Battery clamp and production equipment
By designing a liftable and movable battery clamp structure, the problem that existing clamps can only clamp a single specification battery is solved, and rapid adaptation and stable clamping of batteries of different specifications is achieved, and processing efficiency and accuracy are improved.
Patent Information
- Application Number
- CN202422096864.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-28
- Publication Date
- 2025-07-08
- Estimated Expiration
- 2034-08-28
AI Technical Summary
Existing battery fixtures can only clamp one battery size and cannot meet the clamping needs of different battery sizes.
A battery clamp is designed, including a base, first and second direction fixing components, guide components and compression components. Through a liftable and movable structure, the battery can be positioned and clamped in multiple directions to adapt to different specifications of batteries.
It realizes fast compatible clamping of batteries of different specifications, reduces manual workload, improves positioning accuracy and stability during processing, and prevents the battery from moving during secondary processing.
Smart Images

Figure CN223070787U_ABST
Abstract
Description
Technical Field
[0001] This application belongs to the technical field of new energy, and more specifically, relates to a battery fixture and production equipment. Background Art
[0002] Power batteries are the core components of new energy vehicles and an important direction for future energy transformation. With the accelerating global electrification process, the continuous expansion of the new energy electric vehicle market will directly drive the continuous growth of the demand for power batteries. The production process of power batteries needs to meet various process requirements. Due to the limitations of various technical processes, defective products will inevitably be produced during the production process. Some defective products can be processed through secondary processing, such as defective products generated during the processes of top cover welding and sealing nail welding can ensure the battery quality is the same as the primary welding effect after secondary processing and welding, realizing the improved secondary utilization of defective batteries. Fixtures are required to clamp the batteries during secondary processing. Currently, the fixtures in use can only clamp one specification of battery. Summary of the Utility Model
[0003] Embodiments of this application provide a battery fixture and production equipment that can be switched to clamp various specifications of batteries.
[0004] In a first aspect, embodiments of this application provide a battery fixture, including:
[0005] A base;
[0006] A first-direction fixing component, arranged on the base;
[0007] A second-direction fixing component, arranged on the base;
[0008] A first guiding component, arranged on the base in a liftable manner;
[0009] A second guiding component, arranged on the base;
[0010] A first-direction pressing assembly, arranged on the first guiding component and capable of moving relative to the first guiding component in a second direction;
[0011] A second-direction pressing assembly, arranged on the second guiding component and capable of moving relative to the second guiding component in the second direction.
[0012] In some possible implementation manners of the first aspect, the battery fixture further includes:
[0013] A lifting seat, arranged on the base;
[0014] The first guiding component is arranged on the base in a liftable manner through the lifting seat.
[0015] In some possible embodiments of the first aspect, the lifting seat includes:
[0016] A fixed seat body, disposed on the base;
[0017] A lifting block, movably disposed on the fixed seat body along the lifting direction;
[0018] The first guiding member is connected to the lifting block.
[0019] In some possible embodiments of the first aspect, the fixed seat body includes:
[0020] A first side seat body, disposed on the base;
[0021] A second side seat body, disposed on the base and spaced a specified distance from the first side seat body;
[0022] The lifting block includes:
[0023] A first lifting block, movably disposed on the first side seat body along the lifting direction;
[0024] A second lifting block, movably disposed on the second side seat body along the lifting direction;
[0025] The first guiding member is connected to the first lifting block and the second lifting block, and is located between the first side seat body and the second side seat body.
[0026] In some possible embodiments of the first aspect, the first side seat body is provided with a first sliding groove, the second side seat body is provided with a second sliding groove, the first lifting block is movably disposed in the first sliding groove along the lifting direction, and the second lifting block is movably disposed in the second sliding groove along the lifting direction.
[0027] In some possible embodiments of the first aspect, the first direction fixing member is provided with an opening;
[0028] At least a part of the second direction pressing assembly can be located in the opening.
[0029] In some possible embodiments of the first aspect, the second direction pressing assembly includes:
[0030] A second direction pressing member;
[0031] A second direction driving member, connected to the second direction pressing member to drive the second direction pressing member to move relative to the second guiding member along the second direction;
[0032] A second-direction mounting member is connected to the second-direction driving member and the second guiding member, and is movable relative to the second guiding member in the second direction, so that at least a part of the second-direction mounting member can move to be located at the opening.
