Cloth carrying device for garment processing

By adaptively adjusting the length of the belt, the problem of frequent position adjustments required by existing fabric handling devices when changing height is solved, thus achieving efficient and flexible fabric handling.

CN119976172BActive Publication Date: 2025-11-07SHANDONG TIANYUAN GARMENT CO LTD
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Patent Information

Application Number
CN202510208095.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-02-25
Publication Date
2025-11-07
Estimated Expiration
2045-02-25

AI Technical Summary

Technical Problem

Existing fabric handling devices require frequent adjustments to the position of the conveyor frame and loading vehicle when changing height, which is inconvenient to use.

Method used

The belt conveyor and adaptive adjustment mechanism, including telescopic rods, mounting plates, guide grooves and guide rods, are used to achieve adaptive length adjustment of the belt conveyor, ensuring that the horizontal transport distance remains constant.

Benefits of technology

It simplifies the fabric handling process, improves handling efficiency and flexibility, and avoids the need to adjust the position of other conveying devices or loading vehicles.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application is suitable for the technical field of conveying devices, and provides a cloth carrying equipment for garment processing, which comprises a bottom supporting plate, a supporting frame fixed on the bottom supporting plate, a telescopic rod fixed vertically on the bottom supporting plate, a driving assembly arranged on the bottom supporting plate and used for driving the telescopic rod to extend or retract, an installation plate II rotatably connected to the upper end of the telescopic rod, an installation plate I rotatably connected to the upper end of the supporting frame, three guide grooves I arranged on one end of the installation plate I, and three guide rods I fixed on one end of the installation plate II and respectively slidably connected in the three guide grooves I. When the carrying height of the cloth is changed, the installation plate I and the installation plate II are adaptively adjusted, the effective conveying length of the belt is adaptively adjusted, the horizontal carrying distance of the cloth is not changed, and thus the positions of other conveying devices or loading vehicles do not need to be adjusted, and the cloth carrying steps are simplified.
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Description

TECHNICAL FIELD

[0001] The present application belongs to the technical field of conveying devices, and particularly relates to a cloth carrying equipment for garment processing. BACKGROUND

[0002] In the process of garment production and processing, the cloth is rolled and packaged for transportation, and the packaged cloth needs to be carried onto the loading vehicle for stacking, or carried down from the loading vehicle, at which time the carrying equipment is used.

[0003] The existing carrying device often uses a belt conveyor, one end of which is arranged on the ground and the other end of which is stretched to the loading vehicle, and the cloth is carried onto the loading vehicle or carried down from the loading vehicle through the inclined belt conveying device. For example, the existing Chinese utility model patent (CN213864113U) discloses a cloth carrying device for garment production. When in use, the horizontal shaft is controlled to rotate by holding the rocking handle, the two worms are driven to rotate by the horizontal shaft, the two worms drive the two worm gears to rotate slowly, the two worm gears drive the two threaded rods to rotate, the two threaded rods drive the support plates on one side to move downward through the threaded cooperation with the two support plates, and the support plates on the other side are also driven to move downward, and the two support plates drive the conveying frame to rotate through the rotating cooperation with the conveying frame and the sliding plate, so that the angle of the conveying frame is adjusted.

[0004] When carrying the cloth, one end of the inclined belt conveyor is stretched to the hopper of the loading vehicle, and the other end is connected with the parallel belt conveyor. The above device adjusts the carrying height of the cloth by adjusting the angle of the conveying frame, but when the conveying frame rotates, the horizontal conveying distance will decrease with the increase of the conveying height and increase with the decrease of the conveying height. At this time, the horizontal effective conveying distance of the conveying frame changes, so the positions of the parallel belt conveyors at both ends of the conveying frame and the loading vehicle need to be adjusted. Therefore, with the change of the cloth carrying height, the positions of the conveying frame and the parallel belt conveyors and the loading vehicle need to be adjusted constantly, which makes the use of the cloth carrying device more troublesome and inconvenient. SUMMARY

[0005] The purpose of the embodiment of the present application is to provide a cloth carrying equipment for garment processing, which aims to solve the problem that the positions of the conveying frame and the parallel belt conveyors and the loading vehicle need to be adjusted constantly with the change of the cloth carrying height, which makes the use of the cloth carrying device more troublesome.

