CN114259784A - A multistage filter equipment for tea-seed oil squeezes is convenient for change filter screen - Google Patents

A multistage filter equipment for tea-seed oil squeezes is convenient for change filter screen Download PDF

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Publication number
CN114259784A
CN114259784A CN202111544573.7A CN202111544573A CN114259784A CN 114259784 A CN114259784 A CN 114259784A CN 202111544573 A CN202111544573 A CN 202111544573A CN 114259784 A CN114259784 A CN 114259784A
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rotating shaft
pressing
connecting rod
filter
box
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CN202111544573.7A
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CN114259784B (en
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赵莹子
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Anhui Meisheng Agriculture And Forestry Technology Co ltd
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Anhui Meisheng Ecological Forestry Development Co ltd
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02WCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO WASTEWATER TREATMENT OR WASTE MANAGEMENT
    • Y02W30/00Technologies for solid waste management
    • Y02W30/50Reuse, recycling or recovery technologies
    • Y02W30/74Recovery of fats, fatty oils, fatty acids or other fatty substances, e.g. lanolin or waxes

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Abstract

The invention discloses a multistage filtering device convenient for replacing a filter screen and used for squeezing tea oil, which comprises a cutting assembly, wherein a processing assembly for squeezing raw materials and filtering impurities by rotating is arranged at the bottom of the cutting assembly, a driving assembly for driving the processing assembly is arranged at one side of the cutting assembly, a hammering assembly for accelerating the cutting of the raw materials by hammering is arranged at the other side of the cutting assembly, a collecting mechanism for screening the impurities in a sliding manner is arranged at the bottom of the processing assembly, and a squeezing assembly for driving the collecting mechanism to slide is arranged at the bottom of the hammering assembly.

Description

A multistage filter equipment for tea-seed oil squeezes is convenient for change filter screen
Technical Field
The invention relates to the technical field of tea oil squeezing and filtering devices, in particular to a multistage filtering device which is used for tea oil squeezing and is convenient for replacing a filter screen.
Background
The tea oil is obtained from seeds of camellia oleifera trees which are the plants of the Theaceae, is one of the oldest traditional woody edible plant oils in China, the fatty acid composition of the camellia oil is very similar to that of olive oil and is also called as oriental olive oil, the camellia oil contains a plurality of active substances such as tea polysaccharide, camellia saponin, flavone, tea polyphenol, vitamins, phytosterol and the like, and the camellia oil has the effects of reducing cholesterol, improving high-density lipoprotein, reducing low-density lipoprotein, reducing blood fat, preventing cardiovascular and cerebrovascular diseases, improving immunity, resisting radiation, eliminating free radicals, preventing tumors and the like after being frequently eaten, the international food and agriculture organization has listed the camellia oil as healthy edible oil which is mainly popularized, the living standard of people is continuously improved along with the development of times, the camellia oil is taken as healthy living oil and is favored by people, during tea oil production, machines are mostly adopted to replace manual work, and the production efficiency of tea oil is greatly improved.
At present before the processing to tea-seed oil raw materials, need cut the area of contact of raw materials increase processing, then present mechanical raw materials cutting thoroughly inadequately, lead to the production efficiency of tea-seed oil low, adopt the filter screen to filter impurity when tea-seed oil is collected in addition, but present filtration mode is more single, causes the quality of tea-seed oil unqualified.
Disclosure of Invention
The invention aims to provide a multistage filtering device for tea oil squeezing, which is convenient for replacing a filter screen and solves the problems in the prior art.
In order to achieve the purpose, the invention provides the following technical scheme: the utility model provides a multistage filter equipment for tea-seed oil squeezes convenient to change filter screen, includes cutting assembly, cutting assembly's bottom is provided with the processing subassembly that squeezes the raw materials and filter impurity through rotating, one side of cutting assembly is provided with the drive assembly who is used for driving processing subassembly, cutting assembly's opposite side is provided with the subassembly of pounding of accelerating the cutting raw materials through pounding, processing assembly's bottom is provided with the collection mechanism that slides and screen impurity, the bottom of pounding the subassembly is provided with the gliding extrusion subassembly of mechanism of drive collection.
