Power lithium battery alloy nameplate and nameplate stamping device
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-15
- Publication Date
- 2026-08-11
AI Technical Summary
[0004]但是,通过多组螺栓紧固铭牌的操作步骤较为繁复,需要频繁的对螺栓进行松紧,增加了铭牌冲压的时间,从而降低了对品牌的冲压效率,因此我们需要提出一种动力锂电池合金铭牌及铭牌冲压装置
[0016] This utility model mainly utilizes the cooperation between the feeding mechanism, the pressing mechanism, and the stamping groove. The feeding mechanism pushes the alloy nameplate to be stamped into the stamping groove, and during the pushing process, the pressing mechanism presses the two ends of the upper surface of the alloy nameplate, thereby achieving the operation of pressing and fixing upon pushing in. This facilitates rapid positioning of the alloy nameplate, improves the fixing efficiency of the alloy nameplate, shortens the stamping time of the alloy nameplate, and facilitates the unloading of the previously stamped alloy nameplate when stamping the next alloy nameplate, thus improving the stamping efficiency of the alloy nameplate.
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Figure CN224614839U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of nameplate stamping technology, specifically to a power lithium battery alloy nameplate and a nameplate stamping device. Background Technology
[0002] After power lithium battery products are launched on the market, nameplates need to be affixed to the products. The nameplates provide users with manufacturer trademark identification, brand differentiation, and product parameters. The nameplates are also called labels. The nameplates are mainly used to record some technical data of the manufacturer and rated working conditions so that they can be used correctly and will not damage the equipment. To obtain the embossed pattern of the nameplate or trademark plate, a stamping machine is needed to punch holes.
[0003] Traditional stamping machines require manual placement of the nameplate in the stamping area and the use of bolts on both sides to fix the four corners of the nameplate during stamping, thereby ensuring the stability of the nameplate during stamping and preventing stamping deviation.
[0004] However, the operation of fastening the nameplate with multiple bolts is quite complicated, requiring frequent tightening and loosening of the bolts, which increases the stamping time of the nameplate and reduces the stamping efficiency of the brand. Therefore, we need to propose a power lithium battery alloy nameplate and a nameplate stamping device. Utility Model Content
[0005] The purpose of this utility model is to provide a power lithium battery alloy nameplate and a nameplate stamping device. By setting up a feeding mechanism and a pressing mechanism, the feeding mechanism can quickly push the nameplate into the stamping groove, and then the pressing mechanism can press the nameplate tightly, reducing the number of operation steps for workers and thus improving the stamping efficiency of the nameplate, so as to solve the problems mentioned in the background art.
[0006] To achieve the above objectives, this utility model provides the following technical solution: a nameplate stamping device, comprising:
[0007] The stamping table, and the pressing mechanism and feeding mechanism installed on the stamping table, push the power lithium battery alloy nameplate to the pressing mechanism for fastening through the feeding mechanism;
[0008] A gantry frame is installed on a stamping table, and a stamping mechanism for stamping alloy nameplates is installed on the gantry frame. A stamping groove is opened on the stamping table directly below the stamping mechanism, and one end of the stamping groove is open.
[0009] Preferably, the pressing mechanism includes two sets of symmetrically arranged vertical plates. A first horizontal plate is fixedly connected to the lower end of one side of the vertical plate, and a second horizontal plate is fixedly connected to the upper end of the other side of the vertical plate. Multiple sets of limiting rods are inserted into the second horizontal plate. A spring located below the second horizontal plate is sleeved on the outer side of each set of limiting rods, and a pressure plate is fixedly connected to the lower end of each set of limiting rods. A guide plate is integrally formed on one side of the pressure plate.
[0010] Preferably, the stamping platform has multiple sets of adjustment slots, and two sets of first sliders that slide in the adjustment slots are fixedly connected to the lower surface of the first horizontal plate. Two sets of locking bolts that pass through the first sliders are inserted into the first horizontal plate, and the lower ends of the locking bolts abut against the bottom of the adjustment slots.
[0011] Preferably, the feeding mechanism includes a second hydraulic cylinder mounted on a stamping table, a push plate fixedly connected to the telescopic end of the second hydraulic cylinder, a baffle fixedly connected to the upper end of one side of the push plate, two sets of second sliders fixedly connected to the lower surface of the push plate, and a sliding groove for sliding the two sets of second sliders opened on the upper surface of the stamping table.
