Automatic display production system

By combining components such as robotic arms and negative pressure suction cups, the automated placement of LCD screens and the recycling of materials are achieved, solving the problem of time-consuming and labor-intensive LCD screen assembly and improving the automation level and efficiency of display production.

CN120793538APending Publication Date: 2025-10-17HUBEI GUANJIA TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202511142338.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-08-15
Publication Date
2025-10-17

AI Technical Summary

Technical Problem

The current LCD screen assembly process relies on manual operation, which is time-consuming and labor-intensive, resulting in low assembly efficiency.

Method used

By employing a robotic arm, transfer components, and alignment components, combined with a negative pressure suction cup and an air jet pipe, the system achieves automated placement of the LCD screen and material recycling, and automatically removes the protective film using a film-removing component.

Benefits of technology

It has enabled automated assembly of LCD screens, improving assembly efficiency, and has also enabled automatic material recycling and centralized cleaning of protective films, thereby increasing production efficiency and automation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of display production, in particular to an automatic display production system which comprises a conveying assembly and a mechanical arm, a transfer assembly is arranged at the output end of the mechanical arm, and a storage assembly and a deviation rectifying assembly are arranged on the conveying assembly; and the transferring assembly comprises a plurality of shells, the centers of the tops of the shells are fixedly connected with the output end of the mechanical arm, sleeves are inserted into the four corners of the peripheral wall of each shell, and the sleeves penetrate through and extend into the shells. According to the automatic production system for the display, through the arranged mechanical arm, transfer assembly and deviation correction assembly, when the display is produced and assembled, a liquid crystal screen can be automatically placed in a frame, manual placement is not needed, automatic production of the display is achieved, the assembly efficiency of the display is improved, and the production cost is reduced. The problem that time and labor are wasted when the liquid crystal screen is manually placed into the frame after being sucked by an assembling worker through a suction cup tool is solved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of display production, in particular to a display automatic production system. BACKGROUND

[0002] Display production refers to the process of processing and assembling raw materials (such as glass substrates, liquid crystal materials, conductive films, etc.) into electronic products with image display function through a series of precise process flows. Its core goal is to manufacture display devices (such as LCD, LED, etc.) that meet performance, resolution, color performance and other requirements through the combination of physics, chemistry and electronic technology. Assembling the liquid crystal screen into the frame is one of the assembly links of display production.

[0003] In the existing liquid crystal screen assembly, the assembly personnel generally use suction cup tools to adsorb the liquid crystal screen and then manually put it into the frame, which is time-consuming and labor-intensive, reducing the efficiency of liquid crystal screen assembly. Therefore, a display automatic production system is proposed to solve the above problems. SUMMARY

[0004] In view of the defects of the prior art, the present application provides a display automatic production system, which has the advantages of efficient assembly, etc., and solves the problem of time-consuming and labor-intensive assembly of the assembly personnel by using suction cup tools to adsorb the liquid crystal screen and then manually putting it into the frame.

[0005] To achieve the above purpose, the present application provides the following technical scheme: a display automatic production system, comprising a conveying assembly and a mechanical arm, the output end of the mechanical arm is provided with a transfer assembly, the conveying assembly is provided with a storage assembly and a deviation rectifying assembly; The transfer assembly comprises a shell, the top center of the shell is fixedly connected with the output end of the mechanical arm, sleeve sleeves are inserted into the four corners of the outer peripheral wall of the shell, the sleeve sleeves penetrate and extend into the interior of the shell, a telescopic rod is slidably installed in the interior of the sleeve sleeve, a negative pressure suction cup is fixedly installed at the end of the telescopic rod away from the shell, telescopic springs are fixedly installed at the top and bottom of the sleeve sleeve and have one end fixedly connected with the telescopic rod, an arc-shaped block is fixedly installed at the end of the telescopic rod located in the interior of the shell, a horizontal plate is fixedly installed at the center of the inner bottom wall of the shell, a rotating shaft is rotatably installed at the top center of the horizontal plate and has one end rotatably connected with the inner top wall of the shell, an installation disc is fixedly sleeved at the bottom end of the outer peripheral wall of the rotating shaft, an arc-shaped extrusion block is fixedly sleeved at the outer peripheral wall of the installation disc, a worm wheel is fixedly sleeved at the outer peripheral wall of the rotating shaft and located above the installation disc, a worm gear is rotatably installed at the side of the interior of the shell and located at the side of the worm wheel, the worm gear is engaged with the worm wheel, and one end of the worm gear penetrates and extends to the outside of the shell.

