Crepe paper pulp smoothing device and use method thereof

By using a crepe paper pulp smoothing device with synchronous drive and smoothing components, the problems of wrinkling and slow drying speed during the forming process of electrical crepe paper are solved, achieving uniform pulp spreading and rapid drying, thus improving the quality of finished paper and production efficiency.

CN120905990APending Publication Date: 2025-11-07ELECTRIC POWER RES INST CHINA SOUTHERN POWER GRID CO LTD +1
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Patent Information

Application Number
CN202511242588.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-09-02
Publication Date
2025-11-07

AI Technical Summary

Technical Problem

In the existing technology, electrical crepe paper is prone to wrinkling during the forming process, has a slow drying speed, occupies a lot of space, and is easily damaged when taken out to dry, which affects the quality of finished products and production efficiency.

Method used

The crepe paper pulp smoothing device uses a synchronous drive component to move the forming trough plate close to the smoothing component, and the linkage smoothing plate presses and smooths the pulp. Combined with the drainage hole structure, it accelerates the drainage of water, ensuring that the pulp is evenly spread and dries quickly.

Benefits of technology

It achieves uniform pulp spreading and rapid drying, improves the flatness and structural integrity of finished paper, shortens drying time, avoids paper damage, and improves product qualification rate.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a crepe paper pulp smoothing device and a using method thereof, the crepe paper pulp smoothing device comprises a forming groove plate, a draining frame and a foundation bottom plate, and water leakage holes are formed in the inner concave surface of the forming groove plate; a continuous flattening assembly is installed on the foundation slab and comprises a base plate, a supporting block, a transverse shaft, a flattening plate and a synchronous driving assembly, the base plate is fixed to the foundation slab, the supporting block and the synchronous driving assembly are both installed on the upper surface of the base plate, the transverse shaft is rotationally erected on the base plate through the supporting block, and the flattening plate is detachably installed on the transverse shaft. The synchronous driving assembly is connected with the transverse shaft and the forming groove plate and used for driving the forming groove plate to be close to the continuous flattening assembly and driving the flattening plate to rotate and stretch into the forming groove plate in a linkage mode, and paper pulp in the forming groove plate is pressed and flattened. Paper pulp flattening and dewatering can be conducted on paper to be formed, the subsequent drying speed of the paper is greatly increased, and meanwhile the quality of finished paper is guaranteed.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of electrical crepe paper preparation, and particularly relates to a crepe paper pulp smoothing device and a use method thereof. BACKGROUND

[0002] In the power industry, the safe operation of core equipment such as motors and transformers depends on high-quality electrical insulation materials. Electrical crepe paper, with excellent electrical insulation, good tear resistance and high-temperature stability, has become a key material for the insulation protection of such equipment, effectively preventing current leakage and resisting mechanical stress, and adapting to high-temperature working conditions of the equipment.

[0003] Electrical crepe paper preparation needs to go through many steps such as raw material preparation, pulp preparation, paper forming, drying, creping treatment, post-treatment, slitting and packaging, quality detection, and finished product storage. Among them, paper preparation and forming are crucial to product quality. In the prior art, paper preparation and forming generally use natural air drying. However, if the paper to be formed is taken out and hung up to dry, it is easy to cause paper damage. Therefore, the paper is directly dried in the forming tank. The relatively damp paper is prone to irregular creping in the drying room, affecting the quality of the finished product, and there are defects such as large occupation of the forming tank and slow drying speed. Therefore, the present application provides a crepe paper pulp smoothing device and a use method thereof. SUMMARY

[0004] The embodiments of the present application provide a crepe paper pulp smoothing device and a use method thereof, which can perform pulp smoothing and water removal on the paper to be formed, greatly improving the subsequent drying speed of the paper and ensuring the quality of the finished paper.

