Intelligent detection machine for quality of optical film material
The integration of a multi-station feeding mechanism and retrieval system in optical film detection systems addresses inefficiencies by enabling simultaneous detection of multiple films and automated removal of defects, improving efficiency and reducing manual sorting.
Patent Information
- Application Number
- CN202510786623.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-13
- Publication Date
- 2025-07-15
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The existing optical diaphragm detectors can only detect one piece at a time, which is inefficient and is difficult to quickly sort the unqualified diaphragm, which affects subsequent sorting.
The multi-station feeding mechanism and the pick-up mechanism are adopted to realize the simultaneous detection of multiple pieces, and the rapid sorting of unqualified diaphragms is achieved through the suction cup and push rod.
It improves the inspection efficiency, reduces manual sorting labor, and ensures the inspection accuracy and efficiency.
Smart Images

Figure CN120306287A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of optical film detection, and in particular to an intelligent detection machine for optical film material quality. Background Art
[0002] Optical film is an important component of LCD screens. Its main function is to provide sufficient brightness and evenly distributed light source to ensure that the screen can display images normally. In order to ensure that the optical film can be put into use normally, it will be intelligently tested during the production process; For example, the invention patent with application publication number CN113804700A discloses an intelligent detection equipment for automatically detecting the quality of optical film materials, wherein a packaging workbench is used, a conveyor belt is installed on the top surface of the workbench, the conveyor belt is transmission-connected to the output shaft of the first drive motor, a detection frame is installed on the top surface of the workbench, a diffuse reflection photoelectric switch is installed near the center of the detection frame, an electric push rod is installed on the top surface of the workbench, two groups of electric push rods are arranged, and the telescopic rods of the two groups of electric push rods are respectively fixed and installed on the two ends of the bottom surface of the fixed frame, and an installation groove is opened inside the fixed frame. The optical lens passes through the electromagnetic wave switch through the conveyor belt, so that the photoelectric switch can detect whether there are scars on its surface, thereby reducing the impact of labor.
[0003] However, the above technical solution still has some shortcomings. Combining the existing solution and the actual production and processing, the current detection machine can only load the optical film one by one for detection, which reduces the detection efficiency. At the same time, when unqualified films are detected, they cannot be taken out quickly, which will affect subsequent sorting and other problems. Therefore, we propose an intelligent detection machine for optical film material quality to solve the above problems. Summary of the invention
[0004] The purpose of the present invention is to provide an intelligent inspection machine for the quality of optical film materials to solve the problem of the intelligent inspection machine for the quality of optical film materials proposed in the above-mentioned background technology. In combination with the existing scheme and the actual production and processing, the current inspection machine can only inspect the optical film one by one, thereby reducing the inspection efficiency. At the same time, when unqualified films are detected, they cannot be taken out quickly, which will affect the subsequent sorting and other problems.
[0005] To achieve the above-mentioned purpose, the present invention provides the following technical solution: an intelligent detection machine for optical film material quality, comprising: A workbench, the workbench being directly placed on the ground; Also includes: A multi-station loading mechanism for improving detection efficiency is arranged in the middle of the workbench, and a picking mechanism for reducing subsequent manual sorting is arranged on the upper rear side of the workbench.
[0006] As a preferred technical solution of the present invention, the multi-station feeding mechanism arranged in the middle of the workbench includes a turntable, a limit frame, a placement plate, a connection disk, a fixing groove, a rotating ring, a small gear, a shifting rod, a large gear, a second motor and a support frame. A turntable is rotatably arranged in the middle of the workbench, and limit frames are fixedly installed at equal angles above the turntable. A placement plate is arranged in the middle of the limit frames. A connection disk is fixedly installed below the middle of the turntable. Fixing grooves are arranged at equal angles below the connection disk. A shifting rod is slidably connected to the inner side of the fixing groove. The shifting rod is fixedly installed above the middle of the small gear. A rotating ring is rotatably installed on the outer sides of the middle parts of the shifting rod and the small gear. The lower end of the rotating ring is connected to the output shaft of the second motor. The outer side of the small gear is meshed with a large gear. The lower part of the middle of the large gear is fixedly connected to the housing of the second motor. The lower end of the second motor is fixedly connected to a support frame. The support frame is directly placed on the ground. The rotating ring is slidably arranged in the middle of the large gear, and the outer side of the rotating ring is in sliding contact with the connection disk.
