Fabric ironing device for fabric processing

By fixing both ends of the fabric with a liquid-pressing component and a liquid-passing component, and using a servo motor to drive the rubber column to rotate, the problems of fixing and ironing efficiency of ironing devices for shorter fabrics are solved, achieving efficient fabric flattening and ironing.

CN223974356UActive Publication Date: 2026-03-06SHANGHAI XIAOLANXIANG GARMENT CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-25
Publication Date
2026-03-06

AI Technical Summary

Technical Problem

Existing ironing devices are difficult to effectively fix and iron shorter fabrics, resulting in cumbersome operation and reduced ironing efficiency.

Method used

The rubber blocks and rubber columns are expanded by using a liquid pressure component and a liquid flow component, which fix the two ends of the fabric respectively. The rubber columns are driven to rotate by a servo motor to achieve the stretching and flattening of the fabric.

Benefits of technology

It improves the ironing efficiency of shorter fabrics, reduces manual operation, lowers the labor intensity of workers, and enhances the overall efficiency of ironing.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model discloses a fabric ironing device for fabric processing, which belongs to the technical field of fabric processing and comprises a worktable, an L-shaped frame plate is fixed on the side surface of the top end of the worktable, a rubber pressing block is fixed at the bottom end of the L-shaped frame plate, and a liquid pressing component is arranged at the top end of the rubber pressing block. A cavity arranged in the length direction of the rubber column is formed in the rubber column, and a liquid passing assembly is connected between the rubber column and the rubber pressing block. A certain amount of liquid is squeezed into the rubber pressing block through the liquid pressing assembly, one end of fabric is pressed and fixed through the rubber pressing block, at the moment, part of the liquid in the rubber pressing block is synchronously conveyed into the rubber column through the liquid passing assembly, the other end of the fabric is tightly pressed through the side wall of the expanded rubber column, and the fabric is tightly pressed. And meanwhile, one end of the fabric is pulled through the rotating rubber column, so that the fabric is quickly flattened, wrinkles on the fabric are eliminated, and the fabric ironing operation efficiency is effectively improved.
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Description

Technical Field

[0001] This utility model relates to the field of fabric processing technology, and in particular to a fabric ironing device for fabric processing. Background Technology

[0002] Fabric, as the main component of textiles, is a woven material formed by bending yarns into loops and interlocking them using knitting needles. Weft-knitted fabrics, in particular, are made by sequentially forming loops along the transverse (weft) direction of the fabric surface using one or more yarns, exhibiting excellent stretchability, hemming resistance, and unraveling properties. With the development of technology and continuous innovation in fabric technology, many new high-tech fabrics have emerged, such as breathable and waterproof fabrics, flame-retardant fabrics, and color-changing fabrics made using special processes. As one of the three essential elements of clothing, fabric not only interprets the style and characteristics of clothing but also directly influences the color and shape of the garment.

[0003] During production, fabrics are prone to wrinkling after dyeing, washing and other processes, so they need to be ironed. Existing ironing devices are generally only suitable for longer fabrics, ironing while rolling them up. When ironing shorter fabrics, it is inconvenient to fix the fabric, and manual smoothing and pulling of the two corners of the fabric are usually required, which is cumbersome and affects the ironing efficiency of shorter fabrics.

[0004] Therefore, it is necessary to provide a fabric ironing device for fabric processing to solve the above-mentioned technical problems. Utility Model Content

[0005] The purpose of this invention is to provide a fabric ironing device for fabric processing, so as to solve the problems mentioned in the background art.

[0006] To achieve the above objectives, the present invention provides the following solution to the aforementioned technical problems: A fabric ironing device for fabric processing includes a worktable. An L-shaped frame plate is fixed to the top side of the worktable at one end. A rubber pressure block is fixed to the bottom end of the L-shaped frame plate along its length. A hydraulic assembly for expanding the rubber pressure block is provided at the top end of the rubber pressure block. A support rod is fixed to the end of the worktable away from the L-shaped frame plate. A bracket is fixed to the top end of the support rod. A rubber column is provided inside the bracket. Both ends of the rubber column are fixed with end shafts arranged coaxially with the rubber column. The end shafts are rotatably connected to the ends of the bracket. A servo motor is fixed to one end of the bracket. The output end of the servo motor is coaxially fixed with one of the end shafts. A cavity is opened inside the rubber column along its length. A hydraulic assembly connects the rubber column and the rubber pressure block, allowing communication between their interiors.

