CN213101032U - Filter for separating residual oil in cutting fluid - Google Patents

Filter for separating residual oil in cutting fluid Download PDF

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Publication number
CN213101032U
CN213101032U CN202022051262.4U CN202022051262U CN213101032U CN 213101032 U CN213101032 U CN 213101032U CN 202022051262 U CN202022051262 U CN 202022051262U CN 213101032 U CN213101032 U CN 213101032U
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China
Prior art keywords
cutting fluid
filter
pipe
liquid
placing
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CN202022051262.4U
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Chinese (zh)
Inventor
余振威
余青青
吕心钏
黄文俊
田忠强
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Anhui Gaubb Filtering Technology Co ltd
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Anhui Gaubb Filtering Technology Co ltd
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Abstract

The utility model provides a filter of residual oil in separation cutting fluid, including placing storehouse, closing plate, liquid dispersion mechanism, the mechanism of blowing, filter core and circulation mechanism, it will place the storehouse and separate into upper bin body and lower storehouse body to be equipped with the closing plate in the storehouse to place, the top intercommunication of placing the storehouse has the feed liquor pipe, the bottom intercommunication of placing the storehouse has the drain pipe. The utility model has the advantages that on one hand, the filter element can have better filtering effect on the cutting fluid, on the other hand, the filtering efficiency of the cutting fluid can be improved, and the using effect is better; still be equipped with the mechanism of blowing on the closing plate, on the one hand when carrying out filtration treatment to the cutting fluid, can accelerate the cutting fluid to pass through the filter core, further improve filtration efficiency, on the other hand is handling the back that finishes to the cutting fluid, carries out drying process to filter core and closing plate for the filter core is better to the filter effect of cutting fluid next time, and the life of filter core increases.

