Waste silk collecting device of elasticizer
By using a water spray assembly and a motor-driven shaft design in the waste filament collection device of the texturing machine, the waste filaments are tightly packed together, solving the problems of poor compaction effect and looseness taking up space, thus improving collection efficiency and the continuous operation capability of the equipment.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-22
- Publication Date
- 2026-03-31
AI Technical Summary
The existing waste yarn collection device for texturing machines has poor compaction effect, and the waste yarn is loose and takes up a lot of space, resulting in frequent cleaning, which affects the yarn collection efficiency and continuous operation of the equipment.
The design employs a water spray assembly and a motor-driven rotating shaft. The water spray assembly sprays water onto the waste filaments, and the rotating shaft drives the baffle to swing, ensuring that the water is evenly applied to the waste filaments, making them adhere tightly and reducing their volume.
It effectively compresses the volume of waste filaments, improves collection efficiency and container utilization, reduces the frequency of cleaning, and ensures continuous operation of the equipment.
Smart Images

Figure CN224058338U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of waste filament treatment technology for texturing machines, and in particular to a waste filament collection device for texturing machines. Background Technology
[0002] The waste yarn collection device for texturing machines is an auxiliary device specifically designed for the recycling and centralized processing of waste yarn, broken yarn, or edge yarn generated during the texturing process. It is widely used in the texturing stage of chemical fiber production enterprises. This device can effectively address the unavoidable problems of yarn breakage, waste yarn during adjustment, and yarn head and tail replacement during the texturing process, helping enterprises maintain a clean and orderly production site, reduce the burden of manual cleaning, and improve production efficiency and management level.
[0003] Existing texturing machine waste filament collection devices generally use a simple physical compression method to process waste filaments, resulting in poor compaction effect, large volume and high porosity of waste filaments, which leads to a large space occupied by the collection container, requiring frequent cleaning, affecting filament collection efficiency and the continuous operation capability of the equipment.
[0004] Therefore, in view of the problems of poor compaction effect, loose and bulky waste filaments occupying a large space in the existing waste filament collection devices of texturing machines, which lead to frequent cleaning and affect the filament collection efficiency and continuous operation of the equipment, there is an urgent need to design a new type of waste filament collection device for texturing machines. Utility Model Content
[0005] In order to overcome the problems of poor compaction effect of existing waste yarn collection devices for texturing machines, loose waste yarn taking up a lot of space, resulting in frequent cleaning, affecting yarn collection efficiency and continuous operation of equipment.
[0006] The technical solution of this utility model is as follows: a waste filament collection device for a texturing machine, including a chamber body; and a water spraying assembly. The water spraying assembly is arranged on the left side of the chamber body. The water spraying assembly includes a drain hole, a water storage tank, a connecting pipe, a water pump, a spray nozzle, a motor, a rotating shaft, and a baffle. Multiple drain holes are evenly spaced at the bottom of the chamber body. The bottom of the chamber body is connected to the water storage tank. The left end of the water storage tank is connected to the connecting pipe. The left end of the chamber body is connected to the water pump. The water pump is connected to the other end of the connecting pipe. The right end of the water pump is connected to the spray nozzle. The left side of the interior of the chamber body is connected to the motor. The output end of the motor is connected to the rotating shaft. The rotating shaft is rotatably connected to the chamber body. The outer end of the rotating shaft is connected to the baffle.
[0007] Preferably, by setting up a water spray assembly, water is poured into the bin, and the water enters the water storage bin through the drain hole for storage. The water pump is started, and the water pump draws water from the water storage bin through the connecting pipe and sprays it out through the spray nozzle, thereby wetting the waste filaments. Then the motor is started, and the motor drives the rotating shaft to rotate. The rotating shaft drives the baffle to swing, and the water falls on the swinging baffle, thus evenly irrigating the waste filaments. This design can make the waste filaments fit tightly together, increase the recycling space, and solve the problems of poor compaction effect, loose waste filaments occupying a lot of space, frequent cleaning, and affecting the filament collection efficiency and continuous operation of the equipment in the existing texturing machine waste filament collection device.
[0008] Preferably, the internal structure of the hopper is movably connected to a placement frame, and the bottom of the placement frame has multiple drainage grooves at equal intervals.
[0009] Preferably, the upper front side of the compartment is provided with a movable groove, and multiple springs are connected at equal intervals on the upper side of the interior of the movable groove.
[0010] Preferably, the bottom of the spring is connected to a limiting plate, which is L-shaped and slidably connected to the movable groove.
[0011] Preferably, the front end of the limiting plate is connected to a buckle plate, and the limiting plate is movably connected to the placement frame.
[0012] Preferably, the front end of the placement frame is connected to a handle, and the front end of the compartment has a placement opening.
