Labeling device for photovoltaic module processing
By designing a labeling device for photovoltaic module processing, the automatic precise laying and flattening of the upper end and side wall labels of the photovoltaic module are achieved, solving the problems of low manual operation efficiency and poor consistency, and improving processing efficiency and quality.
Patent Information
- Application Number
- CN202510663876.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-22
- Publication Date
- 2025-08-15
AI Technical Summary
The existing photovoltaic module labeling process relies on manual operation, has low efficiency and poor consistency, and cannot meet the requirements of efficient processing.
A labeling device for processing photovoltaic modules is designed, including a support mechanism, a first and a second feeding mechanism, and a first and a second labeling mechanism, which is used to automatically paste the first and second types of labels on the upper end and side walls of the photovoltaic module respectively, and to achieve precise positioning and flattening of the labels using a horizontal and vertical moving module, a vertical drive member and a material suction module.
The efficiency of labeling on the upper end and side walls of photovoltaic modules is improved, ensuring accurate labeling and flattening, and improving processing efficiency and consistency.
Smart Images

Figure CN120482498A_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of photovoltaic module labeling, and in particular to a labeling device for photovoltaic module processing. Background Art
[0002] With the continued growth of global demand for clean energy, the photovoltaic industry is experiencing rapid development. As core components of photovoltaic power generation systems, the production scale of photovoltaic modules continues to expand, and the market has placed higher demands on the processing efficiency and quality of photovoltaic modules. Labeling is a key process in the processing of photovoltaic modules. It not only fulfills the important functions of product information identification and traceability, but its labeling quality also directly affects the product's market image and user experience. Currently, the labeling of photovoltaic modules is mainly completed manually. Workers need to take labels printed by label printers, then divide the labels into first-class labels and second-class labels and apply them to the top and side walls of the photovoltaic modules respectively. The speed of this labeling method depends on the proficiency of the operator. It is not efficient and may also have problems such as poor consistency, which cannot meet the requirements of efficient processing. Summary of the Invention
[0003] In order to improve the efficiency of labeling the upper end and side walls of photovoltaic modules, the present application provides a labeling device for photovoltaic module processing.
[0004] The present application provides a photovoltaic module processing labeling device that adopts the following technical solutions: A labeling device for processing photovoltaic modules, comprising a frame, the frame being equipped with a supporting mechanism for carrying the photovoltaic modules, a first feeding mechanism for delivering a first type of label, a second feeding mechanism for delivering a second type of label, a first labeling mechanism for sucking the first type of label and sticking the first type of label to the upper end of the photovoltaic module, and a second labeling mechanism for sucking the second type of label and sticking the second type of label to the side wall of the photovoltaic module; The first labeling mechanism includes a horizontal and vertical movable module set on the frame, a mounting frame is provided on the horizontal and vertical movable module, a vertical driving component is provided on the mounting frame, a mounting frame is connected to a mounting frame, a rotating component is installed on the mounting frame, and a suction component for sucking and placing labels is installed on the rotating component; a pressing component for flattening the label is also installed on the mounting frame.
[0005] By adopting the above technical solution, first, after the photovoltaic module is placed on the supporting mechanism, the first feeding mechanism is driven to deliver the first type of label, and then the first labeling mechanism is used to attach the first type of label to the upper end of the photovoltaic module, and the second feeding mechanism is driven to deliver the second type of label, and then the second labeling mechanism is used to attach the second type of label to the side wall of the photovoltaic module.
[0006] The specific actions of the first labeling mechanism for labeling are: driving the horizontal and vertical moving module 1 and the vertical driving component 1 to drive the suction component to move and absorb the first type of label, and then driving the horizontal and vertical moving module 1 and the vertical driving component 1 to drive the label to the designated labeling position above the photovoltaic component, driving the rotating component to drive the first type of label to rotate to adjust the orientation of the first type of label, and then the vertical driving component 1 can stick the first type of label on the photovoltaic component, and finally use the pressing component to flatten the first type of label.
[0007] Preferably, the suction assembly includes a suction plate connected to the driving member, the suction plate includes a plurality of internally separated cavities, a plurality of suction holes are opened on the suction plate corresponding to each cavity, and a ventilation interface is also provided on the suction plate corresponding to each cavity.
