Cloth discharging device of efficient short-process dyeing machine
By setting a guiding mechanism, a squeezing roller, and a collection box at the fabric outlet of the dyeing machine, the problem of moisture carried by the fabric when it exits the dyeing machine is solved, achieving effective moisture collection and safe fabric exit, and adapting to the processing of fabrics of different thicknesses.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-24
- Publication Date
- 2026-03-31
AI Technical Summary
When the dyeing machine outputs fabric, the fabric carries a large amount of moisture, which makes cleaning inconvenient and affects the environment and health.
A fabric guiding mechanism, a squeezing roller, and a collection box are set at the fabric outlet of the dyeing machine. The fabric is guided to the squeezing roller by the fabric guiding mechanism to squeeze out the water and collect it into the collection box. The fabric is collected by the fabric spreading mechanism. Fabrics of different thicknesses are processed by the squeezing adjustment component and the expansion roller.
It effectively reduces moisture spillage during fabric output, adapts to fabrics of different thicknesses, reduces environmental pollution, improves operational safety, and lowers cleaning difficulty.
Smart Images

Figure CN224063077U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of dyeing machines, and in particular to a fabric output device for a high-efficiency, short-process dyeing machine. Background Technology
[0002] The high-efficiency short-process dyeing machine is a type of dyeing and finishing machinery that employs efficient short-process dyeing technology, optimizing the traditional dyeing process by addressing its numerous, time-consuming, and energy-intensive steps. This machine significantly shortens production time, reduces energy consumption, increases production efficiency, and lowers costs by minimizing the reduction and washing process after dyeing polyester.
[0003] Existing dyeing machines require the fabric to be discharged after dyeing. The fabric is arranged and collected in a storage box by guide rollers and a fabric arranging device. However, the fabric still has a lot of residual moisture when it is discharged, which is easy to be thrown into the environment during the arranging process. This is inconvenient to clean and may affect the health of the operators. Utility Model Content
[0004] To address the problem of fabrics carrying moisture causing them to spill out during laying and making cleaning inconvenient, this application provides a fabric output device for a high-efficiency, short-process dyeing machine.
[0005] The fabric output device of the high-efficiency short-process dyeing machine provided in this application adopts the following technical solution:
[0006] A fabric output device for a high-efficiency short-process dyeing machine includes a frame, which is located on one side of the fabric output port of the dyeing machine body. The frame is equipped with a collection box for recycling dye liquor and a conveying roller for transporting fabric. A guide plate is provided on the collection box facing the dyeing machine body, and a fabric guiding mechanism is provided on the side of the guide plate away from the collection box. A squeezing roller is provided on the frame at the collection box, which is parallel to the conveying roller. A fabric swaying mechanism is provided on the frame away from the dyeing machine body.
[0007] By adopting the above technical solution, the fabric exits from one side of the dyeing machine body, is guided by the fabric guiding mechanism, is conveyed by the conveying roller, and the moisture on the fabric is squeezed out by the squeezing roller and collected in the collection box. Then, it is arranged and collected by the fabric arranging mechanism. Moreover, the moisture on the fabric is conveyed along the guide plate during the conveying process, and there is less moisture on the fabric when it is exiting and arranging, thus reducing the impact on the environment.
[0008] Optionally, the fabric guiding mechanism includes a fabric guiding tube and a guide roller. The guide plate is inclined, with the higher side of the guide plate facing the side of the dyeing machine body. The fabric guiding tube is slidably installed on the side of the guide plate facing the dyeing machine body. The guide roller is rotatably installed inside the fabric guiding tube. The guide plate is provided with a drive cylinder for driving the fabric guiding tube to move in a direction toward or away from the dyeing machine body.
[0009] By adopting the above technical solution, when the fabric needs to be discharged, the drive cylinder drives the guide pipe to one end located at the fabric outlet of the dyeing machine body. At this time, the fabric is conveyed by the guide roller of the guide pipe. The moisture in the fabric during the conveying process flows through the guide pipe and the inclined guide plate to the collection box for collection, reducing the probability of it scattering into the environment.
