Textile fabric dyeing device for clothing processing

By incorporating an automatic liquid-adding component and a stirring end into the dyeing device, combined with a heating and fan system, the problems of uneven dyeing and slow drying of fabrics have been solved, achieving uniform dyeing and rapid drying, thus improving processing efficiency and product quality.

CN120889113APending Publication Date: 2025-11-04HUBEI WANSHISHUN CLOTHING CO LTD
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Patent Information

Application Number
CN202511040923.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-07-28
Publication Date
2025-11-04

AI Technical Summary

Technical Problem

Existing fabric dyeing equipment has poor dyeing efficiency, resulting in uneven dyeing and inability to dry quickly, which affects the efficiency of subsequent processing.

Method used

The dyeing chamber is divided into a first chamber, a second chamber, and a dye chamber. The dye is evenly distributed by an automatic liquid dispensing device on the partition, and the dye chamber is equipped with an agitator to maintain the fluidity of the dye. The drying chamber is divided into two transport areas, and heating rods and fans are installed to accelerate drying. The fabric tension is adjusted by a height-adjustable tensioning end.

Benefits of technology

It improves dyeing uniformity and drying efficiency, ensures the fabric remains flat throughout the process, reduces manual intervention, and enhances processing efficiency and product quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a textile fabric dyeing device for clothing processing, which comprises a base, the top of which is provided with a material conveying end; the dyeing box is installed on the base, and a first cavity, a second cavity and a dye cavity are formed in the dyeing box; the first cavity and the second cavity are separated through a partition plate, an automatic liquid adding piece is arranged on the partition plate and used for enabling liquid in the first cavity to automatically flow into the second cavity, a stirring end is arranged in the dye cavity, and a liquid supply end is installed outside the dyeing box. The liquid supply end is used for guiding liquid in the second chamber into the dye chamber; and the drying box is mounted on the base. The cloth dyeing device has the beneficial effects that the technical problems that in the prior art, due to the fact that the cloth dyeing efficiency of a cloth dyeing device is poor, cloth dyeing is not uniform in the dyeing process, the cloth cannot be dried rapidly in dyeing, and follow-up cloth processing is influenced virtually are solved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of clothing, in particular to a textile fabric dyeing device for clothing processing. BACKGROUND

[0002] Clothing dyeing, also known as coloring, is to add color to clothes, which refers to affecting the fabric itself to make it colored by using chemical dyeing agents or other methods. Clothing dyeing has a long history and is constantly developing. In the process of clothing processing, clothing needs to be dyed.

[0003] In the Chinese utility model CN216786491U, a dyeing equipment for clothing processing is provided, which comprises a dyeing tank and a base. The base is fixedly installed at the bottom of the dyeing tank. A dyeing rack is fixedly installed at the top of the dyeing tank. A slide rail is fixedly installed at the inner top of the dyeing rack. A slide groove is formed in the inner side of the slide rail. Two sliding blocks are movably installed in the inner side of the slide groove. The dyeing rack is provided with a slide rail. The slide rail is connected with an extension rod and a clamping plate at the bottom. The extension rod can be adjusted horizontally at the bottom of the slide rail and can drive the clamping plate to lift. The inner side of the clamping plate is provided with a top clamping pad and a bottom clamping pad. The bottom is supported by a movable bottom plate through a spring. The movable bottom plate is pressed upward. The top clamping pad and the bottom clamping pad are pressed. The cloth is flatly clamped and fixed. The cloth is brought into the dyeing tank by the falling of the extension rod to be dyed. Although the device can dye the cloth, the dyeing effect is poor and the dyeing is uneven. After dyeing, the dyed cloth cannot be quickly dried, which affects the subsequent processing efficiency of the cloth. SUMMARY

[0004] The present application aims to overcome the above technical deficiencies and provide a textile fabric dyeing device for clothing processing, which solves the technical problems of poor dyeing efficiency of the cloth, uneven dyeing of the cloth during the dyeing process, and slow drying of the cloth after dyeing, which affects the subsequent processing of the cloth.

[0005] To achieve the above technical purposes, the present application adopts the following technical solutions:

[0006] In a first aspect, the present application provides a textile fabric dyeing device for clothing processing, comprising:

[0007] The base is provided with a material conveying end at the top.

