Aramid honeycomb paper dispensing device

CN224763461UActive Publication Date: 2026-09-18SHANDONG FANGLEI COMPOSITE MATERIALS CO LTD
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Patent Information

Application Number
CN202521902728.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-04
Publication Date
2026-09-18
Estimated Expiration
2035-09-04

AI Technical Summary

Technical Problem

然而,这种点胶方式在实际操作中面临一些技术挑战

Benefits of technology

本实用新型通过安装板下端可拆卸安装输送管,输送管外壁安装输胶管,安装板下端转动连接输入杆,输入杆上端连接动力机构,输入杆下端固定杆体,杆体外壁固定螺叶,输送管外壁两端分别套接半圆套,半圆套内腔安装电加热元件,当需要对加工的芳纶蜂窝纸进行点胶时,通过供胶管和输胶管导入输送管内腔的输入杆端,启动动力机构,使得输入杆、杆体和螺叶转动,使得胶材通过螺叶缓慢填充在杆体端,跟随杆体和螺叶转动输送出对芳纶蜂窝纸进行点胶,点胶完成后,启动电加热元件,电加热元件可以对输送管内腔残留硬化的胶水进行加热,使得硬化的胶水软化,再通过螺叶的转动排出,达到了防止造成胶材剪切问题保障了点胶质量的稳定性,更通过便捷高效的清理机制延长了装置的使用寿命的效果。

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Abstract

The utility model belongs to aramid honeycomb paper processing technical field especially relates to a kind of aramid honeycomb paper point gum device, comprising: mounting plate, the mounting plate lower end detachably installs conveying pipe, conveying pipe outer wall installs glue pipe, the mounting plate lower end rotationally connects input rod, the input rod upper end connects rotary power mechanism, the input rod lower end fixed rod body, the rod body outer wall fixed spiral blade, at least one pair of detachable half-round sleeve of connection is sleeved on the conveying pipe outer wall, half-round sleeve inner chamber installs electric heating element, for heating the glue of conveying pipe inner wall.The utility model has the advantages that it prevents causing glue material shear problem, ensures the stability of point gum quality, and prolongs the service life of the device through convenient and efficient cleaning mechanism.
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Description

Technical Field

[0001] This utility model belongs to the field of aramid honeycomb paper processing technology, and in particular relates to an aramid honeycomb paper dispensing device. Background Technology

[0002] Aramid honeycomb paper is a lightweight, high-strength material made of aramid fibers. Its structure mimics a honeycomb shape, exhibiting excellent mechanical properties and high-temperature resistance. Aramid fibers themselves possess high strength, high modulus, and high-temperature resistance; after being processed into a honeycomb structure through a special process, the material's specific strength and specific stiffness are further enhanced. Aramid honeycomb paper is not only lightweight but also possesses excellent impact resistance, fatigue resistance, and flame retardancy. It maintains stable physical and chemical properties even in extreme environments, making it a high-performance structural and functional material.

[0003] In the processing of aramid honeycomb paper, adhesive dispensing is one of the key steps, typically achieved using a spiral dispensing machine for precise adhesive application. However, this dispensing method faces several technical challenges in practice. When the adhesive is directly introduced into the spiral dispensing machine, the high-speed rotating blades exert a strong shearing force on the adhesive. The internal structure of the adhesive is easily damaged by the cutting and squeezing action of the spiral teeth, especially when the adhesive contains functional fillers or reinforcing particles. This mechanical impact can lead to particle breakage or uneven distribution, affecting the adhesive's adhesion, curing effect, and the final composite material properties. Furthermore, the intense agitation and impact can introduce micro-air bubbles into the adhesive, creating voids and reducing the density and mechanical strength of the adhesive layer, thus affecting the overall performance of the aramid honeycomb structure.

[0004] After dispensing, some glue often remains in the internal cavity and on the surface of the spiral dispensing machine. If this glue residue is not cleaned in time, it will gradually solidify and accumulate, eventually clogging the dispensing nozzle or affecting the normal operation of the spiral blade. This not only reduces the efficiency of the equipment but may also increase maintenance costs and downtime. Utility Model Content

[0005] The purpose of this invention is to address the aforementioned technical problems by providing an aramid honeycomb paper dispensing device. This device prevents adhesive material shearing, ensuring the stability of dispensing quality, and extends the device's service life through a convenient and efficient cleaning mechanism.

