CN205260969U - A control boost circuit for methanol gasoline preparation - Google Patents

A control boost circuit for methanol gasoline preparation Download PDF

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Publication number
CN205260969U
CN205260969U CN201520931164.6U CN201520931164U CN205260969U CN 205260969 U CN205260969 U CN 205260969U CN 201520931164 U CN201520931164 U CN 201520931164U CN 205260969 U CN205260969 U CN 205260969U
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China
Prior art keywords
connects
tank
resistance
control
methanol gasoline
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Expired - Fee Related
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CN201520931164.6U
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Chinese (zh)
Inventor
廖伟
唐国坪
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Chongqing Hengyu Huadun New Energy Development Co Ltd
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Chongqing Hengyu Huadun New Energy Development Co Ltd
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Abstract

The utility model provides a control boost circuit for methanol gasoline preparation, include: the jar body, control valve, DCS control platform and MCU circuit carry out coordinated control to a control boost circuit for methanol gasoline preparation to prepare out methanol gasoline. Methyl alcohol additive and the mixed denatured alcohol that later forms of methyl alcohol through multiple compound formation to preparation methanol gasoline has realized quick formation methanol gasoline through automated control, has improved production efficiency, resources are saved, and the environmental protection is high -efficient, preparation process safety.

Description

The control booster circuit of preparing for methanol gasoline
Technical field
The utility model relates to fuel mix preparation facilities, relates in particular to a kind of control of preparing for methanol gasolineBooster circuit processed.
Background technology
Methanol fuel is to change denatured methyl alcohol into after utilizing methyl alcohol to add a certain amount of compound additive, and thenWith existing product oil or component oil, according to a certain volume or mass ratio through strict scientific technology allocate make onePlant Novel clean-fuel. Key technology is the blending technology of additive.
As far back as after 20 century 70 oil crisises soon, the domestic methyl alcohol alternative fuel that just startedPilot study, pay close attention to cold start, hot gas hinder, be short of power, meet water stratification, low-temperature phase separate,Corrode the technical barriers such as swelling, high temperature lubricating. But in prior art, the deployment device of methanol gasoline is lacked to itFew again, and deployment device can not meet people's demand a large amount of to methanol gasoline accordingly, and also existingThere are a lot of defects in equipment safety and stability, this just needs those skilled in the art badly and solves corresponding technologyProblem.
Utility model content
The utility model is intended at least solve the technical problem existing in prior art, has proposed to special innovationA kind of control booster circuit of preparing for methanol gasoline.
In order to realize above-mentioned purpose of the present utility model, it is a kind of for methanol vapor that the utility model providesThe control booster circuit of oil preparation, it comprises: battery pack, the first switch, the first resistance, the second resistance,The 3rd resistance, the first electric capacity, the second electric capacity, the first diode, the second tunnel diode, the first triode,The second triode, transformer;
Battery anode connects first switch one end, and the described first switch other end connects respectively the first resistance oneEnd and the second transistor collector, the described first resistance other end connects respectively the first transistor base and secondResistance one end, the described second resistance other end connects first electric capacity one end, and the described first electric capacity other end connectsTransformer is inputted 1 end, and described the first transistor collector connects the second transistor base, described the one or three utmost pointPipe emitter stage connection transformer is inputted 2 ends, and described the second transistor emitter connection transformer is inputted 1 end,Described battery pack negative pole connection transformer is inputted 2 ends, and described transformer is exported 1 end, and to connect the first diode negativeThe utmost point, described the first diode cathode connects respectively second electric capacity one end and the 3rd resistance one end, described transformerExport 2 ends and connect respectively the second electric capacity other end and the second tunnel diode negative pole, described the 3rd resistance anotherEnd connects the second tunnel diode positive pole, and described the second tunnel diode connects constant voltage circuit input.
The described control booster circuit of preparing for methanol gasoline, preferred, described the first triode is3DG6。
The described control booster circuit of preparing for methanol gasoline, preferred, described the second triode is3AX31。
