Non-woven fabric rim charge recovery device
Patent Information
- Application Number
- CN202421484910.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-27
- Publication Date
- 2025-07-22
- Estimated Expiration
- 2034-06-27
AI Technical Summary
The existing non-woven edge material recovery device is inefficient during compression and cannot be adjusted according to the quantity of materials, which affects working efficiency.
By improving the edge material conveying mechanism during the recycling process, the crushable feeding guide box and adjustable edge material conveying rack structure can be used to achieve multiple compressions and adjust the height of the guide plate according to the thickness of the edge material after compression.
The compression efficiency of edge material is improved, multiple compressions are achieved and dynamic adjustments are dynamically adjusted according to the thickness of edge material, and the working efficiency is improved.
Smart Images

Figure CN223128131U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of non-woven fabric processing equipment, and particularly relates to a non-woven fabric edge material recycling device. Background Art
[0002] Non-woven fabric, also known as non-woven cloth, is composed of oriented or random fibers. It is called cloth because of its cloth appearance and certain properties. Non-woven fabrics are widely used. During the production process of non-woven fabrics, there will be scraps. At present, the recycling of the scraps often adopts manual recycling. The existing non-woven fabric edge material recycling device includes a crushing box, a feeding box, a first drying box, a first crushing device, a second crushing device, an auger, a first gear box, a first motor, a third motor, a conveyor belt, a material waiting box, a second drying box, a feeding port, a compression box, a power switch, a pressing plate, a hydraulic cylinder, a paper cutter, a bearing seat, a second gear box, a second motor, a sealing door, and a hydraulic braking box. This non-woven fabric edge material recycling device transports the edge materials into the compression mechanism for compression during the recycling process, and then removes the compressed edge materials for further compression, which affects the working efficiency and cannot be adjusted according to the quantity of materials during the recycling process. Content of the Utility Model
[0003] In order to solve the above technical problems, the utility model provides a non-woven fabric edge material recycling device, which improves the edge material conveying mechanism during the recycling process to facilitate multiple compression operations during compression, and improves the edge material conveying mechanism during the recycling process to facilitate height adjustment according to the thickness of the compressed edge materials during the recycling process.
[0004] A non-woven fabric edge material recycling device includes a moving base. Moving brake wheels are respectively bolt-fixed at the four corner positions of the bottom end of the moving base; a compression box is bolt-fixed on the upper right side of the moving base; a shielding and sealing door is hinged to the lower right side of the compression box; support columns are respectively bolt-fixed at the four corner positions of the upper end of the compression box; the top ends of the support columns are respectively bolt-fixed at the four corner positions of the bottom end of a top plate; hydraulic cylinders are respectively bolt-fixed at the middle positions of the front and back of the bottom end of the top plate; the bottom ends of the hydraulic cylinders are respectively bolt-fixed at the middle positions of the front and back of the upper end of a compression plate. The feature is that a crushable feeding and guiding box structure is arranged on the upper left side of the moving base; an adjustable edge material conveying frame structure is arranged inside the crushable feeding and guiding box structure.
[0005] Preferably, the structure of the crushable feeding and guiding box includes a crushing box, and a discharge hole is formed in the lower right part of the crushing box; on the left and right sides inside the upper end of the crushing box, crushing rollers are respectively arranged; on the middle positions of the upper left and right sides of the front surface of the crushing box, power motors are respectively bolted and fixed; an inlet hopper is bolted and fixed to the upper end of the crushing box and is communicated, and a feeding hole is formed in the upper left side of the upper end of the inlet hopper.
[0006] Preferably, the structure of the adjustable side material conveying rack includes a guiding plate, and a conveying plate is bolted and fixed to the right end of the guiding plate; a shielding plate is bolted and fixed to the right side of the middle position at the bottom end of the conveying plate; inverted U-shaped frames are respectively bolted and fixed to the front and rear sides on the right side of the bottom end of the guiding plate; a threaded column is pin-connected to the inside of the bottom end of the inverted U-shaped frame; a rotating pipe is threadedly connected to the lower part of the outer wall of the threaded column.
