Viscous glue removing mechanism for bus bar lead of photovoltaic module
By designing a mechanism to remove adhesive from the busbar leads of photovoltaic modules and using positioning components to restrict the movement of the grinding modules, the problem of dust affecting accuracy during the grinding process is solved, ensuring that the module surface is not damaged.
Patent Information
- Application Number
- CN202423141450.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-19
- Publication Date
- 2025-12-12
- Estimated Expiration
- 2034-12-19
AI Technical Summary
Existing photovoltaic module grinding mechanisms rely on sensors for detection and drive during movement, and the resulting dust affects the grinding accuracy, leading to damage to the module surface.
A mechanism for removing adhesive from the busbar leads of photovoltaic modules was designed, comprising a housing, a lifting drive, a grinding component, a positioning component, a translation drive, and a worktable. The positioning component restricts the movement of the grinding component to ensure accurate grinding position and avoid damage to the module surface.
It achieves precise grinding location and protection of component surfaces, avoiding damage caused by dust.
Smart Images

Figure CN223656722U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a glue removing equipment technical field especially a kind of photovoltaic module busbar lead wire adhesive removing mechanism. BACKGROUND
[0002] In photovoltaic module, busbar is responsible for collecting the current generated by cell piece, and it is transmitted to external circuit. And lead wire is the important bridge connecting busbar and external circuit. Adhesive plays the role of fixing and connecting here, to ensure that busbar and lead wire can be connected together tightly and stably, so as to avoid loss and security risk in current transmission process. However, in order to make lead wire connection firm, adhesive glue needs to be coated in excess, which will also cover a part of photovoltaic module surface with glue. In the prior art, the movement of polishing mechanism is driven by sensor detection to drive the movement of polishing assembly. In the polishing process, the dust generated will affect the polishing accuracy, causing damage to the surface of photovoltaic module. SUMMARY
[0003] The utility model solves the technical problems: in order to overcome the movement of polishing mechanism in the prior art, the movement of polishing assembly is driven by sensor detection. In the polishing process, the dust generated will affect the polishing accuracy, causing damage to the surface of photovoltaic module. A kind of photovoltaic module busbar lead wire adhesive removing mechanism is provided.
[0004] The utility model adopts the technical scheme that a kind of photovoltaic module busbar lead wire adhesive removing mechanism, including shell, lifting drive part, polishing assembly, positioning assembly, translation drive part and workbench, lifting drive part and shell fixed connection, the output end of lifting drive part and polishing assembly transmission connection, lifting drive part is used to provide power for the movement of polishing assembly away from or close to photovoltaic module, translation drive part and shell fixed connection, the output end of translation drive part and workbench transmission connection, translation drive part is used to provide power for the translation of photovoltaic module, workbench is used to place photovoltaic module;
[0005] Positioning assembly includes mounting bracket, positioning plate, adjusting block, adjusting screw and at least two guide rods, mounting bracket and polishing assembly fixed connection, positioning plate is used to contact with workbench and limit the movement of polishing assembly, guide rod one end and positioning plate fixed connection, the other end passes through mounting bracket and is connected with mounting bracket slidingly, adjusting block and positioning plate rotation connection and along adjusting screw axial direction axial fixed, adjusting screw one end and adjusting block fixed connection, the other end and mounting bracket screw connection, and guide rod makes that positioning plate is fixed in circumference, through the design of positioning assembly, it can play the role of limiting positioning for polishing assembly, avoid polishing assembly excessively close to photovoltaic module, avoid its surface damage, and still can play the role of guide for polishing assembly, ensure that polishing position is accurate.
[0006] In order to solve the problem of how to arrange the polishing assembly, further comprising the polishing assembly comprises a mounting seat, a motor and a polishing wheel, the output end of the mounting seat and the lifting drive is fixedly connected, the polishing wheel and the mounting seat are rotationally connected, the motor and the mounting seat are fixedly connected, and the output end of the motor is in transmission connection with the polishing wheel.
[0007] In order to solve the problem of the mounting frame, further comprising the mounting frame and the mounting seat are fixedly connected.
[0008] In order to solve the problem of the limiting plate, further comprising a limiting block arranged at the top end of the guide rod, and the limiting block is located above the mounting frame.
[0009] In order to solve the problem of the limiting plate and the workbench, further comprising a sliding block arranged on the bottom surface of the limiting plate, and a fixed seat arranged on the top surface of the workbench, and a sliding groove matched with the sliding block is formed in the fixed seat, and the extension direction of the sliding groove is consistent with the moving direction of the workbench.
[0010] When the adhesive is removed, the sliding block is arranged in the sliding groove in a sliding mode.
[0011] In order to solve the problem of the sliding block and the fixed seat, further comprising a guide surface arranged on the bottom surface of the sliding block and inwardly retracted.
[0012] In order to solve the problem of the workbench, further comprising a sliding connection between the workbench and the shell.
