Automatic folding, bagging and sealing all-in-one machine for clothes
By designing an integrated automatic folding, bagging, and sealing machine for garments, the automated folding, bagging, and sealing of garments has been achieved, solving the problems of high labor intensity and low production efficiency, improving production efficiency and reducing costs.
Patent Information
- Application Number
- CN202520471252.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-18
- Publication Date
- 2026-01-13
- Estimated Expiration
- 2035-03-18
AI Technical Summary
In the garment production process, folding, bagging, and sealing garments require a large amount of manual labor, which is labor-intensive and has low production efficiency.
Design an automatic garment folding, bagging and sealing machine, comprising a folding mechanism, a bagging mechanism, a conveying mechanism and a sealing mechanism, to achieve automatic folding, bagging and sealing of garments through mechanization.
It increases the level of automation, reduces the intensity of manual labor and production costs, and improves production efficiency.
Smart Images

Figure CN223791911U_ABST
Abstract
Description
Technical fields:
[0001] This utility model belongs to the field of folding machine technology, and specifically relates to an integrated machine for automatic folding, bagging and sealing of clothing. Background technology:
[0002] Garment manufacturing is a labor-intensive industry, requiring a large workforce not only during the garment production process but also during the packaging process after production, where folding, bagging, and sealing of garments are essential. This process is labor-intensive and involves many repetitive actions. Therefore, designing a device that can fold, bag, and seal garments to reduce labor intensity, production costs, and improve production efficiency is a problem that needs to be solved.
[0003] The information disclosed in this background section is intended only to enhance the understanding of the overall background of this utility model and should not be construed as an admission or in any way implying that the information constitutes prior art known to those skilled in the art. Utility Model Content:
[0004] The purpose of this utility model is to provide an integrated automatic folding, bagging and sealing machine for clothing, thereby overcoming the defects in the prior art.
[0005] To achieve the above objectives, this utility model provides an automatic garment folding, bagging, and sealing integrated machine, including a folding mechanism, a bagging mechanism, a conveying mechanism, and a sealing mechanism. The bagging mechanism is located at the discharge end of the folding mechanism and is situated above the conveying mechanism. A sealing mechanism is mounted on the conveying mechanism. The folding mechanism, bagging mechanism, and conveying mechanism form a continuous garment sealing channel. The folding mechanism includes a folding board assembly and a discharge port. The folding board assembly is rotatably mounted on the frame, and the discharge port is located at the center of the folding board assembly. The bagging mechanism includes a bag-supporting assembly, a bag-inserting assembly, and an air-blowing port. The bag-supporting assembly is positioned at the opening of the packaging bag, and the bag-inserting assembly is movably mounted on the frame in front of the packaging bag opening. The bag-inserting assembly is located below the discharge port, and the air-blowing port faces... The packaging bag has an opening mechanism. The opening is opened by a bag-supporting assembly, and the bag is inflated by an air inlet. The garment is then fed into the bag by an infeeding assembly. The conveying mechanism includes a front conveyor belt, a rear conveyor belt, and a bag-pressing assembly. The rear conveyor belt is mounted on a frame, and the front conveyor belt is movably mounted on the frame between the discharge port and the rear conveyor belt. The front conveyor belt is located below the bag filling mechanism and has a bag-pressing assembly that secures the packaging bag to it. The bag is then transported between the discharge port and the rear conveyor belt via the front conveyor belt. The sealing mechanism includes a tape-tearing assembly and a venting sealing assembly, which are sequentially mounted on the rear conveyor belt. The tape-tearing assembly removes the adhesive strip from the packaging bag, and the venting sealing assembly flattens and seals the packaging bag.
[0006] Preferably, in the technical solution, the folding mechanism includes a folding board assembly and a cover plate; the folding board assembly includes a left plate, a right plate, a front plate, and a rear plate, the left plate, right plate, front plate, rear plate, and cover plate are arranged on the same horizontal plane, the cover plate is foldably arranged on the frame, the opening of the cover plate forms a feeding port, the left plate and right plate are symmetrically arranged on the left and right sides of the feeding port, the front plate and rear plate are symmetrically arranged at the front and rear ends of the feeding port, and the left plate, right plate, front plate, and rear plate are foldably arranged on the frame to the feeding port.
