High-temperature steam ironing device for textile fabric processing

By introducing a steam circulation ironing unit and an airflow circulation dehumidification unit into the textile fabric ironing device, the problem of heat deformation caused by excessive fabric humidity is solved, achieving uniform high-temperature ironing and good shaping effect.

CN224212978UActive Publication Date: 2026-05-08JIANGSU JIUCHEN NEW MATERIAL TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
JIANGSU JIUCHEN NEW MATERIAL TECHNOLOGY CO LTD
Filing Date
2025-06-09
Publication Date
2026-05-08

AI Technical Summary

Technical Problem

In existing textile ironing devices, excessive moisture on the fabric surface during the circulating conveying process causes heat deformation, affecting the ironing and shaping effect.

Method used

The textile fabric steam circulation ironing unit includes a supply bend, a corrugated frame, and an airflow circulation dehumidification unit. It reduces moisture buildup and ensures uniform heating of the fabric by blowing high-temperature steam from the top and bottom and using moisture-absorbing carbon blocks and airflow pushers.

Benefits of technology

It achieves uniform high-temperature ironing of textile fabrics, avoids fabric deformation caused by excessive humidity, and ensures ironing and shaping effect.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model discloses a textile fabric processing high-temperature steam ironing device which comprises a conveying frame, a conveying roller, a steam supply bin, a lateral partition plate and a steam spraying cover. In the using process of the textile fabric processing high-temperature steam ironing device, the steam supply bin at the bottom of the conveying frame sprays in part of high-temperature steam through an air inlet groove; the part of high-temperature steam is blown upwards from the bottom of the textile fabric, the surface of the textile fabric is blown by circulating high-temperature steam, the filtering cotton layer installed in the bottom area of the wavy curved frame can filter redundant moisture of the high-temperature steam part, and the high-temperature steam blowing effect on the top of the textile fabric is guaranteed; in order to guarantee the high-temperature steam density from the injection pressure of the bottom of the textile fabric, a bottom airflow push fan installed on the surface of the airflow push injection frame can pressurize, guide and inject the high-temperature steam entering the air inlet groove area to the bottom of the textile fabric, and the high-temperature steam ironing effect of the bottom of the textile fabric is guaranteed.
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Description

Technical Field

[0001] This utility model relates to the field of steam ironing technology for textile fabrics, specifically a high-temperature steam ironing device for textile fabric processing. Background Technology

[0002] Knitted fabrics, classified by weaving method, are divided into two categories: weft-knitted fabrics and warp-knitted fabrics. Weft-knitted fabrics are often made from low-elastic polyester yarn or profiled polyester yarn, nylon yarn, cotton yarn, wool yarn, etc., and are woven on various weft knitting machines using plain knit, modified plain knit, rib plain knit, double rib plain knit, jacquard, terry, etc.

[0003] High-temperature steam ironing technology achieves efficient wrinkle removal, sterilization, and fabric protection through the synergistic effect of heat, humidity, and pressure. 160℃ high-temperature steam can penetrate fibers to soften wrinkles, and combined with a dual steam system, it provides powerful sterilization and significantly removes contaminants such as mites and dust.

[0004] In the prior art, publication number "CN218756646U" discloses a high-temperature steam ironing device for textile fabric processing, which solves the problem in the prior art that it is inconvenient to fix the fabric during ironing, thus causing the fabric to move during the ironing process and affecting the fabric quality. A high-temperature steam ironing device for textile fabric processing includes a frame, with a support plate on the inner side of the frame, and clamping frames fixedly connected to both sides of the top of the support plate. Each clamping frame has a pressure plate on its inner side, and support rods are fixedly connected to both sides of the top of the two pressure plates. The method proposed in this utility model can stably clamp the fabric through the clamping frames and their structure on the top of the support plate, preventing the fabric from shifting during ironing and improving the quality of fabric ironing.

