Moving device capable of conveying textile coating raw materials regularly

By designing a mobile device including a workbench, slide rail, base, silo, conveying components and drive components, the problem of easy adsorption of textile coating raw materials when loading is solved, and the timely and quantitative transportation of raw materials is achieved, avoiding waste and precipitation, and improving production efficiency.

CN120229463AInactive Publication Date: 2025-07-01JIANGSU LIJIN TEXTILE TECH CO LTD
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Patent Information

Application Number
CN202510507247.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-22
Publication Date
2025-07-01
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

When loading, the existing mobile devices that can convey textile coating raw materials regularly, the raw materials are easily adsorbed on the inner wall of the silo, resulting in waste and inconvenient maintenance.

Method used

A moving device including a workbench, slide rail, base, silo, conveying assembly and driving assembly is designed. Through the reciprocating movement of the silo and the slight vibration of the silo frame, the raw materials are prevented from adsorbing on the inner wall, and the raw materials are prevented from precipitation through the design of pushing blocks and spoiler leaves.

Benefits of technology

It effectively avoids adsorption and precipitation of textile coating raw materials, reduces waste, and improves the practicality and production efficiency of the device.

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Abstract

The invention belongs to the technical field of textile coating raw material conveying, and particularly relates to a moving device capable of regularly conveying textile coating raw materials, which comprises a working table, sliding rails are symmetrically arranged on the working table, a base is connected to the sliding rails in a clamping manner, a stock bin is fixedly connected to the top of the base, and a driving assembly for driving the stock bin to move is arranged on the working table. Racks are symmetrically arranged on the top of the workbench, two inclined frames are installed in the stock bin, a transmission mechanism is arranged on the stock bin, and transmission assemblies are arranged in the inclined frames. According to the moving device capable of regularly conveying the textile coating raw materials, through cooperation of a cleaning plate and a bearing plate, the stock bin can be conveniently vibrated, the situation that the raw materials are adsorbed to the inner wall of the stock bin, and waste of the raw materials is caused can be effectively avoided, and when the stock bin moves, a driving gear is driven to move, a knocking plate is driven to repeatedly move in a guide frame, and an inclined frame slightly vibrates; and therefore, the textile coating raw materials can be prevented from being adsorbed on the inner wall of the stock bin, and the practicability is improved.
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Description

Technical Field

[0001] The present invention belongs to the technical field of textile coating raw material transportation, and specifically relates to a mobile device for timed transportation of textile coating raw materials. Background Art

[0002] A mobile device for timed transportation of textile coating raw materials is an automated device used in the textile industry. Its main function is to transport coating raw materials to specific positions on the production line at regular intervals and accurately. According to production requirements, a specific time interval is set to automatically transport the coating raw materials to the designated position to ensure the timeliness of raw material supply. It can transport quantitatively to ensure that the amount of coating raw materials transported each time reaches the preset quantity, facilitating subsequent production processes. Automated timed transportation can reduce manual operations, improve production efficiency, and the quantitative and timed transportation methods can maintain the consistency of the current production, reduce waste, and improve product quality.

[0003] A Chinese patent with the publication number CN216071711U discloses a mobile device for timed transportation of textile coating raw materials, including a first driving wheel, a support fixing plate, a motor, a fixed support plate, a conveying pipe, a plugging sealing plate, a discharge pipe, an electro-hydraulic push rod, a first conveying device, a second driving wheel, a conveyor belt, and a second conveying device. The first driving wheel and the second driving wheel are fixedly installed at the upper parts of both ends of the support fixing plate. The conveyor belt is rotatably wound between the first driving wheel and the second driving wheel. The motor is fixedly installed at the bottom of one end of the support fixing plate, and the upper end of the motor is fixedly connected to the middle part of the bottom end of the first driving wheel. The fixed support plate is fixedly connected to the bottom end of the support fixing plate. The first conveying device and the second conveying device are fixedly installed on both sides of the support fixing plate. In the process of using the present utility model, the first conveying device and the second conveying device that move horizontally back and forth can transport and replenish the material at regular intervals.

[0004] When the existing mobile device for timed transportation of textile coating raw materials feeds the coating raw materials, as the raw materials are transported, the raw materials will continuously fall. However, since the raw materials are easily adsorbed on the inner wall of the silo, this leads to waste of the raw materials. In addition, the coating raw materials adhered to the inner wall are more difficult to remove after drying, bringing inconvenience to maintenance and cleaning work.

[0005] Therefore, the present invention provides a mobile device for timed transportation of textile coating raw materials. Summary of the Invention

[0006] In order to make up for the deficiencies of the prior art and solve the technical problem of the inconvenience in removing the raw materials adsorbed on the inner wall, the present invention proposes a mobile device for timed transportation of textile coating raw materials.