[0006] The application is achieved as follows: a cloth conveying device for garment processing, comprising a bottom support plate, a support frame fixed on the bottom support plate, a telescopic rod fixed vertically on the bottom support plate, a driving assembly arranged on the bottom support plate and used for driving the telescopic rod to extend or retract, an installation plate II rotatably connected to the upper end of the telescopic rod, an installation plate I rotatably connected to the upper end of the support frame, three guide grooves I arranged on one end of the installation plate I, three guide rods I fixed on one end of the installation plate II and slidably connected in the three guide grooves I respectively, a driving roller I rotatably connected to the other end of the installation plate I, a motor fixed on the side wall of the telescopic rod and fixedly connected to the driving roller at the rotating end, a driving roller rotatably connected to the other end of the installation plate II, and a belt-shaped belt rotatably connected to the driving roller I, the driving roller and the driving roller II.

[0007] In a further technical scheme, the bottom support plate comprises a bottom plate I and a bottom plate II, the support frame is fixed on the bottom plate I, the telescopic rod is fixed on the bottom plate II, one end of the bottom plate I is provided with a guide groove II, one end of the bottom plate II is fixed with a guide rod II, the guide rod II is slidably connected in the guide groove II, and a fixing bolt is threadedly connected to the side wall of the bottom plate I and abuts against the side wall of the guide rod II.

[0008] In a further technical scheme, the telescopic rod comprises a fixing sleeve fixed on the bottom plate II, a sliding sleeve slidably connected to the fixing sleeve, and a sliding frame I slidably connected to the sliding sleeve.

[0009] In a further technical scheme, the driving assembly comprises a sliding groove arranged at the upper end of the bottom plate II, a sliding block I slidably connected in the sliding groove, a connecting rod rotatably connected to the sliding block I, a thread rod rotatably connected in the sliding groove and threadedly connected with the sliding block I, and a hand wheel fixed at one end of the thread rod and penetrating through the bottom plate II.

[0010] In a further technical scheme, the belt winding and unwinding mechanism comprises a driving roller III rotatably connected to the installation plate II, a guide sliding groove I arranged at the lower end of the installation plate I, a sliding frame II slidably connected in the guide sliding groove I, a driving roller IV rotatably connected to the sliding frame II, a driving assembly and a tensioning assembly arranged on the installation plate I, the belt-shaped belt being in driving cooperation with the driving roller I, the driving roller, the driving roller III, the driving roller II and the driving roller IV in sequence, the tensioning assembly being used for tensioning the belt-shaped belt, and the driving assembly driving the sliding frame II and the driving roller IV to move reversely at half of the moving speed of the installation plate II when the installation plate II moves relative to the installation plate I.

[0011] Further technical solutions, the transmission assembly includes a rack fixed below the guide rod, and the rotating shaft is rotatably connected below the mounting plate, the rotating shaft is fixed with a gear and a synchronous pulley one, the gear tooth line diameter is twice the synchronous pulley one tooth line diameter, the gear is engaged with the rack, the mounting plate is rotatably connected with a synchronous pulley two, the synchronous pulley one and the synchronous pulley two are driven by the synchronous belt, and one side of the synchronous belt is fixed on the sliding frame two.

[0012] Further technical solutions, the tensioning assembly includes a guide sliding groove two arranged on the mounting plate one, the sliding block two is slidably connected in the guide sliding groove two, the transmission drum two is rotatably connected on the sliding block two, and the guide sliding groove two is provided with a compression spring.

[0013] Compared with the prior art, the beneficial effects of the present application are:

[0014] 1. When the carrying height of the cloth is changed, the mounting plate one and the mounting plate two are adaptively adjusted, the effective conveying length of the belt-shaped belt is adaptively adjusted, the horizontal conveying distance of the cloth is not changed, so that the positions of other conveying devices or loading vehicles do not need to be adjusted, the steps of cloth conveying are simplified, and the efficiency of cloth conveying is improved.

