Intelligent conveying equipment based on Teflon high-temperature cloth

Through the design of intelligent conveying equipment, air pumps and filtration systems are used to collect fine impurities in the production process of Teflon high-temperature cloth, solving the belt wear and air pollution caused by the diffusion of small parts of the edge, and achieving stable transportation and environmental protection.

CN120024740BActive Publication Date: 2025-07-25JIANGSU ZHONGDE COMPOSITE MATERIAL TECH CO LTD
View PDF 2 Cites 0 Cited by

Patent Information

Application Number
CN202510486739.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-04-18
Publication Date
2025-07-25
Estimated Expiration
2045-04-18

AI Technical Summary

Technical Problem

During the production process of Teflon high-temperature cloth, small parts of the edges are prone to spread, resulting in wear and scratches on the belt, affecting the stability and accuracy of transportation, and at the same time, air suspended particles are generated, which harms the environment and health.

Method used

An intelligent conveying device is designed to collect the cut fine impurities through an air pump and a filtration system, and use a rotating plate and a jet device to blow the impurities to the inner wall of the U-shaped flow guide, and collect it through the filter plate and collection box to maintain the permeability and stability of the belt.

Benefits of technology

It effectively reduces the flying of fine impurities, avoids belt damage, ensures delivery stability and accuracy, reduces equipment maintenance costs, and improves production environment quality.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120024740B_ABST
    Figure CN120024740B_ABST
Patent Text Reader

Abstract

The present invention relates to an intelligent conveying device based on a Teflon high-temperature cloth, belonging to the technical field of high-temperature cloth production and conveying. It includes a feeding seat, inside which a guiding roller A is rotatably connected. One side of the feeding seat is provided with an adjusting seat, and on the side of the adjusting seat away from the feeding seat, there is a moving seat. In the present invention, an air pump causes the small cut parts to move to one side of it, where they are intercepted by a filter plate. Belt D drives the rotating plate to rotate to generate strong wind, causing impurities to move towards the filter frame. The extension plate of the rotating plate knocks on the bottom of the cloth to lower the positions on both sides of the cloth. Cooperating with the inclined downward air jet, the impurities on the cloth surface are blown towards the inner wall of the U-shaped diversion seat. In addition, belt C intermittently knocks on the elastic inclined plate to assist in impurity collection. By pre-treating the small impurities generated during the cutting and conveying process, it is possible to effectively reduce the small impurities in the entire production process of the Teflon high-temperature cloth, reduce the flying of impurities, and thus avoid damage to the belt, ensuring stable and accurate conveying.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to the technical field of high-temperature cloth production and transportation, and particularly to an intelligent transportation device based on the production of Teflon high-temperature cloth. Background Art

[0002] Teflon high-temperature cloth is a composite material made by coating a glass fiber cloth with polytetrafluoroethylene resin. The glass fiber cloth provides good mechanical strength and dimensional stability, while the polytetrafluoroethylene resin endows the material with excellent high-temperature resistance, corrosion resistance, low friction and other characteristics, and it is involved in industrial fields, electronic and electrical fields, aerospace fields, construction fields, clothing fields, etc.;

[0003] In the production process of Teflon high-temperature cloth, conveying equipment is used in the processes of base cloth preparation, coating process, drying and curing, and post-treatment. However, during the production and transportation of Teflon high-temperature cloth, small edge parts of the fabric are likely to spread in the production environment. If these small impurities are not processed and enter between the conveyor belt and the roller, it may cause wear and scratches on the belt surface, reduce the flatness and friction of the belt, which will cause the belt to slip during transportation, affect the stability and accuracy of transportation, and may also cause the belt to be scrapped prematurely, increasing the equipment maintenance cost. Moreover, the small edge parts spreading in the air will become suspended particulate matter in the air, reducing the air quality of the production environment and posing a certain threat to the health of the staff. Therefore, it is necessary to design an intelligent transportation device based on the production of Teflon high-temperature cloth to improve the above problems. Summary of the Invention

[0004] The purpose of the present invention is to provide an intelligent transportation device based on the production of Teflon high-temperature cloth to solve the problem that small edge parts are likely to spread in the production environment during the production of existing Teflon high-temperature cloth, resulting in a large number of subsequent adverse effects as mentioned in the above background art.

