Textile roller packaging and conveying device for textile processing
Through the combination of negative pressure components and electromagnets, the instability problem of textile rollers during the transmission process is solved, the stable limit and surface cleaning of textile rollers are achieved, and the packaging quality and production efficiency are improved.
Patent Information
- Application Number
- CN202510781790.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-12
- Publication Date
- 2025-08-01
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The existing textile roller packaging conveying device has instability during the conveying process, which causes textile roller position to shake, affect packaging efficiency and quality, and increase production losses.
The limiting mechanism of the negative pressure assembly and the electromagnet is adopted to achieve stable limiting of the textile roller through the cooperation of the negative pressure head and the electromagnet, and the surface of the textile roller is cleaned through the cleaning assembly.
Improve the stability and cleanliness of textile rollers, ensure that the textile rollers are in the correct position when packaging, reduce damage and impurities adsorption, and improve the standardization and production efficiency of packaging.
Smart Images

Figure CN120397572A_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of conveying devices, and specifically relates to a textile roller packaging and conveying device for textile processing. Background Art
[0002] A textile roller packaging and conveying device for textile processing is a device used to efficiently handle and package textile rollers during the textile production process. The device can achieve automatic conveying of textile rollers, reduce manual operations, improve work efficiency, and is equipped with an automatic packaging function. It can perform corresponding packaging according to textile rollers of different sizes to ensure the safety and integrity of products. It has a compact design and can operate in a limited space, making it suitable for modern textile workshops. In the production line, it can quickly and effectively convey and package finished products.
[0003] A Chinese patent with the publication number CN214826599U discloses a textile roller packaging and conveying device for textile processing, which includes a bracket, a textile roller placement plate, a U-shaped groove, a rotating shaft, a motor, a control panel, an eccentric wheel, a textile roller moving plate, a connecting rod, a textile roller sliding plate, a connecting piece one, a connecting piece two, a hydraulic cylinder, a fixing plate, a buffer spring, and a buffer baffle. The U-shaped groove is provided on the textile roller placement plate, the motor is provided on the textile roller placement plate and on the rotating shaft, the control panel is provided on the textile roller placement plate, the eccentric wheel is provided on the rotating shaft, the textile roller moving plate is hinged to the eccentric wheel, one end of the hydraulic cylinder is hinged to the connecting piece one, the other end of the hydraulic cylinder is hinged to the connecting piece two, and the buffer spring is provided on the fixing plate. This device belongs to the technical field of textile processing and is specifically a textile roller packaging and conveying device for textile processing that can perform separate conveying of textile roller packaging and is equipped with a protection device.
[0004] Existing textile roller packaging and conveying devices for textile processing have certain instability during the process of conveying textile rollers. The textile rollers are prone to position shaking during movement, resulting in their inability to maintain correct positioning during the packaging process. This instability not only affects the packaging efficiency but also may lead to a decline in packaging quality, increasing losses and waste in the production process.
[0005] Therefore, the present invention provides a textile roller packaging and conveying device for textile processing. Summary of the Invention
[0006] In order to make up for the deficiencies of the prior art and solve the problem of improving the conveying stability of textile rollers, the present invention proposes a textile roller packaging and conveying device for textile processing.
[0007] The technical solution adopted by the present invention to solve its technical problems is as follows: A textile roller packaging and conveying device for textile processing according to the present invention includes a chassis, a frame is fixedly connected to the top of the chassis, a blanking component is fixedly installed on the frame, a groove body is symmetrically arranged inside the frame, a support plate is fixedly installed inside the groove body, a conveyor belt is arranged around the support plate, a driving wheel is symmetrically arranged inside the groove body, and the two driving wheels are connected by a conveyor belt in a transmission manner. A driving mechanism for driving the conveyor belt to move is arranged on the frame. Support blocks are arranged in an array on the conveyor belt, a groove for placing a textile roller is arranged on the support block, a negative pressure component for limiting the position of the textile roller is arranged inside the support block, electromagnets are arranged in an array on the support plate and are located on one side of the conveyor belt, an air extraction component is arranged inside the support block, and a transfer component is arranged on the support plate.
