Dyeing equipment and dyeing method for textile production and processing
By combining clamping, pushing, and blowing mechanisms, the problem of automatically flattening fabric in dyeing equipment is solved, ensuring the flatness of the fabric and improving the dyeing effect of printed patterns.
Patent Information
- Application Number
- CN202511320300.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-16
- Publication Date
- 2025-11-18
AI Technical Summary
Existing dyeing equipment in textile production and processing has difficulty automatically flattening the fabric when it enters, resulting in fine wrinkles that affect the dyeing effect of printed patterns.
The design includes a clamping mechanism, a flattening mechanism, and a blowing mechanism. The clamping mechanism secures the sides of the fabric, the flattening mechanism unfolds the fabric, and the blowing mechanism uses gas ejected from the angled holes to further unfold the fabric, ensuring that the fabric is flat.
It effectively avoids the influence of fine wrinkles in the fabric on the dyeing effect of the printed pattern and improves the automatic flattening effect of the dyeing equipment.
Smart Images

Figure CN120967609A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of textile production technology, specifically to a textile production, processing, and dyeing equipment and dyeing method. Background Technology
[0002] Textile dyeing process refers to a series of processes that dye raw textile fabrics. In the textile production process, the application of dyes makes the colors of textiles rich and colorful. The textile dyeing process mainly includes pretreatment, dyeing, color fixing and post-treatment. Dyeing is divided into two methods: printing dyeing and color fixing dyeing. In printing dyeing, patterns or designs are formed by combining a variety of dyes. Existing dyeing equipment used in textile production and processing usually involves manual feeding and flattening of textiles such as fabrics when they enter the machine. However, manual operation often results in wrinkles that are difficult to see with the naked eye. In the printing and dyeing process, even the slightest wrinkles can affect the dyeing effect of the printed pattern on the fabric. Therefore, there is a need for dyeing equipment that can automatically flatten the fabric before dyeing. Summary of the Invention
[0003] The purpose of this invention is to provide a textile production and dyeing equipment and method to solve the problems mentioned in the background art.
[0004] To achieve the above objectives, the present invention provides the following technical solution: a textile production, processing, and dyeing equipment, comprising a housing, a feeding port on the front side of the housing, two feeding rollers inside the housing, a fixed roller inside the housing, and further comprising a clamping mechanism, a leveling mechanism, and a blowing mechanism. A clamping mechanism, the clamping mechanism including a movable groove, the movable groove being formed in the rear side wall of the housing; A leveling mechanism, the leveling mechanism including a support column, the support column being disposed at the rear side of the housing; A leveling mechanism, the leveling mechanism including oblique holes, the oblique holes being evenly opened at the top of the fixed roller.
[0005] Preferably, the clamping mechanism includes a lifting frame, clamping wheels, a fixed rod, and a sliding sleeve. There are two lifting frames, which are movably installed in the movable groove. There are two sets of clamping wheels, which are movably installed at both ends of the two lifting frames and located inside the housing. The fixed rod is fixedly installed on the rear side wall of the housing and located between the two lifting frames. There are two sliding sleeves, which are movably sleeved on the fixed rod.
[0006] Preferably, the clamping mechanism includes connecting arms, springs, a horizontal plate, and connecting plates. There are two sets of connecting arms, with the ends near the sliding sleeves respectively movably installed between the top and bottom ends of the two sliding sleeves. The ends of the two sets of connecting arms away from the sliding sleeves are respectively movably installed at both ends of the lifting frame and located on the side of the lifting frame away from the clamping wheel. The spring is movably sleeved on the fixed rod and located between the two sliding sleeves. The horizontal plate is fixedly installed on the rear side wall of the housing. There are two connecting plates, both fixedly installed on the rear side wall of the housing and located below the horizontal plate, respectively located on both sides of the movable groove.
[0007] Preferably, the clamping mechanism includes a cylinder, a lifting plate, lifting rods, and L-shaped rods. The cylinder is fixedly installed at the top of the horizontal plate, and its output shaft passes through the horizontal plate. The lifting plate is movably disposed between the horizontal plate and the connecting plate. The bottom end of the output shaft of the connecting plate is fixedly connected to the lifting plate. There are two lifting rods, and their top ends are fixedly installed at the bottom end of the lifting plate. There are two L-shaped rods, and they are fixedly installed at the top of the upper lifting frame. The two L-shaped rods are respectively fixedly installed at the bottom ends of the two lifting rods.