[0007] Adopting the above technical solution, the multi-station feeding mechanism is composed of a turntable, a limit frame, a placement plate, a connection disk, a fixing groove, a rotating ring, a small gear, a shifting rod, a large gear, a second motor and a support frame, which can place multiple test materials at one time, thus greatly improving the test efficiency.
[0008] As a preferred technical solution of the present invention, the taking mechanism arranged at the rear side above the workbench includes a suction cup, a mounting plate, a rotating shaft frame, a first gear, a first gear, a rack, a moving block, a shifting rod, a third motor and a sliding groove. A suction cup is arranged at the rear side above the workbench. The suction cup is installed below the mounting plate. The mounting plate is installed at the output end of a second electric telescopic rod. The upper end of the second electric telescopic rod is fixedly connected to a rotating shaft frame. The rotating shaft frame is rotatably arranged inside a fixing frame. The lower front side of the fixing frame is fixedly connected to the workbench. The outer side of the upper end of the rotating shaft frame is fixedly connected to a first gear. The front side of the first gear is meshed with a rack. A moving block is slidably connected to the inner side above the rack. The upper part of the moving block is connected to a shifting rod. The upper end of the shifting rod is fixedly connected to the output shaft of a third motor. The lower part of the rack is slidably connected to a sliding groove. The sliding groove is fixedly connected to the fixing frame.
[0009] Adopting the above technical solution, the taking mechanism is composed of a suction cup, a mounting plate, a rotating shaft frame, a first gear, a first gear, a rack, a moving block, a shifting rod and a third motor. It can quickly take and sort the unqualified materials during the test, effectively reducing the subsequent manual sorting.
[0010] As a preferred technical solution of the present invention, a clamping plate is slidably connected to the inner side of the turntable, and a rubber plate is arranged on the inner side of the clamping plate.
[0011] With the above technical solution, the clamping plate and the rubber plate can cause the movement of the position. When the clamping plate moves inward, the material placed above the placement plate can be clamped, and the rubber plate can be attached to the material to protect the clamped material.
[0012] As a preferred technical solution of the present invention, a limiting rod is slidably connected to the inner part below the clamping plate, and the limiting rod is fixedly installed inside the turntable.
[0013] With the above technical solution, through the setting of the limiting rod, the movement of the clamping plate can be limited, so that the clamping plate can move more smoothly.
[0014] As a preferred technical solution of the present invention, a connecting rod is rotatably connected to the outside of the clamping plate, and the connecting rod is rotatably connected to the rotating disk. The rotating disk is rotatably arranged inside the turntable, and the output shaft of the first motor is fixedly connected to the outside of the rotating disk.
[0015] With the above technical solution, by starting the first motor, the rotating disk can be rotated. When the rotating disk rotates, the connected connecting rod can be driven to rotate together, and the rotation of the connecting rod can pull the connected clamping plate to move in position.
[0016] As a preferred technical solution of the present invention, a film detector is arranged at the rear side above the middle of the workbench, and the film detector is installed at the output end of the second electric telescopic rod. The second electric telescopic rod is slidably connected above with an electromagnetic slide rail, and a fixing frame is fixedly connected above the electromagnetic slide rail.
[0017] With the above technical solution, by arranging the film detector at the rear side above the middle of the workbench, and the film detector is installed at the output end of the second electric telescopic rod, and its upper side is arranged inside the electromagnetic slide rail, it is convenient to adjust the film detector up, down, left and right, and convenient to effectively detect the material.
[0018] As a preferred technical solution of the present invention, first electric telescopic rods are symmetrically installed on the left and right above the rear side of the fixing frame, and a push rod is arranged at the output end of the first electric telescopic rod.
[0019] With the above technical solution, by installing the push rod at the output end of the first electric telescopic rod, the first electric telescopic rod can push the push rod downward, and the push rod can push the material adsorbed by the suction cup to enter the inside of the collection box.
[0020] As a preferred technical solution of the present invention, a collection box is arranged at the rear side of the workbench, and the collection box is directly placed on the ground.
[0021] With the above technical solution, by providing a collection box, the collection box can uniformly collect unqualified materials.