[0007] Preferably, in the technical solution, the frame is provided with a first guide rail, a second guide rail, and a third support plate. The first guide rail and the second guide rail are arranged perpendicularly. The first support plate is provided on the first guide rail and is symmetrically arranged on the left and right sides of the discharge port. The left plate and the right plate are respectively connected to the corresponding first support plate by hinges. The second guide rail is provided with a second support plate and is symmetrically arranged on the front and rear sides of the discharge port. The front plate and the rear plate are respectively connected to the corresponding second support plate by hinges. The cover plate is connected to the third support plate by hinges. The first support plate, the second support plate, and the third support plate are respectively provided with a flipping mechanism. The left plate, the right plate, the front plate, the rear plate, and the cover plate are respectively connected to the corresponding flipping mechanism. The flipping mechanism adopts a motor and crankshaft connecting rod transmission method. The flipping mechanism drives the corresponding left plate, the right plate, the front plate, and the rear plate to rotate towards the discharge port. The flipping mechanism drives the corresponding cover plate to open and close.
[0008] Preferably, in the technical solution, the bagging mechanism includes a bag-supporting assembly, a bag-feeding assembly, an air inlet, and a bag-storage station mounted on a frame. The bag-supporting assembly and the air inlet are located in front of the bag-storage station, where packaging bags are placed. The air inlet is connected to an external air duct. The bag-supporting assembly includes an adjusting screw, a bag-supporting claw unit, a first cylinder, a lifting plate, and a first suction cup. The adjusting screw and the first cylinder are mounted on the frame. The bag-supporting claw units are symmetrically arranged on the adjusting screw. The lifting plate is located at the output end of the first cylinder. The first suction cup is located on the lifting plate and is connected to an external vacuum generator. The first suction cup faces the top surface of the packaging bag in the bag-storage station. The bag-supporting claw unit includes a rotary motor, a motor base, a rotating shaft, and a bag-supporting claw. The motor base is mounted on the adjusting screw, and the rotary motor is mounted on the motor base. The output end of the rotary motor is connected to the rotating shaft, which is equipped with a bag-supporting claw. When the bag-supporting claw is open, it faces the opening of the packaging bag. The bag-feeding assembly includes a conveyor motor, a belt pulley transmission mechanism, a truss, a pallet, and a third guide rail. The conveyor motor, belt pulley transmission mechanism, and third guide rail are mounted on the frame. The conveyor motor is connected to the belt pulley transmission mechanism, and the truss is connected to the belt pulley transmission mechanism. The truss is mounted on the third guide rail, and a pallet is mounted on the truss. The pallet is located below the feed port and faces the opening of the packaging bag. The movement trajectory of the pallet is between the feed port and the packaging bag. The top surface of the packaging bag is adsorbed by the first suction cup, and air is blown into the packaging bag through the air outlet to open the packaging bag. The bag-supporting claw opens the opening of the packaging bag, and the first cylinder drives the packaging bag to be flush with the pallet through the lifting plate. The pallet extends forward to feed the garment into the packaging bag.
[0009] Preferably, in the technical solution, the bag pressing assembly includes a first support, a second cylinder, a pressing block, and pressing heads. The first support is mounted on the front conveyor belt, the second cylinder is mounted on the top of the first support, the pressing block is mounted on the output end of the second cylinder, and pressing heads are symmetrically mounted on the pressing block, with the pressing heads facing the packaging bags on the front conveyor belt. The pressing heads press down on the packaging bags, causing the garments to separate from them when the pallet resets. The packaging bags are then transported to the rear conveyor belt via the front conveyor belt.
