Dyeing device for preparing water-absorbing moisture-conducting colorful chenille carpet
By designing an automated dyeing device, the problem of requiring manual assistance with existing equipment has been solved, enabling continuous dyeing, improving efficiency and safety, and adapting to various dyeing process requirements.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-14
- Publication Date
- 2026-03-03
AI Technical Summary
Existing dyeing equipment requires manual labor and cannot achieve continuous dyeing operations, resulting in low dyeing efficiency and safety hazards.
An automated dyeing device was designed, comprising a transverse frame, a fabric feeder, a dyeing unit, and a dyeing basket. It achieves automatic fabric feeding and discharging. The fabric feeder delivers the carpet fabric into the dyeing unit for dyeing, washing, and drying. The cover assembly automatically controls the fabric inlet, a rotating assembly drives the dyeing basket to rotate, and a gripping mechanism automatically grips and lowers the dyeing basket.
It enables automated continuous dyeing operations, significantly improving production efficiency, enhancing the safety of the dyeing process, and providing flexibility to meet different dyeing requirements.
Smart Images

Figure CN223963692U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of textile production equipment, and specifically relates to a dyeing device for preparing water-absorbing and moisture-wicking colorful chenille carpets. Background Technology
[0002] Chenille yarn is a spiral, rod-shaped, and fluffy yarn spun from core yarn by twisting and clamping cut pile yarn. It consists of core yarn and pile yarn. Due to its unique structure, chenille yarn possesses excellent softness, fluffiness, and lightness, making it a popular product in the market. During the twisting process of chenille yarn, the core yarn advances by the rotation of the roller shaft and twists under the rotation of the spindle, bearing significant tension in this process. Therefore, the core yarn of chenille yarn requires high breaking strength.
[0003] Chenille textiles, made primarily from chenille yarn through weaving, dyeing, finishing, and adhesive coating processes, include bathroom absorbent rugs, entryway vacuum mats, bedside towels, yoga mats, and outdoor travel mats. These products are mainly used for water absorption, dust collection, and slip prevention, while also serving a decorative purpose, and have seen rapid growth in recent years. Conventional chenille carpets are mostly made of pure polyester, which has good mechanical properties; however, pure polyester chenille fabric has poor water absorption and wicking properties. To address this, hydrophilic polyester is added to the chenille fabric to improve its absorbency. A base anti-slip layer is also added, and a three-dimensional perforated structure is designed, significantly enhancing the wicking effect and achieving superior absorbency and wicking performance. However, to obtain colorful chenille carpet fabric, the carpet needs to be dyed. Existing dyeing equipment requires manual labor for feeding and unloading the fabric, presenting operational difficulties and hindering continuous dyeing operations. This limits dyeing efficiency and poses certain safety hazards. Utility Model Content
[0004] The purpose of this invention is to provide a dyeing device for preparing absorbent and moisture-wicking multicolored chenille carpets. It includes a transverse frame, a fabric feeder, a dyeing unit, and a dyeing basket. The dyeing basket holds the carpet fabric to be dyed, and the fabric feeder moves the basket into the dyeing unit and removes it after dyeing, achieving automatic fabric feeding and discharging, thus automating the dyeing process. It allows for continuous dyeing operations, significantly improving production efficiency. The dyeing process requires no manual labor, achieving contactless dyeing and improving the safety of the dyeing operation.
[0005] To achieve the above technical objectives, the following technical solution is adopted:
[0006] A dyeing apparatus for preparing absorbent and moisture-wicking multicolored chenille carpets is characterized in that: the dyeing apparatus includes a transverse frame, a fabric feeder, a dyeing unit, and a dyeing basket; the dyeing unit is installed inside the transverse frame and is used to dye carpet fabric; the dyeing basket is used to hold carpet fabric; the fabric feeder is installed on the transverse frame and is used to grab the dyeing basket containing carpet fabric and feed the dyeing basket into the dyeing unit or out of the dyeing unit.
[0007] Furthermore, the dyeing unit includes a No. 1 dyeing machine, a No. 2 dyeing machine, a washing machine, and a drying machine. The No. 1 dyeing machine is used to dye the polyester in the carpet fabric, the No. 2 dyeing machine is used to dye the polyester in the carpet fabric, the washing machine is used to wash the dyed carpet fabric, and the drying machine is used to dry the dyed carpet fabric. The fabric feeding machine picks up the dyeing basket containing the carpet fabric and feeds and discharges the fabric into the No. 1 dyeing machine, the No. 2 dyeing machine, the washing machine, and the drying machine.