[0015] 2. The relative positions of the bottom plate one and the bottom plate two are adjusted, then the fixing bolts are tightened, the horizontal conveying distance of the cloth can be adjusted, and then the flexibility of cloth conveying is improved.

[0016] 3. Under the action of the compression spring elastic force, the transmission drum two cooperates with the transmission drum one, the driving drum, the transmission drum three and the transmission drum four to tension the belt-shaped belt. BRIEF DESCRIPTION OF DRAWINGS

[0017] Figure 1 A structural schematic view of a cloth conveying equipment for garment processing is provided.

[0018] Figure 2 A structural schematic view of a cloth conveying equipment for garment processing is provided. Figure 1 A structural schematic view of an inclined angle from below is provided.

[0019] Figure 3 A structural schematic view of a cloth conveying equipment for garment processing is provided. Figure 1 A structural schematic view of a cloth conveying equipment for garment processing is provided.

[0020] Figure 4 A structural schematic view of a cloth conveying equipment for garment processing is provided. Figure 3 A structural schematic view of a cloth conveying equipment for garment processing is provided.

[0021] Figure 5 A structural schematic view of a cloth conveying equipment for garment processing is provided. Figure 4Structure schematic view of upward tilt angle;

[0022] Figure 6 Structure schematic view of the provided Figure 3 Structure schematic view of the provided

[0023] Figure 7 Structure schematic view of the provided Figure 5 Structure schematic view of the provided

[0024] Figure 8 Structure schematic view of the provided Figure 5 Structure schematic view of the provided

[0025] In the drawings: mounting plate one 101, mounting plate two 102, guide groove one 103, guide rod one 104, transmission roller one 105, drive roller 106, belt 107, motor 108, support frame 109, telescopic rod 2, fixed sleeve 201, sliding sleeve 202, sliding frame one 203, bottom support plate 3, bottom plate one 301, bottom plate two 302, guide groove two 303, guide rod two 304, fixed bolt 305, drive assembly 4, sliding groove 401, sliding block one 402, connecting rod 403, lead screw 404, hand wheel 405, belt winding and unwinding mechanism 5, transmission roller two 501, transmission roller three 502, transmission roller four 503, guide sliding groove one 504, sliding frame two 505, transmission assembly 6, rotating shaft 601, rack 602, gear 603, synchronous pulley one 604, synchronous belt 605, synchronous pulley two 606, tensioning assembly 7, guide sliding groove two 701, sliding block two 702, compression spring 703. DETAILED DESCRIPTION

[0026] In order to make the purpose, technical scheme and advantages of the present application clearer, the present application is further described in detail below in combination with the drawings and examples. It should be understood that the specific examples described herein are only used to explain the present application and do not limit the present application.

[0027] The specific implementation of the present application is described in detail below in combination with specific examples.

[0028] As Figures 1-7As shown, the clothes processing cloth carrying equipment provided by the embodiment of the application comprises a bottom support plate 3, a support frame 109 fixed on the bottom support plate 3, a telescopic rod 2 vertically fixed on the bottom support plate 3, a driving assembly 4 arranged on the bottom support plate 3 and used for driving the telescopic rod 2 to extend and retract, an installation plate two 102 rotatably connected to the upper end of the telescopic rod 2, an installation plate one 101 rotatably connected to the upper end of the support frame 109, three guide grooves one 103 arranged on one end of the installation plate one 101, three guide rods one 104 fixed on one end of the installation plate two 102, the three guide rods one 104 being slidably connected into the three guide grooves one 103 respectively, a driving roller one 105 rotatably connected to the other end of the installation plate one 101, a motor 108 fixed on the side wall of the telescopic rod 2, the rotating end of the motor 108 being fixedly connected with a driving roller 106, the driving roller 106 being rotatably connected to the other end of the installation plate two 102, and a belt winding and unwinding mechanism 5 arranged on the lower end of the installation plate one 101 and used for winding and unwinding the belt-shaped belt 107.