[0006] Further, both sides of the shell are provided with air blowing components, both of which include mounting plates fixedly installed on the side of the shell, the side of each of the two mounting plates opposite to the mounting plate is fixedly installed with two side plates, the end of the side plate away from the mounting plate is rotatably installed with a turnover block, the end of the turnover block away from the side plate is fixedly installed with a mounting rack, a plurality of jet pipes are fixedly installed on the mounting rack, a pneumatic cylinder one is movably arranged on the side of each of the two mounting plates opposite to the mounting plate and above the side plate, and the output end of the pneumatic cylinder one is rotatably installed with a connecting plate, and the end of the connecting plate away from the pneumatic cylinder one is fixedly connected with the turnover block.

[0007] Further, the storage assembly includes a storage box, the inner bottom wall of the storage box is fixedly installed with positioning blocks at four corners, recesses are formed at both ends of the top of the storage box, the recesses are fixedly installed with clamping grooves formed on the storage box, a liquid crystal screen is placed in the storage box and between the positioning blocks, and a separation foam is placed above the liquid crystal screen.

[0008] Further, the jet pipe is provided with a clamping block matched with the clamping groove.

[0009] Further, the deviation rectifying assembly includes a U-shaped plate, the U-shaped plate is arranged on the conveying assembly, both ends of the top of the U-shaped plate are fixedly installed with two slide rails, a sliding block is slidably installed on the slide rail, the top of each of the two sliding blocks is fixedly installed with a sliding plate, a rotating plate is rotatably installed at the top center of the U-shaped plate, both ends of the rotating plate are hingedly connected with a connecting rod having one end hingedly connected with the top center of the sliding plate, a pneumatic cylinder two is fixedly installed on the side of the U-shaped plate, the output end of the pneumatic cylinder two is fixedly connected with the sliding plate at one end, a proximity switch one is fixedly installed on the side of the U-shaped plate opposite to the pneumatic cylinder two, an L-shaped clamping plate is fixedly installed at the bottom of the sliding plate and on the side of the U-shaped plate opposite to the pneumatic cylinder two, and the L-shaped clamping plate is provided with a proximity switch two.

[0010] Further, the conveying assembly is composed of a material recycling conveying line, a frame conveying line and a liquid crystal screen conveying line, the mechanical arm is located between the material recycling conveying line, the frame conveying line and the liquid crystal screen conveying line, the storage assembly is placed on the liquid crystal screen conveying line, the frame conveying line and the liquid crystal screen conveying line are provided with deviation rectifying assemblies, the liquid crystal screen conveying line is provided with a film tearing assembly, and the frame conveying line is placed with a frame placing box.

[0011] Furthermore, the film tearing assembly includes a linear module 1, which is fixedly installed on the side of the LCD screen conveyor line, and a linear module 2 is fixedly installed on the output end of the linear module 1, and a fixed plate is fixedly installed on the output end of the linear module 2, and a hollow column is fixedly installed on the top center of the fixed plate, and a driving motor is fixedly installed inside the hollow column, and a rotating plate is fixedly installed on the output end of the driving motor, and a pneumatic finger is provided on the top of the rotating plate.

[0012] Furthermore, a collection box is provided on the left side of the LCD screen conveyor line and below the film tearing assembly.

[0013] Compared with the existing technology, the technical solution of this application has the following beneficial effects: 1. This automated display production system, through the set robotic arms, transfer components and correction components, can automatically place the LCD screen into the frame during display production and assembly, eliminating the need for manual placement. This realizes the automated production of displays, improves the assembly efficiency of displays, and solves the problem of assemblers using suction cup tools to absorb the LCD screen and then manually place it into the frame, which is time-consuming and labor-intensive.

[0014] 2. The display automated production system, through the provided clamping blocks and clamping slots, enables the jet tube to lift the storage box for recycling. The jet tube and the negative pressure suction cup can lift the partition foam for recycling. In this way, the system can automatically recycle materials.

