Cutting device for cotton cloth processing

By designing a cotton fabric cutting device with a self-discharging cutting component, an adjustable conveying component, and a quantitative conveying component, the problems of manual unloading and high-cost conveying required in existing cotton fabric cutting devices are solved, realizing automated cutting and quantitative conveying, and improving cutting efficiency and accuracy.

CN120967659BActive Publication Date: 2025-12-16NANTONG BAITUO TEXTILE CO LTD
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Patent Information

Application Number
CN202511484493.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-10-17
Publication Date
2025-12-16
Estimated Expiration
2045-10-17

AI Technical Summary

Technical Problem

Existing cotton fabric processing cutting devices require unloading devices or manual unloading, which is cumbersome and costly. Furthermore, the cost of optical cotton fabric conveying is too high, making it impossible to achieve efficient and accurate cutting.

Method used

A cotton fabric cutting device was designed, comprising a self-discharging cutting component, an adjustable conveying component, and a quantitative conveying component. The device uses a cylinder to drive an electric heating wire for cutting and an automatic unloading component to achieve automatic unloading of the cotton fabric. Combined with quantitative adjustment and clamping conveying, it achieves equidistant cutting and quantitative conveying of the cotton fabric.

Benefits of technology

It achieves automated and precise cutting of cotton fabric and quantitative feeding, reducing labor costs and improving cutting efficiency and accuracy.

✦ Generated by Eureka AI based on patent content.

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    Figure CN120967659B_ABST
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Abstract

The application discloses a cutting device for cotton cloth processing and belongs to the technical field of cotton cloth processing, which comprises a bottom plate, a self-discharging cutting assembly is connected to the top left end of the bottom plate, an adjustable conveying assembly is connected to the top of the right side of the bottom plate, a quantitative conveying assembly is connected to the top of the right side of the bottom plate, when the cotton cloth needs to be cut, the cotton cloth is conveyed by the adjustable conveying assembly and conveniently introduced, the cotton cloth is quantitatively conveyed by the quantitative conveying assembly and the quantitative value can be randomly adjusted, and the cotton cloth is cut at an automatic interval and automatically discharged by the self-discharging cutting assembly.
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Description

TECHNICAL FIELD

[0001] The application relates to the technical field of cotton cloth processing, and particularly relates to a cutting device for cotton cloth processing. BACKGROUND

[0002] Cotton cloth is a woven fabric made of cotton as raw material through processes such as spinning, weaving and dyeing and finishing, and is a general term for various cotton textiles, and the cutting device for cotton cloth processing is a key equipment for accurately cutting cloth according to specific size and shape in the cotton cloth production and processing process, and the performance directly affects the efficiency, precision and product quality of cotton cloth processing.

[0003] However, the existing technology still needs to be equipped with a discharging device or manually discharges when cutting the cotton cloth, which is too cumbersome and high in cost, and the existing technology can only quantitatively transport the optical cotton cloth through precision instruments when conveying the optical cotton cloth, which is too high in cost.

[0004] Therefore, the application designs a cutting device for cotton cloth processing to solve the above problems. SUMMARY

[0005] In view of the above shortcomings of the prior art, the application provides a cutting device for cotton cloth processing.

[0006] To achieve the above purpose, the application is implemented through the following technical solutions:

[0007] A cutting device for cotton cloth processing, comprising a bottom plate;

[0008] The top left end of the bottom plate is connected with a self-discharging cutting assembly for equidistant cutting of cotton cloth and automatic discharging;

[0009] The top of the bottom plate on the right side of the self-discharging cutting assembly is connected with an adjustable conveying assembly for clamping and conveying the cotton cloth;

[0010] The top of the bottom plate on the right side of the adjustable conveying assembly is connected with a quantitative conveying assembly for automatically discharging the cotton cloth in equal amounts and ensuring the tightness of the cotton cloth;

[0011] The self-discharging cutting assembly comprises a self-dispersing cutting assembly and an automatic discharging assembly, the top left end of the bottom plate is connected with the self-dispersing cutting assembly for equidistant cutting of the cotton cloth, and the lower end of the self-dispersing cutting assembly is connected with the automatic discharging assembly for automatically discharging the cut cotton cloth.

