A conveying device for an automated textile slicing machine
By utilizing the conveying device of the automated textile slicing machine and the coordinated operation of clamping, positioning, and overlapping components, automatic replacement and seamless switching of fabric rollers are achieved, solving the production interruption problem when the conveying device changes fabric rollers and improving equipment efficiency and capacity.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-12-05
- Publication Date
- 2026-03-13
AI Technical Summary
The existing automated textile slicing machine requires a shutdown operation when changing the fabric roller, resulting in long production interruptions, low equipment efficiency, and significant losses due to frequent start-stop cycles, failing to meet the demand for efficient continuous production.
An automated textile slicing machine conveying device was designed. Through the coordinated work of clamping components, positioning components and overlapping components, the automatic replacement and overlapping of fabric rollers are realized. Infrared sensors are used to monitor the thickness, and motor-driven rotation and glue spraying achieve seamless switching, reducing manual intervention.
Seamless switching of fabric rollers was achieved, which improved the continuity and capacity of the equipment, reduced manual operation, stabilized product quality, and reduced equipment wear and tear.
Smart Images

Figure CN121247530B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of conveying devices, and in particular to a conveying device for an automated textile slicing machine. Background Technology
[0002] In the textile chip production process, the conveying device of an automated textile chipper is a core component ensuring continuous operation, but it still has significant limitations in practical applications. Current conveying devices rely on fabric rollers to supply the fabric to be processed. When the fabric on a set of fabric rollers is used up, the entire chipper must be stopped, the used fabric rollers manually removed and replaced with new ones, and then the fabric on the new rollers must be manually re-threaded into the conveying path, its position calibrated, and tension adjusted before production can resume. This process not only consumes a lot of manpower and time, resulting in excessively long production interruptions, but also severely reduces the overall operating efficiency and output of the equipment. Furthermore, frequent shutdowns for roller replacements increase start-up and shutdown losses, shorten the equipment's lifespan, and fail to meet the textile industry's demands for efficient, continuous, and precise production. Summary of the Invention
[0003] The main objective of this invention is to provide a conveying device for an automated textile slicing machine, which can effectively solve the problems in the background art.
[0004] To achieve the above objectives, the technical solution adopted by the present invention is as follows:
[0005] A conveying device for an automated textile slicing machine includes a support frame. A clamping assembly is mounted on the upper side of the support frame. A storage assembly is mounted on one side of the support frame. A positioning assembly is mounted inside the storage assembly. An overlapping assembly is mounted outside the storage assembly. The storage assembly includes a fixed frame fixedly mounted on one side of the support frame. Two sets of discs are fixedly mounted on the fixed frame. A motor base is fixedly mounted on the front set of the two sets of discs. A second motor is fixedly mounted on the upper end of the motor base. A transmission rod is fixedly mounted on the rear side of the shaft of the second motor. Two sets of drive discs are fixedly mounted on the outer side of the transmission rod. Four placement slots are fixedly mounted on the outer side of each of the two sets of drive discs. Four sets of fabric rollers are movably placed between the four placement slots on the two sets of drive discs. A door panel is rotatably mounted on the outer side of each of the two sets of discs. A fixing bolt is threadedly connected to the inner side of each of the two sets of door panels and the outer side of each of the two sets of discs. A connecting rope is fixedly connected between each of the two sets of door panels and the outer side of each of the two sets of discs.
[0006] Preferably, the clamping assembly includes a mounting plate rotatably disposed inside the bracket. Two sets of drive rollers are fixedly disposed at the upper end of the bracket. An adjustment port is opened on the inner side of each set of drive rollers. Threaded handles are threadedly connected to the inner side of each set of mounting plates. A connecting plate is rotatably disposed below each set of threaded handles. Two sets of fixing rods are movably disposed inside each set of connecting plates. A No. 1 spring is sleeved on the outer side of each set of fixing rods. A sleeve block is fixedly disposed at the lower end of each set of fixing rods. An auxiliary roller is movably disposed inside the sleeve block. A support roller is fixedly disposed on the lower side of the bracket. A No. 1 motor is installed at one corner of each set of mounting plates. Synchronous pulleys are fixedly disposed on the outer side of the shafts of the support rollers and drive rollers. Synchronous belts are sleeved on the outer side of the synchronous pulleys.
