A pulp board pulper in a papermaking workshop
By designing a slurry pulp machine including the first and second crushing mechanisms and intermittent feeding mechanisms, the problems of large crushing shaft resistance and low efficiency caused by large slurry pulp volume in the slurry crusher are solved, and efficient crushing and equipment life are achieved.
Patent Information
- Application Number
- CN202211169394.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-09-23
- Publication Date
- 2025-08-08
- Estimated Expiration
- 2042-09-23
AI Technical Summary
When the existing slurry plate crusher breaks the slurry plate, the large volume of the slurry plate leads to large resistance to the crushing shaft, short service life, and the number of slurry plates cannot be controlled, resulting in a decrease in crushing efficiency and quality.
The slurry plate crusher design is adopted, including the first and second crushing mechanisms and the intermittent feeding mechanism. The connecting seat and the turntable are driven by the power mechanism to realize intermittent conveying of the slurry plate and two-stage crushing, avoiding accumulation in the crushing box, and improving crushing efficiency and life.
It improves the crushing efficiency and quality of the slurry plate, avoids overloading of the crushing mechanism, extends the service life of the equipment, and improves the overall working efficiency and practicality.
Smart Images

Figure CN115369673B_ABST
Abstract
Description
Technical Field
[0001] The invention belongs to the technical field of papermaking equipment, and in particular relates to a pulp board pulper in a papermaking workshop. Background Art
[0002] Papermaking is an important invention of the working people of ancient China. Papermaking can be divided into two forms: machine-made and hand-made. Machine-made papermaking is carried out continuously on a papermaking machine. Pulp suitable for paper quality is diluted with water to a certain concentration. The paper is initially dehydrated on the wire section of the papermaking machine to form wet paper sheets. The sheets are then pressed to remove water and then dried into paper. During the papermaking process, the pulp sheet needs to be broken into pulp. In other words, the pulp sheet needs to be broken into pulp. Pulp sheet is a type of paper pulp. It is a thick cardboard formed after the pulp is dehydrated and pressed. The production of pulp sheet is mainly for easy transportation.
[0003] Most of the existing pulp plate pulp breakers are provided with a crushing box, a crushing mechanism and a conveying mechanism. The conveying mechanism conveys the pulp plate into the crushing box, and the crushing mechanism crushes the pulp plate through the crushing cone provided on the crushing shaft. However, due to the large volume of the pulp plate, directly conveying it into the crushing box for crushing will form a large resistance to the crushing shaft, thereby affecting the service life of the crushing shaft, and the existing crusher cannot control the number of pulp plates conveyed, which leads to an excessive number of pulp plates in the crushing box, further aggravating the operating power of the crushing shaft, which will not only reduce the service life of the crushing shaft, but also reduce the crushing efficiency and quality of the pulp plate by the pulp breaker.
[0004] Therefore, in view of the above situation, there is an urgent need to develop a pulp board pulper for papermaking workshops to overcome the shortcomings in current practical applications. 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 pulp board pulper for a papermaking workshop 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] A pulp board pulper for a papermaking workshop comprises a chassis, a conveying frame fixedly provided on one side of the chassis, one end of the conveying frame extending outside the chassis, and a placement frame fixedly provided on the conveying frame, and further comprising:
[0008] A conveying mechanism, wherein the conveying mechanism is arranged on the conveying frame;
[0009] A crushing mechanism, the crushing mechanism comprising a first crushing mechanism and a second crushing mechanism, the first crushing mechanism being disposed in the chassis at one end close to the conveying mechanism, the second crushing mechanism being disposed in a crushing box fixed in the chassis, and one end of the second crushing mechanism being connected to an output end of the power mechanism;
[0010] An intermittent feeding mechanism, comprising a driving assembly, a connecting seat, a turntable, a third transmission module, a screw, a third movable seat, a fourth connecting member, and a fifth elastic member; the driving assembly comprises a second movable seat, a movable member, a third elastic member, a third rotating member, a limiting member, a third connecting member, and a fourth elastic member;
[0011] The cam is fixedly mounted on the support frame, and the cam is adapted to move the first end of the second movable member relative to the first movable member.
[0012] The connecting seat is connected to the output end of the power mechanism, the connecting seat and the turntable are movably arranged in the chassis, one end of the turntable is connected to the screw through the third transmission module, the screw is threadedly connected to the third movable seat, the third movable seat is slidably arranged on the outer wall of the crushing box, and the third movable seat is provided with a fourth connecting member and a fifth elastic member, one end of the fourth connecting member is movably connected to the bottom of the conveying seat, and one end of the fifth elastic member is connected to the outer wall of the crushing box;
[0013] The power mechanism simultaneously drives the connecting seat to rotate and drives the second crushing mechanism to work. The conveying mechanism conveys the pulp plate into the chassis. The first crushing mechanism performs the first stage crushing on it. The conveying mechanism cooperates with the uncrushed pulp plate to convey the first stage crushed pulp plate into the conveying seat. The pulp plate crushed in the first stage drives the second moving seat to move by its own weight, and the second moving seat drives the moving part to move.