[0005] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: an intelligent conveying device based on the production of Teflon high-temperature cloth, comprising a loading seat, the inner side of the loading seat is rotatably connected with a guide roller A, one side of the loading seat is provided with an adjusting seat, a moving seat is provided on the side of the adjusting seat away from the loading seat, lower pressure rollers A are fixed on both sides of the moving seat, an electric telescopic rod A is provided on the side of the adjusting seat close to the moving seat and a side of the winding seat close to the moving seat, the telescopic end of the electric telescopic rod A is fixedly connected to the lower surface of the lower pressure roller A, a winding seat is provided on the side of the moving seat away from the adjusting seat, a cleaning seat is fixed on the inner side of the adjusting seat, and a cleaning seat is provided on the inner side of the cleaning seat. An air pump is provided on the side of the cleaning seat close to the loading seat, and the two ends of the cleaning seat are slidingly connected with a filter frame and a collecting box respectively, and a U-shaped guide seat is fixed on the side of the cleaning seat away from the air pump, and a cutting seat is provided inside the U-shaped guide seat, and a rotating plate is rotatably connected to the inside of the U-shaped guide seat, and one end of the cutting seat is connected to one end of the rotating plate through a belt D. A groove is provided on the upper surface of the U-shaped guide seat, and the cutting seat and the groove are located on the same vertical plane, and the lower pressure roller A is located directly above the cutting seat and the groove, and a snap-fit groove is provided on the lower surface of the movable seat, and the size of the snap-fit groove matches the cross-sectional size of the U-shaped guide seat.

[0006] Preferably, the inner side of the U-shaped guide seat is arranged in an inclined shape, the side of the U-shaped guide seat close to the cleaning seat is lower than the side of the U-shaped guide seat close to the winding seat, the cross-section of the rotating plate is arranged in a cross shape, and an extension plate is arranged in the middle part of the bottom end of the rotating plate.

[0007] Preferably, an installation cavity A is opened on the upper surface of the U-shaped guide seat, and a knocking plate A is rotatably connected inside the installation cavity A. One end of the rotating plate is connected to one end of the knocking plate A through a belt C transmission, and an elastic inclined plate is arranged on the upper surface of the installation cavity A.

[0008] Preferably, the air outlet of the air pump is connected to a connecting pipe, an air guide plate is provided on the upper surface of the locking groove, nozzles are provided at both ends of the air guide plate, an air guide pipe is provided on the side of the air guide plate close to the belt C, a rubber valve is provided on the lower surface of the air guide pipe, the rubber valve is located directly above the end of the connecting pipe away from the air pump, a U-shaped groove is provided on the side of the movable seat close to the connecting pipe, the width of the U-shaped groove is equal to the outer diameter of the connecting pipe, and the nozzle is inclined downward toward the side close to the cutting seat.

[0009] Preferably, the side surface of the filter frame is set in a right-angled trapezoid, the cross-section of the collecting box is set in a right-angled triangle, the upper surface of the collecting box is in contact with the lower surface of the filter frame, the lower surface of the filter frame is provided with a discharge port, the discharge port is connected to the interior of the collecting box, the cleaning seat is internally rotatably connected with a knocking plate B, one end of the knocking plate B is connected to one end of the cutting seat through a belt E, a filter plate is provided inside the filter frame, and the knocking plate B is located on the side close to the filter plate.

[0010] Preferably, guide rollers B and C are respectively rotatably connected to both ends of the inner wall of the adjustment seat. An adjustable roller A is arranged on the inner wall of the adjustment seat. A connecting sleeve is fixed inside the adjustment seat. The adjustable roller A is located between the guide rollers B and C and directly above the connecting sleeve. Moving sleeves are fixed to both ends of the lower pressing roller A. A receiving groove A is arranged inside the adjustment seat. A threaded rod A is rotatably connected inside the receiving groove A. The threaded rod A is threadedly connected to the inside of one of the moving sleeves. Threaded rods B are rotatably connected to both sides inside the receiving groove A. Threaded sleeves are fixed to both ends of the adjustable roller A, and the threaded sleeves are all threadedly connected to the threaded rods B. The two groups of threaded rods B are driven and connected by a belt B. The threaded rod A and the threaded rod B are driven and connected by a belt A. The belt B is located inside the connecting sleeve. The moving sleeves and the threaded sleeves are all slidably connected to the installation grooves.

