An intelligent hanging conveying device for clothing production

The adaptive airflow adjustment and support components of the intelligent hanging conveying device solve the problem of inconsistent material and wrinkle status in clothing production, and achieve flatness and energy consumption optimization of clothing during the conveying process.

CN120364351BActive Publication Date: 2025-09-12JINJIANG SENTOLING GARMENT CO LTD
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Patent Information

Application Number
CN202510859026.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-06-25
Publication Date
2025-09-12
Estimated Expiration
2045-06-25

AI Technical Summary

Technical Problem

Existing clothing production hanging and conveying devices have difficulty achieving adaptive airflow adjustment when faced with clothing of different materials, humidity and inconsistent wrinkle states, resulting in wrinkles that cannot be completely smoothed out or overheating damage, and high energy consumption.

Method used

An intelligent hanging and conveying device is used to obtain the wrinkle status of the clothing through the first camera and the second camera, adjust the temperature of the heating wire in the first impact head and the second impact head, and use an adjustable telescopic tube and support assembly to achieve adaptive airflow parameter adjustment and clothing support.

Benefits of technology

It can automatically adjust the airflow parameters according to the material of the clothing, improve the wrinkle smoothing effect, reduce energy consumption, avoid clothing damage, and ensure that the clothing remains flat during transportation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses an intelligent hanging and conveying device for clothing production, which relates to the technical field of clothing hanging and conveying. It includes a traction component and a support component, wherein the support component is provided with an impact component, which is composed of a first impact module and a second impact module, and the support component is provided with a lifting component for adjusting the height of the impact component; the impact component includes a fan, which is provided with a first branch pipe and a second branch pipe, and the second impact module includes at least two impact boxes. The present invention uses a first camera and a second camera to respectively obtain the wrinkle status of the clothing at the corresponding positions of the first impact head and the second impact head. When the wrinkle status of the clothing is high, the temperature of the heating wire in the first impact head and the second impact head is increased, thereby achieving strong baking of the wrinkle area and accelerating the smoothing of the wrinkles of the clothing. When the wrinkle status of the clothing is low, the temperature of the heating wire in the first impact head and the second impact head is reduced to prevent the clothing from overheating.
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Description

Technical Field

[0001] The present invention relates to the technical field of clothing hanging and conveying, and in particular to an intelligent hanging and conveying device for clothing production. Background Art

[0002] Garment production refers to the entire process of transforming design concepts into finished garments, including procurement of raw materials, cutting, sewing, ironing, testing, packaging and shipping. During the garment production process, garments need to be hoisted to different production lines. A hanging system, usually a conveyor belt or track, is used to move garments or semi-finished products on the production line. This method is often used in high-efficiency factories, especially in assembly line operations. Clothes are hung on brackets or hooks and transported between different processes by machinery or manual labor, reducing handling time and labor intensity and improving production efficiency.

[0003] Patent publication number CN119160584A is an intelligent hanging and conveying device for clothing production. When the hanging and conveying device is used in the clothing production process, the clothing is hung on the outside of the hanging rod and the bottom rod, so the ejected hot air can act on the surface of the clothing from the inside of the clothing. Under the action of the airflow, the inside of the clothing can make the clothing in the natural hanging state more upright, avoiding wrinkles on the surface of the clothing during the hanging and conveying process. At the same time, the airflow acts on the fabric of the clothing after being heated, which can iron the clothing and remove small wrinkles on the surface of the clothing, so that the surface of the clothing is in a relatively flat state during the hanging and conveying process, ensuring that the clothing is in a flat state for hanging processing, avoiding wrinkles on the surface of the clothing that affect product quality.

[0004] When the above-mentioned and similar technical solutions are used to impact clothing with airflow, the texture and line distribution density of all positions of the clothing are not completely uniform during the production process, and the humidity and wrinkle states of the clothing are not completely consistent due to the production process. At this time, adaptive airflow adjustment cannot be achieved due to the failure to automatically adjust the airflow parameters according to the material of the clothing, which in turn causes some wrinkles to be unable to be smoothed out, or some positions to be severely overheated, which excessively increases energy consumption. At the same time, when conveying clothing, since different types of clothing have different shoulder angles, when the support angle of the conveying equipment is not completely compatible with the shoulder angle of the clothing, it will cause deformation of the clothing during the conveying process and affect subsequent processing. Summary of the Invention

[0005] The object of the present invention is to provide an intelligent hanging and conveying device for clothing production to solve the problems raised in the above background technology.

