High-frequency induction welding device for copper bar assembly
By designing a quickly disassembled side panel structure and adjustment mechanism on a high-frequency induction heating machine, the cumbersome problem of side panel disassembly in the prior art is solved, and more efficient maintenance and more stable equipment placement are achieved.
Patent Information
- Application Number
- CN202421513172.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-28
- Publication Date
- 2025-05-13
- Estimated Expiration
- 2034-06-28
AI Technical Summary
The side plates of existing high-frequency induction heating machines are fixed by bolts, and the operation is cumbersome and time-consuming when disassembling, which affects maintenance efficiency.
A high-frequency induction welding device for copper bar assembly is designed. By setting up maintenance ports, slide grooves, sockets and insert blocks on the welding main machine, the quick disassembly of the side plates and the smooth placement of the adjustment mechanism are achieved.
The rapid disassembly of the side panels is achieved, which saves operating time, simplifies the maintenance process, and ensures the smooth placement of the welding host through the adjustment mechanism, avoiding the shaking of the equipment on uneven ground.
Smart Images

Figure CN222856977U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of high-frequency induction welding devices, and in particular relates to a high-frequency induction welding device for a copper bar assembly. Background Art
[0002] The copper bus assembly is a key part that connects the battery module and the circuit board, ensuring the electrical connection between the battery and the circuit board.
[0003] The copper bar assembly usually includes components such as copper bars, nuts and sleeves. These components work together to achieve a stable connection between the battery and the circuit board. In order to make the connection between the various components of the copper bar assembly more stable, the operator will use a high-frequency induction heating machine to perform welding operations on the copper bar assembly. The high-frequency induction heating machine is used to locally heat the copper bar, connecting nuts, sleeves and other components to reach the welding temperature, and then the connection is achieved through the welding ring. However, when the high-frequency induction heating machine is in use, the side panels of the high-frequency induction heating machine are generally fixed and installed with bolts. In this way, when the operator needs to remove the side panel to perform maintenance operations on the high-frequency induction heating machine, the operator needs to use tools to slowly remove the bolts to remove the side panel. This operation is more cumbersome and time-consuming, which brings inconvenience to the maintenance operation of the high-frequency induction heating machine.
[0004] Therefore, the utility model provides a high-frequency induction welding device for a copper bar assembly to solve the above-mentioned problem. Utility Model Content
[0005] The purpose of the utility model is to provide a high-frequency induction welding device for a copper bar assembly, aiming to solve the problem in the prior art that the side plates of a high-frequency induction heating machine are fixed by screws, and when the side plates need to be removed for maintenance of the high-frequency induction heating machine, the operation is inconvenient.
[0006] To achieve the above-mentioned purpose, the utility model provides the following technical solutions: a high-frequency induction welding device for copper bar components, comprising a welding main unit, inspection ports are arranged on the surfaces of both sides of the welding main unit, a protrusion is connected to the surface of one side of the welding main unit outside the inspection port, a slide groove is provided on the top surface of the protrusion, a side plate is connected to the inner surface of the slide groove, a socket is provided on the surface of one side of the side plate, one end of the plug block is connected to the inner surface of the socket, the other end of the plug block passes through a vertical block connected to the surface of one side of the protrusion, a movable groove is provided inside the vertical block, a spring passing through the plug block is connected to the inner surface of the movable groove, a cross bar is connected to the surface of one end of the plug block, and an adjustment mechanism is also provided on the bottom surface of the welding main unit.
[0007] In order to improve the stability of the welding host when it is placed, as a preferred high-frequency induction welding device for copper bar components of the utility model, the adjustment mechanism includes: a column, a threaded groove, a threaded column, a connecting block, an anti-sliding block, a mounting groove, a surface thread and a rotating rod, the bottom surface of the welding host is connected to a column, the bottom surface of the column is provided with a threaded groove, the inner surface of the threaded groove is connected with a threaded column, the bottom surface of the threaded column is connected to a connecting block, the bottom surface of the connecting block is connected with an anti-sliding block, and a mounting groove is provided on one side surface of the connecting block, the inner surface of the mounting groove is connected with a surface thread, and the surface thread is arranged on the outer surface at one end of the rotating rod.
