CN105545685A - Environment-friendly efficient energy-saving air compression apparatus - Google Patents

Environment-friendly efficient energy-saving air compression apparatus Download PDF

Info

Publication number
CN105545685A
CN105545685A CN201610043661.1A CN201610043661A CN105545685A CN 105545685 A CN105545685 A CN 105545685A CN 201610043661 A CN201610043661 A CN 201610043661A CN 105545685 A CN105545685 A CN 105545685A
Authority
CN
China
Prior art keywords
air
supercharging shell
hole
magnetic piston
sealing
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.)
Pending
Application number
CN201610043661.1A
Other languages
Chinese (zh)
Inventor
徐大钟
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.)
Individual
Original Assignee
Individual
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 Individual filed Critical Individual
Priority to CN201610043661.1A priority Critical patent/CN105545685A/en
Publication of CN105545685A publication Critical patent/CN105545685A/en
Pending legal-status Critical Current

Links

Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F04POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
    • F04BPOSITIVE-DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS
    • F04B35/00Piston pumps specially adapted for elastic fluids and characterised by the driving means to their working members, or by combination with, or adaptation to, specific driving engines or motors, not otherwise provided for
    • F04B35/04Piston pumps specially adapted for elastic fluids and characterised by the driving means to their working members, or by combination with, or adaptation to, specific driving engines or motors, not otherwise provided for the means being electric
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F04POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
    • F04BPOSITIVE-DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS
    • F04B39/00Component parts, details, or accessories, of pumps or pumping systems specially adapted for elastic fluids, not otherwise provided for in, or of interest apart from, groups F04B25/00 - F04B37/00
    • F04B39/0005Component parts, details, or accessories, of pumps or pumping systems specially adapted for elastic fluids, not otherwise provided for in, or of interest apart from, groups F04B25/00 - F04B37/00 adaptations of pistons
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F04POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
    • F04BPOSITIVE-DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS
    • F04B39/00Component parts, details, or accessories, of pumps or pumping systems specially adapted for elastic fluids, not otherwise provided for in, or of interest apart from, groups F04B25/00 - F04B37/00
    • F04B39/0005Component parts, details, or accessories, of pumps or pumping systems specially adapted for elastic fluids, not otherwise provided for in, or of interest apart from, groups F04B25/00 - F04B37/00 adaptations of pistons
    • F04B39/0016Component parts, details, or accessories, of pumps or pumping systems specially adapted for elastic fluids, not otherwise provided for in, or of interest apart from, groups F04B25/00 - F04B37/00 adaptations of pistons with valve arranged in the piston
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F04POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
    • F04BPOSITIVE-DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS
    • F04B39/00Component parts, details, or accessories, of pumps or pumping systems specially adapted for elastic fluids, not otherwise provided for in, or of interest apart from, groups F04B25/00 - F04B37/00
    • F04B39/10Adaptations or arrangements of distribution members
    • F04B39/1006Adaptations or arrangements of distribution members the members being ball valves
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F04POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
    • F04BPOSITIVE-DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS
    • F04B39/00Component parts, details, or accessories, of pumps or pumping systems specially adapted for elastic fluids, not otherwise provided for in, or of interest apart from, groups F04B25/00 - F04B37/00
    • F04B39/10Adaptations or arrangements of distribution members
    • F04B39/1013Adaptations or arrangements of distribution members the members being of the poppet valve type
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F04POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
    • F04BPOSITIVE-DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS
    • F04B39/00Component parts, details, or accessories, of pumps or pumping systems specially adapted for elastic fluids, not otherwise provided for in, or of interest apart from, groups F04B25/00 - F04B37/00
    • F04B39/10Adaptations or arrangements of distribution members
    • F04B39/102Adaptations or arrangements of distribution members the members being disc valves
    • F04B39/1026Adaptations or arrangements of distribution members the members being disc valves without spring
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F04POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
    • F04BPOSITIVE-DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS
    • F04B39/00Component parts, details, or accessories, of pumps or pumping systems specially adapted for elastic fluids, not otherwise provided for in, or of interest apart from, groups F04B25/00 - F04B37/00
    • F04B39/12Casings; Cylinders; Cylinder heads; Fluid connections
    • F04B39/121Casings
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F04POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
    • F04BPOSITIVE-DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS
    • F04B39/00Component parts, details, or accessories, of pumps or pumping systems specially adapted for elastic fluids, not otherwise provided for in, or of interest apart from, groups F04B25/00 - F04B37/00
    • F04B39/16Filtration; Moisture separation
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F04POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
    • F04BPOSITIVE-DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS
    • F04B49/00Control, e.g. of pump delivery, or pump pressure of, or safety measures for, machines, pumps, or pumping installations, not otherwise provided for, or of interest apart from, groups F04B1/00 - F04B47/00
    • F04B49/06Control using electricity

Abstract

The invention provides an environment-friendly efficient energy-saving air compression apparatus. An electromagnetic coil is mounted in a protecting shell of the environment-friendly efficient energy-saving air compression apparatus; the electromagnetic coil is located outside a lower portion of a pressurization shell; an annular inner end of the protecting shell is fixed outside the pressurization shell; an air outlet valve is fixed in a center hole of the pressurization shell; a pushing spring and a magnetic piston are arranged in the pressurization shell, and the pushing spring lies on the magnetic piston; sealing caps seal air inlet channels of an air inlet cavity and a squeezing cavity; an air distribution limiting plate is fixed in a limiting hole of an upper end of the magnetic piston, and a sealing cone or a sealing ball is mounted in an inner taper hole of the magnetic piston. The environment-friendly efficient energy-saving air compression apparatus is compact in structure, low in vibration, strong in power, high in electric energy utilization rate, high in air compression efficiency, favorable in market prospect and advantageous for industrial production.

