CN118951433A - Automatic pattern making equipment for clothing - Google Patents

Automatic pattern making equipment for clothing Download PDF

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Publication number
CN118951433A
CN118951433A CN202411383520.5A CN202411383520A CN118951433A CN 118951433 A CN118951433 A CN 118951433A CN 202411383520 A CN202411383520 A CN 202411383520A CN 118951433 A CN118951433 A CN 118951433A
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CN
China
Prior art keywords
workbench
rod
workstation
cloth
fixedly connected
Prior art date
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Granted
Application number
CN202411383520.5A
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Chinese (zh)
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CN118951433B (en
Inventor
刘鹏飞
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Jingjiang Ruipeng Clothing Co ltd
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Jingjiang Ruipeng Clothing Co ltd
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Priority to CN202411383520.5A priority Critical patent/CN118951433B/en
Publication of CN118951433A publication Critical patent/CN118951433A/en
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Publication of CN118951433B publication Critical patent/CN118951433B/en
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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B23MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
    • B23KSOLDERING OR UNSOLDERING; WELDING; CLADDING OR PLATING BY SOLDERING OR WELDING; CUTTING BY APPLYING HEAT LOCALLY, e.g. FLAME CUTTING; WORKING BY LASER BEAM
    • B23K26/00Working by laser beam, e.g. welding, cutting or boring
    • B23K26/70Auxiliary operations or equipment
    • B23K26/702Auxiliary equipment
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B23MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
    • B23KSOLDERING OR UNSOLDERING; WELDING; CLADDING OR PLATING BY SOLDERING OR WELDING; CUTTING BY APPLYING HEAT LOCALLY, e.g. FLAME CUTTING; WORKING BY LASER BEAM
    • B23K26/00Working by laser beam, e.g. welding, cutting or boring
    • B23K26/36Removing material
    • B23K26/38Removing material by boring or cutting

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  • Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • Optics & Photonics (AREA)
  • Plasma & Fusion (AREA)
  • Mechanical Engineering (AREA)
  • Treatment Of Fiber Materials (AREA)

Abstract

本发明涉及激光切割组件技术领域,具体的说是一种服饰自动打板设备,包括工作台,所述工作台上安装有激光切割组件,所述工作台的顶侧设有固定结构,所述固定结构与工作台之间连接有牵引结构,所述工作台的中部设有导向结构,所述导向结构与工作台之间连接有紧固结构,所述工作台的底侧设有支撑结构,所述工作台的端部连接有安放结构;通过固定结构可以快速对布料端部进行固定,通过牵引结构可以对布料进行平滑牵引,保证布料平整展开,通过导向结构可以对抽出的布料进行导向,确保布料在工作台上平整摊开,通过紧固结构可以使得布料处于紧绷的状态,通过支撑结构可以方便对布料进行添加标记等操作。

The present invention relates to the technical field of laser cutting components, and specifically to an automatic clothing pattern making device, comprising a workbench, a laser cutting component is installed on the workbench, a fixing structure is provided on the top side of the workbench, a traction structure is connected between the fixing structure and the workbench, a guide structure is provided in the middle of the workbench, a fastening structure is connected between the guide structure and the workbench, a supporting structure is provided on the bottom side of the workbench, and a placement structure is connected to the end of the workbench; the end of the cloth can be quickly fixed by the fixing structure, the cloth can be smoothly pulled by the traction structure to ensure that the cloth is flatly spread out, the drawn cloth can be guided by the guiding structure to ensure that the cloth is flatly spread out on the workbench, the cloth can be kept in a taut state by the fastening structure, and the cloth can be conveniently marked and the like by the supporting structure.

Description

Automatic board equipment of beating of dress
Technical Field
The invention relates to the technical field of laser cutting assemblies, in particular to automatic board making equipment for clothes.
Background
The production process flow of the clothes mainly comprises the steps of face auxiliary material in-plant inspection, technical preparation, board beating, cutting, sewing, buttoning, ironing, ready-made clothes inspection packaging and the like. The method comprises the steps of forming a board, namely, decomposing clothes into pieces on a paper pattern according to the intention of a designer, drawing the pieces into the paper pattern, putting the paper pattern on a fabric after verification, cutting the pieces into pieces according to the outline of the paper pattern, and sewing the pieces to form a finished sample garment.
However, with the development of technology, current clothing board making technology generally can use laser cutting's mode to cut the cloth, improved cutting accuracy when having promoted machining efficiency, but the cloth generally need keep unsettled state when cutting, this makes the cloth in the cutting process if fixed infirm, the phenomenon of loosening even fold appears in the cloth easily, influence final finished product quality, simultaneously, when pulling the tip of cloth, because the cloth texture is soft, the fixing of cloth tip is inconvenient to wider cloth, and the tip fixation effect of cloth is relatively poor also can lead to the surface of cloth to appear the fold when pulling the cloth.
Disclosure of Invention
Aiming at the problems in the prior art, the invention provides automatic board-making equipment for clothes.