[0008] By adopting the above technical solution, after the textile roller enters the chute, the driving mechanism is simultaneously actuated, which causes the conveyor belt to rotate. When the conveyor belt rotates, it can drive the support block to move. After the support block moves and drives the groove to move to one side of the chute, the textile roller can be moved into the groove for support and limitation. The movement of the conveyor belt will drive the support block to move, and then drive the textile roller to move through the groove, thereby achieving the purpose of conveying the textile roller. When the conveyor belt conveys the textile roller through the support block, the transfer component facilitates the movement of the conveyor belt. When the electromagnet works to generate magnetic force, the air extraction component will be actuated, and then a negative pressure will be formed inside the negative pressure component, thereby limiting the position of the textile roller and improving the stability of the textile roller.
[0009] Preferably, the transfer component includes an installation groove and a rotating wheel. The installation grooves are arranged in an array inside the support plate. The rotating wheel is rotatably arranged inside the installation groove and is located on one side of the conveyor belt. A controller is fixedly installed on the frame, and the controller is electrically connected to the electromagnet.
[0010] By adopting the above technical solution, the support plate provides an installation space for the rotating wheel through the installation groove. The rotating wheel can rotate to assist the movement of the conveyor belt, and the controller can control the electromagnet to work to generate magnetic force.
[0011] Preferably, the driving mechanism includes a driving rod, a driving motor, and a driving wheel. The driving rod is rotatably arranged inside the frame. The driving motor is fixedly installed on the frame, and the output end of the driving motor is fixedly connected to one end of the driving rod. The driving wheel is fixedly installed on the driving rod. A driven wheel is fixedly connected to the central position of one of the driving wheels, and the driving wheel and the driven wheel are connected by a belt in a transmission manner. The driving motor is electrically connected to the controller.
[0012] By adopting the above technical solution, controlling the operation of the driving motor will drive the driving rod to rotate. When the driving rod rotates, the driving wheel and the driven wheel cooperate to drive the driving wheel to rotate. A gear is fixedly installed on the driving wheel, and a flexible rack is fixedly arranged on the inner ring of the conveyor belt. The gear meshes with the flexible rack. Therefore, when the driving wheel rotates, it will drive the conveyor belt to move.
[0013] Preferably, the blanking assembly includes a support frame, a chute and a material blocking mechanism. The support frame is fixedly installed on the frame, the chute is fixedly installed on the support frame, and the material blocking mechanism is arranged on the chute.
[0014] By adopting the above technical solution, after the textile roller falls on the chute and slides to one side of the material blocking mechanism, the material blocking mechanism is used to limit the textile roller. By controlling the movement of the material blocking mechanism, the blanking of the textile roller can be controlled.
[0015] Preferably, the material blocking mechanism includes a receiving groove, an electric push rod and a baffle. The receiving groove is embedded in the chute, the electric push rod is fixedly installed on the receiving groove, the baffle is arranged inside the receiving groove, and one end of the electric push rod is fixedly connected to the baffle. The electric push rod is electrically connected to the controller.
[0016] By adopting the above technical solution, controlling the operation of the electric push rod will drive the baffle to move. After the baffle moves into the receiving groove, the baffle no longer limits the textile roller, and the textile roller will slide and fall, and then fall into the groove.
[0017] Preferably, the air extraction assembly includes a negative pressure groove, a guide rod, a return spring, a compression block and a magnetic attraction block. The negative pressure groove is arranged inside the support block and is located below the groove. The guide rod is fixedly installed inside the negative pressure groove. The return spring is arranged around the guide rod. The compression block is arranged inside the negative pressure groove, and the guide rod penetrates through the compression block. A sealing ring is arranged at the contact part between the guide rod and the compression block. One end of the return spring is fixedly connected to the compression block. The magnetic attraction block is fixedly installed below the compression block.
