CN210163719U - Cutter fabric cutting machine - Google Patents

Cutter fabric cutting machine Download PDF

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Publication number
CN210163719U
CN210163719U CN201920779914.0U CN201920779914U CN210163719U CN 210163719 U CN210163719 U CN 210163719U CN 201920779914 U CN201920779914 U CN 201920779914U CN 210163719 U CN210163719 U CN 210163719U
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Prior art keywords
cutting
transverse
longitudinal
knife
gear
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CN201920779914.0U
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Chinese (zh)
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文国江
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Dongguan Shunfa Underwear Manufacturing Co Ltd
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Dongguan Shunfa Underwear Manufacturing Co Ltd
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Abstract

The utility model relates to a clothing production and processing field, more specifically say, it relates to a cutter fabric cutting machine. The key points of the technical scheme are as follows: the cutting device comprises a workbench, a cutting device and a moving device capable of enabling the cutting device to move and cut, wherein the cutting device comprises a moving platform and a cutting knife, and the cutting knife is vertically downwards arranged on the moving platform. The moving device comprises a transverse moving device and a longitudinal moving device. The longitudinal moving device comprises two longitudinal sliding grooves, a portal frame and a longitudinal driving device, the portal frame comprises two mounting plates and a cross beam horizontally connected between the two mounting plates, the two longitudinal sliding grooves are formed in two sides of the workbench, the longitudinal driving device is arranged on the mounting plates, and the longitudinal driving device can drive the portal frame to move on the two longitudinal sliding grooves. To sum up, the utility model discloses following beneficial effect has: firstly, the cost is low; secondly, the cutting effect is good; thirdly, the labor and the time are saved, and the labor cost is saved.

Description

Cutter fabric cutting machine
Technical Field
The utility model relates to a clothing production and processing field, more specifically say, it relates to a cutter fabric cutting machine.
Background
Garment production generally refers to the garment production process in the textile industry, including the processes of design, cutting, sewing, sizing, packaging, and the like. The tailoring is a very important ring in the production of the clothing, and the tailoring is a process from the production of a plane view or a three-dimensional tailored cloth pattern to the tailoring of clothing materials. Common tools for single-piece cutting are: special painting powder for scissors, market rules or feet and clothes; the common batch cutting tool comprises: electric shears, cloth cutting machines, electric power hole puncher, computer painting wheat spraying machines and the like. The mode amount of labour of cutting through scissors or electric scissors is very big, not only wastes time and energy, and efficiency is very low, cuts the position moreover and receives artifical level restriction, cuts the unsatisfactory quality.
Therefore, there is a need for a knife fabric cutting machine that overcomes the above problems.
SUMMERY OF THE UTILITY MODEL
To the not enough of prior art existence, the utility model aims to provide a cutter fabric cutting machine.
The above technical purpose of the present invention can be achieved by the following technical solutions: a cutter cloth cutting machine comprises a workbench and a cutting mechanism, wherein the cutting mechanism comprises a cutting device and a moving device capable of enabling the cutting device to move for cutting, the cutter cloth cutting machine comprises a cutting mechanism and a cutting mechanism,
the cutting device comprises a moving table and a cutting knife, and the cutting knife is vertically and downwards arranged on the moving table;
the moving device comprises a transverse moving device and a longitudinal moving device;
the longitudinal moving device comprises two longitudinal sliding grooves, a portal frame and a longitudinal driving device, the portal frame comprises two mounting plates and a cross beam horizontally connected between the two mounting plates, the two longitudinal sliding grooves are formed in two sides of the workbench, the longitudinal driving device is arranged on the mounting plates, and the longitudinal driving device can drive the portal frame to move on the two longitudinal sliding grooves;
the transverse moving device comprises a transverse guide rail and a transverse driving device, the transverse guide rail is arranged on the cross beam, a second sliding block is arranged on the moving platform, a sliding groove connected with the transverse guide rail in a sliding mode is formed in the lower surface of the second sliding block, the transverse driving device is arranged on the moving platform, and the transverse driving device is used for driving the moving platform to transversely move on the cross beam.