[0007] Preferably, the positioning component includes two sets of cross discs fixedly disposed at opposite ends of the two sets of drive discs. Four sets of switch boxes are fixedly disposed inside the periphery of each of the two sets of cross discs. Bearings are fixedly disposed at one end of each of the two sets of cross discs. Fixed rollers are fixedly disposed inside the corresponding two sets of storage components between the two sets of cross discs. The fixed rollers have notches. Fixed sleeves are fixedly disposed near the edges on the front and rear sides of the fixed rollers. Convex rollers are rotatably disposed inside the two sets of fixed sleeves. Connecting pieces are fixedly disposed on the front and rear sides of the convex rollers. A connecting rod is fixedly disposed at one end of the cross disc. A No. 1 cylinder is rotatably disposed between the connecting rod and the connecting piece.
[0008] Preferably, the overlapping assembly includes two sets of first slides fixedly disposed at opposite ends of two sets of fixed frames. Each set of first slides has a mounting base fixedly disposed on its movable seat. A second slide is fixedly disposed on the upper end of each of the two mounting bases. A glue gun is fixedly disposed on the movable seat of the second slide. A U-shaped frame is fixedly disposed on the outer side of each of the two sets of discs corresponding to their center positions. A partition roller is rotatably disposed on one side of the U-shaped frame. Two sets of second cylinders are fixedly disposed on the upper end of the U-shaped frame. A fixed plate is fixedly disposed on the lower end of the telescopic rods of the two sets of second cylinders. A blade is fixedly disposed on the lower end of the fixed plate. A movable frame is sleeved on the outer side of the blade. A guide opening is provided on the inner side of the movable frame corresponding to the blade position. Two sets of pressure rollers are fixedly disposed on the lower side of the movable frame. Connecting shafts are fixedly disposed on both the front and rear sides of the fixed plate. A second spring is sleeved between the fixed plate and the movable frame on the outer side of the two sets of connecting shafts. An infrared sensor is fixedly disposed on the other side of the U-shaped frame.
[0009] Preferably, the transmission rod passes through the interior of the two sets of discs, the four sets of placement slots are evenly distributed on the outside of the drive disc, the door panel corresponds to the position of the lower set of placement slots, and the fixing bolts fix the door panel to the discs together.
[0010] Preferably, the threaded handle is inserted into the interior of the adjustment port, the connecting plate and the sleeve block are slidably disposed in the adjustment port, the No. 1 spring is disposed between the connecting plate and the sleeve block on the outside of the fixed rod, the auxiliary roller and the drive roller clamp a set of fabric rollers to weave fabric, and the support roller is supported on the underside of the conveyed fabric.
[0011] Preferably, the switch box is electrically connected to and starts the cylinder, the four sets of fixed rollers are evenly distributed on the outside of the cross disc, and the telescopic rod of the cylinder is connected to the connector at one end and to the connecting rod at the other end.
[0012] Preferably, the glue gun corresponds to the position of the uppermost set of fixed rollers, the partition roller is set on the lower side of the fabric being woven by the conveying set of fabric rollers, the blade passes through the guide opening and the inner side of the two sets of pressure rollers, the blade corresponds to the notch position of the upper set of fixed rollers, the height of the two sets of pressure rollers is respectively set on both sides of the notch, the set of two pressure rollers that is closer to the bracket is the glue shaping heat pressing roller, the second spring moves through the inside of the movable frame, and the infrared sensor is located directly above the upper right set of fabric rollers for detection.
[0013] Compared with the prior art, the present invention has the following beneficial effects:
[0014] 1. Place the fabric on the upper right fabric roller and support roller, with one end passing between the drive roller and auxiliary roller. By rotating the two sets of threaded handles, the connecting plate and sleeve block are moved downwards, causing the auxiliary roller to move towards the drive roller to clamp the fabric. Then, the No. 1 motor drives the connected synchronous wheel to rotate, which in turn drives another set of synchronous wheels and the connected drive roller to rotate, thus achieving the purpose of conveying the clamped fabric. The fixing rod and No. 1 spring on the auxiliary roller give the auxiliary roller a small range of elastic position, allowing the hardened glue to pass through after the subsequent overlapping components are in operation.
