Ironing and drying equipment for textile production

The combination of support legs and electric telescopic rods stabilizes the ironing platform, combined with the design of the water tank and heater, achieves uniform distribution and rapid penetration of steam, solves the problem of low drying efficiency of traditional equipment, improves the efficiency and quality of textile production, and ensures environmental protection and clean material inlet and outlet process.

CN223074429UActive Publication Date: 2025-07-08GUANGZHOU HUICHANG TEXTILE TECH CO LTD
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Patent Information

Application Number
CN202422294831.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-20
Publication Date
2025-07-08
Estimated Expiration
2034-09-20

AI Technical Summary

Technical Problem

Traditional ironing and drying equipment for textile production cannot quickly provide sufficient heat by relying on electric heating, resulting in slow drying process, affecting the production cycle, and being susceptible to the skill level of operators, resulting in fluctuations in production efficiency and quality.

Method used

The combination of the support leg and the second electric telescopic rod ensures the stability of the ironing platform, combined with the cooperation of the water tank and the second heater, achieves uniform distribution and rapid penetration of steam, uses the fan and air duct design to improve drying efficiency, and ensures clean gas emissions through the combination of filter and exhaust fans, uses an emission solenoid valve to control gas emissions, the motor controls the winder to assist in the inlet and outlet of textiles, and the electric telescopic rod and baffle to prevent pollution.

Benefits of technology

It realizes rapid drying of textiles, improves drying efficiency and quality, ensures the efficiency and environmental protection requirements of equipment operation, prevents environmental pollution, and ensures the cleanliness and stability of the feeding and discharge processes.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of ironing and drying, and discloses ironing and drying equipment for textile production, which comprises a box body, a control panel is arranged at the upper part of one side of the front end surface of the box body, and feeding structures are arranged at the centers of two side walls of the box body; first heaters are arranged on the upper portions of the two sides of the front inner wall of the box body and the lower portions of the two sides of the rear inner wall of the box body, second motors are arranged on the upper portions of the two sides of the front end face and the lower portions of the two sides of the rear end face of the box body, and the output ends of the four second motors on the front portion penetrate through the front end face of the box body and extend into the box body. According to the textile ironing device, the stability of the ironing platform is guaranteed through the supporting legs and the second electric telescopic rods, the ironing plate can evenly apply pressure to textiles, the flatness of the textiles is guaranteed, and even distribution and rapid permeation of steam are achieved through cooperation of the water tank and the second heater, the air conveying fan and the air conveying pipe; therefore, the rapid drying effect is achieved, and the drying efficiency and quality are improved.
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Description

Technical Field

[0001] The utility model relates to the field of ironing and drying, in particular to an ironing and drying device for textile production. Background Technique

[0002] In textile production, the ironing and drying equipment is a key post-treatment equipment, which is used to shape, dry and finish textiles to meet the required appearance and performance standards. In garment production, ironing and drying is a key step to ensure the appearance and dimensional stability of garments. In industrial textile production, the ironing and drying equipment is used to shape and dry fabrics to meet specific performance requirements.

[0003] Since the traditional ironing and drying equipment for textile production may not be able to quickly provide enough heat only by relying on the electric heating method, resulting in a slow drying process and affecting the production cycle, and manual ironing and monitoring are required, which not only increases the labor intensity, but also is easily affected by the skill level of the operators, resulting in fluctuations in production efficiency and quality. Therefore, the technical personnel in this field have provided an ironing and drying device for textile production to solve the problems raised in the above background technique. Content of the Utility Model

[0004] The purpose of the utility model is to solve the disadvantages existing in the prior art, and to propose an ironing and drying device for textile production. The combination of the support legs and the second electric telescopic rod ensures the stability of the ironing platform, so that the ironing board can evenly apply pressure to the textiles, thereby efficiently removing wrinkles and ensuring the flatness of the textiles. And through the cooperation of the water tank and the second heater, as well as the design of the air blower and the air duct, the uniform distribution and rapid penetration of steam are realized, so as to achieve the effect of rapid drying, improve the drying efficiency and quality. The combination of the filter screen and the exhaust fan not only ensures the cleanliness of the discharged gas and prevents environmental pollution, but also realizes the precise management of gas discharge through the control of the discharge solenoid valve, which not only ensures the operation efficiency of the equipment, but also takes into account the environmental protection requirements. Through the control of the first motor, the reel can assist the textiles to smoothly enter and exit the box body. At the same time, the combined use of the electric telescopic rod and the baffle effectively prevents the entry of external impurities and the pollution of the treated textiles, ensuring the cleanliness and stability of the entire feeding and discharging process.

