Efficient conveying equipment for photovoltaic panel machining

By designing clamping plates and rotating mechanisms, the deformation problem caused by clamping and flipping in photovoltaic panel processing equipment is solved, enabling stable conveying of photovoltaic panels of different specifications and models, and improving the efficiency and safety of the equipment.

CN121201733AInactive Publication Date: 2025-12-26SAMBO PLASTIC TECHNOLOGY (NANTONG) CO LTD
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Patent Information

Application Number
CN202511676441.8
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-11-17
Publication Date
2025-12-26
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Existing photovoltaic panel processing equipment is prone to causing photovoltaic panel deformation during clamping and flipping, affecting quality, and is difficult to adapt to photovoltaic panels of different specifications and models.

Method used

The design employs a clamping and rotating mechanism. The rotation of the clamping mechanism is controlled by a signal to achieve stable clamping and flipping of the photovoltaic panel, adapting to photovoltaic panels of different specifications and models. The photovoltaic panel is protected by a limiting mechanism and an elastic telescopic column.

Benefits of technology

It improves the stability and safety of photovoltaic panel transportation, reduces deformation hazards, expands the applicability of the equipment, improves transportation accuracy and protection, and reduces energy consumption.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses efficient conveying equipment for photovoltaic panel machining, and relates to the technical field of photovoltaic panel production and machining. Efficient conveying equipment for photovoltaic panel machining comprises an input mechanism, the input mechanism comprises a bottom plate, a first conveying belt is arranged on one side of the upper portion of the bottom plate, a plate turning assembly is arranged on the other side of the upper portion of the bottom plate, the plate turning assembly comprises two clamping plate mechanisms which are vertically symmetrical, and the plate turning assembly further comprises two symmetrical rotating mechanisms; the two symmetrical rotating mechanisms are located on the two sides of the clamping plate mechanism correspondingly, the clamping plate mechanism is slidably connected with the rotating mechanisms, each rotating mechanism comprises a disc face, a first stand column used for supporting is jointly connected between the disc face and the bottom plate, and a middle column penetrates through the middle of the surface of the disc face and is movably connected with the middle column through a bearing. According to the efficient conveying equipment for photovoltaic panel machining, the photovoltaic panel can be clamped in a large area, and rotation of the photovoltaic panel is more stable and safer.
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Description

TECHNICAL FIELD

[0001] The application relates to the technical field of photovoltaic panel production and processing, and particularly relates to a high-efficiency conveying equipment for photovoltaic panel processing. BACKGROUND

[0002] A photovoltaic panel assembly is an electric generator that produces direct current when exposed to sunlight, consisting of thin solid photovoltaic cells made almost entirely of semiconductor material (for example, silicon). Since there are no moving parts, they can operate for long periods of time without causing any wear and tear. Simple photovoltaic cells can provide energy for watches and computers, while more complex photovoltaic systems can provide lighting for a house and power for the electrical grid. Photovoltaic panel assemblies can be made in different shapes, and assemblies can be connected to generate more power. Photovoltaic panel assemblies are used on rooftops and building surfaces, and even as part of windows, skylights or shading devices. These photovoltaic installations are often referred to as building-integrated photovoltaic systems.

[0003] The photovoltaic panel is an indispensable photovoltaic assembly. When the photovoltaic panel is produced, a conveying mechanism is needed to transfer it to different processing areas.

[0004] The patent with the publication number CN118047201A discloses a high-efficiency conveying equipment for photovoltaic panel processing, which comprises two oppositely arranged first conveying frames and second conveying frames, the first conveying frame and the second conveying frame are both provided with a conveying belt in a transmission mode, a support frame is arranged between the second conveying frame and the first conveying frame, a plurality of first push cylinders are arranged on the end face of the support frame, a sliding table is connected to the output end of the first push cylinder, a surface turning assembly is arranged on the sliding table, the surface turning assembly comprises a rotating disc capable of realizing horizontal movement and rotation, and a plate clamping assembly is arranged on the end face of the rotating disc. Through the design of the rubber convex strips and hard pads in the plate clamping assembly, the sliding groove seat and the anti-skid pad, the device can not only flexibly and rigidly fix and limit the two ends of photovoltaic plates of different sizes, but also effectively reduce the height difference between the photovoltaic plate and the conveying belt after the photovoltaic plate is turned over, so that the photovoltaic plate can be smoothly conveyed outward, and the stability and safety of the photovoltaic plate during turning are effectively improved.