[0029] In the embodiment of the application, when the cloth is carried, the motor 108 drives the driving roller 106 to rotate, the driving roller 106 drives the belt-shaped belt 107 to move in cooperation with the driving roller one 105, the driving roller two 501, the driving roller three 502 and the driving roller four 503, and the belt-shaped belt 107 carries the cloth. When the carrying height of the cloth needs to be increased, the driving assembly 4 drives the telescopic rod 2 to extend, the telescopic rod 2 drives one end of the installation plate two 102 to move upward, the installation plate two 102 drives the guide rod one 104 to move in the guide groove one 103, and the installation plate two 102 drives the installation plate one 101 to rotate. When the installation plate one 101 and the installation plate two 102 rotate upward, the total length of the installation plate one 101 and the installation plate two 102 increases. At this time, the belt winding and unwinding mechanism 5 releases the belt-shaped belt 107, thereby increasing the conveying length of the belt-shaped belt 107, and thereby the carrying height of the cloth is changed without changing the horizontal carrying distance of the cloth, so that the position of other conveying devices or loading vehicles does not need to be adjusted, the cloth carrying steps are simplified, and the cloth carrying efficiency is improved.

[0030] As shown in the drawings, Figure 1 and Figure 2As shown in the figure, as a preferred embodiment of the present application, the bottom support plate 3 comprises a bottom plate one 301 and a bottom plate two 302, the support frame 109 is fixed on the bottom plate one 301, the telescopic rod 2 is fixed on the bottom plate two 302, one end of the bottom plate one 301 is provided with a guide slot two 303, one end of the bottom plate two 302 is fixed with a guide rod two 304, the guide rod two 304 is slidingly connected in the guide slot two 303, and the side wall of the bottom plate one 301 is threadedly connected with a fixing bolt 305, and the end of the fixing bolt 305 abuts against the side wall of the guide rod two 304.

[0031] In the embodiment of the present application, the fixing bolt 305 is loosened, the relative positions of the bottom plate one 301 and the bottom plate two 302 are adjusted, and then the fixing bolt 305 is tightened, so that the horizontal conveying distance of the cloth can be adjusted, and the flexibility of the cloth conveying is improved.

[0032] As shown in the figure, Figure 1 and Figure 2 As shown in the figure, as a preferred embodiment of the present application, the telescopic rod 2 comprises a fixing sleeve 201 fixed on the bottom plate two 302, a sliding sleeve 202 slidingly connected on the fixing sleeve 201, a sliding frame one 203 slidingly connected on the sliding sleeve 202, and the mounting plate two 102 is rotationally connected on the sliding frame one 203; the driving assembly 4 comprises a sliding slot 401 arranged on the upper end of the bottom plate two 302, a sliding block one 402 slidingly connected in the sliding slot 401, a connecting rod 403 rotationally connected on the sliding block one 402, and the end of the connecting rod 403 is rotationally connected on the side wall of the sliding frame one 203, a lead screw 404 rotationally connected in the sliding slot 401, the lead screw 404 is threadedly connected with the sliding block one 402, and one end of the lead screw 404 penetrates through the bottom plate two 302 and is fixed with a hand wheel 405.

[0033] In the embodiment of the present application, the hand wheel 405 is rotated, the hand wheel 405 drives the lead screw 404 to rotate, under the guidance of the sliding slot 401, the rotating lead screw 404 drives the sliding block one 402 to move through the threaded transmission, under the guidance of the fixing sleeve 201 and the sliding sleeve 202, the sliding block one 402 drives the sliding frame one 203 to move up and down through the connecting rod 403.

[0034] As shown in the figure, Figures 1-8As shown, as a preferred embodiment of the present application, the belt winding and unwinding mechanism 5 comprises a transmission drum three 502 rotatably connected to the mounting plate two 102, the mounting plate one 101 is provided with a guide chute one 504 at the lower end, the guide chute one 504 is slidably connected with a sliding frame two 505, the sliding frame two 505 is rotatably connected with a transmission drum four 503, the mounting plate one 101 is provided with a transmission assembly 6 and a tensioning assembly 7, the tensioning assembly 7 is rotatably connected with a transmission drum two 501, the belt-shaped belt 107 is in transmission cooperation with the transmission drum one 105, the driving drum 106, the transmission drum three 502, the transmission drum two 501 and the transmission drum four 503 in turn, the tensioning assembly 7 is used for tensioning the belt-shaped belt 107, when the mounting plate two 102 moves relative to the mounting plate one 101, the transmission assembly 6 drives the sliding frame two 505 and the transmission drum four 503 to move reversely at half of the moving speed of the mounting plate two 102; the transmission assembly 6 comprises a rack 602 fixed at the lower end of the guide rod one 104, and a rotating shaft 601 rotatably connected to the lower end of the mounting plate one 101, the rotating shaft 601 is fixed with a gear 603 and a synchronous pulley one 604, the diameter of the tooth line of the gear 603 is twice that of the tooth line of the synchronous pulley one 604, the gear 603 is in meshing with the rack 602, the lower end of the mounting plate one 101 is rotatably connected with a synchronous pulley two 606, the synchronous pulley one 604 and the synchronous pulley two 606 are in transmission cooperation through a synchronous belt 605, one side of the synchronous belt 605 is fixed on the sliding frame two 505.