[0005] To achieve the above object, the present utility model provides the following technical solutions: An ironing and drying device for textile production, comprising a box body. At an upper position on one side of the front end face of the box body, there is a control panel. At the center of both side walls of the box body, there are feeding structures. At upper positions on both sides of the front inner wall of the box body and at lower positions on both sides of the rear inner wall of the box body, there are first heaters. At upper and lower positions on both sides of the front and rear end faces of the box body, there are second motors. The output ends of the four second motors at the front pass through the front end face of the box body and extend into the box body, and stretching wheels are fixed to the ends. The rear end faces of the four stretching wheels are fixedly connected to the output ends of the four second motors at the rear. At the center of the box body, there is an ironing structure. At the center of the upper end face of the box body, there is a drying structure. At a position on one side close to the center of the upper end face of the box body, there is an exhaust structure;

[0006] Through the above technical solutions, the combination of the support legs and the second electric telescopic rods ensures the stability of the ironing platform, enabling the ironing board to apply pressure evenly on the textile, thereby efficiently removing wrinkles and ensuring the flatness of the textile. And through the cooperation of the water tank and the second heater, as well as the design of the air blower and the air duct, the uniform distribution and rapid penetration of steam are achieved, thus achieving the effect of rapid drying, improving the drying efficiency and quality. The combination of the filter screen and the exhaust fan not only ensures the cleanliness of the discharged gas and prevents environmental pollution, but also through the control of the discharge solenoid valve, realizes the precise management of gas discharge, ensuring both the efficiency of the equipment operation and taking into account the environmental protection requirements. Through the control of the first motor, the winder can assist the textile to smoothly enter and exit the box body. At the same time, the combined use of the electric telescopic rod and the baffle effectively prevents the entry of external impurities and the pollution of the processed textile, ensuring the cleanliness and stability of the entire feeding and discharging process.

[0007] Further, the two feeding structures include four connecting plates, four first motors, two winders, a feeding slot, two fixing plates, four first electric telescopic rods, two baffles and a discharging slot. The feeding slot is arranged at the center of one side wall of the box body, and the discharging slot is arranged at the center of the other side wall of the box body. The four connecting plates are divided into two groups of two each. The two groups of connecting plates are arranged in front and back at the front end of the feeding slot and the rear end of the discharging slot at the center of both side walls of the box body. The two first motors are respectively arranged at the center of the front end face of the two front connecting plates and at the center of the rear end face of the rear connecting plate. The two winders are respectively arranged between the two groups of connecting plates. The two fixing plates are arranged at positions on both sides close to the center of the upper end face of the box body. The four first electric telescopic rods are divided into two groups of two each. The two groups of first electric telescopic rods are arranged in front and back at the center of the inner wall of the two fixing plates on one side. The two baffles are respectively arranged at the output ends of the two groups of first electric telescopic rods;

[0008] Through the above technical solution, when the textile enters the box body from the feeding trough, the two first motors drive the corresponding reelers to rotate, assisting the textile to smoothly enter the box body. At the same time, the first electric telescopic rods on the fixed plates on both sides of the upper end face of the box body push the baffle to move, so that the baffle closes the feeding trough, preventing external impurities from entering the inside of the box body, ensuring the cleanliness and stability of the feeding process. When the textile is processed in the box body and output from the discharging trough, the two first motors drive the corresponding reelers to rotate, assisting the processed textile to be smoothly output. Similarly, the baffle on this side closes the discharging trough under the action of the first electric telescopic rod, preventing the processed textile from being affected by the external environment.