[0018] By adopting the above technical solution, the electromagnet works to generate magnetic force. After the conveyor belt moves and drives the support block to move above the electromagnet, the electromagnet will cause the magnetic attraction block to move downward. When the magnetic attraction block moves, it will drive the compression block to move. The guide rod can guide and limit the compression block. Therefore, the compression block and the negative pressure groove cooperate to extract the air inside the negative pressure assembly, and then the negative pressure assembly can form a negative pressure state to limit the textile roller and improve the stability of the textile roller.
[0019] Preferably, the negative pressure assembly includes an air extraction pipe, a negative pressure box, and a negative pressure head. The air extraction pipe is arranged inside the support block, and one end of the air extraction pipe is communicated with the negative pressure groove. The negative pressure box is embedded inside the support block, and the other end of the air extraction pipe is communicated with the negative pressure box. The negative pressure heads are arranged in an array on the top of the negative pressure box.
[0020] By adopting the above technical solution, the air inside the negative pressure box can be extracted through the cooperation of the negative pressure groove and the air extraction pipe, so that a negative pressure state can be formed inside the negative pressure box. When one end of the textile roller moves into the groove, the negative pressure head will be in contact with the textile roller, so that the top of the negative pressure head can be covered, and then a negative pressure will be generated to limit the position of the textile roller, thereby improving the stability of the position of the textile roller.
[0021] Preferably, one end of the negative pressure head is communicated with the groove, and the negative pressure head is disc-shaped.
[0022] By adopting the above technical solution, when a negative pressure state is formed inside the negative pressure head, the textile roller placed inside the groove can be limited.
[0023] Preferably, the negative pressure groove is connected with a pipe, and a cleaning assembly is arranged on the support block.
[0024] By adopting the above technical solution, when the compression block moves down, the air below the negative pressure groove will be squeezed, and the squeezed air will flow into the pipe, and the compressed air will flow to the outside through the pipe.
[0025] Preferably, the cleaning assembly includes a flow dividing groove and spray holes. The flow dividing groove is embedded inside the support block, and one end of the pipe is communicated with the flow dividing groove. The spray holes are arranged in an array on the flow dividing groove, and a filter screen for intercepting impurities is arranged inside the spray holes.
[0026] By adopting the above technical solution, the compressed air flows into the flow dividing groove through the pipe, and then the air entering the flow dividing groove will flow to the surface of the textile roller through the spray holes, so that the surface of the textile roller can be cleaned, thereby improving the cleanliness of the textile roller.
[0027] The beneficial effects of the present invention are as follows:
[0028] 1. A textile roller packaging and conveying device for textile processing according to the present invention can improve the stability of the textile roller by setting a negative pressure head, facilitating the smooth conveyance of the textile roller. When the electromagnet works to generate magnetic force, after the conveyor belt moves to drive the support block to move above the electromagnet, the electromagnet will cause the magnetic attraction block to move downward. When the magnetic attraction block moves, it will drive the compression block to move. The movement of the compression block can extract the air inside the negative pressure box through the cooperation of the negative pressure groove and the air extraction pipe, thereby forming a negative pressure state inside the negative pressure box. When one end of the textile roller moves into the groove, it will make the negative pressure head fit with the textile roller, thereby covering the top of the negative pressure head, and then generating negative pressure to limit the position of the textile roller, thus improving the stability of the position of the textile roller, enhancing the stability of the textile roller, ensuring that the textile roller maintains the correct position during packaging, reducing packaging defects or damage caused by shaking, improving the standardization degree of each package, making the product more consistent in appearance and protection. After the stability is improved, the packaging process is smoother, thereby accelerating the processing and delivery speed of the textile roller, effectively reducing losses caused by the shaking or dropping of the textile roller, thus reducing raw material losses and maintenance costs, reducing the dependence on manual intervention, reducing labor costs, and reducing rework or return fees caused by product defects.