[0012] Further, the self-dispersing cutting assembly comprises an arc-shaped mounting plate, a pneumatic cylinder, an arc-shaped driving plate, a claw-shaped slot, a cutting base, a cutting slot, a dispersing sliding slot, an electricity connection head, a dispersing limiting slot and an electric heating wire, the top left end of the base plate is fixedly connected with the arc-shaped mounting plate, the top middle position of the arc-shaped mounting plate is fixedly connected with the pneumatic cylinder, the output end of the pneumatic cylinder penetrates through the top plate of the arc-shaped mounting plate and is fixedly connected with the arc-shaped driving plate, the front and rear side plates of the arc-shaped mounting plate are both provided with the claw-shaped slot, the top of the base plate below the arc-shaped driving plate is fixedly connected with the cutting base, the upper end of the cutting base is provided with a plurality of groups of cutting slots, the upper side of each group of cutting slots is provided with a group of electric heating wires, the front and rear ends of the electric heating wire are both fixedly connected with the electricity connection head, the middle part of the electricity connection head is provided with the dispersing limiting slot, the electricity connection head penetrates through the dispersing sliding slot and is slidably connected with the dispersing limiting slot in the dispersing sliding slot, and the end of the electricity connection head close to the front and rear side plates of the arc-shaped mounting plate is slidably connected in the claw-shaped slot.

[0013] Further, the lower end of the claw-shaped slot is a vertical sliding slot arranged at equal distances.

[0014] Further, the automatic material discharging assembly comprises a discharging accommodation slot, a hinged seat, a discharging rotating rod, a driving sliding slot, a discharging pull rod and a discharging sliding column, the front and rear ends of the cutting base are both provided with the discharging accommodation slot, the inside of the discharging accommodation slot is provided with a group of discharging rotating rods, the left end of the discharging rotating rod is rotatably connected with the cutting base through the hinged seat, the end of the discharging rotating rod close to the hinged seat is provided with the driving sliding slot, each group of driving sliding slots is provided with a group of discharging sliding columns, the ends of the two groups of discharging sliding columns close to each other penetrate through the driving sliding slot and are slidably connected with the driving sliding slot, the ends of the discharging sliding columns away from each other are both fixedly connected with the discharging pull rod, and the upper end of the discharging pull rod is fixedly connected with the arc-shaped driving plate.

[0015] Further, the quantitative conveying assembly comprises a quantitative assembly, a quantitative adjusting assembly and a conveying switching assembly, the top of the base plate on the right side of the adjustable conveying assembly is fixedly connected with the quantitative assembly, the upper end of the quantitative assembly is connected with the quantitative adjusting assembly, and the top of the base plate on the right side of the quantitative assembly is connected with the conveying switching assembly.

[0016] Further, the quantitative assembly comprises first support vertical plates, mounting grooves, limiting guide rods, first support sliding blocks, springs and quantitative rollers, the front and rear sides of the top of the bottom plate on the right side of the adjustable conveying assembly are fixedly connected with the first support vertical plates, mounting grooves are formed in the upper ends of the first support vertical plates, the first support sliding blocks are slidably connected in the mounting grooves, the quantitative rollers are rotatably connected between the two groups of first support sliding blocks, the first support sliding blocks are penetrated by the limiting guide rods and are slidably connected with the limiting guide rods, the upper and lower ends of the limiting guide rods are fixedly connected with the inner top and inner bottom of the mounting grooves respectively, and the first support sliding blocks on the outer side of the limiting guide rods and the inner bottom of the mounting groove are fixedly connected with the springs.

[0017] Further, the quantitative adjustment assembly comprises a contact sensor and an adjusting bolt, the inner bottom of the mounting groove is fixedly connected with the contact sensor, the top of the contact sensor is in contact with the bottom of the first support sliding block, and the adjusting bolt penetrates through the top plate of the first support vertical plate and is in threaded connection with the first support vertical plate.

