CN114053778A - Solid-liquid separation filter equipment for squeezer - Google Patents

Solid-liquid separation filter equipment for squeezer Download PDF

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Publication number
CN114053778A
CN114053778A CN202111451690.9A CN202111451690A CN114053778A CN 114053778 A CN114053778 A CN 114053778A CN 202111451690 A CN202111451690 A CN 202111451690A CN 114053778 A CN114053778 A CN 114053778A
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CN
China
Prior art keywords
mounting
piston
solid
liquid separation
shell
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Granted
Application number
CN202111451690.9A
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Chinese (zh)
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CN114053778B (en
Inventor
朱晨润
张丽
卢志峰
张�杰
乔来红
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Shanxi Xiaoniuwa Food Co ltd
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Taizhou Qingrun Environmental Protection Technology Co ltd
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Priority to CN202111451690.9A priority Critical patent/CN114053778B/en
Publication of CN114053778A publication Critical patent/CN114053778A/en
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Publication of CN114053778B publication Critical patent/CN114053778B/en
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D33/00Filters with filtering elements which move during the filtering operation
    • B01D33/01Filters with filtering elements which move during the filtering operation with translationally moving filtering elements, e.g. pistons
    • B01D33/0108Filters with filtering elements which move during the filtering operation with translationally moving filtering elements, e.g. pistons with bag, cage, hose, tube, sleeve or the like filtering elements
    • B01D33/0133Filters with filtering elements which move during the filtering operation with translationally moving filtering elements, e.g. pistons with bag, cage, hose, tube, sleeve or the like filtering elements arranged for outward flow filtration
    • AHUMAN NECESSITIES
    • A23FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
    • A23FCOFFEE; TEA; THEIR SUBSTITUTES; MANUFACTURE, PREPARATION, OR INFUSION THEREOF
    • A23F3/00Tea; Tea substitutes; Preparations thereof
    • A23F3/16Tea extraction; Tea extracts; Treating tea extract; Making instant tea
    • AHUMAN NECESSITIES
    • A23FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
    • A23NMACHINES OR APPARATUS FOR TREATING HARVESTED FRUIT, VEGETABLES OR FLOWER BULBS IN BULK, NOT OTHERWISE PROVIDED FOR; PEELING VEGETABLES OR FRUIT IN BULK; APPARATUS FOR PREPARING ANIMAL FEEDING- STUFFS
    • A23N1/00Machines or apparatus for extracting juice

Abstract

The invention discloses a solid-liquid separation and filtration device for a squeezer, which comprises a base and a shell at the top of the base, wherein a placing mechanism for containing materials is arranged inside the shell, the placing mechanism can extrude the materials inside the shell when lifting up and remove the materials when moving down, an extruding mechanism for extruding the materials is slidably arranged at the top of the shell, the placing mechanism comprises an electric telescopic rod fixed on the side wall of the shell, the output end of the electric telescopic rod is provided with a connecting frame, one end of the connecting frame, far away from the electric telescopic rod, is fixedly connected with two mounting rods, and two filter covers are rotatably arranged between the two mounting rods through mounting shafts. When the two filter covers move upwards, the filter covers can extrude materials in the filter covers to perform solid-liquid quick separation, and when the two filter covers move downwards, an automatic material stripping process is performed, so that the working efficiency is greatly improved.

Description

Solid-liquid separation filter equipment for squeezer
Technical Field
The invention relates to the technical field of squeezer, in particular to a solid-liquid separation filtering device for a squeezer.
Background
At present, in the fruit and vegetable processing industry, a squeezer is mostly adopted to squeeze fruit juice from fruits and vegetables. The squeezer is suitable for squeezing juice of fruits and vegetables containing more fibers, such as grapes, sea buckthorn fruits, loquats, aloes, cassava residues, waxberries, pomegranates, ginger, spinach, medicinal materials, sawdust and tea leaves, so as to realize solid-liquid separation.
Disclosure of Invention
The invention aims to provide a solid-liquid separation and filtration device for a press, which can extrude materials in two filter covers when the two filter covers move upwards to perform solid-liquid rapid separation, and can perform an automatic material stripping process when the two filter covers move downwards, thereby greatly improving the working efficiency and solving the problems in the background technology.