[0011] Preferably, an adjustable roller B is arranged inside the winding seat. A guide roller D is rotatably connected to the inner wall of the winding seat. The guide roller D is located between the adjustable roller B and the moving seat. A receiving groove B is arranged inside the winding seat. A connecting plate is slidably connected inside the receiving groove B. Both ends of the connecting plate are respectively slidably connected to the adjustable roller B and the lower pressing roller A. Slide rods are fixed inside both the receiving groove A and the receiving groove B, and the slide rods are slidably connected to the remaining moving sleeves.

[0012] Preferably, connection seats are arranged at both ends of the upper surface of the lower pressing roller A, and the connection seats are located on the side close to the winding seat. Installation cavities B are opened on one side of the connection seats. Springs are fixed inside the installation cavities B. Installation blocks are fixed to the tops of the springs. A lower pressing roller B is arranged on the side of the installation block away from the moving seat. The cross-sectional size of the installation block is adapted to the cross-sectional size of the installation cavity B. The lower pressing roller B is directly above the guide roller D.

[0013] Preferably, the cutting seat includes an installation box arranged at one end of the inner wall of the U-shaped diversion seat. A driving motor is arranged inside the installation box. A rotating rod is fixed to the output shaft of the driving motor. Two groups of chutes are arranged on the upper surface of the rotating rod. Electric telescopic rods B are fixed inside the chutes. Moving blocks are fixed to the telescopic ends of the electric telescopic rods B. Disc cutters are slidably connected to both sides of the outer surface of the rotating rod. The upper surface of the moving block is fixedly connected to the inside of the disc cutter. A rotating shaft is fixed to the end of the rotating rod away from the installation box, and the rotating shaft is rotatably connected to the inner wall of the U-shaped diversion seat.

[0014] Preferably, a control panel is arranged at one end of the adjustment seat. A distance sensor is arranged on the lower surface of the air duct. Clamping components are arranged on the outer wall of the feeding seat and the inner wall of the winding seat. A high-definition camera is arranged on the upper surface of the feeding seat. A wireless sensor is arranged inside the control panel, and a single-chip microcomputer is arranged inside the control panel.

[0015] Compared with the prior art, the beneficial effects of the present invention are:

[0016] The small cut parts are moved to one side by an air pump and intercepted by a filter plate. The belt D drives the rotating plate to rotate to generate strong wind, causing impurities to move towards the filter frame. The extension plate of the rotating plate knocks the bottom of the cloth to lower the positions on both sides of the cloth. When the moving seat descends, the connecting pipe is inserted into the rubber valve, and the gas enters the air guide plate through the air guide pipe and finally jets obliquely downward through the nozzle, blowing the impurities on the cloth surface towards the inner wall of the U-shaped diversion seat. In addition, the belt C intermittently knocks the elastic inclined plate to assist in impurity collection, and the belt E knocks the filter plate to maintain its permeability. Finally, the impurities fall into the collection box. By pre-treating the small impurities generated during the cutting and conveying process, the small impurities in the entire Teflon high-temperature cloth during the production process can be effectively reduced, the flying of impurities can be reduced, and further damage to the belt can be avoided, ensuring stable and accurate conveying, reducing the equipment maintenance cost, reducing the impact on the production environment, and improving the equipment usability. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] In order to more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the following drawings are some embodiments of the present invention. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts.

[0018] Figure 1 It is a front view three-dimensional structure diagram of the intelligent conveying device of the present invention;

[0019] Figure 2 It is a three-dimensional structure diagram of the distribution of the moving seats of the present invention;

[0020] Figure 3 It is a bottom view three-dimensional structure diagram of the moving seats of the present invention;

[0021] Figure 4 It is a front cross-sectional three-dimensional structure diagram of the cleaning seat of the present invention;

[0022] Figure 5 It is a three-dimensional structure diagram of the distribution of the rotating plates of the present invention;

[0023] Figure 6 It is a three-dimensional structure diagram of the distribution of the cutting seats of the present invention;

[0024] Figure 7 It is a front cross-sectional three-dimensional structure diagram of the connecting seats of the present invention;

[0025] Figure 8 It is a side view three-dimensional structure diagram of the intelligent conveying device of the present invention.