In sum, owing to having adopted technique scheme, the beneficial effects of the utility model are:
Can realize from low-voltage to high-tension transition by booster circuit, save energy and reduce the cost thereby realize, nothingNeed continue to provide high voltage source, thereby ensure the operation validity of control valve.
Additional aspect of the present utility model and advantage in the following description part provide, and part will be from belowDescription in become obviously, or recognize by practice of the present utility model.
Brief description of the drawings
Above-mentioned and/or additional aspect of the present utility model and advantage be accompanying drawing retouching embodiment below combinationState middle becoming obviously and easily and understand, wherein:
Fig. 1 is the utility model general illustration;
Fig. 2 is the utility model control valve schematic diagram;
Fig. 3 is that the utility model DCS controls platform schematic diagram;
Fig. 4 is the utility model tank body schematic diagram;
Fig. 5 is the utility model booster circuit and adjusting control circuit schematic diagram;
Fig. 6 is the utility model semiconductor gas sensor circuit diagram.
Detailed description of the invention
Describe embodiment of the present utility model below in detail, the example of described embodiment is shown in the drawings, itsIn from start to finish same or similar label represent same or similar element or there is identical or similar functionsElement. Exemplary below by the embodiment being described with reference to the drawings, only for explaining the utility model,And can not be interpreted as restriction of the present utility model.
In description of the present utility model, it will be appreciated that, term " longitudinally ", " laterally ", " on ", D score,The side of the instruction such as 'fornt', 'back', " left side ", " right side ", " vertically ", " level ", " top ", " end " " interior ", " outward "Position or position relationship are based on orientation shown in the drawings or position relationship, are only that this practicality is for convenience of description newType and simplified characterization, instead of instruction or the hint device of indication or element must have specific orientation, withSpecific orientation structure and operation, therefore can not be interpreted as restriction of the present utility model.
In description of the present utility model, unless otherwise prescribed and limit, it should be noted that, term " peaceDress ", " being connected ", " connection " should be interpreted broadly, and for example, can be mechanical connection or electrical connection, also canTo be the connection of two element internals, can be to be directly connected, also can indirectly be connected by intermediary,For the ordinary skill in the art, can understand as the case may be specifically containing of above-mentioned termJustice.
Key problem in technology difficult point
1, intermiscibility problem or the stability problem of methyl alcohol and gasoline, diesel oil: the similar alcohols of methyl alcohol is allWell cosolvent, and isomery alcohol analogy n-alkanol class better effects if, carbon number is larger, fluxing performanceBetter.
2, vapour lock problem or methanol gasoline saturated vapour pressure rising problem: through testing for a long time and scienceResearch, reduces the main path of methanol gasoline saturated vapour pressure and is the material with gasoline or the formation of methanol minus deviationOffset and slow down the overgauge between methanol gasoline, finally realizing the reduction of methanol gasoline saturated vapour pressure.Except the method for minus deviation additive, in actual production and allocation process, also can pass through etherified gasoline, weightUrge between gasoline, aromatisation gasoline and heavy petrol and being in harmonious proportion in advance according to a certain percentage, the gasoline after being in harmonious proportionSaturated vapour pressure is reduced to lower numerical value.
By adding:
Methyl alcohol, secondary octanol, isoamyl alcohol, 2-methybutane, mixed alcohol, MTBE, anticorrisive agent JF-100
The high clean direct motor petrol of M15: by the methyl alcohol of 13-15%, the additive of 1-2%, 85% one-tenthProduct oil or component oil mix, and do not need to change the electric injection system of engine, can directly substitute GB 93#,97# gasoline uses, also can with the international 93# of arbitrary proportion, 97# gasoline, and E93#, E97# ethanolGasoline mixes and uses, and do not affect result of use, and indices meets national standard completely, therefore can be betterBe applied to automobile;
The high clean direct motor petrol of M25: by the methyl alcohol of 23-25%, the additive of 1-2%, 75% one-tenthProduct oil or component oil mix;
The high clean direct motor petrol of M35: by the methyl alcohol of 33-35%, the additive of 1-2%, 65% one-tenthProduct oil or component oil mix.
As shown in Figure 1, be the utility model general illustration, comprising: secondary octanol tank, isoamyl alcohol tank, 2-Methybutane tank, mixed alcohol tank, methyl tertiary butyl ether(MTBE) tank, anticorrisive agent JF-100 tank, methyl alcohol additive tank,Methanol tank, denatured alcohol tank, product tank, methanol vapor oil tank, DCS control tank and DCS controls platform;
