Cutting equipment for electronic light guide plate production

By designing the transmission and cleaning mechanism of the conveying module and the cutting module in the cutting equipment for the production of electronic light guide plates, the problem of excessive debris during the cutting process is solved, and the cleaning of the electronic light guide plate and the cleanliness of the working environment are achieved.

CN119952766AInactive Publication Date: 2025-05-09GUANGZHOU HONGYI PLASTICS CO LTD
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Patent Information

Application Number
CN202510158314.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-02-13
Publication Date
2025-05-09
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The existing cutting equipment for the production of electronic light guide plates is prone to produce more debris during the cutting process, which affects the working environment and subsequent processing.

Method used

A cutting device including a conveying module and a cutting module is designed. The conveying module collects debris through a transmission mechanism and cleanses the surface of the electronic light guide plate through a cleaning mechanism to avoid debris residue.

Benefits of technology

Effectively collect and clean debris, keep the electronic light guide plate clean, avoid debris affecting subsequent processing, and improve the cleanliness of the working environment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of light guide plate processing, in particular to cutting equipment for electronic light guide plate production, which comprises a conveying module and a cutting module, the conveying module can convey a light guide plate, the conveying module comprises a conveying mechanism and a driving mechanism, and a transmission mechanism is arranged in the conveying mechanism; the conveying mechanism comprises two side frames, two conveying rollers are rotationally connected to the inner side faces of the two side frames, and the two conveying rollers are in transmission connection with a conveying belt. According to the electronic light guide plate cutting device, the conveying mechanism is arranged in the conveying mechanism, when the cutting module cuts an electronic light guide plate, chippings can penetrate through the position between two first rotating rods to fall on the conveying mechanism, then the chippings can be conveyed to one side of the conveying mechanism through the conveying mechanism, the chippings are collected, and the chippings are prevented from remaining on the conveying mechanism; and therefore, the electronic light guide plate is severely stained, and the condition that the subsequent processing is influenced is avoided.
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Description

Technical Field

[0001] The invention relates to the technical field of light guide plate processing, in particular to a cutting device for producing electronic light guide plates. Background Art

[0002] An electronic light guide plate is an optical element, usually made of transparent materials such as acrylic or polycarbonate. The light guide plate uses the phenomenon of total internal reflection to allow light to propagate inside the light guide plate, and controls the light's output angle and distribution by changing the shape of the light guide plate surface or using printing, etching and other techniques, thereby converting a line light source or a point light source into a surface light source. Electronic light guide plates are widely used in various display and lighting fields. In the production process of electronic light guide plates, cutting equipment is required to cut the electronic light guide plates into corresponding sizes.

[0003] When existing cutting equipment for the production of electronic light guide plates is used, the light guide plates are sometimes cut by cutting blades. Large-scale continuous production can be carried out by cutting by cutting blades, but in the process of cutting the electronic light guide plates, a lot of debris is easily generated. The random splashing of debris can easily affect the working environment. Moreover, a lot of debris splashing on the electronic light guide plates can easily affect subsequent processing. Summary of the invention

[0004] The object of the present invention is to provide a cutting device for producing electronic light guide plates to solve the problems raised in the above-mentioned background technology.

[0005] To achieve the above object, the present invention provides the following technical solutions:

[0006] A cutting device for producing an electronic light guide plate, comprising a conveying module and a cutting module;

[0007] The conveying module can convey the light guide plate, and the conveying module includes a conveying mechanism and a driving mechanism. A transmission mechanism is arranged inside the conveying mechanism. The conveying mechanism includes two side frames. The inner side surfaces of the two side frames are rotatably connected to two conveying rollers. The two conveying rollers are drivingly connected to a conveyor belt. The two side frames are rotatably connected to two rotating rods 1. The inner side surfaces of the two side frames are fixedly connected to two limit frames 1. A limit rod 1 is arranged on one side of the limit frame 1 corresponding to the rotating rod 1. The conveyor belt bypasses the two rotating rods 1 and the two limit rods 1.

[0008] The cutting module can cut the light guide plate.

[0009] Furthermore, two rotating rods 2 are rotatably connected to the bottom of the inner side surfaces of the two side frames, support frames are fixedly connected to the bottom surfaces of the two side frames, two limit frames 2 are fixedly connected to the sides of the support frames, the inner side surfaces of the limit frames 2 are slidably connected to sliding seats 2, the bottom surface of the sliding seats 2 are fixedly connected to a number of return springs 3 fixedly connected to the inner side surfaces of the limit frames 2, and the top of the sliding seats 2 is rotatably connected to the limit rod 2.

[0010] Furthermore, an inner side surface of the limit frame is slidably connected to a sliding seat 1 which is rotationally connected to a side surface of the limit rod, and a side surface of the sliding seat is fixedly connected to a plurality of return springs 2 which are fixedly connected to an inner side surface of the limit frame.

[0011] Furthermore, the driving mechanism includes a connecting frame, a driving motor, and a driving shaft;

[0012] The connecting frame is fixedly connected to a side surface of a side frame;

[0013] The driving motor is fixedly connected to one side of the side of the connection frame;

[0014] A driving shaft is rotatably connected to the connecting frame and the inner side surface of a side frame, the output end of the driving motor is transmission-connected to an end of the driving shaft, and one end of the driving shaft is fixedly connected to the end of an adjacent conveying roller.

