A processing device for textile dyeing
The combination of the rotary mechanism and the hot air circulation system solves the problems of low dyeing efficiency and uneven drying in traditional textile dyeing equipment, realizes efficient and uniform textile dyeing and drying processes, and ensures the quality of textiles and the accuracy of temperature control.
Patent Information
- Application Number
- CN202411137826.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-19
- Publication Date
- 2025-09-09
- Estimated Expiration
- 2044-08-19
AI Technical Summary
Traditional textile dyeing equipment has problems such as low dyeing efficiency, uneven drying resulting in color difference and shrinkage, and inaccurate temperature control, which affects the quality of textiles.
The rotary mechanism is used to drive the textiles to rotate and is combined with a hot air circulation system. A heat circulation flow is formed through the fan and heating tube. The temperature is precisely controlled with a thermometer and controller to ensure uniform drying.
It realizes the continuous dyeing and drying of textiles in the same equipment, avoids uneven drying and temperature fluctuations, and improves dyeing efficiency and textile quality.
Smart Images

Figure CN119162755B_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of textile equipment, in particular to processing equipment for textile dyeing. Background Art
[0002] Textiles, that is, products made through textile processing, include yarn, woven fabrics, knitted fabrics, braided fabrics, etc. Textiles can be made into a variety of clothing. In order to obtain gorgeous clothing, textiles or textile fabrics need to be dyed. However, traditional dyeing is inefficient and requires multiple steps. Therefore, it is necessary to design efficient processing equipment.
[0003] For example, the document with publication number CN 118186705 A discloses a textile processing machine, comprising an outer box, an inner cavity provided in the outer box, a feed port provided on the left end face of the inner cavity, a discharge port provided on the right end face of the inner cavity, and a dye box fixedly connected to the upper end face of the inner cavity; the present invention uses high-frequency vibration of an ultrasonic vibration plate to enable dye molecules to quickly penetrate into textile fibers, thereby improving dyeing efficiency and dyeing quality. Moreover, compared with traditional dyeing methods, a permeable plate is used as a dyeing platform. When the textile passes through the surface of the permeable plate, the textile will absorb the dye on the surface of the permeable plate to achieve the dyeing effect, thereby avoiding dye waste to a limited extent and reducing production costs. Finally, by providing a heating plate and a cleaning wheel, dust and the like can be prevented from affecting the dyeing quality, and the fabric can be dried after dyeing.
[0004] However, this equipment still has some shortcomings. After dyeing is completed, when the textile passes through the heating plate, since one side of the textile faces the heating plate, it is easy to cause uneven heating of the textile during the drying process, resulting in color difference, shrinkage and other problems, and the temperature in the heating chamber cannot be controlled. Too high or too low temperature can easily lead to poor drying effect of the textile, affecting quality problems. Summary of the Invention
[0005] The present invention provides a processing device for textile dyeing, which solves the above problems.
[0006] In order to solve the above technical problems, the present invention adopts the following technical solutions:
[0007] A processing device for textile dyeing, comprising
[0008] A box body, wherein the box body forms a first installation cavity and a second installation cavity through a partition;
[0009] The conveying mechanism is arranged in the box;
[0010] A dyeing mechanism is provided in the first installation cavity and is used for dyeing textiles;
[0011] It is characterized by: also including
[0012] A rotary mechanism is arranged in the second mounting cavity;
[0013] Drying components, which are arranged on both sides of the rotary mechanism;
[0014] The textile enters the first installation cavity through the conveying mechanism, and the dyeing mechanism dyes the textile. After completion, the textile enters the rotary mechanism in the second installation cavity through the conveying mechanism, and the textile is rotated by the rotary mechanism and dried by the drying component. Finally, it is discharged from the box through the conveying mechanism to complete the processing. In this way, from dyeing to drying, the entire process is completed continuously in the same equipment, without the need to transfer the textile to other equipment or perform additional operations, thereby saving time and labor costs. The rotary mechanism rotates the textile to ensure that the textile is evenly heated during the drying process, avoiding the uneven drying problem that may be caused by traditional fixed drying methods. The drying component can adopt an efficient and energy-saving hot air circulation system to quickly dry the textile with hot air.
