Retreatment and utilization device for recycled membrane
By designing a reprocessing and utilization device for recycling film, the impurities and stains on the recycling film are cleaned using the dust collecting port and bristle layer, the problem of the recycling film being unable to be reused is solved, and the effective reuse and cost reduction of the recycling film is achieved.
Patent Information
- Application Number
- CN202421350241.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-14
- Publication Date
- 2025-07-01
- Estimated Expiration
- 2034-06-14
AI Technical Summary
After the existing recycling film is completed, stains on the surface of the glass substrate may be adhered to, resulting in the inability to reuse.
A device for reprocessing and utilization of the recycling film is designed, including a symmetrically arranged mounting plate, dust collecting box, dust collecting port, dust collecting pipe and dust collecting box. The impurities on the recycling film are absorbed through the dust collecting port and enter the dust collecting box through the dust collecting pipe. At the same time, the recycling film is cleaned by using a bristle layer.
Effectively clean up impurities and stains on the recycling film, allowing them to be reused and reduce costs.
Smart Images

Figure CN223047406U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of auxiliary tools for flat glass manufacturing, and particularly to a device for reprocessing and reusing recycled films. Background Technique
[0002] The overflow down-drawing method is one of the main methods for flat glass production. Mainly, the molten glass liquid overflows on both sides of the refractory chute and converges at the pointed part at the lower end of the chute to form a glass plate, which is formed into a glass plate after being pulled by a traction mechanism. Since the glass surface does not contact any material in this method, thin glass plates with good surface smoothness, flatness, and uniform thickness can be produced.
[0003] During normal production, the glass plate flows down through the annealing furnace to the cross-cutting machine for cutting and breaking, and then is transported to the semi-finished product packaging through robots and conveyor belts. The recycled film is used to separate and place the temporarily stored glass plates. When storing, some of the surface contamination of the glass plate will remain on the recycled film, resulting in the packaging material not being reusable. Content of the Utility Model
[0004] The purpose of the utility model is to provide a device for reprocessing and reusing recycled films, which effectively solves the problem that after the existing recycled films are used, stains on the glass substrate may adhere to their surfaces, resulting in non-reusability.
[0005] The technical solution of the utility model is as follows:
[0006] A device for reprocessing and reusing recycled films includes symmetrically arranged mounting plates. The opposite surfaces of the two mounting plates are provided with dust collection boxes distributed vertically. The opposite surfaces of the two dust collection boxes are provided with dust collection ports. The opposite surfaces of the two dust collection boxes are provided with dust collection pipelines, and the dust collection pipelines are communicated with the dust collection ports. The other end of the dust collection pipeline is connected to a dust collection box, and a dust collection fan connected to an external power supply is arranged on the dust collection box;
[0007] On both sides of each dust collection box, mounting shafts are symmetrically installed. The two ends of the mounting shafts are movably connected to the mounting plates. A brush hair layer is arranged on the outer wall of the mounting shafts, and the recycled film is located between the upper and lower brush hair layers.
[0008] Furthermore, the vertical cross-section of the dust collection box is T-shaped. The two ends of the dust collection box are fixedly connected to the mounting plates. Symmetrically arranged card slots are provided on the front and rear side walls of the dust collection box. The card slots are divided into two sections, and the distance between the inner card slots is smaller than the distance between the outer card slots.
[0009] Further, a mounting groove perpendicular to the side wall of each card slot is provided, the mounting groove is opened in the card slot along the opposite direction, a positioning hole penetrating outward is provided on the other side wall of the card slot, a limiting strip is movably connected in the mounting groove, a push-pull rod is provided at the top of the limiting strip, and when the limiting strip moves outward, it will be inserted into the positioning hole.
[0010] Further, a movably connected mounting piece is provided on the mounting shaft, the mounting piece has a vertical portion, and after the mounting shaft is assembled, the vertical portion on the mounting piece is located in the card slot.
[0011] Further, the length of the dust collection port is the same as the width of the recycling film, and the bristles between the upper and lower bristle layers cross each other.