[0018] Further, the conveying switching assembly comprises second support vertical plates, second support sliding blocks, a motor, a first threaded rod, a first conveying roller and a pressing column, the top of the bottom plate on the right side of the first support vertical plate is fixedly connected with the second support vertical plate, the second support sliding block is slidably connected with the upper end of the second support vertical plate, the pressing column is fixedly connected between the two groups of second support sliding blocks, the first conveying roller is rotatably connected between the two groups of second support vertical plates above the pressing column, the top of the front group of second support vertical plates is fixedly connected with the motor, the output end of the motor is fixedly connected with the first threaded rod, and the first threaded rod penetrates through the front group of second support sliding blocks and is in threaded connection with the second support sliding blocks.

[0019] Further, the adjustable conveying assembly comprises third support vertical plates, third support sliding blocks, second threaded rods, a dynamic conveying roller and a fixed conveying roller, the top of the bottom plate on the right side of the arc-shaped mounting plate is fixedly connected with the third support vertical plate, the third support sliding block is slidably connected with the upper end of the third support vertical plate, the dynamic conveying roller is rotatably connected between the two groups of third support sliding blocks, the fixed conveying roller is rotatably connected between the two groups of third support vertical plates above the dynamic conveying roller, the second threaded rod penetrates through the third support sliding block and is in threaded connection with the third support sliding block on the two groups of third support vertical plates, and the upper and lower ends of the second threaded rod are rotatably connected with the third support vertical plates.

[0020] Further, the rear end of the fixed conveying roller is connected with a driving device.

[0021] The application has the following technical effects:

[0022] 1、When the cotton cloth needs to be cut, rotate the second threaded rod to make the third supporting slider drive the moving conveying roller to move downward, at this time, the cotton cloth is passed between the fixed conveying roller and the moving conveying roller, so that the cotton cloth is introduced more easily, then rotate the second threaded rod to make the moving conveying roller and the fixed conveying roller clamp the cotton cloth, at this time, start the motor, the motor drives the second supporting slider and the extrusion column to move upward through the first threaded rod, so that the extrusion column and the first conveying roller clamp the cotton cloth, at this time, start the driving device at the rear end of the fixed conveying roller to make the fixed conveying roller and the moving conveying roller pull the cotton cloth to transport to the left, since the right end of the cotton cloth is clamped by the extrusion column and the first conveying roller, so that the cotton cloth is pulled tight and extruded downward to the constant weight roller, the constant weight roller drives the first supporting slider to move downward, at this time, the constant weight roller extrudes the spring to make the spring compress and deform, when the first supporting slider moves to contact the contact sensor, stop driving the fixed conveying roller and start the motor, the motor drives the extrusion column to move downward, so that the right end of the cotton cloth is released, since the left end of the cotton cloth is clamped by the moving conveying roller and the fixed conveying roller at this time, so that the spring drives the first supporting slider and the constant weight roller to extrude the cotton cloth upward under the action of the spring restoring force, so that the cotton cloth is conveyed out from the right side, so as to realize the constant weight conveying of the cotton cloth, and at the same time ensure the tightness of the cotton cloth, when the constant weight of the cotton cloth conveying needs to be adjusted, rotate the adjusting bolt, when the adjusting bolt moves upward, the constant weight is increased, when the adjusting bolt moves downward, the constant weight is reduced, so as to realize the adjustment of the constant weight of the cotton cloth conveying.

[0023] 2、When the cotton cloth is conveyed to the lower side of the electric heating wire by the moving conveying roller and the fixed conveying roller, start the air cylinder, the air cylinder drives the arched driving plate to move downward, the arched driving plate drives the electric heating wire to move downward through the electric head, at this time, the electric heating wire moves downward while being dispersed under the limitation of the claw-shaped groove and the dispersion limiting groove, when the electric heating wire enters the inside of the cutting groove, the cutting of the cotton cloth is completed, so that the upward and downward movement and the dispersion movement of the electric heating wire are completed at the same time, without adding a dispersion driving part, simple and convenient, when the cutting of the cotton cloth is completed, start the air cylinder, the air cylinder drives the arched driving plate and the discharging pull rod to move upward, the discharging pull rod drives the discharging slide column to move upward, the discharging slide column slides in the driving slide groove while driving the discharging rotating rod to rotate upward, so that the discharging rotating rod retreats the cut cotton cloth from the cutting bottom plate, and then the automatic discharging of the cotton cloth is realized, then the above operation is repeated to realize the cutting operation of the cotton cloth. BRIEF DESCRIPTION OF DRAWINGS

[0024] In order to more clearly illustrate the technical solutions of the embodiments of the present application or the prior art, the following will briefly introduce the drawings needed to be used in the embodiments or the prior art description. Obviously, the drawings in the following description are only some embodiments of the present application, and those skilled in the art can also obtain other drawings according to these drawings without creating any inventive work.

