Glass film removing device
By combining vacuum suction cups and hydraulic rods, the glass film removal device is designed to collect debris in a collection box, solving the problem of debris scattering during the film removal process and reducing the labor intensity of workers.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- HEFEI XINHUAN GLASS CO LTD
- Filing Date
- 2025-05-14
- Publication Date
- 2026-04-17
AI Technical Summary
Existing glass film removal equipment generates debris during the film removal process, increasing the workload for workers and raising labor intensity.
The design employs a combination of vacuum suction cups, hydraulic rods, and a collection box, which lifts and tilts the glass during the film removal process, allowing debris to slide down the top surface of the glass into the collection box, reducing scattering.
It effectively collects debris generated during the film removal process, reducing the workload of workers and decreasing labor intensity.
Smart Images

Figure CN224128013U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of glass processing, specifically a glass film removal device. Background Technology
[0002] Coated glass is made by coating one or more layers of metal, alloy or metal compound film on the glass surface to change the optical properties of the glass to meet certain requirements. Coated glass can be divided into the following categories according to different product characteristics: heat-reflective glass, low-emissivity glass, conductive film glass, etc. In the process of removing the film, most of them are peeled off manually.
[0003] Current glass film removal devices, as described in patent CN219582493U, include a conveyor frame; the top center of the conveyor frame is fixedly connected to the bottom two sides of a fixed frame; a rectangular groove is provided on the left side of the fixed frame; a lifting plate is slidably connected to the inner center of the fixed frame; a motor B is provided on the left side of the lifting plate; the right side shaft of the motor B is fixedly connected to the left side of the film removal roller; a threaded hole is provided on the top center of the fixed frame; a bolt is rotatably connected to the threaded hole of the fixed frame; the bottom of the bolt is rotatably connected to the top center of the lifting plate; and the left and right sides of the lifting plate are respectively in contact with the two ends of the inner side of the fixed frame.
[0004] Regarding the aforementioned technologies, the inventors believe that when the descaling roller rotates at high speed to remove residual adhesive from the glass surface, a large amount of debris is generated. If this debris is scattered directly, it will increase the workload of subsequent cleaning by workers, thereby increasing the labor intensity of the workers. Utility Model Content
[0005] The purpose of this invention is to provide a glass film removal device to solve the problems mentioned in the background art.
[0006] To achieve the above objectives, this utility model provides the following technical solution:
[0007] A glass film removal device, comprising
[0008] An adjusting mechanism includes three conveyor frames. A rotating shaft rotatably connects the middle conveyor frame to both side conveyor frames. Columns are fixedly connected to the four bottom corners of each side conveyor frame. Multiple conveyor shafts are evenly rotatably connected inside each set of rotating shafts. Multiple conveyor wheels are evenly fixedly connected to the outer sides of each set of conveyor shafts. A connecting rod is located below the middle conveyor frame. Connecting beams are fixedly connected to both sides of the connecting rod and are fixedly connected to the columns. First hydraulic rods are rotatably connected to the outer sides of both sets of connecting rods, and the output ends of both sets of first hydraulic rods are rotatably connected to the middle conveyor frame.
[0009] The support mechanism includes a support frame disposed below the middle conveyor frame. A second hydraulic rod is symmetrically fixed through the inside of the support frame. The output ends of the two sets of second hydraulic rods are fixedly connected to the middle conveyor frame. A plurality of crossbars are uniformly fixedly connected inside the support frame. A plurality of vacuum suction cups are uniformly fixedly connected to the top of the crossbars.
[0010] The film removal mechanism includes support frames symmetrically fixedly connected to both sides of the top of the middle conveyor frame. An adjusting screw is rotatably connected between the two sets of support frames. A moving beam is threadedly connected to the outer side of the adjusting screw. A roller frame is fixedly connected to the bottom of the moving beam. A film removal roller is rotatably connected inside the roller frame. A drive motor is fixedly connected to one side of the roller frame. The output end of the drive motor is fixedly connected to one end of the film removal roller. A second stepper motor is fixedly connected to one side of the support frame. The output end of the second stepper motor is fixedly connected to the adjusting screw.
[0011] As a further embodiment of this utility model: one end of each of the two adjacent conveyor shafts on the same group of conveyor frames is connected to a belt, and one side of each group of conveyor frames is fixedly connected to a first stepper motor, the output end of which is fixedly connected to one group of conveyor shafts.
[0012] As a further embodiment of this utility model: a first rubber sleeve is fixedly connected to the outer side of each group of conveying wheels, and multiple guide wheels are evenly rotatably connected to the top side of the middle conveying frame, and a second rubber sleeve is fixedly connected to the outer side of each group of guide wheels.