[0015] Furthermore, the driving mechanism further includes a second driving shaft, a linkage rod, four bevel gears, a connecting shaft, and two ratchet blocks;

[0016] The second driving shaft is rotatably connected to the inner side of the connection frame, the inner side of the second driving shaft is fixedly connected to a reset spring 1, and the inner side of the second driving shaft is slidably connected to two positioning blocks;

[0017] The linkage rod is rotatably connected to the inner side of the connection frame;

[0018] Four bevel gears are respectively fixedly sleeved on the two ends of the linkage rod and the side surfaces of the first drive shaft and the second drive shaft, and two adjacent bevel gears are meshed for transmission;

[0019] The connecting shaft is arranged inside the second driving shaft, the side surface of the connecting shaft is rotatably connected to the inner side surface of a side frame, and the end of the connecting shaft is fixedly connected to the end of an adjacent conveying roller;

[0020] The two ratchet blocks are both arranged inside the second driving shaft, one ratchet block side is slidably connected to the inner side of the second driving shaft, the two positioning block sides are fixedly connected to one ratchet block side, and the connecting shaft end is fixedly connected to the other ratchet block side.

[0021] Preferably, the transmission mechanism includes two side plates, two rotating rollers, a connecting belt, and a transmission motor;

[0022] The two side plates are fixedly connected to the connection frame and the inner sides of the two side frames, and the conveyor belt passes through the inside of the two side plates;

[0023] The two rotating rollers are both rotatably connected to the opposite surfaces of the two side plates;

[0024] The connecting belt drive is connected to two rotating rollers;

[0025] The transmission motor is fixedly connected to a side plate, and the output end of the transmission motor is drivingly connected to the end of the adjacent rotating roller.

[0026] Preferably, the cutting module includes a fixing frame, an adjusting mechanism, a cleaning mechanism, a cutting seat, and two baffles;

[0027] The fixing frame is fixedly connected to the top surfaces of the two side frames, and two hydraulic rods are arranged on the top surface of the fixing frame;

[0028] The adjustment mechanism is arranged inside the fixing frame;

[0029] The cleaning mechanism is arranged at the bottom of the regulating mechanism;

[0030] The cutting seat is arranged inside the adjusting mechanism, the inner side surface of the cutting seat is fixedly connected to a power motor, the output end of the power motor is drivingly connected to a transmission shaft rotatably connected to the inner side surface of the cutting seat, the inner side surface of the bottom of the cutting seat is rotatably connected to a rotating shaft, the side surface of the rotating shaft is fixedly connected to a cutting blade, the side surface of the transmission shaft and the side surface of the rotating shaft are both fixedly sleeved with a second pulley, and the two pulleys are connected through a belt transmission;

[0031] The two baffles are respectively arranged at two sides of the bottom of the cutting seat, and the back surfaces of the two baffles are fixedly connected with two racks.

[0032] Furthermore, the adjustment mechanism includes an adjustment frame, an adjustment block, an adjustment screw rod, and an adjustment motor;

[0033] The adjusting frame is slidably connected to the side of the cutting seat, and the top surface of the adjusting frame is transmission-connected to the output ends of the two hydraulic rods;

[0034] The adjusting block is fixedly connected to the top surface of the cutting seat, and the side surface of the adjusting block is slidably connected to the inner side surface of the adjusting frame;

[0035] The adjusting screw rod is rotatably connected to the inner side surface of the adjusting frame, and the side surface of the adjusting screw rod is screwed and connected to the inner side surface of the adjusting block;

[0036] The regulating motor 1 is fixedly connected to the side surface of the regulating frame, and the output end of the regulating motor 1 is transmission-connected to the end of the regulating screw rod.

[0037] Furthermore, the cleaning mechanism includes a connecting seat, an adjusting motor 2, two cleaning rods, two transmission rods, and four pulleys 1;

[0038] The connecting seat is fixedly connected to the bottom surface of the adjusting frame, and the side surfaces of the two baffles are slidably connected to the inner side surface of the connecting seat;

[0039] The second regulating motor is fixedly connected to the side of the connecting seat;

[0040] The two cleaning rods are rotatably connected to the inner side of the connecting seat, a plurality of cleaning bristles are fixedly connected to the side of the cleaning rod, and connecting gears meshing with adjacent racks are fixedly sleeved on both sides of the side of the cleaning rod;

[0041] The two transmission rods are both rotatably connected to the inner side of the connection seat, the second output end of the regulating motor is transmission-connected to the end of one transmission rod, a transmission gear is fixedly sleeved on the side of the transmission rod, and the two transmission gears are meshed for transmission;

[0042] The four pulleys are respectively fixedly sleeved on the two cleaning rods and the two transmission rods, and the pulleys on the transmission rods are connected with the pulleys on the adjacent cleaning rods through belt transmission.

[0043] Furthermore, two pads are fixedly connected to the tops of the opposite surfaces of the two side frames;

[0044] The cleaning mechanism also includes four fixed rings, four rotating plates, two abutment rods, and four torsion springs;

[0045] Four fixing rings are rotatably connected to the side surfaces of the two cleaning rods respectively, and the side surfaces of the fixing rings are fixedly connected to the inner side surfaces of the connecting seats;

[0046] The four rotating plates are rotatably connected to the sides of the four fixed rings respectively;

[0047] The two abutment rods are both rotatably connected to opposite surfaces of two adjacent rotating plates;

[0048] The four torsion springs are all arranged between the corresponding side surfaces of the fixing ring and the inner side surface of the rotating plate.

