A fabric no-wash dyeing equipment and dyeing process
By designing an integrated multi-functional mechanism, the problems of inconvenient fabric roller installation and liquid affecting the heating rate are solved, enabling convenient installation of the fabric roller and liquid recovery, thus improving the practicality and ease of operation of the equipment.
Patent Information
- Application Number
- CN202410269118.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-03-11
- Publication Date
- 2025-12-02
- Estimated Expiration
- 2044-03-11
AI Technical Summary
Existing no-wash dyeing equipment lacks convenience in the installation and operation of fabric rollers. The close spacing between fabric rollers affects operation, and the evaporation of moisture during the dyeing process affects the heating rate.
An integrated multi-functional mechanism was designed, including a motor, lead screw, scraper, and synchronous belt. The motor rotation, controlled by a control panel, drives the lead screw transmission block, achieving automatic lifting of the base and the liquid. The synchronous belt moves the liquid, facilitating automatic lifting, easy removal of the storage rod, and cleaning of the liquid inside the dyeing chamber. This automated multi-functional mechanism results in a compact overall structure, enabling automatic lifting, easy removal of the storage rod, and easy cleaning of the liquid inside the dyeing chamber. It also facilitates the installation and disassembly of the equipment, improving its application and simplifying the operation process.
It achieves automatic lifting and easy removal of the storage rod and liquid cleaning, facilitates the installation or removal of the fabric roller, avoids liquid affecting the heating rate, and facilitates the application of the equipment, thus improving its application and simplifying the operation process.
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Figure CN117966399B_ABST
Abstract
Description
Technical Field
[0001] This invention belongs to the field of fabric dyeing technology, and more specifically, relates to a fabric no-wash dyeing device and dyeing process. Background Technology
[0002] No-wash dyeing equipment is an advanced device for dyeing textiles. It uses special dyeing technology and a media circulation system to achieve the dyeing process without the need for large amounts of water washing. Compared with traditional dyeing methods, no-wash dyeing equipment uses a circulating dyeing medium, which can reduce the consumption of dyes and auxiliaries during the dyeing process, improve dyeing efficiency, and reduce energy consumption and production costs. In general, no-wash dyeing equipment is a modern, efficient, and environmentally friendly dyeing device that is widely used in the textile industry, bringing more convenience and benefits to the dyeing process.
[0003] 1. When using existing equipment, multiple fabric rollers are usually installed on a special base and the entire base is placed inside the wash-free dyeing equipment using a lifting device. However, using a lifting device requires the installation of additional equipment such as tracks, which undoubtedly increases the cost for enterprises and its practicality needs to be improved.
[0004] 2. In the existing equipment, multiple fabric rollers are usually installed on a special base. However, since multiple fabric rollers are installed on the base, the distance between each fabric roller is too close, making it easy for the operator to be blocked by the other fabric rollers when picking up or installing the fabric rollers, which makes it inconvenient to pick up the fabric rollers.
[0005] 3. In the existing equipment, when dyeing fabric rollers, the dyeing material and auxiliary dyeing agent in the medium circulation pipeline are transported to start the medium circulation and maintain a certain temperature and pressure. However, during the heating process, the moisture in the dyeing material and auxiliary dyeing agent will evaporate, causing a certain amount of liquid to be generated inside the dyeing chamber and dripping into the dyeing chamber. However, a large amount of moisture inside the dyeing chamber will affect the subsequent heating of the dyeing chamber and affect the heating rate. Summary of the Invention
[0006] To address the aforementioned technical problems, this invention provides a fabric no-wash dyeing device and dyeing process.
[0007] A fabric dyeing device that requires no washing includes a main body, a cover plate at the upper end of the main body, multiple support blocks at the lower end of the main body, a control panel on the circumferential surface of the main body, media circulation pipeline conveying units symmetrically arranged on the circumferential surface of the main body, and a dyeing chamber inside the main body.
[0008] The lower end of the no-wash dyeing equipment body is symmetrically equipped with an integrated multi-functional mechanism;
[0009] The integrated multifunctional mechanism includes a motor, the output shaft of which is located inside the dyeing chamber. The output shaft of the motor is rotatably mounted to the body of the no-wash dyeing equipment. Screws are symmetrically rotatably mounted inside the dyeing chamber, and both screws are fixedly mounted to the output shaft of the motor.
