An automatic folding and dispensing device for lamp panels
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-01
- Publication Date
- 2026-08-14
AI Technical Summary
[0005]本实用新型的目的是提供一种用于灯板的自动折板分料装置,能够解决现有技术中因缺少先将整块灯板折断为单排灯条、再将单排灯条折断为单片灯芯的自动折板分料装置而导致的生产效率低下、人工成本高的技术问题
[0017]本实用新型中的一种用于灯板的自动折板分料装置通过在机架上设置储料机构、进板机构、折板机构、条料送进机构和折料机构,并通过上述各机构之间的相互配合,从而实现先将整块灯板折断为单排灯条、再将单排灯条折断为单片灯芯的自动化生产过程,大大节省了人工成本以及有效提高了生产效率。
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Figure CN224632674U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of automatic production equipment for light strings, and in particular to an automatic folding and dispensing device for light panels. Background Technology
[0002] like Figure 1 As shown, currently, the LED chips used in the production of LED light strings are all in the form of a light board 100. Each light board 100 is composed of multiple single-row light strips 10 arranged side by side, and each single-row light strip 10 is composed of multiple single-piece LED chips 1 arranged side by side. Each single-piece LED chip 1 on the light board is connected by folds, and multiple through holes 11 are formed between adjacent single-row light strips 10. Therefore, in the LED light string production process, it is necessary to first break the entire light board 100 into single-row light strips 10, and then break the single-row light strips into single-piece LED chips 1.
[0003] However, there is currently a lack of automatic panel breaking and material sorting devices on the market that can first break the entire light panel into single rows of light strips, and then break the single rows of light strips into single light cores. In the LED string production process, the single rows of light strips on the light panel are usually broken one by one by manual labor, and then the single rows of light strips are broken into multiple single light cores, resulting in low production efficiency and high labor costs.
[0004] Therefore, it is necessary to provide a technical solution to address the above problems. Utility Model Content
[0005] The purpose of this utility model is to provide an automatic folding and sorting device for lamp panels, which can solve the technical problems of low production efficiency and high labor costs caused by the lack of an automatic folding and sorting device that first breaks the entire lamp panel into a single row of lamp strips and then breaks the single row of lamp strips into individual lamp cores.
[0006] To achieve the above objectives, the present invention adopts the following technical solution:
[0007] An automatic folding and dispensing device for lamp panels includes a frame and a storage mechanism, a feeding mechanism, a folding mechanism, a strip feeding mechanism, and a folding mechanism mounted on the frame. The storage mechanism includes a storage frame capable of holding multiple lamp panels, and the storage frame has a discharge port at its discharge end. The feeding mechanism drives the lamp panel at the bottom of the storage frame through the discharge port to leave the storage frame and enter the folding mechanism. The folding mechanism breaks the lamp panel fed by the feeding mechanism into a single row of lamp strips. The strip feeding mechanism drives the single row of lamp strips away from the folding mechanism and into the folding mechanism, which breaks the single row of lamp strips fed by the strip feeding mechanism into a single lamp wick.
[0008] Furthermore, the storage frame includes a bottom plate, an end plate, and two side plates. The end plate is movably disposed above the end of the bottom plate near the discharge end, and the discharge port is formed between the bottom of the end plate and the top of the bottom plate. An end plate driver is provided on one side of the end plate, which is used to drive the end plate to move up and down relative to the bottom plate. The two side plates are respectively disposed on both sides of the bottom plate. The bottom plate near the discharge port has a plurality of through slots evenly spaced for the feeding mechanism to insert. The storage mechanism also includes a cover plate, which covers the top of the light plates stacked in the storage frame.
[0009] Furthermore, the feeding mechanism is located below the storage frame. The feeding mechanism includes a horizontal feeding driver, a comb plate, a vertical feeding driver, a vertical slide rod, and a horizontal driving block. The output end of the horizontal feeding driver is connected to the horizontal driving block. The vertical slide rod is slidably disposed in the horizontal driving block. The vertical feeding driver is fixedly disposed on the horizontal driving block, and the output end of the vertical feeding driver is connected to the vertical slide rod. The end of the vertical slide rod away from the vertical feeding driver is connected to the comb plate.
[0010] Furthermore, the comb plate includes a main body and a plurality of tooth plates evenly spaced on the top of the main body, and each tooth plate has a plurality of insert teeth evenly spaced on its top.
