Vacuum pressure maintaining mechanism and full-automatic laminating equipment thereof
By using a vacuum pressure holding mechanism and its fully automated bonding equipment, the problem of low efficiency in manual operation during mobile phone screen production has been solved, and automated loading, unloading, and bonding have been achieved, thus improving production efficiency.
Patent Information
- Application Number
- CN202211207893.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-09-30
- Publication Date
- 2026-01-02
- Estimated Expiration
- 2042-09-30
AI Technical Summary
In the current mobile phone screen production process, the bonding of protective glass, touch screen and display screen requires continuous manual operation, resulting in low efficiency and being time-consuming and labor-intensive.
Design a vacuum pressure holding mechanism and its fully automatic bonding equipment. The mechanism uses an air guide pipe and a vacuum pressure holding pump to extract the air between the upper and lower bonding chambers. Combined with components such as an electromagnetic telescopic rod, suction cup, and conveyor belt, it realizes automated feeding, bonding, and unloading, reducing manual intervention.
It improves the efficiency of mobile phone screen bonding processing, realizes automated loading and unloading, reduces manpower input, and improves production efficiency and processing speed.
Smart Images

Figure CN115609938B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the field of laminating equipment, in particular to a vacuum pressure maintaining mechanism and full-automatic laminating equipment thereof. BACKGROUND
[0002] In the production and processing of mobile phone screens, the protective glass, touch screen and display screen are completely pasted together through the laminating process. In the existing processing, the protective glass, touch screen and display screen are placed together in advance and then placed in the laminating lower cavity of the laminating equipment for laminating. In the processing, the un-laminated mobile phone screen is manually placed in, the laminated mobile phone screen is taken out, and the un-laminated mobile phone screen is placed in again, and so on. This processing method is slow and inefficient, and requires manual operation to cooperate with the equipment, which is time-consuming and laborious, and brings inconvenience to production.
[0003] Therefore, it is necessary to provide a new vacuum pressure maintaining mechanism and full-automatic laminating equipment to solve the above technical problems. SUMMARY
[0004] To solve the above technical problems, the present application provides a vacuum pressure maintaining mechanism and full-automatic laminating equipment.
[0005] The vacuum pressure maintaining mechanism provided by the present application comprises: air guide pipes and a vacuum pressure maintaining pump, two air guide pipes are provided, the vacuum pressure maintaining pump is arranged at the top of the air guide pipes, and the top ends of the air guide pipes are fixedly connected with the output end of the vacuum pressure maintaining pump.
[0006] The application further provides a full-automatic laminating device, which comprises the vacuum pressure maintaining mechanism and further comprises a rack, laminating lower cavities, electromagnetic telescopic rods, back plates, laminating upper cavities, springs, reciprocating boxes, recycling boxes, blanking boxes and third sliding rails.
[0007] Preferably, the side of each back plate close to the corresponding connecting seat is fixedly connected with a second sliding rail at equal intervals, and the side of each connecting seat close to the corresponding back plate is fixedly connected with a second sliding block at equal intervals.
[0008] Preferably, the two sides of the reciprocating box perpendicular to the corresponding receiving plate are provided with waist-shaped holes at equal intervals, the reciprocating box is provided with lifting pipes at equal intervals, the outer side of each lifting pipe is fixedly connected with a suction disc, the outer side of each lifting pipe is rotatably connected with a sliding cylinder through a bearing, the sliding cylinder is slidably connected in the corresponding waist-shaped hole, the outer side of each lifting pipe is fixedly sleeved with a positioning gear at equal intervals, and the inner wall of the reciprocating box on the side of the waist-shaped hole is fixedly connected with a rack.
[0009] Preferably, the horizontal plate is symmetrically provided with a guide groove on one side close to the lifting pipe, one end of the lifting pipe is slidably connected with the corresponding guide groove, and the other end of the lifting pipe is fixedly connected with a gas nozzle.
[0010] Preferably, the recycling box and the discharging box are slidably inserted with a door plate inside the side away from the horizontal plate, and the side away from the horizontal plate of the door plate is fixedly connected with an arc-shaped sheet.
