Clothing flattening device with high flattening efficiency

By designing a garment flattening device with a conveyor and flattening components, the problem of low efficiency in existing garment flattening has been solved, achieving efficient and automated flattening, adapting to the needs of different garment materials, and reducing labor intensity and logistics costs.

CN223688610UActive Publication Date: 2025-12-19HANGZHOU HANLUO TECH CO LTD
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Patent Information

Application Number
CN202520428169.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-12
Publication Date
2025-12-19
Estimated Expiration
2035-03-12

AI Technical Summary

Technical Problem

Existing garment flattening equipment is inefficient and labor-intensive, and cannot meet the demand for reducing warehousing and logistics costs.

Method used

Design a garment flattening device including a conveyor and a flattening assembly. The conveyor consists of a conveyor belt, a drive roller and a driven roller. The flattening assembly consists of a pressure plate, a drive assembly and a reset assembly. The pressure plate is driven by a motor to flatten the garment, and the conveying stability and flattening accuracy are improved by using support plates and cams.

Benefits of technology

It achieves efficient and automated flattening of garments, reduces labor intensity, improves flattening efficiency and quality, and adapts to the flattening needs of different garment materials.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of garment processing equipment, and particularly relates to a garment flattening device with high flattening efficiency. The utility model provides a garment flattening device which is high in flattening efficiency. The garment flattening device aims at solving the problem that in the prior art, a garment flattening device is low in garment flattening efficiency. A garment flattening device high in flattening efficiency comprises a rack, a conveyor for conveying garments is arranged on the rack, and a flattening assembly for flattening the garments on the conveyor is further arranged on the rack; according to the garment flattening device, the flattening assembly is arranged, and the pressing plate in the flattening assembly can rapidly move downwards under the action of the driving assembly to flatten garments on the conveyor. Once the flattening action is completed, the reset assembly is started immediately, the pressing plate is pushed to return to the initial position, and the pressing plate is separated from the flattened clothes. The single-time flattening period is remarkably shortened through the rapid and coherent action process, and therefore the overall flattening efficiency is improved.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to clothing processing equipment technical field, specifically related to a clothing flattening device that flattening efficiency is high. BACKGROUND

[0002] With the increase of warehousing logistics cost, in order to reduce the cost of warehousing logistics, clothing is usually flattened in the processing of clothing to reduce the volume of clothing, reduce the cost of warehousing logistics.

[0003] The prior art is flattened by manual flattening, and the clothing is placed on the workbench, then the clothing is flattened manually by the staff through the pressing plate. The clothing flattening device has high labor intensity, and the clothing flattening device has low clothing flattening efficiency. UTILITY MODEL CONTENTS

[0004] The utility model provides a clothing flattening device that flattening efficiency is high, aims at solving the problem of low clothing flattening efficiency of clothing flattening device in prior art.

[0005] In order to solve the above technical problem, the utility model adopts the technical scheme that:

[0006] A clothing flattening device that flattening efficiency is high, including the frame, the frame is provided with the conveyor that conveys clothing, the frame is also provided with the flattening component that flattens clothing on the conveyor;

[0007] The flattening component includes the support, the support is slidably connected with the pressing plate, the support is provided with the drive assembly that drives the pressing plate, and the pressing plate and the frame are also provided with the reset assembly;

[0008] The pressing plate includes the flattening state that flattens clothing and the reset state that is separated from the clothing that is flattened, in the flattening state, the drive assembly drives the pressing plate to move downward and makes the pressing plate flatten clothing, and in the reset state, the reset assembly pushes the pressing plate and makes the pressing plate separate from the clothing that is flattened.

[0009] Further improved scheme: the conveyor includes the conveying belt, the conveyor also includes the driving roller and the driven roller, the conveying belt is arranged on the driving roller and the driven roller, and the frame is also provided with the first motor that drives the driving roller.

[0010] Based on the above technical scheme: the stable transmission of the conveyor belt and the precise action of the flattening assembly are combined, so that the garment can achieve the ideal flattening effect in a short time. The flatness and stability of the conveyor belt ensure the consistency of the garment during transmission, avoiding uneven flattening due to fluctuations. The reasonable configuration of the driving roller and the driven roller and the precise control of the first motor make the entire device more stable and reliable during operation, reducing the failure rate.

[0011] Further improved scheme: the driving roller and the driven roller are both rotationally connected to the rack, and the first motor is fixed to the rack by screws. A shaft coupling is provided between the first motor and the driving roller.

