Disclosure of Invention
The embodiment of the application provides a filter equipment is smashed to pulp for juice beverage processing to the solution needs to carry out separately and still need manual operation to lead to the problem that work efficiency reduces to the broken filtration of pulp.
The embodiment of the application adopts the following technical scheme: a fruit pulp crushing and filtering device for processing fruit juice beverages comprises a workbench, a crushing box, a filtering box, a crushing device and a filtering device, wherein the workbench is arranged on the ground, the filtering box is fixedly arranged on one side of the workbench, the crushing box is fixedly arranged on the filtering box, a feed inlet is formed in the top of the crushing box, two sliding grooves are formed in the bottom of the crushing box, the filtering device is arranged in the filtering box, the crushing device is fixedly arranged in the crushing box and comprises a driving assembly, a crushing assembly, a conveying assembly and a cleaning assembly, the filtering device comprises a shaking assembly, a filtering assembly and a collecting assembly, the driving assembly is fixedly arranged on one side of the inside of the crushing box, the crushing assembly is fixedly arranged on the other side of the inside of the crushing box, the conveying assembly is arranged at the bottom of the crushing box, and the cleaning assembly is fixedly arranged on one side of the side face of the crushing box, the shaking assemblies are arranged in two groups, the structures of the shaking assemblies are the same, the shaking assemblies are symmetrically arranged in the filter box, the filter assemblies are arranged on the shaking assemblies, and the collecting assemblies are arranged at the bottom of the filter box.
Furthermore, the driving component comprises a first mounting column, a driving motor, two driving belt discs, two driving belts, a driving gear, a first clamping groove, a second clamping groove, a first driving rod, a first clamping plate, a first connecting shaft, a connecting rod, two hinged supports, a second connecting shaft and a second driving rod, the first mounting column is vertically arranged on one side in the crushing box, the driving motor is fixedly arranged on one side of the first mounting column, one driving belt disc is rotatably arranged on the output end of the driving motor, the other driving belt disc is rotatably arranged on one side of the first mounting column, the driving belts are sleeved on the two driving belt discs, the driving gear is arranged on the output end of the other driving belt disc, the first clamping groove is arranged on one side in the crushing box, the second clamping groove is adjacently arranged beside the first clamping groove, the first driving rod is vertically arranged on the first clamping groove and the second clamping groove, a rack is arranged at the tail end of the first driving rod, the other end of the first driving rod extends to the top of the crushing box, a rack at the tail end of the first driving rod is meshed with the driving gear, the first clamping plate is arranged at the top of the crushing box, the first connecting shaft is arranged at one end of the first driving rod, one end of the connecting rod is hinged with the first connecting shaft, the other end of the connecting rod is hinged with the second connecting shaft, the hinged strut is fixedly arranged on the top of the crushing box and hinged with the middle part of the connecting rod, one end of the second connecting shaft is hinged to the second connecting shaft, the other end of the second connecting shaft extends into the crushing box, and the second clamping plate is fixedly arranged on the other side of the top of the crushing box.
Further, crushing unit includes crushing motor, transmission shaft, crushing piece and helical blade, crushing motor sets up on drive assembly's second actuating lever, the one end of connecting rod with crushing motor's output is connected, crushing piece rotates and sets up on the transmission shaft, helical blade rotates and sets up on the terminal position of transmission shaft.
Furthermore, wash the subassembly and include cleaning motor, inlet tube, outlet pipe, water jet pump and shower nozzle, wash on the fixed one side that sets up the device crushing case of motor, the one end of inlet tube with the one end of cleaning motor is connected, the water jet pump sets up at crushing incasement, the one end of outlet pipe is connected with cleaning motor, the other end of outlet pipe with the water jet pump is connected, the shower nozzle is equipped with four, four the shower nozzle all sets up on the water jet pump, and the opening of every shower nozzle all aims at crushing subassembly setting.
Further, transport the subassembly including collecting the net, transporting the diaphragm, transporting riser, spliced pole, removal pulley and connecting box, transport the diaphragm, transport riser, spliced pole and remove the pulley and all be equipped with two sets ofly, and every group transport the diaphragm, transport riser, spliced pole and remove the pulley structure respectively the same, it sets up on the sliding tray to remove the pulley, the one side of spliced pole is connected with removing the pulley, the opposite side of spliced pole with it is connected to transport the diaphragm, it is fixed to set up on transporting the diaphragm to transport the riser, collect the net setting on two intermediate positions that transport the diaphragm, the connecting box sets up under collecting the net and link up mutually with the rose box.