[0011] Furthermore, the folding plate mechanism includes a folding plate driver and a folding plate component. The folding plate component is rotatably disposed on the side of the discharge port away from the storage frame. The output end of the folding plate driver is connected to the folding plate component, and the folding plate driver is used to drive the folding plate component to rotate. The folding plate component is provided with a light strip receiving groove. When the folding plate component is parallel to the light plate in the storage frame, the light strip receiving groove is directly opposite the discharge port, and the plate feeding mechanism can drive the light plate to be inserted into the light strip receiving groove.
[0012] Furthermore, the folding plate mechanism also includes a cam assembly, which includes two cams. The two ends of the folding plate are respectively disposed in the two cams. The two cams are rotatably disposed on the frame. A drive ring is sleeved on one of the cams. The output end of the folding plate driver is connected to the drive ring.
[0013] Furthermore, the strip feeding mechanism is disposed at one end of the folding plate mechanism. The strip feeding mechanism includes a strip feeding driver, a rotary connecting assembly, and a push rod. The rotary connecting assembly includes a driving connecting block and a rotating block rotatably disposed in the driving connecting block. The driving connecting block is connected to the output end of the strip feeding driver. One end of the push rod is connected to the rotating block, and the other end is inserted into the light strip receiving groove. The push rod can reciprocate in the light strip receiving groove under the drive of the strip feeding driver.
[0014] Furthermore, the folding mechanism includes a folding driver and a folding component. The folding component is rotatably disposed at one end of the folding mechanism away from the strip feeding mechanism. The output end of the folding driver is connected to the folding component, and the folding driver is used to drive the folding component to rotate. The folding component has a lamp wick receiving through hole, and the strip feeding mechanism can drive the single row of lamp strips in the lamp strip receiving groove into the lamp wick receiving through hole.
[0015] Furthermore, the automatic folding and dispensing device also includes a light strip fixing channel, which is located between the folding mechanism and the folding mechanism. The strip feeding mechanism can drive the single row of light strips in the light strip receiving groove to enter the light strip fixing channel and the lamp core receiving through hole in sequence.
[0016] Furthermore, the automatic folding and dispensing device also includes a wick feeding mechanism. The wick feeding mechanism includes a feeding driver and a wick carrier connected to the output end of the feeding driver. The wick carrier is disposed at the end of the folding mechanism away from the folding mechanism. The wick carrier is provided with a wick receiving cavity. The feeding driver is used to drive the wick carrier away from or near the folding mechanism. When the wick carrier is near the folding mechanism, the wick receiving cavity is directly opposite the wick receiving through hole.
[0017] An automatic folding and dispensing device for lamp panels according to this utility model is provided on the frame with a storage mechanism, a feeding mechanism, a folding mechanism, a strip feeding mechanism, and a folding mechanism. Through the cooperation between the above mechanisms, an automated production process is realized, which first folds the whole lamp panel into a single row of lamp strips, and then folds the single row of lamp strips into a single lamp core. This greatly saves labor costs and effectively improves production efficiency. Attached Figure Description
[0018] Figure 1 This is a schematic diagram of the structure of the lamp panel, single row of lamp strips, and single lamp core of this utility model.
[0019] Figure 2 This is a schematic diagram of the automatic folding and dispensing device for lamp panels according to the present invention.
[0020] Figure 3 This is a schematic diagram of another angle of the automatic folding and dispensing device for lamp panels according to this utility model.
[0021] Figure 4 This is a cross-sectional structural diagram of the automatic folding and dispensing device for lamp panels according to the present invention.
[0022] Figure 5 for Figure 4 A magnified structural diagram of point A in the middle.
[0023] Figure 6 This is another angular structural diagram of the automatic folding and dispensing device for lamp panels according to this utility model.
[0024] Figure 7 This is a schematic diagram of the structure of the base plate of this utility model.
[0025] Figure 8 This is a schematic diagram of the comb plate of this utility model.