[0006] In view of this, the present invention provides an aramid honeycomb paper dispensing device, comprising: The mounting plate has a detachable conveying pipe at its lower end, and a glue delivery tube is installed on the outer wall of the conveying pipe. The lower end of the mounting plate is rotatably connected to an input rod, and the upper end of the input rod is connected to a rotary power mechanism. The lower end of the input rod is fixed to a rod body, and a screw blade is fixed to the outer wall of the rod body. At least one pair of detachably connected semicircular sleeves are fitted onto the outer wall of the conveying pipe, and an electric heating element is installed in the inner cavity of the semicircular sleeve for heating the glue on the inner wall of the conveying pipe.

[0007] Furthermore, an installation hole is provided at one end of the outer wall of the delivery pipe, the glue delivery pipe extends into the installation hole and is fixed, and the glue delivery pipe communicates with the inner cavity of the delivery pipe.

[0008] Furthermore, the mounting plate has a through groove at one end near the glue delivery pipe, the glue delivery pipe is inclined upward at an angle of 15-45 degrees away from the delivery pipe, one end of the glue delivery pipe is sleeved with a glue supply pipe, and one end of the glue supply pipe is connected to an external glue supply mechanism.

[0009] Furthermore, the inner cavity of the conveying pipe is arranged in a vertically continuous manner, and the input rod and rod body are arranged inside the inner cavity of the conveying pipe, and the outer wall of the screw blade is arranged to fit against the inner wall of the conveying pipe.

[0010] Furthermore, an annular screw groove is formed at the lower end of the mounting plate, and a threaded ring is fixed at the upper end of the conveying pipe, with the threaded ring extending into the annular screw groove for threaded connection.

[0011] Furthermore, the drive end of the rotary power mechanism is fixed to the rotating rod, and the bottom end of the rotating rod is fixed to the upper end of the input rod.

[0012] Furthermore, a semi-circular hole is provided laterally through the semi-circular sleeve, and an installation groove is provided on the inner wall of the semi-circular hole, and the electric heating element is installed in the installation groove.

[0013] Furthermore, one end of the outer wall of the semi-circular sleeve is equipped with a lead wire that is electrically connected to the electric heating element, for connecting an external power source to supply power to the electric heating element.

[0014] Furthermore, ceramic insulating layers are fixed at the upper and lower ends of the inner wall of the semi-circular hole, and the ceramic insulating layers are in the shape of a semi-circular ring, and the ceramic insulating layers are attached to the outer wall of the conveying pipe.

[0015] Furthermore, connecting plates are fixed at the front and rear ends of the semicircular sleeve, and bolts are connected to the connecting plates. One end of the bolt passes through the connecting plates of the two semicircular sleeves, and a nut passes through one side of the bolt, and the bolts are threaded together.

[0016] The beneficial effects of this utility model are: This invention features a detachable conveying pipe mounted on the lower end of an mounting plate. A glue delivery pipe is installed on the outer wall of the conveying pipe. An input rod is rotatably connected to the lower end of the mounting plate, and a power mechanism is connected to the upper end of the input rod. A rod body is fixed to the lower end of the input rod, and a screw blade is fixed to the outer wall of the rod. Semi-circular sleeves are fitted onto both ends of the outer wall of the conveying pipe, and electric heating elements are installed inside the semi-circular sleeves. When glue needs to be applied to the processed aramid honeycomb paper, it is introduced into the inner cavity of the conveying pipe through the glue supply pipe and the glue delivery pipe. The power mechanism is then activated, causing the input rod, rod body, and screw blade to rotate. This allows the glue material to be slowly filled into the rod body end through the screw blade and then conveyed out to apply glue to the aramid honeycomb paper. After glue application, the electric heating element is activated. The electric heating element heats any remaining hardened glue in the inner cavity of the conveying pipe, softening the hardened glue, which is then discharged through the rotation of the screw blade. This prevents glue material shearing and ensures the stability of the glue application quality. Furthermore, the convenient and efficient cleaning mechanism extends the service life of the device. Attached Figure Description