[0014] When the third link is engaged, the lever is engaged to the shift lever, and the lever is engaged to the shift lever, which is engaged to the shift lever, and the shift lever is engaged to the shift lever, which is engaged to the shift lever, and the shift lever is engaged to the shift lever.
[0015] As a further technical solution of the present invention, the power mechanism includes a power member, a fourth transmission module, a fifth transmission module, a sixth transmission module and a rotating shaft. The power member is fixed in the chassis, and the output end of the power member is respectively connected to one end of the fourth transmission module and the fifth transmission module, the other end of the fourth transmission module is connected to the connecting seat, the other end of the fifth transmission module is connected to one end of the sixth transmission module, the other end of the sixth transmission module extends into the crushing box and is connected to one end of the rotating shaft, the rotating shaft is movably arranged in the crushing box, and the other end of the rotating shaft is connected to the second crushing mechanism.
[0016] As a further technical solution of the present invention, the second crushing mechanism includes a rotating frame, a crushing shaft, a crushing piece, a fixed seat, a first gear, a second gear, a second rotating piece, a material-diverting shaft and a material-diverting plate. The rotating frame is fixedly connected to the rotating shaft, a crushing shaft is provided in the middle of the rotating frame, crushing pieces are distributed on the side walls of the crushing shaft, a first gear and a second gear are distributed on the rotating frame, the first gear is meshed with the second gear, and the first gear is meshed with the meshing teeth distributed on the inner wall of the fixed seat, a second rotating piece is fixedly provided on the second gear, a material-diverting shaft is fixed on one end of the second rotating piece, and a material-diverting plate is distributed on the material-diverting shaft.
[0017] As a further technical solution of the present invention, the first crushing mechanism includes a fixed box, a second driving member, a first rotating member, a second connecting member, a knocking member, a knocking seat, a crushing seat, a crushing table and a shock-absorbing member. The fixed box is fixed on the inner wall of the chassis, and the second driving member is arranged in the fixed box. The output end of the second driving member is connected to one end of the first rotating member, and the other end of the first rotating member is connected to the knocking member through the second connecting member. The knocking member is slidably arranged on the side wall of the fixed box, one end of the knocking member extends outside the fixed box and is movably connected to the knocking seat, the knocking seat is arranged on the crushing seat, and the crushing seat is movably connected to the outer wall of the fixed box through the shock-absorbing member. Crushing cones are distributed on the bottom of the crushing seat, and the crushing table is fixed on one side wall of the conveying frame.
[0018] As a further technical solution of the present invention, the conveying mechanism includes a control component, a cam, a rotating seat, a first movable seat, a toggle member, a first elastic member and a conveying component. The control component is fixed on the conveying frame, and the output end of the control component is respectively connected to the cam and the conveying component. The cam is movably arranged on the conveying frame, and the cam is movably connected to the rolling member arranged on the rotating seat. One end of the rotating seat is movably arranged on the conveying frame, and the other end of the rotating seat is movably connected to the first connecting member arranged on the first movable seat. The first movable seat is slidably arranged on the conveying frame through the first elastic member, and a toggle member is fixed on the first movable seat.
[0019] As a further technical solution of the present invention, the control component includes a first driving member, a first transmission module and a second transmission module. The first driving member is fixed on the conveying frame, and the output end of the first driving member is respectively connected to one end of the first transmission module and the second transmission module. The other end of the first transmission module is connected to the cam, and the other end of the second transmission module is connected to the conveying component.
[0020] As a further technical solution of the present invention, the conveying assembly includes a first conveying roller, a second conveying roller, a mounting seat and a second elastic member. The first conveying roller is fixed to the conveying frame through the mounting seat, and one end of the first conveying roller is connected to the second transmission module. The second conveying roller is movably arranged on the conveying frame through the mounting seat, one end of the second elastic member is connected to the conveying frame, and the other end of the second elastic member is connected to the mounting seat on which the second conveying roller is installed.
[0021] Compared with the prior art, the present invention has the following beneficial effects:
[0022] The power member drives the fourth transmission module and the fifth transmission module to rotate at the same time, the fourth transmission module drives the connecting seat to rotate, the fifth transmission module drives the sixth transmission module to rotate, the sixth transmission module drives the rotating shaft to rotate, and the rotating shaft drives the second crushing mechanism to work;
[0023] The conveying mechanism conveys the pulp sheet into the chassis, and the first crushing mechanism performs the first stage crushing on it. The conveying mechanism cooperates with the uncrushed pulp sheet to convey the first stage crushed pulp sheet into the conveying seat. The pulp sheet crushed in the first stage drives the second moving seat to move by its own weight, and the second moving seat drives the moving member to move.
