A forming wire net with an integrated swing arm for a forming slice and its usage method

By designing a net tray with integrated swing arm, and using mechanical structure and driving mechanism to achieve automatic picking, the problem of time-consuming and labor-intensive picking of pulp sheets in the prior art is solved, and the efficiency and convenience of pulp processing are improved.

CN114657810BActive Publication Date: 2025-05-27DONGGUAN SHUNYU PAPER CO LTD
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Patent Information

Application Number
CN202210507334.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-05-10
Publication Date
2025-05-27
Estimated Expiration
2042-05-10

AI Technical Summary

Technical Problem

The existing pulp disk requires multiple staff to pull up the pulp sheet at the same time, which is time-consuming and labor-intensive, affecting the efficiency of pulp processing.

Method used

A tray with integrated swing arm for pulp sheets is designed, and the main body of the tray with mechanical structure is used to move. The automatic adjustment and pick-up of the tray is achieved through the driving mechanism, an electric telescopic rod and a traction rope, replacing the traditional manual operation.

Benefits of technology

It improves the convenience of pulp picking and processing efficiency, reduces the time and labor intensity of manual operation, and achieves more efficient pulp screening and processing.

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Abstract

The present invention relates to the technical field of paper processing, and specifically relates to a forming wire mesh for a forming sheet with an integrated swing arm, which includes a moving base. A driving mechanism is arranged inside the moving base. A support plate is vertically arranged on the upper end surface of the moving base. A blowing mechanism is arranged on the inner side surface of the support plate. A top plate is horizontally arranged above the inner side surface of the support plate. A support block is slidably arranged on the lower end surface of the top plate. First electric telescopic rods are vertically slid on both sides of the lower end surface of the support block. A forming wire mesh main body is connected between the lower end surfaces of the two first electric telescopic rods. A first motor support plate is arranged on the front end surface of the top plate. A first driving motor is arranged on the first motor support plate. A rotating wheel is arranged at the output end of the first driving motor. A traction rope is wound on the rotating wheel. The traction rope is connected to the front end surface of the forming wire mesh main body. The present invention uses a forming wire mesh with mechanical structure movement to replace the traditional forming wire mesh used manually, thereby improving the convenience of lifting pulp and improving the processing efficiency of pulp.
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Description

Technical Field

[0001] The present invention relates to a draining mesh, in particular to a draining mesh with an integrated swing arm for pulp sheets and a using method thereof, belonging to the technical field of paper processing and treatment. Background Art

[0002] Paper pulp is a fibrous substance made from plant fibers through different processing methods; it can be divided into mechanical pulp, chemical pulp, and chemimechanical pulp according to the processing method; it can also be divided into wood pulp, straw pulp, hemp pulp, reed pulp, sugarcane pulp, bamboo pulp, rag pulp, etc. according to the fiber raw materials used; and it can be further divided into refined pulp, bleached pulp, unbleached pulp, high-yield pulp, semi-chemical pulp, etc. according to different purities; generally, it is mostly used for manufacturing paper and paperboard; in addition to being used for manufacturing special papers, refined pulp is also often used as a raw material for manufacturing cellulose derivatives such as cellulose esters and cellulose ethers; it is also used in fields such as artificial fibers, plastics, coatings, films, and gunpowder;

[0003] During the processing of paper pulp, the paper pulp will be extruded into pulp sheets, and when processing the pulp sheets, it is necessary to screen and process the pulp sheets. During the process of screening and processing the pulp sheets, a draining mesh will be used to pick them up for picking and screening;

[0004] However, when the existing draining meshes pick up pulp sheets, multiple workers are required to pull up the draining meshes simultaneously for picking up, which is time-consuming and laborious, thus affecting the processing efficiency of the pulp sheets.

[0005] Therefore, it is urgent to improve the draining mesh to solve the above existing problems. Summary of the Invention

[0006] The purpose of the present invention is to provide a draining mesh with an integrated swing arm for pulp sheets and a using method thereof. By using a draining mesh with a mechanical structure movement to replace the traditional manually used draining mesh, the convenience of picking up paper pulp is improved, and the processing efficiency of paper pulp is increased.

[0007] To achieve the above purpose, the main technical solutions adopted by the present invention include:

[0008] A wire mesh for making pulp sheets with an integrated swing arm, comprising a moving base, a driving mechanism is arranged inside the moving base, a support plate is vertically arranged on the upper end surface of the moving base, a blowing mechanism is arranged on the inner side surface of the support plate, a top plate is horizontally arranged above the inner side surface of the support plate, a support block is slidably arranged on the lower end surface of the top plate, two vertically arranged first electric telescopic rods are slidably arranged on both sides of the lower end surface of the support block, a wire mesh main body is connected between the lower end surfaces of the two first electric telescopic rods, a first motor support plate is arranged on the front end surface of the top plate, a first driving motor is arranged on the first motor support plate, a rotating wheel is arranged at the output end of the first driving motor, a traction rope is wound on the rotating wheel, and the traction rope is connected to the front end surface of the wire mesh main body.