[0029] 2. A textile roller packaging and conveying device for textile processing according to the present invention is convenient for cleaning the surface of the generated textile roller through the set spray holes and compression grooves, improving the quality of the textile roller. When the compression block moves downward, it will squeeze the air below in the negative pressure groove. The squeezed air flows into the pipeline, and through the pipeline, the compressed air flows into the diversion groove. Then, through the spray holes, the air entering the diversion groove will flow to the surface of the textile roller, thereby cleaning the surface of the textile roller, improving the cleanliness of the textile roller, effectively avoiding impurities from adsorbing on the surface of the textile roller, ensuring the quality of the final product, reducing the cleaning frequency of equipment and production lines, thus saving time and human resources and improving production efficiency.
[0030] 3. A textile roller packaging and conveying device for textile processing according to the present invention is convenient for the smooth blanking of the textile roller through the set chute and baffle. When the electric push rod works, it will drive the baffle to move. After the baffle moves into the storage groove, the baffle no longer limits the textile roller, and the textile roller will slide and fall, and then fall into the groove. The movement of the conveyor belt will drive the support block to move, and then drive the textile roller to move through the groove, thereby achieving the purpose of smoothly conveying the textile roller. BRIEF DESCRIPTION OF THE DRAWINGS
[0031] The present invention will be further described below with reference to the accompanying drawings.
[0032] Figure 1 is a three-dimensional view of the textile roller packaging and conveying device for textile processing of the present invention;
[0033] Figure 2 is a schematic structural diagram of the frame in the present invention;
[0034] Figure 3 is a schematic structural diagram of the storage groove in the present invention;
[0035] Figure 4 is a schematic structural diagram of the conveyor belt in the present invention;
[0036] Figure 5 is a schematic structural diagram of the support plate in the present invention;
[0037] Figure 6 is a schematic structural diagram of the support block in the present invention;
[0038] Figure 7 is a schematic structural diagram of the negative pressure groove in the present invention;
[0039] Figure 8 is a schematic structural diagram of the negative pressure box in the present invention.
[0040] In the figure: 1, chassis; 2, frame; 3, tank body; 4, support plate; 5, driving wheel; 6, driven wheel; 7, conveyor belt; 8, installation groove; 9, rotating wheel; 10, driving rod; 11, driving motor; 12, driving wheel; 13, support frame; 14, chute; 15, storage groove; 16, electric push rod; 17, baffle; 18, support block; 19, groove; 20, controller; 21, electromagnet; 22, negative pressure groove; 23, guide rod; 24, return spring; 25, compression block; 26, air extraction pipe; 27, negative pressure box; 28, negative pressure head; 29, magnetic attraction block; 30, pipeline; 31, diversion groove; 32, spray hole. 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 8As shown in the figure, a textile roller packaging and conveying device for textile processing according to an embodiment of the present invention includes a chassis 1. A frame 2 is fixedly connected to the top of the chassis 1. A blanking assembly is fixedly installed on the frame 2. Grooves 3 are symmetrically arranged inside the frame 2. A support plate 4 is fixedly installed inside the groove 3. A conveyor belt 7 is arranged around the support plate 4. Driving wheels 5 are symmetrically arranged inside the groove 3, and the two driving wheels 5 are drivingly connected through the conveyor belt 7. A driving mechanism for driving the conveyor belt 7 to move is arranged on the frame 2. Support blocks 18 are arranged in an array on the conveyor belt 7. A groove 19 for placing a textile roller is arranged on the support block 18. A negative pressure assembly for limiting the position of the textile roller is arranged inside the support block 18. Electromagnets 21 are arranged in an array on the support plate 4, and the electromagnets 21 are located on one side of the conveyor belt 7. An air extraction assembly is arranged inside the support block 18. A transfer assembly is arranged on the support plate 4. When using the textile roller packaging and conveying device for textile processing to convey the textile roller packaging, after the textile roller enters the chute 14, the driving mechanism is moved at the same time, and then the conveyor belt 7 will rotate. When the conveyor belt 7 rotates, it can drive the support block 18 to move. After the support block 18 moves and drives the groove 19 to move to one side of the chute 14, the textile roller can be moved into the groove 19 for support and limitation. The movement of the conveyor belt 7 will drive the support block 18 to move, and then the textile roller can be driven through the groove 19, so as to achieve the purpose of conveying the textile roller. When the conveyor belt 7 conveys the textile roller through the support block 18, the transfer assembly facilitates the movement of the conveyor belt 7. When the electromagnet 21 works to generate magnetic force, the air extraction assembly will move, and then a negative pressure will be formed inside the negative pressure assembly, so as to limit the position of the textile roller and improve the stability of the textile roller. When the negative pressure assembly moves, it will also compress air, and the compressed air will flow into the cleaning assembly. The cleaning assembly will make the wind flow to the surface of the textile roller, so as to clean the textile roller.
