A high-efficiency pulp board papermaking device

By designing a high-efficiency pulp board papermaking device including a bracket assembly, agitating assembly, rotating assembly, spraying assembly and grouting assembly, the problem of inconsistent pulp spraying amount in the prior art is solved, quantitative storage, automatic spraying and effective molding are realized, and papermaking efficiency is improved.

CN115506173BActive Publication Date: 2025-05-23YUNNAN HONGYUAN PAPER CO LTD
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Patent Information

Application Number
CN202211169393.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-09-23
Publication Date
2025-05-23
Estimated Expiration
2042-09-23

AI Technical Summary

Technical Problem

Existing papermaking equipment is difficult to ensure that the amount of pulp sprayed is consistent each time, resulting in different thicknesses after paper forming and cannot be promoted and applied.

Method used

A high-efficiency pulp board papermaking device is designed, including a bracket assembly, agitating assembly, a rotating assembly, a spray assembly and a grouting assembly. The pulp is introduced into the pulp storage box through a pressure pump, and the spraying motor drives the rotary cylinder to rotate, unconnecting the sealing plug and the material guide port, realizing quantitative storage and automatic spraying of the pulp, and pressing and heating molding of the pulp through the pulp assembly.

Benefits of technology

It realizes quantitative slurry storage, automatic sealing, rapid sprinkler spraying, and effective grouting shaping, which improves work efficiency and has simple and practical effects.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a high-efficiency pulp board papermaking device, which belongs to the technical field of papermaking. The high-efficiency pulp board papermaking device comprises a bracket assembly, the bracket assembly comprises a bottom plate, a working box and a stirring assembly are arranged on the bottom plate, the stirring assembly comprises a stirring box, a rotating assembly, a spraying assembly and a grouting assembly are arranged inside the working box, the rotating assembly is located below the spraying assembly and the grouting assembly, a material guiding assembly is connected between the stirring box and the spraying assembly, the material guiding assembly comprises a material guiding pipe and a pressure pump, the spraying assembly comprises a slurry storage box, the slurry storage box is connected to one end of the material guiding pipe, a spray funnel is arranged at the bottom of the slurry storage box, a material guiding port is arranged between the slurry storage box and the spray funnel, an auger is movably arranged in the slurry storage box, a movable plug movably matched with the material guiding port is arranged on the auger, one end of the auger is connected to the spraying motor through an adjusting assembly, and the auger has the advantages of quantitative slurry storage, automatic sealing, rapid slurry spraying, effective slurry pressing and shaping, high working efficiency, and simplicity and practicality.
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Description

Technical Field

[0001] The invention relates to the technical field of papermaking, and in particular to a high-efficiency pulp board papermaking device. Background Art

[0002] With the development of papermaking industry, the main body of papermaking machine and its auxiliary systems have different forms and specifications. During engineering design, the forms and specifications of each part are mainly determined according to the type of pulp, the type of paper and the production requirements. Different forms lead to different structures, thus forming different types of papermaking machines. There are many types of papermaking machines, such as single-cylinder papermaking machines for making single-sided glossy paper, long-wire multi-cylinder papermaking machines for making general paper, thin papermaking machines for making typing paper and cigarette paper, and paperboard machines for making paperboard.

[0003] Chinese patent CN201620260751.1 discloses a novel and efficient papermaking equipment, including a rotating shaft, a bearing seat, a pulp tank, a pulping plate, a spraying device, a first heating layer and a second heating layer. The positions of the spraying device and the pulping plate are adjusted by rotating the rotating shaft to realize the functions of spraying and pulping. Although the spraying and pulping of pulp can be realized, it is difficult to ensure that the amount of pulp sprayed each time is consistent, which easily leads to different thicknesses of paper after forming. As can be seen from the above, the existing papermaking equipment has the disadvantage of being difficult to ensure that the amount of pulp sprayed each time is consistent, and it is difficult to be promoted and applied.

[0004] Therefore, it is necessary to provide an efficient pulp papermaking device to solve the above problems. Summary of the invention

[0005] In view of the deficiencies in the prior art, an object of the embodiments of the present invention is to provide a high-efficiency pulp papermaking device to solve the problems in the above-mentioned background technology.