[0010] Optionally, the frame is provided with an extrusion adjustment assembly, which includes a movable plate and a clamping member. The movable plate is slidably mounted on the frame and located at both ends of the length direction of the extrusion roller. The movable plate moves toward or away from the conveying roller. The clamping member is disposed on the frame and is used to adjust the position of the movable plate.
[0011] By adopting the above technical solution, the position of the moving plate is adjusted by the clamping component, thereby driving the extrusion roller to move in the direction toward or away from the conveyor roller, adjusting the position between the extrusion roller and the conveyor roller, which is suitable for extruding fabrics of different thicknesses.
[0012] Optionally, the clamping component includes a pressure block, which is slidably mounted on the frame. The sliding direction of the pressure block is perpendicular to the moving direction of the moving plate. The pressure block is located on opposite sides of the moving plate. The pressure block has an inclined cut surface along one side facing the moving plate. The moving plate has a guide cut surface that fits against one side of the inclined cut surface. The frame is provided with a rotating component for driving the pressure blocks on both sides to move in opposite directions.
[0013] By adopting the above technical solution, the rotating component drives the pressure block to move, and the pressure blocks on both sides move towards each other. The pressure block pushes the guide surface of the moving plate along one side of the inclined cut surface, thereby driving the moving plate to move. Adjusting the position of the moving plate is convenient.
[0014] Optionally, the frame is provided with a guide groove, the guide groove is distributed along the sliding direction of the moving plate, a guide block is provided on one side of the moving plate, and a guide rod is provided on the frame at the guide groove, distributed along the length direction of the guide groove. The guide block is slidably installed at the guide groove of the frame and slidably connected to the guide rod. A spring is sleeved on the guide rod, and the spring is connected to one side of the guide block.
[0015] By adopting the above technical solution, when the moving plate is pushed by the pressure block, the guide block on one side of the moving plate moves along the guide groove of the frame, and the guide rod guides the guide block. At this time, the spring is compressed. When the pressure block moves away from the moving plate, the spring pushes the guide block and thus drives the moving plate to move away from the conveyor roller, which is convenient for adjustment.
[0016] Optionally, the rotating component includes a screw, which is rotatably mounted on the frame and distributed along the sliding direction of the pressure block. The screw has two opposite threads, and the pressure blocks on both sides are threadedly connected to the screw at the two threads respectively.
[0017] By adopting the above technical solution, rotating the screw drives the pressure block to move, and the pressure blocks on both sides move synchronously along the screw in opposite directions, thereby pushing and adjusting the moving plate. The synchronous drive operation is convenient.
[0018] Optionally, the frame is provided with expanding rollers that are distributed parallel to the conveying rollers, and the diameter of the middle part of the expanding rollers is larger than the diameter of the two ends.
[0019] By adopting the above technical solution, the fabric width is increased, reducing the problem of wrinkles that occur when the fabric is squeezed.
[0020] Optionally, the fabric swaying mechanism includes a fabric swaying frame and a fabric swaying motor. A guide cylinder is rotatably mounted on the frame and distributed parallel to the conveying roller. The fabric swaying motor is mounted on the frame, and the guide cylinder is connected to the output shaft of the fabric swaying motor. One end of the fabric swaying frame is rotatably mounted on the frame and distributed parallel to the guide cylinder. A rotating disk is rotatably mounted on the frame, and the rotation axis of the rotating disk is distributed parallel to the guide cylinder. An eccentric rod is provided on the rotating disk, and the eccentric rod is slidably connected to the fabric swaying frame. The rotating disk and the guide cylinder are connected by a synchronous belt.