[0007] As a further embodiment of this utility model, the hydraulic assembly includes a connecting cylinder fixed to the top surface of the rubber pressure block and penetrating the top side wall of the L-shaped frame plate. A nut sleeve is fixed inside the top port of the connecting cylinder. A threaded rod that is threadedly connected to the nut sleeve is inserted inside the connecting cylinder. A piston plate that fits tightly against the inner side wall of the connecting cylinder is fixed to one end of the threaded rod inside the connecting cylinder. A cavity communicating with the connecting cylinder is opened inside the rubber pressure block.

[0008] As a further embodiment of this utility model, an end plate is fixed to one end of the threaded rod located outside the connecting cylinder, and a handle rod is fixed to the side of the end plate, with a rubber sleeve fitted onto the surface of the handle rod.

[0009] As a further embodiment of this utility model, one of the end shafts has a through groove communicating with the internal cavity of the rubber column. The fluid inlet assembly includes a bearing fixed in the through groove port of the end shaft. An inlet tube is connected between the rubber column and the rubber pressure block. One end of the inlet tube is rotatably connected to the end shaft through the bearing and communicates with the internal cavity of the rubber column. The other end of the inlet tube communicates with the cavity.

[0010] As a further embodiment of this utility model, the bottom end of the workbench is fixed with a plurality of symmetrically distributed support rods, and there are two support rods that are symmetrically distributed.

[0011] As a further embodiment of this utility model, the bottom surface of the rubber block is provided with a plurality of rubber protrusions that are equidistantly distributed.

[0012] Compared with the prior art, the beneficial effects of this utility model are:

[0013] A certain amount of liquid is squeezed into the rubber block by the liquid-pressing component, causing the rubber block to expand. This causes the bottom sidewall of the rubber block to press tightly against one end of the fabric, securing that end. Simultaneously, some of the liquid inside the rubber block is transported to the inside of the rubber column through the liquid-flowing component, causing the rubber column to expand as well. The expanded rubber column's sidewall presses tightly against the other end of the fabric. The output of the servo motor drives the rubber column to rotate at a certain angle, causing the sidewall of the rubber column to contact the end of the fabric. This pulls the fabric at one end, quickly flattening it and eliminating wrinkles. This facilitates ironing the fabric with a fabric ironing machine, effectively improving the efficiency of fabric smoothing and wrinkle removal. It eliminates the need for manual smoothing and pulling of the fabric corners, reducing worker workload, improving the ironing effect on shorter fabrics, and increasing the overall efficiency of the ironing process. Attached Figure Description

[0014] The present invention will be further described below with reference to the accompanying drawings and embodiments:

[0015] Figure 1 The overall three-dimensional structure of this utility model Figure 1 ;

[0016] Figure 2 The overall three-dimensional structure of this utility model Figure 2 ;

[0017] Figure 3 This is a partial structural diagram of the liquid circulation component of this utility model.

[0018] Figure 4 for Figure 3 Enlarged view of the structure at point A in the middle;

[0019] Figure 5 This is a cross-sectional view of the hydraulic assembly of this utility model.

[0020] The attached diagram lists the components represented by each number as follows:

[0021] 1. Fluid pressing assembly; 101. Piston plate; 102. Threaded rod; 103. End plate; 104. Nut sleeve; 105. Connecting cylinder; 106. Handle rod; 107. Cavity; 2. Fluid conveying assembly; 201. Bearing; 202. Infusion tube; 3. Workbench; 4. L-shaped frame plate; 5. Bracket; 6. Support rod; 7. Servo motor; 8. Rubber column; 9. Rubber pressure block; 10. Support leg rod; 11. End shaft rod. Detailed Implementation

[0022] The present invention will be further described below with reference to the embodiments.

