A fabric drying and dehumidification device for a garment production line

By adopting a swing-guided drying module and a progressive drying guide mechanism on the garment production line, combined with an active guide mechanism, the problems of high energy consumption and poor adaptability of fabric drying devices have been solved, achieving a highly efficient and stable fabric drying process.

CN117308547BActive Publication Date: 2026-04-03NANTONG HUAQIANG CLOTH IND
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-11-18
Publication Date
2026-04-03

AI Technical Summary

Technical Problem

Existing fabric drying and dehumidification devices in garment production lines suffer from high energy consumption, are prone to damaging fabrics, and cannot adapt to different fabrics, resulting in poor material feeding continuity and stability.

Method used

By employing a swing-type material guiding and drying module and a progressive drying and guiding mechanism, combined with an active material guiding mechanism, the material guiding speed and progressive drying method can be adjusted to meet the material guiding needs of different fabrics, reduce energy consumption, and protect fabric quality.

Benefits of technology

It achieves energy savings, protects fabric quality, ensures the stability and continuity of the drying process, and improves drying efficiency and fabric adaptability.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention discloses a fabric drying and dehumidification device for a garment production line, comprising a support mounting cylinder with an arc-shaped mounting cover at the top. A feed hole is located on one side of the cylinder wall, and a discharge hole is located on the side wall opposite the feed hole. The device includes a swing-guide drying module housed within the support mounting cylinder. The swing-guide drying module comprises a swing-guide mechanism and a progressive drying guide mechanism. The swing-guide mechanism includes a swing arc-shaped plate, one end of which is connected to an electrically controlled lifting column via a drive shaft. The electrically controlled lifting column is fixed to the bottom of the support mounting cylinder and used to adjust the guide angle. The progressive drying guide mechanism is located on the swing arc-shaped plate and includes a variable-diameter guide cavity located within the swing arc-shaped plate for progressively drying the fabric. An active guide mechanism is located on the inner wall of the support mounting cylinder on the side of the discharge hole, used to adapt to different fabric types.
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Description

Technical Field

[0001] This invention relates to the field of garment production technology, and more specifically, to a fabric drying and dehumidification device for garment production lines. Background Technology

[0002] Clothing is made of fabric, which is the material used to make clothing. As one of the three elements of clothing, fabric can not only interpret the style and characteristics of clothing, but also directly affect the color and shape of clothing. In the production process of clothing fabric, it generally goes through steps such as rinsing and dyeing. After multiple processes, the fabric generally has a high humidity, which is not conducive to subsequent production. Therefore, it is necessary to dehumidify and dry the fabric.

[0003] Currently, the fabric drying and dehumidification devices used in garment production lines on the market can only perform uniform flow drying operations and cannot perform gradual drying, resulting in serious energy consumption during drying. Furthermore, the continuous drying process can easily damage the fabric. In addition, the current fabric guides cannot be adjusted to adapt to different fabrics, resulting in generally poor continuity and stability of the guide. Summary of the Invention

[0004] In view of the shortcomings of the existing technology, the purpose of this invention is to provide a fabric drying and dehumidification device for garment production lines.

[0005] To achieve the above objectives, the present invention provides the following technical solution:

[0006] A fabric drying and dehumidification device for a garment production line includes a support mounting cylinder with an arc-shaped mounting cover at the top. A feed hole is located on one side of the cylinder wall, and a discharge hole is located on the side wall opposite the feed hole. The device includes a swing-guide drying module housed within the support mounting cylinder. The swing-guide drying module further includes a swing-guide mechanism and a progressive drying guide mechanism. The swing-guide mechanism includes a swing-arc plate, one end of which is connected to an electrically controlled lifting column via a drive shaft. The electrically controlled lifting column is fixed to the bottom of the support mounting cylinder for adjustment. The material guiding angle; the progressive drying guide mechanism is set on the swing arc plate, the progressive drying guide mechanism includes a variable diameter guide cavity, which is set inside the swing arc plate for progressively drying the fabric; the active material guiding mechanism is set on the inner wall of the support mounting cylinder on one side of the discharge hole, for adapting to the material guiding of different fabrics, the cylinder wall of the feed hole is symmetrically provided with rotating mounting frames, one end of each rotating mounting frame is connected to the support mounting cylinder through a drive shaft, and the other end of each rotating mounting frame is provided with a feed roller, and the bottom of the support mounting cylinder on one side of the discharge hole is provided with a discharge roller through a discharge mounting frame.

