CN113694614A - High-efficient filter equipment of dairy products - Google Patents

High-efficient filter equipment of dairy products Download PDF

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Publication number
CN113694614A
CN113694614A CN202110918896.1A CN202110918896A CN113694614A CN 113694614 A CN113694614 A CN 113694614A CN 202110918896 A CN202110918896 A CN 202110918896A CN 113694614 A CN113694614 A CN 113694614A
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CN
China
Prior art keywords
rod
plate
sealing
cylinder
filter
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Granted
Application number
CN202110918896.1A
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Chinese (zh)
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CN113694614B (en
Inventor
夏志强
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Xinjiang Junnong Dairy Co ltd
Original Assignee
Nanjing Shuaixinglong Trading Co ltd
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Application filed by Nanjing Shuaixinglong Trading Co ltd filed Critical Nanjing Shuaixinglong Trading Co ltd
Priority to CN202110918896.1A priority Critical patent/CN113694614B/en
Publication of CN113694614A publication Critical patent/CN113694614A/en
Application granted granted Critical
Publication of CN113694614B publication Critical patent/CN113694614B/en
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D36/00Filter circuits or combinations of filters with other separating devices
    • B01D36/02Combinations of filters of different kinds
    • 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
    • B01D33/03Filters with filtering elements which move during the filtering operation with translationally moving filtering elements, e.g. pistons with vibrating filter elements
    • B01D33/0346Filters with filtering elements which move during the filtering operation with translationally moving filtering elements, e.g. pistons with vibrating filter elements with flat filtering elements
    • B01D33/0353Filters with filtering elements which move during the filtering operation with translationally moving filtering elements, e.g. pistons with vibrating filter elements with flat filtering elements self-supporting
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D33/00Filters with filtering elements which move during the filtering operation
    • B01D33/06Filters with filtering elements which move during the filtering operation with rotary cylindrical filtering surfaces, e.g. hollow drums
    • B01D33/11Filters with filtering elements which move during the filtering operation with rotary cylindrical filtering surfaces, e.g. hollow drums arranged for outward flow filtration
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D36/00Filter circuits or combinations of filters with other separating devices
    • B01D36/04Combinations of filters with settling tanks
    • B01D36/045Combination of filters with centrifugal separation devices

Abstract

The invention relates to a high-efficiency dairy product filtering device, which comprises a collecting box, a transverse plate, a fixing rod, a driving box, a filtering mechanism and a connecting mechanism, wherein the collecting box is horizontally arranged, the transverse plate is horizontally arranged above the collecting box, the fixing rod is arranged between the transverse plate and the collecting box, the transverse plate is connected with the collecting box through the fixing rod, the driving box is arranged on the transverse plate, a driving device is arranged in the driving box, the filtering mechanism, the connecting mechanism and a sealing mechanism are all arranged between the driving box and the collecting box, the filtering mechanism comprises a connecting cylinder, a filtering cylinder and a sealing assembly, the connecting mechanism comprises a bearing seat, a connecting pipe, a limiting ring and an auxiliary assembly, the high-efficiency dairy product filtering device improves the filtering efficiency through the matching of the filtering mechanism and the connecting mechanism, improves the filtering effect, reduces the cleaning difficulty and reduces the labor intensity of people, the linkage of a plurality of mechanisms is realized by the same driving source, and the practicability of use is improved.

Description

High-efficient filter equipment of dairy products
Technical Field
The invention particularly relates to a high-efficiency filtering device for dairy products.
Background
The milk product is a dairy product, including liquid milk products, milk powder products, cheese products and the like, wherein the liquid milk products include sour milk, sterilized milk and the like, the milk product is usually required to be purified when the liquid milk product is processed, the filtration is one of the most basic means for purifying the milk product, and impurities such as hay, feed or hair in the milk product can be removed by filtering the liquid milk product, so that the purification effect is achieved.
However, the existing milk product filtering device generally filters milk by gravity, so that the filtering efficiency is low, the problem that the filter is blocked is easy to occur, the cleaning is troublesome, the labor intensity of people is improved, and the practicability is not strong.
Disclosure of Invention
The technical problem to be solved by the invention is as follows: in order to overcome the defects of the prior art, the high-efficiency filtering device for the dairy products is provided.