[0006] To achieve the above object, the present invention provides the following technical solutions:

[0007] An efficient pulp board papermaking device includes a support assembly. The support assembly includes a bottom plate. A working box and a stirring assembly are arranged on the bottom plate. The stirring assembly includes a stirring box. A rotating assembly, a pulp spraying assembly and a pressing assembly are arranged inside the working box. The rotating assembly is located below the pulp spraying assembly and the pressing assembly. A feeding assembly is connected between the stirring box and the pulp spraying assembly. The feeding assembly includes a feeding pipe and a pressure pump. The rotating assembly includes a rotating seat rotatably arranged. Rotating plates are symmetrically arranged on both sides of the rotating seat. Pulp grooves are arranged on the rotating plates. The pulp spraying assembly includes a pulp storage box arranged at the inner top of the working box. The bottom of the pulp storage box is funnel-shaped. The pulp storage box is connected to one end of the feeding pipe away from the working box. An inverted spraying funnel is arranged at the bottom of the pulp storage box. A feeding port is arranged between the pulp storage box and the spraying funnel. A second partition plate is arranged inside the pulp storage box. An auger is movably arranged inside the pulp storage box. A sealing plug that is movably matched with the feeding port is arranged at one end of the auger close to the spraying funnel. One end of the auger penetrating through the second partition plate is connected to a pulp spraying motor arranged on the working box through an adjusting assembly. The adjusting assembly includes a rotating cylinder connected to the output shaft of the pulp spraying motor. A connecting cavity is arranged inside the rotating cylinder. A connecting rod connected to the auger is slidably arranged inside the connecting cavity. Guide chutes are arranged on both sides of the connecting cavity. Guide sliding plates connected to the connecting rod are slidably arranged inside the guide chutes. A second spring is connected between the guide sliding plate and the guide chute. Movable rods are symmetrically and rotatably connected to the outside of the rotating cylinder. A counterweight is connected to one end of the movable rod close to the second partition plate. A second traction rope is connected between the counterweight and the guide sliding plate. In the initial position, the counterweight is close to the second partition plate and the second spring is in its original length. At this time, the sealing plug cooperates with the feeding port to seal the storage box. The pressure pump introduces the pulp in the stirring box into the pulp storage box through the feeding pipe. When the pulp storage box is full of pulp, the pressure pump stops working. The pulp spraying motor drives the rotating cylinder to rotate. The rotating cylinder drives the connecting rod and the auger to rotate through the sliding connection between the guide chute and the guide sliding plate. At the same time, the rotating cylinder drives the counterweight to rotate synchronously by driving the movable rod to rotate. The counterweight moves away from the rotating cylinder under the action of centrifugal force. The counterweight drives the guide sliding plate to move down through the second traction rope. The guide sliding plate drives the connecting rod to move down to drive the auger to move down, so as to release the connection between the sealing plug and the feeding port, facilitating the pulp to be sprayed into the pulp grooves on the rotating plates. Then the rotating plates are rotated to below the pressing assembly. The pressing assembly forms the pulp by pressing and heating the pulp.

[0008] As a further scheme of the present invention, the pressing assembly includes:

[0009] A first electric heating layer, which is arranged inside the working box and below the rotating plates, and the first electric heating layer is away from the pulp spraying assembly;

[0010] a second electric heating layer, the second electric heating layer being movably arranged above the first electric heating layer and movably cooperating with the pulp tank, a pulp plate being arranged above the second electric heating layer;

[0011] A guide rod, wherein the guide rod is symmetrically arranged in the working box, a lifting plate is slidably arranged on the guide rod, and a vertical rod is connected between the lifting plate and the paddle plate;

[0012] A lifting box, wherein the lifting box is slidably connected to the lifting plate through a lifting rod, a lifting drive module is arranged in the lifting box, and screws connected to the lifting drive module are symmetrically arranged on both sides of the lifting box;

[0013] The threaded plate is symmetrically arranged on both sides of the lifting box and is threadedly connected to the lead screw. One side of the threaded plate is movably connected to the working box through a first hinge rod, and the other side of the threaded plate is movably connected to the lifting plate through a second hinge rod.

[0014] As a further solution of the present invention, the rotating assembly includes:

[0015] A rotating motor, wherein the rotating motor is arranged on the bottom plate, and an output end of the rotating motor is connected to a driving gear;

[0016] A driven gear, the driven gear is meshed and connected with the driving gear and is connected with the rotating seat through a rotating rod;

[0017] A supporting ring groove plate is arranged in the working box, and a supporting sliding block connected with the rotating plate is slidably arranged in the supporting ring groove plate.