Description

Environment-friendly high-efficiency energy-saving pneumatic plant
Technical field
The present invention relates to a kind of compressed-air actuated environment-friendly high-efficiency energy-saving pneumatic plant.
Background technique
Traditional air compressor is the air compressor pressurized air adopting connecting rod, and the volume of the air compressor of connecting rod is large, inefficiency.For this reason, we have devised the high compressed air unit of little, the compressed-air actuated efficiency of volume.
Summary of the invention
A kind of utilization rate of electrical is high in order to provide for the object that the present invention relates to, the manufacture of the environment-friendly high-efficiency energy-saving pneumatic plant of Efficient Compression air and method thereof.
For achieving the above object, environment-friendly high-efficiency energy-saving pneumatic plant of the present invention mainly comprises protecting crust, electromagnetic coil, supercharging shell, inlet hole, filter cleaner, sealing cone or ball sealer, sealed cap, promotion spring, answers magnetic piston, divides gas confinement plate, internal taper hole, vent, gas outlet valve, field controller; Or described environment-friendly high-efficiency energy-saving pneumatic plant mainly comprises protecting crust, electromagnetic coil, supercharging shell, inlet hole, filter cleaner, sealing cone or ball sealer, sealed cap, promotion spring, answers magnetic piston, divides gas confinement plate, internal taper hole, vent, gas outlet valve, field controller, electronic remote controller.
In protecting crust, be provided with electromagnetic coil, electromagnetic coil is fixed on the lower part outside supercharging shell, and protecting crust is fixed on the outside protection electromagnetic coil of the bottom of supercharging shell; Below the outside of protecting crust, one side is fixed with foot rest, and the lower end of foot rest is fixed on above gas holder, and the lower end of foot rest is lower than the position of lower end of filter cleaner being arranged on supercharging shell lower end.
The circuit connecting electromagnetic coil is connected with field controller, and the circuit of field controller is connected with insulated electric conductor, and field controller is arranged in protecting crust; Or, the circuit connecting electromagnetic coil is connected with field controller, the circuit of field controller is connected with electronic remote controller, and electronic remote controller is connected with insulated electric conductor, and the electronic signal receiver of field controller, electronic remote controller and electronic remote controller is arranged in protecting crust.
Sealed cap is installed in supercharging shell, promotes spring, answer magnetic piston, point gas confinement plate, promote spring fitting at the lower part of the inner chamber of supercharging shell, answer magnetic piston to be arranged on the upper part of the inner chamber of supercharging shell, promote spring top and be pressed in the lower end of answering magnetic piston; Answer the spacing hole internal fixtion of the upper end portion of magnetic piston to have a point water confinement plate, answer magnetic piston can slide up and down in the inner chamber of supercharging shell; A point gas confinement plate is had answering the spacing hole internal fixtion of magnetic piston upper end, the annular sealing surface of the sealing neck end in point compression of answering the upper part of magnetic piston there is the inner sealing surface of sealed cap to coordinate with it, sealed cap is being answered between point compression of magnetic piston and point gas confinement plate and can moved up and down, and sealed cap coordinates the gas-entered passageway that can seal or open the extrusion chamber entered in supercharging shell with answering the annular sealing surface of magnetic piston; On the periphery of the sealing neck of the lower end in supercharging shell, cover has sealed cap, and the periphery of the sealing neck of the lower end of sealed cap in supercharging shell can slide up and down; Inner sealing surface in sealed cap coordinates the gas-entered passageway that can seal or open and enter in supercharging shell with the annular sealing surface of sealing neck end; When answering magnetic piston stroking upward, the inner chamber part of answering the supercharging shell of magnetic piston lower part is air-inlet cavity; When answering magnetic descent of piston, the inner chamber part of answering the supercharging shell of magnetic piston upper part is extrusion chamber.Be provided with filter cleaner in the lower end of supercharging shell, the air outlet hole of filter cleaner communicates with the inlet hole of supercharging shell lower end; Be provided with gas outlet valve in the upper end of supercharging shell, the lower part of gas outlet valve is fixed in the center hole of the overlying one end of supercharging shell; The part that the upper-end surface of supercharging shell is exposed in the upper end of gas outlet valve is connected with gas holder by flexible pipe or hard tube.
The material of described protecting crust is the material of a type in metal, plastics, nylon, glass fibre reinforced plastics or the composite material of several types; The material of a type in material employing metal, plastics, nylon and the glass fibre reinforced plastics of hollow valve body and supercharging shell or the composite material of several types; Seal the material of a type in cone and ball sealer employing metal, plastics, nylon and rubber or the composite material of several types; The material of a type in material employing metal, plastics, rubber, nylon and the glass fibre reinforced plastics of sealed cap or the composite material of several types; The material of magnetic piston is answered to be can the material of hard to bear magnetic field suction.
Described protecting crust is the hollow cavity of annular, and hollow cavity has string holes; Electromagnetic coil and field controller are installed in hollow cavity, or, electromagnetic coil, field controller and electronic remote controller are installed in hollow cavity; The inner of the annular housing of hollow cavity is fixed on supercharging shell; String holes is the hole allowing insulated electric conductor pass.
For the ease of protecting crust processing and be convenient to accessory to load in protecting crust, described protecting crust is the assemblying body after segmentation, and after the annular position of protecting crust is divided into two parts, recombinant is together.
The inner chamber of described supercharging shell is circular cylindrical cavity, and the cylndrical surface of columniform cavity is smooth curved surface; Upper end on the center line of inner chamber has that center hole passes supercharging shell, lower end has inlet hole to pass supercharging shell; There is sealing neck protruding upward at the middle part of the lower end in supercharging shell, the upper end portion of sealing neck is annular sealing surface, the inside of sealing neck is inlet hole, when the inner sealing surface of sealed cap does not seal with annular sealing surface, inlet hole is communicated with air-inlet cavity by air passing hole, and the inner sealing surface of sealed cap coordinates with the annular sealing surface of sealing neck.
Described gas outlet valve comprises hollow valve body and sealing is bored or ball sealer, and hollow valve body is hollow tubular, and internal taper hole is in the middle part of the inner chamber of hollow tubular or middle and lower part, and the internal diameter of the upper part of the internal taper hole in hollow tubular internal diameter that is large, lower part is little; There is return-air sealed end the lower end of hollow valve body, the lower end surface of return-air sealed end in the lower end of hollow valve body, upper-end surface is internal taper hole, the large end of internal taper hole communicates with the upper end of gas outlet valve, small end communicates with the lower end of gas outlet valve, and the inner conical surface of internal taper hole is provided with sealing cone or ball sealer.Described internal taper hole is the circular hole having tapering, the face of circular hole is inner conical surface, inner conical surface and the mating spherical surfaces sealing male cone (strobilus masculinus) or the ball sealer of boring, can inner conical surface be sealed under the effect of the gravity of sealing cone or ball sealer self, inner conical surface can be opened with sealing by suction when cone or ball sealer have above suction and bore or the passage of ball face sealing of ball sealer sealing; The air pressure sealed above cone or ball sealer is larger, and the gluing, sealing effect of sealing cone or ball sealer and inner conical surface is better; Can open when being with the air of pressure from the endoporus of hollow valve body lower end inner conical surface with sealing bore or ball sealer sealing and form passage.
For the ease of supercharging shell processing and be convenient to accessory to load in supercharging shell, described supercharging shell is the assemblying body after segmentation; The upper end of the circular cylindrical cavity part in supercharging shell is divided into two sections, the main body that the upper part of segmentation place is pump cover, lower part is supercharging shell, center hole is on pump cover, and inlet hole is at the middle part of the main body lower end of supercharging shell, and the body combination of pump cover and supercharging shell becomes a composite entity; Or, the lower end of the circular cylindrical cavity part in supercharging shell is divided into two sections, the main body that the lower part of segmentation place is pump cover, upper part is supercharging shell, inlet hole is at the middle part of pump cover, center hole is at the middle part of the upper end of the main body of supercharging shell, and the body combination of pump cover and supercharging shell becomes a composite entity.
Described magnetic piston of answering is columniform iron core, the limited location hole, position of the center line of columniform iron core, point compression and vent; The limited location hole, upper end of columniform iron core is a point compression below spacing hole, is vent below the middle part of point compression; The inner ring of point compression is sealing neck, and the inside of sealing neck is one section above of vent, and the annular sealing surface of sealing neck upper end is lower than the upper end of the periphery of point compression; When answering the upper inner sealing surface not installing sealed cap and sealed cap of the periphery of the sealing neck of magnetic piston not seal with annular sealing surface, vent communicates with answering a point compression for magnetic piston upper end; Spacing hole is used for a fixing point of gas confinement plate, and point compression is for disperseing the air that passes through and guiding air to enter air passing hole on sealed cap; The periphery of columniform iron core is smooth periphery, and smooth periphery has the annular groove of depression, and annular groove is embedded with seal ring; Periphery coordinates with the inner chamber of supercharging shell can the inner chamber of sealing type pressure shell, and can slide in the inner chamber of supercharging shell.Described spacing hole is the rounded face of circular hole circular hole is inlay a point gas confinement plate stationary plane, and the annular bottom surface of circular hole is the face that restriction point gas confinement plate inlays the degree of depth; A described point compression is divided into two sections, and the upper part of sealing neck is circular hole, and the exterior portion of sealing neck is the groove of ring, and the periphery of the periphery of circular hole and the groove of ring is connected, and circular hole communicates with vent; Described vent is the hole communicated with point compression.
Described annular sealing surface is the smooth sealing surface of ring, and annular sealing surface coordinates with the inner sealing surface in sealed cap in the upper end of the sealing neck of answering the upper end of sealing neck of magnetic piston to coordinate with the inner sealing surface of sealed cap and in the middle part of the lower end of the inner chamber of supercharging shell respectively; Described sealed cap is the circular pipe type cap body of top seal, and it is inner sealing surface that the inner top of sealed cap divides, and the cylindrical parts near inner sealing surface has air passing hole.
A described point of gas confinement plate is the plate having air passing hole, and the anchor ring being embedded in spacing hole is adjacent to the base ring face of spacing hole; Air passing hole can allow air pass through.
Described ball sealer is spherosome or oval ball, and the outer surface of spherosome or oval ball is sealing surface, and sealing surface is smooth sphere; Gravity by ball sealer self when the sphere of ball sealer and inner conical surface seal presses down and seals inner conical surface.
Described sealing cone is cone or cone cylinder, and the periphery of cone or cone cylinder is smooth male cone (strobilus masculinus); Gravity by ball sealer self when the male cone (strobilus masculinus) of sealing cone and inner conical surface seal presses down and seals inner conical surface.
Described field controller controls the controller that generates an electromagnetic field of electromagnetic coil, control time and the time length generated an electromagnetic field that electromagnetic field produces and after generating an electromagnetic field at every turn to the interval time generated an electromagnetic field again for the second time.
Described electronic remote controller connects and cuts off the circuit switch generated an electromagnetic field, and comprise the switch sections and electronic telecontrol part that switch on or off circuit, electronic telecontrol part comprises remote controller switch and electronic signal receiver; Remote controller switch is used for staff and carries with, and is convenient to staff and handles the normal work of environmental protection efficient energy-saving compressed air equipment and cut off the control circuit of environmental protection efficient energy-saving compressed air equipment; Described electronic remote controller can have in the present invention, also can not have.
Described filter cleaner is the filter of dust in filtered air and impurity, and the upper end of filter cleaner has on air outlet hole, vertical plane or curved surface and has suction port.