[0021] By adopting the above technical solution, the fabric guide cylinder is driven by the swaying motor to rotate and guide the fabric. At the same time, the swaying cylinder is driven by the synchronous belt to rotate the rotating disk. The eccentric rod on the rotating disk drives the swaying frame to move back and forth, so as to sway and guide the fabric. The swaying effect is better.
[0022] In summary, this application includes at least one of the following beneficial technical effects:
[0023] 1. The fabric exits from one side of the dyeing machine body, is guided by the fabric guiding mechanism, and is conveyed by the conveying roller. The moisture on the fabric is squeezed out by the squeezing roller and collected in the collection box. Then, it is arranged and collected by the fabric swaying mechanism. During the conveying process, the moisture is conveyed along the guide plate. When the fabric exits and is swayed, there is less moisture on the fabric, which reduces the impact on the environment.
[0024] 2. The position of the moving plate is adjusted by the clamping component, which in turn drives the extrusion roller to move toward or away from the conveyor roller. The position between the extrusion roller and the conveyor roller is adjusted, which is suitable for extruding fabrics of different thicknesses.
[0025] 3. The fabric is widened by using a widening roller to reduce wrinkles caused by compression. Attached Figure Description
[0026] Figure 1 This is a three-dimensional structural diagram of this application.
[0027] Figure 2 This is a three-dimensional structural diagram of one side of the guide cloth mechanism on the frame of this application.
[0028] Figure 3 This is an enlarged three-dimensional structural diagram of part A of this application.
[0029] Figure 4 This is a cross-sectional structural diagram of the frame of this application located at the guide groove.
[0030] Those skilled in the art will understand that the elements in the accompanying drawings are shown for simplicity and clarity and are not necessarily drawn to scale. For example, the size and position of some elements in the drawings may be enlarged relative to other elements to aid in understanding the embodiments of the invention.
[0031] Reference numerals in the attached drawings: 1. Dyeing machine body; 11. Fabric outlet; 2. Frame; 21. Collection box; 212. Filter plate; 22. Conveyor roller; 23. Guide plate; 231. Spreading roller; 24. Guide groove; 25. Guide rod; 26. Spring; 27. Screw; 28. Fabric guide tube; 29. Rotating disk; 291. Eccentric rod; 3. Fabric guiding mechanism; 31. Fabric guide tube; 32. Guide roller; 33. Drive cylinder; 4. Squeeze roller; 5. Fabric spreading mechanism; 51. Fabric spreading frame; 511. Guide hole; 52. Fabric spreading motor; 53. First pulley; 54. Second pulley; 55. Synchronous belt; 6. Moving plate; 61. Guide block; 62. Guide section; 7. Pressing block; 71. Inclined section. Detailed Implementation
[0032] The present application will be further described in detail below with reference to the accompanying drawings.
[0033] This application discloses a fabric output device for a high-efficiency, short-process dyeing machine, referring to... Figure 1 and Figure 2The system includes a frame 2, which is located on one side of the fabric outlet 11 of the dyeing machine body 1. The frame 2 is equipped with a collection box 21 and a conveying roller 22. The collection box 21 is horizontally positioned and has a water inlet at the top. A filter plate 212 is horizontally positioned inside the collection box 21. A guide plate 23 is inclinedly positioned on the collection box 21 facing the dyeing machine body 1. The higher side of the guide plate 23 is distributed facing the fabric outlet 11 of the dyeing machine body 1. A fabric guiding mechanism 3 for guiding the fabric is provided on the side of the guide plate 23 away from the collection box 21. The conveying roller 22 is distributed along the length of the collection box 21. Several conveying rollers 22 are arranged parallel to each other. A squeezing roller 4 is arranged on the frame 2 at the collection box 21 and is parallel to the conveying roller 22. A fabric swaying mechanism 5 is arranged on the frame 2 on the side away from the dyeing machine body 1. The fabric exits from the outlet 11 of the dyeing machine body 1, is guided by the fabric guiding mechanism 3, and is conveyed by the conveying roller 22. The moisture on the fabric is squeezed out by the squeezing roller 4 and collected in the collection box 21. Then it is arranged and collected by the fabric arranging mechanism 5. During the conveying process, the moisture is conveyed along the guide plate 23. When the fabric exits and is arranged, there is less moisture on the fabric, which reduces the impact on the environment.