[0012] Preferably, the stamping mechanism includes a first hydraulic cylinder and a stamping template. The telescopic end of the first hydraulic cylinder passes through the gantry frame and is fixedly connected to a mounting base plate. Multiple sets of connecting screws are fixedly connected to the upper surface of the stamping template. All sets of connecting screws pass through the mounting base plate and are threaded with locking nuts. Two sets of guide rods passing through the gantry frame are fixedly connected to the upper surface of the mounting base plate.
[0013] Preferably, it also includes two sets of limiting plates, and two sets of insert rods are fixedly connected to the lower surface of each of the two sets of limiting plates. Multiple sets of insertion holes for inserting the insert rods are opened on the stamping table, and two sets of nameplate stacking tables for stacking alloy nameplates are symmetrically installed on the upper surface of the stamping table.
[0014] A power lithium battery alloy nameplate is affixed to a nameplate stamping device as described above.
[0015] Compared with the prior art, the beneficial effects of this utility model are:
[0016] This utility model mainly utilizes the cooperation between the feeding mechanism, the pressing mechanism, and the stamping groove. The feeding mechanism pushes the alloy nameplate to be stamped into the stamping groove, and during the pushing process, the pressing mechanism presses the two ends of the upper surface of the alloy nameplate, thereby achieving the operation of pressing and fixing upon pushing in. This facilitates rapid positioning of the alloy nameplate, improves the fixing efficiency of the alloy nameplate, shortens the stamping time of the alloy nameplate, and facilitates the unloading of the previously stamped alloy nameplate when stamping the next alloy nameplate, thus improving the stamping efficiency of the alloy nameplate. Attached Figure Description
[0017] Figure 1 This is a schematic diagram of the overall structure of this utility model;
[0018] Figure 2 This is a schematic diagram of the stamping mechanism of this utility model;
[0019] Figure 3 This is a schematic diagram of the pressing mechanism of this utility model;
[0020] Figure 4 This is a schematic diagram of the feeding mechanism of this utility model.
[0021] In the diagram: 1. Stamping table; 2. Gantry frame; 3. Stamping mechanism; 31. First hydraulic cylinder; 32. Mounting base plate; 33. Guide rod; 34. Stamping template; 35. Connecting screw; 36. Locking nut; 4. Pressing mechanism; 41. Vertical plate; 42. First horizontal plate; 43. Second horizontal plate; 44. Locking bolt; 45. First slider; 46. Limiting rod; 47. Spring; 48. Pressure plate; 49. Guide plate; 5. Feeding mechanism; 51. Second hydraulic cylinder; 52. Push plate; 53. Baffle; 54. Second slider; 6. Limiting plate; 61. Insert rod; 7. Nameplate stacking table; 8. Adjusting groove; 9. Stamping groove; 10. Insertion hole; 11. Slide groove. Detailed Implementation
[0022] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0023] Please see Figure 1-4 This utility model provides a technical solution: a nameplate stamping device, comprising:
[0024] The stamping table 1, and the pressing mechanism 4 and feeding mechanism 5 installed on the stamping table 1, push the power lithium battery alloy nameplate to the pressing mechanism 4 for fastening through the feeding mechanism 5;
[0025] A gantry 2 is installed on a stamping table 1. A stamping mechanism 3 for stamping alloy nameplates is installed on the gantry 2. A stamping groove 9 is opened on the stamping table 1, located directly below the stamping mechanism 3, and one end of the stamping groove 9 is open.
[0026] The pressing mechanism 4 includes two sets of symmetrically arranged vertical plates 41. A first horizontal plate 42 is fixedly connected to the lower end of one side of the vertical plate 41, and a second horizontal plate 43 is fixedly connected to the upper end of the other side of the vertical plate 41. Multiple sets of limiting rods 46 are inserted into the second horizontal plate 43. A spring 47 located below the second horizontal plate 43 is sleeved on the outer side of each set of limiting rods 46. A pressure plate 48 is fixedly connected to the lower end of the multiple sets of limiting rods 46. A guide plate 49 is integrally formed on one side of the pressure plate 48.
