CN213912608U - Honey thick liquid production filter equipment - Google Patents

Honey thick liquid production filter equipment Download PDF

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Publication number
CN213912608U
CN213912608U CN202022921814.2U CN202022921814U CN213912608U CN 213912608 U CN213912608 U CN 213912608U CN 202022921814 U CN202022921814 U CN 202022921814U CN 213912608 U CN213912608 U CN 213912608U
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filter
box
filtering
raw materials
filter box
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陈明哲
李盛
刘健
朱浩
王艺萌
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Xijing University
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Xijing University
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Abstract

A honey slurry production filter device comprises a feeding and discharging mechanism, a filtering mechanism, a stirring mechanism, a heating mechanism and a gas injection mechanism; the raw materials are filtered through the first filter mesh and the second filter mesh in the filter mechanism, meshes on the surface of the second filter mesh are smaller than meshes of the first filter mesh, impurities in the raw materials can be filtered in a grading mode, the filter precision of the raw materials is improved, a plurality of groups of arc-shaped scraping plates are driven by a motor to rotate, the filtered impurities can be rapidly discharged, the raw materials are heated by the heating mechanism, the flowability of the raw materials can be improved, air is injected into the filter box through an air pump by the air injection mechanism, downward thrust is applied to the raw materials, and the efficiency of the raw materials passing through the filter meshes is further improved; the utility model has the advantages of rational in infrastructure, convenient operation, the good efficient and the practicality of filter effect is strong.