[0008] A dyeing box is installed on the base, a first chamber, a second chamber and a dye chamber are formed in the dyeing box, the first chamber and the second chamber are divided by a partition plate, an automatic liquid adding device is arranged on the partition plate to automatically flow the liquid in the first chamber into the second chamber, an agitating end is arranged in the dye chamber, and a liquid supply end is arranged outside the dyeing box to guide the liquid in the second chamber into the dye chamber.

[0009] A drying box is installed on the base, a limiting shell is vertically installed at the bottom of the drying box to divide the internal space of the drying box into two transportation areas, side wall shells are arranged on both sides of the inner wall of the drying box, first and second heating rods are arranged in the limiting shell and the side wall shell respectively, fans are connected to the surfaces of the limiting shell and the side wall shell, and an adjustable height tension end is arranged above the limiting shell.

[0010] In some embodiments, the material transportation end includes two first transportation rollers and two second transportation rollers, and the two first transportation rollers and the two second transportation rollers are arranged on both sides of the upper end of the base.

[0011] In some embodiments, a plurality of electric heating rods are arranged in a serpentine shape in the first chamber, an inlet is arranged at the upper end of the dyeing box and communicates with the first chamber, a through hole is arranged in the partition plate, and an automatic liquid adding device is arranged at the through hole.

[0012] In some embodiments, the automatic liquid adding device includes a cylinder, two columns and a sealing plate, the cylinder is arranged at the lower end of the partition plate and communicates with the through hole, the columns are fixed on both sides of the lower end of the partition plate and the through hole, the sealing plate is slidably connected to the columns, a sealing block is arranged at the upper end of the sealing plate to block the cylinder, and a floating plate is arranged at the lower end of the sealing plate.

[0013] In some embodiments, a spring strip is wound around the columns, the upper end of the spring strip is connected to the partition plate, and the lower end of the spring strip is connected to the sealing plate.

[0014] In some embodiments, the agitating end includes a first motor, a first shaft and a second shaft, the first motor is arranged outside the dyeing box, the first shaft and the second shaft are arranged in parallel in the dye chamber, the output end of the first motor is connected to one end of the first shaft, the distal ends of the first shaft and the second shaft penetrate the dyeing box and are respectively connected to a main gear and a secondary gear, a transmission gear chain is engaged between the main gear and the secondary gear, and stirring blades are arranged on the outer periphery of the first shaft and the second shaft.

[0015] In some embodiments, the liquid supply end comprises a flow guide and a first pump body, the flow guide is used to communicate the second chamber and the dye chamber, and the first pump body is installed on the flow guide.

[0016] In some embodiments, a frame is arranged in the dye chamber, a plurality of cloth guide rollers are further arranged in the frame, a gap is maintained between the frame and the inner wall of the dyeing box, and a heating end is snakelike wound at the gap, the heating end comprises a heat storage box, a heat conducting pipe and a second pump body, the heat storage box is installed outside the dyeing box, the heat conducting pipe is snakelike wound outside the frame, both ends of the heat conducting pipe extend into the heat storage box and form a height difference, and the second pump body is installed on the heat conducting pipe.

[0017] In some embodiments, the tensioning end comprises a tensioning wheel, a mounting frame and an electric telescopic rod, the tensioning wheel is rotatably connected to the mounting frame, and the electric telescopic rod is connected to the upper end of the mounting frame, and the electric telescopic rod is installed at the top of the inner cavity of the drying box.

[0018] In some embodiments, a material conveying mechanism cooperating with the material conveying end is further arranged on the base, the material conveying mechanism comprises a first auxiliary roller and a second auxiliary roller, the first auxiliary roller comprises two first rollers and two second rollers, the second auxiliary roller comprises two third rollers and two fourth rollers, and the two first rollers and the two second rollers are arranged on the two sides of the dyeing box respectively, and the two third rollers and the two fourth rollers are arranged on the two sides of the drying box respectively.