[0034] Reference Figure 1 and Figure 2 The guiding mechanism 3 includes a guiding tube 31 and a guiding roller 32. The guiding tube 31 is slidably installed on the side of the guide plate 23 facing the dyeing machine body 1 along the inclined direction of the guide plate 23. Openings are provided at both ends of the guiding tube 31 in the length direction. The guiding roller 32 is rotatably installed in the guiding tube 31 and is distributed parallel to the conveying roller 22. A driving cylinder 33 is provided on the downward side of the guide plate 23. The driving direction of the driving cylinder 33 is distributed along the inclined direction of the guide plate 23. The downward side of the guiding tube 31 is connected to one end of the piston rod of the driving cylinder 33. When the fabric needs to be discharged, the drive cylinder 33 drives the guide pipe 31 to one end located at the fabric outlet 11 of the dyeing machine body 1. At this time, the fabric is conveyed by the guide roller 32 of the guide pipe 31. The moisture in the fabric during the conveying process flows through the guide pipe 31 and the inclined guide plate 23 to the collection box 21 for collection. When the fabric does not need to be discharged, the drive cylinder 33 drives the guide pipe 31 to move onto the guide plate 23, which facilitates the opening and closing of the fabric outlet 11 of the dyeing machine body 1.
[0035] Reference Figure 2 The guide plate 23 is equipped with an expanding roller 231 that is parallel to the conveying roller 22. The diameter of the middle part of the expanding roller 231 is larger than the diameter of the two ends. The fabric is expanded at the expanding roller 231, which reduces the problem of wrinkles when the fabric is squeezed.
[0036] Reference Figure 2 and Figure 3The frame 2 is equipped with a compression adjustment assembly, which includes a movable plate 6 and a clamping component. The movable plate 6 is slidably mounted on the frame 2 in the vertical direction. The two ends of the compression roller 4 in the length direction are rotatably connected to the movable plates 6 on both sides. A guide groove 24 is provided on the side of the frame 2 facing the compression roller 4 and in the vertical direction. A guide block 61 is provided on the side of the movable plate 6 facing away from the compression roller 4. A guide rod 25 is vertically provided on the frame 2 at the guide groove 24. The guide block 61 is slidably mounted on the guide groove 24 of the frame 2 and is slidably connected to the guide rod 25. A spring 26 is sleeved on the guide rod 25. The lower end of the spring 26 is connected to the bottom wall of the frame 2 at the guide groove 24, and the upper end of the spring 26 is connected to the lower side of the guide block 61. The guide block 61 slides along the guide rod 25, causing the moving plate 6 to slide along the guide groove 24, which in turn causes the extrusion roller 4 to move toward or away from the conveyor roller 22, adjusting the position between the extrusion roller 4 and the conveyor roller 22. This is suitable for extruding fabrics of different thicknesses.
[0037] Reference Figure 3 and Figure 4 The clamping component includes a clamping block 7, which is horizontally slidably mounted on the frame 2. The clamping blocks 7 are located on opposite sides and are distributed oppositely. The clamping block 7 has an inclined cut surface 71 on the side facing the moving plate 6 and located on the downward side. The moving plate 6 has a guide cut surface 62 on the upward side and the side facing the clamping block 7, which fits against the side of the inclined cut surface 71. The clamping block 7 has a guide groove at the inclined cut surface 71. The moving plate 6 has guide strips distributed along the guide groove on the guide cut surface 62. The frame 2 is equipped with a rotating component, which includes a screw 27. The screw 27 is rotatably mounted on the frame 2 and is horizontally arranged. The screw 27 has two opposite threads. The clamping blocks 7 on both sides and the screw 27 are threadedly connected at the two threads respectively.
