A hanging type conveying device for garment manufacturing

By designing a double airflow barrier and an adjustable support structure in the suspended conveyor system used in garment manufacturing, the problem of lint adhesion is solved, ensuring the cleanliness of the garment surface and improving production efficiency and quality.

CN122322191APending Publication Date: 2026-07-03SHANDONG XIANXIA CLOTHING CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
SHANDONG XIANXIA CLOTHING CO LTD
Filing Date
2026-04-03
Publication Date
2026-07-03

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Abstract

This invention provides a suspended conveying device for garment manufacturing, relating to the field of garment conveying technology. It includes: a guide rail with a guide trolley slidably mounted on its outer side; a first air jet pipe and a second air jet pipe respectively mounted on the bottom of a fixed mounting plate, wherein both air jet pipes have air jet grooves at their bottoms; a drive cylinder mounted on the side of a fixed support, with a positioning support plate mounted on the output end of the bottom of the drive cylinder; and an air jet hood mounted on the bottom of the positioning support plate, with air jet grooves on its side. A lightweight air pump assembly generates airflow, which is then diverted through a conveying pipe to air jet pipes one and two, exiting from the bottom air jet grooves. Simultaneously, a portion of the airflow enters the air jet hood through an airflow extension pipe and exits from the side air jet grooves of the air jet hood, forming an airflow barrier on the bottom and sides of the garment. This significantly improves garment processing quality and solves the problem of lint adhering to the garment surface during transport between different processes.
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Description

Technical Field

[0001] This invention relates to the field of garment conveying technology, and more particularly to a suspended conveying device for garment manufacturing. Background Technology

[0002] Garment manufacturing is a light industry that processes textile fabrics into various garments through processes such as cutting, sewing, and ironing. The core processes include three major stages: fabric cutting, sewing, and ironing. During the garment manufacturing process, suspended conveyor systems are installed in the processing workshop to allow garments to move in an orderly manner between different processes, thereby improving the production efficiency of the garment manufacturing production line.

[0003] In the current technology, when garments are transported between processing workshops, lint often hangs in the air of garment manufacturing workshops. This lint acts as an invisible source of pollution. During the transport of garments between different processes, it is very easy for the lint to adhere to the surface of the garments. The attached lint affects the appearance of the product and increases the subsequent cleaning work as well as the labor and material costs. Summary of the Invention

[0004] In view of the shortcomings of the prior art, the present invention provides a suspended conveying device for garment manufacturing to solve the problems mentioned in the background art.

[0005] To solve the above-mentioned technical problems, the present invention is achieved through the following technical solution: This invention relates to a suspended conveying device for garment manufacturing, specifically comprising: a guide rail, wherein an anti-slip pad is provided on the inner bottom side of the guide rail, and a guide trolley is slidably mounted on the outer side of the guide rail; a fixed plate is mounted on the bottom of the guide trolley; drive cylinders are mounted on both sides of the fixed plate, and a positioning plate is mounted on the output end of the bottom of the drive cylinder; a rotating plate is rotatably mounted on the bottom of the positioning plate; a fixed bracket is mounted on the bottom of the rotating plate; multiple evenly distributed fixed mounting plates are mounted on the side of the rotating plate; air jet pipe one and air jet pipe two are respectively mounted on the bottom of the fixed mounting plate, wherein air jet pipe one and air jet pipe two are annular structures, and air jet grooves are opened on the bottom of air jet pipe one and air jet pipe two; a drive cylinder is mounted on the side of the fixed bracket, and a positioning support plate is mounted on the output end of the bottom of the drive cylinder; an air jet cover is mounted on the bottom of the positioning support plate, wherein air jet grooves are provided on the side of the air jet cover.

[0006] Furthermore, the upper inner side of the guide trolley is located on both sides of the guide rail, and a movable groove is provided at the top of the upper end of the guide trolley; a movable guide rod is slidably installed inside the movable groove.

[0007] Furthermore, the bottom of the movable guide rod is provided with a limiting protrusion, and the top of the movable guide rod is equipped with a guide plate; the guide plate has a circular structure and is slidably installed on both sides of the guide rail.

[0008] Furthermore, a spring is installed at the bottom of the guide plate, and the bottom of the guide plate is connected to the top of the upper end of the guide trolley via the spring; a drive assembly is installed on the inner side of the guide trolley.

[0009] Furthermore, guide drive wheels are driven and installed at both ends of the drive assembly; the guide drive wheels are located inside the guide trolley, and the side of the guide drive wheels is rotatably installed on the bottom inner side of the guide rail.