Description

Filter for separating residual oil in cutting fluid
Technical Field
The utility model relates to a filter technical field especially relates to a filter of residual oil in separation cutting fluid.
Background
The filter is a filter that filters impurities or gas through filter paper. Generally referred to as an automobile filter, is an accessory of an engine. The filter is divided into an oil filter, a fuel filter, an air conditioner filter and the like according to different filtering functions. The engine has three filters of air, engine oil and fuel oil, generally called three filters, and an air-conditioning filter, commonly called four filters. Respectively takes charge of the filtration of a lubricating system, a medium in a combustion system, an engine air inlet system and a carriage air circulating system.
When the filter for separating residual oil in cutting fluid is used, the cutting fluid is difficult to uniformly disperse and passes through the filter element in the filter, on one hand, the filter element part which does not pass through the cutting fluid is easy to cause resource waste, on the other hand, the filtering efficiency is low, and the using effect is not good.
SUMMERY OF THE UTILITY MODEL
The utility model provides a filter of residual oil in separation cutting fluid to prior art's not enough.
The utility model discloses a following technical means realizes solving above-mentioned technical problem:
a filter for separating residual oil in cutting fluid comprises a placing bin, a sealing plate, a liquid dispersing mechanism, a blowing mechanism, a filter element and a circulating mechanism, wherein the placing bin is internally provided with the sealing plate to divide the placing bin into an upper bin body and a lower bin body;
the sealing plate is evenly provided with a plurality of liquid dispersion mechanisms communicated with the upper bin body and the lower bin body, the sealing plate is internally provided with a blowing mechanism, the inner part of the lower bin body is provided with a filter element for filtering residual oil in cutting fluid, and the outer side of the placing bin is provided with a circulating mechanism communicated with the upper bin body and the lower bin body.
Preferably, liquid dispersion mechanism is including leading to liquid pipe, solenoid electric valve and atomizer, it evenly sets up on the closing plate to lead to the liquid pipe, it is equipped with solenoid electric valve in the liquid pipe to lead to, and is a plurality of solenoid electric valve synchro control, the bottom of leading to the liquid pipe is equipped with the atomizer.
Preferably, the blowing mechanism comprises a fan, an air outlet pipe and a ventilation pipe, the fan is fixed on the outer side wall of the storage bin through bolts, the ventilation pipe is communicated with the fan and arranged in the sealing plate, the bottom of the ventilation pipe is uniformly communicated with the air outlet pipes, and the bottom of the air outlet pipe extends out of the sealing plate.
Preferably, the circulation mechanism comprises a liquid pump, a fixing rod, a communicating pipe and a one-way control valve, the liquid pump is fixed on the outer wall of the placing bin through the fixing rod, the liquid pump is provided with the communicating pipe, and one end of the communicating pipe is arranged on the liquid pump.
Preferably, the joint of the two ends of the filter element and the placing bin is provided with a sealing gasket, and the inner wall of the placing bin is provided with a groove for inserting the filter element.
Preferably, the bottom of filter core is equipped with the stop gear who restricts the filter core position, stop gear includes support column and conflict net, the welding of support column bottom is on placing the storehouse bottom plate, the top of support column is fixed with the conflict net, conflict net bottom conflict filter core.
A preparation method of a filter for separating residual oil in cutting fluid comprises the following steps:
s1, filling the full cutting fluid bin: adding cutting fluid to be filtered from a fluid inlet pipe until the upper bin body in the placing bin is filled with the cutting fluid;
s2, dispersion of cutting fluid: cutting fluid is uniformly sprayed onto the filter element through a liquid dispersion mechanism arranged on the sealing plate, and after the cutting fluid is sprayed onto the filter element, the liquid dispersion mechanism stops conveying the cutting fluid;
s3, accelerated filtration of cutting fluid: blowing air through the air blowing mechanism 40, and enabling the cutting fluid between the sealing plate and the filter element to quickly pass through the filter element, so that the cutting fluid is efficiently filtered by the filter element;
s4, discharging the cutting fluid: the cutting fluid filtered by the filter element is discharged from a liquid outlet pipe communicated with the bottom of the placing bin.
Preferably, when the liquid dispersion mechanism stops conveying the cutting fluid, the upper bin body in the placing bin is filled with the cutting fluid to be filtered again.
