is accommodated in the cell case 20, and after a plurality of battery cells 30, 30A are accommodated in the cell case 20, the cell cover 40 is coupled to the cell case 20.
[0005] The battery cells 30, 30A include a positive and negative current collector, a separator, an active material, an electrolyte, etc., and can be repeatedly charged and discharged by an electrochemical reaction.
[0006] On the other hand, due to external force or internal short circuit, etc., ignition may occur in the battery cell 30. The battery module 10 includes a plurality of battery cells 30, but when any one of the battery cells 30A ignites, flame transfer may occur in the peripheral portion of the ignited battery cell 30A, and chain ignition may occur between adjacent battery cells 30.
[0007] When any one of the battery cells 30A catches fire inside the battery module 10, a structure is required to prevent the flame from transferring to the surrounding battery cells 30 of the fired battery cell 30A.
[0008] Referring to FIG. 1, in the battery module 10, there is a cover gap G1 between the cell cover 40 and the end of the battery cell 30. Also, in the internal space of the battery module 10, there is a cell gap G2 between adjacent battery cells 30.
[0009] At this time, the flame discharged from the fired battery cell 30A can be transmitted in the longitudinal direction L of the battery cell 30A through the cover gap G1, and can be transmitted in the lateral direction F (arrangement direction) of the battery cell 30A through the cell gap G2, whereby a chain fire can be caused. Therefore, in order to prevent the chain fire of the battery cells 30, a technique for filling the cover gap G1 and the cell gap G2 is required.
[0010] However, in the conventional battery module 10, after the battery cells 30 are housed in the cell case 20, the bus bar is spot welded to the terminals of the battery cells 30, so there is a problem that it is difficult to inject a flame retardant substance (for example, potting resin) into the internal space of the cell case 20.
[0011] Referring to FIG. 2, the battery pack 50 is assembled such that a plurality of battery modules 10 are electrically connected, and the pack case 51 is for protecting the plurality of battery modules 10. As an example, in the battery pack 50, the plurality of battery modules 10 can have a structure laminated in the longitudinal direction L of the battery cells.
[0012] As a result, when a battery cell 30 of any one of the battery modules 10 explodes, there is a problem that adjacent battery modules 10 are sequentially ignited while the flame is transmitted along the longitudinal direction L of the battery cell.
[0013] Conventionally, since it is difficult to inject potting resin into the inside of the battery module 10, a method of injecting potting resin into the inside of the pack case 51 of the battery pack 50 to form a potting portion 60 has been adopted.
[0014] However, when injecting potting resin into the pack case 51 of the battery pack 50, there is a problem that the injection amount of the potting resin increases and the weight of the battery pack 50 increases.
Summary of the Invention
Problems to be Solved by the Invention
[0015] One object of the present invention is to provide a battery module capable of preventing sequential ignition of battery cells by blocking flame transmission during ignition of adjacent battery cells through a protective member provided to cover the negative electrode terminal of the battery cell, and a battery pack including the same.
[0016] Another object of the present invention is to provide a battery module capable of preventing sequential ignition of battery cells by blocking flame transmission during ignition of adjacent battery cells by partitioning the battery cells by a potting portion in the internal space of the battery module, and a battery pack including the same.
[0017] Another object of the present invention is to provide a battery module capable of preventing leakage of potting resin when injecting potting resin into the inside of the battery module, and a battery pack including the same.
[0018] Further, an object of the present invention is to provide a battery module and a battery pack including the same, which can block flame transmission between adjacent battery modules and can reduce the distance between adjacent battery modules in a battery pack in which a plurality of battery modules are arranged along the longitudinal direction of a battery cell.
Means for Solving the Problems
[0019] In order to solve the above-described problems, a battery module according to one aspect of the present invention includes a plurality of battery cells including a first terminal having a vent portion and a second terminal disposed apart from the first terminal, an insertion port opened so that the plurality of battery cells can be inserted, a bottom portion on which the plurality of battery cells are seated, and a cell case having a plurality of first terminal holes provided in the bottom portion, and a first protection member provided so as to surround the exposed first terminal hole of the second terminal in a state where the battery cell is seated on the bottom portion of the cell case so that the second terminal of the battery cell is exposed from the first terminal hole.
[0020] The battery module may include a cell cover mounted on the insertion port of the cell case and having a plurality of second terminal holes arranged so as to face the plurality of first terminal holes respectively.
[0021] Further, the plurality of battery cells may include one or more first battery cells arranged in the cell case so that the second terminal is exposed from the first terminal hole and the first terminal is exposed from the second terminal hole, and one or more second battery cells arranged in the cell case so that the first terminal is exposed from the first terminal hole and the second terminal is exposed from the second terminal hole.