[0015] 3. The display automation production system can automatically tear off the protective film through the film tearing component, and collect the torn protective film into the collection box for convenient centralized cleaning. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 It is a schematic diagram of the structure of the present invention; Figure 2 For the present invention Figure 1 Enlarged view of point A in the middle; Figure 3 This is a schematic structural diagram of the correction component of the present invention; Figure 4 This is a schematic diagram of the storage component structure of the present invention; Figure 5 This is a schematic diagram of the transfer assembly structure of the present invention; Figure 6 This is a bottom view of the housing of the present invention; Figure 7 For the present invention Figure 6 Enlarged view of point C in the middle; Figure 8 For the present invention Figure 5 Enlarged view of point B in the middle.

[0017] In the figure: 1 conveying assembly, 101 material recycling conveying line, 102 frame conveying line, 103 liquid crystal screen conveying line, 2 mechanical arm, 3 transfer assembly, 301 shell, 302 sleeve, 303 telescopic rod, 304 negative pressure suction disc, 305 telescopic spring, 306 arc-shaped block, 307 horizontal plate, 308 rotating shaft, 309 mounting disc, 310 arc-shaped extrusion block, 311 worm, 312 worm wheel, 4 storage assembly, 401 storage box, 402 positioning block, 403 groove, 404 clamping groove, 405 liquid crystal screen, 406 separation foam, 5 deviation rectifying assembly, 501 U-shaped plate, 502 slide rail, 503 sliding block, 504 sliding plate, 505 rotating plate, 506 connecting rod, 507 air cylinder two, 508 proximity switch one, 509 L-shaped clamping plate, 510 proximity switch two, 6 frame placing box, 7 collection box, 8 film tearing assembly, 801 linear module one, 802 linear module two, 803 fixed plate, 804 hollow stand column, 805 rotating plate, 806 pneumatic finger, 9 air blowing assembly, 901 mounting plate, 902 side plate, 903 overturning block, 904 mounting frame, 905 air jet pipe, 906 air cylinder one, 907 connecting plate. DETAILED DESCRIPTION

[0018] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work fall within the scope of protection of the present application.

[0019] Please refer to Figures 1-8 The display automatic production system in the embodiment includes a conveying assembly 1 and a mechanical arm 2. The output end of the mechanical arm 2 is provided with a transfer assembly 3. The conveying assembly 1 is provided with a storage assembly 4 and a deviation rectifying assembly 5. The transfer assembly 3 comprises a shell 301, the top center of the shell 301 is fixedly connected with the output end of the mechanical arm 2, the outer peripheral wall of the shell 301 is inserted with sleeves 302 at four corners, the sleeves 302 penetrate and extend into the shell 301, the telescopic rod 303 is slidingly installed in the sleeves 302, the negative pressure suction disc 304 is fixedly installed at the end of the telescopic rod 303 away from the shell 301, the telescopic springs 305 are fixedly installed at the top and bottom of the sleeves 302 and have one end fixedly connected with the telescopic rod 303, the arc-shaped block 306 is fixedly installed at the end of the telescopic rod 303 in the shell 301, the horizontal plate 307 is fixedly installed at the center of the inner bottom wall of the shell 301, the pivot 308 is rotatably installed at the top center of the horizontal plate 307 and has one end rotatably connected with the inner top wall of the shell 301, the mounting disc 309 is fixedly sleeved on the outer peripheral wall of the pivot 308, the arc-shaped extrusion block 310 is fixedly sleeved on the outer peripheral wall of the mounting disc 309, the worm wheel 312 is fixedly sleeved on the outer peripheral wall of the pivot 308 and above the mounting disc 309, the worm 311 is rotatably installed in the shell 301 and at the side of the worm wheel 312, the worm 311 is engaged with the worm wheel 312, one end of the worm 311 penetrates and extends to the outside of the shell 301, and the rotating disc is fixedly installed at the end of the worm 311 outside the shell 301.

[0020] Specifically, the negative pressure suction disc 304 can adsorb the surface of the liquid crystal screen to transfer the liquid crystal screen, the rotating disc is twisted to rotate the worm 311, the worm 311 drives the worm wheel 312 to rotate with the mounting disc 309, the telescopic rod 303 can be driven to stretch and retract to adjust the position of the negative pressure suction disc 304 to adapt to liquid crystals of different sizes, and the telescopic spring 305 can drive the telescopic rod 303 to reset.

