Heating device and battery processing system

By setting limiting parts on the carrier of the heating device, the problem of damage caused by collision with the heating device during transportation is solved, and higher compatibility and lower risk of damage is achieved.

CN222851521UActive Publication Date: 2025-05-09CONTEMPORARY AMPEREX TECHNOLOGY CO LTD +1
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Patent Information

Application Number
CN202420442100.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-03-07
Publication Date
2025-05-09
Estimated Expiration
2034-03-07

AI Technical Summary

Technical Problem

During the process of transporting the battery module to the heating device, the battery module is prone to collision with the heating device positioning structure, resulting in damage to the battery module.

Method used

A heating device is designed to carry the battery module using a carrier and to provide a first limiting member on at least one side of the carrier in the first direction, so as to limit the displacement and position of the battery module through the first limiting member to reduce the risk of collision.

Benefits of technology

It effectively reduces the damage of the battery module during placing it in the heating device, and improves the compatibility of the heating device with different sizes of battery modules.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model is applicable to the technical field of power batteries, and provides a heating device and a battery processing system, the heating device is used for heating a battery module, and the heating device comprises a bearing part for bearing the battery module; a first limiting piece is arranged on at least one side of the bearing piece in the first direction, and the first limiting piece is used for abutting against the side face of the battery module; heating assemblies are arranged on the two opposite sides of the bearing part in the first direction; in the heating device provided by the invention, the battery module is borne by the bearing part, and in the process of placing the battery module on the bearing part, the first limiting part can be in contact with the battery module in the first direction so as to limit the displacement of the battery module in the first direction, so that the position of the battery module on the bearing part is limited; therefore, the effect of fixing the battery module is achieved; meanwhile, the first limiting piece located on the side face can reduce collision with the battery module and can also reduce structural damage and failure caused by collision, and therefore the first limiting piece can stably provide the limiting function.
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Description

Technical Field

[0001] The present application belongs to the technical field of power batteries, and in particular, relates to a heating device and a battery processing system. Background Art

[0002] Energy conservation and emission reduction are the key to the sustainable development of the automobile industry. Electric vehicles have become an important part of the sustainable development of the automobile industry due to their advantages of energy conservation and environmental protection. For electric vehicles, battery technology is an important factor related to their development.

[0003] During the production and processing of batteries, the battery module needs to be heated to improve the reliability of the battery. In the process of transporting the battery module to the heating device, the battery module is prone to collision with the positioning structure of the heating device, which can easily cause damage to the battery module. Utility Model Content

[0004] In view of the above problems, the present application provides a heating device and a battery processing system, which can reduce the damage to the battery module during the process of being placed in the heating device.

[0005] In a first aspect, some embodiments of the present application provide a heating device for heating a battery module, comprising:

[0006] A carrier, used for carrying a battery module;

[0007] A first limiter, the carrier is provided with a first limiter on at least one side along the first direction, and the first limiter is used to abut against the side of the battery module;

[0008] A heating component is provided on two opposite sides of the carrier along the first direction.

[0009] In the technical solution of the present embodiment, the battery module is carried by a carrier, and when the battery module is placed on the carrier, the first limiting member can contact the battery module along a first direction to limit the displacement of the battery module in the first direction, so as to limit the position of the battery module on the carrier, thereby fixing the battery module; at the same time, the first limiting member located on the side can reduce the collision with the battery module, and can also reduce the structural damage and failure caused by the collision, so that the first limiting member can provide the limiting function more stably.

[0010] In some embodiments, the heating assembly includes a heating element that is movable along a first direction and disposed on one side of the carrier, and a avoiding structure that is opposite to the first limiting member is disposed on the heating element.

[0011] In the technical solution of this embodiment, since the first limiting member is arranged on the side of the supporting member and the heating member needs to heat the side of the battery module, a avoiding structure is arranged on the heating member so that when the heating member approaches and abuts against the battery module, the avoiding structure can be opposite to the first limiting member, so that the heating member can be closer to the battery module or abut against the battery module, and the heating member can better heat the battery module.

[0012] In some embodiments, the avoidance structure is a through hole penetrating the heating element.

[0013] In the technical solution of this embodiment, the avoidance structure is a through hole that penetrates the heating element. When the heating element approaches the battery module, the first limiting member can pass through the heating element at the through hole to further reduce the restriction of the first limiting member on the movement of the heating element, and enable the heating element to be closer to the battery module or close to the battery module, so as to facilitate heating and better heating of the battery module.

[0014] In some embodiments, the first limiting member is disposed on two opposite sides of the supporting member along the first direction.

[0015] The technical solution of this embodiment enables the first limiting member to limit the position of the battery module on the carrier from two opposite sides of the battery module, so as to reduce the activity space of the battery module in the first direction and better fix the position of the battery module.

[0016] In some embodiments, a second limiting member is further provided on the carrier, and the second limiting member and the first limiting member are respectively used to abut against adjacent side surfaces of the battery module.

[0017] In the technical solution of this embodiment, a second limiter is provided and the second limiter and the first limiter respectively abut against different sides of the battery module, so that the second limiter and the first limiter can respectively limit the displacement of the battery module in different directions, thereby further limiting the position of the battery module on the carrier.

[0018] In some embodiments, at least two second stoppers are disposed on the carrier, and the at least two second stoppers are spaced apart along the second direction to abut against different sides of the battery module;

[0019] The second direction is arranged at an angle to the first direction.

[0020] The technical solution of this embodiment enables the second limiting member to limit the position of the battery module on the carrier from opposite sides of the battery module to reduce the activity space of the battery module in the second direction and better fix the position of the battery module.

[0021] In some embodiments, at least one accommodating space is defined between two adjacent second limiting members in the second direction, the accommodating space is used to accommodate the battery module, and at least two first limiting members are provided on both sides of the accommodating space along the first direction.

[0022] In the technical solution of this embodiment, there are at least two first limit members on both sides of the accommodating space along the first direction. Since the first limit members are mainly used to support the side of the battery module, and the length of the side of the battery module is usually longer, it is easy for the battery module to rotate and offset around the first limit member when only one first limit member is used. Therefore, this embodiment provides at least two first limit members on either side of the accommodating space along the first direction to further limit the position of the battery module on the carrier.

[0023] In some embodiments, at least two installation positions are provided on the carrier, the second position limiting member is detachably connected to the carrier, and the second position limiting member can be located in any installation position.

