A finished product packing device for garment processing

By designing an automated finished product packaging device, the problems of inconvenience in manual packaging and difficulty in air expulsion were solved, realizing an efficient and mechanized garment packaging process and increasing the loading capacity and packaging speed of woven bags.

CN120736032BActive Publication Date: 2025-11-07SHISHI SANJIA IND CO LTD
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Patent Information

Application Number
CN202511254002.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-09-04
Publication Date
2025-11-07
Estimated Expiration
2045-09-04

AI Technical Summary

Technical Problem

In the current process of packing clothing, manual packing is inconvenient, and the air inside the woven bag is difficult to expel, which affects the packing quantity and speed.

Method used

Design a finished product packaging device that includes components such as a packaging conveyor, a garment conveyor, a vacuum suction cup assembly, an opening mechanism, a suction mechanism, a bag supply mechanism, and a filling mechanism. Through mechanized conveying, suction, stacking, and compression operations, it achieves automated packaging.

Benefits of technology

It improves the efficiency of garment packaging, reduces manual labor, ensures that gas is released from the woven bags, increases the loading capacity of the woven bags, and improves packaging speed and quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a finished product packing device for garment processing, and relates to the technical field of garment packaging. The finished product packing device for garment processing comprises a packing conveying frame and a garment conveying frame, a supporting frame is arranged on the top of the packing conveying frame, and a first conveying mechanism is arranged on the packing conveying frame. The finished product packing device for garment processing intermittently conveys the woven bags through the first conveying mechanism, the opening of the woven bag can be opened through cooperation of the third vacuum suction disc group and the opening mechanism, the woven bag in the inner cavity of the bag storage box can be moved to the first conveying belt through the suction mechanism, the garment with the packing bag can be conveyed through the second conveying mechanism, the garment on the second conveying mechanism can be pushed to the clamps on the loading mechanism through the pushing mechanism to be stacked, and the garments stacked and extruded on the two clamps can be put into the woven bag with the opening to be packed through the loading mechanism. The packing operation of manpower is avoided, and the work efficiency of packing the garments is improved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of clothing packaging, in particular to a finished product packaging device for clothing processing. BACKGROUND

[0002] Clothing is a general term for clothes, hats and accessories worn on the human body for protection and decoration, with multiple functions such as protection, shame covering, decoration, and identity identification. Clothing processing refers to the comprehensive technology of making clothes from clothing materials through specific techniques and processes, mainly including cutting, sewing, and ironing. After clothing processing, the finished clothing is packaged in a packaging bag. In the process of transferring clothing from a clothing factory to a warehouse, clothing store, etc., multiple clothing packaged with packaging bags are usually packaged in a woven bag for easy transfer. However, when packaging multiple clothing in a woven bag, the convenience of manual packaging is poor, and since there is air in the packaging bag of a single piece of clothing, it is not easy to exhaust the air, which affects the number of clothing packaged in the woven bag and the packaging speed. Therefore, we propose a finished product packaging device for clothing processing. SUMMARY

[0003] In view of the deficiencies of the prior art, the present application provides a finished product packaging device for clothing processing, which solves the problems raised in the background art.

[0004] To achieve the above purpose, the present application realizes the following technical scheme: a finished product packaging device for clothing processing, comprising a packaging conveying frame and a clothing conveying frame, a support frame is arranged on the top of the packaging conveying frame, a first conveying mechanism is arranged on the packaging conveying frame, a third vacuum chuck group is arranged on the packaging conveying frame, an opening mechanism is arranged on the support frame, a bag feeding mechanism is arranged on the end of the packaging conveying frame, a suction mechanism is arranged on the support frame, a second conveying mechanism is arranged on the clothing conveying frame, a pushing mechanism is arranged on the clothing conveying frame, a charging mechanism is arranged on the side of the packaging conveying frame, and a second photoelectric detector is arranged on the side of the packaging conveying frame.

[0005] The first conveying mechanism comprises two first drive rollers rotatably connected at both ends of the inner side of the packaging conveying frame through bearings and a first speed reducer fixedly installed on the outer side of the packaging conveying frame, the output shaft of the first speed reducer is connected to one end of the shaft of the first drive roller through a shaft coupling, and a first conveying belt is transmissionally connected between the two first drive rollers.

[0006] The suction mechanism comprises a moving box fixedly connected to the support frame and a transmission rod rotatably connected to the support frame through a bearing, one end of the transmission rod is fixedly sleeved with a first bevel gear, the other end of the transmission rod is fixedly sleeved with a second synchronous wheel, one end of the other first drive roller shaft is fixedly sleeved with a first synchronous wheel, the first synchronous wheel and the second synchronous wheel are drivingly connected with a synchronous belt, the inner cavity of the moving box is rotatably connected with a first reciprocating screw rod through a bearing, the end of the first reciprocating screw rod is fixedly sleeved with a second bevel gear, the second bevel gear and the first bevel gear are in mesh with each other, the inner cavity of the moving box is fixedly sleeved with a sliding rod, the outer side of the first reciprocating screw rod is sleeved with a first sliding seat, the first sliding seat and the sliding rod are movably sleeved, one end of the inner cavity of the moving box is provided with a first contact sensor, the other end of the inner cavity of the moving box is provided with a second contact sensor, the bottom surface of the first sliding seat is fixedly installed with a first electric cylinder, the bottom end of the first electric cylinder is fixedly connected with a second mounting seat, the second mounting seat is provided with a second vacuum chuck group.