[0008] Preferably, the leveling mechanism includes a translation plate, a suspension frame, a fixed plate, a rotating shaft, and a passive shaft. The translation plate is movably mounted on the top of the support column and passes through the movable slot. The suspension frame is fixedly mounted on one end of the translation plate inside the housing. There are two fixed plates, both fixedly mounted in the middle of the bottom of the suspension frame. The rotating shaft is movably mounted between the two fixed plates and located at the end of the fixed plate away from the rear side wall of the housing. The passive shaft is movably mounted between the two fixed plates and located at the end of the fixed plate near the rear side wall of the housing.
[0009] Preferably, the flattening mechanism includes a rotating belt, flattening rods, a flattening motor, a rack, and a drive shaft. The rotating belt is movably sleeved on the rotating shaft and the driven shaft. There are several flattening rods, which are evenly and movably installed on the rotating belt. The flattening motor is fixedly installed on the side wall of the fixed plate, and its output shaft is fixedly connected to the rotating shaft. The rack is fixedly installed at the top center of the translation plate. The drive shaft is movably installed on the rear side wall of the housing, located inside the housing, and above the rack.
[0010] Preferably, the leveling mechanism includes a gear, a vertical plate, a translation motor, and a transmission belt. The gear is fixedly sleeved in the middle of the transmission shaft and is movably connected to the rack through meshing. The vertical plate is fixedly installed on the rear side wall of the housing and located on one side of the movable slot. The translation motor is fixedly installed on the vertical plate, and its output shaft passes through the vertical plate. One end of the transmission belt is movably sleeved on the output shaft of the translation motor, and the other end is movably sleeved on the transmission shaft.
[0011] Preferably, the leveling mechanism includes a piston, a translation rod, and a synchronizing plate. The piston is movably installed inside the fixed roller. There are two translation rods, one end of which is fixedly connected to one end of the piston. The synchronizing plate is fixedly installed at the end of the translation plate away from the housing. The end of the translation rod away from the housing is fixedly connected to the synchronizing plate.
[0012] This invention also provides another technical solution: a method of using textile production, processing, and dyeing equipment, comprising the following steps: S1. Place one end of the fabric to be dyed onto the fixed roller through the feed port on the front side of the housing, and let the end pass through the two feed rollers. The feed rollers can drive the fabric forward. After the fabric is placed on the fixed roller, the side closest to the rear side wall of the housing is positioned between the two sets of clamping wheels. Then, start the cylinder to drive the lifting plate to descend. When the lifting plate descends, the lifting rod and L-shaped rod drive the upper lifting frame to descend. When the lifting frame descends, the connecting arm drives the sliding sleeve to move towards the spring on the fixed rod. At this time, the two lifting frames descend at the same time to drive the two sets of clamping wheels to move closer to the fabric until the fabric is clamped. When the fabric moves, the clamping wheels can ensure that the fabric can move smoothly while the side remains fixed. S2. After the sides of the fabric are fixed, start the flattening motor. The flattening motor drives the rotating shaft to rotate, which in turn drives the rotating belt to rotate. This causes the flattening rod to rotate simultaneously, and the flattening rod at the lower end of the rotating belt moves from the direction of the passive shaft towards the direction of the rotating shaft. Then start the translation motor, which drives the transmission shaft to rotate via the transmission belt. This causes the gear to rotate simultaneously with the transmission shaft. When the transmission shaft rotates, the rack drives the translation plate to move into the housing. The translation plate drives the rotating belt to move synchronously, causing the flattening rod to move from the side of the fabric that is fixed to the other side. The rotating belt drives the flattening rod to rotate, causing the fabric to gradually unfold and preventing the unfolded fabric from shrinking back. S3. While the translation plate moves, the translation rod moves simultaneously via the synchronous plate. The translation rod drives the piston to move inside the fixed roller, causing the air inside the fixed roller to be squeezed out through the oblique holes and oblique gas to be sprayed out through the oblique holes, so that the un-unfurled part of the fabric that has not come into contact with the flattening rod is blown open.