[0012] Further, drums are provided on one side of the dust collection box and are distributed vertically. Rotating shafts are provided at both ends inside the drums, and both ends of the rotating shafts are connected to the mounting plate. Motors for external power supply are symmetrically provided on the outer side wall of the mounting plate, the output shaft of the motor is connected to the rotating shaft, and uniformly distributed resistance heating wires are provided on the inner wall of the drum and between the two rotating shafts. The motor and the resistance heating wires are externally powered.
[0013] The advantages of the present utility model are as follows:
[0014] 1. By providing dust collection boxes that are symmetrically arranged up and down, with dust collection ports on the dust collection boxes and movably mounted bristle layers on both sides of the dust collection ports, when the recycling film is placed between the two bristle layers and is pushed forward, the dust collection port will adsorb the impurities on the upper and lower surfaces of the recycling film and enter the dust collection box through the dust collection pipeline. At the same time, the brush will brush off the impurities on the upper surface of the recycling film, which is convenient for being sucked away by the dust collection port, increasing the cleaning effect, so that the impurities on the surface of the recycling film are cleaned up after coming out and can be reused again, reducing the cost.
[0015] 2. After the recycling film is cleaned, by providing drums up and down, with resistance heating wires inside the drums, when the recycling film moves between the two drums, the heating electric wires will transfer heat to the drums, thereby heating the recycling film and eliminating the creases on the recycling film, achieving the effect of being able to be used again.
[0016] 3. By providing a mounting piece on the mounting shaft, when it is necessary to clean the bristle layer, by pushing the limiting strip backward, the limiting strip is disengaged from the positioning hole and the card slot, and the mounting piece can be taken out, so that the mounting shaft can be disassembled, realizing the cleaning and replacement of the bristle layer, and avoiding the influence of impurities adhering to the bristle layer on the cleaning effect of the recycling film. Description of the Drawings
[0017] Figure 1It is the front view of the overall structure of the present utility model;
[0018] Figure 2 It is the top view of the overall structure of the present utility model;
[0019] Figure 3 It is the schematic structural diagram of components such as the dust collection box of the present utility model;
[0020] Figure 4 It is the schematic structural diagram of components such as the dust collection box and the brush hair layer of the present utility model;
[0021] Figure 5 It is the schematic structural diagram of the dust collection box near the end part intercepted by the present utility model;
[0022] Figure 6 It is the schematic structural diagram of the installation and cooperation structure of the dust collection box and the brush hair layer intercepted by the present utility model;
[0023] Figure 7 It is the schematic structural diagram of the internal heating resistance wire component of the roller of the present utility model.
[0024] Reference numerals: 1, mounting plate; 2, dust collection box; 3, dust collection port; 4, dust collection pipeline; 5, dust collection box; 6, dust collection fan; 7, mounting shaft; 8, brush hair layer; 9, recycling film; 10, card slot; 11, mounting groove; 12, positioning hole; 13, limiting strip; 14, push-pull rod; 15, mounting piece; 16, roller; 17, rotating shaft; 18, motor; 19, resistance heating wire. Detailed implementation manners
[0025] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments.
[0026] As Figures 1 to 7 shown, the present utility model provides a device for reprocessing and utilizing a recycling film, wherein it includes symmetrically arranged mounting plates 1. The bottom of the mounting plate 1 is placed on the ground, and the opposite surfaces of the two mounting plates 1 are provided with dust collection boxes 2 distributed up and down. The opposite surfaces of the two dust collection boxes 2 are provided with dust collection ports 3, and impurities on the recycling film 9 are absorbed through the provided dust collection ports 3.
[0027] The opposite surfaces of the two dust collection boxes 2 are provided with dust collection pipelines 4. The dust collection pipelines 4 are communicated with the dust collection ports 3. The other end of the dust collection pipeline 4 is connected with a dust collection box 5. The dust collection box 5 is provided with a dust collection fan 6 connected to an external power supply. The absorbed impurities are sucked into the dust collection box 2 through the dust collection port 3 and enter the dust collection box 5 through the dust collection pipeline 4, realizing the centralized collection of impurities.