[0011] Preferably, the reciprocating box is rotatably connected with a driving shaft inside the side close to the horizontal plate through bearings at equal intervals, the reciprocating box is fixedly installed with a driving motor on the side close to the horizontal plate at equal intervals, the output end of the driving motor is fixedly connected with one end of the corresponding driving shaft, the outer side of the other end of the driving shaft is fixedly sleeved with a driving bevel gear, the recycling box and the discharging box are rotatably connected with a transmission shaft inside through bearings, one end of the transmission shaft is fixedly connected with a driven bevel gear, the inner wall of the reciprocating box inside close to the driven bevel gear is symmetrically provided with a push-in groove at equal intervals, one end of the transmission shaft is slidably inserted into the corresponding push-in groove, and the driven bevel gear is meshingly connected with the corresponding driving bevel gear.
[0012] Preferably, the recycling box and the discharging box are rotatably connected with a driving shaft and a driven shaft inside at equal intervals, the outer side of the driving shaft is drivingly connected with the corresponding driven shaft through a conveying belt, the outer side of the conveying belt is fixedly connected with a strip plate at equal intervals, the outer side of one end of the driving shaft close to the transmission shaft is fixedly sleeved with a worm gear, the outer side of the transmission shaft is fixedly sleeved with a worm at equal intervals, and the worm is meshingly connected with the corresponding driving shaft.
[0013] Preferably, the inner wall of the reciprocating box inside close to the recycling box and the discharging box is symmetrically provided with an embedding groove at equal intervals, the two sides of the recycling box and the discharging box are fixedly connected with an embedding plate at equal intervals, the embedding plate is slidably connected with the corresponding embedding groove, the side wall of the reciprocating box on one side of the recycling box and the discharging box is rotatably connected with a rotating plate through an axle pin, the side wall of the reciprocating box on the other side of the recycling box and the discharging box is fixedly connected with a hook, and one end of the rotating plate is slidably inserted with the corresponding hook.
[0014] Preferably, the outer side of the driving shaft and the driven shaft is symmetrically provided with a strip-shaped groove at equal intervals and angles, the inner wall of the conveying belt is fixedly connected with a protruding strip at equal intervals, and the conveying belt is matched with the strip-shaped groove of the corresponding driving shaft and driven shaft through the protruding strip.
[0015] Compared with the related art, the vacuum pressure maintaining mechanism and the full-automatic laminating equipment thereof have the following beneficial effects:
[0016] The vacuum pressure maintaining mechanism and the full-automatic laminating equipment thereof can stack the un-laminated mobile phone screens into the discharging box in advance during the laminating process, push them into the corresponding positions in the reciprocating box, automatically feed during the laminating process, improve the processing efficiency, and reduce the labor.
[0017] This invention provides a vacuum pressure holding mechanism and its fully automatic bonding equipment. The reciprocating box moves left and right. During the movement, it can use a suction cup to pick up the mobile phone screen to be bonded, and then rotate 180 degrees to move to the entrance of the recycling box. This facilitates automated unloading after the mobile phone screen is bonded, complementing the automated feeding process and further improving processing efficiency.
[0018] This invention provides a vacuum pressure holding mechanism and its fully automatic bonding equipment. Processed and unprocessed mobile phone screens can be stored separately in a recycling box and a feeding box, which facilitates installation and disassembly in the reciprocating box, allows for timely replacement, avoids excessive accumulation, and prevents limiting the processing speed. Attached Figure Description
[0019] Figure 1 A schematic diagram of a preferred embodiment of the vacuum pressure holding mechanism and its fully automatic bonding equipment provided by the present invention;
[0020] Figure 2 for Figure 1 The diagram shows the structure of the fitting lower cavity;
[0021] Figure 3 for Figure 2 The diagram shown is an enlarged view of the structure of region A.
[0022] Figure 4 for Figure 2 The diagram shows the structure of the backplate.
[0023] Figure 5 for Figure 1 The diagram shows the structural design of the rack.
[0024] Figure 6 for Figure 1 The diagram shown is a structural schematic of the reciprocating box.
[0025] Figure 7 for Figure 6 The diagram shows the structural schematic of the support column;
[0026] Figure 8 for Figure 1 The diagram shows the structure of the horizontal plate.
[0027] Figure 9 for Figure 6 The diagram shown is a structural schematic.
[0028] Figure 10 for Figure 9 The diagram shows the structure of the rising pipe;
[0029] Figure 11 for Figure 7 The diagram shows a structural breakdown of the recycling box and door panel.
[0030] Figure 12 for Figure 7 The diagram shows a cross-sectional view of the recycling box.
[0031] Figure 13 for Figure 12 The diagram shown is a structural schematic of the conveyor belt.
[0032] Figure 14 for Figure 13 The diagram shows a breakdown of the conveyor belt and drive shaft.