[0035] In the embodiment of the present application, when the mounting plate one 101 and the mounting plate two 102 move reversely, the mounting plate one 101 drives the rotating shaft 601 and the gear 603 to move, the mounting plate two 102 drives the guide rod one 104 and the rack 602 to move, thereby making the rack 602 and the gear 603 move reversely, the rack 602 drives the gear 603 to rotate, the gear 603 drives the rotating shaft 601 to rotate, the rotating shaft 601 drives the synchronous pulley one 604 to rotate, the synchronous pulley one 604 cooperates with the synchronous pulley two 606 to drive the synchronous belt 605 to move, the moving speed of the rack 602 is twice that of the synchronous belt 605, under the guidance of the guide chute one 504, the synchronous belt 605 drives the sliding frame two 505 to move, the sliding frame two 505 drives the transmission drum four 503 to move, thereby reducing the distance between the transmission drum four 503 and the transmission drum one 105, so as to release the belt-shaped belt 107, increase the effective conveying length of the belt-shaped belt 107, the reduced distance between the transmission drum four 503 and the transmission drum one 105 is half of the distance between the mounting plate one 101 and the mounting plate two 102, thereby making the release length of the belt-shaped belt 107 consistent with the length change of the distance between the mounting plate one 101 and the mounting plate two 102;

[0036] When the mounting plate one 101 and the mounting plate two 102 move towards each other, the mounting plate one 101 drives the rotating shaft 601 and the gear 603 to move, the mounting plate two 102 drives the guide rod one 104 and the rack 602 to move, and then the rack 602 and the gear 603 move towards each other, the rack 602 drives the gear 603 to reverse, the gear 603 drives the rotating shaft 601 to reverse, the rotating shaft 601 drives the synchronous pulley one 604 to reverse, the synchronous pulley one 604 drives the synchronous belt 605 to move reversely in cooperation with the synchronous pulley two 606, the moving speed of the rack 602 is twice the moving speed of the synchronous belt 605, under the guidance of the guide chute one 504, the synchronous belt 605 drives the sliding frame two 505 to move reversely, the sliding frame two 505 drives the transmission drum four 503 to move reversely, and then the distance between the transmission drum four 503 and the transmission drum one 105 is increased, so that the belt-shaped belt 107 is accommodated, and the effective conveying length of the belt-shaped belt 107 is reduced, the increased distance between the transmission drum four 503 and the transmission drum one 105 is half the distance when the mounting plate one 101 and the mounting plate two 102 move towards each other, and then the accommodation length of the belt-shaped belt 107 is consistent with the length change of the distance between the mounting plate one 101 and the mounting plate two 102, and then the effective conveying length of the belt-shaped belt 107 is adaptively adjusted when the mounting plate one 101 and the mounting plate two 102 move relatively.

[0037] As shown in Figures 5-8 As a preferred embodiment of the present application, the tensioning assembly 7 comprises a guide chute two 701 arranged on the mounting plate one 101, a sliding block two 702 is slidably connected in the guide chute two 701, the transmission drum two 501 is rotationally connected on the sliding block two 702, and a compression spring 703 is arranged in the guide chute two 701.