[0005] The first aspect of the present application provides a crepe paper pulp smoothing device, comprising: a forming tank plate, a draining rack and a base plate;

[0006] The draining rack is fixed on the base plate;

[0007] The forming tank plate is slidingly arranged on the upper surface of the draining rack, and a water leakage hole is formed in the inner concave surface of the forming tank plate;

[0008] A continuous smoothing assembly is installed on the base plate;

[0009] The continuous smoothing assembly comprises a backing plate, a support block, a horizontal shaft, a smoothing plate and a synchronous driving assembly;

[0010] The backing plate is fixed on the base plate;

[0011] The support block and the synchronous driving assembly are both installed on the upper surface of the backing plate;

[0012] The horizontal shaft is rotatably arranged on the backing plate through the support block.

[0013] The smoothing plate is detachably mounted on the horizontal shaft;

[0014] The synchronous driving assembly is connected with the horizontal shaft and the forming groove plate respectively, and is used to drive the forming groove plate to approach the continuous smoothing assembly, and drive the horizontal shaft to rotate the smoothing plate into the forming groove plate, so as to press and smooth the pulp in the forming groove plate.

[0015] Optionally, the synchronous driving assembly comprises a gear, a sliding arm, a sliding table, a linear driving member and a pull rod;

[0016] The sliding table and the linear driving member are both fixed on the upper surface of the base plate;

[0017] The sliding arm is slidingly arranged on the sliding table, and the sliding arm is connected with the forming groove plate through the pull rod;

[0018] The output end of the linear driving member is connected with the sliding arm;

[0019] The gear is fixed on the horizontal shaft;

[0020] The upper surface of the sliding arm is provided with a transmission tooth extending along the sliding direction of the sliding arm, which is used to cooperate with the gear;

[0021] The gear is meshed with the transmission tooth.

[0022] Optionally, the linear driving member is arranged in parallel with the sliding table.

[0023] Optionally, the linear driving member is an oil cylinder or an electric push rod.

[0024] Optionally, the draining rack is provided with a water collecting bin and a water leakage channel;

[0025] The water leakage channel is communicated with the water collecting bin.

[0026] Optionally, the water collecting bin is located on the top of the draining rack and is close to one side of the continuous smoothing assembly;

[0027] When the continuous smoothing assembly presses and smooths the pulp in the forming groove plate, the forming groove plate moves to the position directly above the water collecting bin.

[0028] Optionally, at least one pair of symmetrical clamping blocks are fixed on the horizontal shaft;

[0029] The smoothing plate is detachably mounted on the horizontal shaft through the clamping blocks.

[0030] Optionally, the smoothing plate comprises a base square plate and a smoothing block;

[0031] The base square plate is detachably installed on the horizontal shaft;

[0032] The smoothing block is fixed on the side of the base square plate close to the forming groove plate, and is used to explore into the forming groove plate when the base square plate rotates, and to press and smooth the pulp in the forming groove plate.

[0033] Optionally, the number of the support blocks is two.

[0034] The two support blocks are symmetrically and spacedly fixed on the upper surface of the base plate, and the two support blocks are respectively connected with the two ends of the horizontal shaft through bearings.

[0035] The second aspect of the present application provides a use method of the above-mentioned crepe paper pulp smoothing device, which specifically includes the following steps:

[0036] S1, checking the linkage matching state of the synchronous driving assembly, the horizontal shaft and the forming groove plate in the continuous smoothing assembly, and ensuring that the transmission of each component is not jammed;

[0037] S2, injecting pulp into the forming groove plate;

[0038] S3, moving the forming groove plate along the draining rack through the synchronous driving assembly, so that the forming groove plate approaches the horizontal shaft, and simultaneously links the horizontal shaft to drive the smoothing plate to rotate;

[0039] S4, the synchronous driving assembly continuously drives the forming groove plate to move to the preset stroke end point, at this time, the forming groove plate moves to the position closest to the horizontal shaft, and simultaneously the acting part of the smoothing plate is pressed into the forming groove plate to continuously press and filter the pulp in the forming groove plate;

[0040] S5, maintaining the pressing state of the smoothing plate to the pulp for a preset time length;

[0041] S6, the synchronous driving assembly drives the forming groove plate and the smoothing plate to reset to the initial state.