Described secondary octanol tank delivery outlet connects methyl alcohol additive tank input port, and described isoamyl alcohol tank delivery outlet connectsMethyl alcohol additive tank input port, described 2-methybutane tank delivery outlet connects methyl alcohol additive tank input port, instituteState isoamyl alcohol tank delivery outlet and connect methyl alcohol additive tank input port, described mixed alcohol tank delivery outlet connects methyl alcohol to be addedAgent tank input port, described isoamyl alcohol tank delivery outlet connects methyl alcohol additive tank input port, described methyl tertbutylEther tank delivery outlet connects methyl alcohol additive tank input port, and described isoamyl alcohol tank delivery outlet connects methyl alcohol additive tankInput port, described anticorrisive agent JF-100 tank delivery outlet connects methyl alcohol additive tank input port, described isoamyl alcoholTank delivery outlet connects methyl alcohol additive tank input port, secondary octanol, isoamyl alcohol, 2-methybutane, mixed alcohol, firstBase tertbutyl ether, anticorrisive agent JF-100 are thoroughly mixed to form methyl alcohol additive, institute in methyl alcohol additive tankState methyl alcohol additive tank delivery outlet and connect denatured alcohol tank input port, described methanol tank delivery outlet connects denatured alcohol tankInput port, methyl alcohol additive and methyl alcohol are thoroughly mixed to form denatured alcohol in denatured alcohol tank, described denatured alcohol tankDelivery outlet is connected methanol vapor oil tank input port with product tank delivery outlet, described denatured alcohol tank delivery outlet control valveControl tank with product tank delivery outlet control valve by DCS denatured alcohol and product oil carried out to married operation,Form methanol gasoline, be input to methanol vapor oil tank.
Between secondary octanol tank delivery outlet and methyl alcohol additive tank input port, the first control valve is set, at isoamyl alcoholBetween tank delivery outlet and methyl alcohol additive tank input port, the second control valve is set, at 2-methybutane tank delivery outletAnd the 3rd control valve is set between methyl alcohol additive tank input port, in mixed alcohol tank delivery outlet and methyl alcohol additive tankThe 4th control valve is set, at methyl tertiary butyl ether(MTBE) MTBE tank delivery outlet and methyl alcohol additive between input portThe 5th control valve is set between tank input port, defeated at anticorrisive agent JF-100 tank delivery outlet and methyl alcohol additive tankThe 6th control valve is set, delivery outlet and onychexallaxis after methyl alcohol additive tank and methanol tank parallel connection between entranceThe 7th control valve is set, at denatured alcohol tank delivery outlet and DCSDistributedControl between alcohol tank input portSystem controls between tank input port the 8th control valve is set, and controls tank at product tank delivery outlet and DCSThe 9th control valve is set between input port, controls between tank delivery outlet in methanol vapor oil tank input port and DCSThe tenth control valve is set, and described DCS control tank is controlled platform by DCS and is controlled, described the first controlValve to the ten control valves processed are controlled by inner separately MCU circuit, described MCU circuit signalEnd connects DCS and controls bracket signal control end;
The beneficial effect of technique scheme is: the methyl alcohol additive forming by multiple compounds and methyl alcohol are mixedAfter closing, form denatured alcohol, thereby prepare methanol gasoline, realized quick methanol by automation controlGasoline, has improved production efficiency, economizes on resources, and environment-friendly high-efficiency, safe preparation process.
As shown in Figure 2, each control valve of the described first to the tenth control valve comprises: moving valve 3, flexiblePost 4, catch 5, electromagnetic component 7, brute spring 8;
By seal bootr, moving valve 3, telescopic mast 4, catch 5, electromagnetic component 7, spring 8 are covered on to conveyingOn pipeline 2, described moving valve 3 afterbodys connect telescopic mast 4, and described telescopic mast 4 is ferromagnetic parts, is stretchingContracting post 4 sidewalls arrange catch 5, between seal bootr inner surface and described catch 5, brute spring 8 are installed,Drive telescopic mast 4 by brute spring 8, promote moving valve 3 conveyance conduit 2 is closed, described electromagnetism portionPart 7 control ends connect MCU circuit control end, and described pressure sensor signal collection terminal is arranged on carrier pipeRoad 2 delivery outlets, the force value at collection delivery outlet position, makes the force value of output flow keep constant, MCUCircuit signal collection terminal Bonding pressure sensor signal output. At catch 5 outward flanges, column 6 is set, instituteState column 6 and skid off catch 5 for preventing brute spring 8, described brute spring 8, column 6 and catch 5Along telescopic mast 4 relative positions, brute spring 8 ', column 6 ' and catch 5 ' are set.
