Photovoltaic welding strip automatic line transmission device

By designing the automatic wire transmission device of photovoltaic welding tape, the automatic loading and unloading, weighing, cutting and labeling of welding tape substrates is solved, and the problems of high-strength operations and quality abnormalities caused by manual operations in the prior art are improved, and production efficiency and product quality are improved.

CN223175024UActive Publication Date: 2025-08-01JINGAO (WUXI) PHOTOVOLTAIC TECH CO LTD
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Patent Information

Application Number
CN202422184302.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-06
Publication Date
2025-08-01
Estimated Expiration
2034-09-06

AI Technical Summary

Technical Problem

In the existing photovoltaic welding tape production, the process of cutting, weighing, cutting and labeling of welding tape substrates still requires manual operation, resulting in high operating strength and easy to cause abnormal quality of substrate damage, affecting production capacity.

Method used

An automatic line transmission device for photovoltaic welding tape is designed, including transmission module, loading and unloading module, detection module and stacking module, to realize the automatic loading and unloading, weighing, cutting and labeling of welding tape base materials. Through the combination of transmission lines, weighing and labeling integrated machine, tape cutting and appearance detection integrated machine and stacking module, automated production is realized.

Benefits of technology

It improves the automation level of welding tape substrate production, reduces the labor intensity of operators, and reduces the problems of quality abnormalities such as substrate damage, and improves production efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an automatic line transmission device for a photovoltaic welding strip, which comprises a transmission module, a transmission module and a control module, the feeding and discharging module is arranged corresponding to the interval position of the conveying line, and the feeding and discharging module is used for grabbing materials on the conveying line and discharging the materials to the conveying line; the detection module comprises a weighing and labeling all-in-one machine and an adhesive tape pasting and cutting appearance detection all-in-one machine, and the weighing and labeling all-in-one machine and the adhesive tape pasting and cutting appearance detection all-in-one machine are sequentially arranged on the conveying line in the conveying direction; and the stacking module is arranged on the discharging side of the adhesive tape pasting, cutting and appearance detecting all-in-one machine on the conveying line, and the stacking module is used for recognizing whether the materials are qualified or not and conducting classified stacking. According to the photovoltaic welding strip automatic line transmission device, the automation degree of welding strip base material production can be improved, and the labor intensity of operators is reduced.
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Description

Technical Field

[0001] The utility model relates to the technical field of photovoltaic production and transmission, and particularly relates to an automatic line transmission device for photovoltaic solder tapes. Background Art

[0002] In the production of photovoltaic solder tapes, the solder tape substrate can enter or exit the process equipment through an automatic line transmission device. In the existing automatic line transmission device, manual operations are still required for blanking, weighing, wire cutting, labeling, and handling. The operation intensity is high, and it is easy to cause quality abnormalities such as substrate bruising, resulting in scrap and production capacity loss. Summary of the Utility Model

[0003] In view of this, the utility model provides an automatic line transmission device for photovoltaic solder tapes, which can improve the automation degree of solder tape substrate production and reduce the labor intensity of operators.

[0004] To solve the above technical problems, the utility model adopts the following technical solutions:

[0005] The automatic line transmission device for photovoltaic solder tapes according to an embodiment of the utility model includes:

[0006] A transmission module, the transmission module includes a conveyor line;

[0007] A loading and unloading module, the loading and unloading module is arranged corresponding to the interval of the conveyor line, and the loading and unloading module is used to grab the materials on the conveyor line and unload the materials onto the conveyor line;

[0008] A detection module, the detection module includes a weighing and labeling integrated machine and a taping, cutting, and appearance detection integrated machine. The weighing and labeling integrated machine and the taping, cutting, and appearance detection integrated machine are sequentially arranged on the conveyor line along the conveying direction;

[0009] A stacking module, the stacking module is arranged on the discharge side of the taping, cutting, and appearance detection integrated machine on the conveyor line, and the stacking module is used to identify whether the materials are qualified and classify and stack them.