[0012] Based on the above technical scheme: the use of the shaft coupling reduces the energy loss between the motor shaft and the driving roller shaft, improving the efficiency of the entire transmission system. This helps to reduce energy consumption and improve the overall performance of the equipment. The shaft coupling ensures synchronous rotation between the motor shaft and the driving roller shaft, ensuring the smooth operation of the conveyor belt and the accurate transmission of the garment.

[0013] Further improved scheme: the rack is further provided with a support plate for supporting the conveyor belt when the pressing plate flattens the garment. The support plate is located directly below the pressing plate, and the upper surface of the support plate is parallel to the lower surface of the pressing plate.

[0014] Based on the above technical scheme: the support plate is located directly below the pressing plate, and the main purpose of its design is to provide stable support for the conveyor belt during flattening. Since the upper surface of the support plate is parallel to the lower surface of the pressing plate, it ensures that the conveyor belt can maintain flatness and uniform stress when the pressing plate exerts pressure. This design effectively prevents the conveyor belt from deforming or deviating due to uneven stress during flattening, ensuring the quality and stability of garment flattening. The presence of the support plate also protects the conveyor belt. During flattening, the pressing plate directly acts on the garment, while the support plate bears part of the pressure transmitted by the pressing plate. This reduces the burden on the conveyor belt and prolongs its service life. At the same time, the flat surface of the support plate also helps to reduce friction between the conveyor belt and the support surface, further reducing the wear of the conveyor belt. The design of the support plate also helps to improve the flattening efficiency. Since the support plate provides stable support for the conveyor belt, the conveyor belt can maintain smooth operation during flattening. This ensures that the garment can continuously and uniformly pass through the flattening area, thereby improving the flattening speed and efficiency.

[0015] Further improved scheme: the support plate is fixed to the rack by bolts, and a wear-resistant layer is provided on the surface of the support plate that contacts the conveyor belt. The wear-resistant layer is coated on the support plate.

[0016] Based on the above technical scheme: the support plate is fixed on the rack by bolts, which is a simple and effective connection method, ensuring the stability and reliability of the support plate on the rack. The bolt connection can withstand a large force and torque, preventing the support plate from shifting or loosening during the flattening process. This stable connection provides a solid foundation for the conveyor belt, ensuring smooth flattening operation. The wear-resistant layer on the surface of the support plate in contact with the conveyor belt is a key measure to prolong the service life of the support plate and the conveyor belt. The wear-resistant layer is usually made of high-wear rubber, polyurethane or other wear-resistant materials, which have excellent wear resistance, corrosion resistance and aging resistance. During the flattening process, the wear-resistant layer can withstand the friction and wear between the conveyor belt and the support plate, protecting the base material of the support plate from damage. At the same time, the presence of the wear-resistant layer also reduces the wear of the conveyor belt, prolonging the service life of the conveyor belt.

[0017] Further improved scheme: the drive assembly includes a rotating shaft connected to the bracket, and a cam is arranged on the rotating shaft to push the pressing plate to flatten the garment. The cam and the rotating shaft are of an integrated structure, and a second motor is arranged on the bracket to drive the rotating shaft.

[0018] Based on the above technical scheme: the cam and the rotating shaft are of an integrated structure, which reduces the number of parts, simplifies the assembly process, and improves the overall stability and stability of the structure. The integrated structure helps to reduce the movement error caused by the gap between the parts, thereby improving the accuracy and reliability of the movement of the pressing plate. The rotating shaft is rotatably connected to the bracket, which allows the rotating shaft to rotate freely on the bracket while maintaining stable support. The flexibility of the rotating connection ensures that the cam can push the pressing plate according to the predetermined trajectory, achieving smooth flattening action. The cam, as a transmission element, its profile line or groove shape determines the movement law of the pressing plate. By reasonably designing the profile line of the cam, the movement trajectory, speed and acceleration of the pressing plate can be accurately controlled, thereby meeting the requirements of the garment flattening process.

[0019] Further improved scheme: the bracket is provided with an axle hole matched with the rotating shaft, and a rolling bearing is arranged between the axle hole and the rotating shaft. The bracket is provided with two axle holes, and the axle holes are respectively located at both ends of the rotating shaft.