[0026] Explanation of reference numerals in the figures: 1. Loading seat; 11. Guide roller A; 12. High-definition camera; 2. Adjusting seat; 21. Guide roller B; 22. Guide roller C; 23. Adjustable roller A; 231. Threaded sleeve; 24. Connecting sleeve; 25. Threaded rod A; 26. Threaded rod B; 27. Belt A; 28. Belt B; 3. Moving seat; 31. Lower pressing roller A; 32. Electric telescopic rod A; 33. Slide bar; 34. Air guide plate; 341. Nozzle; 342. Air guide pipe; 343. Rubber valve; 344. Distance sensor; 35. U-shaped groove; 36. Moving sleeve; 4. Rewinding seat; 41. Adjustable roller B; 411. Connecting plate; 42. Guide roller D; 5. Cleaning seat; 51. Air pump; 52. Filter box; 521. Filter plate; 53. Collection box; 54. U-shaped diversion seat; 541. Rotating plate; 5411. Belt C; 5412. Belt D; 542. Groove; 543. Installation cavity A; 5431. Knocking plate A; 5432. Elastic inclined plate; 55. Connecting pipe; 56. Knocking plate B; 561. Belt E; 6. Cutting seat; 61. Installation box; 62. Rotating rod; 621. Chute; 622. Electric telescopic rod B; 623. Moving block; 63. Disc cutter; 64. Rotating shaft; 7. Connecting seat; 71. Installation cavity B; 72. Spring; 73. Installation block; 74. Lower pressing roller B; 8. Control panel. Detailed implementation manners

[0027] The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0028] In the first embodiment, in order to solve the problem that in the prior art, during the production of existing Teflon high-temperature cloth, small parts at the edges are likely to spread in the production environment, resulting in a large number of subsequent adverse effects, the following solutions are disclosed. Specifically, as Figure 1 、 Figure 3 、 Figure 4 、 Figure 5 、 Figure 6 and Figure 8 shown:

[0029] The intelligent conveying equipment based on Teflon high-temperature cloth production includes a loading seat 1, the inner side of the loading seat 1 is rotatably connected with a guide roller A11, an adjusting seat 2 is arranged on one side of the loading seat 1, a moving seat 3 is arranged on the side of the adjusting seat 2 away from the loading seat 1, lower pressure rollers A31 are fixed on both sides of the moving seat 3, an electric telescopic rod A32 is arranged on the side of the adjusting seat 2 close to the moving seat 3 and a side of the winding seat 4 close to the moving seat 3, the telescopic end of the electric telescopic rod A32 is fixedly connected to the lower surface of the lower pressure roller A31, a winding seat 4 is arranged on the side of the moving seat 3 away from the adjusting seat 2, a cleaning seat 5 is fixed on the inner side of the adjusting seat 2, and an air pump 51 is arranged on the side of the cleaning seat 5 close to the loading seat 1, The two ends of the cleaning seat 5 are respectively slidably connected with a filter frame 52 and a collecting box 53. A U-shaped guide seat 54 is fixed on the side of the cleaning seat 5 away from the air pump 51. A cutting seat 6 is arranged inside the U-shaped guide seat 54. A rotating plate 541 is rotatably connected inside the U-shaped guide seat 54. One end of the cutting seat 6 is connected to one end of the rotating plate 541 through a belt D5412. A groove 542 is provided on the upper surface of the U-shaped guide seat 54. The cutting seat 6 and the groove 542 are located on the same vertical plane. The lower pressure roller A31 is located directly above the cutting seat 6 and the groove 542. A snap-fit groove is provided on the lower surface of the movable seat 3. The size of the snap-fit groove matches the cross-sectional size of the U-shaped guide seat 54.