[0049] Compared with the prior art, the present invention has the following beneficial effects:

[0050] 1. A transmission mechanism is arranged inside the conveying mechanism. By passing the conveyor belt around one side of the rotating rod and one side of the limit rod, the transmission mechanism can be arranged between the two limit rods. When the cutting module cuts the electronic light guide plate, the debris can pass through between the two rotating rods and fall on the transmission mechanism. Then the debris can be transported to one side of the conveying mechanism through the transmission mechanism to collect the debris, so as to avoid the debris remaining on the conveying mechanism and making the debris contaminated on the subsequent electronic light guide plate, making the electronic light guide plate more seriously dirty and affecting the subsequent processing. By blocking the cutting position with a baffle, the debris can be prevented from randomly splashing and affecting the working environment, which is conducive to keeping the processing environment clean.

[0051] 2. A number of cleaning bristles are fixedly connected to the side of the cleaning rod. A conveying roller can be driven by a driving motor to rotate in the forward direction, and a conveying roller can be used to drive the conveyor belt to move, so that the electronic light guide plate is transported. After the cutting is completed, the driving motor can drive a conveying roller to rotate in the opposite direction. At this time, the two conveying rollers will rotate synchronously, and the two conveying rollers rotate in opposite directions. In this way, the two cut electronic light guide plates can move back to back, and then the cleaning rod can drive the cleaning bristles to rotate, so that the cleaning bristles clean the electronic light guide plate and sweep the debris onto the transmission mechanism, which is beneficial to keep the electronic light guide plate clean. BRIEF DESCRIPTION OF THE DRAWINGS

[0052] Figure 1 It is a schematic diagram of the overall structure of a cutting device for producing an electronic light guide plate according to the present invention;

[0053] Figure 2 It is a schematic diagram of the internal structure of the conveying module in the present invention;

[0054] Figure 3 It is a schematic diagram of the conveyor belt structure in the present invention;

[0055] Figure 4 It is a schematic diagram of the internal top view of the driving mechanism in the present invention;

[0056] Figure 5 It is a schematic diagram of the internal structure of the second driving shaft in the present invention;

[0057] Figure 6 It is a schematic diagram of the transmission mechanism structure in the present invention;

[0058] Figure 7 It is a schematic diagram of the structure of the cutting module in the present invention;

[0059] Figure 8 It is a schematic diagram of the internal structure of the cutting seat in the present invention;

[0060] Fig. 9 It is a schematic diagram of the cleaning mechanism structure in the present invention;

[0061] Fig.10 It is a schematic diagram of the internal top view of the rotating plate in the present invention;

[0062] Fig.11 It is a schematic diagram of the internal structure of the connecting socket in the present invention.

[0063] In the figure: 100, conveying module; 110, conveying mechanism; 111, side frame; 112, conveying belt; 113, conveying roller; 114, rotating rod 1; 115, rotating rod 2; 116, pad; 120, driving mechanism; 121, connecting frame; 122, driving motor; 123, driving shaft 1; 124, driving shaft 2; 1241, reset spring 1; 1242, blocking block; 125, linkage rod; 126, bevel gear; 127, connecting shaft; 128, ratchet block; 130, supporting frame; 140, transmission mechanism; 141, side plate; 142, connecting belt; 143, rotating roller; 144, transmission motor; 150, limit frame 1; 151, sliding seat 1; 152, limit rod 1; 153, reset spring 2; 160, limit frame 2; 161 , sliding seat two; 162, limit rod two; 163, reset spring three; 200, cutting module; 210, fixed frame; 211, hydraulic rod; 220, adjustment mechanism; 221, adjustment frame; 222, adjustment block; 223, adjustment screw; 224, adjustment motor one; 230, cleaning mechanism; 231, connecting seat; 232, adjustment motor two; 233, cleaning rod; 2331, connecting gear; 234, rotating plate; 235, abutment rod; 236, fixing ring; 237, torsion spring; 238, transmission rod; 2381, transmission gear; 239, pulley one; 240, cutting seat; 241, power motor; 242, transmission shaft; 243, rotating shaft; 244, pulley two; 245, cutting blade; 250, baffle; 251, rack. DETAILED DESCRIPTION

[0064] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0065] See also Figure 1-3 , In an embodiment of the present invention, a cutting device for producing an electronic light guide plate includes a conveying module 100 and a cutting module 200;

[0066] The conveying module 100 can convey the light guide plate. The conveying module 100 includes a conveying mechanism 110 and a driving mechanism 120. A transmission mechanism 140 is arranged inside the conveying mechanism 110. The conveying mechanism 110 includes two side frames 111. Two conveying rollers 113 are rotatably connected to the inner side surfaces of the two side frames 111. The two conveying rollers 113 are transmission-connected to a conveyor belt 112. The conveyor belt 112 can be limited by the side of the side frame 111 to prevent the conveyor belt 112 from running off. The two side frames 111 are rotatably connected to two rotating rods 114. The two rotating rods 114 correspond to the bottom of the cutting module 200.

[0067] Two limit frames 150 are fixedly connected to the inner sides of the two side frames 111, and a limit rod 152 is set on one side of the limit frame 150 corresponding to the rotating rod 114. The two limit rods 152 are located between the two sliding seats 151, and the conveyor belt 112 passes around the two rotating rods 114 and the two limit rods 152. The transmission mechanism 140 is located between the two limit rods 152, and the top of the transmission mechanism 140 corresponds to the two rotating rods 114. The inner side of the limit frame 150 is slidably connected to a sliding seat 151 that is rotatably connected to the side of the limit rod 152, and the side of the sliding seat 151 is fixedly connected to a plurality of return springs 153 that are fixedly connected to the inner side of the limit frame 150. Under the action of the return springs 153, the positions of the sliding seat 151 and the limit rod 152 can be maintained, so that the conveyor belt 112 is tightened by the limit rod 152, and the cutting module 200 can cut the light guide plate.

