A clothing production workstation

By designing a clothing production workstation with parallel pipe bent tracks and cylinder control systems, the problems of cumbersome seam operation and low efficiency are solved, automatic transmission and intelligent pairing of clothes hangers are realized, and work efficiency and stability are improved.

CN111358100BActive Publication Date: 2025-08-22GUANGZHOU HAOHAN INTELLIGENT TECH CO LTD
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Patent Information

Application Number
CN202010356597.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2020-04-29
Publication Date
2025-08-22
Estimated Expiration
2040-04-29

AI Technical Summary

Technical Problem

The existing clothing production work stations are cumbersome and inefficient during the sewing process, and are time-consuming and labor-intensive when pairing clothes hangers manually, which are prone to matching errors and lead to rework.

Method used

A clothing production workstation is designed, using parallel pipe bending tracks and cylinder control systems to realize automatic transmission and matching of clothes hangers, including components such as feeding arms, discharge arms, lifting arms and brackets, ensuring smooth transmission and joint operation of clothes hangers on the track.

Benefits of technology

It reduces the time and cost of manually obtaining clothes hangers, improves the work efficiency of seam workers, realizes intelligent control of seam stations, avoids hanger matching errors, and improves production stability and user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a clothing production workstation, which is arranged on a fixed frame of a clothing production line and includes: a curved pipe track, which is divided into a first parallel curved pipe and a second curved pipe. The curved pipe track includes a first descending section, a second descending section, and an ascending section from the head end to the tail end, and is fixedly arranged on the fixed frame and connected to the main track of the fixed frame, and is used to transport hangers for clothing production; a feeding arm, which is arranged at the head end of the curved pipe track and is used to connect the main track to the head end of the curved pipe track; and a discharging arm, which is arranged at the tail end of the curved pipe track and is used to connect the tail end of the curved pipe track to the main track. The present invention enables two hangers that need to undergo a seaming process to be transported separately on the two curved pipe tracks, and a seamstress can obtain two hangers that need to undergo a seaming process from the seaming station at the same time, reducing the time and cost of manually obtaining hangers, improving work efficiency, realizing intelligent control of the seaming station, and improving user experience.
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Description

Technical Field

[0001] The present invention relates to the technical field of clothing production, in particular to a clothing production workstation. Background Art

[0002] The clothing hanging system is used in clothing and home textile manufacturing enterprises. It includes a ring track with several workstations spaced apart along the track. There is a workstation under each workstation. The garment pieces hanging on the hanger are controlled by the system and transported to the designated workstation for processing through the ring track. After processing, they enter the ring track from the workstation and are sent to the next workstation for processing in the next step.

[0003] Existing smart clothing production workstations come in various forms. However, in the stitching process where two hangers need to be combined into one product, there are the following problems:

[0004] (1) After obtaining a hanger, the patchwork worker needs to obtain another hanger, which takes a long time and is laborious and time-consuming;

[0005] (2) After the stitching is completed, an empty hanger will be left, and the stitching worker needs to store the empty hanger again, resulting in low work efficiency.

[0006] (3) During the stitching process, stitchers may make mistakes in their operations, resulting in mismatched clothes on hangers, causing the clothes to be asymmetrical in size or color, which in turn causes rework and leads to low work efficiency.

[0007] In view of this, it is urgent to improve the existing workstation structure to facilitate operation and improve the efficiency of seaming work. Summary of the Invention

[0008] The technical problem to be solved by the present invention is that the existing clothing production workstations have cumbersome operations and low sewing efficiency during sewing. The matching work will be implemented by the mechanism and system, thus breaking through the industry problem of manual matching.

