Auxiliary drying and conveying device and method for paper products

By designing a paper product auxiliary drying transmission device with a guide transmission structure and a distribution guide structure, the problem of difficulty in multi-channel rapid guide transmission and classification conduction in the prior art is solved, efficient paper roll transmission and distribution is achieved, and labor costs are reduced.

CN120172058APending Publication Date: 2025-06-20盐城市聚力纸制品加工有限公司
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Patent Information

Application Number
CN202510604976.8
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-12
Publication Date
2025-06-20

AI Technical Summary

Technical Problem

The existing paper product auxiliary drying and transmission devices cannot perform multi-channel rapid guidance transmission, and it is difficult to perform classified conduction of different types of paper rolls. It is easy to cause inadequate transportation of paper rolls or deviations, resulting in pauses and jams, which increases labor costs and inefficiency.

Method used

A paper product auxiliary drying conveying device including a guide transport structure and a dispensing guide structure is designed. The guide transmission structure realizes the transfer and drying of paper rolls through the introduction parts and the drying parts, and the distribution guide structure realizes the limit and distribution transmission of paper rolls through components such as distribution parts, limit blocking frames and transmission channels.

Benefits of technology

Multi-channel rapid guided transmission of paper rolls and classified conduction of different types of paper rolls are realized, which avoids pauses in paper roll transportation, improves transportation efficiency, and reduces manual intervention.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of paper product production, in particular to a paper product auxiliary drying and conveying device and method.The paper product auxiliary drying and conveying device comprises a guide conveying structure and a distribution guide structure, the side end of the guide conveying structure communicates with the distribution guide structure, and the upper portion of the guide conveying structure and the upper portion of the distribution guide structure are located at the same horizontal position; the guiding and conveying structure comprises a guiding-in component and a drying component, and the side end of the guiding-in component communicates with the drying component; the distribution guiding structure comprises a distribution part, a fixed butt joint rod frame, a limiting grid blocking frame, a conveying channel, a guiding disc and a fixed bracket, the guiding disc is fixedly connected to the fixed bracket, the distribution part is installed at the upper end of the guiding disc, and the side end of the guiding disc is provided with the conveying channel in a communicating mode; and the outer edge of the guide disc is fixedly connected with a limiting block frame, and the side end of the fixed bracket is fixedly connected with a fixed butt joint rod frame. And through the arrangement of the structure, paper product production work is facilitated.
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Description

Technical Field

[0001] The present invention relates to the technical field of paper product production, and specifically, to an auxiliary drying and conveying device and method for paper products. Background Art

[0002] The auxiliary drying and conveying device for paper products can be used for the transmission and guidance of paper rolls, enabling the paper rolls to be dried during transmission, facilitating subsequent winding work of paper products, and being applicable to industrial production of paper products.

[0003] According to Chinese Patent Publication No. CN118850687A, there is disclosed an automatic material conveying device for industrial automation production equipment of paper products, which relates to the technical field of paper product production and processing. It includes a frame, and a protective cover is fixedly connected to the top of the frame. A conveyor belt assembly one and a conveyor belt assembly two are respectively installed on both sides of the protective cover. In the present invention, one side of the guide plate is respectively connected to a hydraulic cylinder one and a telescopic rod. The guide plate is connected to an extension bar through a connecting bar. The hydraulic cylinder one can drive the guide plate to move above the conveyor belt assembly one, and the telescopic rod can guide the movement of the guide plate, thereby improving the stability of the guide plate during movement. By using two guide plates to limit the movement range of the paper product above the conveyor belt body, the position deviation of the paper product can be reduced, ensuring the accuracy of subsequent material conveying. By using a cleaning roller and a pressing roller to respectively clean and press the top of the paper product, the flatness of the paper product can be improved.

[0004] Currently, the existing auxiliary drying and conveying devices for paper products and the above-mentioned case, when in use, cannot perform multi-channel fast guiding and conveying work, and are not convenient for classifying and conducting different types of paper rolls; at the same time, during fast channel transmission, there are often situations where the transportation of the paper roll is not in place or it runs off track and gets stuck and cannot be transported. At this time, only manual intervention can be carried out to resume, which increases the labor cost and results in low efficiency; therefore, improvements are made for the above problems. Summary of the Invention

[0005] In view of the problems in the prior art, the present invention provides an auxiliary drying and conveying device and method for paper products.