[0009] Preferably, the wire mesh main body includes a support frame, a screen main body and two connecting plates. The two connecting plates are respectively arranged above both sides of the support frame. A first bearing is arranged on one side of the inner side surfaces of the two connecting plates close to the support plate. A second connecting plate is arranged at the lower end surface of the first electric telescopic rod. A connecting rod connected to the first bearing is arranged on the outer side of the lower end surface of the second connecting plate. A slightly upwardly tilted shovel plate is arranged on the front end surface of the support frame. A second through hole is opened in the middle part of the shovel plate, and the second through hole is connected to the traction rope.

[0010] Preferably, the screen main body includes a first screen and a second screen. The first screen is located below the second screen. A groove is opened on the inner side surface of the support frame. Both sides of the first screen are connected to the lower end surface inside the groove through second support blocks. Second support plates are arranged on both sides of the second screen. A hinge plate is arranged in the middle of the lower end surface of the second support plate. A second hinge plate is arranged in the middle of the upper end surface of the second support block. The hinge plate is hinged to the second hinge plate. A connecting ring is arranged at the rear side of the upper end surface of the second support plate. A first through hole is opened at the rear side of the upper end surface of the connecting plate and penetrates through to the inside of the groove. A first connecting rod is slidably arranged in the first through hole. The lower end surface of the first connecting rod is connected to the connecting ring through a connecting column. A compression spring is arranged behind between the second support plate and the second support block. Second electric telescopic rods are arranged on both sides of the lower end surface of the top plate. A magnetic attraction ring is arranged at the lower end surface of the second electric telescopic rod. A strong adsorption magnet that mutually adsorbs with the magnetic attraction ring is arranged on the upper end surface of the first connecting rod.

[0011] Preferably, second chutes are arranged on both sides of the lower end surface of the support block. Second sliders slidably connected to the second chutes are arranged on the upper end surfaces of the two first electric telescopic rods. Micro electric telescopic rods are arranged between both side surfaces of the second sliders and both side surfaces inside the second chutes.

[0012] Preferably, a plurality of sliding grooves are formed in the lower end surface of the top plate, a sliding block slidably connected to the sliding grooves is arranged on the upper end surface of the support block, third sliding grooves are formed on both sides of each sliding groove, third sliding blocks slidably connected to the third sliding grooves are arranged on both sides of each sliding block, a second motor support plate is arranged on the outer side surface in the middle above the support plate, a second driving motor is arranged on the second motor support plate, an output end of the second driving motor penetrates through the middlemost sliding groove and is connected with a lead screw, one end of the lead screw away from the second driving motor is connected with one side of the sliding groove away from the second driving motor through a second bearing, a threaded hole is formed in the sliding block sliding in the middlemost sliding groove, and the lead screw penetrates through the threaded hole.

[0013] Preferably, a plurality of second grooves are formed in the lower end surface of the top plate, and a plurality of disinfection baking lamps are arranged inside the second grooves.

[0014] Preferably, the blowing mechanism includes a blower and a protective net. Two third grooves are formed in the inner side surface of the support plate, and one blowing mechanism is arranged in each third groove. The blower is arranged in the third groove, and the protective net is used for closing the third groove.

[0015] Preferably, the driving mechanism includes a third driving motor, a transmission rod and a plurality of moving wheels. The plurality of moving wheels are evenly distributed on both sides of the moving base. The bottom surfaces of the plurality of moving wheels are on the same horizontal plane and are in contact with the ground. The plurality of moving wheels on each side are connected by a chain. The third driving motor is arranged inside the moving base. The transmission rod is arranged between two opposite moving wheels. An output end of the third driving motor is connected with a first bevel gear, a second bevel gear meshing with the first bevel gear is arranged on the transmission rod, and a rubber anti-slip pad is arranged on the surface of each moving wheel.

[0016] Preferably, a plurality of the support frames are arranged between the outer side above the support plate and the outer side of the upper end surface of the moving base.

[0017] A using method of a pulp tray with an integrated swing arm for a pulp sheet includes the following steps:

[0018] S1: First, move the equipment to the pulp pool. By starting the third driving motor to rotate, the connected first bevel gear is driven to rotate, so as to drive the meshing second bevel gear to rotate, and finally drive the transmission rod and the two moving wheels to rotate. The arrangement of connecting the plurality of moving wheels by a chain enables the plurality of moving wheels to rotate simultaneously, so as to move the equipment to one side of the pulp pool.