Through adopting above-mentioned technical scheme, lateral shifting device and longitudinal movement device mutually support for cutting device moves on the workstation, and then makes the cloth of placing on the workstation obtain cutting, the utility model discloses a cutter fabric cutting machine has the cutting accuracy height, and cutting effect is good, advantages such as low cost.
The utility model discloses further set up to: the longitudinal driving device comprises a longitudinal driving motor, two driving gears, two synchronous gears, a first driven gear, a longitudinal driving rack and a synchronous rod, wherein cavities are formed in the two mounting plates, the two synchronous gears and the two first driven gears are respectively mounted in the two cavities, the synchronous rod is horizontally and rotatably connected between the two mounting plates, two ends of the synchronous rod are coaxially and fixedly connected with the two synchronous gears, the longitudinal driving motor is mounted on one of the mounting plates, an output shaft of the longitudinal driving motor extends into the cavities, the driving gears are mounted on the output shaft of the longitudinal driving motor, the driving gears are meshed with the synchronous gears, the synchronous gears are meshed with the first driven gears, the two longitudinal driving racks are arranged, and the longitudinal driving racks are respectively arranged on two sides of the workbench and are close to the longitudinal sliding grooves, the first driven gear is meshed with the longitudinal transmission rack.
Through adopting above-mentioned technical scheme, vertical driving motor output power, the driving gear rotates, drives synchronous gear and rotates, and two synchronous gears rotate together under the effect of synchronizing bar, and then drive first driven gear and rotate, and under first drive gear and the vertical drive rack combined action, drive two mounting panels and remove on two vertical spouts.
The utility model discloses further set up to: first installation cavity has been seted up to the mobile station, transverse driving device includes transverse driving motor, transverse transmission rack and drive gear, transverse driving motor horizontal installation is in first installation cavity, transverse driving motor's output shaft links to each other with drive gear is fixed, transverse transmission rack level sets up at the crossbeam upper surface, just transverse transmission rack with transverse guide parallel interval sets up, transverse transmission rack and drive gear mesh mutually.
By adopting the technical scheme, the transverse driving motor drives the driving gear to rotate, and the driving gear is matched with the transverse transmission rack to enable the moving platform to transversely move on the cross beam.
The utility model discloses further set up to: the edge of the upper surface of the beam is provided with a guide rail, the moving platform is horizontally provided with a roller, and the roller is in rolling connection with the guide rail.
Through adopting above-mentioned technical scheme, setting up of gyro wheel and guide rail can make the mobile station more stable when lateral shifting on the crossbeam.
The utility model discloses further set up to: the circumference wheel face of gyro wheel is seted up the caulking groove that the cross section personally submits the V-arrangement, the orbital lateral wall of direction and caulking groove looks adaptation.
Through adopting above-mentioned technical scheme, the caulking groove of V-arrangement makes the gyro wheel be difficult to follow the slip of guide rail lateral wall.
The utility model discloses further set up to: the mobile station is provided with the second installation cavity, installs the commentaries on classics sword device in the second installation cavity, the commentaries on classics sword device includes first electronic jar, articulated piece, articulated knot, turning block and mount table, the turning block rotates to be connected on the mount table, the turning block is provided with articulated piece at another of being connected with the mount table rotation, the cylinder body of first electronic jar is installed on the chamber wall of second installation cavity, the telescopic shaft of first electronic jar is connected with the articulated knot, and the articulated knot is connected with articulated piece is articulated, and the vertical rotation hole of having seted up of mount table, the cutting knife just passes the rotation hole with the fixed linking to each other of turning block.
Through adopting above-mentioned technical scheme, the telescopic shaft of first electronic jar is concertina movement under the control of the signal of telecommunication, detains through articulated piece and articulated and moves the turning block and rotate on the mount table, and then drives and rotate with turning block fixed connection's electronic jar of second, and the cutting knife is fixed to be set up in the electronic jar bottom of second, can rotate along with the rotation of the electronic jar of second, finally reaches the signal of telecommunication and can control short sword section pivoted effect.