[0009] In order to solve the above technical problems, the technical solution adopted by the present invention is to provide a clothing production workstation, which is arranged on a fixed frame of a clothing production line, comprising:

[0010] The curved pipe track is divided into a first curved pipe and a second curved pipe in parallel. The curved pipe track includes a first descending section, a second descending section and an ascending section from the head end to the tail end. The curved pipe track is fixedly arranged on the fixed frame and connected to the main track of the fixed frame for transporting hangers for clothing production;

[0011] a feed arm, provided at the head end of the curved pipe track, for connecting the main track to the head end of the curved pipe track;

[0012] A discharge arm is provided at the end of the curved pipe track and is used to connect the end of the curved pipe track to the main track.

[0013] In the above technical solution, the first descending section and the second descending section are both tilted downward, the ascending section is tilted upward, the first descending section and the second descending section are connected by a turning pipe, and the second descending section and the ascending section are connected by a turning pipe.

[0014] In the above technical solution, the feeding arm includes:

[0015] A movable joint, the first end of which is connected to the main track, a groove for matching the main track is provided below the first end, and the tail end is movably connected to a sleeve, and the sleeve is connected to the curved track;

[0016] The first cylinder has a fixed end fixedly disposed at the lower portion of the sleeve, a piston of the first cylinder being perpendicular to the movable joint and slidably disposed in a slide groove at the lower portion of the end of the movable joint, and is configured as follows:

[0017] The piston extends, and the movable joint moves away from the curved pipe track;

[0018] The piston contracts and the movable joint approaches the curved pipe track.

[0019] In the above technical solution, the discharging arm includes:

[0020] The rotary joint has a head end connected to the main track, a groove matching the main track is provided below the head end, and a tail end connected to a sleeve through a rotating mechanism, and the sleeve is connected to the curved pipe track.

[0021] In the above technical solution, the production workstation is further provided with a lifting arm for lifting the hanger in the ascending section, and the lifting arm includes:

[0022] A motor is fixedly mounted on the curved pipe track and drives the driven wheel to rotate via a chain, wherein a plurality of hooks are evenly spaced on the chain;

[0023] The housing wraps the motor, the chain and the driven wheel and is fixedly arranged on the curved pipe track.

[0024] In the above technical solution, the production workstation is further provided with a lowering bracket, which is fixedly arranged on the fixed frame and located in the second sliding section, and is used to control the sliding and stopping of the hanger. The lowering bracket includes:

[0025] The second cylinder is fixedly arranged on the U-shaped channel steel, and the movable end thereof is connected to the first blade of the three-blade clamping block, and the length of the second blade of the three-blade clamping block is greater than the length of the third blade.

[0026] In the above technical solution, the production workstation is further provided with a discharge bracket, which is fixedly mounted on the fixed frame and located at the front end of the discharge arm, and is used to control the discharge and stop of the hanger. A third descending section is provided between the discharge bracket and the ascending section, and the discharge bracket includes:

[0027] The third cylinder is fixedly arranged on the U-shaped channel steel, and its movable end is connected to the first blade of the three-blade clamping block, and the length of the second blade of the three-blade clamping block is greater than the length of the third blade.

[0028] In the above technical solution, the production workstation is further provided with a feed bracket, which is an L-shaped steel plate, one side of which is fixedly connected to the fixing frame, and the other side is arranged below the curved pipe track.

[0029] In the above technical solution, the second cylinder is configured as follows:

[0030] The lowering bracket lowers the hanger in three steps: in step 1, the second cylinder piston contracts and the hanger pulley is blocked in front of the second blade; in step 2, the second cylinder piston extends and the hanger pulley enters between the second blade and the third blade; in step 3, the second cylinder contracts and the hanger is lowered.

[0031] In the above technical solution, the third cylinder is configured as follows:

[0032] The movable end of the third cylinder extends, and the lowering bracket controls the hanger to stop;

[0033] The movable end of the third cylinder contracts, and the lowering bracket controls the discharge of the hanger.