[0019] S2: After the device movement is completed, by starting the second drive motor, the second drive motor drives the lead screw to rotate within the threaded hole and the second bearing, thereby driving the slider to slide outward within the sliding groove, which will drive the paper copying tray main body connected through the support block to slide and adjust to an appropriate distance, reserving an adjustment space for the subsequent vertical and horizontal adjustment of the paper copying tray main body;

[0020] S3: Then, by starting the first drive motor, the first drive motor drives the rotating wheel to rotate, which will cause the outer side of the paper copying tray main body to move downward, continue to vertically lower one side of the paper copying tray main body connected through the traction rope, so that the paper copying tray main body reaches a vertical state. Then, by starting two first electric telescopic rods, the two first electric telescopic rods extend. The first drive motor continues to drive the rotating wheel to rotate, thereby realizing the entire vertical paper copying tray main body to fit and lower along one side inside the pulp pool. After lowering to a certain distance, the reverse rotation of the first drive motor will drive the rotating wheel to retract the traction rope, and finally pull the paper copying tray main body to a horizontal state. Then, the first electric telescopic rod is contracted, and at the same time, the first drive motor will also drive the traction rope to continue to contract, thereby horizontally lifting the paper copying tray main body, and thus horizontally scooping up the pulp inside the pulp pool;

[0021] S4: When the pulp is scooped up and vacated to a position where the second electric telescopic rod is not connected to the first connecting rod, then by starting the micro electric telescopic rod, the continuous extension and contraction of the micro electric telescopic rod cause the micro electric telescopic rod to drive the second slider to slide within the second sliding groove, thereby driving the paper copying tray main body to sway left and right, making the pulp on the paper copying tray main body spread more evenly. After the paper copying tray main body finishes swaying left and right, the paper copying tray main body continues to rise until the first connecting rod successfully connects with the second electric telescopic rod. Then, through the extension and contraction of the second electric telescopic rod, the first connecting rod is driven to move up and down within the first through hole. Since there is a movement space between the first screen and the second screen and the middle part is hinged, when the first connecting rod moves up and down, it will drive the second screen to perform a swaying movement, further homogenizing the pulp on the paper copying tray main body. Then, by starting the disinfection baking lamp and the blower, further processing of the pulp placed on the paper copying tray main body is realized;

[0022] S5: After the pulp on the paper copying tray main body is processed, the device is moved to the next process for further processing by using the setting of the drive mechanism.

[0023] The present invention has at least the following beneficial effects:

[0024] 1. By using the settings of the first electric telescopic rod, the first driving motor, the rotating wheel and the towing rope, the main body of the pulp scooping tray can be adjusted to a vertical state and lowered into the pulp pool, then adjusted to a horizontal state, and finally the pulp in the pulp pool can be scooped up. By using the setting of the micro electric telescopic rod to push the second slider, the main body of the sieve can be driven to swing left and right, so that the pulp on the second sieve swings to a uniform state. By using the setting of the hinged middle part of the two sieves and the connection between the second electric telescopic rod and the first connecting rod, the shaking of the second sieve can be realized, so as to further evenly spread the pulp on the second sieve, thus making the processing effect of the pulp better. The pulp scooping tray with mechanical structure movement is used instead of the traditional pulp scooping tray used manually, thus improving the convenience of scooping up the pulp and the processing efficiency of the pulp.

[0025] 2. By using the setting of the driving mechanism, the equipment has a moving effect and can drive the main body of the pulp scooping tray to move to a specified position. By using the settings of the blowing mechanism and the disinfection baking lamp, the pulp on the main body of the pulp scooping tray can be further processed. BRIEF DESCRIPTION OF THE DRAWINGS

[0026] The drawings described herein are used to provide a further understanding of the present application and form a part of the present application. The illustrative embodiments and descriptions thereof of the present application are used to explain the present application and do not constitute an improper limitation to the present application. In the drawings:

[0027] Figure 1 is a three-dimensional structure diagram of the present invention;

[0028] Figure 2 is a three-dimensional structure diagram of the blowing mechanism of the present invention;

[0029] Figure 3 is a partial three-dimensional structure diagram of the present invention;

[0030] Figure 4 is a three-dimensional structure diagram of the bottom of the top plate of the present invention;

[0031] Figure 5 is a connection diagram of the support blocks of the present invention;

[0032] Figure 6 is a sliding diagram of the support blocks of the present invention;

[0033] Figure 7 is a cross-sectional view of the main body of the pulp scooping tray of the present invention;

[0034] Figure 8 is a partial exploded three-dimensional structure diagram of the main body of the pulp scooping tray of the present invention;

[0035] Figure 9 is of the present invention Figure 7Enlarged view of location A;

[0036] Figure 10 This is a partial schematic diagram of the driving mechanism of the present invention.