[0030] The inner side of the U-shaped guide seat 54 is arranged in an inclined shape, the side of the U-shaped guide seat 54 close to the cleaning seat 5 is lower than the side of the U-shaped guide seat 54 close to the winding seat 4, the cross-section of the rotating plate 541 is arranged in a cross shape, the middle part of the bottom end of the rotating plate 541 is provided with an extension plate, the upper surface of the U-shaped guide seat 54 is provided with a mounting cavity A543, the inner part of the mounting cavity A543 is rotatably connected with a knocking plate A5431, one end of the rotating plate 541 is connected with one end of the knocking plate A5431 through a belt C5411, the upper surface of the mounting cavity A543 is provided with an elastic inclined plate 5432, the air pump 5 The air outlet of 1 is connected to a connecting pipe 55, an air guide plate 34 is provided on the upper surface of the engaging groove, nozzles 341 are provided at both ends of the air guide plate 34, an air guide pipe 342 is provided on the side of the air guide plate 34 close to the belt C5411, a rubber valve 343 is provided on the lower surface of the air guide pipe 342, and the rubber valve 343 is located just above the end of the connecting pipe 55 away from the air pump 51, a U-shaped groove 35 is provided on the side of the movable seat 3 close to the connecting pipe 55, the width of the U-shaped groove 35 is equal to the outer diameter of the connecting pipe 55, the nozzle 341 is inclined downward toward the side close to the cutting seat 6, and the filter frame 5 2 is set in a right-angled trapezoid, the cross-section of the collecting box 53 is set in a right-angled triangle, the upper surface of the collecting box 53 is in contact with the lower surface of the filter frame 52, the lower surface of the filter frame 52 is provided with a feed opening, and the feed opening is connected to the inside of the collecting box 53, the cleaning seat 5 is internally rotatably connected with a knocking plate B56, one end of the knocking plate B56 is connected to one end of the cutting seat 6 through a belt E561 transmission connection, the filter frame 52 is provided with a filter plate 521, the knocking plate B56 is located on a side close to the filter plate 521, and the cutting seat 6 includes a U-shaped guide seat 54 disposed on one end of the inner wall thereof. The mounting box 61 is provided with a driving motor inside, a rotating rod 62 is fixed to the output shaft of the driving motor, two sets of slide grooves 621 are provided on the upper surface of the rotating rod 62, electric telescopic rods B622 are fixed inside the slide grooves 621, and moving blocks 623 are fixed to the telescopic ends of the electric telescopic rods B622. Disc cutters 63 are slidably connected to both sides of the outer surface of the rotating rod 62, and the upper surface of the moving block 623 is fixedly connected to the inside of the disc cutter 63. A rotating shaft 64 is fixed to the end of the rotating rod 62 away from the mounting box 61, and the rotating shaft 64 is rotatably connected to the inner wall of the U-shaped guide seat 54.

[0031] In this embodiment, when it is necessary to produce and convey the Teflon high-temperature cloth, the device control panel 8 is started, and the electric telescopic rod A32 contracts, driving the entire moving seat 3 to descend. At this time, the distance sensor 344 will transmit the distance data between the moving seat 3 and the U-shaped diversion seat 54 to the single-chip microcomputer inside the control panel 8 through a wireless sensor. The single-chip microcomputer analyzes these data in real time. When the lower surface of the moving seat 3 fits with the ground and the outer surface of the U-shaped diversion seat 54 fits with the inner wall of the clamping groove, the drive motor and the air pump 51 are started to drive the entire rotating rod 62 to rotate. During the rotation of the moving block 623, continuous cutting of the small parts at both edges of the Teflon high-temperature cloth is realized. Under the action of the air pump 51, the small cut parts at the edges move towards the air pump 51 side. These cut small parts will be intercepted by the filter plate 521. At the same time, the driving action of the belt D5412 drives the rotating plate 541 to rotate, generating stronger wind force, prompting the small edge impurities to further move towards the filter box 52. The extension plate on the rotating plate 541 will slightly knock on the bottom of the Teflon high-temperature cloth, making both sides of the Teflon high-temperature cloth at a lower position. When the moving seat 3 descends vertically, the connecting pipe 55 is inserted into the vertical rubber valve 343, and the gas enters the air guide plate 34 through the air guide pipe 342 and then jets obliquely downward through the nozzle 341, blowing the part of the impurities adhering to the upper surface of the Teflon high-temperature cloth towards the inner wall of the U-shaped diversion seat 54 for further collection in cooperation with the air pump 51. In addition, the driving action of the belt C5411 will intermittently knock on the higher side of the elastic inclined plate 5432 to assist in impurity collection; the driving action of the belt E561 knocks on the filter plate 521 to maintain the permeability of the filter plate 521. Finally, the impurities accumulate and fall into the collection box 53 for collection. Through the above series of operations, the small impurities generated during the cutting and conveying process are pre-treated, which can effectively reduce the small impurities in the whole process of Teflon high-temperature cloth production, greatly reduce the flying of small impurities, avoid damage to the belt by the small parts at the edges, ensure the stability and accuracy of the conveying process, reduce the overall equipment maintenance cost, reduce the impact on the production environment, and improve the practicality of the overall equipment.