[0033] Labels in the diagram: 1. Frame; 2. Horizontal plate; 3. Reciprocating box; 4. Recycling box; 5. Feeding box; 6. Lower fitting cavity; 7. Electromagnetic telescopic rod; 8. U-shaped piece; 9. Fixing piece; 10. First slide rail; 11. Back plate; 12. Push rod motor; 13. Connecting seat; 14. Upper fitting cavity; 15. Air guide pipe; 16. Slide rod; 17. Spring; 18. Second slide rail; 19. Second slider; 20. Pressing plate; 21. First slider; 22. Vacuum pressure holding pump; 23. Support column; 24. Third slide rail; 25. Driving bevel gear; 26. Driven bevel gear; 2 7. Receiving plate; 28. Rotating plate; 29. Hook; 30. Waist-shaped hole; 31. Drive shaft; 32. Drive motor; 33. Lifting tube; 34. Linear motor; 35. Guide groove; 36. Embedded groove; 37. Rack; 38. Suction cup; 39. Positioning gear; 40. Slide cylinder; 41. Air inlet; 42. Embedded plate; 43. Drive shaft; 44. Door panel; 45. Arc-shaped piece; 46. Drive shaft; 47. Driven shaft; 48. Conveyor belt; 49. Strip plate; 50. Strip groove; 51. Worm; 52. Worm wheel; 53. Raised strip; 54. Push-in groove. Detailed Implementation
[0034] To make the objectives, technical solutions, and advantages of this invention clearer, the invention will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative and not intended to limit the invention.
[0035] The specific implementation of the present invention will be described in detail below with reference to specific embodiments.
[0036] Please see Figure 1 , Figure 2 , Figure 3 and Figure 5 The present invention provides a vacuum pressure holding mechanism, which includes: a gas guide pipe 15 and a vacuum pressure holding pump 22. There are two gas guide pipes 15, and the vacuum pressure holding pump 22 is located at the top of the gas guide pipe 15. The top of each gas guide pipe 15 is fixedly connected to the output end of the vacuum pressure holding pump 22.
[0037] It should be noted that: when the upper cavity 14 and the lower cavity 6 are attached, the vacuum pump 22 draws out the air between the upper cavity 14 and the lower cavity 6 through the air pipe 15, so as to avoid the gap and bubble between the mobile phone screens during the attachment process, and make the attachment of the mobile phone screen better.
[0038] Please refer to Figures 1 to 14 A full-automatic attachment device, comprising the above-mentioned vacuum pressure maintaining mechanism, further comprising: a rack 1, a lower cavity 6, an electromagnetic telescopic rod 7, a back plate 11, an upper cavity 14, a spring 17, a reciprocating box 3, a recovery box 4, a feeding box 5 and a third sliding rail 24, the rack 1 is internally fixedly connected with a horizontal plate 2, the top ends of the air pipes 15 are fixedly connected with the output ends of the vacuum pressure maintaining pump 22, the lower cavity 6 is provided with two, the lower cavity 6 is equidistantly arranged in the rack 1, the lower cavity 6 is fixedly connected with first sliding blocks 21 on both sides of the bottom, the first sliding blocks 21 are internally slidably connected with first sliding rails 10, the first sliding rails 10 are fixedly connected with the corresponding inner walls of the rack 1, the electromagnetic telescopic rod 7 is provided with two, the electromagnetic telescopic rod 7 is equidistantly fixedly installed in the rack 1, the output ends of the electromagnetic telescopic rod 7 are fixedly connected with fixed sheets 9, the fixed sheets 9 are fixedly connected with the outer walls of the corresponding lower cavities 6, the back plate 11 is provided with two, the back plate 11 is equidistantly fixedly connected with one side of the rack 1, the back plate 11 is fixedly installed with push rod motors 12 on one side, the output ends of the push rod motors 12 are fixedly connected with connecting seats 13, the connecting seats 13 are fixedly connected with slide rods 16 on the bottom of four corners, the upper cavity 14 is provided with two, the upper cavity 14 is arranged below the corresponding connecting seat 13, the bottom ends of the slide rods 16 are slidably inserted with the corresponding upper cavities 14, the upper cavity 14 is internally provided with pressing plates 20, the bottom ends of the slide rods 16 are fixedly connected with the corresponding pressing plates 20, the bottom ends of the air pipes 15 are slidably inserted with the corresponding upper cavities 14, the bottom ends of the air pipes 15 are fixedly connected with the corresponding pressing plates 20, the spring 17 is provided with several, the spring 17 is respectively sleeved on the outside of the corresponding slide rod 16, the spring 17 is fixedly connected with the corresponding connecting seat 13 and the upper cavity 14 on both ends, the reciprocating box 3 is arranged in the rack 1, the reciprocating box 3 is equidistantly fixedly connected with supporting columns 23 between the supporting columns 23, the supporting columns 23 are slidably inserted with the corresponding supporting columns 23 on both ends, the supporting columns 23 are fixedly connected with the corresponding inner walls of the rack 1 on both ends, the third sliding rail 24 is arranged on the top of the reciprocating box 3, the third sliding rail 24 is fixedly connected with the inner wall of the top of the rack 1, the third sliding rail 24 is slidably connected with linear motors 34 on the outside, the linear motors 34 are fixedly installed on the top of the reciprocating box 3, the recovery box 4 is provided with two, the recovery box 4 is equidistantly arranged in the reciprocating box 3, the feeding box 5 is provided with two, the feeding box 5 is equidistantly arranged in the reciprocating box 3.