[0009] Further, the ironing structure includes four support legs, an ironing platform, three second electric telescopic rods and an ironing board. The four support legs are arranged in a rectangle at the center of the lower inner wall of the box body. The ironing platform is arranged on the upper end faces of the four support legs. The three second electric telescopic rods are arranged in a front-back order at the center of the upper inner wall of the box body. The ironing board is arranged on the output ends of the three second electric telescopic rods;

[0010] Through the above technical solution, when the textile enters the box body through the feeding structure, it is conveyed to the ironing structure. The four support legs provide stable support for the ironing platform, ensuring that the ironing platform will not shake or tilt during the working process. When it is necessary to iron the textile, the second electric telescopic rod extends downward according to the control signal, pushing the ironing board closer to the ironing platform below. After the ironing board approaches the textile, it applies a certain pressure to the textile placed on the ironing platform, thereby realizing the ironing of the textile, removing wrinkles and making it flat.

[0011] Further, the drying structure includes a water tank, two second heaters, a partition board, a plurality of through holes, two air blowers and two air ducts. The water tank is arranged at the center of the upper end face of the box body. The two second heaters are respectively arranged horizontally on the lower inner wall of the water tank. The partition board is arranged at the center of the inside of the water tank. The plurality of through holes are arranged in a rectangle at the center of the upper end face of the partition board. The two air blowers are arranged at the upper center of the front inner wall and the rear inner wall of the water tank. The two air ducts are respectively arranged on the output ends of the two air blowers. The output end of the front air duct sequentially passes through the front inner wall of the water tank and the lower part of the front end face of the box body and leads to the inside of the box body. The output end of the rear air duct sequentially passes through the rear inner wall of the water tank and the upper center of the rear end face of the box body and leads to the inside of the box body;

[0012] Through the above technical solution, the two second heaters in the water tank heat the water. As the water temperature rises, the water gradually turns into steam. The partition plate divides the water tank into upper and lower parts, ensuring that steam can be stably generated during the heating process of the water, and also contributing to the uniform distribution of the steam. The multiple through-holes enable the steam to flow from the lower part of the water tank to the upper part, preparing for subsequent transportation. When the two air blowers are started, they generate a strong air flow. The air flow transports the steam generated in the water tank to the interior of the box through the air duct. Through the steam, it can quickly penetrate into the textiles, causing the moisture in the textiles to evaporate rapidly, thus achieving an efficient drying effect.

[0013] Further, the exhaust structure includes an exhaust frame, a filter screen, an exhaust fan, and an exhaust solenoid valve. The exhaust frame is arranged at a position on one side close to the center of the upper end face of the box. The filter screen is arranged at a position in the center and close to the lower part inside the exhaust frame. The exhaust fan is arranged at a position in the center and close to the lower part inside the exhaust frame above the filter screen. The exhaust solenoid valve is arranged at the center of the upper end face of the exhaust frame.

[0014] Through the above technical solution, when the textiles are being processed in the box, some gases such as moisture, heat, and possibly odors will be generated. These gases need to be discharged in a timely manner to ensure the normal operation of the equipment and a good working environment. After the exhaust fan is started, a negative pressure is formed in the box and the exhaust frame, prompting the gases in the box to flow towards the exhaust frame. After the gases enter the exhaust frame, they first pass through the filter screen. The filter screen can filter out particulate matters such as impurities and dust in the gases, preventing these substances from being discharged into the external environment and causing pollution. The filtered gases continue to flow upward. When discharge is required, the exhaust solenoid valve is opened, and the gases are discharged to the external environment through the upper end face of the exhaust frame. When discharge is not required, the exhaust solenoid valve is closed to prevent the gases from being discharged.

[0015] Further, a water inlet is provided at a position on one side wall of the water tank, close to the center and the lower part.

[0016] Through the above technical solution, when the water in the water tank is consumed due to the drying process or needs to be replenished, water is injected by connecting an external water source through the water inlet.

[0017] Further, the feeding trough and the discharging trough are respectively adapted to the two fixing plates.

[0018] Through the above technical solution, the smoothness of the textiles during the feeding and discharging processes is ensured, and the possibility of jamming and blockage is reduced.

