Textile sizing agent recycling device
By designing a motor-driven slurry mixing mechanism and recycling cylindrical rope system, the mixing efficiency and transportation convenience of textile slurry recycling are improved, and the problems of low mixing efficiency and inconvenient transportation of existing devices are solved, and efficient preparation and convenient transportation of regenerated slurry are achieved.
Patent Information
- Application Number
- CN202422445613.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-10
- Publication Date
- 2025-07-18
- Estimated Expiration
- 2034-10-10
AI Technical Summary
The existing mixing devices have low mixing efficiency during the recycling and reuse of textile slurry, and are not convenient for batch feeding to sizing equipment for reuse.
A textile slurry recycling device is designed, and the slurry mixing mechanism is driven by a motor drives the vertical shaft, including a circular ring, inclined plate, outer edge rod and inner edge rod, efficiently stir the deslurry, acrylamide and water, prepare the regenerated slurry, and is conveniently transported to the slurry through the back seat and rope system of the recycling cylinder.
The mixing efficiency of regenerated slurry preparation and mixing during textile slurry recycling is improved, and the efficient preparation and convenient transportation of regenerated slurry is achieved, and the problems of low mixing efficiency and inconvenient transportation are solved.
Smart Images

Figure CN223118688U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of textile sizing agent recovery, in particular to a textile sizing agent recovery and reuse device. Background Art
[0002] Textile sizing agent is an adhesive and auxiliary material used for warp sizing, aiming to improve the weaving performance of warps, enhance, reduce friction, maintain elongation, and endow the fabric with unique style and handfeel. The main purpose of textile sizing agent is to minimize the warp breakage rate during the weaving process. After the warps are sized, without treatment, the sizing agent components will remain on the fabric through the weaving process and be carried to the next process with the fabric. Therefore, after the warps are sized, desizing treatment needs to be carried out on the warps to facilitate the next process. At this time, the sizing agent remains in the waste liquid after being washed with water.
[0003] Publication No.: CN109137505B discloses a method for textile sizing agent recovery and reuse, including the following steps: performing desizing treatment on the warps after the original sizing treatment; washing the desized warps with water, collecting the solution after washing and the solution during the desizing treatment, and finally obtaining the desizing liquid; concentrating the obtained desizing liquid, and making the solid content rate of the concentrated desizing liquid be T, and 6.5% ≥ T ≥ 6%; adding a mixed liquid of acrylamide and water to the concentrated liquid for adjustment, and finally obtaining a regenerated liquid, and using the regenerated liquid to size the warps through a single yarn sizing machine. This method can realize the recovery and reuse of textile sizing agent.
[0004] The above patent technology collects and filters the waste liquid containing textile sizing agent to obtain the desizing liquid. After the desizing liquid is concentrated and mixed with a mixed liquid of acrylamide and water, a regenerated liquid is finally obtained. When recycling and reusing the desizing liquid, acrylamide and water, a stirring device is required as a mixing device for textile sizing agent recovery and reuse. However, the existing mixing device usually installs a motor at the mixing tank to drive a simple stirring blade for stirring, which results in low mixing and stirring efficiency of the desizing liquid, acrylamide and water. At the same time, it is not convenient to batch-mix the regenerated liquid and send it to the sizing equipment for reuse. Therefore, there is a lack of a dedicated mixing device for textile sizing agent recovery and reuse. For this reason, we propose a textile sizing agent recovery and reuse device. Content of the Utility Model
[0005] The main purpose of the present utility model is to provide a device for recycling and reusing textile sizing agents. By setting up a device for stirring and processing the recycled textile sizing agents in liquid form, this device can drive a vertical shaft through a motor to drive a slurry mixing mechanism to stir the desizing liquid generated from the recycling treatment of textile sizing agents. When stirring the desizing liquid, acrylamide and water can also be added to prepare a recycled slurry for reuse. The circular truncated cone ring of the slurry mixing mechanism drives the inclined deflector plates provided with outer edge rods, inner edge rods, and outer belt plates to efficiently contact the desizing liquid, acrylamide, and water to mix and prepare the recycled slurry, improving the mixing efficiency of the recycled slurry during the recycling and reuse of textile sizing agents. The recycling cylinder can be provided with multiple cylindrical bodies in batches for stirring and mixing the recycled slurry. And there is a back seat at the recycling cylinder that can pass through a lifting rope through its L-shaped hook groove, so as to use a lifting device to lift the recycling cylinder to the textile sizing agent utilization equipment for sizing, facilitating the reuse of the recycled slurry in the recycling cylinder, and effectively solving the problems in the background technology.