[0015] Furthermore, the drying component includes a mounting cover connected to the box body, a cavity is formed between the mounting cover and the box body, a fan is provided in the cavity, the fan is connected to a rotating motor, the rotating motor is connected to the box body, a heating tube is installed in the cavity, the heating tube is connected to the box body, heat is generated by the heating tube and the heat is disturbed by the fan, the fan can rotate in the cavity, the rotation of the fan disturbs the heat, so that the heat forms a circulating flow in the cavity, thereby avoiding the problems of heat accumulation and uneven drying, and the heat is evenly distributed on the surface of the textile, so the drying effect is more uniform, which helps to maintain the original quality and appearance of the textile and improve the drying efficiency and quality.
[0016] Furthermore, fans are arranged on the two inner side surfaces of the second installation cavity, and the two fans are on the same axial line. The two fans rotate in the same direction, and the airflow in the steaming and baking cavity is stirred by the rotation of the two fans. The two fans rotate in the same direction, which can form a strong airflow disturbance effect in the steaming and baking cavity, which not only promotes the uniform distribution of heat, but also accelerates the evaporation rate of moisture on the surface of the textile, thereby improving the drying efficiency. Since the heat distribution is more uniform, the drying process can be carried out more efficiently, thereby reducing energy consumption.
[0017] Furthermore, a thermometer and a controller are provided in the box. The thermometer is connected to the controller by electrical signals. The controller is connected to the heating tube and controls and adjusts the power of the heating tube. The thermometer is used to detect the temperature in the second installation cavity. The temperature in the second installation cavity is detected in real time by installing the thermometer, and the temperature is transmitted to the controller through an electrical signal. The power of the heating tube is controlled by the controller, so that the temperature in the box can be maintained within a preset target temperature range, reducing temperature fluctuations and uncertainties. By precisely controlling the temperature, the drying or steaming process can be carried out more efficiently, ensuring that the textiles can avoid color difference, shrinkage and other problems caused by uneven temperature during drying, thereby ensuring the quality of the textiles.
[0018] Furthermore, the slewing mechanism includes a rotating assembly and a transport assembly. The rotating assembly includes a rotating disk, a limiting wheel cooperating with the rotating disk, a rotating part arranged on the rotating disk, a first motor cooperating with the rotating part, and a mounting plate for installing the transport assembly. The mounting plate is connected to the rotating disk. The firm connection between the mounting plate and the rotating disk further enhances the overall stability of the rotating assembly. The cooperation between the limiting wheel and the rotating disk limits the movement trajectory of the rotating disk to prevent it from offsetting or shaking during rotation. The first motor rotates and cooperates with the rotating part to drive the rotating disk to rotate along the limiting wheel, thereby driving the textile to rotate and ensuring that the textile is heated evenly during the drying process.
[0019] Furthermore, the transport assembly includes a base plate, a mounting frame connected to the base plate through support legs, a transmission shaft arranged between the two mounting frames, a transmission belt cooperating with the transmission shaft, a transmission wheel arranged at one end of the transmission shaft, and a second motor arranged on the base plate. The second motor and the transmission wheel are connected by a transmission chain. The rotation of the second motor drives the transmission belt. The rotation of the second motor is accurately transmitted to the transmission wheel through the transmission chain, thereby driving the transmission shaft and the transmission belt to perform continuous and stable movement. The automated transportation function of the transport assembly reduces the need for manual intervention and reduces labor costs. At the same time, it is easy to maintain and service.
[0020] Furthermore, cylinders are evenly distributed on the mounting plate, and the cylinders are connected to the base plate. The distance between the two transport components is adjusted by the extension and contraction of the cylinders. The two transport components are driven to move by the extension of the cylinders to compact the textiles. This is suitable for textiles of different specifications, which increases the scope of application. At the same time, compaction can prevent the textiles from being displaced, wrinkled, or falling off, facilitating subsequent drying.