[0039] It should be noted that: in the process of bonding processing, the un-bonded mobile phone screen can be stacked in the discharging box 5 in advance, and then pushed into the corresponding position of the reciprocating box 3 for automatic feeding in the bonding processing, improving the processing efficiency and reducing the labor. The reciprocating box 3 moves left and right, and in the moving process, the bonded mobile phone screen can be sucked up by the suction cup 38, and then rotated by one hundred and eighty degrees to move to the entrance of the recycling box 4, so that after the mobile phone screen is bonded, the automatic discharging is facilitated, which is complementary to the automatic feeding, and the processing efficiency is further improved.
[0040] In the embodiment of the application, please refer to Figure 2 and Figure 4 The second sliding rails 18 are equidistantly and fixedly connected to the side of the back plate 11 close to the connecting seat 13, and the second sliding blocks 19 are equidistantly and fixedly connected to the side of the connecting seat 13 close to the back plate 11, and the second sliding blocks 19 are slidingly connected to the outer side of the corresponding second sliding rails 18.
[0041] It should be noted that: when the connecting seat 13 moves, the second sliding block 19 on one side can slide on the second sliding rail 18, so that the connecting seat 13 is more stable when lifting.
[0042] In the embodiment of the application, please refer to Figures 6 to 10 The waist-shaped holes 30 are equidistantly formed in the two sides of the reciprocating box 3 perpendicular to the supporting plate 27, the lifting pipes 33 are equidistantly arranged in the reciprocating box 3, the suction cups 38 are fixedly connected to the outer side of the lifting pipes 33, the sliding cylinders 40 are rotatably connected to the outer side of the two ends of the lifting pipes 33 through bearings, the sliding cylinders 40 are slidingly connected to the inside of the corresponding waist-shaped holes 30, the positioning gears 39 are equidistantly and fixedly sleeved to the outer side of the lifting pipes 33, the racks 37 are fixedly connected to the inner wall of the reciprocating box 3 on one side of the waist-shaped holes 30, and the positioning gears 39 are meshingly connected to the corresponding racks 37.
[0043] It should be noted that: when the recycling box 4 is opposite to the bonding lower cavity 6, the suction cup 38 at the bottom of the lifting pipe 33 can adsorb the processed mobile phone screen in the bonding lower cavity 6, the end of the lifting pipe 33 slides along the guide groove 35 through the movement of the reciprocating box 3, and in the sliding process of the lifting pipe 33, the positioning gear 39 on the outer side of the lifting pipe 33 is gradually lifted along the rack 37, so that the mobile phone screen can be rotated from below to the bottom of the corresponding recycling box 4, so that when the conveying belt 48 in the recycling box 4 rotates, the processed mobile phone screen can be conveyed to the recycling box 4 through the rising strip plate 49, so as to be stored.