[0022] Further, the battery module may include a second protection member provided so as to surround the exposed second terminal hole of the second terminal in a state where the second battery cell is arranged in the cell case so that the second terminal of the second battery cell is exposed from the second terminal hole of the cell cover.
[0023] Also, in the first battery cell and the second battery cell, the first terminal and the second terminal can be positioned in opposite directions along the longitudinal direction of the battery cell.
[0024] Also, the battery module can include a first bus bar that is electrically connected to the first terminal of the first battery cell through the second terminal hole and is located outside the cell case, and a third bus bar that is electrically connected to the second terminal of the first battery cell through the first terminal hole and is located outside the cell case.
[0025] Also, the first protective member can be arranged to surround the third bus bar and the first terminal hole.
[0026] Also, the battery module can include a second bus bar that is electrically connected to the second terminal of the second battery cell through the second terminal hole and is located outside the cell case, and a fourth bus bar that is electrically connected to the first terminal of the second battery cell through the first terminal hole and is located outside the cell case.
[0027] Also, the second protective member can be arranged to surround the second bus bar and the second terminal hole.
[0028] Also, the cell cover can have a resin injection hole provided so as to be fluidly movable with the internal space of the cell case in which a plurality of battery cells are arranged.
[0029] Also, the battery module can include a potting portion filled so as to surround a plurality of battery cells in the cell case.
[0030] Also, the cell cover can have an air hole fluidly connected to the internal space of the cell case. Also, the air hole can be arranged away from the resin injection hole, and the size of the air hole can be formed differently from the size of the resin injection hole. For example, the size of the air hole can be formed smaller than the size of the resin injection hole.
[0031] Further, the cell case may have a plurality of fitting protrusions protruding toward the internal space on the insertion port side, and the cell cover may have a plurality of fitting holes into which the respective fitting protrusions are fitted.
[0032] Further, the cell case may include at least one case pillar protruding from the bottom of the cell case toward the insertion port, and the cell cover may include at least one cover pillar extending toward the bottom of the cell case and connected to the case pillar.
[0033] Further, the battery module may include a second sealing member disposed between the cover pillar and the case pillar.
[0034] Further, the battery module may include a first sealing member disposed between the second terminal of the battery cell and the first terminal hole and adhered to the cell case.
[0035] Further, the first sealing member may be adhered along the circumferential direction of the first terminal hole and may have a ring shape so as to expose at least a partial region of the second terminal outside the first terminal hole.
Advantages of the Invention
[0036] As described above, the battery module according to at least one aspect of the present invention and the battery pack including the same have the following effects.
[0037] By blocking the flame transmission during ignition of an adjacent battery cell through a protection member provided to cover the negative electrode terminal of the battery cell disposed in the battery module, it is possible to prevent the chain ignition of the battery cells.
[0038] In addition, by partitioning the battery cells by the potting portion in the internal space of the battery module, it is possible to prevent the chain ignition of the battery cells by blocking the flame transmission during the ignition of adjacent battery cells.
[0039] In addition, when injecting the potting resin into the battery module, it is possible to prevent the leakage of the potting resin. In particular, it is possible to prevent the potting resin from leaking from the insertion port side of the cell case and the bottom side of the cell case.
[0040] In addition, in a battery pack in which a plurality of battery modules are arranged along the longitudinal direction of the battery cells, it is possible to block the flame transmission between adjacent battery modules and reduce the interval between adjacent battery modules.
Brief Description of the Drawings
[0041]
Figure 1
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Figure 7
Figure 8
Figure 9
Figure 10
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Figure 13
Mode for Carrying Out the Invention
[0042] Hereinafter, with reference to the accompanying drawings, a battery module for preventing chain ignition and a battery pack for preventing chain ignition according to an embodiment of the present invention will be described.
[0043] Also, for the same or corresponding components regardless of the reference numerals, the same or similar reference numerals are attached, and duplicate explanations thereof are omitted. The sizes and shapes of the respective components shown for the convenience of explanation may be exaggerated or reduced.
[0044] FIG. 3 is an exploded perspective view of a battery module 100 according to an embodiment of the present invention, FIG. 4 is a cross-sectional view of the cell case shown in FIG. 3, FIG. 5 is an exploded perspective view of the cell case, battery cells, and cell covers shown in FIG. 3, and FIG. 6 is a perspective view of the battery module in which the components shown in FIG. 5 are combined.
[0045] The battery module 100 according to an embodiment of the present invention includes a plurality of battery cells 120 (121, 122) including first terminals 121a, 122a having vent portions and second terminals 121b, 122b arranged apart from the first terminals 121a, 122a.
