CN105889148A - Oil storage system for treating hydraulic oil by adopting magnetization, adsorption and rotating magnetic fields - Google Patents

Oil storage system for treating hydraulic oil by adopting magnetization, adsorption and rotating magnetic fields Download PDF

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Publication number
CN105889148A
CN105889148A CN201610311166.4A CN201610311166A CN105889148A CN 105889148 A CN105889148 A CN 105889148A CN 201610311166 A CN201610311166 A CN 201610311166A CN 105889148 A CN105889148 A CN 105889148A
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China
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oil
solenoid
storage system
magnetization
absorption
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CN201610311166.4A
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Chinese (zh)
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李梅
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University of Shaoxing
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University of Shaoxing
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Priority to CN201610311166.4A priority Critical patent/CN105889148A/en
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F15FLUID-PRESSURE ACTUATORS; HYDRAULICS OR PNEUMATICS IN GENERAL
    • F15BSYSTEMS ACTING BY MEANS OF FLUIDS IN GENERAL; FLUID-PRESSURE ACTUATORS, e.g. SERVOMOTORS; DETAILS OF FLUID-PRESSURE SYSTEMS, NOT OTHERWISE PROVIDED FOR
    • F15B1/00Installations or systems with accumulators; Supply reservoir or sump assemblies
    • F15B1/26Supply reservoir or sump assemblies
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F15FLUID-PRESSURE ACTUATORS; HYDRAULICS OR PNEUMATICS IN GENERAL
    • F15BSYSTEMS ACTING BY MEANS OF FLUIDS IN GENERAL; FLUID-PRESSURE ACTUATORS, e.g. SERVOMOTORS; DETAILS OF FLUID-PRESSURE SYSTEMS, NOT OTHERWISE PROVIDED FOR
    • F15B21/00Common features of fluid actuator systems; Fluid-pressure actuator systems or details thereof, not covered by any other group of this subclass
    • F15B21/04Special measures taken in connection with the properties of the fluid
    • F15B21/041Removal or measurement of solid or liquid contamination, e.g. filtering
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F15FLUID-PRESSURE ACTUATORS; HYDRAULICS OR PNEUMATICS IN GENERAL
    • F15BSYSTEMS ACTING BY MEANS OF FLUIDS IN GENERAL; FLUID-PRESSURE ACTUATORS, e.g. SERVOMOTORS; DETAILS OF FLUID-PRESSURE SYSTEMS, NOT OTHERWISE PROVIDED FOR
    • F15B21/00Common features of fluid actuator systems; Fluid-pressure actuator systems or details thereof, not covered by any other group of this subclass
    • F15B21/04Special measures taken in connection with the properties of the fluid
    • F15B21/047Preventing foaming, churning or cavitation

Abstract

The invention relates to an oil storage system for treating hydraulic oil by adopting magnetization, adsorption and rotating magnetic fields. An air filter is arranged on the top outside an oil tank body; a filter box, a permanent magnet, a partition plate and a heater are sequentially arranged in the oil tank body; a first oil return tube is inserted into the oil tank body, and is connected with a U-shaped tube, and a cooler and a temperature sensor are arranged on the first oil return tube; one end of a second oil return tube is connected to the first oil return tube, and the other end of the second oil return tube extends into the filter box; the U-shaped tube is positioned in the filter box, and a magnetizing device, a first adsorbing device, a rotating magnetic field device and a second adsorbing device are sequentially mounted on the U-shaped tube; a defoaming plate which is inclined downwards is mounted on the top of the filter box; a layer of a magnetic metal net is paved on the surface of the defoaming plate; and an oil absorbing tube is inserted into the oil tank body, and an oil filter, a demagnetizer and a residual magnetism sensor are arranged on the oil absorbing tube. According to the oil storage system, technologies such as a mechanical technology, an electrical technology and a magnetic technology are combined, so that solid particles are gathered to the tube wall for being absorbed, and air is separated out or molten. The oil storage system is simple in structure, is low in cost and is strong in oil liquid purifying capacity.

Description

A kind of use magnetization, absorption and the oil storage system of rotating excitation field treatment fluid force feed
[technical field]
The present invention relates to the fuel tank in a kind of hydraulic system, be specifically related to a kind of employing magnetization, absorption and rotating excitation field treatment fluid The oil storage system of force feed, belongs to hydraulic oil container technical field.
[background technology]
Statistics both domestic and external illustrate, the fault of hydraulic system about 70% ~ 85% causes due to oil contamination.Cause This Pollution Control in Hydraulic System has become domestic and international Hydraulic Industry and each industrial department question of common concern.And solid pollution, Gaseous contamination is two kinds of major ways of hydraulic contamination.
Containing the air of about 9% volume under atmospheric pressure and room temperature condition in fluid, portion of air dissolves in fluid In, the mechanical performance of the Air On Hydraulic System of this dissolved state, the volume modulus of fluid and viscosity also will not produce Significantly affect, the most negligible;Another part is free in fluid with the bubble form of 0.05mm~0.5mm diameter, shape Become cavitation, be noise, body corrosion and the main cause of volumetric efficiency reduction.Heat meeting is produced when bubble is drastically compressed Cause oil temperature to raise, accelerate fluid oxidation and sealing member is aging, make oil lubrication hydraulic performance decline.The bubble that adulterates in fluid also can drop The rigidity of low fluid, cause automatically controlling malfunctioning, operating mechanism's intermittent movement, position inaccurate or fix drift etc. bad after Really.