[0010] Preferably, in the technical solution, the adhesive-tearing assembly includes a second support, a third support, a third cylinder, a gripper seat, an adhesive-tearing gripper, a fourth cylinder, and a pressure plate. The second and third supports are sequentially arranged on the rear conveyor belt. The third cylinder is mounted on the second support, and a gripper seat is mounted on the output end of the third cylinder. The adhesive-tearing gripper is mounted on the gripper seat and is located above the adhesive strip seal of the packaging bag. The fourth cylinder is mounted on the third support, and a pressure plate is mounted on the output end of the fourth cylinder. The third and fourth cylinders descend synchronously and rise asynchronously. The pressure plate presses down on the packaging bag on the rear conveyor belt, and the adhesive-tearing gripper descends to the adhesive strip seal of the packaging bag, clamps the seal, and tears off the seal during the rising and resetting process.
[0011] Preferably, in the technical solution, the venting and sealing assembly includes a flange assembly and a venting assembly arranged sequentially. The flange assembly is located below the rear conveyor belt, and the venting assembly is located above the rear conveyor belt. The flange assembly is aligned with the position of the adhesive strip on the packaging bag, and the venting assembly is aligned with the position of the garment inside the packaging bag. The air inside the packaging bag is discharged by pressing down on the venting assembly, and the opening of the packaging bag is closed by folding the adhesive strip on the packaging bag through the flange assembly.
[0012] Preferably, in the technical solution, the flanging assembly includes a fifth cylinder, a lifting seat, a flipping motor, a flipping rod, and a flipping pressure plate. The fifth cylinder is mounted on the frame below the rear conveyor belt, and the output end of the fifth cylinder is connected to the lifting seat. The lifting seat is equipped with a flipping motor, and the output end of the flipping motor is connected to the flipping rod. The flipping rod is equipped with a flipping pressure plate, and the flipping pressure plate is aligned with the position of the adhesive strip on the packaging bag.
[0013] Preferably, in the technical solution, the exhaust assembly includes a fourth bracket, a sixth cylinder, a main exhaust plate, a seventh cylinder, and a secondary exhaust plate. The fourth bracket is mounted on the rear conveyor belt, the sixth cylinder is mounted on the fourth bracket, and the output end of the sixth cylinder is connected to the main exhaust plate. The seventh cylinder is mounted on the main exhaust plate, and the secondary exhaust plate is mounted at the front end of the main exhaust plate. The secondary exhaust plate is connected to the main exhaust plate via a hinge, and the output end of the seventh cylinder is connected to the secondary exhaust plate. The seventh cylinder is linked with a tilting motor. When the secondary exhaust plate is reset, the tilting pressure plate tilts. The main exhaust plate and the secondary exhaust plate press down on the clothing inside the packaging bag, venting the gas inside the packaging bag. The tilting pressure plate folds the packaging bag's adhesive strip to seal the opening of the packaging bag.
[0014] Compared with the prior art, the present invention has the following beneficial effects:
[0015] This application folds and packs garments into bags, then tears off the seals and seals the bags, increasing automation, reducing manual labor intensity and production costs, and improving production efficiency. Attached image description:
[0016] Figure 1 This is a schematic diagram of the structure of the automatic folding, bagging and sealing machine for clothing of this utility model;
[0017] Figure 2 This is the main view of the automatic folding, bagging and sealing machine for clothing of this utility model;
[0018] Figure 3 This is a top view of the automatic folding, bagging, and sealing machine for clothing of this utility model;
[0019] Figure 4 This is a left view of the automatic folding, bagging, and sealing machine for clothing of this utility model;
[0020] Figure 5 This is a schematic diagram of the left and right plates of this utility model;
[0021] Figure 6 This is a schematic diagram of the front and rear panel structures of this utility model;
[0022] Figure 7 This is a schematic diagram of the bag support component structure of this utility model;
[0023] Figure 8 This is a schematic diagram of the bag-insertion component structure of this utility model;
[0024] Figure 9 This is a schematic diagram of the bag-pressing assembly structure of this utility model;
[0025] Figure 10 This is a schematic diagram of the adhesive-removing assembly structure of this utility model;
[0026] Figure 11 This is a schematic diagram of the flange assembly structure of this utility model. Detailed implementation method:
[0027] The specific embodiments of this utility model are described in detail below, but it should be understood that the scope of protection of this utility model is not limited to the specific embodiments.
[0028] Unless otherwise expressly stated, throughout the specification and claims, the term "comprising" or its variations such as "including" or "comprises" shall be understood to include the stated elements or components without excluding other elements or other components.