[0037] In the figure, 1 - moving base, 2 - driving mechanism, 3 - support plate, 4 - blowing mechanism, 5 - top plate, 6 - support block, 7 - first electric telescopic rod, 8 - first motor support plate, 9 - first driving motor, 10 - rotating wheel, 11 - traction rope, 12 - support frame, 13 - first bearing, 14 - main body of sieve, 15 - connecting plate, 16 - second connecting plate, 17 - connecting rod, 18 - shovel plate, 1801 - second through hole, 19 - first sieve, 20 - second sieve, 21 - groove, 22 - second support block, 23 - hinged plate, 24 - second hinged plate, 25 - compression spring, 26 - connecting ring, 27 - first through hole, 28 - first connecting rod, 29 - connecting column, 30 - second electric telescopic rod, 31 - magnetic attraction ring, 32 - strong adsorption magnet, 33 - second sliding groove, 34 - second sliding block, 38 - micro electric telescopic rod, 39 - sliding groove, 40 - sliding block, 41 - third sliding groove, 42 - third sliding block, 43 - second motor support plate, 44 - lead screw, 45 - second bearing, 46 - threaded hole, 47 - second groove, 48 - disinfection baking lamp, 49 - blower, 50 - protection net, 51 - third groove, 52 - third driving motor, 53 - transmission rod, 54 - moving wheel, 55 - first bevel gear, 56 - second bevel gear, 57 - rubber anti-slip pad, 58 - support frame, 59 - chain, 60 - main body of scraping plate, 61 - second driving motor, 62 - second support plate. Detailed implementation manners

[0038] The following will describe in detail the implementation manners of the present application in conjunction with the accompanying drawings and embodiments, so as to fully understand how the present application uses technical means to solve technical problems and achieve the realization process of technical effects and implement accordingly.

[0039] As Figures 1 - 10As shown in the figure, the pulp copying net plate with an integrated swing arm provided in this embodiment includes a moving base 1. A driving mechanism 2 is arranged inside the moving base 1. The driving mechanism 2 includes a third driving motor 52, a transmission rod 53, and a plurality of moving wheels 54. The plurality of moving wheels 54 are evenly distributed on both sides of the moving base 1. The bottom surfaces of the plurality of moving wheels 54 are on the same horizontal plane and are in contact with the ground. The plurality of moving wheels 54 on each side are all connected by a chain 59. The third driving motor 52 is arranged inside the moving base 1. The transmission rod 53 is arranged between two opposite moving wheels 54. The output end of the third driving motor 52 is connected with a first bevel gear 55. A second bevel gear 56 meshing with the first bevel gear 55 is arranged on the transmission rod 53. By turning on the third driving motor 52 to rotate, the connected first bevel gear 55 is driven to rotate, thereby driving the meshing second bevel gear 56 to rotate. Finally, the transmission rod 53 and the two moving wheels 54 are driven to rotate. The arrangement of connecting the plurality of moving wheels 54 with the chain 59 enables the plurality of moving wheels 54 to rotate simultaneously, thereby realizing the movement of the equipment; a rubber anti-slip pad 57 is arranged on the surface of each moving wheel 54. The arrangement of the rubber anti-slip pad 57 can further improve the anti-slip effect of the movement of the moving wheel 54 and prevent slipping;

[0040] A support plate 3 is vertically arranged on the upper end surface of the moving base 1. A blowing mechanism 4 is arranged on the inner side surface of the support plate 3. The blowing mechanism 4 includes a blower 49 and a protective net 50. The blower 49 is used to blow air on the pulp on the pulp copying net plate main body 60. Two third grooves 51 are opened on the inner side surface of the support plate 3. A blowing mechanism 4 is arranged in each third groove 51. The blower 49 is arranged in the third groove 51, and the blower 49 can be hidden inside the third groove 51. The protective net 50 is used to close the third groove 51, which can protect the blower 49 and improve the safety of the equipment during use;

[0041] Above the inner side of the support plate 3, a top plate 5 is horizontally arranged. A support block 6 is slidably arranged on the lower end surface of the top plate 5. A plurality of sliding grooves 39 are formed on the lower end surface of the top plate 5. On the upper end surface of the support block 6, sliding blocks 40 which are slidably connected with the sliding grooves 39 are arranged. On both sides of each sliding groove 39, third sliding grooves 41 are formed. On both sides of each sliding block 40, third sliding blocks 42 which are slidably connected with the third sliding grooves 41 are arranged. The arrangements of the multiple sliding blocks 40, the multiple sliding grooves 39, the third sliding grooves 41 and the third sliding blocks 42 can all improve the stability of the support block 6 when sliding on the lower end surface of the top plate 5. On the outer side of the middle part above the support plate 3, a second motor support plate 43 is arranged. The second motor support plate 43 is used to support the second driving motor 61. The second driving motor 61 is arranged on the second motor support plate 43. The output end of the second driving motor 61 penetrates through the middlemost sliding groove 39 and is connected with a lead screw 44. The end of the lead screw 44 far away from the second driving motor 61 is connected with the side of the sliding groove 39 far away from the second driving motor 61 through a second bearing 45. On the sliding block 40 sliding in the middlemost sliding groove 39, a threaded hole 46 is formed. The lead screw 44 penetrates through the threaded hole 46. By starting the second driving motor 61, the second driving motor 61 drives the lead screw 44 to rotate in the threaded hole 46 and the second bearing 45, so as to drive the sliding block 40 to slide outwards in the sliding groove 39, and then drive the copying net plate main body 60 connected through the support block 6 to slide and adjust to a proper distance, reserving an adjustment space for the subsequent vertical and horizontal adjustment of the copying net plate main body 60.