[0007] Optionally, the mouth opening mechanism comprises a first cylinder fixedly installed at the top of the support frame, the output end of the first cylinder is fixedly connected with a first mounting seat, and the first mounting seat is provided with a first vacuum chuck group.

[0008] Optionally, the bag feeding mechanism comprises a bag storage box fixedly connected to the end of the packaging conveying frame, the top end of the bag storage box is provided with a first photoelectric detector, the bottom surface of the bag storage box is provided with a moving groove, the inner cavity of the moving groove is rotatably connected with a bidirectional screw rod through a bearing, the outer sides of the two ends of the bidirectional screw rod are sleeved with moving blocks, the two sides of the two moving blocks are respectively fitted with the inner walls of the moving grooves, the top surfaces of the two moving blocks are fixedly connected with limiting rods, the side surface of the bag storage box is fixedly installed with a band brake motor, the output shaft of the band brake motor is connected with the ends of the bidirectional screw rods through a shaft coupling, the bottom surface of the bag storage box is fixedly installed with a second cylinder, and the top end of the second cylinder is fixedly connected with a placing plate.

[0009] Optionally, the loading mechanism comprises a support seat fixedly connected to the side of the packing conveying frame, a support pipe fixedly connected to the top surface of one end of the support seat, a third bevel gear fixedly sleeved to the top end of the support pipe, a stepping motor fixedly installed on the bottom surface of the support seat, a U-shaped frame fixedly connected to the output shaft of the stepping motor and penetrating through the support pipe, a transmission column rotatably connected to the two sides of the U-shaped frame through bearings, a fourth bevel gear fixedly sleeved to one end of the two transmission columns, the two fourth bevel gears being meshed with each other and the third bevel gear, a support box fixedly connected to the other end of the two transmission columns, a third cylinder fixedly installed in the inner cavity of the two support boxes, an extension column fixedly connected to the end of the two third cylinders, a double-shaft cylinder fixedly installed on the end of the two extension columns, a clamping plate fixedly connected to the two output ends of the two double-shaft cylinders, and a baffle provided on the two clamping plates.

[0010] Optionally, the second conveying mechanism comprises two second driving rollers rotatably connected to the inner sides of the clothing conveying frame through bearings, a second speed reducer fixedly installed on the outer side of the clothing conveying frame, a backboard and a mounting plate fixedly connected to the top surface of the clothing conveying frame, a second electric cylinder fixedly installed on the side surface of the mounting plate, an L-shaped limiting plate fixedly connected to the output end of the second electric cylinder, a slide column fixedly connected to the L-shaped limiting plate, the slide column and the mounting plate being movably sleeved, a second conveying belt transmissionally connected between the two second driving rollers, a second speed reducer fixedly installed on the outer side of the clothing conveying frame, the output shaft of the second speed reducer being connected to one end of the rotation shaft of one second driving roller through a shaft coupling, and a through hole provided on the L-shaped limiting plate.

[0011] Optionally, the pushing mechanism comprises a moving box fixedly connected to the outer side of the clothing conveying frame and a second reciprocating screw rod fixedly connected to one end of the rotation shaft of the other second driving roller, a sliding groove provided on the top surface of the moving box, a second sliding seat sleeved to the outer side of the second reciprocating screw rod, a pushing column fixedly connected to the top end of the second sliding seat and extending to the top of the moving box through the sliding groove, and the end of the pushing column being movably sleeved to the inner cavity of the through hole.

[0012] The application provides a finished product packing device for clothing processing, which has the following beneficial effects:

[0013] 1. The finished product packaging device for garment processing, the woven bag is intermittently conveyed through the first conveying mechanism, the opening of the woven bag is opened by the cooperation of the third vacuum chuck set and the mouth opening mechanism, the woven bag in the inner cavity of the bag storage box is moved to the first conveying belt by the suction mechanism, the garment with the packaging bag is conveyed by the second conveying mechanism, the garment on the second conveying mechanism is pushed to the clamping plate on the loading mechanism by the pushing mechanism to stack, the garment stacked and extruded on the two clamping plates is put into the open woven bag by the loading mechanism to pack, manual packing operation is avoided, and the work efficiency of packing the garment is improved.

[0014] 2. The finished product packaging device for garment processing, when a certain amount of garments are stacked on the clamping plate, the two clamping plates are driven to approach each other by the double-shaft air cylinder, on the one hand, the two clamping plates are used to clamp and fix the garments, on the other hand, the multiple garments are extruded, so that the gas in the packaging bag of a single garment is discharged from the air hole, the overall volume of the stacked garments is reduced, the woven bag can pack more garments, and the work quality is good.