Further, the shaking assembly comprises a second mounting column, a third mounting column, two groups of mounting blocks, connectors, connecting shafts, springs, a shaking motor, a shaking connecting block, a shaking cam and shaking protrusions, the second mounting column, the third mounting column, the mounting blocks, the connectors, the connecting shafts, the springs, the shaking motor, the shaking connecting block, the shaking cam and the shaking protrusions are respectively arranged in two groups, the second mounting column, the third mounting column, the mounting blocks, the connectors, the connecting shafts, the springs, the shaking motor, the shaking connecting block, the shaking cam and the shaking protrusions are respectively identical in structure, the second mounting column is vertically and fixedly arranged in the filter box, the third mounting column is vertically and fixedly arranged on one side of the second mounting column, the mounting blocks are fixedly arranged on the upper side of the filter box, the connectors are fixedly arranged on the mounting blocks, the connecting shafts are fixedly arranged on the connecting heads, spring one end is connected with the connector and the spring winding is on the connecting axle, wave the fixed setting of motor on the third erection column, wave the cam and set up and be connected in the output of wave the motor, the one end of waveing the connecting block is articulated mutually with the second erection column, the other end of waveing the connecting block is articulated mutually with the third erection column, wave protruding fixed the setting on waveing the connecting block.
Further, the filtering component comprises a small filtering box, a filtering connecting shaft and a filtering net, the two ends of the filtering connecting shaft are connected with a shaking connecting rod of the shaking component, the filtering box is arranged on the shaking connecting shaft, the filtering net is arranged in the small filtering box at an inclined angle, and the side face of the small filtering box is provided with a discharge hole.
Further, the collection subassembly includes the drain pipe, arranges the material pipe, impurity collecting box and pulp collecting box, the one end of drain pipe is connected with the filtration small box, the one end of arranging the material pipe is connected with the opposite side of filtering the small box, the other end of drain pipe is connected with the impurity collecting box that is located the rose box bottom, the other end of arranging the material pipe is located the pulp collecting box of rose box bottom and is connected.
The embodiment of the application adopts at least one technical scheme which can achieve the following beneficial effects: the pulp to be crushed and filtered can be crushed by the arrangement of the crushing device, a completely closed space can be provided for the filtering work by the arrangement of the filter box, the pulp to be crushed and filtered can be filtered by the arrangement of the filter device, the crushing component can be automatically driven to crush by the arrangement of the driving component, the pulp can be crushed by the arrangement of the crushing component, the crushed kernels or other articles can be temporarily retained by the arrangement of the conveying component, and then the crushed kernels or other articles can be cleaned in the pulp crushing process by the arrangement of the cleaning component, and the dust in the pulp can be cleaned and treated, because of the arrangement of the mutual connection of the crushing box and the filter box, workers do not need to separately filter and crush the pulp, and can crush and filter the pulp at one time, can carry out the filtration during operation at pulp through the setting of waveing the subassembly, wave the operation, through the cooperation work of waveing subassembly and filtering component, can collect the operation respectively to the water of impurity and the pulp after smashing the filtration through the setting of collecting the subassembly, like this the workman can be very light collect the operation with pulp, has improved the practicality and the work efficiency of this device.
Drawings
The accompanying drawings, which are included to provide a further understanding of the application and are incorporated in and constitute a part of this application, illustrate embodiment(s) of the application and together with the description serve to explain the application and not to limit the application.
In the drawings:
FIG. 1 is a first perspective view of the present invention;
FIG. 2 is a schematic perspective view of the present invention;
FIG. 3 is a schematic view of a comminution apparatus according to the invention;
FIG. 4 is a schematic perspective view of the drive assembly, size reduction assembly and cleaning assembly of the present invention;
FIG. 5 is a schematic perspective view of a filter device according to the present invention;
fig. 6 is a schematic perspective view of the rocking assembly of the present invention.