[0038] Rotating screw 27 drives pressure block 7 to move. When the pressure blocks 7 on both sides move towards each other synchronously along screw 27, the pressure blocks 7 on both sides push the guide surface 62 of moving plate 6 along the inclined surface 71, driving moving plate 6 to move. At this time, spring 26 is compressed, and the distance between extrusion roller 4 and conveying roller 22 decreases. When pressure block 7 moves away from moving plate 6, spring 26 pushes guide block 61, thereby driving moving plate 6 to move away from conveying roller 22, and the distance between extrusion roller 4 and conveying roller 22 increases.
[0039] Reference Figure 2 The fabric spreading mechanism 5 includes a fabric spreading frame 51 and a fabric spreading motor 52. A guide tube 28 is rotatably mounted on the frame 2 and distributed parallel to the conveying roller 22. The fabric spreading motor 52 is mounted on the frame 2, and the guide tube 28 is connected to the output shaft of the fabric spreading motor 52. The fabric spreading motor 52 drives the guide tube 28 to rotate to guide the fabric.
[0040] Reference Figure 2 One end of the fabric arrangement frame 51 is rotatably mounted on the frame 2 and is parallel to the fabric guide cylinder 28. A rotating disk 29 is rotatably mounted on the frame 2, and the rotation axis of the rotating disk 29 is parallel to the fabric guide cylinder 28. An eccentric rod 291 is provided on the side of the rotating disk 29 facing the fabric arrangement rod. The fabric arrangement frame 51 is provided with a guide hole 511 for the eccentric rod 291 to slide. A first pulley 53 is coaxially connected to one side of the rotating disk 29, and a second pulley 54 is coaxially connected to the fabric arrangement frame 51. A synchronous belt 55 is sleeved between the first pulley 53 and the second pulley 54. The fabric guide cylinder 28 drives the rotating disk 29 to rotate via the synchronous belt 55. The eccentric rod 291 on the rotating disk 29 drives the fabric arrangement frame 51 to move back and forth, thus arranging and guiding the fabric, resulting in a good arranging effect.
[0041] The implementation principle of the fabric output device of the high-efficiency short-process dyeing machine in this application embodiment is as follows: When the fabric is output, the driving cylinder 33 drives the guide tube 31 to slide. At this time, the fabric is conveyed by the guide roller 32 of the guide tube 31, expanded by the expansion roller 231, conveyed by the conveying roller 22, and the moisture on the fabric is squeezed out by the squeezing roller 4 and collected in the collection box 21. Then, it is arranged and collected by the swaying mechanism 5.
[0042] Rotating the screw 27 drives the pressure block 7 to move. The pressure blocks 7 on both sides move synchronously along the screw 27 in opposite directions. The pressure block 7 pushes the guide surface 62 of the moving plate 6 along the inclined surface 71, driving the moving plate 6 to move up and down, which in turn drives the extrusion roller 4 to move up and down. Adjusting the position between the extrusion roller 4 and the conveying roller 22 is suitable for extruding fabrics of different thicknesses.
[0043] The above are all preferred embodiments of this application, and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.
Claims
1. A cloth outlet device of a high-efficiency short-flow dyeing machine, comprising a rack (2) arranged at one side of a cloth outlet (11) of a dyeing machine body (1), wherein a collection box (21) for recovering dyeing liquid and a conveying roller (22) for transporting cloth are arranged on the rack (2), and characterized in that: The collecting box (21) is provided with a guide plate (23) on the side facing the dyeing machine body (1), the side away from the collecting box (21) of the guide plate (23) is provided with a cloth guide mechanism (3) for guiding cloth, the rack (2) is provided with a squeezing roller (4) distributed parallel to the conveying roller (22) at the collecting box (21), and the rack (2) is provided with a cloth swinging mechanism (5) on the side away from the dyeing machine body (1).