[0044] In the embodiment of the application, please refer to Figure 7 , Figure 8 and Figure 10The side of the horizontal plate 2 close to the lifting pipe 33 is symmetrically provided with a guide groove 35, one end of the lifting pipe 33 is slidably connected with the corresponding guide groove 35, and the other end of the lifting pipe 33 is fixedly connected with a gas connector 41;
[0045] It should be noted that the lifting pipe 33 is lifted along the direction of the guide groove 35, the rack 37 and the positioning gear 39 are always engaged, the gas connector 41 is convenient for being connected with other components to control the adsorption of the suction cup 38;
[0046] In the embodiment of the present application, please refer to Figure 1 and Figure 11 The inside of the side of the recycling box 4 and the blanking box 5 away from the horizontal plate 2 is slidably connected with a door plate 44, and the side of the door plate 44 away from the horizontal plate 2 is fixedly connected with an arc-shaped sheet 45;
[0047] It should be noted that the recycling box 4 or the blanking box 5 is conveniently opened by pulling the door plate 44, and the mobile phone screen is conveniently put in or taken out;
[0048] In the embodiment of the present application, please refer to Figure 6 、 Figure 7 、 Figure 9 and Figure 11 The inside of the side of the reciprocating box 3 close to the horizontal plate 2 is rotatably connected with a driving shaft 31 through a bearing, the side of the reciprocating box 3 close to the horizontal plate 2 is fixedly installed with a driving motor 32, the output end of the driving motor 32 is fixedly connected with one end of the corresponding driving shaft 31, the outer side of the other end of the driving shaft 31 away from the horizontal plate 2 is fixedly sleeved with a driving bevel gear 25, the inside of the recycling box 4 and the blanking box 5 is rotatably connected with a transmission shaft 43 through a bearing, one end of the transmission shaft 43 is fixedly connected with a driven bevel gear 26, the inner wall of the inside of the reciprocating box 3 close to the driven bevel gear 26 is equally provided with a push-in groove 54, one end of the transmission shaft 43 is slidably inserted into the inside of the corresponding push-in groove 54, and the driven bevel gear 26 is engagedly connected with the corresponding driving bevel gear 25;
[0049] It should be noted that the driving motor 32 at the recycling box 4 and the blanking box 5 is driven to drive the driving shaft 31 to drive the corresponding driven bevel gear 26 to rotate, so that the transmission shaft 43 in the recycling box 4 or the blanking box 5 is rotated;
[0050] In the embodiment of the present application, please refer to Figures 11 to 14The inside of the recycling box 4 and the discharging box 5 is rotatably connected with a driving shaft 46 and a driven shaft 47 at equal intervals through bearings, the outside of the driving shaft 46 is drivingly connected with the corresponding driven shaft 47 through a conveyor belt 48, the outside of the conveyor belt 48 is fixedly connected with a strip-shaped plate 49 at equal intervals, the outside of one end of the driving shaft 46 close to the transmission shaft 43 is sleeved and fixed with a worm gear 52, the outside of the transmission shaft 43 is sleeved and fixed with a worm gear 51 at equal intervals, and the worm gear 51 is meshingly connected with the corresponding driving shaft 46;
[0051] It should be noted that, when the transmission shaft 43 rotates, the worm gear 51 on the outside slowly drives the corresponding two worm gears 52 and the driving shaft 46 to rotate, so that the driving shaft 46 in the recycling box 4 or the discharging box 5 drives the driven shaft 47 to rotate synchronously through the conveyor belt 48.
[0052] In the embodiment of the application, please refer to Figure 9 and Figure 11 The inside of the reciprocating box 3 close to the inner wall of the recycling box 4 and the discharging box 5 is provided with an embedded groove 36 at equal intervals, and the two sides of the recycling box 4 and the discharging box 5 are fixedly connected with an embedded plate 42, the embedded plate 42 is slidingly connected with the corresponding embedded groove 36, and the side wall of the reciprocating box 3 on one side of the recycling box 4 and the discharging box 5 is rotatably connected with a rotating plate 28 through a shaft pin, and the side wall of the reciprocating box 3 on the other side of the recycling box 4 and the discharging box 5 is fixedly connected with a hook 29, and one end of the rotating plate 28 is slidingly inserted with the corresponding hook 29.
[0053] It should be noted that, when the rotating plate 28 is rotated at the recycling box 4 and the discharging box 5, the rotating plate 28 is separated from the hook 29 and staggered, the corresponding recycling box 4 or discharging box 5 is extracted, the recycling box 4 and the discharging box 5 are convenient to take and place, the two sides of the recycling box 4 and the discharging box 5 are provided with the embedded plate 42, the embedded plate 42 can be matched with the embedded groove 36 of the reciprocating box 3, and deviation during being placed into the reciprocating box 3 is avoided.
