Multi-layer cellulose sponge cloth conveying and slitting device

By using upper and lower distribution of transmission rollers and conveyor belts in the cellulose sponge cloth slitting device, combined with transverse slitting and cutting units, the problem of sponge cloth stacking is solved, and the uniform collection of sponge cloth and the stable operation of the equipment is achieved.

CN120440698AInactive Publication Date: 2025-08-08WEIFANG HENGSHI NEW MATERIAL TECH CO LTD
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Patent Information

Application Number
CN202510957117.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-07-11
Publication Date
2025-08-08
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

After the existing cellulose sponge cloth slitting device is slimmed, block sponge cloth accumulates at the conveying port, causing lag and mess, affecting the operation of the equipment.

Method used

The transmission rollers and conveyor belts are used to combine the transverse slitting unit and the feeding unit to realize intermittent clamping and conveying of the cellulose sponge cloth and uniformly collecting materials. The strip sponge cloth is cut into blocks through the transverse slitting unit, and the guide plate and swinging components are used to ensure that the block sponge cloth falls evenly into the receiving frame.

Benefits of technology

It effectively avoids the accumulation of block sponge cloth at the conveying port, ensures the normal operation of the equipment, and improves the collection uniformity and density of block sponge cloth.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a multilayer cellulose sponge cloth conveying and slitting device, and relates to the field of sponge cloth piece processing, the multilayer cellulose sponge cloth conveying and slitting device comprises two hollow frame bodies which are symmetrically distributed, two groups of rotating shafts which are vertically distributed are assembled between the two hollow frame bodies, and the outer surface of each rotating shaft is fixedly sleeved with a transmission roller; the two groups of rotating shafts are arranged in the hollow frame body, the two groups of rotating shafts synchronously and reversely rotate in the hollow frame body, the number of each group of rotating shafts is four, and two conveying strips are assembled among the four transmission rollers located on the upper layer in a transmission mode. The strip-shaped cellulose sponge cloth can be cut into blocks through the transverse slitting unit every time conveying pauses, and along with continuous conveying treatment of the conveying belt and the conveying strip on the block-shaped cellulose sponge cloth, the discharging unit can evenly collect the block-shaped cellulose sponge cloth, and the block-shaped cellulose sponge cloth is prevented from being stacked at a discharging port.
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Description

Technical Field

[0001] The invention relates to the field of sponge cloth processing, in particular to a multi-layer cellulose sponge cloth conveying and slitting device. Background Art

[0002] The conveying and slitting device can convey and slit multiple layers of cellulose sponge cloth bonded together. During the intermittent conveying of the entire piece of cellulose sponge cloth, the longitudinal knife can cut the cellulose sponge cloth into strips, and then the knife that can move back and forth horizontally can cut the strips of cellulose sponge cloth into small blocks of cellulose sponge cloth, making it convenient for the next worker to directly pick up the block of cellulose sponge cloth for processing.

[0003] During the conveying and slitting process of cellulose sponge cloth commonly used in factories, when the cut blocks of cellulose sponge cloth leave the conveyor belt, due to the large number of blocks of cellulose sponge cloth conveyed and the slow speed of workers picking them up, a large number of blocks of cellulose sponge cloth will accumulate at the conveying port of the conveyor belt, and the accumulation is messy, which makes it easy for some cellulose sponge cloth to be rolled up or down the conveyor belt, and the cellulose sponge blocks will be stuck on the conveyor belt, causing the conveying parts of the conveying and slitting device to jam and other malfunctions. Summary of the Invention

[0004] The object of the present invention is to provide a multi-layer cellulose sponge cloth conveying and slitting device to solve the problems raised in the above background technology.

