CN214563155U - Dehydration of self-cleaning function in non-maintaining area squeezes device - Google Patents

Dehydration of self-cleaning function in non-maintaining area squeezes device Download PDF

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Publication number
CN214563155U
CN214563155U CN202120077257.2U CN202120077257U CN214563155U CN 214563155 U CN214563155 U CN 214563155U CN 202120077257 U CN202120077257 U CN 202120077257U CN 214563155 U CN214563155 U CN 214563155U
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rotating shaft
outer edge
threaded rod
conical block
helical blade
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CN202120077257.2U
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Chinese (zh)
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经玉亮
高平中
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Suzhou Olga Environmental Technology Co ltd
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Suzhou Olga Environmental Technology Co ltd
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Abstract

The utility model discloses a device is squeezed in dehydration of self-cleaning function in non-maintaining area, its characterized in that: the filter comprises a rack, a shell arranged on the rack, a driving mechanism, a rotating shaft, a filter cylinder, a conical block, a material receiving barrel and a material receiving tank, wherein the driving mechanism is connected with the left side of the rotating shaft; first helical blade is installed to the anticlockwise spiral on the outer fringe face of pivot, even the clockwise spiral is installed to the outer fringe face of axle second helical blade, first helical blade's right-hand member is close to second helical blade's left end sets up. The utility model provides the high solid-liquid separation quality of rubbish from cooking has reduced subsequent treatment cost.