Solid particle is the pollutant the most universal in hydraulic system, damaging effect is maximum.According to statistics, due to solid The hydraulic system fault that grain pollutant cause accounts for the 70% of gross contamination fault.In particulate pollutant in hydraulic system oil liquid, Metal filings occupies certain ratio, and according to different situations, typically between 20% ~ 70%, this part metals abrasive dust is main Come from the abrasion of element.Therefore, the solid grain contamination in degreasing fluid of adopting an effective measure, is hydraulic system pollution control Another importance of system.
The hydraulic means used in the production equipment of factory, construction machinery is made up of hydraulic circuit and fuel tank.Fuel tank stores The hydraulic oil provided to hydraulic circuit and the oil return refluxed from hydraulic circuit.Flow in the hydraulic system oil return of fuel tank and contain Various metals and colloidal particles pollutant, the most also include the air existed with bubble shape, and the existence of these pollutant can be led Cause hydraulic system hydraulic performance decline even to break down.
Eliminating problem for solving above-mentioned granule, Chinese invention patent (Authorization Notice No. CN 203816790 U) discloses A kind of centrifugal oil purifier, it includes oil pipe before the purification that equipment fuel tank and equipment fuel tank are drawn, and before this purification, oil pipe connects successively Connecing service tank, self priming pump, centrifugal basket, after this centrifugal basket connects purification, oil pipe is connected to equipment fuel tank, also includes vacuum pump It is connected with service tank;In described service tank, wherein it is provided with strong magnetic Magnet.Therefore, will before entering centrifugal barrel at fluid Metal impurities absorption in fluid, reduces the metallic particles abrasion to equipment, is effectively increased the service life of equipment.
Then, there is following several respects problem in above-mentioned oil conditioner:
1. need to add a whole set of centrifugal device, equipment is complicated, and cost is high, can bring secondary pollution to fluid simultaneously.
2. fuel tank volume is relatively big, and the magnetic conductivity of fluid is poor, and strong magnetic Magnet is to the active force of micron particles in fluid relatively Little, cause adsorption time long, the problems such as adsorption effect is poor.
3. part magnetic microparticles enters hydraulic circuit, and absorption causes element fault on Hydraulic Elements and is difficult to cleaning Remove.
And be to solve above-mentioned bubble to eliminate problem, conventional way is to arrange longitudinal baffle in fuel tank, extends fluid and exists The time of staying in fuel tank, should arrange far into and out of hydraulic fluid port as far as possible, and increase the volume of fuel tank.But, owing to mixing oil return Bubble the least and oil viscosity is of a relatively high, therefore there is problems in that bubble rises to pasta and is scattered in air need Long period, hydraulic means cannot be carried out work during this period.
The practical application for a patent for invention (application publication number CN 102762874 A) of China discloses a kind of fuel tank, this fuel tank Extend the oil return fluid time of staying at liquid level by the incorporating section being arranged in fuel tank and rectifying wings, reach eliminate bubble and Inlet port is avoided to suck the purpose of bubble.Then, the defaoming mechanisms of above-mentioned fuel tank is nature froth breaking, still there is foam time Long, the problems such as efficiency is low, especially for the operating mode poor effect that changes in flow rate is violent.
Therefore, for solving above-mentioned technical problem, necessary offer one uses magnetization, absorption and rotating excitation field treatment fluid The oil storage system of force feed, to overcome described defect of the prior art.
[summary of the invention]
For solving above-mentioned technical problem, it is an object of the invention to provide a kind of employing magnetization, absorption and rotating excitation field treatment fluid The oil storage system of force feed, combines technology such as machinery, electricity, magnetic, make solid particle gather tube wall absorption, make air separate out or Melt, its simple in construction, low cost, and lube purification ability is strong.
For achieving the above object, the technical scheme that the present invention takes is: a kind of employing magnetization, absorption and rotating excitation field process The oil storage system of hydraulic oil, it include oil box, Rose Box, the first oil return pipe, the second oil return pipe, U-tube, magnetizing assembly, One adsorbent equipment, rotating magnetic field device, the second adsorbent equipment, permanent magnet, dividing plate, heater, fuel sucking pipe and ECU;Wherein, Top outside described oil box is provided with air filter, is sequentially provided with described filter box, permanent magnet, dividing plate and heating in oil box Device;Described first oil return pipe inserts in oil box, and connects with U-tube, which is provided with cooler and temperature sensor;Described Two oil return pipe one end are connected to the first oil return pipe, and the other end extends into Rose Box;Described first oil return pipe and the second oil return pipe Junction is provided with an overflow valve;Described U-tube is positioned at Rose Box, and it is sequentially installed with described magnetizing assembly, the first absorption Device, rotating magnetic field device and the second adsorbent equipment;Being provided with bottom described Rose Box every magnetic leg, top is provided with downward-sloping The froth breaking plate arranged;Described froth breaking plate surface is equipped with one layer of magnetic metal net;Described fuel sucking pipe inserts oil box, which is provided with Oil filter, demagnetizer and remanent magnetism sensor;Described ECU be electrically connected with cooler, temperature sensor, magnetizing assembly, first Adsorbent equipment, rotating magnetic field device, adsorbent equipment, heater, demagnetizer and remanent magnetism sensor.