[0019] Compared with the prior art, the textile fabric dyeing device for clothing processing provided by the present application has the following advantages: a first chamber, a second chamber and a dye chamber are arranged in the dyeing box, automatic liquid adding elements on the partition plate are used to realize automatic flow of liquid from the first chamber to the second chamber, so that the dye can be more uniformly distributed on the fabric, the uniformity of dyeing is improved, an agitating end is arranged in the dye chamber, the flowability of the dye can be effectively maintained, and the dye is prevented from precipitating, so that the uniformity and quality of dyeing are further ensured, the inner space of the drying box is divided into two conveying areas by a limiting shell, a first heating rod and a second heating rod are respectively installed in the two areas, and a fan is arranged, the temperature in the drying box can be quickly increased, air circulation can be promoted by the fan, the evaporation speed of water on the surface of the fabric is accelerated, and the drying efficiency of the fabric is significantly improved, a height-adjustable tensioning end is arranged, the tension of the fabric can be adjusted during the drying process, the uneven drying phenomenon caused by fabric relaxation is avoided, and the flatness and drying effect of the fabric during the entire drying process are ensured. BRIEF DESCRIPTION OF DRAWINGS

[0020] Figure 1It is the inside view of the textile fabric dyeing device for clothing processing provided by the embodiment of the application;

[0021] Figure 2 It is the inside view of the textile fabric dyeing device for clothing processing provided by the embodiment of the application; Figure 1 It is the enlarged view of the inside view of the textile fabric dyeing device for clothing processing provided by the embodiment of the application;

[0022] Figure 3 It is the inside view of the drying box of the textile fabric dyeing device for clothing processing provided by the embodiment of the application;

[0023] Figure 4 It is the top view of the textile fabric dyeing device for clothing processing provided by the embodiment of the application;

[0024] Figure 5 It is the heating end structure view of the textile fabric dyeing device for clothing processing provided by the embodiment of the application;

[0025] Figure 6 It is the material conveying mechanism view of the textile fabric dyeing device for clothing processing provided by the embodiment of the application;

[0026] Figure 7 It is the back view of the textile fabric dyeing device for clothing processing provided by the embodiment of the application;

[0027] Figure 8 It is the overall view of the textile fabric dyeing device for clothing processing provided by the embodiment of the application.

[0028] Explanation of reference numerals: 1, base; 11, material conveying end; 111, first conveying roller; 112, second conveying roller; 2, dyeing box; 21, partition plate; 211, first cavity; 2111, electric heating rod; 212, second cavity; 22, automatic liquid adding part; 221, cylinder body; 222, column body; 2221, spring strip; 223, sealing plate; 2231, sealing block; 2232, floating plate; 23, stirring end; 231, first motor; 232, first shaft body; 233, second shaft body; 234, main gear; 235, auxiliary gear; 236, transmission gear chain; 237, stirring blade; 24, liquid supplying end; 241, flow guide pipe; 242, first pump body; 25, dye cavity; 251, frame body; 26, heating end; 261, heat storage box; 262, heat conduction pipe; 263, second pump body; 3, drying box; 31, limiting shell; 311, first heating rod; 32, side wall shell; 321, second heating rod; 33, fan; 34, tensioning end; 341, tensioning wheel; 342, mounting rack; 343, electric telescopic rod; 4, material conveying mechanism; 41, first auxiliary roller; 411, first roller cylinder; 412, second roller cylinder; 42, second auxiliary roller; 421, third roller cylinder; 422, fourth roller cylinder. DETAILED DESCRIPTION

[0029] In order to make the purpose, technical scheme and advantages of the present application more clear, the present application is further described in detail below in combination with the drawings and examples. It should be understood that the specific examples described herein are only used to explain the present application and do not limit the present application.

[0030] In order to solve the technical problems in the prior art that the dyeing efficiency of the cloth is poor, the dyeing of the cloth is not uniform, and the cloth cannot be dried quickly after dyeing, thereby affecting the subsequent cloth processing, the present application provides a textile cloth dyeing device for clothing processing, which can realize uniform dyeing of the cloth and facilitate rapid drying after dyeing, reduces subsequent processing steps, and improves work efficiency.

[0031] It should be noted that the textile cloth dyeing device for clothing processing is used in but not limited to the field of textile technology. In order to facilitate the description, in the present application, only the textile cloth dyeing device for clothing processing applied in the field of textile technology is taken as an example for description, and the principle of the textile cloth dyeing device for clothing processing applied in other types of equipment is substantially the same as that applied in the field of textile technology, which is not described here.