In order to achieve the purpose, the invention provides the following technical scheme: a solid-liquid separation filtering device for a squeezer comprises a base and a shell on the top of the base, wherein a placing mechanism for containing materials is arranged inside the shell, the placing mechanism can extrude the materials inside the shell when the placing mechanism lifts up and strip the materials when the placing mechanism moves down, and an extruding mechanism for extruding the materials is slidably mounted on the top of the shell;
the placing mechanism comprises an electric telescopic rod fixed on the side wall of the shell, the output end of the electric telescopic rod is provided with a connecting frame, the connecting frame is far away from two installation rods fixedly connected with one end of the electric telescopic rod, the installation rods are rotatably provided with two filter covers through installation shafts, the outer wall of each filter cover is provided with teeth of an annular array, the inner wall of the shell is provided with a groove, a first rack meshed with the groove is slidably arranged inside the groove, and a first spring is connected between the bottom of the first rack and the bottom of the groove.
Preferably, extrusion mechanism includes the movable frame of slidable mounting at the casing top, the middle part of movable frame is rotated through the installation axle and is installed the extrusion ball, the outer wall cladding of extrusion ball has the lug, the lateral wall of movable frame is connected with and is used for carrying out gas filled piston mechanism to the extrusion ball.
Preferably, piston mechanism is including the piston cover on the fixed movable frame lateral wall, piston cover inside slidable mounting has the piston board, piston board bottom install the piston rod, the piston rod bottom extends to the outer wall and the fixed mounting of piston cover has the mounting bar, the outer wall winding of piston rod has the second spring between mounting bar and the piston cover, the intercommunication has the pipe on the piston cover, the pipe is kept away from the one end of piston cover and is passed through rotation seal cover and installation axle rotation installation, be provided with on the mounting bar and be used for extrusion ball pivoted meshing mechanism.
Preferably, the meshing mechanism comprises a gear fixedly mounted on the mounting shaft and a second rack fixed on the side wall of the mounting bar, and the second rack is in meshing transmission with the gear.
Preferably, the inside of base is provided with the stock chest that is used for accepting liquid, stock chest slidable mounting is on the installing frame, the installing frame runs through the inside at the base, the one end of installing frame is connected with and is used for spacing.
Preferably, the placing mechanism is connected with a transmission mechanism for the fore-and-aft movement of the storage tank and the extrusion ball, the transmission mechanism comprises a first vertical bar, a first mounting block and a second mounting block, the first mounting block is slidably mounted on the side wall of one of the mounting rods, the side wall of the first mounting block is fixedly connected with a rectangular plate, the rectangular plate is provided with an inclined groove, the second mounting block is fixed on the side wall of the mounting rod above the first mounting block, a third spring is connected between the first mounting block and the second mounting block, the first vertical bar is fixedly arranged at one end of the storage tank far away from the limit bar, the side wall of the first vertical bar close to the top is fixedly provided with a limit rod, the limiting rod can slide in the inclined groove in a limiting mode, the side wall, close to the top, of the first vertical bar is provided with a second vertical bar through the fixing block, and the top of the second vertical bar is fixed with the rear side of the movable frame.
Preferably, a material receiving groove for collecting waste residues is inserted at the bottom of the base.
Preferably, two installation parts are installed at the top of the shell, two locking grooves are formed in the installation parts respectively, and installation grooves matched with the locking grooves are formed in the lower portion of the base.
Compared with the prior art, the invention has the following beneficial effects:
1. according to the invention, through the arrangement of the placing mechanism, when the two filter covers move upwards, the two filter covers swing downwards in an arc shape and collide with each other to form a material containing area, when the filter covers drive materials to continuously move upwards, the materials in the filter covers can be extruded by matching with the arrangement of the extruding mechanism, solid-liquid quick separation is carried out, and when the two filter covers move downwards, the two filter covers swing upwards in an arc shape and are gradually separated, so that the extruded waste residues fall into the material receiving groove to be collected, and an automatic material stripping process is carried out, thereby greatly improving the working efficiency.
2. When the mounting bar moves upwards, the piston rod and the piston plate on the piston rod can be driven to move upwards in the piston sleeve, so that air in the piston sleeve is extruded, the air is filled into the extrusion ball, the extrusion ball expands, and meanwhile, solid and liquid can be fully extruded in cooperation with the rising process of the filter cover.
3. According to the invention, through the meshing effect of the gear and the second rack, when the mounting bar is lifted continuously, the gear can be further driven to rotate, so that the extrusion ball is driven to rotate integrally, and the extrusion degree between solid and liquid is further enhanced by matching with the uniformly distributed convex blocks and the expansion effect of the extrusion ball, and the separation efficiency is further improved.