The oil storage system using magnetization, absorption and rotating excitation field treatment fluid force feed of the present invention is further arranged to: described Magnetization dress is made and is included aluminum matter pipeline, some windings, iron shell, flange and some magnetizing current output modules;Wherein, described Some windings are rotating around outside aluminum matter pipeline, and each winding is made up of positive winding and inverse winding;Described iron shell is coated on aluminum matter On pipeline;Described flange welding is at the two ends of aluminum matter pipeline;Each magnetizing current output module is connected to a winding, and by ECU Control.
The oil storage system using magnetization, absorption and rotating excitation field treatment fluid force feed of the present invention is further arranged to: described First adsorbent equipment uses annular permanent magnnet, or homopolarity adjacent type absorbing ring, or the homopolarity adjacent type absorbing ring of charged hammer; Described second adsorbent equipment is identical with described first adsorbent equipment structure.
The oil storage system using magnetization, absorption and rotating excitation field treatment fluid force feed of the present invention is further arranged to: described Homopolarity adjacent type absorbing ring includes aluminium ring shape pipeline, forward solenoid, reverse solenoid and irony magnetic conduction cap;Described forward Solenoid and reverse solenoid are respectively arranged in aluminium ring shape pipeline and by ECU control, and both are connected with electric current in opposite direction, Forward solenoid and reverse solenoid adjacent is made to produce like pole;Described irony magnetic conduction cap is arranged in aluminium ring shape pipeline Inwall on, it is positioned at forward solenoid and reverse solenoid adjacent and forward solenoid and reverse solenoid axis Intermediate point.
The oil storage system using magnetization, absorption and rotating excitation field treatment fluid force feed of the present invention is further arranged to: described The homopolarity adjacent type absorbing ring of charged hammer include aluminium ring shape pipeline, forward solenoid, reverse solenoid, irony magnetic conduction cap, Dividing plate, electric shock hammer and electric magnet;Described forward solenoid and reverse solenoid are respectively arranged in aluminium ring shape pipeline, both It is connected with electric current in opposite direction so that forward solenoid and reverse solenoid adjacent produce like pole;Described irony magnetic conduction Cap is arranged on the inwall of aluminium ring shape pipeline, and it is positioned at forward solenoid and reverse solenoid adjacent and forward helical Pipe and the intermediate point of reverse solenoid axis;Described dividing plate is between forward solenoid and reverse solenoid;Described electric shock hammer With electric magnet is between dividing plate;Described electric magnet connects and can promote electric shock hammer, makes electric shock hammer tap in aluminium ring shape pipeline Wall;Described ECU is electrically connected with and controls forward solenoid, reverse solenoid and electric magnet.
The oil storage system using magnetization, absorption and rotating excitation field treatment fluid force feed of the present invention is further arranged to: described Rotating magnetic field device includes aluminum matter pipeline, iron shell, three-phase symmetric winding, flange and three-phase symmetrical current module;Described Three-phase symmetric winding is wound on outside aluminum matter pipeline;Described iron shell is coated on aluminum matter pipeline;Described flange welding is at aluminum matter pipe The two ends in road;Described three-phase symmetrical current module connects described three-phase symmetric winding, and by ECU control.
The oil storage system using magnetization, absorption and rotating excitation field treatment fluid force feed of the present invention is further arranged to: described The bottom mouth of pipe of fuel sucking pipe inserts in below minimum level, and it is greater than 2-3 times of its caliber from the bottom of oil box, from oil box Tank wall distance be caliber 3 times;The bottom mouth of pipe of described fuel sucking pipe is cut into 45 ° of oblique angles, and makes oblique angle face toward the case of oil box Wall.
The oil storage system using magnetization, absorption and rotating excitation field treatment fluid force feed of the present invention is also configured to: described dividing plate Leaving a blank up and down, leaves a blank more than the highest oil surface level in top;Described oil box uses cube structure, is provided with dress of draining the oil bottom it Put.
Compared with prior art, there is advantages that
1, by controlling temperature and the magnetic field intensity of hydraulic oil, make the force-magnetized bulky grain that is gathered into of the granule in fluid, and promote Make colloidal particles decompose to melt;Efficient absorption is formed by the magnetic force of U-shaped adsorbent equipment, gravity, centrifugal force;Utilize rotating excitation field Molecule in fluid " is separated " and gathers near-wall, captures molecule with adsorbent equipment;Utilize on froth breaking plate Magnetic metal net adsorb the little granule that not yet adsorbs, finally to residual particles demagnetization in fuel sucking pipe, it is to avoid harm hydraulic pressure unit The integral particle absorption of part.