[0008] Furthermore, the fabric inlets of dyeing machine No. 1, dyeing machine No. 2, washing machine and dryer are all equipped with cover assemblies, which automatically open or close dyeing machine No. 1, dyeing machine No. 2, washing machine and dryer.
[0009] Furthermore, the cover assembly includes a cover, a switch cylinder, a switch rod, a cylinder seat, and a switch seat. The cover matches the fabric inlet. The switch cylinder is hinged to the cylinder seat. The piston rod of the switch cylinder is hinged to the head of the switch rod to control the switch rod. The switch rod is connected to the cover to drive the cover to open or close. The tail of the switch rod is hinged to the switch seat. When the switch cylinder retracts, it controls the switch rod to open the cover. When the switch cylinder extends, it controls the switch rod to close the cover.
[0010] Furthermore, the bottom of dyeing machine No. 1, dyeing machine No. 2, and washing machine are all equipped with rotating components. The rotating components are connected to connecting shafts. The bottom of the dyeing basket is equipped with shaft holes. The connecting shaft and shaft holes are matched. The connecting shaft is connected to an electromagnet. An iron block is installed at the shaft hole. The electromagnet is used to magnetically attract the iron block, thereby fixing the dyeing basket to the connecting shaft. The rotating components drive the dyeing basket to rotate.
[0011] Furthermore, the fabric feeding machine includes a transverse movement mechanism, a lifting mechanism, and a gripping mechanism. The transverse movement mechanism is used to drive the fabric feeding machine to move laterally on the transverse movement frame, the lifting mechanism is used to drive the gripping mechanism to lift and lower, and the gripping mechanism is used to grip or lower the dyeing basket.
[0012] Furthermore, the lifting mechanism includes a lifting motor unit, a lifting drive sprocket, a lifting driven sprocket, a lifting chain, and a lifting frame. The lifting motor unit is connected to the lifting drive sprockets on both sides through a lifting main shaft. The lifting drive sprocket and the corresponding lifting driven sprocket are driven by the lifting chain. The lifting chain is connected to the lifting frame, driving the lifting frame to rise and fall. The lifting frame is connected to the gripping mechanism, driving the gripping mechanism to rise and fall.
[0013] Furthermore, the traversing mechanism includes a traversing motor unit and a wheel frame. The wheel frame contains a traversing driving wheel and a traversing driven wheel. The traversing motor unit is connected to the traversing driving wheel in the wheel frame on both sides through the traversing main shaft. The traversing driving wheel and the traversing driven wheel traverse on the traversing frame.
[0014] Furthermore, the gripping mechanism includes two sets of cooperating gripping components. Each gripping component includes a gripping cylinder and a gripping bracket. The gripping cylinder is connected to the gripping bracket, and the bottom of the gripping bracket is provided with a gripping hook, which grips the dyeing basket.
[0015] Furthermore, the surface of the dyeing basket is provided with through holes, through which the dye solution enters the dyeing basket. The upper end of the dyeing basket is provided with a basket support, which is matched with a hook. The hook grabs the dyeing basket by grabbing the basket support.
[0016] The above technical solution has the following beneficial effects:
[0017] This invention relates to a dyeing device for dyeing absorbent and moisture-wicking multicolored chenille carpets. It includes a transverse frame, a fabric feeder, a dyeing unit, and a dyeing basket. The dyeing basket holds the carpet fabric to be dyed, and the fabric feeder moves the basket into the dyeing unit and removes it after dyeing, achieving automatic fabric feeding and discharging, thus automating the dyeing process. It allows for continuous dyeing operations, significantly improving production efficiency. The dyeing process requires no manual labor, achieving contactless dyeing and improving safety.
[0018] The dyeing unit includes a No. 1 dyeing machine and a No. 2 dyeing machine. The No. 1 dyeing machine and the No. 2 dyeing machine respectively perform iterative polyester dyeing process and polyester dyeing process. According to the actual production requirements, it can be adaptively adjusted to meet different dyeing requirements. Attached Figure Description
[0019] The present invention will be further described below with reference to the accompanying drawings:
[0020] Figure 1 This is a schematic diagram of the staining apparatus;
[0021] Figure 2 This is a schematic diagram of dyeing machine No. 1, dyeing machine No. 2, washing machine, and drying machine;
[0022] Figure 3 This is a structural schematic diagram of the hood assembly;
[0023] Figure 4 This is a schematic diagram of the connecting shaft;
[0024] Figure 5 A schematic diagram of the dyeing basket from a top-down perspective;
[0025] Figure 6 A schematic diagram of the dyeing basket from bottom to top;
[0026] Figure 7 This is a schematic diagram of the fabric feeding machine;
[0027] Figure 8 for Figure 7 A schematic diagram of the structure along direction A.