[0006] To achieve the above objectives, the present invention provides the following technical solutions: an intelligent hanging and conveying device for garment production, comprising a traction assembly and a support assembly, wherein the support assembly is provided with an impact assembly, the impact assembly comprising a first impact module and a second impact module, and the support assembly is provided with a lifting assembly for adjusting the height of the impact assembly;

[0007] The impact assembly includes a fan, the fan is provided with a first branch pipe and a second branch pipe, the second impact module includes at least two impact boxes, the first impact module includes at least two first diverter plates, the first branch pipes are respectively connected to the first diverter plates, the impact box is provided with a plurality of first impact heads communicating with the first diverter plates, and the impact box is provided with a plurality of first cameras corresponding to the first impact heads;

[0008] The impact box is provided with a plurality of second manifolds, the second branch pipe is connected to the second manifold, the impact box is provided with a first telescopic tube and a second telescopic tube, the first telescopic tube and the second telescopic tube are both provided with a second impact head and a second camera, the first impact head and the second impact head are both provided with a heating wire, and the first impact head and the second impact head are regulating control valve tubes;

[0009] The fan transports air to the first diversion plate and the second diversion plate through the first branch pipe and the second branch pipe, and ejects it through the first impact head and the second impact head. The first camera and the second camera obtain the wrinkle status of the clothing at the corresponding position and adjust the temperature of the heating wire in the first impact head and the second impact head at the corresponding position.

[0010] Furthermore, the impact box is provided with multiple movable slots, and cross bars are provided in the movable slots. The first telescopic tube and the second telescopic tube are both provided with limit blocks sleeved on the outer wall of the cross bar, and the limit blocks are both provided with return springs sleeved on the cross bar. After the airflow entering the second diverter plate enters the impact box, since the second impact head is an adjusting control valve tube, as the inner diameter of the second impact head is reduced, at this time, under the action of the airflow, the first telescopic tube and the second telescopic tube will be squeezed out of the impact box respectively, and the limit blocks squeeze the return springs, thereby exposing more second impact heads, and performing airflow impact on a larger area inside the clothing. The second camera obtains the wrinkle state of the clothing at the corresponding position of the second impact head, and adjusts the temperature of the heating wire of the second impact head so that the temperature of the gas blown out by the second impact head is more adapted to the clothing state. As the inner diameter of the second impact head is increased, under the action of the return spring, the first telescopic tube and the second telescopic tube will shrink into the impact box, and the first telescopic tube and the second telescopic tube will be adjusted back and forth.

[0011] Furthermore, the traction assembly includes a main box, which is provided with a first clamping block and a second clamping block, and the first clamping block and the second clamping block are respectively provided with a first roller and a second roller, a traction line is provided between the first roller and the second roller, and a traction motor is provided on the second clamping block, and the traction motors are respectively connected to the second rollers, and a first drive motor is provided on the main box, and a first threaded rod is provided at one end of the output shaft of the first drive motor, and the first clamping block is provided on the first threaded rod, and the first drive motor rotates to drive the first clamping block to rise and fall, so that the first roller and the second roller clamp the traction line, and the traction motor drives the second roller to rotate, so that the main box moves along the traction line.

[0012] Furthermore, the main box is provided with a power receiving clamp, which is a semi-arc structure. The power receiving clamp is in contact with the traction line, and the traction line is a current-carrying line. The first roller and the second roller are both made of rubber. During the traction process of the main box, the power receiving clamp supplies power to the main box, and the first roller and the second roller made of rubber will not be affected by the traction line with current.

[0013] Furthermore, the support assembly includes a base plate, which is fixed to the main box, and an electric push rod is provided on the main box. A lifting plate is provided at one end of the piston rod of the electric push rod, and at least two lifting rods are provided on the lifting plate. A baffle is provided on the base plate, and a first swing rod and a second swing rod are rotatably connected between the baffles. The lifting rods are engaged with the first swing rod and the second swing rod respectively, and a third camera is provided on the base plate. The electric push rod drives the lifting rod to rise and fall. When the lifting rod descends, the first swing rod and the second swing rod engaged with the lifting rod expand outward. When the lifting rod rises, the first swing rod and the second swing rod shrink inward. The wrinkle state of the shoulder position of the clothing is obtained by the third camera, and the expansion amplitude of the first swing rod and the second swing rod is adjusted to provide support according to the state of the clothing.

[0014] Furthermore, a control panel and an infrared distance sensor are provided on the main box. The infrared distance sensor is electrically connected to the traction motor. The infrared distance sensor obtains the distance between the main boxes and sets a distance interval value. When the distance between the main boxes is greater than the distance interval value, the speed of the traction motor is accelerated and the traction speed is increased. When the distance between the main boxes is lower than the distance interval value, the speed of the traction motor is reduced and the traction speed is reduced.

[0015] Furthermore, the first telescopic tube and the second telescopic tube are both provided with a partition piece, which is made of rubber and is in sealed contact with the impact box. During the extension and retraction of the first telescopic tube and the second telescopic tube, the partition piece is used to isolate the gas ejected from the second impact head in the impact box to prevent gas leakage that causes the first telescopic tube and the second telescopic tube to be unable to extend and retract normally.