[0017] Figure 1 This is a three-dimensional schematic diagram of the present invention; Figure 2 This is a side perspective view of the present invention; Figure 3 This is a cross-sectional view of the present invention; Figure 4 This is a bottom view of the mounting plate of this utility model; Figure 5 This is a cross-sectional view of the connection between the delivery pipe and the glue delivery pipe of this utility model; Figure 6 This is a three-dimensional schematic diagram of the spiral blade of this utility model; Figure 7 This is a bottom view of the semicircular sleeve of this utility model; The markings in the diagram are as follows: 1. Delivery pipe; 2. Lead wire; 3. Semicircular sleeve; 4. Glue supply pipe; 5. Glue delivery pipe; 6. Power mechanism; 7. Mounting plate; 8. Connecting plate; 9. Rod body; 10. Annular screw groove; 11. Threaded ring; 12. Rotating rod; 13. Electric heating element; 14. Mounting groove; 15. Input rod; 16. Bolt; 17. Nut; 18. Semicircular hole; 19. Ceramic insulation layer; 20. Screw blade; 21. Through groove. Detailed Implementation

[0018] The technical solutions of the embodiments of this application will be clearly described below with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of this application. All other embodiments obtained by those skilled in the art based on the embodiments of this application are within the scope of protection of this application.

[0019] In the description of this application, it should be noted that the terminology used herein is for the purpose of describing particular embodiments only and is not intended to limit the exemplary embodiments according to this application. For ease of description, the dimensions of the various parts shown in the drawings are not drawn to actual scale. Techniques, methods, and devices known to those skilled in the art may not be discussed in detail, but where appropriate, such techniques, methods, and devices should be considered part of the specification. In all examples shown and discussed herein, any specific values ​​should be interpreted as merely exemplary and not as limitations. Therefore, other examples of exemplary embodiments may have different values. It should be noted that similar reference numerals and letters in the following drawings denote similar items; therefore, once an item is defined in one drawing, it need not be further discussed in subsequent drawings.

[0020] It should be noted that the terms "first," "second," etc., used in the specification and claims of this application are used to distinguish similar objects and not to describe a specific order or sequence. It should be understood that such use of data can be interchanged where appropriate so that embodiments of this application can be implemented in orders other than those illustrated or described herein, and the objects distinguished by "first," "second," etc., are generally of the same class and are not limited in number; for example, a first object can be one or more. Furthermore, in the specification and claims, "and / or" indicates at least one of the connected objects, and the character " / " generally indicates that the preceding and following objects are in an "or" relationship.

[0021] It should be noted that in the description of this application, the directional terms such as "front, back, up, down, left, right", "horizontal, vertical, horizontal" and "top, bottom" indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this application and simplifying the description. Unless otherwise stated, these directional terms do not indicate or imply that the device or element referred to must have a specific orientation or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation on the scope of protection of this application. The directional terms "inner" and "outer" refer to the inner and outer contours relative to the outline of each component itself.

[0022] It should be noted that, in this application, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or apparatus. Without further limitations, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes that element. Furthermore, it should be noted that the scope of the methods and apparatuses in the embodiments of this application is not limited to performing functions in the order shown or discussed, but may also include performing functions substantially simultaneously or in the reverse order, depending on the functions involved. For example, the described methods may be performed in a different order than described, and various steps may be added, omitted, or combined. Additionally, features described with reference to certain examples may be combined in other examples.

[0023] Please see Figures 1 to 7 The embodiments provided by this utility model are as follows: Example: An aramid honeycomb paper dispensing device, comprising: Mounting plate 7, with a detachable conveying pipe 1 mounted on the lower end of mounting plate 7. Glue delivery pipe 5 is mounted on the outer wall of conveying pipe 1. Input rod 15 is rotatably connected to the lower end of mounting plate 7. Rotary power mechanism 6 is connected to the upper end of input rod 15. Rod body 9 is fixed to the lower end of input rod 15. Screw blade 20 is fixed to the outer wall of rod body 9. At least one pair of detachably connected semicircular sleeves 3 are sleeved on the outer wall of conveying pipe 1. Electric heating element 13 is installed inside the semicircular sleeve 3 for heating the glue on the inner wall of conveying pipe 1.