Described inlet hole be in air enters in supercharging shell extrusion chamber through via hole, in the center portion of sealing neck; There is annular sealing surface the upper end of the inlet hole in sealing neck, and when the annular sealing surface of the sealing neck of protecting crust lower end does not install sealed cap, air-inlet cavity communicates with inlet hole.
In air-inlet cavity, lay in air, in extrusion chamber, extrude air and produce air pressure; When entering air in extrusion chamber, air-inlet cavity communicates with extrusion chamber; When discharging air in extrusion chamber, air-inlet cavity is by sealing cone or ball sealer and answer the internal taper hole in magnetic piston seal and disconnect the gas-entered passageway entering extrusion chamber.
Described environment-friendly high-efficiency energy-saving pneumatic plant in compressed-air actuated process, control into air passageways and go out air passageways one-way check valve in there is no return spring; When air-inlet cavity enters air, the suction of answering magnetic piston stroking upward to produce opens the sealing of the sealing neck of sealed cap and supercharging shell lower end and the passage opened into air, is arranged on and answers the automatic decline return and close the passage entering air entered in extrusion chamber and seal under the effect of self gravitation of the sealing surface on the sealing neck on magnetic piston; When extrusion chamber enters air, being arranged on the sealing cone of the internal taper hole of gas outlet valve or ball sealer utilizes the gravity of self to make sealing cone or ball sealer decline return and the passage of closing the extrusion air on gas outlet valve seals automatically, answers magnetic descent of piston and makes to produce pressure in air-inlet cavity and promote to be arranged on to answer the up passage entering air entered in extrusion chamber of then opening of the sealed cap on the sealing neck of magnetic piston; When extrusion chamber is given vent to anger, under the effect of outlet pressure, promote sealing cone on the internal taper hole of gas outlet valve or ball sealer up and open the passage of giving vent to anger of gas outlet valve, be arranged on and answer the sealed cap on the sealing neck of magnetic piston to utilize the gravity of self to make sealed cap decline return and close and answer the passage entering air on magnetic piston to seal automatically.
In order to ensure that environment-friendly high-efficiency energy-saving pneumatic plant can normally work, there is electronic remote controller, adopt electronic remote controller to control connection and the cut-out of the connecting circuit of electromagnetic coil; There is no electronic remote controller, adopt the circuit switch connecting insulated electric conductor to control connection and the cut-out of the connecting circuit of electromagnetic coil.
Keep shape in order to ensure protecting crust to protect electromagnetic coil and be not easy distortion, the cavity of protecting crust manufactures the skeleton having support.
Air in the extrusion chamber promoting in supercharging shell to enable to answer magnetic piston enters gas outlet valve, adopts and promotes spring as promoting to answer magnetic piston stroking upward to compress air in extrusion chamber in air pressure air valve.
During use, the pipeline that the inlet end of the filter cleaner of environment-friendly high-efficiency energy-saving pneumatic plant and the air in air well export is connected.Have electronic remote controller, press the starting button of remote controller switch, the circuit of electronic remote controller and field controller connected by electronic signal receiver after receiving activating signal; There is no electronic remote controller, directly connect the power-on circuit of circuit switch and the field controller to be connected with insulated electric conductor; The power-on circuit that field controller connects electromagnetic coil generates an electromagnetic field; The attraction force that electromagnetic field produces pulls the pressure of answering magnetic piston overpowers to promote spring to move down, when answering magnetic piston to start descending, the sealed cap installed of the sealing neck of supercharging shell lower end descending return and close the gas-entered passageway entering air-inlet cavity under the effect of self gravitation, sealing cone in gas outlet valve or ball sealer descending return and seal the inner conical surface of gas outlet valve under the effect of the gravity of self, has cut off the outlet passageway of extrusion chamber; Answer magnetic piston when descending, the air of answering magnetic piston to promote to enter in air-inlet cavity and make air produce internal pressure, there is the air of pressure upwards wash the sealing of the inner sealing surface of annular sealing surface and sealed cap open from the upper end of answering the vent of magnetic piston to enter into sealing neck and continue up after sealed cap is shifted, enter in extrusion chamber after the air passing hole that annular is divided on the air passing hole on air drain, sealed cap and point gas confinement plate.
Answer magnetic descent of piston move to compression promote the compression stage of spring spacing time, the power-on circuit of field controller cutoff solenoid, electromagnetic field disappears, and answers magnetic piston up under the promotion promoting spring; When answering magnetic piston to start up, be arranged on and answer the sealed cap on the sealing neck of magnetic piston descending and close the gas-entered passageway that air enters extrusion chamber under the effect of the gravity of self; When answering magnetic piston stroking upward, answer the up of magnetic piston and make the air in extrusion chamber create pressure, have the air of pressure from the endoporus of the sealed end of gas outlet valve lower end enter into internal taper hole in gas outlet valve promote sealing cone or ball sealer up and open the sealing channel of gas outlet valve, make the air in extrusion chamber after gas outlet valve, enter into gas holder; Answer magnetic piston when up, magnetic piston is answered also to make to create pull of vacuum in air-inlet cavity, it is up and the annular sealing surface of the sealing neck upper end of supercharging shell lower end is separated with the inner sealing surface of sealed cap that pull of vacuum inhales motive sealing cap, and air to enter from filter cleaner through the air passing hole of inlet hole through sealed cap in the air-inlet cavity of answering below magnetic piston in supercharging shell.
Answer magnetic piston promote spring promotion under up put in place time, the sealed cap installed of the sealing neck of supercharging shell lower end descending return and close the gas-entered passageway entering air-inlet cavity under the effect of self gravitation, sealing cone in gas outlet valve or ball sealer descending return and seal the inner conical surface of gas outlet valve under the effect of the gravity of self, has cut off the outlet passageway of extrusion chamber; Now, the power-on circuit that field controller connects again electromagnetic coil generates an electromagnetic field again and to make to answer magnetic piston overpowers to promote the resistance of spring descending; The connection of circulation like this and cut off circuit, makes electromagnetic coil generate an electromagnetic field to pull to answer magnetic descent of piston and allows promoting spring and promote to answer magnetic piston stroking upward, constantly compressed air delivery in gas holder.
A manufacture method for environment-friendly high-efficiency energy-saving pneumatic plant, is characterized in that:
During fabrication, the material of a type in protecting crust employing metal, plastics, nylon, glass fibre reinforced plastics, rubber or the composite material manufacture of several types; Hollow valve body and supercharging shell adopt the material of a type in metal, plastics, nylon and glass fibre reinforced plastics or the composite material manufacture of several types; Seal the material of a type in cone and ball sealer employing metal, plastics, nylon and rubber or the composite material manufacture of several types; The material of a type in sealed cap employing metal, plastics, rubber, nylon and glass fibre reinforced plastics or the composite material manufacture of several types; Magnetic piston is answered to adopt the material manufacture of the hard to bear magnetic field suction of energy.
Protecting crust creates the hollow cavity of annular, and hollow cavity has string holes, and string holes creates the hole allowing insulated electric conductor pass; Electromagnetic coil and field controller are installed in hollow cavity, or electromagnetic coil, field controller and electronic remote controller are installed in hollow cavity; The inner of the annular housing of hollow cavity is fixed on calms the anger on shell.
Conveniently assemble, during fabrication, after protecting crust is divided into two-part manufacture from annular position, recombinant together for protecting crust.
The inner chamber of supercharging shell creates columniform cavity, and the periphery of columniform cavity creates smooth curved surface; Upper end on the center line of inner chamber manufacture have through supercharging shell center hole, lower end manufactures has inlet hole to pass supercharging shell; The middle part of the lower end in supercharging shell manufactures sealing neck protruding upward, the upper end portion of sealing neck creates annular sealing surface, the inside of sealing neck creates inlet hole, when the inner sealing surface of sealed cap does not seal with annular sealing surface, inlet hole is communicated with air-inlet cavity by air passing hole, and the inner sealing surface of sealed cap coordinates with the annular sealing surface of sealing neck.
Gas outlet valve creates hollow valve body and sealing is bored or ball sealer two-part, hollow valve body creates hollow tubular, internal taper hole is manufactured on middle part or the middle and lower part of the inner chamber of hollow tubular, and the internal diameter that the internal diameter that the upper part of the internal taper hole in hollow tubular manufactures is large, lower part manufactures is little; The lower end of hollow valve body manufactures return-air sealed end, the lower end surface of return-air sealed end is manufactured on the lower end of hollow valve body, upper-end surface creates internal taper hole, the large end of internal taper hole communicates with the upper end of gas outlet valve, small end communicates with the lower end of gas outlet valve, and the inner conical surface of internal taper hole is provided with sealing cone or ball sealer.Described internal taper hole creates the circular hole of tapering, the face of circular hole creates inner conical surface, can inner conical surface be sealed under the effect of the gravity of sealing cone or ball sealer self, inner conical surface can be opened with sealing by suction when cone or ball sealer have above suction and bore or the passage of ball face sealing of ball sealer sealing; The air pressure sealed above cone or ball sealer is larger, and the gluing, sealing effect of sealing cone or ball sealer and inner conical surface is better; Can open when being with the air of pressure from the endoporus of hollow valve body lower end inner conical surface with sealing bore or ball sealer sealing and form passage.
For the ease of supercharging shell processing and be convenient to accessory to load in supercharging shell, described supercharging shell create segmentation processing manufacture after assemblying body; The upper end of the circular cylindrical cavity part in supercharging shell is divided into two sections of manufactures, the main body that the upper part of segmentation place creates pump cover, lower part creates supercharging shell, center hole is manufactured on pump cover, inlet hole is manufactured on the middle part of the main body lower end of supercharging shell, and being combined into after the main body after pump cover and supercharging shell manufactures is a composite entity; Or, the lower end of the circular cylindrical cavity part in supercharging shell is divided into two sections of manufactures, the main body that the lower part of segmentation place creates pump cover, upper part creates supercharging shell, inlet hole is manufactured on the middle part of pump cover, center hole is manufactured on the middle part of the upper end of the main body of supercharging shell, and being combined into after the main body of pump cover and supercharging shell manufactures is a composite entity.
Answer magnetic piston to create columniform iron core, the position of the center line of columniform iron core manufactures limited location hole, point compression and vent; The upper end of columniform iron core manufactures limited location hole, and manufacturing below spacing hole has a point compression, and manufacturing below the middle part of point compression has vent; Divide the inner ring of compression to create sealing neck, the upper end portion of sealing neck creates annular sealing surface, and the upper-end surface of sealing neck creates the upper end of the periphery lower than point compression; When answering the upper inner sealing surface not installing sealed cap and sealed cap of the periphery of the sealing neck of magnetic piston not seal with annular sealing surface, vent communicates with answering a point compression for magnetic piston upper end; The periphery of columniform iron core creates smooth periphery, and smooth periphery manufactures the annular groove having depression, and annular groove is embedded with seal ring; Periphery coordinates with the inner chamber of supercharging shell can the inner chamber of sealing type pressure shell, and can slide in the inner chamber of supercharging shell.Described spacing hole creates circular hole, and the ring surface of circular hole creates inlays a point gas confinement plate stationary plane, and the annular bottom surface of circular hole creates the face that restriction point gas confinement plate inlays the degree of depth; A described point compression creates two sections, and the upper part of sealing neck creates circular hole, and the exterior portion of sealing neck creates the groove of ring, and the periphery of the periphery of circular hole and the groove of ring creates one, and circular hole communicates with vent; Described vent creates the circular hole communicated with point compression.
Described annular sealing surface creates the smooth sealing surface of ring, and the upper end of sealing neck in the middle part of the lower end being manufactured on the inner chamber of answering the upper end of sealing neck of magnetic piston to coordinate with the inner sealing surface of sealed cap and to be manufactured on supercharging shell respectively coordinates with the inner sealing surface in sealed cap; Described sealed cap creates the circular pipe type cap body of top seal, and the inner top of sealed cap divides and creates inner sealing surface, and the cylindrical parts manufacture near inner sealing surface has air passing hole.