Optionally, the cutting assembly includes the workbin, the fixed second support frame that is provided with in bottom of workbin, the inside of workbin is provided with the screening cloth, the screening cloth is the nylon cloth material, the round hole of filtering material is seted up on the surface of screening cloth, the screening cloth divide into two parts with the inside of cutting assembly, the inside of workbin is run through and is rotated and is provided with first rotation axis, the surface of first rotation axis is provided with cutting blade, the inside bottom intercommunication of workbin is provided with the unloading pipe.
Optionally, the drive assembly includes first support frame, first support frame is in the same place with workbin fixed connection, the fixed surface of first support frame is provided with the motor, the output of motor is provided with the hold-in range, the other end of hold-in range runs through the inner wall of first support frame, just the other end and the first rotation axis of hold-in range link together.
Optionally, the processing subassembly includes the second rotation axis, the second rotation axis is in the same place with the output fixed connection of motor, the one end and the second support frame through rotation of second rotation axis link together, the fixed surface of second rotation axis is provided with the cylindricality filter, the surface rotation of second rotation axis is provided with the processing case, the cylindricality filter rotates with the processing case and links together, the filtration pore has all been seted up on the surface of processing case, cylindricality filter, the processing case links together with the fixed intercommunication of unloading pipe.
Optionally, the inside of processing case rotates and is provided with the squeezing wheel, squeezing wheel and second rotation axis fixed connection together, the diameter of cylindricality filter is 1.3 times of processing case diameter, the diameter of processing case is 1.3 times of squeezing wheel diameter.
Optionally, a fixed plate is fixedly arranged at the bottom of the blanking box, a third rotating shaft is rotatably arranged at the bottom of the fixed plate, a scraper is arranged on the surface of the third rotating shaft, a return spring is arranged on the surface of the third rotating shaft, the other end of the return spring is fixedly connected with the scraper, the other end of the scraper is connected with a cylindrical filter plate in an extruding mode, an extruding plate is fixedly arranged on one side of the scraper, a plurality of extruding blocks are fixedly arranged on one side of the extruding plate, and the diameter of each extruding block is equal to the diameter of each filtering hole.
Optionally, one end of the second rotating shaft penetrates through the inner wall of the second supporting frame, and a disc is fixedly arranged at one end of the second rotating shaft, an extrusion rod is rotatably arranged on one side of the surface of the disc, a protruding block is arranged at one end of the extrusion rod, a first connecting rod is rotatably arranged on the surface of the extrusion rod, a second connecting rod is rotatably arranged at one end of the first connecting rod, a third connecting rod is rotatably arranged on the surface of the second connecting rod, one end of the third connecting rod is provided with a mounting plate in a penetrating and sliding manner, the mounting plate is fixedly connected with the blanking box, a fourth connecting rod is rotatably arranged on the surface of the third connecting rod, one end of the fourth connecting rod penetrates through the inner wall of the blanking box, and the inside of the blanking box is fixedly provided with a limiting seat, the inside of the limiting seat is rotatably provided with a fourth rotating shaft, and the fourth rotating shaft is fixedly connected with a fourth connecting rod.
Optionally, a through groove for the movement of the fourth connecting rod is formed in one side of the blanking box, a hitting rod is fixedly arranged on the surface of one side of the fourth rotating shaft, a rubber block is fixedly arranged at one end of the hitting rod, and the rubber block is connected with the screening cloth in an extruding mode.
Optionally, the collecting mechanism comprises a collecting box, a screening plate is arranged inside the collecting box in a penetrating and sliding mode, and a handle is fixedly arranged on the surface of one side of the screening plate.
Optionally, the extrusion subassembly includes the movable block, the movable block can be dismantled with the handle and link together, the spout has been seted up to the inside of movable block, the fixed spring that is provided with in inside of spout, the surface of spring is provided with the locating lever, the locating lever runs through sliding connection with the movable block and is in the same place, the fixed block that is provided with of the other end of spring, the fixed block slides in the inside of spout, the one end and the second support frame fixed connection of fixed block are in the same place, the extrusion stem is arc with the gliding one side of movable block extrusion.
Compared with the prior art, the invention has the beneficial effects that:
1. the inside of workbin is put into to the raw materials, then starter motor, the output of motor drives the hold-in range and rotates, and the hold-in range drives first rotation axis and rotates, and first rotation axis drives cutting blade and rotates, and cutting blade increases the area of contact of processing with the cutting of raw materials, can hammer the screening cloth when hitting the pole and rotating, makes the screening cloth vibrations strike the raw materials on surface and fly to make cutting blade cutting's more thorough.