[0021] In the embodiment, the shell 301 is provided with the blowing assembly 9 at two sides, the blowing assembly 9 comprises the mounting plate 901, the mounting plate 901 is fixedly installed on the side of the shell 301, the side plates 902 are fixedly installed on the opposite side of the two mounting plates 901, the number of the side plates 902 is two, the turnover blocks 903 are rotatably installed at the end of the side plates 902 away from the mounting plates 901, the mounting racks 904 are fixedly installed at the end of the turnover blocks 903 away from the side plates 902, the jet pipes 905 are fixedly installed on the mounting racks 904, the air cylinders one 906 are movably arranged on the opposite side of the two mounting plates 901 and above the side plates 902, the connecting plates 907 are rotatably installed at the output end of the air cylinders one 906, and the turnover blocks 903 are fixedly connected with the connecting plates 907 away from the air cylinders one 906.

[0022] Specifically, the two sides of the cylinder 1 906 are operated simultaneously, the cylinder 1 906 drives the turnover block 903 to turn around the shaft of the side plate 902 through the connecting plate 907, so as to drive the jet pipe 905 to rotate.

[0023] In the embodiment, the storage assembly 4 comprises a storage box 401, four corners of the inner bottom wall of the storage box 401 are fixedly provided with positioning blocks 402, both ends of the top of the storage box 401 are provided with grooves 403, the grooves 403 are fixedly provided with clamping grooves 404 opened on the storage box 401, and the inside of the storage box 401 and between the positioning blocks 402 is provided with a liquid crystal screen 405, and above the liquid crystal screen 405 is provided with a separation foam 406.

[0024] Specifically, the positioning blocks 402 can fix the four corners of the liquid crystal screen, so that the position of the liquid crystal screen will not deviate during transportation, and the separation foam 406 can block impurities outside, thereby protecting the liquid crystal screen 405.

[0025] In the embodiment, the jet pipe 905 is provided with a clamping block 908 matched with the clamping groove 404.

[0026] Specifically, the clamping block 908 and the clamping groove 404 are arranged, so that the jet pipe 905 can lift the storage box 401 to transfer the position of the storage box 401.

[0027] In the embodiment, the deviation correction assembly 5 comprises a U-shaped plate 501, the U-shaped plate 501 is arranged on the conveying assembly 1, both ends of the top of the U-shaped plate 501 are fixedly provided with two sliding rails 502, the sliding rails 502 are slidably provided with sliding blocks 503, the top of both ends of the sliding blocks 503 are fixedly provided with sliding plates 504, the top center of the U-shaped plate 501 is rotatably provided with a rotating plate 505, both ends of the rotating plate 505 are hingedly provided with connecting rods 506, one end of each of which is hingedly connected to the top center of the sliding plate 504, a second air cylinder 507 is fixedly arranged on the side of the U-shaped plate 501, the output end of the second air cylinder 507 is fixedly connected to the sliding plate 504, a first proximity switch 508 is fixedly arranged on the side of the U-shaped plate 501 opposite to the second air cylinder 507, an L-shaped clamping plate 509 is fixedly arranged on the bottom of the sliding plate 504 and at the end of the sliding plate 504 opposite to the second air cylinder 507, and a second proximity switch 510 is arranged on the L-shaped clamping plate 509.

[0028] Specifically, when the first proximity switch 508 senses whether an article passes, the second proximity switch 510 senses whether the article is attached to the L-shaped clamping plate 509, the second air cylinder 507 drives one side of the sliding plate 504 to slide, the sliding plate 504 drives the other side of the sliding plate 504 to rotate synchronously through the connecting rod 506 and the rotating plate 505, the position of the passing box is corrected, and the box is located at the center of the conveying line, thereby facilitating subsequent operation.

[0029] In the embodiment, the conveying assembly 1 is composed of a material recycling conveying line 101, a frame conveying line 102 and a liquid crystal screen conveying line 103, the mechanical arm 2 is located between the material recycling conveying line 101, the frame conveying line 102 and the liquid crystal screen conveying line 103, the storage assembly 4 is placed on the liquid crystal screen conveying line 103, the frame conveying line 102 and the liquid crystal screen conveying line 103 are both provided with the deviation rectifying assembly 5, the liquid crystal screen conveying line 103 is provided with the film tearing assembly 8, and the frame conveying line 102 is provided with the frame placing box 6.