[0024] In the technical solution of this embodiment, the second limit member has at least two different installation positions on the carrier, so that the second limit member can adjust the position according to the different sizes of the battery module, so that the heating device can be compatible with battery modules of different sizes and specifications, thereby improving the compatibility of the heating device.

[0025] In some embodiments, the first limiting member includes a first base and a soft first abutting portion, the first base is connected to the supporting member, and the first abutting portion is connected to a side of the first base facing the supporting member.

[0026] The technical solution of this embodiment makes the first limiting member include a first abutting portion facing the battery module, and makes the first abutting portion a soft component. When the battery module is placed on the carrier, the soft first abutting portion can reduce the damage caused by the collision between the battery module and the first limiting member, and can also reduce the friction damage between the first limiting member and the battery module after the battery module is placed on the carrier, thereby playing a role in protecting the battery module.

[0027] In some embodiments, the first position-limiting member includes a first abutting surface and a first guiding surface, and the first abutting surface is provided on a side of the first position-limiting member facing the bearing member;

[0028] The first guide surface is inclined relative to the first abutting surface, one end of the first guide surface is connected to one end of the first abutting surface away from the supporting member, and the other end of the first guide surface extends in a direction away from the supporting member and the first abutting surface.

[0029] In the solution of this embodiment, the first limiting member includes an inclined first guide surface. During the process of placing the battery module on the carrier, the first guide surface can guide and correct the position of the battery module so that the battery module can be placed in a preset position and the collision between the battery module and the first limiting member can be reduced.

[0030] In some embodiments, the second limiting member includes a second base and a soft second abutting portion, the second base is connected to the supporting member, and the second abutting portion is connected to a side of the second base facing the supporting member.

[0031] The technical solution of this embodiment makes the second limiting member include a second supporting portion facing the battery module, and makes the second supporting portion a soft component. When the battery module is placed on the carrier, the soft second supporting portion can reduce the damage caused by the collision between the battery module and the second limiting member, and can also reduce the friction damage between the second limiting member and the battery module after the battery module is placed on the carrier, thereby playing a role in protecting the battery module.

[0032] In some embodiments, the second position-limiting member includes a second abutting surface and a second guiding surface, and the second abutting surface is disposed on a side of the second position-limiting member facing the supporting member;

[0033] The second guide surface is inclined relative to the second abutting surface, one end of the second guide surface is connected to one end of the second abutting surface away from the supporting member, and the other end of the second guide surface extends in a direction away from the supporting member and the second abutting surface.

[0034] In the technical solution of this embodiment, the second limiting member includes an inclined second guide surface. During the process of placing the battery module on the carrier, the second guide surface can guide and correct the position of the battery module so that the battery module can be placed in a preset position and the collision between the battery module and the second limiting member can be reduced.

[0035] In some embodiments, the heating device further comprises a frame, and the carrier and the heating assembly are both arranged on the frame;

[0036] The heating device also includes a driving structure arranged on the frame, and the driving structure is used for driving the heating element to move along the first direction.

[0037] The technical solution of this embodiment sets up a driving structure, and drives the heating element to move closer to or away from the battery module along a first direction through the driving structure, so that the heating element can be close to or in contact with the battery module to better heat the battery module, and at the same time can also provide a certain pressure for the battery module, so that the heating element can play a role of heating and pressurizing.

[0038] In a second aspect, some embodiments of the present application further provide a battery processing system, comprising the heating device provided by some embodiments of the first aspect.

[0039] The above description is only an overview of the technical solution of the present application. In order to more clearly understand the technical means of the present application, it can be implemented in accordance with the contents of the specification. In order to make the above and other purposes, features and advantages of the present application more obvious and easy to understand, the specific implementation methods of the present application are listed below. BRIEF DESCRIPTION OF THE DRAWINGS

[0040] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings required for use in the embodiments or the description of the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present application. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying creative labor.

[0041] Figure 1 A schematic top view of a heating device provided in some embodiments of the present application.

[0042] Figure 2 A three-dimensional schematic diagram of a heating device provided in some embodiments of the present application with one side of the structure hidden.

[0043] Figure 3 A schematic top view of a heating device provided in some embodiments of the present application with one side of the structure hidden.

[0044] Figure 4 A schematic front view of a heating device provided in some embodiments of the present application with one side of the structure hidden.

[0045] Figure 5 A schematic side view of a heating device provided in some embodiments of the present application with one side of the structure hidden.

[0046] Figure 6 for Figure 5 A local enlarged schematic diagram of point A in the middle.

[0047] Figure 7 for Figure 4 A local enlarged schematic diagram of point B in the middle.

[0048] The meanings of the marks in the figure are:

[0049] 100. Heating device;

[0050] 10. bearing member; 101. accommodating space; 102. mounting position; 11. first stopper; 111. first base; 112. first abutting portion; 113. first abutting surface; 114. first guide surface; 12. second stopper; 121. second base; 122. second abutting portion; 123. second abutting surface; 124. second guide surface;

[0051] 20. Heating assembly; 21. Heating element; 22. Avoidance structure; 23. Driving structure;

[0052] 30. Rack. DETAILED DESCRIPTION

[0053] The following embodiments of the technical solution of the present application are described in detail in conjunction with the accompanying drawings. The following embodiments are only used to more clearly illustrate the technical solution of the present application, and are therefore only used as examples, and cannot be used to limit the scope of protection of the present application.

[0054] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by technicians in the technical field to which this application belongs; the terms used herein are only for the purpose of describing specific embodiments and are not intended to limit this application; the terms "including" and "having" in the specification and claims of this application and the above-mentioned figure descriptions and any variations thereof are intended to cover non-exclusive inclusions.

[0055] In the description of the embodiments of the present application, the technical terms "first", "second", etc. are only used to distinguish different objects, and cannot be understood as indicating or implying relative importance or implicitly indicating the number, specific order or primary and secondary relationship of the indicated technical features. In the description of the embodiments of the present application, the meaning of "multiple" is more than two, unless otherwise clearly and specifically defined.

[0056] Reference to "embodiments" herein means that a particular feature, structure, or characteristic described in conjunction with the embodiments may be included in at least one embodiment of the present application. The appearance of the phrase in various locations in the specification does not necessarily refer to the same embodiment, nor is it an independent or alternative embodiment that is mutually exclusive with other embodiments. It is explicitly and implicitly understood by those skilled in the art that the embodiments described herein may be combined with other embodiments.