[0016] Furthermore, the lifting assembly includes a lifting block, the impact box is arranged on both sides of the lifting block, the lifting rod is provided with a second threaded rod and a limit rod, the lifting block is sleeved on the second threaded rod and the limit rod, the second threaded rod is provided with a lifting motor, the output shaft of the lifting motor is connected to the second threaded rod, the lifting motor rotates to drive the second threaded rod to rotate, and the lifting block on the second threaded rod is limited by the limit rod, and then lifts and lowers back and forth to adjust the height of the airflow impact.

[0017] Furthermore, a power receiving slot is provided in the impact box, and power receiving blocks in contact with the power receiving slot are provided on the first telescopic tube and the second telescopic tube. When the first telescopic tube and the second telescopic tube move, the power receiving blocks supply power to the second impact head and the second camera under the action of the power receiving slot.

[0018] Compared with the prior art, the present invention has the following beneficial effects:

[0019] The intelligent hanging and conveying device for clothing production uses a first camera and a second camera to respectively obtain the wrinkle status of the clothing at the corresponding positions of the first impact head and the second impact head. When the wrinkle status of the clothing is high, the temperature of the heating wires in the first impact head and the second impact head is increased, thereby achieving strong baking of the wrinkled area and accelerating the smoothing of the wrinkles of the clothing. When the wrinkle status of the clothing is low, the temperature of the heating wires in the first impact head and the second impact head is reduced to prevent overheating and damage to the clothing. The device achieves an adaptive adjustment effect of automatically adjusting the airflow parameters according to the material of the clothing, thereby improving the airflow smoothing effect, reducing energy consumption, and avoiding damage to the clothing.

[0020] At the same time, the gas entering the impact box through the second diverter plate will prompt the first telescopic tube and the second telescopic tube to be squeezed out of the impact box. As the first telescopic tube and the second telescopic tube are squeezed out, more of the second impact head will be exposed, extending the airflow impact area of ​​the second impact head on the inside of the clothing. The second camera obtains the wrinkle state of the clothing at the corresponding position of the second impact head, and adjusts the temperature of the heating wire of the second impact head so that the temperature of the gas blown out by the second impact head is more adapted to the clothing state. As the inner diameter of the second impact head is increased, under the action of the reset spring, the first telescopic tube and the second telescopic tube will shrink into the impact box. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] Figure 1 It is a schematic diagram of the overall structure of the present invention;

[0022] Figure 2 It is a schematic structural diagram of the traction assembly of the present invention;

[0023] Figure 3 It is a schematic diagram of the power receiving clamp structure of the present invention;

[0024] Figure 4This is a schematic structural diagram of a first threaded rod of the present invention;

[0025] Figure 5 Schematic diagram of the structure of the first swing arm and the second swing arm of the present invention;

[0026] Figure 6 This is a schematic diagram of the lifting rod structure of the present invention;

[0027] Figure 7 This is a schematic structural diagram of the first branch pipe and the second branch pipe of the present invention;

[0028] Figure 8 This is a schematic structural diagram of the first impact module of the present invention;

[0029] Figure 9 This is a schematic structural diagram of the second impact module of the present invention;

[0030] Figure 10 It is a schematic diagram of the structure of the return spring of the present invention.

[0031] In the figure: 1, traction assembly; 101, main box; 102, control panel; 103, first clamping block; 104, first roller; 105, second clamping block; 106, second roller; 107, traction motor; 108, first drive motor; 109, first threaded rod; 110, power receiving clamp; 2. Support assembly; 201. Electric push rod; 202. Lifting plate; 203. Bottom plate; 204. Baffle; 205. First swing arm; 206. Second swing arm; 207. Lifting rod; 3. Impact assembly; 301. Fan; 302. First branch pipe; 303. Second branch pipe; 4. First impact module; 401. First diverter plate; 402. First impact head; 403. First camera; 5. Second impact module; 501. Second diverter plate; 502. Impact box; 503. First telescopic tube; 504. Second telescopic tube; 505. Second impact head; 506. Second camera; 507. Receiving slot; 508. Cross bar; 509. Return spring; 510. Limit block; 6. Lifting assembly; 601. Lifting motor; 602. Second threaded rod; 603. Limit rod; 604. Lifting block. DETAILED DESCRIPTION

