CN113389039B - Cloth transmission cutting integrated equipment for raincoat production - Google Patents

Cloth transmission cutting integrated equipment for raincoat production Download PDF

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Publication number
CN113389039B
CN113389039B CN202110440049.9A CN202110440049A CN113389039B CN 113389039 B CN113389039 B CN 113389039B CN 202110440049 A CN202110440049 A CN 202110440049A CN 113389039 B CN113389039 B CN 113389039B
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cloth
roller
ratchet wheel
ratchet
cutting
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CN202110440049.9A
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CN113389039A (en
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李立君
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Anhui Yooan Raingear Co ltd
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Anhui Yooan Raingear Co ltd
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    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06HMARKING, INSPECTING, SEAMING OR SEVERING TEXTILE MATERIALS
    • D06H7/00Apparatus or processes for cutting, or otherwise severing, specially adapted for the cutting, or otherwise severing, of textile materials
    • D06H7/02Apparatus or processes for cutting, or otherwise severing, specially adapted for the cutting, or otherwise severing, of textile materials transversely
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P70/00Climate change mitigation technologies in the production process for final industrial or consumer products
    • Y02P70/10Greenhouse gas [GHG] capture, material saving, heat recovery or other energy efficient measures, e.g. motor control, characterised by manufacturing processes, e.g. for rolling metal or metal working

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  • Engineering & Computer Science (AREA)
  • Textile Engineering (AREA)
  • Treatment Of Fiber Materials (AREA)

Abstract

The invention relates to the technical field of cloth cutting, and discloses cloth transmission cutting integrated equipment for raincoat production, which comprises a workbench, wherein a transmission mechanism is fixed on the surface of the workbench, a cutting part is arranged in a cutting containing cavity of the workbench below the transmission mechanism, a feed box is fixedly arranged on the right side of the transmission mechanism, the feed box comprises a cloth outlet roller and a cloth collecting roller, an outlet shaft is arranged on the centers of the cloth outlet roller and the cloth collecting roller in an interference manner, a ratchet wheel is coaxially arranged at the tail end of the shaft, and the ratchet wheel on the cloth outlet roller and the cloth collecting roller are opposite in installation direction and are linked with the cutting part. The invention solves the problems of automatic cutting and automatic supply and collection of the cloth.

Description

Cloth transmission cutting integrated equipment for raincoat production
Technical Field
The invention relates to the technical field of cloth cutting, in particular to cloth transmission cutting integrated equipment for raincoat production.
Background
The raincoat is generally rain-shielding clothes made of waterproof cloth, the waterproof cloth suitable for the raincoat is made of rubberized fabric, oilcloth, plastic film and the like, the waterproof cloth of the modern raincoat pays attention to air permeability, common special nylon, gore-Tex and the like are adopted, and the air-permeable raincoat is favorable for people to dissipate damp and hot water vapor from the raincoat when people wear the raincoat for rain prevention, so that comfort of the raincoat is improved.
In the chinese patent CN11714318A, a cloth cutting device for producing raincoat is disclosed, as shown in fig. one, a motor is driven to drive a cutting blade and a transmission assembly to perform transmission cutting, meanwhile, a threaded rod is used to drive a sliding fixing plate to move downwards, and after a flat hinge seat contacts with cloth, the cloth is smoothed by pressing a compression cylinder and an adjusting spring. However, when the pressing is performed outwards through a stress surface with a limited diameter, pushing wrinkles appear, automatic cloth alternation cannot be performed, and the expected effect cannot be achieved.
Disclosure of Invention
(one) solving the technical problems
Aiming at the defects of the prior art, the invention provides cloth transmission cutting integrated equipment for producing a raincoat, which solves the problems of automatically cutting cloth and automatically supplying and collecting the cloth.