[0028] On both sides of each dust collection box 2, shafts 7 are symmetrically installed. Both ends of the shafts 7 are movably connected to the mounting plate 1. A brush layer 8 is provided on the outer wall of the shafts 7. The recycling film 9 is located between the upper and lower brush layers 8. By providing the brush layer 8, while absorbing impurities on one side of the recycling film 9, the recycling film 9 can be cleaned with a brush at the same time, enhancing the cleaning effect on the recycling film 9.
[0029] The vertical cross-section of the dust collection box 2 is T-shaped. Both ends of the dust collection box 2 are fixedly connected to the mounting plate 1. Symmetrically arranged card slots 10 are provided on the front and rear side walls of the dust collection box 2. The card slots 10 are divided into two sections, and the distance between the inner card slots 10 is smaller than the distance between the outer card slots 10. When installing the brush layer 8, the mounting piece 15 is installed in the smaller-spacing inner part of the card slot 10.
[0030] On the side wall of each card slot 10, a mounting groove 11 perpendicular to it is provided. The mounting groove 11 is opened in the card slot 10 along the opposite direction. By providing the mounting groove 11, the limiting strip 13 can move in the mounting groove 11, and the length of the mounting groove 11 is greater than the length of the limiting strip 13.
[0031] On the other side wall of the card slot 10, a positioning hole 12 penetrating outward is provided. The provided positioning hole 12 enables the mounting piece 15, after installation, to move the limiting strip 13 forward and insert it into the positioning hole 12. The limiting strip 13 fits together with the mounting strip to fix the mounting strip.
[0032] A limiting strip 13 movably connected is provided in the mounting groove 11. A push-pull rod 14 is provided at the top of the limiting strip 13. When the limiting strip 13 moves outward, it will insert into the positioning hole 12, and the push-pull rod 14 extends out of the card slot 10. By providing the push-pull rod 14, the limiting strip 13 can be pushed and pulled to move.
[0033] A mounting piece 15 movably connected is provided on the shaft 7. The mounting piece 15 has a vertical part. After the shaft 7 is assembled, the vertical part on the mounting piece 15 is located in the card slot 10. By providing the mounting piece 15 on the shaft 7, it can be movably snapped into the card slot 10, and the mounting piece 15 can be disassembled, so that the brush layer 8 can be cleaned and replaced.
[0034] The length of the dust collection port 3 is the same as the width of the recycling film 9, so as to achieve a comprehensive cleaning of the recycling film 9.
[0035] The bristles between the upper and lower brush layers 8 cross each other. The brushes on the brush layer 8 are made of fine and soft bristles, so that the impurities on the surface of the recycling film 9 can be brushed off, which is convenient to be sucked away by the dust collection port 3, enhancing the cleaning effect.
[0036] On one side of the dust collection box 2, there are drums 16 distributed vertically. At both ends inside the drum 16, there are rotating shafts 17. Both ends of the rotating shaft 17 are connected to the mounting plate 1. On the outer side wall of the mounting plate 1, there are motors 18 connected to an external power supply symmetrically. The output shaft of the motor 18 is connected to the rotating shaft 17. On the inner wall of the drum 16 and between the two rotating shafts 17, there are uniformly distributed resistance heating wires 19. The motors 18 and the resistance heating wires 19 are connected to an external power supply. When the recycling film 9 moves between the two drums 16, the heating electric wires transfer heat to the drum 16, thereby heating the recycling film 9 and eliminating the creases on the recycling film 9, achieving the effect of being reusable again.