[0018] As a further solution of the present invention, the stirring assembly further includes:

[0019] A rotating shaft, the rotating shaft is rotatably arranged in the stirring box, one end of the rotating shaft is connected to the stirring motor, and a convex strip is provided on the rotating shaft;

[0020] A lifting slide cylinder, wherein the lifting slide cylinder is slidably connected to the rotating shaft through a convex strip, the outer side of the lifting slide cylinder is connected to a scraper through an inclined rod, and the scraper is movably fitted to the inner wall of the stirring box;

[0021] A stirring rod, wherein a plurality of stirring rods are provided and distributed on the inclined rod;

[0022] A feeding pipe is arranged above the side wall of the stirring box.

[0023] As a further solution of the present invention, a lifting assembly which is cooperatively connected with the rotating shaft and the lifting slide cylinder is arranged in the stirring box.

[0024] As a further solution of the present invention, the lifting assembly includes:

[0025] A first baffle, the first baffle is arranged inside the stirring box and above the feeding pipe, and the first baffle is rotatably connected to the rotating shaft;

[0026] A bidirectional cam, which is connected to the rotating shaft and is located on a side of the first partition away from the feeding pipe;

[0027] A cross bar, the cross bar is symmetrically arranged about the rotation axis and is located above the first partition plate, a moving plate movably contacting the outer end of the bidirectional cam is slidably arranged on the cross bar, and a first spring is connected between the moving plate and the stirring box;

[0028] A movable annular groove plate, the movable annular groove plate is movably arranged outside the rotating shaft and located on a side of the first partition plate close to the feeding pipe, and a connecting rotating plate connected to the lifting slide cylinder is slidably connected to the outer side of the movable annular groove plate;

[0029] The first traction rope is provided with two, one end of the first traction rope is connected to the movable ring groove plate, and the other end of the first traction rope passes through the first partition plate and is connected to the movable plate.

[0030] As a further solution of the present invention, the lifting drive module includes:

[0031] A lifting motor, wherein the lifting motor is arranged on the lifting box, and an output end of the lifting motor passes through the lifting box and is connected to a driving bevel gear rotatably arranged in the lifting box;

[0032] The driven bevel gear is symmetrically and rotatably arranged inside the lifting box and meshedly connected with the driving bevel gear. The driven bevel gear is respectively connected to the lead screws on both sides.

[0033] In summary, compared with the prior art, the embodiments of the present invention have the following beneficial effects:

[0034] The pressure pump in the present invention guides the pulp in the stirring box into the pulp storage box through the guide pipe. When the pulp storage box is full of pulp, the pressure pump stops working, and the spraying motor drives the rotating drum to rotate. The rotating drum drives the connecting rod and the auger to rotate through the sliding connection between the guide slide groove and the guide slide plate. At the same time, the rotating drum drives the counterweight block to rotate synchronously by driving the movable rod to rotate. The counterweight block moves away from the rotating drum under the action of centrifugal force. The counterweight block drives the guide slide plate downward through the second traction rope. The guide slide plate drives the auger downward by driving the connecting rod downward, thereby releasing the connection between the sealing plug and the guide port, which is convenient for pulp to be sprayed in the pulp groove of the rotating plate. The rotating plate is then rotated to the bottom of the pulping assembly. The pulping assembly shapes the pulp by squeezing and heating the pulp. The pulping assembly has the effects of quantitative pulp storage, automatic sealing, rapid spraying, effective pulping and shaping, high working efficiency, and simplicity and practicality.

[0035] In order to more clearly illustrate the structural features and effects of the present invention, the present invention is described in detail below in conjunction with the accompanying drawings and specific embodiments. BRIEF DESCRIPTION OF THE DRAWINGS

[0036] Figure 1 It is a structural schematic diagram of an embodiment of the invention.

[0037] Figure 2 for Figure 1 A is an enlarged view of the middle image.

[0038] Figure 3 It is a schematic diagram of the structure of the spraying assembly in the embodiment of the invention.

[0039] Figure 4 for Figure 3 Enlarged view of B.

[0040] Figure 5 It is a schematic diagram of the structure of a bidirectional cam in an embodiment of the invention.

[0041] Figure 6 It is a schematic diagram of the structure of the movable rod in the embodiment of the invention.