Description

Honey thick liquid production filter equipment
Technical Field
The utility model relates to a filtration equipment technical field specifically is a honey thick liquid production filter equipment.
Background
The filter is an indispensable device on a medium conveying pipeline and is usually arranged at the inlet end of other equipment such as a pressure reducing valve, a pressure relief valve, a constant water level valve, a squaring filter and the like. The filter is provided with a filter cylinder with a filter screen of a certain specification, the filter screen is used for blocking impurities, when the filter needs to be cleaned, the detachable filter cylinder is taken out, and the filter cylinder is re-installed after being cleaned, so that the filter is very convenient to use and maintain.
However, the existing filter device for producing the seasoning honey milk has the following defects in the using process:
1. impurity filter effect to in the honey raw materials is not good to greatly reduced the production quality to honey thick liquid, and inconvenient impurity discharge that will filter off in the filtering process uses unusual inconvenient.
2. The filtration efficiency of the honey raw material is slow, thereby greatly restricting the production yield of the honey slurry.
Disclosure of Invention
In order to solve the problems existing in the prior art, the utility model aims to provide a honey thick liquid production filter equipment can improve filtration purity and filter speed, and light discharge impurity in filtering process has both improved production quality, has also improved production output, has rational in infrastructure, convenient operation, filter effect are good, efficient and the practicality is strong advantage.
In order to achieve the above object, the utility model provides a following technical scheme:
a honey slurry production filter device comprises a feeding and discharging mechanism 1, a filter mechanism 2, a stirring mechanism 3, a heating mechanism 4 and a gas injection mechanism 5;
the feeding and discharging mechanism 1 comprises a filter box 101, a feeding valve 102 is arranged near the top of one side of the filter box 101, the outlet side of the feeding valve 102 is communicated with the inlet side of a flow equalizing pipe 103, the outlet side of the flow equalizing pipe 103 penetrates through the side wall of the filter box 101 and extends into the filter box 101, and a discharging valve 104 is arranged near the bottom of the other side of the filter box 101;
the filtering mechanism 2 comprises a first filtering mesh 201 and a second filtering mesh 202 which are arranged in the filtering tank 101 and below the flow equalizing pipe 103 in sequence from top to bottom, and the side walls of the filtering tank 101 at the two ends of the first filtering mesh 201 and the second filtering mesh 202 are respectively connected with a slag discharging valve 203;
the stirring mechanism 3 comprises a motor 301 arranged at the bottom of the filter tank 101, and the power output end of the motor 301 is connected with a plurality of groups of arc-shaped scrapers 302 through a rotating shaft;
the heating mechanism 4 comprises a temperature regulator 401 arranged on the outer wall of the filter box 101, and an insulated electric heating wire 402 and a temperature sensor 403 which are arranged on the inner wall of the box body of the filter box 101, wherein the temperature regulator 401, the insulated electric heating wire 402 and the temperature sensor 403 are electrically connected;
the gas injection mechanism 5 comprises a gas pump 501 arranged on the outer wall of the filter box 101, the gas outlet of the gas pump 501 is connected with the gas inlet of a gas filter 502, the gas outlet of the gas filter 502 penetrates through the top wall of the filter box 101 through a gas inlet pipeline and is communicated into the filter box 101, and one side, close to the bottom, of the filter box 101 is connected with a gas exhaust valve 503 through a gas exhaust pipeline.
The meshes of the second filter mesh sheet 202 are smaller than those of the surface of the first filter mesh sheet 201.
The arc-shaped scrapers 302 are in three groups and are respectively in contact connection with the tops of the first filter mesh sheet 201 and the second filter mesh sheet 202 and the inner bottom wall of the filter box 101.
The utility model discloses following beneficial effect has:
1. the utility model discloses the raw materials pass through flow equalizing pipe 103 and drip on filter screen 201 No. one, the raw materials filters the raw materials through filter screen 201 and No. two filter screen 202 respectively under the effect of dead weight, and No. two filter screen 202 surface meshes are less than filter screen 201 meshes, can carry out the classified filtration to the impurity in the raw materials, and then effectively promote the filter fineness of raw materials, the arc scraper blade 302 that drives the multiunit through the motor in step rotates, push the impurity that a filter screen 201 and No. two filter screen 202 filtered all around, open residue discharge valve 104, thereby can discharge the impurity of crossing off fast, it is more convenient to use.
2. The utility model discloses a temperature sensor 403 can monitor the temperature in rose box 101, and control insulating electric heating wire 402 through temperature regulator 401, heat the raw materials through insulating electric heating wire 402, can promote the mobility of raw materials, further promotion is to the filtration efficiency of raw materials, simultaneously through air pump 501 with the air injection into rose box 101 in, and purify the air of taking the pump through air cleaner 502, avoid the dust pollution raw materials in the air, blow the raw materials through high-pressure gas, exert decurrent thrust to the raw materials, further promotion raw materials passes through filter screen's efficiency.
To sum up, the utility model has the advantages of rational in infrastructure, convenient operation, the good efficient and the practicality of filter effect are strong.
Drawings
Fig. 1 is a schematic view of the overall structure of the present invention.
Fig. 2 is a schematic structural diagram of the arc scraper 302 of the present invention.
Fig. 3 is a schematic structural diagram of a first filter mesh 201 of the present invention.
Fig. 4 is a schematic structural view of a second filter mesh 202 according to the present invention.
In the figure: 1. a feeding and discharging mechanism; 101. a filter box; 102. a feed valve; 103. a flow equalizing pipe; 104. a discharge valve; 2. a filtering mechanism; 201. a first filter mesh sheet; 202. a second filter mesh; 203. a slag discharge valve; 3. a stirring mechanism; 301. a motor; 302. an arc-shaped scraper plate; 4. a heating mechanism; 401. a temperature regulator; 402. an insulated electric heating wire; 403. a temperature sensor; 5. a gas injection mechanism; 501. an air pump; 502. an air filter; 503. and (4) exhausting the gas.
Detailed Description
The technical solution of the present invention is described clearly and completely with reference to the accompanying drawings.
Referring to fig. 1, a honey slurry production filtering device comprises a feeding and discharging mechanism 1, a filtering mechanism 2, a stirring mechanism 3, a heating mechanism 4 and a gas injection mechanism 5.
The feeding and discharging mechanism 1 comprises a filter box 101, a feeding valve 102 is arranged on one side of the filter box 101 close to the top, the outlet side of the feeding valve 102 is communicated with the inlet side of a flow equalizing pipe 103, the outlet side of the flow equalizing pipe 103 penetrates through the side wall of the filter box 101 and extends into the filter box 101, and a discharging valve 104 is arranged on the other side of the filter box 101 close to the bottom.
The filtering mechanism 2 comprises a first filtering net piece 201 and a second filtering net piece 202 which are arranged in the filtering tank 101 and below the flow equalizing pipe 103 in sequence from top to bottom, and the side walls of the filtering tank 101 at the two ends of the first filtering net piece 201 and the second filtering net piece 202 are respectively connected with a slag discharging valve 203.
Referring to fig. 1 and 2, the stirring mechanism 3 includes a motor 301 disposed at the bottom of the filter tank 101, and a power output end of the motor 301 is connected with a plurality of sets of arc scrapers 302 through a rotating shaft.
Heating mechanism 4 is including setting up in the temperature regulator 401 of rose box 101 outer wall and setting up in insulating electric heating wire 402 and the temperature sensor 403 of rose box 101 box inner wall, the electricity links to each other between temperature regulator 401, insulating electric heating wire 402 and the temperature sensor 403, and control connecting circuit is conventional circuit.
The gas injection mechanism 5 comprises a gas pump 501 arranged on the outer wall of the filter box 101, the gas outlet of the gas pump 501 is connected with the gas inlet of a gas filter 502, the gas outlet of the gas filter 502 penetrates through the top wall of the filter box 101 through a gas inlet pipeline and is communicated into the filter box 101, and one side, close to the bottom, of the filter box 101 is connected with a gas exhaust valve 503 through a gas exhaust pipeline.
Referring to fig. 3 and 4, the mesh size of the second filter mesh sheet 202 is smaller than that of the surface of the first filter mesh sheet 201.
The arc-shaped scrapers 302 are in three groups and are respectively in contact connection with the tops of the first filter mesh sheet 201 and the second filter mesh sheet 202 and the inner bottom wall of the filter box 101.
The utility model discloses a theory of operation does:
when the device works, the feed valve 102 is opened, raw materials are injected into the filter tank 101 from the feed valve 102 and flow equalized through the flow equalizing pipe 103, so that the raw materials are uniformly injected into the filter tank 101 and drop on the first filter mesh 201 through the flow equalizing pipe 103, and are filtered through the first filter mesh 201 and the second filter mesh 202 under the action of the dead weight of the raw materials, meshes on the surfaces of the first filter mesh 201 and the second filter mesh 202 are sequentially reduced, impurities in the raw materials are filtered in a grading manner, and the filtering quality of the raw materials is improved; during filtering, the motor 301 drives the plurality of groups of arc-shaped scrapers 302 to rotate, impurities filtered by the first filter mesh 201 and the second filter mesh 202 are pushed to the periphery, the residue discharge valve 203 is opened, the filtered impurities are discharged, the temperature in the filter box 101 is monitored through the temperature sensor 403, the temperature regulator 401 controls the insulated electric heating wire 402 to heat the raw materials, the flowability of the raw materials is improved, and the filtering efficiency of the raw materials is further improved; air pump 501 injects the air into filter box 101 to purify the air through air cleaner 502, avoid the dust pollution raw materials in the air, blow the raw materials through high-pressure gas, exert decurrent thrust to the raw materials, further promote the efficiency that the raw materials passed through filter screen, unnecessary gaseous accessible blast pipe 503 in filter box 101 is discharged, and after the completion was filtered to the raw materials, accessible discharge valve 104 discharged the raw materials.
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 (3)

