CN203678107U - Oil online filter - Google Patents

Oil online filter Download PDF

Info

Publication number
CN203678107U
CN203678107U CN201320808550.7U CN201320808550U CN203678107U CN 203678107 U CN203678107 U CN 203678107U CN 201320808550 U CN201320808550 U CN 201320808550U CN 203678107 U CN203678107 U CN 203678107U
Authority
CN
China
Prior art keywords
oil
filter
cavity
plate
vacuum tank
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN201320808550.7U
Other languages
Chinese (zh)
Inventor
杨家纯
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.)
CHONGQING SHUNFANG MACHINERY MANUFACTURING Co Ltd
Original Assignee
CHONGQING SHUNFANG MACHINERY MANUFACTURING Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by CHONGQING SHUNFANG MACHINERY MANUFACTURING Co Ltd filed Critical CHONGQING SHUNFANG MACHINERY MANUFACTURING Co Ltd
Priority to CN201320808550.7U priority Critical patent/CN203678107U/en
Application granted granted Critical
Publication of CN203678107U publication Critical patent/CN203678107U/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

Links

Images

Abstract

The utility model discloses an oil online filter. The oil online filter comprises an oil heater, a vacuum separation device and filters, wherein the vacuum separation device comprises a vacuum tank, an atomizer and a reaction holder; the filters include a primary filter, a secondary filter and a fine filter; an oil inlet pump, the primary filter, the oil heater, the vacuum tank, an oil outlet pump, the secondary filter and the fine filter are connected in sequence; the oil heater comprises a group of heating pipes arranged in parallel; the heating pipes are connected with each other to form a heating channel in a snakelike structure; the atomizer comprises an oil inlet pipe, a distributor and nozzles; the distributor comprises an upper cavity plate and a lower cavity plate; the reaction holder comprises a support plate and three layers of reaction rings. The oil online filter has the beneficial effects that through vacuum vaporization of oil and filtration of the oil via the secondary filter and the fine filter, the filtration effect is better; after the oil is erupted, the contact area is enlarged and the vaporization effect is greatly improved.