4. According to the invention, through the arrangement of the transmission mechanism, when the two filter covers move upwards, solid and liquid can be fully extruded, at the moment, the liquid flows into the storage tank for collection, when the two filter covers move downwards, the storage tank and the extrusion ball move towards one end far away from the base and complete resetting, and the extruded waste residues further fall into the receiving tank for collection, so that the automatic classification and collection process can be realized.
Drawings
FIG. 1 is a schematic side-view perspective of the present invention;
FIG. 2 is a schematic front perspective view of the present invention;
FIG. 3 is a schematic front view of the present invention;
FIG. 4 is a schematic top view of the present invention;
FIG. 5 is a schematic side view of the present invention;
FIG. 6 is a schematic view of the cross-sectional structure A-A of the present invention;
fig. 7 is a schematic structural diagram in embodiment 2 of the present invention.
In the figure: 1. a base; 2. mounting grooves; 3. a limiting strip; 4. a material receiving groove; 5. installing a frame; 6. a storage tank; 7. mounting a rod; 8. a connecting frame; 9. a filter housing; 10. installing a shaft; 11. an electric telescopic rod; 13. a first vertical bar; 14. a second vertical bar; 15. a first rack; 16. a groove; 17. a housing; 18. a movable frame; 19. extruding the ball; 20. a bump; 21. installing a shaft; 22. a mounting member; 23. a locking groove; 24. a gear; 25. a piston sleeve; 26. a conduit; 27. a first spring; 28. teeth; 29. a piston rod; 30. a second spring; 31. mounting a bar; 32. a second rack; 33. rotating the sealing sleeve; 34. a rectangular plate; 35. a chute; 36. a limiting rod; 37. a first mounting block; 38. a third spring; 39. and a second mounting block.
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 7, the present invention provides a technical solution: a solid-liquid separation filtering device for a squeezer comprises a base 1 and a shell 17 on the top of the base 1, wherein a placing mechanism for containing materials is arranged inside the shell 17, the placing mechanism can extrude the materials inside the placing mechanism when the placing mechanism lifts up and strip the materials when the placing mechanism moves down, and an extruding mechanism for extruding the materials is slidably arranged on the top of the shell 17;
place mechanism including fixing electric telescopic handle 11 on the casing 17 lateral wall, connecting frame 8 is installed to electric telescopic handle 11's output, connecting frame 8 keeps away from two installation poles 7 of one end fixedly connected with of electric telescopic handle 11, rotate through installation axle 10 between two installation poles 7 and install two filter mantle 9, the outer wall of filter mantle 9 is provided with annular array's tooth 28, casing 17's inner wall is seted up flutedly 16, recess 16 internally mounted has the first rack 15 with recess 16 engaged with, be connected with first spring 27 between the bottom in the first rack 15 bottom and the recess 16.
Through the mechanism of placing that sets up, when two filter mantle 9 upward movements, two filter mantle 9 downward arc swings and takes place to contradict this moment, form flourishing material region, when filter mantle 9 drives the material and continues the upward movement, cooperation extrusion mechanism's setting, can extrude its inside material, carry out solid-liquid quick separation, when two filter mantle 9 downward movements, swing and part gradually as two filter mantle 9 upward arcs, thereby make the waste residue after the extrusion fall into and connect silo 4 inside to collect, carry out the automatic material process of taking off, thereby greatly improved work efficiency.
Further, the extrusion mechanism comprises a movable frame 18 which is slidably mounted at the top of the housing 17, an extrusion ball 19 is rotatably mounted in the middle of the movable frame 18 through a mounting shaft 21, a projection 20 is coated on the outer wall of the extrusion ball 19, and a piston mechanism for inflating the extrusion ball 19 is connected to the side wall of the movable frame 18.
Through the arranged piston mechanism, air can be filled into the extrusion ball 19, the extrusion ball 19 expands and is matched with the lugs 20 uniformly distributed on the extrusion ball, and meanwhile, solid and liquid can be fully extruded due to the rising process of the filter cover 9.
Further, piston mechanism includes piston bush 25 on the fixed movable frame 18 lateral wall, piston bush 25 inside slidable mounting has the piston board, piston board bottom install the piston rod 29, piston rod 29 bottom extends to piston bush 25's outer wall and fixed mounting has mounting bar 31, piston rod 29 outer wall winding has second spring 30 between mounting bar 31 and the piston bush 25, the intercommunication has pipe 26 on the piston bush 25, the one end that pipe 26 kept away from piston bush 25 is installed through rotating seal cover 33 and installation axle 21 rotation, be provided with on the mounting bar 31 and be used for extrusion ball 19 pivoted meshing mechanism.