[0021] Furthermore, ventilation holes are evenly distributed on the transmission belt, and through holes are penetrated on the mounting frame. The ventilation holes are connected with the through holes, so that the heat in the second mounting cavity can enter the internal space of the mounting frame to dry the textiles, preventing the surface of the textiles from being excessively heated, ensuring that the textiles can be evenly heated, and improving the drying effect and efficiency.
[0022] Furthermore, the conveying mechanism includes a conveying roller arranged in a box body, a sprocket arranged at one end of the conveying roller, a chain connecting the sprocket, and a third motor connected to the conveying roller. The rotation of the sprocket is driven by the rotation of the third motor to realize the rotation of the conveying roller. The conveying roller can rotate continuously and stably under the drive of the motor, thereby realizing continuous conveying of materials. This continuity helps to improve the overall efficiency of the production line. By changing the rotation speed of the motor, the rotation speed of the conveying roller is changed, and the transportation speed of the textiles is changed. At the same time, the conveying mechanism structure is relatively simple and easy to maintain.
[0023] Furthermore, the dyeing mechanism includes a dyeing tank arranged in the first installation cavity, a heating device arranged at the bottom end of the dyeing tank, and an oscillator connected to the dyeing tank. The medium in the dyeing tank is heated by the heating device, and the oscillator causes the medium to fluctuate. The heating device can quickly and evenly increase the temperature of the medium in the dyeing tank, accelerate the dissolution and diffusion process of the dye, and the operation of the oscillator causes the medium in the dyeing tank to produce a flow and stirring effect, which helps to eliminate the temperature gradient and concentration gradient in the medium, so that the distribution of the dye in the medium is more uniform, thereby improving the utilization rate of the dye.
[0024] The present invention has the following beneficial effects due to the adoption of the above technical solution:
[0025] 1. The present invention relates to a processing device for dyeing textiles. A rotary mechanism is installed in the second installation cavity. The rotary mechanism drives the textile to rotate, thereby ensuring that the textile is heated evenly during the drying process, avoiding the uneven drying problem that may be caused by traditional fixed drying methods, and improving the efficiency and effect of drying.
[0026] 2. Drying components are provided on both sides of the rotary mechanism. The fans in the drying components can rotate in the cavity. The rotation of the fans disturbs the heat, causing the heat to circulate in the cavity, thereby avoiding the problems of heat accumulation and uneven drying. The heat is evenly distributed on the surface of the textile, so the drying effect is more uniform, which helps to maintain the original quality and appearance of the textile and improve the drying efficiency and quality.
[0027] 3. A thermometer and a controller are installed inside the box. Through the cooperation of the controller and the thermometer, the temperature inside the box can be maintained within the preset target temperature range. The drying or steaming process can be carried out more efficiently, ensuring that the textiles can avoid color difference, shrinkage and other problems caused by uneven temperature during drying, thereby ensuring the quality of the textiles.
[0028] 4. The fabric is rotated and dried by the drying assembly, and finally discharged from the box through the conveying mechanism to complete the processing. This method completes the entire process from dyeing to drying continuously in the same equipment, without the need to transfer the textiles to other equipment or perform additional operations, thus saving time and labor costs. BRIEF DESCRIPTION OF THE DRAWINGS
[0029] The present invention will be further described below in conjunction with the accompanying drawings:
[0030] Figure 1 This is a schematic structural diagram of a processing device for textile dyeing according to the present invention;
[0031] Figure 2 for Figure 1 Internal full section view;
[0032] Figure 3 for Figure 1 Full cross-section view of the middle box;
[0033] Figure 4 for Figure 1 A schematic diagram of the structure of the partition;
[0034] Figure 5 It is a structural schematic diagram of the rotary mechanism in the present invention;
[0035] Figure 6 for Figure 5 Schematic diagram of the structure of the A-axis rotary mechanism;
[0036] Figure 7 for Figure 6 A partial enlarged view of point B in the middle;
[0037] Figure 8 for Figure 6 A partial enlarged view of point C in the middle;
[0038] Figure 9 It is a structural schematic diagram of the transport component in the present invention;
[0039] Figure 10 It is a structural schematic diagram of the drying component in the present invention.