[0042] On both sides of the lower end surface of the support block 6, there are vertically arranged first electric telescopic rods 7 sliding. A pulp scooping net main body 60 is connected between the lower end surfaces of the two first electric telescopic rods 7. On the front end surface of the top plate 5, there is a first motor support plate 8. A first driving motor 9 is arranged on the first motor support plate 8. The output end of the first driving motor 9 is provided with a rotating wheel 10. A traction rope 11 is wound around the rotating wheel 10. The traction rope 11 is connected to the front end surface of the pulp scooping net main body 60. By starting the first driving motor 9, the first driving motor 9 drives the rotating wheel 10 to rotate, so that one side of the pulp scooping net main body 60 connected by the traction rope 11 is lowered, making the pulp scooping net main body 60 reach a vertical state, thus facilitating the vertical lowering of the pulp scooping net main body 60 to one side inside the pulp pool. The pulp scooping net main body 60 includes a support frame 12, a screen main body 14 and two connecting plates 15. The two connecting plates 15 are respectively arranged above both sides of the support frame 12. On the inner side of the two connecting plates 15 close to the support plate 3, there is a first bearing 13. The lower end surface of the first electric telescopic rod 7 is provided with a second connecting plate 16. On the outer side of the lower end surface of the second connecting plate 16, there is a connecting rod 17 connected to the first bearing 13. By using the connection between the connecting rod 17 and the first bearing 13, when the pulp scooping net main body 60 is lowered, the first bearing 13 rotates to make the pulp scooping net main body 60 reach a vertical state. On the front end surface of the support frame 12, there is a shovel plate 18 slightly tilted upward. The slightly tilted shovel plate 18 is convenient for shoveling up the pulp. A second through hole 1801 is opened in the middle part of the shovel plate 18. The second through hole 1801 is connected to the traction rope 11.

[0043] In this embodiment, as Figures 7 to 9As shown, the screen body 14 includes a first screen 19 and a second screen 20. The first screen 19 is located below the second screen 20. When picking up the pulp, the pulp is picked up through the first screen 19, and the moisture drops onto the second screen 20 through the first screen 19 and then is discharged into the pulp pool through the second screen 20, realizing the water control of the pulp on the screen body 14. Grooves 21 are provided on the inner side surface of the support frame 12. Both sides of the first screen 19 are connected to the lower end surface inside the grooves 21 through second support blocks 22. Second support plates 62 are provided on both sides of the second screen 20. An articulated plate 23 is provided in the middle of the lower end surface of the second support plate 62, and a second articulated plate 24 is provided in the middle of the upper end surface of the second support block 22. The articulated plate 23 is articulated with the second articulated plate 24. A connecting ring 26 is provided at the rear side of the upper end surface of the second support plate 62. A first through hole 27 is provided at the rear side of the upper end surface of the connecting plate 15, and the first through hole 27 penetrates into the inside of the groove 21. A first connecting rod 28 is slidably arranged in the first through hole 27. The lower end surface of the first connecting rod 28 is connected to the connecting ring 26 through a connecting column 29. A compression spring 25 is provided at the rear between the second support plate 62 and the second support block 22. Second electric telescopic rods 30 are provided on both sides of the lower end surface of the top plate 5. A magnetic attraction ring 31 is provided at the lower end surface of the second electric telescopic rod 30. A strong adsorption magnet 32 that mutually adsorbs with the magnetic attraction ring 31 is provided on the upper end surface of the first connecting rod 28. When the first connecting rod 28 is driven to move upward when the picking tray body 60 rises, by using the setting that the magnetic attraction ring 31 and the adsorption magnet 32 mutually adsorb, the second electric telescopic rod 30 and the first connecting rod 28 can be strongly adsorbed and connected, so that the second electric telescopic rod 30 can drive the first connecting rod 28 to move up and down, thereby driving the second screen 20 to shake, so as to realize the shaking of the pulp on the surface of the second screen 20, making the pulp spread more evenly. When the first connecting rod 28 is pressed down, the compression spring 25 will be squeezed. By using the rebound effect of the compression spring 25, the rear of the second support plate 62 will be jacked up and rebound repeatedly, further improving the shaking effect of the second screen 20.

[0044] In this embodiment, as Figure 6 shown, second sliding grooves 33 are provided on both sides of the lower end surface of the support block 6. Second sliding blocks 34 that are slidably connected to the second sliding grooves 33 are provided on the upper end surfaces of both first electric telescopic rods 7. Micro electric telescopic rods 38 are provided between the two side surfaces of the second sliding block 34 and the two side surfaces inside the second sliding groove 33. By turning on the micro electric telescopic rods 38, the continuous extension and contraction of the micro electric telescopic rods 38 drive the second sliding block 34 to slide in the second sliding groove 33, thereby driving the picking tray body 60 to shake left and right, making the pulp on the picking tray body 60 spread more evenly.