[0010] Further, the conveyor line includes a first conveyor device and a second conveyor device that are close to each other. The first conveyor device is used to receive the materials to be transferred.

[0011] The loading and unloading module includes a first truss device. The first truss device is arranged between the first conveyor device and the second conveyor device, and the first truss device is used to transport the materials on the first conveyor device to the second conveyor device.

[0012] Wherein, the weighing and labeling integrated machine and the taping, cutting, and appearance detection integrated machine are sequentially arranged on the second conveyor device.

[0013] Further, the first truss device includes:

[0014] A frame body, which includes a pair of struts and a cross beam connected to the tops of the pair of struts;

[0015] A clamping component, which is movably connected to the cross beam along the length direction of the cross beam,

[0016] wherein, the first conveying device and the second conveying device are respectively arranged on both sides of the length direction of the cross beam, one ends of the first conveying device and the second conveying device are respectively arranged below the cross beam, and the clamping component is used to convey materials from one end on the first conveying device to one end of the second conveying device.

[0017] Further, there are multiple first conveying devices,

[0018] The multiple first conveying devices are arranged on one side below the cross beam perpendicular to the length direction of the cross beam, and the second conveying device is arranged on the other side below the cross beam perpendicular to the length direction of the cross beam.

[0019] Further, the clamping component includes:

[0020] A guiding column, which is movably connected to the cross beam along the length direction of the cross beam, and the guiding column is vertically arranged relative to the cross beam;

[0021] A jaw component, which is movably connected to the guiding column up and down.

[0022] Further, the conveying line further includes a third conveying device, one end of the third conveying device is connected to the discharging side of the second conveying device, and a stacking module is arranged at the other end of the third conveying device,

[0023] The third conveying device includes a plurality of tooling plates, and a tooling plate conveying line and a tooling plate recycling line arranged in an upper and lower double layer,

[0024] wherein, the plurality of tooling plates are detachably arranged on the tooling plate conveying line and the tooling plate recycling line, and the feeding side of the tooling plate conveying line is connected to the discharging side of the second conveying device.

[0025] Further, the third conveying device further includes a buffer module, the buffer module includes a buffer storage library and a first elevator arranged on one side of the buffer storage library, and the first elevator and the buffer storage library are arranged from near to far relative to the feeding side of the third conveying device,

[0026] Among them, the buffer storage library is used to store the tooling plates, and the first elevator is used to put the tooling plates in the buffer storage library onto the tooling plate conveying line or recycle the tooling plates from the tooling plate recycling line and put them into the buffer storage library.

[0027] Further, the stacking module includes:

[0028] A first automatic barcode scanning device, which is arranged on the discharge side of the third conveyor device, and the first automatic barcode scanning device is used to identify the specification information of the material and judge whether it is qualified;

[0029] A qualified finished product storage system, which is arranged on the discharge side of the first automatic barcode scanning device on the third conveyor device;

[0030] An unqualified finished product storage system, which is arranged on the discharge side of the first automatic barcode scanning device on the third conveyor device.

[0031] Further, the stacking module further includes an electric roller steering device,

[0032] The electric roller steering device is arranged on the third conveyor device, the electric roller steering device is located on the discharge side of the first automatic barcode scanning device, and is located on the feed side of the qualified finished product storage system and the unqualified finished product storage system,

[0033] Among them, the electric roller steering device is used to convey the corresponding material to the qualified finished product storage system or the unqualified finished product storage system according to the discrimination result of the first automatic barcode scanning device.

[0034] Further, the unqualified finished product storage system includes:

[0035] A fifth conveyor device, one end of which is connected to the discharge side of the electric roller steering device on the third conveyor device;

[0036] A second automatic barcode scanning device, which is arranged on the fifth conveyor device, and the second automatic barcode scanning device is used to eliminate the warehousing information of the unqualified materials passing through;

[0037] A defective product buffer storage library, which is arranged on the discharge side of the fifth conveyor device, and the defective product buffer storage library is used to store the unqualified materials;

[0038] NG blanking position, the NG blanking position is arranged on the fifth conveying device, and the NG blanking position is used to place the qualified materials formed after the non-qualified materials in the defective product buffer storage are repaired, and the qualified materials are transported to the qualified finished product storage system through the reverse operation of the fifth conveying device.