[0010] Preferably, the integrated multifunctional mechanism further includes a rotating shaft, a first scraper, a second scraper, a drain trough, a drain pipe, a transmission block, a slide, a turntable, a base, a slip ring, a straight groove, a limiting groove, a limiting block, a square plate, and a synchronous belt. The rotating shaft is rotatably installed inside the dyeing chamber, and the first and second scrapers are both fixedly installed on the circumferential surface of the rotating shaft.
[0011] Preferably, the first scraper and the second scraper are both in contact with the bottom of the dyeing chamber, the drain trough is opened through the inside of the dyeing chamber, the drain pipe is fixedly installed inside the drain trough, the drain pipe is partially exposed on the outside of the body of the no-wash dyeing equipment, the transmission block is threaded between the lead screws, and both of the sliding grooves are opened through the inside of the transmission block.
[0012] Preferably, the turntable is rotatably mounted on the upper end of the transmission block, the base is fixedly mounted on the upper end of the turntable, the slip ring is fixedly mounted on the lower end of the base, the slip ring is slidably mounted with the slide groove, each straight groove is opened through the interior of the base, each set of limiting grooves is opened on the inner wall of the straight groove, each limiting block is slidably mounted inside the limiting groove, each square plate is fixedly mounted between the limiting blocks, each square plate is slidably mounted with the limiting groove, a placement rod is fixedly mounted on the upper end of each square plate, each placement rod has a fabric roller on its circumferential surface, and the synchronous belt is rotatably mounted between the rotating shaft and the lead screw.
[0013] Preferably, the timing belt is located above the first scraper and the second scraper, and the first scraper is located below the transmission block.
[0014] A dyeing process for a fabric no-wash dyeing device includes the following steps;
[0015] S1: When using, first open the cover of the no-wash dyeing equipment body, then turn on the motor to rotate forward through the control panel. The motor drives the two lead screws to rotate and make threaded transmission with the transmission block, which in turn causes the transmission block to move the base upward. When the base is above the no-wash dyeing equipment body, the motor will turn off. Then the operator can pull the placement rod to the outside of the base. At this time, the placement rod will generate a radial force, causing the square plate to slide to the outside of the base in the straight groove. At the same time, the movement of the square plate will also cause the limiting block to slide in the limiting groove. When the limiting block is at the end of the limiting groove near the base, the square plate and the placement rod will be located outside the base. At this time, the operator can insert the fabric roller into the placement rod and tighten the nut on the placement rod. At this time, the placement rod in front of the operator is filled. Then the operator can rotate the base, causing the base to drive the turntable to rotate on the transmission block. At the same time, the slip ring will slide in the sliding groove until the other unfilled placement rod is in front of the operator. Then the placement rod can continue to be filled.
[0016] S2: After all the fabric rollers on the placement rods are filled, the operator can turn the motor in reverse so that the transmission block and the lead screw can be threaded together again, thereby causing the lead screw to return to the dyeing chamber. After the return is complete, the operator can close the cover and open the valve of the medium circulation pipeline conveying unit. At this time, under normal pressure, the no-wash dyeing equipment will use the medium circulation pipeline conveying unit to dye the fabric on the fabric rollers. The no-wash dyeing equipment will use the dyeing material and auxiliary dyeing agent in the medium circulation pipeline conveying unit to start medium circulation and maintain a certain temperature and pressure to promote full contact and reaction between the fabric fibers and dyes. During the heating process, the water in the dyeing material and auxiliary dyeing agent will evaporate, resulting in a certain amount of liquid inside the dyeing chamber.
[0017] S3: After dyeing is completed, the staff can turn the motor forward again. The motor will drive the lead screw to rotate, causing the transmission block to lift the entire base. At the same time, the lead screw will drive the rotating shaft to rotate through the synchronous belt. The rotating shaft will drive the first scraper and the second scraper to scrape the liquid at the bottom of the dyeing chamber, forcing the liquid into the drain tank and into the drain pipe for recycling. At the same time, when the entire base is above the main body of the no-wash dyeing equipment, the staff can pull out the storage rod and collect the fabric roller on the storage rod.
[0018] Compared with the prior art, the present invention has the following beneficial effects:
[0019] In this invention, the motor can be turned forward or reversed via the control panel, causing the motor to drive two lead screws to rotate and engage in threaded transmission with the transmission block, thereby generating a radial force. This causes the transmission block to move the base as a whole upward or downward without the need for additional lifting equipment, thus facilitating the operation of the fabric rollers that need to be installed or removed on the storage rod on the base, improving practicality.