[0008] In order to place the side plate, as a preferred high-frequency induction welding device for a copper bar assembly of the utility model, the side plate is slidably connected to the protrusion through a slide groove.
[0009] In order to fix the position of the side plate, as a preferred embodiment of a high-frequency induction welding device for a copper bar assembly of the utility model, the plug block is slidably connected to the side plate via a socket.
[0010] In order to drive the plug block to move, as a preferred high-frequency induction welding device for a copper bar assembly of the utility model, a sliding connection is formed between the plug block and the vertical block, and an elastic structure is formed between the plug block and the vertical block through a movable groove and a spring.
[0011] In order to adjust the position of the protective block and facilitate the rotation of the connecting block, as a preferred high-frequency induction welding device for a copper bar assembly of the utility model, the threaded column is threadedly connected to the column through the threaded groove, and the rotating rod is threadedly connected to the installation groove through the surface thread.
[0012] Compared with the prior art, the beneficial effects of the utility model are:
[0013] The utility model provides an insert block, when the operator needs to disassemble the side panel, he only needs to pull the cross bar to move the insert block, and the insert block can be separated from the socket, so that the operator can easily pull out the side panel from the slide groove, avoiding the need for the operator to use tools to slowly remove the bolts when disassembling the side panel, thereby saving operation time and bringing convenience to the maintenance of the high-frequency induction welding device.
[0014] The utility model provides an adjusting mechanism, when the ground on which the high-frequency induction welding device is placed is uneven, the threaded column on the connecting block can be driven by the rotating rod to rotate in the threaded groove at the bottom of the column, so that the position of the anti-sliding block can be changed, so that the suspended anti-sliding block can contact the ground after adjustment, thereby ensuring the stability of the high-frequency induction welding device when it is placed. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] The accompanying drawings are used to provide a further understanding of the present invention and constitute a part of the specification. Together with the embodiments of the present invention, they are used to explain the present invention and do not constitute a limitation of the present invention. In the accompanying drawings:
[0016] Figure 1 It is a schematic diagram of the three-dimensional structure of the utility model;
[0017] Figure 2 This is a schematic diagram of the partial explosion structure of the side plate of the utility model;
[0018] Figure 3 It is a schematic diagram of the partial cross-section structure of the plug block of the utility model;
[0019] Figure 4 It is a schematic diagram of the partial explosion structure of the regulating mechanism of the utility model.
[0020] In the figure: 1. welding host; 2. inspection port; 3. protrusion; 4. slide groove; 5. side panel; 6. socket; 7. plug block; 8. vertical block; 9. movable groove; 10. spring; 11. cross bar; 12. column; 13. threaded groove; 14. threaded column; 15. connecting block; 16. anti-sliding block; 17. installation groove; 18. surface thread; 19. rotating rod. DETAILED DESCRIPTION
[0021] The following will be combined with the drawings in the embodiments of the utility model to clearly and completely describe the technical solutions in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all of the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the utility model.
[0022] See also Figure 1-Figure 4 The utility model provides the following technical solutions: a high-frequency induction welding device for a copper bar assembly, comprising a welding host 1, the model of the welding host 1 is a HO-15KW high-frequency induction heating machine, and inspection ports 2 are arranged on the surfaces of both sides of the welding host 1, and a protrusion 3 is connected to the surface of one side of the welding host 1 outside the inspection port 2, a slide groove 4 is arranged on the top surface of the protrusion 3, a side plate 5 is connected to the inner surface of the slide groove 4, a socket 6 is arranged on the surface of one side of the side plate 5, one end of an insert block 7 is connected to the inner surface of the socket 6, and the other end of the insert block 7 passes through a vertical block 8 connected to the surface of one side of the protrusion 3, a movable groove 9 is arranged inside the vertical block 8, a spring 10 penetrated by the insert block 7 is connected to the inner surface of the movable groove 9, a cross bar 11 is connected to the surface of one end of the insert block 7, and an adjustment mechanism is also arranged on the bottom surface of the welding host 1.