[0034] Compared with the prior art, the present invention provides a garment production workstation, which is arranged on a fixed frame of a garment production line, and comprises: a curved pipe track, which is divided into a first curved pipe and a second curved pipe in parallel, wherein the curved pipe track comprises a first descending section, a second descending section and an ascending section from the head end to the tail end, and is fixedly arranged on the fixed frame and connected to the main track of the fixed frame for transporting hangers for garment production; a feeding arm, which is arranged at the head end of the curved pipe track and is used to connect the main track to the

[0035] The head end of the curved pipe track; the discharging arm is arranged at the end of the curved pipe track, and is used to connect the end of the curved pipe track to the main track, so that two hangers that need to be seamed can be transported on the two curved pipe tracks respectively, and the seamstress can obtain two hangers that need to be seamed from the seamstressing station at the same time, reducing the time and cost of manual acquisition of hangers, improving work efficiency, realizing intelligent control of the seamstressing station, and improving user experience. BRIEF DESCRIPTION OF THE DRAWINGS

[0036] Figure 1 A three-dimensional diagram of a garment production workstation according to the present invention;

[0037] Figure 2 A perspective view of a feed arm of a garment production workstation according to the present invention;

[0038] Figure 3 A perspective view of a discharging arm of a garment production workstation according to the present invention;

[0039] Figure 4 A perspective view of a lowering bracket of a garment production workstation according to the present invention;

[0040] Figure 5 A perspective view of an L-shaped steel plate of a garment production workstation according to the present invention;

[0041] Figure 6 A perspective view of a movable joint of a garment production workstation according to the present invention;

[0042] Figure 7 A perspective view of a first cylinder of a garment production workstation according to the present invention;

[0043] Figure 8 A perspective view of the connecting pipes of the garment production workstation of the present invention;

[0044] Figure 9 A three-dimensional diagram of the U-shaped channel steel of the garment production workstation of the present invention;

[0045] Figure 10 A perspective view of a lifting arm of a garment production workstation according to the present invention;

[0046] Figure 11 This is a schematic diagram of the internal structure of the lifting arm of the clothing production workstation in the present invention.

[0047] in, Figures 1 to 11 The corresponding relationship between the reference numerals and component names is as follows:

[0048] 100 curved pipe track, 101 first curved pipe, 102 second curved pipe, 200 feed arm, 300 discharge arm, 103 turning pipe, 201 movable joint, 202 first cylinder, 203 connecting pipe, 301 rotating joint, 400 lifting arm, 401 motor, 402 chain, 403 driven wheel, 404 housing, 405 hook, 500 lowering bracket, 501 second cylinder, 502 U-shaped channel steel, 600 discharge bracket, 700 feed bracket, 701 L-shaped steel plate. DETAILED DESCRIPTION

[0049] The present invention provides a garment production workstation that can realize convenient operation and improve the work efficiency of seamstresses. The present invention is described in detail below with reference to the accompanying drawings and specific embodiments.

[0050] like Figures 1 to 11 As shown, the clothing production workstation provided by the present invention is arranged on a fixed frame of a clothing production line, and includes:

[0051] The curved pipe track 100 is divided into a first parallel curved pipe 101 and a second parallel curved pipe 102. The curved pipe track 100 includes a first descending section, a second descending section, and an ascending section from the head end to the tail end. The curved pipe track 100 is fixed to a fixed frame and connected to the main track of the fixed frame for transporting hangers for clothing production.

[0052] The feed arm 200 is provided at the head end of the curved pipe track 100 and is used to connect the main track to the head end of the curved pipe track 100;

[0053] The discharge arm 300 is provided at the end of the curved pipe track 100 and is used to connect the end of the curved pipe track 100 to the main track.

[0054] In this embodiment, by setting up two parallel curved pipe tracks 100, two hangers that need to be seamed can be transported on the two curved pipe tracks 100 respectively, and the seamstress workers can obtain two hangers that need to be seamed from the seamstressing station at the same time, reducing the time and cost of manual acquisition of hangers, improving work efficiency, realizing intelligent control of the seamstressing station, and improving user experience.