[0020] In this invention, by pulling the storage rod outward from the base, a radial force is generated on the storage rod, causing the square plate to slide outward from the base within the straight groove. At the same time, the movement of the square plate will also cause the limiting block to slide within the limiting groove. When the limiting block is located at the end of the limiting groove near the base, the square plate and the storage rod as a whole will be located outside the base, which makes it easy to pull out the storage rod separately, avoiding the fact that all fabric rollers are located on the base, thus affecting the operator's operation and improving the ease of operation.
[0021] In this invention, when the motor rotates forward or in reverse, it will drive the lead screw to rotate. At the same time, the lead screw will drive the rotating shaft to rotate through the synchronous belt. This causes the rotating shaft to drive the first scraper and the second scraper to scrape the liquid at the bottom of the dyeing chamber, forcing the liquid into the drain tank and into the drain pipe for recycling. This avoids too much liquid remaining inside the dyeing chamber, which would affect the heating of the dyeing chamber in the next cycle and facilitates subsequent operations.
[0022] In this invention, by setting a limiting groove and a sliding groove, when the storage rod is pulled and the base is rotated, the limiting block can be driven to slide in the limiting groove and the sliding ring in the sliding groove, thereby providing additional limiting and increasing stability;
[0023] In this invention, by optimizing the structure and layout of the device and setting up an integrated multi-functional mechanism, the overall structure is compact, enabling automatic lifting and lowering, easy removal of the storage rod, and cleaning of the liquid inside the dyeing chamber, thus achieving multiple effects and making it quite practical. Attached Figure Description
[0024] Figure 1 This is a three-dimensional structural schematic diagram of the present invention;
[0025] Figure 2 This is a three-dimensional exploded structure diagram of the present invention;
[0026] Figure 3 This is a schematic diagram of the bottom structure of the wash-free dyeing device of the present invention;
[0027] Figure 4 This is a cross-sectional view of the body of the wash-free dyeing device of the present invention;
[0028] Figure 5 This is an exploded view of the base connection structure of the present invention;
[0029] Figure 6 This is an exploded view of the rotating shaft connection structure of the present invention;
[0030] Figure 7 This is a three-dimensional structural diagram of the base of the present invention;
[0031] Figure 8 This is a schematic diagram of the exploded structure of the slip ring connection of the present invention;
[0032] Figure 9 This is a cross-sectional view of the base of the present invention;
[0033] Figure 10 This is a schematic diagram of the exploded structure of the square plate connection of the present invention.
[0034] In the diagram, the correspondence between the component names and the attached drawing numbers is as follows: 11. Body of the no-wash dyeing equipment; 12. Cover plate; 13. Support block; 14. Control panel; 15. Medium circulation pipeline conveying unit; 16. Dyeing chamber; 17. Motor; 18. Lead screw; 19. Rotating shaft; 21. First scraper; 22. Second scraper; 23. Drainage trough; 24. Drainage pipeline; 25. Transmission block; 26. Slide groove; 27. Turntable; 28. Base; 29. Slip ring; 31. Straight groove; 32. Limiting groove; 33. Limiting block; 34. Square plate; 35. Placement rod; 36. Fabric roller; 37. Synchronous belt. Detailed Implementation
[0035] The embodiments of the present invention will be described in further detail below with reference to the accompanying drawings and examples. The following examples are for illustrative purposes only and should not be construed as limiting the scope of the invention.
[0036] Please see Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 , Figure 6 , Figure 7 , Figure 8 , Figure 9 and Figure 10 This invention provides a fabric dyeing device that requires no washing, including a device body 11, a cover plate 12 at the upper end of the device body 11, multiple support blocks 13 at the lower end of the device body 11, a control panel 14 on the circumferential surface of the device body 11, media circulation pipeline conveying units 15 symmetrically arranged on the circumferential surface of the device body 11, and a dyeing chamber 16 inside the device body 11.