[0015] 3. The finished product packaging device for garment processing, when the woven bag is conveyed by rotating the first driving roller and the first conveying belt driven by the first speed reducer, the first conveying belt drives the first synchronous wheel to rotate synchronously, the first reciprocating lead screw is driven to rotate synchronously through the transmission between the first synchronous wheel, the synchronous belt, the second synchronous wheel, the transmission rod, the first bevel gear and the second bevel gear, the second vacuum chuck set is moved above the woven bag in the inner cavity of the bag storage box through the cooperation between the first reciprocating lead screw and the first sliding seat, the uppermost woven bag is sucked by the second vacuum chuck set, and the sucked woven bag is moved to the first conveying belt through the cooperation between the first sliding seat and the first reciprocating lead screw, realizing the function of automatically feeding the woven bag and avoiding manual operation.

[0016] 4. The finished product packaging device for garment processing, the second driving roller and the second conveying belt are driven to rotate by the second speed reducer to convey the garment, and the second reciprocating lead screw is driven to rotate by the second driving roller, the second sliding seat and the push column are driven to reciprocate by the screw rod transmission between the second reciprocating lead screw and the second sliding seat, the garment at the end of the second conveying belt is pushed to the clamping plate by the push column, realizing the function of stacking the garment and preparing for subsequent packaging, and improving the work efficiency. BRIEF DESCRIPTION OF DRAWINGS

[0017] Figure 1 It is a schematic diagram of the overall structure of the application;

[0018] Figure 2 It is a schematic diagram of the structure of the packaging conveying frame of the application;

[0019] Figure 3The structural schematic diagram of the first conveying belt of the application;

[0020] Figure 4 The sectional view schematic diagram of the packing conveying frame of the application;

[0021] Figure 5 The structural schematic diagram of the clothing conveying frame of the application;

[0022] Figure 6 The sectional view schematic diagram of the clothing conveying frame of the application;

[0023] Figure 7 The structural schematic diagram of the moving box of the application;

[0024] Figure 8 The structural schematic diagram of the bag storage box of the application;

[0025] Figure 9 The structural schematic diagram of the loading mechanism of the application.

[0026] In the figure: 1, packing conveying frame; 2, clothing conveying frame; 3, support frame; 4, first conveying mechanism; 5, bag supply mechanism; 6, suction mechanism; 7, opening mechanism; 8, third vacuum chuck group; 9, loading mechanism; 10, second conveying mechanism; 11, pushing mechanism; 12, second photoelectric detector; 13, first air cylinder; 14, first mounting seat; 15, first vacuum chuck group; 16, first driving roller; 17, first conveying belt; 18, first speed reducer motor; 19, moving box; 20, transmission rod; 21, first reciprocating lead screw; 22, sliding rod; 23, first sliding seat; 24, first electric cylinder; 25, second mounting seat; 26, second vacuum chuck group; 27, second bevel gear; 28, first bevel gear; 29, second synchronous wheel; 30, first synchronous wheel; 31, synchronous belt; 32, first contact sensor; 33, bag storage box; 34, moving groove; 35, bidirectional lead screw; 36, moving block; 37, limiting rod; 38, holding brake motor; 39, first photoelectric detector; 40, second air cylinder; 41, placing plate; 42, second driving roller; 43, second speed reducer motor; 44, leaning plate; 45, mounting plate; 46, second electric cylinder; 47, L-shaped limiting plate; 48, sliding column; 49, second conveying belt; 50, perforation; 51, moving box; 52, second reciprocating lead screw; 53, second sliding seat; 54, sliding groove; 55, pushing column; 56, supporting seat; 57, supporting pipe; 58, third bevel gear; 59, stepping motor; 60, U-shaped frame; 61, transmission column; 62, fourth bevel gear; 63, supporting box; 64, third air cylinder; 65, telescopic column; 66, double-shaft air cylinder; 67, clamping plate; 68, baffle; 69, second contact sensor. DETAILED DESCRIPTION

[0027] The technical solutions in the embodiments of the present application will be clearly and completely described with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only some of the embodiments of the present application, rather than all the embodiments of the present application.

[0028] Please refer to Figures 1 to 9 The present application provides a technical solution: a finished product packaging device for garment processing, comprising a packaging conveying frame 1 and a garment conveying frame 2, the top of the packaging conveying frame 1 is provided with a support frame 3, the packaging conveying frame 1 is provided with a first conveying mechanism 4, the packaging conveying frame 1 is provided with a third vacuum chuck set 8 for adsorbing below the opening of the woven bag, the support frame 3 is provided with a mouth opening mechanism 7 for adsorbing above the opening of the woven bag, the end of the packaging conveying frame 1 is provided with a bag supply mechanism 5 for storing the woven bag, the support frame 3 is provided with a suction mechanism 6 for sucking the woven bag, the garment conveying frame 2 is provided with a second conveying mechanism 10 for conveying the garment, the garment conveying frame 2 is provided with a pushing mechanism 11 for pushing the garment, the side of the packaging conveying frame 1 is provided with a charging mechanism 9 for stacking and extruding the garment, the side of the packaging conveying frame 1 is provided with a second photoelectric detector 12, and the shielding parameters of the second photoelectric detector 12 are adjusted to ensure that the light beam of the second photoelectric detector 12 is shielded for a certain time before the switch signal is output, the outside of the packaging conveying frame 1 is provided with a controller for controlling each element of the device, and the device is powered by an external power supply, which is the prior art.