Point gas confinement plate creates the plate of air passing hole, and the anchor ring being embedded in spacing hole is adjacent to the base ring face of spacing hole; Air passing hole created the hole of air.
Ball sealer creates spherosome or oval ball, and the outer surface of spherosome or oval ball creates sealing surface, and sealing surface creates smooth sphere; Gravity by ball sealer self when the sphere of ball sealer and inner conical surface seal presses down and seals inner conical surface.
Sealing cone creates cone or cone cylinder, and the periphery of cone or cone cylinder creates male cone (strobilus masculinus), and male cone (strobilus masculinus) coordinates with inner conical surface; Press down by sealing the gravity of boring self and seal inner conical surface when the male cone (strobilus masculinus) of ball sealer and inner conical surface seal.
Field controller creates and controls the controller that generates an electromagnetic field of electromagnetic coil, control time that electromagnetic field produces and the time that generates an electromagnetic field length and after generating an electromagnetic field at every turn to the interval time generated an electromagnetic field again for the second time.
Electronic remote controller creates to be connected and cuts off the circuit switch generated an electromagnetic field, and comprise the switch sections and electronic telecontrol part that switch on or off circuit, electronic telecontrol part comprises remote controller switch and electronic signal receiver; Described electronic remote controller can have in the present invention, also can not have.
Filter cleaner creates the filter of dust in filtered air and impurity, and the upper end of filter cleaner manufactures to have air outlet hole, vertical plane or curved surface manufacture suction port.
Inlet hole create in extrusion chamber that air enters in supercharging shell through via hole, be manufactured on the center portion of sealing neck; The upper end of the inlet hole in sealing neck manufactures annular sealing surface, and when the annular sealing surface of the sealing neck of protecting crust lower end does not install sealed cap, air-inlet cavity communicates with inlet hole.
In order to ensure that environment-friendly high-efficiency energy-saving pneumatic plant can normally work, there is electronic remote controller, adopt electronic remote controller to control connection and the cut-out of the connecting circuit of electromagnetic coil; There is no electronic remote controller, adopt the circuit switch connecting insulated electric conductor to control connection and the cut-out of the connecting circuit of electromagnetic coil.
Keep shape in order to ensure protecting crust to protect electromagnetic coil and be not easy distortion, the cavity of protecting crust manufactures the skeleton having support.
Air in the extrusion chamber promoting in supercharging shell to enable to answer magnetic piston enters gas outlet valve, adopts and promotes spring as promoting to answer magnetic piston stroking upward to compress air in extrusion chamber in air pressure air valve.
In protecting crust, be provided with electromagnetic coil, electromagnetic coil is fixed on the lower part outside supercharging shell, and protecting crust is fixed on the outside protection electromagnetic coil of the bottom of supercharging shell; Below the outside of protecting crust, one side is fixed with foot rest, and the lower end of foot rest is fixed on above gas holder, and the lower end of foot rest is lower than the position of lower end of filter cleaner being arranged on supercharging shell lower end.The circuit connecting electromagnetic coil is connected with field controller, and the circuit of field controller is connected with insulated electric conductor, and field controller is arranged in protecting crust; Or, the circuit connecting electromagnetic coil is connected with field controller, the circuit of field controller is connected with electronic remote controller, and electronic remote controller is connected with insulated electric conductor, and the electronic signal receiver of field controller, electronic remote controller and electronic remote controller is arranged in protecting crust.Sealed cap is installed in supercharging shell, promotes spring, answer magnetic piston, point gas confinement plate, promote spring fitting at the lower part of the inner chamber of supercharging shell, answer magnetic piston to be arranged on the upper part of the inner chamber of supercharging shell, promote spring top and be pressed in the lower end of answering magnetic piston; Answer the spacing hole internal fixtion of the upper end portion of magnetic piston to have a point water confinement plate, answer magnetic piston can slide up and down in the inner chamber of supercharging shell; A point gas confinement plate is had answering the spacing hole internal fixtion of magnetic piston upper end, the annular sealing surface of the sealing neck end in point compression of answering the upper part of magnetic piston there is the inner sealing surface of sealed cap to coordinate with it, sealed cap is being answered between point compression of magnetic piston and point gas confinement plate and can moved up and down, and sealed cap coordinates the gas-entered passageway that can seal or open the extrusion chamber entered in supercharging shell with answering the annular sealing surface of magnetic piston; On the periphery of the sealing neck of the lower end in supercharging shell, cover has sealed cap, and the periphery of the sealing neck of the lower end of sealed cap in supercharging shell can slide up and down; Inner sealing surface in sealed cap coordinates the gas-entered passageway that can seal or open and enter in supercharging shell with the annular sealing surface of sealing neck end; When answering magnetic piston stroking upward, the inner chamber part of answering the supercharging shell of magnetic piston lower part is air-inlet cavity; When answering magnetic descent of piston, the inner chamber part of answering the supercharging shell of magnetic piston upper part is extrusion chamber.Be provided with filter cleaner in the lower end of supercharging shell, the air outlet hole of filter cleaner communicates with the inlet hole of supercharging shell lower end; Be provided with gas outlet valve in the upper end of supercharging shell, the lower part of gas outlet valve is fixed in the center hole of the overlying one end of supercharging shell; The part that the upper-end surface of supercharging shell is exposed in the upper end of gas outlet valve is connected with gas holder by flexible pipe or hard tube.
The compact structure of environment-friendly high-efficiency energy-saving pneumatic plant of the present invention, vibrate little, powerful, utilization rate of electrical are high, compressed-air actuated efficiency is high; The market prospects of industrialization are good, commercial value is high, manufacture and use all very convenient.
Accompanying drawing explanation
Fig. 1 and Fig. 2 is the structural representation of environment-friendly high-efficiency energy-saving pneumatic plant;
Fig. 3 is the structural representation of answering magnetic piston;
Fig. 4 is the schematic appearance of the plan view of answering magnetic piston.
Shown in figure: supercharging shell 1, answer magnetic piston 2, point gas confinement plate 3, air passing hole 4, hollow valve body 5, sealing cone or ball sealer 6, sealed cap 7, promote spring 8, filter cleaner 9, electromagnetic coil 11, protecting crust 12, foot rest 13, vent 14, annular sealing surface 15, point compression 16, spacing hole 17, annular bottom surface 19.
Embodiment
Environment-friendly high-efficiency energy-saving pneumatic plant of the present invention mainly comprises protecting crust 12, electromagnetic coil 11, supercharging shell 1, inlet hole, filter cleaner 9, sealing cone or ball sealer 6, sealed cap 7, promotes spring 8, answers magnetic piston 2, divides gas confinement plate 3, internal taper hole, vent 14, gas outlet valve, field controller; Or comprise protecting crust 12, electromagnetic coil 11, supercharging shell 1, inlet hole, filter cleaner 9, sealing cone or ball sealer 6, sealed cap 7, promote spring 8, answer magnetic piston 2, divide gas confinement plate 3, internal taper hole, vent 14, gas outlet valve, field controller, electronic remote controller.
In protecting crust 12, be provided with electromagnetic coil 11, electromagnetic coil 11 is fixed on the lower part outside supercharging shell 1, and protecting crust 12 is fixed on the outside protection electromagnetic coil 11 of the bottom of supercharging shell 1; Below the outside of protecting crust 12, one side is fixed with foot rest, and the lower end of foot rest is fixed on 13 of gas holder above, and the lower end of foot rest 13 is lower than the position of lower end of filter cleaner being arranged on supercharging shell 1 lower end.
The circuit connecting electromagnetic coil 11 is connected with field controller, and the circuit of field controller is connected with insulated electric conductor, and field controller is arranged in protecting crust 12; Or, the circuit connecting electromagnetic coil 11 is connected with field controller, the circuit of field controller is connected with electronic remote controller, and electronic remote controller is connected with insulated electric conductor, and the electronic signal receiver of field controller, electronic remote controller and electronic remote controller is arranged in protecting crust 12.
Sealed cap 7 is installed in supercharging shell 1, promotes spring 8, answers magnetic piston 2, divides gas confinement plate 3, promote the lower part that spring 8 is arranged on the inner chamber of supercharging shell 1, answer magnetic piston 2 to be arranged on the upper part of the inner chamber of supercharging shell 1, promote spring 8 top and be pressed in the lower end of answering magnetic piston 2; Answer the spacing hole internal fixtion of the upper end portion of magnetic piston 2 to have a point water confinement plate, answer magnetic piston 2 can slide up and down in the inner chamber of supercharging shell 1; A point gas confinement plate 3 is had answering spacing hole 17 internal fixtion of magnetic piston 2 upper end, the annular sealing surface 15 of the sealing neck end in point compression 16 of answering the upper part of magnetic piston 2 there is the inner sealing surface of sealed cap 7 to coordinate with it, sealed cap 7 is being answered between point compression 16 of magnetic piston 2 and point gas confinement plate 3 and can moved up and down, and sealed cap 7 coordinates the gas-entered passageway that can seal or open the extrusion chamber entered in supercharging shell 1 with answering the annular sealing surface 15 of magnetic piston 2; On the periphery of the sealing neck of the lower end in supercharging shell 1, cover has sealed cap 7, and the periphery of the sealing neck of the lower end of sealed cap 7 in supercharging shell 1 can slide up and down; Inner sealing surface in sealed cap 7 coordinates the gas-entered passageway that can seal or open and enter in supercharging shell 1 with the annular sealing surface 15 of sealing neck end; When answering magnetic piston 2 up, the inner chamber part of answering the supercharging shell 1 of magnetic piston 2 lower part is air-inlet cavity; When answering magnetic piston 2 descending, the inner chamber part of answering the supercharging shell 1 of magnetic piston 2 upper part is extrusion chamber.Be provided with filter cleaner in the lower end of supercharging shell 1, the air outlet hole of filter cleaner communicates with the inlet hole of supercharging shell 1 lower end; Be provided with gas outlet valve in the upper end of supercharging shell 1, the lower part of gas outlet valve is fixed in the center hole of the overlying one end of supercharging shell 1; The part that the upper-end surface of supercharging shell 1 is exposed in the upper end of gas outlet valve is connected with gas holder by flexible pipe or hard tube.
During fabrication, protecting crust 12 adopts the material of the type in metal, plastics, nylon, glass fibre reinforced plastics, rubber or the composite material manufacture of several types; Hollow valve body 5 and supercharging shell 1 adopt the material of the type in metal, plastics, nylon and glass fibre reinforced plastics or the composite material manufacture of several types; Sealing cone or ball sealer 6 adopt the material of the type in metal, plastics, nylon and rubber or the composite material manufacture of several types; Sealed cap 7 adopts the material of the type in metal, plastics, rubber, nylon and glass fibre reinforced plastics or the composite material manufacture of several types; Magnetic piston 2 is answered to adopt the material manufacture of the hard to bear magnetic field suction of energy.
Protecting crust 12 creates the hollow cavity of annular, and hollow cavity has string holes, and string holes creates the hole allowing insulated electric conductor pass; Electromagnetic coil 11 and field controller are installed in hollow cavity, or, electromagnetic coil 11, field controller and electronic remote controller are installed in hollow cavity; The inner of the annular housing of hollow cavity is fixed on supercharging shell 1.
Conveniently assemble, during fabrication, after protecting crust 12 is divided into two-part manufacture from annular position, recombinant together for protecting crust 12.
The inner chamber of supercharging shell 1 creates columniform cavity, and the periphery of columniform cavity creates smooth curved surface; Upper end on the center line of inner chamber manufacture have through supercharging shell 1 center hole, lower end manufactures has inlet hole to pass supercharging shell 1; The middle part of the lower end in supercharging shell 1 manufactures sealing neck protruding upward, the upper end portion of sealing neck creates annular sealing surface 15, the inside of sealing neck creates inlet hole, when the inner sealing surface of sealed cap 7 does not seal with annular sealing surface 15, inlet hole is communicated with air-inlet cavity by air passing hole 4, and the inner sealing surface of sealed cap 7 coordinates with the annular sealing surface 15 of sealing neck.