[0043] As Figure 4 shown, the transfer assembly includes an installation groove 8 and a rotating wheel 9. The installation grooves 8 are arranged in an array inside the support plate 4. The rotating wheel 9 is rotatably arranged inside the installation groove 8, and the rotating wheel 9 is located on one side of the conveyor belt 7. A controller 20 is fixedly installed on the frame 2, and the controller 20 is electrically connected to the electromagnet 21. The support plate 4 provides an installation space for the rotating wheel 9 through the installation groove 8. The rotating wheel 9 can rotate to assist the movement of the conveyor belt 7. The controller 20 can control the electromagnet 21 to work to generate magnetic force.
[0044] As Figure 1 、 Figure 2 and Figure 4As shown in the figure, the driving mechanism includes a driving rod 10, a driving motor 11 and a driving wheel 12. The driving rod 10 is rotatably arranged inside the frame 2. The driving motor 11 is fixedly installed on the frame 2, and the output end of the driving motor 11 is fixedly connected to one end of the driving rod 10. The driving wheel 12 is fixedly installed on the driving rod 10. A driven wheel 6 is fixedly connected to the center position of one of the driving wheels 5, and the driving wheel 12 and the driven wheel 6 are connected by a belt drive. The driving motor 11 is electrically connected to the controller 20. By controlling the driving motor 11 to work, the driving rod 10 can be driven to rotate. When the driving rod 10 rotates, the driving wheel 12 and the driven wheel 6 cooperate to drive the driving wheel 5 to rotate. A gear is fixedly installed on the driving wheel 5, and a flexible rack is fixedly arranged on the inner ring of the conveyor belt 7. The gear meshes with the flexible rack. This is a prior art. Therefore, when the driving wheel 5 rotates, the conveyor belt 7 will be driven to move.
[0045] As Figure 1 shown in the figure, the blanking component includes a support frame 13, a chute 14 and a material blocking mechanism. The support frame 13 is fixedly installed on the frame 2. The chute 14 is fixedly installed on the support frame 13. The material blocking mechanism is arranged on the chute 14. The frame 2 provides an installation space for the chute 14 through the support frame 13. After the textile roller falls on the chute 14 and slides to one side of the material blocking mechanism, the material blocking mechanism is used to limit the textile roller. By controlling the movement of the material blocking mechanism, the blanking of the textile roller can be controlled.
[0046] As Figure 1 and Figure 3 shown in the figure, the material blocking mechanism includes a receiving groove 15, an electric push rod 16 and a baffle 17. The receiving groove 15 is embedded in the chute 14. The electric push rod 16 is fixedly installed in the receiving groove 15. The baffle 17 is arranged inside the receiving groove 15, and one end of the electric push rod 16 is fixedly connected to the baffle 17. The electric push rod 16 is electrically connected to the controller 20. Controlling the electric push rod 16 to work will drive the baffle 17 to move. After the baffle 17 moves into the receiving groove 15, the baffle 17 no longer limits the textile roller, and the textile roller will slide and fall, and then fall into the groove 19.