[0006] To achieve the above object, the technical solution adopted by the present utility model is as follows:
[0007] A device for recycling and reusing textile sizing agents, including a recycling cylinder, a cylinder cover, and a connecting seat. The cylinder mouth of the recycling cylinder is pressed with a cylinder cover, and a connecting seat is welded in the center of the surface of the cylinder cover. The seat cavity of the connecting seat is installed with a vertical shaft through a bearing, and the top of the shaft body of the vertical shaft is fixed with a top plate covering the bearing. An axial connection hole for clamping the output shaft of the motor is opened between the top plate and the vertical shaft, and the seat plate of the motor is locked on the surface of the seat ring of the connecting seat through bolts. The shaft head of the vertical shaft is installed with a slurry mixing mechanism outside the shaft body below the cylinder cover, and the slurry mixing mechanism includes a locking pipe, a circular truncated cone ring, an inclined deflector plate, and an outer belt plate. The locking pipe is locked on the outside of the vertical shaft below the cylinder cover through bolts, and the bottom of the cylinder cover is welded with a far circular truncated cone ring. The outer ring wall of the circular truncated cone ring is dispersedly welded with inclined deflector plates, and the outer plate surface of the inclined deflector plate away from the circular truncated cone ring is welded with an outer belt plate in the center. Outer edge rods are symmetrically welded on the surface of the inclined deflector plate outside the outer belt plate, and inner edge rods are welded on the plate body of the outer belt plate facing the lower part of the circular truncated cone ring. Arc limit plates that are clamped outside the recycling cylinder are symmetrically welded on the outside of the cylinder cover of the cylinder cover, and a back seat is welded outside the recycling cylinder behind the arc limit plates. L-shaped hook grooves are symmetrically opened on the outer side walls of both sides of the back seat. An inlet is opened on the surface of the cylinder cover outside the connecting seat.
[0008] Furthermore, a pointed nozzle head protrudes outward from the outer cylinder wall of the recycling cylinder away from the back seat, and a triangular groove communicating with the recycling cylinder is arranged in the block body of the pointed nozzle head;
[0009] By adopting the above technical solution, the recycled slurry in the recycling cylinder can be centrally poured outward from the triangular groove of the pointed nozzle head into the sizing equipment for using textile sizing agents.
[0010] Furthermore, a central hole for passing through the vertical shaft is opened on the surface of the cylinder cover of the cylinder cover, and the diameter of the hole cavity of the central hole is smaller than the shell size of the bearing;
[0011] By adopting the above technical solution, the middle hole of the cylinder cover can pass through the vertical shaft, and then the bearing can be pressed on the surface of the cylinder cover.
[0012] Furthermore, annular rib grooves are arranged on the rod surfaces of the inner rib rod and the outer rib rod, and the end faces of the rod bodies of the inner rib rod and the outer rib rod are welded outside the inclined deflector plate;
[0013] By adopting the above technical solution, the inner rib rod and the outer rib rod with annular rib grooves on the surface can better agitate the desizing liquid, acrylamide and water.
[0014] Furthermore, the central ring body of the frustum ring is welded at the lower pipe orifice of the lock pipe, and a vertical hole for passing through the vertical shaft is arranged in the middle of the lock pipe and the frustum ring;
[0015] By adopting the above technical solution, the frustum ring and the lock pipe can be sleeved outside the vertical shaft by means of the vertical hole, which is convenient for the lock pipe to be locked outside the vertical shaft by bolts.
[0016] Furthermore, a bearing pressing on the surface of the cylinder cover is clamped in the socket, and a vertical shaft is press-fitted in an interference fit at the inner ring of the bearing, and a straight key is inserted between the shaft connection hole of the vertical shaft and the conveying shaft of the motor;
[0017] By adopting the above technical solution, after the bearing is clamped into the socket, it can be pressed on the surface of the cylinder cover to obtain support, and then after the output shaft of the motor is inserted with a straight key, it can be inserted into the shaft connection holes of the vertical shaft and the top disc for shaft connection.