[0057] In the description of the embodiments of the present application, the term "and / or" is only a description of the association relationship of the associated objects, indicating that there may be three relationships. For example, A and / or B can represent: A exists alone, A and B exist at the same time, and B exists alone. In addition, the character " / " in this article generally indicates that the associated objects before and after are in an "or" relationship.

[0058] In the description of the embodiments of the present application, the term "multiple" refers to more than two (including two). Similarly, "multiple groups" refers to more than two groups (including two groups), and "multiple pieces" refers to more than two pieces (including two pieces).

[0059] In the description of the embodiments of the present application, the technical terms "center", "longitudinal", "lateral", "length", "width", "thickness", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside", "clockwise", "counterclockwise", "axial", "radial", "circumferential", etc. indicate orientations or positional relationships based on the orientations or positional relationships shown in the accompanying drawings, which are only for the convenience of describing the embodiments of the present application and simplifying the description, and do not indicate or imply that the referred device or element must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be understood as a limitation on the embodiments of the present application.

[0060] In the description of the embodiments of the present application, unless otherwise clearly specified and limited, technical terms such as "installed", "connected", "connected", "fixed" and the like should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium, and it can be the internal connection of two elements or the interaction relationship between two elements. For those of ordinary skill in the art, the specific meanings of the above terms in the embodiments of the present application can be understood according to the specific circumstances.

[0061] At present, from the perspective of market development, the application of power batteries is becoming more and more extensive. Power batteries are not only used in energy storage power systems such as hydropower, thermal power, wind power and solar power stations, but also widely used in electric vehicles such as electric bicycles, electric motorcycles, electric cars, as well as military equipment and aerospace and other fields. With the continuous expansion of the application field of power batteries, the market demand is also constantly expanding.

[0062] During the production and processing of batteries, the side plates and end plates of the battery module are mostly connected by welding, gluing, etc. During the connection process, gaps and other structures may remain, resulting in insufficient connections between the components. In addition, some structures in the battery module have low charging and discharging efficiency at low temperatures, which may lead to low battery charging and discharging efficiency.

[0063] In order to make the connections between the various components in the battery module tighter and to improve the charge and discharge efficiency of the battery module, the battery module is currently heated and pressurized after the battery module is assembled, so as to improve the tightness of the connection between the various components of the battery module, reduce the connection gap, and improve the stability of the battery module, thereby improving the charge and discharge efficiency of the battery module, and discharge water vapor, condensation, etc. in the battery module, thereby improving the safety performance of the battery module.

[0064] During the battery production and processing process, heating equipment is often used to heat and pressurize the battery module. During the heating and pressurization process, the battery module needs to be placed in a certain position so that each side of the battery module can be more evenly stressed and heated.

[0065] In current heating devices, battery cells are positioned mostly by means of a positioning pin structure. Specifically, there is a positioning hole at the bottom of the battery module (for example, at the bottom of the end plate). When the battery module is placed on the heating device, the positioning hole is aligned with the positioning pin and the positioning pin is inserted into the positioning hole.

[0066] This method places high demands on the equipment for placing the battery module; when the inner diameter of the positioning hole and the outer diameter of the positioning pin are slightly different, the battery module may easily bump into the positioning pin during placement and cause damage to the battery module, and may also easily cause damage to the positioning pin and affect subsequent construction; when the inner diameter of the positioning hole and the outer diameter of the positioning pin are significantly different, the positioning effect of the positioning pin is poor.

[0067] Based on the above considerations, in order to reduce damage to the battery module when placed in the heating device, some embodiments of the present application provide a heating device, which supports the battery module through a carrier and provides a first limit member on at least one side of the carrier along the first direction.

[0068] In such a heating device, the first limiter can limit the position of the battery module from the side. For example, the first limiter can limit the position of the battery module by abutting against the side of the battery module without the need to use a pin hole structure with high precision requirements for positioning, thereby reducing the need for positioning accuracy, thereby reducing the collision between the battery module and the heating device and reducing damage to the battery module.

[0069] In order to illustrate the technical solution described in this application, the following is a description with reference to specific drawings and embodiments.

[0070] First, refer to Figure 1 , Figure 2 Some embodiments of the present application provide a heating device 100 for heating a battery module.

[0071] Figure 1 In the figure, the direction of the X-axis is the length direction of the heating device 100 , and the direction of the Y-axis is the width direction of the heating device 100 .

[0072] The heating device 100 includes a carrier 10, a first limiting member 11 and a heating component 20, wherein the carrier 10 is used to support the battery module; the carrier 10 is provided with a first limiting member 11 on at least one side along the first direction, and the first limiting member 11 is used to support the side of the battery module; the heating component 20 is provided on opposite sides of the carrier 10 along the first direction.

[0073] The carrier 10 refers to a structure in the heating device 100 that is mainly used to support the battery module. In addition to being used to support the battery module, the carrier 10 is also used to provide a fixed foundation for structures such as the first limit member 11; the carrier 10 can be a plate-like structure, such as a square plate, a circular plate or a plate structure of other shapes. The carrier 10 can also be a columnar structure and form a platform, such as a cylindrical platform, a polygonal prism platform or a column structure of other shapes. The carrier 10 can also be a structure of other shapes; the material of the carrier 10 can include metal, plastic or other materials.

[0074] The heating component 20 refers to a structure in the heating device 100 for heating the battery module. The heating component 20 is arranged on opposite sides of the carrier 10 along a first direction to heat the battery module on the carrier 10. The heating component 20 may include a resistance wire structure and contact the battery module to achieve heating. The heating component 20 may also heat the battery module by hot air. The heating component 20 may also heat the battery module by other means.

[0075] The first limiter 11 refers to a structure in the heating device 100 for limiting the position of the battery module on the carrier 10; the first limiter 11 may be a columnar structure or a plate-like structure; the material of the first limiter 11 may include metal, plastic or other materials.

[0076] The carrier 10 is provided with a first limiting member 11 on at least one side along the first direction, and the first limiting member 11 is enabled to abut against the side of the battery module to limit the position of the first limiting member 11 on the carrier 10 by side positioning; accordingly, the first direction can be a direction perpendicular to the side of the battery module, for example, the first direction can be the direction where the Y-axis is located.