[0023] Please see Figure 1-5This utility model provides a fabric ironing device for fabric processing, including a workbench 3. An L-shaped frame plate 4 is fixed to the top side of the workbench 3 at one end of the workbench 3. A rubber pressure block 9 is fixed to the bottom end of the L-shaped frame plate 4 and arranged along the length of the L-shaped frame plate 4. A hydraulic pressure component 1 is provided on the top of the rubber pressure block 9 to cause the rubber pressure block 9 to expand. A support rod 6 is fixed to the end of the workbench 3 away from the L-shaped frame plate 4. A bracket 5 is fixed to the top of the support rod 6. A rubber column 8 is provided inside the bracket 5. Both ends of the rubber column 8 are fixed with a coupling to the rubber column 8. A coaxially arranged end shaft 11 is rotatably connected to the end of the bracket 5. A servo motor 7 is fixed to one end of the bracket 5, and the output end of the servo motor 7 is coaxially fixed to one of the end shafts 11. A cavity is opened inside the rubber column 8 along the length direction of the rubber column 8. A liquid-passing component 2 is connected between the rubber column 8 and the rubber pressing block 9 to make the interiors of the rubber column 8 and the rubber pressing block 9 communicate. When using, the shorter fabric to be ironed is laid flat on the top side of the workbench 3, and one end of the fabric is inserted into the bottom of the rubber pressing block 9. The other end of the material extends into the bottom of the rubber column 8. By rotating the input end of the hydraulic assembly 1, a certain amount of liquid is squeezed into the rubber block 9, causing the rubber block 9 to expand. This causes the bottom sidewall of the rubber block 9 to press tightly against one end of the fabric, thus securing that end of the fabric. At the same time, some of the liquid inside the rubber block 9 is simultaneously transported to the inside of the rubber column 8 through the liquid conveying assembly 2, causing the rubber column 8 to expand synchronously. The expanded sidewall of the rubber column 8 then presses tightly against the other end of the fabric, thereby achieving the desired effect of pressing the fabric... Both ends are simultaneously pressed and fixed, and the servo motor 7 is started to work. The output end of the servo motor 7 drives the rubber column 8 to rotate a certain angle. At this time, the side wall of the rubber column 8 contacts the end of the fabric, thereby pulling one end of the fabric through the rubber column 8, so that the fabric is quickly flattened, eliminating wrinkles on the fabric, making it easier to iron the fabric with a fabric ironing machine, effectively improving the efficiency of fabric smoothing and wrinkle removal, eliminating the need for manual smoothing and pulling of the two corners of the fabric, reducing the workload of workers, improving the ironing effect of shorter fabrics, and improving the overall efficiency of ironing.

[0024] Further as Figure 1 , Figure 3 and Figure 5As shown, it is worth noting that the hydraulic assembly 1 includes a connecting cylinder 105 fixed to the top surface of the rubber pressure block 9 and penetrating the top side wall of the L-shaped frame plate 4. A nut sleeve 104 is fixed inside the top port of the connecting cylinder 105. A threaded rod 102, which is threadedly connected to the nut sleeve 104, is inserted inside the connecting cylinder 105. A piston plate 101, which fits tightly against the inner side wall of the connecting cylinder 105, is fixed to one end of the threaded rod 102 located inside the connecting cylinder 105. The rubber pressure block 9 has an opening that connects to the connecting cylinder 105. The cavity 107 is connected to the connecting cylinder 105. The cavity 107 is filled with a certain amount of liquid, which can be water or hydraulic oil. By turning the threaded rod 102 downward, the threaded rod 102 drives the piston plate 101 to move downward in the connecting cylinder 105. Thus, the piston plate 101 squeezes the liquid in the connecting cylinder 105 into the cavity 107 of the rubber block 9, thereby causing the rubber block 9 to expand. This causes the bottom side wall of the rubber block 9 to press tightly against one end of the fabric, thus pressing and fixing one end of the fabric.