[0029] The mouth opening mechanism 7 comprises a first air cylinder 13 fixedly installed on the top of the support frame 3 and located directly above the third vacuum chuck set 8, the output end of the first air cylinder 13 is fixedly connected with a first mounting seat 14, the first mounting seat 14 is provided with a first vacuum chuck set 15, the driving of the first vacuum chuck set 15, the third vacuum chuck set 8 and the second vacuum chuck set 26 is realized by cooperation of an external air compressor, a filter pressure reducing valve, a solenoid valve, a vacuum generator, a vacuum filter and a vacuum switch, and the driving of the first air cylinder 13, the second air cylinder 40 and the third air cylinder 64 and the double-shaft air cylinder 66 is realized by cooperation of an air compressor, a filter pressure reducing valve and a solenoid valve, which are all prior arts.

[0030] The first conveying mechanism 4 comprises two first driving rollers 16 rotatably connected to the inner sides of both ends of the packaging conveying frame 1 through bearings and a first speed reducer motor 18 fixedly installed on the outer side of the packaging conveying frame 1, the output shaft of the first speed reducer motor 18 is connected to one end of the rotating shaft of one of the first driving rollers 16 through a shaft coupling, and a first conveying belt 17 is transmissionally connected between the two first driving rollers 16, the side surface of the first conveying belt 17 is attached to the inner wall of the packaging conveying frame 1 to ensure the stability of the first conveying belt 17 on the two first driving rollers 16.

[0031] The suction mechanism 6 comprises a moving box 19 fixedly connected to the support frame 3 and a transmission rod 20 rotatably connected to the support frame 3 through a bearing, one end of the transmission rod 20 is fixedly sleeved with a first bevel gear 28, the other end of the transmission rod 20 extends to the outside of the support frame 3 and is fixedly sleeved with a second synchronous wheel 29, one end of the rotating shaft of the other first drive roller 16 extends to the outside of the packaging conveying frame 1 and is fixedly sleeved with a first synchronous wheel 30, the first synchronous wheel 30 and the second synchronous wheel 29 are drivingly connected through a synchronous belt 31, the inner cavity of the moving box 19 is rotatably connected with a first reciprocating screw rod 21 through a bearing, the end of the first reciprocating screw rod 21 extends to the outside of the moving box 19 and is fixedly sleeved with a second bevel gear 27, the second bevel gear 27 and the first bevel gear 28 are in meshing relationship with each other, the specifications of the second bevel gear 27 and the first bevel gear 28 are the same, the rotation of the first reciprocating screw rod 21 is driven through the second synchronous wheel 29, the first synchronous wheel 30, the synchronous belt 31, the transmission rod 20, the first bevel gear 28 and the second bevel gear 27, wherein the rotation of the other first drive roller 16 is driven through the first drive roller 16, the first conveying belt 17 and the first speed reducer motor 18, when the first speed reducer motor 18 is started once, the first sliding seat 23 is reciprocated on the first reciprocating screw rod 21 once, so as to suck the woven bag in the inner cavity of the storage bag box 33 to the first conveying belt 17, the transmission ratio is realized according to debugging, which is the prior art, at the same time, when the first speed reducer motor 18 is started once, the woven bag below the second vacuum suction disc group 26 is just moved to the below of the first vacuum suction disc group 15, the inner cavity of the moving box 19 is fixedly sleeved with a sliding rod 22, the outer side of the first reciprocating screw rod 21 is sleeved with a first sliding seat 23, the first sliding seat 23 and the sliding rod 22 are movably sleeved, the first sliding seat 23 is limited through the sleeving between the sliding rod 22 and the first sliding seat 23, so that the first sliding seat 23 can only move along the axial direction of the first reciprocating screw rod 21, one end of the inner cavity of the moving box 19 is provided with a first contact sensor 32, the other end of the inner cavity of the moving box 19 is provided with a second contact sensor 69, the bottom surface of the first sliding seat 23 is fixedly installed with a first electric cylinder 24, the bottom end of the first electric cylinder 24 is fixedly connected with a second mounting seat 25, and the second mounting seat 25 is provided with a second vacuum suction disc group 26.