The technical scheme adopted by the invention for solving the technical problems is as follows: a high-efficiency dairy product filtering device comprises a collecting box, a transverse plate, a fixing rod, a driving box, a filtering mechanism and a connecting mechanism, wherein the collecting box is horizontally arranged, the transverse plate is horizontally arranged above the collecting box, the fixing rod is arranged between the transverse plate and the collecting box, the transverse plate is connected with the collecting box through the fixing rod, the driving box is arranged on the transverse plate, the driving box is internally provided with a driving device, and the filtering mechanism, the connecting mechanism and the sealing mechanism are all arranged between the driving box and the collecting box;
the filter mechanism comprises a connecting cylinder, a filter cylinder and a sealing assembly, the connecting cylinder is vertically arranged between the driving box and the collecting box, the filter cylinder is vertically arranged in the connecting cylinder, the filter cylinder is connected with the connecting cylinder in a sliding manner, an opening is formed in the bottom end of the filter cylinder, and a connecting port is formed in the top end of the connecting cylinder;
the sealing assembly is arranged between the connecting cylinder and the driving box and comprises a cover plate, positioning rods and rotating rods, the cover plate is horizontally arranged above the connecting cylinder, the rotating rods are arranged between the cover plate and the driving box, one ends of the rotating rods are connected with the middle of the cover plate, the other ends of the rotating rods extend into the driving box and are connected with the driving device, the rotating rods and the connecting cylinder are coaxially arranged, two cylindrical positioning grooves are formed in the end face of the top end of the connecting cylinder and are symmetrically arranged relative to the axis of the connecting cylinder, the number of the positioning rods is two, the positioning rods are arranged between the cover plate and the connecting cylinder, one ends of the positioning rods are connected with the cover plate, the other ends of the positioning rods extend into the positioning grooves, and the positioning rods are in sliding connection with the positioning grooves;
the connecting mechanism is arranged on the collecting box and comprises a bearing seat, a connecting pipe, a limiting ring and an auxiliary assembly, the bearing seat is arranged on the collecting box, the connecting pipe is vertically arranged between the connecting cylinder and the bearing seat, the bottom end of the connecting pipe is communicated with the collecting box through the bearing seat, the connecting pipe penetrates through the connecting cylinder and is positioned in the filter cylinder, the connecting pipe is connected with the connecting cylinder, the connecting pipe is connected with the filter cylinder in a sliding manner, the limiting ring is sleeved on the connecting pipe, the limiting ring is connected with the connecting ring, the limiting ring is positioned between the connecting cylinder and the filter cylinder, the limiting ring is abutted against the bottom end of the filter cylinder, and a communicating hole is formed in one end, located on the filter cylinder and the connecting cylinder, of the connecting pipe;
the auxiliary assembly is arranged in the filter box and is positioned in the connecting pipe, and the auxiliary assembly is connected with the connecting pipe.
In order to facilitate the disassembly of the auxiliary assembly, the auxiliary assembly comprises a sealing plate, a filter screen plate, two bead screws, a connecting rod, a connecting ring, a vibration unit and a driven unit, the sealing plate is horizontally arranged at the top end inside the connecting pipe, the filter screen plate is arranged in the connecting pipe, the filter screen plate is positioned below the sealing plate and is in sliding connection with the connecting pipe, the two bead screws are arranged on the inner wall of the connecting pipe and are symmetrically arranged relative to the axis of the connecting pipe, an annular groove is arranged on the outer ring of the sealing plate, the bead screws are positioned in the groove, the connecting ring is arranged above the sealing plate, the connecting rod is arranged between the connecting ring and the filter screen plate, one end of the connecting rod is connected with the filter screen plate, and the other end of the connecting rod penetrates through the sealing plate to be connected with the connecting ring, the connecting rod is connected with the sealing plate.
In order to realize the vibration of the filter screen plate and prevent the filter screen plate from being blocked, the vibration unit is arranged on one side of the connecting rod and is positioned above the filter screen plate, the vibration unit comprises a cross rod, a positioning strip, a limiting block, a moving ring, a first spring, a leaning rod and a leaning ball, the limiting block is arranged on one side of the connecting rod, the cross rod is horizontally arranged between the limiting block and the connecting rod, the limiting block is connected with the connecting rod through the cross rod, the moving ring is sleeved on the cross rod and is in sliding connection with the cross rod, the first spring is arranged between the moving ring and the connecting rod, the first spring is sleeved on the cross rod, one end of the first spring is connected with the moving ring, the other end of the first spring is connected with the connecting rod, the positioning strip is horizontally arranged on the cross rod, and the moving ring is in sliding connection with the cross rod through the positioning strip, the support ball is arranged between the moving ring and the filter screen plate, the support rod is arranged between the support ball and the moving ring, the support ball is connected with the moving ring through the support rod, and one end, far away from the support rod, of the support ball is supported against the filter screen plate.
In order to promote the vibrations effect, be equipped with a plurality of archs on the filter plate, each arch evenly sets up, the ball is kept away from the one end of leaning on the pole and the arch is supported and is leaned on.
In order to realize the sealing of the sealing plate, the driven unit is arranged between the cross rod and the sealing plate, the driven unit comprises a movable plate, sealing rods, limiting rods, a second spring, a wire coil and a driving unit, the wire coil is sleeved on the connecting rod, the wire coil is connected with the connecting rod in a key mode, the movable plate is sleeved on the connecting rod and is connected with the connecting rod in a sliding mode, the movable plate is located between the wire coil and the sealing plate, the two limiting rods are respectively arranged on two sides of the connecting rod, one end of each limiting rod is connected with the sealing plate, the other end of each limiting rod penetrates through the movable plate, the limiting rods are connected with the movable plate in a sliding mode, the sealing rods are evenly arranged on the movable plate and are located between the limiting rods and the connecting rod, a plurality of sealing holes are formed in the sealing plate, and are evenly arranged, the one end that the movable plate was kept away from to the sealing rod stretches into in the sealing hole, the sealing rod slides and sealing connection with the sealing hole, the second spring sets up between movable plate and drum, the second spring housing is established on the connecting rod, the one end and the movable plate of second spring are connected, the other end and the terminal surface of drum of second spring are connected.