2, by controlling temperature and the magnetic field intensity of hydraulic oil, the bubble in fluid is made to melt in magneticaction lower part; Utilize rotating excitation field that the microgranule in fluid is lined up needle-like to spin and extend out motion, thus reach to prick a bubble and eliminate the mesh of bubble 's;And by the rising emission efficiency naturally arranging strengthening bubble that U-tube exports, utilize froth breaking plate to distribute the whole of remaining bubble Body oils liquid froth breaking.
3, simple in construction, volume is little, and processing cost is low, has granular absorption and defoaming function, and it is dirty to produce secondary Dye.
[accompanying drawing explanation]
Fig. 1 is the structural representation of the oil storage system using magnetization, absorption and rotating excitation field treatment fluid force feed of the present invention.
Fig. 2 is the structural representation of the magnetizing assembly in Fig. 1.
Fig. 3 is the structural representation of the winding in Fig. 2.
Fig. 4 is the circuit diagram of the magnetizing current output module in Fig. 3.
Fig. 5 be the adsorbent equipment in Fig. 1 be the structural representation of homopolarity adjacent type absorbing ring.
Fig. 6 be the adsorbent equipment in Fig. 1 be the structural representation of the homopolarity adjacent type absorbing ring of charged hammer.
Fig. 7 is the structural representation of the rotating magnetic field device in Fig. 1.
Fig. 8 is the connection diagram of ECU in Fig. 1.
[detailed description of the invention]
Referring to shown in Figure of description 1 to accompanying drawing 8, the present invention is that a kind of employing magnetization, absorption and rotating excitation field process hydraulic pressure The oil storage system of oil, it is by oil box 1, Rose Box the 17, first oil return pipe the 12, second oil return pipe 14, U-tube 20, magnetizing assembly 19, the first adsorbent equipment 21, rotating magnetic field device the 27, second adsorbent equipment 28, permanent magnet 9, dividing plate 8, heater 7, oil suction Several parts compositions such as pipe 2 and ECU3.
Wherein, described oil box 1 uses cube structure, makes to obtain under identical capacity bigger area of dissipation.Described Top outside oil box 1 is provided with air filter 10, is sequentially provided with described Rose Box 17, permanent magnet 9, dividing plate 8 in oil box 1 With heater 7.The bottom of described oil box 1 is provided with jettison gear 11, opens it and release greasy dirt when changing oil.Further, institute Stating heater 7 for electric heater, it uses the lubricating oil heater of Chongqing gold letter of band temperature detection own.Described dividing plate is used for Suction, oil return being separated, force oil circulation to flow, be beneficial to heat radiation and precipitation, it is left a blank up and down, leaves a blank in the highest pasta position in top Put above, in order to air circulation and control cabling;And bottom is left a blank in order to oil suction, reduce air and the suction of granule.Described forever Magnet 9 is for adsorbing metal granule for a long time.Described air filter 10 makes oil box 1 communicate with air, and it can filter in air Dust foreign material, double as oil filler sometimes, and it specifically can be selected for specification is EF4 50EF type air filter, its air filtration essence Degree is 0.105mm2, oiling flow and air mass flow are respectively 32L/min and 265L/min.
Described first oil return pipe 12 inserts in oil box 1, and connects with U-tube 20, which is provided with cooler 15 and temperature Sensor 16.Owing to hydraulic medium normal oil temperature typically should control in the range of 15-65 DEG C.High oil temperature, will make fluid rapid Aged deterioration, makes the viscosity of fluid reduce simultaneously, and in causing element, amount of leakage increases, and system effectiveness reduces;Oil temperature is too low, will make The viscosity of fluid is excessive, causes hydraulic oil pump oil suction difficulty.Described cooler 15 can reduce returning-oil temperature, for follow-up magnetization Device 19 provides optimal magnetization temperature, the most also has control panel heat radiation in fluid viscosity reduction, fuel tank concurrently, makes fuel tank trouble free service Deng effect, it can be selected for remover for surface evaporation type air cooling, the advantage having water-cooled and air cooling concurrently, good heat dissipation effect, uses light pipe, fluid Resistance is little;The fin type of air cooler is required to be high wing, and finned tube selects KLM type finned tube, good heat-transfer, and thermal contact resistance is little, wing Sheet and pipe contact area are big, and closely, firmly, it is good to bear cold and hot sudden turn of events ability, and fin root weather-resistant performance is high in laminating; The bank of tubes number of air cooler is 8.Described temperature sensor 16 uses platinum resistance temperature sensor, and ECU3 examines according to temperature sensor 16 The temperature data measured goes to control the rotation speed of the fan in cooler 15, regulates oil return liquid temp with this.
Described second oil return pipe 14 one end is connected to the first oil return pipe 12, and the other end extends into Rose Box 17.Described first The junction of oil return pipe 12 and the second oil return pipe 14 is provided with an overflow valve 13.Described overflow valve 13 is stifled in the first oil return pipe 12 alluvial Opening during plug, make hydraulic system oil return flow back to Rose Box 17 from the second oil return pipe 14, its optional YUKEN Japan oil grinds model and is The EBG type electricity one liquid proportional overflow valve of EBG-03-C-T-50.The highest use operating pressure of this proportional pressure control valve is 25 MPa, Maximum stream flow is 100L/rain, and minimum discharge is 3 L/rain, and pressure regulation spectrum is 0.4~16 MPa, and rated current is 770mA, coil resistance is 10 ohm.