[0030] Specifically, the material recycling conveying line 101 can be used to convey the used separation foam 406 to the storage box 401, the frame conveying line 102 can be used to convey the display screen frame, and the liquid crystal screen conveying line 103 can be used to convey the liquid crystal screen.

[0031] In the embodiment, the film tearing assembly 8 comprises a linear module one 801, the linear module one 801 is fixedly installed on the side of the liquid crystal screen conveying line 103, the output end of the linear module one 801 is fixedly installed with a linear module two 802, the output end of the linear module two 802 is fixedly installed with a fixed plate 803, the top center of the fixed plate 803 is fixedly installed with a hollow stand column 804, the inside of the hollow stand column 804 is fixedly installed with a driving motor, the output end of the driving motor is fixedly installed with a rotating plate 805, and the top of the rotating plate 805 is provided with a pneumatic finger 806. A collecting box 7 is arranged on the left side of the liquid crystal screen conveying line 103 and below the film tearing assembly 8.

[0032] Specifically, the liquid crystal screen is lifted to a set height by the mechanical arm 2, the linear module one 801 and the linear module two 802 are operated to move to the protective film label of the liquid crystal screen with the pneumatic finger 806, the pneumatic finger 806 is operated to clamp the protective film label, the protective film of the liquid crystal screen can be torn off along with the continuous lifting of the mechanical arm 2, then the driving motor is operated to rotate the pneumatic finger 806 to move the torn protective film above the collecting box 7, and the pneumatic finger 806 is operated to release the protective film, and the protective film falls into the collecting box 7.

[0033] It should be noted that the suction cup 304 is communicated with the air suction port of the vacuum air pump through a hose, the air jet pipe 905 and the pneumatic finger 806 are both communicated with the air outlet of the air compressor through a hose, and the passage control of the hose is controlled by the electromagnetic valve.

[0034] The vacuum air pump, the electromagnetic valve, the driving motor, the material recycling conveying line 101, the frame conveying line 102, the liquid crystal screen conveying line 103, the mechanical arm 2, the pneumatic cylinder two 507, the pneumatic cylinder one 906, the linear module one 801, the linear module two 802 and the pneumatic finger 806 are all electrically connected with an external controller.

[0035] Both proximity switch 1 508 and proximity switch 2 510 are connected to the external controller signal. The external controller is a microprogram controller, which can be programmed with corresponding control programs according to production requirements to accurately control the equipment. Since the control process is existing technology, it will not be described in detail in this application.