Description

Dehydration of self-cleaning function in non-maintaining area squeezes device
Technical Field
The utility model relates to a kitchen garbage treatment facility especially relates to a device is squeezed in dehydration of self-cleaning function in non-maintaining area.
Background
Along with the improvement of living conditions of people, more and more people enter a restaurant to eat. The leftovers and leftovers in the restaurant contain a great deal of waste oil, so that the treatment of the oily wastewater in the restaurant is a great problem
In the prior art, an oil-water separator is generally used for oil-water separation, wherein solid-liquid separation is required before oil-water separation, and a filter screen is generally used for filtering. However, when solid-liquid separation is performed, only some oil and water in the kitchen waste can be separated, and more oil and water exist in the kitchen waste, so that drying is needed when the kitchen waste is subsequently treated (for example, the kitchen waste is used as feed), the taste is heavy, the environmental pollution is high, the energy consumption of subsequent drying is high, and the cost is high.
Disclosure of Invention
The utility model aims at providing a device is squeezed in dehydration of self-cleaning function in non-maintaining area through using this structure, can realize solid-liquid separation, presses the liquid in the solid dry as far as simultaneously, and subsequent processing of being convenient for, reduce cost is also environmental protection more.
In order to achieve the above purpose, the utility model adopts the technical scheme that: a maintenance-free dewatering squeezing device with a self-cleaning function comprises a rack, a shell, a driving mechanism, a rotating shaft, a filter cylinder, a conical block, a material receiving barrel and a liquid receiving tank, wherein the shell is arranged on the rack, the shell is of a hollow structure with an open top, a through hole is formed in the right side of the shell, the left side of the filter cylinder is connected with the shell, the through hole is communicated with the filter cylinder, the left side of the rotating shaft penetrates through the left side of the shell and is rotationally connected with the rack, the driving mechanism is connected with the left side of the rotating shaft, the right end of the rotating shaft penetrates through the through hole and is arranged in the middle of the filter cylinder, a connecting shaft is arranged on the right side of the rotating shaft, a sleeve is arranged at the left end of the connecting shaft, the right end of the rotating shaft is rotationally connected with the sleeve, the outer edge surface of the connecting shaft is flush with the outer edge surface of the rotating shaft, and the right end of the connecting shaft is connected with the rack through a threaded rod, the right end of the connecting shaft is arranged outside the right side of the filter cylinder, the right side of the threaded rod is connected with the rack, and the right end of the connecting shaft is fixedly connected with the left end of the threaded rod;
a first helical blade is spirally mounted on the outer edge surface of the rotating shaft in a counterclockwise direction, a second helical blade is spirally mounted on the outer edge surface of the connecting shaft in a clockwise direction, and the right end of the first helical blade is arranged close to the left end of the second helical blade;
the diameter of the right side of the conical block is larger than that of the left side of the conical block, the outer diameter of the left side of the conical block is smaller than the inner diameter of the filter cylinder, the outer diameter of the right side of the conical block is larger than that of the filter cylinder, a mounting hole is formed in the middle of the conical block, the left side of the mounting hole is sleeved on the outer edge surface of the right end of the connecting shaft, and the right side of the mounting hole is arranged outside the left side of the threaded rod; a nut is screwed on the threaded rod, a spring is sleeved on the threaded rod, the left side of the spring abuts against the right side face of the conical block, the right side of the spring abuts against the left side face of the nut, and the spring pushes the outer edge face of the conical block to abut against the inner wall of the right side of the filter cylinder;
the liquid receiving groove is arranged below the filter cylinder, and the material receiving barrel is arranged below the conical block.
In the above technical scheme, the driving mechanism includes a driving motor and a speed reducer, an output shaft of the driving motor is connected with the speed reducer, and an output shaft of the speed reducer is connected with the left end of the rotating shaft.
In the technical scheme, the left side surface of the conical block is in contact with the inner wall of the left side of the mounting hole, the right side of the conical block is provided with an annular bulge, and the annular bulge is sleeved outside the threaded rod; the outer diameter of the threaded rod is smaller than that of the connecting shaft, and the rotating shaft, the connecting shaft, the threaded rod and the filter cylinder are coaxially arranged.
In the above technical solution, the outer edge surfaces of the first helical blade and the second helical blade are disposed close to the inner wall of the filter cartridge.
In the technical scheme, a plurality of groups of grabbing rods are mounted on the outer edge surface of the nut, and the grabbing rods are perpendicular to the outer edge surface of the nut.
In the technical scheme, the filter cylinder is of a hollow structure with openings on the left side and the right side, and a plurality of groups of liquid leakage grooves are formed in the filter cylinder.