The reference numbers in the figures are: a working table 1, a crushing box 2, a filter box 3, a feed inlet 21, a sliding groove 22, a crushing device 4, a driving assembly 41, a first mounting column 411, a driving motor 412, a driving belt disc 413, a driving belt 414, a driving gear 415, a first clamping groove 416, a second clamping groove 417, a first driving rod 418, a first clamping plate 419, a first connecting shaft 4110, a connecting rod 4111, a hinge support 4112, a second connecting shaft 4113, a second driving rod 4114, a second clamping plate 4115, a crushing assembly 42, a crushing motor 421, a driving shaft 422, a crushing member 423, a spiral blade 424, a conveying assembly 43, a collecting net 431, a conveying transverse plate 432, a conveying vertical plate 433, a connecting column 434, a moving pulley 435, a connecting box 436, a cleaning assembly 44, a cleaning motor 441, a water inlet pipe 442, a water outlet pipe 443, a water spray pump 444, a spray head, a filter device 5, a shaking assembly 51, a second mounting column 511, a third mounting column 512, a mounting block, the device comprises a connecting head 514, a connecting shaft 515, a spring 516, a shaking motor 517, a shaking connecting block 518, a shaking cam 519, a shaking protrusion 5110, a filtering component 52, a small filtering box 521, a filtering connecting shaft 522, a filtering net 523, a collecting component 53, a water drainage pipe 531, a material discharge pipe 532, an impurity collecting box 533 and a pulp collecting box 534.
Detailed Description
In order to make the objects, technical solutions and advantages of the present application more apparent, the technical solutions of the present application will be described in detail and completely with reference to the following specific embodiments of the present application and the accompanying drawings. It should be apparent that the described embodiments are only some of the embodiments of the present application, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present application.
The technical scheme that each embodiment of this application provided is explained in detail below with the accompanying drawings, a fruit juice beverage processing is with pulp crushing filter device 5 includes workstation 1, crushing case 2, rose box 3, reducing mechanism 4 and filter equipment 5, workstation 1 sets up subaerial, rose box 3 is fixed to be set up the one side on workstation 1, crushing case 2 is fixed to be set up on rose box 3, crushing case 2 is last to have seted up feed inlet 21 in the top, the bottom of crushing case 2 is equipped with two sliding tray 22, filter equipment 5 sets up in rose box 3, reducing mechanism 4 is fixed to be set up in crushing case 2.
Reducing mechanism 4 includes drive assembly 41, crushing unit 42, transports subassembly 43 and washing subassembly 44, filter equipment 5 is including waveing subassembly 51, filter element 52 and collection subassembly 53, drive assembly 41 is fixed to be set up in the inside one side of crushing case 2, crushing unit 42 is fixed to be set up at the inside opposite side of crushing case 2, it sets up in crushing case 2 bottom to transport subassembly 43, wash subassembly 44 and fix and set up on one side of crushing case 2 side, it is equipped with two sets ofly to wave subassembly 51, two sets ofly wave subassembly 51 the same structure, two sets ofly wave subassembly 51 and be the symmetry setting in filter tank 3, filter element 52 sets up on waveing subassembly 51, collection subassembly 53 sets up on filter tank 3 bottom position.
Can provide the installation environment for this device through the setting of workstation 1, can put into crushing case 2 for smashing filterable fruit through crushing case 2 feed inlet 21 setting, can smash filterable pulp to needs to carry out through the setting of reducing mechanism 4 and smash the operation, can provide a totally enclosed space for filter work through the setting of rose box 3, can smash filterable pulp to needs to carry out through the setting of filter equipment 5 and filter the operation, drive crushing unit 42 that can be automatic through the setting of drive assembly 41 smashes the operation, work efficiency and degree of automation have been improved, can smash the operation with pulp through crushing unit 42's setting.
Can stay with the kernel that can not smash or other article through the setting of transporting subassembly 43, then take it away and can wash at pulp crushing in-process through the setting of washing subassembly 44 again, wash and handle the dust in the pulp, because smash the setting of case 2 and rose box 3 interconnect, so wash subassembly 44 and can wash the operation when pulp is smashed and pulp filters simultaneously, increased the practicality of this device and also increased work efficiency and operating mass with the time sharing operation of artifical carrying out it, workman's operating pressure has been reduced.
Can carry out the filtering operation time at pulp through the setting of waveing subassembly 51, wave the operation, through the cooperation of waveing subassembly 51 and filter component 52, can be better filter the impurity in the pulp, improved the practicality of this device, can collect the operation respectively to the water of impurity and the pulp after smashing the filtration through the setting of collecting subassembly 53, like this the workman can be very light collect the operation with pulp, improved the practicality and the work efficiency of this device.