[0042] Reference numerals: 1-bracket assembly, 101-bottom plate, 102-working box, 103-bottom column, 2-stirring assembly, 201-stirring box, 202-scraper, 203-rotating shaft, 204-lifting slide, 205-oblique rod, 206-stirring rod, 207-convex strip, 208-stirring motor, 209-feeding pipe, 3-lifting assembly, 301-connecting rotating plate, 302-movable ring groove plate, 303-first traction rope, 304-first traction wheel, 305 -bidirectional cam, 306-moving plate, 307-cross bar, 308-first spring, 309-first partition, 4-material guide assembly, 401-material guide pipe, 402-positioning cylinder, 403-pressure pump, 5-rotation assembly, 501-rotation motor, 502-driving gear, 503-driven gear, 504-rotating rod, 505-rotation seat, 506-rotation plate, 507-pulp groove, 508-support slider, 509-support ring groove plate, 6-pulping assembly , 601-first electric heating layer, 602-second electric heating layer, 603-slurry plate, 604-vertical pole, 605-lifting plate, 606-guide rod, 607-side groove, 608-side plate, 609-screw, 610-threaded plate, 611-first hinge rod, 612-second hinge rod, 613-lifting rod, 614-lifting box, 615-active bevel gear, 616-lifting motor, 617-driven bevel gear, 7-spraying assembly, 701-slurry storage box , 702-spray funnel, 703-homogenizing plate, 704-spraying motor, 705-second partition, 706-auger, 707-feeding port, 708-sealing plug, 709-homogenizing rod, 8-adjusting assembly, 801-rotating cylinder, 802-movable rod, 803-counterweight, 804-connecting chamber, 805-connecting rod, 806-guide slide plate, 807-guide slide groove, 808-second spring, 809-second traction rope, 810-second traction wheel. DETAILED DESCRIPTION

[0043] In order to make the purpose, technical solution and advantages of the present invention more clearly understood, the present invention is further described in detail below in conjunction with the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present invention and are not intended to limit the present invention.

[0044] The specific implementation of the present invention is described in detail below in conjunction with specific embodiments.

[0045] In one embodiment of the present invention, see Figure 1 , Figure 3 , Figure 4 and Figure 6The high-efficiency pulp board papermaking device comprises a support assembly 1, the support assembly 1 comprises a bottom plate 101, a working box 102 and a stirring assembly 2 are arranged on the bottom plate 101, the stirring assembly 2 comprises a stirring box 201, a rotating assembly 5, a spraying assembly 7 and a grouting assembly 6 are arranged inside the working box 102, the rotating assembly 5 is located below the spraying assembly 7 and the grouting assembly 9, a material guide assembly 4 is connected between the stirring box 201 and the spraying assembly 7, the material guide assembly 4 comprises a material guide pipe 401 and a pressure pump 403, the rotating assembly The slurry spraying assembly 7 comprises a slurry storage box 701 arranged at the top of the inner side of the working box 102, the bottom of the slurry storage box 701 is set in a funnel shape, the slurry storage box 701 is connected to the end of the guide pipe 401 away from the working box 102, an inverted spray funnel 702 is arranged at the bottom of the slurry storage box 701, a guide port 707 is arranged between the slurry storage box 701 and the spray funnel 702, and the slurry storage box 701 is provided with a material guide port 707. A second partition 705 is provided in the box 701, and an auger 706 is movably provided in the slurry storage box 701. A sealing plug 708 movably matched with the guide port 707 is provided at one end of the auger 706 close to the spray funnel 702. One end of the auger 706 passing through the second partition 705 is connected to the spraying motor 704 provided on the working box 102 through the adjustment component 8. The adjustment component 8 includes a rotating cylinder 801 connected to the output shaft of the spraying motor 704. A connecting cavity 804 is provided in the rotating cylinder 801. The connecting cavity 804 slides in the connecting cavity 804. A connecting rod 805 connected to the auger 706 is provided, and guide grooves 807 are provided on both sides of the connecting cavity 804. A guide slide 806 connected to the connecting rod 805 is slidably provided in the guide groove 807, and a second spring 808 is connected between the guide slide 806 and the guide groove 807. A movable rod 802 is symmetrically and rotatably connected to the outer side of the rotating cylinder 801, and a counterweight block 803 is connected to the end of the movable rod 802 close to the second partition plate 705, and a second traction rope 809 is connected between the counterweight block 803 and the guide slide 806.