2. The motor drives the second rotation axis and rotates, the second rotation axis drives the squeezing wheel and rotates, the squeezing wheel grinds the raw materials of processing incasement portion and squeezes out the tea-seed oil, then flow out the inside of cylindricality filter by the processing case, because the second rotation axis drives the cylindricality filter and rotates, can prevent effectively that impurity in the tea-seed oil from blockking up the cylindricality filter, when the cylindricality filter rotates simultaneously, the inside of collecting box is scraped into with the tea-seed oil on the surface of scraper blade extrusion cylindricality filter, the stripper plate of scraper blade one side passes through extrusion piece and the extrusion of cylindricality filter simultaneously, can shake with the filtration pore extrusion on cylindricality filter surface, avoid the cylindricality filter to be blockked up by impurity, influence normal processing.
3. When the extrusion stem rotates, the extrusion stem extrudes the movable block and removes, and the movable block drives the handle and removes, and the handle drives the screening board and slides in the inside of collecting box, by the continuous extrusion movable block of extrusion stem, makes the screening board make a round trip to slide always, can shake and filter the impurity on screening board surface, not only avoid impurity to block up the screening board but also can conveniently clear up.
Drawings
FIG. 1 is a schematic view of the overall structure of a multistage filtering device for tea oil pressing, which is convenient for replacing a filter screen;
FIG. 2 is a first sectional view of a multistage filter device for tea oil press for easy replacement of a filter net according to the present invention;
FIG. 3 is a second sectional view of the multistage filter device for tea oil press for easy replacement of filter screen according to the present invention;
FIG. 4 is a third sectional view of a multistage filter device for tea oil press for easy replacement of filter screens according to the present invention;
FIG. 5 is a partial cross-sectional view of one of the multi-stage filtering devices for tea oil press for easy replacement of the filter screen according to the present invention;
FIG. 6 is a partial sectional view of a multistage filter device for tea oil press for facilitating replacement of a filter screen according to the present invention;
FIG. 7 is an enlarged view of a portion A of FIG. 4 of a multistage filter device for tea oil press for facilitating replacement of a filter screen according to the present invention;
FIG. 8 is an enlarged view of a portion B of FIG. 5 of a multistage filter device for tea oil press for facilitating replacement of a filter net according to the present invention;
FIG. 9 is a partial schematic view of a multistage filter device for tea oil extraction for easy replacement of filter screens according to the present invention;
fig. 10 is a partial sectional view of a multistage filtering apparatus for tea oil press for easy replacement of a filter screen according to the present invention.
In the figure: 1. a cutting assembly; 11. a blanking box; 12. a first rotating shaft; 13. a cutting blade; 14. screening cloth; 15. a discharging pipe; 2. a drive assembly; 21. a first support frame; 22. a motor; 23. a synchronous belt; 3. processing the assembly; 31. a processing box; 32. a cylindrical filter plate; 33. a second rotation shaft; 34. a press wheel; 35. a fixing plate; 36. a third rotation axis; 37. a squeegee; 38. a pressing plate; 39. extruding the block; 4. a hammering assembly; 41. a disc; 42. an extrusion stem; 43. a first connecting rod; 44. a second connecting rod; 45. mounting a plate; 46. a third connecting rod; 47. a fourth connecting rod; 48. a restriction seat; 49. a fourth rotation axis; 410. a striking rod; 5. a collection mechanism; 51. a collection box; 52. screening the plate; 53. a handle; 6. an extrusion assembly; 61. a movable block; 62. a fixed block; 63. a spring; 7. a second support frame.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, 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 invention.
Referring to fig. 1 to 10, the present invention provides a multistage filtering apparatus for pressing tea oil, which is convenient for replacing a filter screen, and includes a cutting assembly 1, a processing assembly 3 for pressing raw materials and filtering impurities by rotating is disposed at the bottom of the cutting assembly 1, a driving assembly 2 for driving the processing assembly 3 is disposed at one side of the cutting assembly 1, a hammering assembly 4 for accelerating cutting of raw materials by hammering is disposed at the other side of the cutting assembly 1, a collecting mechanism 5 for screening impurities by sliding is disposed at the bottom of the processing assembly 3, a squeezing assembly 6 for driving the collecting mechanism 5 to slide is disposed at the bottom of the hammering assembly 4, the raw materials are cut by placing the raw materials into the cutting assembly 1, the processing assembly 3 is driven by the driving assembly 2 to process and then collected by the collecting mechanism 5, in addition, the hammering assembly 4 can be driven by the processing assembly 3 to work, so that the raw materials can be cut more thoroughly, the hammering assembly 4 drives the pressing assembly 6 to enable the collecting mechanism 5 to filter and collect impurities.