[0007] Compared with the prior art, the beneficial effects of the present utility model are as follows:
[0008] In the present utility model, the crushing box, the discharge hole, the crushing rollers, the power motors, the guiding plate, the conveying plate and the shielding plate are arranged in cooperation with each other, which is beneficial to the side materials after crushing falling on the upper end of the guiding plate during use, facilitating the side material conveying work during compression and achieving the purpose of multiple compressions of the side materials.
[0009] In the present utility model, the guiding plate, the conveying plate, the shielding plate, the inverted U-shaped frame, the threaded column and the rotating pipe are arranged in cooperation with each other, which is beneficial to the threaded connection between the threaded column and the rotating pipe during the side material recycling process, facilitating the adjustment of the height of the right end of the guiding plate and the conveying plate during recycling and achieving the purpose of adjustment according to the thickness of the side materials after compression during compression. Description of the Drawings
[0010] Figure 1 is a schematic structural view of the present utility model;
[0011] Figure 2 is a schematic structural view of the structure of the crushable feeding and guiding box of the present utility model;
[0012] Figure 3 is a schematic structural view of the structure of the adjustable side material conveying rack of the present utility model.
[0013] In the figure:
[0014] 1. Mobile base; 2. Mobile brake wheel; 3. Compression box; 4. Shielding and sealing door; 5. Support column; 6. Top plate; 7. Hydraulic cylinder; 8. Compression plate; 9. Crushable feeding and conveying box structure; 91. Crushing box; 92. Discharge hole; 93. Crushing roller; 94. Power motor; 95. Feeding funnel; 96. Feeding hole; 10. Adjustable side material conveying frame structure; 101. Conveying plate; 102. Conveying plate; 103. Shielding plate; 104. Inverted U-shaped frame; 105. Threaded column; 106. Rotating pipe. Detailed implementation mode
[0015] The present utility model will be specifically described below with reference to the attached drawings. As shown in the attached Figure 1 and the attached Figure 2 A non-woven fabric edge material recycling device includes a mobile base 1, a mobile brake wheel 2, a compression box 3, a shielding and sealing door 4, a support column 5, a top plate 6, a hydraulic cylinder 7, a compression plate 8, a crushable feeding and conveying box structure 9 and an adjustable side material conveying frame structure 10. Mobile brake wheels 2 are respectively bolt-fixed at the four corner positions at the bottom end of the mobile base 1; A compression box 3 is bolt-fixed on the upper right side of the mobile base 1; A shielding and sealing door 4 is hinged to the lower right side of the compression box 3; Support columns 5 are respectively bolt-fixed at the four corner positions at the upper end of the compression box 3; The top ends of the support columns 5 are respectively bolt-fixed at the four corner positions at the bottom end of the top plate 6; Hydraulic cylinders 7 are respectively bolt-fixed at the middle positions in the front and at the middle positions in the back at the bottom end of the top plate 6; The bottom ends of the hydraulic cylinders 7 are respectively bolt-fixed at the middle positions in the front and at the middle positions in the back at the upper end of the compression plate 8; A crushable feeding and conveying box structure 9 is arranged on the upper left side of the mobile base 1; An adjustable side material conveying frame structure 10 is arranged inside the crushable feeding and conveying box structure 9; The crushable feeding and conveying box structure 9 includes a crushing box 91, a discharge hole 92, a crushing roller 93, a power motor 94, a feeding funnel 95 and a feeding hole 96. A discharge hole 92 is opened at the lower right side of the crushing box 91; Crushing rollers 93 are respectively arranged on the left and right sides inside the upper end of the crushing box 91; Power motors 94 are respectively bolt-fixed at the middle positions on the left and right sides in the upper part of the front surface of the crushing box 91; A feeding funnel 95 is bolt-fixed at the upper end of the crushing box 91 and is communicated. A feeding hole 96 is opened at the upper left side of the feeding funnel 95. When in use, the mobile base 1 is pushed to move. After the mobile base 1 is moved to a suitable position, the fixing work of the mobile base 1 is carried out. After fixing, an external power supply and an external control device are connected through an external wire. Then, one end of the edge material conveyor belt is fixed inside the feeding hole 96. Then, the power motor 94 drives the crushing roller 93 to rotate to crush the edge material entering the inside of the crushing box 91, improving the efficiency during edge material compression.