Described U-tube 20 is positioned at Rose Box 17, and it is sequentially installed with described magnetizing assembly the 19, first adsorbent equipment 21, rotating magnetic field device 27 and the second adsorbent equipment 28.The outlet of described U-tube 20 is located close to the lower section at liquid level, purpose Being to shorten bubble floating distance, in quickening fluid, bubble distributes speed naturally.
Being provided with bottom described Rose Box 17 every magnetic leg 18, top is provided with the froth breaking plate 23 of downward-sloping setting.Described Froth breaking plate 23 surface is equipped with one layer of magnetic metal net 24.In order to avoid Rose Box 17 liquid level causes splashing less than oil return outlet Bubbling, be provided with check-valves 25 at Rose Box 17 at liquid level, the position of this valve is positioned at below minimum level, it is ensured that Rose Box The height of 17 inner fluids is not less than external fuel tank.The fluid of U-tube 20 outlet is from Rose Box 17 overflow, and along froth breaking plate 23 Surface occurs diffusion also to mix with the fluid in oil box 1, the least significant end of froth breaking plate 23 will below minimum liquid level, in case Only splash foaming.Described magnetic metal net 24 is for adsorbing the particle object of remaining in fluid so that the bubble that oil return is carried is only Liquid level at Rose Box 17 is assembled, and the distance that bubble distributes naturally is short, and speed is fast;Hydraulic oil in froth breaking plate 23 and fuel tank is also It is to mix at liquid level, it is to avoid the inlet port of tank bottoms sucks these bubbles.
Described fuel sucking pipe 2 inserts oil box 1, which is provided with oil filter 6, demagnetizer 5 and remanent magnetism sensor 4, and it is with first Distance between oil return pipe the 12, second oil return pipe 14 is as far as possible.The bottom mouth of pipe of this fuel sucking pipe 2 inserts in below minimum level, It is greater than 2-3 times of its caliber from the bottom of oil box 1, in order to avoid the foaming that is emptied and splashes;Tank wall distance from oil box 1 is 3 times of caliber, in order to oil-feed on four sides.Further, the bottom mouth of pipe of described fuel sucking pipe 2 is cut into 45 ° of oblique angles, and makes oblique angle face toward The tank wall of oil box 1, to increase hydraulic fluid port flow area, and makes inclined-plane face toward tank wall, in order to heat radiation and precipitated impurities.Described oil strain Device 6 is used for protecting the gear pump being connected with fuel tank so that it is will not suck bigger solid impurity, and it specifically uses the filtering accuracy to be The model that 180um, the pressure loss≤0.01MPa, flow are 250L/min, latus rectum is 50mm, use flange to couple is WU- The well strainer of 250xlSOF.Described demagnetizer 5 can prevent residual magnetism microgranule from entering hydraulic circuit, to sensitive Hydraulic Elements Cause damage;And ECU3 controls the demagnetization intensity of demagnetizer 5 according to the detected value of remanent magnetism sensor 4.The demagnetization of described demagnetizer 5 Method is electromagnetism demagnetization, and method is the opposing magnetic field by add suitable so that the magnetic induction in material comes back to zero Point, and magnetic field intensity or electric current must invert in order and gradually reduce, it is to avoid due to the existence of hysteresis, work as ferromagnetic material After being magnetized into saturation, even if cancelling externally-applied magnetic field, the magnetic induction in material still returns and produces less than the problem of zero point.
Referring to shown in Figure of description 2 to accompanying drawing 4, described magnetizing assembly 19 can realize the force-magnetized of metallic particles, And making micron-sized metallic particles aggregate into bulky grain, it is simple to subsequent adsorbtion separates.Magnetizing assembly 19 it is also required to provide non-simultaneously Uniform magnetic field, carries out magnetization and decomposes, and promote to dissociate the colloidal particles in the hydraulic oil through the suitable oil temperature of subcooler 15 Bubble reduce or melt.
Described magnetizing assembly 19 is by aluminum matter pipeline 191, some windings 192, iron shell 193, flange 194 and some magnetic Galvanic current output module 195 forms.Wherein, described aluminum matter pipeline 191 makes fluid flow there through and by magnetization treatment, and aluminum Pcrmeability the lowest, can make pipeline 191 obtains higher magnetic field intensity.
Described some windings 192, rotating around outside aluminum matter pipeline 191, are coated insulation by the copper wire of a diameter of about 1.0mm Paint is made.Each winding 192 is all separate setting, is controlled by corresponding magnetizing current output module 195 respectively, Qi Zhong electricity Flow and need different according to system.Separate owing to often enclosing winding 192, its exit can cause the electric current that this coil forms Ring is not real " justifying ", but has individual breach, and this can cause the radial distribution of aluminum matter pipeline 191 internal magnetic field uneven, thus Affect magnetic efficiency.For solving this problem, the often circle winding 192 of this creation is all made up of positive winding 196 and inverse winding 197, mesh Be to produce the magnetic field in same polarity direction and to make up the magnetic field that breach causes unbalanced simultaneously.In positive winding and inverse winding Size of current is equal.Aluminum matter pipeline 191 axis direction is arranged with multipair forward and reverse winding, by different electric currents, in order to shape Become the non-uniform magnetic-field of aforementioned claim.