The utility model has the advantages that: the cutting fluid to be filtered is uniformly dispersed onto the filter element through the liquid dispersing mechanism, so that the filter element has a better filtering effect on the cutting fluid on one hand, and the filtering efficiency of the cutting fluid can be improved on the other hand, and the using effect is better; still be equipped with the mechanism of blowing on the closing plate, on the one hand when carrying out filtration treatment to the cutting fluid, can accelerate the cutting fluid to pass through the filter core, further improve filtration efficiency, on the other hand is handling the back that finishes to the cutting fluid, carries out drying process to filter core and closing plate for the filter core is better to the filter effect of cutting fluid next time, and the life of filter core increases.
Drawings
FIG. 1 is a schematic structural view of a filter for separating residual oil from a cutting fluid according to the present invention;
FIG. 2 is a schematic structural view of the liquid dispersing mechanism of the present invention;
fig. 3 is a schematic structural view of the blowing mechanism of the present invention;
FIG. 4 is a schematic structural view of the circulation mechanism of the present invention;
fig. 5 is a schematic structural view of the filter element of the present invention;
fig. 6 is a schematic structural diagram of the limiting mechanism of the present invention.
Reference numbers in the figures: 10. the device comprises a placing bin, 11, an upper bin body, 12, a lower bin body, 13, a liquid inlet pipe, 14, a liquid outlet pipe, 20, a sealing plate, 30, a liquid dispersing mechanism, 31, a liquid through pipe, 32, an electromagnetic control valve, 33, an atomizing nozzle, 40, a blowing mechanism, 41, a fan, 42, a wind outlet pipe, 43, a ventilating pipe, 50, a filter element, 51, a sealing gasket, 60, a circulating mechanism, 61, a liquid pumping pump, 62, a fixing rod, 63, a communicating pipe, 64, a one-way control valve, 70, a limiting mechanism, 71, a supporting column, 72 and a touch net.
Detailed Description
In order to make the objects, technical solutions and advantages of the embodiments of the present invention clearer, the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are some, but not all, embodiments of the present invention. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative efforts belong to the protection scope of the present invention.
Examples
As shown in fig. 1, the filter for separating residual oil from cutting fluid in this embodiment includes a placing bin 10, a sealing plate 20, a fluid dispersing mechanism 30, a blowing mechanism 40, a filter element 50, and a circulating mechanism 60, where the placing bin 10 is provided with the sealing plate 20 to separate the placing bin 10 into an upper bin body 11 and a lower bin body 12, the top of the placing bin 10 is communicated with a fluid inlet pipe 13, and the bottom of the placing bin 10 is communicated with a fluid outlet pipe 14;
the sealing plate 20 is uniformly provided with a plurality of liquid dispersion mechanisms 30 which are communicated with the upper bin body 11 and the lower bin body 12, the sealing plate 20 is internally provided with a blowing mechanism 40, the lower bin body 12 is internally provided with a filter element 50 for filtering residual oil in cutting fluid, and the outer side of the placing bin 10 is provided with a circulating mechanism 60 which is communicated with the upper bin body 11 and the lower bin body 12.
By the liquid dispersing mechanism 30, the cutting fluid to be filtered is uniformly dispersed on the filter element 50, so that the filter element 50 has a better filtering effect on the cutting fluid, the filtering efficiency of the cutting fluid can be improved, and the using effect is better; still be equipped with on closing plate 20 and blow off mechanism 40, on the one hand when carrying out filtration treatment to the cutting fluid, can accelerate the cutting fluid to pass through filter core 50, further improve filtration efficiency, on the other hand is handling the back to the cutting fluid and is finishing, carries out drying process to filter core 50 and closing plate 20 for filter core 50 is better to the filter effect of cutting fluid next time, and the life of filter core 50 increases.
As shown in fig. 2, the liquid distribution mechanism 30 includes a liquid flowing pipe 31, an electromagnetic control valve 32, and an atomizer 33, the liquid flowing pipe 31 is uniformly disposed on the sealing plate 20, the electromagnetic control valve 32 is disposed in the liquid flowing pipe 31, the electromagnetic control valves 32 are synchronously controlled, and the atomizer 33 is disposed at the bottom of the liquid flowing pipe 31.
The electromagnetic control valve 23 operates synchronously, so that the cutting fluid to be treated is controlled to pass through the liquid passing pipe 31, and the atomizing nozzle 33 arranged at the bottom of the liquid passing pipe 31 can enable the cutting fluid to be sprayed out and then uniformly cover the filter element 50, and the filtering efficiency of the filter element 50 for the cutting fluid is improved.
As shown in fig. 3, the blowing mechanism 40 includes a blower 41, an air outlet pipe 42 and a ventilation pipe 43, the blower 41 is bolted to the outer side wall of the placing bin 10, the blower 41 is communicated with the ventilation pipe 43, the ventilation pipe 43 is arranged in the sealing plate 20, the bottom of the ventilation pipe 43 is uniformly communicated with a plurality of air outlet pipes 42, and the bottoms of the air outlet pipes 42 extend out of the sealing plate 20.