[0042] As can be seen from the above technical solutions, the embodiments of this application have the following advantages: This crepe paper pulp smoothing device slides the forming trough plate onto the drain rack, and a continuous smoothing component including a synchronous drive component is installed on the base plate. The synchronous drive component can drive the forming trough plate to move closer to the continuous smoothing component along the drain rack. During this process, the sliding of the forming trough plate can cause the internal pulp to shake to a certain extent, so that the pulp is relatively evenly spread in the forming trough plate, avoiding the problem of uneven pulp spreading in the prior art, which leads to inconsistent thickness and unstable structure of the finished paper, thus ensuring the basic quality of paper forming from the source; at the same time, the synchronous drive component can drive the smoothing plate to rotate and probe into the forming trough plate through the horizontal shaft to press and smooth the pulp. The smoothing action can proactively eliminate the risk of irregular wrinkling that may occur in the wet pulp during the subsequent drying process, effectively solving the defect of poor paper quality after drying in existing technologies, and ensuring the flatness and structural integrity of the finished paper. On the other hand, pressing can accelerate the drainage of moisture from the pulp, greatly shortening the time required for subsequent paper drying, and solving the problems of slow natural drying speed and large forming tank occupation in existing technologies. Moreover, the entire process does not require removing the pulp or paper to be formed from the forming tank plate, avoiding the risk of paper damage caused by removing and hanging it for drying in existing technologies, improving the product qualification rate, and ultimately achieving a comprehensive improvement in pulp spreading uniformity, drying efficiency and finished product quality in the preparation of electrical crepe paper, meeting the needs of industrial production. Attached Figure Description

[0043] Fig. 1 This is a schematic diagram of the initial state of the wrinkled paper pulp smoothing device in the embodiments of this application;

[0044] Fig. 2 This is a schematic diagram of the structure of the wrinkled paper pulp smoothing device after the smoothing plate is removed in the embodiment of this application;

[0045] Fig. 3 This is a schematic diagram of the wrinkled paper pulp smoothing device in use in the embodiments of this application;

[0046] Fig. 4 This is a schematic diagram of the continuous smoothing component after the smoothing plate is removed in an embodiment of this application;

[0047] Fig. 5 This is a schematic diagram illustrating the use of the continuous smoothing component in the embodiments of this application;

[0048] Fig. 6 This is a schematic diagram of the structure of the molding groove plate and the drain rack in the embodiments of this application.

[0049] The attached figures are labeled as follows:

[0050] 1, forming groove plate; 2, draining rack; 21, water collecting bin; 22, water leakage channel; 3, base bottom plate; 4, continuous smoothing assembly; 41, cushion plate; 42, supporting block; 43, horizontal shaft; 44, gear; 45, sliding arm; 46, sliding table; 47, linear driving member; 48, smoothing plate; 481, base square plate; 482, smoothing block; 49, pull rod. DETAILED DESCRIPTION

[0051] In order to enable persons skilled in the art to better understand the present application, the technical solutions in the embodiments of the present application will be described clearly and completely in conjunction with the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are only some of the embodiments of the present application, not all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by persons skilled in the art without creative labor fall within the scope of protection of the present application.

[0052] In the description of the present application, it should be noted that the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer" and the like indicate the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present application. In addition, the terms "first", "second", "third" are only for the purpose of description, and cannot be understood as indicating or implying relative importance.

[0053] Unless otherwise expressly specified and limited, the terms "mounting", "connecting", "connecting" should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or integrally connected; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium; it can be the communication inside two elements. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.

[0054] The present application provides an embodiment of a crepe paper pulp smoothing device, please refer to Figs. 1-3 .