[0024] In the example of this application, the mounting plate 7 serves as a supporting foundation, providing a stable assembly platform for the delivery pipe 1, input rod 15, and power mechanism 6. The detachable connection between the delivery pipe 1 and the mounting plate 7 allows the equipment to be easily disassembled after long-term use, facilitating internal cleaning and component replacement. The screw blade 20 on the outer wall of the rod 9 engages with the inner cavity of the delivery pipe 1, pushing the adhesive material through rotation to ensure uniform and continuous adhesive output. This avoids the shearing problem caused by direct contact between the adhesive material and the rotating thread in traditional dispensing devices, reduces the risk of internal voids or agglomeration of the adhesive material, and improves dispensing stability. The semi-circular sleeve 3 on the outer wall of the delivery pipe 1 and the electric heating element 13 inside soften the hardened adhesive material remaining on the inner wall of the delivery pipe 1 after dispensing, ensuring a thorough cleaning process, preventing adhesive residue from clogging the pipe, extending the service life of the equipment, and ensuring consistency in subsequent dispensing operations.

[0025] Furthermore, an installation hole is opened at one end of the outer wall of the delivery pipe 1, and the glue delivery pipe 5 is inserted into the installation hole and fixed, and the glue delivery pipe 5 is connected to the inner cavity of the delivery pipe 1.

[0026] As a preferred example of this utility model, the glue delivery tube 5 extends into the mounting hole on the outer wall of the delivery tube 1 and achieves internal cavity communication, ensuring a smooth and sealed transition of the glue material from the glue delivery tube 5 to the delivery tube 1, reducing leakage or air ingress during the transmission process. Compared to the potential interruption of glue delivery or air bubble ingress in traditional glue supply methods, this method allows the glue material to continuously and stably enter the delivery tube 1, providing a reliable material basis for the uniform pushing of the screw blade 20, indirectly ensuring the stability of the glue output, and is suitable for bonding scenarios where aramid honeycomb paper requires high glue material uniformity.

[0027] Furthermore, a through groove 21 is provided on the mounting plate 7 near the end of the glue supply pipe 5. The glue supply pipe 5 is inclined upward at an angle of 15-45 degrees away from the side of the delivery pipe 1. One end of the glue supply pipe 5 is sleeved with the glue supply pipe 4, and one end of the glue supply pipe 4 is connected to an external glue supply mechanism.

[0028] As a preferred example of this utility model, the adaptability and glue supply continuity of the device are improved by the through groove 21 of the mounting plate 7 and the inclination of the delivery pipe 1. The through groove 21 of the mounting plate 7 provides reasonable arrangement space for the glue delivery pipe 5, avoiding structural interference between components, making the overall layout more compact and the operation more convenient. The delivery pipe 1 is inclined upward at a certain angle. Combined with the connection between the glue supply pipe 4 and the external glue supply mechanism, the synergistic effect of gravity and the pushing action of the screw blade 20 reduces the accumulation of glue in the delivery pipe 1, ensuring that the glue can flow continuously and smoothly, and avoiding the problem of local hardening or clumping caused by glue retention.

[0029] Furthermore, the inner cavity of the conveying pipe 1 is arranged in a vertically penetrating manner, and the input rod 15 and the rod body 9 are arranged inside the inner cavity of the conveying pipe 1, and the outer wall of the screw blade 20 is arranged to fit against the inner wall of the conveying pipe 1.

[0030] As a preferred example of this utility model, the through-hole inner cavity of the delivery pipe 1 allows the input rod 15 and the rod body 9 to fully extend and rotate stably. The tight fit between the outer wall of the screw blade 20 and the inner cavity of the delivery pipe 1 ensures that the adhesive material is fully driven during the delivery process, reducing adhesive residue or uneven delivery caused by gaps. This avoids the adhesive dispensing fluctuations caused by insufficient contact between the adhesive material and rotating components in traditional devices, matching the adhesive quantity requirements of aramid honeycomb paper and significantly improving the consistency of dispensing quality.