[0027] Specifically, when the alloy nameplate is pushed in by the feeding mechanism 5, the alloy nameplate will first come into contact with the guide plate 49, and then move under the guidance of the guide plate 49 to the bottom of the pressure plate 48. The pressure plate 48 slides up and down along the side wall of the upright plate 41 through multiple sets of limit rods 46, and is fastened to the alloy nameplate under the elastic action of multiple sets of springs 47, so as to prevent the alloy nameplate from shifting position during stamping and improve the stamping quality of the alloy nameplate.
[0028] Multiple sets of adjustment slots 8 are provided on the stamping table 1. Two sets of first sliders 45 that slide in the adjustment slots 8 are fixedly connected to the lower surface of the first horizontal plate 42. Two sets of locking bolts 44 that pass through the first sliders 45 are inserted into the first horizontal plate 42, and the lower end of the locking bolts 44 abuts against the bottom of the adjustment slot 8.
[0029] It is worth noting that the clamping mechanism 4 can adjust the spacing on the stamping table 1 through the adjusting groove 8, thereby accommodating the fixing of alloy nameplates of different sizes and improving the applicability. At the same time, the end section of the adjusting groove 8 is rectangular, while the other end section for the sliding of the first slider 45 is trapezoidal, and the side section of the first slider 45 is trapezoidal, ensuring that the clamping mechanism 4 will not loosen during movement, thereby improving the efficiency of position adjustment and facilitating subsequent disassembly and maintenance. The locking bolt 44 further improves the stability of the clamping mechanism 4 installation.
[0030] The feeding mechanism 5 includes a second hydraulic cylinder 51 installed on the stamping table 1. A push plate 52 is fixedly connected to the telescopic end of the second hydraulic cylinder 51. A baffle 53 is fixedly connected to the upper end of one side of the push plate 52. Two sets of second sliders 54 are fixedly connected to the lower surface of the push plate 52. A groove 11 for sliding the two sets of second sliders 54 is opened on the upper surface of the stamping table 1.
[0031] The second hydraulic cylinder 51 can drive the push plate 52 to move, and the baffle 53 can prevent the alloy nameplate from tilting during the pushing process, thereby improving the stability of pushing the alloy nameplate into the stamping groove 9. At the same time, the second slider 54 improves the stability of the push plate 52 movement.
[0032] The stamping mechanism 3 includes a first hydraulic cylinder 31 and a stamping template 34. The telescopic end of the first hydraulic cylinder 31 passes through the gantry frame 2 and is fixedly connected to the mounting base plate 32. Multiple sets of connecting screws 35 are fixedly connected to the upper surface of the stamping template 34. All sets of connecting screws 35 pass through the mounting base plate 32 and are threadedly connected to locking nuts 36. Two sets of guide rods 33 that pass through the gantry frame 2 are fixedly connected to the upper surface of the mounting base plate 32.
[0033] By using the connecting screw 35 to pass through the mounting base plate 32, the connecting screw 35 can be easily fastened by the locking nut 36, thereby facilitating the assembly and disassembly of different stamping templates 34 and the stamping of information of different power lithium batteries, thus improving practicality.
[0034] It also includes two sets of limiting plates 6, and two sets of insert rods 61 are fixedly connected to the lower surface of the two sets of limiting plates 6. Multiple sets of insertion holes 10 for inserting the insert rods 61 are opened on the stamping table 1. Two sets of nameplate stacking tables 7 for stacking alloy nameplates are symmetrically installed on the upper surface of the stamping table 1.
[0035] In addition, the position of the limiting plate 6 can be adjusted according to the specifications of the nameplate. The insertion rod 61 can be inserted into the insertion hole 10 at different positions to facilitate the adjustment of the distance between the two sets of limiting plates 6. This not only restricts the movement path of the alloy nameplate, but also ensures that the alloy nameplate can move accurately under the pressing mechanism 4, which facilitates the correction of the angle of the alloy nameplate.
[0036] A power lithium battery alloy nameplate is affixed to a nameplate stamping device as described above.