[0025] Further as Figure 3 As shown, it is worth noting that an end plate 103 is fixed to one end of the threaded rod 102 located outside the connecting cylinder 105, and a handle rod 106 is fixed to the side of the end plate 103. A rubber sleeve is fitted onto the surface of the handle rod 106. In actual operation, the threaded rod 102 is rotated by holding the handle rod 106. The handle rod 106 has a long lever arm, making operation easier.

[0026] Further as Figure 2 , Figure 3 and Figure 4 As shown, it is worth noting that one of the end shafts 11 has a through groove that communicates with the internal cavity of the rubber column 8. The liquid-conducting assembly 2 includes a bearing 201 fixed in the through groove port of the end shaft 11. An infusion tube 202 is connected between the rubber column 8 and the rubber pressure block 9. One end of the infusion tube 202 is rotatably connected to the end shaft 11 through the bearing 201 and communicates with the internal cavity of the rubber column 8. The other end of the infusion tube 202 communicates with the cavity 107. In specific operation, when there is hydraulic pressure inside the rubber pressure block 9, part of the liquid inside the rubber pressure block 9 is synchronously transported to the internal cavity of the rubber column 8 through the infusion tube 202, thereby causing the rubber column 8 to expand synchronously. The side wall of the expanded rubber column 8 presses tightly against the other end of the fabric, thereby achieving synchronous pressing and fixing of both ends of the fabric.

[0027] This solution involves the following steps: A shorter piece of fabric to be ironed is laid flat on the top side of the workbench 3. One end of the fabric is inserted into the bottom of the rubber pressure block 9, and the other end into the bottom of the rubber column 8. By rotating the threaded rod 102 downwards, the threaded rod 102 drives the piston plate 101 to move downwards within the connecting cylinder 105. This forces the liquid in the connecting cylinder 105 into the cavity 107 of the rubber pressure block 9, causing the rubber pressure block 9 to expand. This causes the bottom sidewall of the rubber pressure block 9 to press tightly against one end of the fabric, thus pressing the fabric... When the rubber block 9 is pressurized and fixed, some of the liquid inside the rubber block 9 is simultaneously transported to the internal cavity of the rubber column 8 through the infusion pipe 202, so that the rubber column 8 expands synchronously. The side wall of the expanded rubber column 8 presses tightly against the other end of the fabric. The output end of the servo motor 7 drives the rubber column 8 to rotate a certain angle. At this time, the side wall of the rubber column 8 contacts the end of the fabric, thereby pulling one end of the fabric through the rubber column 8, so that the fabric is quickly flattened, eliminating wrinkles on the fabric, and making it easy to iron the fabric with a fabric ironing machine.

[0028] Further as Figure 1 and Figure 2 As shown, it is worth noting that the bottom of the workbench 3 is fixed with multiple symmetrically distributed support rods 10, and there are two support rods 6, which are symmetrically distributed. In actual operation, the support of the multiple support rods 10 makes the workbench 3 have a certain height, which makes it convenient for workers to iron the fabric laid flat on the top surface of the workbench 3.

[0029] Further as Figure 2 and Figure 3 As shown, it is worth noting that the bottom surface of the rubber block 9 is provided with multiple rubber protrusions that are evenly distributed; in actual operation, the multiple rubber protrusions effectively increase the stability of the rubber block 9 in pressing the end of the fabric.

[0030] In summary: A certain amount of liquid is squeezed into the rubber block 9 by the liquid-pressing component 1, causing the rubber block 9 to expand. This causes the bottom sidewall of the rubber block 9 to press tightly against one end of the fabric, thus securing that end. At the same time, some of the liquid inside the rubber block 9 is simultaneously transported to the inside of the rubber column 8 through the liquid-conducting component 2, causing the rubber column 8 to expand synchronously. The sidewall of the expanded rubber column 8 presses tightly against the other end of the fabric, thus simultaneously securing both ends of the fabric. The servo motor 7 is then activated, and its output drives the rubber column 8 to rotate at a certain angle. At this point, the sidewall of the rubber column 8 contacts the end of the fabric, pulling one end of the fabric and quickly flattening it, eliminating wrinkles. This facilitates ironing the fabric with a fabric ironing machine, effectively improving the efficiency of fabric smoothing and wrinkle removal, eliminating the need for manual smoothing and pulling of the fabric corners, reducing worker workload, improving the ironing effect of shorter fabrics, and increasing the overall efficiency of ironing.