2. The cloth outlet device of the high-efficiency short-flow dyeing machine according to claim 1, characterized in that: The cloth guide mechanism (3) comprises a cloth guide pipe (31) and a guide roller (32), the guide plate (23) is obliquely arranged, the higher side of the guide plate (23) faces the side of the dyeing machine body (1), the cloth guide pipe (31) is slidingly installed on the side of the guide plate (23) facing the dyeing machine body (1), the guide roller (32) is rotatably installed in the cloth guide pipe (31), and the guide plate (23) is provided with a drive cylinder (33) for driving the cloth guide pipe (31) to move towards or away from the dyeing machine body (1).
3. The fabric outlet device of a high-efficiency short-flow dyeing machine according to claim 1, characterized in that: The rack (2) is provided with a squeezing adjusting assembly, the squeezing adjusting assembly comprises a moving plate (6) and a pressing piece, the moving plate (6) is slidingly installed on the rack (2) and located at both ends of the length direction of the squeezing roller (4), the moving plate (6) moves towards or away from the conveying roller (22), and the pressing piece is arranged on the rack (2) and used for adjusting the position of the moving plate (6).
4. The fabric outlet device of a high-efficiency short-flow dyeing machine according to claim 3, characterized in that: The pressing piece comprises a pressing block (7), the pressing block (7) is slidingly installed on the rack (2), the sliding direction of the pressing block (7) is perpendicular to the moving direction of the moving plate (6), the pressing block (7) is arranged at opposite sides of the moving direction of the moving plate (6), and the side of the pressing block (7) facing the moving plate (6) is provided with an inclined surface (71), the moving plate (6) is provided with a guide surface (62) abutting one side of the inclined surface (71), and the rack (2) is provided with a rotating piece for driving the pressing blocks (7) on both sides to move in opposite directions.
5. The fabric outlet device of a high-efficiency short-flow dyeing machine according to claim 3, characterized in that: The rack (2) is provided with a guide groove (24), the guide groove (24) is distributed along the sliding direction of the moving plate (6), one side of the moving plate (6) is provided with a guide block (61), the rack (2) is provided with a guide rod (25) distributed along the length direction of the guide groove (24) at the guide groove (24), the guide block (61) is slidingly connected between the guide groove (24) of the rack (2) and the guide rod (25), a spring (26) is sleeved on the guide rod (25), and one side of the guide block (61) is connected with the spring (26).
6. The fabric outlet device of a high-efficiency short-flow dyeing machine according to claim 4, characterized in that: The rotating member comprises a screw rod (27) which is rotatably installed on the frame (2) and is distributed along the sliding direction of the briquettes (7), and two opposite threads are arranged on the screw rod (27), and the briquettes (7) on both sides are threadedly connected to the screw rod (27) at the two threads respectively.
7. The fabric outlet device of a high efficiency short flow dyeing machine according to claim 1, characterized in that: The frame (2) is provided with an expander roller (231) which is distributed parallel to the conveying roller (22), and the diameter of the middle part of the expander roller (231) is larger than that of the two end parts.
8. The fabric outlet device of a high-efficiency short-flow dyeing machine according to claim 1, characterized in that: The frame (2) is rotatably installed with a guide roller (28) which is distributed parallel to the conveying roller (22), the frame (2) is provided with a loom motor (52), the guide roller (28) is connected to the output shaft of the loom motor (52), one end of the loom frame (51) is rotatably installed on the frame (2) and is distributed parallel to the guide roller (28), the frame (2) is rotatably installed with a rotating disc (29), the rotating axis of the rotating disc (29) is distributed parallel to the guide roller (28), the rotating disc (29) is provided with an eccentric rod (291), the eccentric rod (291) is slidably connected to the loom frame (51), and the rotating disc (29) and the guide roller (28) are connected through a synchronous belt (55).