Fabric cleaning structure for garment processing
By combining the rotating shaft cleaning blades and the spray nozzle with the filter bucket scraper brush to prevent clogging, the problem of poor cleaning effect and clogging in existing cleaning devices is solved, achieving efficient cleaning and rapid dehydration.
Patent Information
- Application Number
- CN202422885057.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-26
- Publication Date
- 2025-11-11
- Estimated Expiration
- 2034-11-26
AI Technical Summary
Existing cleaning methods have poor cleaning effects during fabric transport, lack a stirring and tapping mechanism, make it difficult to remove impurities quickly, and easily clog the filter bucket, affecting water flow and resulting in low cleaning efficiency.
The system employs a rotating shaft to clean the agitator blades and spray nozzles for water cleaning, a filter bucket combined with a scraper brush and a reciprocating screw to prevent clogging, and a squeeze roller for rapid dehydration.
It improves the cleaning effect, quickly removes impurities, prevents the filter bucket from clogging, ensures smooth water flow, and enables rapid dehydration, thereby increasing cleaning efficiency.
Smart Images

Figure CN223535402U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of garment fabric processing technology, specifically relating to a fabric cleaning structure for garment processing. Background Technology
[0002] In the vast world of clothing, fabrics are incredibly diverse and constantly evolving. However, generally speaking, high-quality, high-end fabrics typically possess characteristics such as comfort, breathability, good drape, elegant appearance, and soft touch. For garment making, pure cotton, pure wool, pure silk, and pure linen are preferable. Clothing made from these four natural fabrics is generally considered to be of a higher grade. Wearing clothing made from pure leather is also sometimes permissible.
[0003] The garment fabric processing involves multiple steps, one of which is cleaning. Cleaning requires the use of a cleaning device, but existing cleaning methods involve rinsing the fabric during transport, which results in poor cleaning effectiveness. The lack of a mechanism to agitate and beat the fabric makes it difficult to quickly remove impurities. Furthermore, while a filter is used to remove the rinsing water, particulate matter accumulates inside the filter, hindering water flow and further reducing cleaning efficiency. Therefore, we propose a fabric cleaning structure for garment processing. Utility Model Content
[0004] The purpose of this utility model is to provide a fabric cleaning structure for garment processing, in order to solve the problems mentioned in the background art, which is to perform water washing during fabric transport, resulting in poor cleaning effect, lack of a mechanism to agitate and beat the fabric, difficulty in quickly removing impurities attached to the fabric, and the problem that the filter bucket is set up for filtration when the rinsing water is discharged, but the mixed particulate matter will accumulate inside the filter bucket and affect the normal flow of water, thus affecting the cleaning efficiency.
[0005] To achieve the above objectives, this utility model provides the following technical solution: a fabric cleaning structure for garment processing, comprising a cleaning chamber, wherein mounting frames are welded and installed on both the front and rear sides of the cleaning chamber, and a transmission roller is rotatably installed inside the mounting frames. Guide rollers are rotatably installed on both the front and rear sides of the inner wall of the cleaning chamber, and a plurality of rotating shafts are arranged between two guide rollers. The plurality of rotating shafts are divided into two groups and the two groups of rotating shafts are arranged vertically and horizontally. The rotating shafts are rotatably installed inside the cleaning chamber, and cleaning agitator blades are fixedly installed on the outer surface of the rotating shafts. A motor and a water pump are fixedly installed on the side of the cleaning chamber, and the output shaft of the motor is fixedly connected to one of the rotating shafts. The plurality of rotating shafts cooperate with each other. An opening is provided on the side of the cleaning chamber, and a filter bucket is slidably arranged at the opening. A plurality of bolts are threaded between the filter bucket and the cleaning chamber. A reciprocating screw is rotatably mounted on the wall. A second motor is fixedly mounted on the side of the filter bucket. The output shaft of the second motor is fixedly connected to the reciprocating screw. A threaded block is threaded on the outer surface of the reciprocating screw. A scraper brush is fixedly mounted on the lower surface of the threaded block. The scraper brush is attached to the inner wall of the filter bucket. The inlet of the water pump extends into the cleaning tank and is located below the filter bucket. The outlet of the water pump is connected to a first water supply pipe. Several second water supply pipes are connected to the first water supply pipe. The second water supply pipes are fixed to the upper surface of the cleaning tank and have several nozzles. A second mounting bracket is fixedly mounted on the first mounting bracket at the rear position. A cylinder is fixedly mounted on the upper surface of the second mounting bracket. A third mounting bracket is fixedly mounted on the piston rod end of the cylinder. A squeeze roller is rotatably mounted inside the third mounting bracket. The squeeze roller is located directly above the transmission roller at the rear position.