[0077] The first limiting member 11 can be arranged on any side of the carrier 10, in which case the battery module can be in contact with the first limiting member 11 during placement to position the battery module; the first limiting member 11 can also be arranged on both opposite sides of the carrier 10, in which case the battery module can be placed between the two first limiting members 11.

[0078] The first position limiting member 11 can be fixedly connected to the carrier 10, for example, by welding, gluing, etc.; the first position limiting member 11 can also be detachably connected to the carrier 10, for example, by snapping, screwing, etc.

[0079] The first limit member 11 is held against the side of the battery module. Compared with the way in which the positioning pin cooperates with the hole structure in the battery module on the bottom surface of the battery module, the first limit member 11 in this embodiment has lower requirements on the accuracy of battery module placement, thereby reducing the bump damage that may be caused by the placement position error of the battery module.

[0080] This embodiment enables the first limiting member 11 to abut the battery module along the first direction to limit the displacement of the battery module in the first direction and limit the position of the battery module on the carrier 10, thereby fixing the battery module; at the same time, the first limiting member 11 located on the side can reduce the collision with the battery module, and can also reduce the structural damage and failure caused by the collision, so that the first limiting member 11 can provide the limiting function more stably.

[0081] According to some embodiments of the present application, reference Figure 2 , Figure 4 The heating assembly 20 includes a heating element 21 that is movable along a first direction and disposed on one side of the carrier 10 . The heating element 21 is provided with a avoiding structure 22 that is opposite to the first limiting element 11 .

[0082] The heating component 20 refers to a structure in the heating device 100 for heating the battery module, and the heating element 21 refers to a structure in the heating component 20 for heating the battery module. The heating element 21 can generate heat by energizing an electric heating device, or can generate heat by other means.

[0083] The heating element 21 can have a variety of structures. For example, the heating element 21 is a plate structure, and a heating wire or a heating medium channel is arranged in the plate structure; for another example, the heating element 21 can include series and / or parallel pipes, and the pipes can be used for the flow of heating medium, and the pipes can also be used to accommodate the heating wire; it can be understood that the heating element 21 can also have other structures.

[0084] The heating element 21 can be movably arranged on one side of the carrier 10 along the first direction; for example, a slide rail can be set on one side of the carrier 10, and the heating element 21 is slidably connected to the slide rail; for another example, a telescopic cylinder can be set on one side of the carrier 10 to drive the heating element 21 to move relative to the carrier 10 through the telescopic cylinder; it can be understood that the carrier 10 can also be movably arranged on one side of the carrier 10 in other ways.

[0085] The heating element 21 can move along the first direction to approach or contact the battery module on the carrier 10 to heat the battery module.

[0086] The avoidance structure 22 refers to a structure that enables the heating element 21 to avoid the first limiting element 11 when approaching the battery module; the avoidance structure 22 can be a groove, a through hole or other structures, and can be specifically determined based on parameters such as the size of the first limiting element 11 in the first direction, the size of the heating element 21 in the first direction, and the distance between the heating element 21 and the battery module when heating the battery module.

[0087] Because the first limit member 11 is arranged on one side of the supporting member 10 along the first direction, and the supporting member 10 is used to support the battery module, the heating member 21 is likely to collide with the first limit member 11 when approaching the battery module along the first direction, and is blocked by the first limit member 11 and is difficult to get closer to the battery module; and because the closer the heating member 21 is to the battery module, the better the heating effect and the higher the heating efficiency, and the farther the heating member 21 is from the battery module, the lower the heating efficiency, so the obstruction of the first limit member 11 is likely to lead to a decrease in the heating efficiency.

[0088] Accordingly, in this embodiment, an avoidance structure 22 is provided on the heating element 21, and the avoidance structure 22 can be opposite to the first limiting member 11, so that when the heating element 21 approaches the battery module, the heating element 21 can avoid the first limiting member 11 at the avoidance structure 22, so as to reduce the obstruction of the heating element 21 by the first limiting member 11, so that the heating element 21 can be closer to the battery module or close to the battery module, thereby facilitating the heating element 21 to heat the battery module more efficiently.

[0089] refer to Figure 2 , Figure 4 In some embodiments, the avoidance structure 22 is a through hole that penetrates the heating element 21 .

[0090] The through hole passes through the heating element 21 . The shape of the through hole may be square, circular or other shapes. The shape of the through hole may be the same as that of the first limiting element 11 .

[0091] The main function of the through hole is to allow the first limiting member 11 to pass through so as to reduce the obstruction of the first limiting member 11 to the heating member 21. Accordingly, in order to reduce the collision between the first limiting member 11 and the heating member 21 when passing through the through hole, a gap should exist between the first limiting member 11 and the side wall of the through hole when the first limiting member 11 is in the through hole.

[0092] It is understandable that the through hole should not pass through the heating wire, pipeline and other structures of the heating element 21 to reduce the negative impact of the through hole on the heating capacity of the heating element 21.

[0093] When the heating element 21 approaches the battery module along the first direction, the first limiting member 11 can pass through the heating element 21 at the through hole, thereby further reducing the obstruction to the heating element 21 approaching the battery module.

[0094] In this embodiment, the avoidance structure 22 is a through hole that penetrates the heating element 21. When the heating element 21 approaches the battery module, the first limiting member 11 can pass through the heating element 21 at the through hole to further reduce the restriction of the first limiting member 11 on the movement of the heating element 21, and enable the heating element 21 to be closer to the battery module or close to the battery module, so as to facilitate heating and better heating of the battery module.

[0095] refer to Figure 1 , Figure 2 In some embodiments, the first limit members 11 are arranged on opposite sides of the support member 10 along the first direction, that is, the first limit members 11 are arranged on both sides of the support member 10 along the first direction, and only one first limit member 11 may be arranged on any side of the support member 10 along the first direction, or two or more first limit members 11 may be arranged; the number of first limit members 11 on both sides of the support member 10 may be the same or different.

[0096] Since the first limiting members 11 are provided on both sides of the carrier 10, the battery module can be placed between the first limiting members 11 on both sides of the carrier 10. The first limiting members 11 on both sides of the battery module can limit the activity space of the battery module in the first direction to better fix the position of the battery module.