[0032] Please refer to Figure 1 , Figure 1 FIG. 1 is a structural schematic diagram of the textile cloth dyeing device for clothing processing in an embodiment of the present application. The textile cloth dyeing device for clothing processing comprises:

[0033] a base 1, the top of which is provided with a material conveying end 11;

[0034] a dyeing box 2, which is installed on the base 1, and a first chamber 211, a second chamber 212 and a dye chamber 25 are formed in the dyeing box 2; the first chamber 211 and the second chamber 212 are divided by a partition plate 21, the partition plate 21 is provided with an automatic liquid adding member 22 for automatically flowing the liquid in the first chamber 211 into the second chamber 212, the dye chamber 25 is provided with an agitating end 23, and the dyeing box 2 is externally provided with a liquid supply end 24 for guiding the liquid in the second chamber 212 into the dye chamber 25;

[0035] a drying box 3, which is installed on the base 1, a limiting shell 31 is vertically installed at the bottom of the drying box 3, the limiting shell 31 divides the internal space of the drying box 3 into two transportation areas, and the two sides of the inner wall of the drying box 3 are provided with side wall shells 32, the limiting shell 31 and the side wall shells 32 are respectively provided with first heating rods 311 and second heating rods 321, and the surfaces of the limiting shell 31 and the side wall shells 32 are further connected with a fan 33, and an adjustable height tension end 34 is arranged above the limiting shell 31.

[0036] In this embodiment, by setting the first chamber 211, the second chamber 212 and the dye chamber 25 in the dyeing box 2, and realizing the automatic flow of liquid from the first chamber 211 to the second chamber 212 through the automatic liquid adding part 22 on the partition plate 21, it ensures that the dye can be more evenly distributed on the cloth, improves the uniformity of dyeing, and sets the stirring end 23 inside the dye chamber 25, which can effectively maintain the fluidity of the dye and prevent the dye from precipitating, thereby further ensuring the uniformity and quality of dyeing. The internal space of the drying box 3 is divided into two transportation areas by the limiting shell 31, the first heating rod 311 and the second heating rod 321 are respectively installed in the areas, and the fan 33 is equipped, which not only can quickly increase the temperature in the drying box 3, but also can promote air circulation through the fan 33 to speed up the evaporation speed of water on the surface of the cloth, significantly improve the drying efficiency of the cloth. Through an adjustable height tension end 34, it is helpful to adjust the tension of the cloth during the drying process, avoid the uneven drying phenomenon caused by the relaxation of the cloth, and ensure the flatness and drying effect of the cloth during the whole drying process.

[0037] In one embodiment, please refer to Figure 1 and Figure 8 In order to improve the transportation efficiency of the device for cloth, the material conveying end 11 includes two first conveying rollers 111 and two second conveying rollers 112, the two first conveying rollers 111 and the two second conveying rollers 112 are respectively arranged on both sides of the upper end of the base 1, and the base 1 is further provided with a material conveying mechanism 4 matched with the material conveying end 11, the material conveying mechanism 4 includes a first auxiliary roller 41 and a second auxiliary roller 42, the first auxiliary roller 41 includes two first roller barrels 411 and two second roller barrels 412, the second auxiliary roller 42 includes two third roller barrels 421 and two fourth roller barrels 422, the two first roller barrels 411 and the two second roller barrels 412 are respectively arranged on both sides of the dyeing box 2, and the two third roller barrels 421 and the two fourth roller barrels 422 are respectively arranged on both sides of the drying box 3.

[0038] In this embodiment, by setting multiple conveying rollers and auxiliary rollers, stable support can be provided for the cloth, reducing the deviation or slipping phenomenon of the cloth during transmission. The cooperation of multiple rollers and auxiliary rollers ensures that the tension on the cloth during the entire dyeing and drying process is uniformly distributed, reducing the risk of cloth damage caused by local stress concentration. At the same time, the positions of the conveying rollers and auxiliary rollers can be adjusted according to actual needs to better adapt to different types of cloth processing requirements. By setting a reasonable transportation path, the cloth can be continuously transferred from the dyeing box 2 to the drying box 3, reducing downtime and improving overall work efficiency. The entire conveying mechanism 4 can work cooperatively with other devices to achieve full-process automation control, reducing the need for manual intervention. By precisely controlling the tension and guidance of the cloth, wrinkles generated during transportation can be effectively reduced, ensuring the quality of the final product.