[0046] In this embodiment, at the initial position, the counterweight 803 is close to the second partition plate 705 and the second spring 808 is at its original length. At this time, the sealing plug 708 cooperates with the guide port 707 to seal the storage box 701. The pressure pump 403 guides the pulp in the stirring box 201 into the pulp storage box 701 through the guide pipe 401. When the pulp fills the pulp storage box 701, the pressure pump 703 stops working, and the spraying motor 704 drives the rotating drum 801 to rotate. The rotating drum 801 passes through the guide chute 807 and the guide slot 807. The sliding connection between the guide slide 806 drives the connecting rod 805 and the auger 706 to rotate. At the same time, the rotating cylinder 801 drives the counterweight block 803 to rotate synchronously by driving the movable rod 802 to rotate. The counterweight block 803 moves away from the rotating cylinder 801 under the action of centrifugal force. The counterweight block 803 drives the guide slide 806 to move downward through the second traction rope 809. The guide slide 806 drives the auger 706 to move downward by driving the connecting rod 805 downward, thereby releasing the connection between the sealing plug 708 and the guide port 707. The pulp is sprayed into the pulp groove 507 of the rotating plate 506, and then the rotating plate 506 is rotated to the bottom of the pulping assembly 6. The pulping assembly 6 performs a molding process on the pulp by squeezing and heating the pulp. The support assembly 1 also includes a bottom column 103 arranged at the bottom of the bottom plate 101, and the material guide assembly 4 also includes a positioning cylinder 402 arranged on the working box 102 for connecting the material guide pipe 401. The end of the sealing plug 708 close to the material guide pipe 401 is set as an upward convex cone. By setting the upper The convex cone facilitates the rapid discharge of the pulp in the pulp storage box 701 and improves the spraying efficiency of the pulp. The auger 706 between the spray funnel 702 and the homogenizing plate 709 is symmetrically provided with homogenizing rods 709. When the auger 706 rotates, the auger 706 drives the homogenizing rod 709 to rotate, which can effectively prevent the pulp from accumulating on the homogenizing plate 709. The second traction wheel 810 is provided at one end of the rotating cylinder 801 close to the second partition plate 705, and the second traction wheel 810 is connected with the second traction rope 809.

[0047] In one embodiment of the present invention, see Figure 1 and Figure 2The grouting assembly 6 includes a first electric heating layer 601, which is arranged inside the working box 102 and below the rotating plate 506, and the first electric heating layer 601 is far away from the spraying assembly 7; a second electric heating layer 602, which is movably arranged above the first electric heating layer 601 and movably cooperates with the pulp tank 507, and a pulp plate 603 is arranged above the second electric heating layer 602; a guide rod 606, which is symmetrically arranged in the working box 102, and a lifting plate 605 is slidably arranged on the guide rod 606, and the lifting plate 605 and the pulp plate 603 are A vertical pole 604 is connected in between; a lifting box 614, which is slidably connected to the lifting plate 605 through a lifting rod 613, a lifting drive module is arranged in the lifting box 614, and screws 609 connected to the lifting drive module are symmetrically arranged on both sides of the lifting box 614; a threaded plate 610, which is symmetrically arranged on both sides of the lifting box 614 and is threadedly connected to the screw 609, one side of the threaded plate 610 is movably connected to the working box 102 through a first hinge rod 611, and the other side of the threaded plate 610 is movably connected to the lifting plate 605 through a second hinge rod 612.

[0048] The lifting drive module includes a lifting motor 616, which is arranged on the lifting box 614. The output end of the lifting motor 616 passes through the lifting box 614 and is connected to the driving bevel gear 615 rotatably arranged in the lifting box 614; the driven bevel gear 617 is symmetrical and rotatably arranged inside the lifting box 614 and meshed with the driving bevel gear 615. The driven bevel gear 617 is respectively connected to the lead screws 609 on both sides.