[0005] The above technical scheme clamps and holds the photovoltaic panel from both sides through the plate clamping assemblies arranged on both sides, and turns over the photovoltaic panel through clamping and turning. The photovoltaic panel is mostly flat, and clamping and holding it from both sides to the middle may cause the photovoltaic panel to deform, so that the flat surface is slightly raised, thereby causing the photovoltaic panel to deform and affecting the quality of the photovoltaic panel. Therefore, a high-efficiency conveying equipment for photovoltaic panel processing is needed to solve the above problems. SUMMARY

[0006] The photovoltaic panel processing high-efficiency conveying equipment aims to solve the problems in the background.

[0007] To achieve the above object, the application provides the following technical scheme: a photovoltaic panel processing high-efficiency conveying equipment, comprising an input mechanism, the input mechanism comprising a bottom plate, a first conveying belt being arranged on one side of the top of the bottom plate;

[0008] The other side of the top of the bottom plate is provided with a turnover plate assembly;

[0009] The turnover plate assembly comprises two symmetrical clamping plate mechanisms;

[0010] The turnover plate assembly further comprises two symmetrical rotating mechanisms, and the two symmetrical rotating mechanisms are respectively arranged on the two sides of the clamping plate mechanism, and the clamping plate mechanism is slidingly connected with the rotating mechanism;

[0011] Each rotating mechanism comprises a disc surface, a first stand for supporting being connected between the disc surface and the bottom plate, a middle column being penetratingly and movably connected with the surface of the disc surface through a bearing, a first rotary disc being fixedly connected with the end surface of the middle column close to the clamping plate mechanism, and an electric rail being embeddedly installed in the middle part of the surface of the first rotary disc away from the middle column;

[0012] The end surface of the middle column away from the clamping plate mechanism is provided with a rotating assembly;

[0013] The lower side of the first conveying belt is provided with an output mechanism for receiving materials.

[0014] As a preferred technical scheme of the application, the first conveying belt and the bottom plate are fixedly connected with a first support for supporting;

[0015] The other side of the upper surface of the bottom plate is fixedly connected with a socket.

[0016] As a preferred technical scheme of the application, each clamping plate mechanism comprises a clamping plate frame, the two end sides of the clamping plate frame are fixedly connected with side frames, and the middle part of the side away from each other of the two side frames is fixedly connected with a sliding block of a sliding plug-in electric rail;

[0017] The end of the two side frames is provided with a rotating roller, the end of the rotating roller is embeddedly installed on the side frame through a rotator, a sleeve roller is fixedly sleeved on the rotating roller, a rotating belt is commonly sleeved on the two sleeve rollers, an inner pad is filled in the inner side of the rotating belt, the two ends of the inner pad are embeddedly connected with the sleeve rollers respectively, and the two end sides of the inner pad are fixedly connected with the side frames.

[0018] One end of the clamping plate mechanism is provided with a first limiting mechanism, the first limiting mechanism comprises a first limiting block, and the first limiting block is adapted to be clamped on the end side of the rotating belt and fixedly connected with the side frame;

[0019] The surface of the first limiting block is embedded with a signal generator for controlling the rotator of the rotating roller;

[0020] The side surface of the first limiting block is provided with a first blocking assembly, the first blocking assembly comprises a first side block, the end surface of the first side block is flush with the surface of the first limiting block, the first side block is fixedly connected with the first limiting block, one end of the first side block is adaptively inserted with a plug column, a spring sheet is fixedly connected between the insertion end of the plug column and the first side block, and the extension end of the plug column is smooth.

[0021] The other side end of the clamping plate mechanism is provided with a second limiting mechanism, the second limiting mechanism comprises a second limiting block, the second limiting block is adaptively clamped on the end side of the rotating belt and fixedly connected with the side frame;

[0022] The surface of the second limiting block is embedded with a signal receiver corresponding to the signal generator;

[0023] The side surface of the second limiting block is provided with a second blocking assembly corresponding to the first blocking assembly, the second blocking assembly comprises a second side block corresponding to the plug column, and the end surface of the second side block is flush with the surface of the second limiting block.