[0013] Compared with the prior art, the beneficial effects of the present invention are: This invention, through the design and installation of a clamping mechanism, a flattening mechanism, and a blowing mechanism, fixes the sides of the fabric to be dyed, and then drives the flattening rod to rotate along with the rotating belt and move along with the translation plate, so as to unfold the fabric from the fixed end to the unfixed end. This allows the fabric to unfold gradually and prevents it from shrinking back after unfolding. After unfolding, the fabric is driven to move by the feeding roller, and the clamping wheel ensures that the sides of the fabric are fixed but can still move smoothly. Furthermore, oblique air is blown out through the oblique holes, so that the un-unfolded parts of the fabric that have not come into contact with the flattening rod are blown open, further improving the unfolding effect of the fabric and preventing the presence of fine wrinkles in the fabric from affecting the dyeing of the printed pattern. Attached Figure Description
[0014] Figure 1 A schematic diagram of the overall structure is provided for embodiments of the present invention; Figure 2 This is a schematic diagram of the back-end structure of the device provided in an embodiment of the present invention; Figure 3 This is a schematic diagram showing the connection between the housing and the clamping mechanism provided in an embodiment of the present invention; Figure 4 A schematic diagram of the clamping mechanism provided in an embodiment of the present invention; Figure 5 A schematic diagram of the pushing mechanism provided in an embodiment of the present invention; Figure 6 This is a schematic diagram of the rotating belt and flattening rod structure provided in an embodiment of the present invention; Figure 7 This is a schematic diagram of the leveling mechanism provided in an embodiment of the present invention.
[0015] In the diagram: 1. Housing; 2. Feed roller; 3. Fixed roller; 4. Clamping mechanism; 401. Movable groove; 402. Lifting frame; 403. Clamping wheel; 404. Fixed rod; 405. Sliding sleeve; 406. Connecting arm; 407. Spring; 408. Horizontal plate; 409. Connecting plate; 410. Cylinder; 411. Lifting plate; 412. Lifting rod; 413. L-shaped rod; 5. Pushing mechanism; 501. Support column; 502. 503. Translation plate; 504. Suspension bracket; 505. Fixed plate; 506. Rotating shaft; 507. Passive shaft; 508. Rotating belt; 509. Flattening rod; 510. Flattening motor; 511. Rack; 512. Drive shaft; 513. Gear; 514. Vertical plate; 515. Translation motor; 516. Drive belt; 607. Flattening mechanism; 608. Angled hole; 609. Piston; 6000. Translation rod; 601. Synchronizing plate. Detailed Implementation
[0016] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0017] This embodiment describes a textile production and dyeing equipment and method, such as... Figures 1 to 7 As shown, the device includes a housing 1, a discharge port on the front side of the housing 1, two feeding rollers 2 inside the housing 1, a fixed roller 3 inside the housing 1, a clamping mechanism 4, a leveling mechanism 5, and a blowing mechanism 6. The clamping mechanism 4 includes a movable groove 401, which is formed on the rear side wall of the housing 1.
[0018] In this embodiment, as Figure 3 and Figure 4 As shown, the clamping mechanism 4 includes a lifting frame 402, clamping wheels 403, a fixed rod 404, and a sliding sleeve 405. There are two lifting frames 402, which are movably installed in the movable slot 401. There are two sets of clamping wheels 403, which are movably installed at both ends of the two lifting frames 402 and located inside the housing 1. The fixed rod 404 is fixedly installed on the rear side wall of the housing 1 and located between the two lifting frames 402. There are two sliding sleeves 405, which are movably sleeved on the fixed rod 404. The movable slot 401 provides movement space for the lifting frame 402 and the translation plate 502. The two lifting frames 402 drive the two sets of clamping wheels 403 to move towards the fabric simultaneously, so that the sides of the fabric are clamped. While clamping, the fabric can also be kept moving under the drive of the feed roller 2. The sliding sleeve 405 and the spring 407 are installed through the fixed rod 404. When the lifting frame 402 descends, the connecting arm 406 drives the sliding sleeve 405 to move closer to the spring 407, so that the spring 407 is compressed. When the lifting frame 402 is driven to rise, the elastic force of the spring 407 causes the sliding sleeve 405 to return to its original position, so that the two lifting frames 402 move synchronously.
