A cutting machine for garment processing

By designing foldable movable panels and support components, the problem of large space occupation of the cutting machine is solved, achieving stable support during cutting and space saving when idle, and facilitating worker passage.

CN117802765BActive Publication Date: 2025-12-05ZHEJIANG YIWEI CLOTHING CO LTD
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Patent Information

Application Number
CN202410042774.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-01-11
Publication Date
2025-12-05
Estimated Expiration
2044-01-11

AI Technical Summary

Technical Problem

The existing cutting machine takes up a lot of space when not in use, which affects the passage of workers.

Method used

A foldable movable board and support assembly were designed. The movable board supports the fabric when the cutting station is in use and can be folded and stored when not in use. The support board is fixed by limiting parts and magnetic parts to reduce the space occupied.

Benefits of technology

It provides stable support during cutting and significantly reduces space occupation when not in use, making it easy for workers to pass through.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application relates to the technical field of garment processing equipment and discloses a cutting machine for garment processing, which comprises a cutting machine body, the cutting machine body comprises a rack, an operation platform arranged on the rack and used for placing cloth, a cutting mechanism arranged on the rack and used for cutting the cloth, the operation platform comprises a fixed plate fixedly arranged on the rack and a movable plate rotatably arranged on one side of the fixed plate, the movable plate can be rotated to a cutting station flush with the fixed plate and a storage station folded on the rack, and the cutting mechanism is located on one side of the rack close to the fixed plate; a supporting assembly is rotatably arranged on the movable plate, and when the movable plate is in the cutting station, the supporting assembly is abutted and arranged between the movable plate and the ground. When the cutting machine body is not used, the movable plate can be folded on the rack, so that the occupied space of the operation platform is reduced, and workers can conveniently pass through the workshop.
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Description

TECHNICAL FIELD

[0001] The application relates to the technical field of garment processing equipment, in particular to a cutting machine for garment processing. BACKGROUND

[0002] The cutting machine refers to equipment for cutting and punching cloth into a required shape, and is widely applied to the production and processing of garments such as suits and shirts.

[0003] In the related art, a patent with the publication number CN212426519U discloses a belt cutter, which comprises a rack and an operation platform horizontally arranged on the rack. The rack is provided with a driving wheel below the operation platform, a first driven wheel and a second driven wheel above the operation platform. The rack is also provided with a driving assembly for driving the driving wheel to rotate. The driving wheel, the first driven wheel and the second driven wheel are externally tensioned with a belt cutter which is connected at the head and tail and vertically passes through the operation platform. The belt cutter is externally vertically sleeved with a first sleeve for limiting the movement of the belt cutter in the horizontal direction. The top end of the first sleeve is fixedly connected with the rack, and the bottom end leaves a gap between the operation platform for the cloth to pass through. The belt cutter can effectively limit the deviation of the belt cutter and improve the cutting accuracy during use.

[0004] However, the operation platform of the above-mentioned belt cutter can only be laid flat when not in use, especially in a factory building with limited space and a large amount of goods stacked, which has the defect of occupying a large space and easily affecting the passage of workers, and needs to be improved. SUMMARY

[0005] In order to reduce the occupied space of the cutting machine body when not in use and facilitate the passage of workers in the factory building, the application provides a cutting machine for garment processing.

[0006] The cutting machine for garment processing provided by the application adopts the following technical scheme:

[0007] A cutting machine for garment processing comprises a cutting machine body, the cutting machine body comprises a rack, an operation platform arranged on the rack for placing cloth, and a cutting mechanism arranged on the rack for cutting cloth. The operation platform comprises a fixed plate fixedly arranged on the rack and a movable plate rotatably arranged on one side of the fixed plate. The movable plate can be rotated to a cutting station flush with the fixed plate and a storage station folded on the rack. The cutting mechanism is located on the side of the rack close to the fixed plate. A supporting assembly is rotatably arranged on the movable plate. When the movable plate is in the cutting station, the supporting assembly is abutted between the movable plate and the ground.