[0023] The welding host 1 is a HO-15KW high-frequency induction heating machine. When the welding host 1 needs to perform welding operations on the copper bar assembly, select a suitable induction heating coil and install it on the welding host 1, then put the welding ring on the copper bar assembly, then start the welding host 1, the induction heating coil will perform heating operation, and then move the copper bar assembly with the welding ring to the inside of the induction heating coil. At this time, the welding host 1 will locally heat the copper bar assembly through the induction heating coil. When the welding ring at the copper bar assembly reaches the welding temperature, the copper bar assembly can be welded together through the welding ring, thereby completing the high-frequency induction welding operation of the copper bar assembly.
[0024] Preferably: the adjustment mechanism includes: a column 12, a threaded groove 13, a threaded column 14, a connecting block 15, an anti-sliding block 16, a mounting groove 17, a surface thread 18 and a rotating rod 19, the bottom surface of the welding host 1 is connected to the column 12, the bottom surface of the column 12 is provided with a threaded groove 13, the inner surface of the threaded groove 13 is connected to the threaded column 14, the bottom surface of the threaded column 14 is connected to the connecting block 15, the bottom surface of the connecting block 15 is connected to the anti-sliding block 16, and a mounting groove 17 is provided on one side surface of the connecting block 15, the inner surface of the mounting groove 17 is connected with the surface thread 18, and the surface thread 18 is arranged on the outer surface at one end of the rotating rod 19.
[0025] During specific use, the rotating rod 19 can be screwed into the installation groove 17 through the surface thread 18, so that the rotating rod 19 can be installed on the connecting block 15. When the anti-sliding block 16 is in a suspended state, the operator holds the rotating rod 19 and pulls the rotating rod 19 to drive the threaded column 14 on the connecting block 15 to rotate in the threaded groove 13, thereby changing the position of the threaded column 14 in the threaded groove 13, so that the threaded column 14 can drive the anti-sliding block 16 at the bottom of the connecting block 15 to move downward, so that the suspended anti-sliding block 16 can contact the ground again.
[0026] Preferably, the side plate 5 is slidably connected to the protrusion 3 via the sliding groove 4 , and the plug block 7 is slidably connected to the side plate 5 via the socket 6 .
[0027] During specific use, the side panel 5 can slide in the slide groove 4, so that the side panel 5 can be slid and pulled on the protrusion 3. When the side panel 5 slides in the slide groove 4, the socket 6 on the side panel 5 will move to the insertion block 7. At this time, the insertion block 7 slides and is inserted into the socket 6, so that the position of the side panel 5 can be fixed in the slide groove 4.
[0028] Preferably, the insert block 7 and the vertical block 8 are in sliding connection with each other, and the insert block 7 and the vertical block 8 form an elastic structure through the movable groove 9 and the spring 10 .
[0029] During specific use, the insert block 7 can slide in the vertical block 8. When the insert block 7 slides on the vertical block 8, the insert block 7 will elastically telescope and move on the vertical block 8 through the movable groove 9 and the spring 10.
[0030] Preferably, the threaded column 14 is threadedly connected to the column 12 through the threaded groove 13 , and the rotating rod 19 is threadedly connected to the mounting groove 17 through the surface thread 18 .
[0031] During specific use, the threaded column 14 can be rotated in the threaded groove 13, thereby changing the position of the threaded column 14 in the threaded groove 13, and the rotating rod 19 can be screwed into the installation groove 17 through the surface thread 18, so that the rotating rod 19 can be installed on the connecting block 15.