[0037] In use, the alloy nameplates placed on the nameplate stacking table 7 are placed between the two sets of limiting plates 6 and the push plate 52. The second hydraulic cylinder 51 pushes the push plate 52, causing the push plate 52 to push the alloy nameplates along the limiting plates 6 towards the stamping groove 9. The alloy nameplates will first contact the guide plate, which in turn causes the guide plate to drive the pressure plate 48 to compress the spring 47, increasing the elastic potential energy of the spring 47. During the continuous movement of the alloy nameplates, the alloy nameplates will move to the bottom of the pressure plate 48. The elastic action of the spring 47 will cause the pressure plate 48 to fasten the alloy nameplates, so that the stamping mechanism 3 on the gantry 2 can perform the stamping work, stamping the information of the power lithium battery onto the alloy nameplates, thus completing the stamping work of the alloy nameplates. The above steps can be repeated for subsequent alloy nameplate stamping. During the process of pushing the alloy nameplates into the stamping groove 9, the stamped alloy nameplates will be pushed out of the stamping groove 9, which facilitates the collection of alloy nameplates and improves the efficiency of alloy nameplate stamping.
[0038] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A nameplate stamping device, characterized in that, include: The stamping table (1), and the pressing mechanism (4) and feeding mechanism (5) installed on the stamping table (1) push the power lithium battery alloy nameplate to the pressing mechanism (4) for fastening through the feeding mechanism (5); A gantry (2) is installed on a stamping table (1). A stamping mechanism (3) for stamping alloy nameplates is installed on the gantry (2). A stamping groove (9) is opened on the stamping table (1) directly below the stamping mechanism (3), and one end of the stamping groove (9) is open.
2. The nameplate stamping device according to claim 1, characterized in that: The pressing mechanism (4) includes two sets of symmetrically arranged vertical plates (41). A first horizontal plate (42) is fixedly connected to the lower end of one side of the vertical plate (41), and a second horizontal plate (43) is fixedly connected to the upper end of the other side of the vertical plate (41). Multiple sets of limiting rods (46) are inserted into the second horizontal plate (43). A spring (47) located below the second horizontal plate (43) is sleeved on the outer side of each of the multiple sets of limiting rods (46). A pressure plate (48) is fixedly connected to the lower end of the multiple sets of limiting rods (46). A guide plate (49) is integrally formed on one side of the pressure plate (48).
3. The nameplate stamping device according to claim 2, characterized in that: The stamping table (1) has multiple sets of adjustment slots (8). The lower surface of the first horizontal plate (42) is fixedly connected with two sets of first sliders (45) that slide in the adjustment slots (8). Two sets of locking bolts (44) that penetrate the first sliders (45) are inserted into the first horizontal plate (42), and the lower end of the locking bolts (44) abuts against the bottom of the adjustment slots (8).
4. The nameplate stamping device according to claim 3, characterized in that: The feeding mechanism (5) includes a second hydraulic cylinder (51) installed on the stamping table (1). The extension end of the second hydraulic cylinder (51) is fixedly connected to a push plate (52). A baffle (53) is fixedly connected to the upper end of one side of the push plate (52). Two sets of second sliders (54) are fixedly connected to the lower surface of the push plate (52). The upper surface of the stamping table (1) is provided with a sliding groove (11) for the two sets of second sliders (54) to slide.
5. A nameplate stamping device according to claim 4, characterized in that: The stamping mechanism (3) includes a first hydraulic cylinder (31) and a stamping template (34). The telescopic end of the first hydraulic cylinder (31) passes through the gantry frame (2) and is fixedly connected to a mounting base plate (32). Multiple sets of connecting screws (35) are fixedly connected to the upper surface of the stamping template (34). All sets of connecting screws (35) pass through the mounting base plate (32) and are threaded with locking nuts (36). Two sets of guide rods (33) passing through the gantry frame (2) are fixedly connected to the upper surface of the mounting base plate (32).
6. The nameplate stamping device according to claim 5, characterized in that: It also includes two sets of limiting plates (6), and two sets of insert rods (61) are fixedly connected to the lower surface of the two sets of limiting plates (6). Multiple sets of insertion holes (10) for inserting the insert rods (61) are opened on the stamping table (1). Two sets of nameplate stacking tables (7) for stacking alloy nameplates are symmetrically installed on the upper surface of the stamping table (1).
7. A power lithium battery alloy nameplate, disposed on a nameplate stamping device as described in any one of claims 1-6.