Gas outlet valve creates hollow valve body 5 and sealing is bored or ball sealer 6 two-part, hollow valve body 5 creates hollow tubular, internal taper hole is manufactured on middle part or the middle and lower part of the inner chamber of hollow tubular, and the internal diameter that the internal diameter that the upper part of the internal taper hole in hollow tubular manufactures is large, lower part manufactures is little; The lower end of hollow valve body 5 manufactures return-air sealed end, the lower end surface of return-air sealed end is manufactured on the lower end of hollow valve body 5, upper-end surface creates internal taper hole, the large end of internal taper hole communicates with the upper end of gas outlet valve, small end communicates with the lower end of gas outlet valve, and the inner conical surface of internal taper hole is provided with sealing cone or ball sealer 6.Described internal taper hole creates the circular hole of tapering, the face of circular hole creates inner conical surface, can inner conical surface be sealed under the effect of the gravity of sealing cone or ball sealer 6 self, inner conical surface can be opened with sealing by suction when cone or ball sealer 6 have above suction and bore or the passage of ball face sealing of ball sealer sealing; The air pressure sealed above cone or ball sealer 6 is larger, and the gluing, sealing effect of sealing cone or ball sealer 6 and inner conical surface is better; Can open when being with the air of pressure from the endoporus of hollow valve body 5 lower end inner conical surface with sealing bore or ball sealer 6 sealing and form passage.
For the ease of supercharging shell 1 processing and be convenient to accessory to load in supercharging shell 1, described supercharging shell 1 create segmentation processing manufacture after assemblying body; The upper end of the circular cylindrical cavity part in supercharging shell 1 is divided into two sections of manufactures, the main body that the upper part of segmentation place creates pump cover, lower part creates supercharging shell 1, center hole is manufactured on pump cover, inlet hole is manufactured on the middle part of the main body lower end of supercharging shell 1, and being combined into after the main body after pump cover and supercharging shell 1 manufactures is a composite entity; Or, the lower end of the circular cylindrical cavity part in supercharging shell 1 is divided into two sections of manufactures, the main body that the lower part of segmentation place creates pump cover, upper part creates supercharging shell 1, inlet hole is manufactured on the middle part of pump cover, center hole is manufactured on the middle part of the upper end of the main body of supercharging shell 1, and being combined into after the main body of pump cover and supercharging shell 1 manufactures is a composite entity.
Answer magnetic piston 2 to create columniform iron core, the position of the center line of columniform iron core manufactures limited location hole 17, point compression 16 and vent 14; The upper end of columniform iron core manufactures limited location hole 17, and manufacturing below spacing hole 17 has point compression 16, and manufacturing below the middle part of point compression 16 has vent 14; Divide the inner ring of compression 16 to create sealing neck, the upper end portion of sealing neck creates annular sealing surface 15, and the upper-end surface of sealing neck creates the upper end of the periphery lower than point compression 16; When answering the upper inner sealing surface not installing sealed cap 7 and sealed cap 7 of the periphery of the sealing neck of magnetic piston 2 not seal with annular sealing surface 15, vent 14 communicates with answering a point compression 16 for magnetic piston 2 upper end; The periphery of columniform iron core creates smooth periphery, and smooth periphery manufactures the annular groove having depression, and annular groove is embedded with seal ring; Periphery coordinates with the inner chamber of supercharging shell 1 can the inner chamber of sealing type pressure shell 1, and can slide in the inner chamber of supercharging shell 1.Described spacing hole 17 creates circular hole, and the ring surface of circular hole creates inlays point gas confinement plate 3 stationary plane, and the annular bottom surface 19 of circular hole creates the face that restriction point gas confinement plate 3 inlays the degree of depth; A described point compression 16 creates two sections, and the upper part of sealing neck creates circular hole, and the exterior portion of sealing neck creates the groove of ring, and the periphery of the periphery of circular hole and the groove of ring creates one, and circular hole communicates with vent 14; Described vent 14 creates the circular hole communicated with point compression 16.
Described annular sealing surface 15 creates the smooth sealing surface of ring, and the upper end of the sealing neck in the middle part of the lower end being manufactured on the inner chamber of answering the upper end of the sealing neck of magnetic piston 2 to coordinate with the inner sealing surface of sealed cap 7 and to be manufactured on supercharging shell 1 respectively coordinates with the inner sealing surface in sealed cap 7; Described sealed cap 7 creates the circular pipe type cap body of top seal, and the inner top of sealed cap 7 divides and creates inner sealing surface, and the cylindrical parts manufacture near inner sealing surface has air passing hole 4.
Point gas confinement plate 3 creates the plate of air passing hole 4, and the anchor ring being embedded in spacing hole 17 is adjacent to the base ring face of spacing hole 17; Air passing hole 4 created the hole of air.
Sealing cone 6 creates cone or cone cylinder, and the periphery of cone or cone cylinder creates male cone (strobilus masculinus), and male cone (strobilus masculinus) coordinates with inner conical surface; Press down by sealing the gravity of boring self and seal inner conical surface when the male cone (strobilus masculinus) of ball sealer and inner conical surface seal.
Ball sealer 6 creates spherosome or oval ball, and the outer surface of spherosome or oval ball creates sealing surface, and sealing surface creates smooth sphere; Gravity by ball sealer self when the sphere of ball sealer 6 and inner conical surface seal presses down and seals inner conical surface.
Field controller creates and controls the controller that generates an electromagnetic field of electromagnetic coil 11, control time that electromagnetic field produces and the time that generates an electromagnetic field length and after generating an electromagnetic field at every turn to the interval time generated an electromagnetic field again for the second time.
Electronic remote controller creates to be connected and cuts off the circuit switch generated an electromagnetic field, and comprise the switch sections and electronic telecontrol part that switch on or off circuit, electronic telecontrol part comprises remote controller switch and electronic signal receiver; Described electronic remote controller can have in the present invention, also can not have.
Filter cleaner creates the filter of dust in filtered air and impurity, and the upper end of filter cleaner manufactures to have air outlet hole, vertical plane or curved surface manufacture suction port.
Inlet hole create in extrusion chamber that air enters in supercharging shell 1 through via hole, be manufactured on the center portion of sealing neck; The upper end of the inlet hole in sealing neck manufactures annular sealing surface 15, and when the annular sealing surface 15 of the sealing neck of protecting crust 12 lower end does not install sealed cap 7, air-inlet cavity communicates with inlet hole.
In order to ensure that environment-friendly high-efficiency energy-saving pneumatic plant can normally work, there is electronic remote controller, adopt electronic remote controller to control connection and the cut-out of the connecting circuit of electromagnetic coil 11; There is no electronic remote controller, adopt the circuit switch connecting insulated electric conductor to control connection and the cut-out of the connecting circuit of electromagnetic coil 11.
Keep shape in order to ensure protecting crust 12 can protect electromagnetic coil 11 and be not easy distortion, the cavity of protecting crust 12 manufactures the skeleton having support.
Air in the extrusion chamber that can promote in supercharging shell 1 to make to answer magnetic piston 2 enters gas outlet valve, adopts and promotes spring 8 as the air promoting to answer in the up compression extrusion chamber of magnetic piston 2 in air pressure air valve.
In air-inlet cavity, lay in air, in extrusion chamber, extrude air and produce air pressure; When entering air in extrusion chamber, air-inlet cavity communicates with extrusion chamber; When discharging air in extrusion chamber, air-inlet cavity is by sealing cone or ball sealer 6 and answer the internal taper hole in magnetic piston 2 seal and disconnect the gas-entered passageway entering extrusion chamber.
Described environment-friendly high-efficiency energy-saving pneumatic plant in compressed-air actuated process, control into air passageways and go out air passageways one-way check valve in there is no return spring; When air-inlet cavity enters air, answer the suction of the up generation of magnetic piston 2 to open sealed cap 7 and the sealing of the sealing neck of supercharging shell 1 lower end and the passage opened into air, be arranged on and answer the automatic decline return and close the passage entering air entered in extrusion chamber and seal under the effect of self gravitation of the sealing surface on the sealing neck on magnetic piston 2; When extrusion chamber enters air, being arranged on the sealing cone of the internal taper hole of gas outlet valve or ball sealer 6 utilizes the gravity of self to make sealing cone or ball sealer 6 decline return and the passage of closing the extrusion air on gas outlet valve seals automatically, answers magnetic piston 2 descending and makes to produce air-inlet cavity in pressure promotion and be arranged on and answer the up passage entering air entered in extrusion chamber of then opening of the sealed cap 7 on the sealing neck of magnetic piston 2; When extrusion chamber is given vent to anger, under the effect of outlet pressure, promote sealing cone on the internal taper hole of gas outlet valve or ball sealer 6 up and open the passage of giving vent to anger of gas outlet valve, be arranged on and answer the sealed cap 7 on the sealing neck of magnetic piston 2 to utilize the gravity of self to make sealed cap 7 decline return and close and answer the passage entering air on magnetic piston 2 to seal automatically.
During use, the pipeline that the inlet end of the filter cleaner 9 of environment-friendly high-efficiency energy-saving pneumatic plant and the air in air well export is connected.Have electronic remote controller, press the starting button of remote controller switch, the circuit of electronic remote controller and field controller connected by electronic signal receiver after receiving activating signal; There is no electronic remote controller, directly connect the power-on circuit of circuit switch and the field controller to be connected with insulated electric conductor; The power-on circuit that field controller connects electromagnetic coil 11 generates an electromagnetic field; The attraction force that electromagnetic field produces pulls the pressure of answering magnetic piston 2 to overcome promotion spring 8 to move down, when answering magnetic piston 2 to start descending, the sealed cap 7 installed of the sealing neck of supercharging shell 1 lower end descending return and close the gas-entered passageway entering air-inlet cavity under the effect of self gravitation, sealing cone in gas outlet valve or ball sealer 6 descending return and seal the inner conical surface of gas outlet valve under the effect of the gravity of self, has cut off the outlet passageway of extrusion chamber; Answer magnetic piston 2 when descending, the air of answering magnetic piston 2 to promote to enter in air-inlet cavity and make air produce internal pressure, there is the air of pressure upwards wash the sealing of the inner sealing surface of annular sealing surface 15 and sealed cap 7 open from the upper end of answering the vent 14 of magnetic piston 2 to enter into sealing neck and continue up after sealed cap 7 is shifted, enter in extrusion chamber after the air passing hole 4 that annular is divided on the air passing hole 4 on air drain, sealed cap 7 and point gas confinement plate 3.
Answer magnetic piston 2 descending move to compression promote the compression stage of spring 8 spacing time, the power-on circuit of field controller cutoff solenoid 11, electromagnetic field disappears, and answers magnetic piston 2 up under the promotion promoting spring 8; When answering magnetic piston 2 to start up, be arranged on and answer the sealed cap 7 on the sealing neck of magnetic piston 2 descending and close the gas-entered passageway that air enters extrusion chamber under the effect of the gravity of self; When answering magnetic piston 2 up, answer the up of magnetic piston 2 and make the air in extrusion chamber create pressure, have the air of pressure from the endoporus of the sealed end of gas outlet valve lower end enter into internal taper hole in gas outlet valve promote sealing cone or ball sealer 6 up and open the sealing channel of gas outlet valve, make the air in extrusion chamber after gas outlet valve, enter into gas holder; Answer magnetic piston 2 when up, magnetic piston 2 is answered also to make to create pull of vacuum in air-inlet cavity, it is up and the annular sealing surface 15 of the sealing neck upper end of supercharging shell 1 lower end is separated with the inner sealing surface of sealed cap 7 that pull of vacuum inhales motive sealing cap 7, and air to enter from filter cleaner through the air passing hole 4 of inlet hole through sealed cap 7 in the air-inlet cavity of answering below magnetic piston 2 in supercharging shell 1.
Answer magnetic piston 2 promote spring 8 promotion under up put in place time, the sealed cap 7 installed of the sealing neck of supercharging shell 1 lower end descending return and close the gas-entered passageway entering air-inlet cavity under the effect of self gravitation, sealing cone in gas outlet valve or ball sealer 6 descending return and seal the inner conical surface of gas outlet valve under the effect of the gravity of self, has cut off the outlet passageway of extrusion chamber; Now, the power-on circuit that field controller connects again electromagnetic coil 11 again generates an electromagnetic field and makes to answer magnetic piston 2 descending; The connection of circulation like this and cut off circuit, makes electromagnetic coil 11 generate an electromagnetic field to pull to answer magnetic piston 2 descending and allow and promote spring 8 and promote to answer magnetic piston 2 up, constantly compressed air delivery in gas holder.