[0029] like Figure 1-4 As shown, an automatic garment folding, bagging and sealing integrated machine includes a garment folding mechanism 1, a bagging mechanism 2, a conveying mechanism 3, and a sealing mechanism 4. The garment folding mechanism 1 is provided with a bagging mechanism 2 at its discharge end. The bagging mechanism 2 is located above the conveying mechanism 3. The conveying mechanism 3 is provided with a sealing mechanism 4. The garment folding mechanism 1, the bagging mechanism 2, and the conveying mechanism 3 form a continuous garment sealing channel.
[0030] like Figure 5-6 As shown, the folding mechanism 1 includes a folding board assembly and a cover plate 10; the folding board assembly includes a left plate 11, a right plate 12, a front plate 13, and a rear plate 14. The left plate 11, right plate 12, front plate 13, rear plate 14, and cover plate 10 are arranged on the same horizontal plane. The cover plate 10 is foldably mounted on the frame 5. The opening of the cover plate 10 forms a feeding port. The left plate 11 and right plate 12 are symmetrically arranged on the left and right sides of the feeding port. The front plate 13 and rear plate 14 are symmetrically arranged at the front and rear ends of the feeding port. The left plate 11, right plate 12, front plate 13, and rear plate 14 are foldably mounted on the frame 5 to the feeding port.
[0031] The frame 5 is equipped with a first guide rail 50, a second guide rail 51, and a third support plate. The first guide rail 50 and the second guide rail 51 are perpendicular to each other. A first support plate 52 is mounted on the first guide rail 50 and is symmetrically arranged on the left and right sides of the discharge port. The left plate 11 and the right plate 12 are respectively connected to the corresponding first support plate 52 by hinges. A second support plate 53 is mounted on the second guide rail 51 and is symmetrically arranged on the front and rear sides of the discharge port. The front plate 13 and the rear plate 14 are respectively connected to the corresponding second support plate 53 by hinges. The cover plate 10 is connected to the third support plate via a hinge. The first support plate 52, the second support plate 53, and the third support plate are respectively provided with a flipping mechanism 54. The left plate 11, the right plate 12, the front plate 13, the rear plate 14, and the cover plate 10 are respectively connected to the corresponding flipping mechanism 54. The flipping mechanism 54 adopts a motor and crankshaft connecting rod transmission method. The flipping mechanism 54 drives the corresponding left plate 11, right plate 12, front plate 13, and rear plate 14 to rotate towards the lower feed port, and drives the corresponding cover plate 10 to open and close.
[0032] like Figure 7-8As shown, the bagging mechanism 2 includes a bag-supporting assembly 20, a bag-feeding assembly 21, an air inlet 22, and a bag storage station 23, all mounted on the frame 5. The bag-supporting assembly 20 and the air inlet 22 are located in front of the bag storage station 23, where packaging bags are placed. The air inlet 22 is connected to an external air duct. The bag-supporting assembly 20 includes an adjusting screw 200, a bag-supporting claw unit, a first cylinder 201, a lifting plate 202, and a first suction cup 203. The adjusting screw 200 and the first cylinder 201 are mounted on the frame 5. A bag-supporting claw unit is symmetrically arranged on the 0. A lifting plate 202 is provided at the output end of the first cylinder 201. A first suction cup 203 is provided on the lifting plate 202. The first suction cup 203 is connected to an external vacuum generator and faces the top surface of the packaging bag in the bag storage station 23. The bag-supporting claw unit includes a rotary motor 204, a motor base 205, a rotating shaft 206, and a bag-supporting claw 207. The motor base 205 is mounted on the adjusting screw 200, and the rotary motor 204 is mounted on the motor base 205. The output end is connected to the rotating shaft 206, and the rotating shaft 206 is provided with a bag-supporting claw 207. When the bag-supporting claw 207 is open, it faces the opening of the packaging bag. The bag-feeding assembly 21 includes a conveyor motor 210, a belt pulley transmission mechanism 211, a truss 212, a pallet 213, and a third guide rail 214. The conveyor motor 210, the belt pulley transmission mechanism 211, and the third guide rail 214 are mounted on the frame 5. The conveyor motor 210 is connected to the belt pulley transmission mechanism 211, and the truss 212 is connected to the belt pulley transmission mechanism 211. 2. The support plate 213 is set on the third guide rail 214 and the truss 212. The support plate 213 is located below the feed port and faces the opening of the packaging bag. The movement trajectory of the support plate 213 is between the feed port and the packaging bag. The top surface of the packaging bag is attracted by the first suction cup 203, the air blowing port 22 blows air into the packaging bag to open it, the bag opening claw 207 opens the bag opening, and the first cylinder 201 drives the packaging bag to be flush with the support plate 213 through the lifting plate 202. The support plate 213 extends forward to send the garment into the packaging bag.