[0031] Furthermore, an annular screw groove 10 is opened at the lower end of the mounting plate 7, and a threaded ring 11 is fixed at the upper end of the conveying pipe 1. The threaded ring 11 extends into the annular screw groove 10 for threaded connection.

[0032] As a preferred example of this utility model, the threaded connection ensures the positional stability of the delivery pipe 1 during dispensing operations. Furthermore, when it is necessary to clean residual adhesive inside the delivery pipe 1 or replace components such as the screw blade 20, quick disassembly can be achieved through a simple rotation operation, significantly reducing maintenance difficulty and time costs. Compared to traditional fixed structures, this significantly improves the ease of use of the equipment, ensuring a rapid return to optimal working condition during long-term use, and indirectly guaranteeing the continuity of dispensing stability.

[0033] Furthermore, the drive end of the rotary power mechanism 6 is fixed with a rotating rod 12, and the bottom end of the rotating rod 12 is fixed with the upper end of the input rod 15.

[0034] As a preferred example of this utility model, the transmission of the rotating rod 12 reduces power loss and lag, enabling the output torque of the power mechanism 6 to be accurately and in real-time transmitted to the input rod 15, thereby driving the rod body 9 and the screw blade 20 to rotate at a stable speed. Stable power output avoids fluctuations in the speed of the screw blade 20 due to poor transmission, ensuring the uniformity of the adhesive feeding speed and guaranteeing a stable adhesive output. For materials such as aramid honeycomb paper, which require high uniformity of adhesive distribution, stable power transmission can effectively avoid the problem of excessive or insufficient adhesive in certain areas, further improving the reliability of the bonding quality.

[0035] Furthermore, a semi-circular hole 18 is provided through the side of the semi-circular sleeve 3, and an installation groove 14 is provided on the inner wall of the semi-circular hole 18, and the electric heating element 13 is installed in the installation groove 14.

[0036] As a preferred example of this utility model, a semi-circular hole 18 is provided at the lower end of the semi-circular sleeve 3, and an installation groove 14 is provided on the inner wall, providing a stable installation space for the electric heating element 13. The compatibility between the semi-circular hole 18 and the outer wall of the conveying pipe 1 ensures that the semi-circular sleeve 3 can fit tightly against the conveying pipe 1, allowing the heat from the electric heating element 13 to be efficiently transferred to the interior of the conveying pipe 1, reducing heat loss; while the installation groove 14 limits and fixes the electric heating element 13, preventing the heating element from shifting or falling off due to vibration during device operation, ensuring the stability and uniformity of heating.

[0037] Furthermore, a lead wire 2 electrically connected to the electric heating element 13 is installed at one end of the outer wall of the semi-circular sleeve 3, which is used to connect an external power source to supply power to the electric heating element 13.

[0038] As a preferred example of this utility model, a lead wire 2 is installed at one end of the outer wall of the semi-circular sleeve 3, providing a stable power connection path for the electric heating element 13. The lead wire 2 allows an external power source to be easily connected to the electric heating element 13, ensuring reliable start-up and adjustment of the heating function. A stable power supply is the basis for the continuous operation of the electric heating element 13, ensuring the heating and cleaning of residual hardened adhesive.

[0039] Furthermore, ceramic insulating layers 19 are fixed at the upper and lower ends of the inner wall of the semi-circular hole 18, and the ceramic insulating layers 19 are in the shape of a semi-circular ring, and the ceramic insulating layers 19 are attached to the outer wall of the conveying pipe 1.

[0040] As a preferred example of this utility model, the insulating properties of the ceramic insulating layer 19 can effectively block the current conduction between the electric heating element 13 and the delivery pipe 1, avoiding the risk of leakage and improving the safety of the device. At the same time, the ceramic material has good heat resistance and thermal conductivity, which can withstand the high temperature of the electric heating element 13 and help to evenly transfer heat to the delivery pipe 1, reducing the problem of local overheating or uneven temperature. The tight fit between the ceramic layer and the delivery pipe 1 can also buffer the friction between the semi-circular sleeve 3 and the delivery pipe 1, protect the outer wall of the delivery pipe 1 from damage, extend its service life, and ensure the long-term stability of the heating and dispensing functions.