In order to realize the removal to the movable plate, drive unit has two, and two drive unit set up respectively two gag lever posts keep away from the one end of movable plate on, drive unit includes stay cord and fixed pulley, the fixed pulley setting is kept away from the one end of movable plate at the gag lever post and is served, the stay cord setting is between movable plate and drum, the fixed pulley is walked around to the one end of stay cord and is connected with the movable plate, the other end of stay cord is around establishing on the drum.
The invention has the advantages that the high-efficiency dairy product filtering device realizes the rotation of the connecting cylinder through the driving device in the driving box, thereby filtering the main body by the centrifugal force in the main body inside the connecting cylinder, leading the main body to enter the collecting box through the communicating hole on the communicating pipe, meanwhile, the connecting cylinder rotates to drive the auxiliary assembly to operate, the main body in the filter cylinder is filtered through the auxiliary assembly, so that the main body in the filter cartridge can also flow into the collecting box through the connecting pipe, thereby improving the filtering efficiency, meanwhile, the vibration unit can also realize the vibration of the filter screen plate, prevent the filter screen plate from being blocked and improve the filtering effect, and the detachable filter cartridge and the auxiliary component are used, therefore, the cleaning difficulty is reduced, the labor intensity of people is reduced, the linkage of a plurality of mechanisms is realized through the same driving source, and the practicability of use is improved.
Drawings
The invention is further illustrated with reference to the following figures and examples.
FIG. 1 is a schematic structural diagram of a high-efficiency filtering device for dairy products of the present invention;
FIG. 2 is a schematic view of the connection structure of the filter mechanism and the connection mechanism of the high-efficiency dairy product filter device of the invention;
FIG. 3 is a schematic view of the connection structure of the connection pipe and the auxiliary assembly of the high-efficiency dairy product filtering device of the present invention;
FIG. 4 is an enlarged view of portion A of FIG. 3;
FIG. 5 is a schematic structural diagram of a driven unit of the high-efficiency dairy product filtering device of the invention;
in the figure: 1. the movable type dust collector comprises a collecting box, a transverse plate, a fixing rod, a driving box, a connecting cylinder, a filter cylinder, a cover plate, a positioning rod, a rotating rod, a bearing seat, a connecting pipe, a limiting ring, a sealing plate, a filter screen plate, a ball screw, a connecting rod, a connecting ring, a cross rod, a positioning strip, a limiting block, a movable ring, a first spring, a supporting rod, a supporting ball, a bump, a movable plate, a sealing rod, a limiting rod, a second spring, a wire coil, a pull rope and a fixed pulley, wherein the collecting box comprises 2, the transverse plate, 3, the fixing rod, 4, the driving box, 5, the connecting cylinder, 6, the filter cylinder, 7, the cover plate, 8, the connecting rod, 9, the rotating rod, 10, the bearing seat, 11, the connecting pipe, 12, the limiting ring, 13, the sealing plate, 14, 15, the ball screw, the connecting rod, the movable plate, 18, the cross rod, the limiting block, 21, the movable plate and the movable plate.
Detailed Description
The present invention will now be described in further detail with reference to the accompanying drawings. These drawings are simplified schematic views illustrating only the basic structure of the present invention in a schematic manner, and thus show only the constitution related to the present invention.