[0039] In one embodiment, please refer to Figure 1 Figure 4 To facilitate the processing of dyes, a plurality of electric heating rods 2111 are arranged in a serpentine shape inside the first chamber 211, and an inlet is formed in the upper end of the dyeing box 2 and communicates with the first chamber 211. A through hole is formed in the partition plate 21, and an automatic liquid adding device 22 is arranged at the through hole. The automatic liquid adding device 22 includes a cylinder body 221, two column bodies 222, and a sealing plate 223. The cylinder body 221 is arranged at the lower end of the partition plate 21 and communicates with the through hole. The column bodies 222 are fixed on both sides of the lower end of the partition plate 21. The sealing plate 223 is slidably connected to the column bodies 222. A sealing block 2231 is arranged at the upper end of the sealing plate 223 to block the cylinder body 221. A floating plate 2232 is arranged at the lower end of the sealing plate 223. A spring strip 2221 is wound around the column body 222. The upper end of the spring strip 2221 is connected to the partition plate 21, and the lower end of the spring strip 2221 is connected to the sealing plate 223. The stirring end 23 includes a first motor 231, a first shaft body 232, and a second shaft body 233. The first motor 231 is arranged outside the dyeing box 2, and the first shaft body 232 and the second shaft body 233 are arranged in parallel in the dye chamber 25. The output end of the first motor 231 is connected to one end of the first shaft body 232. The ends of the first shaft body 232 and the second shaft body 233 penetrate the dyeing box 2 and are respectively connected to a main gear 234 and a secondary gear 235. The main gear 234 and the secondary gear 235 are engaged with a transmission gear chain 236. The outer periphery of the first shaft body 232 and the second shaft body 233 is arranged with stirring blades 237.

[0040] ​In this embodiment, the multiple electric heating rods 2111 are arranged in a serpentine shape inside the first chamber 211, which not only provides uniform heat distribution and ensures that the dye solution maintains a consistent temperature throughout the chamber, but also improves thermal efficiency and reduces energy loss. By arranging the heating elements reasonably, precise control of the temperature of the dye solution can be achieved, which is particularly important for fabrics that need to be dyed at a specific temperature. The automatic liquid adding device 22 is composed of a cylinder 221, a column 222, a sealing plate 223, and other components, and is provided with a floating plate 2232 and a spring strip 2221 to control the movement of the sealing plate 223. When the liquid level in the second chamber 212 rises, the floating plate 2232 will float up, driving the sealing plate 223 to move, thereby sealing the cylinder 221, and the liquid is pre-stored in the first chamber 211. Conversely, when the liquid level in the second chamber 212 decreases, the spring strip 2221 will push the sealing plate 223 to open the cylinder 221, and the liquid in the first chamber 211 will enter the second chamber 212 through the cylinder 221, thereby achieving automatic adjustment of the liquid without manual intervention, improving the safety and convenience of operation. The presence of the automatic liquid adding device 22 allows the liquid to automatically flow from one chamber to another according to actual needs, ensuring that the liquid quantity during the dyeing process is always in the best state, avoiding uneven dyeing caused by excessive or insufficient liquid. The stirring end 23 includes a first motor 231, a first shaft 232, and a second shaft 233, wherein the first motor 231 drives the first shaft 232 to rotate, and then transmits power to the second shaft 233 through the main gear 234, the secondary gear 235, and the transmission gear chain 236. The two parallel shafts are arranged with stirring blades 237 on the outer periphery, which not only increases the stirring range, but also forms a complex flow field, further promoting the mixing uniformity of the dye solution. The double-shaft parallel working mode significantly enhances the stirring efficiency, allowing the dye solution to reach the ideal mixing state in a short time, ensuring that each piece of fabric is evenly dyed, and improving the quality of the final product. The components such as the electric heating rods 2111, the automatic liquid adding device 22, and the stirring end 23 effectively improve the production efficiency.

[0041] In one of the embodiments, please refer to Figure 1 , Figure 4 and Figure 6To improve the heating efficiency inside the frame 251, the liquid supply end 24 comprises a flow guide pipe 241 and a first pump body 242, the flow guide pipe 241 is used to communicate the second chamber 212 and the dye chamber 25, the first pump body 242 is installed on the flow guide pipe 241, the frame 251 is arranged in the dye chamber 25, and a plurality of cloth guide rollers are further arranged in the frame 251, a gap is maintained between the frame 251 and the inner wall of the dyeing tank 2, and the heating end 26 is snakelike wound at the gap, the heating end 26 comprises a heat storage tank 261, a heat conducting pipe 262 and a second pump body 263, the heat storage tank 261 is installed outside the dyeing tank 2, the heat conducting pipe 262 is snakelike wound outside the frame 251, both ends of the heat conducting pipe 262 extend into the heat storage tank 261 and form a height difference, and the second pump body 263 is installed on the heat conducting pipe 262.