As shown in fig. 2, the cutting assembly 1 includes a blanking box 11, a second supporting frame 7 is fixedly arranged at the bottom of the blanking box 11, a screening cloth 14 is arranged inside the blanking box 11, the screening cloth 14 is made of nylon cloth, round holes for filtering raw materials are formed in the surface of the screening cloth 14, the screening cloth 14 divides the inside of the cutting assembly 1 into two parts, a first rotating shaft 12 is arranged inside the blanking box 11 in a penetrating and rotating mode, a cutting blade 13 is arranged on the surface of the first rotating shaft 12, a blanking pipe 15 is arranged in the bottom of the inside of the blanking box 11 in a communicating mode, the cutting blade 13 is driven to rotate through the first rotating shaft 12, the raw materials can be cut, the raw materials can be filtered through the screening cloth 14, and then the next procedure is carried out through the blanking pipe 15.
As shown in fig. 2, the driving assembly 2 includes a first support frame 21, the first support frame 21 is fixedly connected with the blanking box 11, the surface of the first support frame 21 is fixed with a motor 22, an output end of the motor 22 is provided with a synchronous belt 23, the other end of the synchronous belt 23 penetrates through the inner wall of the first support frame 21, the other end of the synchronous belt 23 is connected with the first rotating shaft 12, the synchronous belt 23 can be driven to work through the work of the motor 22, and the synchronous belt 23 drives the first rotating shaft 12 to rotate.
As shown in fig. 3 and 4, the processing assembly 3 includes a second rotating shaft 33, the second rotating shaft 33 is fixedly connected with the output end of the motor 22, one end of the second rotating shaft 33 is connected with the second supporting frame 7 in a penetrating and rotating manner, a cylindrical filter plate 32 is fixedly arranged on the surface of the second rotating shaft 33, a processing box 31 is arranged on the surface of the second rotating shaft 33 in a rotating manner, the cylindrical filter plate 32 is connected with the processing box 31 in a rotating manner, filtering holes are respectively formed on the surfaces of the processing box 31 and the cylindrical filter plate 32, the processing box 31 is connected with the blanking pipe 15 in a fixed and communicating manner, raw materials can be processed through the processing box 31 and then flow out of the cylindrical filter plate 32, the raw materials are filtered by the processing box 31 for the first time, and then are filtered by the cylindrical filter plate 32 in a rotating manner for the second time,
as shown in fig. 3 and 4, a pressing wheel 34 is rotatably provided inside the processing box 31, the pressing wheel 34 is fixedly connected with a second rotating shaft 33, the diameter of the cylindrical filtering plate 32 is 1.3 times of the diameter of the processing box 31, the diameter of the processing box 31 is 1.3 times of the diameter of the pressing wheel 34, and impurities can be filtered and tea oil can flow through the difference of the diameters of the processing box 31, the cylindrical filtering plate 32 and the pressing wheel 34.
As shown in fig. 3, 4, 5, 6, and 7, a fixed plate 35 is fixedly disposed at the bottom of the blanking box 11, a third rotating shaft 36 is rotatably disposed at the bottom of the fixed plate 35, a scraping plate 37 is disposed on the surface of the third rotating shaft 36, a return spring is disposed on the surface of the third rotating shaft 36, the other end of the return spring is fixedly connected with the scraping plate 37, the other end of the scraping plate 37 is connected with the cylindrical filter plate 32 in a pressing manner, a pressing plate 38 is fixedly disposed on one side of the scraping plate 37, a plurality of pressing blocks 39 are fixedly disposed on one side of the pressing plate 38, the diameter of the pressing blocks 39 is equal to the diameter of the filter holes, and the pressing blocks rotate through the cylindrical filter plate 32, the cylindrical filter plate 32 is pressed against the scraper 37, so that the tea oil is collected inside the collection tank 51, then, the pressing block 39 is pressed and vibrated with the cylindrical filter plate 32, so that the cylindrical filter plate 32 can be prevented from being clogged with impurities.