[0024] The first limiting mechanism and the second limiting mechanism correspond to each other in up and down directions.

[0025] The first limiting mechanism on the clamping plate mechanism on the lower side is located on the side away from the first transmission belt.

[0026] As a preferred technical solution of the present application, the rotating assembly comprises a second rotating disc, the second rotating disc is fixedly connected with the middle column, and six communicating grooves are uniformly and equidistantly formed on the surface of the second rotating disc away from the middle column.

[0027] The side of the second rotating disc away from the middle column is provided with a second stand column, the lower side of the second stand column is fixedly connected with the bottom plate, the upper side of the second stand column is provided with a motor, the output end of the motor is fixedly connected with a machine column, one end of the machine column away from the motor is fixedly connected with a triangular rotating plate, the three triangles of the rotating plate are embedded with plate columns, and the one end of the plate column close to the second rotating disc is adaptively inserted into the grooves.

[0028] As a preferred technical solution of the present application, the output mechanism comprises a second transmission belt, the two sides of one end of the second transmission belt are fixedly connected with outer shafts, the end heads of the outer shafts away from the second transmission belt are correspondingly penetrated through the first stand column and the second stand column and fixedly connected with a circular plate, the circular plate and the second stand column are fixedly connected with a torsion spring around the outer shaft, the lower side of the second transmission belt is movably connected with a first elastic telescopic column through a rotating shaft, the lower end of the first elastic telescopic column is movably connected with a connector through a rotating shaft, and the other end of the second transmission belt is downwardly inclined.

[0029] The other end of the second conveying belt is connected with a horizontal third conveying belt, and a second elastic telescopic column is fixedly connected between the third conveying belt and the bottom plate, and a connection net is connected at the joint of the second conveying belt and the third conveying belt.

[0030] Compared with the prior art, the present application has the following advantages:

[0031] (1) The high-efficiency conveying equipment for photovoltaic panel processing, when the photovoltaic panel moves under the conveying of the rotating belt and blocks the signal generator, the signal generator controls the rotation of the rotating roller to stop, that is, when the photovoltaic panel is basically transferred to the clamping plate mechanism, the rotation of the clamping plate mechanism is stopped, thereby improving the power saving capability.

[0032] (2) The high-efficiency conveying equipment for photovoltaic panel processing, the photovoltaic panel is clamped by the clamping plate mechanism, which can clamp the photovoltaic panel in a large area to reduce the deformation damage of the side to the clamp, and make the subsequent rotation of the photovoltaic panel more stable and safe.

[0033] (3) The high-efficiency conveying equipment for photovoltaic panel processing, the relative movement of the clamping plate mechanisms on both sides can clamp photovoltaic panels of different specifications and models, thereby improving the conveyable types and improving the use range.

[0034] (4) The high-efficiency conveying equipment for photovoltaic panel processing, when the clamping plate mechanisms on both sides slide relative to each other and clamp small photovoltaic panels, the rotating mechanism drives the clamping plate mechanisms and the small photovoltaic panels to rotate clockwise, and in the rotating process, the falling trend direction of the rotating belt in the conveying state and the small photovoltaic panels under the action of gravity is opposite, which can well control the position of the small photovoltaic panels and avoid their falling off, thereby improving the clamping safety.

[0035] (5) The high-efficiency conveying equipment for photovoltaic panel processing, when the equipment clamps large photovoltaic panels, the tail end of the large photovoltaic panels cannot completely enter the clamping range of the clamping plate mechanism, but in the clamping process, the rotating mechanism drives the clamping plate mechanisms and the large photovoltaic panels to rotate only by an angle of one hundred and twenty degrees, so that the tail end of the large photovoltaic panels exposed on the outside will not interfere with the first conveying belt or the output mechanism, thereby improving the rotation fluency.