[0005] However, existing technologies still have significant shortcomings, such as:

[0006] In the aforementioned devices and existing technologies, when ironing textile fabrics, the fabric is circulated and ironed using conveyor rollers, and steam is circulated and blown onto the textile fabric. During the circulation and blowing process, it is necessary to avoid excessive humidity on the surface of the textile fabric. If the textile fabric contains too much water vapor, it will cause the textile fabric to deform due to heat during the ironing process, affecting the ironing and shaping effect of the textile fabric. Utility Model Content

[0007] The purpose of this invention is to provide a high-temperature steam ironing device for textile fabric processing, so as to solve the problems mentioned in the background art.

[0008] To achieve the above objectives, this utility model provides the following technical solution: a high-temperature steam ironing device for textile fabric processing, comprising a conveying frame, a conveying roller, a steam supply chamber, side partitions, and a steam spray cover. The conveying roller is installed on the top of the conveying frame, and a base plate is provided at the bottom of the conveying frame. An air inlet groove is provided on the surface of the base plate. The steam supply chamber is connected and installed at the bottom of the air inlet groove. The side partitions are configured in two sets, and the two sets of side partitions are symmetrically installed on the top of the conveying frame. The steam spray cover is installed on the top of the side partitions, and side frames are provided on both sides of the conveying frame.

[0009] A textile fabric steam circulation ironing unit is located at the bottom area of ​​the steam spray cover. It is used to perform surface steam circulation ironing on the textile fabric that is circulated on the surface of the conveying roller, while reducing the accumulation of moisture caused by steam ironing.

[0010] Preferably, the textile fabric steam circulation ironing unit includes an ironing section, the ironing section includes a supply bend, the supply bend is installed on both sides of the steam supply chamber, the two sets of the supply bends are connected to the steam spray cover, and the bottom of the steam spray cover is provided with spray holes.

[0011] Preferably, the steam circulating ironing unit for textile fabrics further includes a dehumidification section, which includes a wave-shaped frame installed between the side partitions. The wave-shaped frame is located at the bottom of the steam spray cover, and a moisture-absorbing carbon block is installed at the top of the wave-shaped frame. A filter cotton layer is installed at the bottom of the wave-shaped frame.

[0012] Preferably, an airflow circulation dehumidification unit is provided on one side of the steam spray cover.

[0013] Preferably, the airflow circulation dehumidification unit includes a dehumidification section, the dehumidification section includes a dehumidification chamber, the dehumidification chamber is installed on one side of the steam spray cover, a dehumidification fan is installed in a horizontal array inside the dehumidification chamber, and a filter screen is installed on the outside of the steam spray cover.

[0014] Preferably, an ironing airflow ejection unit is provided at the top of the air inlet slot. The ironing airflow ejection unit includes an airflow ejection frame, which is installed inside the conveyor frame. A bottom-mounted airflow pusher is installed on the surface of the airflow ejection frame.

[0015] Preferably, the bottom plate is equipped with lateral heat-absorbing grids at both ends of the top, and the surface of the lateral heat-absorbing grids is provided with heat storage chambers, and heat storage cotton blocks are embedded in the heat storage chambers.

[0016] Preferably, a centrally located heat-absorbing grille is also installed on the top of the base plate.

[0017] Compared with the prior art, the beneficial effects of this utility model are:

[0018] 1. During use, some of the high-temperature steam in the steam supply chamber is injected into the steam spray cover through the supply bend. The nozzle at the bottom of the steam spray cover blows the high-temperature steam down from the top of the textile fabric. The steam supply chamber at the bottom of the conveyor frame will inject some of the high-temperature steam through the air inlet slot. This part of the high-temperature steam blows up from the bottom of the textile fabric. The surface of the textile fabric is blown by the circulating high-temperature steam, ensuring the high-temperature steam ironing effect of the textile fabric.