[0097] refer to Figure 5 , Figure 6 In some embodiments, the first limiting member 11 includes a first base portion 111 and a soft first abutting portion 112 , the first base portion 111 is connected to the carrier 10 , and the first abutting portion 112 is connected to a side of the first base portion 111 facing the carrier 10 .

[0098] The first base 111 refers to a structure in the first limiting member 11 for providing a fixed foundation for other structures such as the first supporting portion 112. The first base 111 can be a plate-like structure, such as a square plate, a circular plate or a plate structure of other shapes. The first base 111 can also be a columnar structure, such as a cylindrical, prismatic or other shaped column structure. The first base 111 can also be an L-shaped or other special-shaped structure. The material of the first base 111 may include plastic, metal or other materials.

[0099] The first base 111 can be fixedly connected to the carrier 10, for example, fixedly connected to the carrier 10 by welding, gluing, etc.; the first base 111 can also be detachably connected to the carrier 10, for example, detachably connected to the carrier 10 by snapping, screwing, etc.; in some embodiments, the first base 111 is detachably connected to the carrier 10 to facilitate replacement, maintenance and adjustment of the position of the first base 111 relative to the carrier 10.

[0100] The first abutting portion 112 refers to a structure in the first limiting member 11 that faces the battery module or contacts the battery module. The first abutting portion 112 may be a plate-like structure, such as a square plate, a circular plate, or a plate structure of other shapes. The first abutting portion 112 may also be a columnar structure, such as a cylindrical, prismatic, or other column structures. The first abutting portion 112 is a soft structure, and its material may include rubber, foamed plastic, or other soft materials.

[0101] The first supporting portion 112 is disposed on the first base 111. The first supporting portion 112 can be fixedly connected to the first base 111, for example, fixedly connected to the first base 111 by gluing or the like; the first supporting portion 112 can also be detachably connected to the first base 111, for example, detachably connected to the first base 111 by snapping, screwing or the like.

[0102] The first abutting portion 112 is arranged on the side of the first base 111 facing the carrier 10. When the battery module is placed on the carrier 10, if the position of the battery module changes, the battery module can first collide with the soft first abutting portion 112 to reduce damage to the battery module. At the same time, the soft first abutting portion 112 is not easily damaged and can be used continuously.

[0103] After the battery module is placed on the carrier 10 , if the battery module contacts the first stopper 11 , the first abutting portion 112 can also reduce the friction damage of the first stopper 11 to the battery module, thereby further protecting the battery module.

[0104] In this embodiment, the first limiting member 11 includes a first abutting portion 112 facing the battery module, and the first abutting portion 112 is a soft component. When the battery module is placed on the carrier 10, the soft first abutting portion 112 can reduce the damage caused by the collision between the battery module and the first limiting member 11, and can also reduce the friction damage between the first limiting member 11 and the battery module after the battery module is placed on the carrier 10, thereby protecting the battery module.

[0105] refer to Figure 5 , Figure 6 In some embodiments, the first limiting member 11 includes a first supporting surface 113 and a first guide surface 114, the first supporting surface 113 is arranged on the side of the first limiting member 11 facing the supporting member 10; the first guide surface 114 is inclined relative to the first supporting surface 113, one end of the first guide surface 114 is connected to one end of the first supporting surface 113 away from the supporting member 10, and the other end of the first guide surface 114 extends away from the supporting member 10 along the first direction.

[0106] The first abutting surface 113 refers to the surface of the first limiting member 11 facing the carrier 10, and the main function of the first abutting surface 113 is to contact with the battery module to limit the displacement of the battery module; the first abutting surface 113 can be perpendicular to the surface of the carrier 10 carrying the battery module, and can also be inclined relative to the surface of the carrier 10 carrying the battery module; the first abutting surface 113 can be a plane or a curved surface; in some embodiments, the first abutting surface 113 is a plane and perpendicular to the surface of the carrier 10 carrying the battery module, so that the first abutting surface 113 can be parallel to the side of the battery module.

[0107] The first guide surface 114 refers to the inclined surface on the first limiting member 11, one end of the first guide surface 114 is connected to the end of the first supporting surface 113 away from the supporting member 10, and the other end of the first guide surface 114 extends in the first direction away from the supporting member 10. At the same time, the other end of the first guide surface 114 also extends in the height direction of the first limiting member 11 away from the first supporting surface 113.

[0108] The main function of the first guide surface 114 is to guide the battery cell to be placed on the preset position on the carrier 10 on one side of the first limiter 11; when the first limiter 11 is only provided on one side of the carrier 10, the preset position refers to the position on the carrier 10 on one side of the first limiter 11, and when the battery cell is placed at the preset position, the first limiter 11 can touch the battery module; when the first limiter 11 is provided on both sides of the carrier 10, the preset position refers to the position between the first limiters 11 on both sides of the carrier 10, and when the battery cell is placed at the preset position, the first limiter 11 can touch the battery module and fix the battery module.

[0109] For example, a first limiting member 11 is provided on both sides of the carrier 10. When the battery module is placed on the carrier 10, if the position of the battery module is deflected in the first direction, the edge of the battery module can contact the first guide surface 114. As the battery module falls, the battery module can slide along the first guide surface 114 and finally fall between the first limiting members 11 on the opposite sides of the carrier 10.

[0110] In this embodiment, the first limiting member 11 includes an inclined first guide surface 114. When the battery module is placed on the carrier 10, the first guide surface 114 can guide and correct the position of the battery module so that the battery module can be placed at a preset position and the collision between the battery module and the first limiting member 11 can be reduced.

[0111] In some embodiments, when the first limiting member 11 includes the first base portion 111 and the first abutting portion 112 , the first guiding surface 114 and the first abutting surface 113 are both formed on the first abutting portion 112 .

[0112] According to some embodiments of the present application, reference Figures 1 to 4 A second limiting member 12 is also provided on the carrier 10. The second limiting member 12 and the first limiting member 11 are respectively used to abut the adjacent side surfaces of the battery module.

[0113] The second limiter 12 refers to a structure in the heating device 100 for limiting the position of the battery module on the carrier 10; the second limiter 12 may be a columnar structure or a plate-like structure; the material of the second limiter 12 may include metal, plastic or other materials.