[0026] Explanation of reference numerals in the attached figures:
[0027] 1-Single LED chip; 10-Single row LED strip; 100-LED panel; 11-Through hole; 2-Frame; 30-Storage frame; 31-Discharge port; 32-Base plate; 321-Through groove; 322-Inclined surface; 33-End plate; 332-Elastic pressure strip; 34-Side plate; 35-Cover plate; 351-Handle; 36-Blocking rod; 41-Horizontal feed driver; 42-Comb plate; 421-Main body; 422-Tooth plate; 423-Tooth; 43-Vertical feed driver; 44-Vertical slide 45-Rearward drive block; 51-Folding plate driver; 52-Folding plate component; 521-Light strip receiving slot; 53-Cam; 54-Drive ring; 61-Strip material feeding driver; 62-Rotary connecting assembly; 621-Drive connecting block; 622-Rotating block; 63-Push rod; 7-Folding mechanism; 71-Folding driver; 72-Folding component; 721-Light wick receiving through hole; 8-Light strip fixing channel; 9-Light wick delivery mechanism; 92-Light wick carrier; 921-Light wick receiving cavity. Detailed Implementation
[0028] To facilitate understanding by those skilled in the art, the present invention will be further described below with reference to embodiments and accompanying drawings. The content mentioned in the embodiments is not intended to limit the present invention.
[0029] like Figures 1 to 8As shown, this utility model provides an automatic folding and dispensing device for lamp panels. The automatic folding and dispensing device includes a frame 2, and a storage mechanism, a feeding mechanism, a folding mechanism, a strip feeding mechanism, and a folding mechanism 7 disposed on the frame 2. The storage mechanism includes a storage frame 30, which can hold multiple lamp panels 100. The discharge end of the storage frame 30 has a discharge port 31. The feeding mechanism is used to drive the lamp panel 100 located at the bottom of the storage frame 30 to leave the storage frame 30 through the discharge port 31 and enter the folding mechanism. The folding mechanism is used to break the lamp panel 100 conveyed by the feeding mechanism to form a single row of lamp strips 10. The strip feeding mechanism is used to drive the single row of lamp strips 10 to leave the folding mechanism and enter the folding mechanism 7. The folding mechanism 7 is used to break the single row of lamp strips 10 conveyed by the strip feeding mechanism to form a single lamp wick 1. It is understandable that the position of the discharge port 31 corresponds to the position of the light panel at the bottom of the storage frame 30.
[0030] In this embodiment, by setting up a storage mechanism, the user can stack and load multiple lamp panels 100 in the storage frame 30 at one time, reducing the frequency of material replacement. In the actual production process, firstly, the feeding mechanism drives the bottom lamp panel 100 of the storage frame 30 to leave the storage frame 30 through the discharge port 31 and enter the folding mechanism. Specifically, the feeding mechanism feeds the single row of light strips 10 closest to the folding mechanism into the folding mechanism each time. Then, the folding mechanism breaks the single row of light strips 10 along the fold seam to separate it from the lamp panel 100. Then, the strip feeding mechanism drives the separated single row of light strips 10 to leave the folding mechanism and enter the folding mechanism 7. Specifically, the strip feeding mechanism feeds the single lamp core 1 closest to the folding mechanism 7 into the folding mechanism 7 each time. Finally, the folding mechanism 7 breaks the single lamp core 1 to separate it from the single row of light strips 10, thus completing the automatic folding and material distribution operation of the lamp panel 100. Understandably, when the single row of light strips 10 completely leaves the folding mechanism, the feeding mechanism sends the next single row of light strips 10 in the light panel 100 that is closest to the folding mechanism into the folding mechanism for the next cycle. The automatic folding and dispensing device for light panels in this embodiment has a high degree of automation, which can greatly save labor costs and improve the production efficiency of folding and dispensing light panels.
[0031] Furthermore, such as Figure 2-5As shown in Figure 7, the storage frame 30 includes a base plate 32, an end plate 33, and two side plates 34. The end plate 33 is movably disposed above the end of the base plate 32 near the discharge end, and the discharge port 31 is formed between the bottom of the end plate 33 and the top of the base plate 32. An end plate driver (not shown in the figure) is provided on one side of the end plate 33. The end plate driver is used to drive the end plate 33 to move up and down relative to the base plate 32. The end plate driver is an existing driver, as long as it can drive the end plate 33 to move up and down. When the lamp plate 100 needs to be fed forward, the end plate driver drives the end plate 33 to move upward, so that the lamp plate 100 moves forward smoothly under the drive of the feeding mechanism. When the folding mechanism needs to break the lamp plate 100, the end plate driver drives the end plate to move downward, so that the lamp plate 100 moves forward smoothly. The clamping mechanism ensures smooth bending. The two side plates are respectively located on both sides of the base plate 32. The base plate 32 near the discharge port 31 has a plurality of through slots 321 evenly spaced for the feeding mechanism to insert. Specifically, the storage frame 30 also includes two baffles 36 located on the end of the base plate 32 away from the discharge end. The positions of the two baffles 36 can be adjusted according to the length of the lamp plate 100 so that the storage frame 30 can adapt to lamp plates 100 of different lengths. The bottom of the base plate 32 near the discharge end has an inclined surface 322, which provides space for the bending mechanism to perform the bending operation. An elastic pressure strip 332 is provided at the middle position of the bottom of the end plate 33. The elastic pressure strip 332 can clamp the lamp plate 100 without damaging it. Furthermore, the storage mechanism also includes a cover plate 35, which covers the top of the lamp panels 100 stacked in the storage frame 30. By providing the cover plate 35, on the one hand, external dust and other impurities are prevented from falling onto the lamp panels 100, and on the other hand, the lamp panels 100 are placed flat in the storage frame 30, which facilitates the feeding mechanism to push the lamp panels 100 forward. The top of the cover plate 35 is also connected to a handle 351, which makes it convenient for the user to operate the cover plate 35.