[0032] The bag feeding mechanism 5 comprises a bag storage box 33 fixedly connected to the end of the packing conveying frame 1, the top end of the bag storage box 33 is provided with a first photoelectric detector 39, the bottom surface of the bag storage box 33 is provided with a moving groove 34, the inner cavity of the moving groove 34 is rotatably connected with a bidirectional screw rod 35 through a bearing, the outer side of the two ends of the bidirectional screw rod 35 is sleeved with a moving block 36, the bidirectional screw rod 35 and the moving block 36 are adapted to form a screw rod driving assembly, the two sides of the two moving blocks 36 are respectively fitted with the inner walls of the moving groove 34, the moving block 36 is limited by the inner walls of the moving groove 34, so that the moving block 36 can only move along the axial direction of the bidirectional screw rod 35, the top surface of the two moving blocks 36 is fixedly connected with a limiting rod 37, the top end of the limiting rod 37 is flush with the top surface of the two sides of the bag storage box 33, and the height of the first photoelectric detector 39 is higher than the top surface of the limiting rod 37; in addition, the top surface of the limiting rod 37 is flush with the top surface of the first conveying belt 17, so that the uppermost woven bag can be smoothly moved to the first conveying belt 17, the side surface of the bag storage box 33 is fixedly installed with a clutch motor 38, the output shaft of the clutch motor 38 is connected with the end of the bidirectional screw rod 35 through a shaft coupling, the bottom surface of the bag storage box 33 is fixedly installed with a second air cylinder 40, the top end of the second air cylinder 40 is fixedly connected with a placing plate 41, the top surface of the placing plate 41 is used for placing the stacked woven bags, the two sides of the woven bags are limited by the two limiting rods 37, and the opening end of the woven bags is fitted with the inner wall of one side of the bag storage box 33, the inner wall of one side of the bag storage box 33 is flush with the outer side of the packing conveying frame 1, so that the opening end of the woven bag is flush with the outer side of the packing conveying frame 1 after the woven bag grabbed by the suction mechanism 6 is placed on the first conveying belt 17.

[0033] The loading mechanism 9 comprises a support seat 56 fixedly connected to the side of the packing conveying frame 1, the top surface of one end of the support seat 56 is fixedly connected with a support pipe 57, the top end of the support pipe 57 is fixedly sleeved with a third bevel gear 58, the bottom surface of the support seat 56 is fixedly installed with a stepping motor 59, the stepping motor 59 is controlled by pulse control method, cooperates with an encoder and a controller to ensure that the output shaft of the stepping motor 59 rotates 180 degrees each time, which is the prior art, the output shaft of the stepping motor 59 penetrates through the support pipe 57 and is fixedly connected with a U-shaped frame 60, both sides of the U-shaped frame 60 are rotatably connected with transmission columns 61 through bearings, one end of each of the two transmission columns 61 is fixedly sleeved with a fourth bevel gear 62, the two fourth bevel gears 62 are meshed with each other and the third bevel gear 58 respectively, the number of teeth on the third bevel gear 58 is half of the number of teeth on the fourth bevel gear 62, so that the support box 63 and the clamping plate 67 rotate 90 degrees when the third bevel gear 58 rotates 180 degrees, the other end of each of the two transmission columns 61 is fixedly connected with a support box 63, the inner cavity of each of the two support boxes 63 is fixedly installed with a third air cylinder 64, the end of each of the two third air cylinders 64 is fixedly connected with an extension column 65, the side surface of the extension column 65 is in close contact with the inner wall of the support box 63 to ensure the stability between the support box 63 and the extension column 65, the end of each of the two extension columns 65 is fixedly installed with a double-shaft air cylinder 66, the two output ends of each of the two double-shaft air cylinders 66 are fixedly connected with a clamping plate 67, the clamping plate 67 is provided with a baffle 68, and the height of the clamping plate 67 is adapted to the height of the region between the third vacuum suction disc group 8 and the first vacuum suction disc group 15.

[0034] The second conveying mechanism 10 comprises two second driving rollers 42 rotatably connected to the inner sides of both ends of the garment conveying frame 2, a second speed reducer motor 43 fixedly installed on the outer side of the garment conveying frame 2, a backboard 44 and a mounting plate 45 fixedly connected to the top surface of the garment conveying frame 2, the side surface of the mounting plate 45 is fixedly installed with a second electric cylinder 46, the output end of the second electric cylinder 46 is fixedly connected with an L-shaped limiting plate 47, the L-shaped limiting plate 47 is fixedly connected with a sliding column 48, the sliding column 48 is movably sleeved with the mounting plate 45, a second conveying belt 49 is transmissionally connected between the two second driving rollers 42, the side surface of the second conveying belt 49 is in close contact with the inner side surface of the garment conveying frame 2 to ensure the stability of the second conveying belt 49 on the two second driving rollers 42, a plurality of support rollers can be arranged on the inner side of the garment conveying frame 2 to strengthen the support of the second conveying belt 49, the outer side of the garment conveying frame 2 is fixedly installed with the second speed reducer motor 43, the output shaft of the second speed reducer motor 43 is connected with one end of the rotation shaft of one second driving roller 42 through a shaft coupling, and the L-shaped limiting plate 47 is provided with a through hole 50.