[0032] Embodiment 2, in order to further realize semi-automatic intelligent management, the following solution is thus disclosed. Specifically, as Figure 1 、 Figure 2 、 Figure 7 and Figure 8 shown:

[0033] The two ends of the inner wall of the adjusting seat 2 are rotatably connected with the guide roller B21 and the guide roller C22 respectively, the inner wall of the adjusting seat 2 is provided with an adjustable roller A23, the inner side of the adjusting seat 2 is fixed with a connecting sleeve 24, the adjustable roller A23 is located between the guide roller B21 and the guide roller C22, the adjustable roller A23 is located directly above the connecting sleeve 24, both ends of the lower pressure roller A31 are fixed with movable sleeves 36, the interior of the adjusting seat 2 is provided with a receiving groove A, the interior of the receiving groove A is rotatably connected with a threaded rod A25, the threaded rod A25 is connected to the interior of one of the movable sleeves 36 by threads, the two sides of the interior of the receiving groove A are rotatably connected with threaded rods B26, both ends of the adjustable roller A23 are fixed with threaded sleeves 231, the threaded sleeves 231 are threadedly connected to the threaded rod B26, and the two groups of threaded rods B26 are connected by leather The belt B28 is connected for transmission, the threaded rod A25 is connected to the threaded rod B26 through the belt A27, the belt B28 is located inside the connecting sleeve 24, the movable sleeve 36 and the threaded sleeve 231 are both slidably connected to the mounting groove, an adjustable roller B41 is provided on the inner side of the winding seat 4, the inner wall of the winding seat 4 is rotatably connected to the guide roller D42, the guide roller D42 is located between the adjustable roller B41 and the movable seat 3, a receiving groove B is provided inside the winding seat 4, the interior of the receiving groove B is slidably connected to a connecting plate 411, the two ends of the connecting plate 411 are respectively slidably connected to the adjustable roller B41 and the lower pressure roller A31, the interior of the receiving groove A and the interior of the receiving groove B are fixed with a sliding rod 33, the sliding rod 33 is slidably connected to the remaining movable sleeves 36, the remaining movable sleeves 36 refer to the parts except the part connected to the threaded rod A25 For the other movable sleeves 36 except the connected movable sleeve 36, both ends of the upper surface of the lower pressure roller A31 are provided with connecting seats 7, the connecting seats 7 are located on the side close to the winding seat 4, one side of the connecting seat 7 is provided with an installation cavity B71, a spring 72 is fixed inside the installation cavity B71, a mounting block 73 is fixed at the top of the spring 72, a lower pressure roller B74 is provided on the side of the mounting block 73 away from the movable seat 3, the cross-sectional size of the mounting block 73 is adapted to the cross-sectional size of the mounting cavity B71, the lower pressure roller B74 is located directly above the guide roller D42, a control panel 8 is provided at one end of the adjustment seat 2, a distance sensor 344 is provided on the lower surface of the air guide tube 342, a clamping assembly is provided on the outer wall of the loading seat 1 and the inner wall of the winding seat 4, a high-definition camera 12 is provided on the upper surface of the loading seat 1, a wireless sensor is provided inside the control panel 8, and a single-chip microcomputer is provided inside the control panel 8.