In the technical scheme, a first connecting hole is formed in the rotating shaft, a second connecting hole is formed in the connecting shaft, a third connecting hole is formed in the threaded rod, the right side of the first connecting hole is communicated with the left side of the second connecting hole, the right side of the second connecting hole is communicated with the left side of the third connecting hole, and the right end of the third connecting hole is connected with a water pipe; the outer edge surface of the rotating shaft is provided with a plurality of groups of first water outlet holes, the outer edge surface of the connecting shaft is provided with a plurality of groups of second water outlet holes, the first water outlet holes are communicated with the first connecting holes, and the second water outlet holes are communicated with the second connecting holes.
Because of the application of the technical scheme, compared with the prior art, the utility model has the following advantages:
1. the utility model discloses helical blade above the pivot is opposite with the helical blade spiral direction above the connecting shaft, like this when the pivot drives the material and moves to the right, can utilize two sets of helical blade of spiral direction to carry out certain extrusion to the material and squeeze futilely, extrude some moisture and the oil stain of inside, the setting of toper piece and spring simultaneously further gives the material and wants left resistance, make the material squeezed and squeeze futilely, extrude its inside water stain and oil stain as far as, make the material drier, and is more environmental-friendly, and the subsequent processing of being convenient for reduces subsequent processing cost;
2. the utility model discloses in through setting up the apopore, can lead to water like this, will strain a section of thick bamboo and clear up, realize self-cleaning function, reduce subsequent maintenance clearance, reduce blocking phenomenon's emergence.
Drawings
Fig. 1 is a schematic structural diagram of a first embodiment of the present invention;
FIG. 2 is a schematic perspective view of FIG. 1;
FIG. 3 is a schematic structural view of a protective cover according to an embodiment of the present invention after being opened;
fig. 4 is a schematic sectional structure view of fig. 3.
Wherein: 1. a frame; 2. a housing; 3. a rotating shaft; 4. a filter cartridge; 5. a conical block; 6. a receiving barrel; 7. a liquid receiving tank; 8. a through hole; 9. a connecting shaft; 10. a sleeve; 11. a threaded rod; 12. a first helical blade; 13. a second helical blade; 14. mounting holes; 15. a nut; 16. a spring; 17. a drive motor; 18. a speed reducer; 19. an annular projection; 20. a grab bar; 21. a first connection hole; 22. a second connection hole; 23. a third connection hole; 24. a first water outlet; 25. a second water outlet; 26. a protective cover; 27. an arc-shaped plate.
Detailed Description
The invention will be further described with reference to the following drawings and examples:
the first embodiment is as follows: referring to fig. 1 to 4, a maintenance-free dewatering squeezing device with a self-cleaning function comprises a frame 1, a housing 2 arranged on the frame, a driving mechanism, a rotating shaft 3, a filter cartridge 4, a conical block 5, a material receiving barrel 6 and a liquid receiving tank 7, wherein the housing is of a hollow structure with an open top, a through hole 8 is formed in the right side of the housing, the left side of the filter cartridge is connected with the housing, the through hole is communicated with the filter cartridge, the left side of the rotating shaft penetrates through the left side of the housing to be rotatably connected with the frame, the driving mechanism is connected with the left side of the rotating shaft, the right end of the rotating shaft penetrates through the through hole to be arranged in the middle of the filter cartridge, a connecting shaft 9 is arranged on the right side of the rotating shaft, a sleeve 10 is arranged at the left end of the connecting shaft, the right end of the rotating shaft is rotatably connected with the sleeve, and the outer edge surface of the connecting shaft is flush with the outer edge surface of the rotating shaft, the right end of the connecting shaft is connected with the rack through a threaded rod 11, the right end of the connecting shaft is arranged outside the right side of the filter cylinder, the right side of the threaded rod is connected with the rack, and the right end of the connecting shaft is fixedly connected with the left end of the threaded rod;
a first helical blade 12 is spirally installed on the outer edge surface of the rotating shaft in a counter-clockwise manner, a second helical blade 13 is spirally installed on the outer edge surface of the connecting shaft in a clockwise manner, and the right end of the first helical blade is arranged close to the left end of the second helical blade;
the diameter of the right side of the conical block is larger than that of the left side of the conical block, the outer diameter of the left side of the conical block is smaller than the inner diameter of the filter cylinder, the outer diameter of the right side of the conical block is larger than the inner diameter of the filter cylinder, a mounting hole 14 is formed in the middle of the conical block, the left side of the mounting hole is sleeved on the outer edge surface of the right end of the connecting shaft, and the right side of the mounting hole is arranged outside the left side of the threaded rod; a nut 15 is screwed on the threaded rod, a spring 16 is sleeved on the threaded rod, the left side of the spring abuts against the right side face of the conical block, the right side of the spring abuts against the left side face of the nut, and the spring pushes the outer edge face of the conical block to abut against the inner wall of the right side of the filter cylinder;