[0036] (6) The high-efficiency conveying equipment for photovoltaic panel processing, when the photovoltaic panel is conveyed into the clamping plate mechanism, the insertion column of the lower clamping plate mechanism plays a positioning role on the end of the photovoltaic panel, and after the end of the photovoltaic panel contacts the insertion column, it cannot further move to the side, thereby maintaining the clamping position of one end of the photovoltaic panel and the clamping plate mechanism, improving the uniform positioning capability of the equipment on the photovoltaic panel, and improving the conveying accuracy of the photovoltaic panel.

[0037] (7) A kind of high-efficiency conveying equipment for photovoltaic panel processing, by the overturning of photovoltaic panel, on the one hand, the output mechanism can be formed by setting rotary, reduce the overall area of device, on the other hand, it can avoid the hindering problem of large photovoltaic panel exposure overturning.

[0038] (8) A kind of high-efficiency conveying equipment for photovoltaic panel processing, after photovoltaic panel contacts second transmission belt, second transmission belt can be rotated a certain angle with outer shaft as axis under the setting of first elastic telescopic column, avoid and the hard contact of photovoltaic panel side edge, improve the protection of photovoltaic panel conveying. BRIEF DESCRIPTION OF DRAWINGS

[0039] Figure 1 It is the structural schematic diagram of the present application;

[0040] Figure 2 It is the side plane schematic diagram of the present application;

[0041] Figure 3 It is the input mechanism schematic diagram of the present application;

[0042] Figure 4 It is the plate turning assembly schematic diagram of the present application;

[0043] Figure 5 It is the rotary mechanism schematic diagram of the present application;

[0044] Figure 6 It is the rotary mechanism connection schematic diagram of the present application;

[0045] Figure 7 It is the rotating assembly schematic diagram of the present application;

[0046] Figure 8 It is the overall schematic diagram of the present application clamping plate mechanism;

[0047] Figure 9 It is the single schematic diagram of the present application clamping plate mechanism;

[0048] Figure 10 It is the A place of the present application Figure 8 Enlarged schematic diagram;

[0049] Figure 11 It is the limiting mechanism schematic diagram of the present application;

[0050] Figure 12 It is the output mechanism schematic diagram of the present application.

[0051] In the figure: 1, input mechanism; 101, bottom plate; 102, first conveying belt; 103, first support; 104, socket; 2, clamping plate mechanism; 201, clamping plate frame; 202, side frame; 203, sliding block; 204, rotating roller; 205, sleeve roller; 206, rotating belt; 207, inner pad; 3, first limiting mechanism; 301, first limiting block; 302, signal generator; 303, first side block; 304, insertion column; 305, elastic sheet; 4, second limiting mechanism; 401, second limiting block; 402, signal receiver; 403, second side block; 5, rotating mechanism; 501, disc surface; 502, first stand column; 503, middle column; 504, first rotating disc; 505, electric rail; 506, second rotating disc; 507, slotted; 508, second stand column; 509, motor; 510, machine column; 511, rotating plate; 512, plate column; 6, output mechanism; 601, second conveying belt; 602, outer shaft; 603, circular plate; 604, torsional spring; 605, first elastic telescopic column; 606, third conveying belt; 607, second elastic telescopic column; 608, link net. DETAILED DESCRIPTION

[0052] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work fall within the scope of protection of the present application.

[0053] Embodiment: please refer to Figure 1 、 Figure 2 、 Figure 3 、 Figure 4 、 Figure 5 、 Figure 6 、 Figure 7 、 Figure 8 A kind of high-efficiency conveying equipment for processing photovoltaic panel, including input mechanism 1, input mechanism 1 includes bottom plate 101, the upper side of bottom plate 101 is provided with first conveying belt 102;

[0054] The other side of bottom plate 101 is provided with turnover plate assembly on top;

[0055] Turnover plate assembly includes two symmetrical clamping plate mechanisms 2 upwards and downwards, initially, the clamping plate mechanism 2 on the lower side is connected to first conveying belt 102;

[0056] Turnover plate assembly also includes two symmetrical rotating mechanisms 5, two symmetrical rotating mechanisms 5 are respectively at the two sides of clamping plate mechanism 2, clamping plate mechanism 2 is slidably connected rotating mechanism 5;

[0057] Each rotating mechanism 5 comprises a disc surface 501, a first stand 502 for support is connected between the disc surface 501 and the bottom plate 101, a middle column 503 is through and movably connected on the surface middle part of the disc surface 501 by a bearing, a first rotating disc 504 is fixedly connected on the end surface of the middle column 503 close to the clamping plate mechanism 2, an electric rail 505 is embedded and installed on the surface middle part of the first rotating disc 504 away from the middle column 503;

[0058] The middle column 503 is provided with a rotating assembly away from the end surface of the clamping plate mechanism 2;

[0059] The first transmission belt 102 is provided below with an output mechanism 6 for receiving materials.