[0006] The technical solution adopted by the present invention to solve its technical problems is: an auxiliary drying and conveying device and method for paper products, including a guiding and conveying structure and a distribution and guiding structure. The side end of the guiding and conveying structure is communicatively connected with the distribution and guiding structure, and the upper parts of the guiding and conveying structure and the distribution and guiding structure are at the same horizontal position;

[0007] The guiding and conveying structure, the guiding and conveying structure includes an introducing component and a drying component, and the side end of the introducing component is communicatively connected with the drying component;

[0008] The distribution guiding structure includes a distribution component, a fixed docking rod frame, a limit baffle frame, a transmission channel, a guiding disc and a fixed bracket. A guiding disc is fixedly connected to the fixed bracket. A distribution component is installed at the upper end of the guiding disc. A transmission channel is communicated and arranged at the side end of the guiding disc. A limit baffle frame is fixedly connected to the outer edge position of the guiding disc. A fixed docking rod frame is fixedly connected to the side end of the fixed bracket.

[0009] Specifically, the guiding-in component includes a guide and discharge cone seat, a sealing guide plate, a first electric telescopic seat and a telescopic baffle frame. A sealing guide plate is fixedly connected to the side end of the guide and discharge cone seat. A first electric telescopic seat is fixedly installed at the side end of the sealing guide plate. A telescopic baffle frame is telescopically connected to the lower end of the first electric telescopic seat.

[0010] Specifically, the drying component includes a heating blower, a communicating mounting seat, a regulating heating plate, a second electric telescopic seat and a limit mounting seat. A second electric telescopic seat is fixedly installed on the limit mounting seat. A regulating heating plate is telescopically connected to the lower end of the second electric telescopic seat. A communicating mounting seat is installed at the middle position of the regulating heating plate. A heating blower is installed at the upper end of the communicating mounting seat. Through the structural setting of the guiding and transmission structure, the transmission of the paper roll is facilitated. The paper roll is guided into the transmission seat through the guiding-in component and then undergoes drying treatment through the drying component. The paper roll is guided and discharged through the guide and discharge cone seat and the sealing guide plate. The first electric telescopic seat controls the telescopic adjustment of the telescopic baffle frame to control the transmission of the paper roll. Then the transmission seat reaches the drying component, and the second electric telescopic seat can control the telescopic adjustment of the regulating heating plate to change the heights of the heating blower, the communicating mounting seat and the regulating heating plate, so as to perform adjustable drying treatment on the paper roll.

[0011] Specifically, the distribution component includes a limit sleeve frame, a fitting key shaft, a rotating guide frame, a limit end block frame, a rear plate, a cooperating adjustment rotating shaft, a stable limit docking seat and a connecting combined support rod. The fitting key shaft and the limit sleeve frame are arranged in a limited way. A connecting combined support rod is fixedly connected to the lower end of the limit sleeve frame. A stable limit docking seat is fixedly connected to the lower end of the connecting combined support rod. A cooperating adjustment rotating shaft is fixedly connected to the center of the stable limit docking seat. A fitting key shaft is fixedly connected to the cooperating adjustment rotating shaft. A rotating guide frame is fixedly connected to the side ends of the fitting key shaft and the cooperating adjustment rotating shaft.

[0012] Specifically, a stepping motor is arranged on the guiding disc to drive the fitting key shaft and the cooperating adjustment rotating shaft to be rotationally connected, and the limit sleeve frame and the fitting key shaft drive the rotating guide frame, the stable limit docking seat and the connecting combined support rod to be rotationally connected.

[0013] Specifically, a movable arc frame is movably connected to the rotating guide frame. A limiting end block frame is fixedly connected to the rear end of the movable arc frame. A rear plate is fixedly connected to the bottom of the rotating guide frame, and an electric propulsion seat is fixedly installed on the rear plate. A first contact roller is telescopically connected to the side end of the electric propulsion seat.

[0014] Specifically, a swing adjustment rod is fixedly connected to the middle of the matching adjustment rotating shaft. A rotating shaft sleeve is fixedly connected to the side end of the swing adjustment rod. A control motor is fixedly connected to the rotating shaft sleeve. The control motor is installed on the rotating guide frame in a limited position. A third contact roller is rotatably sleeved on the bottom of the movable arc frame.

[0015] Specifically, a second contact roller is rotatably provided on the side of the lower end of the rotating guide frame away from the rear plate. The control motor is drivingly connected to the swing adjustment rod through the rotating shaft sleeve. The movable arc frame is movably connected to the rotating guide frame through the swing adjustment rod. There is a gap between the third contact roller and the second contact roller.

[0016] Specifically, the distribution component is rotatably connected to the guiding disc, and limiting blocking frames are fixedly provided at the four corners of the guiding disc. There are three transmission channels, and the three transmission channels are arranged at a 90-degree distribution.

[0017] Specifically, a transmission seat is fixedly connected to the side end of the fixed docking rod frame. An introducing component and a drying component are installed on the transmission seat. The introducing component is communicated with the drying component through the transmission seat, and the side end of the transmission seat is communicated with the guiding disc.