[0020] Based on the above technical scheme: the rolling bearing can bear larger radial and axial loads, which makes the rotating shaft more stable and reliable when transmitting torque and bearing load. In the clothing flattening device, the rotating shaft usually needs to bear the pressure and friction force from the pressing plate and the conveying belt, and the use of the rolling bearing can effectively disperse these forces and protect the rotating shaft from damage. At the same time, the two shaft holes are located at the two ends of the rotating shaft, providing more balanced support and further enhancing the load-bearing capacity of the rotating shaft. The design of the shaft hole and the rolling bearing makes the installation and maintenance of the rotating shaft more simple and convenient. During installation, the rotating shaft is simply inserted into the shaft hole and the rolling bearing is installed. During maintenance, the rolling bearing and the rotating shaft can be easily disassembled for inspection and replacement. This design reduces the maintenance cost of the equipment and improves the maintainability and flexibility of the equipment.

[0021] Further improved scheme: the cam is transverse to the width direction of the conveyor, and the cam is uniformly distributed with lightening grooves that reduce the weight of the cam.

[0022] Based on the above technical scheme: the design of the lightening grooves significantly reduces the overall weight of the cam. In the clothing flattening device, the cam is a key component for driving the clothing on the conveyor to flatten, and its weight has an important influence on the energy consumption and operating efficiency of the entire device. By reducing the weight of the cam, the energy consumption of the device during operation can be reduced, and the overall efficiency can be improved. The uniform distribution of the lightening grooves not only reduces the weight, but also optimizes the structure of the cam. This design makes the cam more stable during operation, reducing vibrations and noise caused by uneven weight. At the same time, the presence of the lightening grooves also enhances the rigidity and stability of the cam, allowing it to maintain stable performance even after a long period of operation.

[0023] Further improved scheme: the reset assembly includes a sliding rod arranged on the pressing plate, a sliding hole arranged on the support and matched with the sliding rod, and an elastic member driven by the sliding rod to move the pressing plate upward.

[0024] Based on the above technical scheme: the design of the reset assembly ensures that the pressing plate can be accurately reset to the initial position after each flattening operation. This helps to improve the accuracy and consistency of flattening, ensuring that each piece of clothing can be uniformly flattened. The close cooperation of the sliding rod and the sliding hole and the driving action of the elastic member together enhance the stability of the movement of the pressing plate. Even in high-speed or continuous flattening operations, the pressing plate can maintain a stable movement trajectory.

[0025] Further improved scheme: the elastic member is a spring, the spring is sleeved on the sliding rod, the upper end of the sliding rod is provided with a limiting block, the upper end of the elastic member is in contact with the limiting block, the lower end of the elastic member is in contact with the support, and the limiting block is fixed on the sliding rod by screw thread.

[0026] Based on the above technical scheme: the elasticity of the spring and the limiting effect of the limiting block jointly reduce the shaking and deviation of the pressing plate during movement. This enables the pressing plate to more stably contact and flatten the garment, improving the flattening quality. The spring is directly sleeved on the sliding rod, which makes the structure of the reset assembly more compact. It reduces additional connecting parts and installation space, making the entire flattening device more concise and efficient.

[0027] The utility model discloses the beneficial effects are:

[0028] The utility model discloses a flattening component is set up, and the pressing plate in flattening component can move down rapidly under the action of drive component, and the garment on conveyor is flattened. Once flattening action is completed, reset component starts immediately, and pushes the pressing plate to return to the initial position and separates with the flattened garment. This fast, coherent action flow significantly shortens single flattening period, thereby improves overall flattening efficiency. Through the integration drive component and reset component, the device realizes the automation operation of garment flattening. The operator only needs to start the device, can continuously, stably complete the flattening task of garment, need not frequent manual intervention, further improves the working efficiency.

[0029] The pressing plate can apply uniform and stable pressure to the garment under the drive of the drive component, ensuring that the garment is evenly treated during flattening. This helps to avoid local indentation or unevenness of the garment, improving the flattening quality. The flattening component of the device is designed flexibly and can be adjusted according to the material, thickness and flattening requirements of different garments. By adjusting the output force of the drive component and the elasticity of the reset component, accurate flattening of different types of garments can be achieved, meeting the individual needs of different users. BRIEF DESCRIPTION OF DRAWINGS

[0030] In order to more clearly illustrate the technical scheme of the embodiments of the utility model, the following will briefly introduce the drawings needed to be used in the embodiments, it should be understood, the following drawings only shows some embodiments of the utility model, therefore should not be regarded as the limitation to the range, for the ordinary skilled person in the art, under the premise of not paying the creative labor, can also obtain other related drawings according to these drawings.

[0031] Fig. 1 It is a schematic view of a garment flattening device with high flattening efficiency of the utility model.

[0032] Fig. 2 It is a position schematic view of the pressing plate in the reset state in a garment flattening device with high flattening efficiency of the utility model.