[0039] Furthermore, the conveyor line further includes a fourth conveying device, and the fourth conveying device is arranged on one side close to the weighing and labeling integrated machine.

[0040] Wherein, the fourth conveying device is used to receive and discharge the unqualified materials after weighing by the weighing and labeling integrated machine.

[0041] At least one of the above technical solutions of the present utility model has the following beneficial effects:

[0042] According to the photovoltaic ribbon automatic line transmission device of the embodiment of the present utility model, it can automatically perform operations such as loading and unloading, weighing, wire cutting, labeling, and handling in the production process of the ribbon substrate. While improving production efficiency, it also effectively reduces the labor intensity of operators, and can reduce the probability of quality abnormalities such as substrate bruising. Description of the Drawings

[0043] Figure 1 is a schematic structural diagram of the photovoltaic ribbon automatic line transmission device of the embodiment of the present utility model;

[0044] Figure 2 is Figure 1 an enlarged schematic diagram of area A in

[0045] Figure 3 is a schematic structural diagram of the first conveying device in the photovoltaic ribbon automatic line transmission device of the embodiment of the present utility model;

[0046] Figure 4 is a schematic structural diagram of the first truss device in the photovoltaic ribbon automatic line transmission device of the embodiment of the present utility model;

[0047] Figure 5 is Figure 1 an enlarged schematic diagram of area B in

[0048] Reference numerals: 100. Transmission module; 110. First conveying device; 111. First driving motor; 112. Photoelectric switch; 113. First conveyor belt; 114. Partition; 120. Second conveying device; 121. Second conveyor belt; 122. Second truss device; 123. Third conveyor belt; 130. Third conveying device; 131. Buffer module; 1311. First elevator; 1312. Buffer storage; 140. Fourth conveying device;

[0049] 200. Loading and unloading module; 210. First truss device; 211. Frame body; 212. Clamping component; 220. Second truss device; 2121. Guide post; 2122. Claw component;

[0050] 300. Detection module; 310. Weighing and labeling integrated machine; 320. Tape sticking and cutting appearance detection integrated machine;

[0051] 400. Stacking module; 410. First automatic code scanning device; 420. Qualified finished product storage system; 430. Unqualified finished product storage system; 431. Fifth conveying device; 432. Second automatic code scanning device; 433. NG unloading position; 434. Defective product buffer stockpile; 440. Electric roller steering device;

[0052] 500. Solder tape substrate. Detailed implementation manners

[0053] To make the objectives, technical solutions and advantages of the embodiments of the present utility model clearer, the technical solutions of the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Apparently, the described embodiments are some but not all of the embodiments of the present utility model. All other embodiments obtained by those of ordinary skill in the art based on the described embodiments of the present utility model fall within the protection scope of the present utility model.

[0054] Unless otherwise defined, the technical terms or scientific terms used in the present utility model should have the ordinary meanings understood by those of ordinary skill in the art to which the present utility model belongs. The "first", "second" and similar terms used in the present utility model do not indicate any order, quantity or importance, but are only used to distinguish different components. The terms such as "connected" or "coupled" are not limited to physical or mechanical connections, but may include electrical connections, whether direct or indirect. The terms such as "upper", "lower", "left" and "right" are only used to indicate relative positional relationships. When the absolute position of the object being described changes, the relative positional relationship also changes accordingly.

[0055] Next, the photovoltaic solder tape automatic line transmission device according to the embodiments of the present utility model will be specifically described with reference to the accompanying drawings.