[0046] Each battery cell 120 (121, 122) has a first terminal 121a, 122a and a second terminal 121b, 122b. As an example, the first terminals 121a, 122a may be positive terminals, and the second terminals 121b, 122b may be negative terminals which are electrodes with polarities opposite to those of the first terminals 121a, 122a. Also, each battery cell 120 may be provided such that the first terminals 121a, 122a and the second terminals 121b, 122b are located in opposite directions along the longitudinal direction L of the battery cell 120. That is, the first terminals 121a, 122a may be provided at one end along the longitudinal direction L of the battery cell 120, and the second terminals 121b, 122b may be provided at the other end along the longitudinal direction L.
[0047] Further, a vent portion is provided at the first terminals 121a, 122a of the battery cell 120. The vent portion may be formed along the frame at one end of the battery cell 120 at the first terminals 121a, 122a. For example, the vent portion may be formed at the central position of one end of the battery cell 120 where the first terminals 121a, 122a are located.
[0048] The vent portion is for relieving the internal pressure of the battery cell 120, and the vent portion is formed with a relatively weak strength at one end of the battery cell 120 and is provided to break preferentially when an internal ignition occurs in the battery cell 120.
[0049] In this way, when the internal pressure of the battery cell 120 rises above a preset critical pressure (for example, the breaking pressure of the vent portion), the vent portion breaks in the battery cell 120 to relieve the internal pressure of the battery cell 120. Thereby, when a fire occurs in the battery cell 120, the internal pressure of the battery cell 120 rises, and while the vent portion provided at the first terminals 121a, 122a which are positive terminals breaks, a flame is released to the outside of the battery cell 120.
[0050] Additionally, the battery cell 120 may be a cylindrical battery cell or a prismatic battery cell.
[0051] 3 to 5, the battery module 100 includes a cell case 110 having an insertion opening 111 opened to insert a plurality of battery cells 120 (121, 122), a bottom 115 on which the plurality of battery cells 120 are seated, and a plurality of first terminal holes 116 provided in the bottom 115.
[0052] Further, the cell case 110 has an internal space 110a in which a plurality of battery cells 120 (121, 122) are accommodated. The cell case 110 may have a cylindrical shape that is open in one direction and has the internal space 110a. The bottom 115 has a plurality of first terminal holes 116 in which the plurality of battery cells 120 are seated. Further, the insertion opening 111 may be provided to face the bottom 115. The insertion opening 111 and the bottom 115 may be provided to face each other along a longitudinal direction of the battery cell 120.
[0053] The first terminal holes 116 may be formed in the same number as the battery cells 120 accommodated in the internal space 110a. The first terminal holes 116 serve to expose a portion of the first terminals 121a, 122a or the second terminals 121b, 122b to the outside depending on an insertion direction of the battery cells 120 when one end of the battery cells 120 is seated on the bottom 115. Thus, the first terminal holes 116 may have a diameter smaller than that of the battery cells 120 so that the battery cells 120 do not fall out of the cell case 110.
[0054] FIG. 7 is a perspective view of the battery module in a state where the first bus bar to the fourth bus bar are separated, FIG. 8 is a perspective view of the battery module in a state where the second protective member is coupled, FIG. 9 is a cross-sectional view taken along line XX in FIG. 8, and FIG. 10 is an enlarged cross-sectional view of portion A in FIG. 9.
[0055] 3 and 9, the battery module 100 may include a first protective member 150 arranged to surround the exposed first terminal hole 116 of the second terminal 121b of the battery cell (e.g., battery cell 121) when the battery cell 121 is seated on the bottom 115 of the cell case 110 such that the second terminal 121b of the battery cell is exposed from the first terminal hole 116.
[0056] The first protective member 150 serves to prevent an impact or a fire applied from the outside of the cell casing 110 from being transmitted to the second terminal 121b of the battery cell 121 through the first terminal hole 116. The first protective member 150 may have a plate shape having a predetermined thickness and may have a diameter larger than the first terminal hole 116 so as to surround the entire area of the first terminal hole 116. For example, the first protective member 150 may be located outside the cell casing 110 and may be fixed to the cell casing 110 from the outside of the cell casing 110 by a method such as adhesion.
[0057] The battery module 100 may include a cell cover 130 that is attached to the insertion opening 111 of the cell case 110 and has a plurality of second terminal holes 132 arranged to face the plurality of first terminal holes 116, respectively. When the battery cell 120 is disposed in the internal space 110a of the cell case, one end of the battery cell may be supported by the bottom 115, and the other end of the battery cell may be supported by the cell cover 130. The number of the first terminal holes 116 and the number of the second terminal holes 132 may be the same. When the cell cover 130 is attached to the cell case 110, the second terminal hole 132 serves to expose a portion of the first terminals 121a, 122a or the second terminals 121b, 122b located at the other end of the battery cell 120 when one end of the battery cell 120 is seated on the bottom 115 to the outside. Thus, the second terminal hole 132 may have a diameter smaller than the diameter of the battery cell 120 so that the battery cell 120 does not fall out of the cell case 110 or the cell cover 130 .