Also comprise lug boss 1; Described moving valve 3 front ends are taper, and described conveyance conduit 2 is at moving valve 3Front end relative position arranges lug boss 1, and the taper of described lug boss 1 and described moving valve 3 front ends matches,Can ensure in the time that moving valve is closed conveyance conduit 2, ensure not leak.
Also comprise valve pool 9; Between moving valve 3 and telescopic mast 4, valve pool 9 is set, described valve pool 9 is defeatedSend on pipeline 2 and form projection, in the time that moving valve 3 is opened conveyance conduit 2, can open moving valve 3 completely,Oil product is exported smoothly.
Described electromagnetic component 7 is made up of solenoid.
The beneficial effect of technique scheme is: by control valve, outputting material is controlled in real time, ensuredIn preparation process, it is accurate that material adds, and ensure the safe and efficient of the course of work.
As shown in Figure 3, described DCS control platform comprises: LCD display, chief engineer station, historyData station, performance station, communication interface station, the first to the 5th operator station and engineer station;
LCD display signal end connects chief engineer's display end of standing, described LCD display signal endAlso connect historical data station display end, described LCD display signal end also switching performance station shows letterNumber end, described LCD display signal end is connecting communication Interface Station display end also, described chief engineerThe control signal of standing end connects bridge one end by Ethernet interface, the described bridge other end attended operation person control of standingSignal end, the described bridge other end also connects engineer station's control signal end, the control of described the first operator stationSignal end connects first and controls rack control end, and described first controls the control that rack signal end connects methanol tankValve signal control end, described the second operator station control signal end also connects the second control rack control end, instituteState the control valve signal controlling end that the second control rack signal end connects methyl alcohol additive tank, described the 3rd operationMember station control signal end also connects the 3rd and controls rack control end, and the described the 3rd controls rack signal end connects intoThe control valve signal controlling end of product oil tank, described the 4th operator station control signal end also connects the 4th controllerCabinet control end, the described the 4th controls the control valve signal controlling end that rack signal end connects denatured alcohol tank, described inThe 5th operator station control signal end also connects the 5th and controls rack control end, and the described the 5th controls rack signalEnd connects the control valve signal controlling end of methanol vapor oil tank, and the described first to the 5th operator station control end connectsEngineer station's control end.
Also comprise: the 6th operator station control signal end connects the 6th and controls rack control end described the 6th controlRack signal end processed connects the control valve signal controlling end of secondary octanol tank, and the 7th operator station control signal end connectsConnect the 7th and control rack control end, the described the 7th controls the control valve signal that rack signal end connects isoamyl alcohol tankControl end, the 8th operator station control signal end connects the 8th and controls rack control end, described the 8th controllerCabinet signal end connects the control valve signal controlling end of 2-methybutane tank, and the 9th operator station control signal end connectsConnect the 9th and control rack control end, the described the 9th controls the control valve signal control that rack signal end connects mixed alcohol tankSystem end, the tenth operator station control signal end connects the tenth and controls rack control end, and the described the tenth controls rackSignal end connects the control valve signal controlling end of methyl tertiary butyl ether(MTBE) tank, the 11 operator station control signal endConnect the 11 and control rack control end, the described the 11 controls rack signal end connects anticorrisive agent JF-100The control valve signal controlling end of tank, described the 6th to the 11 operator station control end connects engineer station and controlsEnd.
The beneficial effect of technique scheme is: control platform to preparing for methanol gasoline by DCSControl booster circuit and carry out entirety control, hold the accuracy of preparation process from the overall situation, and can improve lifeProductive rate.
As shown in Figure 4, described methyl alcohol additive tank, denatured alcohol tank comprise: sleeve 10, fixed leg 11,Support bar 13, flabellum 14;
Described sleeve 10 is arranged on tank body inner side, will overlap by some fixed legs 11 that are looped around tank interiorCylinder 10 is fixed on tank body inner side, in tank body conveyance conduit 2 input ports and quill to support bar 13 is installed,Described support bar 13 one end are fixed on the input port place of conveyance conduit 2, and described support bar 13 other ends are installedFlabellum 14, makes the material of tank interior mix more abundant by flabellum 14 rotations.