Specifically, the driving assembly 41 includes a first mounting column 411, a driving motor 412, a driving pulley 413, a driving belt 414, a driving gear 415, a first locking slot 416, a second locking slot 417, a first driving rod 418, a first clamping plate 419, a first connecting shaft 4110, a connecting rod 4111, a hinge support 4112, a second connecting shaft 4113, and a second driving rod 4114, the first mounting column 411 is vertically disposed at one side of the pulverizing box 2, the driving motor 412 is fixedly disposed at one side of the first mounting column 411, the driving pulley 413 is provided with two driving pulleys 413, one of the driving pulleys 413 is rotatably disposed at an output end of the driving motor 412, the other driving pulley 413 is rotatably disposed at one side of the first mounting column 411, the driving belt 414 is sleeved on the two driving pulleys 413, the driving gear 415 is disposed at an output end of the other driving pulley 413, the first engaging groove 416 is disposed on one side of the inside of the crushing box 2, the second engaging groove 417 is disposed adjacent to the first engaging groove 416, the first driving rod 418 is vertically disposed on the first engaging groove 416 and the second engaging groove 417, a rack is disposed at an end of the first driving rod 418, the other end of the first driving rod 418 extends to the top of the crushing box 2, the rack at the end of the first driving rod 418 is engaged with the driving gear 415, the first clamp 419 is disposed at the top of the crushing box 2, the first connecting shaft 4110 is disposed at one end of the first driving rod 418, one end of the connecting rod 4111 is hinged to the first connecting shaft 4110, the other end of the connecting rod 4111 is hinged to the second connecting shaft 4113, the hinge support 4112 is fixedly disposed at the top of the crushing box 2, the hinge support 4112 is hinged to a middle position of the connecting rod 4111, one end of second connecting shaft 4113 is hinged to second connecting shaft 4113, the other end of the second connecting shaft extends into crushing box 2, and the second clamping plate is fixedly arranged on the other side of the top of crushing box 2.
Under operating condition, driving motor 412 rotates and drives drive belt dish 413 and drive belt 414 and rotate, thereby it rotates to drive gear 415, drive gear 415 rotates and drives first actuating lever 418 and remove, thereby first actuating lever 418 reciprocates and drives the connecting rod 4111 of being connected with first connecting axle 4110 and remove, drive connecting rod 4111 through articulated pillar 4112 and reciprocate the operation, second actuating lever 4114 on the articulated second connecting axle 4113 of connecting rod 4111 also removes the operation simultaneously.
The setting through driving motor 412 can drive whole drive assembly 41 and reciprocate the operation, can control the operation to connecting rod 4111 through the setting of articulated pillar 4112, through first splint 419 with the setting of second splint is used for pressing from both sides tight first actuating lever 418 and the second actuating lever 4114 at the during operation, and the setting through drive assembly 41 can be automatic reciprocates the operation, does not need the manual removal operation of carrying out it with the manual work, has improved the practicality and the work efficiency of this device and has also alleviateed workman's operating pressure.
Specifically, the pulverizing assembly 42 includes a pulverizing motor 421, a transmission shaft 422, pulverizing pieces 423 and a helical blade 424, the pulverizing motor 421 is disposed on the second driving rod 4114 of the driving assembly 41, one end of the connecting rod 4111 is connected with the output end of the pulverizing motor 421, the pulverizing pieces 423 are rotatably disposed on the transmission shaft 422, and the helical blade 424 is rotatably disposed at the end position of the transmission shaft 422.
Under operating condition, driving motor 412 work drives transmission shaft 422 and rotates the operation, crushing piece 423 and helical blade 424 on the transmission shaft 422 rotate, thereby smash the operation with fruit, through the interoperation of drive assembly 41 and crushing unit 42, drive assembly 41 drives crushing unit 42 and reciprocates the operation, thereby the more complete operation of smashing fruit, helical blade 424's setting can be with the fruit after smashing promote downwards avoid smashing the jam, the operation can be smashed to needs kibbling fruit through crushing unit 42's setting, the interoperation through drive assembly 41 and crushing unit 42 has improved the work efficiency and the practicality of this device.