[0055] The crepe paper pulp smoothing device in the embodiment comprises a forming groove plate 1, a draining rack 2 and a base plate 3, the draining rack 2 is fixed on the base plate 3, the forming groove plate 1 is slidingly arranged on the upper surface of the draining rack 2, and the inner concave surface of the forming groove plate 1 is provided with a water leakage hole; a continuous smoothing assembly 4 is installed on the base plate 3, the continuous smoothing assembly 4 comprises a backing plate 41, a support block 42, a horizontal shaft 43, a smoothing plate 48 and a synchronous driving assembly, the backing plate 41 is fixed on the base plate 3, the support block 42 and the synchronous driving assembly are both installed on the upper surface of the backing plate 41, the horizontal shaft 43 is rotatably arranged on the backing plate 41 through the support block 42, the smoothing plate 48 is detachably installed on the horizontal shaft 43, and the synchronous driving assembly is connected with the horizontal shaft 43 and the forming groove plate 1 respectively, so as to drive the forming groove plate 1 to approach the continuous smoothing assembly 4, and drive the horizontal shaft 43 to drive the smoothing plate 48 to rotate and probe into the forming groove plate 1, thereby realizing the pressing and smoothing of the pulp in the forming groove plate 1.

[0056] It should be noted that: the crepe paper pulp smoothing device is characterized in that the forming groove plate 1 is slidingly arranged on the draining rack 2, and the base plate 3 is provided with the continuous smoothing assembly 4 comprising the synchronous driving assembly, the synchronous driving assembly can drive the forming groove plate 1 to approach the continuous smoothing assembly 4 along the draining rack 2, the sliding of the forming groove plate 1 can make the internal pulp shake to some extent, so as to make the pulp be relatively uniformly laid in the forming groove plate 1, thereby avoiding the problems of inconsistent thickness and unstable structure of finished paper caused by uneven pulp laying in the prior art, and guaranteeing the basic quality of paper forming from the source; meanwhile, the synchronous driving assembly can drive the horizontal shaft 43 to drive the smoothing plate 48 to rotate and probe into the forming groove plate 1, so as to press and smooth the pulp, which can on the one hand actively eliminate the irregular wrinkling hidden danger of the wet pulp in the subsequent drying process, effectively solve the defect of poor paper quality after drying in the prior art, and ensure the flatness and structural integrity of the finished paper; on the other hand, the pressing can accelerate the discharge of water in the pulp, greatly shorten the drying time of the subsequent paper, and solve the problems of slow natural air-drying speed and large occupation of the forming groove in the prior art; and the whole process does not need to take out the pulp or paper to be formed from the forming groove plate 1, thereby avoiding the risk of paper damage caused by taking out and hanging for air-drying in the prior art, improving the product qualification rate, and finally realizing the comprehensive improvement of the electrical crepe paper preparation in the uniformity of pulp laying, drying efficiency and finished product quality, and meeting the industrial production needs.

[0057] The above is an embodiment one of the crepe paper pulp smoothing device provided in the embodiment of the present application, and the following is an embodiment two of the crepe paper pulp smoothing device provided in the embodiment of the present application, please refer to Figs. 1-6 .

[0058] The crepe paper pulp smoothing device in the embodiment comprises a forming groove plate 1, a draining rack 2 and a base plate 3, the draining rack 2 is fixed on the base plate 3, the forming groove plate 1 is slidingly arranged on the upper surface of the draining rack 2, and the inner concave surface of the forming groove plate 1 is provided with a water leakage hole; the base plate 3 is provided with a continuous smoothing assembly 4, the continuous smoothing assembly 4 comprises a backing plate 41, a supporting block 42, a horizontal shaft 43, a smoothing plate 48 and a synchronous driving assembly, the backing plate 41 is fixed on the base plate 3, the supporting block 42 and the synchronous driving assembly are both arranged on the upper surface of the backing plate 41, the horizontal shaft 43 is rotatably arranged on the backing plate 41 through the supporting block 42, the smoothing plate 48 is detachably arranged on the horizontal shaft 43, and the synchronous driving assembly is connected with the horizontal shaft 43 and the forming groove plate 1 respectively, so as to drive the forming groove plate 1 to move close to the continuous smoothing assembly 4, and drive the horizontal shaft 43 to drive the smoothing plate 48 to rotate and penetrate into the forming groove plate 1, so as to press and smooth the pulp in the forming groove plate 1.