[0032] Furthermore, such as Figure 4-5 As shown, the feeding mechanism is located below the storage frame 30. The feeding mechanism includes a horizontal feeding driver 41, a comb plate 42, a vertical feeding driver 43, a vertical slide rod 44, and a horizontal driving block 45. The output end of the horizontal feeding driver 41 is connected to the horizontal driving block 45. The vertical slide rod 44 is slidably disposed in the horizontal driving block 45. The vertical feeding driver 43 is fixedly disposed on the horizontal driving block 45, and the output end of the vertical feeding driver 43 is connected to the vertical slide rod 44. The end of the vertical slide rod away from the vertical feeding driver 43 is connected to the comb plate 42. For example... Figure 8As shown, the comb plate 42 includes a main body 421 and a plurality of toothed plates 422 evenly spaced on the top of the main body 421. Each toothed plate 422 has a plurality of teeth 423 evenly spaced on its top. Specifically, each toothed plate 422 has three teeth 423 evenly spaced on its top, and the spacing between the teeth 423 matches the spacing between the through holes 11 on the lamp plate 100, so that the teeth 423 can be inserted into the through holes 11. The horizontal driver 41 and the vertical driver 43 are both existing drivers, as long as they can drive the comb plate 42 to move in the direction of approaching or moving away from the folding mechanism and in the vertical direction. In actual use, firstly, the vertical feed driver 43 drives the vertical slide bar 44 and the comb plate 42 to move upward, so that the comb plate 42 is inserted into the multiple through holes 11 of the lamp plate 100 through the through slots 321. Then, the horizontal feed driver 41 drives the horizontal drive block 45, the vertical slide bar 44 and the comb plate 42 to move towards the folding mechanism, so that the single row of lamp strips 10 on the lamp plate 10 closest to the folding mechanism enters the folding mechanism. Then, the vertical feed driver 43 drives the vertical slide bar 44 and the comb plate 42 to move downward, so that the multiple inserts 423 leave the lamp plate 100. The horizontal feed driver 41 drives the horizontal drive block 45, the vertical slide bar 44 and the comb plate 42 to reset away from the folding mechanism. Finally, the vertical feed driver 43 drives the vertical slide bar 44 and the comb plate 42 to move upward again, so that the multiple inserts 423 are inserted into the multiple through holes 11 of the lamp plate 100, waiting for the next feeding.