[0007] The technical solution adopted by the present invention to solve its technical problem is: a mobile device capable of regularly conveying textile coating raw materials described in the present invention comprises a workbench, wherein the workbench is symmetrically provided with slide rails, the slide rails are snap-connected with a base, a silo is fixedly connected to the top of the base, a conveying assembly for conveying raw materials is arranged inside the silo, a driving assembly for driving the silo to move is arranged on the workbench, racks are symmetrically arranged on the top of the workbench, and the racks are located on one side of the slide rails, two inclined frames are installed inside the silo, and the inclined frames are located on one side of the conveying assembly, a transmission mechanism is arranged on the silo, a transmission assembly is arranged inside the inclined frame, a frame is fixedly installed inside the inclined frame, a guide rod is fixedly installed inside the frame, a sliding plate is arranged inside the frame, and the guide rod passes through the sliding plate, a knocking plate is fixedly installed on the top of the sliding plate, a guide frame corresponding to the knocking plate is fixedly installed inside the frame, and the knocking plate passes through the guide frame.

[0008] By adopting the above technical scheme, after the textile coating raw materials are placed inside the silo, the raw materials are stored through the silo. The movement of the driving component causes the silo to reciprocate. The driving component can move at a fixed time. After the silo is moved to a predetermined position, the conveying component moves, and the textile coating raw materials can be conveyed at a fixed time for feeding. There are two tilting frames, which are tilted to form a cone, so that the textile coating raw materials flow to the conveying component. According to production needs, a specific time interval is set by the conveying component to automatically convey the coating raw materials to the designated position, thereby ensuring the timeliness of the raw material supply. The quantitative conveying can ensure that the coating raw materials conveyed each time reach the preset quantity, which is convenient for subsequent production processes. When the silo moves, the sliding plate will move repeatedly on the guide rod through the cooperation of the rack, the transmission mechanism and the transmission component. When the sliding plate moves, it will drive the knocking plate to move repeatedly inside the guide frame. The repeated movement of the knocking plate will knock on the bottom of the load-bearing plate, thereby causing the tilting frame to vibrate slightly, causing the silo to vibrate slightly, thereby preventing the textile coating raw materials from being adsorbed on the inner wall of the silo, and causing the textile coating raw materials to flow to the location of the conveying component for conveying and loading.

[0009] Preferably, the driving assembly includes a servo motor, a controller, a driving wheel, a driven wheel, a conveyor belt and a connecting mechanism, the servo motor is fixedly mounted on the bottom of the workbench, the controller is fixedly mounted on the side of the servo motor, and the controller is electrically connected to the servo motor, the driving wheel is rotatably arranged on the top of the workbench, the driven wheel is rotatably arranged on the top of the workbench, the conveyor belt is arranged around the driving wheel, the driving wheel and the driven wheel are connected through a conveyor belt transmission, the output end of the servo motor is fixedly connected to the center position of the driving wheel, a connecting mechanism is arranged on the conveyor belt, and the connecting mechanism is fixedly connected to the silo, a load-bearing plate is fixedly mounted on the top of the tilting frame, and the load-bearing plate is located above the knocking plate.

[0010] By adopting the above technical solution, the servo motor can be controlled by the controller to work at regular intervals. When the servo motor works, it will drive the driving wheel to rotate. The rotation of the driving wheel will drive the conveyor belt to move through the cooperation of the driven wheel. When the conveyor belt moves, the connecting mechanism will drive the bin to move, and then the bin can be driven to move repeatedly for feeding.

[0011] Preferably, the connecting mechanism includes a connecting block and a connecting plate. The connecting block is fixedly installed on the conveyor belt. One end of the connecting plate is fixedly connected to the connecting block, and the other end of the connecting plate is fixedly connected to the bin. The conveying assembly includes a conveying pump. The conveying pump is fixedly installed inside the bin, and the output end of the conveying pump is connected with a conveying pipe for conveying coating raw materials.

[0012] By adopting the above technical solution, when the conveyor belt moves, it will drive the connecting block to move. When the connecting block moves, it will drive the bin to move synchronously through the cooperation of the connecting plate, thereby adjusting the position of the bin. When the conveying pump works, it will extract the raw materials inside the bin, and the extracted raw materials will be conveyed to the feeding location.

[0013] Preferably, the transmission mechanism includes a square frame, a driving gear, a through groove, a bracket, a rotating shaft, a first belt pulley and a driven gear. The square frame is fixedly installed at the bottom of the bin. The driving gear is rotatably arranged at the bottom of the square frame and meshes with a rack. A through groove corresponding to the driving gear is arranged on the square frame, and one side of the driving gear extends into the bin. The bracket is fixedly installed inside the bin. The rotating shaft is rotatably arranged inside the bracket. The driven gear is fixedly installed on the rotating shaft and meshes with the driving gear. The first belt pulley is fixedly installed on the rotating shaft and is located on one side of the rotating shaft.

