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WO2015161556A1 - 一种电子烟以及基于该电子烟的控制方法 - Google Patents

一种电子烟以及基于该电子烟的控制方法 Download PDF

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Publication number
WO2015161556A1
WO2015161556A1 PCT/CN2014/080190 CN2014080190W WO2015161556A1 WO 2015161556 A1 WO2015161556 A1 WO 2015161556A1 CN 2014080190 W CN2014080190 W CN 2014080190W WO 2015161556 A1 WO2015161556 A1 WO 2015161556A1
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WO
WIPO (PCT)
Prior art keywords
target
atomizer
electronic cigarette
air inlet
magnetic coil
Prior art date
Application number
PCT/CN2014/080190
Other languages
English (en)
French (fr)
Inventor
刘秋明
Original Assignee
吉瑞高新科技股份有限公司
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 吉瑞高新科技股份有限公司 filed Critical 吉瑞高新科技股份有限公司
Publication of WO2015161556A1 publication Critical patent/WO2015161556A1/zh
Priority to US15/332,158 priority Critical patent/US9943115B2/en

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Classifications

    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B3/00Ohmic-resistance heating
    • H05B3/40Heating elements having the shape of rods or tubes
    • H05B3/42Heating elements having the shape of rods or tubes non-flexible
    • H05B3/44Heating elements having the shape of rods or tubes non-flexible heating conductor arranged within rods or tubes of insulating material
    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/30Devices using two or more structurally separated inhalable precursors, e.g. using two liquid precursors in two cartridges
    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/40Constructional details, e.g. connection of cartridges and battery parts
    • A24F40/48Fluid transfer means, e.g. pumps
    • A24F40/485Valves; Apertures
    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/50Control or monitoring
    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/60Devices with integrated user interfaces
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B1/00Details of electric heating devices
    • H05B1/02Automatic switching arrangements specially adapted to apparatus ; Control of heating devices
    • H05B1/0227Applications
    • H05B1/023Industrial applications
    • H05B1/0244Heating of fluids
    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/10Devices using liquid inhalable precursors
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B2203/00Aspects relating to Ohmic resistive heating covered by group H05B3/00
    • H05B2203/014Heaters using resistive wires or cables not provided for in H05B3/54
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B2203/00Aspects relating to Ohmic resistive heating covered by group H05B3/00
    • H05B2203/021Heaters specially adapted for heating liquids
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B2203/00Aspects relating to Ohmic resistive heating covered by group H05B3/00
    • H05B2203/022Heaters specially adapted for heating gaseous material

Definitions

  • the utility model relates to the field of electronic cigarette technology, in particular to a smoke oil capable of atomizing various flavors. And an electronic cigarette that increases the amount of smoke and a control method based on the electronic cigarette.
  • the prior art electronic cigarette includes an atomizer, and the atomizer stores internal smoke oil, if the electronic cigarette is sensed When the user smokes the electronic cigarette, the battery that controls the electronic cigarette supplies power to the atomizer to make the atomizer The heating wire of the part atomizes the smoke oil inside the atomizer.
  • the atomizer can store a limited amount of smoke oil, and can only store one flavor of smoke. Oil, if the user wants to smoke a variety of flavors of smoke oil, it requires a plurality of electronic cigarettes, which brings inconvenience to the user.
  • a plurality of atomizers are also disposed inside the electronic cigarette, and after the user smokes the electronic cigarette, An internal airflow is formed inside the electronic cigarette, and the airflow flows through each atomizer to drive the smoke to the nozzle, thereby The user can suck the smoke through the nozzle. But if some of the atomizers work, the other part is not working.
  • the airflow inside the body of the electronic cigarette will flow into the nebulizer at work and the atomization that does not work at the same time. Airflow into the nebulizer that is not working does not drive the smoke, resulting in wasted airflow. The flow of the atomizer flowing into the work is reduced, thereby reducing the amount of smoke of the atomizer. And make The airflow drawn by the user contains airflow carrying smoke and airflow without carrying smoke. The concentration of smoke in the airflow drawn by the user is reduced, and the user's smoking experience is reduced.
  • the utility model provides a smoke oil capable of atomizing various flavors and increasing the amount of smoke Electronic cigarette and control method based on the electronic cigarette.