[0059] It should be noted that: in use, the uniformly stirred pulp is placed in the forming groove plate 1, the pulp is formed in the forming groove plate 1, the forming groove plate 1 can move on the draining rack 2, the continuous smoothing assembly 4 can continuously drive the forming groove plate 1 to move, in the process of moving the forming groove plate 1, the pulp in the forming groove plate 1 can be shaken to a certain extent, so that the pulp can be relatively uniformly laid on the forming groove plate 1, when the forming groove plate 1 moves to the limit position closest to the continuous smoothing assembly 4, the acting part of the smoothing plate 48 penetrates into the forming groove plate 1, so as to press and smooth the pulp in the forming groove plate 1, thereby improving the drying speed of the paper and ensuring the quality of the finished paper.

[0060] The synchronous driving assembly comprises a gear 44, a sliding arm 45, a sliding table 46, a linear driving part 47 and a pull rod 49, the sliding table 46 and the linear driving part 47 are both fixed on the upper surface of the backing plate 41, the sliding arm 45 is slidingly arranged on the sliding table 46, and the sliding arm 45 is connected with the forming groove plate 1 through the pull rod 49; the output end of the linear driving part 47 is connected with the sliding arm 45, the gear 44 is fixed on the horizontal shaft 43, the upper surface of the sliding arm 45 is provided with a transmission tooth extending in the sliding direction of the sliding arm 45 and used for cooperating with the gear 44, and the gear 44 is meshingly connected with the transmission tooth; when the sliding arm 45 slides forward and backward along the sliding table 46, the sliding arm 45 can drive the gear 44 to rotate.

[0061] It should be noted that: when the linear driving part 47 works, the output end (extension or recovery) of the linear driving part 47 drives the sliding arm 45 to move on the sliding table 46, when the sliding arm 45 moves, the transmission tooth on the sliding arm 45 cooperates with the gear 44 to drive the gear 44 and the horizontal shaft 43 to rotate together, the rotating horizontal shaft 43 drives the smoothing plate 48 to rotate, at the same time, the moving sliding arm 45 pulls the forming groove plate 1 through the pull rod 49, so that the acting part of the smoothing plate 48 can penetrate into the forming groove plate 1, and directly smooth and press the pulp in the forming groove plate 1.

[0062] Specifically, the linear driving member 47 can be arranged in parallel with the sliding table 46, and the sliding arm 45 can be in an L-shaped structure. When the linear driving member 47 works, the linear driving member 47 can drive the sliding arm 45 to move forward and backward stably. The linear driving member 47 can be an oil cylinder or an electric push rod.

[0063] Specifically, the number of the water leakage holes is multiple, and the multiple water leakage holes are uniformly distributed on the inner concave surface of the forming groove plate 1, so that the water in the paper pulp can be discharged from the water leakage holes.

[0064] The draining rack 2 is provided with a water collecting bin 21 and a water leakage channel 22, and the water leakage channel 22 is in communication with the water collecting bin 21.

[0065] Specifically, the water collecting bin 21 is located at the top of the draining rack 2 and close to one side of the continuous flattening assembly 4. When the continuous flattening assembly 4 presses and flattens the paper pulp in the forming groove plate 1, the forming groove plate 1 moves to the upper side of the water collecting bin 21. The gap of the water collecting bin 21 is provided with a support strip for assisting the sliding of the forming groove plate 1. The support strip is located at the center of the gap of the water collecting bin 21, and the upper surface of the support strip is flush with the upper surface of the water collecting bin 21.

[0066] It should be noted that in the initial state, the forming groove plate 1 is located above the water leakage channel 22, and a large amount of water in the forming groove plate 1 will first fall into the water leakage channel 22. The water will then flow along the water leakage channel 22 to the water collecting bin 21 to be collected, realizing secondary water leakage. During the working process of the continuous flattening assembly 4, the forming groove plate 1 will gradually move to the upper side of the water collecting bin 21. At this time, the water in the forming groove plate 1 will directly fall into the water collecting bin 21.