Also comprise recurrent canal 12; Delivery outlet one side at tank body arranges some U-shaped recurrent canals 12, described in returnReturn pipe 12 input ports are connected to tank body middle part.
Described recurrent canal 12 inside arrange turbine flabellum, and the material of recurrent canal 12 inside is carried, and addSpeed mix and blend.
The beneficial effect of technique scheme is: by the transformation to tank body, make compound process moreRapidly and efficiently.
As shown in Figure 5, described MCU circuit comprises: booster circuit, constant voltage circuit, pwm pulse electricityRoad and adjusting control circuit;
A-battery group connects booster circuit input, and described booster circuit boost terminal connects constant voltage circuit inputEnd, described constant voltage circuit output connects pwm pulse circuit input end, and described pwm pulse circuit is defeatedGo out end and connect adjusting control circuit input, described adjusting control circuit signal output part connects the electricity of control valveMagnet assembly.
Described booster circuit comprises: battery pack, the first switch, the first resistance, the second resistance, the 3rd resistance,The first electric capacity, the second electric capacity, the first diode, the second diode, the first triode, the second triode,Transformer;
Battery anode connects first switch one end, and the described first switch other end connects respectively the first resistance oneEnd and the second transistor collector, the described first resistance other end connects respectively the first transistor base and secondResistance one end, the described second resistance other end connects first electric capacity one end, and the described first electric capacity other end connectsTransformer is inputted 1 end, and described the first transistor collector connects the second transistor base, described the one or three utmost pointPipe emitter stage connection transformer is inputted 2 ends, and described the second transistor emitter connection transformer is inputted 1 end,Described battery pack negative pole connection transformer is inputted 2 ends, and described transformer is exported 1 end, and to connect the first diode negativeThe utmost point, described the first diode cathode connects respectively second electric capacity one end and the 3rd resistance one end, described transformerExport 2 ends and connect respectively the second electric capacity other end and the second tunnel diode negative pole, described the 3rd resistance anotherEnd connects the second tunnel diode positive pole, and described the second tunnel diode connects constant voltage circuit input.
The beneficial effect of technique scheme is: can realize from low-voltage to high-tension by booster circuitTransition, saves energy and reduce the cost thereby realize, and without continuing to provide high voltage source, thereby ensures that the operation of control valve hasEffect property.
Described adjusting control circuit comprises: solenoid M1, the 4th resistance, the 5th resistance, the 6th resistance,The 3rd diode, the 4th diode, the 3rd triode;
Described solenoid one end connects the 3rd diode cathode, and described the 3rd diode cathode connects respectively theFour resistance one end and the 3rd triode source electrode, described the 4th resistance other end connects the solenoid other end, instituteState the 3rd diode cathode and also connect the 5th resistance one end, it is defeated that described the 5th resistance other end connects constant voltage circuitGo out end, described the 5th resistance one end also connects the 3rd electric capacity one end, described the 3rd electric capacity other end ground connection, instituteState pwm pulse circuit signal output and connect the 6th resistance one end, described the 6th resistance other end connects theThree triode grids, described the 3rd triode the 4th diode in parallel, described the 3rd triode grounded drain.
Also comprise crystal oscillator X1, the signal end of described crystal oscillator X1 connects pwm pulse circuitOscillator signal end, carries out clock control by crystal oscillator X1.
The beneficial effect of technique scheme is: by adjusting control circuit, the solenoid of control valve is carried outControl, the output flow of adjusting control valve in real time, thus make preparation process more accurate.
As shown in Figure 6, described control valve also comprises: semiconductor gas sensor, analog to digital conversion circuit, letterNumber modulate circuit, central processing unit and timer;
Described semiconductor gas sensor signal sending end connection mode number conversion circuit input end, described modulus turnsChange circuit output end and connect signal conditioning circuit input, described signal conditioning circuit output connects centreReason device signal end, described CPU time signal receiving end connection timer signal output part.
Whether there is gas leak phenomenon around by semiconductor gas sensor Real-time Collection control valve, if gas is denseDegree reaches preset value, and central processing unit carries out rupturing operation or alarm operation, by timer, gas is let outThe leakage time calculates and timing.