[0008] By adopting the above technical solution, there may be multiple types of first-class labels. In order to save compressed gas, different suction holes can be selected for suction corresponding to first-class labels of different sizes, and negative pressure is generated in the suction hole by passing compressed gas into the cavity corresponding to the suction hole.
[0009] Preferably, the pressing assembly includes a second vertical driving member provided on a second mounting frame, the second vertical driving member is connected to a frame body, and the frame body is rotatably connected to a pressing roller.
[0010] By adopting the above technical solution, the vertical driving member 2 can be driven to drive the pressing roller to press on the first type of label, and then the horizontal and vertical moving module 1 can be driven to drive the pressing roller to move to flatten the first type of label.
[0011] Preferably, the first feeding mechanism includes a fixed frame arranged on the frame, the fixed frame is installed with a label printer, and the fixed frame is also rotatably connected to a conveyor shaft 1 and a conveyor shaft 2, the conveyor shaft 1 and the conveyor shaft 2 are commonly connected to a feeding carrier belt, the conveyor shaft 1 is connected to a feed rotating part, and the label printer can feed the first type of label to the feeding carrier belt.
[0012] By adopting the above technical solution, the label printer can feed the first type of labels to the feeding carrier belt, and then drive the feed rotating member to drive the conveyor shaft 1 and the conveyor shaft 2 to rotate synchronously so that the feeding carrier belt can deliver the first type of labels to the designated waiting position.
[0013] Preferably, the feeding carrier belt includes a plurality of feeding carrier belts installed on conveying shaft one and conveying shaft two, and the plurality of feeding carrier belts are arranged in parallel and distributed at intervals; a blowing assembly is also provided on the fixed frame below the plurality of feeding carrier belts, and the blowing assembly is used to blow air toward the plurality of feeding carrier belts.
[0014] By adopting the above technical solution, using multiple spaced-apart feeding carrier belts to carry the first type of labels can reduce the contact area between the first type of labels and the feeding carrier belt to prevent the first type of labels from sticking to the feeding carrier belt. In addition, the blowing component's blowing of air on the feeding carrier belt is also used to prevent the first type of labels from sticking to the feeding carrier belt and being unable to be absorbed by the suction component.
[0015] Preferably, the blowing assembly includes a plate body arranged on a fixing frame, a cavity is opened inside the plate body, a plurality of blowing holes connected to the cavity are opened at the upper end of the plate body, and the plate body is also equipped with a gas inlet for supplying gas to the cavity.
[0016] By adopting the above technical solution, after the external positive pressure gas source is connected to the cavity through the gas inlet, the multiple blowing holes will blow air towards the feeding supporting belt.
[0017] Preferably, the second feeding mechanism includes a connecting frame arranged on the frame, a label printing feeder is installed on the connecting frame, and a lifting member is also provided on the connecting frame on one side of the label printing feeder, a supporting platform is installed on the lifting member, and the supporting platform includes an anti-sticking layer at the upper end, and the label printing feeder can deliver the second type of labels to the upper end of the supporting platform.
[0018] By adopting the above technical solution, the label printing and feeding machine can deliver the second type of labels to the carrier platform in an orderly manner, and the driving lifting member can drive the second type of labels to rise and fall for subsequent grabbing.
[0019] Preferably, the second labeling mechanism includes a horizontally and vertically movable module 2 arranged on the frame, the horizontally and vertically movable module 2 is provided with a mounting seat 1, the mounting seat 1 is provided with a belt rotating part 1, the belt rotating part 1 is provided with a mounting seat 2, the mounting seat 2 is provided with a belt rotating part 2, and the belt rotating part 2 is provided with a material suction part for sucking and placing the second type of labels, and the belt rotating part 1 and the belt rotating part 2 are both used to drive the material suction part to rotate so as to stick the second type of labels on the side wall of the photovoltaic module.