When the filter mantle 9 moves upwards, the mounting bar 31 that sets up on the movable frame 18 is located the connecting frame 8 directly over, and electric telescopic handle 11 drives the connecting frame 8 upward movement, further makes the connecting frame 8 drive the mounting bar 31 upward movement, and when the mounting bar 31 upward movement, can drive piston rod 29 and the piston plate on it upward movement in piston bush 25 inside to make the inside air of piston bush 25 receive the extrusion, fill the inside of extrusion ball 19 with the air and make extrusion ball 19 take place the inflation.
Further, the meshing mechanism comprises a gear 24 fixedly mounted on the mounting shaft 21 and a second rack 32 fixed on the side wall of the mounting bar 31, and the second rack 32 is in meshing transmission with the gear 24.
Due to the meshing effect of the gear 24 and the second rack 32, when the mounting bar 31 continuously rises, the gear 24 can be further driven to rotate, so that the extrusion ball 19 is driven to integrally rotate, and the extrusion degree between solid and liquid is further enhanced by matching with the bumps 20 uniformly distributed on the extrusion ball and the expansion effect of the extrusion ball 19, and the separation efficiency is further improved.
Further, the inside of base 1 is provided with the stock chest 6 that is used for accepting liquid, and stock chest 6 slidable mounting is on installing frame 5, and installing frame 5 runs through in the inside of base 1, and the one end of installing frame 5 is connected with and is used for spacing 3.
Can accept the liquid after the separation through the stock chest 6 that sets up to the spacing strip 3 that the cooperation set up, inside and being located the filter mantle 9 of base 1 is slided into to stock chest 6, is no longer slided by spacing of spacing strip 3.
Further, the placing mechanism is connected with a transmission mechanism used for the fore-and-aft movement of the storage tank 6 and the extrusion ball 19, the transmission mechanism comprises a first vertical bar 13, a first mounting block 37 and a second mounting block 39, the first mounting block 37 is slidably mounted on the side wall of one of the mounting rods 7, a rectangular plate 34 is fixedly connected onto the side wall of the first mounting block 37, a chute 35 is formed in the rectangular plate 34, the second mounting block 39 is fixed onto the side wall of the mounting rod 7 above the first mounting block 37, a third spring 38 is connected between the first mounting block 37 and the second mounting block 39, the first vertical bar 13 is fixedly mounted at one end, far away from the limiting bar 3, of the storage tank 6, a limiting rod 36 is fixedly mounted on the side wall, close to the top, of the first vertical bar 13, the limiting rod 36 can slide in the chute 35 in a limiting mode, the side wall, close to the top, of the first vertical bar 13 is provided with a second vertical bar 14 through a fixing block, and the top of the second vertical bar 14 is fixed to the rear side of the movable frame 18.
When the mounting rod 7 drives the filter housing 9 to move upwards, due to the arrangement of the transmission mechanism, the upward movement of the mounting rod 7 can further drive the rectangular plate 34 to move upwards, due to the limiting action of the chute 35 and the limiting rod 36, in cooperation with the connection action of the first vertical bar 13 and the second vertical bar 14, when the rectangular plate 34 moves upwards continuously, the stock chest 6 and the extrusion balls 19 can be further driven to move towards the inside of the device, when the two closed filter housings 9 move to a certain height, the stock chest 6 slides into the inside of the base 1 and is positioned under the filter housing 9, the limitation of the limitation bar 3 does not slide any more, meanwhile, the extrusion balls 19 at the top slide into the inside of the shell 17 and is positioned over the filter housing 9 and is also limited by the shell 17 and does not slide any more, at this time, the material to be subjected to solid-liquid separation after the squeezer treatment can be poured into the inside of the filter housing 9, at this time, the electric telescopic rod 11 is continuously driven, make filter mantle 9 drive material upward movement, because relative slip between first installation piece 37 and the installation pole 7, receive spacing when keeping static when stock chest 6 and squeeze ball 19, first installation piece 37 relatively fixed this moment, thereby installation pole 7 acts on third spring 38 for first installation piece 37 upward movement, and the same is said, when two filter mantles 9 downstream, make stock chest 6 and squeeze ball 19 to the one end motion of keeping away from base 1 and accomplish and reset, further make by the waste residue after the extrusion fall into and connect the inside collection of silo 4, thereby alright realize automatic categorised collection process.