[0055] Specifically, two hangers that need to be spliced ​​are conveyed on the first bend 101 and the second bend 102 respectively. After the hangers enter the feed arm 200 from the main track, they arrive at the first descending section. Under the action of gravity, they slide from the first descending section to the second descending section. Also under the action of gravity, they are conveyed from the second descending section to the ascending section. In the ascending section, the hangers are driven by the ascending arm to rise to the discharging arm 300, and then the discharging arm 300 transports the hangers back to the main track. The splicing worker removes the two hangers from the second descending section. After the splicing is completed, the hangers with clothes are conveyed back to the main track by the first bend 101, and the empty hangers are conveyed back to the main track by the second bend 102.

[0056] In one embodiment of the present invention, preferably, the first sliding section and the second sliding section are both arranged to be tilted downward, and the ascending section is arranged to be tilted upward, the first sliding section and the second sliding section are connected by a turning pipe 103, and the second sliding section and the ascending section are connected by a turning pipe 103.

[0057] In this embodiment, by tilting the first and second sliding sections downward, the clothes hanger can slide down smoothly in the first and second sliding sections under the action of gravity without the need for other power devices. The structure is simple, the operation is convenient, and it is beneficial to saving energy and reducing production costs.

[0058] The first descending section and the second descending section are connected by a turning tube 103, and the second descending section and the ascending section are connected by a turning tube 103, thereby achieving a smooth transition between adjacent conveying parts, reducing obstruction of hangers during the conveying process, avoiding the problem of hangers getting stuck during the conveying process, and improving the stability and reliability of the clothing production workstation.

[0059] In one embodiment of the present invention, preferably, the feed arm 200 includes:

[0060] The movable joint 201 has a front end connected to the main track, a groove matching the main track is provided below the front end, and a rear end movably connected to the sleeve, which is connected to the curved track 100;

[0061] The first cylinder 202 has a fixed end fixedly disposed at the lower portion of the sleeve. The piston of the first cylinder 202 is perpendicular to the movable joint 201 and is slidably disposed in a slide groove at the lower end of the movable joint 201. The configuration is as follows:

[0062] The piston extends, and the movable joint 201 moves away from the curved pipe track 100;

[0063] The piston contracts, and the movable joint 201 moves closer to the curved pipe track 100 .

[0064] In this embodiment, the movable joint 201 is connected to and separated from the main track under the control of the first cylinder 202. The structure is simple and easy to install and operate. The first cylinder 202 is parallel to the sleeve and fixed on the sleeve. The piston thereon is slidably set in the slide groove at the lower part of the end of the movable joint 201. The depth of the slide groove gradually decreases. When the piston extends, the movable joint 201 moves away from the curved pipe track 100; when the piston retracts, the movable joint 201 moves closer to the curved pipe track 100.

[0065] Among them, the movable joint 201 is connected to the main track at its head end, and a groove that matches the main track is provided below the head end, so that the movable joint 201 and the main track have a smooth transition, further reducing the obstruction of the hanger during the transmission process and avoiding the problem of the hanger getting stuck during the transmission process.

[0066] The movable joint 201 is connected to the curved pipe track 100 via a connecting pipe 203 .

[0067] In one embodiment of the present invention, preferably, the discharge arm 300 includes:

[0068] The rotary joint 301 has a head end connected to the main track, a groove matching the main track is provided below the head end, and a tail end is connected to the sleeve through a rotating mechanism, and the sleeve is connected to the curved track 100.

[0069] In this embodiment, the principle is the same as that of the movable joint 201 of the feed arm 200. A groove that matches the main track is provided under the head end of the rotary joint 301, which can make a smooth transition between the discharge arm 300 and the main track. When the clothes hanger enters the sleeve, it continues to move under the action of gravity. After the clothes hanger passes through the rotating mechanism to the rotary joint 301, the gravity of the clothes hanger causes the rotary joint 301 to rotate until it contacts the main track, so that the clothes hanger can smoothly return to the main track from the curved tube track 100.