The beneficial effect of technique scheme is: by gas sensor to control valve Leakage Gas feelings aroundCondition is carried out Real-Time Monitoring, thereby ensures production safety.
Between each control valve and DCS control platform, analog signal input card is set and carries out data acquisition behaviourDo, in the time operating control, carry out output signal operation by on-off output card.
Analog input and output card or switching value input card are NT200 series.
At secondary octanol tank, isoamyl alcohol tank, 2-methybutane tank, mixed alcohol tank, methyl tertiary butyl ether(MTBE) tank, anticorrosionAgent JF-100 tank, methyl alcohol additive tank, methanol tank, denatured alcohol tank, product tank, methanol vapor oil tank,DCS controls tank mounting temperature sensor, pressure sensor and flow sensor respectively, to temperature value, tankBody force value and flow value carry out Real-Time Monitoring. Tank base at methanol vapor oil tank arranges unloading port, described inMethanol vapor oil tank is double-deck setting, ensures methanol vapor oil tank safety and stability.
Main research:
1, innovate by additive preparation technique, solve the emulsification of chance water stratification, cooling that methanol gasoline existsDifficulty in starting, high temperature vapour lock, corrode the technical barrier of the aspects such as swelling, power declines, oil consumption is increased.
2, by the problem of the aspects such as storage, transport, use. Make the storage-life of methanol gasoline reach 12More than month.
3, solve metal, rubber, plastic or other material corrosivity, the swellability etc. in methanol gasoline comprehensivelyAdaptability problem, by the analysis to its influence factor, grasping material is rigid rule.
4, solve first friction, the wearing and tearing of methanol gasoline to engine fuel supply system motion parts comprehensivelyThe impact of performance.
5, can greatly reduce the exhaust emissions of methanol gasoline to the impact of environment, and with the international oil phase ratio of labelCan reduce tail gas pollution discharges more than 40%.
Project construction process
(1) preparation of methanol gasoline additive
Start allotment pump, in blend tank, quantitatively input respectively 1#, 2#, 3# raw material storage. Start blendingDevice is stirred, mixed liquor leave standstill stable after sampling, after samples met indices by methanol gasolineAdditive delivery is to additive basin
(2) preparation of denatured alcohol
Open allotment pump, add methyl alcohol and methanol gasoline additive to blend tank. Starting mixing device is adjustedJoin evenly, sampling after mixed liquor is stable, after samples met indices carries denatured methyl alcohol qualified preparationTo denatured methyl alcohol basin.
3) oil of paying of methanol gasoline operates
According to the quantity of compounding methanol gasoline and ratio, calculate the consumption of denatured methyl alcohol and GB gasoline product,Control automatic governing M15 methanol gasoline finished product by DCS.
Innovate by additive preparation technique, solve the emulsification of chance water stratification, cold-starting that methanol gasoline existsThe technical barrier of the aspects such as tired high temperature vapour lock corrosion is swelling, power declines, oil consumption is increased.
Project research characteristic:
Solve the Difficulty that automobile uses methanol gasoline, the stability that mixes, the winter of realizing methyl alcohol and gasolineLow-temperature cool starting, the high problems such as vapour lock that form of saturated vapor pressure in summer.
Realize existing automobile and do not change under the prerequisite of engine structure, gasoline, methanol gasoline, ethanol petrol canArbitrary proportion mixes the versatility using; Being related to people's livelihood reality, is the powerful mean of realizing energy-saving and emission-reduction.
The utility model adopts the theory of catalytic combustion methanol gasoline, studies theoretically whole additive complexityMechanism, the composition of formula are carried out methanol gasoline use work under theoretical research is instructed, and progressively form completeRipe methanol gasoline production mechanism.
In the description of this description, reference term " embodiment ", " some embodiment ", " example ",The description of " concrete example " or " some examples " etc. means the concrete spy in conjunction with this embodiment or example descriptionLevy, structure, material or feature be contained at least one embodiment of the present utility model or example. At thisIn description, the schematic statement of above-mentioned term is not necessarily referred to identical embodiment or example. And,Specific features, structure, material or the feature described can be in any one or more embodiment or examplesIn with suitable mode combination.
Although illustrated and described embodiment of the present utility model, those of ordinary skill in the art canUnderstand: in the situation that not departing from principle of the present utility model and aim, can carry out multiple to these embodimentVariation, amendment, replacement and modification, scope of the present utility model is limited by claim and equivalent thereof.