Description

Fluid on-line filtration machine
Technical field
The utility model relates to a kind of oil filter, relates in particular to a kind of fluid on-line filtration machine.
Background technology
Because the device systems such as existing firepower, waterpower, nuclear force, combustion gas, cogeneration, chemical industry, papermaking, metallurgy happen occasionally seepage, poorly sealed, fluid for a long time in the phenomenon such as thermic load, open oil storage, airborne moisture, gas infiltrate in fluid, cause Water in oil, gas.
Therefore, often adopt oil filter to realize on-line filtration and purify, make that operating oil product is not yet deteriorated just obtains timely purified treatment, can deviate from fast and efficiently moisture, gas and impurity in oil.Make the oil product indices of operation meet national standard, guarantee that regulating system, the lubricating system of unit normally worked.
Fluid on-line filtration machine is an important part of oil filter, and in prior art, fluid on-line filtration machine comprises oil-feed pump, fluid heater, vacuum separation unit, goes out oil pump and filter.Fluid heater is body structure, and resistance heater is set in body structure, and fluid heating is uneven, and heating effect is poor; Vacuum separation unit comprises vacuum tank and is arranged on atomizer and the reaction frame in vacuum tank, the oil-out of oil-feed pump is connected with the oil-in of fluid heater, the oil-out of fluid heater is connected with the oil-in of the atomizer in vacuum tank, the oil-out of vacuum tank is connected with the oil-in that goes out oil pump, goes out the oil-out of oil pump and the oil-in of filter is connected.Atomizer mainly contains a rectangular box, in the bottom of rectangular box, multiple shower nozzles is set, and multiple shower nozzles are communicated with in rectangular box by flexible pipe respectively, and shower nozzle adopts the gondola water faucet used of having a bath; Reaction frame is mainly one to be horizontally set on the gripper shoe on cross section in vacuum tank, has the through hole of multiple vertical settings in gripper shoe.The fluid on-line filtration machine poor filtration effect of this structure, atomizing effect is also poor, moisture in the fluid after atomization, higher containing gas rate; And the fluid in vacuum tank and foam can not accurately be controlled.
Utility model content
For above shortcomings in prior art, the utility model provides a kind of homogeneous heating, can Precise Control of Oil liquid and foam, and atomizing effect is better, fast vaporizing, dehydration, degassing efficiency are higher, and the better fluid on-line filtration machine of filter effect.
In order to solve the problems of the technologies described above, the utility model has adopted following technical scheme:
Fluid on-line filtration machine, comprise oil-feed pump, fluid heater, vacuum separation unit, go out oil pump and filter, described vacuum separation unit comprises vacuum tank and is arranged on atomizer in vacuum tank and reaction frame, and the oil-out of described vacuum tank is connected with the oil-in that goes out oil pump; Also comprise for solenoid and by-pass flow valve;
Described filter comprises primary filter, secondary filter and fine filter; The filter core inwall of described primary filter, secondary filter and fine filter is provided with the disturbance ring of helical structure, and the filter core of described primary filter adopts single layer filter net, and the filter core of described secondary filter adopts three layer filtration net; The filter core of described fine filter adopts three layer filtration net, the cross section undulate ring-type of the screen pack of fine filter;
Described fluid heater comprises one group of several heating tube that be arranged in parallel, in every heating tube, resistance heater is set, and several heating tubes are connected to form the heat tunnel of serpentine configuration each other, and heat tunnel has an inlet and a liquid outlet;
The oil-out of described oil-feed pump is connected with the oil-in of primary filter, the oil-out of described primary filter is connected with the oil-in of fluid heater, described go out the oil-out of oil pump and the oil-in of secondary filter be connected, the oil-out of described secondary filter is connected with the oil-in of fine filter;
Described atomizer comprises oil inlet pipe, distributor and shower nozzle; Described distributor comprises the cavity plate and the cavity of resorption plate that are horizontally set on the interior cross section of vacuum tank, described cavity plate and cavity of resorption plate are the spherical crown panel that Radius is 0.5~0.6m, the periphery of cavity plate is connected with the peripheral sealing of cavity of resorption plate, and between cavity plate and cavity of resorption plate, form a cavity, the middle part of described cavity plate and cavity of resorption plate is and raises up; One end of described oil inlet pipe is connected to the end face middle part of cavity plate, and the other end of oil inlet pipe passes vacuum tank and is connected with the liquid outlet of fluid heater, and oil inlet pipe communicates with in cavity; On described cavity of resorption plate, be laid with multiple screwed holes; In each screwed hole on described cavity of resorption plate, a shower nozzle is all set; Described shower nozzle comprises the little conical pipe in the large bottom in top board, feed tube and top; Described top board is arranged on the top of conical pipe and forms a housing with conical pipe, and feed tube is arranged on the middle part of top board, and feed tube is communicated with in housing; External screw thread be set on the cylindrical of feed tube and screw in the screwed hole on cavity of resorption plate, between cavity of resorption plate and top board, seal gasket being set; Uniform several through holes on described conical pipe, between described through hole, at a distance of 8~12mm, the aperture of each through hole is 0.5~0.7mm;