[0070] It is worth noting that the outer diameter of the sleeve of the discharge arm 300 is not greater than the outer diameter of the curved pipe track 100 , and the outer diameter of the sleeve of the feed arm 200 is not less than the outer diameter of the curved pipe track 100 .

[0071] like Figure 10 and Figure 11 As shown, in one embodiment of the present invention, preferably, the production workstation is further provided with a lifting arm 400 for lifting the hanger in the ascending section, and the lifting arm 400 includes:

[0072] The motor 401 is fixedly mounted on the curved track 100 and drives the driven wheel 403 to rotate via the chain 402. The chain 402 is evenly spaced with a plurality of hooks 405.

[0073] The housing 404 encloses the motor 401 , the chain 402 and the driven wheel 403 and is fixedly mounted on the curved pipe track 100 .

[0074] In this embodiment, after the hangers are transferred from the second descending section to the ascending section, an additional power device needs to be provided to control the hangers to move upward to a plane not lower than the main track. The motor 401 is fixedly provided on the curved track 100 and drives the driven wheel 403 to rotate through the chain 402. A plurality of hooks 405 are evenly spaced on the chain 402, so that the lifting arm 400 can lift multiple hangers at the same time, thereby improving the transmission efficiency and thus improving the production efficiency, which is conducive to realizing the intelligent transportation of hangers during the stitching process.

[0075] Among them, the motor 401, chain 402 and driven wheel 403 are wrapped with a shell 404 on the outside, which is beneficial to reduce the pollution of dust in the air to the motor 401 and chain 402, and can prevent the lubricating oil on the motor 401, chain 402 and driven wheel 403 from wetting the hangers and clothes. At the same time, it also avoids the harm of the motor 401 to the seamstresses, and improves the safety and stability of the clothing production workstation.

[0076] like Figure 1 and Figure 9 As shown, in one embodiment of the present invention, preferably, the production workstation is further provided with a lowering bracket 500, which is fixedly arranged on the fixed frame and located in the second downward sliding section, and is used to control the downward sliding or stopping of the hanger. The lowering bracket 500 includes:

[0077] The second cylinder 501 is fixedly mounted on the U-shaped channel steel 502 , and its movable end is connected to the first blade of the three-blade clamp. The length of the second blade of the three-blade clamp is greater than that of the third blade.

[0078] In this embodiment, the second cylinder 501 is secured to the fixed frame via a U-shaped channel steel 502, which improves the stability and reliability of the garment production workstation. When the movable end of the second cylinder 501 retracts, the second blade of the three-leaf clamp is pressed down, preventing the hanger from sliding downward. When the movable end of the second cylinder 501 extends, the second blade of the three-leaf clamp is lifted, and the hanger pulley enters between the second and third blades. When the movable end of the second cylinder 501 retracts again, the lowering bracket 500 completes the hanger lowering action and returns to the state of blocking the next hanger.

[0079] In one embodiment of the present invention, preferably, the production workstation is further provided with a discharge bracket 600, which is fixedly mounted on the fixed frame and located at the front end of the discharge arm 300, and is used to control the discharge or stop of the hanger. A third descending section is provided between the discharge bracket 600 and the ascending section. The discharge bracket 600 includes:

[0080] The third cylinder is fixedly arranged on the U-shaped channel steel, and its movable end is connected to the first blade of the three-blade clamping block. The length of the second blade of the three-blade clamping block is greater than that of the third blade.

[0081] In this embodiment, a third descending section is provided between the discharge bracket 600 and the ascending section, so that the hanger has kinetic energy before entering the discharge arm 300, which is conducive to the hanger returning to the main track quickly, and the third cylinder is fixed to the fixed frame by a U-shaped channel steel, which is conducive to improving the stability and reliability of the clothing production workstation. When the movable end of the third cylinder is extended, the third leaf of the three-leaf block is pressed to clamp the hanger, and the discharge bracket 600 controls the hanger to stop; when the movable end of the third cylinder is retracted, the third leaf of the three-leaf block is lifted to release the hanger, and the discharge bracket 600 controls the hanger to slide down.