[0040] In the figure,
[0041] 10-box; 11-discharge port; 12-first installation cavity; 13-second installation cavity; 14-feed port; 15-rotation mechanism; 16-drying assembly; 17-heating device; 18-oscillator; 19-partition; 20-chute; 21-sliding part; 22-channel; 23-rotating disk; 24-limiting seat; 25-mounting plate; 26-cylinder; 27-bottom plate; 28-transportation assembly; 29-first motor; 30-sprocket; 31-rotating part; 3 2-through hole; 33-base; 34-mounting seat; 35-telescopic cylinder; 36-limiting slot; 37-limiting block; 38-limiting wheel; 39-pin; 40-mounting slot; 41-mounting frame; 42-vent; 43-drive belt; 44-vent; 45-second motor; 46-drive wheel; 47-support foot; 48-mounting cover; 49-connecting rod; 50-fan; 51-heating tube; 52-air flow channel; 53-limiting rod; 54-dyeing tank. DETAILED DESCRIPTION
[0042] It should be noted that, in the absence of conflict, the embodiments and features of the embodiments in this application can be combined with each other. The present invention will be described in detail below with reference to the accompanying drawings and in combination with the embodiments.
[0043] In order to enable those skilled in the art to better understand the solutions of the present invention, the technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts should fall within the scope of protection of the present invention.
[0044] It should be noted that the terms "first," "second," and so on in the description and claims of the present invention and the accompanying drawings are used to distinguish similar items and are not necessarily used to describe a specific order or precedence. Furthermore, the terms "including," "having," and any variations thereof are intended to cover non-exclusive inclusions.
[0045] like Figures 1 to 10As shown, the present invention is a processing equipment for textile dyeing, including a box body 10, an installation cavity is formed inside the box body 10, a partition 19 is provided in the box body 10, the partition 19 divides the installation cavity into a first installation cavity 12 and a second installation cavity 13, in order to facilitate the installation of the partition 19, a sliding portion 21 is provided on the partition 19, a slide groove 20 is provided in the box body 10, the sliding portion 21 moves along the slide groove 20 to a specified position, and the connection between the two is achieved by welding or screw connection, etc., a channel 22 is provided on the partition 19, the channel 22 connects the first installation cavity 12 and the second installation cavity 13, and a feed port 14 and a discharge port 11 are provided at both ends of the box body 10, the feed port 14 is communicated with the first installation cavity 12, and the discharge port 11 is communicated with the second installation cavity 13, A conveying mechanism is provided in the installation cavity, which includes a conveying roller provided in the box body 10, a sprocket provided at one end of the conveying roller, a chain connecting the sprocket and a third motor connected to the conveying roller. There are multiple conveying rollers, and the actual number is set according to actual conditions. Specifically, the rotation of the third motor drives the sprocket to rotate to realize the rotation of the conveying roller. The textile enters the first installation cavity 12 through the conveying roller provided near the feed port 14, and then passes through the conveying roller immersed in the dye for dyeing. It is transported to the second installation cavity 13 along the conveying roller near the channel 22 for drying, and then passes through the conveying roller near the discharge port 11 to complete the processing. However, the conveying mechanism is not limited to using only conveying rollers, but can also use transmission belts or other existing technologies that can achieve the conveying effect.