[0005] To achieve the above-mentioned purpose, the present invention provides the following technical solution: a multi-layer cellulose sponge cloth conveying and slitting device, comprising: two symmetrically distributed hollow frames, two groups of rotating shafts distributed up and down are installed between the two hollow frames, the outer surface of each rotating shaft is fixedly sleeved with a transmission roller, the two groups of rotating shafts rotate synchronously and in opposite directions inside the hollow frames, the number of the rotating shafts in each group is four, two conveying bars are installed for transmission between the four transmission rollers located on the upper layer, and two conveyor belts are installed for transmission between the four transmission rollers located on the lower layer, there is a partition space between the two conveying bars and the two conveyor belts, and the two partition spaces overlap each other, a first motor is fixedly mounted on the outer wall of one of the hollow frames, and the output end of the first motor is fixed to the end of one of the rotating shafts, and a plurality of cutting knives equidistantly distributed in a straight line are mounted on the ends of the two hollow frames; Also includes: A transverse cutting unit, used for cutting the strip-shaped cellulose sponge cloth into blocks, wherein the transverse cutting unit is distributed in the partition space; The unloading unit is used to evenly collect the cut block cellulose sponge cloth.

[0006] Preferably, the transverse slitting unit includes a bracket fixedly mounted above the two hollow frames, and two optical axes are fixedly arranged between the two brackets, the outer surfaces of the two optical axes are slidably sleeved with a frame plate, and a connecting frame plate is fixedly arranged inside the frame plate, the interior of the connecting frame plate is hollow, the bottom of the connecting frame plate is rotatably equipped with a cutting knife, the top of the frame plate is fixedly equipped with a second motor, and a transmission assembly is provided between the output end of the second motor and the cutting knife, the rotating shaft of the cutting knife and the output end of the second motor are fixedly sleeved with gears, and a toothed belt is transmission-assembled between the two gears, the gears and the toothed belt are both inside the connecting frame plate, the cutting knife is located in the partition space, and the cutting knife and the connecting frame plate are not in contact with the conveyor belt and the conveyor bar, and a displacement component is also provided on the outside of the frame plate.

[0007] Preferably, the displacement component includes a synchronous gear assembled on the outside of the two brackets through a rotating column, and a synchronous toothed belt is installed between the two synchronous gears, the external fixed bracket of one of the brackets is provided with a third motor, and the output end of the third motor is fixedly assembled with the rotating column, the synchronous toothed belt is located below the frame plate, and the frame plate and the upper end surface of the synchronous toothed belt are fixedly bolted, and the spacing between the two synchronous gears is greater than the length of the partition space.

[0008] Preferably, a partition plate is fixedly provided on one end surface of the two hollow frames close to each other, the conveyor belt and the conveyor bar are located between the two partition plates, and the unloading unit includes a guide plate located between the end portions of one side of the two partition plates, the outer surface of the upper end of the guide plate is arc-shaped, and slides in contact with the outer surface of the conveyor belt, the guide plate is inclined and distributed on the outside of the transmission roller, a receiving frame is placed below the guide plate, the receiving frame is used to receive block cellulose sponge cloth, an arc-shaped rack is fixedly provided on the bottom surface of the guide plate, and the arc-shaped rack and the transmission roller close to the guide plate are concentrically distributed, a limiting frame is slidably sleeved on the outside of each arc-shaped rack, and the limiting frame is fixed to the partition plate, and a rocking component is provided on the outside of the partition plate.

[0009] Preferably, the rocking component includes a drive motor located outside the partition plate, and the position of the drive motor is relatively fixed to the position of the partition plate, the output end of the drive motor is facing, and the output end of the drive motor is fixedly provided with a transmission shaft, the outside of each of the arc-shaped racks is threadedly assembled with a transmission gear, and a connecting rod is fixedly assembled between the two transmission gears, both ends of the connecting rod are rotatably embedded in the inside of the partition plate, and a worm gear is fixedly sleeved on one end of the connecting rod close to the transmission shaft, and a worm sleeve is fixedly sleeved on the outer surface of the transmission shaft and assembled with the worm gear transmission.

[0010] Preferably, a shaking unit is provided on the outside of the receiving frame, and the shaking unit is used to shake the receiving frame to make the block cellulose sponge cloth accumulated in the receiving frame denser. The shaking unit includes a support plate located at the bottom of the receiving frame, and the support plate wraps the bottom of the receiving frame. The bottom of the support plate is fixedly equipped with two symmetrically distributed fixing frames, and the internal sliding of the fixing frames is equipped with a sliding column. Limiting plates are fixedly provided at both ends of each sliding column, and a base is fixedly provided at the bottoms of several limiting plates. A tension spring is fixedly provided between one end of the fixing frame and the limiting plate, and the tension springs are distributed on the outside of the sliding column. A toggle component is also provided between the transmission shaft and the receiving frame.