[0014] By adopting the above technical solution, when the bin moves, it will drive the driving gear to move. When the driving gear moves, it will cooperate with the rack to make the driving gear rotate. When the driving gear rotates, it will make the driven gear rotate. When the driven gear rotates, it will drive the rotating shaft and the first belt pulley to rotate.

[0015] Preferably, the transmission assembly includes a support frame, a shaft body, a driving block, a driving plate, a square block, a groove body and a rotating gear. The support frame is fixedly installed inside the frame. The groove body is arranged inside the frame, and the top of the driving gear is located inside the groove body. The shaft body is rotatably arranged inside the support frame. The driving block is fixedly installed at one end of the shaft body. One end of the driving plate is movably connected to the driving block. The square block is fixedly installed on the sliding plate, and the other end of the driving plate is movably connected to the square block. The rotating gear is fixedly installed on the shaft body and meshes with the driving gear. A spring is wound around the guide rod, and one end of the spring is fixedly connected to the guide rod.

[0016] By adopting the above technical solution, when the driving gear rotates, it will cause the rotating gear to rotate. When the rotating gear rotates, it will cause the shaft body to rotate. When the shaft body rotates, it will drive the driving block to move. When the driving block rotates, it will drive the sliding plate to move back and forth on the guide rod through the cooperation of the driving plate and the square block.

[0017] Preferably, a square groove is fixedly installed inside the inclined frame. A bearing is fixedly installed inside the square groove. A reciprocating lead screw is rotatably arranged inside the bearing. One end of the reciprocating lead screw is fixedly connected with a first bevel gear. A bearing frame is fixedly installed on the square groove. A power shaft is rotatably arranged inside the bearing frame. A second belt pulley is fixedly installed on the power shaft, and the second belt pulley is connected by a belt to the first belt pulley. One end of the power shaft is fixedly connected with a second bevel gear, and the second bevel gear meshes with the first bevel gear.

[0018] By adopting the above technical solution, the inclined frame provides an installation space for the square groove. When the first belt pulley rotates, it will drive the second belt pulley to rotate through the belt. When the second belt pulley rotates, the reciprocating lead screw will rotate through the cooperation of the first bevel gear and the second bevel gear.

[0019] Preferably, a threaded ring is threadedly connected to the reciprocating lead screw, and a slider is fixedly installed on the threaded ring.

[0020] By adopting the above technical solution, when the reciprocating lead screw rotates, it will cause the threaded ring to move. When the threaded ring moves, it will drive the pushing block to move through the slider.

[0021] Preferably, a pushing block penetrates through the inside of the square groove, and the slider is fixedly connected to the pushing block. One end of the pushing block extends out of the inside of the inclined frame. By adopting the above technical solution, when the pushing block moves, it will push the textile coating raw material on one side to move, which can prevent the textile coating raw material from precipitating and affecting the quality of the textile coating raw material.

[0022] Preferably, a limiting cylinder is fixedly installed inside the pushing block. A driving rod is rotatably arranged inside the limiting cylinder, and the driving rods are connected by a belt. A spoiler blade is fixedly installed on the driving rod.

[0023] By adopting the above technical solution, the limiting cylinder is used to limit the driving rod. When the driving rod rotates, it will drive the spoiler blade to rotate. When the spoiler blade rotates, it will cause the textile coating raw material on one side to flow, thereby preventing the textile coating raw material from precipitating.

[0024] Preferably, a stepping motor is fixedly installed inside the pushing block, and the output end of the stepping motor is fixedly connected to one of the driving rods. A battery assembly is fixedly installed inside the pushing block, and the battery assembly is electrically connected to the stepping motor.

[0025] By adopting the above technical solution, controlling the operation of the stepper motor will drive the driving rod to rotate. The rotation of the driving rod will drive the rotation of the other driving rods through the belt, and the rotation of the driving rod will drive the rotation of the spoiler blades.

[0026] The beneficial effects of the present invention are as follows:

[0027] 1. For the mobile device for timed conveying of textile coating raw materials according to the present invention, the cooperation of the cleaning plate and the load-bearing plate is convenient for vibrating the silo, which can effectively prevent the raw materials from adhering to the inner wall of the silo, resulting in waste of raw materials. When the silo moves, it will drive the driving gear to move. When the driving gear moves, it will cooperate with the rack to make the driving gear rotate, which will drive the sliding plate to move repeatedly on the guide rod. When the sliding plate moves, it will drive the knocking plate to move repeatedly inside the guiding frame. The repeated movement of the knocking plate will knock on the bottom of the load-bearing plate, and then cause the inclined frame to vibrate slightly, causing the silo to vibrate slightly, thereby preventing the textile coating raw materials from adhering to the inner wall of the silo, making the textile coating raw materials flow to the location where the conveying component is located for conveying and feeding, improving the practicability of the mobile device for timed conveying of textile coating raw materials, and effectively avoiding waste of raw materials.