[0032] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0033] Airflow impact smoothing is an important part of the clothing lifting and conveying system. It aims to eliminate wrinkles, make the surface of clothing smooth, and provide a good foundation for subsequent processes. However, the traditional fixed-parameter airflow impact method is difficult to cope with the differences in material, line distribution, humidity and wrinkle status generated during the clothing production process. During the production process of clothing, different parts may use different fabrics, and their fiber density and air permeability have significant differences. In addition, the distribution of lines, such as seams and patch pockets, will also affect the airflow permeability of the area. More importantly, due to the influence of the production process, for example, the humidity of ironed clothing is lower, while the humidity of freshly sewn clothing is higher, which directly affects the clothing's response to airflow. The wrinkle states vary greatly, some are fine wrinkles, while others are deep creases. In the above complex situations, if fixed airflow parameters are used for impact, on the one hand, for areas with thicker textures, densely distributed lines, or areas with higher humidity, the fixed airflow may not be able to effectively penetrate, resulting in the wrinkles not being completely smoothed out. On the other hand, for areas with thinner textures, sparsely distributed lines, or areas with lower humidity, the fixed airflow may be too strong, causing overheating of the area, which not only wastes energy but may even damage certain sensitive fabrics. The technical solution provided by this application , air is inhaled through the fan, and the wrinkle status of the clothing at the corresponding positions of the first impact head and the second impact head are respectively obtained through the first camera and the second camera. When the wrinkle status of the clothing is high, the temperature of the heating wire in the first impact head and the second impact head is enhanced, thereby achieving strong baking of the wrinkle area and accelerating the smoothing of the wrinkles of the clothing. When the wrinkle status of the clothing is low, the temperature of the heating wire in the first impact head and the second impact head is reduced to prevent overheating of the clothing and damage to the clothing, thereby achieving an adaptive adjustment effect of automatically adjusting the airflow parameters according to the material of the clothing, improving the airflow smoothing effect, and at the same time reducing energy consumption and avoiding damage to the clothing.

[0034] like Figure 1-10As shown, an intelligent hanging and conveying device for clothing production includes a traction component 1 and a support component 2, the support component 2 is provided with an impact component 3, the impact component 3 is composed of a first impact module 4 and a second impact module 5, and the support component 2 is provided with a lifting component 6 for adjusting the height of the impact component 3; the impact component 3 includes a fan 301, the fan 301 is provided with a first branch pipe 302 and a second branch pipe 303, the second impact module 5 includes at least two impact boxes 502, the first impact module 4 includes at least two first diverter plates 401, the first branch pipes 302 are respectively connected to the first diverter plates 401, the impact box 502 is provided with a plurality of first impact heads 402 communicating with the first diverter plates 401, and the impact box 502 is provided with a plurality of first cameras 403 corresponding to the first impact heads 402; the impact box 502 is provided with a plurality of The second diverter plate 501, the second branch pipe 303 is connected to the second diverter plate 501, the impact box 502 is provided with a first telescopic tube 503 and a second telescopic tube 504, the first telescopic tube 503 and the second telescopic tube 504 are both provided with a second impact head 505 and a second camera 506, the first impact head 402 and the second impact head 505 are both provided with heating wires, the first impact head 402 and the second impact head 505 are regulating control valve pipes; the fan 301 transports air to the first diverter plate 401 and the second diverter plate 501 through the first branch pipe 302 and the second branch pipe 303, and ejects it through the first impact head 402 and the second impact head 505, the first camera 403 and the second camera 506 obtain the wrinkle status of the clothing at the corresponding position, and adjust the temperature of the heating wires in the first impact head 402 and the second impact head 505 at the corresponding position.

[0035] It should be noted that when the fan 301 is started, it will suck in air and transport it to the first diverter plate 401 and the second diverter plate 501 through the first branch pipe 302 and the second branch pipe 303 respectively. At this time, the air entering the first diverter plate 401 will enter the multiple first impact heads 402 respectively, and the air entering the second diverter plate 501 will enter the first telescopic tube 503 and the second telescopic tube 504 respectively, and then be ejected through the first impact head 402 and the second impact head 505 respectively, and the first camera 403 and the second camera 506 will respectively capture the first impact head 402 and the second impact head 505. The wrinkle state of the clothing at the corresponding positions of the impact head 402 and the second impact head 505. When the wrinkle state of the clothing is high, the temperature of the heating wire in the first impact head 402 and the second impact head 505 is enhanced to achieve strong baking of the wrinkle area and accelerate the smoothing of the wrinkles of the clothing. When the wrinkle state of the clothing is low, the temperature of the heating wire in the first impact head 402 and the second impact head 505 is reduced to prevent overheating of the clothing and damage to the clothing. The adaptive adjustment effect of automatically adjusting the airflow parameters according to the material of the clothing is achieved, thereby improving the airflow smoothing effect, reducing energy consumption, and avoiding damage to the clothing.

[0036] It should be noted that the first camera 403 and the second camera 506 obtain image data of the corresponding position of the clothing to obtain the target image item, perform feature extraction based on the target image item, extract the wrinkle density, wrinkle depth and wrinkle curvature, and assign initial weights based on the wrinkle density, wrinkle depth and wrinkle curvature, respectively, with the initial weights being 33.33%, thereby obtaining the comprehensive wrinkle coefficient of the target image item, setting the initial temperature value and the initial wrinkle coefficient value, and adjusting the temperature based on the comparison result between the comprehensive wrinkle coefficient and the initial wrinkle coefficient value.