[0037] The lower end of the main body 11 of the no-wash dyeing equipment is symmetrically equipped with an integrated multi-functional mechanism;
[0038] The integrated multi-functional mechanism includes a motor 17, the output shaft of which is located inside the dyeing chamber 16. The output shaft of the motor 17 is rotatably mounted to the body 11 of the no-wash dyeing equipment. Two lead screws 18 are symmetrically rotatably mounted inside the dyeing chamber 16, and both lead screws 18 are fixedly mounted to the output shaft of the motor 17. The integrated multi-functional mechanism also includes a rotating shaft 19, a first scraper 21, a second scraper 22, a drainage trough 23, a drainage pipe 24, a transmission block 25, a slide 26, a turntable 27, a base 28, a slip ring 29, a straight groove 31, a limiting groove 32, a limiting block 33, a square plate 34, and a synchronous belt 37. The rotating shaft 19 is rotatably mounted inside the dyeing chamber 16, and the first scraper 21 and the second scraper 22 are both located around the circumference of the rotating shaft 19. The device is surface-fixed and optimized in structure and layout. An integrated multi-functional mechanism makes the overall structure compact, enabling automatic lifting and easy removal of the storage rod 35 and cleaning of the liquid inside the dyeing chamber 16. This achieves multiple effects and is quite practical. The motor 17 can be turned forward or reversed via the control panel 14, causing the motor 17 to drive the two lead screws 18 to rotate and engage with the transmission block 25 through a threaded transmission. This generates a radial force, causing the transmission block 25 to move the base 28 upward or downward without the need for additional lifting equipment. This facilitates the installation or removal of the fabric roller 36 on the storage rod 35 on the base 28, improving its practicality.
[0039] The first scraper 21 and the second scraper 22 are both attached to the bottom of the dyeing chamber 16. The drain trough 23 is opened through the inside of the dyeing chamber 16. The drain pipe 24 is fixedly installed inside the drain trough 23. Part of the drain pipe 24 is exposed on the outside of the body 11 of the no-wash dyeing equipment. The transmission block 25 is threaded between the lead screw 18. Both sliding grooves 26 are opened through the inside of the transmission block 25. When the motor 17 rotates forward or in reverse, it will drive the lead screw 18 to rotate. At the same time, the lead screw 18 will drive the rotating shaft 19 to rotate through the synchronous belt 37. This causes the rotating shaft 19 to drive the first scraper 21 and the second scraper 22 to scrape the liquid at the bottom of the dyeing chamber 16, forcing the liquid into the drain trough 23 and into the drain pipe 24 for recycling. This avoids too much liquid remaining inside the dyeing chamber 16, which would affect the heating of the dyeing chamber 16 in the next cycle and facilitates subsequent operations.
[0040] Turntable 27 is rotatably mounted on the upper end of transmission block 25. Base 28 is fixedly mounted on the upper end of turntable 27. Slip ring 29 is fixedly mounted on the lower end of base 28 and slidably mounted with slide groove 26. Each straight groove 31 is opened through the interior of base 28. Each set of limiting grooves 32 is opened on the inner wall of straight groove 31. Each limiting block 33 is slidably mounted inside limiting groove 32. Each square plate 34 is fixedly mounted between limiting blocks 33 and slidably mounted with limiting groove 32. Each square plate 34 has a fixedly mounted storage rod 35 on its upper end. Each storage rod 35 has a fabric roller 36 on its circumferential surface. Synchronous belt 37 rotates between rotating shaft 19 and lead screw 18. With the installation in place, the synchronous belt 37 is positioned above the first scraper 21 and the second scraper 22. The first scraper 21 is positioned below the transmission block 25. By pulling the placement rod 35 outward from the base 28, a radial force is generated on the placement rod 35, causing the square plate 34 to slide outward from the base 28 within the straight groove 31. Simultaneously, the movement of the square plate 34 will also cause the limiting block 33 to slide within the limiting groove 32. When the limiting block 33 is located at the end of the limiting groove 32 near the base 28, the square plate 34 and the placement rod 35 will be positioned outward from the base 28, making it easier to pull out the placement rod 35 individually. This avoids all fabric rollers 36 being located on the base 28, which would affect the operator's operation and improve the ease of operation.