[0028] 2. For the mobile device for timed conveying of textile coating raw materials according to the present invention, the arranged pushing block can make the textile coating raw materials flow, preventing the textile coating raw materials from standing still and precipitating for a long time, which affects the quality. When the first belt pulley rotates, it will drive the second belt pulley to rotate through the belt. When the second belt pulley rotates, it will make the reciprocating lead screw rotate through the cooperation of the first bevel gear and the second bevel gear. When the reciprocating lead screw rotates, it will make the threaded ring move. The movement of the threaded ring will drive the pushing block to move through the slider. When the pushing block moves, it will push the textile coating raw materials on one side to move, preventing the textile coating raw materials from precipitating and affecting the quality of the textile coating raw materials.

[0029] 3. For the mobile device for timed conveying of textile coating raw materials according to the present invention, the arranged spoiler blades are convenient for making the coating raw materials flow, further preventing the textile coating raw materials from standing still and precipitating, which affects the quality. Controlling the operation of the stepper motor will drive the driving rod to rotate. The rotation of the driving rod will drive the rotation of the other driving rods through the belt, and the rotation of the driving rod will drive the rotation of the spoiler blades. The limiting cylinder is used to limit the driving rod. When the driving rod rotates, it will drive the rotation of the spoiler blades. When the spoiler blades rotate, it will make the textile coating raw materials on one side flow, thereby preventing the textile coating raw materials from precipitating, and further preventing the precipitation of the textile coating raw materials from affecting the quality. BRIEF DESCRIPTION OF THE DRAWINGS

[0030] The present invention will be further described below with reference to the accompanying drawings.

[0031] Figure 1 is a perspective view of the mobile device for timed conveying of textile coating raw materials of the present invention;

[0032] Figure 2It is a schematic structural diagram of the workbench in the present invention;

[0033] Figure 3 It is a schematic structural diagram of the driving gear in the present invention;

[0034] Figure 4 It is a schematic structural diagram of the driven gear in the present invention;

[0035] Figure 5 It is a schematic structural diagram of the frame in the present invention;

[0036] Figure 6 It is the present invention Figure 5 A magnified schematic structural diagram of A in;

[0037] Figure 7 It is a schematic structural diagram of the inclined frame in the present invention;

[0038] Figure 8 It is a schematic structural diagram of the square groove in the present invention;

[0039] Figure 9 It is a schematic structural diagram of the pushing block in the present invention.

[0040] In the figure: 1. Workbench; 2. Servo motor; 3. Controller; 4. Driving wheel; 5. Driven wheel; 6. Conveyor belt; 7. Connecting block; 8. Slide rail; 10. Base; 11. Rack; 12. Bin; 13. Square frame; 14. Driving gear; 15. Through groove; 16. Bracket; 17. Delivery pump; 18. Connecting plate; 19. Inclined frame; 20. Rotating shaft; 21. First belt pulley; 22. Driven gear; 23. Frame; 24. Support frame; 25. Shaft body; 26. Driving block; 27. Driving plate; 28. Guide rod; 29. Spring; 30. Sliding plate; 31. Guide frame; 32. Knocking plate; 33. Square block; 34. Load-bearing plate; 35. Groove body; 36. Rotating gear; 37. Square groove; 38. Bearing; 39. Reciprocating lead screw; 40. First bevel gear; 41. Load-bearing frame; 42. Power shaft; 43. Second belt pulley; 44. Second bevel gear; 45. Threaded ring; 46. Slide block; 47. Pushing block; 49. Limiting cylinder; 50. Driving rod; 51. Turbulence blade; 52. Stepper motor; 53. Battery assembly. Detailed implementation manners

[0041] In order to make the technical means, creative features, achieved purposes and functions of the present invention easy to understand, the present invention will be further described below in conjunction with specific implementation manners.