The technical scheme adopted for solving the technical problems is as follows: the utility model provides an automatic board equipment of beating of dress, includes the workstation, install laser cutting subassembly on the workstation, the top side of workstation is equipped with fixed knot constructs, be connected with the traction structure between fixed knot constructs and the workstation, the middle part of workstation is equipped with guide structure, be connected with fastening structure between guide structure and the workstation, the bottom side of workstation is equipped with bearing structure, the end connection of workstation has the lay structure.
Specifically, fixed knot constructs including the clamping lever, be equipped with the clamping lever on the workstation, the middle part of clamping lever rotates and is connected with first screw rod, the inboard sliding connection of clamping lever has two inclined plane thread blocks, two inclined plane thread block symmetry sets up, the both sides screw thread opposite direction of first screw rod, two inclined plane thread block respectively threaded connection in the both sides of first screw rod, the side sliding connection of inclined plane thread block has the pushing block, the side of pushing block is inclined plane structure, fixedly connected with first spring between pushing block and the clamping lever, the side fixedly connected with of clamping lever supports the feeler lever.
Specifically, first spout has all been seted up to both sides on the workstation, the both ends of clamping lever are through first spout and workstation sliding connection, the touch-up pole is "U" font structure, the side of pushing away the squeezing piece is equipped with a plurality of lugs, a plurality of recesses have been seted up to the side of touch-up pole, lug and recess one-to-one setting.
Specifically, the traction structure comprises a driving slide block, two sides of the workbench are respectively provided with the driving slide block, the driving slide blocks are in sliding connection with the workbench through first sliding grooves, a motor is installed at the end part of the workbench, the output end of the motor is fixedly connected with a second screw rod through a coupling, the second screw rod is rotationally connected with the workbench, the inner side of the driving slide block is in sliding connection with a threaded tooth block, a fourth spring is fixedly connected between the threaded tooth block and the driving slide block, the bottom side of the threaded tooth block is in threaded connection with the second screw rod, and the top end of the threaded tooth block is in abutting contact with a clamping rod.
Specifically, the inboard sliding connection of drive slider has the release piece, the tip of release piece is the inclined plane structure, the inclined plane end of release piece is inconsistent with the clamping lever side, fixedly connected with third spring between release piece and the drive slider, the inboard sliding connection of drive slider has the inclined plane card pole, fixedly connected with second spring between inclined plane card pole and the drive slider, the inclined plane card pole is inconsistent with the topside of clamping lever.
Specifically, the guide structure includes the second spout, the second spout has been seted up to the inboard of workstation, the workstation has the squeeze roller through second spout sliding connection, the squeeze roller is equipped with two, two the side of squeeze roller is contradicted each other, the both ends of squeeze roller rotate respectively and are connected with the turning block, sliding connection between turning block and the workstation, the inboard of workstation is equipped with the connection tooth piece, fixedly connected with fifth spring between connection tooth piece and the turning block.
Specifically, fastening structure includes the side slide bar, the both sides of workstation are equipped with two side slide bars respectively, are located two of homonymy the mutual symmetry of side slide bar sets up, the side slide bar is "L" structure, the tip of side slide bar is equipped with the tooth's socket, the side slide bar has the gear with the meshing of connection tooth piece, rotate between gear and the workstation and be connected, the inboard fixedly connected with a plurality of guide posts of workstation, sliding connection between side slide bar and the guide post, fixedly connected with seventh spring between side slide bar and the workstation.
Specifically, bearing plate is equipped with at the middle part of workstation to bearing structure, the bottom side perpendicular fixedly connected with guide bar of bearing plate, sliding connection between guide bar and the workstation, the bottom side rotation of bearing plate is connected with the bracing piece, the spacing groove has been seted up on the workstation, the bottom of bracing piece passes through spacing groove and workstation sliding connection.
Specifically, the tip rotation of workstation is connected with the third screw rod, threaded connection has the drive horizontal pole on the third screw rod, sliding connection between drive horizontal pole and the workstation, the both ends of drive horizontal pole rotate with the bottom of the bracing piece that the homonymy set up respectively and be connected.
Specifically, the mounting structure includes the installation arm, the tip fixedly connected with installation arm of workstation, the tip rotation of installation arm is connected with the axostylus axostyle, the jack has been seted up to the tip of axostylus axostyle, the opposite side rotation of workstation is connected with the gyration piece, the tip sliding connection who revolves the piece has the spliced pole, fixedly connected with sixth spring between spliced pole and the gyration piece, the tip of spliced pole is square structure, the tip of spliced pole passes through jack and axostylus axostyle looks block.
Specifically, the inboard threaded connection of axostylus axostyle has the regulation pole, the middle part of axostylus axostyle rotates and is connected with two fastening blocks, fixedly connected with torsional spring between fastening block and the axostylus axostyle, two the symmetry sets up between the fastening block, the side of fastening block is inconsistent with the tip of regulation pole.