[0024] When the third movable member is moved, the movable member is driven by the third movable member to rotate, and the limiting member is rotated to release the third connecting member, and the fourth elastic member drives the third connecting member to rotate by its own elastic force, and the third connecting member is connected with the connecting seat by rotation, and the connecting seat drives the turntable to rotate by the third connecting member, and the turntable drives the screw to rotate by the third transmission module, and the screw drives the third movable seat to move, and the third movable seat drives the conveying seat to rotate clockwise through the fourth connecting member, thereby intermittently conveying the pulp plates crushed in the first stage into the crushing box by rotation, and a large number of pulp plates will not be accumulated in the crushing box, thereby improving the working efficiency and service life of the second crushing mechanism, and in the process of the conveying seat dumping the pulp plates into the crushing box, the third elastic member drives the second movable seat back by its own elastic force, and the second movable seat improves the conveying efficiency of the conveying seat to the pulp plates by returning, thereby improving the conveying efficiency of the pulp breaker;
[0025] When the third connecting member rotates one circle with the connecting seat, the fourth elastic member drives the limiting member to return to the initial state through its own elastic member. At this time, the limiting member limits the third connecting member again, so that the turntable returns to a stationary state. The fifth elastic member drives the third moving seat to move back through its own elastic force, and then drives the conveying seat to return to the material receiving state, which is convenient for collecting the pulp plates crushed in the first stage and also convenient for the conveying seat to convey the pulp plates collected in the next stage, thereby improving the working efficiency and practicality of the pulp breaker.
[0026] The second crushing mechanism performs the second stage of crushing. The first crushing mechanism cooperates with the second crushing mechanism to achieve full crushing of the pulp plate, thereby improving the crushing efficiency and quality of the pulp breaker for the pulp plate, and avoiding the overload phenomenon of the second crushing mechanism, further improving the working efficiency of the second crushing mechanism, and thus improving the working efficiency and practicality of the pulp breaker.
[0027] In order to more clearly illustrate the structural features and effects of the present invention, the present invention is described in detail below with reference to the accompanying drawings and specific embodiments. BRIEF DESCRIPTION OF THE DRAWINGS
[0028] Figure 1 This is a structural sectional view of a pulp board pulper in a papermaking workshop provided by an embodiment of the present invention.
[0029] Figure 2 for Figure 1 A magnified view of the structure at B in the middle.
[0030] Figure 3 for Figure 2 A three-dimensional diagram of the partial structure of the intermittent feeding mechanism.
[0031] Figure 4 for Figure 1Schematic diagram of the structure of the conveying mechanism.
[0032] Figure 5 for Figure 4 Structural stereogram of the conveying mechanism.
[0033] Figure 6 for Figure 1 Top view of the cross-section of the second crushing mechanism structure.
[0034] Figure 7 for Figure 1 A magnified view of the structure in the middle.
[0035] Figure numbers: 1-chassis, 2-conveying frame, 3-conveying mechanism, 31-control component, 311-first driving member, 312-first transmission module, 313-second transmission module, 32-cam, 33-rotating seat, 331-rolling member, 34-first moving seat, 341-first connecting member, 35-sliding member, 36-first elastic member, 37-conveying component, 371-first conveying roller, 372-second conveying roller, 373-mounting seat, 374-second elastic member, 4-placing frame, 5-first crushing mechanism, 51-fixed box, 52-second driving member, 53-first rotating member, 54-second connecting member, 55-knocking member, 56-knocking seat, 57-crushing seat, 571-crushing cone, 58-crushing table, 59-shock absorber, 6-crushing box, 7-second crushing mechanism, 71 - rotating frame, 72 - crushing shaft, 73 - crushing member, 74 - fixed seat, 741 - meshing teeth, 75 - first gear, 76 - second gear, 77 - second rotating member, 78 - material diverter shaft, 79 - material diverter plate, 8 - conveying seat, 9 - intermittent feeding mechanism, 91 - driving assembly, 911 - second moving seat, 912 - moving member, 913 - third elastic member, 914 - third rotating member, 915 - limiting member, 916 - third connecting member, 917 - fourth elastic member, 92 - connecting seat, 93 - turntable, 94 - third transmission module, 95 - screw, 96 - third moving seat, 97 - fourth connecting member, 98 - fifth elastic member, 10 - power mechanism, 101 - power member, 102 - fourth transmission module, 103 - fifth transmission module, 104 - sixth transmission module, 105 - rotating shaft. DETAILED DESCRIPTION
[0036] In order to make the purpose, technical solutions and advantages of the present invention more clearly understood, the present invention will be further described in detail below with reference to 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.
[0037] The specific implementation of the present invention is described in detail below with reference to specific embodiments.