[0060] Please refer to Figure 3 , a first support 103 for support is fixedly connected between the first transmission belt 102 and the bottom plate 101;

[0061] The upper surface of the bottom plate 101 is fixedly connected with a socket 104 on the other side.

[0062] Please refer to Figure 8 、 Figure 9 、 Figure 10 、 Figure 11 Each clamping plate mechanism 2 comprises a clamping plate frame 201, both ends of the clamping plate frame 201 are fixedly connected with side frames 202, a sliding block 203 for slidingly inserting the electric rail 505 is fixedly connected on the middle part of the side away from each other of the two side frames 202, initially, the sliding block 203 is inserted at the end of the electric rail 505;

[0063] A rotating roller 204 is arranged between the end of the two side frames 202, the end of the rotating roller 204 is embedded and installed on the side frame 202 through a rotator, a sleeve roller 205 is fixedly sleeved on the rotating roller 204, a rotating belt 206 is jointly sleeved by the two sleeve rollers 205, an inner pad 207 is filled in the inner side of the rotating belt 206, the inner pad 207 is made of rubber material, both ends of the inner pad 207 are embedded with the sleeve roller 205, and both ends of the inner pad 207 are correspondingly fixedly connected with the side frame 202.

[0064] A first limiting mechanism 3 is arranged on the side end of the clamping plate mechanism 2, the first limiting mechanism 3 comprises a first limiting block 301, the first limiting block 301 is adapted to be clamped on the end side of the rotating belt 206 and is fixedly connected with the side frame 202;

[0065] A signal generator 302 for controlling the rotator of the rotating roller 204 is embedded and installed on the surface of the first limiting block 301;

[0066] The side surface of the first limiting block 301 is provided with a first blocking assembly, the first blocking assembly comprises a first side block 303, the end surface of the first side block 303 is flush with the surface of the first limiting block 301, the first side block 303 is fixedly connected with the first limiting block 301, one end of the first side block 303 is adaptively inserted with a plug column 304, a spring sheet 305 is fixedly connected between the insertion end of the plug column 304 and the first side block 303, and the extension end of the plug column 304 is smooth.

[0067] The other side end of the clamping plate mechanism 2 is provided with a second limiting mechanism 4, the second limiting mechanism 4 comprises a second limiting block 401, the second limiting block 401 is adaptively clamped on the end side of the rotating belt 206 and is fixedly connected with the side frame 202.

[0068] The surface of the second limiting block 401 is embeddedly installed with a signal receiver 402 corresponding to the signal generator 302;

[0069] The side surface of the second limiting block 401 is provided with a second blocking assembly corresponding to the first blocking assembly, the second blocking assembly comprises a second side block 403 corresponding to the plug column 304, and the end surface of the second side block 403 is flush with the surface of the second limiting block 401.

[0070] The first limiting mechanism 3 and the second limiting mechanism 4 are correspondingly arranged above and below.

[0071] The first limiting mechanism 3 on the lower clamping plate mechanism 2 is located on the side away from the first conveying belt 102. Please refer to Figure 6 、 Figure 7 The rotating assembly comprises a second rotating disc 506, the second rotating disc 506 is fixedly connected with the middle column 503, and six through grooves 507 are uniformly and equidistantly arranged on the surface of the second rotating disc 506 away from the middle column 503.