[0022] Compared with the prior art, the beneficial effects of the present invention are as follows: The intelligent detection machine for the quality of optical film materials can place multiple detection materials at one time through the multi-station feeding mechanism, thereby greatly improving the detection efficiency. At the same time, a taking mechanism is provided, which can quickly take and sort unqualified materials during detection, effectively reducing subsequent manual sorting. In addition, a fixing mechanism is provided, which can fix the position of the materials to be detected, ensuring that the materials will not shift during detection, thus greatly improving the detection accuracy. 1. A turntable, a limiting frame and a placement plate are provided. By rotatably arranging a turntable in the middle of the workbench, the limiting frames are installed at equal angles on the upper side of the turntable, and the placement plate is installed in the middle of the limiting frames. The materials to be detected can be placed above the placement plate, so that multiple materials can be placed for detection at one time, greatly improving the detection efficiency. At the same time, the turntable can rotate and stop every 90°, facilitating the detection of materials. 2. A clamping plate and a rubber plate are provided. By arranging the clamping plate and the rubber plate inside the turntable, the rubber plate is installed inside the clamping plate. After the materials to be detected are placed above the placement plate, the clamping plate can be moved inward, and the rubber plate can be attached to the outer side of the placed materials. The clamping plate and the rubber plate can limit the materials, ensuring that the materials will not move during detection. 3. A suction cup and a mounting plate are provided. By arranging a suction cup at the rear side of the middle part above the workbench, the suction cup is installed below the mounting plate. When the film detection machine detects unqualified materials, the suction cup can move downward to adsorb the unqualified materials, and then can rotate 180° so that the adsorbed materials are located above the collection box. 4. A push rod is provided. By arranging a push rod at the rear side above the fixed frame, the push rod is installed at the output end of the first electric telescopic rod. That is, when the first electric telescopic rod is turned on, the first electric telescopic rod can push the push rod to move downward, and the push rod can poke the unqualified materials adsorbed by the suction cup to fall downward. That is, the unqualified materials can fall into the interior of the lower collection box under the poking of the push rod, and the collection box can uniformly collect the unqualified materials. BRIEF DESCRIPTION OF THE DRAWINGS
[0023] Figure 1 It is a front view perspective structure schematic diagram of the whole of the present invention; Figure 2 It is a side view perspective structure schematic diagram of the whole of the present invention; Figure 3 It is a bottom view perspective structure schematic diagram of the whole of the present invention; Figure 4It is a schematic diagram of the overall rear perspective structure of the present invention; Figure 5 It is a perspective cross-sectional structural schematic diagram of the present invention; Figure 6 It is a perspective structural diagram of the connection between the limit frame, the placement plate and the clamping plate of the present invention; Figure 7 It is a perspective structural diagram of the connection between the clamping plate, the rubber plate and the limiting rod of the present invention; Figure 8 It is a perspective structural diagram of the connection between the rotating disk, the connecting disk and the fixing groove of the present invention; Figure 9 It is a perspective structural diagram of the connection between the rotating ring, the pinion and the toggle lever of the present invention; Figure 10 It is a perspective structural diagram of the connection between the film detection machine, the second electric telescopic rod and the electromagnetic slide rail of the present invention; Figure 11 It is a perspective structural diagram of the connection between the suction cup, the mounting plate and the rotating shaft frame of the present invention.
[0024] In the figure: 1. workbench; 2. turntable; 3. limit frame; 4. placement plate; 5. clamping plate; 6. rubber plate; 7. limit rod; 8. connecting rod; 9. rotating disk; 10. first motor; 11. connecting disk; 12. fixed groove; 13. rotating ring; 14. small gear; 15. toggle rod; 16. large gear; 17. second motor; 18. support frame; 19. first electric telescopic rod; 20. fixed frame; 21. film detection machine; 22. second electric telescopic rod; 23. electromagnetic slide rail; 24. suction cup; 25. mounting plate; 26. rotating shaft frame; 27. collection box; 28. first gear; 29. rack; 30. moving block; 31. toggle rod; 32. third motor; 33. sliding groove; 34. push rod. DETAILED DESCRIPTION
[0025] 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.