[0013] Preferably, the bottom of the compartment is connected to an anti-slip plate, and the placement frame is movably connected to the placement opening.
[0014] The beneficial effects of this utility model are:
[0015] 1. By setting up a water spray assembly, water is first poured into the chamber and flows into the water storage tank through the drain hole. After the water pump is started, the water pump draws water out of the water storage tank through the connecting pipe and sprays it out through the spray nozzle, so that the waste filaments are wetted. Then the motor is started, and the motor drives the rotating shaft to rotate. The rotating shaft drives the baffle to swing back and forth, and the sprayed water is evenly sprinkled on the baffle, thereby achieving the effect of evenly spraying the waste filaments. This structural design can promote the waste filaments to stick together tightly, thereby effectively compressing the volume, improving the collection efficiency and container utilization rate, so as to solve the problems of poor compaction effect, loose waste filaments occupying a lot of space, frequent cleaning, and affecting the filament collection efficiency and continuous operation of the equipment in the existing texturing machine waste filament collection device. Attached Figure Description
[0016] Figure 1 The diagram shown is a three-dimensional structural schematic of the waste filament collection device of the texturing machine of this utility model;
[0017] Figure 2 The diagram shown is a three-dimensional side sectional view of the waste filament collection device of the texturing machine of this utility model.
[0018] Figure 3 The diagram shown is a three-dimensional bottom view of the waste filament collection device of the texturing machine of this utility model;
[0019] Figure 4 The diagram shown is a three-dimensional rear view of the waste filament collection device of the texturing machine of this utility model.
[0020] Explanation of reference numerals in the attached drawings: 1. Chamber body; 21. Drainage hole; 22. Water storage tank; 23. Connecting pipe; 24. Water pump; 25. Spray nozzle; 26. Motor; 27. Rotating shaft; 28. Baffle; 31. Placement frame; 32. Drainage trough; 33. Movable groove; 34. Spring; 35. Limiting plate; 36. Buckle plate; 37. Handle; 38. Anti-slip plate; 39. Placement opening. Detailed Implementation
[0021] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0022] Please see Figures 1-4 This utility model provides an embodiment of a waste filament collection device for a texturing machine, including a chamber 1 and a water spraying assembly. The water spraying assembly is located on the left side of the chamber 1 and includes a drain hole 21, a water storage tank 22, a connecting pipe 23, a water pump 24, a water nozzle 25, a motor 26, a rotating shaft 27, and a baffle 28. Multiple drain holes 21 are evenly spaced at the bottom of the chamber 1. The water storage tank 22 is connected to the bottom of the chamber 1. The connecting pipe 23 is connected to the left end of the water storage tank 22. The water pump 24 is connected to the left end of the chamber 1 and is connected to the other end of the connecting pipe 23. The water nozzle 25 is connected to the right end of the water pump 24. The motor 26 is connected to the left side of the interior of the chamber 1. The output end of the motor 26 is connected to the rotating shaft 27. 7 is rotatably connected to the bin body 1. The outer end of the rotating shaft 27 is connected to the baffle 28. Water is poured into the bin body 1 by setting a water spray component. The water enters the water storage bin 22 through the drain hole 21 for storage. The water pump 24 is started. The water pump 24 draws water from the water storage bin 22 through the connecting pipe 23 and sprays it out through the water nozzle 25, thereby wetting the waste filaments. Then the motor 26 is started. The motor 26 drives the rotating shaft 27 to rotate. The rotating shaft 27 drives the baffle 28 to swing. The water falls on the swinging baffle 28, so that the water is evenly poured. This design can make the waste filaments fit tightly together and increase the recycling space. This solves the problems of poor compaction effect, loose waste filaments occupying a lot of space, frequent cleaning, and affecting the recycling efficiency and continuous operation of the equipment in the existing texturing machine waste filament collection device.
[0023] Please see Figures 1-4In this embodiment, a placement frame 31 is movably connected inside the compartment 1. Multiple drainage grooves 32 are evenly spaced at the bottom of the placement frame 31. The drainage grooves 32 can allow water from the placement frame 31 to flow into the drainage hole 21. A movable groove 33 is provided on the upper front side of the compartment 1. Multiple springs 34 are evenly spaced on the upper inside of the movable groove 33. The springs 34 are used to help limit the position of the placement frame 31. A limit plate 35 is connected to the bottom of the springs 34. The limit plate 35 is L-shaped and is slidably connected to the movable groove 33. The limit plate 35 is used to limit the position of the placement frame 31.