[0019] Further, the output ends of the two front first motors both penetrate through the front end face of the connecting plate and extend to the rear ends of the two front connecting plates, and the ends are respectively fixedly connected to the front end faces of the two winding devices. The output ends of the two rear winding devices both penetrate through the rear end faces of the two rear connecting plates and extend to the front ends of the two rear connecting plates, and the ends are fixedly connected to the rear end faces of the two winding devices;

[0020] Through the above technical solution, it can ensure that the steam is evenly distributed in the box body to dry the textiles in all directions.

[0021] The utility model has the following beneficial effects:

[0022] 1. In the utility model, the combination of the support legs and the second electric telescopic rod in the ironing and drying equipment for textile production ensures the stability of the ironing platform, enabling the ironing board to apply pressure evenly on the textiles, thereby efficiently removing wrinkles, ensuring the flatness of the textiles. And through the cooperation of the water tank and the second heater, as well as the design of the air blower and the air duct, the uniform distribution and rapid penetration of steam are realized, thus achieving the effect of rapid drying and improving the drying efficiency and quality.

[0023] 2. In the utility model, the combination of the filter screen and the exhaust fan not only ensures the cleanliness of the discharged gas and prevents environmental pollution, but also realizes the precise management of gas discharge through the control of the discharge solenoid valve, which not only ensures the operation efficiency of the equipment but also takes into account the environmental protection requirements.

[0024] 3. In the utility model, through the control of the first motor, the winding device can assist the textiles to smoothly enter and exit the box body. At the same time, the cooperation of the electric telescopic rod and the baffle effectively prevents the entry of external impurities and the pollution of the processed textiles, ensuring the cleanliness and stability of the entire feeding and discharging process. Description of the Drawings

[0025] Figure 1 is a perspective view of an ironing and drying equipment for textile production proposed by the utility model;

[0026] Figure 2 is a perspective sectional view of an ironing and drying equipment for textile production proposed by the utility model;

[0027] Figure 3 is a front sectional view of an ironing and drying equipment for textile production proposed by the utility model;

[0028] Figure 4 is a side sectional view of an ironing and drying equipment for textile production proposed by the utility model.

[0029] Legend Explanation:

[0030] 1. Box body; 2. Control panel; 3. Feeding structure; 301. Connecting plate; 302. First motor; 303. Reel; 304. Feeding groove; 305. Fixed plate; 306. First electric telescopic rod; 307. Baffle; 308. Discharge groove; 4. First heater; 5. Tensioning wheel; 6. Second motor; 7. Ironing structure; 701. Support leg; 702. Ironing platform; 703. Second electric telescopic rod; 704. Ironing board; 8. Drying structure; 801. Water tank; 802. Second heater; 803. Partition board; 804. Through hole; 805. Air blower; 806. Air duct; 9. Exhaust structure; 901. Exhaust frame; 902. Filter screen; 903. Exhaust fan; 904. Discharge solenoid valve. Detailed implementation manner

[0031] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0032] Refer to Figures 1-4 , an embodiment provided by the present invention: An ironing and drying device for textile production, including a box body 1, a control panel 2 is provided at the upper side of one side of the front end face of the box body 1, feeding structures 3 are provided at the centers of both side walls of the box body 1, first heaters 4 are provided at the upper sides of both sides of the front inner wall of the box body 1 and at the lower sides of both sides of the rear inner wall of the box body 1, second motors 6 are provided at the upper sides of both sides of the front and rear end faces of the box body 1 and at the lower sides of both sides, the output ends of the four second motors 6 at the front side penetrate through the front end face of the box body 1 and extend into the box body 1, and stretching wheels 5 are fixed at the ends, the rear end faces of the four stretching wheels 5 are fixedly connected to the output ends of the four second motors 6 at the rear side, an ironing structure 7 is provided at the center of the box body 1, a drying structure 8 is provided at the center of the upper end face of the box body 1, and an exhaust structure 9 is provided at the side near the center of the upper end face of the box body 1. Textiles enter the box body 1 through the feeding structures 3 at the centers of both side walls of the box body 1. The control panel 2 is used to control the operating parameters of the entire device, such as temperature, speed, etc. By starting the second motor 6 to drive the stretching wheels 5 to rotate, the four stretching wheels 5 stretch the textiles to keep them flat, facilitating subsequent ironing and drying operations. The ironing structure 7 at the center of the box body 1 starts to work, and the textiles are ironed by applying pressure to remove wrinkles and make the textiles flatter. By starting the drying structure 8 to generate steam, the ironed textiles are dried to remove moisture and make the textiles dry quickly. During the drying process, moisture and hot air will be generated in the box body 1, and the exhaust structure 9 starts to work to discharge the moisture and hot air in the box body 1 to keep the air circulation inside the box body 1.