The beneficial effects of the invention are as follows:
(1) According to the automatic clothing board-making equipment, the fixing structure is arranged on the top side of the workbench, the traction structure is connected between the fixing structure and the workbench, the end part of the cloth can be quickly fixed through the fixing structure, the flatness of the cloth during traction can be guaranteed, the cloth can be smoothly pulled through the traction structure, the cloth can be smoothly unfolded, and the subsequent cutting precision is improved.
(2) According to the automatic clothing board-making equipment, the guide structure is arranged in the middle of the workbench, the fastening structure is connected between the guide structure and the workbench, the drawn cloth can be guided through the guide structure, the cloth is ensured to be spread flatly on the workbench, the spread cloth can be in a tight state through the fastening structure, and therefore the flatness of the cloth is further improved.
(3) According to the automatic clothing board-making equipment, the supporting structure is arranged at the bottom side of the workbench, and the movable plane can be provided for the bottom side of the cloth through the supporting structure, so that the flattened cloth can be conveniently subjected to operations such as adding marks.
(4) According to the automatic clothing board printing equipment, the end part of the workbench is connected with the placement structure, and the cloth roll can be conveniently fixed and installed through the placement structure.
Drawings
The invention will be further described with reference to the drawings and examples.
FIG. 1 is a schematic view of the overall structure provided by the present invention;
FIG. 2 is a schematic view of a connection structure of a workbench and a carrier plate according to the invention;
FIG. 3 is an enlarged schematic view of the portion A shown in FIG. 2;
FIG. 4 is a schematic view of a clamping rod according to the present invention;
FIG. 5 is a schematic view of the connection structure of the workbench and the motor of the invention;
FIG. 6 is an enlarged view of the portion B shown in FIG. 5;
FIG. 7 is a schematic view of the connection structure of the table and the shaft of the present invention;
FIG. 8 is an enlarged view of the structure of the portion C shown in FIG. 7;
FIG. 9 is a schematic view of the connection structure of the work table and the laser cutting assembly of the present invention;
fig. 10 is an enlarged schematic view of the portion D shown in fig. 9;
FIG. 11 is a schematic view of the connection structure of the workbench and the third screw of the present invention;
FIG. 12 is an enlarged view of the portion E shown in FIG. 11;
FIG. 13 is a schematic view of the connection structure of the carrier plate and the support rods of the present invention;
FIG. 14 is a schematic view of the attachment structure of the mounting arm and shaft of the present invention;
fig. 15 is an enlarged schematic view of the F portion shown in fig. 14.
In the figure: 1. a work table; 2. a laser cutting assembly; 3. a fixed structure; 301. a clamping rod; 302. a first chute; 303. a first screw; 304. an inclined thread block; 305. pushing the block; 306. a first spring; 307. a touch-up rod; 308. a bump; 309. a groove; 4. a traction structure; 401. a motor; 402. a second screw; 403. driving a sliding block; 404. a thread tooth block; 405. an inclined plane clamping rod; 406. a second spring; 407. releasing the block; 408. a third spring; 409. a fourth spring; 5. a guide structure; 501. a squeeze roll; 502. a second chute; 503. a rotating block; 504. a fifth spring; 505. connecting the tooth blocks; 6. a support structure; 601. a carrying plate; 602. a third screw; 603. a drive rail; 604. a guide rod; 605. a limit groove; 606. a support rod; 7. a placement structure; 701. a mounting arm; 702. a shaft lever; 703. an adjusting rod; 704. rotating the block; 705. inserting a connecting rod; 706. a sixth spring; 707. a jack; 708. a fastening block; 709. a torsion spring; 8. a fastening structure; 801. a side slide bar; 802. a guide post; 803. a seventh spring; 804. tooth slots; 805. a gear.
Detailed Description
The invention is further described in connection with the following detailed description in order to make the technical means, the creation characteristics, the achievement of the purpose and the effect of the invention easy to understand.
As shown in fig. 1, 6 and 10, the automatic board making equipment for clothes comprises a workbench 1, wherein a laser cutting assembly 2 is arranged on the workbench 1, a fixing structure 3 is arranged on the top side of the workbench 1, a traction structure 4 is connected between the fixing structure 3 and the workbench 1, a guide structure 5 is arranged in the middle of the workbench 1, a fastening structure 8 is connected between the guide structure 5 and the workbench 1, a supporting structure 6 is arranged on the bottom side of the workbench 1, and a placement structure 7 is connected with the end part of the workbench 1.