As shown in fig. 1-2, a high-efficiency filtering device for dairy products comprises a collecting box 1, a transverse plate 2, a fixing rod 3, a driving box 4, a filtering mechanism and a connecting mechanism, wherein the collecting box 1 is horizontally arranged, the transverse plate 2 is horizontally arranged above the collecting box 1, the fixing rod 3 is arranged between the transverse plate 2 and the collecting box 1, the transverse plate 2 is connected with the collecting box 1 through the fixing rod 3, the driving box 4 is arranged on the transverse plate 2, the driving device is arranged in the driving box 4, and the filtering mechanism, the connecting mechanism and the sealing mechanism are all arranged between the driving box 4 and the collecting box 1;
the filter mechanism comprises a connecting cylinder 5, a filter cylinder 6 and a sealing assembly, wherein the connecting cylinder 5 is vertically arranged between the driving box 4 and the collecting box 1, the filter cylinder 6 is vertically arranged in the connecting cylinder 5, the filter cylinder 6 is in sliding connection with the connecting cylinder 5, an opening is formed in the bottom end of the filter cylinder 6, and a connecting port is formed in the top end of the connecting cylinder 5;
the sealing assembly is arranged between the connecting cylinder 5 and the driving box 4 and comprises a cover plate 7, a positioning rod 8 and a rotating rod 9, the cover plate 7 is horizontally arranged above the connecting cylinder 5, the rotating rod 9 is arranged between the cover plate 7 and the driving box 4, one end of the rotating rod 9 is connected with the middle part of the cover plate 7, the other end of the rotating rod 9 extends into the driving box 4 to be connected with the driving device, the rotating rod 9 and the connecting cylinder 5 are coaxially arranged, two cylindrical positioning grooves are arranged on the end surface of the top end of the connecting cylinder 5 and symmetrically arranged relative to the axis of the connecting cylinder 5, two positioning rods 8 are arranged between the cover plate 7 and the connecting cylinder 5, one end of each positioning rod 8 is connected with the cover plate 7, the other end of each positioning rod 8 extends into the corresponding positioning groove, and the positioning rods 8 are slidably connected with the corresponding positioning grooves;
the connecting mechanism is arranged on the collecting box 1 and comprises a bearing seat 10, a connecting pipe 11, a limiting ring 12 and an auxiliary assembly, the bearing seat 10 is arranged on the collecting box 1, the connecting pipe 11 is vertically arranged between the connecting cylinder 5 and the bearing seat 10, the bottom end of the connecting pipe 11 is communicated with the collecting box 1 through the bearing seat 10, the connecting cylinder 5 penetrating through the connecting pipe 11 is positioned in the filter cylinder 6, the connecting pipe 11 is connected with the connecting cylinder 5, the connecting pipe 11 is connected with the filter cylinder 6 in a sliding manner, the limiting ring 12 is sleeved on the connecting pipe 11, the limiting ring 12 is connected with the connecting ring 17, the limiting ring 12 is positioned between the connecting cylinder 5 and the filter cylinder 6, the limiting ring 12 is abutted against the bottom end of the filter cylinder 6, and one end of the connecting pipe 11, which is positioned at one end of the filter cylinder 6 and the connecting cylinder 5, is provided with a communicating hole;
the auxiliary assembly is arranged in the filter box, is positioned in the connecting pipe 11 and is connected with the connecting pipe 11.
The drive arrangement who is located inside drive box 4 here not only can realize the rotation to bull stick 9, can also realize the lift to bull stick 9 simultaneously, here when the main part is filtered to needs, at first realize the removal to bull stick 9 through the drive arrangement of drive box 4 inside, bull stick 9 drive apron 7 removes towards the direction of diaphragm 2, apron 7 drive locating lever 8 removes, make locating lever 8 and connecting cylinder 5 separation, at this moment can pour the main part into to cartridge filter 6 in, realize filtering the main part through cartridge filter 6, at this moment the main part after filtering will flow into in collecting box 1 through the intercommunicating pore that is located on connecting pipe 11 between cartridge filter 6 and the connecting cylinder 5.
Here for improving the filter effect, only need to operate drive arrangement, make bull stick 9 remove towards the direction of connecting cylinder 5, make apron 7 remove to initial position, present locating lever 8 is located the constant head tank, realize spacing to apron 7 through locating lever 8, at this moment realize the rotation to bull stick 9 through drive arrangement, bull stick 9 drive apron 7 rotates, apron 7 drive locating lever 8 rotates, locating lever 8 drive connecting cylinder 5 rotates, locating lever 8 here is along the axis symmetry setting of connecting cylinder 5, make apron 7 can be more stable when rotating through locating lever 8 drive connecting cylinder 5, here rotation through connecting cylinder 5, make the inside main part of connecting cylinder 5 produce centrifugal force, thereby make better filtration through filter cartridge 6 of main part, improve filtration efficiency.
Simultaneously the connecting cylinder 5 rotates drive connecting pipe 11 and rotates, here because the connecting pipe 11 is connected through bearing frame 10, so can be along with the rotation of connecting cylinder 5 and pivoted during connecting pipe 11 here, here realize the spacing to cartridge filter 6 through spacing ring 12, not only can make the cartridge filter 6 top better support with apron 7 and lean on, certain clearance remains throughout between the bottom of cartridge filter 6 simultaneously and the inner wall of connecting cylinder 5 bottom, thereby be convenient for the better intercommunicating pore that passes through on the connecting pipe 11 of main part after the filtration flows into in the collecting box 1.
As shown in fig. 3 to 5, in order to facilitate the detachment of the auxiliary assembly, the auxiliary assembly includes a sealing plate 13, a filter plate 14, bead screws 15, a connecting rod 16, a connecting ring 17, a vibration unit and a driven unit, the sealing plate 13 is horizontally disposed at the top end inside the connecting pipe 11, the filter plate 14 is disposed inside the connecting pipe 11, the filter plate 14 is located below the sealing plate 13, the filter plate 14 is slidably connected to the connecting pipe 11, two bead screws 15 are disposed on the inner wall of the connecting pipe 11, the two bead screws 15 are symmetrically disposed about the axis of the connecting pipe 11, an annular groove is disposed on the outer ring of the sealing plate 13, the bead screws 15 are located in the groove, the connecting ring 17 is disposed above the sealing plate 13, the connecting rod 16 is disposed between the connecting ring 17 and the filter plate 14, one end of the connecting rod 16 is connected with the filter screen plate 14, the other end of the connecting rod 16 passes through the sealing plate 13 to be connected with the connecting ring 17, and the connecting rod 16 is connected with the sealing plate 13.