Described reaction frame comprises that being horizontally set on the gripper shoe on cross section in vacuum tank encircles with three layers of reaction that are arranged in gripper shoe; Reaction ring on lower one deck with on last layer, react the setting of ring mutual dislocation; Uniform several through holes that vertically arrange in described gripper shoe, the aperture of through hole is 1.6~1.8mm, the distance in gripper shoe between adjacent through-holes is 4~4.5mm; The annulus that described reaction ring is surrounded by an iron plate and one end of iron plate folding arm forming that bends inwards forms, and the external diameter of described annulus is 26~28mm; Described reaction ring vertically arranges, and the endoporus of the reaction ring on lower one deck is communicated with the endoporus of reaction ring adjacent on last layer;
Described solenoid and the by-pass flow valve of supplying is arranged on oil inlet pipe, and forms parallel connection for solenoid and by-pass flow valve, and temperature sensor is also installed on described oil inlet pipe.
The beneficial effects of the utility model are: the utility model adopts the heat tunnel of serpentine configuration, when fluid flows through heat tunnel, heat more evenly, and heating effect is better; First fluid carry out vacuum vaporization again by primary filter, finally filters by secondary filter and fine filter, and filter effect is better; Because cavity plate and cavity of resorption plate are the spherical crown panel that Radius is 0.5~0.6m, make the pressure in each shower nozzle of cavity of resorption plate below identical, and shower nozzle adopts conical pipe to open several through hole I thereon, high-temperature oil liquid enters ejection in atomizer, at identical pressure, under identical oil temperature, first form vaporific by atomizer fluid, form membranaceously, mist of oil is noted in reaction ring and gripper shoe in the process falling, and makes its contact area in a vacuum expand as nearly a hundred times original again; Moisture contained in oil obtains fast vaporizing and is discharged by vacuum system under the condition on high heat, large surface, and vaporization effect improves greatly.
Accompanying drawing explanation
Fig. 1 is the structural representation of fluid on-line filtration machine;
Fig. 2 is the structural representation of the filter core of secondary filter
Fig. 3 is the structural representation of fluid heater;
Fig. 4 is the structural representation that shower nozzle and seal gasket coordinate;
Fig. 5 is the structural representation of reaction ring.
In accompanying drawing: 1-oil-feed pump; 2-fluid heater; 3-go out oil pump; 4-vacuum tank; 9-primary filter; 10-secondary filter; 11-essence is considered device; 12-filter core; 13-disturbance ring; 14-oil inlet pipe; 18-for solenoid; 19-by-pass flow valve; 20-heating tube; 21-resistance heater; 22-gripper shoe; 23-reaction ring; 24-through hole II; 25-annulus; 26-folding arm; 27-temperature sensor; 28-shower nozzle; 29-cavity plate; 30-cavity of resorption plate; 31-cavity; 32-top board; 33-feed tube; 34-conical pipe; 35-seal gasket; 36-through hole I.
The specific embodiment
Below in conjunction with the drawings and specific embodiments, the utility model is described in further detail.
As shown in Figure 1, fluid on-line filtration machine, comprise oil-feed pump 1, fluid heater 2, vacuum separation unit, go out oil pump 3, filter, for solenoid 18 and by-pass flow valve 19.Vacuum separation unit comprises vacuum tank 4 and is arranged on atomizer and the reaction frame in vacuum tank.
Filter comprises primary filter 9, secondary filter 10 and fine filter 11.Filter core 12 inwalls of primary filter 9, secondary filter 10 and fine filter 11 are provided with the disturbance ring 13 of helical structure, as shown in Figure 2, the fluid that makes to enter in filter forms helical flow, the filter core of primary filter 9 adopts single layer filter net, and the filter core of secondary filter 10 adopts three layer filtration net.The filter core of fine filter 11 adopts three layer filtration net, and the cross section undulate ring-type of the screen pack of fine filter 11, when fluid process fine filter 11, accurately filters fluid.
The structure of fluid heater as shown in Figure 3, fluid heater 2 comprises one group of several heating tube 20 that be arranged in parallel, the every interior resistance heater 21 that arranges of heating tube 20, several heating tubes 20 are connected to form the heat tunnel of serpentine configuration each other, and heat tunnel has an inlet and a liquid outlet.
The oil-out of oil-feed pump 1 is connected with the oil-in of primary filter 9, and the oil-out of primary filter 9 is connected with the oil-in of fluid heater 2, and the oil-out of vacuum tank 4 is connected with the oil-in that goes out oil pump 3; The oil-out that goes out oil pump 3 is connected with the oil-in of secondary filter 10, and the oil-out of secondary filter 10 is connected with the oil-in of fine filter 11.