[0020] By adopting the above technical solution, the horizontal and vertical moving module 2 can be driven to drive the material suction part to absorb the second type of label. Then, the second type of label can be driven to rotate twice by using the belt rotating part 1 and the belt rotating part 2 to stick the second type of label on the side wall of the photovoltaic module.
[0021] In summary, the present invention includes at least one of the following beneficial technical effects: 1. After placing the photovoltaic module on the support mechanism, the first feeding mechanism is driven to deliver the first type of label. The first labeling mechanism is then used to affix the first type of label to the top of the photovoltaic module. The second feeding mechanism is driven to deliver the second type of label. The second labeling mechanism is then used to affix the second type of label to the side wall of the photovoltaic module.
[0022] 2. The specific actions of labeling by the first labeling mechanism are as follows: the label printer can feed the first type of label to the feeding carrier belt, and then drive the feed rotary member to drive the conveyor shaft 1 and the conveyor shaft 2 to rotate synchronously so that the feeding carrier belt sends the first type of label to the designated material collection position, drive the horizontal and vertical moving module 1 and the vertical driving member 1 to drive the suction component to move and absorb the first type of label, and then drive the horizontal and vertical moving module 1 and the vertical driving member 1 to drive the label to the designated labeling position above the photovoltaic module, drive the driving rotary member to drive the first type of label to rotate to adjust the direction of the first type of label, and then the vertical driving member 1 can stick the first type of label on the photovoltaic module, and finally use the pressing component to flatten the first type of label.
[0023] 3. The specific labeling actions of the second labeling mechanism are as follows: the label printing and feeding machine delivers the second type of labels to the carrier platform in an orderly manner, drives the lifting part to lift the second type of labels, drives the horizontal and vertical moving module 2 to drive the material suction part to absorb the second type of labels, and then uses the belt rotating part 1 and the belt rotating part 2 to drive the second type of labels to rotate twice to stick the second type of labels on the side wall of the photovoltaic module. BRIEF DESCRIPTION OF THE DRAWINGS
[0024] Figure 1 This is a schematic diagram of the overall structure of a labeling device for photovoltaic module processing according to an embodiment of the present application; Figure 2 It is a structural diagram used to reflect the supporting mechanism; Figure 3 It is a schematic diagram for reflecting the structure of the first feeding mechanism; Figure 4 yes Figure 3 Enlarged view of part A; Figure 5 It is a structural diagram for reflecting the first labeling mechanism; Figure 6 It is a schematic diagram for reflecting the structure of the suction component; Figure 7 It is a structural diagram used to reflect the cavity; Figure 8 It is a schematic diagram for reflecting the structure of the second feeding mechanism; Figure 9 It is a structural diagram for reflecting the second labeling mechanism.
[0025] Markings in the accompanying drawings: 1. Frame; 2. Supporting mechanism; 21. Belt transverse transmission assembly; 22. Belt longitudinal transmission assembly; 23. Adjusting seat; 3. First feeding mechanism; 31. Fixing frame; 32. Label printer; 33. Conveyor shaft 1; 34. Conveyor shaft 2; 35. Feeding carrier belt; 351. Feeding carrier belt; 36. Feeding member; 37. Blowing assembly; 371. Plate; 372. Blowing hole; 373. Gas inlet; 4. Second feeding mechanism; 41. Connecting frame; 42. Label printing feeder; 43. Lifting member; 44. Carrying platform; 5. First labeling mechanism; 51. Transverse 1. Vertical moving module 1; 511. Horizontal conveying belt member; 512. Vertical conveying belt member; 52. Mounting frame 1; 53. Vertical driving member 1; 54. Mounting frame 2; 55. Driving member; 56. Suction assembly; 561. Suction plate; 562. Cavity; 563. Suction hole; 564. Ventilation interface; 57. Pressing assembly; 571. Vertical driving member 2; 572. Frame; 573. Pressing roller; 6. Second labeling mechanism; 61. Horizontal and vertical moving module 2; 62. Mounting seat 1; 63. Belt rotating member 1; 64. Mounting seat 2; 65. Belt rotating member 2; 66. Material suction member; 67. Flattening roller. DETAILED DESCRIPTION
[0026] The present invention will be further described in detail below with reference to the accompanying drawings.