[0026] See also Figures 1 - 11 , the present invention provides a technical solution: In order to solve the problems existing in the prior art, the present embodiment adopts the following technical solution, an intelligent detection machine for optical film material quality, comprising: Workbench 1, a multi-station feeding mechanism, is arranged in the middle of the workbench 1. It can place multiple materials to be detected at one time for detection and can rotate and stop at 90°, thus greatly improving the detection efficiency; a picking mechanism, is arranged at the upper rear side of the workbench 1, which can pick and sort the materials with unqualified detection, thus reducing the labor of subsequent workers for material sorting; a fixing mechanism, is arranged inside the turntable 2, which can fix the position of the materials to be detected placed above the placing plate 4, thus ensuring the accuracy of subsequent detection; In the above technical solution, as Figure 1 , Figure 6 and Figure 7 shown, a turntable 2 is rotatably arranged in the middle of the workbench 1. Limit frames 3 are fixedly installed at equal angles above the turntable 2. A placing plate 4 is installed above the middle of each limit frame 3. In this application case, the detection opportunity is placed in a pollution-free environment, that is, there will be no dust pollution. At the same time, the material to be detected is rectangular, so the material to be detected can be placed above the placing plate 4. A clamping plate 5 is slidably arranged inside the turntable 2. A rubber plate 6 is arranged inside the clamping plate 5. Secondly, a limiting rod 7 fixedly arranged inside the limit frame 3 is slidably connected to the lower part inside the clamping plate 5. In addition, the outside of the clamping plate 5 is rotatably connected to a connecting rod 8. The inner side of the connecting rod 8 is connected to a rotating disk 9. One end of the outside of the rotating disk 9 is connected to the output shaft of a first motor 10. By turning on the first motor 10, the first motor 10 can cause the connected rotating disk 9 to rotate, which can also cause the connected connecting rod 8 to rotate. When the connecting rod 8 rotates, it can pull the connected clamping plate 5 to slide. When the clamping plate 5 moves inward, it can clamp the material to be detected placed above the placing plate 4, thus firmly limiting the material. By arranging a plurality of limit frames 3 above the turntable 2, multiple detection materials can be clamped at one time; Furthermore, in this technical solution, as Figure 5 , Figure 8 and Figure 9 shown, after the material is fixed, a connecting disk 11 is fixedly installed below the middle of the turntable 2. A rotating ring 13 is arranged on the left side of the connecting disk 11. The lower end of the rotating ring 13 is fixedly connected to the output shaft of a second motor 17. At the same time, a support frame 18 is fixedly connected below the second motor 17. The support frame 18 can support the second motor 17. In addition, the lower part of the rotating ring 13 is rotatably arranged inside a large gear 16. The middle lower part of the large gear 16 is fixedly connected to the housing of the second motor 17; The second motor 17 can be turned on. The large gear 16 will remain stationary, while the rotating ring 13 will rotate. At the same time, the outer side of the rotating ring 13 is internally rotatably connected to the small gear 14, and the upper side of the small gear 14 is fixedly installed with a toggle rod 15. That is, when the rotating ring 13 rotates, the small gear 14 will also rotate. The outer side of the small gear 14 is meshed with the large gear 16. That is, when the small gear 14 rotates, it will mesh with the large gear 16, causing the toggle rod 15 connected to the upper side to also rotate. When the rotating ring 13 rotates, it will have a sliding connection with the outer side of the connecting disk 11, causing the connecting disk 11 to pause rotating. When the toggle rod 15 rotates, it will have a sliding contact with the fixed slots 12 arranged at equal angles below the connecting disk 11, and can toggle the connecting disk 11 to rotate. The rotation of the toggle rod 15 and the rotating ring 13 in contact with the connecting disk 11 are staggered, so there will be no conflict. The fixed slots 12 are arranged at equal angles below the connecting disk 11, and four are provided. This enables the connecting disk 11 to pause every 90° of rotation. That is, the rotation and pause of the connecting disk 11 can drive the turntable 2 to rotate and pause together. There are also four limit frames 3 arranged above the turntable 2, enabling the clamped material to be rotated in an orderly manner to the lower side of the film detector 21 arranged above the rear side in the middle of the workbench 1 for detection; At the same time, in this technical solution, as Figure 2 、 Figure 10 and Figure 11 shown, after the clamped material is rotated to the lower side of the film detector 21, by turning on the second electric telescopic