[0056] The photovoltaic solder tape automatic line transmission device according to the embodiments of the present utility model, as Figure 1 、 Figure 2 shown, may include: a transmission module 100, a loading and unloading module 200, a detection module 300 and a stacking module 400.

[0057] Among them, the transmission module 100 includes a conveyor line. That is to say, the transmission module 100 is set in the form of a conveyor line to transport the solder tape substrate conveniently and efficiently.

[0058] The loading and unloading module 200 is arranged corresponding to the conveyor line. The loading and unloading module 200 is used to grab the materials on the conveyor line and unload the materials onto the conveyor line.

[0059] The detection module 300 includes a weighing and labeling integrated machine 310 and a tape sticking, cutting and appearance detection integrated machine 320. The weighing and labeling integrated machine 310 and the tape sticking, cutting and appearance detection integrated machine 320 are arranged on the conveyor line in sequence along the conveying direction.

[0060] The stacking module 400 is arranged on the discharge side of the tape sticking, cutting and appearance detection integrated machine 320 on the conveyor line. The stacking module 400 is used to identify whether the materials are qualified and classify and stack them.

[0061] That is to say, for the automatic line transmission device of the photovoltaic solder tape according to the embodiment of the present invention, by setting the transmission module 100 including the conveyor line to transport and transfer the solder tape substrate, and setting the loading and unloading module 200 at the corresponding position of the conveyor line, the loading and unloading module 200 is used to cross-transfer the materials at the intervals of the conveyor line, which greatly improves the applicability of the conveyor line for various site layouts. Secondly, the weighing and labeling integrated machine 310 and the tape sticking, cutting and appearance detection integrated machine 320 are also arranged on the conveyor line in sequence along the conveying direction to weigh and detect the solder tape substrate passing through the conveyor line and detect the tape sticking, and finally the stacking module 400 is arranged at the discharge end of the conveyor line to identify whether the quality of the solder tape substrate is qualified, and finally realize classified stacking and storage.

[0062] The automatic line transmission device of the photovoltaic solder tape according to the embodiment of the present invention can automatically perform operations such as loading and unloading, weighing, wire cutting, labeling, and handling in the production process of the solder tape substrate, which improves the production efficiency, effectively reduces the operation intensity of the operators, and can reduce the probability of quality abnormalities such as substrate bruising.

[0063] In some embodiments, as Figure 2 shown, the conveyor line may include a first conveyor device 110 and a second conveyor device 120 that are close to each other. The first conveyor device 110 is used to receive the materials to be transferred.

[0064] The loading and unloading module 200 may include a first truss device 210. The first truss device 210 is arranged between the first conveyor device 110 and the second conveyor device 120. The first truss device 210 is used to transport the materials on the first conveyor device 110 to the second conveyor device 120.

[0065] Among them, the weighing and labeling integrated machine 310 and the tape - sticking, cutting and appearance - detecting integrated machine 320 are successively arranged on the second conveying device 120.

[0066] That is to say, the conveying line can be set to include a first conveying device 110 and a second conveying device 120 that are close to each other. Furthermore, it can be arranged in segments according to the specific production site. Among them, the first conveying device 110 is used to receive the solder tape substrate to be conveyed. And a first truss device 210 is arranged in the loading and unloading module 200. The first truss device 210 is arranged at the connection between the first conveying device 110 and the second conveying device 120, so as to facilitate the handling of the solder tape substrate on the first conveying device 110 to the second conveying device 120 to realize the one - stop transportation of the solder tape substrate.

[0067] As an example, as Figure 3 shown, the first conveying device 110 may include a frame body, a first driving motor 111, a photoelectric switch 112, and a first conveyor belt 113. Among them, the first conveyor belt 113 is arranged on the frame body and is driven by the first driving motor 111 to operate. And baffles 114 are arranged on both sides of the first conveyor belt 113 on the frame body to guide the solder tape substrate 500 on the first conveyor belt 113 to prevent it from falling. In addition, the discharge port of the first conveyor belt 113 is arranged at one end of the frame body close to the first truss device 210, and a photoelectric switch 112 is arranged at this discharge port. The photoelectric switch 112 detects whether the solder tape substrate 500 to be grabbed reaches the predetermined position and drives the first truss device 210 to grab it.