(II) technical scheme
In order to achieve the above purpose, the present invention provides the following technical solutions: the cloth transmission cutting integrated equipment for raincoat production comprises a workbench, wherein a transmission mechanism is fixed on the surface of the workbench, a cutting part is arranged in a workbench accommodating cavity below the transmission mechanism, and a feed box is fixedly arranged on the right side of the transmission mechanism;
the feed box comprises a cloth outlet roller and a cloth collecting roller, wherein the cloth outlet roller and the cloth collecting roller are arranged in an up-down parallel manner, an outlet shaft is arranged on the centers of the cloth outlet roller and the cloth collecting roller in an interference manner, a first ratchet wheel is coaxially arranged at the tail end of the outlet shaft of the cloth outlet roller, a second ratchet wheel which is connected with the first ratchet wheel in a meshed manner is arranged on the left side of the first ratchet wheel, a third ratchet wheel is coaxially arranged at the tail end of the outlet shaft of the cloth collecting roller, a fourth ratchet wheel which is connected with the third ratchet wheel in a meshed manner is arranged on the left side of the third ratchet wheel, and the diameter of the first ratchet wheel is larger than that of the second ratchet wheel.
Preferably, the transmission mechanism comprises a first roller way and a second roller way, wherein the first roller way is fixedly connected with the fixed table, the second roller way is fixedly arranged on the workbench surface, the first roller way and the second roller way are arranged in parallel, and rollers of the two roller ways are tangent.
Preferably, the cutting part comprises a cylinder and a pushing rod linked with the cylinder, an L-shaped protruding block is fixedly arranged on the right side of the pushing rod, a concave roller is slidably arranged on the axis of the L-shaped protruding block, a push rod is arranged on the concave roller, and a cutter is fixedly arranged on the push rod.
Preferably, the L-shaped protruding block comprises a rising area and an extension area, wherein the right protruding area is the rising area, and a strip-shaped protrusion is axially arranged on the L-shaped protruding block and is matched with the concave roller.
Preferably, the tail end of the second roller way is provided with an extension section and penetrates into the feed box, and the cut cloth is conveyed to a tangent extension line of the cloth collecting roller shaft.
Preferably, the cutter is in threaded connection with the ejector rod, the cutter is positioned between the two rollers, the position of the cutter cannot be changed along with the movement of the L-shaped convex block, and the ejector rod is detachably arranged on the concave roller.
Preferably, the pushing connecting rod is fixedly installed behind the L-shaped protruding block, the pushing connecting rod is in a mirror image L shape, and a cross rod is installed on the right side of the pushing connecting rod, wherein the cross rod is arranged between the second ratchet wheel and the fourth ratchet wheel.
Preferably, the first ratchet wheel and the second ratchet wheel are in the same plane, the ratchet claws are arranged on the front side and the rear side of the cross rod, the second ratchet wheel acts on the cloth discharging ratchet claw, the fourth ratchet wheel acts on the cloth collecting ratchet claw, and the ratchet wheels rotate when the ratchet claws move leftwards.
Preferably, the second ratchet wheel is larger than the first ratchet wheel in diameter, the third ratchet wheel is smaller than the fourth ratchet wheel in diameter, and the fourth ratchet wheel is the same as the second ratchet wheel in diameter, wherein the second ratchet wheel and the fourth ratchet wheel are rotatably arranged on the wall of the material box.
Preferably, the cloth collecting roller is further provided with a pressing plate, roller hubs and sliding rails arranged on the roller hubs, wherein the sliding rails are respectively arranged on the roller hubs at two sides and are perpendicular to the axis, two ends of the pressing plate are fixedly connected with the sliding blocks, and a sensor is embedded in a bottom plate at the side of the pressing plate opposite to the axis.