[0024] Please see Figures 2-4 In this embodiment, a buckle plate 36 is connected to the front end of the limiting plate 35. The limiting plate 35 is movably connected to the placement frame 31. When the buckle plate 36 is snapped upward, the buckle plate 36 causes the limiting plate 35 to slide in the movable groove 33, thereby causing the limiting plate 35 to compress the spring 34 and release the restriction on the placement frame 31. A handle 37 is connected to the front end of the placement frame 31. A placement opening 39 is opened at the front end of the compartment 1. The placement opening 39 facilitates the placement frame 31 to be placed into the compartment 1. An anti-slip plate 38 is connected to the bottom of the compartment 1. The placement frame 31 is movably connected to the placement opening 39. The anti-slip plate 38 increases the stability of the device.
[0025] During operation, water is first poured into the chamber 1, and the water flows into the water storage chamber 22 through the drain hole 21. Then, the buckle plate 36 is raised, and the buckle plate 36 drives the limit plate 35 to slide in the movable groove 33, thereby squeezing the spring 34. Then, the placement frame 31 is placed into the chamber 1 through the placement port 39, and the waste wire is thrown into the placement frame 31. After the water pump 24 is started, the water pump 24 draws water out of the water storage chamber 22 through the connecting pipe 23 and sprays it out through the spray nozzle 25, so that the waste wire is wetted. Then, the motor 26 is started, and the motor 26 drives the rotating shaft 27 to rotate. The rotating shaft 27 drives the baffle 28 to swing back and forth, and the sprayed water is evenly sprinkled on the baffle 28, thereby achieving the effect of evenly watering the waste wire.
[0026] Through the above steps, by setting up a water spraying assembly, water is first poured into the chamber 1, and the water flows into the water storage chamber 22 through the drain hole 21. After the water pump 24 is started, the water pump 24 draws water out of the water storage chamber 22 through the connecting pipe 23 and sprays it out through the spray nozzle 25, so that the waste filaments are wetted. Then the motor 26 is started, and the motor 26 drives the rotating shaft 27 to rotate. The rotating shaft 27 drives the baffle 28 to swing back and forth, and the sprayed water is evenly sprinkled on the baffle 28, thereby achieving the effect of evenly spraying the waste filaments. This structural design can make the waste filaments stick together tightly, thereby effectively compressing the volume, improving the collection efficiency and container utilization rate, so as to solve the problems of poor compaction effect, loose waste filaments occupying a lot of space, frequent cleaning, and affecting the filament collection efficiency and continuous operation of the equipment in the existing texturing machine waste filament collection device.
[0027] It should be understood that this embodiment is for illustrative purposes only and is not intended to limit the scope of the present invention. Furthermore, it should be understood that after reading the teachings of this invention, those skilled in the art can make various alterations or modifications to the present invention, and these equivalent forms also fall within the scope defined by the appended claims.
Claims
1. A waste thread collecting device of a texturizing machine, comprising a bin body (1); characterized in that: Also include a water spray assembly, the left side of the warehouse body (1) is provided with a water spray assembly, water spray assembly includes drain hole (21), water storage bin (22), connecting pipe (23), water pump (24), water spray (25), motor (26), shaft (27) and baffle (28), the bottom of the warehouse body (1) is equidistantly provided with a plurality of drain holes (21), the bottom of the warehouse body (1) is connected with water storage bin (22), the left end of the water storage bin (22) is connected with connecting pipe (23), the left end of the warehouse body (1) is connected with water pump (24), the water pump (24) is connected with the other end of the connecting pipe (23), the right end of the water pump (24) is connected with the water spray (25), the inside left side of the warehouse body (1) is connected with motor (26), the output end of the motor (26) is connected with shaft (27), the shaft (27) is rotatably connected with the warehouse body (1), the outer end of the shaft (27) is connected with baffle (28).
2. The waste thread collecting device of an elasticizer according to claim 1, wherein: The inside of the warehouse body (1) is movably connected with a placing frame (31), and the bottom of the placing frame (31) is equidistantly provided with a plurality of drain grooves (32).
3. The waste thread collecting device of an elasticizer according to claim 2, wherein: The front end of the warehouse body (1) is provided with a movable groove (33) on the upper side, and a plurality of springs (34) are connected on the upper side of the inside of the movable groove (33) at equal intervals.
4. The broken yarn collecting device of an elasticizer according to claim 3, wherein: The bottom of the spring (34) is connected with a limiting plate (35), the limiting plate (35) is L-shaped, and the limiting plate (35) is slidably connected with the movable groove (33).
5. The waste thread collecting device of an elasticizer according to claim 4, wherein: The front end of the limiting plate (35) is connected with a buckle plate (36), and the limiting plate (35) is movably connected with the placing frame (31).
6. The broken yarn collection device of an elasticizer according to claim 5, wherein: The front end of the placing frame (31) is connected with a handle (37), and the front end of the warehouse body (1) is provided with a placing opening (39).
7. The broken yarn collection device of an elasticizer according to claim 6, wherein: The bottom of the warehouse body (1) is connected with an anti-skid plate (38), and the placing frame (31) is movably connected with the placing opening (39).