Specifically, the cleaning assembly 44 includes a cleaning motor 441, a water inlet pipe 442, a water outlet pipe 443, four water spray pumps 444 and spray heads 445, the cleaning motor 441 is fixedly disposed on one side of the crushing box 2, one end of the water inlet pipe 442 is connected to one end of the cleaning motor 441, the water spray pumps 444 are disposed in the crushing box 2, one end of the water outlet pipe 443 is connected to the cleaning motor 441, the other end of the water outlet pipe 443 is connected to the water spray pumps 444, the number of the spray heads 445 is four, the four spray heads 445 are disposed on the water spray pumps 444, and an opening of each spray head 445 is aligned with the crushing assembly 42.
Under the operating condition, the water of inlet tube 442 passes through washing motor 441 and sends water into water jet pump 444 through outlet pipe 443, is spout water by shower nozzle 445 again, can wash the operation to the fruit pulp of carrying out the crushing operation through the setting of washing subassembly 44, can improve the crushing efficiency of this device, also can wash away the impurity in the pulp, has improved the work efficiency and the practicality of this device.
Specifically, transport subassembly 43 including collect net 431, transport diaphragm 432, transport riser 433, spliced pole 434, remove pulley 435 and connecting box 436, transport diaphragm 432, transport riser 433, spliced pole 434 and remove pulley 435 and all be equipped with two sets ofly, and every group transport diaphragm 432, transport riser 433, spliced pole 434 and remove pulley 435 structure respectively the same, it sets up on sliding tray 22 to remove the pulley, one side and the removal pulley 435 of spliced pole 434 are connected, the opposite side of spliced pole 434 with it is connected to transport diaphragm 432, it is fixed to set up on transporting diaphragm 432 to transport riser 433, collect net 431 and set up on two intermediate positions that transport diaphragm 432, connecting box 436 sets up under collecting net 431 and link up mutually with rose box 3.
Under the operating condition, pulp after crushing by the crushing component 42 reaches the filter box 3 through the collection net 431 and the connecting box 436, impurities and kernels which cannot be processed can be left on the collection net 431, when the impurities are too much, a worker can pull out the collection component 53 through the movable pulley 435 to pour out the impurities and then put in the collection net to crush, and the impurities which cannot be processed can be conveniently taken out through the arrangement of the conveying component 43, so that the practicability of the device is improved.
Specifically, the rocking assembly 51 includes a second mounting column 511, a third mounting column 512, a mounting block 513, a connecting head 514, a connecting shaft 515, a spring 516, a rocking motor 517, a rocking connecting block 518, a rocking cam 519 and a rocking protrusion 5110, the second mounting column 511, the third mounting column 512, the mounting block 513, the connecting head 514, the connecting shaft 515, the spring 516, the rocking motor 517, the rocking connecting block 518, the rocking cam 519 and the rocking protrusion 5110 are provided in two sets, the two sets of the second mounting column 511, the third mounting column 512, the mounting block 513, the connecting head 514, the connecting shaft 515, the spring 516, the rocking motor 517, the rocking connecting block 518, the rocking cam 519 and the rocking protrusion 5110 are respectively identical in structure, the second mounting column 511 is vertically and fixedly disposed in the filter box 3, the third mounting column 512 is vertically and fixedly disposed on one side of the second mounting column 511, the mounting block 513 is fixedly disposed on the upper side of the filter box 3, the connector 514 is fixed to be set up on the installation piece 513, the connecting axle 515 is fixed to be set up on the connector 514, spring 516 one end is connected with the connector 514 and spring 516 twines on the connecting axle 515, wave motor 517 is fixed to be set up on third erection column 512, wave cam 519 sets up and is connected in the output of wave motor 517, the one end of waveing connecting block 518 is articulated mutually with second erection column 511, the other end of waveing connecting block 518 is articulated mutually with third erection column 512, wave protruding 5110 and fix the setting on waveing connecting block 518.
Under operating condition, wave motor 517 rotates and drives and wave cam 519 and rotate and drive through waveing protruding 5110 and wave connecting block 518 and remove, thereby carry out the operation of waveing repeatedly through spring 516, can drive filter element 52 through the setting of waveing subassembly 51 and wave the operation, improved the practicality of this device.
Specifically, the filtering component 52 includes a small filtering box 521, a filtering connecting shaft 522 and a filtering net 523, two ends of the filtering connecting shaft 522 are connected with a rocking connecting rod 4111 of the rocking component 51, the filtering box 3 is arranged on the rocking connecting shaft 515, the filtering net 523 is arranged in the small filtering box 521 at an inclined angle, and the side surface of the filtering box 3 is further provided with a discharge hole 31.