[0008] By adopting the technical scheme, when the cutting machine body is working, the movable plate is at the cutting station, the cloth is placed on the operation platform composed of the fixed plate and the movable plate, the supporting assembly abuts against the lower side of the movable plate, and the movable plate is supported, so that the movable plate is not easy to be inclined and tilted. When the cutting machine body is idle, the movable plate is turned to the storage station, and the occupied space of the operation platform can be greatly reduced, so that the pedestrian passage of the factory building is widened, and workers can pass through the factory building conveniently.

[0009] Optionally, the supporting assembly comprises a supporting plate and support plates rotatably connected to the two sides of the supporting plate respectively, the supporting plate is rotatably connected to the movable plate through a rotating shaft, and the supporting plate is provided with support grooves for the support plates to rotatably extend into, a plurality of sets of limiting pieces are detachably connected between the two support plates, and the limiting pieces can lock the support plates at positions where the support plates are retracted into the support grooves or at positions where the support plates extend out of the support grooves.

[0010] By adopting the technical scheme, when the cutting machine body is working, the movable plate is at the cutting station, the movable plate is at the cutting station, the movable plate is at the cutting station, and the movable plate is at the cutting station.

[0011] When the cutting machine body is not used, the support plates can be folded and stored in the support grooves, and the supporting plate can be folded and stored on the movable plate, which helps to further reduce the occupied space of the supporting assembly. During the storage process, the limiting pieces can lock the support plates at the positions where the support plates are retracted into the support grooves, so that the support plates do not move randomly during the rotation of the supporting plate. The supporting assembly has good integrity.

[0012] Optionally, the limiting piece comprises a telescopic rod and limiting columns arranged at the two ends of the telescopic rod respectively, the support plate is provided with limiting grooves for the limiting columns to insert, the telescopic rod comprises a connecting rod fixed to one of the limiting columns and a connecting stud fixed to the other limiting column, and the connecting rod is provided with a connecting screw hole threadedly matched with the connecting stud.

[0013] By adopting the technical scheme, when the cutting machine body is working, the movable plate is at the cutting station, the movable plate is at the cutting station, the movable plate is at the cutting station, and the movable plate is at the cutting station.

[0014] Optionally, the supporting plate is provided with a first clearance slot and a second clearance slot for the limiting member to extend into, the second clearance slot is located on the side of the supporting slot away from the rotating shaft, and the first clearance slot is provided with a through hole for the limiting column to extend into between the first clearance slot and the adjacent supporting slot.

[0015] By using the above technical scheme, when the supporting plate is turned into the supporting slot, the limiting member is located in the first clearance slot, and the limiting column is arranged in the through hole and the limiting slot; when the supporting plate is turned out of the supporting slot, the limiting member is located in the second clearance slot, and the limiting column is directly inserted into the limiting slot. The first clearance slot and the second clearance slot not only provide a clearance space for the limiting member to be embedded, but also make the limiting member not easy to move relative to the supporting plate, which helps to further improve the locking effect of the limiting member on the supporting plate.

[0016] Optionally, the movable plate is provided with a mounting slot for the supporting plate to turn into, and the movable plate is connected with a stopper for preventing the supporting plate from turning out of the mounting slot, the stopper comprises a stopper block slidingly connected to the movable plate, a stopper spring for driving the stopper block to move towards the side close to the mounting slot, and a guide inclined surface provided on the stopper block for guiding the supporting plate to the mounting slot; when the supporting plate turns into the mounting slot, the stopper block abuts against the side of the supporting plate facing the opening of the mounting slot.

[0017] By using the above technical scheme, during the process of the supporting plate turning into the mounting slot, the guide inclined surface will be in contact with the supporting plate, so that the supporting plate abuts against the stopper block and gradually enters the mounting slot. After the supporting plate is separated from the guide inclined surface, the stopper spring drives the stopper block to move towards the side close to the mounting slot, so that the stopper block abuts against the side of the supporting plate facing the opening of the mounting slot, so as to prevent the supporting plate from moving out of the mounting slot, thereby realizing the relative fixation of the supporting plate and the movable plate in the storage state, and the structure is simple and convenient to operate.