[0047] As Figure 7As shown in the figure, the air extraction component includes a negative pressure groove 22, a guide rod 23, a return spring 24, a compression block 25, and a magnetic attraction block 29. The negative pressure groove 22 is arranged inside the support block 18 and is located below the groove 19. The guide rod 23 is fixedly installed inside the negative pressure groove 22. The return spring 24 is arranged around the guide rod 23. The compression block 25 is arranged inside the negative pressure groove 22, and the guide rod 23 penetrates through the compression block 25. A sealing ring is arranged at the contact part between the guide rod 23 and the compression block 25. One end of the return spring 24 is fixedly connected to the compression block 25. The magnetic attraction block 29 is fixedly installed below the compression block 25. When the electromagnet 21 works to generate magnetic force, after the conveyor belt 7 moves and drives the support block 18 to move above the electromagnet 21, the electromagnet 21 will cause the magnetic attraction block 29 to move downward. When the magnetic attraction block 29 moves, it will drive the compression block 25 to move. The guide rod 23 can guide and limit the compression block 25. Furthermore, the compression block 25 and the negative pressure groove 22 cooperate to extract the air inside the negative pressure component, and then the negative pressure component can form a negative pressure state to limit the textile roller, improving the stability of the textile roller. The conveyor belt 7 continues to move, driving the support block 18 to move. After it is no longer above the electromagnet 21, that is, no longer limiting the magnetic attraction block 29, the return spring 24 resets and can push the compression block 25 to reset.
[0048] As Figure 7 and Figure 8 shown in the figure, the negative pressure component includes an air extraction pipe 26, a negative pressure box 27, and a negative pressure head 28. The air extraction pipe 26 is arranged inside the support block 18, and one end of the air extraction pipe 26 is communicated with the negative pressure groove 22. The negative pressure box 27 is embedded inside the support block 18. The other end of the air extraction pipe 26 is communicated with the negative pressure box 27. The negative pressure heads 28 are arranged in an array on the top of the negative pressure box 27. When the compression block 25 moves, the air inside the negative pressure box 27 can be extracted through the cooperation of the negative pressure groove 22 and the air extraction pipe 26. Furthermore, a negative pressure state can be formed inside the negative pressure box 27. When one end of the textile roller moves into the groove 19, it will cause the negative pressure heads 28 to fit with the textile roller. Furthermore, the top of the negative pressure heads 28 can be covered, and then a negative pressure will be generated to limit the position of the textile roller, thereby improving the stability of the position of the textile roller.
[0049] As Figure 8 shown in the figure, one end of the negative pressure head 28 is communicated with the groove 19. The negative pressure head 28 is disc-shaped. When a negative pressure state is formed inside the negative pressure head 28, the textile roller placed inside the groove 19 can be limited.
[0050] As Figure 7 shown in the figure, the negative pressure groove 22 is connected with a pipeline 30. A cleaning component is arranged on the support block 18. When the compression block 25 moves downward, it will squeeze the air below the lower part of the negative pressure groove 22. The squeezed air flows into the pipeline 30, and through the pipeline 30, the compressed air will flow to the outside.
[0051] As Figure 6As shown, the cleaning component includes a diversion groove 31 and spray holes 32. The diversion groove 31 is embedded inside the support block 18, and one end of the pipeline 30 is connected to the diversion groove 31. The spray holes 32 are arranged in an array on the diversion groove 31, and a filter screen for intercepting impurities is arranged inside the spray holes 32. Compressed air flows into the diversion groove 31 through the pipeline 30. Then, the air flowing into the diversion groove 31 will flow towards the surface of the textile roller through the spray holes 32, thereby enabling the surface of the textile roller to be cleaned, improving the cleanliness of the textile roller. The filter screen can prevent impurities from entering the spray holes 32 and causing blockage of the spray holes 32.