[0068] As an example, as Figure 2 shown, the second conveying device 120 may include a second conveyor belt 121, a second truss device 122, and a third conveyor belt 123. Among them, one end of the second conveyor belt 121 is arranged close to the frame body of the first truss device 210, the other end of the second conveyor belt 121 is arranged close to the second truss device 122, the other end of the second truss device 122 is close to the third conveyor belt 123, and the weighing and labeling integrated machine 310 and the tape - sticking, cutting and appearance - detecting integrated machine 320 are successively arranged on the third conveyor belt 123 in the conveying direction. Thus, the second conveying device 120 can be set into three parts: the second conveyor belt 121, the second truss device 122, and the third conveyor belt 123. The second truss device 122 connects and conveys the solder tape substrate between the second conveyor belt 121 and the third conveyor belt 123, further improving the adaptability of the second conveying device 120 to the layout of the site conditions.

[0069] In some embodiments, as Figure 2 、 Figure 4 shown, the first truss device 210 may include: a frame body 211 and a clamping component 212.

[0070] Among them, the frame body 211 includes a pair of struts and a cross beam connected to the tops of the pair of struts.

[0071] The clamping assembly 212 is movably connected to the cross beam along the length direction of the cross beam.

[0072] Among them, the first conveying device 110 and the second conveying device 120 are respectively arranged on both sides of the cross beam in the length direction. One end of each of the first conveying device 110 and the second conveying device 120 is respectively arranged below the cross beam. The clamping assembly 212 is used to transport the material from one end on the first conveying device 110 to one end of the second conveying device 120.

[0073] That is to say, one end of the first conveying device 110 and the second conveying device 120 are respectively arranged below different axial positions of the cross beam of the frame body 211 in the first truss device 210. By driving the clamping assembly 212 to move on the cross beam, the solder tape substrate 500 on the first conveying device 110 can be clamped to the second conveying device 120, which is convenient and reliable.

[0074] In some embodiments, as Figure 2 shown, there are multiple first conveying devices 110.

[0075] The multiple first conveying devices 110 are arranged on one side below the cross beam perpendicular to the length direction of the cross beam, and the second conveying device 120 is arranged on the other side below the cross beam perpendicular to the length direction of the cross beam.

[0076] That is to say, multiple first conveying devices 110 are arranged on one side of the frame body 211 in the first truss device 210, so that the solder tape substrate 500 can be received and transported more efficiently.

[0077] In some embodiments, as Figure 4 shown, the clamping assembly 212 may include: a guide post 2121 and a jaw assembly 2122.

[0078] Among them, the guide post 2121 is movably connected to the cross beam along the length direction of the cross beam, and the guide post 2121 is vertically arranged relative to the cross beam.

[0079] The jaw assembly 2122 is movably connected to the guide post 2121 up and down.

[0080] Specifically, a guide rail is provided along the length direction on the cross beam of the first truss device 210, and a second driving motor is connected to the guide post 2121. A gear is provided at the output end of the second driving motor and meshes with the rack inside the guide rail. By driving the second driving motor, the guide post 2121 is moved along the length direction of the cross beam. In addition, the base of the jaw assembly 2122 is sleeved on the guide post 2121, and a third driving motor is provided on the base. A gear is provided at the output end of the third driving motor and meshes with the vertically arranged rack on the guide post 2121. By driving the third driving motor, the jaw assembly 2122 is moved up and down along the guide post 2121. Thus, the jaw assembly 2122 can be moved in the horizontal and vertical dimensions, greatly improving the convenience and adaptability of the jaw assembly 2122 for gripping the solder tape substrate 500.