[0018] Optionally, the side wall of the supporting plate away from the rotating shaft is provided with a positioning slot, a positioning plate is slidingly arranged in the positioning slot, a positioning spring is connected between the positioning plate and the slot wall away from the opening of the positioning slot, and a locking slot is formed in the slot wall of the mounting slot away from the rotating shaft; when the supporting plate turns into the mounting slot, the positioning plate can extend into the locking slot under the action of the positioning spring, and the movable plate is connected with an unlocking member for pushing the positioning plate away from the locking slot.

[0019] By using the above technical scheme, after the supporting plate turns into the mounting slot, the positioning plate will extend into the locking slot under the action of the positioning spring, thereby further preventing the supporting plate from moving out of the mounting slot, and the relative stability of the supporting plate and the movable plate is high. When it is needed to turn the supporting plate out of the mounting slot, the operator can use the unlocking member to push the positioning plate away from the locking slot, so as to release the limiting of the positioning plate on the supporting plate.

[0020] Optionally, the unlocking member comprises a push block slidingly arranged in the locking slot, a push rod fixedly connected to the push block, a push hole communicated with the locking slot is arranged on the movable plate, and the push rod slidingly penetrates through the push hole and has an end exposed outside the movable plate.

[0021] By adopting the above technical scheme, when the positioning plate needs to be released from the limiting of the supporting plate, the push rod is only needed to be moved towards the side close to the supporting plate, and the push block can push the positioning plate out of the locking slot. The above unlocking method can be operated outside the movable plate, and the structure is simple and the operation is convenient.

[0022] Optionally, a driving rack slidingly connected to the movable plate is fixed on the push block, a driven rack slidingly connected to the movable plate is fixed on the stop block, the driving rack and the driven rack are parallel to the moving direction of the push rod, and a linkage gear is engaged between the driving rack and the driven rack, and the linkage gear is rotationally arranged on the movable plate.

[0023] By adopting the above technical scheme, when the push block moves towards the positioning plate, the driving rack moves synchronously, the linkage gear rotates circumferentially, the driven rack moves in the direction opposite to the push block, and then the stop block moves out of the opening of the mounting slot and releases the limiting of the supporting plate. When the supporting plate is unlocked, only one operation of moving the push rod is needed, and the limiting of the supporting plate by the stop block and the positioning plate is simultaneously released, the operation procedure is simple, and the unlocking efficiency is high.

[0024] Optionally, a reset torsional spring for driving the supporting plate to rotate out of the mounting slot is connected to the rotating shaft, an elastic material clamping block is arranged on the supporting assembly, and a clamping groove matched with the clamping block is arranged on the rack, and the clamping block and the clamping groove are matched with each other when the movable plate is in the storage station.

[0025] By adopting the above technical scheme, after the supporting plate is unlocked, the elastic force of the reset torsional spring can quickly push the supporting plate out of the mounting slot, thereby saving the operation procedure of manually prying out the supporting plate, and the operation is more convenient and fast. The clamping block and the clamping groove are matched with each other, which helps to improve the stability of the movable plate when it is stored.

[0026] Optionally, a first magnetic member is arranged at one end of the movable plate close to the fixed plate, a second magnetic member is arranged at one end of the fixed plate close to the movable plate, and the first magnetic member and the second magnetic member are attracted to each other when the movable plate is in the cutting station.

[0027] By adopting the above technical scheme, the first magnetic member and the second magnetic member are matched with each other, so that the movable plate can be preliminarily fixed after being rotated to the cutting station, thereby facilitating the subsequent operation of the supporting assembly, and the position of the movable plate does not need to be synchronously controlled during the operation, which is convenient and fast.