[0033] The two feeding structures 3 include four connecting plates 301, four first motors 302, two winders 303, a feeding trough 304, two fixing plates 305, four first electric telescopic rods 306, two baffles 307 and a discharging trough 308. The feeding trough 304 is arranged at the center of one side wall of the box body 1, and the discharging trough 308 is arranged at the center of the other side wall of the box body 1. The four connecting plates 301 are divided into two groups of two each. The two groups of connecting plates 301 are arranged in the front and back respectively at the front end of the feeding trough 304 and the rear end of the discharging trough 308 at the centers of the two side walls of the box body 1. The two first motors 302 are respectively arranged at the centers of the front end faces of the two front connecting plates 301 and the centers of the rear end faces of the rear connecting plates 301. The two winders 303 are respectively arranged between the two groups of connecting plates 301. The two fixing plates 305 are arranged at the positions near the two sides at the center of the upper end face of the box body 1. The four first electric telescopic rods 306 are divided into two groups of two each. The two groups of first electric telescopic rods 306 are arranged in the front and back respectively at the positions near one side at the centers of the inner walls of the two fixing plates 305. The two baffles 307 are respectively arranged on the output ends of the two groups of first electric telescopic rods 306.

[0034] When the textile enters the box body 1 from the feeding trough 304, the two first motors 302 drive the corresponding winders 303 to rotate, assisting the textile to smoothly enter the box body 1. At the same time, the first electric telescopic rods 306 on the fixing plates 305 arranged on both sides of the upper end face of the box body 1 push the baffles 307 to move, so that the baffles 307 close the feeding trough 304, preventing external impurities from entering the interior of the box body 1 and ensuring the cleanliness and stability of the feeding process. When the textile is processed in the box body 1 and then output from the discharging trough 308, the two first motors 302 drive the corresponding winders 303 to rotate, assisting the processed textile to be smoothly output. Similarly, the baffle 307 on this side closes the discharging trough 308 under the action of the first electric telescopic rod 306, preventing the processed textile from being affected by the external environment. The feeding trough 304 and the discharging trough 308 are respectively adapted to the two fixing plates 305, ensuring the smoothness of the textile during the feeding and discharging processes and reducing the possibility of jamming and blockage. The output ends of the two front first motors 302 penetrate through the front end faces of the connecting plates 301 and extend to the rear ends of the two front connecting plates 301, and the ends are respectively fixedly connected to the front end faces of the two winders 303. The output ends of the two rear winders 303 penetrate through the rear end faces of the two rear connecting plates 301 and extend to the front ends of the two rear connecting plates 301, and the ends are fixedly connected to the rear end faces of the two winders 303. In this way, it can ensure that the steam can be evenly distributed in the box body 1 to dry the textile in all directions.

[0035] The ironing structure 7 includes four support legs 701, an ironing platform 702, three second electric telescopic rods 703 and an ironing board 704. The four support legs 701 are arranged in a rectangle at the center of the lower inner wall of the box body 1. The ironing platform 702 is arranged on the upper end faces of the four support legs 701. The three second electric telescopic rods 703 are arranged in a front-back arrangement at the center of the upper inner wall of the box body 1. The ironing board 704 is arranged on the output ends of the three second electric telescopic rods 703. When the textile enters the box body 1 through the feeding structure 3, it is conveyed to the ironing structure 7. The four support legs 701 provide stable support for the ironing platform 702 to ensure that the ironing platform 702 does not shake or tilt during the working process. When the textile needs to be ironed, the second electric telescopic rod 703 extends downward according to the control signal, pushing the ironing board 704 closer to the ironing platform 702 below. After the ironing board 704 approaches the textile, it applies a certain pressure to the textile placed on the ironing platform 702, thereby realizing the ironing of the textile, removing wrinkles and making it flat.