[0037] like Figure 9-10 As shown, a plurality of movable grooves are provided in the impact box 502, and a cross bar 508 is provided in each of the movable grooves. The first telescopic tube 503 and the second telescopic tube 504 are both provided with a limit block 510 sleeved on the outer wall of the cross bar 508, and the limit block 510 is provided with a return spring 509 sleeved on the cross bar 508. After the airflow entering the second diverter plate 501 enters the impact box 502, since the second impact head 505 is a regulating control valve tube, as the inner diameter of the second impact head 505 is reduced, under the action of the airflow, the first telescopic tube 503 and the second telescopic tube 504 will be squeezed out of the impact box 502 respectively. The limit block 510 squeezes the return spring 509, thereby exposing more of the second impact head 505, and performing airflow impact on a larger area inside the clothing. The second camera 506 obtains the wrinkle state of the clothing at the corresponding position of the second impact head 505, and adjusts the temperature of the heating wire of the second impact head 505 so that the temperature of the gas blown out by the second impact head 505 is more adapted to the clothing state. As the inner diameter of the second impact head 505 is increased, under the action of the return spring 509, the first telescopic tube 503 and the second telescopic tube 504 will shrink into the impact box 502, and the first telescopic tube 503 and the second telescopic tube 504 will be adjusted back and forth.

[0038] It should be noted that the second impact head 505 is an adjustable control valve tube, and the diameter of its air outlet is adjustable. When the air outlet volume of the second impact head 505 is adjusted to a small amount, the gas entering the impact box 502 through the second diverter plate 501 will prompt the first telescopic tube 503 and the second telescopic tube 504 to be squeezed out of the impact box 502, and during the extrusion process, the limit block 510 will squeeze the return spring 509. As the first telescopic tube 503 and the second telescopic tube 504 are squeezed out, more of the second impact head 505 will be exposed, extending the airflow impact area of ​​the second impact head 505 on the inside of the clothing. The second camera 506 obtains the wrinkle state of the clothing at the corresponding position of the second impact head 505 and adjusts the temperature of the heating wire of the second impact head 505 so that the temperature of the gas blown out by the second impact head 505 is more adapted to the clothing state. As the inner diameter of the second impact head 505 is increased, under the action of the return spring 509, the first telescopic tube 503 and the second telescopic tube 504 will shrink into the impact box 502.

[0039] like Figure 1-Figure 4 As shown, the traction assembly 1 includes a main box 101, and a first clamping block 103 and a second clamping block 105 are provided on the main box 101. The first clamping block 103 and the second clamping block 105 are respectively provided with a first roller 104 and a second roller 106. A traction line is provided between the first roller 104 and the second roller 106. The second clamping block 105 is provided with a traction motor 107, and the traction motor 107 is connected to the second roller 106 respectively. A first drive motor 108 is provided on the main box 101, and a first threaded rod 109 is provided at one end of the output shaft of the first drive motor 108. The first clamping block 103 is provided on the first threaded rod 109. The first drive motor 108 rotates to drive the first clamping block 103 to rise and fall, so that the first roller 104 and the second roller 106 clamp the traction line, and the traction motor 107 drives the second roller 106 to rotate, so that the main box 101 moves along the traction line.

[0040] It should be noted that when the first drive motor 108 rotates, it will drive the first threaded rod 109 to rotate, and make the first block 103 sleeved on the first threaded rod 109 rise or fall. When the first block 103 rises, the traction line can be clamped to facilitate the movement of the main box 101. When the first block 103 falls, the traction component 1 can be peeled off from the traction line, which is convenient for maintenance and replacement of the device.

[0041] like Figure 3 As shown, a power receiving clamp 110 is provided on the main box 101. The power receiving clamp 110 is a semi-arc structure. The power receiving clamp 110 is in contact with the traction line. The traction line is a current-carrying line. The first roller 104 and the second roller 106 are both made of rubber. During the traction process of the main box 101, the power receiving clamp 110 supplies power to the main box 101. The first roller 104 and the second roller 106 made of rubber will not be affected by the traction line with current.

[0042] It should be noted that since the traction line is a current-carrying line, during the traction process of the main box 101, the power receiving clamp 110 contacts the traction line and supplies power to the main box 101, while the first roller 104 and the second roller 106 made of rubber material will not be affected by the current-carrying traction line, thereby preventing the normal operation of components such as the traction motor 107 from being affected.