  • An electronic cigarette including:
  • the electronic cigarette body is provided with a plurality of atomizers for atomizing the tobacco oil for supplying the atomizer An electric battery, a smoking switch for generating a trigger signal according to a user's operation, and a second for receiving a user An operation command to select an input module of the target atomizer and respectively to the input module, the smoking a switch, the battery, and a microprocessor electrically connected to the atomizer;
  • a plurality of electromagnetic switches, each of the electromagnetic switches and each The air inlet holes of the atomizer are arranged one by one and are used to open or close the corresponding air inlet holes, so that
  • the microprocessor controls the battery as the target atomizer and the mesh according to the trigger signal
  • the target electromagnetic switch corresponding to the target atomizer supplies power to make the target air inlet of the target atomizer and the The air inlet on the body of the electronic cigarette is turned on.
  • the electronic cigarette, wherein the electromagnetic switch comprises:
  • a first through hole is defined in one end of the fixing sleeve near the atomizer
  • the end of the fixing sleeve away from the atomizer is matched with an end cover
  • the fixed sleeve is internally provided with a movable rod, and the movable rod extends and passes through the atomizer The first through hole to form an abutting portion;
  • the abutting portion is opposite to the air inlet hole of the atomizer and abuts against;
  • a movable iron core is disposed inside the movable rod away from one end of the atomizer
  • a spiral-shaped first magnetic coil is disposed on an outer circumferential surface of the fixing sleeve, so that after being energized
  • the first magnetic coil generates an electromagnetic force to suck the moving iron core such that the target intake hole and the The air inlet is turned on;
  • the elastic member controls the abutting portion to abut when the first magnetic coil is deenergized
  • the target intake port
  • the electronic cigarette wherein the reset elastic member is a return spring.
  • the electronic cigarette, wherein the electromagnetic switch comprises:
  • a fixing seat is disposed;
  • the fixing seat is provided with a second through hole corresponding to the position of the air inlet hole of the atomizer;
  • the first through hole is internally fixedly provided with a first one-way valve
  • a first iron piece is disposed on the valve of the first check valve, so that if the second magnetic coil is broken Electrically, the first iron piece abuts against the atomizer under the action of the air flow inside the electronic cigarette body a vent; and causing the second magnetic coil to generate the current if the second magnetic coil is energized Electromagnetic force absorbing the first iron piece to move the first iron piece away from the target air intake hole Moving, the target air inlet is electrically connected to the air inlet.
  • the air inlet of the atomizer is matched with a second one-way valve
  • a second iron piece is disposed on the valve of the second one-way valve, so that if the second magnetic coil is broken Electrically, the second iron piece abuts against the atomizer under the action of the internal airflow of the electronic cigarette body a vent; and causing the second magnetic coil to generate the current if the second magnetic coil is energized Electromagnetic force absorbing the second iron piece to move the second iron piece away from the target intake hole Moving, the target air inlet is electrically connected to the air inlet.
  • a mounting seat a plurality of the atomizers are movably inserted inside the mount to enable a plurality of the atomizers The detachable connection with the electronic cigarette body.
  • the electronic cigarette wherein the atomizer comprises:
  • An electric heating component located inside the atomization sleeve for atomizing the smoke oil
  • An external electrode interposed on the atomizing sleeve
  • An inner electrode is inserted in the insulating ring, and the inner electrode is provided with the air inlet hole.
  • the electronic cigarette wherein the smoking switch is configured to generate the touch according to a user smoking action Signaled airflow sensing switch.
  • the electronic cigarette wherein the input module comprises:
  • a second operation button for generating the first operation instruction according to a pressing operation input by a user
  • a touch screen for generating the first operation instruction according to a touch operation input by a user
  • a voice smoking switch for generating the first operational command based on a voice input by a user.
  • the input module selects a plurality of the atomizers according to the first operation instruction input by a user At least one atomizer as the target atomizer;
  • the smoking switch generates the trigger signal according to a user's operation
  • the microprocessor controls the battery to be the target atomizer and the Target electromagnetic switch power supply;
  • the target atomizer atomizes the smoke oil stored therein to form the smoke
  • the target electromagnetic switch after being energized generates an electromagnetic force away from the target atomizer
  • the target electromagnetic switch controls the target intake hole and the intake port guide by the electromagnetic force through.