1. A honey pulp production filtering device comprises a feeding and discharging mechanism (1), a filtering mechanism (2), a stirring mechanism (3), a heating mechanism (4) and a gas injection mechanism (5); the method is characterized in that:
the feeding and discharging mechanism (1) comprises a filter box (101), a feeding valve (102) is arranged near the top of one side of the filter box (101), the outlet side of the feeding valve (102) is communicated with the inlet side of a flow equalizing pipe (103), the outlet side of the flow equalizing pipe (103) penetrates through the side wall of the filter box (101) and extends into the box body of the filter box (101), and a discharging valve (104) is arranged near the bottom of the other side of the filter box (101);
the filtering mechanism (2) comprises a first filtering net piece (201) and a second filtering net piece (202) which are arranged in the filtering box (101) from top to bottom below the flow equalizing pipe (103), and the side walls of the filtering box (101) at two ends of the first filtering net piece (201) and the second filtering net piece (202) are respectively connected with a slag discharging valve (203);
the stirring mechanism (3) comprises a motor (301) arranged at the bottom of the filter box (101), and the power output end of the motor (301) is connected with a plurality of groups of arc-shaped scrapers (302) through rotating shafts;
the heating mechanism (4) comprises a temperature regulator (401) arranged on the outer wall of the filtering box (101), and an insulated electric heating wire (402) and a temperature sensor (403) which are arranged in the wall of the filtering box (101), wherein the temperature regulator (401), the insulated electric heating wire (402) and the temperature sensor (403) are electrically connected;
the gas injection mechanism (5) comprises a gas pump (501) arranged on the outer wall of the filter box (101), the gas outlet of the gas pump (501) is connected with the gas inlet of the air filter (502), the gas outlet of the air filter (502) penetrates through the top wall of the filter box (101) through a gas inlet pipeline to be communicated into the box body of the filter box (101), and one side, close to the bottom, of the filter box (101) is connected with a gas exhaust valve (503) through a gas exhaust pipeline.
2. The honey pulp production filter device according to claim 1, characterized in that: the meshes of the second filter mesh (202) are smaller than those of the surface of the first filter mesh (201).
3. The honey pulp production filter device according to claim 1, characterized in that: the arc-shaped scrapers (302) are in three groups and are respectively in contact connection with the top of the first filter mesh (201), the top of the second filter mesh (202) and the inner bottom wall of the filter box (101).
CN202022921814.2U 2020-12-08 2020-12-08 Honey thick liquid production filter equipment Active CN213912608U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022921814.2U CN213912608U (en) 2020-12-08 2020-12-08 Honey thick liquid production filter equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022921814.2U CN213912608U (en) 2020-12-08 2020-12-08 Honey thick liquid production filter equipment

Publications (1)

Publication Number Publication Date
CN213912608U true CN213912608U (en) 2021-08-10

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CN202022921814.2U Active CN213912608U (en) 2020-12-08 2020-12-08 Honey thick liquid production filter equipment

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CN (1) CN213912608U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN116116095A (en) * 2022-05-27 2023-05-16 赵光威 Processing equipment and processing method for refined honey

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN116116095A (en) * 2022-05-27 2023-05-16 赵光威 Processing equipment and processing method for refined honey

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