[0041] Furthermore, connecting plates 8 are fixed at the front and rear ends of the semicircular sleeve 3 respectively. The connecting plates 8 are connected by bolts 16. One end of the bolt 16 passes through the connecting plates 8 of the two semicircular sleeves 3, and one side of the bolt 16 passes through the nut 17 and is threaded.

[0042] As a preferred example of this utility model, the bolt 16 passes through the connecting plate 8 of the two semicircular sleeves 3 and is threadedly locked with the nut 17. The clamping force can be flexibly adjusted according to the outer diameter of the conveying pipe 1 to ensure that the semicircular sleeves 3 tightly wrap around the conveying pipe 1, thus ensuring efficient heat transfer of the heating element and preventing the semicircular sleeves 3 from loosening during device operation. The detachable connection method also facilitates the disassembly of the semicircular sleeves 3 as needed for inspection and replacement of the electric heating element 13 or the ceramic insulation layer 19, improving the convenience of maintenance.

[0043] In this embodiment, when it is necessary to apply adhesive to the processed aramid honeycomb paper, the adhesive is first introduced from the external adhesive supply mechanism through the adhesive supply pipe 4. Guided by the adhesive delivery pipe 5, it smoothly enters the inner cavity of the delivery pipe 1 and converges at the input rod 15 inside the delivery pipe 1. At this time, the power mechanism 6 mounted on the mounting plate 7 is activated, and its output power is efficiently transmitted to the input rod 15 through the rotating rod 12, causing the input rod 15, the rod body 9 fixedly connected to the input rod 15, and the screw blade 20 on the outer wall of the rod body 9 to rotate synchronously.

[0044] In this process, the adhesive material is not directly introduced into the area where the rod 9 and the screw blade 20 are located. Instead, it first accumulates gradually at the end of the input rod 15. As the screw blade 20 slowly rotates, the adhesive material is evenly pushed into the area of ​​the rod 9 and gradually fills the space between the screw blade 20 and the inner cavity of the conveying pipe 1. This avoids the shearing problem caused by the adhesive material directly contacting the high-speed rotating screw blade 20 in traditional structures. In the traditional method, if the adhesive material directly impacts the rotating screw blade 20, it is easily cut by the screw threads, resulting in internal voids and even damaging the functional particles in the adhesive material, affecting its material properties. In this device, the adhesive material first forms a stable flow at the end of the input rod 15 and is then gently pushed by the screw blade 20, allowing the adhesive material to fully and tightly fill the gaps in the screw blade 20, preventing clumping, sedimentation, or incomplete filling due to shearing force.

[0045] As the rod 9 and the screw blade 20 continue to rotate, the adhesive material is stably conveyed to the outlet end of the conveying pipe 1, and finally coated onto the aramid honeycomb paper in a uniform and continuous manner, completing the dispensing action. Throughout the process, the tight fit between the screw blade 20 and the inner cavity of the conveying pipe 1 ensures the stability of the adhesive material conveying, and the combination of the adhesive material accumulating first and then being pushed improves the uniformity and consistency of the dispensing.

[0046] After the dispensing operation is completed, the electric heating element 13 in the mounting groove 14 inside the semi-circular sleeve 3 is activated. Electricity is stably supplied to the electric heating element 13 through the lead wire 2 on the outer wall of the semi-circular sleeve 3, so that the heat generated is transferred to the delivery pipe 1 through the semi-circular sleeve 3. Since the semi-circular sleeve 3 is tightly wrapped around the outer wall of the delivery pipe 1 by the cooperation of the connecting plate 8, bolt 16 and nut 17, and the ceramic insulation layer 19 on the inner wall of the semi-circular hole 18 is tightly attached to the delivery pipe 1, the heat can penetrate into the inner cavity of the delivery pipe 1 evenly and efficiently, softening the hardened glue remaining on the inner wall. After the hardened glue regains its fluidity, the power mechanism 6 is activated again, causing the input rod 15, rod body 9 and screw blade 20 to rotate again. At this time, the softened residual glue is completely discharged from the delivery pipe 1 by the push of the screw blade 20, avoiding the problem of glue residue clogging the pipe. This achieves the effect of preventing glue shearing problems, ensuring the stability of dispensing quality, and extending the service life of the device through a convenient and efficient cleaning mechanism.