[0046] like Figure 2 As shown, a dyeing mechanism is installed in the first installation cavity 12, and the dyeing mechanism includes a dyeing tank 54 arranged in the first installation cavity 12, a heating device 17 arranged at the bottom end of the dyeing tank 54, and an oscillator 18 connected to the dyeing tank 54. The dyeing tank 54 is provided with a feeding port, and the box body 10 is provided with a feeding channel 22 connected to the feeding port. The dye and the medium enter the dyeing tank 54 through the feeding channel. The heating device 17 and the oscillator 18 adopt the structure in the prior art, and the specific structure is not repeated here. The heating device 17 can quickly and evenly increase the temperature of the medium in the dyeing tank 54, accelerate the dissolution and diffusion process of the dye, and adjust the temperature in the dyeing tank 54 through the heating device 17. The operation of the oscillator 18 causes the medium in the dyeing tank 54 to produce a flow and stirring effect, which helps to eliminate the temperature gradient and concentration gradient in the medium, so that the distribution of the dye in the medium is more uniform, thereby improving the utilization rate of the dye.
[0047] like Figure 2 and Figure 10As shown, a drying assembly 16 is provided in the second installation cavity 13, and the drying assembly 16 includes an installation cover 48 provided on both inner sides of the second installation cavity 13. The installation cover 48 is detachably connected to the box body 10, and a cavity is formed between the installation cover 48 and the box body 10. Air flow channels 52 are evenly distributed on the installation cover 48, and the air flow channels 52 communicate with the second installation cavity 13 and the cavity. A fan 50 is provided in the cavity, and the fan 50 is connected to the rotating motor (not shown in the figure), and the rotating motor is connected to the box body 10. A heating pipe 51 is provided in the cavity, and the heating pipe 51 is connected to the box body 10. The heating pipe 51 is located at On the front side of the fan 50, the two fans 50 are on the same axis. When the rotary motor is started, the two rotary motors rotate in the same direction. The rotary motor drives the fan 50 to rotate. The fan 50 and the heating tube 51 will not collide. The two fans 50 rotate in the same direction, which can form a strong airflow disturbance effect in the steaming and baking cavity, so that the heat forms a circulation flow in the cavity, thereby avoiding the problems of heat accumulation and uneven drying. The heat is evenly distributed on the surface of the textile, so the drying effect is more uniform, which helps to maintain the original quality and appearance of the textile and improve the drying efficiency and quality.
[0048] In order to control the temperature in the second installation cavity 13, a thermometer and a controller are provided in the box 10. The thermometer is electrically connected to the controller by signal. The controller adopts a PCL controller. The controller can control the operation of electrical or gas components. The controller is electrically connected to the heating tube 51 by signal. The controller can control and adjust the power of the heating tube 51. The thermometer is used to detect the temperature in the second installation cavity 13. When the thermometer detects that the temperature in the second installation cavity 13 is too high, the thermometer transmits an electrical signal to the controller, and the controller controls to reduce the power of the heating tube 51 and lower the temperature. Conversely, when the thermometer detects that the temperature in the second installation cavity 13 is too low, the thermometer transmits an electrical signal to the controller, and the controller controls to increase the power of the heating tube 51 and increase the temperature, so that the temperature in the box 10 can be maintained within the preset target temperature range, reducing temperature fluctuations and uncertainties. By precisely controlling the temperature, the drying or steaming process can be carried out more efficiently, ensuring that the textiles can avoid color difference, shrinkage and other problems caused by uneven temperature during drying, thereby ensuring the quality of the textiles.