[0033] like Figure 1 , Figure 9As shown, the conveying mechanism 3 includes a front conveyor belt 30, a rear conveyor belt 31, and a bag-pressing assembly 32. The rear conveyor belt 31 is mounted on the frame 5, and the front conveyor belt 30 is movably mounted on the frame 5 between the discharge port and the rear conveyor belt 31. The front conveyor belt 30 is located below the bagging mechanism 2, and a bag-pressing assembly 32 is mounted on the front conveyor belt 30. The bag-pressing assembly 32 fixes the packaging bag onto the front conveyor belt 30, and the front conveyor belt 30 transports the packaging bag between the discharge port and the rear conveyor belt 31. The bag-pressing assembly 32 includes a first... The system comprises a support frame 320, a second cylinder 321, a pressure block 322, and a pressure head 323. The first support frame 320 is mounted on the front conveyor belt 30. The second cylinder 321 is mounted on the top of the first support frame 320. The pressure block 322 is mounted on the output end of the second cylinder 321. The pressure heads 323 are symmetrically arranged on the pressure block 322, facing the packaging bags on the front conveyor belt 30. The pressure heads 323 press down on the packaging bags, causing the garments to separate from the pallet 213 when it resets. The packaging bags are then transported to the rear conveyor belt 31 via the front conveyor belt 30.
[0034] like Figure 1 As shown, the sealing mechanism 4 includes a tearing adhesive assembly 40 and an exhaust sealing assembly 41. The tearing adhesive assembly 40 and the exhaust sealing assembly 41 are sequentially arranged on the rear conveyor belt 31. The adhesive strip of the packaging bag is removed by the tearing adhesive assembly 40, and the packaging bag is flattened and sealed by the exhaust sealing assembly 41.
[0035] like Figure 10 As shown, the adhesive-tearing assembly 40 includes a second support 400, a third support 401, a third cylinder 402, a gripper seat 403, adhesive-tearing grippers 404, a fourth cylinder 405, and a pressure plate 406. The second support 400 and the third support 401 are sequentially arranged on the rear conveyor belt 31. The third cylinder 402 is mounted on the second support 400. The gripper seat 403 is located at the output end of the third cylinder 402. The adhesive-tearing grippers 404 are mounted on the gripper seat 403. 404 is located above the adhesive strip seal of the packaging bag. The third support 401 is equipped with a fourth cylinder 405. The output end of the fourth cylinder 405 is equipped with a pressure plate 406. The third cylinder 402 and the fourth cylinder 405 descend synchronously and rise asynchronously. The pressure plate 406 presses down the packaging bag on the rear conveyor belt 31. The adhesive tearing claw 404 descends to the adhesive strip seal of the packaging bag and holds the seal. During the rising and resetting process, the adhesive tearing claw 404 tears off the seal.
[0036] The venting and sealing assembly 41 includes a flange assembly 42 and a venting assembly 43 arranged sequentially. The flange assembly 42 is located below the rear conveyor belt 31, and the venting assembly 43 is located above the rear conveyor belt 31. The flange assembly 42 is aligned with the position of the adhesive strip of the packaging bag, and the venting assembly 43 is aligned with the position of the garment inside the packaging bag. The air inside the packaging bag is discharged by pressing down the venting assembly 43, and the packaging bag opening is closed by folding the adhesive strip of the packaging bag through the flange assembly 42.