[0028] In summary, the present application has at least one of the following beneficial technical effects:

[0029] 1. When the cutting machine body is idle, the movable plate can be turned to the folding storage position of the frame, thereby reducing the occupied space of the operation platform and facilitating the passage of workers;

[0030] 2. When the movable plate is in the cutting position, the support plate abuts between the supporting plate and the ground, serving as a support for the supporting plate, which helps to improve the stability of the movable plate; the limiting column is inserted into the limiting groove, so that the support plate is not easy to rotate relative to the supporting plate, and the support effect is good;

[0031] 3. When the movable plate is in the storage position, the supporting plate is located in the mounting groove, and the positioning plate and the stop block can generate multiple limiting on the supporting plate, so that the supporting plate is not easy to turn out of the mounting groove; when unlocking the supporting plate, only the movement of the lever is needed, which can synchronously control the positioning plate to move out of the locking groove and the stop block to move out of the opening of the mounting groove, so that the operation is simple and the unlocking efficiency is high. BRIEF DESCRIPTION OF DRAWINGS

[0032] Figure 1 is a structural schematic view of the embodiment of the present application when the movable plate is in the cutting position.

[0033] Figure 2 is a structural schematic view of the embodiment of the present application when the movable plate is in the storage position.

[0034] Figure 3 is a structural schematic view of the embodiment of the present application when the supporting plate turns out of the mounting groove.

[0035] Figure 4 is a structural schematic view of the supporting assembly in the embodiment of the present application.

[0036] Figure 5 is a cross-sectional schematic view of the embodiment of the present application when the supporting plate turns out of the mounting groove.

[0037] Figure 6 is Figure 5 an enlarged schematic view of position A in

[0038] Figure 7 is a cross-sectional schematic view of the embodiment of the present application when the supporting plate turns into the mounting groove.

[0039] Figure 8 is a partial schematic view of the stop member and the unlocking member in the embodiment of the present application.

[0040] BRIEF DESCRIPTION OF DRAWINGS:

[0041] 1, rack; 11, base; 12, guard frame; 13, clamping groove; 2, operation platform; 21, fixed plate; 211, second magnetic part; 22, movable plate; 221, first magnetic part; 222, mounting groove; 223, rotating groove; 224, locking groove; 225, pushing hole; 226, dovetail groove; 3, cutting mechanism; 31, cutter; 32, driving assembly; 4, supporting assembly; 41, supporting plate; 411, rotating shaft; 412, reset torsional spring; 413, supporting groove; 414, first accommodation groove; 415, second accommodation groove; 416, through hole; 417, positioning groove; 418, positioning spring; 419, positioning plate; 42, supporting plate; 421, limiting groove; 422, clamping block; 5, limiting part; 51, telescopic rod; 511, connecting rod; 512, connecting stud; 513, connecting screw hole; 52, limiting column; 6, unlocking part; 61, push block; 611, driving rack; 62, pushing rod; 7, stop part; 71, stop block; 711, guide inclined surface; 712, driven rack; 72, stop spring; 73, dovetail block; 8, linkage gear. DETAILED DESCRIPTION

[0042] The above description is made in connection with the accompanying drawings. Figures 1-8 The application is described in further detail.

[0043] The embodiment of the application discloses a cutting machine for garment processing.

[0044] Referring to Figure 1 The cutting machine for garment processing comprises a cutting machine body, the cutting machine body comprises a rack 1, an operation platform 2 arranged on the rack 1 and used for placing cloth, and a cutting mechanism 3 arranged on the rack 1 and used for cutting the cloth, wherein the cutting mechanism 3 comprises a cutter 31 movably connected to the rack 1 and a driving assembly 32 arranged on the rack 1 and used for driving the cutter 31 to move. When the cutting machine body works, the cloth to be cut is placed on the operation platform 2, and the driving assembly 32 can drive the cutter 31 to move relative to the rack 1, so that the cutter 31 cuts the cloth.

[0045] It should be noted that the cutting machine body in the embodiment is preferably a DCQ series cutter 31 cutting machine, and the structures of the cutting machine body except the operation platform 2 all belong to the prior art, so that the specific structure of the driving assembly 32 is not described herein.