[0018] Specifically, the lower end of the adaptor key shaft is drivingly connected to a matching support. A main push rod is installed at the center of the matching support. The side end of the main push rod is telescopically connected to the docking frame. An articulated connecting rod is fixedly connected to the docking frame. A driven push rod is articulated on the articulated connecting rod, and the side end of the driven push rod is articulated with the matching support. There are two driven push rods, which are symmetrically arranged with respect to the main push rod. The two driven push rods are designed in a triangular structure. A photoelectric sensor is installed on the transmission channel. The photoelectric sensor is electrically connected to a guiding stepping motor. The guiding stepping motor is supported and connected through a mounting support plate. A guiding wheel blade is drivingly connected to the guiding stepping motor. There are six guiding wheel blades, and the angle difference between every two is 60°. The guiding stepping motor controls the guiding wheel blade to rotate 60° each time.

[0019] The beneficial effects of the present invention:

[0020] (1) Through the structural arrangement of the guiding transmission structure, the present invention facilitates the transmission of paper rolls. The paper roll is imported onto the transmission base through the import component, and then undergoes drying treatment through the drying component. The paper roll is discharged through the guiding discharge cone base and the sealing guiding plate, and the first electric telescopic seat controls the telescopic adjustment of the telescopic blocking frame to control the transmission of the paper roll. Then, the transmission base reaches the drying component, and the second electric telescopic seat can control the telescopic adjustment of the regulating heating plate to change the heights of the heating fan, the connecting mounting seat, and the regulating heating plate, thereby performing adjustable drying treatment on the paper roll.

[0021] (2) Through the structural arrangement of the distribution guiding structure, the present invention facilitates the distributed transmission of paper rolls. They reach the guiding disk through the guiding transmission structure. At this time, the distribution component contacts the paper roll to limit the paper roll. Then, the distribution component rotates at an angle on the guiding disk to change the position of the paper roll. Then, the paper roll is pushed by the electric propulsion seat and the first contact roller to reach the designated transmission channel. And a limiting structure is provided inside the distribution component, and the control motor can control the rotation of the rotating shaft sleeve, thereby driving the swinging adjustment rod to move and adjust. The swinging adjustment rod drives the movable arc frame to rotate, changing the position of the third contact roller. Thus, the paper roll is limited by the second contact roller and the third contact roller. And the center position of the movable arc frame coincides with the center of the control motor, facilitating concentric control work to achieve the limited transmission of the paper roll.

[0022] (3) Through the coordinated cooperation of the movable arc frame 35, the third contact roller 34, and the first contact roller 30, the present invention can not only quickly limit and fix the roll paper to prevent deviation, but also quickly release the limiting effect on the roll paper without causing interference, thereby efficiently forming the automatic transportation of the roll paper; through the cooperation of the docking frame 39, the matching support 40, and the guiding wheel blades 42, the present invention not only avoids the situation where the roll paper cannot enter the distribution guiding structure 2 due to the improper position when entering the distribution guiding structure 2 through the transmission base, but also can be quickly distributed to each transmission channel 17 through the limitation of the guiding impeller 42, thus preventing the problem of roll paper transportation pause without manual operation and improving the transportation efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0023] The present invention will be further described below with reference to the drawings and embodiments.

[0024] Figure 1 It is a three-dimensional structural schematic diagram of the front view angle of the main body in the present invention;

[0025] Figure 2 It is a three-dimensional structural schematic diagram of the side view angle of the main body in the present invention;

[0026] Figure 3 It is a three-dimensional structural schematic diagram of the rear view angle of the main body in the present invention;

[0027] Figure 4Isometric view of the guiding transmission structure in the present invention;

[0028] Figure 5 Isometric view of the introducing component in the present invention;

[0029] Figure 6 Isometric view of the drying component in the present invention;

[0030] Figure 7 Isometric view of the distribution guiding structure in the present invention;

[0031] Figure 8 Isometric structure diagram of the distribution component in the present invention;

[0032] Figure 9 Rear isometric structure view of the distribution component in the present invention;

[0033] Figure 10 Isometric view of the second embodiment of the distribution guiding structure in the present invention;

[0034] Figure 11 Partial isometric view of the second embodiment of the distribution guiding structure in the present invention.