[0072] The side of the second rotating disc 506 away from the middle column 503 is provided with a second stand column 508, the lower side of the second stand column 508 is fixedly connected with the bottom plate 101, the upper side of the second stand column 508 is installed with a motor 509, the output end of the motor 509 is fixedly connected with a machine column 510, one end of the machine column 510 away from the motor 509 is fixedly connected with a triangular rotating plate 511, the three triangles of the rotating plate 511 are embeddedly installed with plate columns 512, and the one end of the plate columns 512 close to the second rotating disc 506 is adaptively inserted with the grooves 507.

[0073] Please refer to Figure 12The output mechanism 6 comprises a second transmission belt 601, one end of the second transmission belt 601 is fixedly connected with outer shafts 602 on both sides, the outer shafts 602 away from the end of the second transmission belt 601 are correspondingly penetrated through the first stand 502 and the second stand 508 and are fixedly connected with circular plates 603, the circular plates 603 and the second stand 508 are fixedly connected with torsion springs 604 around the outer shafts 602, the lower side of the second transmission belt 601 is movably connected with a first elastic telescopic column 605 through a rotating shaft, the lower end of the first elastic telescopic column 605 is movably connected with the adapter 104 through a rotating shaft, and the other end of the second transmission belt 601 is downwardly inclined.

[0074] The other end of the second transmission belt 601 is connected with a horizontal third transmission belt 606, the third transmission belt 606 and the bottom plate 101 are fixedly connected with a second elastic telescopic column 607, and the joint of the second transmission belt 601 and the third transmission belt 606 is connected with a joint net 608.

[0075] The working principle of the present application is as follows:

[0076] The photovoltaic panel in progress is conveyed to the turnover plate assembly through the first transmission belt 102, the clamping plate mechanism 2 on the lower side is flush with the first transmission belt 102, the rotating roller 204 on the clamping plate mechanism 2 drives the rotating belt 206 to rotate under the action of the rotating device, so that the photovoltaic panel is conveyed to the side where the first limiting mechanism 3 is located, the signal emitted by the signal generator 302 is received by the signal receiver 402, when the photovoltaic panel moves under the conveying of the rotating belt 206 and blocks the signal generator 302, at this time, the rotating device of the rotating roller 204 on the signal generator 302 stops rotating, that is, when the photovoltaic panel is basically conveyed to the clamping plate mechanism 2, the rotation conveying of the clamping plate mechanism 2 is stopped, thereby improving the power saving capability.

[0077] The clamping plate mechanisms 2 on the upper and lower sides are relatively moved by sliding along the electric rail 505 through the sliding blocks 203, so as to clamp the photovoltaic panel between the two clamping plate mechanisms 2, the photovoltaic panel is clamped by the clamping plate mechanisms 2, the photovoltaic panel can be clamped in a large area to reduce the deformation damage of the side clamping, and the subsequent rotation of the photovoltaic panel is more stable and safe.

[0078] The relative movement of the clamping plate mechanisms 2 on both sides can clamp photovoltaic panels of different specifications and models, improve the conveyable types, and improve the use range.

[0079] When the device clamps the small photovoltaic panel, one end of the small photovoltaic panel needs to cover the signal generator 302 of the first limiting mechanism 3 on the lower clamping plate mechanism 2 to stop conveying, so the signal generator 302 of the first limiting mechanism 3 of the upper clamping plate mechanism 2 is not covered, and the upper clamping plate mechanism 2 always maintains the conveying state of the rotating belt 206. When the two clamping plate mechanisms 2 slide relative to each other and clamp the small photovoltaic panel, the rotating mechanism 5 drives the clamping plate mechanism 2 and the small photovoltaic panel to rotate clockwise. In the rotating process, the falling trend direction of the rotating belt 206 in the conveying state and the small photovoltaic panel under the action of gravity is opposite, which can well control the position of the small photovoltaic panel, avoid its falling off, and improve the clamping safety.

[0080] When the device clamps the large photovoltaic panel, the tail end of the large photovoltaic panel cannot completely enter the clamping range of the clamping plate mechanism 2, but during the clamping process, the angle of the clamping plate mechanism 2 and the large photovoltaic panel driven by the rotating mechanism 5 to rotate is only one hundred and twenty degrees, so the tail end of the large photovoltaic panel exposed on the outside will not form an obstacle with the first conveying belt 102 or the output mechanism 6, improving the rotating fluency.