[0045] In this embodiment, asFigure 4 As shown, a plurality of second grooves 47 are formed in the lower end surface of the top plate 5, and a plurality of disinfection and baking lamps 48 are arranged inside the second grooves 47. The disinfection and baking lamps 48 are hidden inside the second grooves 47, and the disinfection and baking lamps 48 are used to disinfect and heat the pulp.

[0046] In this embodiment, as Figure 1 shown, a plurality of support frames 58 are arranged between the upper outer side of the support plate 3 and the upper outer side of the upper end surface of the moving base 1. The arrangement of the plurality of support frames 58 can further improve the stability of the support plate 3 and extend the service life of the support plate 3.

[0047] A method for using a pulp sheet copying net plate with an integrated swing arm includes the following steps:

[0048] S1: First, move the device to the pulp pool. By turning on the third drive motor 52 to rotate, the connected first bevel gear 55 is driven to rotate, thereby driving the engaged second bevel gear 56 to rotate, and finally driving the transmission rod 53 and the two moving wheels 54 to rotate. The arrangement of connecting several moving wheels 54 with a chain 59 enables several moving wheels 54 to rotate simultaneously, so as to move the device to one side of the pulp pool.

[0049] S2: After the device movement is completed, by turning on the second drive motor 43, the second drive motor 43 drives the lead screw 44 to rotate in the threaded hole 46 and the second bearing 45, thereby driving the sliding block 40 to slide outward in the sliding groove 39, and thus driving the copying net plate main body 60 connected through the support block 6 to slide and adjust to a suitable distance, leaving an adjustment space for the subsequent vertical and horizontal adjustment of the copying net plate main body 60.

[0050] S3: Then, by turning on the first drive motor 9, the first drive motor 9 drives the rotating wheel 10 to rotate, so that the outer side of the copying net plate main body 60 moves downward. One side of the copying net plate main body 60 connected by the traction rope 11 is continuously vertically lowered, so that the copying net plate main body 60 reaches a vertical state. Then, by turning on the two first electric telescopic rods 7, the two first electric telescopic rods 7 are extended. The first drive motor 9 continues to drive the rotating wheel 10 to rotate, so as to realize the entire vertical copying net plate main body 60 to fit and descend along one side inside the pulp pool. After descending a certain distance, the reverse rotation of the first drive motor 9 drives the rotating wheel 10 to retract the traction rope 11, and finally the copying net plate main body 60 is pulled to a horizontal state. Then, the first electric telescopic rod 7 is contracted, and at the same time, the first drive motor 9 also drives the traction rope 11 to continue to contract, so as to horizontally lift the copying net plate main body 60, and thus horizontally lift the pulp inside the pulp pool.

[0051] S4: When the pulp is lifted and vacated to a position where the second electric telescopic rod 30 is not connected to the first connecting rod 28, then by turning on the micro electric telescopic rod 38, the continuous extension and contraction of the micro electric telescopic rod 38 is used to drive the second slider 34 to slide in the second chute 33, thereby driving the main body 60 of the pulp scooping tray to sway left and right, making the pulp on the main body 60 of the pulp scooping tray spread more evenly. When the left and right swaying of the main body 60 of the pulp scooping tray ends, the main body 60 of the pulp scooping tray continues to rise until the first connecting rod 28 is successfully connected to the second electric telescopic rod 30. Then, through the extension and contraction of the second electric telescopic rod 30, the first connecting rod 28 is driven to move up and down in the first through hole 27. Since there is a moving space between the first screen 19 and the second screen 20 and the middle part is hinged, when the first connecting rod 28 moves up and down, the second screen 20 will be driven to swing, further homogenizing the pulp on the main body 60 of the pulp scooping tray. Then, by turning on the disinfection lamp 48 and the fan 49, further treatment of the pulp placed on the main body 60 of the pulp scooping tray is achieved;

[0052] S5: When the treatment of the pulp on the main body 60 of the pulp scooping tray is completed, the device is moved to the next process for further processing by using the setting of the driving mechanism 2.

[0053] As used in the specification and claims, certain terms are used to refer to specific components. Those skilled in the art should understand that hardware manufacturers may use different terms to refer to the same component. The specification and claims do not use the difference in names as a way to distinguish components, but rather use the difference in the functions of components as the criterion for distinction. As used throughout the specification and claims, the term "comprising" is an open-ended term and should be interpreted as "including but not limited to". "Substantially" means within an acceptable error range. Those skilled in the art can solve technical problems within a certain error range and basically achieve the technical effect.

[0054] It should be noted that the term "including", "comprising" or any other variant thereof is intended to cover non-exclusive inclusion, so that a commodity or system including a series of elements not only includes those elements, but also includes other elements not explicitly listed, or elements inherent to such commodity or system. Without further limitation, an element defined by the statement "including one..." does not exclude the existence of another identical element in the commodity or system including the element.