In order to realize the vibration of the filter screen plate 14 and prevent the filter screen plate 14 from being blocked, the vibration unit is arranged on one side of the connecting rod 16 and is positioned above the filter screen plate 14, the vibration unit comprises a cross rod 18, a positioning strip 19, a limiting block 20, a moving ring 21, a first spring 22, a leaning rod 23 and a leaning ball 24, the limiting block 20 is arranged on one side of the connecting rod 16, the cross rod 18 is horizontally arranged between the limiting block 20 and the connecting rod 16, the limiting block 20 is connected with the connecting rod 16 through the cross rod 18, the moving ring 21 is sleeved on the cross rod 18, the moving ring 21 is slidably connected with the cross rod 18, the first spring 22 is arranged between the moving ring 21 and the connecting rod 16, the first spring 22 is sleeved on the cross rod 18, one end of the first spring 22 is connected with the moving ring 21, the other end of the first spring 22 is connected with the connecting rod 16, the setting of locating bar 19 level is on horizontal pole 18, shift ring 21 passes through locating bar 19 and horizontal pole 18 sliding connection, the ball 24 that leans on sets up between shift ring 21 and filter plate 14, the setting of pole 23 that leans on is between ball 24 and shift ring 21, ball 24 that leans on is connected with shift ring 21 through leaning on pole 23, the ball 24 that leans on keeps away from the one end of leaning on pole 23 and supports with filter plate 14 and lean on.
In order to improve the vibration effect, a plurality of protrusions 25 are arranged on the screen plate 14, the protrusions 25 are uniformly arranged, and one end, far away from the abutting rod 23, of the abutting ball 24 abuts against the protrusions 25.
In order to realize the sealing of the sealing plate 13, the driven unit is arranged between the cross rod 18 and the sealing plate 13, the driven unit comprises a moving plate 26, a sealing rod 27, two limiting rods 28, a second spring 29, a wire coil 30 and a driving unit, the wire coil 30 is sleeved on the connecting rod 16, the wire coil 30 is in key connection with the connecting rod 16, the moving plate 26 is sleeved on the connecting rod 16, the moving plate 26 is in sliding connection with the connecting rod 16, the moving plate 26 is located between the wire coil 30 and the sealing plate 13, the limiting rods 28 are provided with two limiting rods 28 respectively arranged at two sides of the connecting rod 16, one end of each limiting rod 28 is connected with the sealing plate 13, the other end of each limiting rod 28 penetrates through the moving plate 26, the limiting rods 28 are in sliding connection with the sealing plate 26, the sealing rods 27 are provided with a plurality of moving plates, the sealing rods 27 are uniformly arranged on the moving plate 26, and the sealing rods 27 are located between the limiting rods 28 and the connecting rod 16, the sealing plate 13 is provided with a plurality of sealing holes, each sealing hole is uniformly arranged, one end, far away from the moving plate 26, of the sealing rod 27 extends into the sealing hole, the sealing rod 27 slides and is in sealing connection with the sealing hole, the second spring 29 is arranged between the moving plate 26 and the wire coil 30, the second spring 29 is sleeved on the connecting rod 16, one end of the second spring 29 is connected with the moving plate 26, and the other end of the second spring 29 is connected with the end face of the wire coil 30.
In order to realize the movement of the moving plate 26, the number of the driving units is two, the two driving units are respectively arranged at one end of the two limiting rods 28 far away from the moving plate 26, the driving units comprise a pulling rope 31 and a fixed pulley 32, the fixed pulley 32 is arranged at one end of the limiting rods 28 far away from the moving plate 26, the pulling rope 31 is arranged between the moving plate 26 and the wire coil 30, one end of the pulling rope 31 is connected with the moving plate 26 by bypassing the fixed pulley 32, and the other end of the pulling rope 31 is arranged on the wire coil 30 by bypassing.
Here, the connecting pipe 11 rotates, through the friction between the filter screen plate 14 and the connecting pipe 11, the rotation of the filter screen plate 14 is realized, the rotation of the filter screen plate 14 drives the connecting rod 16 to rotate, the connecting rod 16 drives the wire coil 30 to rotate, so that the pulling rope 31 is wound on the wire coil 30, at this time, the pulling rope 31 drives the moving plate 26 to move towards the direction of the filter screen plate 14, the moving plate 26 moves to drive the sealing rod 27 to move, so that the sealing rod 27 is separated from the sealing hole, at this time, the second spring 29 is in a compressed state, when the connecting cylinder 5 stops rotating, the restoring force of the second spring 29 can realize the restoring of the moving plate 26, at this time, the main body located in the connecting pipe 11 flows into the sealing hole through the sealing hole, then the filtering of the main body is realized through the filter screen plate 14, at this time, under the action of the centrifugal force, so that most of the impurities inside the main body are thrown off the filter cartridge 6, and there is no much impurities in the main body entering the connection pipe 11 through the sealing hole, thereby improving the filtering efficiency of the main body.
Here, since the moving plate 26 is stopped by the stopper rod 28, the sealing rod 27 is always positioned right below the sealing hole.