[0058] Referring to FIGS. 3 and 5, a plurality of battery cells 120 can be inserted such that the first terminal or the second terminal faces the bottom 115 of the cell case 110.
[0059] For example, the plurality of battery cells 120 can include one or more first battery cells 121 disposed within the cell case 110 such that the second terminal 121b is exposed from the first terminal hole 116 and the first terminal 121a is exposed from the second terminal hole 132.
[0060] Also, the plurality of battery cells 120 can include one or more second battery cells 122 disposed within the cell case 110 such that the first terminal 122a is exposed from the first terminal hole 116 and the second terminal 122b is exposed from the second terminal hole 132. The first battery cell 121 and the second battery cell 122 have the same configuration and differ only in the direction in which they are inserted into the cell case 110. Specifically, the first battery cell 121 is inserted such that the second terminal 121b faces the bottom 115 of the cell case 110, and the second battery cell 122 is inserted such that the first terminal 122a faces the bottom 115 of the cell case 110.
[0061] In such a structure, the plurality of first terminal holes 116 each expose the second terminal 121b of the first battery cell 121 to the outside of the cell case 110 or expose the first terminal 122a of the second battery cell 122 to the outside of the cell case 110.
[0062] Also, the plurality of second terminal holes 132 each expose the first terminal 121a of the first battery cell 121 to the outside of the cell case 110 or expose the second terminal 122b of the second battery cell 122 to the outside of the cell case 110.
[0063] Referring to FIGS. 3 and 8, the battery module 100 may include a second protection member 155 provided to surround the exposed second terminal hole 132 of the second terminal 122b in a state where the second battery cell 122 is disposed in the cell case 110 such that the second terminal 122b of the second battery cell 122 is exposed from the second terminal hole 132 of the cell cover 130.
[0064] The second protection member 155 functions to prevent an impact or flame applied from outside the cell cover 130 from being transmitted to the second terminal 122b of the second battery cell 122 through the second terminal hole 132. The second protection member 155 may have a plate shape with a predetermined thickness and may have a diameter larger than that of the second terminal hole 132 so as to surround the entire area of the second terminal hole 132. For example, the second protection member 155 is located outside the cell cover 130 and may be fixed to the cell cover 130 from the outside of the cell cover 130 by means such as adhesion.
[0065] In summary, the first protection member 150 functions to prevent an impact or flame applied from outside the cell case 110 from being transmitted to the second terminal 121b of the first battery cell 121 through the first terminal hole 116, and the second protection member 155 functions to prevent an impact or flame applied from outside the cell cover 130 from being transmitted to the second terminal 122b of the second battery cell 122 through the second terminal hole 132.
[0066] The first protection member 150 and the second protection member 155 may each be formed of a material having heat resistance and insulation properties, and may include, for example, glass fiber or mica.
[0067] Also, the battery module 100 may include a plurality of bus bars 141 to 144 electrically connected to the first battery cell 121 and the second battery cell 122, respectively.
[0068] Specifically, the battery module 100 can be electrically connected to the first terminal 121a of the first battery cell 121 through the second terminal hole 132, and can be electrically connected to the second terminal 121b of the first battery cell 121 through the first bus bar 141 located outside the cell case 110 and the first terminal hole 116, and can include a third bus bar 143 located outside the cell case 110.
[0069] Further, the first bus bar 141 can be welded to the first terminal 121a of the first battery cell 121 through the second terminal hole 132. At least a part of the region (welding region) is located inside the cell cover 130, and the remaining region is located outside the cell cover 130. Also, the third bus bar 143 can be welded to the second terminal 121b of the first battery cell 121 through the first terminal hole 116. At least a part of the region (welding region) is located inside the cell case 110, and the remaining region is located outside the cell case 110.
[0070] In addition, the battery module 100 can be electrically connected to the second terminal 122b of the second battery cell 122 through the second terminal hole 132, and can be electrically connected to the first terminal 122a of the second battery cell 122 through the second bus bar 142 located outside the cell case 110 and the first terminal hole 116, and can include a fourth bus bar 144 located outside the cell case 110.
[0071] Further, the second bus bar 142 can be welded to the second terminal 122b of the second battery cell 122 through the second terminal hole 132. At least a part of the region (welding region) is located inside the cell cover 130, and the remaining region is located outside the cell cover 130. Also, the fourth bus bar 144 can be welded to the first terminal 122a of the second battery cell 122 through the first terminal hole 116. At least a part of the region (welding region) is located inside the cell case 110, and the remaining region is located outside the cell case 110.
[0072] At this time, the first protective member 150 can be arranged to surround the third bus bar 143 and the first terminal hole 116, and can be fixed to the cell case 110 so as to cover a region where the second terminal 121b of the first battery cell 121 exposed through the first terminal hole 116 is exposed outside the bottom 115 of the cell case 110.