The fan 41 works, the generated wind is conveyed through the vent pipe 43, is finally discharged from the wind outlet pipe 42 communicated with the bottom of the vent pipe 42 and blows towards the filter element 50, on one hand, when the cutting fluid is subjected to filtering treatment, the cutting fluid can be accelerated to pass through the filter element 50, the filtering efficiency is further improved, and on the other hand, after the cutting fluid is treated, the filter element 50 and the sealing plate 20 are subjected to drying treatment.
As shown in fig. 4, the circulation mechanism 60 includes a liquid pump 61, a fixing rod 62, a communication pipe 63 and a one-way control valve 64, the liquid pump 61 is fixed on the outer wall of the storage bin 10 by the fixing rod 62, the liquid pump 61 is provided with the communication pipe 63, and one end of the communication pipe 63 is provided.
After the filter element 50 is used for a period of time, a user can take out the filtered cutting fluid to detect whether the cutting fluid reaches the standard or not, the filter element is continuously used under the condition of reaching the standard, the filter element is replaced firstly under the condition of not reaching the standard, the cutting fluid stored in the lower bin body 12 is conveyed into the upper bin body 11 again through the circulating mechanism 60, and the filtering treatment is carried out again, so that the using effect is better;
the liquid pump 61 works to convey the cutting liquid in the lower bin body 12 to the upper bin body 11 through the communicating pipe 63, and then the circulation of the liquid can be completed.
As shown in fig. 5, a sealing gasket 51 is disposed at the connection between the two ends of the filter element 50 and the placing bin 10, and a groove for inserting the filter element 50 is disposed on the inner wall of the placing bin 10.
Through the arrangement of the sealing gasket 51, the sealing effect of the connection between the filter element 50 and the placing bin 10 is good, and the phenomenon that the cutting fluid does not pass through the filter element can not be generated.
As shown in fig. 6, the bottom of the filter element 50 is provided with a limiting mechanism 70 for limiting the position of the filter element 50, the limiting mechanism 70 includes a supporting column 71 and a touch screen 72, the bottom end of the supporting column 71 is welded on the bottom plate of the placing bin 10, the touch screen 72 is fixed at the top of the supporting column 71, and the bottom of the touch screen 72 abuts against the filter element 50.
Through the setting of support column 71 and conflict net 72, can assist the position of restriction filter core 50, when filter core 50 received decurrent impact force, conflict net 72 protects it, avoids filter core 50 to produce the damage for filter core 50's result of use is better.
A filtering method of a filter for separating residual oil in cutting fluid comprises the following steps:
s1, filling the full cutting fluid bin: adding cutting fluid to be filtered from a fluid inlet pipe 13 until the upper bin body 11 in the placing bin 10 is filled with the cutting fluid;
s2, dispersion of cutting fluid: cutting fluid is uniformly sprayed onto the filter element 50 through the liquid dispersion mechanism 30 arranged on the sealing plate 20, and after the cutting fluid is sprayed onto the filter element 50, the liquid dispersion mechanism 30 stops conveying the cutting fluid;
s3, accelerated filtration of cutting fluid: blowing air through the air blowing mechanism 40, and enabling the cutting fluid between the sealing plate 20 and the filter element 50 to rapidly pass through the filter element 50, so that the cutting fluid is efficiently filtered by the filter element;
s4, discharging the cutting fluid: the cutting fluid filtered by the filter element 50 is discharged from the liquid outlet pipe 14 communicated with the bottom of the placing bin 10.
When the liquid dispersion mechanism 30 stops conveying the cutting fluid, the upper bin body 11 in the placing bin 10 is filled with the cutting fluid to be filtered again.
It is noted that, in this document, relational terms such as first and second, and the like, if any, are used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Also, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus. Without further limitation, an element defined by the phrase "comprising an … …" does not exclude the presence of other identical elements in a process, method, article, or apparatus that comprises the element.
The above embodiments are only used to illustrate the technical solution of the present invention, and not to limit it; although the present invention has been described in detail with reference to the foregoing embodiments, it should be understood by those skilled in the art that: the technical solutions described in the foregoing embodiments may still be modified, or some technical features may be equivalently replaced; such modifications and substitutions do not depart from the spirit and scope of the present invention in its corresponding aspects.