[0049] In this embodiment, at the initial position, the angle between the first hinge rod 611 and the second hinge rod 612 is an acute angle. At this time, the pulp plate 603 is away from the rotating plate 506. When the rotating plate 506 sprayed with pulp rotates to the bottom of the pulping assembly 6, the lifting motor 616 drives the active bevel gear 615 to rotate. The active bevel gear 615 drives the lead screw 609 to rotate by meshing with the driven bevel gear 617. The lead screw 609 drives the threaded plate 610 to approach the lifting box 614 by threading with the threaded plate 610, so that the angle between the first hinge rod 611 and the second hinge rod 612 increases, so that the lifting plate 605 moves downward, and the lifting plate 605 is driven by the vertical rod 604. The dynamic paddle plate 603 moves downward, and the paddle plate 603 presses and heats the pulp in the pulp tank 507 by driving the second electric heating layer 602 to move downward synchronously and cooperating with the first electric heating layer 601, wherein the size of the first electric heating layer 601 and the paddle plate 603 is not larger than the size of the pulp tank 507, and the lifting and movement of the lifting plate 605 can be stably supported by the symmetrically arranged guide rods 606, and a side groove 607 is provided on the side where the guide rods 606 are close to each other, and a side plate 608 rotatably connected to the lead screw 609 is slidably provided in the side groove 607, and the position of the lifting box 614 can be stably supported and adjusted by the lifting rod 613.

[0050] In one embodiment of the present invention, see Figure 1 The rotating assembly 5 includes a rotating motor 501, which is arranged on the base plate 101, and the output end of the rotating motor 501 is connected to a driving gear 502; a driven gear 503, which is meshed and connected to the driving gear 502 and connected to the rotating seat 505 through a rotating rod 504; a supporting ring groove plate 509, which is arranged in the working box 102, and a supporting slider 508 connected to the rotating plate 506 is slidably arranged in the supporting ring groove plate 509.

[0051] In this embodiment, when pulp is sprayed in the pulp tank 507 on one side and the pulp in the pulp tank 507 on the other side is squeezed and heated to form, the automatic winding module will wind up the formed paper, and the rotating motor 501 drives the driven gear 503 to rotate by driving the active gear 502 to rotate, and the driven gear 503 drives the rotating seat 505 to rotate synchronously through the rotating rod 504, so that the rotating plate 506 sprayed with pulp can be rotated to the bottom of the pulping assembly 6, and at the same time, the rotating plate 506 for taking out the formed paper can be rotated to the bottom of the spraying assembly 7. At this time, the rotating motor 501 stops working to facilitate continuous spraying and paper forming. Among them, the rotation of the rotating plate 506 can be stably supported by the sliding connection between the supporting ring groove plate 509 and the supporting slider 508. The automatic winding module is a prior art, as long as it can meet the mechanism or equipment for taking out the formed paper, it will not be described in detail in this application.

[0052] In one embodiment of the present invention, see Figure 1 The stirring assembly 2 also includes a rotating shaft 203, which is rotatably arranged in the stirring box 201, one end of which is connected to the stirring motor 208, and a convex strip 207 is provided on the rotating shaft 203; a lifting slide 204, which is slidably connected to the rotating shaft 203 through the convex strip 207, and the outer side of the lifting slide 204 is connected to the scraper 202 through the inclined rod 205, and the scraper 202 is movably fitted with the inner wall of the stirring box 201; a stirring rod 206, which is provided with a plurality of stirring rods 206 and distributed on the inclined rod 205; a feeding pipe 209, which is arranged above the side wall of the stirring box 201.

[0053] In this embodiment, the stirring motor 208 drives the rotating shaft 203 to rotate, and the rotating shaft 203 drives the lifting slide 204 to rotate through the convex strip 207. The lifting slide 204 drives the scraper 202 to rotate synchronously through the inclined rod 205, so as to remove the pulp adhering to the inner wall of the stirring box 201. At the same time, through a plurality of stirring rods 206 arranged on the inclined rod 205, the pulp can be stirred during the rotation of the inclined rod 205 to prevent the pulp from solidifying.

[0054] In one embodiment of the present invention, see Figure 1 and Figure 5 The stirring box 201 is provided with a lifting assembly 3 which is connected with the rotating shaft 203 and the lifting slide cylinder 204.

[0055] The lifting assembly 3 includes a first baffle 309, which is arranged inside the stirring box 201 and located above the feeding tube 209, and the first baffle 309 is rotatably connected to the rotating shaft 203; a two-way cam 305, which is connected to the rotating shaft 203 and is located on the side of the first baffle 309 away from the feeding tube 209; a cross bar 307, which is symmetrically arranged about the rotating shaft 203 and located above the first baffle 309, and a movable plate 306 that is in active contact with the outer end of the two-way cam 305 is slidably arranged on the cross bar 307, and the movable plate 306 is movably contacted with the outer end of the two-way cam 305. 6 and a stirring box 201 are connected with a first spring 308; a movable ring groove plate 302, which is movably arranged on the outside of the rotating shaft 203 and is located on the side of the first partition 309 close to the feeding pipe 209, and the outer side of the movable ring groove plate 302 is slidably connected with a connecting rotating plate 301 connected to the lifting slide 204; a first traction rope 303, which is provided with two, one end of the first traction rope 303 is connected to the movable ring groove plate 302, and the other end of the first traction rope 303 passes through the first partition 309 and is connected to the movable plate 306.