[0067] Specifically, the horizontal shaft 43 is fixedly provided with at least one pair of symmetrically distributed clamping blocks, and the flattening plate 48 is detachably installed on the horizontal shaft 43 through the clamping blocks.

[0068] It can be understood that the flattening plate 48 can be disassembled according to the needs. By setting the clamping blocks, the flattening plate 48 can be lifted up, so as to avoid the flattening plate 48 from being in contact with the gear 44 and causing jamming.

[0069] Specifically, the flattening plate 48 includes a basic square plate 481 and a flattening block 482. The basic square plate 481 is detachably installed on the horizontal shaft 43 through the clamping blocks. The flattening block 482 is fixed to one side of the basic square plate 481 close to the forming groove plate 1, and is used to penetrate into the forming groove plate 1 when the basic square plate 481 rotates, so as to press and flatten the paper pulp in the forming groove plate 1.

[0070] Specifically, the number of the support blocks 42 is two. The two support blocks 42 are symmetrically and spacedly fixed to the upper surface of the backing plate 41, and the two support blocks 42 are respectively connected to the two ends of the horizontal shaft 43 through bearings.

[0071] The application also provides a use method of the crepe paper pulp smoothing device.

[0072] S1, self-checking the entire device, checking the linkage cooperation state of the synchronous driving assembly in the continuous smoothing assembly 4 and the horizontal shaft 43 and the forming groove plate 1, and ensuring that the transmission of each component is not jammed;

[0073] S2, injecting the uniformly stirred paper pulp into the forming groove plate 1;

[0074] S3, driving the forming groove plate 1 to move along the draining rack 2 through the synchronous driving assembly, so that the forming groove plate 1 approaches the horizontal shaft 43, and at the same time, the linkage horizontal shaft 43 drives the smoothing plate 48 to rotate; specifically, the linear driving part 47 is started, the linear driving part 47 drives the sliding arm 45 to move, the sliding arm 45 drives the smoothing plate 48 to rotate through the gear 44, and at the same time, the sliding arm 45 pulls the forming groove plate 1 through the pull rod 49, and makes the forming groove plate 1 approach the horizontal shaft 43.

[0075] S4, continuously driving the forming groove plate 1 to move to the preset stroke end point through the synchronous driving assembly, at this time, the forming groove plate 1 moves to the position closest to the horizontal shaft 43, and at the same time, the acting part of the smoothing plate 48 is pressed into the forming groove plate 1, and the paper pulp in the forming groove plate 1 is continuously pressed and filtered; specifically, the linear driving part 47 drives the sliding arm 45 to move to the maximum value, at this time, the forming groove plate 1 moves to the position closest to the horizontal shaft 43, and at the same time, the smoothing block 482 of the smoothing plate 48 just presses the paper pulp in the forming groove plate 1.

[0076] S5, maintaining the pressing state of the smoothing plate 48 on the paper pulp for a preset time length; specifically, the preset time length is 10-15 seconds.

[0077] S6, driving the forming groove plate 1 and the smoothing plate 48 to reset to the initial state through the synchronous driving assembly. Specifically, the linear driving part 47 drives the sliding arm 45 to move reversely, at this time, the forming groove plate 1 slowly moves away from the horizontal shaft 43, and at the same time, the smoothing plate 48 rotates, so that the smoothing block 482 is separated from the forming groove plate 1, until it returns to the initial state, at this time, the smoothed forming groove plate 1 can be removed, and the next forming groove plate 1 is replaced.

[0078] The above-described embodiments are only used to illustrate the technical solutions of the present application, rather than limit them; although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that they can still modify the technical solutions recorded in the foregoing embodiments, or make equivalent replacements for some technical features; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the embodiments of the present application.