[0042] In the embodiment, the liquid supply end 24 comprises the flow guide pipe 241 and the first pump body 242, the liquid in the second chamber 212 is introduced into the dye chamber 25 through the flow guide pipe 241, which can ensure the stable supply of the required dye during the dyeing process, and the liquid flow can be accurately adjusted through the first pump body 242 to adapt to different dyeing needs, the presence of the first pump body 242 makes the liquid transmission process more controllable, the liquid flow speed can be adjusted according to actual needs to ensure that the dye can be introduced into the dye chamber 25 at the optimal speed at different stages, improve the consistency and uniformity of dyeing, the heating end 26 is composed of the heat storage tank 261, the heat conducting pipe 262 and the second pump body 263, the heat conducting pipe 262 is snakelike wound outside the frame 251, and both ends extend into the heat storage tank 261 to form a height difference, which not only increases the heat transfer area and improves the heat transfer efficiency, but also realizes the circulating flow of the heat medium through the second pump body 263, further improves the heating efficiency, and the heat storage tank 261 is installed outside the dyeing tank 2, which can not only avoid the influence of the too crowded internal space on the operation, but also effectively prevent damage to other parts of the equipment due to high temperature, and the heat conducting pipe 262 is arranged in a snakelike winding manner to ensure that the heat is uniformly distributed around the entire frame 251, ensuring the uniformity of the dye solution temperature, wherein a heating element is further arranged in the dye tank, a water inlet and a water outlet are formed in the dye tank, and a gap is maintained between the frame 251 in the dye chamber 25 and the inner wall of the dyeing tank 2, which is helpful for the installation and maintenance of the heating system, and can also promote the full mixing of the dye solution around the frame 251, avoid local overheating or cooling phenomenon, thereby improving the solubility and activity of the dye, enhancing the dyeing effect, and through the reasonable layout of the heat conducting pipe 262 and the action of the second pump body 263, a stable temperature field can be formed in the dye chamber 25, so that the dye solution reacts at the optimal temperature, further improving the dyeing quality and efficiency.

[0043] In one of the embodiments, please refer to Figures 3-6In order to facilitate the position height of the tensioning end 34, the tensioning end 34 comprises a tensioning wheel 341, a mounting frame 342 and an electric telescopic rod 343, the tensioning wheel 341 is rotationally connected to the mounting frame 342, and the electric telescopic rod 343 is connected to the upper end of the mounting frame 342, and the electric telescopic rod 343 is installed at the top of the inner cavity of the drying box 3.

[0044] In this embodiment, the tensioning wheel 341 can effectively maintain the proper tension of the cloth during the drying process, prevent wrinkles or irregular stretch deformation of the cloth due to relaxation, ensure the flatness of the cloth surface, and through the precise control of the tension of the cloth, the cloth can be uniformly affected by the hot air in the whole drying process, so as to realize more uniform drying effect, avoid the problem of local over-drying or over-wetting, since the tensioning wheel is connected to the electric telescopic rod 343 through the mounting frame 342, the height position of the tensioning wheel can be adjusted according to the cloth of different thickness and material, to adapt to the processing requirements of various types of cloth, improve the versatility and flexibility of the equipment, if it is necessary to adjust in real time according to the specific state of the cloth, such as shrinkage or expansion caused by humidity change, the electric telescopic rod 343 can quickly respond and make corresponding position change, to ensure the continuity and stability of the whole production process, the position of the tensioning wheel is automatically adjusted by the electric telescopic rod 343, reduces the demand for manual intervention, reduces the labor intensity, and improves the work efficiency and safety.