Claims (6)

1. an environment-friendly high-efficiency energy-saving pneumatic plant, is characterized in that: described environment-friendly high-efficiency energy-saving pneumatic plant comprises protecting crust, electromagnetic coil, supercharging shell, inlet hole, filter cleaner, ball sealer, sealed cap, promotion spring, answers magnetic piston, divides gas confinement plate, internal taper hole, vent, gas outlet valve, field controller;
In protecting crust, be provided with electromagnetic coil, electromagnetic coil is fixed on the lower part outside supercharging shell, and protecting crust is fixed on the outside protection electromagnetic coil of the bottom of supercharging shell; Below the outside of protecting crust, one side is fixed with foot rest, and the lower end of foot rest is fixed on above gas holder, and the lower end of foot rest is lower than the position of lower end of filter cleaner being arranged on supercharging shell lower end;
The circuit connecting electromagnetic coil is connected with field controller, and the circuit of field controller is connected with insulated electric conductor, and field controller is arranged in protecting crust;
Sealed cap is installed in supercharging shell, promotes spring, answer magnetic piston, point gas confinement plate, promote spring fitting at the lower part of the inner chamber of supercharging shell, answer magnetic piston to be arranged on the upper part of the inner chamber of supercharging shell, promote spring top and be pressed in the lower end of answering magnetic piston; Answer the spacing hole internal fixtion of the upper end portion of magnetic piston to have a point water confinement plate, answer magnetic piston can slide up and down in the inner chamber of supercharging shell; A point gas confinement plate is had answering the spacing hole internal fixtion of magnetic piston upper end, the annular sealing surface of the sealing neck end in point compression of answering the upper part of magnetic piston there is the inner sealing surface of sealed cap to coordinate with it, sealed cap is being answered between point compression of magnetic piston and point gas confinement plate and can moved up and down, and sealed cap coordinates the gas-entered passageway that can seal or open the extrusion chamber entered in supercharging shell with answering the annular sealing surface of magnetic piston; On the periphery of the sealing neck of the lower end in supercharging shell, cover has sealed cap, and the periphery of the sealing neck of the lower end of sealed cap in supercharging shell can slide up and down; Inner sealing surface in sealed cap coordinates the gas-entered passageway that can seal or open and enter in supercharging shell with the annular sealing surface of sealing neck end; When answering magnetic piston stroking upward, the inner chamber part of answering the supercharging shell of magnetic piston lower part is air-inlet cavity; When answering magnetic descent of piston, the inner chamber part of answering the supercharging shell of magnetic piston upper part is extrusion chamber; Be provided with filter cleaner in the lower end of supercharging shell, the air outlet hole of filter cleaner communicates with the inlet hole of supercharging shell lower end; Be provided with gas outlet valve in the upper end of supercharging shell, the lower part of gas outlet valve is fixed in the center hole of the overlying one end of supercharging shell; The part that the upper-end surface of supercharging shell is exposed in the upper end of gas outlet valve is connected with gas holder by flexible pipe or hard tube;
The material of described protecting crust is the material of a type in metal, plastics, nylon, glass fibre reinforced plastics or the composite material of several types; The material of a type in material employing metal, plastics, nylon and the glass fibre reinforced plastics of hollow valve body and supercharging shell or the composite material of several types; The material of a type in material employing metal, plastics, nylon and the rubber of ball sealer or the composite material of several types; The material of a type in material employing metal, plastics, rubber, nylon and the glass fibre reinforced plastics of sealed cap or the composite material of several types; The material of magnetic piston is answered to be can the material of hard to bear magnetic field suction;
Described protecting crust is the hollow cavity of annular, hollow cavity has string holes, is provided with electromagnetic coil and field controller in hollow cavity; The inner of the annular housing of hollow cavity is fixed on supercharging shell; String holes is the hole allowing insulated electric conductor pass;
For the ease of protecting crust processing and be convenient to accessory to load in protecting crust, described protecting crust is the assemblying body after segmentation, and after the annular position of protecting crust is divided into two parts, recombinant is together;
The inner chamber of described supercharging shell is circular cylindrical cavity, and the cylndrical surface of columniform cavity is smooth curved surface; Upper end on the center line of inner chamber has that center hole passes supercharging shell, lower end has inlet hole to pass supercharging shell; There is sealing neck protruding upward at the middle part of the lower end in supercharging shell, the upper end portion of sealing neck is annular sealing surface, the inside of sealing neck is inlet hole, when the inner sealing surface of sealed cap does not seal with annular sealing surface, inlet hole is communicated with air-inlet cavity by air passing hole, and the inner sealing surface of sealed cap coordinates with the annular sealing surface of sealing neck;
Described gas outlet valve comprises hollow valve body and ball sealer, and hollow valve body is hollow tubular, and internal taper hole is in the middle part of the inner chamber of hollow tubular or middle and lower part, and the internal diameter of the upper part of the internal taper hole in hollow tubular internal diameter that is large, lower part is little; There is return-air sealed end the lower end of hollow valve body, the lower end surface of return-air sealed end in the lower end of hollow valve body, upper-end surface is internal taper hole, the large end of internal taper hole communicates with the upper end of gas outlet valve, small end communicates with the lower end of gas outlet valve, and the inner conical surface of internal taper hole is provided with ball sealer; Described internal taper hole is the circular hole having tapering, the face of circular hole is inner conical surface, the mating spherical surfaces of inner conical surface and ball sealer, can inner conical surface be sealed under the effect of the gravity of ball sealer self, the passage of the ball face sealing of inner conical surface and ball sealer when having suction on ball sealer, can be opened by suction; Air pressure above ball sealer is larger, and the gluing, sealing effect of ball sealer and inner conical surface is better; The sealing of inner conical surface and ball sealer can be opened when being with the air of pressure from the endoporus of hollow valve body lower end and form passage;
For the ease of supercharging shell processing and be convenient to accessory to load in supercharging shell, described supercharging shell is the assemblying body after segmentation; The upper end of the circular cylindrical cavity part in supercharging shell is divided into two sections, the main body that the upper part of segmentation place is pump cover, lower part is supercharging shell, center hole is on pump cover, and inlet hole is at the middle part of the main body lower end of supercharging shell, and the body combination of pump cover and supercharging shell becomes a composite entity; Or, the lower end of the circular cylindrical cavity part in supercharging shell is divided into two sections, the main body that the lower part of segmentation place is pump cover, upper part is supercharging shell, inlet hole is at the middle part of pump cover, center hole is at the middle part of the upper end of the main body of supercharging shell, and the body combination of pump cover and supercharging shell becomes a composite entity;
Described magnetic piston of answering is columniform iron core, the limited location hole, position of the center line of columniform iron core, point compression and vent; The limited location hole, upper end of columniform iron core is a point compression below spacing hole, is vent below the middle part of point compression; The inner ring of point compression is sealing neck, and the inside of sealing neck is one section above of vent, and the annular sealing surface of sealing neck upper end is lower than the upper end of the periphery of point compression; When answering the upper inner sealing surface not installing sealed cap and sealed cap of the periphery of the sealing neck of magnetic piston not seal with annular sealing surface, vent communicates with answering a point compression for magnetic piston upper end; Spacing hole is used for a fixing point of gas confinement plate, and point compression is for disperseing the air that passes through and guiding air to enter air passing hole on sealed cap; The periphery of columniform iron core is smooth periphery, and smooth periphery has the annular groove of depression, and annular groove is embedded with seal ring; Periphery coordinates with the inner chamber of supercharging shell can the inner chamber of sealing type pressure shell, and can slide in the inner chamber of supercharging shell; Described spacing hole is the rounded face of circular hole circular hole is inlay a point gas confinement plate stationary plane, and the annular bottom surface of circular hole is the face that restriction point gas confinement plate inlays the degree of depth; A described point compression is divided into two sections, and the upper part of sealing neck is circular hole, and the exterior portion of sealing neck is the groove of ring, and the periphery of the periphery of circular hole and the groove of ring is connected, and circular hole communicates with vent; Described vent is the hole communicated with point compression;
Described annular sealing surface is the smooth sealing surface of ring, and annular sealing surface coordinates with the inner sealing surface in sealed cap in the upper end of the sealing neck of answering the upper end of sealing neck of magnetic piston to coordinate with the inner sealing surface of sealed cap and in the middle part of the lower end of the inner chamber of supercharging shell respectively; Described sealed cap is the circular pipe type cap body of top seal, and it is inner sealing surface that the inner top of sealed cap divides, and the cylindrical parts near inner sealing surface has air passing hole;
A described point of gas confinement plate is the plate having air passing hole, and the anchor ring being embedded in spacing hole is adjacent to the base ring face of spacing hole; Air passing hole can allow air pass through;
Described ball sealer is spherosome or oval ball, and the outer surface of spherosome or oval ball is sealing surface, and sealing surface is smooth sphere; Gravity by ball sealer self when the sphere of ball sealer and inner conical surface seal presses down and seals inner conical surface;
Described field controller controls the controller that generates an electromagnetic field of electromagnetic coil, control time and the time length generated an electromagnetic field that electromagnetic field produces and after generating an electromagnetic field at every turn to the interval time generated an electromagnetic field again for the second time;
Described filter cleaner is the filter of dust in filtered air and impurity, and the upper end of filter cleaner has on air outlet hole, vertical plane or curved surface and has suction port;
Described inlet hole be in air enters in supercharging shell extrusion chamber through via hole, in the center portion of sealing neck; There is annular sealing surface the upper end of the inlet hole in sealing neck, and when the annular sealing surface of the sealing neck of protecting crust lower end does not install sealed cap, air-inlet cavity communicates with inlet hole;
In air-inlet cavity, lay in air, in extrusion chamber, extrude air and produce air pressure; When entering air in extrusion chamber, air-inlet cavity communicates with extrusion chamber; When discharging air in extrusion chamber, air-inlet cavity is by ball sealer and answer the internal taper hole in magnetic piston to seal and disconnect the gas-entered passageway entering extrusion chamber;
Described environment-friendly high-efficiency energy-saving pneumatic plant in compressed-air actuated process, control into air passageways and go out air passageways one-way check valve in there is no return spring; When air-inlet cavity enters air, the suction of answering magnetic piston stroking upward to produce opens the sealing of the sealing neck of sealed cap and supercharging shell lower end and the passage opened into air, is arranged on and answers the automatic decline return and close the passage entering air entered in extrusion chamber and seal under the effect of self gravitation of the sealing surface on the sealing neck on magnetic piston; When extrusion chamber enters air, the ball sealer being arranged on the internal taper hole of gas outlet valve utilizes the gravity of self to make ball sealer decline return and the passage of closing the extrusion air on gas outlet valve seals automatically, answers magnetic descent of piston and makes to produce pressure in air-inlet cavity and promote to be arranged on to answer the up passage entering air entered in extrusion chamber of then opening of the sealed cap on the sealing neck of magnetic piston; When extrusion chamber is given vent to anger, under the effect of outlet pressure, promote ball sealer on the internal taper hole of gas outlet valve up and open the passage of giving vent to anger of gas outlet valve, be arranged on and answer the sealed cap on the sealing neck of magnetic piston to utilize the gravity of self to make sealed cap decline return and close and answer the passage entering air on magnetic piston to seal automatically;
During use, the pipeline that the inlet end of the filter cleaner of environment-friendly high-efficiency energy-saving pneumatic plant and the air in air well export is connected; Connect the power-on circuit of circuit switch and the field controller be connected with insulated electric conductor, the power-on circuit that field controller connects electromagnetic coil generates an electromagnetic field; The attraction force that electromagnetic field produces pulls the pressure of answering magnetic piston overpowers to promote spring to move down, when answering magnetic piston to start descending, the sealed cap installed of the sealing neck of supercharging shell lower end descending return and close the gas-entered passageway entering air-inlet cavity under the effect of self gravitation, ball sealer in gas outlet valve descending return and seal the inner conical surface of gas outlet valve under the effect of the gravity of self, has cut off the outlet passageway of extrusion chamber; Answer magnetic piston when descending, the air of answering magnetic piston to promote to enter in air-inlet cavity and make air produce internal pressure, there is the air of pressure upwards wash the sealing of the inner sealing surface of annular sealing surface and sealed cap open from the upper end of answering the vent of magnetic piston to enter into sealing neck and continue up after sealed cap is shifted, enter in extrusion chamber after the air passing hole that annular is divided on the air passing hole on air drain, sealed cap and point gas confinement plate;