[0031] The servo motor 7 can be purchased from the market. The servo motor 7 is equipped with a power supply. It is a mature technology in this field and has been fully disclosed. Therefore, it will not be described again in the specification.

Claims

1. A fabric ironing device for fabric processing, comprising a worktable (3), characterized in that, The top end side of the workbench (3) is fixed with an L-shaped frame plate (4) at one end of the workbench (3), the bottom end of the L-shaped frame plate (4) is fixed with a rubber pressing block (9) arranged along the length direction of the L-shaped frame plate (4), the top end of the rubber pressing block (9) is provided with a liquid pressing assembly (1) for expanding the rubber pressing block (9), one end of the workbench (3) away from the L-shaped frame plate (4) is fixed with a support rod (6), the top end of the support rod (6) is fixed with a support (5), the support (5) is provided with a rubber column (8) inside, both ends of the rubber column (8) are fixed with end shaft rods (11) coaxially arranged with the rubber column (8), the end shaft rods (11) are rotationally connected with the end of the support (5), one end of the support (5) is fixed with a servo motor (7), the output end of the servo motor (7) is coaxially fixed with one of the end shaft rods (11), the inside of the rubber column (8) is provided with a cavity arranged along the length direction of the rubber column (8), the rubber column (8) and the rubber pressing block (9) are connected with a liquid passing assembly (2) for connecting the inside of the rubber column (8) and the rubber pressing block (9).

2. The fabric planishing device for fabric processing according to claim 1, wherein The liquid pressing assembly (1) comprises a connecting cylinder (105) fixed to the top surface of the rubber pressing block (9) and penetrating through the top end side wall of the L-shaped frame plate (4), a nut sleeve (104) is fixed in the top end port of the connecting cylinder (105), a threaded rod (102) is inserted into the inside of the connecting cylinder (105) and threadedly connected with the nut sleeve (104), one end of the threaded rod (102) located in the inside of the connecting cylinder (105) is fixed with a piston plate (101) tightly matched with the inside wall of the connecting cylinder (105), the inside of the rubber pressing block (9) is provided with a cavity (107) communicated with the connecting cylinder (105).

3. The fabric planishing device for fabric processing according to claim 2, wherein One end of the threaded rod (102) located outside the connecting cylinder (105) is fixed with an end head plate (103), a handle rod (106) is fixed on the side surface of the end head plate (103), a rubber sleeve is sleeved on the surface of the handle rod (106).

4. The fabric planishing device for fabric processing according to claim 2, wherein One of the end shaft rods (11) is provided with a through groove communicated with the inside cavity of the rubber column (8), the liquid passing assembly (2) comprises a bearing (201) fixed in the through groove port of the end shaft rod (11), a liquid delivery pipe (202) is connected between the rubber column (8) and the rubber pressing block (9), one end of the liquid delivery pipe (202) is rotationally connected with the end shaft rod (11) through the bearing (201) and the liquid delivery pipe (202) is communicated with the cavity inside the rubber column (8), the other end of the liquid delivery pipe (202) is communicated with the cavity (107).

5. The fabric planishing device for fabric processing according to claim 1, wherein The bottom end of the workbench (3) is fixed with a plurality of support leg rods (10) symmetrically distributed, the support rod (6) is provided with two and the two support rods (6) are symmetrically distributed.

6. The fabric planishing device for fabric processing according to claim 5, wherein A plurality of rubber protrusions are equidistantly distributed on the bottom surface of the rubber pressing block (9).