[0081] In some embodiments, as Figure 1 、 Figure 2 shown, the conveyor line further includes a third conveying device 130. One end of the third conveying device 130 is connected to the discharging side of the second conveying device 120, and the other end of the third conveying device 130 is provided with a stacking module 400.

[0082] The third conveying device 130 includes a plurality of tooling plates, as well as a tooling plate conveying line and a tooling plate recycling line arranged in an upper and lower double layer.

[0083] Among them, the plurality of tooling plates are detachably arranged on the tooling plate conveying line and the tooling plate recycling line, and the feeding side of the tooling plate conveying line is connected to the discharging side of the second conveying device 120.

[0084] Specifically, the upper tooling plate conveying line in the third conveying device 130 is used to receive the solder tape substrate that has passed the inspection by the inspection module 300 on the third conveyor belt 123. Among them, a third truss device 220 is further provided between the feeding side of the tooling plate conveying line and the discharging side of the third conveyor belt 123 for loading and unloading. The tooling plates on the tooling plate conveying line are used to carry the solder tape substrate. After the solder tape substrate is conveyed to a predetermined position, the lower tooling plate recycling line transports and recycles the empty tooling plates.

[0085] In some embodiments, as Figure 2 shown, the third conveying device 130 further includes a buffer module 131. The buffer module 131 includes a buffer storage 1312 and a first elevator 1311 provided on one side of the buffer storage 1312. The first elevator 1311 and the buffer storage 1312 are arranged from near to far with respect to one end of the feeding side of the third conveying device 130.

[0086] Among them, the buffer stack library 1312 is used to store the tooling plates. The first elevator 1311 is used to put the tooling plates in the buffer stack library 1312 onto the tooling plate conveying line, or to recycle the tooling plates from the tooling plate recycling line and put them into the buffer stack library 1312.

[0087] That is to say, a buffer module 131 is provided on the feed side of the tooling plate conveying line and the discharge side of the tooling plate recycling line of the third conveying device 130. The buffer stack library 1312 in the buffer module 131 is used to store the tooling plates. Then, the first elevator 1311 is used to put the tooling plates in the buffer stack library 1312 onto the tooling plate conveying line, or to recycle the tooling plates from the tooling plate recycling line and put them into the buffer stack library 1312, so as to facilitate the high-efficiency conveyance of the solder tape substrate.

[0088] It should be noted here that a second elevator (not shown) is also provided on the discharge side of the third conveying device 130, which is used to transfer the tooling plates on the tooling plate conveying line to the tooling plate recycling line.

[0089] In some embodiments, as Figure 5 shown, the stacking module 400 may include: a first automatic code scanning device 410, a qualified finished product storage system 420, and a non-qualified finished product storage system 430.

[0090] Among them, the first automatic code scanning device 410 is provided on the discharge side of the third conveying device 130. The first automatic code scanning device 410 is used to identify the specification information of the material and judge whether it is qualified.

[0091] The qualified finished product storage system 420 is provided on the discharge side of the first automatic code scanning device 410 on the third conveying device 130.

[0092] The non-qualified finished product storage system 430 is provided on the discharge side of the first automatic code scanning device 410 on the third conveying device 130.

[0093] That is to say, the first automatic code scanning device 410 in the stacking module 400 is used to identify the specification information of the solder tape substrate output by the third conveying device 130 and judge whether it is qualified. Based on the judgment result, the corresponding solder tape substrates are classified and stored in the qualified finished product storage system 420 and the non-qualified finished product storage system 430 on the discharge side of the first automatic code scanning device 410 on the third conveying device 130.

[0094] In some embodiments, as Figure 5 shown, the stacking module 400 may further include an electric roller steering device 440.

[0095] The electric drum steering device 440 is provided on the third conveying device 130. The electric drum steering device 440 is located on the discharge side of the first automatic code scanning device 410, and on the feed side of the qualified finished product storage system 420 and the unqualified finished product storage system 430.

[0096] Among them, the electric drum steering device 440 is used to convey the corresponding materials to the qualified finished product storage system 420 or the unqualified finished product storage system 430 according to the discrimination result of the first automatic code scanning device 410.