[0027] In the description of the present invention, it should be understood that descriptions involving orientations, such as up, down, front, back, left, right, etc., indicating orientations or positional relationships, are based on the orientations or positional relationships shown in the accompanying drawings. They are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation. Therefore, they cannot be understood as limitations on the present invention.
[0028] The embodiment of the present application discloses a labeling device for processing photovoltaic modules, which is used to improve the efficiency of labeling the top and side walls of photovoltaic modules, which are generally rectangular.
[0029] Reference Figure 1 A labeling device for photovoltaic module processing includes a frame 1, which is equipped with a supporting mechanism 2 for carrying photovoltaic modules, a first feeding mechanism 3 for delivering first-type labels, a second feeding mechanism 4 for delivering second-type labels, a first labeling mechanism 5 for sucking first-type labels and sticking the first-type labels on the upper end of the photovoltaic module, and a second labeling mechanism 6 for sucking second-type labels and sticking the second-type labels on the side wall of the photovoltaic module.
[0030] The photovoltaic components will flow from the previous process to the supporting mechanism 2, drive the first feeding mechanism 3 to deliver the first type of label, and then use the first labeling mechanism 5 to stick the first type of label on the upper end of the photovoltaic component. At the same time, drive the second feeding mechanism 4 to deliver the second type of label, and then use the second labeling mechanism 6 to stick the second type of label on the side wall of the photovoltaic component.
[0031] Reference Figure 2 The supporting mechanism 2 includes multiple parallel belt transverse conveying components 21 and a belt longitudinal conveying component 22 arranged on the frame 1. Two adjustment seats 23 are provided on the belt longitudinal conveying component 22. The belt transverse conveying component 21 is used to receive and send out the photovoltaic components transferred from the previous process and support them, while the belt longitudinal conveying component 22 is used to drive the two adjustment seats 23 to move to adjust the position of the photovoltaic components.
[0032] Reference Figure 3 The first feeding mechanism 3 includes a fixed frame 31 arranged on the frame 1, and the fixed frame 31 is installed with a label printer 32. The fixed frame 31 is also rotatably connected to a parallel conveying shaft 1 33 and a conveying shaft 2 34. The conveying shaft 1 33 and the conveying shaft 2 34 are commonly connected to a feeding carrier belt 35. The conveying shaft 1 33 is connected to a feeding rotary member 36, and the feeding rotary member 36 is a motor. The label printer 32 can feed the first type of label to the feeding carrier belt 35. The specific structure of the label printer 32 is existing technology and will not be repeated here.
[0033] Reference Figure 3 and Figure 4 Since the lower label surface of the first type of label is usually sticky, in order to prevent the first type of label from adhering to the feeding carrier belt 35, the feeding carrier belt 35 includes a plurality of feeding carrier belts 351 installed on the conveying shaft 1 33 and the conveying shaft 2 34. The plurality of feeding carrier belts 351 are arranged in parallel and spaced apart. The feeding carrier belts 351 are made of materials with good air permeability, such as fabric and mesh metal materials; a blowing component 37 is also provided on the fixing frame 31 below the plurality of feeding carrier belts 351, and the blowing component 37 is used to blow air toward the plurality of feeding carrier belts 351.
[0034] Reference Figure 3 and Figure 4 Specifically, the blowing assembly 37 includes a plate body 371 provided on the fixing frame 31, a cavity is opened inside the plate body 371, a plurality of blowing holes 372 connected to the cavity are opened at the upper end of the plate body 371, and the plate body 371 is also equipped with a gas inlet 373 for supplying gas to the cavity. When an external positive pressure gas source is connected to the gas inlet 373, gas can be supplied to the cavity so that the plurality of blowing holes 372 blow air to the plurality of feeding carrier tapes 351 to prevent the first type of labels from sticking together.
[0035] The label printer 32 prints out the first type of labels and then sends the first type of labels to multiple feeding carrier belts 351, driving the feed transfer member 36 to drive the conveyor shaft 1 33 and the conveyor shaft 2 34 to rotate synchronously so that the multiple feeding carrier belts 351 send the first type of labels to the designated material collection position.