[0038] In the embodiment of the present application, under the guidance of the guide chute two 701, the compression spring 703 pushes the sliding block two 702 to move, the sliding block two 702 drives the transmission drum two 501 to move away from the mounting plate two 102, and then the transmission drum two 501 cooperates with the transmission drum one 105, the drive drum 106, the transmission drum three 502 and the transmission drum four 503 to tension the belt-shaped belt 107.

[0039] In the above embodiment of the present application, a cloth conveying device for garment processing is provided. When conveying cloth, the motor 108 drives the driving roller 106 to rotate, and the driving roller 106 drives the belt-shaped belt 107 to move through the cooperation of the transmission roller one 105, the transmission roller two 501, the transmission roller three 502, and the transmission roller four 503, and the belt-shaped belt 107 conveys the cloth. When the conveying height of the cloth needs to be increased, the hand wheel 405 is rotated, the hand wheel 405 drives the screw rod 404 to rotate, and under the guidance of the sliding groove 401, the rotating screw rod 404 drives the sliding block one 402 to move through threaded transmission, under the guidance of the fixed sleeve 201 and the sliding sleeve 202, the sliding block one 402 drives the sliding frame one 203 to move upwards through the connecting rod 403, the sliding frame one 203 drives one end of the mounting plate two 102 to move upwards, the mounting plate two 102 drives the guide rod one 104 to move in the guide groove one 103, and the mounting plate two 102 drives the mounting plate one 101 to rotate. When the mounting plate one 101 and the mounting plate two 102 rotate upwards, the mounting plate one 101 and the mounting plate two 102 move in opposite directions, the total length of the mounting plate one 101 and the mounting plate two 102 increases, the mounting plate one 101 drives the rotating shaft 601 and the gear 603 to move, the mounting plate two 102 drives the guide rod one 104 and the rack 602 to move, and the rack 602 and the gear 603 move in opposite directions, the rack 602 drives the gear 603 to rotate, the gear 603 drives the rotating shaft 601 to rotate, the rotating shaft 601 drives the synchronous pulley one 604 to rotate, the synchronous pulley one 604 drives the synchronous belt 605 to move through the cooperation of the synchronous pulley two 606, the moving speed of the rack 602 is twice the moving speed of the synchronous belt 605, under the guidance of the guide sliding groove one 504, the synchronous belt 605 drives the sliding frame two 505 to move, the sliding frame two 505 drives the transmission roller four 503 to move, and the distance between the transmission roller four 503 and the transmission roller one 105 is reduced, thereby releasing the belt-shaped belt 107, increasing the effective conveying length of the belt-shaped belt 107, and the reduced distance between the transmission roller four 503 and the transmission roller one 105 is half the distance between the mounting plate one 101 and the mounting plate two 102, thereby making the release length of the belt-shaped belt 107 consistent with the length of the distance change between the mounting plate one 101 and the mounting plate two 102, and thereby changing the conveying height of the cloth without changing the horizontal conveying distance of the cloth, so that the positions of other conveying devices or loading vehicles do not need to be adjusted, the cloth conveying steps are simplified, and the cloth conveying efficiency is improved.

[0040] The above only describes the preferred embodiments of the present application and is not intended to limit the present application. Any modification, equivalent replacement, and improvement made within the spirit and principle of the present application shall be included in the protection scope of the present application.