[0097] That is to say, between the discharge side of the first automatic code scanning device 410 on the third conveying device 130 and the feed side of the qualified finished product storage system 420 and the unqualified finished product storage system 430, an electric drum steering device 440 is provided to shunt the solder strip substrate on the third conveying device 130 based on the discrimination result of the first automatic code scanning device 410.

[0098] As an example, as Figure 5 shown, the unqualified finished product storage system 430 may include a fifth conveying device 431, a second automatic code scanning device 432, an NG discharging position 433, and a defective product buffer storage 434. Among them, one end of the fifth conveying device 431 is connected to the discharge side of the electric drum steering device 440 on the third conveying device 130. A second automatic code scanning device 432 is also provided on the fifth conveying device 431, which is used to eliminate the warehousing information of the unqualified materials (i.e., unqualified solder strip substrates) passing through the conveyance, and make the unqualified materials continue to be conveyed backward on the fifth conveying device 431 until they are conveyed to the defective product buffer storage 434 on the discharge side of the fifth conveying device 431.

[0099] In addition, an NG discharging position 433 is also provided on the fifth conveying device 431. Its function is that when the unqualified solder strip substrates in the defective product buffer storage 434 are repaired to become qualified materials (i.e., qualified solder strip substrates) and placed at the NG discharging position 433, at this time, the fifth conveying device 431 is driven to run in the reverse direction, so that the repaired qualified solder strip substrates are transported to the qualified finished product storage system 420 and stored in the warehouse again.

[0100] In some embodiments, as Figure 2 shown, the conveyor line further includes a fourth conveying device 140, and the fourth conveying device 140 is arranged on the side close to the weighing and labeling integrated machine 310.

[0101] Among them, the fourth conveying device 140 is used to receive and discharge the unqualified materials after weighing by the weighing and labeling integrated machine 310.

[0102] That is to say, a fourth conveying device 140 is also provided on one side of the weighing and labeling integrated machine 310 to pre-remove the solder strip substrates with unqualified weighing, reducing the workload of subsequent inspections.

[0103] The above are the preferred embodiments of the present utility model. It should be noted that for those of ordinary skill in the art, without departing from the principle described in the present utility model, several improvements and modifications can be made, and these improvements and modifications should also be regarded as the protection scope of the present utility model.

Claims

1. An automatic line transmission device for a photovoltaic solder tape, characterized in that, Comprising: A transmission module, the transmission module including a conveyor line; A loading and unloading module, the loading and unloading module being arranged corresponding to the intervals of the conveyor line, the loading and unloading module being used for grasping the materials on the conveyor line and unloading the materials onto the conveyor line; A detection module, the detection module including a weighing and labeling integrated machine and a taping, cutting, and appearance detection integrated machine, the weighing and labeling integrated machine and the taping, cutting, and appearance detection integrated machine being sequentially arranged on the conveyor line along the conveying direction; A stacking module, the stacking module being arranged on the discharging side of the taping, cutting, and appearance detection integrated machine on the conveyor line, the stacking module being used for identifying whether the materials are qualified and classifying and stacking them.

2. The automatic line transmission device for photovoltaic solder tapes according to claim 1, wherein, The conveyor line includes a first conveying device and a second conveying device that are close to each other, the first conveying device being used for receiving the materials to be transferred, The loading and unloading module includes a first truss device, the first truss device being arranged between the first conveying device and the second conveying device, the first truss device being used for transporting the materials on the first conveying device to the second conveying device, wherein, the weighing and labeling integrated machine and the taping, cutting, and appearance detection integrated machine are sequentially arranged on the second conveying device.