[0015] 2. The transmission rod and two sets of drive discs are driven by the No. 2 motor to rotate clockwise. The four sets of placement slots drive the four sets of fabric rollers to rotate 90 degrees each time, so that all four sets of fabric rollers can rotate to the upper right conveying position. The fabric roller originally in the upper right position rotates to the lower right corresponding door panel position. The door panel is opened by loosening the fixing bolt. The connecting rope restricts the door panel to be in an inclined state after opening. The used fabric roller can be disassembled and replaced with a new set of fabric rollers.
[0016] 3. Next, place one end of the fabric rolled up by the fabric roller between the fixed roller and the convex roller. Control the start of cylinder number one through the switch box. Cylinder number one pulls the connector and the convex roller to rotate along the fixed sleeve. The convex part of the rotating fixed sleeve and the fixed roller clamp and fix one end of the fabric on the fixed roller, positioning one end of the fabric in the designated position. The operation is convenient and quick. The notch setting facilitates the subsequent cutting of the overlapping components.
[0017] 4. The thickness of the conveyed fabric rollers is monitored in real time by an infrared sensor. When the conveying is about to be completed, the two sets of No. 1 slides drive the No. 2 slide and the glue gun to move to the position of the uppermost set of fixed rollers. The No. 2 slide drives the glue gun to move laterally, spraying glue laterally onto the positioned fabric. Then, the two sets of No. 2 cylinders drive the fixed plate and movable frame, as well as the two sets of pressure rollers, to move downwards. The two sets of pressure rollers clamp the outside of the fixed rollers. At this time, the conveyed fabric and the fabric on the lower set of fabric rollers are pressed and positioned together. Meanwhile, the left set of pressure rollers quickly fixes the two sections of fabric and glue together. The fabric is fixed together, and then the second cylinder continues to push downwards, causing the fixing plate and blade to move down and squeeze the second spring. The blade inserts into the notch, automatically cutting the two sections of fabric. This allows the next set of fabric rollers to automatically connect with the conveyed fabric, and the fabric on the previous set of fabric rollers to be cut off and detached. Then, the drive disc is rotated 90 degrees, and the infrared sensor detects the newly overlapped fabric rollers. Through their coordinated work, the fabric rollers can be switched without stopping the machine, and the fabric can be automatically overlapped, improving the continuity of the equipment, greatly increasing production capacity, reducing manual operation, and stabilizing product quality. Attached Figure Description
[0018] Figure 1 This is a schematic diagram of the overall docking structure of the conveying device of an automated textile slicing machine according to the present invention;
[0019] Figure 2 This is a partial cross-sectional view of the clamping component in the overall structure of the conveying device of an automated textile slicing machine according to the present invention.
[0020] Figure 3 This invention relates to a conveying device for an automated textile slicing machine. Figure 2 Enlarged structural diagram of section A in the middle;
[0021] Figure 4 This is a schematic diagram of the storage and positioning components of the conveying device of an automated textile slicing machine according to the present invention;
[0022] Figure 5 This is a partial structural diagram of the positioning component and storage component of the conveying device of an automated textile slicing machine according to the present invention;
[0023] Figure 6 This invention relates to a conveying device for an automated textile slicing machine. Figure 4 Enlarged structural diagram of section B in the middle;
[0024] Figure 7 This is a partial structural diagram of the positioning and storage components of the conveying device of an automated textile slicing machine according to the present invention;
[0025] Figure 8This is a partial structural diagram of the positioning component of the conveying device of an automated textile slicing machine according to the present invention;
[0026] Figure 9 This is a partial structural diagram of the overlapping and positioning components of the conveying device of an automated textile slicing machine according to the present invention.
[0027] Figure 10 This is a partial structural diagram of the overlapping component of the conveying device of an automated textile slicing machine according to the present invention.
[0028] In the diagram: 1. Bracket; 2. Clamping assembly; 21. Mounting plate; 22. Drive roller; 23. Adjustment port; 24. Threaded handle; 25. Connecting plate; 26. Fixing rod; 27. Spring No. 1; 28. Sleeve block; 29. Auxiliary roller; 210. Support roller; 211. Motor No. 1; 212. Synchronous pulley; 213. Synchronous belt; 3. Storage assembly; 31. Fixing frame; 32. Disc; 33. Motor base; 34. Motor No. 2; 35. Transmission rod; 36. Drive disc; 37. Placement slot; 38. Fabric roller; 39. Door panel; 310. Fixing bolt; 311. Connecting rope; 4. 41. Positioning assembly; 42. Cross plate; 43. Switch box; 44. Bearing; 45. Fixed roller; 46. Notch; 47. Fixed sleeve; 48. Convex roller; 49. Connector; 40. Connecting rod; 410. Cylinder No. 1; 51. Overlap assembly; 51. Slide No. 1; 52. Mounting base; 53. Slide No. 2; 54. Glue gun; 55. U-shaped frame; 56. Spacer roller; 57. Cylinder No. 2; 58. Fixed plate; 59. Blade; 510. Movable frame; 511. Guide port; 512. Pressure roller; 513. Connecting shaft; 514. Spring No. 2; 515. Infrared sensor. Detailed Implementation
[0029] The technical solutions of the present invention will be clearly and completely described below with reference to the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments.