[0019] In this embodiment, as Figure 4As shown, the clamping mechanism 4 includes a connecting arm 406, a spring 407, a horizontal plate 408, and a connecting plate 409. There are two sets of connecting arms 406, with one end near the sliding sleeve 405 respectively movably installed in the middle of the top and bottom ends of the two sliding sleeves 405. The ends of the two sets of connecting arms 406 away from the sliding sleeves 405 are respectively movably installed at both ends of the lifting frame 402 and located on the side of the lifting frame 402 away from the clamping wheel 403. The spring 407 is movably sleeved on the fixed rod 404 and located between the two sliding sleeves 405. The horizontal plate 408 is fixedly installed on the rear side wall of the housing 1. There are two connecting plates 409, both fixedly installed on the rear side wall of the housing 1 and located below the horizontal plate 408, and respectively located on both sides of the movable groove 401. The connecting arm 406 drives the sliding sleeve 405 to move towards the spring 407 on the fixed rod 404. At this time, the two lifting frames 402 descend simultaneously, so as to drive the two sets of clamping wheels 403 to move closer to the fabric until the fabric is clamped. When the fabric moves, the clamping wheels 403 can ensure that the fabric can move smoothly while the sides remain fixed.
[0020] In this embodiment, as Figure 4 As shown, the clamping mechanism 4 includes a cylinder 410, a lifting plate 411, a lifting rod 412, and an L-shaped rod 413. The cylinder 410 is fixedly installed at the top of the horizontal plate 408, and its output shaft passes through the horizontal plate 408. The lifting plate 411 is movably arranged between the horizontal plate 408 and the connecting plate 409. The bottom end of the output shaft of the connecting plate 409 is fixedly connected to the lifting plate 411. There are two lifting rods 412, and their top ends are fixedly installed at the bottom end of the lifting plate 411. There are two L-shaped rods 413, and they are fixedly installed at the top of one of the upper lifting frames 402. The two L-shaped rods 413 are respectively fixedly installed at the bottom ends of the two lifting rods 412. The cylinder 410 drives the lifting plate 411 to descend. When the lifting plate 411 descends, the lifting rod 412 and L-shaped rod 413 drive the upper lifting frame 402 to descend. When the lifting frame 402 descends, the connecting arm 406 drives the sliding sleeve 405 to move towards the spring 407 on the fixed rod 404. At this time, the two lifting frames 402 descend at the same time.
[0021] At other levels, this embodiment also provides a flattening mechanism 5 for flattening fabric, such as... Figure 2 and Figure 5 As shown, the leveling mechanism 5 includes a support column 501, which is located at the rear side of the housing 1.
[0022] In this embodiment, as Figure 5 and Figure 6As shown, the leveling mechanism 5 includes a translation plate 502, a suspension frame 503, a fixed plate 504, a rotating shaft 505, and a passive shaft 506. The translation plate 502 is movably installed on the top of the support column 501 and passes through the movable groove 401. The suspension frame 503 is fixedly installed on one end of the translation plate 502 located inside the housing 1. There are two fixed plates 504, both fixedly installed in the middle of the bottom of the suspension frame 503. The rotating shaft 505 is movably installed between the two fixed plates 504 and is located at the end of the fixed plate 504 away from the rear side wall of the housing 1. The passive shaft 506 is movably installed between the two fixed plates 504 and is located at the end of the fixed plate 504 close to the rear side wall of the housing 1. The suspension bracket 503 is installed by the translation plate 502, and two fixed plates 504 are fixed by the suspension bracket 503, so that the rotating shaft 505 and the passive shaft 506 can be set between the two fixed plates 504, and the rotating belt 507 is driven to rotate by the rotating shaft 505.
[0023] In this embodiment, as Figure 5 and Figure 6 As shown, the flattening mechanism 5 includes a rotating belt 507, flattening rods 508, a flattening motor 509, a rack 510, and a drive shaft 511. The rotating belt 507 is movably sleeved on the rotating shaft 505 and the driven shaft 506. There are several flattening rods 508, which are evenly and movably installed on the rotating belt 507. The flattening motor 509 is fixedly installed on the side wall of the fixed plate 504, and its output shaft is fixedly connected to the rotating shaft 505. The rack 510 is fixedly installed at the top center of the translation plate 502. The drive shaft 511 is movably installed on the rear side wall of the housing 1, located inside the housing 1, and above the rack 510. The rotating belt 507 is driven to rotate by the rotating shaft 505, which in turn drives the flattening rod 508 to rotate simultaneously. The flattening rod 508 at the lower end of the rotating belt 507 moves from the direction of the passive shaft 506 toward the direction of the rotating shaft 505, so that the fabric is unfolded.