[0025] Figure 1A cutting device for cotton cloth processing Figure 1 ;

[0026] Figure 2 A cutting device for cotton cloth processing Figure 2 ;

[0027] Figure 3 A cutting device for cotton cloth processing Figure 3 ;

[0028] Figure 4 A cutting device for cotton cloth processing Figure 4 ;

[0029] Figure 5 A cutting device for cotton cloth processing

[0030] Figure 6 A cutting device for cotton cloth processing

[0031] Figure 7 A cutting device for cotton cloth processing

[0032] The numbers in the figure represent respectively:

[0033] 1, bottom plate; 2, self-discharging cutting assembly; 21, self-dispersing cutting assembly; 211, arched mounting plate; 212, air cylinder; 213, arched driving plate; 214, claw-shaped groove; 215, cutting base plate; 216, cutting groove; 217, dispersing sliding groove; 218, power connection head; 219, dispersing limiting groove; 2110, electric heating wire; 22, automatic discharging assembly; 221, discharging accommodation groove; 222, hinged seat; 223, discharging rotating rod; 224, driving sliding groove; 225, discharging pull rod; 226, discharging sliding column; 3, quantitative conveying assembly; 31, quantitative assembly; 311, first supporting vertical plate; 312, mounting groove; 313, limiting guide rod; 314, first supporting sliding block; 315, spring; 316, quantitative roller; 32, quantitative adjusting assembly; 321, contact sensor; 322, adjusting bolt; 33, conveying switching assembly; 331, second supporting vertical plate; 332, second supporting sliding block; 333, motor; 334, first threaded rod; 335, first conveying roller; 336, extrusion column; 4, adjustable conveying assembly; 41, third supporting vertical plate; 42, third supporting sliding block; 43, second threaded rod; 44, movable conveying roller; 45, fixed conveying roller. DETAILED DESCRIPTION

[0034] In order to make the purposes, technical solutions and advantages of the embodiments of the present application clearer, the technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are some but not all of the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative work fall within the protection scope of the present application.

[0035] The present application will be further described below with reference to the embodiments. Embodiment

[0036] Please refer to the drawings attached in the specification Figures 1-7 A cutting device for cotton processing, comprising a bottom plate 1;

[0037] The top left end of the bottom plate 1 is connected with a self-discharging cutting assembly 2 for equidistant cutting of cotton and automatic discharging;

[0038] The top of the bottom plate 1 on the right side of the self-discharging cutting assembly 2 is connected with an adjustable conveying assembly 4 for clamping and conveying cotton;

[0039] The top of the bottom plate 1 on the right side of the adjustable conveying assembly 4 is connected with a quantitative conveying assembly 3 for automatic equidistant discharging of cotton and ensuring tightness of cotton;

[0040] The self-discharging cutting assembly 2 comprises a self-dispersing cutting assembly 21 and an automatic discharging assembly 22, and the top left end of the bottom plate 1 is connected with the self-dispersing cutting assembly 21 for equidistant cutting of cotton, and the lower end of the self-dispersing cutting assembly 21 is connected with the automatic discharging assembly 22 for automatic discharging of the cut cotton;