[0036] The drying structure 8 includes a water tank 801, two second heaters 802, a partition plate 803, a plurality of through holes 804, two air blowers 805 and two air ducts 806. The water tank 801 is arranged at the center of the upper end face of the box body 1. The two second heaters 802 are respectively arranged horizontally on the lower inner wall of the water tank 801. The partition plate 803 is arranged at the center inside the water tank 801. The plurality of through holes 804 are arranged in a rectangle at the center of the upper end face of the partition plate 803. The two air blowers 805 are arranged at the upper center of the front inner wall and the rear inner wall of the water tank 801. The two air ducts 806 are respectively arranged on the output ends of the two air blowers 805. The output end of the front air duct 806 sequentially penetrates the front inner wall of the water tank 801 and the lower part of the front end face of the box body 1 and leads to the inside of the box body 1. The output end of the rear air duct 806 sequentially penetrates the rear inner wall of the water tank 801 and the upper center of the rear end face of the box body 1 and leads to the inside of the box body 1.

[0037] The two second heaters 802 in the water tank 801 heat the water. As the water temperature rises, the water gradually turns into steam. The partition plate 803 divides the water tank 801 into upper and lower parts, ensuring that steam can be stably generated during the heating process of the water and also contributing to the uniform distribution of the steam. The plurality of through holes 804 enable the steam to flow from the lower part to the upper part of the water tank 801 to prepare for subsequent transportation. When the two air blowers 805 are started, they generate a strong air flow. The air flow transports the steam generated in the water tank 801 to the inside of the box body 1 through the air ducts 806. The steam can quickly penetrate into the textile, causing the moisture in the textile to evaporate rapidly, thereby achieving an efficient drying effect. There is a water inlet at the lower center of one side wall of the water tank 801. When the water in the water tank 801 is consumed due to the drying process or needs to be replenished, water is injected by connecting an external water source through the water inlet.

[0038] The exhaust structure 9 includes an exhaust frame 901, a filter screen 902, an exhaust fan 903, and an emission solenoid valve 904. The exhaust frame 901 is disposed at a position on one side near the center of the upper end surface of the box body 1. The filter screen 902 is disposed at a position near the lower center inside the exhaust frame 901. The exhaust fan 903 is disposed at a position near the lower center inside the exhaust frame 901 above the filter screen 902. The emission solenoid valve 904 is disposed at the center of the upper end surface of the exhaust frame 901. When textiles are being processed inside the box body 1, some gases such as moisture, heat, and possibly odors are generated. These gases need to be discharged in a timely manner to ensure the normal operation of the equipment and a good working environment. After the exhaust fan 903 is started, a negative pressure is formed inside the box body 1 and the exhaust frame 901, prompting the gases inside the box body 1 to flow towards the exhaust frame 901. After the gases enter the exhaust frame 901, they first pass through the filter screen 902. The filter screen 902 can filter out particulate matters such as impurities and dust in the gases, preventing these substances from being discharged into the external environment and causing pollution. The filtered gases continue to flow upward. When emission is required, the emission solenoid valve 904 is opened, and the gases are discharged to the external environment through the upper end surface of the exhaust frame 901. When emission is not required, the emission solenoid valve 904 is closed to prevent the gases from being discharged.