[0036] Reference Figure 5 The first labeling mechanism 5 includes a horizontal and vertical moving module 51 provided on the frame 1, combined with Figure 1 The horizontal and vertical moving module 1 51 includes a horizontal conveying belt member 511 provided on the frame 1 and a longitudinal conveying belt member 512 provided on the horizontal conveying belt group. The specific structures of the horizontal conveying belt member 511 and the longitudinal conveying belt member 512 are both existing technologies and are not described here. The longitudinal conveying belt member 512 is provided with a mounting frame 1 52, and the mounting frame 1 52 is provided with a vertical driving member 1 53. The vertical driving member 1 53 is a screw transmission member. The vertical driving member 1 53 is connected to the mounting frame 2 54, and the mounting frame 2 54 is equipped with a driving member 55. The driving member 55 is preferably a motor. The driving member 55 is equipped with a suction component 56 for sucking and placing labels; the mounting frame 2 54 is also equipped with a pressing component 57 for flattening the label.
[0037] Reference Figure 6 and Figure 7 , in order to save compressed gas, combined with Figure 5 The suction assembly 56 includes a suction plate 561 connected to the driving member 55. The suction plate 561 includes a plurality of internally separated cavities 562. In this embodiment, the number of cavities 562 is four. A plurality of connected suction holes 563 are opened on the suction plate 561 corresponding to each cavity 562. A ventilation interface 564 is also provided on the suction plate 561 corresponding to each cavity 562.
[0038] There may be multiple types of first-class labels of different sizes. In order to save compressed gas, the first-class labels of different sizes can select suction holes 563 at different positions for suction, and negative pressure is generated in the suction hole 563 by passing compressed gas into the cavity 562 corresponding to the suction hole 563.
[0039] Of course, this design is also used to ensure the reliability of the suction of the first type of labels, and the sucked first type of labels can completely cover all the suction holes 563 corresponding to the ventilation cavity 562.
[0040] Reference Figure 5 The pressing assembly 57 includes a second vertical driving member 571 provided on the second mounting frame 54. The second vertical driving member 571 is a cylinder. The second vertical driving member 571 is connected to a frame 572. The frame 572 is rotatably connected to a pressing roller 573.
[0041] Drive the horizontal and vertical moving module 1 51 and the vertical driving component 1 53 to drive the suction component 56 to move and absorb the first type of label, and then drive the horizontal and vertical moving module 1 51 and the vertical driving component 1 53 to drive the label to the designated labeling position above the photovoltaic component, drive the rotating component 55 to drive the first type of label to rotate to adjust the orientation of the first type of label, and then the vertical driving component 1 53 can move the first type of label down and stick it on the photovoltaic component, finally drive the vertical driving component 2 571 and cooperate with the horizontal and vertical moving module 1 51 to drive the pressing roller 573 to move to flatten the first type of label.
[0042] Reference Figure 8 The second feeding mechanism 4 includes a connecting frame 41 arranged on the frame 1, and a label printing feeder 42 is installed on the connecting frame 41. A lifting member 43 is also provided on the connecting frame 41 on one side of the label printing feeder 42. The lifting member 43 is preferably a cylinder, and a supporting platform 44 is installed on the lifting member 43. The supporting platform 44 includes an anti-sticking layer at the upper end. The label printing feeder 42 can deliver the second type of label to the upper end of the supporting platform 44. The specific structure of the label printing feeder 42 is the existing technology and will not be repeated here.
[0043] The label printing and feeding machine 42 prints out the second type of labels and delivers the second type of labels to the supporting platform 44 in an orderly manner, and drives the lifting member 43 to lift the second type of labels to wait for taking out.