[0013] As a further embodiment of this utility model: a collection box is fixedly connected to one side of the conveyor frame in the middle.
[0014] As a further embodiment of this utility model: both sides of the middle conveyor frame are fixedly connected with stop blocks, and the opposite sides of the two sides of the conveyor frame are fixedly connected with limiting blocks that abut against the stop blocks.
[0015] As a further embodiment of this utility model: the bottom of both sets of limiting blocks are symmetrically and fixedly connected with reinforcing ribs, and the reinforcing ribs are fixedly connected to the conveyor frame.
[0016] As a further embodiment of this utility model: a guide rod slides through the interior of the movable beam, and the two ends of the guide rod are respectively fixedly connected to two sets of support frames.
[0017] Compared with the prior art, the beneficial effects of this utility model are:
[0018] With the above-described structure, this invention utilizes the cooperation of vacuum suction cups, a first hydraulic rod, a second hydraulic rod, and a collection box. When the second hydraulic rod is activated, it drives each set of vacuum suction cups upward, allowing them to hold and lift the glass on the intermediate conveyor frame until it contacts the decoction roller. Subsequently, when the first hydraulic rod is activated, it pulls the intermediate conveyor frame and the fixed glass to rotate, thus adjusting the glass to an inclined position. This allows the debris generated during the subsequent decoction roller rotation to slide down the top surface of the glass and be collected inside the collection box, effectively reducing the workload of workers cleaning debris and lowering their labor intensity. Attached Figure Description
[0019] The present invention will be further described in detail below with reference to the embodiments shown in the accompanying drawings, but this does not constitute any limitation on the present invention.
[0020] Figure 1 This is a schematic diagram of a glass film removal device.
[0021] Figure 2 A glass film removal device Figure 1 A schematic diagram of the structure of part A.
[0022] Figure 3 This is a schematic diagram of a glass film removal device from another perspective.
[0023] Figure 4 A glass film removal device Figure 3 A schematic diagram of the structure of part B.
[0024] In the diagram: 1. Adjustment mechanism; 101. Conveyor frame; 102. Rotating shaft; 103. Column; 104. Conveyor shaft; 105. Belt; 106. First stepper motor; 107. Conveyor wheel; 108. First rubber sleeve; 109. Connecting beam; 110. Connecting rod; 111. First hydraulic rod; 112. Stop block; 113. Limiting block; 114. Reinforcing rib plate; 2. Support mechanism; 201. Support frame; 202. Crossbar; 203. Vacuum suction cup; 204. Second hydraulic rod; 3. Film removal mechanism; 301. Guide wheel; 302. Second rubber sleeve; 303. Collection box; 304. Support frame; 305. Guide rod; 306. Adjusting screw; 307. Moving beam; 308. Roller frame; 309. Film removal roller; 310. Drive motor; 311. Second stepper motor. Detailed Implementation
[0025] The technical solution of this patent will be further described in detail below with reference to specific embodiments.
[0026] Please see Figure 1-4A glass film removal device includes an adjusting mechanism 1, which comprises three conveyor frames 101. A pivot shaft 102 is rotatably connected to each of the two side conveyor frames 101, allowing the middle conveyor frame 101 to rotate relative to the two side conveyor frames 101. Columns 103 are fixedly connected to the four corners of the bottom of each of the two side conveyor frames 101, providing support. Stop blocks 112 are fixedly connected to both sides of the middle conveyor frame 101, and limiting blocks 113, which abut against the stop blocks 112, are fixedly connected to the opposite sides of each of the two side conveyor frames 101. The limiting blocks 113 serve to assist the stop blocks 112 and the middle conveyor frame 101.
[0027] Both sets of limiting blocks 113 have symmetrically fixed reinforcing ribs 114 at their bottoms. The reinforcing ribs 114 are fixedly connected to the conveyor frame 101. The reinforcing ribs 114 further connect and fix the conveyor frame 101 to the limiting blocks 113, thereby improving the stability of the limiting blocks 113. Multiple conveying shafts 104 are uniformly rotatably connected inside each set of rotating shafts 102. Multiple conveying wheels 107 are uniformly fixedly connected to the outside of each set of conveying shafts 104. The conveying shafts 104 are configured to drive the conveying wheels 107 to rotate during rotation, thereby conveying the glass placed on the conveying wheels 107.