(III) beneficial effects
Compared with the prior art, the invention provides cloth transmission cutting integrated equipment for raincoat production, which has the following beneficial effects:
1. according to the invention, the rotating mechanism arranged in the feed box is used for carrying out unilateral power transmission through the moving ratchet wheel structure, so that the problem of reciprocating motion during linkage with the cutting part is effectively avoided, the diameter of the first ratchet wheel is smaller than that of the second ratchet wheel, the rotating speed of the cloth collecting roller relative to the cloth outlet roller is ensured to be large when the cross rod moves leftwards, and the cloth is always in a state of being in tension, so that the ratchet wheel stops rotating during cutting by the cutter, and a smoothing mechanism is not required to be arranged.
2. The invention can linearly transmit the power of the cylinder by arranging the pushing links distributed in the shape of the mirror image L, reduces the power input, simultaneously can also mechanically link, unidirectionally transmit the cloth when the cutter cuts the cloth, tighten the cloth, automatically collect the cloth after the cutter falls down and output the cloth to be cut.
3. According to the invention, the cutters acting on the clothing are arranged, and the cutters physically stretch up and down through the movement on the L-shaped protruding blocks, so that the power driving is effectively reduced.
4. According to the invention, the cut cloth is identified and acted by the pressing plate arranged on the hub of the cloth collecting roller and matched with the slideway and the laser sensor, so that the cloth breaking notch is fixed for carrying out follow-up winding, and the phenomenon that the cloth breaking slides on the cloth collecting roller and cannot be collected is prevented.
5. According to the invention, the upper layer roller way and the lower layer roller way are arranged, and the extension section is arranged at the right end of the second layer roller way, so that further transmission action is performed on the cut cloth, and the phenomenon that the cut cloth cannot enter the winding shaft of the cloth collecting roller after the second roller way completes transmission task is prevented.
6. According to the invention, the ejector rod is fixed with the cutters and is detachably connected with the rollers, so that when the novel lace fabric cutting machine is particularly used, the ejector rod can be detached, a new cutter is reloaded, the shape of the cutting edge is changed, and fabrics with different laces are cut.
Drawings
FIG. 1 is a front view of a cloth conveying and cutting integrated device for raincoat production in the prior art;
FIG. 2 is an axial view of a cloth transfer cutting integrated device for raincoat production in accordance with the present invention;
FIG. 3 is a left side view of an integrated cloth transfer cutting device for raincoat production in accordance with the present invention;
FIG. 4 is a view A-A of FIG. 3 in accordance with the present invention;
FIG. 5 is an axial view of a bin of the cloth conveying and cutting integrated equipment for raincoat production of the invention;
FIG. 6 is a cross-sectional view of a cloth collecting roller of an integrated cloth conveying and cutting device for raincoat production.
In the figure: the device comprises a 1-workbench, a 2-transmission mechanism, a 3-feed box, a 4-cutting component, a 11-fixed table, a 12-cutting containing cavity, a 21-first roller way, a 22-second roller way, a 31-cloth outlet roller, a 32-cloth collecting roller, a 33-leading-out shaft, a 34-first ratchet wheel, a 35-second ratchet wheel 36-third ratchet wheel, a 37-fourth ratchet wheel, a 38-cloth collecting ratchet claw, a 39-cloth outlet ratchet claw, a 321-roller hub, a 322-pressing plate, a 323-sliding rail, a 41-cylinder, a 42-traction rod, a 43-L-shaped convex block, a 44-cutter, a 45-pushing connecting rod and a 46-cross rod.
Detailed Description
The following description of the embodiments of the present invention will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present invention, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the invention without making any inventive effort, are intended to be within the scope of the invention.