[0033] In some possible embodiments of the first aspect, the second-direction mounting member includes:
[0034] A first mounting portion connected to the second-direction driving member;
[0035] A connecting portion connected to the first mounting portion and movable to be located at the opening;
[0036] A second mounting portion connected to the connecting portion and disposed on the second guiding member.
[0037] In some possible embodiments of the first aspect, the battery fixture further includes:
[0038] A second guiding mounting seat disposed on the base and having a movable opening;
[0039] The second guiding member is disposed on the base through the second guiding mounting seat;
[0040] The second-direction pressing assembly passes through the movable opening and is connected to the second guiding member;
[0041] The first-direction fixing member abuts against the second guiding mounting seat.
[0042] In some possible embodiments of the first aspect, the first-direction pressing assembly includes:
[0043] A first-direction pressing member;
[0044] A first-direction driving member connected to the first-direction pressing member to drive the first-direction pressing member to move relative to the first guiding member in the first direction;
[0045] A first-direction mounting member disposed on the first guiding member and movable relative to the first guiding member in the second direction;
[0046] The first-direction driving member is disposed on the first-direction mounting member.
[0047] In a second aspect, an embodiment of the present application provides a production device, including the battery fixture according to any one of the above.
[0048] The beneficial effects of the embodiments of the present application are:
[0049] The first-direction fixing component and the second-direction fixing component disposed on the base position the battery in the first direction and the second direction. The first-direction pressing component is used to press the battery in the first direction, so that the battery is clamped between the first-direction fixing component and the first-direction pressing component in the first direction. The second-direction pressing component is used to press the battery in the second direction, so that the battery is clamped between the second-direction fixing component and the second-direction pressing component in the second direction. The first guiding component is disposed on the base and can be raised or lowered relative to the base in the lifting direction, thereby driving the first-direction pressing component to be raised or lowered relative to the base in the lifting direction. The first-direction pressing component can also move relative to the first guiding component in the second direction, and the second-direction pressing component can move relative to the second guiding component in the second direction. In this way, the first-direction pressing component and the second-direction pressing component can be switched to different positions to clamp the battery, and can be switched to clamp batteries of various specifications. Brief Description of the Drawings
[0050] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the following will briefly introduce the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings in the following description are only some embodiments of the present application. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.
[0051] Figure 1 The front projection view of the battery fixture provided for the embodiment of the present application;
[0052] Figure 2 The perspective view of the battery fixture provided for the embodiment of the present application. Detailed Description of the Embodiments
[0053] In order to make the technical problems, technical solutions and beneficial effects to be solved by the present application clearer, the following will further describe the present application in detail in conjunction with the appended Figures 1 to 2 drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present application and are not used to limit the present application.
[0054] It should be noted that when an element is referred to as being "fixed to" or "disposed on" another element, it can be directly on the other element or indirectly on the other element. When an element is referred to as being "connected to" another element, it can be directly connected to the other element or indirectly connected to the other element.
[0055] It should be understood that the orientation or positional relationship indicated by the terms "length", "width", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. is based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the present application and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation to the present application.
[0056] It should be understood that the term "and / or" used in the description and claims of the present application refers to any combination and all possible combinations of one or more of the related listed items, and includes these combinations.
[0057] In addition, the terms "first" and "second" are only used for descriptive purposes, and should not be construed as indicating or implying relative importance or implicitly specifying the quantity of the indicated technical features. Thus, the features defined with "first" and "second" may explicitly or implicitly include one or more of such features. In the description of the present application, "a plurality of" means two or more, unless otherwise specifically defined.
[0058] An embodiment of the present application provides a battery fixture for clamping a battery.
[0059] Figure 1 It is the front projection view of the battery fixture provided by the embodiment of the present application. Figure 2 It is the perspective view of the battery fixture provided by the embodiment of the present application. Refer to Figure 1 and Figure 2 According to FIGS. and, the battery fixture provided by the embodiment of the present application includes a base 100, a first-direction fixing member 1, a second-direction fixing member 2, a first guiding member 3, a second guiding member 4, a first-direction pressing assembly 5, and a second-direction pressing assembly 6.