  • the electromagnetic switch generated by the target electromagnetic switch after being energized away from the target atomizer includes:
  • the target electromagnetic switch controls the target intake hole and the intake port guide by the electromagnetic force
  • the pass includes:
  • the movable rod including the moving magnet moves toward a direction away from the target atomizer, so that The target air intake hole is electrically connected to the air inlet;
  • the movable rod moving toward the direction away from the atomizer compresses the return elastic member to The return elastic member is in a compressed state.
  • the control method wherein the movable bar moves toward a direction away from the atomizer After compressing the reset elastic member, the method further includes:
  • the input module receives a second input by the user for controlling the target atomizer to stop working Operation instruction
  • the microprocessor controls the target atomizer and the first magnetic body according to the second operation instruction
  • the force coil is de-energized to cause the return elastic member in a compressed state to rebound to control the movable rod to be reset
  • the abutting portion is brought back against the air inlet hole.
  • the electromagnetic switch generated by the target electromagnetic switch after being energized away from the target atomizer includes:
  • the second magnetic coil of the target atomizer after being energized generates the electromagnetic force
  • the target electromagnetic switch controls the target intake hole and the intake port guide by the electromagnetic force
  • the pass includes:
  • the electromagnetic force generated by the second magnetic coil absorbs the first iron piece
  • the control method wherein the first iron piece moves toward a direction away from the target air intake hole It also includes:
  • the input module receives the second operation instruction input by a user
  • the microprocessor controls the target atomizer and the second magnetic body according to the second operation instruction
  • the force coil is de-energized to re-but the first iron piece under the action of the air flow inside the electronic cigarette body The intake hole.
  • the control method wherein the target electromagnetic switch after being energized generates a distance away from the target fog
  • the electromagnetic force of the chemicalizer includes:
  • the second magnetic coil after being energized generates the electromagnetic force
  • the target electromagnetic switch controls the target intake hole and the intake port guide by the electromagnetic force
  • the pass includes:
  • the second iron piece moves in a direction away from the target intake hole, such that the target intake hole and The air inlet is electrically connected.
  • the control method wherein the second iron piece moves in a direction away from the target air intake hole It also includes:
  • the input module receives the second operation instruction
  • the microprocessor controls the target atomizer and the second magnetic body according to the second operation instruction
  • the force coil is de-energized to re-but the second iron piece under the action of the air flow inside the electronic cigarette body
  • the air inlet of the atomizer is
  • the electronic cigarette provided by the utility model comprises: an electronic cigarette body, and the electronic cigarette body is provided with a plurality of a nebulizer, a battery, a smoking switch, an input module, and the input module, respectively, the smoking a microprocessor electrically connected to the battery and the atomizer; and electrically connected to the microprocessor a plurality of electromagnetic switches are disposed, and each of the electromagnetic switches is opposite to an air inlet of each of the atomizers And used to open or close the corresponding air inlet hole.
  • the microprocessor can control the battery to power at least one target atomizer, which can cause multiple target atomizers And the microprocessor further controls the battery to be in pair with the target atomizer according to the trigger signal
  • the target electromagnetic switch is powered so that the airflow inside the electronic cigarette body does not flow through the unoperated atomizer. So that the airflow will only flow into the target atomizer, thereby increasing the airflow flowing into the target atomizer. Larger atomizer can atomize the amount of smoke, and increase the concentration of smoke smoked by the user, improving the user's Suction experience.
  • FIG. 1 is an overall embodiment of a preferred embodiment of an electronic cigarette that is not energized according to the present invention. Schematic diagram of the structure;
  • FIG. 2 is a structural cross-sectional view of a preferred embodiment of an electromagnetic switch for an electronic cigarette according to the present invention
  • FIG. 3 is a structural exploded view of a preferred embodiment of an electromagnetic switch for an electronic cigarette according to the present invention.
  • FIG. 4 is a cross-sectional view of a preferred embodiment of an energized electronic cigarette provided by the present invention.
  • FIG. 5 is another overall embodiment of the electronic cigarette without power supply provided by the present invention. Schematic diagram of the structure
  • FIG. 6 is a schematic exploded view of a preferred embodiment of the electronic cigarette provided by the present invention.
  • FIG. 7 shows an overall structure of another preferred embodiment of the energized electronic cigarette provided by the present invention Schematic diagram of the section;
  • FIG. 8 is another overall embodiment of the electronic cigarette without power supply provided by the present invention. Schematic diagram of the structure
  • FIG. 9 is a schematic exploded view showing another structure of an electronic cigarette according to the present invention.