[0068] Specifically, the electronic light guide plate can be placed on the conveyor belt 112, and a conveyor roller 113 can be driven to rotate by the driving mechanism 120. The conveyor roller 113 can drive the conveyor belt 112 to move, so that the electronic light guide plate is transported by the conveyor belt 112. After the electronic light guide plate passes through the top of the two rotating rods 114 and the bottom of the cutting module 200 corresponding to the electronic light guide plate, the cutting module 200 can be used to cut the electronic light guide plate into corresponding sizes. When the cutting module 200 cuts the electronic light guide plate, the debris can pass through the two rotating rods 114 and fall onto the transmission mechanism 140. Then, the debris can be transported to one side of the conveying mechanism 110 through the transmission mechanism 140, and the debris can be collected to avoid the debris remaining on the conveying mechanism 110, so that the debris is contaminated on the subsequent electronic light guide plate, which makes the electronic light guide plate seriously dirty. This is conducive to keeping the electronic light guide plate clean and tidy, and facilitates the subsequent processing of the electronic light guide plate.

[0069] Embodiment 1

[0070] like Figure 4-5As shown, in this embodiment, the driving mechanism 120 includes a connecting frame 121, a driving motor 122, a driving shaft 123, a driving shaft 2 124, a linkage rod 125, four bevel gears 126, a connecting shaft 127, and two ratchet blocks 128;

[0071] The connecting frame 121 is fixedly connected to a side surface of a side frame 111, the driving mechanism 120 is located on a side frame 111, the driving motor 122 is fixedly connected to one side of the side surface of the connecting frame 121, the driving shaft 123 is rotatably connected to the connecting frame 121 and the inner side surface of a side frame 111, the output end of the driving motor 122 is drivingly connected to the end of the driving shaft 123, and one end of the driving shaft 123 is fixedly connected to the end of the adjacent conveying roller 113;

[0072] The second drive shaft 124 is rotatably connected to the inner side of the connection frame 121, the first drive shaft 123 is fixed to one conveying roller 113, and the second drive shaft 124 is fixed to another conveying roller 113. The inner side of the second drive shaft 124 is fixedly connected to a return spring 1241, and the inner side of the second drive shaft 124 is slidably connected to two positioning blocks 1242. The linkage rod 125 is rotatably connected to the inner side of the connection frame 121, and the four bevel gears 126 are respectively fixedly sleeved on the linkage rod 125. Two adjacent bevel gears 126 are meshed and driven on the sides of the drive shaft 123 and the drive shaft 2 124 at both ends. Bevel gears 126 are arranged on the sides of the drive shaft 123 and the drive shaft 2 124 and at both ends of the linkage rod 125. The drive shaft 123 and the drive shaft 2 124 can be linked with the bevel gears 126 through the linkage rod 125, and the bevel gears 126 on the linkage rod 125 are located between the drive shaft 123 and the drive shaft 2 124, so that the drive shaft 123 and the drive shaft 2 124 rotate. The connecting shaft 127 is arranged inside the second driving shaft 124, and the side of the connecting shaft 127 is rotatably connected to the inner side of a side frame 111. The end of the connecting shaft 127 is fixedly connected to the end of the adjacent conveying roller 113. The two ratchet blocks 128 are arranged inside the second driving shaft 124, and the reset spring 1241 is fixed on one ratchet block 128. Under the action of the reset spring 1241, the two ratchet blocks 128 can be kept in meshing. The side of one ratchet block 128 is connected to the driving shaft. The inner side surfaces of the second drive shaft 124 are slidably connected, the sides of the two locking blocks 1242 are fixedly connected to the side of a ratchet block 128, the end of the connecting shaft 127 is fixedly connected to the side of the other ratchet block 128, and two locking grooves slidably connected to the locking blocks 1242 are provided inside the second drive shaft 124. The locking blocks 1242 allow one ratchet block 128 to slide only relative to the second drive shaft 124, while the sides of the connecting shaft 127 and the other ratchet block 128 do not contact the inner wall of the second drive shaft 124.

[0073] In a specific implementation, the driving motor 122 can drive the driving shaft 123 to rotate in the forward direction, and the driving shaft 123 can drive a conveying roller 113 to rotate in the forward direction, and the driving shaft 123 can drive the linkage rod 125 to rotate through the bevel gear 126, and the linkage rod 125 can drive the driving shaft 2 124 to rotate through the corresponding bevel gear 126, and the driving shaft 2 124 rotates in the opposite direction to the driving shaft 1 123, that is, the driving shaft 2 124 rotates in the opposite direction, and the driving shaft 2 124 can drive a ratchet block 128 to rotate through the positioning block 1242 , since one ratchet block 128 only drives the other ratchet block 128 to rotate in one direction, when such a ratchet block 128 rotates in the opposite direction, it will not drive the other ratchet block 128 to rotate, thereby not causing the other conveying roller 113 to rotate, and when the conveying belt 112 drives the other conveying roller 113 to rotate, the other conveying roller 113 and the connecting shaft 127 can rotate in the positive direction relative to the second driving shaft 124, so that the one conveying roller 113 can smoothly drive the conveying belt 112 to rotate, so that the conveying belt 112 can smoothly convey the electronic light guide plate;