[0033] Furthermore, such as Figure 2-5As shown, the folding plate mechanism includes a folding plate driver 51 and a folding plate component 52. The folding plate component 52 is rotatably disposed on the side of the discharge port 31 away from the storage frame 30. The output end of the folding plate driver 51 is connected to the folding plate component 52, and the folding plate driver 51 is used to drive the folding plate component 52 to rotate. The folding plate component 52 is provided with a light strip receiving groove 521. When the folding plate component 52 is parallel to the light plate 100 in the storage frame 30, the light strip receiving groove 521 is directly opposite the discharge port 31, and the plate feeding mechanism can drive the light plate 100 to be inserted into the light strip receiving groove 521. The folding plate mechanism also includes a cam assembly, which includes two cams 53. The two ends of the folding plate component 52 are respectively disposed in the two cams 53. The two cams 53 are rotatably disposed on the frame 2. A drive ring 54 is sleeved on one of the cams 53, and the output end of the folding plate driver 51 is connected to the drive ring 54. Specifically, the folding plate driver 51 is an existing driver that can drive the drive ring 54 to move, thereby driving the folding plate component 52 to rotate. In actual use, when the feeding mechanism needs to move the lamp plate 100 forward, the end plate driver drives the end plate 33 upward and the folding plate driver 51 drives the folding plate component 52 to rotate until it is parallel to the lamp plate 100 in the storage frame 30. At this time, the light strip receiving groove 521 is facing the discharge port 31. The feeding mechanism drives the single row of light strips 10 closest to the folding plate mechanism in the lamp plate 100 to be inserted into the light strip receiving groove 521. Then, the end plate driver drives the end plate 33 to move downward and press it against the surface of the lamp plate 100. Then the folding plate driver... The device 51 drives the folding plate component 52 to rotate to a state that is not parallel to the light plate 100 in the storage frame 30 until the single row of light strips 10 in the light strip receiving groove 521 separates from the light plate 100. Then, the folding plate driver 51 drives the folding plate component 52 to rotate again to a state that is parallel to the light plate 100 in the storage frame 30. The strip feeding mechanism pushes the single row of light strips 10 away from the light strip receiving groove 521, preparing to break the next single row of light strips 10. This step is repeated in sequence to break the light plate 100 into individual single rows of light strips 10.
[0034] Furthermore, such as Figure 2-3As shown, the strip feeding mechanism is located at one end of the folding plate mechanism. The strip feeding mechanism includes a strip feeding driver 61, a rotary connecting assembly 62, and a push rod 63. The rotary connecting assembly 62 includes a drive connecting block 621 and a rotating block 622 rotatably disposed within the drive connecting block 621. The drive connecting block 621 is connected to the output end of the strip feeding driver 61. One end of the push rod 63 is connected to the rotating block 622, and the other end is inserted into the light strip receiving slot 521. The push rod 63 can reciprocate within the light strip receiving slot 521 under the drive of the strip feeding driver 61. Specifically, the strip feeding driver 61 is a conventional driver capable of driving the push rod 63 to reciprocate. In this embodiment, by setting the rotary connecting assembly 62, both reciprocating motion of the push rod 63 and rotational motion following the folding plate 52 can be achieved. In actual use, when a single row of light strips 10 in the light strip receiving groove 521 is broken off from the light plate 100, and the folding plate driver 51 drives the folding plate component 52 to rotate again to a state parallel to the light plate 100 in the storage frame 30, the strip feeding driver 61 drives the rotating connecting component 62 and the push rod 63 to move closer to the folding plate component 52, thereby pushing the single row of light strips 10 in the light strip receiving groove 521 to move away from the folding plate component 52 until the single row of light strips 10 completely leaves the light strip receiving groove 521. Then, the strip feeding driver 61 drives the rotating connecting component 62 and the push rod 63 to reset away from the folding plate component 52, and then the folding plate mechanism performs the next folding plate operation.
[0035] Furthermore, such as Figure 2-3As shown in Figure 6, the folding mechanism 7 includes a folding driver 71 and a folding component 72. The folding component 72 is rotatably disposed at the end of the folding mechanism away from the strip feeding mechanism. The output end of the folding driver 71 is connected to the folding component 72, and the folding driver 71 is used to drive the folding component 72 to rotate. The folding component 72 has a wick receiving through hole 721, and the strip feeding mechanism can drive the single row of light strips 10 in the light strip receiving groove 521 into the wick receiving through hole 721. Specifically, the folding driver 71 is a conventional driver that can drive the folding component 72 to rotate. In actual use, firstly, the strip feeding mechanism pushes the single lamp core 1 closest to the bending mechanism 7 in the single row of lamp strips 10 in the lamp strip receiving groove 521 into the lamp core receiving through hole 721. Then, the bending driver 71 drives the bending component 72 to rotate and reset, thereby causing the single lamp core 1 located in the lamp core receiving through hole 721 to be broken and separated from the single row of lamp strips 10. Then, the strip feeding mechanism pushes the next single lamp core 1 closest to the bending mechanism 7 in the single row of lamp strips 10 into the lamp core receiving through hole 721. At the same time as the next single lamp core 1 is pushed into the lamp core receiving through hole 721, the original separated single lamp core 1 in the lamp core receiving through hole 721 is pushed away from the lamp core receiving through hole 721 for unloading. This cycle is repeated to break the single row of lamp strips 10 into individual single lamp cores 1.