[0006] Using the above scheme, by setting up a rotating shaft in conjunction with cleaning agitator blades, the garment fabric passes through multiple staggered cleaning agitator blades via guide rollers. The cleaning agitator blades effectively tap and clean the garment fabric, which, combined with water spray from the nozzles, effectively cleans the fabric, improving the cleaning effect and quickly removing particulate matter mixed in with the garment fabric. By setting up a filter bucket in conjunction with a scraper brush and a reciprocating screw, the reciprocating screw rotates while the filter bucket filters the return water during the cleaning process, thereby driving the scraper brush to move continuously. This can prevent the filtered particulate matter from accumulating and causing blockages, ensuring smooth water flow and thus ensuring the smooth progress of the cleaning operation. By using a squeeze roller in conjunction, the cleaned garment fabric can be squeezed to quickly dehydrate it, preventing the garment fabric from having excessive moisture content when it is output.
[0007] In the above scheme, it should be noted that the first motor, the second motor, the water pump, and the cylinder are all electrically connected to an external power source.
[0008] In a preferred embodiment, a sprocket is fixedly mounted at the end of the shaft, and a chain is connected between several sprockets for transmission.
[0009] By adopting the above scheme, the transmission is achieved through the set sprockets and chains, so that multiple shafts can rotate synchronously when the motor starts, and multiple shafts can be rotated without the need to equip multiple motors.
[0010] In a preferred embodiment, a strip is fixedly installed on the side of the filter bucket, and a slot for inserting the strip is provided on the inner wall of the cleaning chamber.
[0011] By using the above solution, the insert bar is inserted into the slot, which can limit the position of the filter bucket, prevent the filter bucket from shaking in the cleaning chamber, and improve the stability of use.
[0012] In a preferred embodiment, a plurality of guide sleeves are fixedly installed on the upper surface of the scraper brush, and guide rods are slidably installed on the inner wall of the guide sleeves, with the guide rods fixedly installed on the inner wall of the filter bucket.
[0013] Using the above scheme, the guide rod is used in conjunction with the guide sleeve to provide support and guidance for the scraper brush, making the horizontal movement of the scraper brush more stable under the rotation of the reciprocating screw.
[0014] In a preferred embodiment, a protective cover is fixedly installed on the inner wall of the filter bucket, and the protective cover covers the outside of the reciprocating screw.
[0015] By adopting the above solution, the protective cover can protect the reciprocating screw and prevent particulate matter mixed in the return water from accumulating on the surface of the reciprocating screw and affecting the movement of the threaded block.
[0016] In a preferred embodiment, a plurality of limiting rods are slidably mounted on the second mounting bracket, and the bottom end of the limiting rods is fixedly connected to the upper surface of the third mounting bracket.
[0017] Using the above solution, the limit rod can support and guide the up and down movement of the mounting frame three, improve the stability of the movement of the mounting frame three, and prevent swaying.
[0018] Compared with the prior art, the beneficial effects of this utility model are:
[0019] This fabric cleaning structure for garment processing uses a rotating shaft in conjunction with cleaning agitator blades. When the garment fabric passes through the guide roller between multiple cleaning agitator blades arranged in an alternating pattern, the cleaning agitator blades can effectively tap and clean the garment fabric. In addition, the spray nozzle can effectively clean the garment fabric by spraying water, thereby improving the cleaning effect and quickly removing particulate matter mixed in with the garment fabric.