Described iron shell 193 is coated on aluminum matter pipeline 191, and the material of irony can mask most magnetic flux.Institute State flange 194 and be welded on the two ends of aluminum matter pipeline 191, and by flange flange 194 in U-tube 20.
Each magnetizing current output module 195 is connected to a winding 192, and by ECU3 control, it utilizes digital potentiometer Have and ECU3 real-time communication the feature of real time modifying resistance, it is achieved the real-time control of non-uniform magnetic-field.Described magnetizing current The circuit theory diagrams of output module 195 can be found in accompanying drawing 4, and its digital potentiometer used is AD5206, has the defeated of 6 passages Go out, can and ECU between realize single bus data transmission.ECU realizes the polylith magnetizing current to magnetization winding by monobus The current settings of output module and constant output.Amplifier AD8601 and metal-oxide-semiconductor 2N7002 achieve high-precision by negative feedback Voltage follow exports.Constant High-current output have employed amplifier OPA 549 of the high voltage of Texas Instrument (TI), big electric current.
Described first adsorbent equipment 21 is for adsorbing the big microgranule of magnetic polymeric after magnetizing assembly 19 magnetizes, and it can be adopted With annular permanent magnnet, or homopolarity adjacent type absorbing ring, or the homopolarity adjacent type absorbing ring of charged hammer.
Further, referring to shown in Figure of description 5, described first adsorbent equipment 21 uses homopolarity adjacent type absorbing ring Time, this homopolarity adjacent type absorbing ring is led by aluminium ring shape pipeline 211, forward solenoid 212, reverse solenoid 213 and irony Magnetic cap 214 parts such as grade form.Wherein, described forward solenoid 212 and reverse solenoid 213 are respectively arranged in aluminium ring shape pipeline In 211 and by ECU3 control, both are connected with electric current in opposite direction so that forward solenoid 212 and reverse solenoid 213 are adjacent Place produces like pole.Described irony magnetic conduction cap 214 is arranged on the inwall of aluminium ring shape pipeline 211, and it is positioned at forward helical Pipe 212 and reverse solenoid 213 adjacent and forward solenoid 212 and the intermediate point of reverse solenoid 213 axis.
The design principle of described homopolarity adjacent type absorbing ring is as follows: energising forward solenoid 212, reverse solenoid 213, phase Adjacent forward solenoid 212, reverse solenoid 213 are connected with electric current in opposite direction so that forward solenoid 212, reverse helical Pipe 213 adjacent produces like pole;Meanwhile, aluminium ring shape pipeline 211 can improve magnetic circuit, strengthens the magnetic field at inner-walls of duct Intensity, strengthens the irony magnetic conduction cap 214 capture absorbability to granule.Each forward solenoid 212, reverse solenoid 213 electric current Directly controlled by ECU3, can be different with concentration and change, to obtain optimal adsorption performance according to the size of granule.
Further, referring to shown in Figure of description 6, described first adsorbent equipment 21 may be used without the same of charged hammer During the most adjacent type absorbing ring, the homopolarity adjacent type absorbing ring of this charged hammer by aluminium ring shape pipeline 211, forward solenoid 212, The parts compositions such as reverse solenoid 213, irony magnetic conduction cap 214, dividing plate 215, electric shock hammer 216 and electric magnet 217.Wherein, institute State forward solenoid 212 and reverse solenoid 213 is respectively arranged in aluminium ring shape pipeline 211 and by ECU3 control, Liang Zhetong There is electric current in opposite direction so that forward solenoid 212 and reverse solenoid 213 adjacent produce like pole.Described irony Magnetic conduction cap 214 is arranged on the inwall of aluminium ring shape pipeline 211, and it is positioned at forward solenoid 212 and reverse solenoid 213 is adjacent Place and forward solenoid 212 and the intermediate point of reverse solenoid 213 axis.Described electric shock hammer 216 and electric magnet 217 are positioned at Between dividing plate 215.Described electric magnet 217 connects and can promote electric shock hammer 216, makes electric shock hammer 216 percussion aluminium ring shape pipeline 212 Inwall.Described ECU3 is electrically connected with and controls forward solenoid 212, reverse solenoid 213 and electric magnet 217.
The design principle of the homopolarity adjacent type absorbing ring of described charged hammer is as follows: energising forward solenoid 212, reverse spiral shell Spool 213, adjacent forward solenoid 212, reverse solenoid 213 are connected with electric current in opposite direction so that forward solenoid 212, reverse solenoid 213 adjacent produces like pole;Meanwhile, aluminium ring shape pipeline 211 can improve magnetic circuit, strengthens pipeline Magnetic field intensity at inwall, strengthens the irony magnetic conduction cap 214 capture absorbability to granule.Each forward solenoid 212, reverse spiral shell Spool 213 electric current is directly controlled by ECU3, can be different with concentration and change, to obtain optimal adsorption according to the size of granule Performance.And by the setting of electric shock hammer 216, prevent granule bulk deposition at irony magnetic conduction cap 214, affect adsorption effect.This Time, controlled the inwall of electric shock hammer 216 percussion pipeline 211 by electric magnet 217 so that adsorbed granule scatter to both sides. Meanwhile, when cleaning pipeline 211, the percussion of electric shock hammer 216 can also improve cleaning performance.