[0035] The pushing mechanism 11 comprises a moving box 51 fixedly connected to the outer side of the garment conveying frame 2 and a second reciprocating screw rod 52 fixedly connected to one end of the rotating shaft of the second driving roller 42. The top surface of the moving box 51 is provided with a sliding groove 54, and the outer side of the second reciprocating screw rod 52 is sleeved with a second sliding seat 53. The second reciprocating screw rod 52 and the second sliding seat 53 are adapted to form a screw rod driving assembly. The top end of the second sliding seat 53 extends to the top of the moving box 51 through the sliding groove 54 and is fixedly connected with a pushing column 55. The end of the pushing column 55 is movably sleeved into the inner cavity of the through hole 50. The side surface of the second sliding seat 53 is in close contact with the inner wall of the moving box 51. The inner wall of the moving box 51 and the second sliding seat 53 are used for limiting, so that the second sliding seat 53 can only move along the axial direction of the second reciprocating screw rod 52.

[0036] In summary, the finished product packaging device for garment processing is used. First, the stacked woven bags are placed on the placement plate 41 in the inner cavity of the bag storage box 33, so that the open end of the woven bag is in abutment with the inner wall of the bag storage box 33 away from the first photoelectric detector 39, and the two-way screw rod 35 is driven to rotate by starting the brake motor 38. The two moving blocks 36 are driven to move close to each other through the cooperation between the two-way screw rod 35 and the two moving blocks 36. The two sides of the woven bag are limited by the two limiting rods 37. At the same time, the second cylinder 40 is started to drive the placement plate 41 to move upwards until the uppermost woven bag is detected by the first photoelectric detector 39.

[0037] Then the first reduction motor 18 is started to drive a first drive roller 16 to rotate clockwise, and the first drive roller 16 and the first conveying belt 17 are matched to drive the first conveying belt 17 to rotate, and the other first drive roller 16 is used to drive the first synchronous wheel 30 to rotate, and the first synchronous wheel 30, the second synchronous wheel 29 and the synchronous belt 31 are matched to drive the transmission rod 20 and the first bevel gear 28 to rotate, and the first bevel gear 28 and the second bevel gear 27 are matched to drive the first reciprocating screw rod 21 to rotate, and the first reciprocating screw rod 21 and the first sliding seat 23 are matched to drive the first sliding seat 23, the first electric cylinder 24, the second mounting seat 25 and the second vacuum chuck group 26 to move horizontally, when the side of the first sliding seat 23 contacts the first contact sensor 32, the second vacuum chuck group 26 moves to the top of the woven bag in the inner cavity of the bag storage box 33, and the second vacuum chuck group 26 generates suction force to suck the uppermost woven bag, and after the suction, the first reciprocating screw rod 21 and the first sliding seat 23 are matched to drive the first sliding seat 23, the first electric cylinder 24, the second mounting seat 25, the second vacuum chuck group 26 and the woven bag to move reversely, when the side of the first sliding seat 23 contacts the second contact sensor 69, the first reduction motor 18 is controlled to be closed, and the suction force of the second vacuum chuck group 26 disappears, so that the sucked woven bag falls on the first conveying belt 17, and at the same time, the second air cylinder 40 is started to drive the placing plate 41 and the stacked woven bags to move upward again, when the uppermost woven bag is detected by the light beam of the first photoelectric detector 39, the second air cylinder 40 is closed, and the second reduction motor 43 is started to drive the second drive roller 42 and the second conveying belt 49 to rotate clockwise, the clothes with the packaging bag are conveyed by the second conveying belt 49, and the clothes are limited by the back plate 44 and the L-shaped limiting plate 47, and the other second drive roller 42 is used to drive the second reciprocating screw rod 52 to rotate, and the second reciprocating screw rod 52 and the second sliding seat 53 are matched to drive the second sliding seat 53 and the push column 55 to move reciprocally, the clothes moved to the end of the L-shaped limiting plate 47 are pushed out by the push column 55, so that the clothes fall on the clamping plate 67 below, so that the clothes are stacked on the clamping plate 67, when the uppermost clothes are detected by the second photoelectric detector 12 for a certain time, the double-shaft air cylinder 66 is controlled to drive the two clamping plates 67 to move close to each other, so that the stacked clothes are squeezed, the gas in the packaging bag of the clothes is discharged from the breathable hole of the packaging bag, and the stepper motor 59 is started to drive the U-shaped frame 60 and the clamping plate 67 to rotate 180 degrees, and in the process of the rotation of the U-shaped frame 60, the support box 63 and the clamping plate 67 are driven to rotate 90 degrees by the meshing transmission between the fourth bevel gear 62 and the third bevel gear 58, at this time, the other clamping plate 67 moves to the side of the clothes conveying frame 2 to continue to stack the clothes, the clamping plate 67 clamping the clothes moves to the side of the packaging conveying frame 1, and in addition, when the uppermost clothes are detected by the second photoelectric detector 12, the first reduction motor 18 is controlled to drive the first conveying belt 17 to rotate again,The woven bag under the second vacuum chuck set 26 is moved to the position between the third vacuum chuck set 8 and the first vacuum chuck set 15 by the first conveying belt 17, and the woven bag at the top of the inner cavity of the bag storage box 33 is sucked onto the first conveying belt 17 by the suction mechanism 6 again, when the woven bag moves to the top of the third vacuum chuck set 8, the third vacuum chuck set 8 is driven to generate suction force to suck the lower part of the opening of the woven bag, the first mounting seat 14 and the first vacuum chuck set 15 are driven to move downward by the first cylinder 13, so that the bottom end of the first vacuum chuck set 15 is in contact with the upper part of the opening of the woven bag, the first vacuum chuck set 15 is driven to generate suction force to suck the upper part of the opening of the woven bag, and the first mounting seat 14 and the first vacuum chuck set 15 are driven to move upward by the first cylinder 13 to reset, and the opening of the woven bag is pulled open by the first vacuum chuck set 15,