[0046] Referring to Figure 1 , Figure 2, the rack 1 comprises a base 11 and a protective frame 12 covering the outer side of the driving assembly 32, the protective frame 12 being located on the upper side of the base 11. The operation platform 2 comprises a fixed plate 21 fixed between the base 11 and the protective frame 12, a movable plate 22 rotatably arranged on one side of the fixed plate 21, and the cutting mechanism 3 is located on the side close to the fixed plate 21 of the rack 1. Specifically, the fixed plate 21 and the movable plate 22 are rotatably connected by a plurality of hinges, which are located at the lower end of the fixed plate 21, so that the movable plate 22 can be turned to the cutting station flush with the fixed plate 21, and can be turned to the storage station folded on the rack 1, so as to reduce the occupied space when the cutting machine body is idle.

[0047] With reference to Figure 1 , Figure 2 , in order to improve the stability of the movable plate 22 in the cutting station, a first magnetic member 221 is arranged at one end of the movable plate 22 close to the fixed plate 21, and a second magnetic member 211 is arranged at one end of the fixed plate 21 close to the movable plate 22, and in the embodiment, the first magnetic member 221 is preferably a first magnet fixedly embedded on the movable plate 22, and the second magnetic member 211 is preferably a second magnet fixedly embedded on the fixed plate 21. When the movable plate 22 is in the cutting station, the first magnetic member 221 will be attracted to the second magnetic member 211 to hinder the rotation of the movable plate 22 relative to the fixed plate 21, which helps to improve the overall stability of the operation platform 2.

[0048] With reference to Figure 3 , Figure 4 , a supporting assembly 4 is rotatably arranged on the movable plate 22, the supporting assembly 4 comprises a supporting plate 41 and support plates 42 rotatably connected on both sides of the supporting plate 41, and the movable plate 22 is provided with a mounting groove 222 for the supporting plate 41 to rotate and extend into, and the opposite groove walls of the mounting groove 222 are provided with rotating grooves 223, and a rotating shaft 411 fixedly connected to the supporting plate 41 is rotatably arranged in the rotating grooves 223, so as to realize the rotating connection between the supporting plate 41 and the movable plate 22. A reset torsion spring 412 is sleeved on the outside of the rotating shaft 411, one end of the reset torsion spring 412 is fixedly connected to the rotating shaft 411, and the other end abuts against the groove wall of the rotating groove 223. When the reset torsion spring 412 is in a natural state, the supporting plate 41 is turned out of the mounting groove 222, that is, the reset torsion spring 412 has a tendency to drive the supporting plate 41 to turn out of the mounting groove 222. It should be noted that when the movable plate 22 is in the cutting station, the opening of the mounting groove 222 faces downward, and the rotating shaft 411 is located at one end of the supporting plate 41 away from the fixed plate 21.

[0049] With reference to Figure 3 , Figure 4, the side wall of the supporting plate 41 is provided with a support groove 413 close to and away from the side wall of the mounting groove 222, and the two support grooves 413 can be used for the adjacent support plate 42 to turn in, so that the occupied space of the support plate 42 is reduced. Further, a plurality of sets of limiting pieces 5 are detachably connected between the two support plates 42, and in the embodiment, the limiting pieces 5 are preferably two sets and are located on the opposite sides of the support plate 42. Each set of limiting pieces 5 comprises a telescopic rod 51, a limiting column 52 provided at both ends of the telescopic rod 51, and a limiting groove 421 provided on the opposite side end face of the support plate 42 for inserting the limiting column 52. The telescopic rod 51 comprises a connecting rod 511 fixed on one of the limiting columns 52, a connecting stud 512 fixed on the other limiting column 52, and a connecting screw hole 513 provided on the connecting rod 511 and threaded with the connecting stud 512. The operator can adjust the distance between the two limiting columns 52 by changing the depth of the connecting stud 512 screwed into the connecting screw hole 513.