Here connecting rod 16 rotates, realize the rotation to horizontal pole 18 simultaneously, horizontal pole 18 drive stopper 20 rotates, centrifugal force that produces when simultaneously rotating through horizontal pole 18 for the movable block moves towards stopper 20's direction, stopper 20 drive supports and leans on pole 23 to remove, supports and leans on pole 23 drive to lean on ball 24 to remove, through the collision that leans on ball 24 and arch 25 to produce, make the vibrations to filter plate 14, thereby prevent filter plate 14's jam, promote the filter effect, at this moment first spring 22 is in tensile state.
Realize spacing to closing plate 13 here through ripples pearl screw 15, prevent closing plate 13's removal, be convenient for simultaneously realize the dismantlement to closing plate 13 to make the auxiliary assembly shift out in can following connecting pipe 11, thereby be convenient for realize the cleanness to the auxiliary assembly, reduce the clean degree of difficulty, reduce people's intensity of labour, realize the linkage to a plurality of mechanisms through same driving source here, improved the practicality of using.
The drive arrangement who is located inside drive box 4 here not only can realize the rotation to bull stick 9, can also realize the lift to bull stick 9 simultaneously, here when the main part is filtered to needs, at first realize the removal to bull stick 9 through the drive arrangement of drive box 4 inside, bull stick 9 drive apron 7 removes towards the direction of diaphragm 2, apron 7 drive locating lever 8 removes, make locating lever 8 and connecting cylinder 5 separation, at this moment can pour the main part into to cartridge filter 6 in, realize filtering the main part through cartridge filter 6, at this moment the main part after filtering will flow into in collecting box 1 through the intercommunicating pore that is located on connecting pipe 11 between cartridge filter 6 and the connecting cylinder 5.
Here for improving the filter effect, only need to operate drive arrangement, make bull stick 9 remove towards the direction of connecting cylinder 5, make apron 7 remove to initial position, present locating lever 8 is located the constant head tank, realize spacing to apron 7 through locating lever 8, at this moment realize the rotation to bull stick 9 through drive arrangement, bull stick 9 drive apron 7 rotates, apron 7 drive locating lever 8 rotates, locating lever 8 drive connecting cylinder 5 rotates, locating lever 8 here is along the axis symmetry setting of connecting cylinder 5, make apron 7 can be more stable when rotating through locating lever 8 drive connecting cylinder 5, here rotation through connecting cylinder 5, make the inside main part of connecting cylinder 5 produce centrifugal force, thereby make better filtration through filter cartridge 6 of main part, improve filtration efficiency.
Simultaneously the connecting cylinder 5 rotates drive connecting pipe 11 and rotates, here because the connecting pipe 11 is connected through bearing frame 10, so can be along with the rotation of connecting cylinder 5 and pivoted during connecting pipe 11 here, here realize the spacing to cartridge filter 6 through spacing ring 12, not only can make the cartridge filter 6 top better support with apron 7 and lean on, certain clearance remains throughout between the bottom of cartridge filter 6 simultaneously and the inner wall of connecting cylinder 5 bottom, thereby be convenient for the better intercommunicating pore that passes through on the connecting pipe 11 of main part after the filtration flows into in the collecting box 1.
Here, the connecting pipe 11 rotates, through the friction between the filter screen plate 14 and the connecting pipe 11, the rotation of the filter screen plate 14 is realized, the rotation of the filter screen plate 14 drives the connecting rod 16 to rotate, the connecting rod 16 drives the wire coil 30 to rotate, so that the pulling rope 31 is wound on the wire coil 30, at this time, the pulling rope 31 drives the moving plate 26 to move towards the direction of the filter screen plate 14, the moving plate 26 moves to drive the sealing rod 27 to move, so that the sealing rod 27 is separated from the sealing hole, at this time, the second spring 29 is in a compressed state, when the connecting cylinder 5 stops rotating, the restoring force of the second spring 29 can realize the restoring of the moving plate 26, at this time, the main body located in the connecting pipe 11 flows into the sealing hole through the sealing hole, then the filtering of the main body is realized through the filter screen plate 14, at this time, under the action of the centrifugal force, so that most of the impurities inside the main body are thrown off the filter cartridge 6, and there is no much impurities in the main body entering the connection pipe 11 through the sealing hole, thereby improving the filtering efficiency of the main body.
Here, since the moving plate 26 is stopped by the stopper rod 28, the sealing rod 27 is always positioned right below the sealing hole.
Here connecting rod 16 rotates, realize the rotation to horizontal pole 18 simultaneously, horizontal pole 18 drive stopper 20 rotates, centrifugal force that produces when simultaneously rotating through horizontal pole 18 for the movable block moves towards stopper 20's direction, stopper 20 drive supports and leans on pole 23 to remove, supports and leans on pole 23 drive to lean on ball 24 to remove, through the collision that leans on ball 24 and arch 25 to produce, make the vibrations to filter plate 14, thereby prevent filter plate 14's jam, promote the filter effect, at this moment first spring 22 is in tensile state.