[0007] Preferably, the arc-shaped mounting cover is provided with an exhaust guide tube, and the inner side of the arc-shaped mounting cover is provided with a number of guide fins at equal angles to the exhaust guide tube.

[0008] Preferably, the interior of the exhaust guide tube is provided with a limiting shaft through a guide mounting bracket and a limiting bearing sleeve. The limiting shaft inside the exhaust guide tube is equipped with a passive spiral guide plate on the inner wall of the exhaust guide tube. The other end of the limiting shaft is provided with a passive guide shroud. The edge of the passive guide shroud is provided with several air outlet holes at equal angles.

[0009] Preferably, the oscillating guide mechanism further includes several electrically controlled telescopic columns arranged at equal angles toward the side of the oscillating arc plate facing the arc mounting cover. The outer ends of the electrically controlled telescopic columns are all equipped with movable rollers via rotating shafts. Guide rollers are all installed on the oscillating arc plate between the movable rollers via mounting frames. The fabric is guided in an S-shape by cooperating with the movable rollers and the guide rollers.

[0010] Preferably, the progressive drying and guiding mechanism further includes an active guiding cylinder. The diameter of the variable diameter guiding cavity decreases sequentially from the feed hole to the discharge hole. The active guiding cylinder is installed at one end of the variable diameter guiding cavity near the feed hole. The active guiding cylinder is connected to the variable diameter guiding cavity. Several air blowing holes are provided on the swing arc plate between the movable roller and the guiding roller, which are connected to the variable diameter guiding cavity.

[0011] Preferably, a motor is provided at the outer end of the active guide tube, and the motor is provided with several guide impellers through a rotating shaft. An electric heating wire is provided at the other end of the active guide tube. Several air inlets are provided at equal angles on the outer wall of the active guide tube, and a filter screen is provided on the outer side of each air inlet.

[0012] Preferably, the active material guiding mechanism includes a material guiding mounting frame provided on the inner wall of the support mounting cylinder on one side of the discharge hole, and an active roller is provided at the outer end of the material guiding mounting frame via an active rotating shaft.

[0013] Preferably, the drive roller is provided with a drive gear inside, and a number of rotating shafts are provided at equal angles on the cylinder wall of the drive roller. Each rotating shaft is provided with an incomplete gear and an arc-shaped guide plate on the inside and outside of the drive roller, respectively.

[0014] Compared with the prior art, the present invention has the following beneficial effects:

[0015] 1. By adjusting the speed of the fabric feeding through the oscillating material drying module, and with adjustable progressive drying, energy is saved and the quality of the fabric is protected.

[0016] 2. By using an active material guiding mechanism, the contact area between the material and the fabric is changed during active material guiding, thereby enabling the guiding of different fabrics. Through continuous and stable material guiding, the drying process is ensured to be stable. Attached Figure Description

[0017] Figure 1 This is a schematic diagram of a fabric drying and dehumidification device for a garment production line.

[0018] Figure 2 for Figure 1 Enlarged diagram of point a in the middle

[0019] Figure 3 for Figure 1 Enlarged diagram at point b

[0020] Figure 4 for Figure 1 Enlarged diagram at point c

[0021] Figure 5 This is a three-dimensional schematic diagram of an arc-shaped guide plate in a fabric drying and dehumidification device for a garment production line.