[0073] In addition, the second protective member 155 can be arranged to surround the second bus bar 142 and the second terminal hole 132, and can be fixed to the cell cover 130 so as to cover a region where the second terminal 122b of the second battery cell 122 exposed through the second terminal hole 132 is exposed from the outside of the cell cover 130.
[0074] Further, the battery module 100 can include a potting portion 170 provided in the internal space 110a of the cell case 110 so as to surround a plurality of battery cells 120 (121, 122).
[0075] The potting portion 170 can be formed by curing a potting resin R injected into the internal space 110a of the cell case 110. The potting portion 170 is provided in the internal space 110a of the cell case 110 so as to surround the outer surfaces of the respective battery cells 121, 122. The potting portion 170 functions to block the transmission of flame in the lateral direction F (arrangement direction) of the battery cell 120 in the event of internal ignition of the battery cells 121, 122 in the cell case 110, and can improve the strength of the cell case 110. The potting resin R has flame retardancy. As an example, the potting resin R can be a flame retardant composite material based on silicon.
[0076] Referring to FIGS. 8 and 9, the cell cover 130 can have at least one resin injection hole 135 provided so as to be fluidly movable with the internal space 110a of the cell case 110. At this time, the potting portion 170 can be formed by curing a potting resin R injected into the internal space of the cell case 110 through the resin injection hole 135.
[0077] Referring to FIGS. 7 and 8, a plurality of battery cells 121 and 122 are accommodated inside the cell case 110. After the cell cover 130 is mounted on the insertion port 111 side of the cell case 110, the welding process of the first bus bar 141 to the fourth bus bar 144 can be performed. Thereafter, the potting resin R can be injected into the internal space of the cell case 110 through the resin injection hole 135.
[0078] At this time, when injecting the potting resin R, it is important to prevent the potting resin R from leaking outside the cell case 110.
[0079] The cell case 110 may have a plurality of fitting protrusions 112 protruding toward the internal space 110a on the insertion port 111 side, and the cell cover 130 may have a plurality of fitting holes 134 into which the respective fitting protrusions 112 are fitted. The cell cover 130 contacts at least a part of the inner surface 110b of the cell case along the circumferential direction and can be fitted to the cell case 110 by the fitting protrusions 112 formed on the inner surface 110b of the cell case.
[0080] The cell cover 130 may have a cover portion 131 provided with a plurality of second terminal holes 132 and one or more resin injection holes 135, and one or more cover coupling portions 133 provided with one or more fitting holes 134 and arranged along the circumferential direction of the cover portion 131. The fitting hole 134 may be an opening penetrating the cover coupling portion 133 in the lateral direction F.
[0081] Further, the cover portion 131 is provided so as to cover the internal space 110a of the cell case 110. The plurality of second terminal holes 132 and one or more resin injection holes 135 may be openings penetrating the cover portion 131 vertically.
[0082] Further, the cover coupling portion 133 may extend along the longitudinal direction of the battery cell 120 from the edge of the cover portion 131. As an example, the cover coupling portion 133 may extend perpendicular to the cover portion 131, and is formed in a shape corresponding to the inner surface of the cell case 110, and is provided so as to contact the inner surface 110b of the cell case 110 in at least a partial region along the circumferential direction.
[0083] Further, the resin injection hole 135 may be provided at the boundary portion between the cover coupling portion 133 and the cover portion 131. The resin injection hole 135 may be disposed on the same plane as the second terminal hole 132 and is spaced apart from the second terminal hole 132.
[0084] In addition, the fitting hole 134 of the cell cover 130 is fitted to the fitting protrusion 112 of the cell case 110 in a hook manner, so that the coupling force of the cell cover 130 to the cell case 110 can be improved. Further, by not forming a hole structure in the cell case 110, it is possible to prevent the potting resin R from leaking to the outside of the cell case 110 when injecting the potting resin R into the internal space of the cell case 110.
[0085] Further, the battery module 100 may include a first sealing member 161 disposed between the second terminal 121b of the battery cell 121 and the first terminal hole 116 in a state where the battery cell 121 is seated on the bottom 115 of the cell case 110 so that the second terminal 121b of the battery cell (for example, the first battery cell 121) is exposed from the first terminal hole 116. The first sealing member 161 may be adhered to the cell case 110.
[0086] Referring to FIGS. 3 and 9, the first sealing member 161 may be adhered along the circumferential direction of the first terminal hole 116 and may be provided to expose at least a partial region of the second terminal 122b to the outside of the first terminal hole 116.
[0087] The first sealing member 161 can function to seal the interior space 110a of the cell case 110 and the first terminal hole 116. That is, when injecting the potting resin R, it is possible to prevent the potting resin R from leaking to the outside of the cell case 110 through the first terminal hole 116.