As shown in fig. 2-6, the present invention provides a technical solution: the utility model provides a cloth transmission cutting integrated equipment for raincoat production, be provided with workstation 1, be fixed with drive mechanism 2 on the mesa of workstation 1, drive mechanism 2 includes two rows of transmission row poles, wherein first roll table 21 carries out fixed connection with the fixed station 11 lower plate face, second roll table 22 fixed mounting is on workstation 1 face, wherein first roll table 21 and second roll table 22 dislocation connection, second roll table 22 end has the extension section and gets deep into workbin 3, transfer to cloth collection roller 32 axial tangent line extension line after cutting, cutting part 4 installs in drive mechanism 2 below workstation 1 appearance intracavity, the cutting structure includes cylinder 41, cylinder 41 fixed mounting is on cutting appearance chamber 12 bottom plate, be connected with a push rod with cylinder 41 piston rod spiro union, the push rod right side is connected with L type lug 43, carry out the traction to L type lug 43, wherein L type lug 43 sets up to right side arch left side extension in this embodiment, the indent gyro wheel sets up on L type lug 43, the bar arch is arranged on the lug, carry out motion direction along the indent gyro wheel to the indent gyro wheel, and pass through to cloth collection roller 32 axial tangent line after cutting, cutting part 4 installs in the side 1 appearance intracavity, the cutting structure includes cylinder 41, the cylinder 41 fixed mounting is on cutting appearance chamber 12 bottom plate, be connected with a push rod with cylinder 41 piston rod spiro union, the push rod right side is connected with L type lug 43, wherein, the push rod is fixed right side 45 is fixed with right side 45, the side is fixed with right side top rod 45 and is in between the top of roller 45, wherein, 45 pushes away the top rod is located between the top rod and is in the top rod is in the top of roller 45, 45 is fixed and is in the top of roller 45.
The feed box 3 comprises a cloth outlet roller 31 and a cloth collecting roller 32, wherein a drawing shaft 33 is arranged on the axes of the cloth outlet roller 31 and the cloth collecting roller 32, a first ratchet wheel 34 is coaxially arranged at the tail end of the shaft, a second ratchet wheel 35 which is in meshed connection with the first ratchet wheel 34 is arranged at the left side of the first ratchet wheel 34, a third ratchet wheel 36 is coaxially arranged at the tail end of the shaft of the cloth collecting roller 32, a fourth ratchet wheel 37 which is in meshed connection with the third ratchet wheel 36 is arranged at the left side of the third ratchet wheel 36, wherein the diameter of the first ratchet wheel 34 is larger than that of the third ratchet wheel 36, the diameter of the second ratchet wheel 35 is larger than that of the first ratchet wheel 34, the diameter of the third ratchet wheel 36 is smaller than that of the fourth ratchet wheel 37, the diameter of the fourth ratchet wheel 37 is the same as that of the second ratchet wheel 35, the first ratchet wheel 34 and the second ratchet wheel 35 are in the same plane, the third ratchet wheel 36 and the fourth ratchet wheel 37 are arranged in the same plane, the cloth outlet ratchet wheel 39 and the cloth collecting ratchet wheel 38 are both arranged on a cross rod 46 of the cutting part 4, in the present embodiment, the cloth discharging pawl 39 is mounted at the rear end of the cross bar 46, the cloth collecting pawl 38 is mounted at the front end of the cross bar 46, the gear teeth of the second ratchet wheel 35 on the cloth discharging roller 31 extend counterclockwise, the gear teeth of the fourth ratchet wheel 37 on the cloth collecting roller 32 extend clockwise, the cloth discharging pawl 39 acts on the fourth ratchet wheel 37 in an expected manner below the second ratchet wheel 35, the claw hook of the cloth discharging pawl 39 faces upward, the claw hook of the cloth collecting pawl 38 faces downward, when the cross bar 46 is pulled leftwards, the claw hook of the cloth discharging pawl 39 and the second ratchet wheel 35 are clamped and pulled to generate power, the second ratchet wheel 35 and the first ratchet wheel 34 are in power transmission, the cloth discharging roller 31 rotates counterclockwise and the cloth collecting roller 32 rotates clockwise, the pressing plate 322, the sliding rail 323 and the roller hub 321 are also arranged on the cloth collecting roller 32, the sliding rails 323 are respectively and fixedly installed on the roller hubs 321 at two sides perpendicular to the axis, two ends of the pressing plate 322 are fixedly connected with the sliding blocks, and a sensor is embedded in the pressing plate 322. The sensor faces the cloth collecting roller 32 axis and acts when a cloth section is detected.