[0028] Each set of conveyor wheels 107 has a first rubber sleeve 108 fixedly connected to its outer side. The first rubber sleeve 108 reduces the wear of the glass by the conveyor wheels 107. One end of each pair of adjacent conveyor shafts 104 on the same conveyor frame 101 is connected to a belt 105. The belt 105 connects the two adjacent conveyor shafts 104, so that when one set of conveyor shafts 104 rotates, the adjacent conveyor shafts 104 rotate accordingly. A first stepper motor 106 is fixedly connected to one side of each set of conveyor frames 101. The output end of the first stepper motor 106 is fixedly connected to a set of conveyor shafts 104, and the first stepper motor 106 drives the corresponding conveyor shaft 104 to rotate when the machine starts.
[0029] A connecting rod 110 is provided below the intermediate conveyor frame 101. Connecting beams 109 are fixedly connected to both sides of the connecting rod 110. The connecting beams 109 are fixedly connected to the column 103, and their arrangement provides support for the connecting rod 110. First hydraulic rods 111 are rotatably connected to the outer sides of both sets of connecting rods 110. The output ends of both sets of first hydraulic rods 111 are rotatably connected to the intermediate conveyor frame 101. The first hydraulic rods 111 are used to pull the intermediate conveyor frame 101 to rotate during startup.
[0030] The support mechanism 2 includes a support frame 201 located below the intermediate conveyor frame 101. Second hydraulic rods 204 are symmetrically fixed through the interior of the support frame 201. The output ends of both sets of second hydraulic rods 204 are fixedly connected to the intermediate conveyor frame 101. The second hydraulic rods 204 are used to drive the support frame 201 and vacuum suction cups 203 to move up and down during startup. Multiple crossbars 202 are uniformly fixedly connected inside the support frame 201. Multiple vacuum suction cups 203 are uniformly fixedly connected to the top of the crossbars 202. The vacuum suction cups 203 can move up and down synchronously with the crossbars 202 and the support frame 201, so that when the vacuum suction cups 203 move upward and contact the glass, they can start working to hold the glass in place, and simultaneously drive the glass to move up and down synchronously with the support frame 201.
[0031] The film removal mechanism 3 includes support frames 304 symmetrically fixedly connected to both sides of the top of the intermediate conveyor frame 101. An adjusting screw 306 is rotatably connected between the two sets of support frames 304, providing support for the adjusting screw 306. A moving beam 307 is threadedly connected to the outer side of the adjusting screw 306, moving the moving beam 307 during rotation. A second stepper motor 311 is fixedly connected to one side of the support frame 304, its output end fixedly connected to the adjusting screw 306, rotating the moving beam 307 during startup. A guide rod 305 slides through the moving beam 307, its two ends fixedly connected to the two sets of support frames 304, guiding the movement of the moving beam 307.
[0032] A roller frame 308 is fixedly connected to the bottom of the moving beam 307. A film-removing roller 309 is rotatably connected inside the roller frame 308. The film-removing roller 309 is used to grind and remove the film from the glass surface during rotation. A collection box 303 is fixedly connected to one side of the intermediate conveyor frame 101 to catch the grinding debris. A drive motor 310 is fixedly connected to one side of the roller frame 308. The output end of the drive motor 310 is fixedly connected to one end of the film-removing roller 309, and the drive motor 310 is used to drive the film-removing roller 309 to rotate when starting operation. Multiple guide wheels 301 are evenly rotatably connected to the top side of the intermediate conveyor frame 101. A second rubber sleeve 302 is fixedly connected to the outer side of each set of guide wheels 301. The guide wheels 301 and the second rubber sleeve 302 can guide and limit the glass.
[0033] In use, the glass to be decouted is placed on each set of conveyor rollers 107 on one side. Then, the corresponding first stepper motor 106 and the middle first stepper motor 106 are started, thereby driving the corresponding conveyor shaft 104 to rotate. Through the transmission of each set of belts 105, the intermediate conveyor frame 101 and the sets of conveyor shafts 104 and belts 105 inside the corresponding conveyor frame 101 are driven to rotate. When the belts 105 rotate, they can drive the glass to be decouted to be conveyed. When the glass is completely conveyed to the top of the intermediate conveyor frame 101, the second hydraulic rod 204 is started. When the second hydraulic rod 204 starts working, it can drive the support frame 201 and each set of vacuum suction cups 203 to move upward. This allows each set of vacuum suction cups 203 to pick up and fix the glass to be decouted, and drive the glass to be decouted to move upward until it contacts the decoction roller 309. Then, the two sets of first hydraulic rods 111 are started, causing the first hydraulic rods 111 to move upward. 11. When starting the operation, the intermediate conveyor frame 101 can be rotated, thereby adjusting the intermediate conveyor frame 101 and the glass that is held in place to an inclined state. Then, the drive motor 310 and the second stepper motor 311 are started, so that the drive motor 310 can drive the film removal roller 309 to rotate when starting the operation, so that the film removal roller 309 can grind and remove the film from the top of the glass. When starting the operation, the second stepper motor 311 can drive the adjusting screw 306 to rotate, so that the adjusting screw 306 can drive the moving beam 307 and the adjusting screw 306 to one side, thereby adjusting the film removal position. Since the glass is in an inclined state, the debris generated during the film removal process slides along the top of the glass and falls into the collection box 303, thereby reducing the probability of debris generated during the film removal process scattering on the ground, thus reducing the cleaning work of workers and reducing the labor intensity of workers.