[0088] The first sealing member 161 can have a ring shape with an inner diameter larger than the diameter of the first terminal hole 116. Further, the first sealing member 161 can include a double-sided tape having a ring shape. That is, one of the two sides of the tape of the first sealing member 161 can be adhered along the circumferential direction of the first terminal hole 116, and the other side can be adhered to the end of the battery cell 120 disposed on the first terminal hole 116 side.
[0089] A plurality of the first sealing members 161 can be provided. That is, the first sealing member 161 can be attached for each first terminal hole 116.
[0090] Referring to FIG. 9, the first battery cell 121 can be disposed in the cell case 110 such that the second terminal 121b of the first battery cell 121 is exposed from the first terminal hole 116, and the second battery cell 122 can be disposed in the cell case 110 such that the first terminal 122a of the second battery cell 122 is exposed from the first terminal hole 116.
[0091] Here, the first sealing member 161 disposed between the second terminal 121b of the first battery cell 121 and the first terminal hole 116 can be adhered along the circumferential direction of the first terminal hole 116, and at least a partial region of the second terminal 121b can be provided to be exposed to the outside of the first terminal hole 116.
[0092] Further, referring to FIG. 10, the first sealing member 161 disposed between the first terminal 122a of the second battery cell 122 and the first terminal hole 116 can be adhered along the circumferential direction of the first terminal hole 116, and at least a partial region of the first terminal 122a can be provided to be exposed to the outside of the first terminal hole 116.
[0093] Each first sealing member 161 functions to seal the interior space 110a of the cell case 110 and the first terminal hole 116.
[0094] Also, the cell case 110 can include at least one case pillar 117 protruding from the bottom 115 of the cell case 110 toward the insertion port 111, and the cell cover 130 can include at least one cover pillar 137 extending toward the bottom 115 of the cell case 110 and connected to the case pillar 117.
[0095] The case pillar 117 can be disposed between adjacent first terminal holes 116, and the case pillar 117 can be provided to protrude from the bottom 115 of the cell case 110 in the length direction (longitudinal direction) L of the battery cell 120. When assembling the cell cover 130 to the cell case 110, each case pillar 117 can be inserted into the cover pillar 137 of the cell cover 130.
[0096] The cover pillar 137 can be formed to extend along the longitudinal direction L of the battery cell between adjacent second terminal holes 132. The cover pillar 137 can be attached to the case pillar 117 of the cell case 110. As an example, the case pillar 117 can be inserted into an end portion of the cover pillar 137 and fitted to the cover pillar 137.
[0097] The case pillar 117 can have a first hollow 117a, and the cover pillar 137 can have a second hollow 137a. At this time, the case pillar 117 can be fitted to the cover pillar 137, and the first hollow 117a and the second hollow 137a can be connected. In such a structure, a mounting bolt 700 (see FIG. 11) can pass through the first hollow 117a and the second hollow 137a from the outside of the battery module 100 and penetrate the battery module 100.
[0098] When the cover post 137 and the case post 117 are fitted together, potting resin R may leak through the joint. To prevent this, the battery module 100 may include a second sealing member 162 disposed between the cover post 137 and the case post 117.
[0099] The second sealing member 162 may be a double-sided tape having a ring shape. At this time, the second sealing member 162 may be provided so as to be adhered to the end of the cover post 137 and the end of the case post 117, respectively. Also, the second sealing member 162 may include an O-ring.
[0100] Further, the cell cover 130 may have an air hole 136 fluidly connected to the internal space 110a of the cell case 110. In one example, the cell cover 130 may be bent such that a portion of the cover joint 133, which is a portion in contact with the inner surface of the cell case 110, is spaced apart from the inner surface of the cell case 110, and the air hole 136 may be formed through the spaced-apart space.
[0101] Referring to FIG. 6, when the potting resin R is injected into the internal space of the cell case 110, the air in the internal space 110a of the cell case 110 may be discharged to the outside of the cell case 110 through the air hole 136. Therefore, when the potting resin R is injected into the internal space of the cell case 110, the air in the internal space 110a is discharged to the outside of the cell case 110 through the air hole 136, preventing defects in the potting portion 170 due to air bubbles.
[0102] A manufacturing method of the battery module 100 having the above structure will be described below. A plurality of first sealing members 161 can be adhered to the ends of the first battery cell 121 and the second battery cell 122 or the edges of the first terminal holes 116. Thereafter, the first battery cell 121 and the second battery cell 122 are inserted into the internal space 110a of the cell case 110 such that the portions to which the first sealing members 161 are adhered rest on the bottom 115 of the cell case 110.
[0103] Next, the cell cover 130 is mounted on the insertion port 111 side of the cell case 110 so as to surround the plurality of first battery cells 121 and second battery cells 122. At this time, the fitting holes 134 of the cell cover 130 can be fitted with the fitting protrusions 112 of the cell case 110.