[0042] Such as Figures 1 to 9As shown in the figure, a mobile device for timing the conveying of textile coating raw materials according to an embodiment of the present invention includes a workbench 1, on which slide rails 8 are symmetrically arranged. A base 10 is snap-connected to the slide rails 8. A material bin 12 is fixedly connected to the top of the base 10. A conveying component for conveying raw materials is arranged inside the material bin 12. A driving component for driving the material bin 12 to move is arranged on the workbench 1. Rack bars 11 are symmetrically arranged on the top of the workbench 1 and are located on one side of the slide rails 8. Two inclined frames 19 are installed inside the material bin 12 and are located on one side of the conveying component. A transmission mechanism is arranged on the material bin 12. A transmission component is arranged inside the inclined frame 19. A frame 23 is fixedly installed inside the inclined frame 19. A guide rod 28 is fixedly installed inside the frame 23. A sliding plate 30 is arranged inside the frame 23, and the guide rod 28 penetrates through the sliding plate 30. A knocking plate 32 is fixedly installed on the top of the sliding plate 30. A guide frame 31 corresponding to the knocking plate 32 is fixedly installed inside the frame 23, and the knocking plate 32 penetrates through the guide frame 31. When using the mobile device for timing the conveying of textile coating raw materials to process the textile coating raw materials at different positions, after placing the textile coating raw materials inside the material bin 12, the raw materials are stored through the material bin 12. The movement of the driving component will cause the material bin 12 to move back and forth. The driving component moves at a fixed time. After moving the material bin 12 to a predetermined position, the conveying component moves, and then the textile coating raw materials can be conveyed at a fixed time for replenishment processing. There are two inclined frames 19, which are inclined to form a cone shape, so that the textile coating raw materials flow to the conveying component. Through the conveying component, according to the production requirements, a specific time interval is set, and the coating raw materials are automatically conveyed to the designated position to ensure the timeliness of raw material supply, can convey quantitatively, ensure that the coating raw materials conveyed each time reach the preset quantity, and facilitate the subsequent production process. When the material bin 12 moves, the cooperation of the rack bars 11, the transmission mechanism and the transmission component will cause the sliding plate 30 to move back and forth on the guide rod 28. When the sliding plate 30 moves, it will drive the knocking plate 32 to move back and forth inside the guide frame 31. The repeated movement of the knocking plate 32 will knock on the bottom of the load-bearing plate 34, and then will cause the inclined frame 19 to vibrate slightly, causing the material bin 12 to vibrate slightly, thereby avoiding the adsorption of the textile coating raw materials on the inner wall of the material bin 12, and making the textile coating raw materials flow to the location where the conveying component is located for conveying and feeding.

[0043] Further, the driving assembly includes a servo motor 2, a controller 3, a driving wheel 4, a driven wheel 5, a conveyor belt 6 and a connecting mechanism. The servo motor 2 is fixedly installed at the bottom of the workbench 1, the controller 3 is fixedly installed on the side of the servo motor 2, and the controller 3 is electrically connected to the servo motor 2. The driving wheel 4 is rotatably arranged on the top of the workbench 1, the driven wheel 5 is rotatably arranged on the top of the workbench 1, the conveyor belt 6 is wound around the driving wheel 4, and the driving wheel 4 and the driven wheel 5 are connected by the conveyor belt 6 for transmission. The output end of the servo motor 2 is fixedly connected to the central position of the driving wheel 4. A connecting mechanism is arranged on the conveyor belt 6, and the connecting mechanism is fixedly connected to the silo 12. A bearing plate 34 is fixedly installed at the top of the inclined frame 19, and the bearing plate 34 is located above the knocking plate 32. When the driving assembly moves, the servo motor 2 can be controlled by the controller 3 to work regularly. When the servo motor 2 works, it will drive the driving wheel 4 to rotate. The rotation of the driving wheel 4 will drive the conveyor belt 6 to move through the cooperation of the driven wheel 5. When the conveyor belt 6 moves, it will drive the silo 12 to move through the connecting mechanism, and thus the silo 12 can be driven to move repeatedly for feeding.

[0044] Further, the connecting mechanism includes a connecting block 7 and a connecting plate 18. The connecting block 7 is fixedly installed on the conveyor belt 6. One end of the connecting plate 18 is fixedly connected to the connecting block 7, and the other end of the connecting plate 18 is fixedly connected to the silo 12. The conveying assembly includes a conveying pump 17. The conveying pump 17 is fixedly installed inside the silo 12, and the output end of the conveying pump 17 is connected with a conveying pipe for conveying the coating raw material. When the conveyor belt 6 moves, it will drive the connecting block 7 to move. When the connecting block 7 moves, it will drive the silo 12 to move synchronously through the cooperation of the connecting plate 18, thereby adjusting the position of the silo 12. When the conveying pump 17 works, it will extract the raw material inside the silo 12, and the extracted raw material will be conveyed to the feeding location.

[0045] Further, the transmission mechanism includes a square frame 13, a driving gear 14, a through groove 15, a bracket 16, a rotating shaft 20, a first belt pulley 21 and a driven gear 22. The square frame 13 is fixedly installed at the bottom of the silo 12. The driving gear 14 is rotatably arranged at the bottom of the square frame 13, and the driving gear 14 meshes with the rack 11. A through groove 15 corresponding to the driving gear 14 is arranged on the square frame 13, and one side of the driving gear 14 extends into the silo 12. The bracket 16 is fixedly installed inside the silo 12. The rotating shaft 20 is rotatably arranged inside the bracket 16. The driven gear 22 is fixedly installed on the rotating shaft 20, and the driven gear 22 meshes with the driving gear 14. The first belt pulley 21 is fixedly installed on the rotating shaft 20, and the first belt pulley 21 is located on one side of the rotating shaft 20. When the silo 12 moves, it will drive the driving gear 14 to move. When the driving gear 14 moves, it will cooperate with the rack 11 to make the driving gear 14 rotate. The rotation of the driving gear 14 will make the driven gear 22 rotate. When the driven gear 22 rotates, it will drive the rotating shaft 20 and the first belt pulley 21 to rotate.

