Intelligent new spinning material cutting device for spinning
Technical Field
The utility model relates to a weaving equipment technical field specifically is a weaving is with intelligent weaving new material device of surely cutting.
Background
Textile cutting device is common weaving equipment, and the wide application is in the weaving field, and current weaving is with disconnected cutting device adopts the pressure cutter to cut off the textile more, when cutting off textile fabric, can produce the dust and the wadding that wafts, and the dust is unfavorable for follow-up processing with the wadding that wafts bonding on the surface fabric. When coiled fabrics are continuously cut off, the feeding stability of the fabrics needs to be kept, the feeding effect of the existing intelligent new textile material cutting device for spinning is poor, and the continuous supply of the fabrics is difficult to keep.
In chinese utility model patent application no: the CN201921872347.X discloses an intelligent new spinning material cutting device for spinning, which comprises a bottom plate and supporting plates, wherein the two supporting plates are symmetrically welded on the top surface of the bottom plate, an electric linear sliding rail is installed between the two supporting plates, and a laser cutting head is connected to the surface of the electric linear sliding rail in a sliding manner. This device is surely cut with intelligent textile new material to weaving, lower compression roller are located the below of last compression roller, and the horizontally entering device of textile fabric cuts off, and the easy screens of tip after the surface fabric is cut off are unfavorable for follow-up of follow-up surface fabric, and the material loading effect is not good to this device is cut absolutely with intelligent textile new material to weaving does not set up corresponding dust absorption mechanism, is difficult to keep the surface fabric clean when the surface fabric is cut off.
Therefore, it is necessary to provide an intelligent new material cutting device for spinning to solve the above problems.
SUMMERY OF THE UTILITY MODEL
Technical problem to be solved
An object of the utility model is to provide a weaving is with intelligent weaving new material surely cuts device to solve the current weaving of proposing in the above-mentioned background art with intelligent weaving new material surely cuts device material loading effect not good, be difficult to keep the clean problem of surface fabric when the surface fabric is cut off.
(II) technical scheme
In order to achieve the above purpose, the utility model discloses a following technical scheme realizes: an intelligent new textile material cutting device for spinning comprises a base, wherein the top of the base is fixedly connected with a containing box body, an L-shaped support and a dust collecting box body, the top of the L-shaped support is fixedly connected with a feeding box body, the top of the feeding box body is provided with a feeding box inlet and two feeding supports, both sides of an inner cavity of the containing box body are fixedly connected with horizontal supports, one ends of the two horizontal supports, which are far away from the inner wall of the containing box body, are fixedly connected with vertical mounting frames, the tops of the two vertical mounting frames are rotatably connected with a top rotating shaft, the outer sides of the two top rotating shafts are fixedly connected with top rollers, one end of the two top rotating shafts is fixedly connected with a driven gear, the bottoms of the two vertical mounting frames are fixedly connected with a cooperating rotating shaft, and the outer sides of the two, one side of each of the two vertical mounting frames is fixedly connected with a feeding motor, the rotating shafts of the two feeding motors are fixedly connected with driving gears, the outer side of one of the top rollers is connected with a first feeding belt in a rolling manner, the outer side of the other top roller is connected with a second feeding belt in a rolling manner, the bottom of the inner cavity of the feeding box body is provided with a feeding box outlet and two limiting blocks, the bottom of the feeding box body is fixedly connected with a cutting box body, the inside of the cutting box body is fixedly connected with an actuating mechanism, a middle partition plate and a mounting rod, one side of the actuating mechanism, which is close to the middle partition plate, is movably connected with a cutting knife, the middle part of the middle partition plate is provided with a cutting long hole, the top and the bottom of the middle partition plate are provided with a plurality of adsorption holes, one side of the, the bottom of the cutting box body is provided with a final outlet, and one side of the cutting box body, which is far away from the actuating mechanism, is fixedly connected with a dust collecting pipe.
Preferably, the containing box body is located in the middle of the top end of the base, the L-shaped support is located on one side of the top end of the base, and the dust collecting box body is located between the L-shaped support and the containing box body.
Preferably, one side of the dust collection box body, which is far away from the L-shaped support, is fixedly connected with the storage box body, and the height and the width of the dust collection box body are equal to those of the storage box body.
Preferably, the feeding box inlet is positioned between the two feeding brackets, a feeding roller is rotatably connected between the two feeding brackets, and the feeding roller is not contacted with the top of the feeding box body.
Preferably, two vertical mounting bracket is respectively with two horizontal stand vertical fixation, two the length of vertical mounting bracket equals, two the driving gear respectively with two driven gear looks adaptations, two the rotation direction of driving gear is opposite.
Preferably, the first feeding belt is in rolling connection with one of the cooperating rollers, the second feeding belt is in rolling connection with the other cooperating roller, the diameter and the thickness of the first feeding belt and the second feeding belt are equal, and the first feeding belt is attached to the second feeding belt.
Preferably, the two limiting blocks are located inside the feeding box body, the two limiting blocks are located on two sides of an outlet of the feeding box respectively, the tops of the two limiting blocks are not in contact with the first feeding belt and the second feeding belt, and the tops of the two limiting blocks are arc-shaped.