Referring to shown in Figure of description 7, described rotating magnetic field device 27 utilizes rotating excitation field centrifugal not by the first absorption The small magnetization granule of device 21 absorption, it is by aluminum matter pipeline 271, iron shell 272, three-phase symmetric winding 273, flange 274 And three-phase symmetrical current module 275 forms.Described three-phase symmetric winding 273 is wound on outside aluminum matter pipeline 271.Described iron shell 272 are coated on aluminum matter pipeline 271.Described flange 274 is welded on the two ends of aluminum matter pipeline 271.Described three-phase symmetrical current-mode Block 275 connects described three-phase symmetric winding 273, and by ECU3 control.
The operation principle of described rotating magnetic field device 27 is as follows: small magnetization granule not to be adsorbed enters rotating excitation field dress Putting 27, ECU3 controls three-phase symmetrical current module 275, makes to flow through in three-phase symmetric winding 273 three-phase symmetrical electric current, and this electric current exists Producing rotating excitation field in aluminum matter pipeline 271, magnetized particles is acted on by magnetic field force under rotating excitation field effect, and in this power Spirally advance under effect, simultaneously to vessel wall motion.Therefore, regulation magnetic field intensity can make the granule in fluid from fluid " separate " out, be gathered in aluminum matter pipeline 271 near-wall, it is simple to subsequent adsorbtion captures.
Described second adsorbent equipment 28 is identical with described first adsorbent equipment 21 structure, and function is the most identical with the mechanism of action, It can adsorb the granule not adsorbed by rotating magnetic field device 27 further.
Referring to shown in Figure of description 8, described ECU3 may select the PIC16F877 of Microchip company, and it is the most electric Property connect cooler 15, temperature sensor 16, magnetizing assembly the 19, first adsorbent equipment 21, rotating magnetic field device 27, second adsorb The parts such as device 28, heater 7, demagnetizer 5 and remanent magnetism sensor 4.
The processing step using above-mentioned fuel tank to process backflow force feed is as follows:
1), backflow force feed delivers to magnetizing assembly by the first oil return pipe 12, and is controlled by the cooler on the first oil return pipe Returning-oil temperature, makes hydraulic fluid temperature at 40-50 DEG C;
2), by magnetizing assembly 19, oil return is magnetized, make micron-sized metallic particles aggregate into bulky grain, oil return afterwards Deliver to the first adsorbent equipment 21;
3), being adsorbed the magnetic polymeric microgranule in oil return by the first adsorbent equipment 21, rotating magnetic field device 27 is delivered in oil return afterwards;
4), rotating magnetic field device 27 utilizes rotating excitation field to separate unadsorbed magnetic microparticles, and the second absorption dress is delivered in oil return afterwards Put 28;
5), the magnetic polymeric microgranule in the second adsorbent equipment 28 second adsorption oil return, U-tube 20 is delivered in oil return afterwards;
6), U-tube 20 is exported by it and oil return enters Rose Box 17;
7), the oil return of Rose Box 17 spill-over is spread along the surface of froth breaking plate 23, and mixes with the fluid in oil box 1 Close, make the bubble of fluid naturally be dispersed in air;And on froth breaking plate the magnetic metal net 24 of 23 adsorb in fluid remaining Grain object;
8) air when, utilizing the dividing plate 8 in oil box 1 and permanent magnet 9 to remove oil-feed and granule;
9), by fuel sucking pipe 2 by the fluid sucking-off of oil box 1, reuse for hydraulic system, and utilize on fuel sucking pipe 2 Demagnetizer 5 eliminates magnetic particle magnetic, prevents residual magnetism microgranule from entering hydraulic circuit, and sensitive Hydraulic Elements are caused damage.
Above detailed description of the invention is only the preferred embodiment of this creation, not in order to limit this creation, all in this wound Any modification, equivalent substitution and improvement etc. done within the spirit made and principle, should be included in this creation protection domain it In.

Claims (8)

1. one kind use magnetization, absorption and the oil storage system of rotating excitation field treatment fluid force feed, it is characterised in that: include oil box, Rose Box, the first oil return pipe, the second oil return pipe, U-tube, magnetizing assembly, the first adsorbent equipment, rotating magnetic field device, the second suction Adsorption device, permanent magnet, dividing plate, heater, fuel sucking pipe and ECU;Wherein, the top outside described oil box is provided with air-filtering Device, is sequentially provided with described filter box, permanent magnet, dividing plate and heater in oil box;Described first oil return pipe inserts in oil box, And connect with U-tube, which is provided with cooler and temperature sensor;Described second oil return pipe one end is connected to the first oil return pipe, The other end extends into Rose Box;The junction of described first oil return pipe and the second oil return pipe is provided with an overflow valve;Described U-tube position In Rose Box, it is sequentially installed with described magnetizing assembly, the first adsorbent equipment, rotating magnetic field device and the second absorption dress Put;Being provided with bottom described Rose Box every magnetic leg, top is provided with the froth breaking plate of downward-sloping setting;Described froth breaking plate surface spreads It is provided with one layer of magnetic metal net;Described fuel sucking pipe inserts oil box, which is provided with oil filter, demagnetizer and remanent magnetism sensor;Institute State ECU and be electrically connected with cooler, temperature sensor, magnetizing assembly, the first adsorbent equipment, rotating magnetic field device, absorption Device, heater, demagnetizer and remanent magnetism sensor.