Specifically, as shown in fig. 1, fig. 2, fig. 3, fig. 4, fig. 5, fig. 6, fig. 7, fig. 8, and fig. 9, the fixing structure 3 includes a clamping rod 301, a clamping rod 301 is provided on the workbench 1, a first screw rod 303 is rotationally connected to the middle of the clamping rod 301, two inclined thread blocks 304 are slidably connected to the inner side of the clamping rod 301, the two inclined thread blocks 304 are symmetrically disposed, two side threads of the first screw rod 303 are opposite in direction, the two inclined thread blocks 304 are respectively in threaded connection with two sides of the first screw rod 303, a pushing block 305 is slidably connected to a side surface of the inclined thread block 304, a side surface of the pushing block 305 is in an inclined structure, a first spring 306 is fixedly connected between the pushing block 305 and the clamping rod 301, two sides of the clamping rod 301 are respectively provided with a first chute 302, two ends of the clamping rod 301 are slidably connected with the workbench 1 through the first chute 302, the side surfaces of the pushing rod 307 are provided with a plurality of grooves 308, and the side surfaces of the pushing block 307 are provided with a plurality of grooves 309, and the side surfaces 309 are provided with a plurality of corresponding grooves 309; can fix cloth tip fast through fixed knot constructs 3, guarantee the roughness when pulling the cloth, namely: firstly, a clamping rod 301 for fixing the end of a fabric is arranged on the workbench 1, the fabric passes through a gap between the clamping rod 301 and the abutting rod 307, after the fabric is straightened, the first screw 303 at the end is rotated, the first screw 303 drives the inclined threaded blocks 304 at two sides to slide towards the middle, at this time, due to the inclined surface effect of the inclined threaded blocks 304, the pushing blocks 305 at the side surfaces of the clamping rod 301 can move towards the direction of the abutting rod 307 until the penetrating fabric part is fully clamped and fixed by the pushing blocks 305 and the abutting rod 307, the side surfaces of the pushing blocks 305 are provided with protruding blocks 308, when the pushing blocks 305 are abutted against the abutting rod 307, the protruding blocks 308 on the pushing blocks are matched with the grooves 309 on the abutting rod 307, so that the fixing effect on the fabric is further improved, and due to the fact that the length of the pushing blocks 305 is larger and the extrusion effect applied to the fabric is relatively uniform, the fabric has a uniform and firm fixing effect, and further, when the clamping rod 301 is used for pulling the fabric, the possible phenomenon is reduced.
Specifically, as shown in fig. 1, fig. 2, fig. 5, fig. 6, fig. 8, fig. 11, and fig. 13, the traction structure 4 includes a driving slider 403, two sides of the working table 1 are respectively provided with a driving slider 403, the driving slider 403 is slidably connected with the working table 1 through a first chute 302, a motor 401 is mounted at an end of the working table 1, an output end of the motor 401 is fixedly connected with a second screw 402 through a coupling, the second screw 402 is rotationally connected with the working table 1, an inner side of the driving slider 403 is slidably connected with a threaded tooth block 404, a fourth spring 409 is fixedly connected between the threaded tooth block 404 and the driving slider 403, a bottom side of the threaded tooth block 404 is in threaded connection with the second screw 402, a top end of the threaded tooth block 404 abuts against the clamping rod 301, an inner side of the driving slider 403 is slidably connected with a release block 407, an end of the release block 407 is in an inclined structure, an inclined surface end of the release block 407 abuts against a side of the clamping rod 301, a third clamp spring 403 is fixedly connected with the inner side of the release block 403, and the driving slider 403 abuts against the inclined surface of the clamping rod 405, and the driving slider is fixedly connected with the inclined surface 405; can carry out smooth traction to the cloth through traction structure 4, guarantee that the cloth is leveled and is expanded, promote subsequent cutting accuracy, promptly: after the end of the cloth is clamped and fixed by the toothed rod, a user needs to put the two ends of the clamping rod 301 into the driving slide block 403 on the inner side through the notch on the two sides of the table, the clamping rod 301 is abutted against the inclined clamping rod 405 in the process of sliding towards the inner side of the driving slide block 403, the clamping rod 301 is prevented from sliding towards the top side, meanwhile, the releasing block 407 on the side surface of the clamping rod 301 can push the clamping rod 301, so that the clamping rod 301 keeps in an abutting state with the inclined clamping rod 405, on the other hand, after the clamping rod 301 is placed, the clamping rod 301 is attached to the driving slide block 403 on the bottom side, at the moment, the bottom side of the clamping rod 301 can squeeze the threaded tooth block 404 to enable the threaded part on the bottom side of the threaded tooth block 404 to be meshed with the second screw rod 402, after the motor 401 is electrically connected with an external power supply, the motor 401 is started, the second screw rod 402 on the two sides of the working table 1 is driven by the motor 401 to rotate simultaneously, the driving slide block 403 can be driven to slide in the first slide groove 302, the clamping rod 301 is pulled to move towards the other side of the working table 1, and meanwhile, the cloth is kept in a smooth abutting state with the inclined clamping rod 403, after the clamping rod 301 is placed, the clamping rod is completely pulled, the clamping rod 403 is completely moved, the clamping rod is completely, the clamping rod is required to move, and the clamping rod is cut, and the clamping rod is completely stretched, and can be completely in a smooth state, and can be cut.