Atomizer comprises oil inlet pipe 14, distributor and shower nozzle 28.Distributor comprises the cavity plate 29 and the cavity of resorption plate 30 that are horizontally set on the interior cross section of vacuum tank 4, cavity plate 29 and cavity of resorption plate 30 are the spherical crown panel that Radius is 0.5~0.6m, the periphery of cavity plate 29 is connected with the peripheral sealing of cavity of resorption plate 30, and between cavity plate 29 and cavity of resorption plate 30, form a cavity 31, the middle part of cavity plate 29 and cavity of resorption plate 30 is and raises up.One end of oil inlet pipe 14 is connected to the end face middle part of cavity plate 29, and the other end of oil inlet pipe 14 passes vacuum tank 4 and is connected with the liquid outlet of fluid heater 2, and oil inlet pipe 14 communicates with in cavity 31.On cavity of resorption plate 30, be laid with multiple screwed holes; One shower nozzle 28 is all set in the each screwed hole on cavity of resorption plate 30.As shown in Figure 4, shower nozzle 28 comprises top board 32, the little conical pipe 34 in the large bottom of feed tube 33 and top to the structure of shower nozzle.Top board 32 is arranged on the top of conical pipe 34 and forms a housing with conical pipe 34, and feed tube 33 is arranged on the middle part of top board 32, and feed tube 33 is communicated with in housing; External screw thread be set on the cylindrical of feed tube 33 and screw in the screwed hole on cavity of resorption plate 30, between cavity of resorption plate 30 and top board 32, seal gasket 35 being set.Uniform several through hole I 36 on conical pipe 34, between through hole I 36, at a distance of 8~12mm, the aperture of each through hole I 36 is 0.5~0.7mm.
Reaction frame comprises the gripper shoe 22 being horizontally set on the interior cross section of vacuum tank 4 and is arranged on three layers of reaction ring 23 in gripper shoe 22.Reaction ring on lower one deck with on last layer, react the setting of ring mutual dislocation.
Wherein, as shown in Figure 5, one end of reaction ring 23 annulus that surrounded by an iron plate 25 and iron plate folding arm 26 forming that bends inwards forms the structure of reaction ring, and the external diameter of annulus 25 is 26~28mm.Reaction ring 23 vertically arranges, and the endoporus of the reaction ring on lower one deck is communicated with the endoporus of reaction ring adjacent on last layer.The thickness of annulus 25 and folding arm 26 is 1~1.2mm.Thickness is that reaction that 1~1.2mm and external diameter are 26~28mm encircles that both quality was light, large with the contact area of mist of oil again.This reaction ring adopts the mode of directly placing to be arranged in gripper shoe 22, and the endoporus of the reaction ring on lower one deck is communicated with the endoporus of reaction ring adjacent on last layer, has both been conducive to moisture, gaseous exchange after mist of oil and mist of oil gasification, facilitates again installation.
Uniform several through hole II 24 that vertically arrange in gripper shoe 22, the aperture of through hole II 24 is 1.6~1.8mm, the distance in gripper shoe 22 between adjacent through-holes II 24 is 4~4.5mm.After tested, the arrangement of this through hole, had both met moisture, gaseous exchange after mist of oil and mist of oil gasification, had again enough support strengths.
Be arranged on oil inlet pipe 14 for solenoid 18 and by-pass flow valve 19, and form parallel connection for solenoid 18 and by-pass flow valve 19, temperature sensor 27 is also installed on oil inlet pipe 14.Fluid output in fluid heater, by controlling for solenoid 18, once break down for solenoid 18, can be controlled by manual adjustments by-pass flow valve 19.Temperature sensor 27 is for detection of the temperature of the fluid flowing through in heater, if the oil liquid temperature detecting is too high, can reduce the electric current of resistance heater 21; If the oil liquid temperature detecting is too low, can increase the electric current of resistance heater 21.
While using this fluid on-line filtration machine, first fluid heat by primary filter again, pretreated high temperature oil enters distributor by oil inlet pipe 14, because cavity plate 29 and cavity of resorption plate 30 are the spherical crown panel that Radius is 0.5~0.6m, make the pressure in each shower nozzles 28 of cavity of resorption plate 30 belows identical, first form vaporific by atomizer fluid, form again membranaceous, mist of oil is noted in reaction ring 23 and gripper shoe 22 in the process falling, and makes its contact area in a vacuum expand as nearly a hundred times original; Moisture contained in oil obtains fast vaporizing and is discharged by vacuum system under the condition on high heat, large surface, and vaporization effect improves greatly.Dehydration, degassed very competent, pumps into the fine particle impurity in filtering fluid in secondary filter and fine filter through going out oil pump 3 again through dehydration, fluid after degassed, and filter effect is better.
Finally explanation is, above embodiment is only unrestricted in order to the technical solution of the utility model to be described, although the utility model is had been described in detail with reference to preferred embodiment, those of ordinary skill in the art is to be understood that, can modify or be equal to replacement the technical solution of the utility model, and not departing from aim and the scope of technical solutions of the utility model, it all should be encompassed in the middle of claim scope of the present utility model.