Answer magnetic descent of piston move to compression promote the compression stage of spring spacing time, the power-on circuit of field controller cutoff solenoid, electromagnetic field disappears, and answers magnetic piston up under the promotion promoting spring; When answering magnetic piston to start up, be arranged on and answer the sealed cap on the sealing neck of magnetic piston descending and close the gas-entered passageway that air enters extrusion chamber under the effect of the gravity of self; When answering magnetic piston stroking upward, answer the up of magnetic piston and make the air in extrusion chamber create pressure, having the air of pressure to enter into internal taper hole in gas outlet valve from the endoporus of the sealed end of gas outlet valve lower end, to promote ball sealer up and open the sealing channel of gas outlet valve, makes the air in extrusion chamber after gas outlet valve, enter into gas holder; Answer magnetic piston when up, magnetic piston is answered also to make to create pull of vacuum in air-inlet cavity, it is up and the annular sealing surface of the sealing neck upper end of supercharging shell lower end is separated with the inner sealing surface of sealed cap that pull of vacuum inhales motive sealing cap, and air to enter in the air-inlet cavity of answering below magnetic piston in supercharging shell through the air passing hole of inlet hole through sealed cap from filter cleaner;
Answer magnetic piston promote spring promotion under up put in place time, the sealed cap installed of the sealing neck of supercharging shell lower end descending return and close the gas-entered passageway entering air-inlet cavity under the effect of self gravitation, ball sealer in gas outlet valve descending return and seal the inner conical surface of gas outlet valve under the effect of the gravity of self, has cut off the outlet passageway of extrusion chamber; Now, the power-on circuit that field controller connects again electromagnetic coil generates an electromagnetic field again and to make to answer magnetic piston overpowers to promote the resistance of spring descending; The connection of circulation like this and cut off circuit, makes electromagnetic coil generate an electromagnetic field to pull to answer magnetic descent of piston and allows promoting spring and promote to answer magnetic piston stroking upward, constantly compressed air delivery in gas holder.
2. environment-friendly high-efficiency energy-saving pneumatic plant according to claim 1, it is characterized in that: the air in the extrusion chamber promoting in supercharging shell to enable to answer magnetic piston enters gas outlet valve, adopting and promoting spring as promoting to answer magnetic piston stroking upward to compress air in extrusion chamber in air pressure air valve.
3. environment-friendly high-efficiency energy-saving pneumatic plant according to claim 1, is characterized in that: keep shape in order to ensure protecting crust to protect electromagnetic coil and be not easy distortion, the cavity of protecting crust manufactures the skeleton having support.
4. environment-friendly high-efficiency energy-saving pneumatic plant according to claim 1, it is characterized in that: in order to ensure that environment-friendly high-efficiency energy-saving pneumatic plant can normally work, adopting the circuit switch connecting insulated electric conductor to control connection and the cut-out of the connecting circuit of electromagnetic coil.
5. environment-friendly high-efficiency energy-saving pneumatic plant according to claim 1, is characterized in that: the compact structure of described environment-friendly high-efficiency energy-saving pneumatic plant, vibrate little, powerful, utilization rate of electrical are high, compressed-air actuated efficiency is high; The market prospects of industrialization are good, commercial value is high, manufacture and use all very convenient.
6. a manufacture method for environment-friendly high-efficiency energy-saving pneumatic plant, is characterized in that: during fabrication, the material of a type in protecting crust employing metal, plastics, nylon, glass fibre reinforced plastics, rubber or the composite material manufacture of several types; Hollow valve body and supercharging shell adopt the material of a type in metal, plastics, nylon and glass fibre reinforced plastics or the composite material manufacture of several types; The material of a type in ball sealer employing metal, plastics, nylon and rubber or the composite material manufacture of several types; The material of a type in sealed cap employing metal, plastics, rubber, nylon and glass fibre reinforced plastics or the composite material manufacture of several types; Magnetic piston is answered to adopt the material manufacture of the hard to bear magnetic field suction of energy;
Protecting crust creates the hollow cavity of annular, and hollow cavity has string holes, and string holes creates the hole allowing insulated electric conductor pass; Electromagnetic coil and field controller are installed in hollow cavity; The inner of the annular housing of hollow cavity is fixed on supercharging shell;
Conveniently assemble, during fabrication, after protecting crust is divided into two-part manufacture from annular position, recombinant together for protecting crust;
The inner chamber of supercharging shell creates columniform cavity, and the periphery of columniform cavity creates smooth curved surface; Upper end on the center line of inner chamber manufacture have through supercharging shell center hole, lower end manufactures has inlet hole to pass supercharging shell; The middle part of the lower end in supercharging shell manufactures sealing neck protruding upward, the upper end portion of sealing neck creates annular sealing surface, the inside of sealing neck creates inlet hole, when the inner sealing surface of sealed cap does not seal with annular sealing surface, inlet hole is communicated with air-inlet cavity by air passing hole, and the inner sealing surface of sealed cap coordinates with the annular sealing surface of sealing neck;
Gas outlet valve creates hollow valve body and ball sealer two-part, hollow valve body creates hollow tubular, internal taper hole is manufactured on middle part or the middle and lower part of the inner chamber of hollow tubular, and the internal diameter that the internal diameter that the upper part of the internal taper hole in hollow tubular manufactures is large, lower part manufactures is little; The lower end of hollow valve body manufactures return-air sealed end, the lower end surface of return-air sealed end is manufactured on the lower end of hollow valve body, upper-end surface creates internal taper hole, the large end of internal taper hole communicates with the upper end of gas outlet valve, small end communicates with the lower end of gas outlet valve, and the inner conical surface of internal taper hole is provided with ball sealer; Described internal taper hole creates the circular hole of tapering, the face of circular hole creates inner conical surface, can inner conical surface be sealed under the effect of the gravity of ball sealer self, the passage of the ball face sealing of inner conical surface and ball sealer when having suction on ball sealer, can be opened by suction; Air pressure above ball sealer is larger, and the gluing, sealing effect of ball sealer and inner conical surface is better; The sealing of inner conical surface and ball sealer can be opened when being with the air of pressure from the endoporus of hollow valve body lower end and form passage;
For the ease of supercharging shell processing and be convenient to accessory to load in supercharging shell, described supercharging shell create segmentation processing manufacture after assemblying body; The upper end of the circular cylindrical cavity part in supercharging shell is divided into two sections of manufactures, the main body that the upper part of segmentation place creates pump cover, lower part creates supercharging shell, center hole is manufactured on pump cover, inlet hole is manufactured on the middle part of the main body lower end of supercharging shell, and being combined into after the main body after pump cover and supercharging shell manufactures is a composite entity; Or, the lower end of the circular cylindrical cavity part in supercharging shell is divided into two sections of manufactures, the main body that the lower part of segmentation place creates pump cover, upper part creates supercharging shell, inlet hole is manufactured on the middle part of pump cover, center hole is manufactured on the middle part of the upper end of the main body of supercharging shell, and being combined into after the main body of pump cover and supercharging shell manufactures is a composite entity;
Answer magnetic piston to create columniform iron core, the position of the center line of columniform iron core manufactures limited location hole, point compression and vent; The upper end of columniform iron core manufactures limited location hole, and manufacturing below spacing hole has a point compression, and manufacturing below the middle part of point compression has vent; Divide the inner ring of compression to create sealing neck, the upper end portion of sealing neck creates annular sealing surface, and the upper-end surface of sealing neck creates the upper end of the periphery lower than point compression; When answering the upper inner sealing surface not installing sealed cap and sealed cap of the periphery of the sealing neck of magnetic piston not seal with annular sealing surface, vent communicates with answering a point compression for magnetic piston upper end; The periphery of columniform iron core creates smooth periphery, and smooth periphery manufactures the annular groove having depression, and annular groove is embedded with seal ring; Periphery coordinates with the inner chamber of supercharging shell can the inner chamber of sealing type pressure shell, and can slide in the inner chamber of supercharging shell; Described spacing hole creates circular hole, and the ring surface of circular hole creates inlays a point gas confinement plate stationary plane, and the annular bottom surface of circular hole creates the face that restriction point gas confinement plate inlays the degree of depth; A described point compression creates two sections, and the upper part of sealing neck creates circular hole, and the exterior portion of sealing neck creates the groove of ring, and the periphery of the periphery of circular hole and the groove of ring creates one, and circular hole communicates with vent; Described vent creates the circular hole communicated with point compression;
Described annular sealing surface creates the smooth sealing surface of ring, and the upper end of sealing neck in the middle part of the lower end being manufactured on the inner chamber of answering the upper end of sealing neck of magnetic piston to coordinate with the inner sealing surface of sealed cap and to be manufactured on supercharging shell respectively coordinates with the inner sealing surface in sealed cap; Described sealed cap creates the circular pipe type cap body of top seal, and the inner top of sealed cap divides and creates inner sealing surface, and the cylindrical parts manufacture near inner sealing surface has air passing hole;
Point gas confinement plate creates the plate of air passing hole, and the anchor ring being embedded in spacing hole is adjacent to the base ring face of spacing hole; Air passing hole created the hole of air;
Ball sealer creates spherosome or oval ball, and the outer surface of spherosome or oval ball creates sealing surface, and sealing surface creates smooth sphere; Gravity by ball sealer self when the sphere of ball sealer and inner conical surface seal presses down and seals inner conical surface;
Field controller creates and controls the controller that generates an electromagnetic field of electromagnetic coil, control time that electromagnetic field produces and the time that generates an electromagnetic field length and after generating an electromagnetic field at every turn to the interval time generated an electromagnetic field again for the second time;
Filter cleaner creates the filter of dust in filtered air and impurity, and the upper end of filter cleaner manufactures to have air outlet hole, vertical plane or curved surface manufacture suction port;
Inlet hole create in extrusion chamber that air enters in supercharging shell through via hole, be manufactured on the center portion of sealing neck; The upper end of the inlet hole in sealing neck manufactures annular sealing surface, and when the annular sealing surface of the sealing neck of protecting crust lower end does not install sealed cap, air-inlet cavity communicates with inlet hole;
Keep shape in order to ensure protecting crust to protect electromagnetic coil and be not easy distortion, the cavity of protecting crust manufactures the skeleton having support;
Air in the extrusion chamber promoting in supercharging shell to enable to answer magnetic piston enters gas outlet valve, adopts and promotes spring as promoting to answer magnetic piston stroking upward to compress air in extrusion chamber in air pressure air valve;
In protecting crust, be provided with electromagnetic coil, electromagnetic coil is fixed on the lower part outside supercharging shell, and protecting crust is fixed on the outside protection electromagnetic coil of the bottom of supercharging shell; Below the outside of protecting crust, one side is fixed with foot rest, and the lower end of foot rest is fixed on above gas holder, and the lower end of foot rest is lower than the position of lower end of filter cleaner being arranged on supercharging shell lower end; The circuit connecting electromagnetic coil is connected with field controller, and the circuit of field controller is connected with insulated electric conductor, and field controller is arranged in protecting crust; Sealed cap is installed in supercharging shell, promotes spring, answer magnetic piston, point gas confinement plate, promote spring fitting at the lower part of the inner chamber of supercharging shell, answer magnetic piston to be arranged on the upper part of the inner chamber of supercharging shell, promote spring top and be pressed in the lower end of answering magnetic piston; Answer the spacing hole internal fixtion of the upper end portion of magnetic piston to have a point water confinement plate, answer magnetic piston can slide up and down in the inner chamber of supercharging shell; A point gas confinement plate is had answering the spacing hole internal fixtion of magnetic piston upper end, the annular sealing surface of the sealing neck end in point compression of answering the upper part of magnetic piston there is the inner sealing surface of sealed cap to coordinate with it, sealed cap is being answered between point compression of magnetic piston and point gas confinement plate and can moved up and down, and sealed cap coordinates the gas-entered passageway that can seal or open the extrusion chamber entered in supercharging shell with answering the annular sealing surface of magnetic piston; On the periphery of the sealing neck of the lower end in supercharging shell, cover has sealed cap, and the periphery of the sealing neck of the lower end of sealed cap in supercharging shell can slide up and down; Inner sealing surface in sealed cap coordinates the gas-entered passageway that can seal or open and enter in supercharging shell with the annular sealing surface of sealing neck end; When answering magnetic piston stroking upward, the inner chamber part of answering the supercharging shell of magnetic piston lower part is air-inlet cavity; When answering magnetic descent of piston, the inner chamber part of answering the supercharging shell of magnetic piston upper part is extrusion chamber; Be provided with filter cleaner in the lower end of supercharging shell, the air outlet hole of filter cleaner communicates with the inlet hole of supercharging shell lower end; Be provided with gas outlet valve in the upper end of supercharging shell, the lower part of gas outlet valve is fixed in the center hole of the overlying one end of supercharging shell; The part that the upper-end surface of supercharging shell is exposed in the upper end of gas outlet valve is connected with gas holder by flexible pipe or hard tube.
CN201610043661.1A 2016-01-24 2016-01-24 Environment-friendly efficient energy-saving air compression apparatus Pending CN105545685A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201610043661.1A CN105545685A (en) 2016-01-24 2016-01-24 Environment-friendly efficient energy-saving air compression apparatus