[0030] In the description of this invention, it should be understood that the terms "upper", "lower", "front", "rear", "left", "right", "top", "bottom", "inner", "outer", etc., indicate the orientation or positional relationship as a relative relationship of orientation or position, and are only for the convenience of describing this invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this invention.
[0031] Please see Figures 1-10One embodiment of the present invention provides a conveying device for an automated textile slicing machine, comprising a support 1, a clamping component 2 disposed on the upper side of the support 1, a storage component 3 disposed on one side of the support 1, a positioning component 4 disposed on the inner side of the storage component 3, and an overlapping component 5 disposed on the outer side of the storage component 3. The storage component 3 includes a fixing frame 31 fixedly disposed on one side of the support 1, and two sets of discs 32 fixedly disposed on the fixing frame 31. A motor base 33 is fixedly disposed on the front set of the two sets of discs 32, and a second motor is fixedly disposed on the upper end of the motor base 33. The machine 34 has a transmission rod 35 fixedly installed on the rear side of the shaft of the second motor 34. Two sets of drive discs 36 are fixedly installed on the outer side of the transmission rod 35. Four sets of placement slots 37 are fixedly installed on the outer side of each of the two sets of drive discs 36. Four sets of fabric rollers 38 are movably placed between the four sets of placement slots 37 on the two sets of drive discs 36. Door panels 39 are rotatably installed on the outer side of each of the two sets of discs 32. Fixing bolts 310 are threadedly connected to the inner side of each of the two sets of door panels 39 and the two sets of discs 32. Connecting ropes 311 are fixedly connected between each of the two sets of door panels 39 and the outer side of each of the two sets of discs 32.
[0032] The transmission rod 35 passes through the interior of the two sets of discs 32, and the four sets of placement slots 37 are evenly distributed on the outside of the drive disc 36. The door panel 39 corresponds to the position of the lower set of placement slots 37, and the fixing bolt 310 fixes the door panel 39 and the disc 32 together.
[0033] The transmission rod 35 and the two sets of drive discs 36 are driven by the second motor 34 to rotate clockwise. The four sets of placement slots 37 drive the four sets of fabric rollers 38 to complete the set 90-degree rotation each time, so that all four sets of fabric rollers 38 can rotate to the upper right conveying position to work. The fabric roller 38 originally in the upper right position rotates to the lower right corresponding door panel 39 position. The door panel 39 is opened by loosening the fixing bolt 310. The connecting rope 311 restricts the door panel 39 to be in an inclined state after opening. The used fabric roller 38 can be disassembled and replaced with a new set of fabric rollers 38.
[0034] The clamping assembly 2 includes a mounting plate 21 rotatably mounted inside the bracket 1. Two sets of drive rollers 22 are fixedly mounted on the upper end of the bracket 1. Adjustment ports 23 are opened on the inner side of each set of drive rollers 22. Threaded handles 24 are threadedly connected to the inner side of each set of mounting plates 21. Connecting plates 25 are rotatably mounted on the lower side of each set of threaded handles 24. Two sets of fixing rods 26 are movably mounted on the inner side of each set of connecting plates 25. A first-order spring 27 is sleeved on the outer side of each set of fixing rods 26. Sleeve blocks 28 are fixedly mounted on the lower end of each set of fixing rods 26. Auxiliary rollers 29 are movably mounted on the inner side of each set of sleeve blocks 28. Support rollers 210 are fixedly mounted on the lower side of the bracket 1. A first-order motor 211 is installed at one corner of each set of mounting plates 21. Synchronous pulleys 212 are fixedly mounted on the outer side of the shafts of the support rollers 210 and drive rollers 22. Synchronous belts 213 are sleeved on the outer side of each set of synchronous pulleys 212.