[0010] Furthermore, the fixed bracket has an L-shaped structure, and multiple evenly distributed support crossbars are installed on the inner side of the fixed bracket; the outer end of the support crossbars is provided with a storage groove.

[0011] Furthermore, the outer end of the storage slot has a rectangular structure, and a limiting slide plate is slidably installed inside the storage slot; the outer end of the limiting slide plate is provided with an anti-slip protrusion, and the inner side of the limiting slide plate is provided with a storage side groove; a connecting side plate is rotatably installed inside the storage side groove.

[0012] Furthermore, a limiting plate is installed on the side end of the connecting side plate; the limiting plate has a circular structure, and a spring is installed on the inner side of the limiting plate, which is slidably installed inside the storage groove by the spring.

[0013] Furthermore, a lightweight air pump assembly is installed on the top of the rotating plate; a delivery pipe is installed on the output end of the lightweight air pump assembly; two branch pipes are installed at the bottom of the delivery pipe; the bottoms of the two branch pipes are respectively connected to jet pipe one and jet pipe two.

[0014] Furthermore, an airflow telescopic tube is installed at the side end of the delivery pipe; the bottom of the airflow telescopic tube passes through the side of the positioning support plate and is connected to the top of the jet hood.

[0015] This invention provides a suspended conveyor device for garment manufacturing, which has the following advantages: In use, this invention generates airflow through a lightweight air pump assembly, which is then diverted through a delivery pipe to jet pipe one and jet pipe two, exiting from the bottom jet slot and forming an airflow barrier on the outside of the garment. Simultaneously, some airflow enters the jet hood through an airflow telescopic tube. After the drive cylinder adjusts the height of the positioning support plate, causing the airflow telescopic tube to extend and retract, it exits from the jet slot on the side of the jet hood, forming airflow barriers on the bottom and sides of the garment. This double airflow barrier design effectively prevents external lint and other debris from adhering to the garment surface, ensuring that the garment surface remains clean during orderly movement between different processes and significantly improving the garment processing quality.

[0016] In addition, by precisely adjusting the height of the positioning plate through the drive cylinders on both sides of the fixed plate, the rotating plate and the inner support crossbar of the fixed bracket are driven to be at a suitable height and rotation angle. Multiple support crossbars are tilted to hang the garment, which effectively avoids the wrinkles caused by garment folding, ensures the appearance quality of the garment during the conveying process, reduces the workload of subsequent ironing and other processes, and improves production efficiency.

[0017] The limiting slide is pulled out from the storage slot at the outer end of the support crossbar and rotated to a vertical position. Under the action of the spring, the limiting plate is stably installed at the outer end of the support crossbar through the connecting side plate, realizing reliable limiting of the outer end of the support crossbar. This ensures the stability of the garment on the support crossbar and prevents the garment from slipping or shifting during movement. It provides a strong guarantee for the safe and orderly movement of the garment between different processing steps and helps to improve the stability of the entire garment manufacturing process and product quality. Attached Figure Description

[0018] To more clearly illustrate the technical solutions of the embodiments of the present invention, the accompanying drawings of the embodiments will be briefly described below.

[0019] The accompanying drawings described below are only related to some embodiments of the invention and are not intended to limit the invention.

[0020] In the attached diagram: Figure 1 A schematic diagram of the overall structure of the present invention is shown; Figure 2 A three-dimensional structural diagram of the guide trolley of the present invention is shown; Figure 3 A three-dimensional structural diagram of the guide drive wheel of the present invention is shown; Figure 4 A schematic diagram of the deployed state of the limiting slide plate of the present invention is shown; Figure 5 A three-dimensional structural diagram of the bottom of the fixing bracket of the present invention is shown; Figure 6 A schematic cross-sectional view of the support crossbar structure of the present invention is shown; Figure 7 A schematic diagram of the two-dimensional structure of the jet tube of the present invention is shown; Figure 8 A three-dimensional structural diagram of the bottom of the jet tube of the present invention is shown; Figure 9 A three-dimensional structural diagram of the jet shroud of the present invention is shown.