[0045] In order to better understand the present application, the following is combined with Figures 1 to 8The technical solutions of the application are described in detail: The cloth first starts from the input end of the device, is guided through the material conveying end 11 provided on the base 1, the material conveying end 11 includes two first conveying rollers 111 and two second conveying rollers 112, which are respectively arranged on the two sides of the upper end of the base 1, and the base 1 is further provided with a material conveying mechanism 4 matched therewith, the material conveying mechanism 4 includes a first auxiliary roller 41 and a second auxiliary roller 42, which are respectively composed of a plurality of roller barrels, for stably conveying the cloth and ensuring that the cloth does not deviate or slip during the conveying process, the cloth is guided into the dyeing box 2 under the cooperation of the material conveying end 11 and the material conveying mechanism 4, the inside of the dyeing box 2 is divided into three areas of a first chamber 211, a second chamber 212 and a dye chamber 25 by a partition plate 21, a plurality of electric heating rods 2111 are arranged in a serpentine manner in the first chamber 211, for heating the liquid to reach the required temperature for dyeing, a feed inlet is provided on the upper end of the dyeing box 2 and communicates with the first chamber 211, for injecting the dye solution into the first chamber 211, when the liquid level in the second chamber 212 reaches the set height, the liquid surface rises to drive the floating plate 2232 in the automatic liquid adding piece 22 to float, thereby driving the sealing plate 223 to move, so that the sealing block 2231 seals the cylinder body 221, at this time the dye solution in the first chamber 211 cannot flow into the second chamber 212 through the cylinder body 221, when the liquid is added into the inside of the frame body 251 from the second chamber 212 through the first pump body 242, the liquid level in the second chamber 212 decreases, the sealing plate 223 is driven by the floating plate 2232 to move downward on the column body 222, at this time the sealing block 2231 on the upper end of the sealing plate 223 does not seal the cylinder body 221, the liquid in the first chamber 211 enters the second chamber 212 through the cylinder body 221, when the liquid level in the second chamber 212 rises, the sealing plate 223 seals the lower end of the cylinder body 221 again, the automatic liquid adding piece 22 includes the cylinder body 221, the column body 222, the sealing plate 223, the floating plate 2232 and the spring strip 2221 and the like, can automatically control the inflow of the liquid according to the change of the liquid level, realizes the automatic replenishment and stable supply of the dye solution, without manual intervention, improves the automation degree and operation convenience of the dyeing process.The dye solution in the second chamber 212 is introduced into the dye chamber 25 through the liquid supply end 24, which comprises a flow guide pipe 241 and a first pump body 242. The first pump body 242 can adjust the liquid flow to ensure that the dye solution is stably and uniformly delivered to the dye chamber 25. The dye chamber 25 is provided with a frame 251, and a gap is maintained between the frame 251 and the inner wall of the dyeing box 2. A heating end 26 is wound in a serpentine shape in the gap. The heating end 26 comprises a heat storage box 261, a heat conducting pipe 262, and a second pump body 263. The heat conducting pipe 262 extends into the heat storage box 261 at both ends and forms a height difference. The second pump body 263 drives the circulation of the heat conducting medium, thereby uniformly heating the dye chamber 25 and ensuring that the dyeing is carried out at an optimal temperature, improving the dyeing uniformity and dyeing quality. At the same time, the dye chamber 25 is also provided with an agitating end 23. The agitating end 23 comprises a first motor 231, a first shaft body 232, a second shaft body 233, a main gear 234, a secondary gear 235, a transmission gear chain 236, and stirring blades 237. The first motor 231 drives the first shaft body 232 to rotate, which in turn drives the second shaft body 233 to rotate synchronously through the gear and transmission gear chain 236. The stirring blades 237 arranged on the outer periphery of the two shaft bodies fully stir the dye solution, preventing dye precipitation and further improving dyeing uniformity. After the cloth completes dyeing in the dye chamber 25, it continues to be transported forward into the drying box 3. The drying box 3 is internally provided with a limiting shell 31 vertically installed at the bottom, which divides the internal space of the drying box 3 into two transportation areas. The limiting shell 31 and the side wall shells 32 on both sides are respectively provided with a first heating rod 311 and a second heating rod 321, and a fan 33 is connected to the surface of the heating rods. The heating rods heat the air, and the fan 33 accelerates the circulation of the hot air in the drying box 3, causing the water on the surface of the cloth to evaporate quickly, thereby achieving efficient drying. During the drying process, the cloth passes through a tensioning end 34, which comprises a tensioning wheel 341, a mounting frame 342, and an electric telescopic rod 343. The tensioning wheel 341 is connected to the electric telescopic rod 343 through the mounting frame 342 and can automatically adjust the height according to the thickness and state of the cloth, thereby applying appropriate tension to the cloth to prevent wrinkles caused by relaxation and ensure the uniformity of the drying process and the flatness of the cloth. The cloth that has completed the dyeing and drying processes is output from the output end of the drying box 3 and enters the subsequent processing flow.

[0046] The specific embodiments of the application described above do not constitute a limitation on the scope of protection of the application. Any other corresponding changes and modifications made in accordance with the technical concept of the application should be included within the scope of protection of the claims of the application.