[0028] The attached diagrams are labeled as follows: 1. Horizontal movement frame; 2. No. 1 dyeing machine; 21. Fabric inlet; 22. Connecting shaft; 23. Electromagnet; 3. No. 2 dyeing machine; 4. Washing machine; 5. Drying machine; 6. Fabric feeding machine; 61. Frame; 62. Lifting mechanism; 621. Lifting motor assembly; 622. Lifting main shaft; 623. Lifting drive sprocket; 624. Lifting driven sprocket; 625. Lifting frame; 626. Horizontal movement mechanism; 631. Horizontal movement motor assembly; 632. Horizontal movement drive chain. Wheel 633, transverse chain 634, transverse driven sprocket 635, wheel frame 636, transverse drive wheel 637, transverse driven wheel 638, small pulley 639, gripping mechanism 64, gripping cylinder 641, pulley assembly 642, gripping bracket 643, gripping hook 644, machine cover assembly 7, cylinder seat 71, switch cylinder 72, switch rod 73, switch seat 74, machine cover 75, dyeing basket 8, basket bracket 81, iron block 82, through hole 83, shaft hole 84. Detailed Implementation
[0029] This utility model aims to provide a dyeing device for preparing absorbent and moisture-wicking multicolored chenille carpets. It includes a transverse frame, a fabric feeder, a dyeing unit, and a dyeing basket. The dyeing basket is used to place the carpet fabric to be dyed. The fabric feeder is used to move the dyeing basket into the dyeing unit and send it out from the dyeing unit after dyeing, realizing automatic fabric feeding and discharging, achieving the purpose of automated dyeing operation, and enabling continuous dyeing operation, which significantly improves production efficiency.
[0030] The technical solution of this utility model will be described in detail below with reference to specific embodiments.
[0031] This chenille carpet fabric is made from chenille yarn. The pile yarn of the chenille yarn is a blended yarn with hydrophilic iterative polyester as the main component and polyester as the auxiliary component, while the core yarn is a blended yarn with polyester as the main component and iterative polyester as the auxiliary component. The chenille yarn is produced using a chenille twisting machine to obtain iterative polyester-based chenille yarn. After obtaining the chenille yarn, a tufting process is performed. Tufting fixes the chenille yarn onto a specific base fabric to form a fabric with a pile surface, resulting in the chenille carpet fabric. The base fabric is a double-layered fabric made from iterative polyester and polyester, consisting of an outer layer and an inner layer. The outer layer is polyester, and the inner layer is iterative polyester.
[0032] After obtaining the chenille carpet fabric, multi-colored chenille carpet fabric is prepared through a dyeing process; the carpet fabric contains polyester and polyester blends, and the dyeing processes for the two fabrics are different, namely:
[0033] Iterative polyester dyeing process: The dye is a disperse dye, the dyeing temperature is 100~110 ℃, the dyeing time is 30 min, and the dyeing pH is 5~6.
[0034] Polyester is dyed with disperse dyes at a temperature of 130-140 ℃, a dyeing time of 30 min, and a pH of 5-6.