[0074] After the cutting module 200 completes the cutting of the electronic light guide plate, the driving motor 122 can be used to drive the driving shaft 123 to rotate in the opposite direction, and the driving shaft 123 can drive the conveying roller 113 to rotate in the opposite direction, and the driving shaft 123 can drive the driving shaft 2 124 to rotate forwardly through the linkage rod 125 and the bevel gear 126. When the driving shaft 2 124 rotates forwardly, the driving shaft 2 124 can drive a ratchet block 128 to rotate forwardly through the positioning block 1242. When one ratchet block 128 rotates forwardly, it can drive another ratchet block 128 to rotate forwardly, and the other ratchet block 128 can drive the connecting shaft 127 to rotate, and the connecting shaft 127 can drive another conveying roller 113 to rotate, so that The two conveying rollers 113 rotate synchronously, and the two conveying rollers 113 rotate in opposite directions. At this time, the conveying rollers 113 can simultaneously pull the top of the conveyor belt 112 to move, and unfold the top conveyor belt 112. The conveyor belt 112 can pull the limit rod 152 to move, so that the two limit rods 152 move toward each other. The movement of the conveyor belt 112 can make the two cut electronic light guide plates move away from each other. At this time, the electronic light guide plate can be cleaned by the cutting module 200, so that the debris on the electronic light guide plate falls on the transmission mechanism 140, which is beneficial to keep the electronic light guide plate clean. After cleaning, the driving shaft 123 can be rotated forward again through the conveyor belt 112 to continue to convey the electronic light guide plate.

[0075] like Figure 3As shown, in this embodiment, the bottom of the inner side surface of the two side frames 111 is rotatably connected to two rotating rods 115, the bottom surface of the two side frames 111 is fixedly connected to the support frame 130, the support frame 130 can support the side frame 111, thereby supporting the conveying mechanism 110, and the side of the support frame 130 is fixedly connected to two limit frames 160, the inner side surface of the limit frame 160 is slidably connected to the sliding seat 161, and the bottom surface of the sliding seat 161 is fixedly connected to a plurality of reset positions fixedly connected to the inner side surface of the limit frame 160 Spring three 163, the top of the sliding seat two 161 is rotatably connected to the limiting rod two 162, the reset spring three 163 can maintain the position of the sliding seat two 161, thereby maintaining the position of the limiting rod two 162, the sliding seat two 161 is a U-shaped frame, and the length of the sliding seat two 161 is less than the width of the conveyor belt 112, and two annular grooves are provided on the side of the limiting rod two 162, and the top of the limiting rod two 162 is rotatably connected in the corresponding annular grooves, and the conveyor belt 112 passes through the bottom of the rotating rod two 115 and the top of the limiting rod two 162.

[0076] During specific implementation, under the action of the reset spring three 163, the limit rod two 162 can be pressed against the conveyor belt 112, so that the conveyor belt 112 is tightened by the limit rod two 162. When the two conveyor rollers 113 rotate in opposite directions and the top of the conveyor belt 112 is unfolded, so that the bottom of the conveyor belt 112 is loosened, the sliding seat two 161 and the limit rod two 162 can be moved upward under the action of the reset spring three 163, so that the conveyor belt 112 is continuously tightened by the limit rod two 162, so that the conveyor rollers 113 can smoothly drive the conveyor belt 112 to move.

[0077] like Figure 6 As shown, in this embodiment, the transmission mechanism 140 includes two side plates 141, two rotating rollers 143, a connecting belt 142, and a transmission motor 144;

[0078] The two side plates 141 are fixedly connected to the inner sides of the connecting frame 121 and the two side frames 111, the conveyor belt 112 passes through the inside of the two side plates 141, and the two rotating rollers 143 are rotatably connected to the opposite surfaces of the two side plates 141. The connecting belt 142 is transmission-connected to the two rotating rollers 143. A guide plate in contact with the conveyor belt 112 can be set on the top surface of the side plate 141. Debris can fall on the connecting belt 142 along the guide plate, and when the conveyor belt 112 moves, the debris on the conveyor belt 112 is scraped off by the guide plate. The transmission motor 144 is fixedly connected to one side plate 141, and the output end of the transmission motor 144 is transmission-connected to the end of the adjacent rotating roller 143.

[0079] During specific implementation, the transmission motor 144 can drive a rotating roller 143 to rotate, and a rotating roller 143 can drive the connecting belt 142 to move, so that the debris is transported to the side of the conveying mechanism 110 through the connecting belt 142. To collect the debris, a scraper can be set on one side of the two side plates 141, and the debris on the connecting belt 142 can fall obliquely along the scraper into the corresponding collection box, and the debris on the connecting belt 142 can be scraped off by the scraper.