[0034] In this embodiment, when using the intelligent conveying device, the Teflon high-temperature cloth to be trimmed is precisely and limit-connected to the feeding seat 1 of the device main body through the clamping assembly. At this time, the moving seat 3 is in the topmost position. One side of the Teflon high-temperature cloth is horizontally passed through above the guide roller A11, below the guide roller B21, above the guide roller C22, and above the guide roller D42 in sequence, and then fixed on the winding roller on one side of the winding seat 4. The clamping mechanism on one side of the winding seat 4 is used to stably limit the winding roller. When the device operates, an instruction is issued by the intelligent control system, and the electric telescopic rod A32 starts to contract, driving the overall smooth descent of the moving seat 3. Since the moving sleeve 36 is threadedly connected to the threaded rod A25, during the vertical descent of the moving sleeve 36 along with the moving seat 3, it will drive the threaded rod A25 to rotate. Through the coordinated action of the belt A27 and the belt B28, the two groups of threaded rods B26 are driven to rotate simultaneously and synchronously. Furthermore, the threaded sleeve 231 drives the adjustable roller A23 to rise. At the same time, the adjustable roller B41 descends synchronously with the moving seat 3, while the height of the guide roller D42 remains constant. With the elastic action of the spring 72, it can intelligently and precisely limit the Teflon high-temperature cloth above the guide roller D42, quickly realizing the S-shaped guiding and winding of the Teflon high-temperature cloth. When the lower surface of the moving seat 3 is in contact with the ground and the outer surface of the U-shaped diversion seat 54 is in contact with the inner wall of the engaging groove, the device automatically enters the continuous trimming operation mode. During this entire operation process, the high-definition camera 12 continuously conducts full-range video monitoring on the operating state of the device and transmits the video data to the single-chip microcomputer for intelligent analysis in real time. Once the single-chip microcomputer detects that the fabric has shifted through the image recognition algorithm, it will immediately automatically issue an instruction to stop the operation and send an alarm message to the staff's terminal device, facilitating the staff to make timely adjustments. Finally, under the control of the intelligent drive system, the external winding machine drives the winding roller to rotate precisely for winding according to the preset speed and tension. The whole process adopts semi-automatic intelligent settings, greatly reducing the labor intensity and improving the production efficiency and product quality.

[0035] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. An intelligent conveying device produced based on a Teflon high-temperature cloth, characterized in that: It includes a feeding seat, inside which a guiding roller A is rotatably connected. On one side of the feeding seat, an adjusting seat is provided. On the side of the adjusting seat away from the feeding seat, a moving seat is provided. On both sides of the moving seat, a pressing roller A is fixed. On the side of the adjusting seat close to the moving seat and on the side of the winding seat close to the moving seat, an electric telescopic rod A is provided. The telescopic end of the electric telescopic rod A is fixedly connected to the lower surface of the pressing roller A. On the side of the moving seat away from the adjusting seat, a winding seat is provided. Inside the adjusting seat, a cleaning seat is fixed. On the side of the cleaning seat close to the feeding seat, an air pump is provided. At both ends inside the cleaning seat, a filter frame and a collection box are respectively slidably connected. On the side of the cleaning seat away from the air pump, a U-shaped diversion seat is fixed. Inside the U-shaped diversion seat, a cutting seat is provided. Inside the U-shaped diversion seat, a rotating plate is rotatably connected. One end of the cutting seat and one end of the rotating plate are connected by a belt D. On the upper surface of the U-shaped diversion seat, a groove is opened. The cutting seat and the groove are in the same vertical plane. The pressing roller A is directly above the cutting seat and the groove. On the lower surface of the moving seat, a clamping groove is opened. The size of the clamping groove matches the cross-sectional size of the U-shaped diversion seat. The inner side of the U-shaped diversion seat is inclined. The side of the U-shaped diversion seat close to the cleaning seat is lower than the side of the U-shaped diversion seat close to the winding seat. The cross-section of the rotating plate is in the shape of a cross. In the middle part of the bottom end of the rotating plate, an extension plate is provided. On the upper surface of the U-shaped diversion seat, an installation cavity A is opened. Inside the installation cavity A, a knocking plate A is rotatably connected. One end of the rotating plate and one end of the knocking plate A are connected by a belt C. On the upper surface of the installation cavity A, an elastic inclined plate is provided. The air outlet of the air pump is connected to a connecting pipe. On the upper surface of the clamping groove, a guiding air plate is provided. At both ends of the guiding air plate, nozzles are provided. On the side of the guiding air plate close to the belt C, a guiding air pipe is provided. On the lower surface of the guiding air pipe, a rubber valve is provided. The rubber valve is directly above the end of the connecting pipe away from the air pump. On the side of the moving seat close to the connecting pipe, a U-shaped groove is provided. The width of the U-shaped groove is equal to the outer diameter of the connecting pipe. The nozzles are inclined downward towards the side close to the cutting seat.