As shown in fig. 4, 8 and 9, one end of the second rotating shaft 33 penetrates through the inner wall of the second supporting frame 7, one end of the second rotating shaft 33 is fixedly provided with a disc 41, one side of the surface of the disc 41 is rotatably provided with an extrusion rod 42, one end of the extrusion rod 42 is provided with a protruding block, the surface of the extrusion rod 42 is rotatably provided with a first connecting rod 43, one end of the first connecting rod 43 is rotatably provided with a second connecting rod 44, the surface of the second connecting rod 44 is rotatably provided with a third connecting rod 46, one end of the third connecting rod 46 is slidably provided with a mounting plate 45, the mounting plate 45 is fixedly connected with the blanking box 11, the surface of the third connecting rod 46 is rotatably provided with a fourth connecting rod 47, one end of the fourth connecting rod 47 penetrates through the inner wall of the blanking box 11, a limiting seat 48 is fixedly arranged inside the blanking box 11, and a fourth rotating shaft 49 is rotatably arranged inside the limiting seat 48, the fourth rotating shaft 49 is fixedly connected with the fourth connecting rod 47, the second rotating shaft 33 drives the disc 41 to rotate, the disc 41 drives the extrusion rod 42 to rotate, the extrusion rod 42 drives the second connecting rod 44 to move, the second connecting rod 44 drives the third connecting rod 46 to move up and down, and the third connecting rod 46 drives the fourth connecting rod 47 to rotate.
As shown in fig. 4, 8, and 9, a through groove for the movement of the fourth connecting rod 47 is formed in one side of the blanking box 11, a striking rod 410 is fixedly arranged on the surface of one side of the fourth rotating shaft 49, a rubber block is fixedly arranged at one end of the striking rod 410, the rubber block is connected with the screening cloth 14 in an extruding manner, the fourth connecting rod 47 drives the striking rod 410 to rotate inside the blanking box 11 through the fourth rotating shaft 49, the screening cloth 14 can be hammered when the striking rod 410 rotates, and the screening cloth 14 vibrates to fly the raw materials on the surface.
As shown in fig. 4 and 10, the collecting mechanism 5 includes a collecting box 51, a screening plate 52 is slidably disposed inside the collecting box 51, a handle 53 is fixedly disposed on a surface of one side of the screening plate 52, the tea oil can be collected by the collecting box 51, and the tea oil can be filtered by the screening plate 52.
As shown in fig. 10, the extruding component 6 includes a movable block 61, the movable block 61 and the handle 53 can be disassembled and connected together, a sliding groove is formed in the movable block 61, a spring 63 is fixedly arranged in the sliding groove, a fixed block 62 is fixedly arranged at the other end of the spring 63, the fixed block 62 slides in the sliding groove, one end of the fixed block 62 is fixedly connected with the second support frame 7, the extruding rod 42 and the movable block 61 extrude the sliding surface to be arc-shaped, the movable block 61 can be extruded to move through the rotation of the extruding rod 42, the movable block 61 drives the handle 53 to move, the handle 53 drives the screening plate 52 to slide in the collecting box 51, the movable block 61 is continuously extruded by the extruding rod 42, the screening plate 52 always slides back and forth, and the impurities on the surface of the screening plate 52 can be vibrated and screened.