The utility model discloses further set up to: the cutting knife is characterized in that a second electric cylinder is connected between the cutting knife and the rotating block, a cylinder body of the second electric cylinder is fixedly connected with the rotating block and penetrates through the rotating hole, and a telescopic shaft of the second electric cylinder is fixedly connected with the cutting knife.
Through adopting above-mentioned technical scheme, the flexible cutting knife up-and-down motion that can make of the electronic jar of second can control cutting work more in a flexible way.
The utility model discloses further set up to: the utility model discloses a workstation, including workstation, workstation one side, blowing device, mount and hand wheel, the mount includes two vertical settings at the riser of the workstation left and right sides, the material roller rotates to be connected between two risers, it has the cloth to coil on the material roller to coil, the riser is extended to material roller one end, and this extension with the hand wheel is fixed continuous.
Through adopting above-mentioned technical scheme, the operation workman passes through the hand wheel, can put down the cloth of rolling up on the material roller, and on paving the cloth on the workstation, just can begin to cut work. The prior art emptying mode is that an operator takes out a cloth roll from other places and then lays the cloth roll on a workbench. The utility model discloses a blowing mode is more simple and convenient than current blowing mode, and makes placing of cloth book well in order more.
The utility model discloses further set up to: still be provided with negative pressure device on the workstation, negative pressure device is including being used for seting up the negative pressure chamber in the workstation, seting up at the workstation upper surface and with a plurality of negative pressure holes of negative pressure chamber intercommunication and the air exhauster of connecting the negative pressure chamber, the workstation top is provided with the cover film that covers at the cloth upper surface, the workstation top is provided with and is used for following the wind-up roll that cutting mechanism removed the rolling cover film.
Through adopting above-mentioned technical scheme, the air exhauster during operation forms the negative pressure with negative pressure chamber and negative pressure hole cooperation, and covers the gas tightness that the membrane will greatly increased cloth, and then the cloth that makes can firmly be adsorbed at the workstation upper surface, and when cutting mechanism removed, the cutting mechanism removal was followed to the wind-up roll to will cover the membrane rolling, and then make to cover the membrane and can not disturb going on of cutting work.
The utility model discloses further set up to: the cutting knife is provided with the blade towards the bottom and the side of workstation.
Through adopting above-mentioned technical scheme, the cutting knife not only can accomplish the cutting of horizontal direction, also can carry out the cutting of vertical direction.
To sum up, the utility model discloses following beneficial effect has:
firstly, the cutting effect is good;
secondly, the time and labor are saved, and the labor cost is saved.
Drawings
FIG. 1 is a schematic view of the overall structure of the present embodiment;
FIG. 2 is a schematic view of the installation structure of the cutting mechanism in the present embodiment;
FIG. 3 is a schematic view of the installation structure of the lateral shifting device in this embodiment;
fig. 4 is a schematic view of the mounting structure of the rotary cutter device in this embodiment.
In the figure: 1. a work table; 2. a mobile station; 3. a cutting knife; 4. a longitudinal chute; 5. mounting a plate; 6. a cross beam; 7. a transverse guide rail; 8. a negative pressure hole; 9. a material roller; 10. a vertical plate; 11. a hand wheel; 12. a fixed roller; 13. a wind-up roll; 14. a longitudinal driving motor; 15. a driving gear; 16. a synchronizing gear; 17. a first driven gear; 18. a second driven gear; 19. a synchronization lever; 20. a longitudinal drive rack; 21. a first sliding block; 22. a first sprocket; 23. a second sprocket; 24. a chain; 25. an emergency stop button; 26. a second sliding block; 27. a transverse driving motor; 28. a drive gear; 29. a guide rail; 30. a roller; 31. caulking grooves; 32. a transverse transmission rack; 33. a first mounting cavity; 34. a second mounting cavity; 35. a first electric cylinder; 36. a hinged block; 37. a hinge joint buckle; 38. rotating the block; 39. an installation table; 40. a second electric cylinder.