In the working state, the crushed pulp comes into the small filtering box 521 through the connecting box 436, and then the small filtering box 521 is driven by the shaking component 51 through the filtering connecting shaft 522 to carry out the shaking operation so as to carry out the filtering operation on the pulp, because the filtering box 3 and the crushing box 2 are connected with each other through the connecting box 436, the water sprayed by the upper cleaning component 44 can also flow onto the filtering component 52, thereby carrying out the cleaning and filtering operation on the pulp, the water and the impurities flow downwards through the filtering net 523, the pulp flows towards the discharging port 31 arranged on the side surface of the small filtering box 521 through the filtering plate, the mutual through connection of the filtering component 52 and the crushing component 42 can be connected without the separation operation of workers, and the practicability and the working efficiency of the device are greatly improved, and the manual working pressure is also reduced.
Specifically, the collecting assembly 53 includes a drain pipe 531, a discharge pipe 532, an impurity collecting box 533 and a pulp collecting box 534, wherein one end of the drain pipe 531 is connected to the small filtering box 521, one end of the discharge pipe 532 is connected to the other side of the small filtering box 521, the other end of the drain pipe 531 is connected to the impurity collecting box 533 located at the bottom of the filtering box 3, and the other end of the discharge pipe 532 is connected to the pulp collecting box 534 located at the bottom of the filtering box 3.
After the pulp filtering operation is completed, the filtered pulp flows into the discharging pipe 532 through the discharging port 31 and then flows into the pulp collecting box 534, impurities and water flow into the impurity collecting box 533 through the filter screen 523 and the water discharging pipe 531 in sequence, the impurities and the pulp can be well distinguished by the arrangement, workers can complete the operation more accurately, and the practicability and the working efficiency of the device are improved.
According to the working principle of the fruit smashing and filtering device, when fruits need to be smashed and filtered, firstly, a worker guides the fruits into the smashing box 2 through the feeding hole 21 above the smashing box 2, at this time, firstly, the driving component 41 in the smashing device 4 starts to work, the driving motor 412 rotates to drive the driving belt disc 413 and the driving belt 414 to rotate, so that the driving gear 415 is driven to rotate, the driving gear 415 rotates to drive the first driving rod 418 to move, the first driving rod 418 moves up and down to drive the connecting rod 4111 connected with the first connecting shaft 4110 to move, the connecting rod 4111 is driven to move up and down through the hinged support column 4112, and the second driving rod 4114 on the second connecting shaft 4113 hinged to the connecting rod 4111 also moves simultaneously.
Crushing unit 42 begins work, and driving motor 412 work drives transmission shaft 422 and rotates the operation, and crushing piece 423 and helical blade 424 on the transmission shaft 422 rotate to smash the operation with fruit, through the interoperation of driving unit 41 and crushing unit 42, driving unit 41 drives crushing unit 42 and reciprocates the operation, thereby the more complete operation of smashing fruit.
When the driving unit 41 and the crushing unit 42 are simultaneously operated, the washing unit 44 is also operated, water in the water inlet pipe 442 is supplied to the water spraying pump 444 through the water outlet pipe 443 by the washing motor 441, and is sprayed out by the spraying head 445, so that the fruit pulp subjected to the crushing operation can be washed by the arrangement of the washing unit 44.
After the crushing operation is completed, the impurities which cannot be crushed are pushed out by the conveying assembly 43, the crushed pulp enters the small filtering box 521 in the filtering box 3 through the connecting box 436 below the collecting net 431, at this time, the swinging assembly 51 starts to work, the swinging motor 517 in the swinging assembly 51 rotates to drive the swinging cam 519 to rotate through the swinging protrusion 5110 so as to drive the swinging connecting block 518 to move, the repeated swinging operation is performed through the spring 516, so that the small filtering box 521 is driven by the swinging assembly 51 through the filtering connecting shaft 522 to perform the swinging operation on the pulp, after the pulp filtering operation is completed, the filtered pulp flows into the discharging pipe 532 through the discharging port and then flows into the pulp collecting box 534, and the impurities and the water flow into the impurity collecting box 533 through the filtering net 523 and the water discharging pipe 531 through the filtering net and the water discharging pipe 531 respectively.
The above description is only an example of the present application and is not intended to limit the present application. Various modifications and changes may occur to those skilled in the art. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application should be included in the scope of the claims of the present application.