Specifically, as shown in fig. 1, 9, 10 and 13, the guiding structure 5 includes a second chute 502, the inner side of the working table 1 is provided with the second chute 502, the working table 1 is slidably connected with two squeeze rollers 501 through the second chute 502, the squeeze rollers 501 are provided with two squeeze rollers 501, the side surfaces of the two squeeze rollers 501 are mutually abutted, two ends of the squeeze rollers 501 are respectively rotatably connected with a rotating block 503, the rotating block 503 is slidably connected with the working table 1, the inner side of the working table 1 is provided with a connecting tooth block 505, and a fifth spring 504 is fixedly connected between the connecting tooth block 505 and the rotating block 503; the drawn cloth can be guided through the guide structure 5, so that the cloth can be ensured to be spread on the workbench 1 smoothly, namely: one side that is located workstation 1 is equipped with two squeeze rolls 501, and squeeze roll 501 slides in second spout 502, and simultaneously under the promotion through fifth spring 504, two squeeze rolls 501 are in conflict state, and after clamping lever 301 pulls the cloth and passes two squeeze rolls 501, squeeze roll 501 can lead to subsequent cloth, guarantees that the cloth is spread at same high level.
Specifically, as shown in fig. 10, the fastening structure 8 includes a side sliding bar 801, two side sliding bars 801 are respectively disposed on two sides of the working table 1, two side sliding bars 801 disposed on the same side are symmetrically disposed on each other, the side sliding bars 801 are in an L-shaped structure, tooth grooves 804 are disposed at ends of the side sliding bars 801, the side sliding bars 801 are meshed with the connecting tooth blocks 505, a gear 805 is meshed with the working table 1, the gear 805 is rotationally connected with the working table 1, a plurality of guide posts 802 are fixedly connected with an inner side of the working table 1, the side sliding bars 801 are slidably connected with the guide posts 802, and a seventh spring 803 is fixedly connected between the side sliding bars 801 and the working table 1; the spread cloth can be in a tight state through the fastening structure 8, so that the flatness of the cloth is further improved, namely: after the cloth is pulled by the clamping rod 301 and passes through the space between the two squeeze rollers 501, the end part of the clamping rod 301 moves between the two sideslip rods 801, the clamping rod 301 pushes the sideslip rods 801 to two sides through the inclined surface structure of the end parts of the sideslip rods 801 along with the continued movement of the clamping rod 301, the sideslip rods 801 drive the connecting tooth blocks 505 to slide to the middle part along with the sliding of the sideslip rods 801 through tooth grooves 804 of the end parts and gears 805 meshed with the tooth grooves, at the moment, the fifth springs 504 compress, the pressure between the two squeeze rollers 501 is further improved, at the moment, the clamping rod 301 continues to move and draw out the cloth, the subsequent cloth is recovered after passing through the squeeze rollers 501 and is subjected to larger squeezing action, and the cloth is in a relatively tight state while being pulled by the clamping rod 301, so that the flatness of the cloth is further improved.
Specifically, as shown in fig. 1, fig. 2, fig. 9, fig. 11, fig. 12, and fig. 13, the supporting structure 6 includes a bearing plate 601, a bearing plate 601 is disposed in the middle of the workbench 1, a guide rod 604 is vertically and fixedly connected to the bottom side of the bearing plate 601, the guide rod 604 is slidably connected with the workbench 1, a supporting rod 606 is rotatably connected to the bottom side of the bearing plate 601, a limit groove 605 is formed on the workbench 1, the bottom end of the supporting rod 606 is slidably connected with the workbench 1 through the limit groove 605, a third screw 602 is rotatably connected to the end of the workbench 1, a driving cross rod 603 is screwed on the third screw 602, the driving cross rod 603 is slidably connected with the workbench 1, and two ends of the driving cross rod 603 are respectively rotatably connected with the bottom ends of the supporting rod 606 disposed on the same side; can provide the activity plane for the cloth downside through bearing structure 6, conveniently add operations such as mark to the cloth of flattening, namely: after the flattening operation of the cloth is completed, if operations such as marking or measuring are needed on the cloth, a user can rotate a third screw 602 located at the end part of the workbench 1, the third screw 602 can drive a driving cross rod 603 to slide in the workbench 1, the driving cross rod 603 can drive a supporting rod 606 to rotate and drive a supporting plate 601 to lift after moving, and a supporting effect can be provided after the supporting plate 601 is just lifted to the bottom side of the flattened cloth, so that an operator can conveniently mark or measure the cloth, and meanwhile, the flattening state of the cloth is prevented from being damaged.