[0041] The self-dispersing cutting assembly 21 comprises an arched mounting plate 211, an air cylinder 212, an arched driving plate 213, a claw-shaped groove 214, a cutting base plate 215, a cutting groove 216, a dispersing sliding groove 217, an electrical connector 218, a dispersing limiting groove 219 and an electrical heating wire 2110. The top left end of the base plate 1 is fixedly connected with the arched mounting plate 211. The top middle position of the arched mounting plate 211 is fixedly connected with the air cylinder 212. The output end of the air cylinder 212 penetrates through the top plate of the arched mounting plate 211 and is fixedly connected with the arched driving plate 213. The front and rear side plates of the arched mounting plate 211 are both provided with the claw-shaped groove 214. The top of the base plate 1 below the arched driving plate 213 is fixedly connected with the cutting base plate 215. The upper end of the cutting base plate 215 is provided with a plurality of cutting grooves 216. The front and rear vertical plates of the arched driving plate 213 are both provided with the dispersing sliding groove 217. The upper side of each group of cutting grooves 216 is provided with a group of electrical heating wires 2110. The front and rear ends of the electrical heating wire 2110 are both fixedly connected with the electrical connector 218. The middle part of the electrical connector 218 is provided with the dispersing limiting groove 219. The electrical connector 218 penetrates through the dispersing sliding groove 217 and is slidably connected in the dispersing sliding groove 217. The end of the electrical connector 218 close to the front and rear side plates of the arched mounting plate 211 is slidably connected in the claw-shaped groove 214.

[0042] The lower end of the claw-shaped groove 214 is a vertical sliding groove arranged at equal intervals.

[0043] The automatic discharging assembly 22 comprises a discharging accommodation groove 221, a hinged seat 222, a discharging rotating rod 223, a driving sliding groove 224, a discharging pull rod 225 and a discharging sliding column 226. The front and rear ends of the cutting base plate 215 are both provided with the discharging accommodation groove 221. The inside of the discharging accommodation groove 221 is provided with a group of discharging rotating rods 223. The left end of the discharging rotating rod 223 is rotatably connected to the cutting base plate 215 through the hinged seat 222. The end of the discharging rotating rod 223 close to the hinged seat 222 is provided with the driving sliding groove 224. Each group of driving sliding grooves 224 is provided with a group of discharging sliding columns 226. The ends of the two groups of discharging sliding columns 226 close to each other penetrate through the driving sliding groove 224 and are slidably connected with the driving sliding groove 224. The ends of the discharging sliding columns 226 away from each other are both fixedly connected with the discharging pull rod 225. The upper end of the discharging pull rod 225 is fixedly connected to the arched driving plate 213.

[0044] The quantitative conveying assembly 3 comprises a quantitative assembly 31, a quantitative adjusting assembly 32 and a conveying switching assembly 33. The top of the base plate 1 on the right side of the adjustable conveying assembly 4 is fixedly connected with the quantitative assembly 31. The upper end of the quantitative assembly 31 is connected with the quantitative adjusting assembly 32. The top of the base plate 1 on the right side of the quantitative assembly 31 is connected with the conveying switching assembly 33.

[0045] The quantitative assembly 31 comprises a first support vertical plate 311, a mounting groove 312, a limiting guide rod 313, a first support sliding block 314, a spring 315 and a quantitative roller 316, the top of the right side of the bottom plate 1 is fixedly connected with the first support vertical plate 311 on the front and back sides, the upper end of the first support vertical plate 311 is provided with the mounting groove 312, the inside of the mounting groove 312 is slidably connected with the first support sliding block 314, the first support sliding block 314 is rotatably connected between the two groups of first support sliding blocks 314, the first support sliding block 314 is penetrated by the limiting guide rod 313 and is slidably connected with the limiting guide rod 313, the upper and lower ends of the limiting guide rod 313 are fixedly connected to the inner top and inner bottom of the mounting groove 312, and the first support sliding block 314 on the outer side of the limiting guide rod 313 is fixedly connected between the inner bottom of the mounting groove 312 and the spring 315;

[0046] The quantitative adjustment assembly 32 comprises a contact sensor 321 and an adjusting bolt 322, the inner bottom of the mounting groove 312 is fixedly connected with the contact sensor 321, the top of the contact sensor 321 is in contact with the bottom of the first support sliding block 314, the adjusting bolt 322 penetrates through the top plate of the first support vertical plate 311 and is threadedly connected with the first support vertical plate 311, and the bottom of the adjusting bolt 322 is in contact with the top of the first support sliding block 314.