[0044] Reference Figure 9 Combined with Figure 1 The second labeling mechanism 6 includes a horizontal and vertical moving module 2 61 arranged on the frame 1. The horizontal and vertical moving module 2 61 has the same structure as the horizontal and vertical moving module 1 51. The horizontal and vertical moving module 2 61 is provided with a mounting seat 1 62, and the mounting seat 1 62 is provided with a belt rotating part 1 63. The belt rotating part 1 63 is provided with a mounting seat 2 64, and the mounting seat 2 64 is provided with a belt rotating part 2 65. The belt rotating part 1 63 and the belt rotating part 2 65 are both rotary cylinders. The belt rotating part 2 65 is provided with a material suction part 66 for sucking and placing the second type of label. The material suction part 66 is preferably a sponge suction cup. The belt rotating part 1 63 and the belt rotating part 2 65 are both used to drive the material suction part 66 to rotate so as to stick the second type of label on the side wall of the photovoltaic module. Specifically, the belt rotating part 1 63 can drive the second type of label to rotate along the upper end surface of the photovoltaic module, and the belt rotating part 2 65 can drive the second type of label to rotate along the side wall surface of the photovoltaic module. Of course, in order to flatten the second type of labels, a flattening roller 67 is rotatably connected to the mounting seat 1 62, and the flattening roller 67 is vertically arranged.
[0045] Take labeling on the right side wall of the photovoltaic module as an example: drive the horizontal and vertical moving module 2 61 to drive the material suction part 66 to absorb the second type of label, and then drive the horizontal and vertical moving module 2 61 to drive the second type of label to move to the upper right side of the right side wall of the photovoltaic module, drive the belt rotating part 1 63 to drive the second type of label to rotate 90° counterclockwise, and then drive the belt rotating part 2 65 to drive the second type of label to rotate 90° clockwise to stick the second type of label on the right side wall of the photovoltaic module, and finally drive the horizontal and vertical moving module 2 61 to drive the flattening roller 67 to move to flatten the second type of label.
[0046] Of course, by flexibly driving the second horizontal and vertical moving module 61, the first belt rotating member 63 and the second belt rotating member 65, the material suction member 66 can attach the second type of label to the side wall of the photovoltaic module at any position.
[0047] The implementation principle of a labeling device for photovoltaic module processing in the embodiment of the present application is as follows: The belt transverse conveyor assembly 21 is used to receive and support the photovoltaic modules transferred from the previous process; The label printer 32 prints the first type of labels and then feeds the first type of labels onto a plurality of feeding carrier belts 351 , and the driving feeder 36 drives the plurality of feeding carrier belts 351 to move and feed the first type of labels to a designated location to be picked up; The horizontal and vertical moving module 1 51 and the vertical driving member 1 53 are driven to drive the suction assembly 56 to move and absorb the first type of label. Then, the horizontal and vertical moving module 1 51 and the vertical driving member 1 53 are driven to drive the label to the designated labeling position above the photovoltaic module. The driving member 55 is driven to rotate the first type of label to adjust the orientation of the first type of label. Then, the vertical driving member 1 53 can move the first type of label downward and attach it to the photovoltaic module. Finally, the vertical driving member 2 571 is driven and cooperated with the horizontal and vertical moving module 1 51 to drive the pressing roller 573 to move to flatten the first type of label. At the same time, the label printing and feeding machine 42 prints out the second type of labels and delivers the second type of labels to the carrier 44 in an orderly manner, and the driving lifting member 43 drives the second type of labels to rise for collection; Drive the horizontal and vertical moving module 2 61 to drive the material suction part 66 to absorb the second type of label, and then drive the horizontal and vertical moving module 2 61 to move the second type of label to one side of the side wall of the photovoltaic component, drive the belt rotating part 1 63 and the belt rotating part 2 65 to drive the second type of label to rotate so as to stick the second type of label on the side wall of the photovoltaic component, and finally drive the horizontal and vertical moving module 2 61 to drive the flattening roller 67 to move to flatten the second type of label.
[0048] The embodiments of this specific implementation method are all preferred embodiments of the present invention and are not intended to limit the scope of protection of the present invention. Therefore, any equivalent changes made based on the structure, shape, and principle of the present invention should be included in the scope of protection of the present invention.