[0022] 1-Support mounting cylinder, 2-Swinging arc plate, 3-Electrically controlled lifting column, 4-Feed hole, 5-Feed roller, 6-Rotating mounting frame, 7-Variable diameter guide cavity, 8-Guide fin, 9-Arch-shaped mounting cover, 10-Discharge hole, 11-Discharge roller, 12-Active guide cylinder, 13-Guide impeller, 14-Filter screen, 15-Motor, 16-Air inlet, 17-Blowing hole, 18-Electrically controlled telescopic column, 19-Moving roller, 20-Active roller, 21-Guide mounting frame, 22-Active rotating shaft, 23-Active gear, 24-Incomplete gear, 25-Arch-shaped guide plate, 26-Passive guide cover, 27-Limiting rotating shaft, 28-Passive spiral guide plate, 29-Air outlet, 30-Exhaust guide cylinder, 31-Guide roller, 32-Heating wire. Detailed Implementation

[0023] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments. The embodiments of the present invention are given for illustrative and descriptive purposes only, and are not intended to be exhaustive or to limit the invention to the forms disclosed. Many modifications and variations will be apparent to those skilled in the art. The embodiments were chosen and described to better illustrate the principles and practical application of the invention, and to enable those skilled in the art to understand the invention and design various embodiments with various modifications suitable for a particular purpose.

[0024] Example 1

[0025] Please see Figures 1-4In this embodiment of the invention, a fabric drying and dehumidification device for a garment production line includes a support mounting cylinder 1. An arc-shaped mounting cover 9 is provided at the top of the support mounting cylinder 1. A feed hole 4 is provided on one side of the cylinder wall of the support mounting cylinder 1, and a discharge hole 10 is provided on the side wall of the support mounting cylinder 1 opposite the feed hole 4. The device includes a swing-guided drying module disposed within the support mounting cylinder 1, and further includes: the swing-guided drying module includes a swing-guided mechanism and a progressive drying guide mechanism; the swing-guided mechanism includes a swing-arc plate 2, one end of which is connected to an electrically controlled lifting column 3 via a drive shaft. The electrically controlled lifting column 3 is fixed to the bottom of the support mounting cylinder 1. The angle of the material guide is adjusted; the progressive drying guide mechanism is set on the swing arc plate 2, and the progressive drying guide mechanism includes a variable diameter guide cavity 7, which is set inside the swing arc plate 2 for progressively drying the fabric; the active material guide mechanism is set on the inner wall of the support mounting cylinder 1 on one side of the discharge hole 10 for adapting to the material guide of different fabrics; the cylinder wall of the feed hole 4 is symmetrically provided with rotating mounting frames 6, one end of each rotating mounting frame 6 is connected to the support mounting cylinder 1 through a drive shaft, and the other end of each rotating mounting frame 6 is provided with a feed roller 5; the bottom of the support mounting cylinder 1 on one side of the discharge hole 10 is provided with a discharge roller 11 through a discharge mounting frame.

[0026] The fabric enters through the feed hole 4 and exits through the discharge hole 10. It is guided by the oscillating guide mechanism and gradually dried sequentially in conjunction with the progressive drying and reversing mechanism. Under the action of the active guide mechanism, it adapts to the guidance of different fabrics, which significantly improves the drying efficiency and quality of the device.

[0027] Example 2

[0028] Please see Figure 1 and Figure 4 In this embodiment of the invention, an exhaust guide tube 30 is provided on the arc-shaped mounting cover 9. A plurality of guide fins 8 are provided at equal angles on the inner side of the arc-shaped mounting cover 9 in conjunction with the exhaust guide tube 30. A limiting rotating shaft 27 is provided inside the exhaust guide tube 30 through a guide mounting frame and a limiting bearing sleeve. A passive spiral guide plate 28 is provided on the inner wall of the exhaust guide tube 30 in conjunction with the limiting rotating shaft 27. A passive guide hood 26 is provided at the other end of the limiting rotating shaft 27. A plurality of air outlet holes 29 are provided at equal angles on the edge of the passive guide hood 26.

[0029] The hot and humid air generated during drying is guided upwards and accelerated by the flow convergence of the flow guide fin 8 before being discharged from the exhaust flow guide tube 30. At this time, the passive spiral flow guide plate 28 is passively rotated, which drives the passive flow guide hood 26 to rotate, accelerating the discharge of hot and humid air from the air outlet 29, thus ensuring the drying efficiency and quality of the internal fabric.