Detailed Description
The present invention will be described in detail with reference to the accompanying drawings and examples.
A cutter cloth cutting machine is shown in figure 1 and comprises a workbench 1 and a cutting mechanism, wherein the cutting mechanism comprises a cutting device and a moving device capable of enabling the cutting device to move for cutting, and the moving device comprises a transverse moving device and a longitudinal moving device. Wherein, cutting device includes mobile station 2 and cutting knife 3, and cutting knife 3 sets up on mobile station 2 vertically downwards. The cutting knife 3 is provided with cutting edges towards the bottom and the side edges of the workbench 1. The longitudinal moving device comprises two longitudinal sliding grooves 4, a portal frame and a longitudinal driving device, the portal frame comprises two mounting plates 5 and a cross beam 6 which is horizontally connected between the two mounting plates 5, the two longitudinal sliding grooves 4 are respectively arranged on two sides of the workbench 1, the longitudinal driving device is arranged on the mounting plates 5, and the longitudinal driving device can drive the portal frame to move on the two longitudinal sliding grooves 4. The lateral moving means includes a lateral guide 7 provided on the upper surface of the cross beam 6, and a lateral driving means for driving the moving stage 2 to move laterally on the cross beam 6.
Lateral shifting device and vertical mobile device mutually support for cutting device moves on workstation 1, and then makes and place the cloth on workstation 1 and obtain cutting, the utility model discloses a cutter fabric cutting machine has that cutting accuracy is high, and cutting effect is good, advantages such as low cost.
Still be provided with negative pressure device on workstation 1, negative pressure device is including being used for seting up the negative pressure chamber (not shown in the figure) in workstation 1, seting up at workstation 1 upper surface and with a plurality of negative pressure hole 8 of negative pressure chamber intercommunication and the air exhauster of connecting the negative pressure chamber, is provided with the cover film (not shown in the figure) that covers on the cloth upper surface above workstation 1, is provided with the wind-up roll 13 that is used for following cutting mechanism and removes the rolling cover film above workstation 1. The air exhauster during operation forms the negative pressure with negative pressure chamber and the cooperation of negative pressure hole 8, and covers the gas tightness that the membrane will greatly increased the cloth, and then the cloth that makes can firmly be adsorbed at 1 upper surface of workstation, and when cutting mechanism removed, wind-up roll 13 followed cutting mechanism and removed to will cover the membrane rolling, and then make and cover the membrane and can not disturb going on of cutting work. Further, the cover film is made of a plastic material. The plastic has low cost and good air tightness, and is a good material for the covering film.
The material placing device is further arranged on one side of the workbench 1 and comprises a material roller 9, a fixing frame and a hand wheel 11, the fixing frame comprises two vertical plates 10 arranged on the left side and the right side of the workbench 1, the material roller 9 is rotatably connected between the two vertical plates 10, a cloth roll is wound on the material roller 9, one end of the material roller 9 extends out of the vertical plates 10, and the extending portion is fixedly connected with the hand wheel 11. An operator can put down the cloth wound on the material roller 9 through the hand wheel 11, and the cutting work can be started when the cloth is laid on the workbench 1. The prior art emptying method is that an operator takes out a cloth roll from other places and then lays the cloth roll on the workbench 1. The utility model discloses a blowing mode is more simple and convenient than current blowing mode, and makes placing of cloth book well in order more.
The other side of the discharging device of the workbench 1 is provided with a fixed roller 12, and one end of the covering film is fixedly arranged at the fixed roller 12. When the wind-up roll 13 is used for wind-up, the cover film fixing roll 12 can ensure that the cover film laid on the workbench 1 cannot slide unexpectedly.