Claims
1. A labeling device for photovoltaic module processing, characterized by: The machine comprises a frame (1), wherein the frame (1) is provided with a supporting mechanism (2) for carrying a photovoltaic module, a first feeding mechanism (3) for delivering a first type of label, a second feeding mechanism (4) for delivering a second type of label, a first labeling mechanism (5) for sucking the first type of label and sticking the first type of label to the upper end of the photovoltaic module, and a second labeling mechanism (6) for sucking the second type of label and sticking the second type of label to the side wall of the photovoltaic module; The first labeling mechanism (5) comprises a horizontal and vertical movable module (51) arranged on a frame (1); a mounting frame (52) is provided on the horizontal and vertical movable module (51); the mounting frame (52) is provided with a vertical driving member (53); the vertical driving member (53) is connected to a second mounting frame (54); the second mounting frame (54) is provided with a driving member (55); the driving member (55) is provided with a suction component (56) for sucking and releasing labels; the second mounting frame (54) is also provided with a pressing component (57) for flattening the label.
2. A labeling device for photovoltaic module processing according to claim 1, characterized in that: The suction assembly (56) includes a suction plate (561) connected to the driving member (55), and the suction plate (561) includes a plurality of internally separated cavities (562). The suction plate (561) is provided with a plurality of suction holes (563) corresponding to each cavity (562), and the suction plate (561) is also provided with a ventilation interface (564) corresponding to each cavity (562).
3. The photovoltaic module processing labeling device according to claim 1, characterized in that: The pressing assembly (57) includes a second vertical driving member (571) provided on a second mounting frame (54), wherein the second vertical driving member (571) is connected to a frame (572), and the frame (572) is rotatably connected to a pressing roller (573).
4. The photovoltaic module processing labeling device according to claim 1, characterized in that: The first feeding mechanism (3) includes a fixed frame (31) arranged on the frame (1), the fixed frame (31) is equipped with a label printer (32), the fixed frame (31) is also rotatably connected to a conveying shaft 1 (33) and a conveying shaft 2 (34), the conveying shaft 1 (33) and the conveying shaft 2 (34) are jointly connected to a feeding carrier belt (35), the conveying shaft 1 (33) is connected to a feed rotating member (36), and the label printer (32) can feed a first type of label to the feeding carrier belt (35).
5. The photovoltaic module processing labeling device according to claim 4, characterized in that: The feeding carrier belt (35) includes a plurality of feeding carrier belts (351) installed on the conveying shaft 1 (33) and the conveying shaft 2 (34), and the plurality of feeding carrier belts (351) are arranged in parallel and distributed at intervals; a blowing component (37) is also provided on the fixing frame (31) below the plurality of feeding carrier belts (351), and the blowing component (37) is used to blow air toward the plurality of feeding carrier belts (351).
6. The photovoltaic module processing labeling device according to claim 5, characterized in that: The blowing assembly (37) includes a plate (371) disposed on a fixing frame (31), a cavity being formed inside the plate (371), a plurality of blowing holes (372) communicating with the cavity being formed at the upper end of the plate (371), and a gas inlet (373) for supplying gas to the cavity being further installed on the plate (371).
7. The photovoltaic module processing labeling device according to claim 1, characterized in that: The second feeding mechanism (4) comprises a connecting frame (41) arranged on the frame (1), a label printing feeder (42) is installed on the connecting frame (41), a lifting member (43) is further provided on the connecting frame (41) at one side of the label printing feeder (42), a supporting platform (44) is installed on the lifting member (43), the supporting platform (44) comprises an anti-sticking layer at the upper end, and the label printing feeder (42) can feed the second type of label to the upper end of the supporting platform (44).
8. The photovoltaic module processing labeling device according to claim 1, characterized in that: The second labeling mechanism (6) includes a horizontal and vertical movable module group 2 (61) arranged on the frame (1), the horizontal and vertical movable module group 2 (61) is provided with a mounting seat 1 (62), the mounting seat 1 (62) is provided with a belt rotating member 1 (63), the belt rotating member 1 (63) is provided with a mounting seat 2 (64), the mounting seat 2 (64) is provided with a belt rotating member 2 (65), the belt rotating member 2 (65) is provided with a material suction member (66) for sucking and placing the second type of label, the belt rotating member 1 (63) and the belt rotating member 2 (65) are both used to drive the material suction member (66) to rotate so as to stick the second type of label on the side wall of the photovoltaic module.