[0054] In the embodiment of the application, please refer to Figure 13 and Figure 14 The outside of the driven shaft 47 and the driving shaft 46 is provided with a strip-shaped groove 50 at equal intervals and equal angles, the inner wall of the conveyor belt 48 is fixedly connected with a protruding strip 53 at equal intervals, and the conveyor belt 48 is matched with the strip-shaped groove 50 of the corresponding driven shaft 47 and driving shaft 46 through the protruding strip 53.
[0055] It should be noted that, through the mutual cooperation of the protruding strip 53 on the outside of the conveyor belt 48 and the strip-shaped groove 50 on the outside of the corresponding driven shaft 47 and driving shaft 46, the driving shaft 46 drives the conveyor belt 48 to rotate more stably, and deviation of the strip-shaped plate 49 on the outside of the conveyor belt 48 is avoided.
[0056] The working principle of the vacuum pressure maintaining mechanism and the full-automatic laminating equipment thereof provided by the application is as follows: rotating the rotating plate 28 at the recycling box 4 and the feeding box 5, separating and staggering the rotating plate 28 and the hook 29, pulling out the corresponding recycling box 4 or feeding box 5, opening the door plate 44, opening the feeding box 5, placing the unprocessed mobile phone screen between the strip-shaped plates 49 of the conveying belt 48 in the feeding box 5 in sequence, or opening the recycling box 4, taking out the processed mobile phone screen in the recycling box 4, and then placing the recycling box 4 or the feeding box 5 into the corresponding position in the reciprocating box 3, rotating the rotating plate 28 to block the outside of the recycling box 4 or the feeding box 5, and connecting the linear motor 34 to the top of the reciprocating box 3, so that the reciprocating box 3 is continuously driven to move left and right during the processing, and the driving motor 32 at the recycling box 4 and the feeding box 5 is driven to rotate the driving shaft 31, so that the driving shaft 31 drives the driven bevel gears 26 at the corresponding position to rotate, so that the transmission shaft 43 in the recycling box 4 or the feeding box 5 rotates, and the transmission shaft 43 is slowly driven to rotate the two worm gears 52 and the driving shaft 46 through the outside worm 51, so that the driving shaft 46 in the recycling box 4 or the feeding box 5 drives the driven shaft 47 to rotate synchronously through the conveying belt 48, and the driving direction of the driving shaft 46 in the recycling box 4 and the feeding box 5 is opposite, so that, when the feeding box 5 moves to the corresponding laminating lower cavity 6 with the reciprocating box 3, the mobile phone screen at the bottom can be placed on the laminating lower cavity 6 through the relatively rotating conveying belt 48 in the interior for feeding;
[0057] The laminating lower cavity 6 with the mobile phone screen is pulled to the lower side of the laminating upper cavity 14 through the driving of the electromagnetic telescopic rod 7, the connecting seat 13 and the laminating upper cavity 14 are lowered through the driving of the push rod motor 12, when the laminating upper cavity 14 and the laminating lower cavity 6 are laminated, the vacuum pressure maintaining pump 22 draws the air between the laminating upper cavity 14 and the laminating lower cavity 6 through the air guide pipe 15, and the continuously driven push rod motor 12 drives the slide rod 16 at the bottom of the connecting seat 13 to drive the pressing plate 20 to continuously descend, the spring 17 is retracted, the pressing plate 20 is close to the inner wall of the laminating lower cavity 6, the mobile phone screen is pasted and pressed, the laminating upper cavity 14 is reset through the push rod motor 12, the laminating lower cavity 6 is pushed out through the electromagnetic telescopic rod 7,
[0058] The continuously moving reciprocating box 3 first makes the left recycling box 4 staggered with the laminating lower cavity 6, the feeding box 5 is opposite to the laminating lower cavity 6, the right feeding box 5 is opposite to the corresponding laminating lower cavity 6, the recycling box 4 is staggered with the laminating lower cavity 6, then the left recycling box 4 is opposite to the laminating lower cavity 6, the feeding box 5 is staggered with the laminating lower cavity 6, the right feeding box 5 is staggered with the corresponding laminating lower cavity 6, and the recycling box 4 is opposite to the laminating lower cavity 6, and the reciprocating is carried out in sequence;
[0059] When the recycling box 4 is opposite to the laminating lower cavity 6, the suction cup 38 at the bottom of the lifting pipe 33 can adsorb the processed mobile phone screen in the laminating lower cavity 6. Through the movement of the reciprocating box 3, the end of the lifting pipe 33 slides along the guide groove 35. In the process of sliding of the lifting pipe 33, the positioning gear 39 outside the lifting pipe 33 can drive the rotation of the lifting pipe 33 along the rack 37, so that the mobile phone screen can be rotated from below to the corresponding bottom of the recycling box 4 along with the lifting pipe 33. In this way, when the conveying belt 48 inside the recycling box 4 rotates, the processed mobile phone screen can be conveyed to the recycling box 4 through the rising strip plate 49, so as to be stored, and the feeding box 5 can be conveniently fed again in the laminating lower cavity 6. Through the cooperation of automatic feeding and automatic feeding, the processing efficiency is improved, the manpower is reduced, and the processing is more convenient.