Referring to fig. 2, the wind-up roll 13 is horizontally and rotatably arranged between the two mounting plates 5, and the wind-up roll 13 is arranged close to the cutting knife 3 and does not abut against the cutting knife 3. Longitudinal drive device drive gantry frame moves on vertical spout 4 and drives the wind-up roll simultaneously and rotates, and then drives cutting knife 3 and carry out cutting work, and wind-up roll 13 sets up in 3 departments of being close to the cutting knife, can be so that the cover film of wind-up roll 13 rolling is unlikely to too much and then the influence compresses tightly the cloth, does not make cutting knife 3 can not cut the cover film at the in-process of cutting the cloth with cutting knife 3 counterbalance.
The longitudinal driving device comprises a longitudinal driving motor 14, a driving gear 15, a synchronizing gear 16, a first driven gear 17, a second driven gear 18, a longitudinal transmission rack 20 and a synchronizing rod 19, and cavities are formed in the two mounting plates 5. The synchronous gears 16, the first driven gear 17 and the second driven gear 18 are arranged in two cavities respectively, the first driven gear 17 and the second driven gear 18 are arranged at two corners of the bottom of the cavity respectively, and the first driven gear 17 and the second driven gear 18 are connected through a belt pulley, so that the first driven gear 17 and the second driven gear 18 can rotate synchronously. The synchronous rod 19 is horizontally and rotatably connected between the two mounting plates 5, two ends of the synchronous rod 19 are coaxially and fixedly connected with the two synchronous gears 16, the longitudinal driving motor 14 is mounted on the side wall of one of the mounting plates 5, and an output shaft of the longitudinal driving motor 14 extends into the cavity. The driving gear 15 is installed on the output shaft of the longitudinal driving motor 14, the driving gear 15 is meshed with the synchronizing gear 16, the synchronizing gear 16 is meshed with the first driven gear 17, two longitudinal transmission racks 20 are arranged, the two longitudinal transmission racks 20 are respectively arranged on two sides of the workbench 1 and are close to the longitudinal sliding groove 4, and the first driven gear 17 and the second driven gear 18 are both meshed with the longitudinal transmission racks 20. The bottom of the mounting plate 5 is provided with a first sliding block 21, and the first sliding block 21 is connected with the longitudinal sliding groove 4 in a sliding manner.
The longitudinal driving motor 14 outputs power, the driving gear 15 rotates to drive the synchronous gears 16 to rotate, the two synchronous gears 16 rotate together under the action of the synchronous rod 19, and then the first driven gear 17 is driven to rotate, and the first driving gear and the longitudinal driving rack 20 drive the two mounting plates 5 to move on the two longitudinal sliding grooves 4 under the combined action. The mounting plate 5 is provided with an emergency stop button 25, and when an emergency occurs, the machine can be stopped through the emergency stop button 25, so that the safety of operators is protected.
All be provided with first sprocket 22, second sprocket 23 and chain 24 in two cavitys, two fixed settings in the both ends of wind-up roll 13 of first sprocket 22, two fixed settings in the synchronizing bar 19 both ends of second sprocket 23, two second sprockets 23 and the coaxial setting of synchronizing bar 19, chain 24 links together first sprocket 22 and second sprocket 23 in order to realize synchronous drive. The longitudinal driving motor 14 can drive the synchronizing rod 19 to rotate, further drive the first chain wheel 22 to rotate, further drive the second chain wheel 23 to rotate, and finally realize that the winding roller 13 performs corresponding winding covering film work while the mounting plate 5 moves, so that the winding and the moving are synchronous.
Referring to fig. 3, a second sliding block 26 is arranged on the moving platform 2, a sliding groove connected to the transverse guide rail 7 in a sliding manner is formed in the lower surface of the second sliding block 26, a transverse driving device is arranged on the moving platform 2, the moving platform 2 is provided with a first mounting cavity 33, the transverse driving device comprises a transverse driving motor 27, a transverse driving rack 32 and a driving gear 28, the transverse driving motor 27 is horizontally arranged in the first mounting cavity 33, an output shaft of the transverse driving motor 27 is fixedly connected with the driving gear 28, the transverse driving rack 32 is horizontally arranged on the upper surface of the cross beam 6, the transverse driving rack 32 and the transverse guide rail 7 are arranged in parallel at intervals, and the transverse driving rack 32 is meshed with the driving gear 28. The transverse drive motor 27 rotates the drive gear 28, and the drive gear 28 and the transverse drive rack 32 cooperate to cause the mobile station 2 to move transversely on the cross beam 6.