[0080] Embodiment 2

[0081] Based on the first embodiment, Figure 7-9 As shown, in this embodiment, the cutting module 200 includes a fixing frame 210, an adjusting mechanism 220, a cleaning mechanism 230, a cutting seat 240, and two baffles 250;

[0082] The fixing frame 210 is fixedly connected to the top surfaces of the two side frames 111, two hydraulic rods 211 are arranged on the top surface of the fixing frame 210, the adjusting mechanism 220 is arranged inside the fixing frame 210, and the cleaning mechanism 230 is arranged at the bottom of the adjusting mechanism 220;

[0083] The cutting seat 240 is arranged inside the adjusting mechanism 220, and a power motor 241 is fixedly connected to the inner side of the cutting seat 240, and a transmission shaft 242 rotatably connected to the inner side of the cutting seat 240 is connected to the output end of the power motor 241, and a rotating shaft 243 is rotatably connected to the inner side of the cutting seat 240, and a cutting blade 245 is fixedly connected to the side of the rotating shaft 243, and a pulley 244 is fixedly sleeved on the side of the transmission shaft 242 and the side of the rotating shaft 243, and the two pulleys 244 are connected by belt transmission, and two baffles 250 are respectively arranged on both sides of the bottom of the cutting seat 240, and two racks 251 are fixedly connected to the backs of the two baffles 250;

[0084] The adjustment mechanism 220 includes an adjustment frame 221, an adjustment block 222, an adjustment screw rod 223, and an adjustment motor 224;

[0085] The adjusting frame 221 is slidably connected to the side of the cutting seat 240, and the top surface of the adjusting frame 221 is transmission connected to the output ends of the two hydraulic rods 211. The fixed frame 210 can limit the height of the adjusting mechanism 220 through the hydraulic rod 211, thereby limiting the height of the cutting seat 240 and the cleaning mechanism 230. The adjusting block 222 is fixedly connected to the top surface of the cutting seat 240, and the side of the adjusting block 222 is slidably connected to the inner side of the adjusting frame 221. The adjusting screw rod 223 is rotationally connected to the inner side of the adjusting frame 221, and the side of the adjusting screw rod 223 is screwed and connected to the inner side of the adjusting block 222. The cutting seat 240 can translate along the inside of the adjusting frame 221, and the position of the adjusting block 222 can be limited by the adjusting screw rod 223, thereby limiting the position of the cutting seat 240. The adjusting motor 224 is fixedly connected to the side of the adjusting frame 221, and the output end of the adjusting motor 224 is transmission connected to the end of the adjusting screw rod 223.

[0086] During specific implementation, after the electronic light guide plate moves to the bottom of the cutting blade 245, the hydraulic rod 211 can be used to move the adjustment frame 221 downward, so that the cutting seat 240 and the cleaning mechanism 230 move downward, and the cutting blade 245 moves between the two rotating rods 114. The power motor 241 can drive the transmission shaft 242 to rotate, and the transmission shaft 242 can drive the rotating shaft 243 to rotate through the pulley 244, so that the cutting blade 245 rotates. At the same time, the adjusting motor 1 224 can be used to drive the adjusting screw 223 to rotate. When the adjusting screw 223 rotates, the adjusting block 222 can move along the inside of the adjusting frame 221, and the adjusting block 222 can drive the cutting seat 240 to move, so that the cutting blade 245 moves to cut the electronic light guide plate. During the cutting process, the cutting blade 245 can be blocked by the baffle 250 to prevent debris from splashing randomly and affecting the working environment, which is conducive to keeping the working environment clean.

[0087] like Figure 9-11 As shown, in this embodiment, two pads 116 are fixedly connected to the tops of the opposite surfaces of the two side frames 111, and the pads 116 are located inside the conveyor belt 112;

[0088] The cleaning mechanism 230 includes a connecting seat 231, an adjusting motor 232, two cleaning rods 233, two transmission rods 238, four pulleys 239, four fixing rings 236, four rotating plates 234, two abutting rods 235, and four torsion springs 237;

[0089] The connecting seat 231 is fixedly connected to the bottom surface of the adjustment frame 221, and the sides of the two baffles 250 are slidably connected to the inner side of the connecting seat 231. The adjusting motor 232 is fixedly connected to the side of the connecting seat 231. The two cleaning rods 233 are rotatably connected to the inner side of the connecting seat 231. The sides of the cleaning rods 233 are fixedly connected with a plurality of cleaning hairs. Both sides of the sides of the cleaning rods 233 are fixedly sleeved with connecting gears 2331 meshing with adjacent racks 251. The baffle 250 can slide up and down along the inside of the connecting seat 231. The cleaning rods 233 can be limited by the connecting gears 2331. The height of the rack 251 is controlled to limit the height of the baffle 250. The two transmission rods 238 are both rotatably connected to the inner side of the connecting seat 231. The output end of the second adjusting motor 232 is connected to the end of one transmission rod 238. A transmission gear 2381 is fixedly sleeved on the side of the transmission rod 238, and the two transmission gears 2381 are meshed for transmission. Four pulleys 239 are respectively fixedly sleeved on the two cleaning rods 233 and the two transmission rods 238. The pulley 239 on the transmission rod 238 is connected to the pulley 239 on the adjacent cleaning rod 233 through belt transmission.

[0090] The four fixing rings 236 are rotatably connected to the side surfaces of the two cleaning rods 233 respectively, the side surfaces of the fixing rings 236 are fixedly connected to the inner side surfaces of the connecting seat 231, the four rotating plates 234 are rotatably connected to the side surfaces of the four fixing rings 236 respectively, the two abutting rods 235 are rotatably connected to the opposite surfaces of the two adjacent rotating plates 234, the four torsion springs 237 are all arranged between the corresponding side surfaces of the fixing rings 236 and the inner side surfaces of the rotating plates 234, the cleaning rod 233 is provided with two fixing rings 236 and two torsion springs 237, the rotating plate 234 is rotatably connected to the cleaning rod 233 through the fixing ring 236, and the fixing ring 236 is fixed to the connecting seat 231, so that the fixing ring 236 can limit the angle of the rotating plate 234 through the torsion spring 237, thereby limiting the position of the abutting rod 235.