[0046] Furthermore, the transmission assembly includes a support frame 24, a shaft body 25, a drive block 26, a drive plate 27, a square block 33, a groove body 35, and a rotating gear 36. The support frame 24 is fixedly installed inside the frame 23. The groove body 35 is arranged inside the frame 23, and the top of the drive gear 14 is located inside the groove body 35. The shaft body 25 is rotatably arranged inside the support frame 24. The drive block 26 is fixedly installed at one end of the shaft body 25. One end of the drive plate 27 is movably connected to the drive block 26. The square block 33 is fixedly installed on the sliding plate 30, and the other end of the drive plate 27 is movably connected to the square block 33. The rotating gear 36 is fixedly installed on the shaft body 25 and meshes with the drive gear 14. A spring 29 is wound around the guide rod 28, and one end of the spring 29 is fixedly connected to the guide rod 28. When the drive gear 14 rotates, it will cause the rotating gear 36 to rotate. When the rotating gear 36 rotates, it will cause the shaft body 25 to rotate. When the shaft body 25 rotates, it will drive the drive block 26 to move. When the drive block 26 rotates, it will drive the sliding plate 30 to move back and forth on the guide rod 28 through the cooperation of the drive plate 27 and the square block 33.

[0047] Furthermore, a square groove 37 is fixedly installed inside the inclined frame 19. A bearing 38 is fixedly installed inside the square groove 37. A reciprocating lead screw 39 is rotatably arranged inside the bearing 38. One end of the reciprocating lead screw 39 is fixedly connected to a first bevel gear 40. A load-bearing frame 41 is fixedly installed on the square groove 37. A power shaft 42 is rotatably arranged inside the load-bearing frame 41. A second belt pulley 43 is fixedly installed on the power shaft 42, and the second belt pulley 43 is connected by a belt to the first belt pulley 21. One end of the power shaft 42 is fixedly connected to a second bevel gear 44, and the second bevel gear 44 meshes with the first bevel gear 40. The inclined frame 19 provides an installation space for the square groove 37. When the first belt pulley 21 rotates, it will drive the second belt pulley 43 to rotate through the belt. When the second belt pulley 43 rotates, it will cause the reciprocating lead screw 39 to rotate through the cooperation of the first bevel gear 40 and the second bevel gear 44.

[0048] Furthermore, a threaded ring 45 is threadedly connected to the reciprocating lead screw 39. A slider 46 is fixedly installed on the threaded ring 45. When the reciprocating lead screw 39 rotates, it will cause the threaded ring 45 to move. When the threaded ring 45 moves, it will drive the pushing block 47 to move through the slider 46.

[0049] Furthermore, a pushing block 47 passes through the inside of the square groove 37, and the slider 46 is fixedly connected to the pushing block 47. One end of the pushing block 47 extends out of the inside of the inclined frame 19. When the pushing block 47 moves, it will push the textile coating raw material on one side to move, which can prevent the precipitation of the textile coating raw material and affect the quality of the textile coating raw material.

[0050] Further, a limiting cylinder 49 is fixedly installed inside the material pushing block 47. A driving rod 50 is rotatably arranged inside the limiting cylinder 49, and the driving rods 50 are connected by belt drive. A spoiler blade 51 is fixedly installed on the driving rod 50. The limiting cylinder 49 is used to limit the driving rod 50. When the driving rod 50 rotates, it will drive the spoiler blade 51 to rotate. When the spoiler blade 51 rotates, it will cause the textile coating raw material on one side to flow, thereby avoiding the precipitation of the textile coating raw material.

[0051] Further, a stepping motor 52 is fixedly installed inside the material pushing block 47, and the output end of the stepping motor 52 is fixedly connected to one of the driving rods 50. A battery assembly 53 is fixedly installed inside the material pushing block 47, and the battery assembly 53 is electrically connected to the stepping motor 52. Controlling the operation of the stepping motor 52 will drive the driving rod 50 to rotate. The rotation of the driving rod 50 will drive the other driving rods 50 to rotate through the belt. When the driving rod 50 rotates, it will drive the spoiler blade 51 to rotate.