[0030] Example 3

[0031] Please see Figures 1-3 In this embodiment of the invention, the swinging guide mechanism further includes a plurality of electrically controlled telescopic columns 18 arranged at equal angles on the side of the swinging arc plate 2 facing the arc mounting cover 9. The outer ends of the electrically controlled telescopic columns 18 are all provided with movable rollers 19 through rotating shafts. Guide rollers 31 are all provided on the swinging arc plate 2 between the movable rollers 19 through mounting frames. The fabric is guided in an S-shape by cooperating with the movable rollers 19 and the guide rollers 31.

[0032] The progressive drying and guiding mechanism also includes an active guide cylinder 12. The diameter of the variable diameter guiding cavity 7 decreases sequentially from the feed hole 4 to the discharge hole 10. The active guide cylinder 12 is installed at one end of the variable diameter guiding cavity 7 near the feed hole 4. The active guide cylinder 12 is connected to the variable diameter guiding cavity 7. The swing arc plate 2 between the movable roller 19 and the guide roller 31 is connected to the variable diameter guiding cavity 7 and is provided with a number of air blowing holes 17. The outer end of the active guide cylinder 12 is provided with a motor 15. The motor 15 is provided with a number of guide impellers 13 through a rotating shaft. The other end of the active guide cylinder 12 is provided with a heating wire 32. A number of air inlets 16 are provided at equal angles on the cylinder wall at the outer end of the active guide cylinder 12. A filter screen 14 is provided on the outer side of each air inlet 16.

[0033] The fabric is introduced through the feed roller 5 and guided in an S-shape between the movable roller 19 and the guide roller 31. The length of the electrically controlled telescopic column 18 is controlled according to the drying speed and the fabric material, thereby adjusting the speed of the fabric in the S-shaped guide.

[0034] At this time, the motor 15 is started to drive the guide impeller 13 to rotate at high speed, which draws the outside air out through the air inlet 16, heats it through the heating wire 32 and guides it into the variable diameter guide cavity 7, and then draws it out through the air outlet 17 to dry the fabric. Due to the variable diameter guide cavity 7, the heat and flow rate drawn out by the air outlet 17 gradually change, so that the fabric is dried gradually, which can avoid damage to the fabric caused by long-term high temperature drying. In addition, under the action of the electrically controlled lifting column 3 and the drive shaft, the swinging arc plate 2 can further realize the adjustment of the drying height and the gradual guide.

[0035] Example 4

[0036] Please see Figure 3 and Figure 5 In this embodiment of the invention, the active material guiding mechanism includes a material guiding mounting frame 21 provided on the inner wall of the support mounting cylinder 1 on one side of the discharge hole 10. An active roller 20 is provided on the outer end of the material guiding mounting frame 21 through an active rotating shaft 22. An active gear 23 is provided inside the active roller 20. Several rotating shafts are provided at equal angles on the cylinder wall of the active roller 20. Each rotating shaft is equipped with an incomplete gear 24 and an arc-shaped material guiding plate 25 on the inner and outer sides of the active roller 20, respectively. The incomplete gear 24 meshes with the active gear 23.

[0037] The rotation of the drive gear 23 causes the incomplete gear 24 and the arc-shaped guide plate 25 to rotate around the shaft, changing the contact area between the arc-shaped guide plate 25 and the fabric. As the drive roller 20 rotates, it adapts to the active guiding of different fabrics.

[0038] Obviously, the described embodiments are only a part of the embodiments of the present invention, and not all of them. All other embodiments obtained by those skilled in the art and related fields based on the embodiments of the present invention without inventive effort should fall within the scope of protection of the present invention. Structures, devices, and operating methods not specifically described and explained in the present invention, unless otherwise specified or limited, shall be implemented according to conventional means in the art.