Claims (6)

1. A filter for separating residual oil in cutting fluid is characterized in that: the device comprises a placing bin (10), a sealing plate (20), a liquid dispersing mechanism (30), a blowing mechanism (40), a filter element (50) and a circulating mechanism (60), wherein the placing bin (10) is internally provided with the sealing plate (20) to divide the placing bin (10) into an upper bin body (11) and a lower bin body (12), the top of the placing bin (10) is communicated with a liquid inlet pipe (13), and the bottom of the placing bin (10) is communicated with a liquid outlet pipe (14);
the sealing plate (20) is uniformly provided with a plurality of liquid dispersion mechanisms (30) communicated with the upper bin body (11) and the lower bin body (12), the sealing plate (20) is internally provided with a blowing mechanism (40), the lower bin body (12) is internally provided with a filter element (50) for filtering residual oil in cutting fluid, and the outer side of the placing bin (10) is provided with a circulating mechanism (60) communicated with the upper bin body (11) and the lower bin body (12).
2. The filter for separating residual oil from cutting fluid according to claim 1, wherein: liquid dispersion mechanism (30) are including leading to liquid pipe (31), solenoid electric valve (32) and atomizer (33), it evenly sets up on closing plate (20) to lead to liquid pipe (31), it is equipped with solenoid electric valve (32) in leading to liquid pipe (31), a plurality of solenoid electric valve (32) synchro control, the bottom of leading to liquid pipe (31) is equipped with atomizer (33).
3. A filter for separating residual oil from cutting fluid according to claim 1 or 2, wherein: blow mechanism (40) and include fan (41), play tuber pipe (42) and ventilation pipe (43), fan (41) bolt fastening is on placing storehouse (10) lateral wall, the intercommunication has ventilation pipe (43) on fan (41), ventilation pipe (43) set up in sealing plate (20), the even intercommunication in bottom of ventilation pipe (43) has a plurality of play tuber pipes (42), it stretches out sealing plate (20) to go out tuber pipe (42) bottom.
4. The filter for separating residual oil from cutting fluid according to claim 1, wherein: the circulating mechanism (60) comprises a liquid pump (61), a fixing rod (62), a communicating pipe (63) and a one-way control valve (64), the liquid pump (61) is fixed on the outer wall of the placing bin (10) through the fixing rod (62), the communicating pipe (63) is arranged on the liquid pump (61), and one end of the communicating pipe (63) is arranged.
5. A filter for separating residual oil from cutting fluid according to claim 2 or 4, wherein: the connection part of the two ends of the filter element (50) and the placing bin (10) is provided with a sealing gasket (51), and the inner wall of the placing bin (10) is provided with a groove for inserting the filter element (50).
6. The filter for separating residual oil from cutting fluid according to claim 5, wherein: the bottom of filter core (50) is equipped with stop gear (70) of restriction filter core (50) position, stop gear (70) are including support column (71) and conflict net (72), support column (71) bottom welding is on placing storehouse (10) bottom plate, the top of support column (71) is fixed with to touch net (72), touch net (72) bottom conflict filter core (50).
CN202022051262.4U 2020-09-18 2020-09-18 Filter for separating residual oil in cutting fluid Active CN213101032U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022051262.4U CN213101032U (en) 2020-09-18 2020-09-18 Filter for separating residual oil in cutting fluid

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022051262.4U CN213101032U (en) 2020-09-18 2020-09-18 Filter for separating residual oil in cutting fluid

Publications (1)

Publication Number Publication Date
CN213101032U true CN213101032U (en) 2021-05-04

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CN202022051262.4U Active CN213101032U (en) 2020-09-18 2020-09-18 Filter for separating residual oil in cutting fluid

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112044139A (en) * 2020-09-18 2020-12-08 安徽高博过滤科技有限公司 Filter for separating residual oil in cutting fluid and filtering method thereof

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112044139A (en) * 2020-09-18 2020-12-08 安徽高博过滤科技有限公司 Filter for separating residual oil in cutting fluid and filtering method thereof
CN112044139B (en) * 2020-09-18 2024-01-12 安徽高博过滤科技有限公司 Filter for separating residual oil in cutting fluid and filtering method thereof

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