the liquid receiving groove is arranged below the filter cylinder, and the material receiving barrel is arranged below the conical block. Wherein, can be equipped with an arc 27 in the casing, the top surface of arc flushes the setting with the bottom inner wall of through-hole, and the left surface and the right flank of arc link to each other with the inner wall left side and the right side of casing, and leading flank and trailing flank link to each other with shells inner wall's front side and rear side, and the pivot setting is in the arc top, and first helical blade's outer fringe face is close to the top surface setting of arc.
In this embodiment, in actual use, after the kitchen waste enters the housing from the top of the housing, due to the rotation of the rotating shaft and the arrangement of the first helical blade, the first helical blade pushes the kitchen waste in the housing to move rightwards and moves into the filter cartridge through the through hole, after the kitchen waste and the oil-water mixture enter the filter cartridge, the oil-water mixture leaks out through the filter cartridge, when the kitchen waste moves rightwards and touches the second helical blade, because the position of the second helical blade is fixed and the helical direction of the second helical blade is opposite to that of the first helical blade, when the first helical blade pushes the kitchen waste to move rightwards, the second helical blade gives some resistance to the kitchen waste leftwards, and when the kitchen waste moves rightwards through the second helical blade, the kitchen waste is squeezed, Squeezing, dewater and squeeze futilely kitchen garbage, can dewater kitchen garbage and squeeze futilely like this as far as, when being in that rubbish removes to strain a section of thick bamboo rightmost side, because the setting of toper piece and spring, the spring promotes the right-hand member that the toper piece stopped up at straining a section of thick bamboo, the toper piece can be stopped up and is in rubbish like this, because first spiral blade can promote kitchen garbage to move right always, because the toper piece can give kitchen garbage thrust left, can be to kitchen garbage extrusion force like this, dewater and squeeze futilely kitchen garbage. When the pushing force is larger and the pushing force is larger, the conical block is pressed, namely the spring is pressed, so that the conical block moves rightwards, kitchen garbage after being dehydrated and squeezed can leak out from a gap between the filter cylinder and the conical block, and an oil-water mixture leaks out from the filter cylinder and is collected for subsequent oil-water separation. Therefore, when the dewatered and squeezed kitchen garbage is subjected to subsequent treatment, less waste water is generated, the environment is better, the subsequent drying speed is faster, and the cost is lower.
The driving mechanism comprises a driving motor 17 and a speed reducer 18, an output shaft of the driving motor is connected with the speed reducer, and an output shaft of the speed reducer is connected with the left end of the rotating shaft.
Referring to fig. 3 and 4, the left side surface of the conical block is in contact with the left inner wall of the mounting hole, and the right side of the conical block is provided with an annular protrusion 19 which is sleeved outside the threaded rod; the outer diameter of the threaded rod is smaller than that of the connecting shaft, and the rotating shaft, the connecting shaft, the threaded rod and the filter cylinder are coaxially arranged.
Through the bellied setting of annular, can directly overlap in the outside of threaded rod like this, give the space that the toper piece removed about, because the external diameter of even axle is greater than the external diameter of threaded rod, can prevent the contact of the outer wall of annular arch and mounting hole and threaded rod like this, prevent wearing and tearing moreover.
Wherein the outer edge surfaces of the first helical blade and the second helical blade are arranged close to the inner wall of the filter cylinder.
Referring to fig. 3 and 4, a plurality of sets of gripping bars 20 are mounted on the outer edge surface of the nut and are arranged perpendicular to the outer edge surface of the nut. Through the setting of grabbing the pole, operating personnel can grab and grab the pole, drives the nut and rotates on the threaded rod, can adjust the distance between nut and the connecting shaft like this, also be exactly the pressure of regulating spring to the toper piece, also be exactly the regulation to the dynamics of squeezing of rubbish from cooking.
The filter cylinder is of a hollow structure with openings on the left side and the right side, and a plurality of groups of liquid leakage grooves are formed in the filter cylinder.
Wherein the exterior of the cartridge and threaded rod is provided with a protective shield 26 to prevent liquid from spilling outside the device.
Referring to fig. 4, a first connecting hole 21 is formed in the rotating shaft, a second connecting hole 22 is formed in the connecting shaft, a third connecting hole 23 is formed in the threaded rod, the right side of the first connecting hole is communicated with the left side of the second connecting hole, the right side of the second connecting hole is communicated with the left side of the third connecting hole, and the right end of the third connecting hole is connected with a water pipe; the outer edge surface of the rotating shaft is provided with a plurality of groups of first water outlet holes 24, the outer edge surface of the connecting shaft is provided with a plurality of groups of second water outlet holes 25, the first water outlet holes are communicated with the first connecting holes, and the second water outlet holes are communicated with the second connecting holes.
Through three group's connecting holes to through the setting of apopore, if it says that strain a section of thick bamboo and block up, the apopore goes out water, can wash straining a section of thick bamboo like this, prevents the emergence of jam phenomenon, plays self-cleaning effect, can reduce the maintenance rate moreover, need not to maintain.