[0011] Preferably, the shifting component includes a hollow turntable fixedly mounted on the outer surface of the transmission shaft, and the interior of the hollow turntable is equipped with a tooth block that is elastically rotated by a torsion spring and a latch, and the support plate is fixedly provided with a limit plate close to one end face of the transmission shaft, and the tooth block is in movably contact with the limit plate, and the tooth block can only swing elastically in one direction inside the hollow turntable, but cannot swing in the other direction.

[0012] Preferably, the drive motor is fixed to the upper end surface of the base.

[0013] Preferably, the minimum distance between the top of the receiving frame and the bottom of the guide plate is a, the depth of the bottom of the receiving frame embedded in the interior of the supporting plate is b, and a>b.

[0014] Preferably, a right-angled protective plate is installed above the partition space, and the right-angled protective plate is fixedly installed on the top of the two hollow frames, and the right-angled protective plate covers the bracket and the tail of the frame plate.

[0015] Compared with the prior art, the present invention has the following beneficial effects: The present invention uses two sets of transmission rollers distributed upper and lower, and conveyor belts and conveyor strips to intermittently clamp and convey the strip cellulose sponge cloth. Each time the conveying pauses, the strip cellulose sponge cloth can be cut into blocks by the transverse cutting unit. Moreover, as the conveyor belts and conveyor strips continuously convey the block cellulose sponge cloth, the unloading unit can evenly collect the block cellulose sponge cloth, thereby preventing the block cellulose sponge cloth from piling up at the unloading port. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 It is a schematic diagram of the overall structure of the present invention; Figure 2 This is a schematic structural diagram of the present invention from another perspective; Figure 3 This is a schematic diagram of the position distribution structure of the conveyor belt and conveyor strip of the present invention; Figure 4 For the present invention Figure 3 Enlarged view of point A in the middle; Figure 5 This is a schematic diagram of the guide plate position distribution structure of the present invention; Figure 6 For the present invention Figure 5 Enlarged view of point B in the middle; Figure 7 This is a schematic diagram of the hollow turntable and gear block structure of the present invention; Figure 8 This is a schematic diagram of the tension spring structure of the present invention; Figure 9 For the present invention Figure 7 Enlarged view of point C in the middle.

[0017] In the figure: 1. hollow frame; 2. partition plate; 3. rotating shaft; 4. transmission roller; 5. conveyor belt; 6. conveyor bar; 7. first motor; 8. bracket; 9. optical axis; 10. frame plate; 11. second motor; 12. connecting frame plate; 13. cutting knife; 14. third motor; 15. synchronous gear; 16. synchronous toothed belt; 17. guide plate; 18. arc rack; 19. limiting frame; 20. transmission gear; 21. driving motor; 22. transmission shaft; 23. fixing frame; 24. sliding column; 25. support plate; 26. receiving frame; 27. tension spring; 28. base; 29. hollow turntable; 30. tooth block; 31. limiting plate; 32. worm sleeve; 33. connecting rod; 34. worm gear. DETAILED DESCRIPTION

[0018] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0019] Example 1: Please refer to Figures 1-9 The multi-layer cellulose sponge cloth conveying and slitting device shown in the figure comprises: two symmetrically distributed hollow frames 1, two groups of rotating shafts 3 distributed up and down are assembled between the two hollow frames 1, and the outer surface of each rotating shaft 3 is fixedly sleeved with a transmission roller 4. The two groups of rotating shafts 3 rotate synchronously in opposite directions inside the hollow frame 1. There are four rotating shafts 3 in each group. Two conveying strips 6 are assembled between the four transmission rollers 4 on the upper layer, and two conveyor belts 5 are assembled between the four transmission rollers 4 on the lower layer. There is a partition space between the two conveyor strips 6 and the two conveyor belts 5, and the two partition spaces overlap up and down, one of which is in the middle. A first motor 7 is fixedly mounted on the outer wall of the hollow frame 1, and the output end of the first motor 7 is fixed to the end of one of the rotating shafts 3. A plurality of cutters equidistantly distributed in a straight line are mounted on the ends of the two hollow frames 1. The cutters can be driven by the motor to cut the whole sheet of cellulose sponge cloth into strips, so that the strips of cellulose sponge cloth enter the two sets of rotating shafts 3 for transmission. The first motor 7 can intermittently drive the two sets of rotating shafts 3 for transmission, and the two sets of transmission rollers 4 distributed up and down rotate synchronously in opposite directions, so that the conveyor belts 5 and conveyor strips 6 distributed up and down can clamp the cellulose sponge cloth and intermittently convey it for processing; Also includes: A transverse cutting unit is used to cut the strip-shaped cellulose sponge cloth into blocks, and the transverse cutting units are distributed in the partition space; The unloading unit is used to evenly collect the cut block cellulose sponge cloth to prevent the cellulose sponge cloth from piling up at the discharge port of the conveyor belt 5 and the conveyor bar 6, and even move the cellulose sponge cloth to the top of the conveyor bar 6 or the bottom of the conveyor belt 5 along the transmission of the conveyor belt 5 and the conveyor bar 6.