The working principle is as follows: when the device is used, raw materials are placed in the discharging box 11, then the motor 22 is started, the output end of the motor 22 drives the synchronous belt 23 to rotate, the synchronous belt 23 drives the first rotating shaft 12 to rotate, the first rotating shaft 12 drives the cutting blade 13 to rotate, the cutting blade 13 cuts and increases the contact area of the raw materials, meanwhile, the motor 22 drives the second rotating shaft 33 to rotate, the second rotating shaft 33 drives the squeezing wheel 34 to rotate, the squeezing wheel 34 grinds and squeezes the raw materials in the processing box 31 to obtain tea oil, then the tea oil flows out of the processing box 31 to the inside of the cylindrical filter plate 32, as the cylindrical filter plate 32 is driven by the second rotating shaft 33 to rotate, the impurities in the tea oil can be effectively prevented from blocking the cylindrical filter plate 32, meanwhile, when the cylindrical filter plate 32 rotates, the scraper 37 squeezes the surface of the cylindrical filter plate 32 to scrape the tea oil into the collecting box 51, and meanwhile, the squeezing plate 38 on one side of the scraper 37 is squeezed with the cylindrical filter plate 32 through the squeezing block 39, can extrude and vibrate with the filtering holes on the surface of the cylindrical filtering plate 32, thereby avoiding the cylindrical filtering plate 32 from being blocked by impurities and influencing normal processing, meanwhile, the second rotating shaft 33 drives the disc 41 to rotate, the disc 41 drives the extrusion rod 42 to rotate, the extrusion rod 42 drives the first connecting rod 43 to move, the first connecting rod 43 drives the second connecting rod 44 to move, the second connecting rod 44 drives the third connecting rod 46 to move up and down, the third connecting rod 46 drives the fourth connecting rod 47 to rotate, the fourth connecting rod 47 drives the striking rod 410 to rotate in the blanking box 11 through the fourth rotating shaft 49, the striking rod 410 can strike the filtering cloth 14 when rotating, so that the filtering cloth 14 vibrates to strike away the raw material on the surface, thereby leading the cutting blade 13 to cut more thoroughly, the small holes of the filtering cloth 14 and the blanking pipe 15 to flow into the processing box 31 for processing, in addition, when the extrusion rod 42 rotates, the extrusion stem 42 extrudees the movable block 61 and removes, and the movable block 61 drives the handle 53 and removes, and the handle 53 drives the screening board 52 and slides in the inside of collecting box 51, constantly extrudees the movable block 61 by the extrusion stem 42, makes the screening board 52 make a round trip to slide always, can not only avoid impurity jam screening board 52 but also can conveniently clear up with the impurity vibrations and the screening on screening board 52 surface.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (10)

1. The utility model provides a multistage filter equipment for tea-seed oil squeezes convenient to change filter screen, includes cutting assembly (1), its characterized in that, the bottom of cutting assembly (1) is provided with squeezes raw materials and filters processing subassembly (3) of impurity through rotating, one side of cutting assembly (1) is provided with drive assembly (2) that are used for driving processing subassembly (3), the opposite side of cutting assembly (1) is provided with beats subassembly (4) of beating of accelerating the cutting raw materials through beating, the bottom of processing subassembly (3) is provided with collection mechanism (5) that slide and filter impurity, the bottom of beating subassembly (4) is provided with drive collection mechanism (5) gliding extrusion subassembly (6).
2. The multistage filter device convenient to replace filter screens and used for tea oil pressing as claimed in claim 1, wherein the cutting assembly (1) comprises a blanking box (11), a second support frame (7) is fixedly arranged at the bottom of the blanking box (11), a screening cloth (14) is arranged inside the blanking box (11), the screening cloth (14) is made of nylon cloth, a round hole for filtering raw materials is formed in the surface of the screening cloth (14), the screening cloth (14) divides the inside of the cutting assembly (1) into two parts, a first rotating shaft (12) is arranged in the blanking box (11) in a penetrating and rotating mode, a cutting blade (13) is arranged on the surface of the first rotating shaft (12), and a blanking pipe (15) is arranged in the bottom of the inside of the blanking box (11) in a communicating mode.
3. The multistage filter device convenient for replacing a filter screen for tea oil pressing as claimed in claim 2, wherein the driving assembly (2) comprises a first support frame (21), the first support frame (21) is fixedly connected with the blanking box (11), a motor (22) is fixedly arranged on the surface of the first support frame (21), a synchronous belt (23) is arranged at the output end of the motor (22), the other end of the synchronous belt (23) penetrates through the inner wall of the first support frame (21), and the other end of the synchronous belt (23) is connected with the first rotating shaft (12).
4. The multistage filter device convenient for filter screen replacement for tea oil pressing as claimed in claim 3, wherein the processing assembly (3) comprises a second rotating shaft (33), the second rotating shaft (33) is fixedly connected with the output end of the motor (22), one end of the second rotating shaft (33) is connected with the second support frame (7) in a penetrating and rotating manner, a cylindrical filter plate (32) is fixedly arranged on the surface of the second rotating shaft (33), a processing box (31) is arranged on the surface of the second rotating shaft (33) in a rotating manner, the cylindrical filter plate (32) is connected with the processing box (31) in a rotating manner, filter holes are formed in the surfaces of the processing box (31) and the cylindrical filter plate (32), and the processing box (31) is connected with the discharging pipe (15) in a fixed and communicating manner.