[0038] like Figures 1 to 7 As shown, as an embodiment of the present invention, a pulp board pulper for a papermaking workshop is provided, comprising a chassis 1, a conveying frame 2 is fixedly provided on one side of the chassis 1, one end of the conveying frame 2 extends outside the chassis 1, and a placement frame 4 is fixedly provided on the conveying frame 2, and further comprising:
[0039] A conveying mechanism 3, wherein the conveying mechanism 3 is arranged on the conveying frame 2;
[0040] Crushing mechanism, the crushing mechanism includes a first crushing mechanism 5 and a second crushing mechanism 7. The first crushing mechanism 5 is arranged in the chassis 1 at one end close to the conveying mechanism 3. The second crushing mechanism 7 is arranged in a crushing box 6. The crushing box 6 is fixed in the chassis 1. One end of the second crushing mechanism 7 is connected to the output end of the power mechanism 10.
[0041] Intermittent feeding mechanism 9, the intermittent feeding mechanism 9 includes a driving assembly 911, a connecting base 92, a rotating disk 93, a third transmission module 94, a screw 95, a third movable base 96, a fourth connecting member 97 and a fifth elastic member 98; the driving assembly 91 includes a second movable base 911, a moving member 912, a third elastic member 913, a third rotating member 914, a limiting member 915, a third connecting member 916 and a fourth elastic member 917;
[0042] The second movable seat 911 is movably arranged in the conveying seat 8 through the third elastic member 913. The conveying seat 8 is located between the first crushing mechanism 5 and the crushing box 6, and one end of the conveying seat 8 is movably arranged on the outer wall of the crushing box 6. One end of the movable member 912 is fixedly connected to the second movable seat 911, and the other end of the movable member 912 passes through the conveying seat 8 and is movably connected to one end of the third rotating member 914. The other end of the third rotating member 914 is fixedly connected to the limiting member 915, and the limiting member 915 is movably arranged in the chassis 1. The limiting member 915 is movably connected to one end of the third connecting member 916. The third connecting member 916 is movably arranged on the rotating disk 93 and cooperates with the connecting seat 92. The fourth elastic member 917 is provided in two groups. One group of the fourth elastic members 917 is arranged in the chassis 1, and the other end of the fourth elastic member 917 of the group is movably connected to the side wall of the limiting member 915. The other group of the fourth elastic members 917 is fixed on the rotating disk 93, and the other group of the fourth elastic members 917 is movably connected to the side wall of the third connecting member 916.
[0043] The connecting seat 92 is connected to the output end of the power mechanism 10, and the connecting seat 92 and the turntable 93 are both movably arranged in the chassis 1. One end of the turntable 93 is connected to the screw 95 through the third transmission module 94, and the screw 95 is threadedly connected to the third movable seat 96. The third movable seat 96 is slidably arranged on the outer wall of the crushing box 6. The third movable seat 96 is provided with a fourth connecting member 97 and a fifth elastic member 98. One end of the fourth connecting member 97 is movably connected to the bottom of the conveying seat 8, and one end of the fifth elastic member 98 is connected to the outer wall of the crushing box 6;
[0044] The power mechanism 10 simultaneously drives the connecting seat 92 to rotate and drives the second crushing mechanism 7 to work. The conveying mechanism 3 conveys the pulp sheet into the chassis 1. The first crushing mechanism 5 performs the first stage crushing on it. The conveying mechanism 3 cooperates with the uncrushed pulp sheet to convey the pulp sheet crushed in the first stage into the conveying seat 8. The pulp sheet crushed in the first stage drives the second movable seat 911 to move by its own weight, and the second movable seat 911 drives the movable member 912 to move.
[0045] When the moving member 912 moves to the position of the third rotating member 914, the moving member 912 drives the limiting member 915 to rotate through the third rotating member 914, and the limiting member 915 releases the third connecting member 916 by rotating. The fourth elastic member 917 drives the third connecting member 916 to rotate through its own elastic force, and the third connecting member 916 is connected to the connecting seat 92 by rotating. The connecting seat 92 drives the turntable 93 to rotate through the third connecting member 916, and the turntable 93 drives the screw 95 to rotate through the third transmission module 94. The screw 95 drives the third moving seat 95 to move. The third moving seat 95 drives the conveying seat 8 to rotate clockwise through the fourth connecting member 97. The conveying seat 8 is realized by rotating, so that the pulp plate crushed in the first stage is intermittently conveyed to the crushing box 6, and the second crushing mechanism 7 performs the second stage crushing on it. The first crushing mechanism 5 cooperates with the second crushing mechanism 7 to fully crush the pulp plate.
[0046] In this embodiment, the conveying mechanism 3 conveys the pulp board into the chassis 1, and the first crushing mechanism 5 cooperates with the second crushing mechanism 7 to achieve sufficient crushing of the pulp board, improve the crushing efficiency and quality of the pulp breaker for the pulp board, and avoid the phenomenon of overload of the second crushing mechanism 7. The intermittent feeding mechanism 9 can realize intermittent conveying of the pulp board, and a large number of pulp boards will not be accumulated in the crushing box 6, thereby improving the working efficiency and service life of the pulp breaker.