Claims (1)

1. fluid on-line filtration machine, comprise oil-feed pump (1), fluid heater (2), vacuum separation unit, go out oil pump (3) and filter, described vacuum separation unit comprises vacuum tank (4) and is arranged on atomizer in vacuum tank and reaction frame, and the oil-out of described vacuum tank (4) is connected with the oil-in that goes out oil pump (3); It is characterized in that: also comprise for solenoid (18) and by-pass flow valve (19);
Described filter comprises primary filter (9), secondary filter (10) and fine filter (11); Filter core (12) inwall of described primary filter (9), secondary filter (10) and fine filter (11) is provided with the disturbance ring (13) of helical structure, the filter core of described primary filter (9) adopts single layer filter net, and the filter core of described secondary filter (10) adopts three layer filtration net; The filter core of described fine filter (11) adopts three layer filtration net, the cross section undulate ring-type of the screen pack of fine filter (11);
Described fluid heater (2) comprises one group of several heating tube (20) that be arranged in parallel, resistance heater (21) is set in every heating tube (20), several heating tubes (20) are connected to form the heat tunnel of serpentine configuration each other, and heat tunnel has an inlet and a liquid outlet;
The oil-out of described oil-feed pump (1) is connected with the oil-in of primary filter (9), the oil-out of described primary filter (9) is connected with the oil-in of fluid heater (2), described go out the oil-out of oil pump (3) be connected with the oil-in of secondary filter (10), the oil-out of described secondary filter (10) is connected with the oil-in of fine filter (11);
Described atomizer comprises oil inlet pipe (14), distributor and shower nozzle (28); Described distributor comprises the cavity plate (29) and the cavity of resorption plate (30) that are horizontally set on the interior cross section of vacuum tank (4), described cavity plate (29) and cavity of resorption plate (30) are the spherical crown panel that Radius is 0.5~0.6m, the periphery of cavity plate (29) is connected with the peripheral sealing of cavity of resorption plate (30), and between cavity plate (29) and cavity of resorption plate (30), form a cavity (31), the middle part of described cavity plate (29) and cavity of resorption plate (30) is and raises up; One end of described oil inlet pipe (14) is connected to the end face middle part of cavity plate (29), and the other end of oil inlet pipe (14) passes vacuum tank (4) and is connected with fluid heater (2) liquid outlet, and oil inlet pipe (14) communicates with in cavity (31); On described cavity of resorption plate (30), be laid with multiple screwed holes; One shower nozzle (28) is all set in the each screwed hole on described cavity of resorption plate (30); Described shower nozzle (28) comprises top board (32), the little conical pipe (34) in the large bottom of feed tube (33) and top; Described top board (32) is arranged on the top of conical pipe (34) and forms a housing with conical pipe (34), and feed tube (33) is arranged on the middle part of top board (32), and feed tube (33) is communicated with in housing; On the cylindrical of feed tube (33), external screw thread be set and screw in the screwed hole on cavity of resorption plate (30), between cavity of resorption plate (30) and top board (32), seal gasket (35) being set; The upper uniform several through hole I (36) of described conical pipe (34), between described through hole I (36), at a distance of 8~12mm, the aperture of each through hole I (36) is 0.5~0.7mm;
Described reaction frame comprises that three layers of reaction that are horizontally set on the gripper shoe (22) on the interior cross section of vacuum tank (4) and be arranged in gripper shoe (22) encircle (23); Reaction ring on lower one deck with on last layer, react the setting of ring mutual dislocation; The upper uniform several through hole II (24) that vertically arrange of described gripper shoe (22), the aperture of through hole II (24) is 1.6~1.8mm, the distance between the upper adjacent through-holes II (24) of gripper shoe (22) is 4~4.5mm; The annulus (25) that described reaction ring (23) is surrounded by an iron plate and one end of iron plate folding arm (26) forming that bends inwards forms, and the external diameter of described annulus (25) is 26~28mm; Described reaction ring (23) vertically arranges, and the endoporus of the reaction ring on lower one deck is communicated with the endoporus of reaction ring adjacent on last layer;
Described solenoid (18) and the by-pass flow valve (19) of supplying is arranged on oil inlet pipe (14) above, and forms parallel connection for solenoid (18) and by-pass flow valve (19), and temperature sensor (27) is also installed on described oil inlet pipe (14).
CN201320808550.7U 2013-12-07 2013-12-07 Oil online filter Expired - Fee Related CN203678107U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201320808550.7U CN203678107U (en) 2013-12-07 2013-12-07 Oil online filter