[0114] The second limiting member 12 and the first limiting member 11 are respectively used to abut the adjacent side surfaces of the battery module to limit its movable space on the adjacent two sides of the battery module; when there are multiple first limiting members 11 and they are respectively arranged on the opposite sides of the battery module, and there are multiple second limiting members 12 and they are respectively arranged on the opposite sides of the battery module, the first limiting member 11 and the second limiting member 12 can limit the displacement of the battery module from four directions to roughly determine the position of the battery module on the carrier 10.

[0115] The number of the second limiting members 12 can be one, in which case the battery module can be abutted against the second limiting member 12 to determine the position of the battery module on the carrier 10; the number of the second limiting members 12 can also be two or more, in which case multiple second limiting members 12 can be respectively located on opposite sides of the battery module, further limiting the activity space of the battery module.

[0116] The second position limiting member 12 can be fixedly connected to the carrier 10, for example, by welding, gluing, etc.; the second position limiting member 12 can also be detachably connected to the carrier 10, for example, by snapping, screwing, etc.

[0117] In this embodiment, a second limiting member 12 is provided and the second limiting member 12 and the first limiting member 11 respectively abut against adjacent sides of the battery module, so that the second limiting member 12 and the first limiting member 11 can respectively limit the displacement of the battery module in different directions, thereby further limiting the position of the battery module on the carrier 10.

[0118] refer to Figure 2 , Figure 3 In some embodiments, at least two second limit members 12 are provided on the carrier 10, and the at least two second limit members 12 are spaced apart along the second direction to support different sides of the battery module; the second direction is set at an angle to the first direction.

[0119] The number of the second limiting members 12 may be two, or three or more; a plurality of second limiting members 12 are spaced apart on the carrier 10 so that the plurality of second limiting members 12 can be disposed on opposite sides of the battery module, thereby facilitating the second limiting members 12 on opposite sides of the battery module to better limit the displacement of the battery module.

[0120] The second limiting members 12 are arranged at intervals along the second direction and are respectively located on both sides of the battery module, so that the second limiting members 12 can abut against the opposite sides of the battery module to limit the position of the second limiting members 12 on the carrier 10 by side positioning; accordingly, the second direction can be a direction perpendicular to the side of the battery module.

[0121] The second limit member 12 and the first limit member 11 are respectively used to support adjacent sides of the battery module, that is, the second direction should not be parallel to the first direction, so that the second limit member 12 and the first limit member 11 can limit the position of the battery module on the carrier 10 from different directions respectively; in some embodiments, the second direction can be perpendicular to the first direction. For example, when the first direction is the direction of the Y-axis, the second direction can be the direction of the X-axis.

[0122] When there are at least two first limiting members 11 and they are arranged on opposite sides of the battery module, the first limiting members 11 and the second limiting members 12 can limit the displacement of the battery module on the carrier 10 from four directions to roughly determine the position of the battery module on the carrier 10, thereby reducing the movement of the battery module during the heating process.

[0123] In this embodiment, the second limiting member 12 can limit the position of the battery module on the carrier 10 from two opposite sides of the battery module to reduce the movable space of the battery module in the second direction and better fix the position of the battery module.

[0124] refer to Figure 3 In some embodiments, at least one accommodating space 101 is defined between two adjacent second limiting members 12 in the second direction, and at least two first limiting members 11 are provided on both sides of the accommodating space 101 along the first direction.

[0125] The accommodation space 101 refers to a space on the carrier 10 for accommodating a battery module. The accommodation space 101 is defined between two second position-limiting members 12 adjacent to each other along the second direction. The accommodation space 101 is a space defined on the carrier 10 .

[0126] There may be only one, or two or more accommodating spaces 101 between two second limiting members 12 adjacent along the second direction; because the equipment (such as a robot) for transferring the battery modules can transfer either one battery module or two or more battery modules, there may be only one, or two or more accommodating spaces 101 between two second limiting members 12 adjacent along the second direction.

[0127] For example, when the distance between two second limiting members 12 adjacent to each other along the second direction remains unchanged, only one accommodating space 101 can be defined between the two. In this case, the battery module accommodated by the accommodating space 101 is larger in size in the second direction. At the same time, two accommodating spaces 101 can also be defined between two second limiting members 12 adjacent to each other along the second direction. In this case, the battery module accommodated by the accommodating space 101 is smaller.

[0128] At least two first limit members 11 are provided on both sides of the accommodating space 101 along the first direction to better limit the displacement of the battery module in the accommodating space 101 in the first direction, and at the same time can reduce the rotational deviation of the battery module in the accommodating space 101 around the first limit member 11.

[0129] For example, when two accommodating spaces 101 are defined between two second limiting members 12 adjacent to each other along the second direction, at least four first limiting members 11 are provided on both sides of the carrier 10 within the length range between the two second limiting members 12 adjacent to each other along the second direction.

[0130] It can be understood that during the production and processing process, the size of the battery module corresponding to the heating device 100 is usually one or a limited number of sizes. The size and number of the accommodating space 101 are determined based on the smallest battery module corresponding to the heating device 100, and the number and arrangement of the first limiting members 11 are determined accordingly. At this time, when battery modules of various sizes are placed between two adjacent second limiting members 12 along the second direction, there can be at least two first limiting members 11 on both sides of each battery module.

[0131] In this embodiment, at least two first limit members 11 are provided on both sides of the accommodating space 101 along the first direction. Since the first limit members 11 are mainly used to support the side of the battery module, and the length of the side of the battery module is usually longer, it is easy for the battery module to rotate and offset around the first limit member 11 when only one first limit member 11 is used. Therefore, in this embodiment, at least two first limit members 11 are provided on either side of the accommodating space 101 along the first direction to further limit the position of the battery module on the carrier 10.

[0132] refer to Figure 4 , Figure 7In some embodiments, the second limiting member 12 includes a second base 121 and a soft second abutting portion 122 , the second base 121 is connected to the carrier 10 , and the second abutting portion 122 is connected to a side of the second base 121 facing the carrier 10 .

[0133] Similar to the first limiting member 11, the second base 121 refers to a structure in the second limiting member 12 used to provide a fixed foundation for other structures such as the second supporting portion 122. The second base 121 can be a plate-like structure, such as a square plate, a circular plate or a plate structure of other shapes. The second base 121 can also be a columnar structure, such as a cylindrical, prismatic or other shaped column structure. The second base 121 can also be an L-shaped or other special-shaped structure; the material of the second base 121 can include plastic, metal or other materials.