[0036] Furthermore, such as Figure 2-3 As shown in Figure 6, the automatic folding and dispensing device further includes a light strip fixing channel 8, which is located between the folding mechanism and the folding mechanism 7. The strip feeding mechanism can drive the single row of light strips 10 in the light strip receiving groove 521 to sequentially enter the light strip fixing channel 8 and the lamp core receiving through hole 721. Specifically, the entrance end of the light strip fixing channel 8 is set close to the exit end of the folding mechanism, and the exit end of the light strip fixing channel 8 is set close to the entrance end of the folding mechanism 7. In actual use, firstly, the strip feeding mechanism pushes the single row of light strips 10 in the light strip receiving groove 521 into the light strip fixing channel 8 and pushes the single lamp core 1 closest to the bending mechanism 7 into the lamp core receiving through hole 721. The rest of the single row of light strips 10 remains in the light strip fixing channel 8. Thus, when the bending mechanism 7 performs the bending operation on the single lamp core 1 located therein, the light strip fixing channel 8 can limit the rest of the single row of light strips 10, ensuring that the bending operation is carried out smoothly.
[0037] Furthermore, such as Figure 2-3As shown in Figure 6, the automatic folding and dispensing device further includes a wick feeding mechanism 9. The wick feeding mechanism 9 includes a feeding driver (not shown) and a wick carrier 92 connected to the output end of the feeding driver. The wick carrier 92 is located at the end of the folding mechanism 7 away from the folding plate mechanism. The wick carrier 92 has a wick receiving cavity 921. The feeding driver is used to drive the wick carrier 92 away from or towards the folding mechanism 7. When the wick carrier 92 approaches the folding mechanism 7, the wick receiving cavity 921 is directly opposite the wick receiving through hole 721. Specifically, the feeding driver can be an existing driver capable of driving the wick carrier 92 away from or towards the folding mechanism 7. In actual use, firstly, the delivery driver moves the wick carrier 92 closer to the folding mechanism 7. At this time, the wick receiving cavity 921 is close to and directly opposite the wick receiving through hole 721. While the strip feeding mechanism pushes the next single wick 1 into the wick receiving through hole 721, it pushes the original separated single wick 1 out of the wick receiving through hole 721 and into the wick receiving cavity 921. Then, the delivery driver moves the wick carrier 92 away from the folding mechanism 7, and the external material taking mechanism 20 takes away the single wick 1 from the wick receiving cavity 921. Then, the delivery driver moves the wick carrier 92 closer to the folding mechanism 7 again to reset and perform the next feeding.
[0038] The embodiments described above are merely illustrative of several implementations of this utility model, and while the descriptions are specific and detailed, they should not be construed as limiting the scope of this utility model patent. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this utility model, and these all fall within the protection scope of this utility model. Therefore, the protection scope of this utility model patent should be determined by the appended claims.
Claims
1. An automatic folding and dispensing device for lamp panels, characterized in that: The automatic folding and dispensing device includes a frame (2), and a storage mechanism, a feeding mechanism, a folding mechanism, a strip feeding mechanism, and a folding mechanism (7) disposed on the frame (2); the storage mechanism includes a storage frame (30), which can hold multiple light panels (100), and the discharge end of the storage frame (30) is provided with a discharge port (31); the feeding mechanism is used to drive the light panel (100) located at the bottom of the storage frame (30). The material leaves the storage frame (30) through the discharge port (31) and enters the folding mechanism; the folding mechanism is used to break the lamp plate (100) conveyed by the feeding mechanism to form a single row of lamp strips (10); the strip feeding mechanism is used to drive the single row of lamp strips (10) to leave the folding mechanism and enter the folding mechanism (7); the folding mechanism (7) is used to break the single row of lamp strips (10) conveyed by the strip feeding mechanism to form a single lamp wick (1).
2. The automatic folding and dispensing device for lamp panels according to claim 1, characterized in that: The storage frame (30) includes a base plate (32), an end plate (33), and two side plates (34). The end plate (33) is movably disposed above the end of the base plate (32) near the discharge end, and the discharge port (31) is formed between the bottom of the end plate (33) and the top of the base plate (32). An end plate driver is provided on one side of the end plate (33), which is used to drive the end plate (33) to move up and down relative to the base plate (32). The two side plates are respectively disposed on both sides of the base plate (32). The end of the base plate (32) near the discharge port (31) is evenly spaced with a plurality of through slots (321) for the plate feeding mechanism to be inserted. The storage mechanism also includes a cover plate (35), which covers the top of the lamp plate (100) stacked in the storage frame (30).