[0056] The first spring 308 is stressed and contracts. At the same time, the moving plate 306 drives the movable annular groove plate 302 to move upward through the first traction rope 303. The movable annular groove plate 302 drives the lifting slide cylinder 204 to move upward by slidingly connecting with the connecting rotating plate 301. When the farthest end of the two-way cam 305 is at the far end, the moving plate 306 drives the movable annular groove plate 302 to move upward. When the farthest end of the two-way cam 305 is at the far end, the lifting slide cylinder 204 moves upward. In the process of leaving the movable plate 306, the first spring 308 stretches and pushes the movable plates 306 to approach each other, and the lifting slide 204 moves downward under the combined gravity of itself, the inclined rod 205, the stirring rod 206 and the scraper 202. The lifting slide 204 drives the first traction rope 303 to move downward by slidingly cooperating with the rotating plate 301 and the movable annular groove plate 302. The first traction rope 303 drives the movable plates 306 to approach each other to achieve the movable fit between the movable plate 306 and the two-way cam 305, so as to achieve comprehensive stirring of the pulp. At the same time, the pulp adhered to the inner wall of the stirring box 201 is scraped off. Among them, the first partition plate 309 is provided with a first traction wheel 304 cooperating with the first traction rope 303, which can effectively prevent the first traction rope 303 from breaking during long-term pulling, thereby improving the service life of the first traction rope 303.

[0057] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the present invention should be included in the protection scope of the present invention.

Claims

1. A high-efficiency pulp-sheet papermaking device, comprising a support assembly, wherein the support assembly comprises a bottom plate, It is characterized in that The bottom plate is provided with a working box and a stirring assembly, the stirring assembly includes a stirring box, a rotating assembly, a spraying assembly and a grouting assembly are arranged inside the working box, the rotating assembly is located below the spraying assembly and the grouting assembly, a material guide assembly is connected between the stirring box and the spraying assembly, the material guide assembly includes a material guide pipe and a pressure pump, the rotating assembly includes a rotating seat that is rotatably arranged, rotating plates are symmetrically arranged on both sides of the rotating seat, a pulp groove is arranged on the rotating plate, the spraying assembly includes a pulp storage box arranged on the top of the inner side of the working box, the bottom of the pulp storage box is set to a funnel shape, the pulp storage box and the material guide The end of the pipe away from the working box is connected, an inverted spray funnel is provided at the bottom of the slurry storage box, a material guide port is provided between the slurry storage box and the spray funnel, a second partition is provided in the slurry storage box, an auger is movably provided in the slurry storage box, and a sealing plug movably matched with the material guide port is provided at one end of the auger close to the spray funnel, one end of the auger passing through the second partition is connected to the shotcrete motor provided on the working box through an adjusting component, and the adjusting component includes a rotating cylinder connected to the output shaft of the shotcrete motor, a connecting cavity is provided in the rotating cylinder, and a connecting rod connected to the auger is slidably provided in the connecting cavity. The cam is provided with guide slots on both sides of the connecting cavity, and a guide slide connected to the connecting rod is slidably arranged in the guide slide slot, and a second spring is connected between the guide slide and the guide slide slot, and a movable rod is symmetrically and rotatably connected to the outer side of the rotating cylinder, and a counterweight block is connected to one end of the movable rod close to the second partition, and a second traction rope is connected between the counterweight block and the guide slide. In the initial position, the counterweight block is close to the second partition and the second spring is at its original length. The sealing plug seals the storage box by cooperating with the material guide port, and the pressure pump guides the pulp in the stirring box into the pulp storage box through the material guide pipe. When the pulp fills the storage box, After the pulp box, the pressure pump stops working, and the spraying motor drives the rotating drum to rotate. The rotating drum drives the connecting rod and the auger to rotate through the sliding connection between the guide slide groove and the guide slide plate. At the same time, the rotating drum drives the counterweight block to rotate synchronously by driving the movable rod to rotate. The counterweight block moves away from the rotating drum under the action of centrifugal force, and the counterweight block drives the guide slide plate to move downward through the second traction rope. The guide slide plate drives the connecting rod to move downward, and the connecting rod releases the connection between the sealing plug and the material guide port by driving the auger to move downward, and then the rotating plate is rotated to the bottom of the pulping assembly, and the pulping assembly shapes the pulp by pressing and heating the pulp.