[0052] Working principle: First, when using the textile roller packaging conveying device for textile processing to convey the textile roller packaging, after the textile roller falls on the chute 14 and slides to one side of the material blocking mechanism, the material blocking mechanism is used to limit the textile roller. Controlling the driving motor 11 to work will drive the driving rod 10 to rotate. When the driving rod 10 rotates, it will drive the driving wheel 12 and the driven wheel 6 to cooperate to drive the driving wheel 5 to rotate. A gear is fixedly installed on the driving wheel 5, and a flexible rack is fixedly arranged on the inner ring of the conveyor belt 7. The gear meshes with the flexible rack, which is the prior art. Therefore, when the driving wheel 5 rotates, it will drive the conveyor belt 7 to move. The conveyor belt 7 can drive the support block 18 to move. After the support block 18 moves and drives the groove 19 to move to one side of the chute 14, controlling the electric push rod 16 to work will drive the baffle 17 to move. After the baffle 17 moves into the storage groove 15, the baffle 17 no longer limits the textile roller, and the textile roller will slide and fall, and then fall into the groove 19. The movement of the conveyor belt 7 will drive the support block 18 to move, and then the textile roller can be driven through the groove 19, thus achieving the purpose of conveying the textile roller. When the conveyor belt 7 conveys the textile roller through the support block 18, the rotating wheel 9 can rotate to assist the movement of the conveyor belt 7. At the same time, the controller 20 can control the electromagnet 21 to work to generate magnetic force. When the electromagnet 21 works to generate magnetic force, after the conveyor belt 7 moves and drives the support block 18 to move above the electromagnet 21, the electromagnet 21 will cause the magnetic attraction block 29 to move downward. When the magnetic attraction block 29 moves, it will drive the compression block 25 to move. The guide rod 23 can guide and limit the compression block 25. When the compression block 25 moves, it can extract the air inside the negative pressure box 27 through the cooperation of the negative pressure groove 22 and the air extraction pipe 26, and then a negative pressure state can be formed inside the negative pressure box 27. When one end of the textile roller moves into the groove 19, it will make the negative pressure head 28 fit with the textile roller, and then the top of the negative pressure head 28 can be covered, and then a negative pressure will be generated to limit the position of the textile roller, thus improving the stability of the position of the textile roller and the stability of the textile roller. When the compression block 25 moves downward, it will squeeze the air below the negative pressure groove 22. The squeezed air flows into the pipe 30, and through the pipe 30, the compressed air flows into the diversion groove 31. Then, through the spray holes 32, the air entering the diversion groove 31 will flow to the surface of the textile roller, and then the surface of the textile roller can be cleaned, thus improving the cleanliness of the textile roller and effectively avoiding impurities from adsorbing on the surface of the textile roller.
[0053] The above shows and describes the basic principles, main features and advantages of the present invention. Those skilled in the art of this industry should understand that the present invention is not limited by the above embodiments. What is described in the above embodiments and the specification only illustrates the principles 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 all fall within the scope of the present invention claimed. The scope of protection claimed by the present invention is defined by the appended claims and their equivalents.
Claims
1. A textile roller packaging and conveying device for textile processing, characterized in that: It includes a chassis (1), a frame (2) is fixedly connected to the top of the chassis (1), a blanking component is fixedly installed on the frame (2), troughs (3) are symmetrically arranged inside the frame (2), a support plate (4) is fixedly installed inside the troughs (3), a conveyor belt (7) is arranged around the support plate (4), driving wheels (5) are symmetrically arranged inside the troughs (3), and the two driving wheels (5) are drivingly connected through the conveyor belt (7). A driving mechanism for driving the conveyor belt (7) to move is arranged on the frame (2). Support blocks (18) are arranged in an array on the conveyor belt (7), grooves (19) for placing textile rollers are arranged on the support blocks (18), a negative pressure component for limiting the textile rollers is arranged inside the support blocks (18), electromagnets (21) are arranged in an array on the support plate (4), and the electromagnets (21) are located on one side of the conveyor belt (7). An air extraction component is arranged inside the support blocks (18), and a transfer component is arranged on the support plate (4).