3. The automatic folding and dispensing device for lamp panels according to claim 2, characterized in that: The feeding mechanism is located below the storage frame (30). The feeding mechanism includes a horizontal feeding driver (41), a comb plate (42), a vertical feeding driver (43), a vertical slide bar (44), and a horizontal driving block (45). The output end of the horizontal feeding driver (41) is connected to the horizontal driving block (45). The vertical slide bar (44) is slidably disposed in the horizontal driving block (45). The vertical feeding driver (43) is fixedly disposed on the horizontal driving block (45), and the output end of the vertical feeding driver (43) is connected to the vertical slide bar (44). The end of the vertical slide bar away from the vertical feeding driver (43) is connected to the comb plate (42).
4. The automatic folding and dispensing device for lamp panels according to claim 3, characterized in that: The comb plate (42) includes a main body (421) and a plurality of tooth plates (422) evenly spaced on the top of the main body (421), and each tooth plate (422) has a plurality of insert teeth (423) evenly spaced on its top.
5. The automatic folding and dispensing device for lamp panels according to claim 1, characterized in that: The folding mechanism includes a folding driver (51) and a folding plate (52). The folding plate (52) is rotatably disposed on the side of the discharge port (31) away from the storage frame (30). The output end of the folding driver (51) is connected to the folding plate (52) and the folding driver (51) is used to drive the folding plate (52) to rotate. The folding plate (52) is provided with a light strip receiving groove (521). When the folding plate (52) is parallel to the light plate (100) in the storage frame (30), the light strip receiving groove (521) is facing the discharge port (31), and the feeding mechanism can drive the light plate (100) to be inserted into the light strip receiving groove (521).
6. The automatic folding and dispensing device for lamp panels according to claim 5, characterized in that: The folding plate mechanism also includes a cam assembly, which includes two cams (53). The two ends of the folding plate (52) are respectively disposed in the two cams (53). The two cams (53) are rotatably disposed on the frame (2). A drive ring (54) is sleeved on one of the cams (53). The output end of the folding plate driver (51) is connected to the drive ring (54).
7. The automatic folding and dispensing device for lamp panels according to claim 5, characterized in that: The strip feeding mechanism is located at one end of the folding plate mechanism. The strip feeding mechanism includes a strip feeding driver (61), a rotary connecting assembly (62), and a push rod (63). The rotary connecting assembly (62) includes a drive connecting block (621) and a rotating block (622) rotatably disposed in the drive connecting block (621). The drive connecting block (621) is connected to the output end of the strip feeding driver (61). One end of the push rod (63) is connected to the rotating block (622), and the other end is inserted into the light strip receiving groove (521). The push rod (63) can reciprocate in the light strip receiving groove (521) under the drive of the strip feeding driver (61).
8. The automatic folding and dispensing device for lamp panels according to claim 7, characterized in that: The folding mechanism (7) includes a folding driver (71) and a folding component (72). The folding component (72) is rotatably disposed at one end of the folding mechanism away from the strip feeding mechanism. The output end of the folding driver (71) is connected to the folding component (72), and the folding driver (71) is used to drive the folding component (72) to rotate. The folding component (72) has a lamp wick receiving through hole (721). The strip feeding mechanism can drive the single row of lamp strips (10) in the lamp strip receiving groove (521) into the lamp wick receiving through hole (721).
9. The automatic folding and dispensing device for lamp panels according to claim 8, characterized in that: The automatic folding and dispensing device also includes a light strip fixing channel (8), which is located between the folding mechanism and the folding mechanism (7). The strip feeding mechanism can drive the single row of light strips (10) in the light strip receiving groove (521) to enter the light strip fixing channel (8) and the lamp core receiving through hole (721) in sequence.
10. The automatic folding and dispensing device for lamp panels according to claim 8, characterized in that: The automatic folding and dispensing device also includes a wick feeding mechanism (9), which includes a feeding driver and a wick carrier (92) connected to the output end of the feeding driver. The wick carrier (92) is located at the end of the folding mechanism (7) away from the folding mechanism. The wick carrier (92) is provided with a wick receiving cavity (921). The feeding driver is used to drive the wick carrier (92) away from or near the folding mechanism (7). When the wick carrier (92) is near the folding mechanism (7), the wick receiving cavity (921) is directly opposite the wick receiving through hole (721).