[0020] The horizontal cutting unit includes a bracket 8 fixedly mounted above the two hollow frames 1, and two optical axes 9 are fixedly arranged between the two brackets 8. The outer surfaces of the two optical axes 9 are slidably sleeved with a frame plate 10, and a connecting frame plate 12 is fixedly arranged inside the frame plate 10. The interior of the connecting frame plate 12 is hollow, and a cutting knife 13 is rotatably mounted on the bottom of the connecting frame plate 12. A second motor 11 is fixedly mounted on the top of the frame plate 10, and a transmission assembly is provided between the output end of the second motor 11 and the cutting knife 13. The rotating shaft of the cutting knife 13 and the output of the second motor 11 are connected. Both ends are fixed with gears, and a toothed belt is installed between the two gears. The gears and the toothed belt are both inside the connecting frame plate 12. The cutting knife 13 is located in the partition space, and the cutting knife 13 and the connecting frame plate 12 are not in contact with the conveyor belt 5 and the conveyor bar 6. A displacement component is also provided on the outside of the frame plate 10. Under the action of the displacement component, the frame plate 10 can move back and forth with the cutting knife 13 inside the partition space, and the second motor 11 can drive the cutting knife 13 to rotate at high speed, so that the cutting knife 13 can cut the cellulose sponge cloth moved into the partition space.

[0021] The displacement component includes a synchronous gear 15 assembled on the outside of the two brackets 8 through a rotating column, and a synchronous toothed belt 16 is installed between the two synchronous gears 15. A third motor 14 is fixed on the outside of one of the brackets 8, and the output end of the third motor 14 is fixedly assembled with the rotating column. The synchronous toothed belt 16 is located below the frame plate 10, and the upper end surface of the frame plate 10 and the synchronous toothed belt 16 are fixedly bolted. The spacing between the two synchronous gears 15 is greater than the length of the partition space, thereby ensuring that the moving stroke of the frame plate 10 can effectively cut the cellulose sponge cloth without affecting the transportation of the cellulose sponge cloth. The third motor 14 can drive the synchronous gear 15 clockwise or counterclockwise, so that the synchronous toothed belt 16 moves back and forth with the frame plate 10 above the partition space.

[0022] The two hollow frames 1 are each fixedly provided with a partition plate 2 on one end face close to each other. The conveyor belt 5 and the conveyor bar 6 are located between the two partition plates 2. The unloading unit includes a guide plate 17 located between the ends of one side of the two partition plates 2. The upper end outer surface of the guide plate 17 is arc-shaped and slides in contact with the outer surface of the conveyor belt 5. The guide plate 17 is inclined and distributed on the outside of the transmission roller 4. A receiving frame 26 is placed below the guide plate 17. The receiving frame 26 is used to receive the block cellulose sponge cloth. The bottom surface of the guide plate 17 is fixed. An arc-shaped rack 18 is fixedly provided, and the arc-shaped rack 18 and the transmission roller 4 close to the guide plate 17 are concentrically distributed. A limit frame 19 is slidably sleeved on the outside of each arc-shaped rack 18, and the limit frame 19 is fixed to the partition plate 2. A swing component is provided on the outside of the partition plate 2. Under the action of the swing component, the arc-shaped rack 18 can swing back and forth with the guide plate 17, and the swing center is close to the axis of the transmission roller 4, that is, the upper arc surface of the guide plate 17 can slide and swing back and forth along the outer surface of the conveyor belt 5.