[0035] To facilitate the dyeing of carpet fabrics, this utility model describes a dyeing device, such as... Figure 1 As shown, the dyeing apparatus includes a transverse frame 1, a fabric feeder 6, and a dyeing unit. The dyeing unit includes a first dyeing machine 2, a second dyeing machine 3, a washing machine 4, and a dryer 5. The first dyeing machine 2 is installed at position one within the transverse frame 1 and is used to perform the dyeing process for iterative polyester. The second dyeing machine 3 is installed at position two within the transverse frame 1 and is used to perform the dyeing process for polyester. The washing machine 4 is installed at position three within the transverse frame 1 and is used to wash the dyed chenille carpet fabric. The dryer 5 is installed at position four within the transverse frame 1 and is used to dry the dyed chenille carpet fabric. To facilitate the dyeing operation, the chenille carpet fabric is pre-placed in a dyeing basket 8. The fabric feeder 6 is installed on the transverse frame 1 and can move transversely on the transverse frame 1. It is used to pick up the dyeing basket 8 containing the chenille carpet fabric and feed the fabric into and out of the first dyeing machine 2, the second dyeing machine 3, the washing machine 4, and the dryer 5. This dyeing device achieves automated dyeing operations. It uses a fabric feeder 6 for automatic fabric feeding and output, and automatically completes dyeing, washing, or drying operations within each machine, enabling continuous dyeing and significantly improving production efficiency. No manual labor is required during the dyeing process, achieving contactless dyeing and improving safety. Furthermore, dyeing machines 2 and 3 respectively execute iterative polyester dyeing processes, which can be adaptively adjusted to meet different production process requirements.
[0036] like Figure 5 and Figure 6 As shown, the dyeing basket 8 has several through holes 83 on its surface so that the dyeing liquid can enter the dyeing basket 8 to dye the fabric. The upper end of the dyeing basket 8 is provided with a basket support 81 so that the fabric feeder 6 can grab the dyeing basket 8.
[0037] like Figure 2 and Figure 3As shown, the inlets 21 of dyeing machine 2, dyeing machine 3, washing machine 4, and drying machine 5 are all equipped with cover assemblies 7. The cover assembly 7 includes a cover 75, a switching cylinder 72, a switching rod 73, a cylinder seat 71, and a switch seat 74. The cover 75 matches the inlet 21. The switching cylinder 72 is hinged to the cylinder seat 71. The piston rod of the switching cylinder 72 is hinged to the head of the switching rod 73 to control the switching rod 73. The switching rod 73 is connected to the cover 75 to open or close the cover 75. The tail of the switching rod 73 is hinged to the switch seat 74. When the switching cylinder 72 retracts, it controls the switching rod 73 to open the cover 75; when the switching cylinder 72 extends, it controls the switching rod 73 to close the cover 75. Two sets of the switching cylinder 72, switching rod 73, cylinder seat 71, and switch seat 74 are provided, and these two sets cooperate to control the opening or closing of the cover 75, improving stability. The cover 75 component 7 of this utility model can automatically open or close the fabric inlet 21. When it is necessary to feed or discharge fabric, the fabric inlet 21 is opened, and the fabric feeding machine 6 is used to realize the feeding and discharging of fabric. When the actual operation is carried out, the fabric inlet 21 is closed, and the fabric feeding machine 6 is used to complete the automated dyeing operation.
[0038] The bottom of dyeing machine 2 (No. 1), dyeing machine 3 (No. 2), and washing machine 4 are all equipped with rotating components (not shown in the figure). The rotating motor of the rotating component is connected to a connecting shaft 22 through a rotating shaft, driving the connecting shaft 22 to rotate. Figure 4 The diagram shows the connecting shaft 22 of dyeing machine 2 (number one). The connecting shaft 22 of dyeing machine 3 and washing machine 4 is configured the same way. Figure 6 and Figure 7 As shown, the bottom of the dyeing basket 8 is provided with a shaft hole 84. The connecting shaft 22 is matched with the shaft hole 84. After the dyeing basket 8 is fed in, the connecting shaft 22 is inserted into the shaft hole 84. An electromagnet 23 is provided at the end of the connecting shaft 22, and an iron block 82 is installed at the shaft hole 84. The electromagnet 23 is used to magnetically attract the iron block 82, thereby fixing the connecting shaft 22 to the dyeing basket 8. The rotating component drives the dyeing basket 8 to rotate, which not only has a stirring effect, but also drives the fabric inside the dyeing basket 8 to rotate together, improving the dyeing and washing effect.
[0039] like Figure 7 and Figure 8 As shown, the fabric feeding machine 6 includes a frame 61 and a transverse mechanism 63, a lifting mechanism 62 and a gripping mechanism 64 connected to the frame 61. The transverse mechanism 63 is used to drive the fabric feeding machine 6 to move transversely on the track of the transverse frame 1. The lifting mechanism 62 is used to drive the gripping mechanism 64 to move up and down. The gripping mechanism 64 is used to grip or lower the dyeing basket 8.