[0036] The working principle of the above embodiment is: (1) Place the storage assembly 4 and the frame placement box 6 on the LCD conveyor line 103 and the frame conveyor line 102 respectively. As they are conveyed, the storage box 401 and the frame placement box 6 will pass by the proximity switch 508. The proximity switch 508 will upload the passing information of the box to the external controller; (2) The external controller operates the air cylinder 2 507 to slide the sliding plate 504 on one side according to the set program. The sliding plate 504 rotates synchronously with the sliding plate 504 on the other side through the connecting rod 506 and the rotating plate 505, and corrects the position of the passing box so that it is in the center of the conveyor line. The proximity switch 2 510 can sense whether the box fits the L-shaped clamping plate 509. When the box does not fit the proximity switch 2 510, the L-shaped clamping plate 509 is operated to move back to release the fixed state of the box. Then the conveyor line is operated to drive the box to continue moving until the box fits the L-shaped clamping plate 509. The external controller controls the L-shaped clamping plate 509 to fix the box. At this time, the box is in the target position for assembly; (3) After the box is positioned, the external controller controls the robot arm 2 to lower the shell 301. At the same time, the external controller controls the cylinder 1 906 on both sides. The cylinder 1 906 drives the flip block 903 to flip around the axis of the side plate 902 through the connecting plate 907, thereby driving the jet pipe 905 to be perpendicular to the bottom of the shell 301. When the jet pipe 905 is inserted into the groove 403 in the storage box 401, the electromagnetic valves on both sides are controlled to deliver compressed air to the jet pipe 905 on both sides. The tube 905 ejects compressed air to blow up the separation foam 406, and at the same time, the negative pressure suction cup 304 is operated to absorb the blown separation foam 406. The external controller controls the robot arm 2 to first move the air jet tube 905 upward to separate from the storage box 401, and then operates the robot arm 2 to flip and move the separation foam 406 to the top of the material recovery conveyor line 101. The vacuum pump is operated to release the absorption state of the separation foam 406, and the separation foam 406 falls onto the material recovery conveyor line 101 for recovery. (4) The external controller controls the mechanical arm 2 to move the negative pressure suction cup 304 above the liquid crystal screen 405, and controls the air cylinder one 906 on both sides to drive the air jet pipe 905 to be horizontally arranged on both sides of the shell 301. When the negative pressure suction cup 304 is close to the liquid crystal screen 405, the suction pump is controlled to make the negative pressure suction cup 304 adsorb the liquid crystal screen 405. The mechanical arm 2 is controlled to lift the liquid crystal screen 405 to a set height. The linear module one 801 and the linear module two 802 are controlled to move the pneumatic finger 806 to the position of the protective film label of the liquid crystal screen. The pneumatic finger 806 is controlled to clamp the protective film label. With the continuous lifting of the mechanical arm 2, the protective film of the liquid crystal screen can be torn off. Then, the driving motor is controlled to rotate the pneumatic finger 806, and the torn protective film is moved above the collection box 7. The pneumatic finger 806 is controlled to release the protective film, and the protective film falls into the collection box 7; (5) After the protective film is torn off, the external controller controls the mechanical arm 2 to move the liquid crystal screen 405 above the frame placing box 6. The controller controls the mechanical arm 2 to place the liquid crystal screen 405 into the display frame. The suction pump is controlled to release the adsorption state of the liquid crystal screen 405, and the assembly of the display is completed. (6) The external controller controls the mechanical arm 2 to move the air jet pipe 905 above the storage box 401, and controls the air cylinder one 906 on both sides to drive the air jet pipe 905 to be perpendicular to the shell 301 below. When the air jet pipe 905 is inserted into the groove 403 in the storage box 401, the air cylinder one 906 on both sides is controlled to rotate the air jet pipe 905 to a certain angle, so that the clamping block 908 is clamped into the clamping groove 404. The mechanical arm 2 is controlled to move the air jet pipe 905 upward to lift the storage box 401. Finally, the storage box 401 is transferred to the material recycling conveying line 101 for recycling of the storage box 401.

[0037] It should be noted that, in the present document, relational terms such as first and second and the like can be used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Moreover, the terms "comprises", "comprising", or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but can include other elements not expressly listed or inherent to such process, method, article, or apparatus. An element proceeded by "comprises... a" does not, without more constraints, exclude the presence of additional identical elements in the process, method, article, or apparatus that comprises the element.

[0038] While embodiments of the application have been shown and described, it is to be understood that the embodiments described are merely exemplary of the principles and application of the present application. Numerous modifications and adaptions can be effected without departing from the spirit and scope of the present application, which is not limited to the exact construction and arrangement described. It is intended, therefore, to cover all modifications and adaptions that fall within the scope of the claims and their equivalents.

Claims

1. A display automation production system, comprising a conveying component (1) and a robotic arm (2), characterized in that: The output end of the robotic arm (2) is provided with a transfer component (3), and the conveying component (1) is provided with a storage component (4) and a deviation correction component (5); The transfer assembly (3) includes a shell (301), the top center of the shell (301) is fixedly connected to the output end of the robot arm (2), the four corners of the outer wall of the shell (301) are plugged with sleeves (302), the sleeve (302) passes through and extends into the interior of the shell (301), a telescopic rod (303) is slidably installed inside the sleeve (302), the end of the telescopic rod (303) away from the shell (301) is fixedly installed with a negative pressure suction cup (304), the top and bottom of the sleeve (302) are fixedly installed with a telescopic spring (305) with one end fixedly connected to the telescopic rod (303), the end of the telescopic rod (303) located inside the shell (301) is fixedly installed with an arc block (306), the shell A horizontal plate (307) is fixedly installed at the center of the inner bottom wall of (301), and a rotating shaft (308) with one end rotatably connected to the inner top wall of the shell (301) is rotatably installed at the top center of the horizontal plate (307). The bottom end of the outer peripheral wall of the rotating shaft (308) is fixedly sleeved with a mounting plate (309), and the outer peripheral wall of the mounting plate (309) is fixedly sleeved with an arc-shaped extrusion block (310). A worm gear (312) is fixedly sleeved on the outer peripheral wall of the rotating shaft (308) and located above the mounting plate (309). A worm (311) is rotatably installed inside the shell (301) and located on the side of the worm gear (312). The worm gear (311) is meshed with the worm gear (312), and one end of the worm gear (311) passes through and extends to the outside of the shell (301).