[0050] Referring to Figure 4 , the side wall of the supporting plate 41 is provided with a first let go groove 414 and a second let go groove 415, wherein the first let go groove 414 is provided with a through hole 416 between the adjacent support groove 413, the second let go groove 415 is located on the side of the support groove 413 away from the rotating shaft 411, and the width of the first let go groove 414 and the second let go groove 415 is greater than the maximum diameter of the telescopic rod 51, the diameter of the through hole 416 is slightly larger than the diameter of the limiting column 52, so that the limiting column 52 can extend into the support groove 413 through the through hole 416, and the support plate 42 is locked in the position of being received in the support groove 413 by the limiting piece 5. After the movable plate 22 is turned to the cutting station, the operator can first turn the supporting plate 41 to the vertical state, then turn the support plate 42 to abut against the ground, and then insert the two limiting columns 52 in the same limiting piece 5 into different limiting grooves 421, so as to lock the support plate 42 in the position of extending out of the support groove 413 by the limiting piece 5.

[0051] Referring to Figure 1 , Figure 3 , in order to improve the stability of the movable plate 22 in the storage position, a clamping block 422 is fixed on the support plate 42 far away from the mounting groove 222, the clamping block 422 is made of plastic which can be elastically deformed, and the base 11 is provided with a clamping groove 13 matched with the clamping block 422. When the movable plate 22 is turned to the storage position, the clamping block 422 can be matched with the clamping groove 13, so that the movable plate 22 is not easy to rotate relative to the rack 1.

[0052] Referring to Figure 5 , Figure 6A positioning groove 417 is provided on the side wall of the support plate 41 away from the rotating shaft 411. A positioning spring 418 is fixed on the groove wall of the positioning groove 417 away from its opening. A positioning plate 419 is fixedly connected to the positioning spring 418 and is slidably disposed in the positioning groove 417. When the positioning spring 418 is in its natural state, one end of the positioning plate 419 extends out of the positioning groove 417. A locking groove 224 is provided on the groove wall of the mounting groove 222 away from the rotating shaft 411. After the support plate 41 rotates into the mounting groove 222, the positioning spring 418 will drive the positioning plate 419 to extend into the locking groove 224 to prevent the support plate 41 from moving out of the mounting groove 222.

[0053] Reference Figure 7 , Figure 8 The movable plate 22 is connected to an unlocking component 6, which includes a push block 61 slidably disposed in the locking groove 224 and a lever 62 fixedly connected to both sides of the push block 61. The opposite side walls of the movable plate 22 are respectively provided with actuation holes 225 communicating with the locking groove 224 (see...). Figure 3 Each lever 62 is slidably inserted into its corresponding actuation hole 225, with the end of the lever 62 away from the push block 61 protruding from the movable plate 22. When unlocking the support plate 41, the operator can use the lever 62 to move the push block 61 to push the positioning plate 419 away from the locking groove 224.

[0054] Reference Figure 7 , Figure 8 To further improve the stability of the support plate 41 when it is rotated into the mounting groove 222, a stop 7 is connected to the movable plate 22 to prevent the support plate 41 from rotating out of the mounting groove 222. The stop 7 includes a stop block 71 and a stop spring 72 for driving the stop block 71 to move towards the side of the mounting groove 222. Several dovetail blocks 73 are fixed to the side of the stop block 71 facing the movable plate 22. The movable plate 22 has dovetail grooves 226 that are equal in number and correspond one-to-one with the dovetail blocks 73 (see Figure 3 Each dovetail block 73 is slidably disposed in the corresponding dovetail groove 226, thereby realizing the sliding connection between the stop block 71 and the movable plate 22.

[0055] Reference Figure 3 , Figure 8 One end of the stop spring 72 is fixedly connected to the dovetail block 73, and the other end is fixedly connected to the groove wall of the dovetail groove 226 away from the mounting groove 222. The stop block 71 has a guide slope 711 at the end near the mounting groove 222. When the support plate 41 turns to the mounting groove 222, the guide slope 711 can guide the support plate 41 towards the mounting groove 222; after the support plate 41 turns into the mounting groove 222, the stop block 71 abuts against the side of the support plate 41 facing the opening of the mounting groove 222, which further prevents the support plate 41 from turning out of the mounting groove 222.