[0104] Next, the first bus bar 141 to the fourth bus bar 144 are respectively welded and joined.
[0105] Also, the potting resin R is injected into the internal space 110a of the cell case 110 through the resin injection hole 135 of the cell cover 130. While the potting resin R is being injected into the internal space, the air in the internal space can be discharged to the outside through the air holes 136. The potting resin R forms a potting portion 170 surrounding the outer surfaces of the battery cells 121 and 122 while curing in the internal space of the cell case 110.
[0106] Also, the first protective member 150 is coupled to the cell case 110 outside the bottom 115 of the cell case 110 so as to surround the region where the second terminal 121b of the first battery cell 121 is exposed from the first terminal hole 116 of the cell case 110.
[0107] Also, the second protective member 155 is coupled to the cell cover 130 outside the cell cover 130 so as to surround the region where the second terminal 122b of the second battery cell 122 is exposed from the second terminal hole 132 of the cell cover 130.
[0108] At this time, outside the bottom 115 of the cell case 110, the first protective member 150 can be fixed to the cell case 110 so as to cover the third bus bar 143, and outside the cell cover 130, the second protective member 155 can be fixed to the cell cover 130 so as to cover the second bus bar 142.
[0109] FIG. 11 is a schematic view of a battery pack 1000 according to an embodiment of the present invention, FIG. 12 is a schematic cross-sectional view of a battery pack according to an embodiment of the present invention, and FIG. 13 is an enlarged schematic view of part B of FIG. 12.
[0110] A battery pack 1000 according to an embodiment of the present invention can include a plurality of battery modules 100, 200, a pack case 1010 that houses the plurality of battery modules 100, 200, mounting bolts 700 for connecting adjacent battery modules 100, 200, and fastening members 800 fastened to the mounting bolts 700.
[0111] For example, in the battery module 100, after the cell cover 130 is mounted on the cell case 110, the mounting bolt 700 can pass through the case post 117 and the cover post 137, and one end can be hung on the bottom 115 of the cell case 110, and the other end can protrude outside the cell cover 130 to connect the cell cover 130 and the cell case 110. At this time, the fastening member 800 can be coupled to the other end of the mounting bolt 700 and fixed to the cell cover 130. Also, as the fastening member 800, a nut coupled to the mounting bolt 700 can be used. Further, the mounting bolt 700 can sequentially pass through two or more battery modules 100, 200 and connect them.
[0112] Further, the first battery module 100 and the second battery module 200 can each be arranged in a row along the longitudinal direction L of the battery cells 121 and 221. Also, in the state of being arranged in a row, the adjacent first battery module 100 and second battery module 200 can be assembled via the mounting bolts 700 and the fastening members 800 fastened to the mounting bolts 700.
[0113] The plurality of battery modules 100 and 200 are the same as the battery module 100 described through FIGS. 1 to 10. In this specification, they are referred to as the first battery module 100 and the second battery module 200 according to the order in which they are arranged within the battery pack 1000.
[0114] As described above, the first battery module 100 and the second battery module 200 include the cell cases 110 and 210, the first battery cells 121 and 221 arranged within the cell cases 110 and 210 and having the first terminals 121a and 221a and the second terminals 121b and 221b with vent portions, and the second battery cells 122 and 222 arranged within the cell cases 110 and 210 and having the first terminals 122a and 222a and the second terminals 122b and 222b with vent portions. Also, potting portions 170 and 270 can be provided within each of the battery modules 100 and 200.
[0115] Also, the first battery module 100 and the second battery module 200 can each be provided with the first bus bar to the fourth bus bar 141 to 144 and 241 to 244.
[0116] In the battery pack 1000, the first battery cell 221 of the second battery module 200 is arranged such that the first terminal 221a faces the second terminal 121b of the first battery cell 121 of the first battery module 100, and the second battery cell 122 of the first battery module 100 may be arranged such that the first terminal 122a faces the second terminal 222b of the second battery cell 222 of the second battery module 200.
[0117] At this time, the first battery module 100 and the second battery module 200 are respectively provided with first protection members 150, 250 and second protection members 155, 255.
[0118] The first protection members 150, 250 and the second protection members 155, 255 are for blocking the flame transmission in the longitudinal direction L of the battery cell when an internal ignition of the battery cell occurs in any one of the battery modules 100, 200.
[0119] Specifically, in the first battery module 100, the first protection member 150 is provided so as to surround the second terminal 121b of the first battery cell 121, and in the second battery module 200, the first protection member 250 may be provided so as to surround the second terminal 221b of the first battery cell 221.
[0120] Also, in the first battery module 100, the second protection member 155 is provided so as to surround the second terminal 122b of the second battery cell 122, and in the second battery module 200, the second protection member 255 may be provided so as to surround the second terminal 222b of the second battery cell 222.