[0047] like Figure 1 and 2As shown, as a preferred embodiment of the present invention, the power mechanism 10 includes a power member 101, a fourth transmission module 102, a fifth transmission module 103, a sixth transmission module 104 and a rotating shaft 105. The power member 101 is fixed in the chassis 1, and the output end of the power member 101 is respectively connected to one end of the fourth transmission module 102 and the fifth transmission module 103, the other end of the fourth transmission module 102 is connected to the connecting seat 92, the other end of the fifth transmission module 103 is connected to one end of the sixth transmission module 104, the other end of the sixth transmission module 104 extends into the crushing box 6 and is connected to one end of the rotating shaft 105, the rotating shaft 105 is movably arranged in the crushing box 6, and the other end of the rotating shaft 105 is connected to the second crushing mechanism 7.
[0048] In this embodiment, the power member 101 simultaneously drives the fourth transmission module 102 and the fifth transmission module 103 to rotate, the fourth transmission module 102 drives the connecting seat 92 to rotate, the fifth transmission module 103 drives the sixth transmission module 104 to rotate, the sixth transmission module 104 drives the rotating shaft 105 to rotate, and the rotating shaft 105 drives the second crushing mechanism 7 to work.
[0049] In a preferred embodiment, the moving member 912 preferably adopts a columnar structure;
[0050] The third elastic member 913 and the fifth elastic member 98 are preferably a spring;
[0051] The third rotating member 914 preferably adopts a plate-shaped structure;
[0052] The limiting member 915 preferably adopts a V-shaped block structure;
[0053] The fourth elastic member 917 is preferably an elastic sheet;
[0054] The third transmission module 94 preferably adopts a bevel gear transmission structure;
[0055] The fourth connecting member 97 preferably adopts a columnar structure;
[0056] The power element 101 is preferably a servo motor;
[0057] The fourth transmission module 102 and the fifth transmission module 103 preferably adopt a belt transmission structure;
[0058] The sixth transmission module 104 preferably adopts a bevel gear transmission structure.
[0059] like Figure 1 and 6As shown, as a preferred embodiment of the present invention, the second crushing mechanism 7 includes a rotating frame 71, a crushing shaft 72, a crushing member 73, a fixed seat 74, a first gear 75, a second gear 76, a second rotating member 77, a material-dispensing shaft 78 and a material-dispensing plate 79. The rotating frame 71 is fixedly connected to the rotating shaft 105, and a crushing shaft 72 is provided in the middle of the rotating frame 71. The crushing member 73 is distributed on the side wall of the crushing shaft 72. The first gear 75 and the second gear 76 are distributed on the rotating frame 71. The first gear 75 is meshed with the second gear 76, and the first gear 75 is meshed with the meshing teeth 741 distributed on the inner wall of the fixed seat 74. The second gear 76 is fixedly provided with a second rotating member 77. A material-dispensing shaft 78 is fixed on one end of the second rotating member 77, and a material-dispensing plate 79 is distributed on the material-dispensing shaft 78.
[0060] The first gear 75 engages with the meshing teeth 741, thereby realizing the simultaneous revolution and rotation of the first gear 75. The first gear 75 drives the second gear 76 to revolve and rotate. The second gear 76 drives the second rotating member 77 to revolve and rotate. The second rotating member 77 drives the material-dispensing shaft 78 to revolve and rotate. The material-dispensing shaft 78 drives the material-dispensing plate 79 to revolve and rotate, thereby realizing the shifting of the pulp plate in the crushing box 6, facilitating the second stage of crushing by the crushing member 71, and improving the working efficiency and practicality of the pulp breaker.
[0061] In a preferred embodiment, the crushing member 73 preferably adopts a conical block structure;
[0062] The second rotating member 77 preferably adopts a block structure.
[0063] like Figure 1 and 7As shown, as a preferred embodiment of the present invention, the first crushing mechanism 5 includes a fixed box 51, a second driving member 52, a first rotating member 53, a second connecting member 54, a knocking member 55, a knocking seat 56, a crushing seat 57, a crushing table 58 and a shock-absorbing member 59. The fixed box 51 is fixed on the inner wall of the chassis 1, and the second driving member 52 is arranged in the fixed box 51. The output end of the second driving member 52 is connected to one end of the first rotating member 53, and the other end of the first rotating member 53 is connected to the knocking member 55 through the second connecting member 54. The knocking member 55 is slidably arranged on the side wall of the fixed box 51, and one end of the knocking member 55 extends outside the fixed box 51 and is movably connected to the knocking seat 56. The knocking seat 56 is arranged on the crushing seat 57, and the crushing seat 57 is movably connected to the outer wall of the fixed box 51 through the shock-absorbing member 59. A crushing cone 571 is distributed at the bottom of the crushing seat 57, and the crushing table 58 is fixed on one side wall of the conveying frame 2.