Working principle: when the cloth feeding device works, firstly, the cloth feeding roller 31 and the cloth collecting roller 32 are installed at the initial position, the air cylinder 41 starts to work, when the L-shaped protruding block 43 is pulled to move leftwards by the pulling force of the traction rod 42, the cloth feeding roller 31 and the cloth collecting roller 32 start to rotate by the meshing force of the first ratchet wheel 34 and the second ratchet wheel 35, the cloth feeding roller 31 rotates anticlockwise, the cloth collecting roller 32 rotates clockwise, the diameter of the first ratchet wheel 34 is larger than that of the second ratchet wheel 35, the rotating speed of the cloth feeding roller 31 is smaller than that of the cloth collecting roller 32 when the cloth is rotated, the cloth enters from the right side of the conveying mechanism, is conveyed through the first roller way 21 and enters the second roller way 22 from the left side, at the moment, the cloth starts to be in a tight state in the roller way by the squeezing force of the two rows of roller ways and the rotating speed difference of the cloth feeding roller 31 and the cloth collecting roller 32, the cloth enters the cloth collecting roller 32 through the extension slide on the right side of the second row of the roller wheels, after the laser sensor detects the section, the pressing plate 322 slides downwards through the sliding rail 323, keeps static after pressing the section, the roller hub 321 drives the pressing plate 322 while rotating along with the shaft diameter, so that cloth is wound on the roller shaft, one circle of rear pressing plate 322 rises to the initial position, the air cylinder 41 reciprocates to start moving rightwards, the traction rod 42 pushes the L-shaped protruding block 43 to move rightwards, the roller starts moving rightwards from the extension area to the rising area, the cutter 44 is lifted and stretches out from the through groove between the two roller shafts, at the moment, the cloth is tightly clamped between the two roller ways due to the stopping of the cloth outlet roller 31 and the cloth collecting roller 32, the cutter 44 further pushes the L-shaped protruding block 43 to the highest point due to the air cylinder 41, the cutter 41 contacts with the cloth for cutting, the air cylinder 41 retracts the L-shaped protruding block 43 to move leftwards, the roller returns to the extension area from the rising area, the cutter 44 falls down, the cloth outlet roller 31 and the cloth collecting roller 32 are continuously repeatedly subjected to the ratchet action, the cloth section moves rightwards along the second roller way 22 and enters the cloth collecting roller 32 through the extension section of the second roller way 22, the pressing plate 322 moves downwards to press the short cloth to rotate along with the cloth collecting roller 32, and the short cloth returns to the initial position after one circle, and the process is performed in the follow-up working cycle.
The electrical components in the connection device are all connected with an external main controller and 22V mains supply, and the main controller can be conventional known equipment for controlling a computer and the like.
It is noted that relational terms such as first and second, and the like are used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Moreover, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus.
Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made therein without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (4)

1. Cloth transmission cutting integrated equipment for raincoat production, including the workstation, its characterized in that: a transmission mechanism is fixed on the table surface of the workbench, a cutting part is arranged in a workbench accommodating cavity below the transmission mechanism, and a feed box is fixedly arranged on the right side of the transmission mechanism;
the feed box comprises a cloth outlet roller and a cloth collecting roller, wherein the cloth outlet roller and the cloth collecting roller are arranged up and down in parallel, an outlet shaft is arranged on the centers of the cloth outlet roller and the cloth collecting roller in an interference manner, a first ratchet wheel is coaxially arranged at the tail end of the outlet shaft of the cloth outlet roller, a second ratchet wheel which is in meshed connection with the first ratchet wheel is arranged at the left side of the first ratchet wheel, a third ratchet wheel is coaxially arranged at the tail end of the outlet shaft of the cloth collecting roller, a fourth ratchet wheel which is in meshed connection with the third ratchet wheel is arranged at the left side of the third ratchet wheel, and the diameter of the first ratchet wheel is larger than that of the third ratchet wheel;
the cutting component comprises an air cylinder and a pushing rod linked with the air cylinder, an L-shaped protruding block is fixedly arranged on the right side of the pushing rod, a concave roller is slidably arranged on the axis of the L-shaped protruding block, a push rod is arranged on the concave roller, and a cutter is fixedly arranged on the push rod;
the L-shaped protruding block comprises a rising area and an extending area, wherein the right protruding area is the rising area, and a strip-shaped protrusion is axially arranged on the L-shaped protruding block and is matched with the concave roller;
the L-shaped protruding block is fixedly provided with a pushing connecting rod, the pushing connecting rod is in a mirror image L shape, the right side of the pushing connecting rod is provided with a cross rod, and the cross rod is arranged between the second ratchet wheel and the fourth ratchet wheel;
the first ratchet wheel and the second ratchet wheel are positioned on the same plane, the ratchet claws are arranged on the front side and the rear side of the cross rod, the second ratchet wheel acts with the cloth outlet ratchet claw, the fourth ratchet wheel acts with the cloth collecting ratchet claw, and the ratchet wheels rotate when the ratchet claws move leftwards;
the diameter of the second ratchet wheel is larger than that of the first ratchet wheel, the diameter of the third ratchet wheel is smaller than that of the fourth ratchet wheel, and the diameter of the fourth ratchet wheel is the same as that of the second ratchet wheel, wherein the second ratchet wheel and the fourth ratchet wheel are rotatably arranged on the wall of the feed box;
the cloth collecting roller is also provided with a pressing plate, roller hubs and sliding rails arranged on the roller hubs, wherein the sliding rails are respectively arranged on the roller hubs at two sides and are perpendicular to the axis, two ends of the pressing plate are fixedly connected with the sliding blocks, and a sensor is embedded in a bottom plate at the side of the pressing plate opposite to the axis;
the rotating speed of the cloth outlet roller is smaller than that of the cloth collecting roller.
2. The cloth transfer cutting integrated device for raincoat production according to claim 1, wherein: the transmission mechanism comprises a first roller way and a second roller way, wherein the first roller way is fixedly connected with the fixed table, the second roller way is fixedly arranged on the workbench surface, the first roller way and the second roller way are arranged in parallel, and rollers of the two roller ways are tangent.
3. The cloth transfer cutting integrated device for raincoat production according to claim 2, wherein: the tail end of the second roller way is provided with an extension section and goes deep into the feed box, and the cut cloth is conveyed to a tangent extension line of the cloth collecting roller shaft.
4. The cloth transfer cutting integrated device for raincoat production according to claim 1, wherein: the cutter is in threaded connection with the ejector rod, the cutter is positioned between the two rollers, the position of the cutter cannot be changed along with the movement of the L-shaped protruding block, and the ejector rod is detachably arranged on the inner concave roller.
CN202110440049.9A 2021-04-23 2021-04-23 Cloth transmission cutting integrated equipment for raincoat production Active CN113389039B (en)

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CN107555223A (en) * 2017-09-30 2018-01-09 威海宝威新材料科技有限公司 A kind of fixed length batcher
CN207391882U (en) * 2017-11-01 2018-05-22 杭州华水布艺有限公司 A kind of platform cloth inspecting machine with rolling-up mechanism
CN207774422U (en) * 2017-12-29 2018-08-28 常州市鑫辉网具有限公司 Plastic wire flat filament warping machine infrared ray deviation correcting device
CN208994766U (en) * 2018-07-23 2019-06-18 重庆市南川区昌隆集装袋有限责任公司 Cloth trimming wrap-up with waste material winding structure
CN109176619A (en) * 2018-08-03 2019-01-11 安徽甬安雨具有限公司 A kind of raincoat production cloth cutting device
CN109607266A (en) * 2018-11-29 2019-04-12 安徽荣泽科技有限公司 A kind of BOPP film wrap-up
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