[0134] The second base 121 can be fixedly connected to the carrier 10, for example, fixedly connected to the carrier 10 by welding, gluing, etc.; the second base 121 can also be detachably connected to the carrier 10, for example, detachably connected to the carrier 10 by snapping, screwing, etc.; in some embodiments, the second base 121 is detachably connected to the carrier 10 to facilitate replacement, maintenance and adjustment of the position of the second base 121 relative to the carrier 10.

[0135] The second supporting portion 122 refers to the structure in the second limiting member 12 that faces the battery module or contacts the battery module. The second supporting portion 122 may be a plate-like structure, such as a square plate, a circular plate or a plate structure of other shapes. The second supporting portion 122 may also be a columnar structure, such as a cylindrical, prismatic or other column structures. The second supporting portion 122 is a soft structure, and its material may include rubber, foam plastic or other soft materials.

[0136] The second supporting portion 122 is disposed on the second base 121. The second supporting portion 122 can be fixedly connected to the second base 121, for example, fixedly connected to the second base 121 by gluing or the like; the second supporting portion 122 can also be detachably connected to the second base 121, for example, detachably connected to the second base 121 by snapping, screwing or the like.

[0137] The second supporting portion 122 is arranged on the side of the second base 121 facing the carrier 10. When the battery module is placed on the carrier 10, if the position of the battery module changes, the battery module can first collide with the soft second supporting portion 122 to reduce damage to the battery module. At the same time, the soft second supporting portion 122 is not easily damaged and can be used continuously.

[0138] After the battery module is placed on the carrier 10 , if the battery module contacts the second stopper 12 , the second abutting portion 122 can also reduce the friction damage of the second stopper 12 to the battery module, thereby further protecting the battery module.

[0139] The technical solution of this embodiment makes the second limiting member 12 include a second abutting portion 122 facing the battery module, and makes the second abutting portion 122 a soft component. When the battery module is placed on the carrier 10, the soft second abutting portion 122 can reduce the damage caused by the collision between the battery module and the second limiting member 12, and can also reduce the friction damage between the second limiting member 12 and the battery module after the battery module is placed on the carrier 10, thereby playing a role in protecting the battery module.

[0140] refer to Figure 4 , Figure 7 In some embodiments, the second limiting member 12 includes a second supporting surface 123 and a second guide surface 124, and the second supporting surface 123 is arranged on the side of the second limiting member 12 facing the supporting member 10; the second guide surface 124 is inclined relative to the second supporting surface 123, one end of the second guide surface 124 is connected to one end of the second supporting surface 123 away from the supporting member 10, and the other end of the second guide surface 124 extends in a direction away from the supporting member 10.

[0141] Similar to the first limiting member 11, the second supporting surface 123 refers to the surface of the second limiting member 12 facing the carrier 10, and the main function of the second supporting surface 123 is to support the battery module to limit the displacement of the battery module; the second supporting surface 123 can be perpendicular to the surface of the carrier 10 supporting the battery module, and can also be inclined relative to the surface of the carrier 10 supporting the battery module; the second supporting surface 123 can be a plane or a curved surface; in some embodiments, the second supporting surface 123 is a plane and perpendicular to the surface of the carrier 10 supporting the battery module, so that the second supporting surface 123 can be parallel to the side of the battery module.

[0142] The second guide surface 124 refers to the inclined surface on the second limiting member 12 , one end of the second guide surface 124 is connected to the end of the second abutting surface 123 away from the supporting member 10 , and the other end of the second guide surface 124 extends in the second direction and in the height direction of the second limiting member 12 toward a direction away from the supporting member 10 .

[0143] The main function of the second guide surface 124 is to guide the battery cell to be placed on the preset position on the carrier 10 on one side of the second limit member 12; when there is only one second limit member 12 on the carrier 10, the preset position refers to the position on the carrier 10 on one side of the second limit member 12, and when the battery cell is placed at the preset position, the second limit member 12 can touch the battery module; when two or more second limit members 12 are spaced apart on the carrier 10, the preset position refers to the position between two adjacent and opposite second limit members 12, and when the battery cell is placed at the preset position, the second limit member 12 can touch the battery module or there is a gap between the side of the battery module.

[0144] For example, two second limiting members 12 are spaced apart on the carrier 10. When the battery module is placed on the carrier 10, if the position of the battery module is deflected in the second direction, the edge of the battery module can contact the second guide surface 124. As the battery module falls, the battery module can slide along the second guide surface 124 and finally fall between the second limiting members 12 on the opposite sides of the carrier 10.

[0145] In this embodiment, the second limiting member 12 includes an inclined second guide surface 124. When the battery module is placed on the carrier 10, the second guide surface 124 can guide and correct the position of the battery module so that the battery module can be placed at a preset position and the collision between the battery module and the second limiting member 12 can be reduced.

[0146] refer to Figure 3 In some embodiments, at least two installation positions 102 are provided on the carrier 10 , the second position limiting member 12 is detachably connected to the carrier 10 , and the second position limiting member 12 can be located in any installation position 102 .

[0147] The second position-limiting member 12 is detachably connected to the carrier 10 . The second position-limiting member 12 may be detachably connected to the carrier 10 by screwing, clamping or other means. In some embodiments, the second position-limiting member 12 is screwed to the carrier 10 .

[0148] The mounting position 102 refers to a position on the carrier 10 for mounting the second limiting member 12, and the mounting position 102 is limited to a position on the carrier 10; according to the specific method of detachable connection of the second limiting member 12, a threaded hole, a snap or other structure cooperating with the second limiting member 12 may be provided on the mounting position 102; in some embodiments, a threaded hole is provided on the mounting position 102 so that the second limiting member 12 can be detachably connected to the carrier 10 by bolts.

[0149] According to the size of the battery module to be heated by the heating device 100 , the second limiting member 12 can be located in different installation positions 102 , so that the heating device 100 can adapt to battery modules of various specifications, thereby increasing the compatibility of the heating device 100 .

[0150] In this embodiment, the second limit member 12 has at least two different installation positions 102 on the carrier 10, so that the second limit member 12 can adjust its position according to the different sizes of the battery module, so that the heating device 100 can be compatible with battery modules of different sizes and specifications, thereby improving the compatibility of the heating device 100.