[0037] The detailed usage method and functions of the above embodiments are as follows:
[0038] When the recycling film 9 needs to be reprocessed, there are brush layers 8 on both sides of the dust collection box 2. The post-film will first enter between the brush layers 8 on one side. The brushes on the brush layer 8 clean the impurities on the recycling film 9 to a certain extent. Then it will enter between the vertically opposite dust collection ports 3. The dust collection fan 6 is started, and the suction force generated passes through the dust collection ports 3. The dust collection ports 3 absorb the impurities on the recycling film 9, enter the dust collection pipeline 4 through the dust collection box 2, and finally all enter the dust collection box 5. After passing through the dust collection ports 3, it will be cleaned again by the brushes on the brush layer to ensure that the impurities on the recycling film 9 are cleaned up.
[0039] When the cleaning step is completed, the recycling film 9 can be moved forward again by hand. At this time, the motor 18 is started. The motor 18 drives the upper and lower drums 16 to rotate through the rotating shaft 17. There are annularly distributed heating resistance wires inside the drum 16. The heating resistance wires will heat up and transfer heat to the drum 16. When the recycling film 9 passes between the two drums 16, the heat will iron out the creases on the recycling film 9, so that the recycling film 9 can be reused again.
[0040] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principle and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A device for recycling recovered membranes, characterized in that: The utility model comprises symmetrically arranged mounting plates (1), wherein upper and lower dust collecting boxes (2) are arranged on opposite surfaces of the two mounting plates (1), dust collecting ports (3) are opened on opposite surfaces of the two dust collecting boxes (2), dust collecting pipes (4) are arranged on opposite back surfaces of the two dust collecting boxes (2), the dust collecting pipes (4) are connected to the dust collecting ports (3), the other end of the dust collecting pipes (4) is connected to a dust collecting box (5), and a dust collecting fan (6) connected to an external power supply is arranged on the dust collecting box (5); Each dust collecting box (2) has symmetrical mounting shafts (7) on both sides, and both ends of the mounting shafts (7) are movably connected to the mounting plate (1). A brush layer (8) is provided on the outer wall of the mounting shaft (7), and a recovery film (9) is located between the upper and lower brush layers (8).
2. The device for recycling the recovered film according to claim 1, characterized in that: The vertical cross-section of the dust box (2) is T-shaped, and the two ends of the dust box (2) are fixedly connected to the mounting plate (1). The front and rear side walls of the dust box (2) are symmetrically provided with card slots (10), and the card slots (10) are divided into two sections, and the spacing between the inner card slots (10) is smaller than the spacing between the outer card slots (10).
3. The device for recycling the recovered film according to claim 2, characterized in that: A mounting groove (11) perpendicular to the mounting groove (11) is provided on the side wall of each of the slots (10); the mounting groove (11) is opened in the slots (10) along opposite directions; a positioning hole (12) penetrating outward is provided on the other side wall of the slots (10); a movable limit bar (13) is provided in the mounting groove (11); a push-pull rod (14) is provided at the top of the limit bar (13); when the limit bar (13) moves outward, it is inserted into the positioning hole (12).
4. The device for recycling the recovered film according to claim 2, characterized in that: The installation shaft (7) is provided with a movably connected installation piece (15), and the installation piece (15) has a vertical portion. After the installation shaft (7) is assembled, the vertical portion on the installation piece (15) is located in the clamping groove (10).
5. The device for recycling recovered film according to claim 1, characterized in that: The length of the dust collecting port (3) is the same as the width of the recovery film (9), and the bristles between the upper and lower bristle layers (8) are intertwined.
6. The device for recycling recovered film according to claim 1, characterized in that: A roller (16) is provided on one side of the dust collecting box (2) and is distributed up and down. The roller (16) is made of a heat-conducting material. A rotating shaft (17) is provided at both ends of the interior of the roller (16). Both ends of the rotating shaft (17) are connected to the mounting plate (1). A motor (18) connected to an external power source is symmetrically provided on the outer wall of the mounting plate (1). The output shaft of the motor (18) is connected to the rotating shaft (17). Evenly distributed resistance heating wires (19) are provided on the inner wall of the roller (16) and between the two rotating shafts (17). The motor (18) and the resistance heating wire (19) are connected to an external power source.