[0082] like Figure 2 As shown, in one embodiment of the present invention, preferably, the production workstation is also provided with a feed bracket 700, which is an L-shaped steel plate 701, one side of which is fixedly connected to the fixing frame, and the other side is arranged below the curved pipe track 100.

[0083] In this embodiment, by arranging a feed bracket 700 under the curved pipe track 100, a support platform can be provided for the curved pipe track 100, thereby avoiding the problem of bending or breaking of the curved pipe track 100 caused by too many hangers, which is beneficial to improving the stability and reliability of the clothing production workstation.

[0084] In one embodiment of the present invention, preferably, the second cylinder 501 is configured as follows:

[0085] The movable end of the second cylinder 501 extends and then retracts, lowering the bracket 500 to control the hanger to slide downward;

[0086] The movable end of the second cylinder 501 contracts, and the bracket 500 is lowered to control the hanger to stop.

[0087] In one embodiment of the present invention, preferably, the third cylinder is configured as follows:

[0088] The movable end of the third cylinder extends, and the discharging bracket 600 controls the hanger to stop;

[0089] The movable end of the third cylinder contracts, and the discharging bracket 600 controls the discharging of the hanger.

[0090] The core of this invention not only provides a solution for pairing through a mechanism, but also offers preventative or remedial measures for various potential anomalies. This includes automatically alerting the system if a hanger is not properly matched, preventing worker errors that could disrupt normal production. Furthermore, if a hanger's waiting time for its matching hanger exceeds a set time, the system will alert the administrator and locate the matching hanger. A clothing production workstation of the present invention is arranged on a fixed frame of a clothing production line, comprising: a curved pipe track, which is divided into a first parallel curved pipe and a second curved pipe, the curved pipe track comprising a first descending section, a second descending section and an ascending section from the head end to the tail end, fixedly arranged on the fixed frame, connected to the main track of the fixed frame, and used for transporting hangers for clothing production; a feeding arm, which is arranged at the head end of the curved pipe track, and is used for connecting the main track to the head end of the curved pipe track; a discharging arm, which is arranged at the tail end of the curved pipe track, and is used for connecting the tail end of the curved pipe track to the main track, so that two hangers that need to undergo seaming process operations can be respectively conveyed on the two curved pipe tracks, and a seaming worker can obtain two hangers that need to undergo seaming operations from the seaming station at the same time, reducing the time and cost of manually obtaining hangers, improving work efficiency, realizing intelligent control of the seaming station, and improving user experience.

[0091] In the present invention, the terms "first," "second," and "third" are used for descriptive purposes only and should not be construed as indicating or implying relative importance. The term "plurality" refers to two or more, unless expressly limited otherwise. Terms such as "installed," "connected," "connected," and "fixed" should be interpreted broadly. For example, "connected" can mean a fixed connection, a detachable connection, or an integral connection; "connected" can mean a direct connection or an indirect connection through an intermediary. Those skilled in the art will understand the specific meanings of these terms in the present invention based on specific circumstances.

[0092] The present invention is not limited to the above-mentioned optimal implementation mode. Anyone should be aware that any structural changes made under the inspiration of the present invention, and any technical solutions that are the same or similar to the present invention, fall within the scope of protection of the present invention.