[0049] like Figure 2 、 Figure 5 and Figure 6As shown, a slewing mechanism 15 is installed in the second installation cavity 13. The slewing mechanism 15 includes a rotating assembly and a transport assembly 28. The rotating assembly includes a rotating disk 23, a limiting wheel 38 cooperating with the rotating disk 23, a rotating part arranged on the rotating disk 23, a first motor 29 cooperating with the rotating part, and a mounting plate 25 for installing the transport assembly 28. There are two rotating disks 23, which are arranged at both ends of the second installation cavity 13. A through hole 32 is provided in the middle of the rotating disk 23 for passing textiles. The two rotating disks 23 are connected by a connecting rod 49 to achieve synchronous movement of the two rotating disks 23. The mounting plate 25 is connected to the rotating disk 23. The firm connection between the mounting plate 25 and the rotating disk 23 further enhances the overall stability of the rotating assembly. A base 33 is provided under the slewing assembly, and a limiting seat 24 is provided on the base 33. The limiting seat 24 is provided with a mounting groove 40. The mounting groove 40 is used to install the limiting wheel 38. The limiting wheel 38 is fixed by a pin The shaft 39 is connected to the limiting part, and the limiting wheel 38 can rotate around the pin shaft 39. The cooperation between the limiting wheel 38 and the rotating disk 23 limits the movement trajectory of the rotating disk 23 to prevent it from deflecting or shaking during the rotation process. The rotating disk 23 is provided with a rotating part 31, and the rotating part 31 is provided with a rotating part. The rotating part can be a chain. The first motor 29 is provided with a sprocket 30. Through the rotation of the first motor 29, the first motor 29 cooperates with the rotating part, that is, the chain cooperates with the sprocket 30, but the rotating part is not limited to only using the sprocket 30 and the chain, and other components with similar effects can also be used. The rotation of the first motor 29 drives the rotating disk 23 to rotate along the limiting wheel 38. The rotating first motor 29 will not conflict or collide with the rotating mechanism 15, thereby driving the textile to rotate, ensuring that the textile is heated evenly during the drying process. At the same time, the rotation of the rotating component can disturb the high-temperature gas in the second mounting cavity 13, thereby improving the drying effect.
[0050] like Figure 6 and Figure 7 As shown, in order to improve the stability of the rotating disk 23, a limit assembly is provided on the base 33, and the limit component includes a mounting base 34 arranged on the base 33, and a telescopic cylinder 35 is provided on the mounting base 34. A limit rod 53 is installed at the output end of the telescopic cylinder 35, and a limit block 37 is provided on the rotating disk 23 near the discharge port 11. The number and position of the limit blocks 37 can be set according to actual conditions. Limit grooves 36 are provided at both ends of the limit blocks 37. The limit grooves 36 are specifically positioned as through grooves with semicircular openings. When the rotary component does not rotate, the telescopic cylinder 35 extends out, and the limit rod 53 is clamped in the limit groove 36, and the rotating disk 23 cannot rotate. When the rotary component needs to rotate, the telescopic cylinder 35 is retracted, the limit rod 53 is disengaged from the limit groove 36, and the rotary component can start to rotate.
[0051] like Figure 2 and Figure 9As shown, the transport assembly 28 includes a base plate 27, a mounting frame 41 connected to the base plate 27 through a support leg 47, a transmission shaft arranged between the two mounting frames 41, a transmission belt 43 matched with the transmission shaft, a transmission wheel 46 arranged at one end of the transmission shaft, and a second motor 45 arranged on the base plate 27. The second motor 45 is connected to the transmission wheel 46 through a transmission chain. The second motor 45 rotates to drive the transmission belt 43. The rotation of the second motor 45 is accurately transmitted to the transmission wheel 46 through the transmission chain, thereby driving the transmission shaft and the transmission belt 43 to perform continuous and stable movement. The automated transport function of component 28 reduces the need for manual intervention and lowers labor costs. At the same time, it is easy to maintain and service. In order to improve the drying effect of textiles, ventilation holes 44 are evenly distributed on the transmission belt 43, and ventilation holes 42 are penetrated on the mounting frame 41. The ventilation holes 44 are connected to the ventilation holes 42, and the ventilation holes 44 are connected to the internal space between the two mounting frames 41, so that the heat in the second mounting cavity 13 can enter the internal space of the mounting frame 41 to dry the textiles, prevent the textiles from being excessively heated only on the surface, ensure that the textiles can be evenly heated, and improve the drying effect and efficiency.