[0055] The foregoing description has shown and described several preferred embodiments of the present invention. However, as previously mentioned, it should be understood that the present invention is not limited to the forms disclosed herein, should not be regarded as excluding other embodiments, but can be used in various other combinations, modifications, and environments, and can be altered within the scope of the inventive concept described herein through the above teachings or the techniques or knowledge in the relevant field. Any alterations and changes made by those skilled in the art that do not depart from the spirit and scope of the present invention shall fall within the protection scope of the appended claims of the present invention.

Claims

1. A forming wire tray with an integrated swing arm for a forming slice, comprising a moving base (1), characterized in that, a driving mechanism (2) is arranged inside the moving base (1), a support plate (3) is vertically arranged on the upper end surface of the moving base (1), a blowing mechanism (4) is arranged on the inner side surface of the support plate (3), a top plate (5) is horizontally arranged above the inner side surface of the support plate (3), a support block (6) is slidably arranged on the lower end surface of the top plate (5), first electric telescopic rods (7) vertically arranged are slid on both sides of the lower end surface of the support block (6), a forming wire tray main body (60) is connected between the lower end surfaces of the two first electric telescopic rods (7), a first motor support plate (8) is arranged on the front end surface of the top plate (5), a first driving motor (9) is arranged on the first motor support plate (8), a rotating wheel (10) is arranged at the output end of the first driving motor (9), a traction rope (11) is wound on the rotating wheel (10), and the traction rope (11) is connected to the front end surface of the forming wire tray main body (60); the forming wire tray main body (60) comprises a support frame (12), a screen main body (14) and two connecting plates (15), the two connecting plates (15) are respectively arranged above both sides of the support frame (12), a first bearing (13) is arranged on the inner side surface of the two connecting plates (15) close to the support plate (3), a second connecting plate (16) is arranged at the lower end surface of the first electric telescopic rod (7), a connecting rod (17) connected to the first bearing (13) is arranged on the outer side of the lower end surface of the second connecting plate (16), a shovel plate (18) slightly tilted upward is arranged on the front end surface of the support frame (12), a second through hole (1801) is formed in the middle of the shovel plate (18), and the second through hole (1801) is connected to the traction rope (11); The screen body (14) includes a first screen (19) and a second screen (20). The first screen (19) is located below the second screen (20). A groove (21) is formed on the inner side surface of the support frame (12). Both sides of the first screen (19) are connected to the lower end surface inside the groove (21) through second support blocks (22). Second support plates (62) are arranged on both sides of the second screen (20). An articulated plate (23) is arranged in the middle of the lower end surface of the second support plate (62). A second articulated plate (24) is arranged in the middle of the upper end surface of the second support block (22). The articulated plate (23) is articulated with the second articulated plate (24). A connecting ring (26) is arranged at the rear side of the upper end surface of the second support plate (62). A first through hole (27) is formed in the rear side of the upper end surface of the connecting plate (15). The first through hole (27) penetrates through to the inside of the groove (21). A first connecting rod (28) is slidably arranged in the first through hole (27). The lower end surface of the first connecting rod (28) is connected to the connecting ring (26) through a connecting column (29). A compression spring (25) is arranged at the rear between the second support plate (62) and the second support block (22). Second electric telescopic rods (30) are arranged on both sides of the lower end surface of the top plate (5). A magnetic suction ring (31) is arranged at the lower end surface of the second electric telescopic rod (30). A strong adsorption magnet (32) that mutually adsorbs with the magnetic suction ring (31) is arranged on the upper end surface of the first connecting rod (28). Second chutes (33) are arranged on both sides of the lower end surface of the support block (6). Second sliders (34) that are slidably connected to the second chutes (33) are arranged on the upper end surfaces of the two first electric telescopic rods (7). Micro electric telescopic rods (38) are arranged between the two side surfaces of the second slider (34) and the two side surfaces inside the second chute (33).

2. The screen pan with an integrated swing arm for a pulp sheet according to claim 1, characterized in that: The lower end face of the top plate (5) is provided with a plurality of sliding grooves (39), the upper end face of the support block (6) is provided with sliding blocks (40) slidably connected to the sliding grooves (39), both sides of each sliding groove (39) are provided with third sliding grooves (41), both sides of each sliding block (40) are provided with third sliding blocks (42) slidably connected to the third sliding grooves (41), the outer side surface of the middle part above the support plate (3) is provided with a second motor support plate (43), the second motor support plate (43) is provided with a second driving motor (61), the output end of the second driving motor (61) penetrates through the middlemost sliding groove (39) and is connected with a lead screw (44), one end of the lead screw (44) far away from the second driving motor (61) is connected to the side of the sliding groove (39) far away from the second driving motor (61) through a second bearing (45), a threaded hole (46) is opened on the sliding block (40) sliding in the middlemost sliding groove (39), and the lead screw (44) penetrates through the threaded hole (46).

3. The wire mesh for pulp sheet copying with an integrated swing arm according to claim 1, characterized in that: The lower end face of the top plate (5) is provided with a plurality of second grooves (47), and a plurality of disinfection baking lamps (48) are arranged inside the second grooves (47).