5. The multistage filter device for tea oil pressing for facilitating the replacement of filter screens according to claim 4, wherein the inside of the processing box (31) is rotatably provided with a pressing wheel (34), the pressing wheel (34) is fixedly connected with the second rotating shaft (33), the diameter of the cylindrical filter plate (32) is 1.3 times that of the processing box (31), and the diameter of the processing box (31) is 1.3 times that of the pressing wheel (34).
6. The multistage filtering device convenient for filter screen replacement for tea oil pressing as claimed in claim 4, wherein a fixing plate (35) is fixedly arranged at the bottom of the lower tank (11), a third rotating shaft (36) is rotatably arranged at the bottom of the fixing plate (35), a scraper (37) is arranged on the surface of the third rotating shaft (36), a return spring is arranged on the surface of the third rotating shaft (36), the other end of the return spring is fixedly connected with the scraper (37), the other end of the scraper (37) is connected with the cylindrical filter plate (32) in a pressing manner, a pressing plate (38) is fixedly arranged on one side of the scraper (37), a plurality of pressing blocks (39) are fixedly arranged on one side of the pressing plate (38), and the diameter of each pressing block (39) is equal to the diameter of each filter hole.
7. The multistage filtering device convenient for filter screen replacement for tea oil pressing as claimed in claim 4, wherein one end of the second rotating shaft (33) penetrates through the inner wall of the second supporting frame (7), and one end of the second rotating shaft (33) is fixedly provided with a disc (41), a squeezing rod (42) is rotatably arranged on one side of the surface of the disc (41), one end of the squeezing rod (42) is provided with a protruding block, a first connecting rod (43) is rotatably arranged on the surface of the squeezing rod (42), one end of the first connecting rod (43) is rotatably provided with a second connecting rod (44), a third connecting rod (46) is rotatably arranged on the surface of the second connecting rod (44), one end of the third connecting rod (46) is slidably provided with a mounting plate (45), and the mounting plate (45) is fixedly connected with the blanking box (11), the surface of third connecting rod (46) rotates and is provided with fourth connecting rod (47), the inner wall of workbin (11) is run through to the one end of fourth connecting rod (47), just the inside fixed restriction seat (48) that is provided with of workbin (11), the inside of restriction seat (48) is rotated and is provided with fourth rotation axis (49), fourth rotation axis (49) and fourth connecting rod (47) fixed connection are in the same place.
8. The multistage filtering device convenient for filter screen replacement for tea oil pressing as claimed in claim 7, wherein a through groove for the movement of the fourth connecting rod (47) is formed in one side of the discharging box (11), a hitting rod (410) is fixedly arranged on the surface of one side of the fourth rotating shaft (49), a rubber block is fixedly arranged at one end of the hitting rod (410), and the rubber block is connected with the screening cloth (14) in a squeezing mode.
9. The multistage filter device for pressing tea oil, which is convenient for replacing the filter screen, according to claim 7, is characterized in that the collecting mechanism (5) comprises a collecting box (51), the inside of the collecting box (51) is provided with a screening plate (52) in a penetrating and sliding manner, and a handle (53) is fixedly arranged on one side surface of the screening plate (52).
10. The multistage filtering device convenient for replacing a filter screen and used for tea oil pressing as claimed in claim 9, wherein the pressing assembly (6) comprises a movable block (61), the movable block (61) is detachably connected with a handle (53), a sliding groove is formed in the movable block (61), a spring (63) is fixedly arranged in the sliding groove, a positioning rod is arranged on the surface of the spring (63), the positioning rod is connected with the movable block (61) in a penetrating and sliding manner, a fixed block (62) is fixedly arranged at the other end of the spring (63), the fixed block (62) slides in the sliding groove, one end of the fixed block (62) is fixedly connected with the second support frame (7), and the side, in which the pressing rod (42) and the movable block (61) are pressed to slide, is arc-shaped.
CN202111544573.7A 2021-12-16 2021-12-16 A multistage filter equipment that is used for tea-seed oil to squeeze and is convenient for change filter screen Active CN114259784B (en)

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