[0043] like Figure 5-Figure 6As shown, the support assembly 2 includes a bottom plate 203, the bottom plate 203 is fixed on the main box 101, the main box 101 is provided with an electric push rod 201, one end of the piston rod of the electric push rod 201 is provided with a lifting plate 202, and at least two lifting rods 207 are provided on the lifting plate 202. A baffle 204 is provided on the bottom plate 203, and a first swing rod 205 and a second swing rod 206 are rotatably connected between the baffles 204. The lifting rod 207 is engaged with the first swing rod 205 and the second swing rod 206 respectively. A third camera is provided on the plate 203, and the electric push rod 201 drives the lifting rod 207 to rise and fall. When the lifting rod 207 descends, the first swing rod 205 and the second swing rod 206 engaged with the lifting rod 207 expand outward. When the lifting rod 207 rises, the first swing rod 205 and the second swing rod 206 shrink inward. The wrinkle state of the shoulder position of the clothing is obtained through the third camera, and the expansion amplitude of the first swing rod 205 and the second swing rod 206 is adjusted to provide support according to the state of the clothing.

[0044] It should be noted that the electric push rod 201 can drive the lifting rod 207 to rise and fall. When the lifting rod 207 descends, the first swing arm 205 and the second swing arm 206 expand outward. When the lifting rod 207 rises, the first swing arm 205 and the second swing arm 206 shrink inward. Since the third camera is set on both sides of the bottom of the base plate 203, its viewing angle is downward. Therefore, when the clothing is supported by the first swing arm 205 and the second swing arm 206, the wrinkle state of the shoulder position of the clothing can be obtained through the third camera, and the expansion amplitude of the first swing arm 205 and the second swing arm 206 can be adjusted to support according to the state of the clothing. When wrinkles are detected at the shoulder position of the clothing, the lifting rod 207 rises, causing the first swing arm 205 and the second swing arm 206 to shrink inward until the wrinkles disappear. At this time, the first swing arm 205 and the second swing arm 206 are in the optimal support state.

[0045] like Figure 1 As shown, a control panel 102 and an infrared distance sensor are provided on the main box 101 , and the infrared distance sensor is electrically connected to the traction motor 107 .

[0046] It should be noted that since there is a main box 101 and a lifting assembly composed of it arranged on the traction line, the infrared distance sensor can obtain the distance between adjacent main boxes 101 and set the distance interval value. When the distance between the main boxes 101 is greater than the distance interval value, the speed of the traction motor 107 is increased to increase the traction speed. When the distance between the main boxes 101 is lower than the distance interval value, the speed of the traction motor 107 is reduced to reduce the traction speed.

[0047] like Figure 9As shown, both the first telescopic tube 503 and the second telescopic tube 504 are provided with partition pieces, which are made of rubber. The partition pieces are in sealed contact with the impact box 502 .

[0048] It should be noted that during the extension and retraction of the first telescopic tube 503 and the second telescopic tube 504, the partition plate is used to isolate the gas ejected from the second impact head 505 in the impact box 502. When the second impact head 505 does not extend from the impact box 502, the gas ejected therefrom will be intercepted by the partition plate to prevent gas leakage and cause the first telescopic tube 503 and the second telescopic tube 504 to be unable to extend and retract normally.

[0049] like Figure 1 、 Figure 6-Figure 7 As shown, the lifting assembly 6 includes a lifting block 604, the impact box 502 is arranged on both sides of the lifting block 604, the lifting rod 207 is provided with a second threaded rod 602 and a limit rod 603, the lifting block 604 is sleeved on the second threaded rod 602 and the limit rod 603, the second threaded rod 602 is provided with a lifting motor 601, and the output shaft of the lifting motor 601 is connected to the second threaded rod 602.

[0050] It should be noted that the rotation of the lifting motor 601 drives the second threaded rod 602 to rotate, and the lifting block 604 on the second threaded rod 602 is limited by the limit rod 603, and then lifts and lowers back and forth, at this time driving the entire impact box 502 to lift and lower. The lengths of the first branch pipe 302 and the second branch pipe 303 are both long enough. In the process of lifting and lowering the impact box 502, it is ensured that the air absorbed by the fan 301 is transported to the first diversion plate 401 and the second diversion plate 501, and as the height of the impact box 502 changes, the height adjustment effect of the airflow impact is achieved, which is convenient for airflow impact on clothes of different lengths.

[0051] like Figure 10 As shown, a power receiving slot 507 is opened in the impact box 502 , and power receiving blocks in contact with the power receiving slot 507 are provided on the first telescopic tube 503 and the second telescopic tube 504 .

[0052] It should be noted that when the first telescopic tube 503 and the second telescopic tube 504 move, the power receiving block can transmit electrical energy to the first telescopic tube 503 and the second telescopic tube 504 under the action of the power receiving slot 507, thereby powering the second impact head 505 and the second camera 506, thereby ensuring the normal operation of the second impact head 505 and the second camera 506.