[0081] When the photovoltaic panel is conveyed into the clamping plate mechanism 2, the plug-in column 304 of the lower clamping plate mechanism 2 plays a positioning role on the end of the photovoltaic panel. When the end of the photovoltaic panel contacts the plug-in column 304, it cannot further contact the side, maintaining the clamping position of one end of the photovoltaic panel and the clamping plate mechanism 2, improving the uniform positioning ability of the device to the photovoltaic panel and improving the conveying accuracy of the photovoltaic panel.

[0082] The end position of the photovoltaic panel is positioned by the first blocking assembly. In the subsequent rotating process, the clamping plate mechanism 2 drives the photovoltaic panel to rotate one hundred and twenty degrees, at which time the positioned end is just directed towards the second conveying belt 601. Through the design of the rotating mechanism 5, when the rotating plate 511 drives the plate column 512 to rotate one circle, the sliding of the plate column 512 in the slot 507 just drives the second rotating disc 506 to rotate one hundred and twenty degrees around the middle column 503. Through this form of rotating the photovoltaic panel, on the one hand, the output mechanism 6 can be arranged to form a rotary, reducing the overall floor area of the device, and on the other hand, the problem of hindering the exposure of the large photovoltaic panel can be avoided.

[0083] After the clamping plate mechanism 2 drives the photovoltaic panel to rotate one hundred and twenty degrees, the slow sliding of the slider 203 along the electric rail 505 makes the two clamping plate mechanisms 2 separate, forming a gap for the photovoltaic panel to fall off, so that the rotating belt 206 of the photovoltaic panel adhering to the clamping plate mechanism 2 is slowly moved to the output mechanism 6. Through the design of the output mechanism 6, after the photovoltaic panel contacts the second conveying belt 601, the second conveying belt 601 can rotate a certain angle around the outer shaft 602 under the arrangement of the first elastic telescopic column 605, avoiding the hard contact with the side of the photovoltaic panel, and improving the conveying protection of the photovoltaic panel.

[0084] While embodiments of the application have been shown and described, it is to be understood that the application is not limited to the details of the embodiments described, since numerous changes, modifications, substitutions and variations can be made thereto without departing from the spirit and scope of the application as defined by the appended claims and their equivalents.

Claims

1. A high-efficiency conveying device for photovoltaic panel processing, comprising an input mechanism (1), wherein the input mechanism (1) comprises a base plate (101), and a first conveyor belt (102) is provided on one side above the base plate (101). A flap assembly is provided on the other side above the base plate (101); Its features are: The flip-plate assembly includes two vertically symmetrical clamping mechanisms (2). The flip-plate assembly also includes two symmetrical rotating mechanisms (5), which are located on both sides of the clamping mechanism (2), and the clamping mechanism (2) is slidably connected to the rotating mechanisms (5). Each of the rotating mechanisms (5) includes a disk (501), and a first column (502) for support is connected between the disk (501) and the base plate (101). A central column (503) is connected through the center of the disk (501) and movably connected by a bearing. A first turntable (504) is fixedly connected to the end face of the central column (503) near the clamping mechanism (2). An electric rail (505) is embedded in the center of the surface of the first turntable (504) away from the central column (503). A rotating assembly is provided on the end face of the central column (503) away from the clamping mechanism (2); An output mechanism (6) for receiving materials is provided below the first conveyor belt (102).

2. The high-efficiency conveying equipment for photovoltaic panel processing according to claim 1, characterized in that: A first support bracket (103) for support is fixedly connected between the first conveyor belt (102) and the base plate (101). A connector (104) is fixedly connected to the other side of the upper surface of the base plate (101).

3. The high-efficiency conveying equipment for photovoltaic panel processing according to claim 1, characterized in that: Each of the clamping mechanisms (2) includes a clamping frame (201), and side frames (202) are fixedly connected to both ends of the clamping frame (201). A slider (203) of a sliding plug-in electric rail (505) is fixedly connected to the middle of the opposite side of the two side frames (202). A rotating roller (204) is provided between the ends of the two side frames (202). The ends of the rotating roller (204) are embedded in the side frame (202) through a rotator. A sleeve roller (205) is fixedly sleeved on the rotating roller (204). The two sleeve rollers (205) are together sleeved with a rotating belt (206). The inner side of the rotating belt (206) is filled with an inner pad (207). The two ends of the inner pad (207) are respectively fitted with the sleeve roller (205). The two ends of the inner pad (207) are correspondingly fixed to the side frame (202).