[0035] In the figure: 1 - guiding transmission structure, 2 - distribution guiding structure, 3 - introducing component, 4 - drying component, 5 - guide discharge cone seat, 6 - sealing guide plate, 7 - first electric telescopic seat, 8 - telescopic partition frame, 9 - heating blower, 10 - connecting mounting seat, 11 - regulating heating plate, 12 - second electric telescopic seat, 13 - limiting mounting seat, 14 - distribution component, 15 - fixed docking rod frame, 16 - limiting partition frame, 17 - transmission channel, 18 - guiding disc, 19 - fixed bracket, 20 - limiting sleeve frame, 21 - adapter key shaft, 22 - rotating guide frame, 23 - limiting end block frame, 24 - rear plate, 25 - cooperating adjustment rotating shaft, 26 - stable limiting docking seat, 27 - connecting combined support rod, 28 - rotating shaft sleeve, 29 - electric propulsion seat, 30 - first contact roller, 31 - control motor, 32 - swing adjustment rod, 33 - second contact roller, 34 - third contact roller, 35 - movable arc frame, 36 - driven derivation connecting rod, 37 - articulated connecting rod, 38 - main push rod, 39 - docking frame, 40 - cooperating support, 41 - guiding stepping motor, 42 - guiding wheel blade, 43 - mounting support plate, 44 - photoelectric sensor. Detailed implementation manners

[0036] To enable those skilled in the art to better understand the solution of this application, the following will clearly and completely describe the technical solution in the embodiments of this application in conjunction with the accompanying drawings in the embodiments of this application. Obviously, the described embodiments are only a part of the embodiments of this application, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments in this application without creative efforts shall fall within the scope of protection of this application.

[0037] The present invention will be further described below in conjunction with the accompanying drawings.

[0038] Embodiment 1

[0039] As Figures 1-9 shown, a paper product auxiliary drying and conveying device and method of the present invention includes a guiding and conveying structure 1 and a distributing and guiding structure 2. The side end of the guiding and conveying structure 1 is communicatively connected with the distributing and guiding structure 2, and the upper parts of the guiding and conveying structure 1 and the distributing and guiding structure 2 are at the same horizontal position;

[0040] The guiding and conveying structure 1 includes an introducing component 3 and a drying component 4, and the side end of the introducing component 3 is communicatively connected with the drying component 4;

[0041] The distributing and guiding structure 2 includes a distributing component 14, a fixed docking rod frame 15, a limiting partition frame 16, a transmission channel 17, a guiding disk 18 and a fixed bracket 19. The guiding disk 18 is fixedly connected to the fixed bracket 19. The distributing component 14 is installed at the upper end of the guiding disk 18. The transmission channel 17 is communicatively provided at the side end of the guiding disk 18. The limiting partition frame 16 is fixedly connected to the outer edge position of the guiding disk 18. The fixed docking rod frame 15 is fixedly connected to the side end of the fixed bracket 19.

[0042] The introducing component 3 includes a guide and discharge cone seat 5, a sealing guide plate 6, a first electric telescopic seat 7 and a telescopic partition frame 8. The side end of the guide and discharge cone seat 5 is fixedly connected with the sealing guide plate 6. The first electric telescopic seat 7 is fixedly installed at the side end of the sealing guide plate 6. The telescopic partition frame 8 is telescopically connected to the lower end of the first electric telescopic seat 7. Through machinery, the paper roll is placed into the guide and discharge cone seat 5 and the sealing guide plate 6 for storage work, and the transmission seat is at the lower end of the guide and discharge cone seat 5 and the sealing guide plate 6 and can push the paper roll to move. When production is required, at this time, the first electric telescopic seat 7 controls the telescopic partition frame 8 to contract, so that the paper roll is transmitted through the transmission seat, and then the first electric telescopic seat 7 controls the telescopic partition frame 8 to descend for subsequent limiting of the paper roll.

[0043] The drying component 4 includes a heating blower 9, a connecting mounting base 10, a regulating heating plate 11, a second electric telescopic base 12, and a limiting mounting base 13. The paper roll reaches the drying component 4 through the transmission base. At this time, the second electric telescopic base 12 can control the height adjustment of the regulating heating plate 11, changing the heights of the heating blower 9, the connecting mounting base 10, and the regulating heating plate 11, so as to dry the paper roll and prevent moisture problems inside. The second electric telescopic base 12 is fixedly installed on the limiting mounting base 13. The lower end of the second electric telescopic base 12 is telescopically connected to the regulating heating plate 11. The connecting mounting base 10 is installed at the middle position of the regulating heating plate 11. The heating blower 9 is installed at the upper end of the connecting mounting base 10. Through the structural setting of the guiding transmission structure 1, the transmission of the paper roll is facilitated. The paper roll is introduced onto the transmission base through the introducing component 3, and then undergoes drying treatment through the drying component 4. The paper roll is discharged through the guiding discharge cone seat 5 and the sealing guide plate 6, and the first electric telescopic base 7 controls the telescopic adjustment of the telescopic blocking frame 8 to control the transmission of the paper roll. Then the transmission base reaches the drying component 4, and the second electric telescopic base 12 can control the telescopic adjustment of the regulating heating plate 11, changing the heights of the heating blower 9, the connecting mounting base 10, and the regulating heating plate 11, so as to perform adjustable drying treatment on the paper roll.