The edge of the upper surface of the beam 6 is provided with a guide rail 29, the mobile station 2 is horizontally provided with a roller 30, and the roller 30 is in rolling connection with the guide rail 29. The arrangement of the rollers 30 and the guide rails 29 makes it possible to make the mobile station 2 more stable when moving laterally on the cross beam 6. The circumferential wheel surface of the roller 30 is provided with a caulking groove 31 with a V-shaped cross section, and the side wall of the guide track 29 is matched with the caulking groove 31. The V-shaped caulking groove 31 makes the roller 30 not easily slip off the side wall of the guide rail 29.
Referring to fig. 4, the mobile station 2 is provided with a second mounting cavity 34, a rotary cutter device is mounted in the second mounting cavity 34, the rotary cutter device includes a first electric cylinder 35, a hinge block 36, a hinge buckle 37, a rotary block 38 and a mounting platform 39, the rotary block 38 is rotatably connected to the mounting platform 39, the hinge block 36 is disposed at the other end of the rotary block 38 rotatably connected to the mounting platform 39, a cylinder body of the first electric cylinder 35 is mounted on a cavity wall of the second mounting cavity 34, the hinge buckle 37 is connected to an expansion shaft of the first electric cylinder 35, the hinge buckle 37 is hinged to the hinge block 36, a rotary hole is vertically formed in the mounting platform 39, a second electric cylinder 40 is disposed in the rotary hole, the second electric cylinder 40 is fixedly connected to the rotary block 38, and the cutting knife 3 is fixedly disposed at the bottom end of the second electric cylinder 40. The telescopic shaft of first electronic jar 35 is concertina movement under the control of the signal of telecommunication, detains 37 through articulated piece 36 and hinge and drives turning block 38 and rotate on mount table 39, and then drives the cylinder body of the electronic jar 40 of second with turning block 38 fixed connection and rotate, and cutting knife 3 is fixed to be set up in the electronic jar 40 bottom of second, can rotate along with the cylinder body rotation of the electronic jar 40 of second, finally reaches the signal of telecommunication and can control cutting knife 3 pivoted effect. The stretching of the second electric cylinder 40 can enable the cutting knife 3 to move up and down, and the cutting work can be controlled more flexibly.
It is above only the utility model discloses a preferred embodiment, the utility model discloses a scope of protection does not only confine above-mentioned embodiment, the all belongs to the utility model discloses a technical scheme under the thinking all belongs to the utility model discloses a scope of protection. It should be noted that, for those skilled in the art, various modifications and decorations can be made without departing from the principle of the present invention, and these modifications and decorations should also be regarded as the protection scope of the present invention.

Claims (10)

1. The utility model provides a cutter fabric cutting machine which characterized in that: comprises a workbench (1) and a cutting mechanism, wherein the cutting mechanism comprises a cutting device and a moving device which can enable the cutting device to move for cutting,
the cutting device comprises a moving platform (2) and a cutting knife (3), wherein the cutting knife (3) is vertically and downwards arranged on the moving platform (2);
the moving device comprises a transverse moving device and a longitudinal moving device;
the longitudinal moving device comprises two longitudinal sliding chutes (4), a portal frame and a longitudinal driving device, the portal frame comprises two mounting plates (5) and a cross beam (6) horizontally connected between the two mounting plates (5), the two longitudinal sliding chutes (4) are arranged on two sides of the workbench (1), the longitudinal driving device is arranged on the mounting plates (5), and the longitudinal driving device can drive the portal frame to move on the two longitudinal sliding chutes (4);
the transverse moving device comprises a transverse guide rail (7) and a transverse driving device, the transverse guide rail (7) is arranged on the cross beam (6), a second sliding block (26) is arranged on the moving platform (2), a sliding groove connected to the transverse guide rail (7) in a sliding mode is formed in the lower surface of the second sliding block (26), the transverse driving device is arranged on the moving platform (2), and the transverse driving device is used for driving the moving platform (2) to transversely move on the cross beam (6).