[0039] Working principle: The first electric telescopic rod 306 is used to push the baffle 307 to move, so that the baffle 307 opens the feeding slot 304. When the textiles enter the box body 1 from the feeding slot 304, the two first motors 302 drive the corresponding winding devices 303 to rotate, assisting the textiles to smoothly enter the box body 1. When feeding is not required, the first electric telescopic rod 306 is used to push the baffle 307 to move, so that the baffle 307 closes the feeding slot 304. The control panel 2 is used to control the operating parameters of the entire equipment, such as temperature, speed, etc. By starting the second motor 6 to drive the stretching wheels 5 to rotate, the four stretching wheels 5 stretch the textiles to keep them flat, facilitating subsequent ironing and drying operations. When the textiles enter the box body 1 through the feeding structure 3, they are conveyed to the ironing structure 7. The four support legs 701 provide stable support for the ironing platform 702, ensuring that the ironing platform 702 does not shake or tilt during the working process. When ironing of the textiles is required, the second electric telescopic rod 703 extends downward according to the control signal, pushing the ironing plate 704 closer to the ironing platform 702 below. After the ironing plate 704 approaches the textiles, a certain pressure is applied to the textiles placed on the ironing platform 702, thereby achieving ironing of the textiles, removing wrinkles, and making them flat.

[0040] The water is heated by two second heaters 802 in the water tank 801. As the water temperature rises, the water gradually turns into steam. The partition plate 803 divides the water tank 801 into upper and lower parts, ensuring that steam can be stably generated during the heating process of the water and also contributing to the uniform distribution of the steam. Multiple through-holes 804 enable the steam to flow from the lower part of the water tank 801 to the upper part, preparing for subsequent transportation. When the two air blowers 805 are started, they generate a strong air flow. The air flow transports the steam generated in the water tank 801 to the inside of the box body 1 through the air duct 806. Through the steam, it can quickly penetrate into the textiles, causing the moisture in the textiles to evaporate rapidly, thus achieving an efficient drying effect. When the textiles are being processed in the box body 1, some gases such as moisture, hot air, and possibly odors are generated. These gases need to be discharged in a timely manner to ensure the normal operation of the equipment and a good working environment. After the exhaust fan 903 is started, a negative pressure is formed in the box body 1 and the exhaust rack 901, prompting the gases in the box body 1 to flow towards the exhaust rack 901. After the gases enter the exhaust rack 901, they first pass through the filter screen 902. The filter screen 902 can filter out particulate matters such as impurities and dust in the gases, preventing these substances from being discharged into the external environment and causing pollution. The filtered gases continue to flow upward.

[0041] When discharging is required, the discharge solenoid valve 904 is opened, and the gases are discharged to the external environment through the upper end face of the exhaust rack 901. When discharging is not required, the discharge solenoid valve 904 is closed to prevent the gases from being discharged. After the textiles are processed in the box body 1, the baffle 307 opens the discharge slot 308 under the action of the first electric telescopic rod 306 and outputs from the discharge slot 308. Two first motors 302 drive the corresponding winders 303 to rotate, assisting the smoothly output of the processed textiles. After the processing is completed, the baffle 307 closes the discharge slot 308 under the action of the first electric telescopic rod 306.

[0042] Finally, it should be noted that the above are only the preferred embodiments of the present invention and are not used to limit the present invention. Although the present invention has been described in detail with reference to the foregoing embodiments, for those skilled in the art, they can still modify the technical solutions described in the foregoing embodiments, or perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.

Claims

1. An ironing and drying device for textile production, comprising a box body (1), characterized in that: On one side near the upper part of the front end face of the box body (1), there is a control panel (2). At the centers of both side walls of the box body (1), there are feeding structures (3). At the upper parts on both sides of the front inner wall of the box body (1) and at the lower parts on both sides of the rear inner wall of the box body (1), there are first heaters (4). At the upper parts and lower parts on both sides of the front and rear end faces of the box body (1), there are second motors (6). The output ends of the four second motors (6) at the front pass through the front end face of the box body (1) and extend into the interior of the box body (1), and stretching wheels (5) are fixed to their ends. The rear end faces of the four stretching wheels (5) are fixedly connected to the output ends of the four second motors (6) at the rear. At the center of the interior of the box body (1), there is an ironing structure (7). At the center of the upper end face of the box body (1), there is a drying structure (8). At one side near the center of the upper end face of the box body (1), there is an exhaust structure (9).