[0056] Referring to Figure 8 The push block 61 is fixed with a driving rack 611 on the side facing the stop block 71, the stop block 71 is fixed with a driven rack 712 on the side facing the push block 61, the driving rack 611 and the driven rack 712 are both slidingly connected on the movable plate 22 along the direction in which the push lever 62 moves, and a linkage gear 8 is engaged between the driving rack 611 and the driven rack 712, and the linkage gear 8 is rotationally arranged in the movable plate 22. When the push block 61 moves towards the positioning plate 419, the driving rack 611 will move synchronously, so that the linkage gear 8 rotates circumferentially, and the driven rack 712 drives the stop block 71 to move in the direction opposite to the push block 61, so as to realize the synchronous unlocking of the positioning plate 419 and the stop block 71 to the supporting plate 41, and the operation is simple and convenient.

[0057] The implementation principle of the cutting machine for garment processing is as follows: when the cutting machine body needs to be used, first, rotate the movable plate 22 away from the base 11 until the movable plate 22 is turned to the horizontal cutting station, and the first magnetic member 221 and the second magnetic member 211 are attracted to each other; then, use the push lever 62 to push the push block 61 towards the side close to the mounting groove 222, so that the push block 61 pushes the positioning plate 419 away from the locking groove 224, and the stop block 71 moves out of the opening of the mounting groove 222, and the supporting plate 41 will be turned out of the mounting groove 222 under the action of the return torsional spring 412; then, adjust the supporting plate 41 to the vertical state, and take out the limiting member 5 from the first accommodation groove 414; then, turn the supporting plate 42 to abut against the ground, and finally, extend the limiting member 5 into the second accommodation groove 415, and make each limiting column 52 inserted into the corresponding limiting groove 421, so as to lock the supporting plate 42 in the position turned out of the supporting groove 413 by using the limiting member 5. At this time, the operation platform 2 is in the unfolded state, and the cloth can be laid flat on it, so that the cutting mechanism 3 can cut the cloth.

[0058] When the cutting machine body is not used, first, take out the limiting member 5 from the second accommodation groove 415, then turn the supporting plate 42 into the corresponding supporting groove 413, and then extend the limiting member 5 into the first accommodation groove 414, so as to lock the supporting plate 42 in the supporting groove 413 by using the limiting member 5; then, turn the supporting plate 41 into the mounting groove 222, so that the positioning plate 419 extends into the locking groove 224, and the stop block 71 abuts against the side of the supporting plate 41 facing the opening of the mounting groove 222, and finally, turn the movable plate 22 to abut against the base 11, and make the clamping block 422 and the clamping groove 13 clamped, so as to realize the folding and storage of the movable plate 22. At this time, the operation platform 2 is in the folded state, which is conducive to reducing the occupied space of the cutting machine body, so as to facilitate the workers to pass in the factory building.

[0059] The above are the preferred embodiments of the present application, which do not limit the protection scope of the present application, therefore: any equivalent changes made on the structure, shape and principle of the present application shall be covered within the protection scope of the present application.

Claims

1. A cutting machine for garment processing, comprising a cutting machine body, the cutting machine body comprising a machine frame (1), an operation platform (2) arranged on the machine frame (1) for placing cloth, a cutting mechanism (3) arranged on the machine frame (1) for cutting cloth, characterized in that: The operation platform (2) comprises a fixed plate (21) fixedly arranged on the rack (1), and a movable plate (22) rotatably arranged on one side of the fixed plate (21), wherein the movable plate (22) can be rotated to a cutting station flush with the fixed plate (21) and a storage station folded on the rack (1); a supporting assembly (4) is rotatably arranged on the movable plate (22), and when the movable plate (22) is in the cutting station, the supporting assembly (4) is abutted between the movable plate (22) and the ground; The supporting assembly (4) comprises a supporting plate (41) and support plates (42) rotatably connected on both sides of the supporting plate (41), the supporting plate (41) is rotatably connected to the movable plate (22) through a rotating shaft (411), and the supporting plate (41) is provided with support grooves (413) for the support plates (42) to rotatably extend into, a plurality of sets of limiting pieces (5) are detachably connected between the two support plates (42), and the limiting pieces (5) can lock the support plates (42) in the positions of being retracted into the support grooves (413) and the positions of extending out of the support grooves (413). The movable plate (22) is provided with a mounting groove (222) for the supporting plate (41) to rotate into, and the movable plate (22) is connected with a stopper (7) for preventing the supporting plate (41) from rotating out of the mounting groove (222), the stopper (7) comprises a stopper block (71) slidably connected to the movable plate (22) and a stopper spring (72) for driving the stopper block (71) to move towards the side close to the mounting groove (222), and the stopper block (71) is provided with a guide inclined surface (711) for guiding the supporting plate (41) to the mounting groove (222); when the supporting plate (41) rotates into the mounting groove (222), the stopper block (71) abuts on the side of the supporting plate (41) facing the opening of the mounting groove (222).