[0019] 2. During use, the filter cotton layer installed at the bottom of the wave frame can filter out excess moisture from the high-temperature steam, ensuring the high-temperature steam blowing effect on the top of the textile fabric. Since the high-temperature steam density is relatively low, in order to ensure the blowing pressure of the high-temperature steam from the bottom of the textile fabric, the bottom airflow push fan installed on the surface of the airflow push frame can pressurize and guide the high-temperature steam entering from the air inlet area to the bottom of the textile fabric, ensuring the high-temperature steam ironing effect on the bottom of the textile fabric. Attached Figure Description

[0020] Figure 1 This is a schematic diagram of the overall device of this utility model;

[0021] Figure 2 This is a schematic diagram of the dehumidification chamber in this utility model;

[0022] Figure 3 This is a schematic diagram of the wave-shaped frame part in this utility model;

[0023] Figure 4 This is a schematic diagram of the bottom plate and conveying rollers in this utility model;

[0024] Figure 5 This is a schematic diagram of the airflow ejector frame and the bottom-mounted airflow pusher fan in this utility model;

[0025] Figure 6 This is a schematic diagram of the lateral heat-absorbing grid, the central heat-absorbing grid, and the heat storage cavity in this utility model.

[0026] In the diagram: 1. Conveying frame; 11. Side frame; 12. Base plate; 13. Conveying roller; 14. Air inlet groove;

[0027] 2. Steam supply compartment;

[0028] 3. Supply of bent pipes; 4. Side partitions;

[0029] 5. Steam spray cover;

[0030] 6. Dehumidification chamber; 61. Filter screen; 62. Exhaust fan;

[0031] 7. Wavy frame; 71. Moisture-absorbing carbon block; 72. Filter cotton layer;

[0032] 8. Lateral heat-absorbing grille; 81. Central heat-absorbing grille; 82. Heat storage chamber;

[0033] 9. Airflow ejector frame; 91. Bottom-mounted airflow pusher fan. Detailed Implementation

[0034] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0035] Please see Figure 1-6 This utility model provides a technical solution:

[0036] Example 1: A high-temperature steam ironing device for textile fabric processing: including a conveyor frame 1, a conveyor roller 13, a steam supply chamber 2, side partitions 4, and a steam spray cover 5. The conveyor roller 13 is installed on the top of the conveyor frame 1. A base plate 12 is provided at the bottom of the conveyor frame 1. An air inlet groove 14 is provided on the surface of the base plate 12. The steam supply chamber 2 is connected and installed at the bottom of the air inlet groove 14. The side partitions 4 are configured in two sets, and the two sets of side partitions 4 are symmetrically installed on the top of the conveyor frame 1. The steam spray cover 5 is installed on the top of the side partitions 4. Side frames 11 are provided on both sides of the conveyor frame 1.

[0037] A textile fabric steam circulation ironing unit is located at the bottom area of ​​the steam spray cover 5. It is used to perform surface steam circulation ironing on the textile fabric that is circulated on the surface of the conveying roller 13, while reducing the accumulation of moisture caused by steam ironing.

[0038] The textile fabric steam circulation ironing unit includes an ironing section, which includes a supply bend 3. The supply bend 3 is installed on both sides of the steam supply chamber 2. The two sets of supply bend 3 are connected to the steam spray cover 5. The bottom of the steam spray cover 5 is provided with spray holes.

[0039] The textile fabric steam circulation ironing unit also includes a dehumidification section, which includes a wave frame 7 installed between the side partitions 4. The wave frame 7 is located at the bottom of the steam spray cover 5. A moisture-absorbing carbon block 71 is installed on the top area of ​​the wave frame 7, and a filter cotton layer 72 is installed on the bottom of the wave frame 7.

[0040] In this embodiment, high-temperature steam tends to accumulate at the bottom of the steam spray cover 5. When the high-temperature steam condenses, it will produce condensate droplets, which will drip onto the surface of the textile fabric. In order to avoid the accumulation of condensate droplets at the bottom of the steam spray cover 5, the moisture-absorbing carbon block 71 installed on the top of the corrugated frame 7 can adsorb the condensed water vapor.