[0038] Then the third cylinder 64 is started to drive the telescopic column 65 and the clamping plate 67 clamping the clothes to extend into the woven bag with the opening, the double-shaft cylinder 66 is started to drive the two clamping plates 67 to move away from each other, so that the clothes fall into the woven bag, at this time the third cylinder 64 is started to drive the telescopic column 65 and the clamping plate 67 to move backward to reset;

[0039] Finally, when the second photoelectric detector 12 detects that the clothes stacked on the other clamping plate 67 reach a predetermined height, the suction force of the third vacuum chuck set 8 and the first vacuum chuck set 15 is disappeared first, the first conveying belt 17 is driven to rotate by the first speed reduction motor 18 to move the woven bag with the clothes, so that the woven bag under the second vacuum chuck set 26 moves to the position between the third vacuum chuck set 8 and the first vacuum chuck set 15, the opening of the next woven bag is opened by the cooperation of the third vacuum chuck set 8 and the first vacuum chuck set 15, the woven bag at the top of the inner cavity of the bag storage box 33 is sucked onto the first conveying belt 17 by the suction mechanism 6, then the double-shaft cylinder 66 is started to drive the two clamping plates 67 to clamp the clothes, the U-shaped frame 60 and the clamping plate 67 are driven to rotate 180 degrees by the stepping motor 59, so that the clamped clothes are put into the woven bag, so that the clothes can be continuously packed into the woven bag.

[0040] The above is only the preferred specific embodiment of the present application, but the protection scope of the present application is not limited to this, any person skilled in the art can make equivalent replacement or change according to the technical scheme and the inventive concept of the present application within the technical range disclosed by the present application, which should be covered in the protection scope of the present application.

Claims

1. A finished product packing device for garment processing, comprising a packing conveying frame (1) and a garment conveying frame (2), characterized in that: The top of the packing conveying frame (1) is provided with a support frame (3), the packing conveying frame (1) is provided with a first conveying mechanism (4), the packing conveying frame (1) is provided with a third vacuum chuck group (8), the support frame (3) is provided with an opening mechanism (7), the end of the packing conveying frame (1) is provided with a bag feeding mechanism (5), the support frame (3) is provided with a sucking mechanism (6), the clothing conveying frame (2) is provided with a second conveying mechanism (10), the clothing conveying frame (2) is provided with a pushing mechanism (11), the side of the packing conveying frame (1) is provided with a loading mechanism (9), and the side of the packing conveying frame (1) is provided with a second photoelectric detector (12); The first conveying mechanism (4) comprises two first driving rollers (16) rotatably connected to the inner sides of the two ends of the packing conveying frame (1) through bearings and a first speed reducer motor (18) fixedly installed on the outer side of the packing conveying frame (1), the output shaft of the first speed reducer motor (18) is connected to one end of the rotating shaft of one of the first driving rollers (16) through a shaft coupling, and a first conveying belt (17) is transmissionally connected between the two first driving rollers (16); The sucking mechanism (6) comprises a moving box (19) fixedly connected to the support frame (3) and a transmission rod (20) rotatably connected to the support frame (3) through a bearing, one end of the transmission rod (20) is fixedly sleeved with a first bevel gear (28), the other end of the transmission rod (20) is fixedly sleeved with a second synchronous wheel (29), one end of the rotating shaft of the other first driving roller (16) is fixedly sleeved with a first synchronous wheel (30), the first synchronous wheel (30) and the second synchronous wheel (29) are transmissionally connected with a synchronous belt (31), the inner cavity of the moving box (19) is rotatably connected with a first reciprocating screw rod (21) through a bearing, the end of the first reciprocating screw rod (21) is fixedly sleeved with a second bevel gear (27), the second bevel gear (27) and the first bevel gear (28) are in meshing engagement with each other, the inner cavity of the moving box (19) is fixedly sleeved with a sliding rod (22), the outer side of the first reciprocating screw rod (21) is sleeved with a first sliding seat (23), the first sliding seat (23) and the sliding rod (22) are movably sleeved, one end of the inner cavity of the moving box (19) is provided with a first contact sensor (32), the other end of the inner cavity of the moving box (19) is provided with a second contact sensor (69), the bottom surface of the first sliding seat (23) is fixedly installed with a first electric cylinder (24), the bottom end of the first electric cylinder (24) is fixedly connected with a second mounting seat (25), and the second mounting seat (25) is provided with a second vacuum chuck group (26); The loading mechanism (9) comprises a supporting seat (56) fixedly connected to the side of the packing conveying frame (1), the top surface of one end of the supporting seat (56) is fixedly connected with a supporting pipe (57), the top end of the supporting pipe (57) is fixedly sleeved with a third bevel gear (58), the bottom surface of the supporting seat (56) is fixedly installed with a stepping motor (59), the output shaft of the stepping motor (59) penetrates through the supporting pipe (57) and is fixedly connected with a U-shaped frame (60), the two sides of the U-shaped frame (60) are rotatably connected with transmission columns (61) through bearings, one end of the two transmission columns (61) is fixedly sleeved with fourth bevel gears (62), the two fourth bevel gears (62) are meshed with each other and the third bevel gear (58) respectively, the other end of the two transmission columns (61) is fixedly connected with supporting boxes (63), the inner cavities of the two supporting boxes (63) are fixedly installed with third air cylinders (64), the end portions of the two third air cylinders (64) are fixedly connected with telescopic columns (65), the end portions of the two telescopic columns (65) are fixedly installed with double-shaft air cylinders (66), the two output ends of the two double-shaft air cylinders (66) are fixedly connected with clamping plates (67), and the two clamping plates (67) are provided with baffles (68).