[0044] The distribution component 14 includes a limiting sleeve frame 20, an adaptor key shaft 21, a rotating guide frame 22, a limiting end block frame 23, a rear plate 24, a cooperating adjustment rotating shaft 25, a stable limiting docking seat 26, and a connecting combined support rod 27. The adaptor key shaft 21 is limit - set with the limiting sleeve frame 20. The lower end of the limiting sleeve frame 20 is fixedly connected to the connecting combined support rod 27, and the lower end of the connecting combined support rod 27 is fixedly connected to the stable limiting docking seat 26. The cooperating adjustment rotating shaft 25 is fixedly connected to the center of the stable limiting docking seat 26. The adaptor key shaft 21 is fixedly connected to the cooperating adjustment rotating shaft 25. The rotating guide frame 22 is fixedly connected to the side ends of the adaptor key shaft 21 and the cooperating adjustment rotating shaft 25. The paper roll is guided to the guiding disk 18 through the transmission base. At this time, the motor controls the rotation of the distribution component 14 on the guiding disk 18, and the fixed bracket 19 supports the guiding disk 18 and the motor. The motor transmits power through the cooperating adjustment rotating shaft 25 and the adaptor key shaft 21, causing the rotating guide frame 22, the stable limiting docking seat 26, the connecting combined support rod 27, and the limiting sleeve frame 20 to move accordingly, realizing the overall rotation adjustment.

[0045] A stepping motor is provided on the guiding disk 18 to drive the rotational connection of the adaptor key shaft 21 and the cooperating adjustment rotating shaft 25, and the limiting sleeve frame 20 and the adaptor key shaft 21 drive the rotational connection of the rotating guide frame 22, the stable limiting docking seat 26, and the connecting combined support rod 27.

[0046] A movable arc frame 35 is movably connected to the rotating guide frame 22, and the rear end of the movable arc frame 35 is fixedly connected to the limited end block frame 23. The bottom of the rotating guide frame 22 is fixedly connected to the rear plate 24, and an electric propulsion seat 29 is fixedly installed on the rear plate 24. The side end of the electric propulsion seat 29 is telescopically connected to the first contact roller 30.

[0047] The middle part of the adjusting shaft 25 is fixedly connected with a swing adjusting rod 32, and the side end of the swing adjusting rod 32 is fixedly connected with a rotating sleeve 28. The rotating sleeve 28 is fixedly connected with a control motor 31. The control motor 31 is installed at the upper limit position of the rotating guide frame 22. The bottom of the movable arc frame 35 is rotatably sleeved with a third contact roller 34. When the paper roll reaches the front end of the second contact roller 33, the control motor 31 drives the rotating sleeve 28 to rotate, so that the rotating sleeve 28 drives the movable arc frame 35 to rotate and adjust through the swing adjusting rod 32. The movable arc frame 35 surrounds the movable arc frame 35. The rotating sleeve 28 rotates around the center of the circle to change the position of the third contact roller 34, so that the third contact roller 34 and the second contact roller 33 limit the paper roll. Then the motor controls the distribution component 14 to rotate as a whole, so that the paper roll reaches the appropriate transmission channel 17 position. At this time, the electric propulsion seat 29 works to push the first contact roller 30 to move. At the same time, the third contact roller 34 and the movable arc frame 35 are reset to cancel the limitation of the paper roll. Under the push of the first contact roller 30, the paper roll reaches the designated transmission channel 17 position, thereby achieving the purpose of distribution and transmission.

[0048] A second contact roller 33 is rotatably provided on the side of the lower end of the rotating guide frame 22 away from the rear plate 24. The control motor 31 is driven and connected to the swing adjustment rod 32 through the rotating shaft sleeve 28. The movable arc frame 35 is movably connected to the rotating guide frame 22 through the swing adjustment rod 32. There is a gap between the third contact roller 34 and the second contact roller 33.

[0049] The distribution component 14 is rotatably connected to the guide disk 18, and the guide disk 18 is fixedly provided with limit blocking frames 16 at the four corners. There are three transmission channels 17, and each transmission channel 17 is distributed at ninety degrees. The side end of the fixed docking rod frame 15 is fixedly connected to the transmission seat, and the introduction component 3 and the drying component 4 are installed on the transmission seat. The introduction component 3 is connected with the drying component 4 through the transmission seat, and the side end of the transmission seat is connected with the guide disk 18.