[0060] The base 100 is used to be installed on the corresponding processing machine tool to achieve quick fixation of the entire fixture, so as to ensure the accuracy of the position of the fixture and the processing machine tool.
[0061] The base 100 is also used to carry the battery 900. A groove can be provided at the bottom of the base 100, which can effectively prevent the accumulation of chips or waste residues from affecting the positioning of the battery 900 during the processing, and can improve the positioning accuracy.
[0062] The first-direction fixing member 1 is used to position the battery 900 in the first direction 101. The first-direction fixing member 1 is disposed on the base 100. The aforementioned first direction 101 may be the X-axis direction or the Y-axis direction.
[0063] Exemplarily, the first-direction fixing member 1 positions the long side of the battery 900. In other embodiments, the first-direction fixing member 1 positions the short side of the battery 900.
[0064] The second-direction fixing member 2 is used to position the battery 900 in the second direction 102. The second-direction fixing member 2 is disposed on the base 100. The aforementioned second direction 102 and the first direction 101 are different directions. The second direction 102 may be the Y-axis direction or the X-axis direction. The first direction 101 is perpendicular to the second direction 102; of course, in some other embodiments, the first direction 101 and the second direction 102 form an angle greater than 0° and less than 90°.
[0065] Exemplarily, the second-direction fixing member 2 positions the short side of the battery 900. In other embodiments, the second-direction fixing member 2 positions the long side of the battery 900.
[0066] The first guiding member 3 is used to guide the first-direction pressing assembly 5. The first guiding member 3 is disposed on the base 100 in a liftable manner. Specifically, the first guiding member 3 is disposed on the base 100 and can be raised or lowered relative to the base 100 along the lifting direction H, so as to change the position in the lifting direction H. The aforementioned lifting direction H may be the vertical direction or the height direction of the battery fixture.
[0067] The first guiding member 3 may specifically be a slide bar or a guide rail.
[0068] The second guiding member 4 is used to guide the second-direction pressing assembly 6. The second guiding member 4 is disposed on the base 100.
[0069] The second guiding member 4 may also specifically be a slide bar or a guide rail.
[0070] The first-direction pressing assembly 5 is used to press the battery 900 in the first direction 101, so that the battery 900 is clamped between the first-direction fixing member 1 and the first-direction pressing assembly 5 in the first direction 101. The first-direction pressing assembly 5 is disposed on the first guiding member 3 and can move relative to the first guiding member 3 along the second direction 102, so as to change the position in the second direction 102.
[0071] Exemplarily, the first-direction pressing assembly 5 presses the long side of the battery 900. In other embodiments, the first-direction pressing assembly 5 presses the short side of the battery 900.
[0072] The second-direction pressing assembly 6 is used to press the battery 900 in the second direction 102, so that the battery 900 is clamped between the second-direction fixing member 2 and the second-direction pressing assembly 6 in the second direction 102. The second-direction pressing assembly 6 is disposed on the second guiding member 4 and can move relative to the second guiding member 4 along the second direction 102, so as to change the position in the second direction 102.
[0073] Exemplarily, the second-direction pressing assembly 6 presses the short side of the battery 900. In other embodiments, the first-direction pressing assembly 5 presses the long side of the battery 900.
[0074] According to the above, the first-direction fixing member 1 and the second-direction fixing member 2 disposed on the base 100 position the battery 900 in the first direction 101 and the second direction 102. The first-direction pressing assembly 5 is used to press the battery 900 in the first direction 101, so that the battery 900 is clamped between the first-direction fixing member 1 and the first-direction pressing assembly 5 in the first direction 101. The second-direction pressing assembly 6 is used to press the battery 900 in the second direction 102, so that the battery 900 is clamped between the second-direction fixing member 2 and the second-direction pressing assembly 6 in the second direction 102. It can realize the limit and clamping fixation in multiple directions such as left and right and front and back, effectively prevent the movement of the battery during the secondary processing process, and can realize the secondary improvement of the battery; The first guiding member 3 is disposed on the base 100 and can rise or fall relative to the base 100 along the lifting direction H, thereby driving the first-direction pressing assembly 5 to rise or fall relative to the base 100 along the lifting direction H. The first-direction pressing assembly 5 can also move relative to the first guiding member 3 along the second direction 102, and the second-direction pressing assembly 6 can move relative to the second guiding member 4 along the second direction 102. In this way, the first-direction pressing assembly 5 and the second-direction pressing assembly 6 can be switched to different positions to clamp the battery and can be switched to clamp batteries of various specifications.