[0091] In a specific implementation, when the cleaning mechanism 230 is lowered by the hydraulic rod 211, the baffle 250 and the abutment rod 235 can be abutted against the electronic light guide plate, and the bottom cleaning hair can contact the surface of the electronic light guide plate. At the same time, under the action of the torsion spring 237, the abutment rod 235 can be abutted against the electronic light guide plate, so that the electronic light guide plate is tightly attached to the conveyor belt 112, and the electronic light guide plate can be supported by the pad 116, so that the conveyor belt 112 can smoothly convey the electronic light guide plate. After the cutting is completed, the two conveying rollers 113 are rotated synchronously by the driving mechanism 120 and the rotation directions are opposite, so that the adjustment motor 232 can drive a transmission rod 238 to rotate, and a transmission rod 238 can be driven by the transmission The gear 2381 drives another transmission rod 238 to rotate, and the transmission rod 238 can drive the adjacent cleaning rod 233 to rotate through the pulley 239. The cleaning rod 233 can move the rack 251 upward through the connecting gear 2331, so that the baffle 250 moves upward and disengages from the electronic light guide plate. After the bottom of the rack 251 disengages from the connecting gear 2331, the baffle 250 will no longer move upward, and the cleaning rod 233 can drive the cleaning hair thereon to rotate. In this way, when the electronic light guide plate passes through the cleaning hair and moves away from the cleaning mechanism 230, the debris on the electronic light guide plate can be cleaned by the cleaning hair, and the collected debris passes through the bottom of the baffle 250 and falls on the transmission mechanism 140, which is conducive to keeping the electronic light guide plate clean.

[0092] It will be apparent to those skilled in the art that the invention is not limited to the details of the exemplary embodiments described above and that the invention can be implemented in other specific forms without departing from the spirit or essential features of the invention. Therefore, the embodiments should be considered exemplary and non-limiting in all respects, and the scope of the invention is defined by the appended claims rather than the foregoing description, and it is intended that all variations falling within the meaning and scope of the equivalent elements of the claims be included in the invention. Any reference numeral in a claim should not be considered as limiting the claim to which it relates.

[0093] In addition, it should be understood that although the present specification is described according to implementation modes, not every implementation mode contains only one independent technical solution. This description of the specification is only for the sake of clarity. Those skilled in the art should regard the specification as a whole. The technical solutions in each embodiment may also be appropriately combined to form other implementation modes that can be understood by those skilled in the art.

Claims

1. A cutting device for producing electronic light guide plates, characterized in that: include: The conveying module (100) is capable of conveying the light guide plate. The conveying module (100) comprises a conveying mechanism (110) and a driving mechanism (120). A transmission mechanism (140) is arranged inside the conveying mechanism (110). The conveying mechanism (110) comprises two side frames (111). The inner sides of the two side frames (111) are rotatably connected to two conveying rollers (113). The two conveying rollers (113) are drivingly connected to a conveying belt (112). The two side frames (111) are rotatably connected to two rotating rods (114). The inner sides of the two side frames (111) are fixedly connected to two limiting frames (150). A limiting rod (152) is arranged on one side of the limiting frame (150) corresponding to the rotating rod (114). The conveying belt (112) passes around the two rotating rods (114) and the two limiting rods (152). The cutting module (200) is capable of cutting the light guide plate.

2. The cutting device for producing electronic light guide plates according to claim 1, characterized in that: The bottom of the inner side surface of the two side frames (111) is rotatably connected to two rotating rods (115); the bottom surfaces of the two side frames (111) are fixedly connected to the support frame (130); the side surfaces of the support frame (130) are fixedly connected to two limit frames (160); the inner side surface of the limit frame (160) is slidably connected to a sliding seat (161); the bottom surface of the sliding seat (161) is fixedly connected to a plurality of return springs (163) fixedly connected to the inner side surface of the limit frame (160); and the top of the sliding seat (161) is rotatably connected to a limit rod (162).

3. The cutting device for producing electronic light guide plates according to claim 1, characterized in that: The inner side surface of the limiting frame (150) is slidably connected to a sliding seat (151) which is rotatably connected to the side surface of the limiting rod (152); the side surface of the sliding seat (151) is fixedly connected to a plurality of return springs (153) which are fixedly connected to the inner side surface of the limiting frame (150).

4. The cutting device for producing electronic light guide plates according to claim 1, characterized in that: The driving mechanism (120) comprises: A connecting frame (121) is fixedly connected to a side surface of a side frame (111); A driving motor (122) is fixedly connected to one side of the side of the connecting frame (121); A driving shaft (123) is rotatably connected to the connecting frame (121) and the inner side surface of a side frame (111); an output end of a driving motor (122) is transmission-connected to an end of the driving shaft (123); and one end of the driving shaft (123) is fixedly connected to an end of an adjacent conveying roller (113).