[0050] The working principle is as follows: when in use, the paper roll is placed into the guide cone seat 5 and the sealing guide plate 6 by a machine for storage, and the transmission seat is at the lower end of the guide cone seat 5 and the sealing guide plate 6, which can push the paper roll to move. When production is required, the first electric telescopic seat 7 controls the telescopic grid frame 8 to contract, so that the paper roll is transmitted through the transmission seat, and then the first electric telescopic seat 7 controls the telescopic grid frame 8 to descend to limit the subsequent paper rolls;

[0051] After that, the paper roll reaches the drying component 4 through the transfer seat. At this time, the second electric telescopic seat 12 can control the regulating heating plate 11 to adjust its height, changing the heights of the heating fan 9, the connecting mounting seat 10, and the regulating heating plate 11, so as to dry the paper roll and prevent moisture problems inside.

[0052] After that, the paper roll is guided to the guiding disk 18 through the transfer seat. At this time, the motor controls the distribution component 14 to rotate on the guiding disk 18, and the fixed bracket 19 supports the guiding disk 18 and the motor. The motor transmits power through the cooperating adjusting rotating shaft 25 and the adapting key shaft 21, causing the rotating guide frame 22, the stable limiting docking seat 26, the connecting combined support rod 27, and the limiting sleeve frame 20 to move accordingly, achieving overall rotational adjustment.

[0053] At this time, when the paper roll reaches the front end of the second contact roller 33, the motor 31 is controlled to drive, driving the rotating shaft sleeve 28 to rotate. The rotating shaft sleeve 28 drives the movable arc frame 35 to rotate and adjust through the swinging adjusting rod 32. The movable arc frame 35 rotates around the center of the rotating shaft sleeve 28, changing the position of the third contact roller 34, so that the third contact roller 34 and the second contact roller 33 limit the paper roll. Then, the motor controls the overall rotation of the distribution component 14, causing the paper roll to reach the appropriate position of the transfer channel 17. At this time, the electric propulsion seat 29 operates to push the first contact roller 30 to move. At the same time, the third contact roller 34 and the movable arc frame 35 reset to cancel the limitation of the paper roll. Under the push of the first contact roller 30, the paper roll reaches the designated position of the transfer channel 17, achieving the purpose of distribution transfer and completing the work.

[0054] Through the coordinated cooperation of the movable arc frame 35, the third contact roller 34, and the first contact roller 30, the present invention can not only quickly limit and fix the rolled paper to prevent deviation, but also quickly release the limiting effect on the rolled paper without causing interference, thereby efficiently achieving the automatic transportation of the rolled paper.

[0055] Embodiment 2

[0056] On the basis of Embodiment 1, as Figures 10-11As shown in the figure, the lower end of the adapter key shaft 21 is drivingly connected to a mating support 40. A main push rod 38 is installed at the center of the mating support 40. The side end of the main push rod 38 is telescopically connected to a docking frame 39. A hinged connecting rod 37 is fixedly connected to the docking frame 39. A driven derivation connecting rod 36 is hinged on the hinged connecting rod 37. The side end of the driven derivation connecting rod 36 is hinged to the mating support 40. There are two driven derivation connecting rods 36, which are symmetrically arranged with respect to the main push rod 38. The two driven derivation connecting rods 36 are designed in a triangular structure. An optoelectronic sensor 44 is installed on the transmission channel 17. An induction stepping motor 41 is electrically connected to the optoelectronic sensor 44. The induction stepping motor 41 is supported and connected by a mounting support plate 43. A guiding vane 42 is drivingly connected to the induction stepping motor 41. There are six guiding vanes 42, and the angular difference between every two is 60°. The induction stepping motor 41 controls the guiding vane 42 to rotate 60° each time.

[0057] During use, at this time, the docking frame 39 and the mating support 40 replace the rotating guide frame 22 in the original solution. The mating support 40 controls the position of the docking frame 39 through the main push rod 38. There is a hinged connecting rod 37 on the docking frame 39. The driven derivation connecting rod 36 is hinged on the hinged connecting rod 37. The driven derivation connecting rod 36 cooperates with the main push rod 38 for telescopic adjustment to improve the control stability. Through telescoping, the main push rod 38 can change the distance between the docking frame 39 and the mating support 40, enabling the position of the docking frame 39 to be adjusted, thus facilitating the subsequent paper tube transmission, allowing the paper tube to be accurately pushed onto the transmission channel 17, avoiding problems such as insufficient paper tube thrust resulting in inability to transmit. The optoelectronic sensor 44 can sense the position of the paper tube. At this time, the guiding vane 42 blocks the paper tube. When transmission is required, the induction stepping motor 41 can control the guiding vane 42 to rotate 60 degrees, thus realizing the guiding work of the paper tube and being able to adjust the input of the paper tube in coordination with the production efficiency.