rod 22 installed on the upper side of the film detector 21, the output shaft of the second electric telescopic rod 22 can push the film detector 21 downward to fit with the clamped material, thereby enabling the detection of the clamped material. In addition, the upper side of the second electric telescopic rod 22 installed above the film detector 21 is arranged inside the electromagnetic slide rail 23, and the upper side of the electromagnetic slide rail 23 is fixedly supported by a fixed frame 20. That is, by turning on the controller of the electromagnetic slide rail 23, the second electric telescopic rod 22 and the film detector 21 can be moved, enabling the all-round detection of the material; The film detector 21 is a professional device based on optical and electronic technologies, capable of detecting various quality parameters of the film, such as thickness, surface flatness, color, transparency, etc. The detection results can be transmitted to the data terminal via wireless technology, such as mobile phones and computers; When unqualified materials are detected, the second electric telescopic rod 22 connected to the upper end of the mounting plate 25 can be opened. Since a suction cup 24 is provided below the mounting plate 25, the output end of the second electric telescopic rod 22 can push the suction cup 24 and the mounting plate 25 to move downward. By moving the suction cup 24 downward, it can be attached to the material placed above the placement plate 4, thereby adsorbing the material. After the adsorption is completed, the second electric telescopic rod 22 can be opened again to pull the suction cup 24 and the mounting plate 25 upward; A rotating shaft frame 26 is fixedly installed on the upper side of the second electric telescopic rod 22 provided above the mounting plate 25. The rotating shaft frame 26 is rotatably arranged inside the fixed frame 20. A first gear 28 is fixedly installed on the outer side of the upper end of the rotating shaft frame 26. The front side of the first gear 28 is meshed with a rack 29. At the same time, a moving block 30 is slidably arranged above the inner part of the rack 29. The upper side of the moving block 30 is rotatably connected to a lever 31. The third motor 32 connected to the upper end of the lever 31 can be opened, causing the lever 31 to rotate. When the lever 31 rotates, the connected moving block 30 can move inside the upper part of the rack 29, thereby pushing the rack 29 to slide inside the sliding groove 33. The sliding groove 33 is arranged below the rack 29 to limit the movement of the rack 29. That is, when the rack 29 moves, the meshed first gear 28 can rotate reciprocally. When the first gear 28 rotates, the rotating shaft frame 26 can also rotate, driving the second electric telescopic rod 22, the suction cup 24, and the mounting plate 25 to rotate together. At this time, the suction cup 24 and the adsorbed material will be located above the collection box 27; Secondly, when the suction cup 24 rotates from the front side of the fixed frame 20 to the rear side of the fixed frame 20, push rods 34 are symmetrically installed on the upper left and right sides of the rear side of the fixed frame 20. The push rods 34 are arranged below the first electric telescopic rod 19. The first electric telescopic rod 19 can be opened, and the output end of the first electric telescopic rod 19 can push the connected push rods 34 to move downward, coming into contact with the material adsorbed by the suction cup 24, thereby pushing the adsorbed material into the collection box 27 for unified collection. Thus, the unqualified materials can be effectively taken and sorted, reducing the subsequent labor output of manual material sorting.
[0027] This is the entire working process of an optical film material quality intelligent detector. The content not described in detail in this specification belongs to the prior art known to those skilled in the art.
[0028] The standard parts used in the present invention can all be purchased from the market. The special-shaped parts can be customized according to the descriptions in the specification and the drawings. The specific connection methods of each part all adopt conventional means such as bolts, rivets, and welding that are mature in the prior art. The machines, parts, and equipment all adopt conventional models in the prior art. In addition, the circuit connection adopts the conventional connection method in the prior art, which will not be elaborated herein.
[0029] Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or perform equivalent replacements on some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.
Claims
1. An intelligent optical film material quality detection machine, comprising: A workbench (1), wherein the workbench (1) is directly placed on the ground; It is characterized by further comprising: A multi-station loading mechanism for improving detection efficiency is arranged in the middle of the workbench (1), and a picking mechanism for reducing subsequent manual sorting is arranged on the upper rear side of the workbench (1).