[0037] like Figure 11 As shown, the flanging assembly 42 includes a fifth cylinder 420, a lifting seat 421, a flipping motor 422, a flipping rod 423, and a flipping pressing plate 424. The fifth cylinder 420 is mounted on the frame 5 below the rear conveyor belt 31. The output end of the fifth cylinder 420 is connected to the lifting seat 421. The lifting seat 421 is equipped with the flipping motor 422. The output end of the flipping motor 422 is connected to the flipping rod 423. The flipping pressing plate 424 is mounted on the flipping rod 423 and is aligned with the position of the adhesive strip on the packaging bag.
[0038] The exhaust assembly 43 includes a fourth bracket 430, a sixth cylinder 431, a main exhaust plate 432, a seventh cylinder 433, and a secondary exhaust plate 434. The fourth bracket 430 is mounted on the rear conveyor belt 31, and the sixth cylinder 431 is mounted on the fourth bracket 430. The output end of the sixth cylinder 431 is connected to the main exhaust plate 432. The seventh cylinder 433 is mounted on the main exhaust plate 432, and the secondary exhaust plate 434 is mounted at the front end of the main exhaust plate 432. The secondary exhaust plate 434 is connected to the main exhaust plate 432 via a hinge, and the output end of the seventh cylinder 433 is connected to the secondary exhaust plate 434. The seventh cylinder 433 is linked with the tilting motor 422. When the secondary exhaust plate 434 is reset, the tilting pressure plate 424 tilts. The main exhaust plate 432 and the secondary exhaust plate 434 press down the clothing inside the packaging bag to expel the gas inside the packaging bag. The tilting pressure plate 424 folds the packaging bag adhesive strip to seal the opening of the packaging bag.
[0039] During operation, the first suction cup 203 adheres to the top surface of the packaging bag, lifting it up and opening the bag. Air blown into the bag through the air inlet 22, further opening the bag. The rotating motor 204 drives the bag-supporting claw 207 to open the bag opening. The garment is placed on the folding mechanism 1. The left plate 11 and right plate 12 flip sequentially to fold the left and right sides of the garment, respectively. The front plate 13 and back plate 14 flip sequentially to fold the front and back sides of the garment, respectively. The folded garment is placed on the cover plate 10. The cover plate 10 is opened, and the garment falls onto the pallet 213. The first cylinder 201, through the lifting plate 202, aligns the packaging bag with the pallet 213. The conveying motor 210 drives the pallet 213 to extend forward, feeding the garment into the packaging bag. The second cylinder 321 drives the pressure head 323 to descend and press down on the packaging bag. The conveyor motor 210 drives the pallet 213 to reset, and the pallet 213 separates from the garment when it resets. The front conveyor belt 30 moves to the rear conveyor belt 31. After the front conveyor belt 30 and the rear conveyor belt 31 are connected, the front conveyor belt 30 transports the packaging bag to the rear conveyor belt 31. The fourth cylinder 405 drives the pressure plate 406 to descend and press down on the packaging bag on the rear conveyor belt 31. The third cylinder 402 drives the adhesive tearing claw 404 to descend to the adhesive strip seal of the packaging bag. The adhesive tearing claw 404 clamps the seal and tears off the seal during the upward reset process. The sixth cylinder 431 drives the main exhaust plate 432 to descend, pressing down on the garment inside the packaging bag. The seventh cylinder 433 pushes the auxiliary exhaust plate 434 forward, pressing down on the garment inside the packaging bag and expelling gas. The fifth cylinder 420 drives the tilting plate 424 to rise, extending from the rear conveyor belt 31 and lifting the adhesive strip of the packaging bag. The tilting motor 422 drives the tilting plate 424 to tilt, folding the adhesive strip and sealing the opening of the packaging bag. This application folds the garment and feeds it into the packaging bag, then tears off the seal and seals the bag, improving automation, reducing labor intensity and production costs, and increasing production efficiency.