[0021] List of reference numerals 1. Guide rail; 101. Guide trolley; 102. Movable groove; 103. Movable guide rod; 104. Guide plate; 105. Drive assembly; 106. Guide drive wheel; 2. Fixed plate; 201. Positioning plate; 202. Rotating plate; 203. Fixed bracket; 204. Support crossbar; 205. Storage slot; 206. Limiting slide plate; 207. Storage side slot; 208. Connecting side plate; 209. Limiting plate; 3. Fixed mounting plate; 301. Jet pipe one; 302. Jet pipe two; 303. Lightweight air pump assembly; 304. Delivery pipe; 305. Diverter pipe; 306. Airflow telescopic pipe; 307. Positioning support plate; 308. Jet hood. Detailed Implementation

[0022] To make the objectives, technical solutions, and advantages of the embodiments of the present invention clearer, the technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of the present invention. Based on the described embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0023] Please refer to Figures 1 to 9 Example 1: This invention proposes a suspended conveyor device for garment manufacturing, comprising: a guide rail 1, an anti-slip pad on the inner bottom side of the guide rail 1, and a guide trolley 101 slidably mounted on the outer side of the guide rail 1; the inner upper end of the guide trolley 101 is located on both sides of the guide rail 1, and a movable groove 102 is formed at the top of the upper end of the guide trolley 101; a movable guide rod 103 is slidably mounted inside the movable groove 102; a limiting protrusion is provided at the bottom of the movable guide rod 103, and a guide rod is installed at the top of the movable guide rod 103. Guide plate 104; guide plate 104 has a circular structure and is slidably mounted on both sides of guide rail 1; a spring is installed at the bottom of guide plate 104, and the bottom of guide plate 104 is connected to the top of guide trolley 101 through the spring; a drive assembly 105 is installed on the inner side of guide trolley 101; guide drive wheels 106 are driven and mounted at both ends of drive assembly 105; guide drive wheels 106 are located on the inner side of guide trolley 101, and the side of guide drive wheels 106 is rotatably mounted on the bottom inner side of guide rail 1.

[0024] In this embodiment of the invention, when semi-finished or finished garments need to be transported during the garment manufacturing process, the guide rail 1 is adjusted according to the length and width of the workshop and the processing steps. A suitable number of guide trolleys 101 are installed on the guide rail 1 according to actual needs. The drive assembly 105 inside the guide trolley 101 drives two guide drive wheels 106 to rotate in the same direction, so that the guide drive wheels 106 rotate on the inner side of the bottom of the guide rail 1, thereby driving the guide trolley 101 to move along the guide rail 1. When encountering a turning position, the guide trolley 101 moves slightly on the outer side of the guide rail 1, and the guide plate 104 moves on both sides of the guide rail 1. The bottom of the guide plate 104 drives the movable guide rod 103 to move inside the movable groove 102, so that the guide trolley 101 moves smoothly and orderly along the guide rail 1.

[0025] In Example 2, based on Example 1, a fixed plate 2 is installed at the bottom of the guide trolley 101; drive cylinders are installed on both sides of the fixed plate 2, and a positioning plate 201 is installed on the output end of the bottom of the drive cylinders; a rotating plate 202 is rotatably installed at the bottom of the positioning plate 201; a fixed bracket 203 is installed at the bottom of the rotating plate 202; the fixed bracket 203 has an L-shaped structure, and multiple evenly distributed support crossbars 204 are installed on the inner side of the fixed bracket 203; a storage groove 205 is opened at the outer end of the support crossbar 204; the outer end of the storage groove 205 has a rectangular structure. The storage slot 205 has a sliding limit plate 206 inside; the outer end of the limit plate 206 is provided with an anti-slip protrusion, and the inner side of the limit plate 206 has a storage side slot 207; a connecting side plate 208 is rotatably installed inside the storage side slot 207; a limit plate 209 is installed on the side end of the connecting side plate 208; the limit plate 209 has a circular structure, and a spring is installed on the inner side of the limit plate 209. The inner side of the limit plate 209 is slidably installed inside the storage slot 205 by the spring. This is for garments that require semi-finished or finished products during the garment manufacturing process. During transport, the drive cylinders on both sides of the fixed plate 2 drive the positioning plate 201 to adjust its height. The positioning plate 201 drives the bottom rotating plate 202 to move. The rotating plate 202 drives the support crossbar 204 inside the fixed bracket 203 to a suitable height and rotation angle. Multiple support crossbars 204 are in an inclined state, so that multiple garments are hung on the support crossbars 204, preventing the garments from folding together and causing wrinkles. Furthermore, the limiting slide plate 206 is pulled outward from the storage groove 205 at the outer end of the support crossbar 204. The plate 206 drives the limiting plate 209 to move outward through the connecting side plate 208, causing the limiting slide plate 206 to rotate at the side end of the connecting side plate 208, so that the connecting side plate 208 rotates out of the storage side groove 207, making the limiting slide plate 206 in a vertical state. Under the action of the spring, the limiting plate 209 pulls the limiting slide plate 206 through the connecting side plate 208 to install it on the outer end of the support crossbar 204, limiting the outer end of the support crossbar 204, ensuring the stability of the garment on the support crossbar 204, and facilitating the movement of the garment between different processing steps.