[0121] Referring to FIGS. 12 and 13, when an internal ignition occurs in the first battery cell 221 in the second battery module 200 and the vent part breaks and the flame is released through the damaged first terminal 221a, the first protection member 150 of the first battery module 100 can block the flame transmission by reflecting the released flame.
[0122] At this time, the first protection member 150 provided in the first battery module 100 can be arranged at a predetermined interval G with respect to the first terminal 221a of the first battery cell 221 provided in the second battery module 200, and the interval can be set to 5 mm or less, preferably 3 mm or less. The interval G can be the interval between the first battery module 100 and the second battery module 200 within the battery pack 100.
[0123] The above-described preferred embodiments of the present invention are disclosed for illustrative purposes, and those skilled in the art having ordinary knowledge of the present invention can make various modifications, changes, and additions within the spirit and scope of the present invention, and such modifications, changes, and additions should be regarded as belonging to the following claims.
Industrial Applicability
[0124] According to the battery module and the battery pack including the same according to at least one embodiment of the present invention, by blocking the flame transmission during ignition of an adjacent battery cell through the protection member provided to cover the negative electrode terminal of the battery cell disposed within the battery module, it is possible to prevent the chain ignition of the battery cells.
Description of Reference Numerals
[0125] 100 Battery module 110 Cell case 116 First terminal hole 120 Battery cell 121 First battery cell (battery cell) 122 Second battery cell (battery cell) 121b Second terminal 132 Second terminal hole 150, 250 First protection member 155, 255 Second protection member
Claims
1. A plurality of battery cells including a first terminal having a vent portion and a second terminal disposed apart from the first terminal, a cell case having an insertion port opened so that the plurality of battery cells can be inserted, a bottom portion on which the plurality of battery cells are seated, and a plurality of first terminal holes provided in the bottom portion, a first protection member provided so as to surround the exposed first terminal hole of the second terminal in a state where the battery cell is seated on the bottom portion of the cell case so that the second terminal of the battery cell is exposed from the first terminal hole, A battery module including.
2. The battery module according to claim 1, further including a cell cover mounted on the insertion port of the cell case and having a plurality of second terminal holes arranged so as to face the plurality of first terminal holes respectively.
3. The plurality of battery cells are One or more first battery cells arranged in the cell case so that the second terminal is exposed from the first terminal hole and the first terminal is exposed from the second terminal hole, One or more second battery cells arranged in the cell case so that the first terminal is exposed from the first terminal hole and the second terminal is exposed from the second terminal hole, The battery module according to claim 2, including.
4. The battery module according to claim 3, including a second protection member provided so as to surround the exposed second terminal hole of the second terminal in a state where the second battery cell is arranged in the cell case so that the second terminal of the second battery cell is exposed from the second terminal hole of the cell cover.
5. The battery module according to claim 3, wherein the first battery cell and the second battery cell are positioned in opposite directions along the longitudinal direction of the battery cell with respect to the first terminal and the second terminal.
6. Including a first bus bar electrically connected to the first terminal of the first battery cell through the second terminal hole and located outside the cell case, and a third bus bar electrically connected to the second terminal of the first battery cell through the first terminal hole and located outside the cell case, The battery module according to claim 3, wherein the first protection member is arranged so as to surround the third bus bar and the first terminal hole.
7. electrically connected to the second terminal of the second battery cell through the second terminal hole, including a second bus bar located outside the cell case and electrically connected to the first terminal of the second battery cell through the first terminal hole, The battery module according to claim 3, wherein the second protection member is disposed to surround the second bus bar and the second terminal hole.
8. The battery module according to claim 2, wherein the cell cover has a resin injection hole provided to be fluidly movable with the internal space of the cell case in which the plurality of battery cells are disposed.
9. The battery module according to claim 8, further including a potting portion filled so as to surround a plurality of battery cells in the cell case.
10. The battery module according to claim 2, wherein the cell cover has an air hole fluidly movably connected to the internal space of the cell case.
11. The cell case has a plurality of fitting protrusions protruding toward the internal space on the insertion port side, The battery module according to claim 2, wherein the cell cover has a plurality of fitting holes into which the respective fitting protrusions are fitted.
12. The cell case includes at least one case pillar protruding from the bottom of the cell case toward the insertion port, The battery module according to claim 2, wherein the cell cover includes at least one cover pillar extending toward the bottom of the cell case and connected to the case pillar.
13. The battery module according to claim 12, further including a second sealing member disposed between the cover pillar and the case pillar.
14. The battery module according to claim 1, further including a first sealing member disposed between the second terminal of the battery cell and the first terminal hole and adhered to the cell case.
15. The battery module according to claim 14, wherein the first sealing member is adhered along the circumferential direction of the first terminal hole and has a ring shape so as to expose at least a partial region of the second terminal outside the first terminal hole.
Citation Information
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