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201320808550.7U CN203678107U (en) 2013-12-07 2013-12-07 Oil online filter

Publications (1)

Publication Number Publication Date
CN203678107U true CN203678107U (en) 2014-07-02

Family

ID=51000071

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201320808550.7U Expired - Fee Related CN203678107U (en) 2013-12-07 2013-12-07 Oil online filter

Country Status (1)

Country Link
CN (1) CN203678107U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108507274A (en) * 2018-04-04 2018-09-07 陈璐滨 A kind of weaving equipment fluid cooling purifying device

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108507274A (en) * 2018-04-04 2018-09-07 陈璐滨 A kind of weaving equipment fluid cooling purifying device

Similar Documents

Publication Publication Date Title
CN203678132U (en) Oil online purifying machine
CN203678123U (en) Oil liquid filtering system
CN103691191A (en) Online vacuum oil-filtering treatment machine of oil
CN203678107U (en) Oil online filter
CN103691193A (en) Online oil treater
CN103691188A (en) Oil on-line double-stage vacuum purification system
CN203678126U (en) Oil online filtration equipment used on oil filter
CN103691189A (en) Online filter system for oil liquid
CN103657244A (en) On-line oil liquid treatment device used on oil filter
CN203678020U (en) Vacuum vaporizer
CN203678125U (en) Oil online processor
CN203678103U (en) Oil liquid filtering system used in oil filter
CN203777718U (en) Vacuum vaporization system
CN203678108U (en) Online oil liquid processing device
CN203777717U (en) Vacuum vaporization system used on oil filter
CN203678104U (en) Oil filtering device
CN203678129U (en) Oil liquid online treatment equipment used on oil filtering machine
CN103657245A (en) Online treatment device of oil liquid
CN203678111U (en) Oil online processor used on oil filter
CN203678109U (en) Two-stage vacuum purifying equipment
CN103691192A (en) Online oil filtration purifier
CN203678112U (en) Two-stage vacuum oil filtering equipment
CN103691195A (en) Oil online filtering system used on oil filtering machine
CN103706175A (en) Double-stage vacuum oil filter
CN103657241A (en) Oil treater

Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20140702

Termination date: 20141207

EXPY Termination of patent right or utility model