[0075] The first guiding member 3 and the second guiding member 4 can have scales distributed along the second direction 102, which can accurately define the actual positions of batteries of different blueprints. When switching to process batteries of different blueprints, it can quickly and accurately move into place, reduce the manual workload, and realize the quick compatibility of the fixture with batteries of various specifications.
[0076] Reference Figure 2 As described above, the first-direction pressing assembly 5 can include a first-direction pressing member 51, a first-direction driving member 52, and a first-direction mounting member 53.
[0077] The first-direction pressing member 51 is used to abut against the battery 900 in the first direction 101.
[0078] The first-direction driving member 52 is connected to the first-direction pressing member 51 to drive the first-direction pressing member 51 to move relative to the first guiding member 3 along the first direction 101, so that the first-direction pressing member 51 moves to abut against the battery 900, realizing the pressing of the battery 900.
[0079] The first-direction driving member 52 can specifically be a cylinder or a linear motor.
[0080] The first-direction mounting member 53 is disposed on the first guiding member 3 and is movable relative to the first guiding member 3 along the second direction 102.
[0081] The first-direction driving member 52 is disposed on the first-direction mounting member 53. Thus, the first-direction mounting member 53 can drive the first-direction driving member 52 and the first-direction pressing member 51 to move relative to the first guiding member 3 along the second direction 102, so as to adjust the positions of the first-direction driving member 52 and the first-direction pressing member 51 in the second direction 102 to adapt to batteries of different sizes in the second direction 102.
[0082] Reference Figure 2 , the above-mentioned first-direction mounting member 53 may include a first-direction mounting seat 531 and a first-direction slider 532.
[0083] The first-direction driving member 52 of the first-direction pressing assembly 5 is disposed on the first-direction mounting seat 531.
[0084] The first-direction mounting seat 531 is disposed on the first-direction slider 532 and is movable relative to the first-direction slider 532 along the first direction 101 to adjust the position of the first-direction pressing assembly 5 in the first direction 101.
[0085] The first-direction slider 532 is placed on the first guiding member 3 and is movable relative to the first guiding member 3 along the second direction 102.
[0086] Reference Figure 2 , the above-mentioned first-direction fixing member 1 is provided with an opening 10.
[0087] At least a part of the second-direction pressing assembly 6 can be located in the opening 10.
[0088] When the second-direction pressing assembly 6 moves relative to the second guiding member 4 along the second direction 102, at least a part of the second-direction pressing assembly 6 will move to be located in the opening 10 of the first-direction fixing member 1, so as to prevent the first-direction fixing member 1 from blocking the movement of the second-direction pressing assembly 6. Thus, the size of the first-direction fixing member 1 can be larger, and it can position a battery 900 of a larger size, and further can clamp a battery 900 of a larger size.
[0089] Reference Figure 2 , the above-mentioned second-direction pressing assembly 6 may include a second-direction pressing member 61, a second-direction driving member 62, and a second-direction mounting member 63.
[0090] The second-direction pressing member 61 is used to abut against the battery 900 in the second direction 102, so that the battery 900 is clamped between the second-direction pressing member 61 and the second-direction pressing member 61 in the second direction 102.
[0091] The second-direction driving component 62 is connected to the second-direction pressing component 61 to drive the second-direction pressing component 61 to move relative to the second guiding component 4 along the second direction 102.
[0092] The second-direction driving component 62 can specifically be a cylinder or a linear motor.
[0093] The second-direction mounting component 63 is connected to the second-direction driving component 62 and the second guiding component 4, and can move relative to the second guiding component 4 along the second direction 102, so that at least a part of the second-direction mounting component 6 can move to be located at the opening 10.