2. The textile roller packaging and conveying device for textile processing according to claim 1, wherein: The transfer component includes installation grooves (8) and rotating wheels (9). The installation grooves (8) are arranged in an array inside the support plate (4). The rotating wheels (9) are rotatably arranged inside the installation grooves (8), and the rotating wheels (9) are located on one side of the conveyor belt (7). A controller (20) is fixedly installed on the frame (2), and the controller (20) is electrically connected to the electromagnet (21).
3. The textile roller packaging and conveying device for textile processing according to claim 2, characterized in that: The driving mechanism includes a driving rod (10), a driving motor (11) and a driving wheel (12). The driving rod (10) is rotatably arranged inside the frame (2). The driving motor (11) is fixedly installed on the frame (2), and the output end of the driving motor (11) is fixedly connected to one end of the driving rod (10). The driving wheel (12) is fixedly installed on the driving rod (10). A driven wheel (6) is fixedly connected to the central position of one of the driving wheels (5), and the driving wheel (12) is drivingly connected to the driven wheel (6) through a belt. The driving motor (11) is electrically connected to the controller (20).
4. A textile roller packaging and conveying device for textile processing according to claim 3, characterized in that: The blanking component includes a support frame (13), a chute (14) and a material blocking mechanism. The support frame (13) is fixedly installed on the frame (2). The chute (14) is fixedly installed on the support frame (13). The material blocking mechanism is arranged on the chute (14).
5. A textile roller packaging and conveying device for textile processing according to claim 4, characterized in that: The material blocking mechanism includes a storage groove (15), an electric push rod (16) and a baffle (17). The storage groove (15) is embedded in the chute (14). The electric push rod (16) is fixedly installed on the storage groove (15). The baffle (17) is arranged inside the storage groove (15), and one end of the electric push rod (16) is fixedly connected to the baffle (17). The electric push rod (16) is electrically connected to the controller (20).
6. A textile roller packaging and conveying device for textile processing according to claim 1, characterized in that: The air extraction assembly includes a negative pressure groove (22), a guide rod (23), a return spring (24), a compression block (25), and a magnetic attraction block (29). The negative pressure groove (22) is arranged inside the support block (18), and the negative pressure groove (22) is located below the groove (19). The guide rod (23) is fixedly installed inside the negative pressure groove (22). The return spring (24) is arranged around the guide rod (23). The compression block (25) is arranged inside the negative pressure groove (22), and the guide rod (23) penetrates through the compression block (25). A sealing ring is arranged at the contact part between the guide rod (23) and the compression block (25). One end of the return spring (24) is fixedly connected to the compression block (25). The magnetic attraction block (29) is fixedly installed below the compression block (25).
7. A textile roller packaging and conveying device for textile processing according to claim 6, characterized in that: The negative pressure assembly includes an air extraction pipe (26), a negative pressure box (27), and a negative pressure head (28). The air extraction pipe (26) is arranged inside the support block (18), and one end of the air extraction pipe (26) is communicated with the negative pressure groove (22). The negative pressure box (27) is embedded inside the support block (18), and the other end of the air extraction pipe (26) is communicated with the negative pressure box (27). The negative pressure heads (28) are arranged in an array on the top of the negative pressure box (27).
8. A textile roller packaging and conveying device for textile processing according to claim 7, characterized in that: One end of the negative pressure head (28) is communicated with the groove (19), and the negative pressure head (28) is disc-shaped.
9. A textile roller packaging and conveying device for textile processing according to claim 8, characterized in that: The negative pressure groove (22) is connected with a pipeline (30), and a cleaning assembly is arranged on the support block (18).
10. A textile roller packaging and conveying device for textile processing according to claim 9, characterized in that: The cleaning assembly includes a diversion groove (31) and spray holes (32). The diversion groove (31) is embedded inside the support block (18), and one end of the pipeline (30) is communicated with the diversion groove (31). The spray holes (32) are arranged in an array on the diversion groove (31), and a filter screen for intercepting impurities is arranged inside the spray holes (32).
Citation Information
Patent Citations
Textile roller packaging and conveying device for textile processing
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