4. The wire mesh for pulp sheet copying with an integrated swing arm according to claim 1, characterized in that: The blowing mechanism (4) includes a blower (49) and a protective net (50), two third grooves (51) are opened on the inner side surface of the support plate (3), each third groove (51) is provided with one blowing mechanism (4), the blower (49) is arranged in the third groove (51), and the protective net (50) is used to close the third groove (51).

5. The wire mesh for pulp sheet copying with an integrated swing arm according to claim 1, characterized in that: The driving mechanism (2) includes a third driving motor (52), a transmission rod (53) and a plurality of moving wheels (54), the plurality of moving wheels (54) are evenly distributed on both sides of the moving base (1), the bottom surfaces of the plurality of moving wheels (54) are on the same horizontal plane and are in contact with the ground, the plurality of moving wheels (54) on each side are connected by a chain (59), the third driving motor (52) is arranged inside the moving base (1), the transmission rod (53) is arranged between two opposite moving wheels (54), the output end of the third driving motor (52) is connected with a first bevel gear (55), the transmission rod (53) is provided with a second bevel gear (56) meshing with the first bevel gear (55), and a rubber anti-slip pad (57) is arranged on the surface of each moving wheel (54).

6. The wire mesh for pulp sheet copying with an integrated swing arm according to claim 1, characterized in that: A number of support frames (58) are provided between the upper outer side of the support plate (3) and the upper outer side of the upper end surface of the moving base (1).

7. The usage method of a wire mesh for an integrated swing arm for pulp sheets according to claim 1, characterized in that: it includes the following steps: S1: First, move the device to the pulp pool. By turning on the third drive motor (52) to rotate, the connected first bevel gear (55) is driven to rotate, thereby driving the meshing second bevel gear (56) to rotate, and finally driving the transmission rod (53) and the two moving wheels (54) to rotate. By using a chain (59) to connect the several moving wheels (54), the several moving wheels (54) rotate simultaneously, so as to move the device to one side of the pulp pool; S2: After the device movement is completed, by turning on the second drive motor (61), the second drive motor (61) drives the lead screw (44) to rotate in the threaded hole (46) and the second bearing (45), thereby driving the sliding block (40) to slide outward in the sliding groove (39), which will drive the wire mesh main body (60) connected through the support block (6) to slide and adjust to a suitable distance, leaving an adjustment space for the subsequent vertical and horizontal adjustment of the wire mesh main body (60); S3: Then, by turning on the first drive motor (9), the first drive motor (9) drives the rotating wheel (10) to rotate, so that the outer side of the wire mesh main body (60) moves downward. One side of the wire mesh main body (60) connected by the towing rope (11) is continuously lowered vertically, so that the wire mesh main body (60) reaches a vertical state. Then, by turning on the two first electric telescopic rods (7), the two first electric telescopic rods (7) extend. The first drive motor (9) continues to drive the rotating wheel (10) to rotate, so as to realize the entire vertical wire mesh main body (60) to fit and lower along one side inside the pulp pool. After lowering to a certain distance, the reverse rotation of the first drive motor (9) will drive the rotating wheel (10) to retract the towing rope (11). Finally, the wire mesh main body (60) is pulled to a horizontal state. Then, the first electric telescopic rod (7) is contracted, and at the same time, the first drive motor (9) will also drive the towing rope (11) to continue to contract, so as to horizontally lift the wire mesh main body (60), so as to horizontally lift the pulp in the pulp pool. S4: When the pulp is lifted into the air until the second electric telescopic rod (30) is not connected to the first connecting rod (28), then by turning on the micro electric telescopic rod (38), the continuous extension and contraction of the micro electric telescopic rod (38) causes the micro electric telescopic rod (38) to drive the second slider (34) to slide within the second chute (33), thereby driving the main body of the wire drawing tray (60) to sway left and right, making the pulp on the main body of the wire drawing tray (60) spread more evenly. After the left and right swaying of the main body of the wire drawing tray (60) ends, the main body of the wire drawing tray (60) continues to rise until the first connecting rod (28) is successfully connected to the second electric telescopic rod (30). Then, through the extension and contraction of the second electric telescopic rod (30), the first connecting rod (28) is driven to move up and down within the first through hole (27). Since there is a movement space between the first screen (19) and the second screen (20) and the middle part is hinged, when the first connecting rod (28) moves up and down, the second screen (20) will be driven to perform a swinging motion, further homogenizing the pulp on the main body of the wire drawing tray (60). Then, by turning on the disinfection baking lamp (48) and the blower (49), further treatment of the pulp placed on the main body of the wire drawing tray (60) is achieved; S5: After the pulp on the main body of the wire drawing tray (60) is processed, the device is moved to the next process for further processing by using the setting of the drive mechanism (2).

Citation Information

Patent Citations

  • Fishing device of industrial wastewater treatment tank

    CN108797547A

  • Papermaking device for papermaking and papermaking method thereof

    CN110230229A