[0016] In this implementation scheme, in combination with the attachedFigure 3 As shown in the figure, the adjustable edge material conveying rack structure 10 includes a guiding plate 101, a conveying plate 102, a shielding plate 103, an inverted U-shaped frame 104, a threaded column 105 and a rotating tube 106. The right end of the guiding plate 101 is bolted to the conveying plate 102; the middle position on the right side of the bottom end of the conveying plate 102 is bolted to the shielding plate 103; the front side and the rear side on the right side of the bottom end of the guiding plate 101 are respectively bolted to the inverted U-shaped frame 104; the inner bottom end of the inverted U-shaped frame 104 is pin-connected to the threaded column 105; the lower part of the outer wall of the threaded column 105 is threadedly connected to the rotating tube 106; after the edge material is crushed and falls on the upper end of the guiding plate 101, by rotating the rotating tube 106 during recovery, through the threaded connection between the rotating tube 106 and the threaded column 105, the angle of the guiding plate 101 is adjusted, so that the crushed edge material passes through the angle of the guiding plate 101, and the edge material enters the inside of the compression box 3. After compression, rotate the rotating tube 106 to move the right end of the guiding plate 101 upward and make the inclined angle smaller, and then make the crushed edge material fall on the upper end of the compressed edge material to realize multiple compression operations. After multiple compressions, loosen the bolts provided at the rear end of the shielding and sealing door 4, and remove the compressed edge material, thus completing the work of edge material recovery.
[0017] In this implementation scheme, specifically, a feed inlet is opened at the lower left side of the compression box 3; the compression plate 8 is seamlessly and slidably inserted into the upper inner part of the compression box 3; a discharge port is opened at the lower right side of the compression box 3 corresponding to the position of the shielding and sealing door 4; a bolt penetrates through the middle position of the inner part of the rear end of the shielding and sealing door 4, and the provided bolt is threadedly connected to the lower right side of the compression box 3.
[0018] In this implementation scheme, specifically, crushing blades are respectively bolted to the outer wall of the crushing roller 93; the front end of the crushing roller 93 is sleeved on the outer wall of the output shaft of the power motor 94 and bolted; a toughened glass sheet is inlaid on the lower part of the front surface of the crushing box 91.
[0019] In this implementation scheme, specifically, the crushing box 91 is bolted to the upper left side of the mobile base 1; the discharge hole 92 is correspondingly arranged with the feed inlet provided on the left side of the compression box 3.
[0020] In this implementation scheme, specifically, insertion shafts are respectively arranged on the left side of the front end and the left side of the rear end of the guiding plate 101; the shielding plate 103 is made of a rectangular PVC board.
[0021] In this implementation scheme, specifically, the guiding plate 101 is fixed to the left side inside the crushing box 91 through the insertion shafts provided on the left side of the front and rear ends; the bottom end of the rotating tube 106 is arranged at the right side of the inner bottom end of the crushing box 91 and is in contact with it.