[0024] In this embodiment, as Figure 5 As shown, the leveling mechanism 5 includes a gear 512, a vertical plate 513, a translation motor 514, and a transmission belt 515. The gear 512 is fixedly sleeved in the middle of the transmission shaft 511 and is movably connected to the rack 510 through meshing. The vertical plate 513 is fixedly installed on the rear side wall of the housing 1 and is located on one side of the movable groove 401. The translation motor 514 is fixedly installed on the vertical plate 513 and its output shaft passes through the vertical plate 513. One end of the transmission belt 515 is movably sleeved on the output shaft of the translation motor 514, and the other end is movably sleeved on the transmission shaft 511. The rack 510 drives the translation plate 502 to move into the housing 1. The translation plate 502 drives the rotating belt 507 to move synchronously, so that the flattening rod 508 moves from the side where the fabric is fixed to the other side. The rotating belt 507 drives the flattening rod 508 to rotate, so that the fabric gradually unfolds and keeps the unfolded fabric from shrinking back.
[0025] At other levels, this embodiment also provides a flattening mechanism 6 for further unfolding the fabric, such as... Figure 7 As shown, the leveling mechanism 6 includes oblique holes 601, which are evenly distributed at the top of the fixed roller 3.
[0026] In this embodiment, as Figure 7 As shown, the leveling mechanism 6 includes a piston 602, a translation rod 603, and a synchronization plate 604. The piston 602 is movably installed inside the fixed roller 3. There are two translation rods 603, one end of which is fixedly connected to one end of the piston 602. The synchronization plate 604 is fixedly installed at the end of the translation plate 502 away from the housing 1. The end of the translation rod 603 away from the housing 1 is fixedly connected to the synchronization plate 604. The synchronous plate 604 drives the translation rod 603 to move simultaneously, and the translation rod 603 drives the piston 602 to move inside the fixed roller 3, so that the air inside the fixed roller 3 is squeezed out through the inclined hole 601, and the inclined gas is sprayed out through the inclined hole 601, so that the un-unfurled part of the fabric that has not come into contact with the flattening rod 508 is blown open.
[0027] This invention also provides another technical solution: a method of using textile production, processing, and dyeing equipment, comprising the following steps: S1. Place one end of the fabric to be dyed into the fixed roller 3 through the feed port on the front side of the housing 1, and let the end pass through the two feed rollers 2. The feed rollers 2 can drive the fabric forward. After the fabric is placed on the fixed roller 3, the side closest to the rear side wall of the housing 1 is positioned between the two sets of clamping wheels 403. Then, start the cylinder 410, which drives the lifting plate 411 to descend. When the lifting plate 411 descends, the lifting rod 412 and L-shaped rod 413 drive the upper lifting frame 402 to descend. When the lifting frame 402 descends, the connecting arm 406 drives the sliding sleeve 405 to move towards the spring 407 on the fixed rod 404. At this time, the two lifting frames 402 descend at the same time, so as to drive the two sets of clamping wheels 403 to approach the fabric at the same time until the fabric is clamped. When the fabric moves, the clamping wheels 403 can ensure that the fabric can move smoothly while the side remains fixed. S2. After the side of the fabric is fixed, start the flattening motor 509. The flattening motor 509 drives the rotating shaft 505 to rotate, which in turn drives the rotating belt 507 to rotate. The rotating belt 507 drives the flattening rod 508 to rotate simultaneously. The flattening rod 508 at the lower end of the rotating belt 507 moves from the direction of the passive shaft 506 toward the direction of the rotating shaft 505. Then start the translation motor 514, which drives the transmission shaft 511 to rotate via the transmission belt 515. The gear 512 rotates simultaneously with the transmission shaft 511. When the transmission shaft 511 rotates, the rack 510 drives the translation plate 502 to move into the housing 1. The translation plate 502 drives the rotating belt 507 to move synchronously, causing the flattening rod 508 to move from the side of the fabric that is fixed to the other side. The rotating belt 507 drives the flattening rod 508 to rotate, so that the fabric gradually unfolds and keeps the unfolded fabric from shrinking back. S3. While the translation plate 502 moves, the translation rod 603 moves simultaneously via the synchronization plate 604. The translation rod 603 drives the piston 602 to move inside the fixed roller 3, causing the air inside the fixed roller 3 to be squeezed out through the inclined hole 601 and the inclined gas to be sprayed out through the inclined hole 601, so that the un-unfurled part of the fabric that has not come into contact with the flattening rod 508 is blown open.