[0040] The lifting mechanism 62 includes a lifting motor assembly 621, a lifting drive sprocket 623, a lifting driven sprocket 625, a lifting chain 624, and a lifting frame 626. The lifting motor assembly 621 is connected to the lifting drive sprockets 623 on both sides via a lifting main shaft 622. The lifting drive sprockets 623 and their corresponding lifting driven sprockets 625 are driven by the lifting chain 624. The lifting chain 624 is connected to the lifting frame 626, driving the lifting frame 626 to rise and fall. The lifting frame 626 is connected to the gripping mechanism 64, thereby driving the gripping mechanism 64 to rise and fall, thus realizing the lifting function. To ensure the stability of the lifting, the lifting mechanism 62 also includes a guide assembly 626, which includes guide wheels and guide rails. The guide rails are installed on the frame 61, and the guide wheels are connected to the lifting frame 626, which can improve the stability of the lifting.
[0041] The lateral movement mechanism 63 includes a lateral movement motor assembly 631 and a wheel frame 636. The wheel frame 636 houses a lateral movement drive wheel 637 and a lateral movement driven wheel 638. The lateral movement motor assembly 631 is connected to two lateral movement drive sprockets 633 on either side via a lateral movement main shaft 632. The lateral movement drive sprockets 633 are connected to lateral movement driven sprockets 635 via a lateral movement chain 634. The lateral movement driven sprockets 635 drive the lateral movement drive wheel 637 within the wheel frame 636, driving the lateral movement drive wheel 637 to slide on the track of the lateral movement frame 1, thereby synchronously driving the lateral movement driven wheel 638 to slide on the track of the lateral movement frame 1, achieving lateral kinetic energy. To ensure the stability of the lateral movement, the lateral movement mechanism 63 also includes a small pulley 639. The small pulley 639 slides on the side of the track of the lateral movement frame 1, serving a limiting function and improving lateral movement stability.
[0042] The gripping mechanism 64 is mounted on the lifting frame 626 and includes two sets of cooperating gripping components. Each set of gripping components includes a gripping cylinder 641 and a gripping bracket 643. The gripping cylinder 641 is connected to the gripping bracket 643, and the bottom of the gripping bracket 643 is provided with a gripping hook 644, which grips the basket support 81 of the dyeing basket 8. The gripping brackets 643 of the two sets of gripping components are arranged facing each other. When the gripping cylinder 641 retracts, the two components move closer together to clamp the dyeing basket 8. When the gripping cylinder 641 extends, the two components move away from each other to release the dyeing basket 8, thus realizing the function of gripping and lowering the dyeing basket 8. To ensure the stability of the movement of the gripping bracket 643, a pulley assembly 642 is provided. The pulley assembly 642 includes a pulley and a slide rail. The slide rail is mounted on the lifting frame 626, and the pulley is connected to the gripping bracket 643, which can improve the stability of the movement of the gripping bracket 643. To further ensure the stability of the crawling process, such as Figure 8 As shown, the gripping mechanism 64 can also be configured with two sets, front and rear, to grip the dyeing basket 8 together.
[0043] The dyeing apparatus can perform the following dyeing processes:
[0044] a. Dyeing only polyester: The fabric containing chenille carpet is first fed into dyeing machine 2 by fabric feeder 6, then into washing machine 4 for washing, and finally into dryer 5 for drying.
[0045] b. Dyeing only polyester: The fabric containing chenille carpet is first fed into dyeing machine 3 by fabric feeder 6, then into washing machine 4 for washing, and finally into dryer 5 for drying.
[0046] c. First dyeing with polyester, then dyeing with polyester: The fabric containing the chenille carpet is first fed into dyeing machine 2 by fabric feeder 6 for first dyeing. After first dyeing, it is sent to washing machine 4 for first washing. After first washing, it is sent to dyeing machine 3 for second dyeing. After second dyeing, it is sent to washing machine 4 for second washing. After second washing, it is sent to dryer 5 for drying.
[0047] Depending on the actual staining requirements, any of the above staining schemes can be implemented to achieve different staining effects.
[0048] The above are merely specific embodiments of this utility model, but the technical features of this utility model are not limited thereto. Any simple changes, equivalent substitutions, or modifications made based on this utility model to solve essentially the same technical problems and achieve essentially the same technical effects are all covered within the protection scope of this utility model.