Specifically, as shown in fig. 1, fig. 2, fig. 7, fig. 14, and fig. 15, the placement structure 7 includes a mounting arm 701, the end of the workbench 1 is fixedly connected with the mounting arm 701, the end of the mounting arm 701 is rotatably connected with a shaft lever 702, an insertion hole 707 is provided at the end of the shaft lever 702, a rotating block 704 is rotatably connected to the other side of the workbench 1, an insertion rod 705 is slidably connected to the end of the rotating block 704, a sixth spring 706 is fixedly connected between the insertion rod 705 and the rotating block 704, the end of the insertion rod 705 is in a square structure, the end of the insertion rod 705 is engaged with the shaft lever 702 through the insertion hole 707, an adjusting lever 703 is screwed on the inner side of the shaft lever 702, two fastening blocks 708 are rotatably connected to the middle of the shaft lever 702, a torsion spring 709 is fixedly connected between the fastening blocks 708 and the shaft lever 702, the two fastening blocks 708 are symmetrically arranged, and the side surfaces of the fastening blocks 708 are abutted against the end of the adjusting lever 703; the cloth roll can be conveniently fixed and installed through the placement structure 7, namely: the shaft lever 702 positioned on the side surface of the workbench 1 is used for installing a cloth roll, after the cloth roll is sleeved on the shaft lever 702, a user can rotate the rotary block 704 on the other side and insert the end part of the inserting rod 705 on the rotary block 704 into the inserting hole 707 at the end part of the shaft lever 702, because the end part of the inserting rod 705 is of a square structure, the shaft lever 702 cannot rotate at the moment, the adjusting rod 703 positioned at the other end of the shaft lever 702 rotates, along with the rotation of the adjusting rod 703, the end part of the adjusting rod 703 can extend into the inner side of the shaft lever 702, the end part of the adjusting rod 703 can push the fastening blocks 708 on two sides, the fastening blocks 708 rotate towards two sides, and then the installed cloth roll is expanded and fixed from the inner side through the fastening blocks 708, at the moment, the user can control whether the cloth roll rotates or not through the connection or the removal of the rotary block 704, and the release of the cloth is convenient to control.
When the invention is used, firstly, the clamping rod 301 for fixing the end part of the cloth is arranged on the workbench 1, the cloth is penetrated through the gap between the clamping rod 301 and the abutting rod 307, after the cloth is straightened, the first screw rod 303 at the end part is rotated, the first screw rod 303 drives the inclined thread blocks 304 at the two sides to slide towards the middle part, at the moment, the pushing blocks 305 at the side surfaces of the pushing blocks move towards the abutting rod 307 due to the inclined surface effect of the inclined thread blocks 304 until the penetrated cloth part is fully clamped and fixed through the pushing blocks 305 and the abutting rod 307, the side surfaces of the pushing blocks 305 are provided with the convex blocks 308, When the pushing block 305 is abutted against the abutting rod 307, the protruding block 308 thereon will match with the groove 309 on the abutting rod 307, so as to further improve the fixing effect on the cloth, and since the length of the pushing block 305 is larger and the squeezing effect applied to the cloth is more uniform, the cloth has a uniform and firm fixing effect, so that when the cloth is pulled by the clamping rod 301, the possible wrinkling phenomenon of the cloth is reduced, after the end of the cloth is clamped and fixed by the toothed rod, the user needs to place the two ends of the clamping rod 301 into the driving slide blocks 403 on the inner side through the notches on the two sides of the table, The clamping rod 301 will collide with the inclined clamping rod 405 in the process of sliding to the inner side of the driving slide block 403 to prevent the clamping rod 301 from sliding to the top side, meanwhile, the releasing block 407 on the side surface of the clamping rod 301 will push the clamping rod 301 to keep the clamping rod 301 in a collision state with the inclined clamping rod 405, on the other hand, after the clamping rod 301 is arranged, as the bottom side of the clamping rod 301 is attached to the driving slide block 403, the bottom side of the clamping rod 301 will press the thread tooth block 404 to engage the bottom side thread part of the thread tooth block 404 with the second screw 402, after the motor 401 is electrically connected with the external power source, Starting the motor 401, driving the second screws 402 at two sides of the workbench 1 to rotate simultaneously through the motor 401, so as to drive the driving slide block 403 to slide in the first chute 302, further pulling the clamping rod 301 with the cloth fixed to move to the other side of the workbench 1, and simultaneously pulling the cloth to fully spread, since the driving slide block 403 stably moves, the spread cloth can be ensured to be in a flat state, thereby improving the subsequent cutting precision, when cutting is completed, the driving slide block 403 needs to be moved to an initial position through the motor 401, at the moment, a user can slide the clamping rod 301, so that the clamping rod 301 pushes the release block 407, The clamping rod 301 can be removed until the interference state with the inclined clamping rod 405 is released, two squeeze rollers 501 are arranged on one side of the workbench 1, the squeeze rollers 501 slide in the second chute 502, meanwhile, under the pushing of the fifth spring 504, the two squeeze rollers 501 are in an interference state, when the clamping rod 301 pulls cloth to pass through the two squeeze rollers 501, the squeeze rollers 501 guide the subsequent cloth, ensure that the cloth is horizontally spread at the same height, after the cloth is pulled by the