2. A finished garment packing apparatus for use in garment manufacturing as claimed in claim 1 wherein: The opening mechanism (7) comprises a first air cylinder (13) fixedly installed at the top of the supporting frame (3), the output end of the first air cylinder (13) is fixedly connected with a first mounting seat (14), and the first mounting seat (14) is provided with a first vacuum chuck group (15).

3. A finished garment packing apparatus for garment processing according to claim 1, wherein: The bag supplying mechanism (5) comprises a bag storage box (33) fixedly connected to the end of the packing conveying frame (1), the top end of the bag storage box (33) is provided with a first photoelectric detector (39), the bottom surface of the bag storage box (33) is provided with a moving groove (34), the inner cavity of the moving groove (34) is rotatably connected with a bidirectional screw rod (35) through a bearing, the outer sides of the two ends of the bidirectional screw rod (35) are sleeved with moving blocks (36), the two sides of the two moving blocks (36) are respectively fitted with the inner walls of the moving groove (34), the top surfaces of the two moving blocks (36) are fixedly connected with limiting rods (37), the side surface of the bag storage box (33) is fixedly installed with a clutch motor (38), the output shaft of the clutch motor (38) is connected with the ends of the bidirectional screw rod (35) through a shaft coupling, the bottom surface of the bag storage box (33) is fixedly installed with a second air cylinder (40), and the top end of the second air cylinder (40) is fixedly connected with a placing plate (41).

4. A finished garment packing apparatus for use in garment manufacturing as defined in claim 1, wherein: The second conveying mechanism (10) comprises two second driving rollers (42) rotatably connected at two ends of the inside of the garment conveying frame (2) through bearings, a second speed reducer motor (43) fixedly installed on the outside of the garment conveying frame (2), a back plate (44) and a mounting plate (45) fixedly connected to the top surface of the garment conveying frame (2), the side surface of the mounting plate (45) is fixedly installed with a second electric cylinder (46), the output end of the second electric cylinder (46) is fixedly connected with an L-shaped limiting plate (47), the L-shaped limiting plate (47) is fixedly connected with a sliding column (48), the sliding column (48) and the mounting plate (45) are movably sleeved, the two second driving rollers (42) are transmissionally connected with a second conveying belt (49), the outside of the garment conveying frame (2) is fixedly installed with the second speed reducer motor (43), the output shaft of the second speed reducer motor (43) is connected with one end of the rotating shaft of one second driving roller (42) through a shaft coupling, and the L-shaped limiting plate (47) is provided with a through hole (50).

5. A finished garment packing apparatus for use in garment manufacturing as claimed in claim 4 wherein: The pushing mechanism (11) comprises a moving box (51) fixedly connected to the outside of the garment conveying frame (2) and a second reciprocating screw rod (52) fixedly connected to one end of the rotating shaft of the other second driving roller (42), the top surface of the moving box (51) is provided with a sliding groove (54), the outside of the second reciprocating screw rod (52) is sleeved with a second sliding seat (53), the top end of the second sliding seat (53) extends to the top of the moving box (51) through the sliding groove (54) and is fixedly connected with a pushing column (55), and the end of the pushing column (55) is movably sleeved into the inner cavity of the through hole (50).

Citation Information

Patent Citations

  • Full-automatic folding and packaging equipment for garment production and processing

    CN113800031A

  • Stacking and boxing device for garment production

    CN218368577U