2. The high-efficiency pulp-sheet papermaking device according to claim 1, It is characterized in that The grouting assembly comprises: A first electric heating layer, which is arranged inside the working box and below the rotating plate, and is far away from the spraying assembly; a second electric heating layer, the second electric heating layer being movably arranged above the first electric heating layer and movably cooperating with the pulp tank, a pulp plate being arranged above the second electric heating layer; A guide rod, wherein the guide rod is symmetrically arranged in the working box, a lifting plate is slidably arranged on the guide rod, and a vertical rod is connected between the lifting plate and the paddle plate; A lifting box, wherein the lifting box is slidably connected to the lifting plate through a lifting rod, a lifting drive module is arranged in the lifting box, and screws connected to the lifting drive module are symmetrically arranged on both sides of the lifting box; The threaded plate is symmetrically arranged on both sides of the lifting box and is threadedly connected to the lead screw. One side of the threaded plate is movably connected to the working box through a first hinge rod, and the other side of the threaded plate is movably connected to the lifting plate through a second hinge rod.

3. The high-efficiency pulp-sheet papermaking device according to claim 1, It is characterized in that The rotating assembly comprises: A rotating motor, wherein the rotating motor is arranged on the bottom plate, and an output end of the rotating motor is connected to a driving gear; A driven gear, the driven gear is meshed and connected with the driving gear and is connected with the rotating seat through a rotating rod; A supporting ring groove plate is arranged in the working box, and a supporting sliding block connected with the rotating plate is slidably arranged in the supporting ring groove plate.

4. The high-efficiency pulp-sheet papermaking device according to claim 1, It is characterized in that The stirring assembly also includes: A rotating shaft, the rotating shaft is rotatably arranged in the stirring box, one end of the rotating shaft is connected to the stirring motor, and a convex strip is provided on the rotating shaft; A lifting slide cylinder, wherein the lifting slide cylinder is slidably connected to the rotating shaft through a convex strip, the outer side of the lifting slide cylinder is connected to a scraper through an inclined rod, and the scraper is movably fitted to the inner wall of the stirring box; A stirring rod, wherein a plurality of stirring rods are provided and distributed on the inclined rod; A feeding pipe is arranged above the side wall of the stirring box.

5. The high-efficiency pulp-sheet papermaking device according to claim 4, It is characterized in that The stirring box is provided with a lifting assembly which is connected with the rotating shaft and the lifting slide cylinder.

6. The high-efficiency pulp-sheet papermaking device according to claim 5, It is characterized in that The lifting assembly comprises: A first baffle, the first baffle is arranged inside the stirring box and above the feeding pipe, and the first baffle is rotatably connected to the rotating shaft; A bidirectional cam, which is connected to the rotating shaft and is located on a side of the first partition away from the feeding pipe; A cross bar, the cross bar is symmetrically arranged about the rotation axis and is located above the first partition plate, a moving plate movably contacting the outer end of the bidirectional cam is slidably arranged on the cross bar, and a first spring is connected between the moving plate and the stirring box; A movable annular groove plate, the movable annular groove plate is movably arranged outside the rotating shaft and located on a side of the first partition plate close to the feeding pipe, and a connecting rotating plate connected to the lifting slide cylinder is slidably connected to the outer side of the movable annular groove plate; The first traction rope is provided with two, one end of the first traction rope is connected to the movable ring groove plate, and the other end of the first traction rope passes through the first partition plate and is connected to the movable plate.

7. The high-efficiency pulp-sheet papermaking device according to claim 2, It is characterized in that The lifting drive module comprises: A lifting motor, wherein the lifting motor is arranged on the lifting box, and an output end of the lifting motor passes through the lifting box and is connected to a driving bevel gear rotatably arranged in the lifting box; The driven bevel gear is symmetrically and rotatably arranged inside the lifting box and meshedly connected with the driving bevel gear. The driven bevel gear is respectively connected to the lead screws on both sides.

Citation Information

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