clamping rod 301 and passes between the two squeeze rollers 501, the end part of the clamping rod 301 moves to a position between the two sideslip rods 801, With the continued movement of the clamping rod 301, the clamping rod 301 pushes the side sliding rod 801 to two sides through the inclined surface structure at the end of the side sliding rod 801, with the sliding of the side sliding rod 801, the side sliding rod 801 drives the connecting gear block 505 to slide to the middle through the tooth groove 804 at the end and the gear 805 meshed with the tooth groove 804, at this time, the fifth spring 504 compresses, thereby improving the pressure between the two extrusion rollers 501, at this time, the clamping rod 301 continues to move and extract the cloth, the subsequent cloth is recovered after passing through the extrusion rollers 501 and subjected to a larger extrusion action, so that the cloth is in a relatively tight state while being pulled by the clamping rod 301, Further improves the flatness of the cloth, when the flattening operation of the cloth is finished, if the cloth is required to be marked or measured, a user can rotate a third screw 602 positioned at the end part of the workbench 1, the third screw 602 can drive a driving cross rod 603 to slide in the workbench 1, the driving cross rod 603 can drive a supporting rod 606 to rotate and drive a supporting plate 601 to lift after moving, the supporting plate 601 can provide a supporting effect after just lifting to the bottom side of the flattened cloth, the marking or measuring of the cloth is convenient for operators, meanwhile, the flattening state of the cloth is avoided being damaged, a shaft lever 702 positioned at the side surface of the workbench 1 is used for installing a cloth roll, After the cloth roll is sleeved on the shaft 702, a user can rotate the rotating block 704 at the other side and insert the end part of the inserting rod 705 on the rotating block 704 into the inserting hole 707 at the end part of the shaft 702, the shaft 702 cannot rotate at the moment because the end part of the inserting rod 705 is of a square structure, the adjusting rod 703 at the other end of the shaft 702 rotates, the end part of the adjusting rod 703 stretches into the inner side of the shaft 702 along with the rotation of the adjusting rod 703, the end part of the adjusting rod 703 pushes the fastening blocks 708 at two sides at the moment, the fastening blocks 708 rotate to two sides, and the mounted cloth roll is expanded and fixed from the inner side through the fastening blocks 708, at this time, a user can control whether the cloth roll rotates or not through the connection or the removal of the rotary block 704, so that the release of the cloth is conveniently controlled; after all preparation works are completed, an operator can cut the fully flattened cloth through the laser cutting assembly 2 above the workbench 1, and the board making process is completed.
It will be evident to those skilled in the art that the invention is not limited to the details of the foregoing illustrative embodiments, and that the present invention may be embodied in other specific forms without departing from the spirit or essential characteristics thereof. The present embodiments are, therefore, to be considered in all respects as illustrative and not restrictive, the scope of the invention being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned.
Furthermore, it should be understood that although the present disclosure describes embodiments, not every embodiment is provided with a separate embodiment, and that this description is provided for clarity only, and that the disclosure is not limited to the embodiments described in detail below, and that the embodiments described in the examples may be combined as appropriate to form other embodiments that will be apparent to those skilled in the art.

Claims (10)

1. The utility model provides an automatic board equipment of beating of dress, its characterized in that, including workstation (1), install laser cutting subassembly (2) on workstation (1), the top side of workstation (1) is equipped with fixed knot construct (3), be connected with between fixed knot construct (3) and workstation (1) and pull construct (4), the middle part of workstation (1) is equipped with guide structure (5), be connected with fastening structure (8) between guide structure (5) and workstation (1), the bottom side of workstation (1) is equipped with bearing structure (6), the end connection of workstation (1) has lay structure (7);
Fixed knot constructs (3) including clamping lever (301), be equipped with clamping lever (301) on workstation (1), the middle part of clamping lever (301) rotates and is connected with first screw rod (303), the inboard sliding connection of clamping lever (301) has two inclined plane screw thread pieces (304), two inclined plane screw thread pieces (304) symmetry set up, the both sides screw thread opposite direction of first screw rod (303), two inclined plane screw thread pieces (304) respectively threaded connection in the both sides of first screw rod (303), the side sliding connection of inclined plane screw thread pieces (304) has push block (305), the side of push block (305) is inclined plane structure, fixedly connected with first spring (306) between push block (305) and the clamping lever (301), the side fixedly connected with conflict pole (307) of clamping lever (301).
2. An automatic garment sheeting apparatus in accordance with claim 1, wherein: the utility model discloses a workbench, including workstation (1) and clamping rod, first spout (302) have all been seted up to both sides on workstation (1), both ends of clamping rod (301) are through first spout (302) and workstation (1) sliding connection, conflict pole (307) are "U" font structure, the side of pushing away extrusion piece (305) is equipped with a plurality of lugs (308), a plurality of recesses (309) have been seted up to the side of contradicting pole (307), lug (308) and recess (309) one-to-one setting.