[0013] Further comprising a sliding seat fixed on the workbench, and a guide rail matched with the sliding seat on the shell, and the sliding seat and the guide rail are in sliding connection.
[0014] The beneficial effects of the utility model are: the photovoltaic module bus bar lead adhesive removing mechanism can limit and position the polishing assembly, avoid the polishing assembly from excessively approaching the photovoltaic module, avoid the surface of the polishing assembly from being damaged, and can guide the polishing assembly, and ensure the accuracy of the polishing position. DRAWINGS
[0015] The utility model is further described below in combination with the drawings and examples.
[0016] Figure 1 It is a structure schematic view of the utility model;
[0017] Figure 2 It is a structure schematic view of the utility model with a partial section;
[0018] Figure 3 It is an enlarged structure schematic view of A in the utility model; Figure 2
[0019] Figure 4 is another view of the positioning assembly of the utility model structural schematic diagram.
[0020] In the figure: 1, shell, 11, guide rail, 2, lifting driving part, 3, polishing assembly, 31, mounting seat, 32, motor, 33, polishing wheel, 4, positioning assembly, 41, mounting frame, 42, positioning plate, 43, adjusting block, 44, adjusting screw, 45, guide rod, 46, limit block, 47, sliding block, 471, lead-in surface, 5, translation driving part, 6, workbench, 61, fixed seat, 611, sliding groove, 62, sliding seat. DETAILED DESCRIPTION
[0021] The utility model will be further explained in detail in combination with the drawings. These drawings are all simplified schematic diagrams, and only the basic structure of the utility model is schematically shown, so it only shows the structure related to the utility model.
[0022] As Figure 1 is the structural schematic diagram of the utility model, a kind of photovoltaic module busbar lead adhesive removal mechanism, including shell 1, lifting driving part 2, polishing assembly 3, positioning assembly 4, translation driving part 5 and workbench 6, lifting driving part 2 and shell 1 fixed connection, lifting driving part 2 can be hydraulic cylinder, cylinder, electric push rod or screw rod transmission mechanism etc. power component, the output end of lifting driving part 2 and polishing assembly 3 transmission connection, lifting driving part 2 is used to provide power for the polishing assembly 3 away from or close to photovoltaic module, translation driving part 5 and shell 1 fixed connection, the output end of translation driving part 5 and workbench 6 transmission connection, translation driving part 5 can be hydraulic cylinder, cylinder, electric push rod or screw rod transmission mechanism etc. power component, translation driving part 5 is used to provide power for the translation of photovoltaic module, workbench 6 is used to place photovoltaic module;Workbench 6 and shell 1 sliding connection. Sliding seat 62 is fixed on workbench 6, shell 1 has guide rail 11 matched with sliding seat 62, and sliding seat 62 and guide rail 11 sliding connection.
[0023] As Figure 2 、 Figure 3As shown, the positioning assembly 4 comprises a mounting frame 41, a positioning plate 42, an adjusting block 43, an adjusting screw 44, and at least two guide rods 45. The mounting frame 41 is fixedly connected with the polishing assembly 3. The positioning plate 42 is used to contact the workbench 6 and limit the movement of the polishing assembly 3. The guide rods 45 are fixedly connected with the positioning plate 42 at one end, and are slidably connected with the mounting frame 41 at the other end. The adjusting block 43 is rotationally connected with the positioning plate 42 and is axially fixed along the axis direction of the adjusting screw 44. The adjusting screw 44 is fixedly connected with the adjusting block 43 at one end, and is threadedly connected with the mounting frame 41 at the other end. The guide rods 45 are circumferentially fixed with the positioning plate 42. The guide rods 45 can ensure the angle of the positioning plate 42 to be fixed, so that the angle of the slider 47 thereon is fixed, avoiding the change of the angle of the slider 47 during the up-down adjustment, and the incompatibility of the slider 47 with the sliding groove 611. Through the design of the positioning assembly 4, the polishing assembly 3 can be limited and positioned, avoiding the excessive approach of the polishing assembly 3 to the photovoltaic module and the damage of the surface of the photovoltaic module. In addition, the positioning assembly 4 can guide the polishing assembly to ensure the accuracy of the polishing position. The positioning assembly 4 limits the minimum distance between the polishing assembly and the photovoltaic module.
[0024] As shown in Figure 1 , Figure 2 , the polishing assembly 3 comprises a mounting seat 31, a motor 32, and a polishing wheel 33. The mounting seat 31 is fixedly connected with the output end of the lifting drive 2. The polishing wheel 33 is rotationally connected with the mounting seat 31. The motor 32 is fixedly connected with the mounting seat 31. The output end of the motor 32 is drivingly connected with the polishing wheel 33. The mounting frame 41 is fixedly connected with the mounting seat 31.