[0064] In this embodiment, the second driving member 52 drives the first rotating member 53 to rotate, and the first rotating member 53 drives the knocking member 55 to move back and forth through the second connecting member 54, and the knocking member 55 drives the crushing seat 57 to move back and forth through the knocking seat 56, and the crushing seat 57 drives the crushing cone 571 to move back and forth, and the crushing cone 571 cooperates with the crushing table 58 to achieve the first stage of crushing of the pulp plate, reduce the working intensity of the second crushing mechanism 7, and avoid the phenomenon of overload of the second crushing mechanism 7, further improve the working efficiency of the second crushing mechanism 7, and thereby improve the working efficiency and practicality of the pulp breaker.
[0065] In a preferred embodiment, the second driving member 52 is preferably a servo motor;
[0066] The first rotating member 53 preferably adopts a block structure;
[0067] The second connecting member 54 and the knocking member 55 are preferably of a block structure;
[0068] The shock absorbing member 59 is preferably a spring.
[0069] like Figure 4 and 5As shown, as a preferred embodiment of the present invention, the conveying mechanism 3 includes a control component 31, a cam 32, a rotating seat 33, a first movable seat 34, a toggle member 35, a first elastic member 36 and a conveying component 37. The control component 31 is fixed on the conveying frame 2, and the output end of the control component 31 is connected to the cam 32 and the conveying component 37 respectively. The cam 32 is movably set on the conveying frame 2, and the cam 32 is movably connected to the rolling member 331 set on the rotating seat 33. One end of the rotating seat 33 is movably set on the conveying frame 2, and the other end of the rotating seat 33 is movably connected to the first connecting member 341 set on the first movable seat 34. The first movable seat 34 is slidably set on the conveying frame 2 through the first elastic member 36, and the first movable seat 34 is fixed with a toggle member 35.
[0070] like Figure 4 and 5 As shown, as a preferred embodiment of the present invention, the control component 31 includes a first driving member 311, a first transmission module 312 and a second transmission module 313. The first driving member 311 is fixed on the conveying frame 2, and the output ends of the first driving member 311 are respectively connected to one end of the first transmission module 312 and the second transmission module 313. The other end of the first transmission module 312 is connected to the cam 32, and the other end of the second transmission module 313 is connected to the conveying component 37.
[0071] like Figure 4 and 5 As shown, as a preferred embodiment of the present invention, the conveying assembly 37 includes a first conveying roller 371, a second conveying roller 372, a mounting seat 373 and a second elastic member 374, the first conveying roller 371 is fixed to the conveying frame 2 through the mounting seat 373, and one end of the first conveying roller 371 is connected to the second transmission module 313, the second conveying roller 372 is movably set on the conveying frame 2 through the mounting seat 373, one end of the second elastic member 374 is connected to the conveying frame 2, and the other end of the second elastic member 374 is connected to the mounting seat 373 on which the second conveying roller 372 is installed.
[0072] The first and second conveying rollers 371 are used to move the first and second conveying rollers 372 so that the first and second conveying rollers 371 can move relative to each other.
[0073] In a preferred embodiment, the first driving member 311 is preferably a servo motor;
[0074] The first transmission module 312 and the second transmission module 313 preferably adopt a belt transmission structure;
[0075] The rolling element 331 preferably adopts a roller structure;
[0076] The first connecting member 341 preferably adopts a columnar structure;
[0077] The toggle member 35 preferably adopts a block structure;
[0078] The first elastic member 36 and the second elastic member 374 are preferably springs.
[0079] The working principle of the present invention is:
[0080] The power member 101 simultaneously drives the fourth transmission module 102 and the fifth transmission module 103 to rotate, the fourth transmission module 102 drives the connecting seat 92 to rotate, the fifth transmission module 103 drives the sixth transmission module 104 to rotate, the sixth transmission module 104 drives the rotating shaft 105 to rotate, and the rotating shaft 105 drives the second crushing mechanism 7 to work;
[0081] The pulp board is placed in the placement rack 4, and the first driving member 311 drives the first transmission module 312 and the second transmission module 313 to rotate at the same time. The second transmission module 313 drives the first conveying roller 371 to rotate. The first transmission module 312 drives the cam 32 to rotate. The first elastic member 36 uses its own elastic force to make the rolling member 331 always fit the side wall of the cam 32. The cam 32 drives the rotating seat 33 to rotate back and forth through the rolling member 331. The rotating seat 33 drives the first movable seat 34 to reciprocate on the conveying rack 2. The first movable seat 34 drives the toggle member 35 to reciprocate. The toggle member 35 reciprocates to transport the pulp board to the first conveying roller 371 through reciprocating movement. The first conveying roller 371 cooperates with the second conveying roller 372 to transport the pulp board into the chassis 1.