3. An automatic garment sheeting apparatus in accordance with claim 2, wherein: the traction structure (4) comprises a driving slide block (403), two sides of the workbench (1) are respectively provided with the driving slide block (403), the driving slide block (403) is in sliding connection with the workbench (1) through a first sliding groove (302), a motor (401) is installed at the end part of the workbench (1), the output end of the motor (401) is fixedly connected with a second screw rod (402) through a coupling, the second screw rod (402) is in rotary connection with the workbench (1), a threaded tooth block (404) is in sliding connection with the inner side of the driving slide block (403), a fourth spring (409) is fixedly connected between the threaded tooth block (404) and the driving slide block (403), and the bottom side of the threaded tooth block (404) is in threaded connection with the second screw rod (402), and the top end of the threaded tooth block (404) is in conflict with the clamping rod (301).
4. An automatic garment sheeting apparatus in accordance with claim 3, wherein: the inside sliding connection of drive slider (403) has release piece (407), the tip of release piece (407) is inclined plane structure, the inclined plane end of release piece (407) is inconsistent with clamping lever (301) side, fixedly connected with third spring (408) between release piece (407) and drive slider (403), the inboard sliding connection of drive slider (403) has inclined plane kelly (405), fixedly connected with second spring (406) between inclined plane kelly (405) and drive slider (403), inclined plane kelly (405) are inconsistent with the top side of clamping lever (301).
5. An automatic garment sheeting apparatus in accordance with claim 1, wherein: the guide structure (5) comprises a second chute (502), the second chute (502) is formed in the inner side of the workbench (1), the workbench (1) is slidably connected with extrusion rollers (501) through the second chute (502), the extrusion rollers (501) are provided with two side surfaces of the extrusion rollers (501) are mutually abutted, two ends of the extrusion rollers (501) are respectively rotatably connected with a rotating block (503), the rotating blocks (503) are slidably connected with the workbench (1), connecting tooth blocks (505) are arranged in the inner side of the workbench (1), and fifth springs (504) are fixedly connected between the connecting tooth blocks (505) and the rotating blocks (503).
6. An automatic garment sheeting apparatus in accordance with claim 5, wherein: the fastening structure (8) comprises side sliding rods (801), two side sliding rods (801) are respectively arranged on two sides of the workbench (1), the side sliding rods (801) are symmetrically arranged on the same side, the side sliding rods (801) are of an L-shaped structure, tooth grooves (804) are formed in the end portions of the side sliding rods (801), gears (805) are meshed with the connecting tooth blocks (505), the gears (805) are rotationally connected with the workbench (1), a plurality of guide posts (802) are fixedly connected to the inner side of the workbench (1), sliding connection is achieved between the side sliding rods (801) and the guide posts (802), and a seventh spring (803) is fixedly connected between the side sliding rods (801) and the workbench (1).
7. An automatic garment sheeting apparatus in accordance with claim 1, wherein: the supporting structure (6) comprises a bearing plate (601), the bearing plate (601) is arranged in the middle of the workbench (1), a guide rod (604) is fixedly connected to the bottom side of the bearing plate (601) vertically, the guide rod (604) is connected with the workbench (1) in a sliding mode, a supporting rod (606) is connected to the bottom side of the bearing plate (601) in a rotating mode, a limiting groove (605) is formed in the workbench (1), and the bottom end of the supporting rod (606) is connected with the workbench (1) in a sliding mode through the limiting groove (605).
8. An automatic garment sheeting apparatus in accordance with claim 7, wherein: the end of the workbench (1) is rotationally connected with a third screw (602), a driving cross rod (603) is connected to the third screw (602) in a threaded mode, the driving cross rod (603) is slidably connected with the workbench (1), and two ends of the driving cross rod (603) are respectively rotationally connected with the bottom ends of supporting rods (606) arranged on the same side.
9. An automatic garment sheeting apparatus in accordance with claim 1, wherein: lay structure (7) including installation arm (701), the tip fixedly connected with installation arm (701) of workstation (1), the tip rotation of installation arm (701) is connected with axostylus axostyle (702), jack (707) have been seted up to the tip of axostylus axostyle (702), the opposite side rotation of workstation (1) is connected with soon piece (704), the tip sliding connection of soon piece (704) has peg graft pole (705), fixedly connected with sixth spring (706) between peg graft pole (705) and soon piece (704), the tip of peg graft pole (705) is square structure, the tip of peg graft pole (705) is through jack (707) and axostylus axostyle (702) looks block.
10. An automatic garment sheeting apparatus in accordance with claim 9, wherein: the inside threaded connection of axostylus axostyle (702) has regulation pole (703), the middle part of axostylus axostyle (702) rotates and is connected with two fastening piece (708), fixedly connected with torsional spring (709) between fastening piece (708) and axostylus axostyle (702), two symmetry sets up between fastening piece (708), the side of fastening piece (708) is inconsistent with the tip of regulation pole (703).
CN202411383520.5A 2024-09-30 2024-09-30 Automatic pattern making equipment for clothing Active CN118951433B (en)

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