Claims (7)

1. The utility model provides a dewatering of self-cleaning function of non-maintaining area squeezes device which characterized in that: the filter drum comprises a frame, a shell, a driving mechanism, a rotating shaft, a filter drum, a conical block, a material receiving barrel and a liquid receiving tank, wherein the shell is arranged on the frame, the shell is of a hollow structure with an opening at the top, a through hole is formed in the right side of the shell, the left side of the filter drum is connected with the shell, the through hole is communicated with the filter drum, the left side of the rotating shaft penetrates through the left side of the shell and is rotatably connected with the frame, the driving mechanism is connected with the left side of the rotating shaft, the right end of the rotating shaft penetrates through the through hole and is arranged in the middle of the filter drum, a connecting shaft is arranged on the right side of the rotating shaft, a sleeve is arranged at the left end of the connecting shaft, the right end of the rotating shaft is rotatably connected with the sleeve, the outer edge surface of the connecting shaft is flush with the outer edge surface of the rotating shaft, the right end of the connecting shaft is connected with the frame through a threaded rod, and the right end of the connecting shaft is arranged outside the right side of the filter drum, the right side of the threaded rod is connected with the rack, and the right end of the connecting shaft is fixedly connected with the left end of the threaded rod;
a first helical blade is spirally mounted on the outer edge surface of the rotating shaft in a counterclockwise direction, a second helical blade is spirally mounted on the outer edge surface of the connecting shaft in a clockwise direction, and the right end of the first helical blade is arranged close to the left end of the second helical blade;
the diameter of the right side of the conical block is larger than that of the left side of the conical block, the outer diameter of the left side of the conical block is smaller than the inner diameter of the filter cylinder, the outer diameter of the right side of the conical block is larger than that of the filter cylinder, a mounting hole is formed in the middle of the conical block, the left side of the mounting hole is sleeved on the outer edge surface of the right end of the connecting shaft, and the right side of the mounting hole is arranged outside the left side of the threaded rod; a nut is screwed on the threaded rod, a spring is sleeved on the threaded rod, the left side of the spring abuts against the right side face of the conical block, the right side of the spring abuts against the left side face of the nut, and the spring pushes the outer edge face of the conical block to abut against the inner wall of the right side of the filter cylinder;
the liquid receiving groove is arranged below the filter cylinder, and the material receiving barrel is arranged below the conical block.
2. The maintenance-free dewatering press apparatus with a self-cleaning function according to claim 1, characterized in that: the driving mechanism comprises a driving motor and a speed reducer, an output shaft of the driving motor is connected with the speed reducer, and an output shaft of the speed reducer is connected with the left end of the rotating shaft.
3. The maintenance-free dewatering press apparatus with a self-cleaning function according to claim 1, characterized in that: the left side surface of the conical block is in contact with the inner wall of the left side of the mounting hole, an annular bulge is arranged on the right side of the conical block, and the annular bulge is sleeved outside the threaded rod; the outer diameter of the threaded rod is smaller than that of the connecting shaft, and the rotating shaft, the connecting shaft, the threaded rod and the filter cylinder are coaxially arranged.
4. The maintenance-free dewatering press apparatus with a self-cleaning function according to claim 1, characterized in that: the outer edge surfaces of the first helical blade and the second helical blade are arranged close to the inner wall of the filter cylinder.
5. The maintenance-free dewatering press apparatus with a self-cleaning function according to claim 1, characterized in that: the outer edge surface of the nut is provided with a plurality of groups of grabbing rods, and the grabbing rods are perpendicular to the outer edge surface of the nut.
6. The maintenance-free dewatering press apparatus with a self-cleaning function according to claim 1, characterized in that: the filter cylinder is of a hollow structure with openings on the left side and the right side, and a plurality of groups of liquid leakage grooves are formed in the filter cylinder.
7. The maintenance-free dewatering press apparatus with a self-cleaning function according to claim 1, characterized in that: a first connecting hole is formed in the rotating shaft, a second connecting hole is formed in the connecting shaft, a third connecting hole is formed in the threaded rod, the right side of the first connecting hole is communicated with the left side of the second connecting hole, the right side of the second connecting hole is communicated with the left side of the third connecting hole, and the right end of the third connecting hole is connected with a water pipe; the outer edge surface of the rotating shaft is provided with a plurality of groups of first water outlet holes, the outer edge surface of the connecting shaft is provided with a plurality of groups of second water outlet holes, the first water outlet holes are communicated with the first connecting holes, and the second water outlet holes are communicated with the second connecting holes.
CN202120077257.2U 2021-01-12 2021-01-12 Dehydration of self-cleaning function in non-maintaining area squeezes device Active CN214563155U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120077257.2U CN214563155U (en) 2021-01-12 2021-01-12 Dehydration of self-cleaning function in non-maintaining area squeezes device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120077257.2U CN214563155U (en) 2021-01-12 2021-01-12 Dehydration of self-cleaning function in non-maintaining area squeezes device

Publications (1)

Publication Number Publication Date
CN214563155U true CN214563155U (en) 2021-11-02

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ID=78368360

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Application Number Title Priority Date Filing Date
CN202120077257.2U Active CN214563155U (en) 2021-01-12 2021-01-12 Dehydration of self-cleaning function in non-maintaining area squeezes device

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CN (1) CN214563155U (en)

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