[0060] The above is only an embodiment of the present application, and does not limit the patent scope of the present application. Any equivalent structure or equivalent process transformation using the content of the specification and drawings, or direct or indirect application in other related technical fields, is also included in the patent protection scope of the present application.
Claims
1. A fully automatic taping apparatus, characterized by, Including vacuum pressure maintaining mechanism, the vacuum pressure maintaining mechanism includes: Air guide pipe (15), the air guide pipe (15) is provided with two; Vacuum pressure maintaining pump (22), the vacuum pressure maintaining pump (22) is arranged at the top of air guide pipe (15), and the top end of air guide pipe (15) is fixedly connected with the output end of vacuum pressure maintaining pump (22); Also includes: Rack (1), the rack (1) is fixedly connected with horizontal plate (2) inside, and the vacuum pressure maintaining pump (22) is fixedly installed in the inside of one side of rack (1); Fitting lower cavity (6), the fitting lower cavity (6) is provided with two, the fitting lower cavity (6) is equidistantly arranged in the inside of rack (1), and the first sliding block (21) is fixedly connected on both sides of the bottom of fitting lower cavity (6), the first sliding block (21) is slidably connected with the first sliding rail (10) inside, and the first sliding rail (10) is fixedly connected with the inner wall of corresponding side of rack (1); Electromagnetic telescopic rod (7), the electromagnetic telescopic rod (7) is provided with two, and the electromagnetic telescopic rod (7) is equidistantly fixedly installed in the inside of rack (1), the output end of electromagnetic telescopic rod (7) is fixedly connected with fixed sheet (9), and the fixed sheet (9) is fixedly connected with the outer wall of corresponding fitting lower cavity (6) side; Backboard (11), the backboard (11) is provided with two, and the backboard (11) is equidistantly fixedly connected on one side in the inside of rack (1), the push rod motor (12) is fixedly installed on one side of backboard (11), the output end of push rod motor (12) is fixedly connected with connecting seat (13), and the connecting seat (13) is fixedly connected with slide rod (16) on the four corners of bottom part; Fitting upper cavity (14), the fitting upper cavity (14) is provided with two, and the fitting upper cavity (14) is respectively arranged below corresponding connecting seat (13), the bottom end of slide rod (16) is slidably inserted with corresponding fitting upper cavity (14), the fitting upper cavity (14) is provided with compression plate (20) inside, the bottom end of slide rod (16) is fixedly connected with corresponding compression plate (20), the bottom end of air guide pipe (15) is slidably inserted with corresponding fitting upper cavity (14), and the bottom end of air guide pipe (15) is fixedly connected with corresponding compression plate (20); Spring (17), the spring (17) is provided with a plurality of, the spring (17) is respectively sleeved on the outside of corresponding slide rod (16), and the spring (17) is fixedly connected with corresponding connecting seat (13) and fitting upper cavity (14) at both ends respectively; Reciprocating box (3), the reciprocating box (3) is arranged in the inside of rack (1), and the reciprocating box (3) is equidistantly fixedly connected with receiving plate (27) on top, and support column (23) is equidistantly arranged between receiving plate (27), the both ends of support column (23) are slidably inserted with corresponding receiving plate (27) respectively, and the both ends of support column (23) are fixedly connected with the inner wall of corresponding two sides of rack (1) respectively; The third sliding rail (24) is arranged on the top of the reciprocating box (3), is fixedly connected with the inner wall of the top of the rack (1), and is slidably connected with a linear motor (34) outside. The linear motor (34) is fixedly installed on the top of the reciprocating box (3); The recycling box (4) is provided with two recycling boxes (4) arranged equidistantly in the reciprocating box (3); The blanking box (5) is provided with two blanking boxes (5) arranged equidistantly in the reciprocating box (3). The reciprocating box (3) is provided with two waist-shaped holes (30) equidistantly arranged on the two sides perpendicular to the receiving plate (27). The reciprocating box (3) is provided with lifting pipes (33) equidistantly arranged inside. The lifting pipes (33) are fixedly connected with suction cups (38) outside. The lifting pipes (33) are rotatably connected with sliding cylinders (40) outside at both