[0035] The threaded handle 24 is inserted into the interior of the adjustment port 23. The connecting plate 25 and the sleeve block 28 are slidably disposed in the adjustment port 23. The No. 1 spring 27 is disposed between the connecting plate 25 and the sleeve block 28 on the outside of the fixed rod 26. The auxiliary roller 29 and the drive roller 22 clamp a set of fabric rollers 38 to weave fabric. The support roller 210 is supported on the underside of the conveyed fabric.
[0036] The fabric is placed on the upper right fabric roller 38 and placed on the spacer roller 56 and support roller 210. One end of the fabric passes between the drive roller 22 and the auxiliary roller 29. By rotating the two sets of threaded handles 24, the connecting plate 25 and the sleeve block 28 are moved downwards, so that the auxiliary roller 29 moves towards the drive roller 22 to clamp the fabric. Then, the first motor 211 drives the connected synchronous wheel 212 to rotate. In conjunction with the synchronous belt 213, the other set of synchronous wheels 212 and the connected drive roller 22 are driven to rotate, so as to realize the purpose of conveying the clamped fabric. The fixing rod 26 and the first spring 27 set on the auxiliary roller 29 give the auxiliary roller 29 a small range of elastic position, which allows the hardened glue of the subsequent overlapping component 5 to pass through.
[0037] The positioning component 4 includes two sets of cross discs 41 fixedly disposed at opposite ends of two sets of drive discs 36. Four sets of switch boxes 42 are fixedly disposed inside the two sets of cross discs 41. Bearings 43 are fixedly disposed at one end of the two sets of cross discs 41. Fixed rollers 44 are fixedly disposed inside the corresponding two sets of storage components 3 between the two sets of cross discs 41. Notches 45 are opened on the fixed rollers 44. Fixed sleeves 46 are fixedly disposed near the edges on the front and rear sides of the fixed rollers 44. A convex roller 47 is rotatably disposed inside the two sets of fixed sleeves 46. Connecting pieces 48 are fixedly disposed on the front and rear sides of the convex rollers 47. A connecting rod 49 is fixedly disposed at one end of the cross disc 41. A cylinder 410 is rotatably disposed between the connecting rod 49 and the connecting piece 48.
[0038] The switch box 42 is electrically connected to the first cylinder 410 and is activated. Four sets of fixed rollers 44 are evenly distributed on the outside of the cross disc 41. The extension rod of the first cylinder 410 is connected to the connector 48, and the other end is connected to the connecting rod 49.
[0039] Next, place one end of the fabric wound by the fabric roller 38 between the fixed roller 44 and the convex roller 47. Control the first cylinder 410 to start through the switch box 42. The first cylinder 410 pulls the connector 48 and the convex roller 47 to rotate along the fixed sleeve 46. The convex part of the rotating fixed sleeve 46 and the fixed roller 44 clamp and fix one end of the fabric on the fixed roller 44, positioning one end of the fabric in the designated position. The operation is convenient and quick. The notch 45 is set to facilitate the subsequent cutting of the overlapping component 5.
[0040] The overlapping assembly 5 includes two sets of first slides 51 fixedly mounted at opposite ends of two sets of fixed frames 31. Each set of first slides 51 has a mounting base 52 fixedly mounted on its movable seat. A second slide 53 is fixedly mounted on the upper end of each mounting base 52. A glue gun 54 is fixedly mounted on the movable seat of the second slide 53. A U-shaped frame 55 is fixedly mounted on the outer side of each of the two sets of discs 32 at their corresponding center positions. A spacer roller 56 is rotatably mounted on one side of the U-shaped frame 55. Two sets of second cylinders 57 are fixedly mounted on the upper end of the U-shaped frame 55. The two sets of second cylinders 57 extend... A fixed plate 58 is fixedly installed at the lower end of the telescopic rod, and a blade 59 is fixedly installed at the lower end of the fixed plate 58. A movable frame 510 is sleeved on the outside of the blade 59. A guide opening 511 is opened on the inner side of the movable frame 510 corresponding to the position of the blade 59. Two sets of pressure rollers 512 are fixedly installed on the lower side of the movable frame 510. Connecting shafts 513 are fixedly installed on both the front and rear sides of the fixed plate 58. A second spring 514 is sleeved between the fixed plate 58 and the movable frame 510 on the outside of the two sets of connecting shafts 513. An infrared sensor 515 is fixedly installed on the other side of the U-shaped frame 55.
