Cloth drying device

The fabric drying device, which combines vibration and fan, solves the problem of fabric moisture not being spun out in existing technologies, achieving efficient and energy-saving fabric drying and adapting to the production needs of various fabric types.

CN224302626UActive Publication Date: 2026-05-29WUXI ZHONGSEN MASCH TECH CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
WUXI ZHONGSEN MASCH TECH CO LTD
Filing Date
2025-06-25
Publication Date
2026-05-29

AI Technical Summary

Technical Problem

In existing fabric drying equipment, the moisture in the fabric cannot be effectively removed, resulting in low drying efficiency.

Method used

The device uses a vibration device to drive the rollers to vibrate up and down at high frequency, which, combined with the hot air blown down by the fan, creates a dynamic turbulent flow field. With the help of adjustment and reset components, it ensures that the vibration energy is transmitted evenly, adapts to the dehydration needs of different fabrics, and allows for independent replacement of worn parts.

Benefits of technology

It significantly reduces fabric moisture content, shortens drying time, improves heat exchange efficiency, reduces energy consumption, prevents mechanical fatigue damage, and adapts to the production needs of different fabric types.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN224302626U_ABST
    Figure CN224302626U_ABST
Patent Text Reader

Abstract

The utility model relates to a cloth drying device, including box, the roller wheel of cloth tension, drive the vibration device of roller wheel up and down vibration, the fan of cloth drying is carried out to the adjusting piece of adjustment roller initial position, the roller wheel slides in the box, the vibration device sets up in the both sides of the box, the effect end of vibration device connects the roller wheel, the fan sets up the top of the box, the adjusting piece sets up on the lateral wall of the box and the effect end of adjusting piece connects the vibration device. The box is equipped with the air inlet and the air outlet, the corresponding cloth guide cylinder is set up in the box, the heating pipe is set up, and is matched with the air blower, so that the hot air is used to carry out the drying operation to the cloth in the box, but the moisture of cloth is not spun dry, direct drying, and the efficiency of such drying is not high.
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Description

Technical Field

[0001] This utility model relates to the field of fabrics, and in particular to a fabric drying device. Background Technology

[0002] In the fabric production process, the finished fabric often contains a high moisture content, requiring drying and shaping by drying equipment. Most existing drying equipment utilizes a box structure with air inlets and outlets. Inside the box are corresponding guide rollers, heating tubes, and a blower to use hot air to dry the fabric. However, the moisture in the fabric is not spun off; it is directly dried, resulting in low drying efficiency. Utility Model Content

[0003] This application provides a fabric drying device that solves the problem in the prior art where the box has an air inlet and an air outlet, and the box is equipped with corresponding guide rollers and heating tubes, and is used in conjunction with a blower to dry the fabric inside the box with hot air. However, the moisture in the fabric is not spun off and is directly dried, which results in low drying efficiency.

[0004] The technical solutions adopted in the embodiments of this application are as follows.

[0005] A fabric drying device includes a housing, a roller for tensioning the fabric, a vibrating device for driving the roller to vibrate up and down, a fan for drying the fabric, and an adjusting member for adjusting the initial position of the roller; the roller slides inside the housing; the vibrating device is disposed on both sides of the housing; the active end of the vibrating device is connected to the roller; the fan is disposed above the housing; the adjusting member is disposed on the side wall of the housing and the active end of the adjusting member is connected to the vibrating device.

[0006] As a further improvement to the above technical solution: the vibration device includes a first plate, a second plate disposed on the first plate, a first block disposed on the second plate, a first rod sliding on the first block, a third plate disposed at the bottom of the first rod, a reset member for resetting the first rod, a wheel rotating at the bottom of the first rod, and a moving device for driving the first rod to move up and down; the moving device is disposed on the first plate; the second plate is disposed parallel to the first plate; the diameter of the third plate corresponds to the diameter of the first block; the reset member is sleeved on the first rod; one end of the reset member abuts against the first block, and the other end of the reset member abuts against the third plate; the wheel rolls at the working end of the moving device.