Example 1: as an implementation mode of solid-liquid separation, a material receiving groove 4 for collecting waste residues is further inserted into the bottom of the base 1.
Through the silo 4 that connects that sets up, alright make the waste residue after being extruded fall into and connect 4 inside collections of silo to through the grafting effect, can realize connecing the dismantlement of silo 4.
Example 2: as another embodiment of solid-liquid separation, two mounting pieces 22 are mounted on the top of the housing 17, the two mounting pieces 22 are respectively provided with a locking groove 23, and the lower part of the base 1 is provided with a mounting groove 2 matched with the locking groove 23.
As shown in figure 7, can use two and a plurality of devices are made up, and the filter mantle 9 among two and a plurality of devices filters the density difference, install two installed parts 22 through the casing 17 top, place the base 1 that the great device of filter mantle 9 density was located on installed part 22, through the locking groove 23 and the mounting groove 2 that set up, when the spacing screw inserted, can realize the combination between the device, through the combined use, alright obtain the parting liquid of different degrees, be convenient for further improve work efficiency and quality.
The working principle is as follows: when the solid-liquid separation filtering device for the squeezer is used, as shown in fig. 1, firstly, the electric telescopic rod 11 is driven to work, so that the connecting frame 8 is driven to contract, the connecting frame 8 further drives the mounting rod 7 to move upwards, due to the meshing effect of the first rack 15 and the teeth 28, the first rack 15 is matched with the first spring 27 which can slide in the groove 16 and is connected with the bottom of the groove, when the mounting rod 7 drives the two filter covers 9 to move upwards, the two filter covers 9 move downwards and oppositely to form a material containing area, and when the mounting rod 7 continues to drive the filter covers 9 to move upwards, the filter covers 9 do not move any more, so that the two closed filter covers 9 and the first racks 15 on the two sides are further driven to move upwards;
when the mounting rod 7 drives the filter housing 9 to move upwards, due to the arrangement of the transmission mechanism, the upward movement of the mounting rod 7 can further drive the rectangular plate 34 to move upwards, due to the limiting action of the chute 35 and the limiting rod 36, in cooperation with the connection action of the first vertical bar 13 and the second vertical bar 14, when the rectangular plate 34 moves upwards continuously, the stock chest 6 and the extrusion balls 19 can be further driven to move towards the inside of the device, when the two closed filter housings 9 move to a certain height, the stock chest 6 slides into the inside of the base 1 and is positioned under the filter housing 9, the limitation of the limitation bar 3 does not slide any more, meanwhile, the extrusion balls 19 at the top slide into the inside of the shell 17 and is positioned over the filter housing 9 and is also limited by the shell 17 and does not slide any more, at this time, the material to be subjected to solid-liquid separation after the squeezer treatment can be poured into the inside of the filter housing 9, at this time, the electric telescopic rod 11 is continuously driven, the filter cover 9 drives the material to move upwards, and due to the relative sliding between the first mounting block 37 and the mounting rod 7, when the material storage tank 6 and the extrusion ball 19 are limited and kept still, the first mounting block 37 is relatively fixed, so that the mounting rod 7 moves upwards relative to the first mounting block 37 and acts on the third spring 38;
when the filter cover 9 moves upwards, the mounting bar 31 arranged on the movable frame 18 is positioned right above the connecting frame 8, the electric telescopic rod 11 drives the connecting frame 8 to move upwards, so that the connecting frame 8 further drives the mounting bar 31 to move upwards, and when the mounting bar 31 moves upwards, on one hand, the piston rod 29 and the piston plate thereon are driven to move upwards in the piston sleeve 25, so that the air in the piston sleeve 25 is extruded, the air is filled into the extrusion ball 19, the extrusion ball 19 expands, and meanwhile, solid and liquid can be fully extruded by matching with the rising process of the filter cover 9, and the liquid flows into the storage tank 6 to be collected;
after the extrusion, the whole downstream of drive electric telescopic handle 11 work drive filter mantle 9 for on the one hand, make stock chest 6 and extrusion ball 19 to the one end motion of keeping away from base 1 and accomplish and reset, like figure 1 initial condition, when electric telescopic handle 11 drives filter mantle 9 and continues downstream, two filter mantles 9 at this moment upwards arc rotate and part gradually, thereby make the waste residue after being extruded fall into and connect silo 4 inside to collect.