[0034] The above-described embodiments are preferred embodiments of the present utility model and are only used to facilitate the illustration of the present utility model. They are not intended to limit the present utility model in any way. Any person skilled in the art who makes partial modifications or alterations to the technical content disclosed in the present utility model without departing from the scope of the technical features of the present utility model shall still fall within the scope of the technical features of the present utility model.
Claims
1. A glass film removing apparatus characterized by comprising: include An adjusting mechanism (1) includes a conveyor frame (101), of which three conveyor frames (101) are provided. A rotating shaft (102) is rotatably connected between the middle conveyor frame (101) and the two side conveyor frames (101). A column (103) is fixedly connected to the four corners of the bottom of each side conveyor frame (101). Multiple conveyor shafts (104) are evenly rotatably connected inside each set of rotating shafts (102), and the outer sides of each set of conveyor shafts (104) are evenly... Multiple conveyor wheels (107) are fixedly connected. A connecting rod (110) is provided below the middle conveyor frame (101). A connecting beam (109) is fixedly connected to both sides of the connecting rod (110). The connecting beam (109) is fixedly connected to the column (103). A first hydraulic rod (111) is rotatably connected to the outer side of each of the two sets of connecting rods (110). The output ends of the two sets of first hydraulic rods (111) are rotatably connected to the middle conveyor frame (101). Support mechanism (2), the support mechanism (2) includes a support frame (201) disposed below the middle conveyor frame (101), the support frame (201) is symmetrically fixed with second hydraulic rods (204) inside, the output ends of the two sets of second hydraulic rods (204) are fixedly connected to the middle conveyor frame (101), a plurality of crossbars (202) are uniformly fixedly connected inside the support frame (201), and a plurality of vacuum suction cups (203) are uniformly fixedly connected to the top of the crossbars (202); The film removal mechanism (3) includes support frames (304) symmetrically fixedly connected to the top two sides of the middle conveyor frame (101). An adjusting screw (306) is rotatably connected between the two sets of support frames (304). A moving beam (307) is threadedly connected to the outer side of the adjusting screw (306). A roller frame (308) is fixedly connected to the bottom of the moving beam (307). A film removal roller (309) is rotatably connected inside the roller frame (308). A drive motor (310) is fixedly connected to one side of the roller frame (308). The output end of the drive motor (310) is fixedly connected to one end of the film removal roller (309). A second stepper motor (311) is fixedly connected to one side of the support frame (304). The output end of the second stepper motor (311) is fixedly connected to the adjusting screw (306).
2. The glass film removing apparatus according to claim 1, wherein One end of each of the two adjacent conveyor shafts (104) on the same group of conveyor frames (101) is connected to a belt (105). One side of each group of conveyor frames (101) is fixedly connected to a first stepper motor (106). The output end of the first stepper motor (106) is fixedly connected to one group of conveyor shafts (104).
3. The glass film removing apparatus according to claim 1, wherein Each group of conveyor wheels (107) is fixedly connected to a first rubber sleeve (108) on its outer side. The top side of the middle conveyor frame (101) is evenly connected to multiple guide wheels (301), and the outer side of each group of guide wheels (301) is fixedly connected to a second rubber sleeve (302).
4. The glass film removing apparatus according to claim 1, wherein A collection box (303) is fixedly connected to one side of the conveyor frame (101) in the middle.
5. The glass film removing apparatus according to claim 1, wherein Both sides of the middle conveyor frame (101) are fixedly connected with stop blocks (112), and the opposite sides of the two sides of the conveyor frame (101) are fixedly connected with limiting blocks (113) that abut against the stop blocks (112).
6. The glass film removing apparatus according to claim 5, wherein The bottom of each of the two sets of limiting blocks (113) is symmetrically fixedly connected with reinforcing ribs (114), and the reinforcing ribs (114) are fixedly connected to the conveyor frame (101).
7. The glass film removing apparatus according to claim 1, wherein The movable beam (307) has a guide rod (305) that slides through it, and the two ends of the guide rod (305) are respectively fixedly connected to the two sets of support frames (304).
Citation Information
Patent Citations
Glass film removing device
CN219582493U