[0033] Fig. 3 It is a position schematic view of the pressing plate in the flattening state in a garment flattening device with high flattening efficiency of the utility model.

[0034] Fig. 4 Fig. 1 is a schematic view of a cam in a garment flattening device with high flattening efficiency according to the present application.

[0035] Explanation of reference numerals in the drawing:

[0036] 1 - frame; 2 - conveyor; 3 - support; 4 - pressing plate; 5 - conveying belt; 6 - driving roller; 7 - driven roller; 8 - support plate; 9 - rotating shaft; 10 - cam; 11 - weight-reducing groove; 12 - sliding rod; 13 - elastic member. DETAILED DESCRIPTION

[0037] The technical solutions in the embodiments of the present application will be clearly and completely described in combination with the accompanying drawings in the embodiments of the present application. It should be understood that the specific embodiments described herein are only used to explain the present application and are not used to limit the present application. Based on the embodiments of the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the present application.

[0038] Reference Figs. 1 to 4 A garment flattening device with high flattening efficiency, comprising a frame 1, a conveyor 2 for conveying garments is arranged on the frame 1, and a flattening assembly for flattening the garments on the conveyor 2 is further arranged on the frame 1.

[0039] The flattening assembly comprises a support 3, a pressing plate 4 is slidably connected to the support 3, a driving assembly for driving the pressing plate 4 is arranged on the support 3, and a reset assembly is further arranged between the pressing plate 4 and the frame 1.

[0040] The pressing plate 4 comprises a flattening state for flattening garments and a reset state for being separated from the flattened garments, in the flattening state, the driving assembly drives the pressing plate 4 to move downward to flatten the garments, and in the reset state, the reset assembly pushes the pressing plate 4 to separate the pressing plate 4 from the flattened garments.

[0041] Wherein: the conveyor 2 comprises a conveying belt 5, the conveyor 2 further comprises a driving roller 6 and a driven roller 7, the conveying belt 5 is arranged on the driving roller 6 and the driven roller 7, and a first motor for driving the driving roller 6 is further arranged on the frame 1. The conveyor 2 can also adopt other forms of conveying devices. The driving roller 6 and the driven roller 7 are both rotationally connected to the frame 1, the first motor is fixed to the frame 1 through screws, and a shaft coupling is arranged between the first motor and the driving roller 6. Roll bearings are arranged between the driving roller 6, the driven roller 7 and the frame 1. The shaft coupling can be an elastic shaft coupling.

[0042] Specifically, the rack 1 is further provided with a support plate 8 supporting the conveyor belt 5 when the pressing plate 4 flattens the garment, the support plate 8 is located directly below the pressing plate 4, and the upper surface of the support plate 8 is parallel to the lower surface of the pressing plate 4. The support plate 8 is fixed to the rack 1 by bolts, and the surface of the support plate 8 in contact with the conveyor belt 5 is provided with a wear-resistant layer coated on the support plate 8. The support plate 8 can be a hollow structure to reduce the weight of the support plate 8.

[0043] Wherein: the driving assembly includes a rotating shaft 9 connected to the bracket 3, the rotating shaft 9 is provided with a cam 10 to push the pressing plate 4 to flatten the garment, the cam 10 is an integral structure with the rotating shaft 9, and the bracket 3 is further provided with a second motor to drive the rotating shaft 9. The bracket 3 is provided with an axle hole matched with the rotating shaft 9, and a rolling bearing is arranged between the axle hole and the rotating shaft 9. The bracket 3 is provided with two axle holes, respectively located at both ends of the rotating shaft 9. The cam 10 spans the width direction of the conveyor 2, and the cam 10 is uniformly provided with a weight-reducing groove 11 to reduce the weight of the cam 10.

[0044] Specifically: the reset assembly includes a slide rod 12 arranged on the pressing plate 4, and the bracket 3 is provided with a sliding hole matched with the slide rod 12. The reset assembly further includes an elastic member 13 driven by the slide rod 12 to move the pressing plate 4 upward. The elastic member 13 is a spring, which is sleeved on the slide rod 12. The upper end of the slide rod 12 is provided with a limiting block, the upper end of the elastic member 13 is in contact with the limiting block, the lower end of the elastic member 13 is in contact with the bracket 3, and the limiting block is fixed on the slide rod 12 by screw thread. The elastic member 13 can also be replaced by other structures with elastic deformation function. The limiting block can also be fixed on the slide rod 12 by other means, for example, the limiting block can also be welded on the slide rod 12. The cross-sectional shape of the slide rod 12 can be circular or polygonal. The slide rods 12 can be uniformly distributed on the pressing plate 4 to make the pressing plate 4 bear force uniformly.