[0020] This fabric cleaning structure for garment processing uses a filter bucket in conjunction with a scraper brush and a reciprocating screw. During the cleaning process, the filter bucket filters the return water while the reciprocating screw rotates, which in turn drives the scraper brush to move continuously. This prevents the filtered particles from accumulating and causing blockages, ensuring smooth water flow and thus guaranteeing the smooth progress of the cleaning operation. The use of a squeeze roller in conjunction with the structure allows for the squeezing of the cleaned garment fabric, enabling rapid dehydration and preventing excessive moisture content in the output fabric. Attached Figure Description
[0021] Figure 1 This is a schematic diagram of the structure of this utility model;
[0022] Figure 2 This is a structural schematic diagram of the present invention from another angle;
[0023] Figure 3 This is a structural schematic diagram of the cross-section of the cleaning box of this utility model;
[0024] Figure 4 This is a schematic diagram of the structure of the filter bucket of this utility model;
[0025] Figure 5 This is a structural schematic diagram of the cross-section of the filter bucket of this utility model;
[0026] Figure 6 This is a structural schematic diagram of the mounting bracket three of this utility model.
[0027] In the diagram: 1. Cleaning box; 2. Mounting bracket one; 3. Transfer roller; 4. Guide roller; 5. Rotating shaft; 6. Cleaning actuating blade; 7. Motor one; 8. Filter bucket; 9. Reciprocating screw; 10. Motor two; 11. Threaded block; 12. Scraper brush; 13. Bolt; 14. Water pump; 15. Water supply pipe one; 16. Water supply pipe two; 17. Nozzle; 18. Mounting bracket two; 19. Cylinder; 20. Mounting bracket three; 21. Extrusion roller; 22. Sprocket; 23. Chain; 24. Insert bar; 25. Guide sleeve; 26. Guide rod; 27. Protective cover; 28. Limiting rod. Detailed Implementation
[0028] Please see Figure 1-6This utility model provides a fabric cleaning structure for garment processing, including a cleaning box 1. Mounting brackets 2 are welded to both the front and rear sides of the cleaning box 1. A transmission roller 3 is rotatably mounted inside the mounting bracket 2. Guide rollers 4 are rotatably mounted on both the front and rear sides of the inner wall of the cleaning box 1. Several rotating shafts 5 are arranged between two guide rollers 4, divided into two groups and arranged alternately. The rotating shafts 5 are rotatably mounted inside the cleaning box 1, and cleaning agitator blades 6 are fixedly mounted on their outer surfaces. A motor 7 and a water pump 14 are fixedly mounted on the side of the cleaning box 1. The output shaft of the motor 7 is fixedly connected to one of the rotating shafts 5. The rotating shafts 5 cooperate with each other. An opening is provided on the side of the cleaning box 1, and a filter hopper 8 is slidably mounted at the opening. Several bolts 13 are threaded between the filter hopper 8 and the cleaning box 1. A reciprocating screw 9 is rotatably mounted on the inner wall of the filter hopper 8. A motor 10 is fixedly installed on the surface of the filter hopper 8. The output shaft of the motor 10 is fixedly connected to the reciprocating screw 9. A threaded block 11 is threaded on the outer surface of the reciprocating screw 9. A scraper brush 12 is fixedly installed on the lower surface of the threaded block 11. The scraper brush 12 is attached to the inner wall of the filter hopper 8. The inlet of the water pump 14 extends into the interior of the cleaning chamber 1 and is located below the filter hopper 8. The outlet of the water pump 14 is connected to a water supply pipe 15. Several water supply pipes 16 are connected to the water supply pipe 15. The water supply pipes 16 are fixedly fixed on the upper surface of the cleaning chamber 1 and several nozzles 17 are installed on the water supply pipes 16. A mounting bracket 18 is fixedly installed on the mounting bracket 2 at the rear position. A cylinder 19 is fixedly installed on the upper surface of the mounting bracket 18. A mounting bracket 20 is fixedly installed at the piston rod end of the cylinder 19. A squeezing roller 21 is rotatably installed inside the mounting bracket 20. The squeezing roller 21 is located directly above the transmission roller 3 at the rear position.