ends. The sliding cylinders (40) are slidably connected inside the corresponding waist-shaped holes (30). The lifting pipes (33) are fixedly connected with positioning gears (39) equidistantly outside. The reciprocating box (3) is fixedly connected with racks (37) on the inner wall on one side of the waist-shaped hole (30). The positioning gears (39) are meshingly connected with the corresponding racks (37). The side of the cross plate (2) close to the lifting pipe (33) is symmetrically provided with a guide groove (35). One end of the lifting pipe (33) is slidably connected with the corresponding guide groove (35). The end of the lifting pipe (33) away from the cross plate (2) is fixedly connected with a gas inlet (41). The recycling box (4) and the blanking box (5) are rotatably connected with driving shafts (46) and driven shafts (47) equidistantly inside. The driving shafts (46) are drivingly connected with the corresponding driven shafts (47) through a conveyor belt (48) outside. The conveyor belt (48) is fixedly connected with a strip plate (49) equidistantly outside. The end of the driving shaft (46) close to the transmission shaft (43) is fixedly connected with a worm gear (52) outside. The transmission shaft (43) is fixedly connected with a worm (51) equidistantly outside. The worm (51) is meshingly connected with the corresponding driving shaft (46).
2. The fully automatic taping apparatus according to claim 1, wherein The side of the back plate (11) close to the connecting seat (13) is fixedly connected with a second sliding rail (18) equidistantly. The side of the connecting seat (13) close to the back plate (11) is fixedly connected with a second sliding block (19) equidistantly. The second sliding block (19) is slidably connected outside the corresponding second sliding rail (18).
3. The fully automatic taping apparatus of claim 1, wherein The recycling box (4) and the blanking box (5) are slidably connected with a door plate (44) inside the side away from the cross plate (2). The side of the door plate (44) away from the cross plate (2) is fixedly connected with an arc-shaped sheet (45).
4. The fully automatic taping apparatus of claim 1, wherein The reciprocating box (3) is rotatably connected with driving shafts (31) at equidistant positions inside one side close to the horizontal plate (2) through bearings, driving motors (32) are fixedly installed at equidistant positions on one side of the reciprocating box (3) close to the horizontal plate (2), the output ends of the driving motors (32) are fixedly connected with one ends of the corresponding driving shafts (31), driving bevel gears (25) are fixedly sleeved on the outer sides of the ends of the driving shafts (31) away from the horizontal plate (2), transmission shafts (43) are rotatably connected inside the recycling box (4) and the discharging box (5) through bearings, driven bevel gears (26) are fixedly connected with one ends of the transmission shafts (43), push-in grooves (54) are equidistantly formed in the inner walls of the reciprocating box (3) close to the driven bevel gears (26), the one ends of the transmission shafts (43) are slidingly inserted into the corresponding push-in grooves (54), and the driven bevel gears (26) are meshedly connected with the corresponding driving bevel gears (25).
5. The fully automatic taping apparatus according to claim 4, wherein The inner walls of the reciprocating box (3) close to the recycling box (4) and the discharging box (5) are equidistantly provided with embedding grooves (36), embedding plates (42) are fixedly connected at equidistant positions on the two sides of the recycling box (4) and the discharging box (5), the embedding plates (42) are slidingly connected with the corresponding embedding grooves (36), rotating plates (28) are rotatably connected with the side walls of the reciprocating box (3) on one side of the recycling box (4) and the discharging box (5) through shaft pins, and hooks (29) are fixedly connected with the side walls of the reciprocating box (3) on the other sides of the recycling box (4) and the discharging box (5), one ends of the rotating plates (28) are slidingly inserted into the corresponding hooks (29).
6. The fully automatic taping apparatus of claim 1, wherein The outer sides of the driven shafts (47) and the driving shafts (46) are equidistantly and equiangularly provided with strip-shaped grooves (50), the inner walls of the conveyors (48) are equidistantly fixedly connected with protruding strips (53), and the conveyors (48) are matched with the strip-shaped grooves (50) of the corresponding driven shafts (47) and driving shafts (46) through the protruding strips (53).
Citation Information
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