[0045] The working principle of the embodiment is as follows:

[0046] When the conveyor 2 delivers the garment to the predetermined position, the control system starts the driving assembly. The driving assembly starts to work and drives the pressing plate 4 to slide downward along the bracket 3. As the pressing plate 4 slides downward, the pressing plate 4 gradually contacts and presses the garment on the conveyor 2. During the flattening process, the pressing plate 4 applies appropriate pressure to flatten the garment to the predetermined state. After the pressing plate 4 reaches the predetermined flattening position, it remains for a period of time to ensure that the garment is fully flattened.

[0047] After the flattening operation is completed, the control system stops the driving assembly from working. At this time, the pressing plate 4 stops descending and remains at the current position. Subsequently, the resetting assembly starts working. The elastic member 13 in the resetting assembly releases the stored energy and pushes the pressing plate 4 to slide upward along the support 3. Under the pushing of the resetting assembly, the pressing plate 4 gradually rises and is separated from the flattened garment. When the pressing plate 4 returns to the initial position, the resetting assembly stops working. At the same time when the pressing plate 4 is reset, the conveyor 2 continues working and transports the next garment to be flattened to the predetermined position, preparing for the next flattening operation.

[0048] The utility model is not limited to the above optional implementation, and each scheme can be combined arbitrarily under the premise of not contradicting each other; anyone can derive other various forms of products under the enlightenment of the utility model, but no matter any change in shape or structure, any technical scheme falling within the scope defined by the claims of the utility model falls within the protection scope of the utility model.

Claims

1. A garment ironing device with high ironing efficiency, characterized in that: The rack is provided with a conveyor for conveying clothes, and a flattening assembly for flattening the clothes on the conveyor; The flattening assembly comprises a support, a pressing plate slidingly connected to the support, a driving assembly for driving the pressing plate, and a reset assembly between the pressing plate and the rack; The pressing plate comprises a flattening state for flattening clothes and a reset state for separating from the flattened clothes, in the flattening state, the driving assembly drives the pressing plate to move downward to flatten the clothes, and in the reset state, the reset assembly pushes the pressing plate to separate from the flattened clothes.

2. The garment flattening device of claim 1, wherein: The conveyor comprises a conveyor belt, a driving roller and a driven roller, the conveyor belt is arranged on the driving roller and the driven roller, and the rack is further provided with a first motor for driving the driving roller.

3. The garment flattening device of claim 2, wherein: The driving roller and the driven roller are both rotationally connected to the rack, the first motor is fixed to the rack by screws, and a shaft coupling is arranged between the first motor and the driving roller.

4. The garment flattening device of claim 3, wherein: The rack is further provided with a support plate for supporting the conveyor belt when the pressing plate flattens the clothes, the support plate is located directly below the pressing plate, and the upper surface of the support plate is parallel to the lower surface of the pressing plate.

5. The garment flattening device of claim 4, wherein: The support plate is fixed to the rack by bolts, a wear-resistant layer is arranged on the surface of the support plate in contact with the conveyor belt, and the wear-resistant layer is coated on the support plate.

6. The garment flattening device of claim 1, wherein: The driving assembly comprises a rotating shaft rotationally connected to the support, a cam is arranged on the rotating shaft for pushing the pressing plate to flatten the clothes, the cam and the rotating shaft are of an integral structure, and a second motor is arranged on the support for driving the rotating shaft.

7. The garment flattening device of claim 6, wherein: The support is provided with shaft holes matched with the rotating shaft, rolling bearings are arranged between the shaft holes and the rotating shaft, and two shaft holes are arranged on the support, respectively at both ends of the rotating shaft.

8. The garment flattening device of claim 7, wherein: The cam spans the width direction of the conveyor, and the cam is uniformly provided with weight-reducing grooves for reducing the weight of the cam.

9. The garment flattening device of claim 8, wherein: The reset assembly comprises a sliding rod arranged on the pressing plate, the support is provided with a sliding hole matched with the sliding rod, and the reset assembly further comprises an elastic member for driving the pressing plate to move upward through the sliding rod.

10. The garment flattening device of claim 9, wherein: The elastic member is a spring, the spring is sleeved on the sliding rod, the upper end of the sliding rod is provided with a limiting block, the upper end of the elastic member is in contact with the limiting block, the lower end of the elastic member is in contact with the support, and the limiting block is fixed to the sliding rod by threads.