[0047] The conveying switching assembly 33 comprises a second support vertical plate 331, a second support sliding block 332, a motor 333, a first threaded rod 334, a first conveying roller 335 and a pressing column 336, the top of the right side of the bottom plate 1 is fixedly connected with the second support vertical plate 331 on the front and back sides, the upper end of the second support vertical plate 331 is slidably connected with the second support sliding block 332, the two groups of second support sliding blocks 332 are fixedly connected with the pressing column 336, the two groups of second support vertical plates 331 above the pressing column 336 are rotatably connected with the first conveying roller 335, the top of the front group of second support vertical plates 331 is fixedly connected with the motor 333, the output end of the motor 333 is fixedly connected with the first threaded rod 334, and the first threaded rod 334 penetrates through the front group of second support sliding blocks 332 and is threadedly connected with the second support sliding block 332.

[0048] The adjustable conveying assembly 4 comprises third support vertical plates 41, third support sliding blocks 42, second threaded rods 43, a driving conveying roller 44 and a fixed conveying roller 45. The bottom plate 1 on the right side of the arc-shaped mounting plate 211 is fixedly connected with the third support vertical plates 41 on the top front and back sides. The upper portions of the third support vertical plates 41 are slidably connected with the third support sliding blocks 42. The two groups of third support sliding blocks 42 are rotatably connected with the driving conveying roller 44. The two groups of third support vertical plates 41 above the driving conveying roller 44 are rotatably connected with the fixed conveying roller 45. The two groups of third support vertical plates 41 are penetrated through the third support sliding blocks 42 and are threadedly connected with the third support sliding blocks 42. The second threaded rods 43 are rotatably connected with the third support vertical plates 41 at the upper and lower ends.

[0049] The rear end of the fixed conveying roller 45 is connected with a driving device.

[0050] When the cotton cloth needs to be cut, the second threaded rod 43 is rotated to drive the third supporting slider 42 to move the movable conveying roller 44 downward, at this time the cotton cloth is passed between the fixed conveying roller 45 and the movable conveying roller 44, so that the cotton cloth is introduced more easily, then the second threaded rod 43 is rotated to make the movable conveying roller 44 and the fixed conveying roller 45 clamp the cotton cloth, at this time the motor 333 is started, the motor 333 drives the second supporting slider 332 and the extrusion column 336 to move upward through the first threaded rod 334, so that the extrusion column 336 and the first conveying roller 335 clamp the cotton cloth, at this time the driving device at the rear end of the fixed conveying roller 45 is started to make the fixed conveying roller 45 and the movable conveying roller 44 pull the cotton cloth to the left, since the right end of the cotton cloth is clamped by the extrusion column 336 and the first conveying roller 335, so that the cotton cloth is pulled tight and presses the constant weight roller 316 downward, the constant weight roller 316 drives the first supporting slider 314 to move downward, at this time the constant weight roller 316 presses the spring 315 to make the spring 315 compress and deform, when the first supporting slider 314 moves to contact the contact sensor 321, the fixed conveying roller 45 is stopped and the motor 333 is started, the motor 333 drives the extrusion column 336 to move downward, so that the right end of the cotton cloth is released, since the left end of the cotton cloth is clamped by the movable conveying roller 44 and the fixed conveying roller 45 at this time, so that the spring 315 drives the first supporting slider 314 and the constant weight roller 316 to press the cotton cloth upward under the action of the restoring force of the spring 315, so that the cotton cloth is conveyed from the right side, so as to realize the constant weight conveying of the cotton cloth, and at the same time ensure the tightness of the cotton cloth, when the constant weight of the cotton cloth conveying needs to be adjusted, the adjusting bolt 322 is rotated, when the adjusting bolt 322 moves upward, the constant weight is increased, when the adjusting bolt 322 moves downward, the constant weight is reduced, so as to realize the adjustment of the constant weight of the cotton cloth conveying, when the cotton cloth is conveyed to the lower side of the electric heating wire 2110 by the movable conveying roller 44 and the fixed conveying roller 45, the air cylinder 212 is started, the air cylinder 212 drives the arcuate driving plate 213 to move downward, the arcuate driving plate 213 drives the electric heating wire 2110 to move downward through the electric head 218, at this time the electric heating wire 2110 moves downward while being dispersed under the limiting of the claw-shaped groove 214 and the dispersion limiting groove 219, when the electric heating wire 2110 enters the inside of the cutting groove 216, the cutting of the cotton cloth is completed, so that the upward and downward movement and the dispersion movement of the electric heating wire 2110 are completed at the same time, without additional dispersion driving part, simple and convenient, when the cutting of the cotton cloth is completed, the air cylinder 212 is started, the air cylinder 212 drives the arcuate driving plate 213 and the discharging pull rod 225 to move upward, the discharging pull rod 225 drives the discharging slide column 226 to move upward, the discharging slide column 226 slides in the driving slide groove 224 while driving the discharging rotating rod 223 to rotate upward, so that the discharging rotating rod 223 retreats the cut cotton cloth from the cutting bottom plate 215, thereby realizing the automatic discharging of the cotton cloth, then the above operation is repeated to realize the cutting operation of the cotton cloth.