[0022] Working principle
[0023] In the present utility model, during use, the moving base 1 is pushed to move. After moving the moving base 1 to a suitable position, the fixing work of the moving base 1 is carried out. After fixing, an external wire is used to connect to an external power supply and an external control device. Then, one end of the side material conveyor belt is fixed inside the feeding hole 96. Then, the power motor 94 drives the crushing roller 93 to rotate to crush the side materials entering the inside of the crushing box 91, improving the efficiency during side material compression. After the side materials are crushed, they fall on the upper end of the guiding plate 101. During recycling, by rotating the rotating pipe 106, through the threaded connection between the rotating pipe 106 and the threaded column 105, the angle of the guiding plate 101 is adjusted so that the crushed side materials pass through the angle of the guiding plate 101 and enter the inside of the compression box 3. After compression, the rotating pipe 106 is rotated to make the right end of the guiding plate 101 move upward and the inclined angle become smaller. Then, the crushed side materials fall on the upper end of the compressed side materials to achieve multiple compression operations. After multiple compressions, the bolts provided at the rear end of the shielding and sealing door 4 are opened, and the compressed side materials are removed, thus completing the work of side material recycling.
[0024] Using the technical solution of the present utility model, or those skilled in the art inspired by the technical solution of the present utility model to design a similar technical solution and achieving the above technical effects shall fall within the protection scope of the present utility model.
Claims
1. A non-woven fabric edge material recycling device, including a mobile base (1), and mobile brake wheels (2) are respectively bolted and fixed at the four corner positions of the bottom end of the mobile base (1); a compression box (3) is bolted and fixed on the upper right side of the mobile base (1); a shielding and sealing door (4) is hinged and connected to the lower right side of the compression box (3); support columns (5) are respectively bolted and fixed at the four corner positions of the upper end of the compression box (3); the top ends of the support columns (5) are respectively bolted and fixed at the four corner positions of the bottom end of a top plate (6); hydraulic cylinders (7) are respectively bolted and fixed at the middle positions of the front and the back of the bottom end of the top plate (6); the bottom ends of the hydraulic cylinders (7) are respectively bolted and fixed at the middle positions of the front and the back of the upper end of a compression plate (8); it is characterized in that, On the left side of the upper end of the moving base (1) in the non-woven fabric edge material recycling device, there is a crushable feeding and guiding box structure (9); inside the crushable feeding and guiding box structure (9), there is an adjustable edge material conveying frame structure (10).
2. The non-woven fabric edge material recycling device according to claim 1, wherein The crushable feeding and guiding box structure (9) includes a crushing box (91), and a discharge hole (92) is opened at the lower right side of the crushing box (91); on the left and right sides of the upper end inside the crushing box (91), crushing rollers (93) are respectively arranged; on the middle positions of the upper left and right sides of the front surface of the crushing box (91), power motors (94) are respectively bolted and fixed; a feeding funnel (95) is bolted and fixed at the upper end of the crushing box (91) and is communicated, and a feeding hole (96) is opened at the left side of the upper end of the feeding funnel (95).
3. The non-woven fabric edge material recycling device according to claim 1, characterized in that, The adjustable edge material conveying frame structure (10) includes a guiding plate (101), and a conveying plate (102) is bolted and fixed at the right end of the guiding plate (101); a shielding plate (103) is bolted and fixed at the middle position on the right side of the bottom end of the conveying plate (102); inverted U-shaped frames (104) are respectively bolted and fixed at the front and rear sides on the right side of the bottom end of the guiding plate (101); a threaded column (105) is pin-connected inside the bottom end of the inverted U-shaped frame (104); a rotating pipe (106) is threadedly connected to the lower part of the outer wall of the threaded column (105).
4. The non-woven fabric edge material recycling device according to claim 1, wherein, The crushing box (91) is bolted and fixed on the left side of the upper end of the moving base (1); the discharge hole (92) is correspondingly arranged with the feeding port arranged on the left side of the compression box (3).
5. The non-woven fabric edge material recycling device according to claim 2, wherein Plug shafts are respectively arranged at the left sides of the front end and the rear end of the guiding plate (101); the shielding plate (103) is made of a rectangular PVC board.