2. The knife fabric cutting machine of claim 1, wherein: the longitudinal driving device comprises a longitudinal driving motor (14), a driving gear (15), a synchronous gear (16), a first driven gear (17), a longitudinal transmission rack (20) and a synchronous rod (19), wherein cavities are formed in the two mounting plates (5), the synchronous gear (16) and the first driven gear (17) are respectively arranged in the two cavities, the synchronous rod (19) is horizontally and rotatably connected between the two mounting plates (5), the two ends of the synchronous rod (19) are coaxially and fixedly connected with the two synchronous gears (16), the longitudinal driving motor (14) is mounted on one mounting plate (5), an output shaft of the longitudinal driving motor (14) extends into the cavities, the driving gear (15) is mounted on an output shaft of the longitudinal driving motor (14), and the driving gear (15) is meshed with the synchronous gears (16), synchronous gear (16) with first driven gear (17) mesh mutually, vertical transmission rack (20) set up two, vertical transmission rack (20) set up respectively workstation (1) both sides and be close to vertical spout (4) department, first driven gear (17) with vertical transmission rack (20) mesh mutually.
3. The knife fabric cutting machine of claim 1, wherein: first installation cavity (33) have been seted up in mobile station (2), transverse drive device includes transverse drive motor (27), transverse transmission rack (32) and drive gear (28), transverse drive motor (27) horizontal installation is in first installation cavity (33), the output shaft and the drive gear (28) of transverse drive motor (27) are fixed continuous, transverse transmission rack (32) level sets up at crossbeam (6) upper surface, just transverse transmission rack (32) with transverse guide rail (7) parallel interval sets up, transverse transmission rack (32) and drive gear (28) mesh mutually.
4. The knife fabric cutting machine of claim 3, wherein: the edge of the upper surface of the cross beam (6) is provided with a guide rail (29), the moving platform (2) is horizontally provided with a roller (30), and the roller (30) is in rolling connection with the guide rail (29).
5. The knife fabric cutting machine of claim 4, wherein: the circumference wheel face of gyro wheel (30) is seted up on the circumference wheel face and is personally submitted the caulking groove (31) of V-arrangement, the lateral wall and the caulking groove (31) looks adaptation of guide track (29).
6. The knife fabric cutting machine of claim 1, wherein: the utility model discloses a cutting device, including mobile station (2), swivel cutter device, pivot block (38), installation platform (39), pivot block (38), pivot block (37), articulated piece (36), pivot block (37) and mount table (39), swivel cutter device includes first electronic jar (35), swivel block (38) and mount table (39), swivel block (38) rotate to be connected on mount table (39), swivel block (38) are provided with articulated piece (36) at another of being connected with mount table (39) rotation, the cylinder body of first electronic jar (35) is installed on the chamber wall of second mount chamber (34), the telescopic shaft of first electronic jar (35) is connected with articulated knot (37), and articulated knot (37) are connected with articulated piece (36) are articulated, and the rotation hole has vertically been seted up in mount table (39), cutting knife (3) are fixed continuous with swivel block (38) and pass and rotate the hole.
7. The knife fabric cutting machine of claim 6, wherein: a second electric cylinder (40) is connected between the cutting knife (3) and the rotating block (38), a cylinder body of the second electric cylinder (40) is fixedly connected with the rotating block (38) and penetrates through the rotating hole, and a telescopic shaft of the second electric cylinder (40) is fixedly connected with the cutting knife (3).