[0094] Reference Figure 2 , the above-mentioned second-direction mounting component 63 can include a first mounting part 631, a connecting part 632 and a second mounting part 633.
[0095] The first mounting part 631 is connected to the second-direction driving component 62.
[0096] The connecting part 632 is connected to the first mounting part 631 and can move to be located at the opening 10 of the first-direction fixing component 1.
[0097] The second mounting part 633 is connected to the connecting part 632 and is arranged on the second guiding component 4, so as to connect the second-direction mounting component 63 to the second guiding component 4.
[0098] The connecting part 632 of the second-direction mounting component 63 is connected to the first mounting part 631 and the second mounting part 633. The size of the connecting part 632 can be smaller, so that the opening 10 of the first-direction fixing component 1 is also smaller, which can improve the structural strength of the first-direction fixing component 1, and can also prevent chips or waste residues during processing from accumulating on the second guiding component 4 through the opening 10, and can ensure smooth guiding.
[0099] Reference Figure 2 , the above-mentioned battery fixture can further include a lifting seat 7.
[0100] The lifting seat 7 is arranged on the base 100.
[0101] The first guiding component 3 is arranged on the base 100 in a liftable manner through the lifting seat 7, so as to drive the first-direction pressing assembly 5 to rise or fall along the lifting direction H, so as to adapt to batteries of different sizes in the lifting direction H.
[0102] In some other embodiments, the first guiding component 3 is arranged on the base 100 in a liftable manner through a cylinder.
[0103] Reference Figure 2 , the above-mentioned lifting seat 7 can include a fixed seat body 71 and a lifting block 72.
[0104] The fixed base 71 is arranged on the base 100.
[0105] The lifting block 72 is movably arranged on the fixed base 71 along the lifting direction H.
[0106] The first guiding component 3 is connected to the lifting block 72 and can move relative to the fixed base 71 along the lifting direction H following the lifting block 72.
[0107] Reference Figure 1 and Figure 2 As described above, the fixed base 71 may include a first side base 71A and a second side base 71B.
[0108] The first side base 71A is arranged on the base 100.
[0109] The second side base 71B is arranged on the base 100 and is spaced apart from the first side base 71A by a specified distance. The aforementioned specified distance is used to place the first guiding component 3.
[0110] Reference Figure 1 and Figure 2 As described above, the lifting block 72 may include a first lifting block 72A and a second lifting block 72B.
[0111] The first lifting block 72A is movably arranged on the first side base 71A along the lifting direction H.
[0112] The second lifting block 72B is movably arranged on the second side base 71B along the lifting direction H.
[0113] The first guiding component 3 is connected to the first lifting block 72A and the second lifting block 72B, and is located between the first side base 71A and the second side base 71B. It can not only realize the lifting of the first-direction pressing component 5 in the lifting direction H, but also realize the position adjustment of the first-direction pressing component 5 in the second direction 102, which can simplify the structure.
[0114] The first side base 71A is provided with a first sliding groove 711, and the second side base 71B is provided with a second sliding groove 712. The first lifting block 72A is movably arranged in the first sliding groove 711 along the lifting direction H, and the second lifting block 72B is movably arranged in the second sliding groove 712 along the lifting direction H.
[0115] In some other embodiments, the first sliding groove 711 and the second sliding groove 712 can be replaced by slide rails.
[0116] Reference Figure 1 and Figure 2 As described above, the battery fixture may further include a second guiding mounting base 8.
[0117] The second guiding mounting seat 8 is arranged on the base 100 and is provided with a movable opening 80. The movable opening 80 can specifically be a through hole or a notch.
[0118] The second guiding component 4 is arranged on the base 100 through the second guiding mounting seat 8.
[0119] The second-direction pressing assembly 6 passes through the movable opening 80 and is connected to the second guiding component 4.
[0120] The first-direction fixing component 1 abuts against the second guiding mounting seat 8.