[0052] Working principle: Firstly, when using a mobile device that can regularly convey textile coating raw materials to process the textile coating raw materials at different positions, after placing the textile coating raw materials inside the silo 12, the raw materials are stored through the silo 12. The controller 3 can control the servo motor 2 to work regularly. When the servo motor 2 works, it will drive the driving wheel 4 to rotate. The rotation of the driving wheel 4 will drive the conveyor belt 6 to move through the cooperation of the driven wheel 5. When the conveyor belt 6 moves, it will drive the silo 12 to move through the connecting mechanism, making the silo 12 move back and forth and regularly. After moving the silo 12 to the predetermined position, the delivery pump 17 will work to extract the raw materials inside the silo 12, and the extracted raw materials will be conveyed to the feeding location, thereby regularly conveying the textile coating raw materials for replenishment processing. There are two inclined frames 19, which are inclined to form a cone shape, enabling the textile coating raw materials to flow to the conveying assembly. The conveying assembly, according to production requirements, sets a specific time interval to automatically convey the coating raw materials to the designated position, ensuring the timeliness of raw material supply, being able to convey quantitatively, ensuring that the coating raw materials conveyed each time reach the preset quantity, facilitating subsequent production processes. When the silo 12 moves, it will drive the driving gear 14 to move. When the driving gear 14 moves, it will cooperate with the rack 11 to make the driving gear 14 rotate. The rotation of the driving gear 14 will make the driven gear 22 rotate. When the driven gear 22 rotates, it will drive the rotating shaft 20 and the first pulley 21 to rotate. When the driving gear 14 rotates, it will make the rotating gear 36 rotate. The rotation of the rotating gear 36 will make the shaft body 25 rotate. When the shaft body 25 rotates, it will drive the driving block 26 to move. When the driving block 26 rotates, it will drive the sliding plate 30 to move back and forth on the guide rod 28 through the cooperation of the driving plate 27 and the square block 33. When the sliding plate 30 moves, it will drive the knocking plate 32 to move back and forth inside the guide frame 31. The repeated movement of the knocking plate 32 will knock on the bottom of the load-bearing plate 34, thereby slightly vibrating the inclined frame 19 and slightly vibrating the silo 12, thus avoiding the adsorption of textile coating raw materials on the inner wall of the silo 12 and enabling the textile coating raw materials to flow to the location where the conveying assembly is located for conveying and feeding. When the first pulley 21 rotates, it will drive the second pulley 43 to rotate through the belt. When the second pulley 43 rotates, it will make the reciprocating lead screw 39 rotate through the cooperation of the first bevel gear 40 and the second bevel gear 44. When the reciprocating lead screw 39 rotates, it will make the threaded ring 45 move. The movement of the threaded ring 45 will drive the pusher block 47 to move through the slider 46. When the pusher block 47 moves, it will push the textile coating raw materials on one side to move, which can avoid the precipitation of textile coating raw materials and affect the quality of textile coating raw materials. Controlling the stepper motor 52 to work will drive the drive rod 50 to rotate. The rotation of the drive rod 50 will drive the other drive rod 50 to rotate through the belt. When the drive rod 50 rotates, it will drive the spoiler blade 51 to rotate. The limiting cylinder 49 is used to limit the drive rod 50. When the drive rod 50 rotates, it will drive the spoiler blade 51 to rotate. When the spoiler blade 51 rotates, it will make the textile coating raw materials on one side flow, thereby avoiding the precipitation phenomenon of textile coating raw materials.Furthermore, it avoids the precipitation of textile coating raw materials from affecting the quality.

[0053] The foregoing has shown and described the basic principles, main features and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited by the above embodiments, and what is described in the above embodiments and the specification is only to illustrate the principle of the present invention. Without departing from the spirit and scope of the present invention, the present invention will have various changes and improvements, and these changes and improvements fall within the scope of the present invention claimed. The scope of the present invention claimed is defined by the appended claims and their equivalents.

Claims

1. A mobile device capable of regularly conveying textile coating materials, characterized in that: The invention comprises a workbench (1), wherein the workbench (1) is symmetrically provided with a slide rail (8), the slide rail (8) is snap-connected with a base (10), the top of the base (10) is fixedly connected with a silo (12), the silo (12) is provided with a conveying component for conveying raw materials, the workbench (1) is provided with a driving component for driving the silo (12) to move, the top of the workbench (1) is symmetrically provided with a rack (11), and the rack (11) is located on one side of the slide rail (8), two tilting frames (19) are installed inside the silo (12), and the tilting frames (19) are located on the conveying component On one side of the material bin (12), a transmission mechanism is arranged on the material bin (12), a transmission assembly is arranged inside the tilting frame (19), a frame (23) is fixedly installed inside the tilting frame (19), a guide rod (28) is fixedly installed inside the frame (23), a sliding plate (30) is arranged inside the frame (23), and the guide rod (28) passes through the sliding plate (30), a knocking plate (32) is fixedly installed on the top of the sliding plate (30), and a guide frame (31) corresponding to the knocking plate (32) is fixedly installed inside the frame (23), and the knocking plate (32) passes through the guide frame (31).