2. The garment working cutting machine according to claim 1, characterized by: The limiting piece (5) comprises a telescopic rod (51) and limiting columns (52) arranged on both ends of the telescopic rod (51), the support plate (42) is provided with limiting grooves (421) for the limiting columns (52) to insert, and the telescopic rod (51) comprises a connecting rod (511) fixed to one of the limiting columns (52) and a connecting stud (512) fixed to the other limiting column (52), and the connecting rod (511) is provided with a connecting screw hole (513) threadedly matched with the connecting stud (512).

3. The garment working cutting machine according to claim 2, characterized in that: The supporting plate (41) is provided with a first clearance groove (414) and a second clearance groove (415) for the limiting piece (5) to extend into, the second clearance groove (415) is located on the side of the support groove (413) away from the rotating shaft (411), and the first clearance groove (414) and the adjacent support groove (413) are provided with a through hole (416) for the limiting column (52) to extend into.

4. The garment working cutting machine according to claim 1, characterized in that: The side wall away from the rotating shaft (411) of the supporting plate (41) is provided with a positioning groove (417), a positioning plate (419) is slidably arranged in the positioning groove (417), a positioning spring (418) is connected between the positioning plate (419) and the groove wall away from the opening of the positioning groove (417), and a locking groove (224) is arranged on the groove wall away from the rotating shaft (411) of the mounting groove (222); when the supporting plate (41) is rotated into the mounting groove (222), the positioning plate (419) can extend into the locking groove (224) under the action of the positioning spring (418), and the movable plate (22) is connected with an unlocking piece (6) for pushing the positioning plate (419) away from the locking groove (224).

5. The garment working cutting machine according to claim 4, characterized in that: The unlocking piece (6) comprises a push block (61) slidably arranged in the locking groove (224) and a push rod (62) fixedly connected to the push block (61), the movable plate (22) is provided with a push hole (225) in communication with the locking groove (224), and the push rod (62) is slidably arranged in the push hole (225) and has an end exposed outside the movable plate (22).

6. The garment working cutting machine according to claim 5, wherein: The push block (61) is fixedly provided with a driving rack (611) slidably connected to the movable plate (22), the stop block (71) is fixedly provided with a driven rack (712) slidably connected to the movable plate (22), the driving direction of the driving rack (611) and the driven rack (712) is parallel to the movement direction of the push rod (62), and a linkage gear (8) is engaged between the driving rack (611) and the driven rack (712), and the linkage gear (8) is rotatably arranged on the movable plate (22).

7. The garment working cutting machine according to claim 6, characterized in that: The rotating shaft (411) is connected with a reset torsional spring (412) for driving the supporting plate (41) to rotate out of the mounting groove (222), the supporting assembly (4) is provided with a clamping block (422) made of elastic material, the rack (1) is provided with a clamping groove (13) matched with the clamping block (422), and when the movable plate (22) is in the storage station, the clamping block (422) and the clamping groove (13) are matched with each other.

8. The garment factory cutting machine according to claim 1, characterized in that: The movable plate (22) is provided with a first magnetic piece (221) at one end close to the fixed plate (21), the fixed plate (21) is provided with a second magnetic piece (211) at one end close to the movable plate (22), and when the movable plate (22) is in the cutting station, the first magnetic piece (221) and the second magnetic piece (211) are attracted to each other.

Citation Information

Patent Citations

  • Cutting machine with cutter

    CN212426519U

  • Processing table for garment processing

    CN216551275U