[0028] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article, or apparatus.
[0029] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A textile production, processing, and dyeing equipment, comprising a housing (1), wherein a feeding port is provided on the front side of the housing (1), two feeding rollers (2) are provided inside the housing (1), and a fixed roller (3) is provided inside the housing (1), characterized in that, It also includes a clamping mechanism (4), a flattening mechanism (5), and a blowing mechanism (6): The clamping mechanism (4) includes a movable groove (401) which is formed on the rear side wall of the housing (1); The flattening mechanism (5) includes a support column (501) which is located at the rear side of the housing (1). The leveling mechanism (6) includes an oblique hole (601) which is evenly opened at the top of the fixed roller (3).
2. The textile production, processing, and dyeing equipment according to claim 1, characterized in that: The clamping mechanism (4) includes a lifting frame (402), clamping wheels (403), a fixing rod (404), and a sliding sleeve (405). There are two lifting frames (402), which are movably installed in the movable groove (401). There are two sets of clamping wheels (403), which are movably installed at both ends of the two lifting frames (402) and located inside the housing (1). The fixing rod (404) is fixedly installed on the rear side wall of the housing (1) and located between the two lifting frames (402). There are two sliding sleeves (405), which are movably sleeved on the fixing rod (404).
3. The textile production, processing, and dyeing equipment according to claim 2, characterized in that: The clamping mechanism (4) includes a connecting arm (406), a spring (407), a horizontal plate (408), and a connecting plate (409). There are two sets of connecting arms (406), and the ends of the connecting arms (406) near the sliding sleeves (405) are respectively movably installed in the middle of the top and bottom ends of the two sliding sleeves (405). The ends of the two sets of connecting arms (406) away from the sliding sleeves (405) are respectively movably installed at both ends of the lifting frame (402) and located on the side of the lifting frame (402) away from the clamping wheel (403). The spring (407) is movably sleeved on the fixed rod (404) and located between the two sliding sleeves (405). The horizontal plate (408) is fixedly installed on the rear side wall of the housing (1). There are two connecting plates (409), both of which are fixedly installed on the rear side wall of the housing (1) and located below the horizontal plate (408) and on both sides of the movable groove (401).
4. The textile production, processing, and dyeing equipment according to claim 3, characterized in that: The clamping mechanism (4) includes a cylinder (410), a lifting plate (411), a lifting rod (412), and an L-shaped rod (413). The cylinder (410) is fixedly installed at the top of the horizontal plate (408), and its output shaft passes through the horizontal plate (408). The lifting plate (411) is movably arranged between the horizontal plate (408) and the connecting plate (409). The bottom end of the output shaft of the connecting plate (409) is fixedly connected to the lifting plate (411). There are two lifting rods (412), and their top ends are fixedly installed at the bottom end of the lifting plate (411). There are two L-shaped rods (413), and they are fixedly installed at the top of a lifting frame (402) located above. The two L-shaped rods (413) are respectively fixedly installed at the bottom ends of the two lifting rods (412).
5. A textile production, processing, and dyeing equipment according to claim 4, characterized in that: The leveling mechanism (5) includes a translation plate (502), a suspension frame (503), a fixed plate (504), a rotating shaft (505), and a passive shaft (506). The translation plate (502) is movably installed on the top of the support column (501) and passes through the movable groove (401). The suspension frame (503) is fixedly installed on one end of the translation plate (502) located inside the housing (1). There are two fixed plates (504), both of which are fixedly installed in the middle of the bottom of the suspension frame (503). The rotating shaft (505) is movably installed between the two fixed plates (504) and is located at the end of the fixed plate (504) away from the rear side wall of the housing (1). The passive shaft (506) is movably installed between the two fixed plates (504) and is located at the end of the fixed plate (504) close to the rear side wall of the housing (1).