[0051] The above examples are only used to illustrate the technical solutions of the present application, and are not intended to limit the present application; although the present application has been described in detail with reference to the foregoing examples, those skilled in the art should understand that the technical solutions recorded in the foregoing examples can be modified, or some technical features can be replaced by equivalent features; and these modifications or replacements will not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of the present application.

Claims

1. A cutting device for cotton cloth processing, comprising a base plate (1), characterized in that: the top left end of the base plate (1) is connected with a self-discharging cutting assembly (2) for equidistant cutting and automatic discharging of the cotton cloth; the top of the base plate (1) on the right side of the self-discharging cutting assembly (2) is connected with an adjustable conveying assembly (4) for clamping and conveying the cotton cloth; the top of the base plate (1) on the right side of the adjustable conveying assembly (4) is connected with a quantitative conveying assembly (3) for automatically discharging the cotton cloth in equal amounts and ensuring the tightness of the cotton cloth; the self-discharging cutting assembly (2) comprises a self-dispersing cutting assembly (21) and an automatic discharging assembly (22), the top left end of the base plate (1) is connected with a self-dispersing cutting assembly (21) for equidistant cutting of the cotton cloth, and the lower end of the self-dispersing cutting assembly (21) is connected with an automatic discharging assembly (22) for automatically discharging the cut cotton cloth; the quantitative conveying assembly (3) comprises a quantitative assembly (31), a quantitative adjusting assembly (32) and a conveying switching assembly (33), the top of the base plate (1) on the right side of the adjustable conveying assembly (4) is fixedly connected with a quantitative assembly (31), the upper end of the quantitative assembly (31) is connected with a quantitative adjusting assembly (32), and the top of the base plate (1) on the right side of the quantitative assembly (31) is connected with a conveying switching assembly (33); the quantitative assembly (31) comprises first support vertical plates (311), mounting grooves (312), limiting guide rods (313), first support sliding blocks (314), springs (315) and quantitative rollers (316), the top of the base plate (1) on the right side of the adjustable conveying assembly (4) is fixedly connected with first support vertical plates (311) on the front and back sides, the upper end of the first support vertical plate (311) is provided with a mounting groove (312), the inside of the mounting groove (312) is slidably connected with a first support sliding block (314), two groups of first support sliding blocks (314) are rotatably connected with a quantitative roller (316) therebetween, the first support sliding block (314) is penetrated by a limiting guide rod (313) and is slidably connected with the limiting guide rod (313), the upper and lower ends of the limiting guide rod (313) are fixedly connected to the inner top and inner bottom of the mounting groove (312), and the first support sliding block (314) outside the limiting guide rod (313) is fixedly connected with a spring (315) between the inner bottom of the mounting groove (312); the quantitative adjusting assembly (32) comprises a contact sensor (321) and an adjusting bolt (322), the inner bottom of the mounting groove (312) is fixedly connected with a contact sensor (321), the top of the contact sensor (321) is in contact with the bottom of the first support sliding block (314), the adjusting bolt (322) penetrates the top plate of the first support vertical plate (311) and is threadedly connected with the first support vertical plate (311), and the bottom of the adjusting bolt (322) is in contact with the top of the first support sliding block (314). ​ The conveying switching assembly (33) comprises a second support vertical plate (331), a second support sliding block (332), a motor (333), a first threaded rod (334), a first conveying roller (335) and an extrusion column (336), the top of the bottom plate (1) on the right side of the first support vertical plate (311) is fixedly connected with the second support vertical plate (331), the upper end of the second support vertical plate (331) is slidably connected with the second support sliding block (332), the two groups of second support sliding blocks (332) are fixedly connected with the extrusion column (336), the two groups of second support vertical plates (331) above the extrusion column (336) are rotatably connected with the first conveying roller (335), the top of the front group of second support vertical plates (331) is fixedly connected with the motor (333), the output end of the motor (333) is fixedly connected with the first threaded rod (334), and the first threaded rod (334) penetrates through the front group of second support sliding blocks (332) and is in threaded connection with the second support sliding block (332).