Claims

1. A crepe paper pulp smoothing device, characterized by, The utility model relates to a continuous flattening device for paper pulp in a forming groove plate, which comprises a forming groove plate, a draining rack and a base plate. The draining rack is fixed on the base plate. The forming groove plate is slidably arranged on the upper surface of the draining rack, and a water leakage hole is formed on the inner concave surface of the forming groove plate. A continuous flattening assembly is installed on the base plate. The continuous flattening assembly comprises a base plate, a support block, a horizontal shaft, a flattening plate and a synchronous driving assembly. The base plate is fixed on the base plate. The support block and the synchronous driving assembly are both installed on the upper surface of the base plate. The horizontal shaft is rotatably arranged on the base plate through the support block. The flattening plate is detachably installed on the horizontal shaft. The synchronous driving assembly is connected with the horizontal shaft and the forming groove plate, respectively, for driving the forming groove plate to approach the continuous flattening assembly and driving the horizontal shaft to rotate the flattening plate into the forming groove plate to press and flatten the paper pulp in the forming groove plate. The synchronous driving assembly comprises a gear, a sliding arm, a sliding table, a linear driving member and a pull rod.

2. The crepe paper pulp smoothing device of claim 1, wherein, The sliding table and the linear driving member are both fixed on the upper surface of the base plate. The sliding arm is slidably arranged on the sliding table, and the sliding arm is connected with the forming groove plate through the pull rod. The output end of the linear driving member is connected with the sliding arm. The gear is fixed on the horizontal shaft. The upper surface of the sliding arm is provided with a transmission gear along the sliding direction of the sliding arm, which is used for cooperating with the gear. The gear is meshingly connected with the transmission gear. The linear driving member is arranged in parallel with the sliding table.

3. The crepe paper pulp smoothing device of claim 2, wherein, The linear driving member is an oil cylinder or an electric push rod.

4. The crepe paper pulp smoothing device of claim 2, wherein, A water collecting bin and a water leakage channel are formed on the draining rack.

5. The crepe paper pulp smoothing device of claim 1, wherein, The water leakage channel is in communication with the water collecting bin. The water collecting bin is located on the top of the draining rack and is close to one side of the continuous flattening assembly.

6. The crepe paper pulp smoothing device of claim 5, wherein, When the continuous flattening assembly presses and flattens the paper pulp in the forming groove plate, the forming groove plate moves to the position directly above the water collecting bin. At least one pair of symmetrical clamping blocks are fixed on the horizontal shaft.

7. The crepe paper pulp smoothing device of claim 1, wherein, The flattening plate is detachably installed on the horizontal shaft through the clamping blocks. The flattening plate comprises a base square plate and a flattening block.

8. The crepe paper pulp smoothing device of claim 1, wherein, The base square plate is detachably installed on the horizontal shaft. The flattening block is fixed on one side of the base square plate close to the forming groove plate, and is used for rotating into the forming groove plate to press and flatten the paper pulp in the forming groove plate when the base square plate rotates. The number of the support blocks is two.

9. The crepe paper pulp smoothing device of claim 1, wherein, Two support blocks are symmetrically and spacedly fixed on the upper surface of the base plate, and the two support blocks are respectively connected with the two ends of the horizontal shaft through bearings. The utility model comprises the following steps:

10. A method of using a crepe paper pulp smoothing device according to any one of claims 1-9, characterized in that, S1, check the linkage cooperation state of the synchronous driving assembly, the horizontal shaft and the forming groove plate in the continuous flattening assembly to ensure that each component transmission is not jammed; S2, inject paper pulp into the forming groove plate; S3, drive the forming groove plate to move along the draining rack through the synchronous driving assembly, so that the forming groove plate approaches the horizontal shaft, and the horizontal shaft drives the flattening plate to rotate. ​ S4, the synchronous drive assembly continuously drives the forming trough plate to move to a preset stroke end point, at which time the forming trough plate moves to a position closest to the transverse shaft, and the acting part of the flattening plate is pressed into the forming trough plate to continuously press and filter the paper pulp in the forming trough plate; S5, maintaining the flattening plate in a state of pressing the paper pulp for a preset time length; S6, the synchronous drive assembly drives the forming trough plate and the flattening plate to reset to the initial state.