[0041] The top of the air inlet slot 14 is provided with an ironing airflow ejection unit, which includes an airflow ejection frame 9. The airflow ejection frame 9 is installed inside the transport frame 1, and a bottom-mounted airflow pusher fan 91 is installed on the surface of the airflow ejection frame 9.

[0042] The bottom plate 12 is equipped with lateral heat-absorbing grilles 8 at both ends of the top. The surface of the lateral heat-absorbing grilles 8 is provided with heat storage chambers 82, and heat storage cotton blocks are embedded in the heat storage chambers 82.

[0043] The top of the base plate 12 is also equipped with a central heat-absorbing grille 81.

[0044] In this embodiment, the lateral heat-absorbing grille 8 and the central heat-absorbing grille 81 can adsorb and store excess heat in the high-temperature steam, reducing the heat loss problem in the high-temperature steam. At the same time, heat storage cotton blocks are added to the heat storage cavity 82 in the lateral heat-absorbing grille 8, which will improve the heat storage effect of the lateral heat-absorbing grille 8.

[0045] Example 2:

[0046] Based on Embodiment 1, this embodiment takes into account that if the textile fabric contains too much water vapor, it will cause the textile fabric to deform due to heat during the ironing process, affecting the ironing and shaping effect of the textile fabric. Therefore, this embodiment is equipped with an airflow circulation dehumidification unit to avoid the above-mentioned problem from affecting the ironing effect of the textile fabric.

[0047] An airflow circulation dehumidification unit is provided on one side of the steam spray cover 5.

[0048] The airflow circulation dehumidification unit includes a dehumidification section, which includes a dehumidification chamber 6. The dehumidification chamber 6 is installed on one side of the steam spray cover 5. A dehumidification fan 62 is installed in a horizontal array inside the dehumidification chamber 6, and a filter screen 61 is installed on the outside of the steam spray cover 5.

[0049] In this embodiment, external air is drawn into the dehumidification chamber 6 through the filter screen 61. The dehumidification chamber 6 draws dry external air into the bottom of the steam spray cover 5, thereby circulating and removing the steam moisture attached to the bottom of the steam spray cover 5, preventing the textile fabric from deforming during ironing due to excessive humidity, and ensuring the high-temperature ironing and shaping effect of the textile fabric.

[0050] Working principle: During the use of this device, the operator places the textile fabric to be ironed with high temperature steam on the conveyor roller 13. The conveyor roller 13 will transport the textile fabric. During the transport of the textile fabric, the textile fabric will be ironed by high temperature steam blowing from the top and bottom areas. Some of the high temperature steam in the steam supply chamber 2 is injected into the steam spray cover 5 through the supply bend pipe 3. The nozzle at the bottom of the steam spray cover 5 blows the high temperature steam down from the top of the textile fabric. The steam supply chamber 2 at the bottom of the conveyor frame 1 will spray some of the high temperature steam into the air inlet groove 14. This part of the high temperature steam blows up from the bottom of the textile fabric. The surface of the textile fabric is subjected to circulating high temperature steam blowing, ensuring the high temperature steam ironing effect of the textile fabric.

[0051] The high-temperature steam blown down from the top of the textile fabric will first pass through the corrugated frame 7. The filter cotton layer 72 installed at the bottom of the corrugated frame 7 can filter out excess moisture from the high-temperature steam, ensuring the high-temperature steam blowing effect at the top of the textile fabric. Since the high-temperature steam density is relatively low, in order to ensure the high-temperature steam density blowing pressure from the bottom of the textile fabric, the bottom airflow push fan 91 installed on the surface of the airflow push frame 9 can pressurize and guide the high-temperature steam entering from the air inlet slot 14 area to the bottom of the textile fabric, ensuring the high-temperature steam ironing effect at the bottom of the textile fabric.