2. The ironing and drying equipment for textile production according to claim 1, characterized in that: The two feeding structures (3) include four connecting plates (301), four first motors (302), two reelers (303), a feeding groove (304), two fixing plates (305), four first electric telescopic rods (306), two baffle plates (307) and a discharging groove (308). The feeding groove (304) is arranged at the center of one side wall of the box body (1), and the discharging groove (308) is arranged at the center of the other side wall of the box body (1). The four connecting plates (301) are grouped in twos. The two groups of connecting plates (301) are arranged front and rear at the front end of the feeding groove (304) and the rear end of the discharging groove (308) at the centers of both side walls of the box body (1). The two first motors (302) are respectively arranged at the centers of the front end faces of the two front connecting plates (301) and at the centers of the rear end faces of the rear connecting plates (301). The two reelers (303) are respectively arranged between the two groups of connecting plates (301). The two fixing plates (305) are arranged at the centers of both sides near the upper end face of the box body (1). The four first electric telescopic rods (306) are grouped in twos. The two groups of first electric telescopic rods (306) are arranged front and rear at the centers of the upper inner walls of the two fixing plates (305) near one side. The two baffle plates (307) are respectively arranged at the output ends of the two groups of first electric telescopic rods (306).

3. An ironing and drying device for textile production according to claim 1, characterized in that: The ironing structure (7) includes four support legs (701), an ironing platform (702), three second electric telescopic rods (703) and an ironing board (704). The four support legs (701) are arranged in a rectangular shape at the center of the lower inner wall of the box body (1). The ironing platform (702) is arranged on the upper end faces of the four support legs (701). The three second electric telescopic rods (703) are arranged front and rear at the center of the upper inner wall of the box body (1). The ironing board (704) is arranged at the output ends of the three second electric telescopic rods (703).

4. An ironing and drying device for textile production according to claim 1, characterized in that: The drying structure (8) includes a water tank (801), two second heaters (802), a partition plate (803), a plurality of through holes (804), two air blowers (805) and two air ducts (806). The water tank (801) is arranged at the center of the upper end face of the box body (1). The two second heaters (802) are respectively arranged horizontally on the lower inner wall of the water tank (801). The partition plate (803) is arranged at the center inside the water tank (801). The plurality of through holes (804) are arranged in a rectangular pattern at the center of the upper end face of the partition plate (803). The two air blowers (805) are arranged at the upper center of the front inner wall and the rear inner wall of the water tank (801). The two air ducts (806) are respectively arranged at the output ends of the two air blowers (805). The output end of the front air duct (806) sequentially passes through the front inner wall of the water tank (801) and the lower part of the front end face of the box body (1) and leads to the inside of the box body (1). The output end of the rear air duct (806) sequentially passes through the rear inner wall of the water tank (801) and the upper center of the rear end face of the box body (1) and leads to the inside of the box body (1).

5. An ironing and drying device for textile production according to claim 1, characterized in that: The exhaust structure (9) includes an exhaust frame (901), a filter screen (902), an exhaust fan (903) and an exhaust solenoid valve (904). The exhaust frame (901) is arranged at one side of the center of the upper end face of the box body (1). The filter screen (902) is arranged at the lower center inside the exhaust frame (901). The exhaust fan (903) is arranged at the lower center inside the exhaust frame (901) above the filter screen (902). The exhaust solenoid valve (904) is arranged at the center of the upper end face of the exhaust frame (901).

6. A pressing and drying device for textile production according to claim 4, characterized in that: A water inlet is provided at the lower center of one side wall of the water tank (801).

7. An ironing and drying device for textile production according to claim 2, characterized in that: The feeding trough (304) and the discharging trough (308) are respectively adapted to the two fixing plates (305).

8. The ironing and drying equipment for textile production according to claim 2, characterized in that: The output ends of the two front first motors (302) respectively pass through the front end face of the connecting plate (301) and lead to the rear ends of the two front connecting plates (301), and the ends are respectively fixedly connected to the front end faces of the two reelers (303). The output ends of the two rear reelers (303) respectively pass through the rear end faces of the two rear connecting plates (301) and lead to the front ends of the two rear connecting plates (301), and the ends are respectively fixedly connected to the rear end faces of the two reelers (303).