[0025] The top end of the guide rod 45 is arranged with a limiting block 46, which is located above the mounting frame 41 to avoid the sliding off of the guide rod 45.
[0026] As shown in Figure 3 , Figure 4 , the bottom surface of the positioning plate 42 is arranged with a slider 47. The top surface of the workbench 6 is arranged with a fixed seat 61, which is provided with a sliding groove 611 matched with the slider 47. The extension direction of the sliding groove 611 is consistent with the movement direction of the workbench 6. When the adhesive is removed, the slider 47 is slidably arranged in the sliding groove 611. The bottom surface of the slider 47 is provided with an inwardly-contracted lead-in surface 471, which can better align the slider 47 with the sliding groove 611 and enter the sliding groove 611.
[0027] When the adhesive is removed, the motor 32 is started to rotate the polishing wheel 33, the lifting driving member 2 is started to lower the polishing assembly 3 to be close to the photovoltaic module on the workbench 6, if the polishing assembly 3 is lowered to the limit distance (the distance for protecting the photovoltaic module body), the sliding block 47 is aligned with and enters the sliding groove 611 during the lowering, at this time, the polishing wheel 33 contacts the adhesive on the photovoltaic module to remove the excess adhesive, the planar driving member 5 is started to make the photovoltaic module on the workbench 6 translate relative to the polishing wheel 33, so that the polishing wheel 33 completes the surface cleaning of the photovoltaic module.
[0028] The above is the ideal embodiment according to the present application, and the related personnel can make various changes and modifications without deviating from the technical idea of the present application. The technical scope of the present application is not limited to the content of the specification, and must be determined according to the scope of the claims.
Claims
1. A mechanism for removing busbar lead adhesive of a photovoltaic module, characterized in that, The utility model relates to a photovoltaic module polishing device, including shell (1), lift drive (2), polishing assembly (3), positioning assembly (4), translation drive (5) and workbench (6), lift drive (2) and shell (1) fixed connection, lift drive (2) output and polishing assembly (3) transmission connection, lift drive (2) is used for providing power for the polishing assembly (3) far away or close to photovoltaic module, translation drive (5) and shell (1) fixed connection, translation drive (5) output and workbench (6) transmission connection, translation drive (5) is used for the power of the translation of photovoltaic module, workbench (6) is used for the photovoltaic module to place, Positioning assembly (4) including mounting bracket (41), locating plate (42), adjusting block (43), adjusting screw (44) and at least two guide rods (45), mounting bracket (41) and polishing assembly (3) fixed connection, locating plate (42) is used for with workbench (6) contact and limit polishing assembly (3) movement, guide rod (45) one end and locating plate (42) fixed connection, the other end passes through mounting bracket (41) and with mounting bracket (41) sliding connection, adjusting block (43) and locating plate (42) rotation connection and along adjusting screw (44) axial direction axial fixed, adjusting screw (44) one end and adjusting block (43) fixed connection, the other end and mounting bracket (41) threaded connection, and guide rod (45) makes that locating plate (42) circumferential fixed.
2. The photovoltaic module busbar lead adhesive removal mechanism of claim 1, wherein: Polishing assembly (3) including mounting seat (31), motor (32) and polishing wheel (33), mounting seat (31) and lift drive (2) output fixed connection, polishing wheel (33) and mounting seat (31) rotation connection, motor (32) and mounting seat (31) fixed connection, motor (32) output and polishing wheel (33) transmission connection.
3. The photovoltaic module busbar lead adhesive removal mechanism of claim 2, wherein: Mounting bracket (41) and mounting seat (31) fixed connection.
4. The photovoltaic module busbar lead adhesive removal mechanism of claim 1, wherein: The top end of guide rod (45) is provided with a limiting block (46), and the limiting block (46) is located above mounting bracket (41).
5. The photovoltaic module busbar lead adhesive removal mechanism of claim 1, wherein: The bottom surface of locating plate (42) is provided with a sliding block (47), the top surface of workbench (6) is provided with a fixing seat (61), the fixing seat (61) is provided with a sliding groove (611) matched with the sliding block (47), and the extension direction of the sliding groove (611) is consistent with the movement direction of the workbench (6). When the adhesive is removed, the sliding block (47) is arranged in the sliding groove (611) in a sliding mode.
6. A mechanism for removing the adhesive of the busbar lead wire of a photovoltaic module according to claim 5, characterized in that: The bottom surface of the sliding block (47) has an inwardly recessed guide surface (471).
7. The photovoltaic module busbar lead tie removal mechanism of claim 1, wherein: The workbench (6) and the shell (1) are slidingly connected.
8. The photovoltaic module busbar lead adhesive removal mechanism of claim 7, wherein: The workbench (6) is fixedly provided with a sliding seat (62), and the shell (1) is provided with a guide rail (11) matched with the sliding seat (62), and the sliding seat (62) and the guide rail (11) are slidingly connected.