Here the connecting ring 17 is intended to facilitate the movement of the connecting rod 16.
Realize spacing to closing plate 13 here through ripples pearl screw 15, prevent closing plate 13's removal, be convenient for simultaneously realize the dismantlement to closing plate 13 to make the auxiliary assembly shift out in can following connecting pipe 11, thereby be convenient for realize the cleanness to the auxiliary assembly, reduce the clean degree of difficulty, reduce people's intensity of labour, realize the linkage to a plurality of mechanisms through same driving source here, improved the practicality of using.
Compared with the prior art, the high-efficiency filter device for the dairy products realizes the rotation of the connecting cylinder 5 through the driving device in the driving box 4, thereby leading the main body in the connecting cylinder 5 to pass through the centrifugal force to realize the filtration of the main body, leading the main body to enter the collecting box 1 through the communicating holes on the communicating pipe, simultaneously leading the connecting cylinder 5 to rotate to drive the auxiliary component to operate, realizing the filtration of the main body in the filter cylinder 6 through the auxiliary component, leading the main body in the filter cylinder 6 to also flow into the collecting box 1 through the connecting pipe 11, improving the filtration efficiency, simultaneously realizing the vibration of the filter screen plate 14 through the vibration unit, preventing the filter screen plate 14 from being blocked, improving the filtration effect, and realizing the linkage of a plurality of mechanisms through the same driving source, thereby reducing the cleaning difficulty and the labor intensity of people, the practicability of use is improved.
In light of the foregoing description of the preferred embodiment of the present invention, many modifications and variations will be apparent to those skilled in the art without departing from the spirit and scope of the invention. The technical scope of the present invention is not limited to the content of the specification, and must be determined according to the scope of the claims.

Claims (6)

1. The efficient dairy product filtering device is characterized by comprising a collecting box (1), a transverse plate (2), a fixing rod (3), a driving box (4), a filtering mechanism and a connecting mechanism, wherein the collecting box (1) is horizontally arranged, the transverse plate (2) is horizontally arranged above the collecting box (1), the fixing rod (3) is arranged between the transverse plate (2) and the collecting box (1), the transverse plate (2) is connected with the collecting box (1) through the fixing rod (3), the driving box (4) is arranged on the transverse plate (2), the driving device is arranged in the driving box (4), and the filtering mechanism, the connecting mechanism and the sealing mechanism are all arranged between the driving box (4) and the collecting box (1);
the filter mechanism comprises a connecting cylinder (5), a filter cylinder (6) and a sealing assembly, the connecting cylinder (5) is vertically arranged between the driving box (4) and the collecting box (1), the filter cylinder (6) is vertically arranged in the connecting cylinder (5), the filter cylinder (6) is in sliding connection with the connecting cylinder (5), an opening is formed in the bottom end of the filter cylinder (6), and a connecting port is formed in the top end of the connecting cylinder (5);
the sealing assembly is arranged between the connecting cylinder (5) and the driving box (4), the sealing assembly comprises a cover plate (7), a positioning rod (8) and a rotating rod (9), the cover plate (7) is horizontally arranged above the connecting cylinder (5), the rotating rod (9) is arranged between the cover plate (7) and the driving box (4), one end of the rotating rod (9) is connected with the middle part of the cover plate (7), the other end of the rotating rod (9) extends into the driving box (4) to be connected with a driving device, the rotating rod (9) is coaxially arranged with the connecting cylinder (5), two cylindrical positioning grooves are arranged on the end surface of the top end of the connecting cylinder (5), the two positioning grooves are symmetrically arranged relative to the axis of the connecting cylinder (5), the positioning rod (8) is provided with two, the positioning rod (8) is arranged between the cover plate (7) and the connecting cylinder (5), one end of the positioning rod (8) is connected with the cover plate (7), the other end of the positioning rod (8) extends into the positioning groove, and the positioning rod (8) is connected with the positioning groove in a sliding mode;
the connecting mechanism is arranged on the collecting box (1), the connecting mechanism comprises a bearing seat (10), a connecting pipe (11), a limiting ring (12) and an auxiliary assembly, the bearing seat (10) is arranged on the collecting box (1), the connecting pipe (11) is vertically arranged between the connecting cylinder (5) and the bearing seat (10), the bottom end of the connecting pipe (11) is communicated with the collecting box (1) through the bearing seat (10), the connecting pipe (11) penetrates through the connecting cylinder (5) and is positioned in the filter cylinder (6), the connecting pipe (11) is connected with the connecting cylinder (5), the connecting pipe (11) is in sliding connection with the filter cylinder (6), the limiting ring (12) is sleeved on the connecting pipe (11), the limiting ring (12) is connected with the connecting ring (17), the limiting ring (12) is positioned between the connecting cylinder (5) and the filter cylinder (6), and the limiting ring (12) is abutted against the bottom end of the filter cylinder (6), one end of the connecting pipe (11) positioned on the filter cartridge (6) and the connecting cylinder (5) is provided with a communicating hole;
the auxiliary assembly is arranged in the filter box, is positioned in the connecting pipe (11) and is connected with the connecting pipe (11).