[0082] The second driving member 52 drives the first rotating member 53 to rotate, and the first rotating member 53 drives the knocking member 55 to reciprocate through the second connecting member 54. The knocking member 55 drives the crushing seat 57 to reciprocate through the knocking seat 56. The crushing seat 57 drives the crushing cone 571 to reciprocate. The crushing cone 571 cooperates with the crushing table 58 to achieve the first stage of crushing of the pulp sheet, and the conveying mechanism 3 cooperates with the uncrushed pulp sheet to convey the pulp sheet crushed in the first stage to the conveying seat 8.
[0083] The pulp plate crushed in the first stage drives the second movable seat 911 to move by its own weight, and the second movable seat 911 drives the movable member 912 to move. When the movable member 912 moves to the position of the third rotating member 914, the movable member 912 drives the limiting member 915 to rotate through the third rotating member 914. The limiting member 915 releases the third connecting member 916 by rotating. The fourth elastic member 917 drives the third connecting member 916 to rotate by its own elastic force. The third connecting member 916 is connected to the connecting seat 92 by rotating. The connecting seat 92 drives the turntable through the third connecting member 916 93 rotates, the turntable 93 drives the screw 95 to rotate through the third transmission module 94, the screw 95 drives the third movable seat 95 to move, and the third movable seat 95 drives the conveying seat 8 to rotate clockwise through the fourth connecting member 97. The conveying seat 8 intermittently conveys the pulp plates crushed in the first stage to the crushing box 6 by rotating, and a large number of pulp plates will not be accumulated in the crushing box 6. In the process of the conveying seat 8 dumping the pulp plates into the crushing box 6, the third elastic member 913 drives the second movable seat 911 to move back by its own elastic force. The second movable seat 911 improves the conveying efficiency of the conveying seat 8 for the pulp plates by moving back.
[0084] When the third connecting member 916 rotates one circle with the connecting seat 92, the fourth elastic member 917 drives the limiting member 915 to return to the initial state through its own elastic member. At this time, the limiting member 915 limits the third connecting member 916 again, so that the turntable 93 returns to the static state. The fifth elastic member 98 drives the third movable seat 96 to move back through its own elastic force, and then drives the conveying seat 8 to return to the material receiving state, so as to facilitate the collection of the pulp sheets crushed in the first stage and the conveying seat 8 to convey the pulp sheets collected in the next stage.
[0085] The rotating shaft 105 drives the rotating frame 71 to rotate, and the rotating frame 71 simultaneously drives the crushing shaft 72 and the first gear 75 to rotate. The crushing shaft 72 drives the crushing member 73 to rotate, thereby realizing the second stage of crushing of the pulp plate. The first gear 75 meshes with the meshing teeth 741, thereby realizing the simultaneous revolution and rotation of the first gear 75. The first gear 75 drives the second gear 76 to revolve and rotate. The second gear 76 drives the second rotating member 77 to revolve and rotate. The second rotating member 77 drives the material-dipping shaft 78 to revolve and rotate. The material-dipping shaft 78 drives the material-dipping plate 79 to revolve and rotate, thereby realizing the digging of the pulp plate in the crushing box 6, so that the crushing member 71 can perform the second stage of crushing on it.
[0086] The above is the working principle of the pulp board pulper in the papermaking workshop.
[0087] 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 scope of protection of the present invention.
Claims
1. A pulp board pulper for a papermaking workshop, comprising a chassis, a conveyor frame fixedly provided on one side of the chassis, one end of the conveyor frame extending outside the chassis, and a placement frame fixedly provided on the conveyor frame, characterized in that: Also includes: A conveying mechanism, wherein the conveying mechanism is arranged on the conveying frame; A crushing mechanism, the crushing mechanism comprising a first crushing mechanism and a second crushing mechanism, the first crushing mechanism being disposed in the chassis at one end close to the conveying mechanism, the second crushing mechanism being disposed in a crushing box fixed in the chassis, and one end of the second crushing mechanism being connected to an output end of the power mechanism; An intermittent feeding mechanism, comprising a driving assembly, a connecting seat, a turntable, a third transmission module, a screw, a third movable seat, a fourth connecting member, and a fifth elastic member; the driving assembly comprises a second movable seat, a movable member, a third elastic member, a third rotating member, a limiting member, a third connecting member, and a fourth elastic member; The cam is fixedly mounted on the support frame, and the cam is adapted to move the first end of the second movable member relative to the first movable member. The connecting seat is connected to the output end of the power mechanism, the connecting seat and the turntable are movably arranged in the chassis, one end of the turntable is connected to the screw through the third transmission module, the screw is threadedly connected to the third movable seat, the third movable seat is slidably arranged on the outer wall of the crushing box, and the third movable seat is provided with a fourth connecting member and a fifth elastic member, one end of the fourth connecting member is movably connected to the bottom of the conveying seat, and one end of the fifth elastic member is connected to the outer wall of the crushing box; The power mechanism simultaneously drives the connecting seat to rotate and drives the second crushing mechanism to work. The conveying mechanism conveys the pulp plate into the chassis. The first crushing mechanism performs the first stage crushing on it. The conveying mechanism cooperates with the uncrushed pulp plate to convey the first stage crushed pulp plate into the conveying seat. The pulp plate crushed in the first stage drives the second moving seat to move by its own weight, and the second moving seat drives the moving part to move. When the third link is engaged, the lever is engaged to the shift lever, and the lever is engaged to the shift lever, which is engaged to the shift lever, and the shift lever is engaged to the shift lever, which is engaged to the shift lever, and the shift lever is engaged to the shift lever.