[0047] The embodiments of this application have been described above with reference to the accompanying drawings. Unless otherwise specified, the embodiments and features in the embodiments of this application can be combined with each other. This application is not limited to the specific embodiments described above. The specific embodiments described above are merely illustrative and not restrictive. Those skilled in the art can make many other forms under the guidance of this application without departing from the spirit and scope of the claims, and all of these forms are within the protection scope of this application.

Claims

1. An aramid honeycomb paper dispensing device, characterized in that... ,include: Mounting plate (7), the lower end of which is detachably mounted with conveying pipe (1), the outer wall of which is mounted with glue delivery pipe (5), the lower end of which is rotatably connected with input rod (15), the upper end of which is connected with rotating power mechanism (6), the lower end of which is fixed with rod body (9), the outer wall of which is fixed with screw blade (20), the outer wall of which is sleeved with at least one pair of detachably connected semi-circular sleeves (3), the inner cavity of which is equipped with electric heating element (13) for heating glue on the inner wall of conveying pipe (1).

2. The aramid honeycomb paper dispensing device according to claim 1, characterized in that, An installation hole is opened at one end of the outer wall of the delivery pipe (1), and the glue delivery pipe (5) is inserted into the installation hole and fixed, and the glue delivery pipe (5) is connected to the inner cavity of the delivery pipe (1).

3. The aramid honeycomb paper dispensing device according to claim 1, characterized in that, The mounting plate (7) has a through groove (21) near the end of the glue supply pipe (5). The glue supply pipe (5) is inclined upward at an angle of 15-45 degrees away from the side of the delivery pipe (1). One end of the glue supply pipe (5) is connected to the glue supply pipe (4), and one end of the glue supply pipe (4) is connected to an external glue supply mechanism.

4. The aramid honeycomb paper dispensing device according to claim 1, characterized in that, The inner cavity of the conveying pipe (1) is arranged in a through-type manner from top to bottom, and the input rod (15) and the rod body (9) are arranged inside the inner cavity of the conveying pipe (1), and the outer wall of the screw blade (20) is arranged to fit against the inner wall of the conveying pipe (1).

5. The aramid honeycomb paper dispensing device according to claim 1, characterized in that, The mounting plate (7) has an annular screw groove (10) at its lower end, and a threaded ring (11) is fixed at the upper end of the conveying pipe (1). The threaded ring (11) extends into the annular screw groove (10) for threaded connection.

6. The aramid honeycomb paper dispensing device according to claim 1, characterized in that, The drive end of the rotary power mechanism (6) is fixed with a rotating rod (12), and the bottom end of the rotating rod (12) is fixed with the upper end of the input rod (15).

7. The aramid honeycomb paper dispensing device according to claim 1, characterized in that, The semicircular sleeve (3) has a semicircular hole (18) through it, and an installation groove (14) is formed on the inner wall of the semicircular hole (18). The electric heating element (13) is installed in the installation groove (14).

8. The aramid honeycomb paper dispensing device according to claim 1, characterized in that, One end of the outer wall of the semi-circular sleeve (3) is equipped with a lead wire (2) that is electrically connected to the electric heating element (13) for connecting an external power source to supply power to the electric heating element (13).

9. The aramid honeycomb paper dispensing device according to claim 7, characterized in that, The upper and lower ends of the inner wall of the semi-circular hole (18) are respectively fixed with ceramic insulating layers (19), and the ceramic insulating layers (19) are in the shape of a semi-circular ring. The ceramic insulating layers (19) are attached to the outer wall of the conveying pipe (1).

10. The aramid honeycomb paper dispensing device according to claim 1, characterized in that, The front and rear ends of the semicircular sleeve (3) are respectively fixed with connecting plates (8), the connecting plates (8) are connected with bolts (16), one end of the bolt (16) passes through the connecting plates (8) of the two semicircular sleeves (3), and one side of the bolt (16) passes through the nut (17) and is threaded.