2. The intelligent conveying device produced based on the Teflon high-temperature cloth according to claim 1, wherein: The side of the filter frame is in the shape of a right trapezoid. The cross-section of the collection box is in the shape of a right triangle. The upper surface of the collection box is attached to the lower surface of the filter frame. On the lower surface of the filter frame, a blanking port is provided. The blanking port is communicated with the inside of the collection box. Inside the cleaning seat, a knocking plate B is rotatably connected. One end of the knocking plate B and one end of the cutting seat are connected by a belt E. Inside the filter frame, a filter plate is provided. The knocking plate B is located on the side close to the filter plate.

3. The intelligent conveying device produced based on Teflon high-temperature cloth according to claim 2, characterized in that: At both ends of the inner wall of the adjusting seat, a guide roller B and a guide roller C are respectively rotatably connected. An adjustable roller A is arranged on the inner wall of the adjusting seat. A connecting sleeve is fixed inside the adjusting seat. The adjustable roller A is located between the guide roller B and the guide roller C, and the adjustable roller A is directly above the connecting sleeve. At both ends of the lower pressing roller A, moving sleeves are fixed. An accommodating groove A is arranged inside the adjusting seat. Inside the accommodating groove A, a threaded rod A is rotatably connected. The threaded rod A is threadedly connected to the inside of one of the moving sleeves. On both sides inside the accommodating groove A, threaded rods B are rotatably connected. At both ends of the adjustable roller A, threaded sleeves are fixed. The threaded sleeves are all threadedly connected to the threaded rods B. The two groups of threaded rods B are driven and connected by a belt B. The threaded rod A and the threaded rod B are driven and connected by a belt A. The belt B is located inside the connecting sleeve. The moving sleeves and the threaded sleeves are all slidably connected to the installation groove.

4. The intelligent conveying device produced based on the Teflon high-temperature cloth according to claim 3, characterized in that: An adjustable roller B is arranged inside the winding seat. A guide roller D is rotatably connected to the inner wall of the winding seat. The guide roller D is located between the adjustable roller B and the moving seat. An accommodating groove B is arranged inside the winding seat. Inside the accommodating groove B, a connecting plate is slidably connected. Both ends of the connecting plate are respectively slidably connected to the adjustable roller B and the lower pressing roller A. Slide rods are fixed inside both the accommodating groove A and the accommodating groove B. The slide rods are slidably connected to the remaining moving sleeves.

5. The intelligent conveying device produced based on the Teflon high-temperature cloth according to claim 4, wherein: At both ends of the upper surface of the lower pressing roller A, connecting seats are arranged. The connecting seats are located on the side close to the winding seat. On one side of each connecting seat, an installation cavity B is formed. A spring is fixed inside the installation cavity B. The top end of the spring is fixed with an installation block. On the side of the installation block away from the moving seat, a lower pressing roller B is arranged. The cross-sectional size of the installation block is adapted to the cross-sectional size of the installation cavity B. The lower pressing roller B is directly above the guide roller D.

6. The intelligent conveying device produced based on the Teflon high-temperature cloth according to claim 5, wherein: The cutting seat includes an installation box arranged at one end of the inner wall of the U-shaped diversion seat. A driving motor is arranged inside the installation box. The output shaft of the driving motor is fixed with a rotating rod. Two groups of chutes are arranged on the upper surface of the rotating rod. Electric telescopic rods B are fixed inside the chutes. The telescopic ends of the electric telescopic rods B are all fixed with moving blocks. Disc knives are slidably connected to both sides of the outer surface of the rotating rod. The upper surface of the moving block is fixedly connected to the inside of the disc knife. One end of the rotating rod away from the installation box is fixed with a rotating shaft. The rotating shaft is rotatably connected to the inner wall of the U-shaped diversion seat.

7. The intelligent conveying device produced based on the Teflon high-temperature cloth according to claim 1, characterized in that: One end of the adjusting seat is provided with a control panel. A distance sensor is arranged on the lower surface of the air duct. Clamping components are arranged on the outer wall of the feeding seat and the inner wall of the winding seat. A high-definition camera is arranged on the upper surface of the feeding seat. A wireless sensor and a single-chip microcomputer are arranged inside the control panel.

Citation Information

Patent Citations

  • Intelligent multi-shaft punching device based on internet of things

    CN108818127A

  • Batch cutting device for filter cloth processing

    CN118877617A