Claims
1. A dyeing apparatus for preparing absorbent and moisture-wicking multicolored chenille carpets, characterized in that: The dyeing device comprises a horizontal moving frame, a cloth feeding machine, a dyeing machine set and a dyeing basket, the dyeing machine set is installed in the horizontal moving frame and is used for dyeing carpet fabric, the dyeing basket is used for placing carpet fabric, and the cloth feeding machine is installed in the horizontal moving frame and is used for grabbing the dyeing basket with carpet fabric and feeding or discharging the dyeing basket to or from the dyeing machine set.
2. The dyeing apparatus for preparing water-absorbing and moisture-conducting multi-colored chenille carpet according to claim 1, characterized in that: The dyeing machine set comprises a first dyeing machine, a second dyeing machine, a cleaning machine and a drying machine, the first dyeing machine is used for dyeing iteration polyester in carpet fabric, the second dyeing machine is used for dyeing polyester in carpet fabric, the cleaning machine is used for cleaning dyed carpet fabric, and the drying machine is used for drying dyed carpet fabric, and the cloth feeding machine grabs the dyeing basket with carpet fabric and feeds or discharges in or out of the first dyeing machine, the second dyeing machine, the cleaning machine and the drying machine.
3. The dyeing apparatus for preparing water-absorbing and moisture-conducting multi-colored chenille carpet according to claim 2, characterized in that: The cloth feeding machine comprises a horizontal moving mechanism, a lifting mechanism and a grabbing mechanism, the horizontal moving mechanism is used for driving the cloth feeding machine to horizontally move on the horizontal moving frame, the lifting mechanism is used for driving the grabbing mechanism to lift, and the grabbing mechanism is used for grabbing or placing the dyeing basket.
4. The dyeing apparatus for preparing water-absorbing and moisture-conducting multi-colored chenille carpet according to claim 3, characterized in that: The lifting mechanism comprises a lifting motor set, a lifting driving sprocket, a lifting driven sprocket, a lifting chain and a lifting frame, the lifting motor set is connected with the lifting driving sprockets on both sides through a lifting main shaft, the lifting driving sprockets are driven by the lifting chain corresponding to the lifting driven sprockets, the lifting chain is connected with the lifting frame and drives the lifting frame to lift, and the lifting frame is connected with the grabbing mechanism and drives the grabbing mechanism to lift.
5. The dyeing apparatus for preparing water-absorbing and moisture-conducting multi-colored chenille carpet according to claim 3, characterized in that: The lifting mechanism comprises a lifting motor set, a lifting driving sprocket, a lifting driven sprocket, a lifting chain and a lifting frame, the lifting motor set is connected with the lifting driving sprockets on both sides through a lifting main shaft, the lifting driving sprockets are driven by the lifting chain corresponding to the lifting driven sprockets, the lifting chain is connected with the lifting frame and drives the lifting frame to lift, and the lifting frame is connected with the grabbing mechanism and drives the grabbing mechanism to lift.
6. The dyeing apparatus for preparing water-absorbing and moisture-conducting multi-colored chenille carpet according to claim 1, wherein: 7. The dyeing apparatus for preparing water-absorbing and moisture-conducting multi-colored chenille carpet according to claim 6, characterized in that: 8. The dyeing apparatus for preparing water-absorbing and moisture-conducting multi-colored chenille carpet according to claim 6, characterized in that: The horizontal moving mechanism comprises a horizontal moving motor set and a wheel frame, a horizontal moving driving wheel and a horizontal moving driven wheel are arranged in the wheel frame, the horizontal moving motor set is connected with the horizontal moving driving wheels in the wheel frames on both sides through a horizontal moving spindle, and the horizontal moving driving wheel and the horizontal moving driven wheel horizontally move on the horizontal moving frame.
9. The dyeing apparatus for preparing water-absorbing and moisture-conducting multi-colored chenille carpet according to claim 6, characterized in that: The grabbing mechanism comprises two groups of matched grabbing assemblies, the grabbing assembly comprises a grabbing cylinder and a grabbing support, the grabbing cylinder is connected with the grabbing support, the grabbing support is provided with a grabbing hook at the bottom, and the grabbing hook is used for grabbing the dyeing basket.
10. The dyeing apparatus for preparing water-absorbing and moisture-conducting multi-colored chenille carpet according to claim 9, characterized in that: The surface of the dyeing basket is provided with a through hole, dyeing liquid enters into the dyeing basket through the through hole, the upper end of the dyeing basket is provided with a basket support, the basket support is matched with the grabbing hook, and the grabbing hook grabs the dyeing basket by grabbing the basket support.