2. The automated display production system according to claim 1, wherein: Both sides of the shell (301) are provided with air blowing assemblies (9), and both air blowing assemblies (9) include mounting plates (901), and the mounting plates (901) are fixedly mounted on the sides of the shell (301). Two side plates (902) are fixedly mounted on opposite sides of the two mounting plates (901), and a flip block (903) is rotatably mounted on one end of the side plate (902) away from the mounting plate (901). The flip block (903) is away from the side plate ( A mounting frame (904) is fixedly mounted on one end of the mounting plate (902), and a plurality of jet pipes (905) are fixedly mounted on the mounting frame (904). A cylinder (906) is movably mounted on the opposite side of the two mounting plates (901) and above the side plate (902). A connecting plate (907) is rotatably mounted on the output end of the cylinder (906), and an end of the connecting plate (907) away from the cylinder (906) is fixedly connected to the flip block (903).

3. The automated display production system according to claim 2, wherein: The storage assembly (4) comprises a storage box (401), positioning blocks (402) are fixedly installed at the four corners of the inner bottom wall of the storage box (401), grooves (403) are provided at both ends of the top of the storage box (401), and a clamping groove (404) provided on the storage box (401) is fixedly installed inside the groove (403). A liquid crystal screen (405) is placed inside the storage box (401) and between the positioning blocks (402), and a partition foam (406) is placed above the liquid crystal screen (405).

4. The automated display production system according to claim 3, wherein: A clamping block (908) is provided on the air injection pipe (905), and the clamping block (908) matches the clamping slot (404).

5. The automated display production system according to claim 1, wherein: The deviation correction component (5) comprises a U-shaped plate (501), the U-shaped plate (501) is arranged on the conveying component (1), two slide rails (502) are fixedly installed at both ends of the top of the U-shaped plate (501), a sliding block (503) is slidably installed on the slide rail (502), and a sliding plate (504) is fixedly installed on the top of the sliding block (503) at both ends, and a rotating plate (505) is rotatably installed at the center of the top of the U-shaped plate (501), and both ends of the rotating plate (505) are hinged with one end to the sliding plate (504). 4) A connecting rod (506) is hinged at the top center, a cylinder 2 (507) is fixedly installed on the side of the U-shaped plate (501), the output end of the cylinder 2 (507) is fixedly connected to the sliding plate (504) at one end, a proximity switch 1 (508) is fixedly installed on the side of the U-shaped plate (501) opposite to the cylinder 2 (507), an L-shaped clamping plate (509) is fixedly installed at the bottom of the sliding plate (504) and at the end opposite to the cylinder 2 (507), and a proximity switch 2 (510) is provided on the L-shaped clamping plate (509).

6. The automated display production system according to claim 1, wherein: The conveying assembly (1) is composed of a material recovery conveying line (101), a frame conveying line (102) and a liquid crystal display conveying line (103); the robotic arm (2) is located between the material recovery conveying line (101), the frame conveying line (102) and the liquid crystal display conveying line (103); the storage assembly (4) is placed on the liquid crystal display conveying line (103); the frame conveying line (102) and the liquid crystal display conveying line (103) are both provided with a deviation correction assembly (5); the liquid crystal display conveying line (103) is provided with a film tearing assembly (8); and a frame placement box (6) is placed on the frame conveying line (102).

7. The automated display production system according to claim 6, wherein: The film tearing assembly (8) includes a linear module 1 (801), which is fixedly installed on the side of the LCD screen conveyor line (103), and a linear module 2 (802) is fixedly installed on the output end of the linear module 1 (801), and a fixed plate (803) is fixedly installed on the output end of the linear module 2 (802), and a hollow column (804) is fixedly installed at the top center of the fixed plate (803), and a driving motor is fixedly installed inside the hollow column (804), and a rotating plate (805) is fixedly installed on the output end of the driving motor, and a pneumatic finger (806) is provided on the top of the rotating plate (805).

8. The automated display production system according to claim 7, wherein: A collection box (7) is provided on the left side of the liquid crystal screen conveying line (103) and below the film tearing assembly (8).