[0041] The glue gun 54 corresponds to the position of the uppermost set of fixed rollers 44. The partition roller 56 is set on the lower side of the fabric conveying set of fabric rollers 38. The blade 59 passes through the guide port 511 and the inner side of the two sets of pressure rollers 512. The blade 59 corresponds to the position of the notch 45 opened on the upper set of fixed rollers 44. The height of the two sets of pressure rollers 512 is set on both sides of the notch 45. The set of two sets of pressure rollers 512 that is closer to the bracket 1 is the glue shaping heat pressing roller. The second spring 514 moves through the inside of the movable frame 510. The infrared sensor 515 is located directly above the set of fabric rollers 38 on the upper right.
[0042] Infrared sensor 515 monitors the thickness of the conveyed fabric roller 38 in real time. When the conveying is about to be completed, two sets of first slide tables 51 drive second slide tables 53 and glue guns 54 to move to the position of the uppermost set of fixed rollers 44. In conjunction with second slide table 53, glue guns 54 move laterally to spray glue onto the positioned fabric. Then, two sets of second cylinders 57 drive fixed plate 58, movable frame 510, and two sets of holding rollers 512 to move downward. The two sets of holding rollers 512 clamp the outside of the fixed rollers 44. At this time, the conveyed fabric and the fabric on the lower set of fabric rollers 38 are pressed and positioned together. Meanwhile, the left set of holding rollers 512 presses the two sections of fabric and glue together. The fabric is quickly fixed together. After fixing, the second cylinder 57 continues to push downward, causing the fixing plate 58 and the blade 59 to move down and squeeze the second spring 514. The blade 59 inserts into the notch 45, automatically cutting the two sections of fabric. This allows the next set of fabric rollers 38 to automatically connect with the conveyed fabric, and the fabric on the front set of fabric rollers 38 to be cut off and detached. Then, the drive disk 36 is rotated ninety degrees, and the infrared sensor 515 detects the newly overlapped fabric rollers 38. Through their coordinated work, the fabric rollers 38 can be switched without stopping the machine, and the fabric can be automatically overlapped. This improves the continuity of the equipment, greatly increases production capacity, reduces manual operation, and stabilizes product quality.
[0043] Working principle: In use, the fabric on the upper right fabric roller 38 is placed on the spacer roller 56 and support roller 210, with one end passing between the drive roller 22 and auxiliary roller 29. By rotating the two sets of threaded handles 24, the connecting plate 25 and sleeve block 28 are moved downwards, causing the auxiliary roller 29 to move towards the drive roller 22 to clamp the fabric. Then, the first motor 211 drives the connected synchronous wheel 212 to rotate, which in turn drives the other set of synchronous wheels 212 and the connected drive roller 22 to rotate, thus achieving the purpose of conveying the clamped fabric. The fixing rod 26 and the first spring 27 set on the auxiliary roller 29 give the auxiliary roller 29 a small range of elastic position to allow the hardened glue of the subsequent overlapping component 5 to pass through. The second motor 34 drives the transmission rod 35 and the two sets of drive discs 36 to rotate clockwise, and the four sets of placement slots 37 drive the four sets of fabric rollers 38 to complete the set 90-degree rotation each time. This allows all four sets of fabric rollers 38 to rotate to the upper right conveying position for operation. The original upper right fabric roller 38 rotates to the lower right corresponding door panel 39 position. The door panel 39 is opened by loosening the fixing bolt 310. The connecting rope 311 restricts the opened door panel 39 to be in an inclined state, so that the used fabric roller 38 can be disassembled and replaced with a new set of fabric rollers 38. In addition, one end of the fabric rolled up by the placed fabric roller 38 is placed between the fixed roller 44 and the convex angle roller 47. The first cylinder 410 is started by controlling the switch box 42. The first cylinder 410 pulls the connecting piece 48 and the convex angle roller 47 to rotate along the fixed sleeve 46. The protrusion of the rotating fixed sleeve 46 and the fixed roller 44 clamp and fix one end of the fabric on the fixed roller 44, positioning one end of the fabric in the designated position. The operation is convenient and quick. The notch 45 is set to facilitate the subsequent cutting work of the overlapping component 5.Next, the thickness of the conveyed fabric roller 38 is monitored in real time by infrared sensor 515. When the conveying is about to be completed, the two sets of No. 1 slide tables 51 drive the No. 2 slide table 53 and glue gun 54 