[0029] By using the rotating shaft 5 in conjunction with the cleaning agitator blades 6, the garment fabric passes through the guide roller 4 and is interspersed among the multiple cleaning agitator blades 6. The cleaning agitator blades 6 can effectively tap and clean the garment fabric, and then, in conjunction with the spray nozzle 17, can effectively clean the garment fabric by spraying water, improving the cleaning effect and quickly removing particulate matter mixed in with the garment fabric. By using the filter bucket 8 in conjunction with the scraper brush 12 and the reciprocating screw 9, the reciprocating screw 9 rotates while the filter bucket 8 filters the return water during the cleaning process, thereby driving the scraper brush 12 to move continuously. This can prevent the filtered particulate matter from accumulating and causing blockage, ensuring smooth water flow and thus ensuring the smooth progress of the cleaning operation. In conjunction with the squeeze roller 21, the cleaned garment fabric can be squeezed to quickly dehydrate it and prevent the garment fabric from having excessive moisture content when it is output.
[0030] A sprocket 22 is fixedly installed at the end of the rotating shaft 5. A chain 23 is connected between several sprockets 22. Through the sprockets 22 and the chain 23, the multiple rotating shafts 5 can rotate synchronously when the motor 7 starts, so that the rotation of multiple rotating shafts 5 can be achieved without the need for multiple motors 7.
[0031] A strip 24 is fixedly installed on the side of the filter bucket 8. A slot for inserting the strip 24 is provided on the inner wall of the cleaning chamber 1. When the strip 24 is inserted into the slot, it can limit the position of the filter bucket 8, prevent the filter bucket 8 from shaking in the cleaning chamber 1, and improve the stability of use.
[0032] Several guide sleeves 25 are fixedly installed on the upper surface of the scraper brush 12. Guide rods 26 are slidably installed on the inner wall of the guide sleeves 25. The guide rods 26 are fixedly installed on the inner wall of the filter hopper 8. The guide rods 26 work in conjunction with the guide sleeves 25 to provide support and guidance for the scraper brush 12, so that the scraper brush 12 moves more smoothly in the horizontal direction under the rotation of the reciprocating screw 9.
[0033] A protective cover 27 is fixedly installed on the inner wall of the filter hopper 8. The protective cover 27 covers the outside of the reciprocating screw 9. The protective cover 27 can protect the reciprocating screw 9 and prevent particulate matter mixed in the return water from accumulating on the surface of the reciprocating screw 9 and affecting the movement of the threaded block 11.
[0034] Several limiting rods 28 are slidably installed on the mounting bracket 218. The bottom end of the limiting rod 28 is fixedly connected to the upper surface of the mounting bracket 320. The limiting rod 28 can support and guide the up and down movement of the mounting bracket 320, improve the stability of the movement of the mounting bracket 320, and prevent shaking.
[0035] In use, the washing chamber 1 is placed between the unwinding machine and the rewinding machine. The garment fabric is input from the front conveyor roller 3, guided by the front guide roller 4, and then passed through multiple staggered rotating shafts 5 before exiting from the rear guide roller 4 and then from the rear conveyor roller 3. During washing, motor 1 7, motor 2 10, and water pump 14 are started. Motor 1 7 drives the rotating shaft 5 connected to the output shaft of motor 1 7 to rotate. At the same time, the sprocket 22 and chain 23 work together to drive the other rotating shafts 5 to rotate, which in turn drives the washing agitator blades 6 to rotate. The rotation of the washing agitator blades 6 beats the garment fabric. Meanwhile, water pump 14 draws water through water pipe 1 15. Water is delivered to nozzle 17 via water pipe 2 16 for spraying, achieving cleaning. The cleaning water falls into filter hopper 8, where it filters out particulate matter. Simultaneously, motor 2 10 drives reciprocating screw 9 to rotate, which in turn drives threaded block 11 to move scraper brush 12. The reciprocating motion of scraper brush 12 prevents filter hopper 8 from clogging, ensuring normal water flow. During the cleaning process, cylinder 19 is activated, driving mounting bracket 3 20 to move downwards, which in turn drives squeezing roller 21 downwards. This, in conjunction with the rear transmission roller 3, squeezes and dehydrates the cleaned clothing fabric. After the operation is completed, bolt 13 is unscrewed to unlock filter hopper 8, which is then removed for cleaning.