[0007] As a further improvement to the above technical solution: the moving device includes a sliding block, a pushing member that drives the sliding block to move, and a guide bar that guides the sliding block; the guide bar is disposed on the first plate; the sliding block slides along the guide bar; the pushing member is disposed on the first plate and the working end of the pushing member is connected to the sliding block; an inclined surface is provided on the sliding block; the wheel rolls on the inclined surface to form a height difference, thereby causing the first rod to move up and down.

[0008] As a further improvement to the above technical solution: a first groove is provided on the side wall of the box; the two sides of the roller slide within the first groove.

[0009] As a further improvement to the above technical solution: a second block is provided on the side wall of the box; one end of the adjusting member rotates on the first plate, and the adjusting member is threadedly connected to the second block; a guide rod is provided at the bottom of the first plate; the guide rod passes through the second block.

[0010] As a further improvement to the above technical solution: the side wall of the box is provided with a scale; the scale corresponds to the bottom of the first plate; so as to facilitate the adjustment of the first plates on both sides to be on the same horizontal line.

[0011] One or more technical solutions provided in the embodiments of this application have at least the following technical effects or advantages:

[0012] 1. Due to the use of a vibrating device, the inclined surface of the sliding block drives the rollers to create a height difference, causing the rollers to vibrate up and down at high frequency. Moisture in the fabric fibers is forcibly removed by centrifugal force, reducing the moisture content by more than 40% after pretreatment, significantly shortening the subsequent hot air drying time. The combined effect of the hot air blown down by the fan and the fabric undulations caused by the vibration creates a dynamic turbulent flow field, increasing heat exchange efficiency by 50% and avoiding heat accumulation and localized over-drying as in traditional static drying. The adjusting component drives the first plate to move along the guide rod via a threaded connection, quickly calibrating the levelness of the rollers on both sides with the help of scale indicators, ensuring... Vibration energy is evenly distributed across the entire width of the fabric, eliminating dry and wet stripes caused by uneven thickness. The reset component buffers the impact force during vibration and automatically compensates for displacement differences when the fabric tension changes abruptly, preventing fatigue damage to the mechanical structure, making it particularly suitable for continuous production of elastic fabrics. The push component controls the movement speed of the sliding block, and adjusts the vibration amplitude and frequency by changing the slope of the inclined plane, adapting to the dehydration needs of fabrics with different water absorption rates such as cotton, linen, and chemical fibers, reducing energy consumption by 30%. The moving module and roller of the vibration device are assembled separately, and worn parts can be replaced independently, reducing downtime. Attached Figure Description

[0013] Figure 1 This is a schematic diagram of the fabric drying device in this utility model.

[0014] Figure 2 This is a schematic diagram of the fabric drying device in this utility model.

[0015] Figure 3 for Figure 1 A magnified view of part A in the image.

[0016] In the diagram: 1. Box body; 11. First groove; 12. Second block; 13. Guide rod; 14. Scale; 2. Roller; 3. Vibration device; 31. First plate; 32. Second plate; 33. First block; 34. First rod; 35. Third plate; 36. Reset component; 37. Wheel body; 38. Moving device; 381. Sliding block; 3811. Inclined surface; 382. Pushing component; 383. Guide bar; 4. Fan; 5. Adjusting component. Detailed Implementation

[0017] This application provides a fabric drying device that solves the problem in the prior art where the box has an air inlet and an air outlet, and the box is equipped with corresponding guide rollers and heating tubes, and is used in conjunction with a blower to dry the fabric inside the box with hot air. However, the moisture in the fabric is not spun off and is directly dried, which results in low drying efficiency.

[0018] The technical solution in this application embodiment is to solve the above problems, and the overall idea is as follows:

[0019] To better understand the above technical solutions, the following will provide a detailed explanation of the technical solutions in conjunction with the accompanying drawings and specific implementation methods.

[0020] A fabric drying device includes a housing 1, a roller 2 for tensioning the fabric, a vibrating device 3 for driving the roller 2 to vibrate up and down, a fan 4 for drying the fabric, and an adjusting member 5 for adjusting the initial position of the roller 2; the roller 2 slides inside the housing 1; the vibrating device 3 is arranged on both sides of the housing 1; the working end of the vibrating device 3 is connected to the roller 2; the fan 4 is arranged above the housing 1; the adjusting member 5 is arranged on the side wall of the housing 1 and the working end of the adjusting member 5 is connected to the vibrating device 3.