4. The high-efficiency conveying equipment for photovoltaic panel processing according to claim 3, characterized in that: The clamping mechanism (2) is provided with a first limiting mechanism (3) at one end. The first limiting mechanism (3) includes a first limiting block (301). The first limiting block (301) is adapted to be clamped on the end of the conveyor belt (206) and fixedly connected to the side frame (202). A signal generator (302) for controlling the rotator of the roller (204) is embedded in the surface of the first limiting block (301). The first limiting block (301) has a first blocking component on its side. The first blocking component includes a first side block (303). The end face of the first side block (303) is flush with the surface of the first limiting block (301). The first side block (303) is fixedly connected to the first limiting block (301). One end of the first side block (303) is adapted to be inserted with a plug (304). A spring piece (305) is fixedly connected between the insertion end of the plug (304) and the first side block (303). The protruding end of the plug (304) is smooth.

5. The high-efficiency conveying equipment for photovoltaic panel processing according to claim 4, characterized in that: The other end of the clamping mechanism (2) is provided with a second limiting mechanism (4), the second limiting mechanism (4) includes a second limiting block (401), the second limiting block (401) is adapted to be clamped on the end side of the conveyor belt (206) and fixedly connected to the side frame (202); The surface of the second limiting block (401) is embedded with a signal receiver (402) corresponding to the signal generator (302); The side of the second limiting block (401) is provided with a second blocking component corresponding to the first blocking component. The second blocking component includes a second side block (403) corresponding to the insert (304). The end face of the second side block (403) is flush with the surface of the second limiting block (401).

6. The high-efficiency conveying equipment for photovoltaic panel processing according to claim 5, characterized in that: The first limiting mechanism (3) and the second limiting mechanism (4) are vertically aligned; The first limiting mechanism (3) on the lower clamping mechanism (2) is located on the side away from the first conveyor belt (102).

7. The high-efficiency conveying equipment for photovoltaic panel processing according to claim 1, characterized in that: The rotating assembly includes a second turntable (506), which is fixedly connected to a central column (503). The surface of the second turntable (506) facing away from the central column (503) has six interconnected grooves (507) evenly spaced at equal intervals. A second column (508) is provided on the side of the second turntable (506) away from the central column (503). The bottom plate (101) is fixedly connected to the lower side of the second column (508). A motor (509) is installed on the upper side of the second column (508). The output end of the motor (509) is fixedly connected to a column (510). A triangular rotating plate (511) is fixedly connected to the end of the column (510) away from the motor (509). Plate columns (512) are embedded in the triangles of the rotating plate (511). The end of the plate column (512) close to the second turntable (506) is correspondingly adapted to insert a slot (507).

8. The high-efficiency conveying equipment for photovoltaic panel processing according to claim 2, characterized in that: The output mechanism (6) includes a second transmission belt (601), with an outer shaft (602) fixedly connected to both sides of one end of the second transmission belt (601). The end of the outer shaft (602) away from the second transmission belt (601) passes through the first column (502) and the second column (508) and is fixedly connected to a circular plate (603). A torsion spring (604) is fixedly connected between the circular plate (603) and the second column (508) and wound around the outer shaft (602). A first elastic telescopic column (605) is movably connected to the lower side of the second transmission belt (601) through a rotating shaft. The lower end of the first elastic telescopic column (605) is movably connected to a receiving seat (104) through a rotating shaft. The other end of the second transmission belt (601) is tilted downward. The other end of the second transmission belt (601) is connected to a horizontal third transmission belt (606), and a second elastic telescopic column (607) is fixedly connected between the third transmission belt (606) and the base plate (101). A connecting net (608) is connected at the joint of the second transmission belt (601) and the third transmission belt (606).

Citation Information

Patent Citations

  • Efficient conveying equipment for photovoltaic panel machining

    CN118047201A