[0023] The swinging component includes a drive motor 21 located on the outside of the partition plate 2, and the position of the drive motor 21 is relatively fixed to the position of the partition plate 2. The output end of the drive motor 21 is facing, and the output end of the drive motor 21 is fixedly provided with a transmission shaft 22. The outside of each arc-shaped rack 18 is threadedly equipped with a transmission gear 20, and a connecting rod 33 is fixedly assembled between the two transmission gears 20. Both ends of the connecting rod 33 are rotatably embedded in the interior of the partition plate 2. A worm gear 34 is fixedly sleeved at one end of the connecting rod 33 close to the transmission shaft 22, and a worm sleeve 32 assembled with the worm gear 34 is fixedly sleeved on the outer surface of the transmission shaft 22. The drive motor 21 can drive the worm sleeve 32 to rotate reciprocatingly through the transmission shaft 22, and then the guide plate 17 can be made to swing back and forth through the engagement of the transmission gear 20 with the arc-shaped rack 18.

[0024] A right-angle protective plate is installed above the partition space. The right-angle protective plate is fixed on the top of the two hollow frames 1. The right-angle protective plate covers the tail of the bracket 8 and the frame plate 10. The right-angle protective plate plays a certain protective role on the bracket 8 and the frame plate 10. At the same time, it also prevents the staff from easily contacting the transmission structure, causing equipment failure or causing injury to the staff.

[0025] Example 2: Please refer to Figure 5-Figure 9This embodiment is a further explanation of other embodiments. A shaking unit is provided on the outside of the receiving frame 26. The shaking unit is used to shake the receiving frame 26 to make the block-shaped cellulose sponge cloth accumulated in the receiving frame 26 more dense, that is, to increase the automatic loading capacity of the receiving frame 26 for the block-shaped cellulose sponge cloth. The shaking unit includes a support plate 25 located at the bottom of the receiving frame 26, and the support plate 25 wraps the bottom of the receiving frame 26. The bottom of the support plate 25 is fixedly equipped with two symmetrically distributed fixing frames 23, and the inner portion of the fixing frame 23 is fixed with a plurality of symmetrically distributed fixing frames 23. The sliding part is equipped with a slide column 24, and both ends of each slide column 24 are fixed with a limit plate, and the bottom of several limit plates is fixed with a base 28. A tension spring 27 is fixed between one end of the fixing frame 23 and the limit plate, and the tension spring 27 is distributed on the outside of the slide column 24. A toggle component is also provided between the transmission shaft 22 and the receiving frame 26. The bottom of the receiving frame 26 is installed on the upper end surface of the support plate 25. When the support plate 25 slides elastically above the base 28, the support plate 25 can also move with the receiving frame 26.

[0026] The toggle component includes a hollow turntable 29 fixedly mounted on the outer surface of the transmission shaft 22, and the interior of the hollow turntable 29 is equipped with a tooth block 30 which is elastically rotated by a torsion spring and a latch. A limit plate 31 is fixedly provided on one end surface of the support plate 25 close to the transmission shaft 22, and the tooth block 30 is in active contact with the limit plate 31. The tooth block 30 can only swing elastically in one direction inside the hollow turntable 29, but cannot swing in the other direction. When the transmission shaft 22 rotates with the hollow turntable 29, the tooth block 30 can push the receiving frame 26 and the support plate 25 through the limit plate 31 and then release them instantly, so that the support plate 25 can move one end of the receiving frame 26 and then reset instantly, thereby shaking the cellulose sponge cloth inside the receiving frame 26.

[0027] The driving motor 21 is fixed to the upper end surface of the base 28 , and the base 28 supports the driving motor 21 .

[0028] The minimum distance between the top of the receiving frame 26 and the bottom of the guide plate 17 is a, and the depth of the bottom of the receiving frame 26 embedded in the interior of the support plate 25 is b, a>b, thereby preventing the upper end of the receiving frame 26 from covering the guide plate 17 when the staff lifts the receiving frame 26 upward, causing the receiving frame 26 to be hindered from being removed from the support plate 25.