[0021] The vibration device 3 includes a first plate 31, a second plate 32 disposed on the first plate 31, a first block 33 disposed on the second plate 32, a first rod 34 sliding on the first block 33, a third plate 35 disposed at the bottom of the first rod 34, a reset member 36 for resetting the first rod 34, a wheel 37 rotating at the bottom of the first rod 34, and a moving device 38 for driving the first rod 34 to move up and down; the moving device 38 is disposed on the first plate 31; the second plate 32 is disposed parallel to the first plate 31; the diameter of the third plate 35 corresponds to the diameter of the first block 33; the reset member 36 is sleeved on the first rod 34; one end of the reset member 36 abuts against the first block 33, and the other end of the reset member 36 abuts against the third plate 35; the wheel 37 rolls on the working end of the moving device 38.

[0022] The moving device 38 includes a sliding block 381, a pushing member 382 that drives the sliding block 381 to move, and a guide bar 383 that guides the sliding block 381. The guide bar 383 is disposed on the first plate 31. The sliding block 381 slides along the guide bar 383. The pushing member 382 is disposed on the first plate 31 and the working end of the pushing member 382 is connected to the sliding block 381. An inclined surface 3811 is provided on the sliding block 381. The wheel 37 rolls on the inclined surface 3811, so that the wheel 37 forms a height difference, thereby causing the first rod 34 to move up and down.

[0023] A first groove 11 is provided on the side wall of the housing 1; the two sides of the roller 2 slide within the first groove 11.

[0024] A second block 12 is provided on the side wall of the housing 1; one end of the adjusting component 5 rotates on the first plate 31, and the adjusting component 5 is threadedly connected to the second block 12; a guide rod 13 is provided at the bottom of the first plate 31; the guide rod 13 passes through the second block 12.

[0025] The side wall of the housing 1 is provided with a scale 14; the scale 14 corresponds to the bottom of the first plate 31; so as to facilitate the adjustment of the two sides of the first plate 31 to be on the same horizontal line.

[0026] The sliding block 381 of the vibration device 3, with its inclined surface 3811 driving the wheel 37 to form a height difference, causes the roller 2 to vibrate up and down at high frequency. Moisture in the gaps between the fabric fibers is forcibly removed by centrifugal force, reducing the moisture content by more than 40% after pretreatment, significantly shortening the subsequent hot air drying time. The hot air blown down by the fan 4, combined with the fabric undulations caused by the vibration, creates a dynamic turbulent flow field, increasing heat exchange efficiency by 50% and avoiding heat accumulation and localized over-drying in traditional static drying. The adjusting component 5 drives the first plate 31 to move along the guide rod 13 via a thread, and, in conjunction with the scale 14, quickly calibrates the levelness of the rollers 2 on both sides to ensure proper vibration. The kinetic energy is evenly transferred to the full width of the fabric, eliminating dry and wet stripes caused by uneven thickness; the reset component 36 buffers the impact force during vibration and automatically compensates for the displacement difference when the fabric tension changes abruptly, preventing fatigue damage to the mechanical structure, especially suitable for continuous production of elastic fabrics; the push component 382 controls the moving speed of the sliding block 381, and adjusts the vibration amplitude and frequency by changing the slope of the inclined plane 3811, adapting to the dehydration needs of fabrics with different water absorption rates such as cotton, linen, and chemical fibers, reducing energy consumption by 30%; the moving module of the vibration device 3 and the roller 2 are assembled separately, and worn parts can be replaced independently, reducing downtime.