2. The pulp board pulper for a papermaking workshop according to claim 1, characterized in that: The power mechanism includes a power member, a fourth transmission module, a fifth transmission module, a sixth transmission module and a rotating shaft. The power member is fixed in the chassis. The output end of the power member is connected to one end of the fourth transmission module and the fifth transmission module respectively. The other end of the fourth transmission module is connected to the connecting seat, the other end of the fifth transmission module is connected to one end of the sixth transmission module, the other end of the sixth transmission module extends into the crushing box and is connected to one end of the rotating shaft. The rotating shaft is movably arranged in the crushing box, and the other end of the rotating shaft is connected to the second crushing mechanism.
3. The pulp board pulper for a papermaking workshop according to claim 2, characterized in that: The second crushing mechanism includes a rotating frame, a crushing shaft, a crushing piece, a fixed seat, a first gear, a second gear, a second rotating piece, a material-diverting shaft and a material-diverting plate. The rotating frame is fixedly connected to the rotating shaft, a crushing shaft is provided in the middle of the rotating frame, a crushing piece is distributed on the side wall of the crushing shaft, a first gear and a second gear are distributed on the rotating frame, the first gear is meshed with the second gear, and the first gear is meshed with the meshing teeth distributed on the inner wall of the fixed seat, a second rotating piece is fixedly provided on the second gear, a material-diverting shaft is fixed on one end of the second rotating piece, and a material-diverting plate is distributed on the material-diverting shaft.
4. The pulp board pulper for a papermaking workshop according to claim 1, characterized in that: The first crushing mechanism includes a fixed box, a second driving member, a first rotating member, a second connecting member, a knocking member, a knocking seat, a crushing seat, a crushing table and a shock-absorbing member. The fixed box is fixed on the inner wall of the chassis, and the second driving member is arranged in the fixed box. The output end of the second driving member is connected to one end of the first rotating member, and the other end of the first rotating member is connected to the knocking member through the second connecting member. The knocking member is slidably arranged on the side wall of the fixed box, one end of the knocking member extends outside the fixed box and is movably connected to the knocking seat, and the knocking seat is arranged on the crushing seat, and the crushing seat is movably connected to the outer wall of the fixed box through the shock-absorbing member. Crushing cones are distributed on the bottom of the crushing seat, and the crushing table is fixed on one side wall of the conveying frame.
5. The pulp board pulper for a papermaking workshop according to claim 1, characterized in that: The conveying mechanism includes a control component, a cam, a rotating seat, a first movable seat, a toggle member, a first elastic member and a conveying component. The control component is fixed on the conveying frame, and the output end of the control component is respectively connected to the cam and the conveying component. The cam is movably arranged on the conveying frame, and the cam is movably connected to a rolling member arranged on the rotating seat. One end of the rotating seat is movably arranged on the conveying frame, and the other end of the rotating seat is movably connected to a first connecting member arranged on the first movable seat. The first movable seat is slidably arranged on the conveying frame through the first elastic member, and a toggle member is fixed on the first movable seat.
6. The pulp board pulper for a papermaking workshop according to claim 5, characterized in that: The control component includes a first driving member, a first transmission module and a second transmission module. The first driving member is fixed on the conveying frame. The output end of the first driving member is connected to one end of the first transmission module and the second transmission module respectively. The other end of the first transmission module is connected to the cam, and the other end of the second transmission module is connected to the conveying component.
7. The pulp board pulper for a papermaking workshop according to claim 6, characterized in that: The conveying assembly includes a first conveying roller, a second conveying roller, a mounting seat and a second elastic member. The first conveying roller is fixed to the conveying frame through the mounting seat, and one end of the first conveying roller is connected to the second transmission module. The second conveying roller is movably set on the conveying frame through the mounting seat. One end of the second elastic member is connected to the conveying frame, and the other end of the second elastic member is connected to the mounting seat on which the second conveying roller is installed.
Citation Information
Patent Citations
Feeding structure and automatic machining equipment
CN112388110A
Pulper capable of preventing paper from being stacked and realizing uniform crushing
CN113481747A