2. The cutting device for cotton cloth processing according to claim 1, characterized by The self-dispersing cutting assembly (21) comprises an arched mounting plate (211), an air cylinder (212), an arched driving plate (213), a claw-shaped groove (214), a cutting base plate (215), a cutting groove (216), a dispersing sliding groove (217), an electrical connection head (218), a dispersing limiting groove (219) and an electric heating wire (2110), the top left end of the bottom plate (1) is fixedly connected with the arched mounting plate (211), the top middle position of the arched mounting plate (211) is fixedly connected with the air cylinder (212), the output end of the air cylinder (212) penetrates through the top plate of the arched mounting plate (211) and is fixedly connected with the arched driving plate (213), the front and rear sides of the arched mounting plate (211) are provided with the claw-shaped groove (214) on the front and rear side plates of the arched driving plate (213), the top of the bottom plate (1) below the arched driving plate (213) is fixedly connected with the cutting base plate (215), a plurality of groups of cutting grooves (216) are formed in the upper end of the cutting base plate (215), the front and rear ends of the electric heating wire (2110) are fixedly connected with the electrical connection head (218), the dispersing limiting groove (219) is formed in the middle part of the electrical connection head (218), the electrical connection head (218) penetrates through the dispersing sliding groove (217) and is slidably connected with the dispersing limiting groove (219) in the dispersing sliding groove (217), and one end of the electrical connection head (218) near the front and rear side plates of the arched mounting plate (211) is slidably connected in the claw-shaped groove (214).

3. The cutting device for cotton cloth processing according to claim 2, characterized by The lower ends of the claw-shaped grooves (214) are equidistantly arranged vertical sliding grooves.

4. The cutting device for cotton cloth processing according to claim 3, characterized by The automatic discharging assembly (22) comprises discharging accommodation grooves (221), hinged seats (222), discharging rotating rods (223), driving sliding grooves (224), discharging pull rods (225) and discharging sliding columns (226), the front and rear ends of the cutting base plate (215) are both provided with the discharging accommodation grooves (221), the inside of the discharging accommodation groove (221) is provided with a group of discharging rotating rods (223), the left end of the discharging rotating rod (223) is rotationally connected to the cutting base plate (215) through the hinged seat (222), the end of the discharging rotating rod (223) close to the hinged seat (222) is provided with the driving sliding groove (224), each group of driving sliding grooves (224) is provided with a group of discharging sliding columns (226), the ends of the two groups of discharging sliding columns (226) close to each other pass through the driving sliding groove (224) and are slidably connected with the driving sliding groove (224), the ends of the discharging sliding columns (226) away from each other are fixedly connected with the discharging pull rod (225), and the upper end of the discharging pull rod (225) is fixedly connected to the arc-shaped driving plate (213).

5. The cutting device for cotton cloth processing according to claim 4, characterized by The adjustable conveying assembly (4) comprises third support vertical plates (41), third support sliding blocks (42), second threaded rods (43), dynamic conveying rollers (44) and fixed conveying rollers (45), the top of the bottom plate (1) on the right side of the arc-shaped mounting plate (211) is fixedly connected with the third support vertical plates (41) on the front and rear sides, the upper end of the third support vertical plate (41) is slidably connected with the third support sliding block (42), the dynamic conveying roller (44) is rotationally connected between the two groups of third support sliding blocks (42), the fixed conveying roller (45) is rotationally connected between the two groups of third support vertical plates (41) above the dynamic conveying roller (44), and the two groups of third support vertical plates (41) are both provided with the second threaded rods (43) penetrating through the third support sliding blocks (42) and being threadedly connected with the third support sliding blocks (42).

6. The cutting device for cotton cloth processing according to claim 5, characterized by The rear end of the fixed conveying roller (45) is connected with a driving device.

Citation Information

Patent Citations

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