Claims
1. A fabric cleaning structure for garment processing, characterized in that: The system includes a cleaning chamber (1), on which mounting brackets (2) are welded and installed on both the front and rear sides. A transmission roller (3) is rotatably installed inside the mounting brackets (2). Guide rollers (4) are rotatably installed on both the front and rear sides of the inner wall of the cleaning chamber (1). Several rotating shafts (5) are arranged between two guide rollers (4). The rotating shafts (5) are divided into two groups and the two groups of rotating shafts (5) are arranged alternately up and down. The rotating shafts (5) are rotatably installed inside the cleaning chamber (1), and cleaning agitator blades (6) are fixedly installed on the outer surface of the rotating shafts (5). The cleaning chamber (1) has a motor (7) and a water pump (14) fixedly installed on its side. The output shaft of the motor (7) is fixedly connected to one of the rotating shafts (5). Several rotating shafts (5) cooperate with each other. The cleaning chamber (1) has an opening on its side, and a filter bucket (8) is slidably installed at the opening. Several bolts (13) are threaded between the filter bucket (8) and the cleaning chamber (1). A reciprocating screw (9) is rotatably installed on the inner wall of the filter bucket (8). The filter bucket (8) has a motor (10) fixedly installed on its side. The output shaft of the second motor (10) is fixedly connected to the reciprocating screw (9). A threaded block (11) is threaded on the outer surface of the reciprocating screw (9). A scraper brush (12) is fixedly installed on the lower surface of the threaded block (11). The scraper brush (12) is attached to the inner wall of the filter bucket (8). The inlet of the water pump (14) extends into the cleaning tank (1) and is located below the filter bucket (8). The outlet of the water pump (14) is connected to a water supply pipe (15). Several water supply pipes are connected to the water supply pipe (15). Second (16), the second water supply pipe (16) is fixed on the upper surface of the cleaning box (1) and several nozzles (17) are installed on the second water supply pipe (16). The second mounting bracket (18) is fixedly installed on the first mounting bracket (2) at the rear position. The cylinder (19) is fixedly installed on the upper surface of the second mounting bracket (18). The piston rod end of the cylinder (19) is fixedly installed on the third mounting bracket (20). The squeezing roller (21) is rotatably installed inside the third mounting bracket (20). The squeezing roller (21) is located directly above the transmission roller (3) at the rear position.
2. The fabric cleaning structure for garment processing according to claim 1, characterized in that: A sprocket (22) is fixedly installed at the end of the shaft (5), and a chain (23) is connected between several sprockets (22).
3. The fabric cleaning structure for garment processing according to claim 1, characterized in that: The filter bucket (8) is fixedly installed with a strip (24) on its side, and the inner wall of the cleaning box (1) is provided with a slot for inserting the strip (24).
4. The fabric cleaning structure for garment processing according to claim 1, characterized in that: The upper surface of the scraper brush (12) is fixedly equipped with several guide sleeves (25), and the inner wall of the guide sleeves (25) is slidably equipped with guide rods (26), which are fixedly installed on the inner wall of the filter bucket (8).
5. The fabric cleaning structure for garment processing according to claim 1, characterized in that: The inner wall of the filter bucket (8) is fixedly equipped with a protective cover (27), which covers the outside of the reciprocating screw (9).
6. The fabric cleaning structure for garment processing according to claim 1, characterized in that: A plurality of limiting rods (28) are slidably mounted on the second mounting bracket (18), and the bottom end of the limiting rods (28) is fixedly connected to the upper surface of the third mounting bracket (20).