Preferably, the actuating mechanism is located on one side of an inner cavity of the cutting box body, the middle partition plate is located in the middle of the inner cavity of the cutting box body, and the mounting rod is located on one side, far away from the actuating mechanism, of the middle partition plate.
Preferably, the cutting box body is positioned at the top of the storage box body, the cutting knife is movably connected with the cutting long hole, and the height of the cutting long hole is equal to that of the cutting knife.
Preferably, the one end that the dust collecting pipe is close to the cutting box stretches into the cutting box, the one end that the cutting box was kept away from to the dust collecting pipe stretches into the dust collecting box and with dust collecting box fixed connection.
(III) advantageous effects
Compared with the prior art, the utility model provides a weaving is with intelligent new material of weaving disconnected device that cuts possesses following beneficial effect:
1. this device is surely put to intelligent weaving new material for weaving, through two feeding motor, the top running roller, the cooperation setting of first pay-off area and second pay-off area, two feeding motor drive two top running rollers through driven gear and driving gear's meshing motion and rotate, two top running rollers drive first pay-off area and second pay-off area respectively and rotate with opposite angular velocity, the drive cloth moves down from this and enters into and cuts off the box, the continuous automatic transport of cloth has been guaranteed, the unstable condition of cloth material loading has been avoided, the current not good problem of device material loading effect is surely cut to intelligent weaving new material for weaving absolutely to weaving has been solved.
2. This weaving is with intelligent new material of weaving surely cuts device, through adsorbing the hole, the dust absorption motor, the cooperation setting of dust absorption turbine and dust collecting tube, the dust absorption motor drives the dust absorption turbine and rotates, the dust that the messenger cut off the cloth production with float and enter into dust collecting box through adsorbing hole and dust collecting tube, the dust of having avoided producing when the surface fabric is cut off with the wadding adhesion that wafts on the surface fabric, solved current weaving and with intelligent new material of weaving surely cuts device difficult in order to keep the clean problem of surface fabric when the surface fabric is cut off.
3. This weaving is with intelligent new material of weaving disconnected device that cuts off, through the setting of accomodating the box, actuating mechanism drive cutting off sword cuts off the cloth, and the cloth that is cut off drops to accomodating the box in through gravity, has made things convenient for operating personnel to collect the cloth.
Drawings
FIG. 1 is a schematic front view of the structure of the present invention;
FIG. 2 is a schematic sectional view of the feeding box structure of the present invention;
FIG. 3 is a schematic sectional view of the cut-off box structure of the present invention;
fig. 4 is a schematic front view of the storage box structure of the present invention.
In the figure: 1. a base; 11. a storage box body; 12. an L-shaped bracket; 2. a feeding box body; 21. a feed box inlet; 22. a feed bin outlet; 23. a horizontal support; 24. a limiting block; 25. a feeding bracket; 26. a feeding roller; 3. a vertical mounting rack; 31. a top rotating shaft; 32. a top roller; 33. a driven gear; 34. a feeding motor; 35. a driving gear; 36. a cooperating rotating shaft; 37. a cooperating roller; 38. a first feeding belt; 39. a second feeding belt; 4. cutting off the box body; 41. a final outlet; 42. an actuator; 43. a cutting knife; 44. a middle partition plate; 45. cutting the long hole; 46. an adsorption hole; 47. mounting a rod; 48. a dust collection motor; 49. a dust collection turbine; 5. a dust collecting box body; 51. a dust collecting pipe.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments.
Referring to fig. 1-4, an intelligent new textile material cutting device for textile comprises a base 1, a storage box 11, an L-shaped bracket 12 and a dust collection box 5 are fixedly connected to the top of the base 1, the storage box 11 is located in the middle of the top of the base 1, the L-shaped bracket 12 is located on one side of the top of the base 1, the dust collection box 5 is located between the L-shaped bracket 12 and the storage box 11, one side of the dust collection box 5 away from the L-shaped bracket 12 is fixedly connected with the storage box 11, the height and width of the dust collection box 5 and the storage box 11 are equal, the top of the L-shaped bracket 12 is fixedly connected with a feeding box 2, the top of the feeding box 2 is provided with a feeding box inlet 21 and two feeding brackets 25, the feeding box inlet 21 is located between the two feeding brackets 25, a feeding roller 26 is rotatably connected between the two feeding brackets 25, the feeding roller 26, horizontal supports 23 are fixedly connected to two sides of an inner cavity of the containing box body 11, vertical mounting frames 3 are fixedly connected to one ends, far away from the inner wall of the containing box body 11, of the two horizontal supports 23, top rotating shafts 31 are rotatably connected to the tops of the two vertical mounting frames 3, top rollers 32 are fixedly connected to the outer sides of the two top rotating shafts 31, driven gears 33 are fixedly connected to one ends of the two top rotating shafts 31, auxiliary rotating shafts 36 are fixedly connected to the bottoms of the two vertical mounting frames 3, auxiliary rollers 37 are rotatably connected to the outer sides of the two auxiliary rotating shafts 36, feeding motors 34 are