2. The dairy product high efficiency filter device according to claim 1, wherein the auxiliary assembly comprises a sealing plate (13), a screen plate (14), bead screws (15), a connecting rod (16), a connecting ring (17), a vibration unit and a driven unit, the sealing plate (13) is horizontally arranged at the top end inside the connecting pipe (11), the screen plate (14) is arranged inside the connecting pipe (11), the screen plate (14) is positioned below the sealing plate (13), the screen plate (14) is connected with the connecting pipe (11) in a sliding manner, the bead screws (15) are two, the two bead screws (15) are both arranged on the inner wall of the connecting pipe (11), the two bead screws (15) are symmetrically arranged about the axis of the connecting pipe (11), an annular groove is arranged on the outer ring of the sealing plate (13), and the bead screws (15) are positioned in the groove, the utility model discloses a filter screen plate, including sealing plate (13), go-between (17), connecting rod (16) and filter screen plate (14), the one end and the filter screen plate (14) of connecting rod (16) are connected, the other end of connecting rod (16) passes sealing plate (13) and is connected with go-between (17), connecting rod (16) are connected with sealing plate (13).
3. The dairy product high-efficiency filtering device as recited in claim 2, wherein the vibration unit is disposed at one side of the connecting rod (16) and above the filter screen plate (14), the vibration unit comprises a cross rod (18), a positioning strip (19), a stop block (20), a moving ring (21), a first spring (22), a leaning rod (23) and a leaning ball (24), the stop block (20) is disposed at one side of the connecting rod (16), the cross rod (18) is horizontally disposed between the stop block (20) and the connecting rod (16), the stop block (20) is connected with the connecting rod (16) through the cross rod (18), the moving ring (21) is sleeved on the cross rod (18), the moving ring (21) is slidably connected with the cross rod (18), and the first spring (22) is disposed between the moving ring (21) and the connecting rod (16), first spring (22) cover is established on horizontal pole (18), the one end and the shift ring (21) of first spring (22) are connected, the other end and connecting rod (16) of first spring (22) are connected, location strip (19) level sets up on horizontal pole (18), shift ring (21) are through location strip (19) and horizontal pole (18) sliding connection, support ball (24) setting between shift ring (21) and filter plate (14), support rod (23) setting is supporting between ball (24) and shift ring (21), support ball (24) and be connected with shift ring (21) through supporting rod (23), support ball (24) and keep away from the one end and filter plate (14) that support rod (23) and support.
4. The dairy product high-efficiency filtering device as claimed in claim 3, wherein the screen plate (14) is provided with a plurality of protrusions (25), each protrusion (25) is uniformly arranged, and one end of the abutting ball (24) far away from the abutting rod (23) abuts against the protrusion (25).
5. The high-efficiency dairy product filtering device according to claim 3, wherein the driven unit is arranged between the cross rod (18) and the sealing plate (13), the driven unit comprises a moving plate (26), a sealing rod (27), a limiting rod (28), a second spring (29), a wire coil (30) and a driving unit, the wire coil (30) is sleeved on the connecting rod (16), the wire coil (30) is connected with the connecting rod (16) in a key mode, the moving plate (26) is sleeved on the connecting rod (16), the moving plate (26) is connected with the connecting rod (16) in a sliding mode, the moving plate (26) is located between the wire coil (30) and the sealing plate (13), the limiting rods (28) are provided in two numbers, the two limiting rods (28) are respectively arranged on two sides of the connecting rod (16), one end of each limiting rod (28) is connected with the sealing plate (13), and the other end of each limiting rod (28) penetrates through the moving plate (26), the utility model discloses a sealing device for wire coil, including limiting rod (28) and movable plate (26), sealing rod (27) have a plurality of roots, and each sealing rod (27) evenly sets up on movable plate (26), sealing rod (27) are located between limiting rod (28) and connecting rod (16), be equipped with a plurality of sealed holes on sealing plate (13), each sealed hole evenly sets up, the one end that movable plate (26) were kept away from in sealing rod (27) stretches into in the sealed hole, sealing rod (27) slide and sealing connection with sealed hole, second spring (29) set up between movable plate (26) and wire coil (30), second spring (29) cover is established on connecting rod (16), the one end and the movable plate (26) of second spring (29) are connected, the other end and the terminal surface of wire coil (30) of second spring (29) are connected.
6. The efficient dairy product filtering device according to claim 5, wherein the number of the driving units is two, the two driving units are respectively arranged at one ends of the two limiting rods (28) far away from the moving plate (26), the driving unit comprises a pulling rope (31) and a fixed pulley (32), the fixed pulley (32) is arranged at one end of the limiting rods (28) far away from the moving plate (26), the pulling rope (31) is arranged between the moving plate (26) and the wire coil (30), one end of the pulling rope (31) is connected with the moving plate (26) by passing through the fixed pulley (32), and the other end of the pulling rope (31) is arranged on the wire coil (30) by passing through the wire coil (32).
CN202110918896.1A 2021-08-11 2021-08-11 High-efficient filter equipment of dairy products Active CN113694614B (en)

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