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 (8)

1. The utility model provides a solid-liquid separation filter equipment for squeezer, includes base (1) and casing (17) at base (1) top, its characterized in that: a placing mechanism for containing materials is arranged inside the shell (17), the placing mechanism can extrude the materials inside the shell when the placing mechanism is lifted upwards and remove the materials when the placing mechanism is moved downwards, and an extruding mechanism for extruding the materials is slidably arranged at the top of the shell (17);
place mechanism including fixing electric telescopic handle (11) on casing (17) lateral wall, connection frame (8) are installed to the output of electric telescopic handle (11), two installation poles (7) of one end fixedly connected with of electric telescopic handle (11) are kept away from in connection frame (8), two install and rotate through installation axle (10) between pole (7) and install two filter mantles (9), the outer wall of filter mantel (9) is provided with tooth (28) of annular array, the inner wall of casing (17) is seted up flutedly (16), recess (16) inside slidable mounting has first rack (15) with recess (16) engaged with, be connected with first spring (27) between the bottom in first rack (15) bottom and recess (16).
2. The solid-liquid separation filter device for a press according to claim 1, characterized in that: extrusion mechanism includes movable frame (18) at casing (17) top of slidable mounting, the middle part of movable frame (18) is rotated through installation axle (21) and is installed extrusion ball (19), the outer wall cladding of extrusion ball (19) has lug (20), the lateral wall of movable frame (18) is connected with and is used for carrying out the piston mechanism of aerifing to extrusion ball (19).
3. The solid-liquid separation filter device for a press according to claim 2, characterized in that: piston mechanism is including piston cover (25) on fixed movable frame (18) lateral wall, piston cover (25) inside slidable mounting has the piston board, piston board bottom install piston rod (29), piston rod (29) bottom extends to the outer wall and the fixed mounting of piston cover (25) has mounting bar (31), piston rod (29) outer wall winding has second spring (30) between mounting bar (31) and piston cover (25), the intercommunication has pipe (26) on piston cover (25), the one end that piston cover (25) were kept away from in pipe (26) is through rotating seal cover (33) and installation axle (21) and rotate the installation, be provided with on mounting bar (31) and be used for squeeze ball (19) pivoted meshing mechanism.
4. The solid-liquid separation filter device for a press according to claim 3, characterized in that: the meshing mechanism comprises a gear (24) fixedly mounted on the mounting shaft (21) and a second rack (32) fixed on the side wall of the mounting bar (31), and the second rack (32) is in meshing transmission with the gear (24).
5. The solid-liquid separation filter device for a press according to claim 1, characterized in that: the liquid storage tank is characterized in that a storage tank (6) used for receiving liquid is arranged inside the base (1), the storage tank (6) is slidably mounted on the mounting frame (5), the mounting frame (5) penetrates through the inside of the base (1), and one end of the mounting frame (5) is connected with a limiting strip (3) used for limiting.
6. The solid-liquid separation filter device for a press according to claim 1, characterized in that: the placing mechanism is connected with a transmission mechanism used for the fore-and-aft movement of the storage tank (6) and the extrusion ball (19), the transmission mechanism comprises a first vertical bar (13), a first mounting block (37) and a second mounting block (39), the first mounting block (37) is slidably mounted on the side wall of one of the mounting rods (7), a rectangular plate (34) is fixedly connected onto the side wall of the first mounting block (37), a chute (35) is formed in the rectangular plate (34), the second mounting block (39) is fixed onto the side wall of the mounting rod (7) above the first mounting block (37), a third spring (38) is connected between the first mounting block (37) and the second mounting block (39), the first vertical bar (13) is fixedly mounted at one end, far away from the limiting bar (3), of the first vertical bar (13) close to the top, a limiting rod (36) is fixedly mounted on the side wall of the first vertical bar (13), the limiting rod (36) can slide in the inclined groove (35) in a limiting mode, the first vertical bar (13) is close to the side wall of the top and is provided with a second vertical bar (14) through the fixing block, and the top of the second vertical bar (14) is fixed to the rear side of the movable frame (18).
7. The solid-liquid separation filter device for a press according to claim 1, characterized in that: the bottom of the base (1) is inserted with a material receiving groove (4) for collecting waste residues.
8. The solid-liquid separation filter device for a press according to claim 1, characterized in that: two installed parts (22) are installed at casing (17) top, two locking groove (23) have been seted up on installed part (22) respectively, mounting groove (2) with locking groove (23) assorted have been seted up to the lower part of base (1).
CN202111451690.9A 2021-12-01 2021-12-01 Solid-liquid separation filter equipment for squeezer Active CN114053778B (en)

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CN114053778B CN114053778B (en) 2023-01-03

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