fixedly connected to one sides of the two vertical mounting frames 3, driving gears 35 are fixedly connected to rotating shafts of the two feeding motors 34, the two vertical mounting frames 3 are respectively and vertically fixed to the two horizontal supports 23, the lengths of the two vertical mounting frames 3 are equal, and the two driving gears, the rotating directions of the two driving gears 35 are opposite, the outer side of one top roller 32 is connected with a first feeding belt 38 in a rolling mode, the outer side of the other top roller 32 is connected with a second feeding belt 39 in a rolling mode, the first feeding belt 38 is connected with one of the two cooperating rollers 37 in a rolling mode, the second feeding belt 39 is connected with the other cooperating roller 37 in a rolling mode, the diameter and the thickness of the first feeding belt 38 and the second feeding belt 39 are equal, the first feeding belt 38 is attached to the second feeding belt 39, a feeding box outlet 22 and two limiting blocks 24 are arranged at the bottom of an inner cavity of the feeding box body 2, the two limiting blocks 24 are located inside the feeding box body 2, the two limiting blocks 24 are located on two sides of the feeding box outlet 22 respectively, the tops of the two limiting blocks 24 are not in contact with the first feeding belt 38 and the second feeding belt 39, the tops of the two limiting blocks 24 are arc-shaped, and pass, The first feeding belt 38 and the second feeding belt 39 are cooperatively arranged, two feeding motors 34 drive two top rollers 32 to rotate through the meshing motion of a driven gear 33 and a driving gear 35, the two top rollers 32 respectively drive the first feeding belt 38 and the second feeding belt 39 to rotate at opposite angular speeds, so that cloth is driven to move downwards to enter the cutting box 4, the continuous automatic conveying of the cloth is ensured, the unstable feeding condition of the cloth is avoided, the problem of poor feeding effect of the existing intelligent new textile material cutting device for textile is solved, the bottom of the feeding box 2 is fixedly connected with the cutting box 4, an executing mechanism 42, a middle partition plate 44 and a mounting rod 47 are fixedly connected inside the cutting box 4, the executing mechanism 42 is positioned on one side of an inner cavity of the cutting box 4, the middle partition plate 44 is positioned in the middle of the inner cavity of the cutting box 4, the mounting rod 47 is positioned on one side of the middle partition plate 44 away from the executing mechanism 42, one side of the actuating mechanism 42 close to the middle partition plate 44 is movably connected with a cutting knife 43, the middle of the middle partition plate 44 is provided with a cutting long hole 45, the cutting box body 4 is positioned at the top of the containing box body 11, the cutting knife 43 is movably connected with the cutting long hole 45, the height of the cutting long hole 45 is equal to that of the cutting knife 43, the top and the bottom of the middle partition plate 44 are both provided with a plurality of adsorption holes 46, one side of the mounting rod 47 close to the middle partition plate 44 is fixedly connected with a dust suction motor 48, a rotating shaft of the dust suction motor 48 is fixedly connected with a dust suction turbine 49, the bottom of the cutting box body 4 is provided with a final outlet 41, one side of the cutting box body 4 far away from the actuating mechanism 42 is fixedly connected with a dust collecting pipe 51, one end of the dust collecting pipe 51 close to the cutting box body 4 extends into the cutting box body 4, actuating mechanism 42 drive cutting off cutter 43 cuts off the cloth, the cloth of being cut off drops to storage box 11 in through gravity, made things convenient for operating personnel to collect the cloth, through adsorption hole 46, dust absorption motor 48, dust absorption turbine 49 and dust collection pipe 51's cooperation sets up, dust absorption motor 48 drives dust absorption turbine 49 and rotates, make the dust that cuts off the cloth production with float and enter into dust collection box 5 through adsorption hole 46 and dust collection pipe 51, the dust that has avoided producing when the surface fabric is cut off with the wadding adhesion that wafts on the surface fabric, the problem of current intelligent weaving new material surely cuts off the device difficult in order to keep the surface fabric clean when the surface fabric is cut off has been solved.
The electrical components presented in the document are all electrically connected with an external master controller and 220V mains, and the master controller can be a conventional known device controlled by a computer or the like.
The working principle is as follows: when the cloth cutting machine is used, a cloth to be cut is wound on the feeding roller 26, one end of the cloth is placed into the feeding box 2 through the feeding box inlet 21, the two feeding motors 34 are started simultaneously, the two feeding motors 34 drive the two top rollers 32 to rotate through the meshing motion of the driven gear 33 and the driving gear 35, the two top rollers 32 respectively drive the first feeding belt 38 and the second feeding belt 39 to rotate at opposite angular speeds, so that the cloth is driven to move downwards, the cloth enters the cutting box 4 through the feeding box outlet 22, the execution mechanism 42 drives the cutting knife 43 to cut the cloth, the cut cloth falls into the containing box 11 through gravity, the dust suction motor 48 is started, the dust suction motor 48 drives the dust suction turbine 49 to rotate, and dust generated by cutting the cloth and floating enter the dust collecting box 5 through the suction hole 46 and the dust collecting pipe 51.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.