[0052] During the process of circulating high-temperature steam blowing on the surface and bottom of the fabric, due to the low density of high-temperature steam, it is easy for high-temperature steam to accumulate at the bottom of the steam spray cover 5. When the high-temperature steam condenses, it will produce condensate droplets, which will drip onto the surface of the textile fabric. In order to avoid the accumulation of condensate droplets at the bottom of the steam spray cover 5, the moisture-absorbing carbon block 71 installed on the top of the corrugated frame 7 can adsorb the condensate water vapor, thereby reducing the ambient humidity in the top area of ​​the conveyor frame 1. In order to further reduce the accumulation of condensate water vapor, the external air can be drawn into the dehumidification chamber 6 through the filter plate 61 by driving the dehumidification fan 62. The dehumidification chamber 6 draws the external dry air into the bottom of the steam spray cover 5, thereby circulating and removing the steam moisture attached to the bottom of the steam spray cover 5, avoiding the textile fabric from deforming during ironing due to excessive humidity, and ensuring the high-temperature ironing and shaping effect of the textile fabric.

[0053] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A high-temperature steam ironing device for textile fabric processing, characterized in that: The system includes a conveyor frame (1), a conveyor roller (13), a steam supply chamber (2), side partitions (4), and a steam spray cover (5). The conveyor roller (13) is installed on the top of the conveyor frame (1). A base plate (12) is provided at the bottom of the conveyor frame (1). An air inlet groove (14) is provided on the surface of the base plate (12). The steam supply chamber (2) is connected to the bottom of the air inlet groove (14). The side partitions (4) are configured in two sets, and the two sets of side partitions (4) are symmetrically installed on the top of the conveyor frame (1). The steam spray cover (5) is installed on the top of the side partitions (4). Side frames (11) are provided on both sides of the conveyor frame (1). A textile fabric steam circulation ironing unit is located at the bottom area of ​​the steam spray cover (5) and is used to perform surface circulation steam ironing on the textile fabric circulated on the surface of the conveying roller (13) while reducing the accumulation of moisture caused by steam ironing.

2. The high-temperature steam ironing device for textile fabric processing according to claim 1, characterized in that: The textile fabric steam circulation ironing unit includes an ironing part, which includes a supply bend (3). The supply bend (3) is installed on both sides of the steam supply chamber (2). The two sets of supply bends (3) are connected to the steam spray cover (5). The bottom of the steam spray cover (5) is provided with spray holes.

3. The high-temperature steam ironing device for textile fabric processing according to claim 2, characterized in that: The textile fabric steam circulation ironing unit also includes a dehumidification section, which includes a wave frame (7) installed between the side partitions (4). The wave frame (7) is located at the bottom of the steam spray cover (5). A moisture-absorbing carbon block (71) is installed on the top area of ​​the wave frame (7), and a filter cotton layer (72) is installed on the bottom of the wave frame (7).

4. The high-temperature steam ironing device for textile fabric processing according to claim 3, characterized in that: An airflow circulation dehumidification unit is provided on one side of the steam spray cover (5).

5. The high-temperature steam ironing device for textile fabric processing according to claim 4, characterized in that: The airflow circulation dehumidification unit includes a dehumidification section, which includes a dehumidification chamber (6). The dehumidification chamber (6) is installed on one side of the steam spray cover (5). A dehumidification fan (62) is installed in a horizontal array inside the dehumidification chamber (6). A filter screen (61) is installed on the outside of the steam spray cover (5).

6. The high-temperature steam ironing device for textile fabric processing according to claim 1, characterized in that: The top of the air inlet slot (14) is provided with an ironing airflow ejection unit, which includes an airflow ejection frame (9). The airflow ejection frame (9) is installed inside the transport frame (1), and a bottom-mounted airflow pusher (91) is installed on the surface of the airflow ejection frame (9).

7. A high-temperature steam ironing device for textile fabric processing according to claim 6, characterized in that: The bottom plate (12) has lateral heat-absorbing grids (8) installed at both ends of the top. The surface of the lateral heat-absorbing grids (8) is provided with heat storage chambers (82), and heat storage cotton blocks are embedded in the heat storage chambers (82).

8. The high-temperature steam ironing device for textile fabric processing according to claim 6, characterized in that: The top of the base plate (12) is also equipped with a central heat-absorbing grid (81).