[0041] Working principle:
[0042] First, when using the device, open the cover 12 of the no-wash dyeing equipment body 11. Then, turn on the motor 17 via the control panel 14 to rotate it forward. This will cause the motor 17 to drive the two lead screws 18 to rotate and engage with the transmission block 25 via a threaded transmission. This will cause the transmission block 25 to move the base 28 upward. When the base 28 is above the no-wash dyeing equipment body 11, the motor 17 will turn off. Then, the operator can pull the placement rod 35 outward from the base 28. At this time, the placement rod 35 will generate a radial force, causing the square plate 34 to slide outward from the base 28 within the straight groove 31. Simultaneously, the movement of the square plate 34 will also cause the limit switch to move. Block 33 slides within the limiting groove 32. When the limiting block 33 is located at the end of the limiting groove 32 near the base 28, the square plate 34 and the storage rod 35 will be located outside the base 28. At this time, the worker can insert the fabric roller 36 into the storage rod 35 and tighten the nut on the storage rod 35. At this time, the storage rod 35 in front of the worker is filled. Then the worker can rotate the base 28, so that the base 28 drives the turntable 27 to rotate on the transmission block 25. At the same time, the slip ring 29 will slide in the slide groove 26 until another unfilled storage rod 35 is located in front of the worker. Then the above steps can be repeated to fill the storage rod 35.
[0043] The second step is to turn on the motor 17 in reverse after all the pads 35 have been filled with fabric rollers 36. This will cause the transmission block 25 to reconnect with the lead screw 18, thus resetting the lead screw 18 back into the dyeing chamber 16. Once reset, the operator can close the cover plate 12 and open the valve of the media circulation pipeline conveying unit 15. At this time, under normal pressure, the no-wash dyeing equipment body 11 will use the media circulation pipeline conveying unit 15 to dye the fabric on the fabric rollers 36. The no-wash dyeing equipment body 11 will use the dyeing material and auxiliary dyeing agent in the media circulation pipeline conveying unit 15 to start media circulation and maintain a certain temperature and pressure to promote full contact and reaction between the fabric fibers and the dye. During the heating process, the water in the dyeing material and auxiliary dyeing agent will evaporate, resulting in a certain amount of liquid inside the dyeing chamber 16.
[0044] Third, after dyeing is completed, the staff can turn on the motor 17 again to rotate forward. The motor 17 will drive the lead screw 18 to rotate, causing the transmission block 25 to lift the base 28 as a whole. At the same time, the lead screw 18 will drive the rotating shaft 19 to rotate through the synchronous belt 37. The rotating shaft 19 will drive the first scraper 21 and the second scraper 22 to scrape the liquid at the bottom of the dyeing chamber 16, forcing the liquid into the drain tank 23 and into the drain pipe 24 for recycling. At the same time, when the base 28 is above the main body 11 of the no-wash dyeing equipment, the staff can pull out the storage rod 35 and collect the fabric roller 36 of the storage rod 35.
[0045] The embodiments of the present invention are given for illustrative and descriptive purposes only, and are not intended to be exhaustive or to limit the invention to the forms disclosed. Many modifications and variations will be apparent to those skilled in the art. The embodiments were chosen and described in order to better illustrate the principles and practical application of the invention, and to enable those skilled in the art to understand the invention and to design various embodiments with various modifications suitable for a particular purpose.
Claims
1. A fabric dyeing device that requires no washing, comprising a dyeing device body (11), wherein a cover plate (12) is provided at the upper end of the dyeing device body (11), a plurality of support blocks (13) are provided at the lower end of the dyeing device body (11), a control panel (14) is provided on the circumferential surface of the dyeing device body (11), and a medium circulation pipeline conveying unit (15) is symmetrically provided on the circumferential surface of the dyeing device body (11), and a dyeing chamber (16) is provided inside the dyeing device body (11), characterized in that: The lower end of the body (11) of the no-wash dyeing equipment is symmetrically provided with an integrated multi-functional mechanism; The integrated multifunctional mechanism includes a motor (17), the output shaft of the motor (17) is located inside the dyeing chamber (16), the output shaft of the motor (17) is rotatably installed with the body (11) of the no-wash dyeing equipment, and the dyeing chamber (16) is symmetrically rotatably installed with screws (18), and both screws (18) are fixedly installed with the output shaft of the motor (17). The integrated multifunctional mechanism also includes a rotating shaft (19), a first scraper (21), a second scraper (22), a drain trough (23), a drain pipe (24), a transmission block (25), a slide groove (26), a turntable (27), a base (28), a slip ring (29), a straight groove (31), a limiting groove (32), a limiting block (33), a square plate (34), and a synchronous belt (37). The rotating shaft (19) is rotatably installed inside the dyeing chamber (16), and the first scraper (21) and the second scraper (22) are both fixedly installed on the circumferential surface of the rotating shaft (19). The drainage channel (23) is opened through the inside of the staining chamber (16); Each of the straight grooves (31) is opened through the inside of the base (28), each set of limiting grooves (32) is opened on the inner wall of the straight groove (31), and each limiting block (33) is slidably installed inside the limiting groove (32); Each of the square plates (34) is fixedly installed between the limiting blocks (33), each of the square plates (34) is slidably installed with the limiting groove (32), and each of the square plates (34) has a storage rod (35) fixedly installed at the upper end. Each of the storage rods (35) is provided with a fabric roller (36) on its circumferential surface, and the synchronous belt (37) is rotatably installed between the rotating shaft (19) and the lead screw (18); The synchronous belt (37) is located above the first scraper (21) and the second scraper (22), and the first scraper (21) is located below the transmission block (25).