5. The cutting device for producing electronic light guide plates according to claim 4, characterized in that: The driving mechanism (120) further comprises: The second drive shaft (124) is rotatably connected to the inner side surface of the connection frame (121); the inner side surface of the second drive shaft (124) is fixedly connected to a return spring (1241); the inner side surface of the second drive shaft (124) is slidably connected to two positioning blocks (1242); A linkage rod (125) is rotatably connected to the inner side surface of the connection frame (121); Four bevel gears (126) are respectively fixedly sleeved on the two ends of the linkage rod (125) and the side surfaces of the first drive shaft (123) and the second drive shaft (124), and two adjacent bevel gears (126) are meshed for transmission; A connecting shaft (127) is arranged inside the second driving shaft (124), the side surface of the connecting shaft (127) is rotatably connected to the inner side surface of a side frame (111), and the end of the connecting shaft (127) is fixedly connected to the end of an adjacent conveying roller (113); The two ratchet blocks (128) are both arranged inside the second driving shaft (124); the side surface of one ratchet block (128) is slidably connected to the inner side surface of the second driving shaft (124); the side surfaces of the two positioning blocks (1242) are both fixedly connected to the side surface of one ratchet block (128); and the end of the connecting shaft (127) is fixedly connected to the side surface of the other ratchet block (128).

6. The cutting device for producing electronic light guide plates according to claim 4, characterized in that: The transmission mechanism (140) comprises: The two side plates (141) are fixedly connected to the connection frame (121) and the inner side surfaces of the two side frames (111), and the conveyor belt (112) passes through the inside of the two side plates (141); Two rotating rollers (143) are rotatably connected to opposite surfaces of the two side plates (141); A connecting belt (142) is drivingly connected to two rotating rollers (143); The transmission motor (144) is fixedly connected to a side plate (141), and the output end of the transmission motor (144) is transmission-connected to the end of an adjacent rotating roller (143).

7. The cutting device for producing electronic light guide plates according to claim 1, characterized in that: The cutting module (200) comprises: A fixed frame (210) is fixedly connected to the top surfaces of the two side frames (111), and two hydraulic rods (211) are arranged on the inner top surface of the fixed frame (210); An adjustment mechanism (220) is arranged inside the fixing frame (210); A cleaning mechanism (230) is arranged at the bottom of the adjusting mechanism (220); The cutting seat (240) is arranged inside the adjusting mechanism (220), the inner side surface of the cutting seat (240) is fixedly connected to a power motor (241), the output end of the power motor (241) is drivingly connected to a transmission shaft (242) rotatably connected to the inner side surface of the cutting seat (240), the inner side surface of the bottom of the cutting seat (240) is rotatably connected to a rotating shaft (243), the side surface of the rotating shaft (243) is fixedly connected to a cutting blade (245), the side surface of the transmission shaft (242) and the side surface of the rotating shaft (243) are both fixedly sleeved with a second belt pulley (244), and the two second belt pulleys (244) are connected by belt transmission; The two baffles (250) are respectively arranged on two sides of the bottom of the cutting seat (240), and the back surfaces of the two baffles (250) are fixedly connected to two racks (251).

8. The cutting device for producing electronic light guide plates according to claim 7, characterized in that: The adjustment mechanism (220) comprises: An adjusting frame (221) is slidably connected to the side of the cutting seat (240), and the top surface of the adjusting frame (221) is drivingly connected to the output ends of the two hydraulic rods (211); An adjusting block (222) is fixedly connected to the top surface of the cutting seat (240), and a side surface of the adjusting block (222) is slidably connected to an inner side surface of the adjusting frame (221); An adjusting screw rod (223) is rotatably connected to the inner side surface of the adjusting frame (221), and the side surface of the adjusting screw rod (223) is screwed and connected to the inner side surface of the adjusting block (222); The regulating motor 1 (224) is fixedly connected to the side of the regulating frame (221), and the output end of the regulating motor 1 (224) is drivingly connected to the end of the regulating screw rod (223).

9. The cutting device for producing electronic light guide plates according to claim 8, characterized in that: The cleaning mechanism (230) comprises: A connecting seat (231) is fixedly connected to the bottom surface of the adjusting frame (221), and the side surfaces of the two baffles (250) are both slidably connected to the inner side surface of the connecting seat (231); The second regulating motor (232) is fixedly connected to the side of the connecting seat (231); Two cleaning rods (233) are rotatably connected to the inner side of the connecting seat (231), a plurality of cleaning bristles are fixedly connected to the side of the cleaning rod (233), and connecting gears (2331) meshing with adjacent racks (251) are fixedly sleeved on both sides of the side of the cleaning rod (233); Two transmission rods (238) are both rotatably connected to the inner side of the connection seat (231); the output end of the second adjustment motor (232) is transmission-connected to the end of one transmission rod (238); a transmission gear (2381) is fixedly sleeved on the side of the transmission rod (238), and the two transmission gears (2381) are meshed for transmission; Four pulleys (239) are respectively fixedly sleeved on the two cleaning rods (233) and the two transmission rods (238); the pulley (239) on the transmission rod (238) is connected with the pulley (239) on the adjacent cleaning rod (233) through belt transmission.

10. The cutting device for producing electronic light guide plates according to claim 9, characterized in that: Two pads (116) are fixedly connected to the tops of the opposite surfaces of the two side frames (111); The cleaning mechanism (230) further comprises: Four fixing rings (236) are rotatably connected to the side surfaces of the two cleaning rods (233), and the side surfaces of the fixing rings (236) are fixedly connected to the inner side surfaces of the connecting seat (231); Four rotating plates (234) are rotatably connected to the sides of four fixing rings (236) respectively; Two abutment rods (235) are both rotatably connected to opposite surfaces of two adjacent rotating plates (234); The four torsion springs (237) are each arranged between the side surface of the corresponding fixing ring (236) and the inner side surface of the rotating plate (234).