3. The automatic wire transfer device for a photovoltaic solder ribbon according to claim 2, characterized in that The first truss device includes: A frame body, the frame body including a pair of columns and a cross beam connected to the tops of the pair of columns; A clamping component, the clamping component being movably connected to the cross beam along the length direction of the cross beam, wherein, the first conveying device and the second conveying device are respectively arranged on both sides of the length direction of the cross beam, one end of each of the first conveying device and the second conveying device is respectively arranged below the cross beam, and the clamping component is used for transporting the materials from one end of the first conveying device to one end of the second conveying device.

4. The automatic wire transfer device for photovoltaic solder tapes according to claim 3, wherein, The clamping component includes: A guiding column, the guiding column being movably connected to the cross beam along the length direction of the cross beam, the guiding column being vertically arranged relative to the cross beam; A clamping jaw component, the clamping jaw component being movably connected to the guiding column up and down.

5. The automatic wire transfer device for photovoltaic solder tapes according to claim 2, characterized in that, The conveyor line further includes a fourth conveying device, the fourth conveying device being arranged on one side close to the weighing and labeling integrated machine, wherein, the fourth conveying device is used for receiving the unqualified materials after weighing by the weighing and labeling integrated machine and discharging them.

6. The automatic wire transfer device for a photovoltaic solder ribbon according to claim 2, wherein The conveyor line further includes a third conveying device, one end of the third conveying device is connected to the discharging side of the second conveying device, and the other end of the third conveying device is provided with the stacking module, The third conveying device includes a plurality of tooling plates, and a tooling plate conveying line and a tooling plate recycling line that are arranged in an upper and lower double layer, wherein, the plurality of tooling plates are detachably arranged on the tooling plate conveying line and the tooling plate recycling line, and the feeding side of the tooling plate conveying line is connected to the discharging side of the second conveying device.

7. The automatic line transmission device for a photovoltaic soldering ribbon according to claim 6, wherein, The third conveying device further includes a buffer module, the buffer module including a buffer storage bin and a first elevator arranged on one side of the buffer storage bin, the first elevator and the buffer storage bin are arranged from near to far relative to the feeding side of the third conveying device, Among them, the buffer heap library is used to store the tooling boards, and the first elevator is used to put the tooling boards in the buffer heap library onto the tooling board conveying line or recycle the tooling boards from the tooling board recycling line and put them into the buffer heap library.

8. The automatic line transmission device for photovoltaic soldering tapes according to claim 6, wherein, The stacking module includes: A first automatic code scanning device, which is arranged on the discharge side of the third conveyor device. The first automatic code scanning device is used to identify the specification information of the material and judge whether it is qualified; A qualified finished product storage system, which is arranged on the discharge side of the first automatic code scanning device on the third conveyor device; A non-qualified finished product storage system, which is arranged on the discharge side of the first automatic code scanning device on the third conveyor device.

9. The automatic line transmission device for photovoltaic soldering tapes according to claim 8, characterized in that, The stacking module further includes an electric roller steering device, The electric roller steering device is arranged on the third conveyor device. The electric roller steering device is located on the discharge side of the first automatic code scanning device and on the feed side of the qualified finished product storage system and the non-qualified finished product storage system. Among them, the electric roller steering device is used to convey the corresponding material to the qualified finished product storage system or the non-qualified finished product storage system according to the discrimination result of the first automatic code scanning device.

10. The automatic line transmission device for photovoltaic solder tapes according to claim 9, characterized in that, The non-qualified finished product storage system includes: A fifth conveyor device, one end of which is connected to the discharge side of the electric roller steering device on the third conveyor device; A second automatic code scanning device, which is arranged on the fifth conveyor device. The second automatic code scanning device is used to eliminate the warehousing information of the non-qualified materials passing through; A defective product buffer heap library, which is arranged on the discharge side of the fifth conveyor device. The defective product buffer heap library is used to store the non-qualified materials; An NG discharging position, which is arranged on the fifth conveyor device. The NG discharging position is used to place the qualified materials formed after the repair of the non-qualified materials in the defective product buffer heap library, and the qualified materials are transported to the qualified finished product storage system through the reverse operation of the fifth conveyor device.