to move to the position of the uppermost set of fixed rollers 44. The No. 2 slide table 53 drives the glue gun 54 to move laterally to spray glue laterally onto the positioned fabric. Then, the two sets of No. 2 cylinders 57 drive the fixed plate 58, the movable frame 510, and the two sets of pressure rollers 512 to move downward. The two sets of pressure rollers 512 clamp the outside of the fixed rollers 44. At this time, the conveyed fabric and the fabric of the lower set of fabric rollers 38 are pressed and positioned together. The left set of pressure rollers 512 presses the two sections of fabric and glue together. The fabric is quickly secured together. After securing, cylinder 57 continues to push downwards, causing fixing plate 58 and blade 59 to move down and compress spring 514. Blade 59 inserts into notch 45, automatically cutting the two sections of fabric. This allows the next set of fabric rollers 38 to automatically connect with the conveyed fabric, and the fabric on the previous set of fabric rollers 38 to be cut and detached. Then, drive disc 36 rotates 90 degrees, and infrared sensor 515 detects the newly overlapped fabric rollers 38. Through their coordinated operation, the fabric rollers 38 can be switched without stopping the machine, and the fabric can be automatically overlapped, improving equipment continuity, significantly increasing production capacity, reducing manual operation, and stabilizing product quality.
[0044] The electrical connection and control of the No. 1 motor 211, No. 2 motor 34, switch box 42, No. 1 cylinder 410, No. 1 slide table 51, No. 2 slide table 53, glue gun 54, No. 2 cylinder 57, pressure roller 512, and infrared sensor 515 in this invention are common knowledge in the field. Their working principles are well-known technologies, and the appropriate model is selected according to actual use, so they will not be explained in detail.
[0045] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A conveyor device for an automated textile slitter, comprising a support (1), characterized in that: The upper side of the support (1) is provided with a clamping assembly (2), one side of the support (1) is provided with a storage assembly (3), the inner side of the storage assembly (3) is provided with a positioning assembly (4), the outer side of the storage assembly (3) is provided with an overlapping assembly (5), the storage assembly (3) comprises a fixed frame (31) fixedly arranged on one side of the support (1), two groups of disc (32) are fixedly arranged on the fixed frame (31), a motor seat (33) is fixedly arranged on the front side of the two groups of disc (32), a No. 2 motor (34) is fixedly arranged on the upper end of the motor seat (33), a transmission rod (35) is fixedly arranged on the rear side of the rotating shaft of the No. 2 motor (34), two groups of driving discs (36) are fixedly arranged on the outer side of the transmission rod (35), four groups of placing grooves (37) are fixedly arranged on the outer side of the two groups of driving discs (36), four groups of cloth rollers (38) are movably arranged between the four groups of placing grooves (37) arranged on the two groups of driving discs (36), door plates (39) are rotatably arranged on the outer side of the two groups of disc (32), fixed pins (310) are threadedly connected between the inner side of the two groups of door plates (39) and the disc (32), and connecting ropes (311) are fixedly connected between the outer side of the two groups of door plates (39) and the two groups of disc (32). The clamping assembly (2) comprises an installation plate (21) rotatably arranged on the inner side of the support (1), the upper end of the support (1) is fixedly provided with two groups of driving rollers (22), the inner side of the two groups of driving rollers (22) is provided with an adjusting opening (23), the inner side of the two groups of installation plates (21) is threadedly connected with a threaded handle (24), the lower side of the two groups of threaded handles (24) is rotatably provided with a connecting plate (25), the inner side of the two groups of connecting plates (25) is movably provided with two groups of fixed rods (26), the outer side of the two groups of fixed rods (26) is sleeved with a No. 1 spring (27), the lower end of the two groups of fixed rods (26) is fixedly provided with a sleeve block (28), the inner side of the two groups of sleeve blocks (28) is movably provided with an auxiliary roller (29), the lower side of the support (1) is fixedly provided with a supporting roller (210), a No. 1 motor (211) is installed at the corner of one side of the two groups of installation plates (21), the outer side of the rotating shaft of the supporting roller (210) and the driving roller (22) is fixedly provided with a synchronous wheel (212), the outer side of the two groups of synchronous wheels (212) is sleeved with a synchronous belt (213). The positioning assembly (4) comprises two sets of cross plates (41) fixed at opposite ends of the two sets of driving plates (36), four sets of switch boxes (42) are fixed around the inner sides of the two sets of cross plates (41), bearings (43) are fixed at one end of the periphery of the two sets of cross plates (41), fixed rollers (44) are fixed between the two sets of cross plates (41) and correspond to the inner sides of the two sets of storage assemblies (3), notches (45) are formed in the fixed rollers (44), fixed sleeves (46) are fixed at the edge positions on the front and back sides of the fixed rollers (44), convex corner rollers (47) are rotatably arranged in the inner sides of the two sets of fixed sleeves (46), connecting pieces (48) are fixed on the front and back sides of the convex corner rollers (47), connecting rods (49) are fixed at one end of the cross plates (41), and a first air cylinder (410) is rotatably arranged between the connecting rods (49) and the connecting pieces (48). The overlapping assembly (5) comprises two sets of first sliding tables (51) fixed at opposite ends of the two sets of fixed frames (31), mounting seats (52) are fixed on the moving seats of the two sets of first sliding tables (51), second sliding tables (53) are fixed on the upper ends of the two sets of mounting seats (52), glue guns (54) are fixed on the moving seats of the second sliding tables (53), U-shaped frames (55) are fixed at the corresponding center positions on the outer sides of the two sets of circular plates (32), spacer rollers (56) are rotatably arranged on one side of the U-shaped frames (55), two sets of second air cylinders (57) are fixed on the upper ends of the U-shaped frames (55), fixed plates (58) are fixed on the lower ends of the telescopic rods of the two sets of second air cylinders (57), blades (59) are fixed on the lower ends of the fixed plates (58), movable frames (510) are sleeved on the outer sides of the blades (59), guide openings (511) are formed in the inner sides of the movable frames (510) and correspond to the positions of the blades (59), two sets of pressing rollers (512) are fixed on the lower sides of the movable frames (510), connecting shafts (513) are fixed on the front and back sides of the fixed plates (58), second springs (514) are sleeved between the outer sides of the connecting shafts (513), the fixed plates (58) and the movable frames (510), and infrared sensors (515) are fixed on the other sides of the U-shaped frames (55). The switch boxes (42) are electrically connected with the first air cylinder (410) and are controlled to start, the four sets of fixed rollers (44) are uniformly distributed on the outer sides of the cross plates (41), the telescopic rod of the first air cylinder (410) is connected with the connecting pieces (48), and the other end of the connecting pieces (48) is connected with the connecting rods (49). Said glue gun (54) corresponds to the uppermost one group of fixed roller (44) position, the said isolation roller (56) is arranged in the lower side of the group of cloth roller (38) of the transmission of the textile fabric, the said blade (59) passes through the guide port (511) and the inside of two groups of pressure roller (512), the said blade (59) corresponds to the gap (45) position of the uppermost one group of fixed roller (44), two groups of said pressure roller (512) height is arranged in the two sides of the gap (45), the group of pressure roller (512) in the two groups of pressure roller (512) is close to the support (1) and is the glue shaping hot press roller, the said No. two spring (514) is movable through the inside of the movable frame (510), the said infrared sensor (515) corresponds to the right upper group of cloth roller (38) above detection.
2. A conveyor for an automated textile slitting machine according to claim 1, wherein: Said transmission rod (35) passes through the inside of two groups of disc (32), four groups of said placement slot (37) are evenly distributed on the outside of the driving disc (36), the said door plate (39) corresponds to the lower side of one group of placement slot (37) position, the said fixed peg (310) fixes the door plate (39) and the disc (32) together.
3. The transfer device of claim 1, wherein: Said threaded handle (24) is inserted into the inside of the adjusting port (23), the said connecting plate (25), sleeve block (28) is slidably arranged in the adjusting port (23), the said No. one spring (27) is arranged between the connecting plate (25) and the sleeve block (28) on the outside of the fixed rod (26), the said auxiliary roller (29) and the driving roller (22) clamp a group of cloth roller (38) textile fabric, the said supporting roller (210) supports the lower side of the transmission of the textile fabric.
Citation Information
Patent Citations
Non-woven fabric discharging equipment
CN117429914A
Uninterrupted feeding system for polyester fabric printing and dyeing
CN118306832A