[0018] Compared with the prior art, the utility model has the following beneficial effects:
[0019] The utility model is provided with a device for textile sizing recovery and reuse liquid stirring treatment. The device can drive the vertical shaft by a motor to drive the slurry mixing mechanism to stir the desizing liquid generated by textile sizing recovery treatment. Acrylamide and water can also be added during the stirring of the desizing liquid, so as to prepare a regenerated slurry for reuse. The frustum ring of the slurry mixing mechanism drives the inclined deflector plate provided with an outer rib rod, an inner rib rod and an outer belt plate to efficiently contact the desizing liquid, acrylamide and water to prepare the regenerated slurry, improving the mixing efficiency of the regenerated slurry preparation during textile sizing recovery and reuse. The recovery cylinder can be provided with multiple cylinders in batches for stirring and mixing the regenerated slurry;
[0020] And there is a back seat at the recovery cylinder, and the lifting rope can be tied through its L-shaped hook groove, so as to use a lifting device to lift the recovery cylinder to the textile sizing utilization equipment for sizing, facilitating the reuse of the regenerated slurry in the recovery cylinder. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] Figure 1 It is a schematic diagram of the overall structure of a textile sizing recovery and reuse device of the utility model.
[0022] Figure 2This is a schematic diagram of the disassembly of the cylinder cover and the recovery cylinder of a textile sizing recovery and reuse device of the present utility model.
[0023] Figure 3 This is an exploded view of a textile sizing recovery and reuse device of the present utility model.
[0024] Figure 4 This is a schematic diagram of the disassembly of the slurry mixing mechanism and the vertical shaft of a textile sizing recovery and reuse device of the present utility model.
[0025] Figure 5 This is a schematic diagram of the disassembly of the socket and the cylinder cover of a textile sizing recovery and reuse device of the present utility model.
[0026] In the figure: 1. Recovery cylinder; 2. Cylinder cover; 3. Socket; 4. Bearing; 5. Vertical shaft; 6. Top plate; 7. Shaft connection hole; 8. Motor; 9. Slurry mixing mechanism; 10. Locking pipe; 11. Frustum ring; 12. Inclined baffle; 13. Outer rib rod; 14. Inner rib rod; 15. Outer belt plate; 16. Arc limit plate; 17. Feeding port; 18. Back seat; 19. L-shaped hook groove; 20. Pointed nozzle head. Specific embodiments
[0027] In order to make the technical means, creative features, achieved purposes and effects of the present utility model easy to understand, the present utility model will be further described below in conjunction with specific embodiments.
[0028] As Figures 1-5 shown, a textile sizing recovery and reuse device includes a recovery cylinder 1, a cylinder cover 2 and a socket 3. The cylinder mouth of the recovery cylinder 1 is covered with a cylinder cover 2, and a socket 3 is welded in the middle of the surface of the cylinder cover 2. The socket cavity of the socket 3 is installed with a vertical shaft 5 through a bearing 4, and the top of the shaft body of the vertical shaft 5 is fixed with a top plate 6 covering the bearing 4. An axial connection hole 7 for clamping the output shaft of the motor 8 is provided between the top plate 6 and the vertical shaft 5, and the base plate of the motor 8 is locked on the surface of the seat ring of the socket 3 by bolts. The shaft head of the vertical shaft 5 is installed with a slurry mixing mechanism 9 outside the shaft body below the cylinder cover 2, and the slurry mixing mechanism 9 includes a locking pipe 10, a frustum ring 11, an inclined baffle 12 and an outer belt plate 15. The locking pipe 10 is locked on the outside of the vertical shaft 5 below the cylinder cover 2 by bolts, and a far frustum ring 11 is welded at the bottom of the cylinder cover 2. The outer ring wall of the frustum ring 11 is scattered with inclined baffles 12 welded, and the outer plate surface of the inclined baffle 12 away from the frustum ring 11 is welded with an outer belt plate 15 in the middle. Outer rib rods 13 are symmetrically welded on the surface of the inclined baffle 12 outside the outer belt plate 15, and inner rib rods 14 are welded on the plate body of the outer belt plate 15 facing the lower part of the frustum ring 11. Arc limit plates 16 clamped outside the recovery cylinder 1 are symmetrically welded on the outer surface of the cylinder cover 2 of the socket 3, and a back seat 18 is welded outside the recovery cylinder 1 behind the arc limit plate 16. L-shaped hook grooves 19 are symmetrically provided on the outer side walls of both sides of the back seat 18. A feeding port 17 is provided on the surface of the cylinder cover 2 outside the socket 3.