[0026] In Example 3, based on Example 1, multiple evenly distributed fixed mounting plates 3 are installed on the side of the rotating plate 202; jet pipe one 301 and jet pipe two 302 are respectively installed on the bottom of the fixed mounting plates 3, wherein jet pipe one 301 and jet pipe two 302 are annular structures, and jet grooves are opened at the bottom of jet pipe one 301 and jet pipe two 302; a lightweight air pump assembly 303 is installed on the top of the rotating plate 202; a delivery pipe 304 is installed on the output end of the lightweight air pump assembly 303; two diversion pipes 305 are installed at the bottom of the delivery pipe 304; the two diversion pipes The bottom of 305 is connected to jet pipe 301 and jet pipe 302 respectively; an airflow telescopic pipe 306 is installed on the side end of the conveying pipe 304; a drive cylinder is installed on the side of the fixed bracket 203, and a positioning support plate 307 is installed on the output end of the bottom of the drive cylinder; a jet hood 308 is installed on the bottom of the positioning support plate 307, wherein the side of the jet hood 308 is provided with a jet groove; the bottom of the airflow telescopic pipe 306 passes through the side of the positioning support plate 307 and connects to the top of the jet hood 308. When semi-finished or finished garments need to be conveyed during the garment manufacturing process, the garment... During transportation, jet pipe 1 301 and jet pipe 2 302 are positioned outside the rotating plate 202 under the fixation of the mounting plate 3. The airflow generated by the lightweight air pump assembly 303 is diverted through the delivery pipe 304 to the interior of the two diversion pipes 305, causing the airflow to be diverted into the interior of jet pipe 1 301 and jet pipe 2 302. This causes the jet grooves at the bottom of jet pipe 1 301 and jet pipe 2 302 to eject airflow, forming an airflow barrier on the outside of the garment. At the same time, the airflow delivered by the side end of the delivery pipe 304 enters the interior of the jet hood 308 through the airflow telescopic pipe 306. The side of the fixed bracket 203... The drive cylinder drives the positioning support plate 307 to adjust its height, causing the positioning support plate 307 to move the airflow telescopic tube 306 in an extension and retraction motion. The airflow is ejected from the airflow slots on the side of the air jet cover 308, forming an airflow barrier on the bottom and sides of the garment to block external lint and other debris. Combined with the existing dust collection equipment in the garment processing workshop, the airflow blows away the external lint, causing the lint to be blown away by the dust collection equipment. This can further reduce the presence of lint during garment transportation, allowing the garment to move in an orderly manner through different processes in the processing workshop, ensuring the cleanliness of the garment surface, and improving the quality of garment processing.

[0027] The working principle of this embodiment is as follows: The guide rail 1 is adjusted according to the length and width of the workshop and the processing steps. A suitable number of guide trolleys 101 slide on the guide rail 1. The drive assembly 105 drives two guide drive wheels 106 to rotate in the same direction. The guide drive wheels 106 rotate on the bottom inner side of the guide rail 1, thereby driving the guide trolleys 101 to move orderly along the guide rail 1. The drive cylinders on both sides of the fixed plate 2 drive the positioning plate 201 to adjust its height. The positioning plate 201 drives the bottom rotating plate 202 to move. The rotating plate 202 drives the support crossbar 204 on the inner side of the fixed bracket 203 to a suitable height and a suitable rotation angle. Multiple garments are hung on the support crossbar 204. The garments are stored in the storage groove 205 at the outer end of the support crossbar 204. When the outer limit slide 206 is in a vertical position, the limit plate 209 pulls the limit slide 206 to the outer end of the support crossbar 204 through the connecting side plate 208 under the action of the spring, ensuring the stability of the garment on the support crossbar 204. The airflow generated by the lightweight air pump assembly 303 is diverted to two diversion pipes 305 through the delivery pipe 304, so that the airflow is diverted to the first jet pipe 301 and the second jet pipe 302. The airflow is ejected through the bottom jet groove, forming an airflow barrier on the outside of the garment. At the same time, the airflow delivered by the side end of the delivery pipe 304 enters the jet hood 308 through the airflow telescopic pipe 306. The jet groove on the side of the jet hood 308 ejects airflow, forming an airflow barrier on the bottom and sides of the garment to block external lint and other debris, ensuring the cleanliness of the garment surface.