[0040] The foregoing description of specific exemplary embodiments of the present invention is for illustrative and explanatory purposes. These descriptions are not intended to limit the present invention to the precise forms disclosed, and it will be apparent that many changes and variations can be made in accordance with the foregoing teachings. The exemplary embodiments were chosen and described in order to explain the specific principles of the present invention and its practical application, thereby enabling those skilled in the art to implement and utilize various different exemplary embodiments of the present invention, as well as various different choices and variations. The scope of the present invention is intended to be defined by the claims and their equivalents.
Claims
1. An automatic garment folding, bagging, and sealing machine, characterized in that: The system includes a folding mechanism, a bagging mechanism, a conveying mechanism, and a sealing mechanism. The folding mechanism has a bagging mechanism at its discharge end, located above the conveying mechanism. A sealing mechanism is mounted on the conveying mechanism. The folding mechanism, bagging mechanism, and conveying mechanism form a continuous garment packaging channel. The folding mechanism includes a folding board assembly and a discharge port. The folding board assembly is rotatably mounted on the frame, and the discharge port is located at its center. The bagging mechanism includes a bag-supporting assembly, a bag-inserting assembly, and an air-blowing port. The bag-supporting assembly is located at the opening of the packaging bag. The bag-inserting assembly is movably mounted on the frame in front of the packaging bag opening, located below the discharge port. The air-blowing port faces the packaging bag opening and is opened by the bag-supporting assembly. The packaging bag is opened, and inflated by an air inlet. The garment is then fed into the packaging bag through the bag-feeding assembly. The conveying mechanism includes a front conveyor belt, a rear conveyor belt, and a bag-pressing assembly. The rear conveyor belt is mounted on the frame, and the front conveyor belt is movably mounted on the frame between the discharge port and the rear conveyor belt. The front conveyor belt is located below the bag-filling mechanism and has a bag-pressing assembly that secures the packaging bag to it. The front conveyor belt transports the packaging bag between the discharge port and the rear conveyor belt. The sealing mechanism includes a tape-tearing assembly and a venting sealing assembly, which are sequentially mounted on the rear conveyor belt. The tape-tearing assembly removes the adhesive strip from the packaging bag, and the venting sealing assembly flattens and seals the packaging bag.
2. The automatic garment folding, bagging, and sealing machine according to claim 1, characterized in that: The folding mechanism includes a folding board assembly and a cover plate. The folding board assembly includes a left plate, a right plate, a front plate, and a rear plate. The left plate, right plate, front plate, rear plate, and cover plate are arranged on the same horizontal plane. The cover plate is foldably mounted on the frame. The opening of the cover plate forms a feeding port. The left plate and right plate are symmetrically arranged on the left and right sides of the feeding port. The front plate and rear plate are symmetrically arranged at the front and rear ends of the feeding port. The left plate, right plate, front plate, and rear plate are foldably mounted on the frame to feed the port.
3. The automatic garment folding, bagging, and sealing machine according to claim 2, characterized in that: The frame is equipped with a first guide rail, a second guide rail, and a third support plate. The first guide rail and the second guide rail are perpendicular to each other. The first support plate is mounted on the first guide rail and is symmetrically arranged on the left and right sides of the discharge port. The left and right plates are respectively connected to the corresponding first support plates by hinges. The second guide rail is equipped with a second support plate and is symmetrically arranged on the front and rear sides of the discharge port. The front and rear plates are respectively connected to the corresponding second support plates by hinges. The cover plate is connected to the third support plate by hinges. The first, second, and third support plates are each equipped with a tilting mechanism. The left, right, front, rear, and cover plates are respectively connected to the corresponding tilting mechanism. The tilting mechanism adopts a motor and crankshaft connecting rod transmission method.