Claims (3)

1. a control booster circuit of preparing for methanol gasoline, is characterized in that, comprising: battery pack,The first switch, the first resistance, the second resistance, the 3rd resistance, the first electric capacity, the second electric capacity, the one or two utmost pointPipe, the second tunnel diode, the first triode, the second triode, transformer;
Battery anode connects first switch one end, and the described first switch other end connects respectively the first resistance oneEnd and the second transistor collector, the described first resistance other end connects respectively the first transistor base and secondResistance one end, the described second resistance other end connects first electric capacity one end, and the described first electric capacity other end connectsTransformer is inputted 1 end, and described the first transistor collector connects the second transistor base, described the one or three utmost pointPipe emitter stage connection transformer is inputted 2 ends, and described the second transistor emitter connection transformer is inputted 1 end,Described battery pack negative pole connection transformer is inputted 2 ends, and described transformer is exported 1 end, and to connect the first diode negativeThe utmost point, described the first diode cathode connects respectively second electric capacity one end and the 3rd resistance one end, described transformerExport 2 ends and connect respectively the second electric capacity other end and the second tunnel diode negative pole, described the 3rd resistance anotherEnd connects the second tunnel diode positive pole, and described the second tunnel diode connects constant voltage circuit input.
2. the control booster circuit of preparing for methanol gasoline according to claim 1, its feature existsIn, described the first triode is 3DG6.
3. the control booster circuit of preparing for methanol gasoline according to claim 1, its feature existsIn, described the second triode is 3AX31.
CN201520931164.6U 2015-11-20 2015-11-20 A control boost circuit for methanol gasoline preparation Expired - Fee Related CN205260969U (en)

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Application Number Priority Date Filing Date Title
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Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201520931164.6U CN205260969U (en) 2015-11-20 2015-11-20 A control boost circuit for methanol gasoline preparation

Publications (1)

Publication Number Publication Date
CN205260969U true CN205260969U (en) 2016-05-25

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Country Status (1)

Country Link
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CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20160525

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