8. The knife fabric cutting machine of claim 1, wherein: workstation (1) one side still is provided with the blowing device, the blowing device includes material roller (9), mount and hand wheel (11), the mount includes riser (10) of two vertical settings in the workstation (1) left and right sides, material roller (9) rotate to be connected between two riser (10), it has the cloth to roll up to coil on material roller (9) and rolls up, riser (10) are extended to material roller (9) one end, and this extension with hand wheel (11) are fixed continuous.
9. The knife fabric cutting machine of claim 1, wherein: still be provided with negative pressure device on workstation (1), negative pressure device is including being used for seting up the negative pressure chamber in workstation (1), seting up a plurality of negative pressure holes (8) that just communicate with the negative pressure chamber at workstation (1) upper surface and being connected the air exhauster in negative pressure chamber.
10. A knife fabric cutting machine according to any one of claims 1 to 9, characterized in that: the cutting knife (3) is provided with cutting edges towards the bottom and the side edge of the workbench (1).
CN201920779914.0U 2019-05-27 2019-05-27 Cutter fabric cutting machine Active CN210163719U (en)

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Application Number Priority Date Filing Date Title
CN201920779914.0U CN210163719U (en) 2019-05-27 2019-05-27 Cutter fabric cutting machine

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Application Number Priority Date Filing Date Title
CN201920779914.0U CN210163719U (en) 2019-05-27 2019-05-27 Cutter fabric cutting machine

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CN112450510A (en) * 2020-09-25 2021-03-09 福建锐翔体育科技股份有限公司 Processing technology and device of sports clothes
CN112537083A (en) * 2020-12-05 2021-03-23 嘉兴腾森五金有限公司 Efficient is spring automatic production device in bags
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CN113502654A (en) * 2021-06-30 2021-10-15 徐州锦丰纺织有限公司 Cotton yarn laying device
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CN113882133A (en) * 2021-10-29 2022-01-04 滁州市大振户外旅游用品有限公司 Rain cloth cutting device
CN114147797A (en) * 2020-09-08 2022-03-08 安徽优优时尚科技有限公司 Guide rail structure for cutting device of cloth cutting machine

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Publication number Priority date Publication date Assignee Title
CN114147797B (en) * 2020-09-08 2024-02-13 安徽优优时尚科技有限公司 Guide rail structure for cloth cutting machine cutting device
CN114147797A (en) * 2020-09-08 2022-03-08 安徽优优时尚科技有限公司 Guide rail structure for cutting device of cloth cutting machine
CN112401374A (en) * 2020-09-25 2021-02-26 福建锐翔体育科技股份有限公司 Processing technology and assembly line of sports clothes
CN112450510A (en) * 2020-09-25 2021-03-09 福建锐翔体育科技股份有限公司 Processing technology and device of sports clothes
CN112252016B (en) * 2020-09-27 2023-04-28 肥东国喜箱包有限公司 Case and bag surface fabric guillootine
CN112252016A (en) * 2020-09-27 2021-01-22 湖南煌丽箱***具有限公司 Case and bag surface fabric guillootine
CN112537083A (en) * 2020-12-05 2021-03-23 嘉兴腾森五金有限公司 Efficient is spring automatic production device in bags
CN113059606A (en) * 2021-03-19 2021-07-02 昆山市石浦复合面料有限公司 Automatic sponge processing equipment
CN113059606B (en) * 2021-03-19 2024-02-09 昆山市石浦复合面料有限公司 Automatic sponge processing equipment
CN113502654A (en) * 2021-06-30 2021-10-15 徐州锦丰纺织有限公司 Cotton yarn laying device
CN113684672A (en) * 2021-08-25 2021-11-23 郑州市娅丽达服饰有限公司 Dress designing system of processing
CN113684672B (en) * 2021-08-25 2022-08-05 郑州市娅丽达服饰有限公司 Dress designing system of processing
CN113882133B (en) * 2021-10-29 2022-07-29 滁州市大振户外旅游用品有限公司 Device is tailor to waterproof cloth
CN113882133A (en) * 2021-10-29 2022-01-04 滁州市大振户外旅游用品有限公司 Rain cloth cutting device

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