[0029] Working principle: When the strip of cellulose sponge cloth Figure 3During the intermittent conveying process from the left side to the right side, each pause in conveying allows the third motor 14 to drive the frame 10 to move once above the partition space, and during the movement, the second motor 11 can drive the cutting blade 13 to rotate at high speed, thereby cutting the cellulose sponge cloth located in the partition space to obtain block-shaped cellulose sponge cloth; Since the strip-shaped cellulose sponge cloth is clamped between the conveyor belt 5 and the conveyor bar 6 for transmission, when the first motor 7 runs next time and the conveyor belt 5 and the conveyor bar 6 perform the next intermittent transportation, the strip-shaped cellulose sponge cloth will push the block-shaped limiter sponge cloth toward the right until the block-shaped cellulose sponge cloth can leave from between the conveyor belt 5 and the conveyor bar 6 and fall onto the surface of the guide plate 17, and enter the interior of the receiving frame 26 under the guidance of the inclined guide plate 17.

[0030] In this solution, when the drive motor 21 drives the transmission shaft 22 to perform clockwise and counterclockwise switching rotation, the guide plate 17 can be made to swing back and forth at a relatively slow speed outside the transmission roller 4 through the transmission cooperation between the worm sleeve 32 and the worm wheel 34, and the transmission cooperation between the tooth block 30 and the arc-shaped rack 18. The purpose of the swing is to adjust the guiding angle of the guide plate 17 to the block cellulose sponge cloth, thereby avoiding that all the block cellulose sponge cloths have the same landing point, resulting in excessive accumulation of block cellulose sponge cloths at the center position of the receiving frame 26 and very little at the periphery. By continuously changing the landing point of the block cellulose sponge cloth, the uniformity of the distribution of the block cellulose sponge cloth inside the receiving frame 26 is ensured. When the transmission shaft 22 rotates with the hollow turntable 29, and the limit plate 31 is intermittently pushed and then released instantly by the tooth block 30, the reaction elastic force generated by the deformation of the tension spring 27 can make the support plate 25 and the receiving frame 26 return to the original position and move very quickly, that is, the receiving frame 26 can shake the block cellulose sponge cloth collected inside it, further improving the density of the block cellulose sponge cloth inside the receiving frame 26.

[0031] It should be noted that, in this document, relational terms such as first and second, etc., are used only to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the terms "comprises," "comprising," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that includes a list of elements includes not only those elements but also other elements not explicitly listed, or elements inherent to such process, method, article, or apparatus.

[0032] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.

Claims

1. A multi-layer cellulose sponge cloth conveying and slitting device, characterized in that: include: Two symmetrically distributed hollow frames (1), two groups of rotating shafts (3) distributed in an upper and lower direction are assembled between the two hollow frames (1), the outer surface of each rotating shaft (3) is fixedly sleeved with a transmission roller (4), the number of each group of rotating shafts (3) is four, two conveying bars (6) are assembled between the four transmission rollers (4) on the upper layer, two conveying belts (5) are assembled between the four transmission rollers (4) on the lower layer, and there is a partition space between the two conveying bars (6) and the two conveying belts (5); Also includes: A transverse cutting unit, used for cutting the strip-shaped cellulose sponge cloth into blocks, wherein the transverse cutting unit is distributed in the partition space; The unloading unit is used to evenly collect the cut block cellulose sponge cloth.

2. The multi-layer cellulose sponge cloth conveying and slitting device according to claim 1, characterized in that: The transverse cutting unit comprises a bracket (8) fixedly mounted above the two hollow frames (1), and two optical axes (9) are fixedly arranged between the two brackets (8), and a frame plate (10) is slidably sleeved on the outer surfaces of the two optical axes (9), a second motor (11) is fixedly mounted on the top of the frame plate (10), and a connecting frame plate (12) is fixedly mounted inside the frame plate (10), a cutting knife (13) is rotatably mounted on the bottom of the connecting frame plate (12), and a transmission assembly is provided between the output end of the second motor (11) and the cutting knife (13), the cutting knife (13) is located in the partition space, and a displacement component is also provided on the outside of the frame plate (10).