Claims

1. A cloth carrying device for garment processing, comprising a bottom support plate (3) and a support frame (109) fixed on the bottom support plate (3), characterized in that, Also include: The bottom support plate (3) is vertically fixed telescopic rod (2), the bottom support plate (3) is provided with drive assembly (4), the drive assembly (4) is used to drive telescopic rod (2) telescopic; The upper end of the telescopic rod (2) is rotatably connected with a mounting plate two (102), the upper end of the support frame (109) is rotatably connected with a mounting plate one (101), one end of the mounting plate one (101) is provided with three guide grooves one (103), one end of the mounting plate two (102) is fixedly provided with three guide rods one (104), and the three guide rods one (104) are respectively slidably connected in the three guide grooves one (103); The other end of the mounting plate one (101) is rotatably connected with a transmission drum one (105), the side wall of the telescopic rod (2) is fixedly provided with a motor (108), and the rotating end of the motor (108) is fixedly connected with a drive drum (106); The other end of the mounting plate two (102) is rotatably connected with the drive drum (106), and the transmission drum one (105) and the drive drum (106) are drivingly connected with a belt-shaped belt (107); The lower end of the mounting plate one (101) is provided with a belt winding and unwinding mechanism (5), and the belt winding and unwinding mechanism (5) is used for winding and unwinding the belt-shaped belt (107); The belt winding and unwinding mechanism (5) comprises a transmission drum three (502) rotatably connected to the mounting plate two (102), a guide sliding groove one (504) provided at the lower end of the mounting plate one (101), a sliding frame two (505) slidably connected in the guide sliding groove one (504), a transmission drum four (503) rotatably connected to the sliding frame two (505), and a transmission assembly (6) and a tensioning assembly (7) provided on the mounting plate one (101), wherein the tensioning assembly (7) is rotatably connected with a transmission drum two (501), the belt-shaped belt (107) is drivingly connected with the transmission drum one (105), the drive drum (106), the transmission drum three (502), the transmission drum two (501) and the transmission drum four (503) in sequence, the tensioning assembly (7) is used for tensioning the belt-shaped belt (107), when the mounting plate two (102) moves relative to the mounting plate one (101), the transmission assembly (6) drives the sliding frame two (505) and the transmission drum four (503) to move in the opposite direction at half the speed of the mounting plate two (102); The transmission assembly (6) comprises a rack (602) fixedly connected to the lower end of the guide rod one (104), and a rotating shaft (601) rotatably connected to the lower end of the mounting plate one (101), the rotating shaft (601) is fixedly provided with a gear (603) and a synchronous pulley one (604), the gear (603) has a diameter twice that of the synchronous pulley one (604), the gear (603) is in meshing engagement with the rack (602), the mounting plate one (101) is rotatably connected with a synchronous pulley two (606), the synchronous pulley one (604) and the synchronous pulley two (606) are drivingly connected through a synchronous belt (605), and one side of the synchronous belt (605) is fixedly connected to the sliding frame two (505). The tensioning assembly (7) comprises a guide sliding groove two (701) arranged on the mounting plate one (101), a sliding block two (702) slidably connected in the guide sliding groove two (701), and the transmission drum two (501) is rotatably connected on the sliding block two (702), and the guide sliding groove two (701) is provided with a compression spring (703).

2. The garment processing fabric handling apparatus of claim 1, wherein, The bottom support plate (3) comprises a bottom plate one (301) and a bottom plate two (302), the support frame (109) is fixed on the bottom plate one (301), the telescopic rod (2) is fixed on the bottom plate two (302), one end of the bottom plate one (301) is provided with a guide groove two (303), one end of the bottom plate two (302) is fixedly connected with a guide rod two (304), the guide rod two (304) is slidably connected in the guide groove two (303), and the fixed bolt (305) is threadedly connected on the side wall of the bottom plate one (301), and the end of the fixed bolt (305) abuts against the side wall of the guide rod two (304).

3. The garment processing fabric handling apparatus of claim 2, wherein, The telescopic rod (2) comprises a fixed sleeve (201), the fixed sleeve (201) is fixed on the bottom plate two (302), the fixed sleeve (201) is slidably connected with a sliding sleeve (202), the sliding sleeve (202) is slidably connected with a sliding frame one (203), and the mounting plate two (102) is rotatably connected on the sliding frame one (203).

4. The garment processing fabric handling apparatus of claim 3, wherein, The driving assembly (4) comprises a sliding groove (401) arranged on the upper end of the bottom plate two (302), a sliding block one (402) slidably connected in the sliding groove (401), a connecting rod (403) rotatably connected on the sliding block one (402), and the end of the connecting rod (403) is rotatably connected on the side wall of the sliding frame one (203), a lead screw (404) rotatably connected in the sliding groove (401), the lead screw (404) is threadedly connected with the sliding block one (402), and one end of the lead screw (404) penetrates through the bottom plate two (302) and is fixedly connected with a hand wheel (405).

Citation Information

Patent Citations

  • Cloth carrying device for garment production

    CN213864113U

  • Telescopic belt conveyor

    CN104495209A

  • Length-controllable telescopic belt conveyor

    CN213325108U