2. A mobile device capable of regularly conveying textile coating materials according to claim 1, characterized in that: The driving assembly comprises a servo motor (2), a controller (3), a driving wheel (4), a driven wheel (5), a conveying belt (6) and a connecting mechanism, wherein the servo motor (2) is fixedly mounted at the bottom of the workbench (1), the controller (3) is fixedly mounted on the side of the servo motor (2), and the controller (3) is electrically connected to the servo motor (2), the driving wheel (4) is rotatably mounted on the top of the workbench (1), the driven wheel (5) is rotatably mounted on the top of the workbench (1), the conveying belt (6) is arranged around the driving wheel (4), the driving wheel (4) and the driven wheel (5) are connected by transmission through the conveying belt (6), the output end of the servo motor (2) is fixedly connected to the center position of the driving wheel (4), the conveying belt (6) is provided with a connecting mechanism, and the connecting mechanism is fixedly connected to the silo (12), and a load-bearing plate (34) is fixedly mounted on the top of the tilting frame (19), and the load-bearing plate (34) is located above the knocking plate (32).

3. A mobile device capable of regularly conveying textile coating materials according to claim 2, characterized in that: The connecting mechanism comprises a connecting block (7) and a connecting plate (18); the connecting block (7) is fixedly mounted on a conveying belt (6); one end of the connecting plate (18) is fixedly connected to the connecting block (7); the other end of the connecting plate (18) is fixedly connected to a silo (12); the conveying assembly comprises a conveying pump (17); the conveying pump (17) is fixedly mounted inside the silo (12); and the output end of the conveying pump (17) is connected to a conveying pipe for conveying coating raw materials.

4. A mobile device capable of regularly conveying textile coating materials according to claim 3, characterized in that: The transmission mechanism comprises a square frame (13), a driving gear (14), a through slot (15), a bracket (16), a rotating shaft (20), a first pulley (21) and a driven gear (22); the square frame (13) is fixedly mounted on the bottom of the silo (12); the driving gear (14) is rotatably arranged on the bottom of the square frame (13); the driving gear (14) is meshed with the rack (11); the through slot (15) corresponding to the driving gear (14) is arranged on the square frame (13); ), and one side of the driving gear (14) extends to the inside of the silo (12), the bracket (16) is fixedly installed inside the silo (12), the rotating shaft (20) is rotatably arranged inside the bracket (16), the driven gear (22) is fixedly installed on the rotating shaft (20), and the driven gear (22) is meshed with the driving gear (14), and the first pulley (21) is fixedly installed on the rotating shaft (20), and the first pulley (21) is located on one side of the rotating shaft (20).

5. A mobile device capable of regularly conveying textile coating materials according to claim 4, characterized in that: The transmission assembly comprises a support frame (24), a shaft (25), a driving block (26), a driving plate (27), a square block (33), a slot (35) and a rotating gear (36); the support frame (24) is fixedly mounted inside the frame (23); the slot (35) is arranged inside the frame (23); the top of the driving gear (14) is located inside the slot (35); the shaft (25) is rotatably arranged inside the support frame (24); the driving block (26) is fixedly mounted on the shaft The guide rod (28) is provided with a spring (29) around one end of the guide rod (28), and one end of the spring (29) is fixedly connected to the guide rod (28).

6. A mobile device capable of regularly conveying textile coating materials according to claim 1, characterized in that: A square groove (37) is fixedly installed inside the tilting frame (19), a bearing (38) is fixedly installed inside the square groove (37), a reciprocating screw (39) is rotatably arranged inside the bearing (38), one end of the reciprocating screw (39) is fixedly connected to a first bevel gear (40), a load-bearing frame (41) is fixedly installed on the square groove (37), a power shaft (42) is rotatably arranged inside the load-bearing frame (41), a second pulley (43) is fixedly installed on the power shaft (42), and the second pulley (43) is connected to the first pulley (21) through a belt transmission, and one end of the power shaft (42) is fixedly connected to a second bevel gear (44), and the second bevel gear (44) is meshed with the first bevel gear (40).

7. A mobile device capable of regularly conveying textile coating materials according to claim 6, characterized in that: A threaded ring (45) is threadedly connected to the reciprocating screw rod (39), and a sliding block (46) is fixedly mounted on the threaded ring (45).

8. A mobile device capable of regularly conveying textile coating materials according to claim 7, characterized in that: A pushing block (47) is provided inside the square groove (37), and the sliding block (46) is fixedly connected to the pushing block (47), and one end of the pushing block (47) extends out of the interior of the tilting frame (19).

9. A mobile device capable of regularly conveying textile coating materials according to claim 8, characterized in that: A limiting cylinder (49) is fixedly installed inside the pusher block (47), a driving rod (50) is rotatably arranged inside the limiting cylinder (49), and the driving rods (50) are connected by belt transmission, and a spoiler blade (51) is fixedly installed on the driving rod (50).

10. A mobile device capable of regularly conveying textile coating materials according to claim 9, characterized in that: A stepper motor (52) is fixedly installed inside the pusher block (47), and the output end of the stepper motor (52) is fixedly connected to one of the driving rods (50). A battery assembly (53) is fixedly installed inside the pusher block (47), and the battery assembly (53) is electrically connected to the stepper motor (52).

Citation Information

Patent Citations

  • Moving device capable of conveying textile coating raw materials regularly

    CN216071711U