[0029] Wherein, a nozzle head 20 protrudes outward from the outer cylinder wall of the recovery cylinder 1 away from the back seat 18, and a triangular groove communicating with the recovery cylinder 1 is arranged in the block body of the nozzle head 20;
[0030] By adopting the above technical solution, the regenerated slurry in the recovery cylinder 1 can be centrally poured outward from the triangular groove of the nozzle head 20 into the sizing equipment for textile slurry utilization.
[0031] Wherein, a central hole for passing through the vertical shaft 5 is opened on the surface of the cover body of the cylinder cover 2, and the diameter of the hole cavity of the central hole is smaller than the housing size of the bearing 4;
[0032] By adopting the above technical solution, the cylinder cover 2 can pass through the vertical shaft 5 with the central hole, and then the bearing 4 can be pressed on the surface of the cylinder cover 2.
[0033] Wherein, ribbed ring grooves are arranged on the rod surfaces of the inner ribbed rod 14 and the outer ribbed rod 13, and the end faces of the rod bodies of the inner ribbed rod 14 and the outer ribbed rod 13 are welded outside the inclined baffle 12;
[0034] By adopting the above technical solution, the inner ribbed rod 14 and the outer ribbed rod 13 with ribbed ring grooves on the surface can better agitate the desizing liquid, acrylamide and water.
[0035] Wherein, the central ring body of the frustum ring 11 is welded at the lower pipe orifice of the locking pipe 10, and a vertical hole for passing through the vertical shaft 5 is arranged in the middle of the locking pipe 10 and the frustum ring 11;
[0036] By adopting the above technical solution, the frustum ring 11 and the locking pipe 10 can be sleeved outside the vertical shaft 5 through the vertical hole, which is convenient for the locking pipe 10 to be locked outside the vertical shaft 5 by bolts.
[0037] Wherein, a bearing 4 pressing on the surface of the cylinder cover 2 is clamped in the socket 3, an upright shaft 5 is press-fitted in the inner ring of the bearing 4, and a straight key is inserted between the shaft connection hole 7 of the upright shaft 5 and the transmission shaft of the motor 8;
[0038] By adopting the above technical solution, after the bearing 4 is clamped into the socket 3, it can be pressed on the surface of the cylinder cover 2 to obtain support, and then the output shaft of the motor 8 can be inserted into the shaft connection hole 7 of the upright shaft 5 and the top plate 6 after inserting the straight key for shaft connection.
[0039] It should be noted that the present utility model is a textile sizing agent recycling device. After the waste liquid containing the textile sizing agent is collected and filtered to obtain the desizing liquid, the concentrated desizing liquid can be poured into the recovery cylinder 1, and acrylamide and water can also be poured into the recovery cylinder 1. Then, the cylinder cover 2 can be pressed on the top of the recovery cylinder 1. At the same time, the arc limit plate 16 symmetrically clamps outside the cylinder cover 2. Then, the motor 8 can be connected to an external power supply for power-on control. After the motor 8 rotates, it drives the top plate 6 to rotate in the socket 3, and the vertical shaft 5 under the top plate 6 rotates at the bearing 4 and then drives the slurry mixing mechanism 9 to rotate in the recovery cylinder 1. The locking pipe 10 of the slurry mixing mechanism 9 drives the frustum ring 11 and the inclined baffle 12 to rotate and stir the desizing liquid, acrylamide and water. At the same time, the outer edge rod 13, the inner edge rod 14 and the outer belt plate 15 of the inclined baffle 12 contact the desizing liquid, acrylamide and water in multiple directions for stirring and mixing. Then, the recycled slurry is finally obtained in the recovery cylinder 1. When recycling the textile sizing agent, multiple recovery cylinders 1 can be used to collect the desizing liquid. After the mixing of the recycled slurry in the previous group is completed, the cylinder cover 2 can be clamped at the next group of recovery cylinders 1 filled with the desizing liquid, acrylamide and water for stirring and mixing treatment. The recycled slurry in the previous group of recovery cylinders 1 can be poured into the sizing equipment for textile sizing agent utilization. Workers can use a lifting rope to pass through the L-shaped groove 19 of the back seat 18 for lifting, and then the workers hold the recovery cylinder 1 and pour it into the sizing equipment for textile sizing agent utilization from the spout head 20 for reuse.