Using magnetization, absorption and the oil storage system of rotating excitation field treatment fluid force feed the most as claimed in claim 1, its feature exists In: described magnetization dress is made and is included aluminum matter pipeline, some windings, iron shell, flange and some magnetizing current output modules;Its In, described some windings are rotating around outside aluminum matter pipeline, and each winding is made up of positive winding and inverse winding;Described iron shell is coated with On aluminum matter pipeline;Described flange welding is at the two ends of aluminum matter pipeline;Each magnetizing current output module is connected to a winding, and By ECU control.
Using magnetization, absorption and the oil storage system of rotating excitation field treatment fluid force feed the most as claimed in claim 1, its feature exists In: described first adsorbent equipment uses annular permanent magnnet, or homopolarity adjacent type absorbing ring, or the adjacent type of homopolarity of charged hammer Absorbing ring;Described second adsorbent equipment is identical with described first adsorbent equipment structure.
Using magnetization, absorption and the oil storage system of rotating excitation field treatment fluid force feed the most as claimed in claim 1, its feature exists In: described homopolarity adjacent type absorbing ring includes aluminium ring shape pipeline, forward solenoid, reverse solenoid and irony magnetic conduction cap; Described forward solenoid and reverse solenoid are respectively arranged in aluminium ring shape pipeline and by ECU control, and both are connected with direction phase Anti-electric current so that forward solenoid and reverse solenoid adjacent produce like pole;Described irony magnetic conduction cap is arranged in aluminum On the inwall of matter circulating line, it is positioned at forward solenoid and reverse solenoid adjacent and forward solenoid and reverse spiral shell The intermediate point of spool axis.
Using magnetization, absorption and the oil storage system of rotating excitation field treatment fluid force feed the most as claimed in claim 1, its feature exists In: the homopolarity adjacent type absorbing ring of described charged hammer includes aluminium ring shape pipeline, forward solenoid, reverse solenoid, irony Magnetic conduction cap, dividing plate, electric shock hammer and electric magnet;Described forward solenoid and reverse solenoid are respectively arranged in aluminium ring shape pipeline In, both are connected with electric current in opposite direction so that forward solenoid and reverse solenoid adjacent produce like pole;Described ferrum Matter magnetic conduction cap is arranged on the inwall of aluminium ring shape pipeline, and it is positioned at forward solenoid and reverse solenoid adjacent, Yi Jizheng To solenoid and the intermediate point of reverse solenoid axis;Described dividing plate is between forward solenoid and reverse solenoid;Described Electric shock hammer and electric magnet are between dividing plate;Described electric magnet connects and can promote electric shock hammer, makes electric shock hammer tap aluminium ring shape Inner-walls of duct;Described ECU is electrically connected with and controls forward solenoid, reverse solenoid and electric magnet.
Using magnetization, absorption and the oil storage system of rotating excitation field treatment fluid force feed the most as claimed in claim 1, its feature exists In: described rotating magnetic field device includes aluminum matter pipeline, iron shell, three-phase symmetric winding, flange and three-phase symmetrical current-mode Block;Described three-phase symmetric winding is wound on outside aluminum matter pipeline;Described iron shell is coated on aluminum matter pipeline;Described flange welding exists The two ends of aluminum matter pipeline;Described three-phase symmetrical current module connects described three-phase symmetric winding, and by ECU control.
Using magnetization, absorption and the oil storage system of rotating excitation field treatment fluid force feed the most as claimed in claim 1, its feature exists In: the bottom mouth of pipe of described fuel sucking pipe inserts in below minimum level, and it is greater than 2-3 times of its caliber from the bottom of oil box, 3 times that tank wall distance from oil box is caliber;The bottom mouth of pipe of described fuel sucking pipe is cut into 45 ° of oblique angles, and makes oblique angle face toward oil The tank wall of casing.
Using magnetization, absorption and the oil storage system of rotating excitation field treatment fluid force feed the most as claimed in claim 1, its feature exists In: described dividing plate is left a blank up and down, leaves a blank more than the highest oil surface level in top;Described oil box uses cube structure, its end Portion is provided with jettison gear.
CN201610311166.4A 2016-05-12 2016-05-12 Oil storage system for treating hydraulic oil by adopting magnetization, adsorption and rotating magnetic fields Withdrawn CN105889148A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201610311166.4A CN105889148A (en) 2016-05-12 2016-05-12 Oil storage system for treating hydraulic oil by adopting magnetization, adsorption and rotating magnetic fields

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201610311166.4A CN105889148A (en) 2016-05-12 2016-05-12 Oil storage system for treating hydraulic oil by adopting magnetization, adsorption and rotating magnetic fields

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CN105889148A true CN105889148A (en) 2016-08-24

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Country Link
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