Claims

1. A textile dyeing apparatus for garment processing, characterized in that, include: The base has a material conveying end at its top; A dyeing chamber is mounted on the base. The dyeing chamber contains a first chamber, a second chamber, and a dye chamber. The first chamber and the second chamber are separated by a partition. An automatic liquid-feeding device is provided on the partition to allow liquid from the first chamber to automatically flow into the second chamber. The dye chamber is equipped with an agitator, and a liquid supply end is installed on the outside of the dyeing chamber to introduce liquid from the second chamber into the dye chamber. A drying oven is mounted on the base. A limiting shell is vertically installed at the bottom of the drying oven, which divides the internal space of the drying oven into two transport areas. Side wall shells are provided on both sides of the inner wall of the drying oven. A first heating rod and a second heating rod are respectively provided in the limiting shell and the side wall shell. A fan is also connected to the surface of the limiting shell and the side wall shell. An adjustable tensioning end is provided above the limiting shell.

2. The textile dyeing apparatus for garment processing according to claim 1, characterized in that: The material conveying end includes two first conveying rollers and two second conveying rollers, which are respectively disposed on both sides of the upper end of the base.

3. The textile dyeing apparatus for garment processing according to claim 1, characterized in that: The first chamber has multiple electric heating rods arranged in a serpentine pattern inside, and the dyeing box has a feed inlet at the top that communicates with the first chamber. The partition has through holes, and an automatic liquid dispensing device is installed at the through holes.

4. A textile dyeing apparatus for garment processing according to claim 3, characterized in that: The automatic liquid dispensing device includes a cylinder, two columns, and a sealing plate. The cylinder is located at the lower end of the partition and communicates with the through hole. The columns are located at the lower end of the partition and fixed on both sides of the through hole. The sealing plate is slidably connected to the columns. The upper end of the sealing plate is provided with a sealing block for blocking the cylinder, and the lower end of the sealing plate is provided with a float plate.

5. A textile dyeing apparatus for garment processing according to claim 4, characterized in that: A spring strip is wound around the column, with the upper end of the spring strip connected to the partition plate and the lower end of the spring strip connected to the sealing plate.

6. A textile dyeing apparatus for garment processing according to claim 1, characterized in that: The stirring end includes a first motor, a first shaft, and a second shaft. The first motor is located outside the dyeing chamber, and the first shaft and the second shaft are arranged parallel to each other inside the dye chamber. The output end of the first motor is connected to one end of the first shaft. The ends of the first shaft and the second shaft both penetrate the dyeing chamber and are respectively connected to a main gear and a secondary gear. A transmission gear chain meshes between the main gear and the secondary gear. Stirring blades are arranged on the outer periphery of both the first shaft and the second shaft.

7. A textile dyeing apparatus for garment processing according to claim 1, characterized in that: The liquid supply end includes a guide pipe and a first pump body. The guide pipe is used to connect the second chamber and the dye chamber, and the first pump body is installed on the guide pipe.

8. A textile dyeing apparatus for garment processing according to claim 1, characterized in that: A frame is provided inside the dye chamber, and several guide rollers are also provided inside the frame. A gap is maintained between the frame and the inner wall of the dyeing box, and a heating end is serpentinely wound at the gap. The heating end includes a heat storage box, a heat conduction pipe, and a second pump body. The heat storage box is installed outside the dyeing box, and the heat conduction pipe is serpentinely wound around the outside of the frame. Both ends of the heat conduction pipe extend into the heat storage box and form a height difference. The second pump body is installed on the heat conduction pipe.

9. A textile dyeing apparatus for garment processing according to claim 1, characterized in that: The tensioning end includes a tensioning wheel, a mounting frame, and an electric telescopic rod. The tensioning wheel is rotatably connected to the mounting frame, and the electric telescopic rod is connected to the upper end of the mounting frame. The electric telescopic rod is installed at the top of the inner cavity of the drying oven.

10. A textile dyeing apparatus for garment processing according to claim 1, characterized in that: The base is also provided with a material conveying mechanism that cooperates with the material conveying end. The material conveying mechanism includes a first auxiliary roller and a second auxiliary roller. The first auxiliary roller includes two first rollers and two second rollers. The second auxiliary roller includes two third rollers and two fourth rollers. The two first rollers and two second rollers are respectively arranged on both sides of the dyeing box. The two third rollers and two fourth rollers are respectively arranged on both sides of the drying box.

Citation Information

Patent Citations

  • Dyeing equipment for clothing processing

    CN216786491U