[0028] The following points should be noted in this article: 1. The accompanying drawings of the embodiments of the present invention only involve the structures involved in the embodiments of the present invention; other structures can refer to general designs.

[0029] 2. Where there is no conflict, the embodiments of the present invention and the features thereof can be combined with each other to obtain new embodiments.

[0030] The above are merely specific embodiments of the present invention, but the scope of protection of the present invention is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the technical scope disclosed in the present invention should be included within the scope of protection of the present invention. Therefore, the scope of protection of the present invention should be determined by the scope of the claims.

Claims

1. A suspended conveyor for garment manufacturing comprising: A guide rail (1) is provided with an anti-slip pad on the inner side of its bottom, and a guide trolley (101) is slidably mounted on the outer side of the guide rail (1); characterized in that a fixing plate (2) is mounted on the bottom of the guide trolley (101); a drive cylinder is mounted on both sides of the fixing plate (2), and a positioning plate (201) is mounted on the output end of the bottom of the drive cylinder; a rotating plate (202) is rotatably mounted on the bottom of the positioning plate (201); a fixing bracket (203) is mounted on the bottom of the rotating plate (202); the rotating plate (202) is rotatably mounted on the bottom of the rotating plate (202); 2) The side is equipped with multiple evenly distributed fixed mounting plates (3); the bottom of the fixed mounting plate (3) is respectively equipped with jet pipe one (301) and jet pipe two (302), wherein the bottom of jet pipe one (301) and jet pipe two (302) are provided with jet grooves; the side of the fixed bracket (203) is equipped with a drive cylinder, and the output end of the bottom of the drive cylinder is equipped with a positioning support plate (307); the bottom of the positioning support plate (307) is equipped with a jet cover (308), wherein the side of the jet cover (308) is provided with jet grooves.

2. The hanging type conveying device for garment manufacturing according to claim 1, wherein The upper inner side of the guide trolley (101) is located on both sides of the guide rail (1), and the upper top of the guide trolley (101) is provided with a movable groove (102); a movable guide rod (103) is slidably installed inside the movable groove (102).

3. The hanging conveyor for garment manufacturing according to claim 2, wherein The bottom of the movable guide rod (103) is provided with a limiting protrusion, and the top of the movable guide rod (103) is equipped with a guide plate (104); the guide plate (104) is slidably installed on both sides of the guide rail (1).

4. The hanging conveyor for garment manufacturing according to claim 3, wherein A spring is installed at the bottom of the guide plate (104), and the bottom of the guide plate (104) is connected to the top of the upper end of the guide trolley (101) through the spring; a drive assembly (105) is installed on the inner side of the guide trolley (101).

5. The hanging conveyor for garment manufacturing according to claim 4, wherein The drive assembly (105) has guide drive wheels (106) installed at both ends; the guide drive wheels (106) are located inside the guide trolley (101), and the side of the guide drive wheels (106) is rotatably installed on the bottom inside of the guide rail (1).

6. The hanging conveyor for garment manufacturing according to claim 5, wherein The inner side of the fixed bracket (203) is equipped with a number of evenly distributed support crossbars (204); the outer end of the support crossbars (204) is provided with a storage groove (205).

7. The hanging conveyor for garment manufacturing according to claim 6, wherein The storage slot (205) is slidably installed inside a limiting slide plate (206); the outer end of the limiting slide plate (206) is provided with an anti-slip protrusion, and the inner side of the limiting slide plate (206) is provided with a storage side groove (207); a connecting side plate (208) is rotatably installed inside the storage side groove (207).

8. The hanging conveyor for garment manufacturing according to claim 7, wherein A limiting plate (209) is installed on the side end of the connecting side plate (208); a spring is installed on the inner side of the limiting plate (209), and the inner side of the limiting plate (209) is slidably installed inside the storage groove (205) by the spring.

9. The hanging conveyor for garment manufacturing according to claim 8, wherein A lightweight air pump assembly (303) is installed on the top of the rotating plate (202); a delivery pipe (304) is installed on the output end of the lightweight air pump assembly (303); two branch pipes (305) are installed at the bottom of the delivery pipe (304); the bottoms of the two branch pipes (305) are respectively connected to jet pipe one (301) and jet pipe two (302).

10. The hanging conveyor for garment manufacturing according to claim 9, wherein An airflow telescopic tube (306) is installed on the side end of the delivery pipe (304); the bottom of the airflow telescopic tube (306) passes through the side of the positioning support plate (307) and is connected to the top of the jet hood (308).