4. The automatic garment folding, bagging, and sealing machine according to claim 1, characterized in that: The bagging mechanism includes a bag-supporting assembly, a bag-feeding assembly, an air inlet, and a bag storage station, all mounted on a frame. The bag-supporting assembly and air inlet are located in front of the bag storage station, where packaging bags are placed. The air inlet is connected to an external air duct. The bag-supporting assembly includes an adjusting screw, a bag-supporting claw unit, a first cylinder, a lifting plate, and a first suction cup. The adjusting screw and the first cylinder are mounted on the frame. The bag-supporting claw units are symmetrically arranged on the adjusting screw. A lifting plate is located at the output end of the first cylinder, and a first suction cup is mounted on the lifting plate. The first suction cup is connected to an external vacuum generator and faces the top surface of the packaging bags in the bag storage station. The bag-supporting claw unit includes a rotary motor and a motor base. The machine includes a rotating shaft, bag-supporting claws, and a motor mount mounted on an adjusting screw. The rotating motor is mounted on the motor mount, and its output end is connected to the rotating shaft. The rotating shaft is equipped with bag-supporting claws, which open towards the opening of the packaging bag. The bag-feeding assembly includes a conveyor motor, a belt pulley drive mechanism, a truss, a pallet, and a third guide rail. The conveyor motor, belt pulley drive mechanism, and third guide rail are mounted on the frame. The conveyor motor is connected to the belt pulley drive mechanism, and the truss is connected to the belt pulley drive mechanism. The truss is mounted on the third guide rail, and a pallet is mounted on the truss. The pallet is located below the discharge port and faces the opening of the packaging bag. The movement trajectory of the pallet is between the discharge port and the packaging bag.
5. The automatic garment folding, bagging, and sealing machine according to claim 4, characterized in that: The bag pressing assembly includes a first support, a second cylinder, a pressing block, and pressing heads. The first support is set on the front conveyor belt, and the second cylinder is set on the top of the first support. The pressing block is set on the output end of the second cylinder, and pressing heads are symmetrically arranged on the pressing block, with the pressing heads facing the packaging bags on the front conveyor belt. The pressing heads press the packaging bags, causing the garments to separate from them when the pallet resets.
6. The automatic garment folding, bagging, and sealing machine according to claim 1, characterized in that: The adhesive-tearing assembly includes a second support, a third support, a third cylinder, a gripper seat, adhesive-tearing grippers, a fourth cylinder, and a pressure plate. The second and third supports are sequentially mounted on the rear conveyor belt. The third cylinder is mounted on the second support, and a gripper seat is mounted on the output end of the third cylinder. Adhesive-tearing grippers are mounted on the gripper seat and are positioned above the adhesive strip seal on the packaging bag. The fourth cylinder is mounted on the third support, and a pressure plate is mounted on the output end of the fourth cylinder. The third and fourth cylinders descend synchronously and rise asynchronously.
7. The automatic garment folding, bagging, and sealing machine according to claim 1, characterized in that: The venting and sealing assembly includes a flange assembly and a venting assembly arranged in sequence. The flange assembly is located below the rear conveyor belt, and the venting assembly is located above the rear conveyor belt. The flange assembly is aligned with the adhesive strip of the packaging bag, and the venting assembly is aligned with the garment inside the packaging bag.
8. The automatic garment folding, bagging, and sealing machine according to claim 7, characterized in that: The flanging assembly includes a fifth cylinder, a lifting base, a flipping motor, a flipping rod, and a flipping pressure plate. The fifth cylinder is mounted on the frame below the rear conveyor belt. The output end of the fifth cylinder is connected to the lifting base. The lifting base is equipped with a flipping motor, and the output end of the flipping motor is connected to the flipping rod. The flipping rod is equipped with a flipping pressure plate, which is aligned with the position of the adhesive strip on the packaging bag.
9. The automatic garment folding, bagging, and sealing machine according to claim 8, characterized in that: The exhaust assembly includes a fourth bracket, a sixth cylinder, a main exhaust plate, a seventh cylinder, and an auxiliary exhaust plate. The fourth bracket is mounted on the rear conveyor belt, and the sixth cylinder is mounted on the fourth bracket. The output end of the sixth cylinder is connected to the main exhaust plate. The seventh cylinder is mounted on the main exhaust plate, and the auxiliary exhaust plate is mounted at the front end of the main exhaust plate. The auxiliary exhaust plate is connected to the main exhaust plate via a hinge, and the output end of the seventh cylinder is connected to the auxiliary exhaust plate. The seventh cylinder is linked to the tilting motor. When the auxiliary exhaust plate is reset, the tilting press flips.