3. The multi-layer cellulose sponge cloth conveying and slitting device according to claim 2, characterized in that: The displacement component includes a synchronous gear (15) which is assembled on the outside of the two brackets (8) through a rotating column, and a synchronous toothed belt (16) is assembled between the two synchronous gears (15). A third motor (14) is fixedly mounted on the outside of one of the brackets (8), and the output end of the third motor (14) is fixedly assembled with the rotating column. The frame plate (10) and the upper end surface of the synchronous toothed belt (16) are fixedly bolted.

4. The multi-layer cellulose sponge cloth conveying and slitting device according to claim 2, characterized in that: A partition plate (2) is fixedly provided on one end face of the two hollow frames (1) close to each other, the conveyor belt (5) and the conveyor bar (6) are located between the two partition plates (2), the unloading unit includes a guide plate (17) located between the ends of the two partition plates (2), the guide plate (17) is distributed in an inclined shape on the outside of the transmission roller (4), a receiving frame (26) is placed below the guide plate (17), an arc-shaped rack (18) is fixedly provided on the bottom surface of the guide plate (17), and the arc-shaped rack (18) and the transmission roller (4) close to the guide plate (17) are concentrically distributed, a limiting frame (19) is slidably sleeved on the outside of each arc-shaped rack (18), and the limiting frame (19) is fixed to the partition plate (2), and a swing component is provided on the outside of the partition plate (2).

5. The multi-layer cellulose sponge cloth conveying and slitting device according to claim 4, characterized in that: The swing component includes a drive motor (21) located outside the partition plate (2), and a transmission shaft (22) is fixedly provided at the output end of the drive motor (21), and the outer portion of each arc-shaped rack (18) is threadedly assembled with a transmission gear (20), and a connecting rod (33) is fixedly assembled between the two transmission gears (20), and both ends of the connecting rod (33) are rotatably embedded in the interior of the partition plate (2), and a worm gear (34) is fixedly provided at one end of the connecting rod (33) close to the transmission shaft (22), and a worm sleeve (32) is fixedly provided on the outer surface of the transmission shaft (22) and is transmission-assembled with the worm gear (34).

6. The multi-layer cellulose sponge cloth conveying and slitting device according to claim 5, characterized in that: The receiving frame (26) is provided with a shaking unit on the outside, and the shaking unit includes a support plate (25) located at the bottom of the receiving frame (26), and the support plate (25) wraps the bottom of the receiving frame (26). The bottom of the support plate (25) is fixedly equipped with two symmetrically distributed fixing frames (23), and the interior of the fixing frame (23) is slidably equipped with a slide column (24). Both ends of each slide column (24) are fixedly provided with a limit plate, and the bottoms of several limit plates are fixedly provided with a base (28). A tension spring (27) is fixedly provided between one end of the fixing frame (23) and the limit plate, and a toggle component is also provided between the transmission shaft (22) and the receiving frame (26).

7. The multi-layer cellulose sponge cloth conveying and slitting device according to claim 6, characterized in that: The shifting component comprises a hollow rotating disk (29) fixedly sleeved on the outer surface of the transmission shaft (22), and a tooth block (30) is elastically rotatably mounted inside the hollow rotating disk (29), and a limiting plate (31) is fixedly provided on one end surface of the support plate (25) close to the transmission shaft (22), and the tooth block (30) is in movable contact with the limiting plate (31).

8. The multi-layer cellulose sponge cloth conveying and slitting device according to claim 6, characterized in that: The driving motor (21) is fixed to the upper end surface of the base (28).

9. The multi-layer cellulose sponge cloth conveying and slitting device according to claim 6, characterized in that: The minimum distance between the top of the receiving frame (26) and the bottom of the guide plate (17) is a, and the depth of the bottom of the receiving frame (26) embedded in the interior of the support plate (25) is b, and a>b.

10. The multi-layer cellulose sponge cloth conveying and slitting device according to claim 2, characterized in that: A right-angled protective plate is mounted above the partition space. The right-angled protective plate is fixedly mounted on the top of the two hollow frames (1). The right-angled protective plate covers the bracket (8) and the tail of the frame plate (10).

Citation Information

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