[0058] Through the cooperation of the docking frame 39, the mating support 40 and the guiding vane 42, the present invention not only avoids the situation where the roll paper cannot enter the distribution guiding structure 2 due to the roll paper position not being in place when the roll paper passes through the transmission seat into the distribution guiding structure 2, but also can be quickly distributed to each transmission channel 17 through the limitation of the guiding impeller 42, thereby preventing the problem of roll paper transportation pause without manual operation and improving the transportation efficiency.

[0059] 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. A paper product auxiliary drying and conveying device and method, characterized in that: It comprises a guiding transmission structure (1) and a distributing guiding structure (2), wherein the side end of the guiding transmission structure (1) is connected to the distributing guiding structure (2), and the upper parts of the guiding transmission structure (1) and the distributing guiding structure (2) are at the same horizontal position; A guide transmission structure (1), the guide transmission structure (1) comprising an introduction component (3) and a drying component (4), the side end of the introduction component (3) being connected to the drying component (4); The distribution guide structure (2) comprises a distribution component (14), a fixed docking rod frame (15), a position limiting blocking frame (16), a transmission channel (17), a guide plate (18) and a fixed bracket (19); the fixed bracket (19) is fixedly connected with the guide plate (18); the upper end of the guide plate (18) is mounted with the distribution component (14); the side end of the guide plate (18) is connected with the transmission channel (17); the outer edge of the guide plate (18) is fixedly connected with the position limiting blocking frame (16); the side end of the fixed bracket (19) is fixedly connected with the fixed docking rod frame (15).

2. A paper product auxiliary drying and conveying device and method according to claim 1, characterized in that: The introduction component (3) comprises a guide cone seat (5), a sealing guide plate (6), a first electric telescopic seat (7) and a telescopic blocking frame (8); the side end of the guide cone seat (5) is fixedly connected to the sealing guide plate (6); the side end of the sealing guide plate (6) is fixedly installed with the first electric telescopic seat (7); and the lower end of the first electric telescopic seat (7) is telescopically connected to the telescopic blocking frame (8).

3. A paper product auxiliary drying and conveying device and method according to claim 2, characterized in that: The drying component (4) comprises a heating fan (9), a connecting mounting seat (10), a regulating heating plate (11), a second electric telescopic seat (12) and a limiting mounting seat (13); the second electric telescopic seat (12) is fixedly mounted on the limiting mounting seat (13); the lower end of the second electric telescopic seat (12) is telescopically connected to the regulating heating plate (11); the connecting mounting seat (10) is mounted at the middle position of the regulating heating plate (11); and the heating fan (9) is mounted at the upper end of the connecting mounting seat (10).

4. A paper product auxiliary drying and conveying device and method according to claim 3, characterized in that: The distribution component (14) comprises a limit sleeve (20), an adapting key shaft (21), a rotating guide frame (22), a limit end block frame (23), a rear plate (24), a matching adjustment shaft (25), a stable limit docking seat (26) and a connecting assembly support rod (27); the matching key shaft (21) is arranged to limit with the limit sleeve (20); the lower end of the limit sleeve (20) is fixedly connected with the connecting assembly support rod (27), and the lower end of the connecting assembly support rod (27) is fixedly connected with the stable limit docking seat (26); the matching adjustment shaft (25) is fixedly connected at the center of the stable limit docking seat (26); the matching adjustment shaft (25) is fixedly connected with the adapting key shaft (21); and the side ends of the adapting key shaft (21) and the matching adjustment shaft (25) are fixedly connected with the rotating guide frame (22).

5. A paper product auxiliary drying and conveying device and method according to claim 4, characterized in that: The guide plate (18) is provided with a stepping motor to drive the adapting key shaft (21) and the adjusting shaft (25) to be rotationally connected, and the limiting sleeve (20) and the adapting key shaft (21) drive the rotating guide frame (22), the stable limiting docking seat (26) and the connecting combined support rod (27) to be rotationally connected.

6. A paper product auxiliary drying and conveying device and method according to claim 5, characterized in that: The rotating guide frame (22) is movably connected to a movable arc frame (35), the rear end of the movable arc frame (35) is fixedly connected to a limited end block frame (23), the bottom of the rotating guide frame (22) is fixedly connected to a rear plate (24), and an electric propulsion seat (29) is fixedly installed on the rear plate (24), and the side end of the electric propulsion seat (29) is telescopically connected to a first contact roller (30).

7. A paper product auxiliary drying and conveying device and method according to claim 6, characterized in that: A swing adjustment rod (32) is fixedly connected to the middle of the matching adjustment shaft (25), a rotating sleeve (28) is fixedly connected to the side end of the swing adjustment rod (32), a control motor (31) is fixedly connected to the rotating sleeve (28), and the control motor (31) is installed in an upper limit position on the rotating guide frame (22), and a third contact roller (34) is rotatably sleeved at the bottom of the movable arc frame (35).