Claims

1. A garment production workstation, arranged on a fixed frame of a garment production line, characterized in that: include: The curved pipe track is divided into a first curved pipe and a second curved pipe in parallel. The curved pipe track includes a first descending section, a second descending section and an ascending section from the head end to the tail end. The curved pipe track is fixedly arranged on the fixed frame and connected to the main track of the fixed frame for transporting hangers for clothing production; a feed arm, provided at the head end of the curved pipe track, for connecting the main track to the head end of the curved pipe track; a discharging arm, provided at the end of the curved pipe track, for connecting the end of the curved pipe track to the main track; The feed arm comprises: A movable joint, the first end of which is connected to the main track, a groove for matching the main track is provided below the first end, and the tail end is movably connected to a sleeve, and the sleeve is connected to the curved track; The first cylinder has a fixed end fixedly disposed at the lower portion of the sleeve, a piston of the first cylinder being perpendicular to the movable joint and slidably disposed in a slide groove at the lower portion of the end of the movable joint, and is configured as follows: The piston extends, and the movable joint moves away from the curved pipe track; The piston contracts, and the movable joint approaches the curved pipe track; The movable joint is connected to and separated from the main track under the control of the first cylinder. The first cylinder is parallel to the casing and fixed on the casing. The depth of the chute gradually decreases. The production workstation is further provided with a lowering bracket, which is fixedly arranged on the fixed frame and located in the second sliding section, and is used to control the downward movement or stop of the hanger. The lowering bracket includes: The second cylinder is fixedly mounted on the U-shaped channel steel, and its movable end is connected to the first blade of the three-blade clamping block, wherein the length of the second blade of the three-blade clamping block is greater than the length of the third blade; When the movable end of the second cylinder contracts, the second leaf of the three-leaf block is pressed down to prevent the hanger from sliding down; when the movable end of the second cylinder extends, the second leaf of the three-leaf block is lifted, and the hanger pulley enters between the second leaf and the third leaf; when the movable end of the second cylinder contracts again, the bracket box is lowered to complete the lowering action of the hanger, and the state of blocking the next hanger is returned to the state.

2. A garment production workstation according to claim 1, characterized in that: The first descending section and the second descending section are both tilted downward, the ascending section is tilted upward, the first descending section and the second descending section are connected via a turning pipe, and the second descending section and the ascending section are connected via a turning pipe.

3. A garment production workstation according to claim 1, characterized in that: The discharging arm comprises: The rotary joint has a head end connected to the main track, a groove matching the main track is provided below the head end, and a tail end connected to a sleeve through a rotating mechanism, and the sleeve is connected to the curved pipe track.

4. A garment production workstation according to claim 1, characterized in that: The production workstation is further provided with a lifting arm for lifting the hanger in the ascending section, the lifting arm comprising: A motor is fixedly mounted on the curved pipe track and drives the driven wheel to rotate via a chain, wherein a plurality of hooks are evenly spaced on the chain; The housing wraps the motor, the chain and the driven wheel and is fixedly arranged on the curved pipe track.

5. A garment production workstation according to claim 1, characterized in that: The production workstation is also provided with a discharge bracket, which is fixedly arranged on the fixed frame and located at the front end of the discharge arm, and is used to control the discharge or stop of the hanger. A third descending section is provided between the discharge bracket and the ascending section. The discharge bracket includes: The third cylinder is fixedly arranged on the U-shaped channel steel, and its movable end is connected to the first blade of the three-blade clamping block, and the length of the second blade of the three-blade clamping block is greater than the length of the third blade.

6. A garment production workstation according to claim 1, characterized in that: The production workstation is also provided with a feed bracket, which is an L-shaped steel plate, one side of which is fixedly connected to the fixing frame, and the other side is arranged below the curved pipe track.

7. A garment production workstation according to claim 1, characterized in that: The second cylinder is configured as follows: The lowering bracket lowers the hanger in three steps: in step 1, the second cylinder piston contracts and the hanger pulley is blocked in front of the second blade; in step 2, the second cylinder piston extends and the hanger pulley enters between the second blade and the third blade; in step 3, the second cylinder contracts and the hanger is lowered.

8. The garment production workstation according to claim 5, characterized in that: The third cylinder is configured as follows: The movable end of the third cylinder extends, and the lowering bracket controls the hanger to stop; The movable end of the third cylinder contracts, and the lowering bracket controls the discharge of the hanger.

Citation Information

Patent Citations

  • Conveying system workstation

    CN207917869U

  • Overload station of clothing hanging system

    CN209427637U

  • Garment production workstation

    CN213074606U