[0052] like Figure 5 and Figure 6 As shown, cylinders 26 are evenly distributed on the mounting plate 25, and the cylinders 26 are connected to the bottom plate 27. The distance between the two transport components 28 is adjusted by the extension and contraction of the cylinders 26. The two transport components 28 are driven to move by the extension of the cylinders 26 to press the textiles. It is suitable for textiles of different specifications and improves the scope of application. At the same time, the pressing can prevent the textiles from displacement, wrinkles or falling off, which is convenient for subsequent drying. At the same time, a variety of sensors are provided in the second mounting cavity 13. The sensors use components in the existing technology and can detect the position of the textiles. The effect will not be repeated here.
[0053] The above are only specific embodiments of the present invention, but the technical features of the present invention are not limited thereto. Any simple changes, equivalent substitutions, or modifications based on the present invention to solve substantially the same technical problems and achieve substantially the same technical effects are all included in the scope of protection of the present invention.
Claims
1. A processing device for textile dyeing, comprising A box body, wherein the box body forms a first installation cavity and a second installation cavity through a partition; A conveying mechanism, wherein the conveying mechanism is arranged in the box; a dyeing mechanism, the dyeing mechanism being disposed in the first mounting cavity and being used for dyeing textiles; It is characterized by: also including a rotary mechanism, the rotary mechanism being disposed in the second mounting cavity; Drying components, the drying components are arranged on both sides of the rotary mechanism; The textile enters the first installation cavity through the conveying mechanism, the dyeing mechanism dyes the textile, and after completion, enters the rotary mechanism in the second installation cavity through the conveying mechanism, the textile is rotated by the rotary mechanism and dried by the drying component, and finally discharged from the box through the conveying mechanism to complete the processing; the rotary mechanism includes a rotating component and a transport component, the rotating component includes a rotating disk, a limiting wheel cooperating with the rotating disk, a rotating member arranged on the rotating disk, a first motor cooperating with the rotating member and a mounting plate for mounting the transport component, the mounting plate is connected to the rotating disk, is rotated by the first motor, and the first motor and the rotating The transmission belt is driven by the transmission mechanism, and the transmission mechanism is connected to the transmission mechanism by the transmission mechanism, and the transmission mechanism is connected to the transmission mechanism by the transmission mechanism. The transmission mechanism is connected to the transmission mechanism by the transmission mechanism, and the transmission mechanism is connected to the transmission mechanism by the transmission mechanism.
2. The processing equipment for textile dyeing according to claim 1, characterized in that: The drying assembly includes a mounting cover connected to the box body, a cavity is formed between the mounting cover and the box body, a fan is provided in the cavity, the fan is connected to a rotating motor, the rotating motor is connected to the box body, a heating pipe is installed in the cavity, the heating pipe is connected to the box body, heat is generated by the heating pipe and the heat is disturbed by the fan.
3. The processing equipment for textile dyeing according to claim 2, characterized in that: The fans are arranged on two inner sides of the second installation cavity, the two fans are on the same axis, and the two fans rotate in the same direction. The rotation of the two fans drives the airflow in the second installation cavity to be stirred.
4. The processing equipment for textile dyeing according to claim 2, characterized in that: A thermometer and a controller are provided in the box. The thermometer is electrically connected to the controller. The controller is connected to the heating tube and controls and adjusts the power of the heating tube. The thermometer is used to detect the temperature in the second installation cavity.
5. The processing equipment for textile dyeing according to claim 1, characterized in that: The conveying mechanism includes a conveying roller arranged in the box body, a sprocket arranged at one end of the conveying roller, a chain connecting the sprocket and a third motor connected to the conveying roller. The conveying roller rotates by driving the sprocket to rotate through the rotation of the third motor.
6. The processing equipment for textile dyeing according to claim 1, characterized in that: The dyeing mechanism includes a dyeing tank arranged in the first installation cavity, a heating device arranged at the bottom of the dyeing tank, and an oscillator connected to the dyeing tank. The heating device heats the medium in the dyeing tank, and the oscillator causes the medium to fluctuate.
Citation Information
Patent Citations
Textile processing machine
CN118186705A
Efficient textile dyeing machine
CN113005682A
Drying device for bleaching and dyeing textiles
CN114754558A