[0032] Working implementation principle: When using the copper bar assembly high-frequency induction welding device, when the operator needs to inspect the inside of the welding host 1, the operator can pull the cross bar 11 to allow the cross bar 11 to drive the plug 7 to slide on the vertical block 8, so that the plug 7 can squeeze the spring 10 in the movable groove 9, so that one end of the plug 7 can slide out of the socket 6 on the side panel 5. At this time, the operator can pull the side panel 5 to slide in the slide groove 4 on the protrusion 3, so that the side panel 5 can be easily separated, thereby completing the disassembly operation of the side panel 5, allowing the operator to inspect and maintain the inside of the welding host 1 through the inspection port 2, thus avoiding the operator using tools to slowly disassemble. The side plate 5 can be disassembled by bolts, thereby saving operation time and bringing convenience to the maintenance operation of the welding host 1. Secondly, when the ground on which the welding host 1 is placed is uneven, part of the anti-slip block 16 will be in a suspended state. At this time, the operator holds the rotating rod 19 and pulls the rotating rod 19 to drive the threaded column 14 on the connecting block 15 to rotate in the thread groove 13, thereby changing the position of the threaded column 14 in the thread groove 13, so that the threaded column 14 can drive the anti-slip block 16 at the bottom of the connecting block 15 to move downward, so that the suspended anti-slip block 16 can contact the ground again, so that the welding host 1 can be placed stably on the ground, avoiding shaking and tilting when the welding host 1 is used.
[0033] Finally, it should be noted that the above description is only a preferred embodiment of the utility model and is not intended to limit the utility model. Although the utility model is described in detail with reference to the above embodiments, those skilled in the art can still modify the technical solutions recorded in the above embodiments or replace some of the technical features therein by equivalents. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the utility model shall be included in the protection scope of the utility model.
Claims
1. A high-frequency induction welding device for copper bar components, comprising a welding host (1), characterized in that: Inspection ports (2) are provided on both side surfaces of the welding main machine (1); a protrusion (3) is connected to one side surface of the welding main machine (1) outside the inspection port (2); a slide groove (4) is provided on the top surface of the protrusion (3); a side plate (5) is connected to the inner surface of the slide groove (4); a socket (6) is provided on one side surface of the side plate (5); one end of an insert block (7) is connected to the inner surface of the socket (6); the other end of the insert block (7) passes through a vertical block (8) connected to one side surface of the protrusion (3); a movable groove (9) is provided inside the vertical block (8); a spring (10) passing through the insert block (7) is connected to the inner surface of the movable groove (9); one end surface of the insert block (7) is connected to a cross bar (11); and an adjustment mechanism is also provided on the bottom surface of the welding main machine (1).
2. A high-frequency induction welding device for copper bar components according to claim 1, characterized in that: The adjustment mechanism comprises: a column (12), a thread groove (13), a thread column (14), a connecting block (15), an anti-sliding block (16), a mounting groove (17), a surface thread (18) and a rotating rod (19); the bottom surface of the welding host (1) is connected to the column (12); the bottom surface of the column (12) is provided with a thread groove (13); the inner surface of the thread groove (13) is connected to the thread column (14); the bottom surface of the thread column (14) is connected to the connecting block (15); the bottom surface of the connecting block (15) is connected to the anti-sliding block (16); a mounting groove (17) is provided on one side surface of the connecting block (15); the inner surface of the mounting groove (17) is connected to the surface thread (18); the surface thread (18) is arranged on the outer surface of one end of the rotating rod (19).
3. A high-frequency induction welding device for copper bar components according to claim 1, characterized in that: The side plate (5) is slidably connected to the protrusion (3) via the sliding groove (4).
4. A high-frequency induction welding device for copper bar components according to claim 1, characterized in that: The insert block (7) is slidably connected to the side plate (5) via the insert port (6).
5. A high-frequency induction welding device for copper bar components according to claim 1, characterized in that: The insert block (7) and the vertical block (8) are slidably connected, and the insert block (7) forms an elastic structure with the vertical block (8) through a movable groove (9) and a spring (10).
6. A high-frequency induction welding device for copper bar components according to claim 2, characterized in that: The threaded column (14) is threadedly connected to the column (12) through the threaded groove (13), and the rotating rod (19) is threadedly connected to the installation groove (17) through the surface thread (18).