2. The intelligent quality inspection machine for an optical film material according to claim 1, wherein: The multi-station loading mechanism arranged in the middle of the workbench (1) comprises a turntable (2), a limit frame (3), a placement plate (4), a connecting plate (11), a fixed groove (12), a rotating ring (13), a small gear (14), a toggle rod (15), a large gear (16), a second motor (17) and a support frame (18); the turntable (2) is rotatably arranged in the middle of the workbench (1), and the limit frame (3) is fixedly installed at an equal angle above the turntable (2); the placement plate (4) is arranged in the middle of the limit frame (3), and the connecting plate (11) is fixedly installed at the lower part of the middle of the turntable (2); the fixing groove (12) is arranged at an equal angle below the connecting plate (11), and the inner side of the fixing groove (12) is slidably connected with a toggle rod (15). A driving rod (15) is provided, and the driving rod (15) is fixedly mounted above the middle of the pinion gear (14), and a rotating ring (13) is rotatably mounted on the outer side of the middle of the driving rod (15) and the pinion gear (14), the lower end of the rotating ring (13) is connected to the output shaft of the second motor (17), the outer side of the pinion gear (14) is meshingly connected to the large gear (16), and the lower middle part of the large gear (16) is fixedly connected to the housing of the second motor (17), and the lower end of the second motor (17) is fixedly connected to a support frame (18), and the support frame (18) is directly placed on the ground, the rotating ring (13) is slidably arranged in the middle of the large gear (16), and the outer side of the rotating ring (13) is slidably contacted with a connecting plate (11).
3. An intelligent detector for the quality of an optical film material according to claim 1, characterized in that: The taking mechanism arranged at the upper rear side of the workbench (1) includes a suction cup (24), a mounting plate (25), a rotating shaft bracket (26), a first gear (28), a rack (29), a moving block (30), a lever (31), a third motor (32) and a sliding groove (33). A suction cup (24) is arranged at the upper rear side of the workbench (1), and the suction cup (24) is installed below the mounting plate (25), and the mounting plate (25) is installed at the output end of the second electric telescopic rod (22). The upper end of the second electric telescopic rod (22) is fixedly connected with a rotating shaft bracket (26), and the rotating shaft bracket (26) is rotatably arranged inside the fixed frame (20). The lower front side of the fixed frame (20) is fixedly connected with the workbench (1). The outer side of the upper end of the rotating shaft bracket (26) is fixedly connected with a first gear (28). The front side of the first gear (28) is meshed with the rack (29). The upper inner side of the rack (29) is slidably connected with a moving block (30), and a lever (31) is connected above the moving block (30). The upper end of the lever (31) is fixedly connected with the output end of the third motor (32). The lower side of the rack (29) is slidably connected with a sliding groove (33), and the sliding groove (33) is fixedly connected with the fixed frame (20).
4. An intelligent detector for the quality of an optical film material according to claim 2, characterized in that: A clamping plate (5) is slidably connected inside the turntable (2), and a rubber plate (6) is arranged inside the clamping plate (5).
5. An intelligent detector for the quality of an optical film material according to claim 4, characterized in that: A limiting rod (7) is slidably connected inside the lower part of the clamping plate (5), and the limiting rod (7) is fixedly installed inside the turntable (2).
6. The intelligent detector for the quality of an optical film material according to claim 5, wherein: A connecting rod (8) is rotatably connected to the outer side of the clamping plate (5), and the connecting rod (8) is rotatably connected with a rotating disc (9). The rotating disc (9) is rotatably arranged inside the turntable (2), and the outer side of the rotating disc (9) is fixedly connected with the output shaft of a first motor (10).
7. An intelligent detector for the quality of an optical film material according to claim 2, characterized in that: A film detector (21) is arranged at the upper rear side of the middle part of the workbench (1), and the film detector (21) is installed at the output end of the second electric telescopic rod (22). The second electric telescopic rod (22) is slidably connected above with an electromagnetic slide rail (23), and the upper side of the electromagnetic slide rail (23) is fixedly connected with a fixed frame (20).
8. An intelligent detector for the quality of an optical film material according to claim 7, characterized in that: First electric telescopic rods (19) are symmetrically installed on the upper left and right sides at the rear side of the fixed frame (20), and a push rod (34) is arranged at the output end of the first electric telescopic rod (19).
9. An intelligent detector for the quality of an optical film material according to claim 7, characterized in that: A collection box (27) is arranged at the rear side of the workbench (1), and the collection box (27) is directly placed on the ground.
Citation Information
Patent Citations
Detection and cutting equipment for diaphragm material
CN103551319A
PCB detection and sorting device
CN111299173A
Rotary slurry adding and leveling device for square gypsum board production
CN113146825A
6D pose-based automatic registration method for medical robot
CN114903598A
Optical film defect batch detection equipment
CN115193735A