Claims

1. A fabric drying and dehumidification device for a garment production line, comprising a support mounting cylinder (1), an arc-shaped mounting cover (9) provided on the top of the support mounting cylinder (1), a feed hole (4) provided on one side of the cylinder wall of the support mounting cylinder (1), and a discharge hole (10) provided on the side of the cylinder wall of the support mounting cylinder (1) opposite to the feed hole (4), characterized in that, Including a swing-type material guiding drying module disposed within a support mounting cylinder (1), and further including: The oscillating material guiding and drying module includes an oscillating material guiding mechanism and a progressive drying and guiding mechanism; The swing guide mechanism includes a swing arc plate (2), and one end of the swing arc plate (2) is provided with an electrically controlled lifting column (3) through a drive shaft. The electrically controlled lifting column (3) is fixed to the bottom of the support mounting cylinder (1) and is used to adjust the angle of the guide. The swing guiding mechanism also includes several electrically controlled telescopic columns (18) arranged at equal angles on the side of the swing arc plate (2) facing the arc mounting cover (9). The outer ends of the electrically controlled telescopic columns (18) are all equipped with movable rollers (19) through rotating shafts. The swing arc plate (2) between the movable rollers (19) is equipped with guide rollers (31) through mounting frames. The fabric cooperates with the movable rollers (19) and the guide rollers (31) to guide the material in an S-shape. The progressive drying guide mechanism is set on the swing arc plate (2). The progressive drying guide mechanism includes a variable diameter guide cavity (7), which is set inside the swing arc plate (2) for progressively drying the fabric. The progressive drying guide mechanism also includes an active guide cylinder (12). The diameter of the variable diameter guide cavity (7) decreases sequentially from the feed hole (4) to the discharge hole (10). The active guide cylinder (12) is installed at one end of the variable diameter guide cavity (7) near the feed hole (4). The active guide cylinder (12) is connected to the variable diameter guide cavity (7). The swing arc plate (2) between the movable roller (19) and the guide roller (31) is connected to the variable diameter guide cavity (7) and has several air blowing holes (17). The outer end of the active guide cylinder (12) is equipped with a motor (15). The motor (15) is equipped with several guide impellers (13) through the rotating shaft. The other end of the active guide cylinder (12) is equipped with an electric heating wire (32). Several air inlets (16) are provided at equal angles on the cylinder wall at the outer end of the active guide cylinder (12). Filter screens (14) are provided on the outer side of each air inlet (16). An active material guiding mechanism is set on the inner wall of the support mounting cylinder (1) on one side of the discharge hole (10) to adapt to the material guiding of different fabrics; The active material guiding mechanism includes a material guiding mounting frame (21) provided on the inner wall of the support mounting cylinder (1) on one side of the discharge hole (10). An active roller (20) is provided at the outer end of the material guiding mounting frame (21) through an active rotating shaft (22). An active gear (23) is provided inside the active roller (20). Several rotating shafts are provided at equal angles on the cylinder wall of the active roller (20). Each rotating shaft is equipped with an incomplete gear (24) and an arc-shaped material guiding plate (25) respectively on the inner and outer sides of the active roller (20).

2. The fabric drying and dehumidification device for a garment production line according to claim 1, characterized in that: The feed hole (4) is symmetrically provided with rotating mounting brackets (6) on the cylinder wall. One end of each rotating mounting bracket (6) is connected to the support mounting cylinder (1) through a drive shaft, and the other end of each rotating mounting bracket (6) is provided with a feed roller (5).

3. The fabric drying and dehumidification device for a garment production line according to claim 2, characterized in that: An exhaust guide tube (30) is provided on the arc-shaped mounting cover (9), and a number of guide fins (8) are provided on the inner side of the arc-shaped mounting cover (9) at equal angles to the exhaust guide tube (30).

4. The fabric drying and dehumidification device for a garment production line according to claim 3, characterized in that: The exhaust guide tube (30) is equipped with a limiting shaft (27) inside through a guide mounting bracket and a limiting bearing sleeve. The limiting shaft (27) inside the exhaust guide tube (30) is equipped with a passive spiral guide plate (28) on the inner wall of the exhaust guide tube (30). The other end of the limiting shaft (27) is equipped with a passive guide hood (26). The edge of the passive guide hood (26) is equipped with several air outlet holes (29) at equal angles.

5. The fabric drying and dehumidification device for a garment production line according to claim 1, characterized in that: The bottom of the support mounting cylinder (1) on one side of the discharge hole (10) is provided with a discharge roller (11) through the discharge mounting frame.

Citation Information

Patent Citations

  • Continuous material guide type textile material drying machine

    CN112432480A

  • Textile thread continuous drying device

    CN212645236U