[0040] It should be noted that the present utility model is a textile sizing agent recycling device, and the components in the present utility model are all components known to those skilled in the art, and their structures and principles can all be known by those skilled in the art through technical manuals or obtained through conventional experimental methods.
[0041] The above shows and describes the basic principles, main features and advantages of the present utility model. Those skilled in the art of this industry should understand that the present utility model is not limited by the above embodiments. What is described in the above embodiments and the specification only illustrates the principles of the present utility model. Without departing from the spirit and scope of the present utility model, the present utility model will have various changes and improvements, and these changes and improvements all fall within the scope of the present utility model claimed. The scope of protection claimed by the present utility model is defined by the appended claims and their equivalents.
Claims
1. A textile sizing recycling and reuse device, characterized in that: It includes a recovery cylinder (1), a cylinder cover (2) and a socket (3). The cylinder mouth of the recovery cylinder (1) is covered with the cylinder cover (2), and a socket (3) is welded in the middle of the surface of the cylinder cover (2). A vertical shaft (5) is installed in the socket cavity of the socket (3) through a bearing (4), and a top disc (6) covering the bearing (4) is fixed at the top of the shaft body of the vertical shaft (5). An axial connection hole (7) for clamping the output shaft of the motor (8) is provided between the top disc (6) and the vertical shaft (5), and the base disc of the motor (8) is locked on the surface of the seat ring of the socket (3) by bolts. A slurry mixing mechanism (9) is installed outside the shaft head of the vertical shaft (5) and below the cylinder cover (2). The slurry mixing mechanism (9) includes a locking pipe (10), a frustum ring (11), an inclined baffle (12) and an outer belt plate (15). The locking pipe (10) is locked on the outside of the vertical shaft (5) below the cylinder cover (2) by bolts, and the frustum ring (11) is welded to the bottom of the cylinder cover (2). The inclined baffle (12) is dispersedly welded on the outer wall of the frustum ring (11), and an outer belt plate (15) is welded in the middle of the outer plate surface of the inclined baffle (12) away from the frustum ring (11). Outer edge rods (13) are symmetrically welded on the surface of the inclined baffle (12) outside the outer belt plate (15), and inner edge rods (14) are welded to the plate body of the outer belt plate (15) facing the lower part of the frustum ring (11). Arc limit plates (16) that are clamped outside the recovery cylinder (1) are symmetrically welded on the outer surface of the cylinder cover (2), and a back seat (18) is welded outside the recovery cylinder (1) behind the arc limit plate (16). L-shaped hook grooves (19) are symmetrically provided on the outer side walls of both sides of the back seat (18). A feeding port (17) is provided on the surface of the cylinder cover (2) outside the socket (3).
2. The textile sizing recycling device according to claim 1, characterized in that: A pointed nozzle head (20) protrudes outward from the outer cylinder wall of the recovery cylinder (1) away from the back seat (18), and a triangular groove communicating with the recovery cylinder (1) is provided in the block body of the pointed nozzle head (20).
3. The textile sizing recycling device according to claim 1, characterized in that: A middle hole for passing through the vertical shaft (5) is provided on the surface of the cylinder cover (2), and the diameter of the hole cavity of the middle hole is smaller than the shell size of the bearing (4).
4. A textile sizing recycling device according to claim 1, characterized in that: Ribbed ring grooves are provided on the rod bodies of the inner edge rod (14) and the outer edge rod (13), and the end faces of the rod bodies of the inner edge rod (14) and the outer edge rod (13) are welded outside the inclined baffle (12).
5. A textile sizing recycling and reuse device according to claim 1, characterized in that: The middle ring body of the frustum ring (11) is welded at the lower pipe orifice of the locking pipe (10), and a vertical hole for passing through the vertical shaft (5) is provided in the middle of the locking pipe (10) and the frustum ring (11).
6. The textile sizing recycling device according to claim 1, characterized in that: A bearing (4) pressing on the surface of the cylinder cover (2) is clamped in the socket (3), and a vertical shaft (5) is press-fitted into the inner ring of the bearing (4). A straight key is inserted between the axial connection hole (7) of the vertical shaft (5) and the transmission shaft of the motor (8).
Citation Information
Patent Citations
A method for recycling and reusing textile sizing agents
CN109137505B