2. The fabric no-wash dyeing equipment as described in claim 1, characterized in that: The drain pipe (24) is fixedly installed inside the drain tank (23).
3. The fabric no-wash dyeing equipment as described in claim 2, characterized in that: The transmission block (25) is threaded between the lead screw (18), and the two slide grooves (26) are both opened through the inside of the transmission block (25).
4. The fabric no-wash dyeing equipment as described in claim 3, characterized in that: The turntable (27) is rotatably mounted on the upper end of the transmission block (25), the base (28) is fixedly mounted on the upper end of the turntable (27), the slip ring (29) is fixedly mounted on the lower end of the base (28), and the slip ring (29) is slidably mounted with the slide groove (26).
5. The dyeing process of the fabric no-wash dyeing equipment as described in claim 1, characterized in that, Includes the following steps; S1: When using, first open the cover (12) of the main body (11) of the no-wash dyeing equipment. Then, turn on the motor (17) through the control panel (14) to make it rotate forward. The motor (17) drives the two lead screws (18) to rotate and have a threaded transmission with the transmission block (25). This causes the transmission block (25) to move the base (28) upward as a whole. When the base (28) is above the main body (11) of the no-wash dyeing equipment, the motor (17) will be turned off. Then, the staff can pull the placement rod (35) to the outside of the base (28). At this time, the placement rod (35) will generate a radial force, which will cause the square plate (34) to slide to the outside of the base (28) in the straight groove (31). At the same time, the movement of the square plate (34) will also drive the limit switch. The block (33) slides in the limiting groove (32). When the limiting block (33) is located at the end of the limiting groove (32) near the base (28), the square plate (34) and the storage rod (35) will be located outside the base (28). At this time, the worker can insert the fabric roller (36) into the storage rod (35) and tighten the nut on the storage rod (35). At this time, the storage rod (35) in front of the worker is filled. Then the worker can rotate the base (28) so that the base (28) drives the turntable (27) to rotate on the transmission block (25). At the same time, the slip ring (29) will slide in the slide groove (26) until another unfilled storage rod (35) is in front of the worker. Then the storage rod (35) can continue to be filled. S2: After all the fabric rollers (36) on all the storage rods (35) are filled, the staff can turn on the motor (17) to reverse, so that the transmission block (25) and the screw (18) can be threaded again, and the screw (18) can be reset to the dyeing chamber (16). After the reset is completed, the staff can close the cover plate (12) and open the valve of the medium circulation pipeline conveying unit (15). At this time, under normal pressure, the no-wash dyeing equipment body (11) will use the medium circulation pipeline conveying unit (15) to dye the fabric on the fabric roller (36). The no-wash dyeing equipment body (11) will use the dyeing material and auxiliary dyeing agent in the medium circulation pipeline conveying unit (15) to start the medium circulation and maintain a certain temperature and pressure to promote the full contact and reaction of the fabric fibers and dyes. During the heating process, the water in the dyeing material and auxiliary dyeing agent will evaporate, so that a certain amount of liquid will be generated inside the dyeing chamber (16). S3: When the dyeing is completed, the staff can turn the motor (17) on again. The motor (17) will drive the screw (18) to rotate, causing the transmission block (25) to drive the base (28) to rise. At the same time, the screw (18) will rotate through the synchronous belt (37) to drive the rotating shaft (19) to rotate, so that the rotating shaft (19) drives the first scraper (21) and the second scraper (22) to scrape the liquid at the bottom of the dyeing chamber (16), forcing the liquid to enter the drain tank (23) and flow into the drain pipe (24) for recycling. At the same time, when the base (28) is above the body (11) of the no-wash dyeing equipment, the staff can pull out the storage rod (35) and collect the fabric roller (36) of the storage rod (35).
Citation Information
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