[0053] It should be noted that when the first drive motor 108 rotates, it will drive the first threaded rod 109 to rotate, and make the first block 103 sleeved on the first threaded rod 109 rise or fall. During the traction process of the main box 101, the power clamp 110 contacts the traction line and supplies power to the main box 101. The electric push rod 201 can drive the lifting rod 207 to rise and fall. The infrared distance sensor can obtain the distance between adjacent main boxes 101. When the fan 301 is started, it will suck in air and transport it to the first diverter plate 40 through the first branch pipe 302 and the second branch pipe 303 respectively. 1 and the second diverter plate 501. At this time, the air entering the first diverter plate 401 will enter the multiple first impact heads 402 respectively, and the air entering the second diverter plate 501 will enter the first telescopic tube 503 and the second telescopic tube 504 respectively, and then be ejected through the first impact head 402 and the second impact head 505 respectively. The first camera 403 and the second camera 506 will respectively obtain the clothing wrinkle status at the corresponding positions of the first impact head 402 and the second impact head 505. When the clothing wrinkle status is high, the first impact head 402 and the second impact head are enhanced. The temperature of the heating wire in 505 is lowered when the wrinkles of the clothes are low, and the temperature of the heating wire in the first impact head 402 and the second impact head 505 is lowered. The second impact head 505 is a regulating control valve tube, and the diameter of its air outlet is adjustable. When the air volume of the second impact head 505 is adjusted to a small amount, the gas entering the impact box 502 through the second diverter plate 501 will cause the first telescopic tube 503 and the second telescopic tube 504 to be squeezed out from the impact box 502. As the first telescopic tube 503 and the second telescopic tube 504 are squeezed out, more of the second impact head 505 will be exposed, and the second camera The head 506 obtains the wrinkle state of the clothing at the corresponding position of the second impact head 505 and adjusts the temperature of the heating wire of the second impact head 505. As the inner diameter of the second impact head 505 is increased, under the action of the reset spring 509, the first telescopic tube 503 and the second telescopic tube 504 will shrink into the impact box 502. During the expansion and contraction of the first telescopic tube 503 and the second telescopic tube 504, the partition plate is used to isolate the gas ejected from the second impact head 505 in the impact box 502. The rotation of the lifting motor 601 drives the second threaded rod 602 to rotate, which can drive the entire impact box 502 to rise and fall.

[0054] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is limited by the accompanying embodiments and their equivalents.

Claims

1. An intelligent hanging and conveying device for garment production, comprising a traction component (1) and a support component (2), characterized in that: The support assembly (2) is provided with an impact assembly (3), the impact assembly (3) is composed of a first impact module (4) and a second impact module (5), and the support assembly (2) is provided with a lifting assembly (6) for adjusting the height of the impact assembly (3); The impact assembly (3) includes a fan (301), the fan (301) is provided with a first branch pipe (302) and a second branch pipe (303), the second impact module (5) includes at least two impact boxes (502), the first impact module (4) includes at least two first diverter plates (401), the first branch pipes (302) are respectively connected to the first diverter plates (401), the impact box (502) is provided with a plurality of first impact heads (402) in communication with the first diverter plates (401), and the impact box (502) is provided with a plurality of first cameras (403) corresponding to the first impact heads (402); The impact box (502) is provided with a plurality of second diverter plates (501), the second branch pipe (303) is connected to the second diverter plates (501), the impact box (502) is provided with a first telescopic tube (503) and a second telescopic tube (504), the first telescopic tube (503) and the second telescopic tube (504) are both provided with a second impact head (505) and a second camera (506), the first impact head (402) and the second impact head (505) are both provided with heating wires, and the first impact head (402) and the second impact head (505) are regulating control valve tubes; The fan (301) transports air to the first diverter plate (401) and the second diverter plate (501) through the first branch pipe (302) and the second branch pipe (303), and ejects the air through the first impact head (402) and the second impact head (505). The first camera (403) and the second camera (506) acquire the wrinkle state of the clothing at the corresponding position and adjust the temperature of the heating wire in the first impact head (402) and the second impact head (505) at the corresponding position. The impact box (502) is provided with a plurality of movable grooves, each of which is provided with a cross bar (508). The first telescopic tube (503) and the second telescopic tube (504) are both provided with a limit block (510) sleeved on the outer wall of the cross bar (508). The limit block (510) is provided with a return spring (509) sleeved on the cross bar (508). After the airflow entering the second diverter plate (501) enters the impact box (502), since the second impact head (505) is a regulating control valve tube, as the inner diameter of the second impact head (505) is reduced, under the action of the airflow, the first telescopic tube (503) and the second telescopic tube (504) will be squeezed out of the impact box (502) respectively. The limit block (510) squeezes the return spring (509), thereby exposing more of the second impact head (505), and performing airflow impact on a larger area inside the clothing. The second camera (506) obtains the clothing wrinkle state at the corresponding position of the second impact head (505), and adjusts the temperature of the heating wire of the second impact head (505) so that the temperature of the gas blown out by the second impact head (505) is more adapted to the clothing state. As the inner diameter of the second impact head (505) is increased, under the action of the return spring (509), the first telescopic tube (503) and the second telescopic tube (504) will shrink into the impact box (502), and the first telescopic tube (503) and the second telescopic tube (504) are adjusted back and forth.