[0027] Because the sliding block 381 of the vibration device 3, driven by the inclined surface 3811 of the inclined plane, drives the wheel 37 to form a height difference, causing the roller 2 to vibrate up and down at high frequency. The moisture in the gaps between the fabric fibers is forced out by centrifugal force, and the moisture content after pretreatment is reduced by more than 40%, which greatly shortens the subsequent hot air drying time. The hot air blown down by the fan 4 and the fabric undulation caused by the vibration work together to form a dynamic turbulent flow field, which improves the heat exchange efficiency by 50% and avoids the heat accumulation and local over-drying of traditional static drying. The adjusting component 5 drives the first plate 31 to move along the guide rod 13 through the thread, and quickly calibrates the level of the rollers 2 on both sides with the indication of the scale 14. The vibration energy is evenly distributed across the entire width of the fabric, eliminating dry and wet stripes caused by uneven thickness. The reset component 36 buffers the impact force during vibration and automatically compensates for displacement differences when the fabric tension changes abruptly, preventing fatigue damage to the mechanical structure, especially suitable for continuous production of elastic fabrics. The push component 382 controls the moving speed of the sliding block 381 and adjusts the vibration amplitude and frequency by changing the slope of the inclined plane 3811, adapting to the dehydration needs of fabrics with different water absorption rates such as cotton, linen, and chemical fibers, reducing energy consumption by 30%. The moving module of the vibration device 3 and the roller 2 are assembled separately, and worn parts can be replaced independently, reducing downtime.

[0028] Although preferred embodiments of the present invention have been described, those skilled in the art, upon learning the basic inventive concept, can make other changes and modifications to these embodiments. Therefore, the appended claims are intended to be interpreted as including the preferred embodiments as well as all changes and modifications falling within the scope of the present invention.

[0029] Obviously, those skilled in the art can make various modifications and variations to this utility model without departing from its spirit and scope. Therefore, if these modifications and variations fall within the scope of the claims of this utility model and their equivalents, this utility model also intends to include these modifications and variations.

Claims

1. A fabric drying device, characterized in that, The device includes a housing (1), a roller (2) for tensioning the fabric, a vibration device (3) for driving the roller (2) to vibrate up and down, a fan (4) for drying the fabric, and an adjusting member (5) for adjusting the initial position of the roller (2). The roller (2) slides inside the housing (1). The vibration device (3) is located on both sides of the housing (1). The working end of the vibration device (3) is connected to the roller (2). The fan (4) is located above the housing (1). The adjusting member (5) is located on the side wall of the housing (1), and the working end of the adjusting member (5) is connected to the vibration device (3).

2. The fabric drying device as described in claim 1, characterized in that, The vibration device (3) includes a first plate (31), a second plate (32) disposed on the first plate (31), a first block (33) disposed on the second plate (32), a first rod (34) sliding on the first block (33), a third plate (35) disposed at the bottom of the first rod (34), a reset member (36) for resetting the first rod (34), a wheel (37) rotating at the bottom of the first rod (34), and a moving device (38) for driving the first rod (34) to move up and down; the moving device (38) is disposed on the first plate (31); the second plate (32) is disposed parallel to the first plate (31); the diameter of the third plate (35) corresponds to the diameter of the first block (33); the reset member (36) is sleeved on the first rod (34); one end of the reset member (36) abuts against the first block (33), and the other end of the reset member (36) abuts against the third plate (35); the wheel (37) rolls at the working end of the moving device (38).

3. The fabric drying device as described in claim 2, characterized in that, The moving device (38) includes a sliding block (381), a pushing member (382) that drives the sliding block (381) to move, and a guide bar (383) that guides the sliding block (381); the guide bar (383) is disposed on the first plate (31); the sliding block (381) slides along the guide bar (383); the pushing member (382) is disposed on the first plate (31) and the working end of the pushing member (382) is connected to the sliding block (381); an inclined surface (3811) is provided on the sliding block (381); the wheel (37) rolls on the inclined surface (3811) to form a height difference, thereby causing the first rod (34) to move up and down.

4. The fabric drying device as described in claim 1, characterized in that, The box (1) has a first groove (11) on its side wall; the roller (2) slides in the first groove (11) on both sides.

5. The fabric drying device as described in claim 3, characterized in that, A second block (12) is provided on the side wall of the box (1); one end of the adjusting member (5) is rotated on the first plate (31), and the adjusting member (5) is threadedly connected to the second block (12); a guide rod (13) is provided at the bottom of the first plate (31); the guide rod (13) passes through the second block (12).

6. The fabric drying apparatus as described in claim 2, characterized in that, The side wall of the box (1) is provided with a scale (14); the scale (14) corresponds to the bottom of the first plate (31); so as to facilitate the adjustment of the first plates (31) on both sides to be on the same horizontal line.