8. A paper product auxiliary drying and conveying device and method according to claim 7, characterized in that: A second contact roller (33) is rotatably provided at the side of the lower end of the rotating guide frame (22) away from the rear plate (24); the control motor (31) is connected to the swing adjustment rod (32) through the rotating shaft sleeve (28); the movable arc frame (35) is movably connected to the rotating guide frame (22) through the swing adjustment rod (32); a gap exists between the third contact roller (34) and the second contact roller (33); the distribution component (14) is rotatably connected to the guide plate (18); and the guide plate (18) is fixedly provided with a limit blocking frame (16) at four corners; three transmission channels (17) are provided, and each transmission channel (17) is arranged at a ninety-degree distribution; the side end of the fixed docking rod frame (15) is fixedly connected to a transmission seat; the transmission seat is provided with an introduction component (3) and a drying component (4); the introduction component (3) is connected to the drying component (4) through the transmission seat, and the side end of the transmission seat is connected to the guide plate (18).

9. A paper product auxiliary drying and conveying device and method according to claim 8, characterized in that: The lower end of the adapter key shaft (21) is drivingly connected to a matching support (40), a main driving rod (38) is installed at the center of the matching support (40), the side end of the main driving rod (38) is telescopically connected to a docking frame (39), a hinged connecting rod (37) is fixedly connected to the docking frame (39), a driven derivation connecting rod (36) is hingedly provided on the hinged connecting rod (37), and the side end of the driven derivation connecting rod (36) is hingedly provided with the matching support (40), and two driven derivation connecting rods (36) are provided, which are respectively connected to the main driving rod (38) and the docking frame (39). The invention relates to a device for driving a guide wheel (42). The two driven derivation connecting rods (36) are designed in a triangular structure. A photoelectric sensor (44) is installed on the transmission channel (17). The photoelectric sensor (44) is electrically connected to a guide stepping motor (41). The guide stepping motor (41) is supported and connected by a mounting support plate (43). The guide stepping motor (41) is drivingly connected to a guide vane (42). The guide vane (42) is provided with six vanes, and the angle difference between each two vanes is 60 degrees. The guide stepping motor (41) controls the guide vane (42) to rotate 60 degrees at a time.

10. A method of a paper product auxiliary drying and conveying device, using the paper product auxiliary drying and conveying device according to claim 8, characterized in that: The following steps are involved: S1. First, a paper roll is placed inside the guide cone seat (5) and the sealing guide plate (6) for storage, and the transmission seat is at the lower end of the guide cone seat (5) and the sealing guide plate (6) to push the paper roll to move. When production is required, the first electric telescopic seat (7) controls the telescopic blocking frame (8) to contract, so that the paper roll is transmitted through the transmission seat. After that, the first electric telescopic seat (7) controls the telescopic blocking frame (8) to descend, so as to limit the position of subsequent paper rolls. S2, after that, the paper roll reaches the drying component (4) through the transmission seat, and at this time, the second electric telescopic seat (12) can control the height of the regulating heating plate (11), change the height of the heating fan (9), the connecting mounting seat (10), and the regulating heating plate (11), so as to dry the paper roll and prevent moisture from occurring inside; S3, after that, the paper roll is guided to the guide disk (18) through the transmission seat, and the motor controls the distribution component (14) to rotate on the guide disk (18), and the fixed bracket (19) supports the guide disk (18) and the motor. The motor transmits power by coordinating the adjustment shaft (25) and the adapter key shaft (21), so that the rotating guide frame (22), the stable limit docking seat (26), the connecting combination support rod (27), and the limit sleeve frame (20) follow the movement, thereby realizing the overall rotation adjustment; S4, the paper roll reaches the front end of the second contact roller (33), and the control motor (31) drives the rotating sleeve (28) to rotate, so that the rotating sleeve (28) drives the movable arc frame (35) to rotate and adjust through the swing adjustment rod (32), and the movable arc frame (35) rotates around the center of the rotating sleeve (28), changing the position of the third contact roller (34), so that the third contact roller (34) and the second contact roller (33) limit the paper roll. Then the motor controls the distribution component (14) to rotate as a whole, so that the paper roll reaches the appropriate transmission channel (17) position. At this time, the electric propulsion seat (29) works to push the first contact roller (30) to move, and at the same time the third contact roller (34) and the movable arc frame (35) are reset to cancel the limit on the paper roll. Under the push of the first contact roller (30), the paper roll reaches the specified transmission channel (17) position, achieving the purpose of distribution and transmission.

Citation Information

Patent Citations

  • Automatic material conveying equipment for automatic production equipment in paper product industry

    CN118850687A