2. The intelligent hanging and conveying device for garment production according to claim 1, characterized in that: The traction assembly (1) comprises a main box (101), a first clamping block (103) and a second clamping block (105) are provided on the main box (101), a first roller (104) and a second roller (106) are provided on the first clamping block (103) and the second clamping block (105), respectively, a traction line is provided between the first roller (104) and the second roller (106), a traction motor (107) is provided on the second clamping block (105), and the traction motor (107) is connected to the second roller (106). A first drive motor (108) is provided on (101), a first threaded rod (109) is provided at one end of the output shaft of the first drive motor (108), and a first clamping block (103) is provided on the first threaded rod (109). The first drive motor (108) rotates to drive the first clamping block (103) to move up and down, so that the first roller (104) and the second roller (106) clamp the traction line, and the traction motor (107) drives the second roller (106) to rotate, so that the main box (101) moves along the traction line.

3. The intelligent hanging and conveying device for garment production according to claim 2, characterized in that: The main box (101) is provided with a power receiving clamp (110), which is a semi-arc structure. The power receiving clamp (110) contacts the traction line, which is a current-carrying line. The first roller (104) and the second roller (106) are both made of rubber. During the traction process of the main box (101), the power receiving clamp (110) supplies power to the main box (101), and the first roller (104) and the second roller (106) made of rubber will not be affected by the traction line with the current.

4. The intelligent hanging and conveying device for garment production according to claim 2, characterized in that: The support assembly (2) comprises a bottom plate (203), the bottom plate (203) being fixed on the main box (101), an electric push rod (201) being provided on the main box (101), a lifting plate (202) being provided at one end of the piston rod of the electric push rod (201), at least two lifting rods (207) being provided on the lifting plate (202), a baffle (204) being provided on the bottom plate (203), a first swinging rod (205) and a second swinging rod (206) being rotatably connected between the baffles (204), and the lifting rods (207) being respectively connected to the first swinging rod (205) and the second swinging rod (206). ) are engaged, a third camera is provided on the bottom plate (203), the electric push rod (201) drives the lifting rod (207) to move up and down, when the lifting rod (207) descends, the first swing rod (205) and the second swing rod (206) engaged with the lifting rod (207) expand outwards, when the lifting rod (207) rises, the first swing rod (205) and the second swing rod (206) contract inwards, the wrinkle state of the shoulder position of the clothing is obtained through the third camera, and the expansion amplitude of the first swing rod (205) and the second swing rod (206) is adjusted to support the clothing according to the state of the clothing.

5. The intelligent hanging and conveying device for garment production according to claim 2, characterized in that: The main box (101) is provided with a control panel (102) and an infrared distance sensor, the infrared distance sensor being electrically connected to the traction motor (107), and the infrared distance sensor acquiring the distance between the main boxes (101) and setting a distance interval value. When the distance between the main boxes (101) is greater than the distance interval value, the rotation speed of the traction motor (107) is accelerated to increase the traction speed. When the distance between the main boxes (101) is less than the distance interval value, the rotation speed of the traction motor (107) is reduced to reduce the traction speed.

6. The intelligent hanging and conveying device for garment production according to claim 1, characterized in that: The first telescopic tube (503) and the second telescopic tube (504) are both provided with a partition piece, the partition piece being made of rubber and being in sealed contact with the impact box (502). During the process of the first telescopic tube (503) and the second telescopic tube (504) being extended or retracted, the partition piece is used to isolate the gas ejected from the second impact head (505) in the impact box (502), thereby preventing the gas from leaking out and causing the first telescopic tube (503) and the second telescopic tube (504) to be unable to extend or retract normally.

7. The intelligent hanging and conveying device for garment production according to claim 4, characterized in that: The lifting assembly (6) includes a lifting block (604), an impact box (502) is arranged on both sides of the lifting block (604), a second threaded rod (602) and a limit rod (603) are arranged on the lifting rod (207), the lifting block (604) is sleeved on the second threaded rod (602) and the limit rod (603), a lifting motor (601) is arranged on the second threaded rod (602), an output shaft of the lifting motor (601) is connected to the second threaded rod (602), the lifting motor (601) rotates to drive the second threaded rod (602) to rotate, and the lifting block (604) on the second threaded rod (602) is limited by the limit rod (603), and then reciprocates and rises and falls to adjust the height of the airflow impact.

8. An intelligent hanging and conveying device for garment production according to any one of claims 1 to 7, characterized in that: The impact box (502) is provided with a power receiving slot (507), and the first telescopic tube (503) and the second telescopic tube (504) are both provided with power receiving blocks in contact with the power receiving slot (507). When the first telescopic tube (503) and the second telescopic tube (504) move, the power receiving blocks, under the action of the power receiving slot (507), supply power to the second impact head (505) and the second camera (506).

Citation Information

Patent Citations

  • Intelligent hanging conveying device for garment production

    CN119160584A