[0151] According to some embodiments of the present application, reference Figure 4 , Figure 5 The heating device 100 further includes a frame 30, on which the carrier 10 and the heating assembly 20 are both arranged; the heating device 100 further includes a driving structure 23 arranged on the frame 30, and the driving structure 23 is used to drive the heating element 21 to move along the first direction.

[0152] The frame 30 refers to a structure in the heating device 100 for providing a fixed foundation for structures such as the carrier 10 and the heating assembly 20 . The frame 30 may include a frame structure, a plate structure or other structures.

[0153] The driving structure 23 refers to the structure in the heating device 100 for driving the heating element 21 to move. The driving structure 23 may include a cylinder, a hydraulic cylinder or other linear feed device. The driving structure 23 may also include a battery-matched gear rack, a battery-matched connecting rod group or other structures.

[0154] The driving structure 23 can be connected to the heating element 21, and can drive the heating element 21 along a first direction to approach or move away from the battery module; in some embodiments, when the heating element 21 is in contact with the battery module, the driving structure 23 can further drive the heating element 21 to move in a direction close to the battery module, so as to apply pressure to the battery module through the heating element 21.

[0155] In this embodiment, a driving structure 23 is provided, and the driving structure 23 drives the heating element 21 to move closer to or away from the battery module along a first direction, so that the heating element 21 can be close to or in contact with the battery module to better heat the battery module, and at the same time, a certain pressure can also be provided for the battery module, so that the heating element 21 can play a role of heating and pressurizing.

[0156] According to some embodiments of the present application, reference Figures 1 to 4The heating device 100 includes a frame 30, on which a carrier 10 is disposed. The length direction of the carrier 10 is parallel to the length direction (X) of the heating device, the width direction of the carrier 10 is parallel to the width direction (Y) of the heating device, two second limit members 12 are spaced apart on the carrier 10 along the length direction (X), and two first limit members 11 are disposed on both sides of the carrier 10 along the width direction (Y).

[0157] The heating element 21 is provided with two through holes penetrating the heating element 21 as avoidance structures 22 . The two avoidance structures 22 are respectively opposite to the two first limiting members 11 on the same side of the carrying member 10 .

[0158] A driving structure 23 is disposed on the frame 30 , so as to drive the heating element 21 to move toward the direction close to the carrier 10 through the driving structure 23 .

[0159] On the second aspect, some embodiments of the present application also provide a battery processing system, including the heating device 100 provided by some embodiments of the first aspect, and the battery production system can heat and pressurize the battery module after the battery module is assembled to improve the safety performance of the battery module and improve the stability of the battery module.

[0160] The above embodiments are only used to illustrate the technical solutions of the present application, rather than to limit them. Although the present application has been described in detail with reference to the aforementioned embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the aforementioned embodiments, or make equivalent replacements for some of the technical features therein. These modifications or replacements do not deviate the essence of the corresponding technical solutions from the spirit and scope of the technical solutions of the embodiments of the present application, and should all be included in the protection scope of the present application.

Claims

1. A heating device for heating a battery module, characterized in that: The heating device comprises: A carrier, used for carrying the battery module; A first limiter, the first limiter is provided on at least one side of the carrier along the first direction, and the first limiter is used to abut against the side surface of the battery module; A heating component is provided on two opposite sides of the carrier along the first direction.

2. The heating device according to claim 1, characterized in that The heating assembly comprises a heating element which is movable along a first direction and arranged on one side of the bearing element. The heating element is provided with a avoiding structure which is opposite to the first limiting element.

3. The heating device according to claim 2, characterized in that: The avoidance structure is a through hole penetrating the heating element.

4. The heating device according to any one of claims 1 to 3, characterized in that: The first limiting member is disposed at two opposite sides of the supporting member along the first direction.

5. The heating device according to claim 4, characterized in that: The carrier is also provided with a second limiting member, and the second limiting member and the first limiting member are respectively used to abut against adjacent side surfaces of the battery module.

6. The heating device according to claim 5, characterized in that: At least two second position-limiting members are disposed on the carrier, and the at least two second position-limiting members are spaced apart along the second direction to abut against different sides of the battery module; The second direction is arranged at an angle to the first direction.

7. The heating device according to claim 6, characterized in that At least one accommodating space is defined between two adjacent second limiting members in the second direction, and the accommodating space is used to accommodate the battery module. At least two first limiting members are provided on both sides of the accommodating space along the first direction.

8. The heating device according to any one of claims 5 to 7, characterized in that: At least two installation positions are provided on the carrier, the second position-limiting member is detachably connected to the carrier, and the second position-limiting member can be located in any of the installation positions.

9. The heating device according to any one of claims 1 to 8, characterized in that: The first position-limiting member includes a first base and a soft first abutting portion, the first base is connected to the bearing member, and the first abutting portion is connected to a side of the first base facing the bearing member.

10. The heating device according to any one of claims 1 to 9, characterized in that: The first position-limiting member comprises a first abutting surface and a first guiding surface, wherein the first abutting surface is arranged on a side of the first position-limiting member facing the bearing member; The first guide surface is inclined relative to the first abutting surface, one end of the first guide surface is connected to one end of the first abutting surface away from the supporting member, and the other end of the first guide surface extends in a direction away from the supporting member and the first abutting surface.

11. The heating device according to any one of claims 5 to 8, characterized in that: The second position-limiting member includes a second base and a soft second abutting portion, the second base is connected to the bearing member, and the second abutting portion is connected to a side of the second base facing the bearing member.

12. The heating device according to any one of claims 5 to 8, characterized in that: The second position-limiting member comprises a second abutting surface and a second guiding surface, and the second abutting surface is arranged on a side of the second position-limiting member facing the bearing member; The second guide surface is inclined relative to the second abutting surface, one end of the second guide surface is connected to one end of the second abutting surface away from the supporting member, and the other end of the second guide surface extends in a direction away from the supporting member and the second abutting surface.

13. The heating device according to claim 2 or 3, characterized in that: The heating device further comprises a frame, and the bearing member and the heating assembly are both arranged on the frame; The heating device further comprises a driving structure disposed on the frame, and the driving structure is used for driving the heating element to move along the first direction.

14. A battery processing system, characterized in that: Comprising the heating device as claimed in any one of claims 1 to 13.

Citation Information

Cited By

  • Heating device and battery processing system

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