6. The textile production, processing, and dyeing equipment according to claim 5, characterized in that: The flattening mechanism (5) includes a rotating belt (507), flattening rods (508), a flattening motor (509), a rack (510), and a drive shaft (511). The rotating belt (507) is movably sleeved on the rotating shaft (505) and the driven shaft (506). There are several flattening rods (508), which are evenly and movably installed on the rotating belt (507). The flattening motor (509) is fixedly installed on the side wall of the fixed plate (504), and its output shaft is fixedly connected to the rotating shaft (505). The rack (510) is fixedly installed at the top center of the translation plate (502). The drive shaft (511) is movably installed on the rear side wall of the housing (1), and is located inside the housing (1) and above the rack (510).
7. A textile production, processing, and dyeing equipment according to claim 6, characterized in that: The pushing mechanism (5) includes a gear (512), a vertical plate (513), a translation motor (514), and a transmission belt (515). The gear (512) is fixedly sleeved in the middle of the transmission shaft (511) and is movably connected to the rack (510) through meshing. The vertical plate (513) is fixedly installed on the rear side wall of the housing (1) and located on one side of the movable groove (401). The translation motor (514) is fixedly installed on the vertical plate (513) and its output shaft passes through the vertical plate (513). One end of the transmission belt (515) is movably sleeved on the output shaft of the translation motor (514) and the other end is movably sleeved on the transmission shaft (511).
8. A textile production, processing, and dyeing equipment according to claim 7, characterized in that: The leveling mechanism (6) includes a piston (602), a translation rod (603), and a synchronization plate (604). The piston (602) is movably installed inside the fixed roller (3). There are two translation rods (603), one end of which is fixedly connected to one end of the piston (602). The synchronization plate (604) is fixedly installed at the end of the translation plate (502) away from the housing (1). The end of the translation rod (603) away from the housing (1) is fixedly connected to the synchronization plate (604).
9. A method of using textile production and dyeing equipment, applicable to the textile production and dyeing equipment described in any one of claims 1-8, characterized in that, Includes the following steps: S1. Place one end of the fabric to be dyed onto the fixed roller (3) through the feed port on the front side of the housing (1), and let the end pass through the two feed rollers (2). The feed rollers (2) can drive the fabric forward. After the fabric is placed on the fixed roller (3), make the side closest to the rear wall of the housing (1) between the two sets of clamping wheels (403). Then start the cylinder (410). The cylinder (410) drives the lifting plate (411) to descend. When the lifting plate (411) descends, the lifting rod (412) and The L-shaped rod (413) drives a lifting frame (402) located above to descend. When the lifting frame (402) descends, the connecting arm (406) drives the sliding sleeve (405) to move towards the spring (407) on the fixed rod (404). At this time, the two lifting frames (402) descend at the same time, so as to drive the two sets of clamping wheels (403) to move closer to the fabric at the same time until the fabric is clamped. When the fabric moves, the clamping wheels (403) can ensure that the fabric can move smoothly while the sides remain fixed. S2. After the sides of the fabric are fixed, start the flattening motor (509). The flattening motor (509) drives the rotating shaft (505) to rotate, which in turn drives the rotating belt (507) to rotate. This causes the rotating belt (507) to drive the flattening rod (508) to rotate simultaneously. The flattening rod (508) at the lower end of the rotating belt (507) moves from the direction of the passive shaft (506) toward the direction of the rotating shaft (505). Then, start the translation motor (514) and drive the fabric through the transmission belt (515). The drive shaft (511) rotates, causing the gear (512) to rotate simultaneously with the drive shaft (511). When the drive shaft (511) rotates, the rack (510) drives the translation plate (502) to move into the housing (1). The translation plate (502) drives the rotating belt (507) to move synchronously, causing the flattening rod (508) to move from the side where the fabric is fixed to the other side. The rotating belt (507) drives the flattening rod (508) to rotate, causing the fabric to gradually unfold and keeping the unfolded fabric from shrinking back. S3. While the translation plate (502) moves, the translation rod (603) is driven to move simultaneously by the synchronization plate (604). The piston (602) is driven to move inside the fixed roller (3) by the translation rod (603), so that the air inside the fixed roller (3) is squeezed out through the inclined hole (601) and the inclined gas is sprayed out through the inclined hole (601), so that the un-unfurled part of the fabric that has not come into contact with the flattening rod (508) is blown open.