[0121] The provision of the movable opening 80 enables the second-direction pressing assembly 6 to pass through the movable opening 80 and be connected to the second guiding component 4. This can not only enable the second-direction pressing assembly 6 to move relative to the second guiding component 4 along the second direction 102, but also enable the first-direction fixing component 1 to abut against the second guiding mounting seat 8, thereby improving the structural stability of the first-direction fixing component 1.
[0122] The battery fixture provided by the embodiment of the present application limits the degrees of freedom of the battery in each direction, which can effectively prevent the battery from moving during secondary processing. Through adjustments in each direction, full adaptation processing of various specifications of batteries can be achieved, and it can quickly switch to clamping various specifications of batteries.
[0123] The battery fixture provided by the embodiment of the present application can be used as a battery repair fixture, which can achieve rapid positioning and clamping of power batteries, effectively prevent the movement of power batteries during the process of welding mark grinding, can quickly repair different models of power batteries by directly setting multiple positions, and can achieve rapid switching and processing between various size blueprints, quickly and promptly.
[0124] The embodiment of the present application further provides a production device, which includes the battery fixture provided by any of the above embodiments. The aforementioned production device can be a laser processing device or a machining device.
[0125] The above are only the preferred embodiments of the present application and are not intended to limit the present application. Any modifications, equivalent replacements, and improvements made within the spirit and principle of the present application shall be included within the protection scope of the present application.
Claims
1. A battery fixture, characterized in that, Comprising: Base; First-direction fixing component, disposed on the base; Second-direction fixing component, disposed on the base; First guiding component, disposed on the base in a liftable manner; Second guiding component, disposed on the base; First-direction pressing assembly, disposed on the first guiding component and capable of moving relative to the first guiding component in the second direction; Second-direction pressing assembly, disposed on the second guiding component and capable of moving relative to the second guiding component in the second direction.
2. The battery fixture according to claim 1, wherein The battery fixture further comprises: Lifting seat, disposed on the base; The first guiding component is disposed on the base in a liftable manner through the lifting seat.
3. The battery fixture according to claim 2, wherein The lifting seat comprises: Fixed seat body, disposed on the base; Lifting block, movably disposed on the fixed seat body in the lifting direction; The first guiding component is connected to the lifting block.
4. The battery fixture according to claim 3, characterized in that, The fixed seat body comprises: First side seat body, disposed on the base; Second side seat body, disposed on the base and spaced from the first side seat body by a specified distance; The lifting block comprises: First lifting block, movably disposed on the first side seat body in the lifting direction; Second lifting block, movably disposed on the second side seat body in the lifting direction; The first guiding component is connected to the first lifting block and the second lifting block, and is located between the first side seat body and the second side seat body.
5. The battery fixture according to claim 4, characterized in that, The first side seat body is provided with a first sliding groove, the second side seat body is provided with a second sliding groove, the first lifting block is movably disposed in the first sliding groove in the lifting direction, and the second lifting block is movably disposed in the second sliding groove in the lifting direction.
6. The battery fixture according to claim 1, wherein, The first-direction fixing component is provided with an opening; At least a part of the second-direction pressing assembly can be located in the opening.
7. The battery fixture according to claim 6, characterized in that, The second-direction pressing assembly comprises: Second-direction pressing component; Second-direction driving component, connected to the second-direction pressing component to drive the second-direction pressing component to move relative to the second guiding component in the second direction; Second-direction mounting component, connected to the second-direction driving component and the second guiding component, and capable of moving relative to the second guiding component in the second direction, such that at least a part of the second-direction mounting component can move to be located in the opening.
8. The battery fixture according to claim 7, characterized in that, The second-direction mounting component comprises: First mounting part, connected to the second-direction driving component; Connecting part, connected to the first mounting part and capable of moving to be located in the opening; Second mounting part, connected to the connecting part and disposed on the second guiding component.
9. The battery fixture according to any one of claims 1 to 8, characterized in that, The battery fixture further comprises: Second guiding mounting seat, disposed on the base and provided with a movable opening; The second guiding component is disposed on the base through the second guiding mounting seat; The second-direction pressing assembly passes through the movable opening and is connected to the second guiding component; The first-direction fixing component abuts against the second guiding mounting seat.
10. A production device, characterized in that, Comprising the battery fixture according to any one of claims 1 to 9.