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201610043661.1A CN105545685A (en) 2016-01-24 2016-01-24 Environment-friendly efficient energy-saving air compression apparatus

Publications (1)

Publication Number Publication Date
CN105545685A true CN105545685A (en) 2016-05-04

Family

ID=55825139

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201610043661.1A Pending CN105545685A (en) 2016-01-24 2016-01-24 Environment-friendly efficient energy-saving air compression apparatus

Country Status (1)

Country Link
CN (1) CN105545685A (en)

Similar Documents

Publication Publication Date Title
CN105526129A (en) Environment-friendly efficient energy-saving device for pressure feeding of high-temperature hot gas
CN105526110A (en) Energy-saving and safe air compression device
CN105526108A (en) Safe and energy-saving air compression device
CN105545685A (en) Environment-friendly efficient energy-saving air compression apparatus
CN105604887A (en) Environment-friendly equipment for pumping natural gas
CN105545684A (en) Environment-friendly efficient energy-saving air compression apparatus
CN105526118A (en) Environmental protecting, efficient and energy-saving air compression equipment
CN105526122A (en) Environment-friendly, efficient and energy-saving air compression device
CN105526120A (en) Efficient and energy-saving environmental protecting air compression equipment
CN105526119A (en) Efficient and energy-saving environmental protecting air compression equipment
CN105526123A (en) Environment-friendly, efficient and energy-saving air compression device
CN105526121A (en) Efficient, energy-saving and environment-friendly air compression device
CN105526109A (en) Safe and energy-saving air compression device
CN105526111A (en) Energy-saving and safe air supercharging device
CN105569991A (en) Safe and energy-saving air compression device
CN105526113A (en) Safe, energy-saving and environmental protecting device for air compression
CN105526107A (en) Environment-friendly air compression device
CN105526116A (en) Safe environmental protection equipment for air compression
CN105526117A (en) Efficient and energy-saving equipment for air compression
CN105526115A (en) Safe and efficient environmental protection equipment for air compression
CN105526112A (en) Energy-saving and safe air compressing device
CN105526114A (en) Safe and energy-saving device for safe air compression
CN105569990A (en) Safe and energy-saving air pressurizing device
CN105545686A (en) Environment-friendly safe efficient high-temperature hot air pressure feed device
CN105545683A (en) Safety air compression device

Legal Events

Date Code Title Description
C06 Publication
PB01 Publication
WD01 Invention patent application deemed withdrawn after publication
WD01 Invention patent application deemed withdrawn after publication

Application publication date: 20160504