  • FIG. 10 shows an overall structure of another preferred embodiment of the energized electronic cigarette provided by the present invention Schematic diagram of the section;
  • Figure 11 is a flow chart showing the steps of a preferred embodiment of the control method provided by the present invention.
  • Figure 13 is a flow chart showing the steps of another preferred embodiment of the control method provided by the present invention.
  • Figure 14 is a flow chart showing the steps of another preferred embodiment of the control method provided by the present invention.
  • Embodiment 1 The detailed structure of the electronic cigarette disclosed by the present invention is described in detail by using the embodiment. The structure of the electronic cigarette is shown in Figure 1.
  • FIG. 1 is a comparison of the electronic cigarettes without power supply provided by the present invention.
  • the electronic cigarette includes:
  • the top end of the electronic cigarette body is provided with a nozzle cover 100.
  • nozzle cover 100 Removably connecting with the nozzle cover 100 to set a nozzle or a straw matching the mouth of the user to enable the user
  • the smoke is sucked through the nozzle or the suction pipe, of course, the user can also directly smoke the smoke through the nozzle cover 100,
  • the mode is not limited in this embodiment.
  • the electronic cigarette body is provided with a plurality of atomizers 101 for atomizing the smoke oil;
  • the overall cross section of the electronic cigarette shown in FIG. 1 shows two of the atomizers 101, which need to be clear Yes, there may be multiple atomizers 101 disposed inside the electronic cigarette body, and the specific number is in this embodiment. Do not repeat them.
  • each of the atomizers 101 respectively stores smoke oil, and the atomizers are different.
  • 101 can store different flavors of smoke oil, and can also store the same taste of smoke oil, in this embodiment If the user can taste the different flavors of smoke oil, it is preferred that the different atomizers 101 are internally stored. There are different flavors of smoke oil.
  • each of the atomizers 101 stores smoke oil is not limited, and may be, for example, in each place.
  • the atomizer 101 is internally provided with an oil storage cotton for storing smoke oil, or separately with each of the atomizers
  • the 101 connection is provided with an oil storage bottle, so that the oil storage bottle supplies the smoke oil stored therein to the atomization 101.
  • a battery 102 for powering the atomizer 101 A battery 102 for powering the atomizer 101.
  • a smoke switch for generating a trigger signal based on the user's operation.
  • the user determines that the atomizer that he or she wishes to smoke the taste of the smoking oil is determined as the target atomizer, hopefully
  • the target nebulizer works to generate smoke corresponding to the taste, and the input module can receive the user input for The first operational command of the target nebulizer is selected.
  • the specific microprocessor may be a CPU or a single chip microcomputer.
  • the microprocessor can determine the required work according to the first operation instruction received by the input module.
  • the target atomizer wherein the user can select one or more atomizers 101 as the target Nebulizer.
  • the microprocessor detects that it receives the trigger signal of the smoking switch input, then the micro location The processor controls the battery 102 to power the target atomizer.
  • the input module selects a plurality of target atomizers according to the first operation instruction input by the user.
  • the battery 102 When the microprocessor detects the trigger signal, the battery 102 is controlled to be determined to be a plurality of targets. A plurality of atomizers of the standard atomizer are powered to operate the target atomizer to atomize the smoke oil.
  • the electronic cigarette provided by the embodiment allows the user to simultaneously select different flavors of smoke oil Target atomizer to enable multiple of the target atomizers to work simultaneously, thereby allowing the user to simultaneously pump To different flavors of smoke;
  • the microprocessor can also control a plurality of the target atomizers to sequentially atomize the smoke oil to enable the user to order It absorbs smoke of different tastes, which makes it easy for users to smoke.
  • the microprocessor can also control a plurality of the target atomizers to randomly atomize the smoke oil to enable the user to Randomly smoked different flavors of smoke, which increases the user's interest in smoking.
  • the microprocessor specifically controls the atomization order of the target atomizer in this embodiment. set.
  • the microprocessor specifically controls a plurality of the target atomizers to work simultaneously, in sequence, or
  • the random operation can be set by the manufacturer at the factory, or a selected switch can be set.
  • the selected switch is set at The electronic cigarette body can control the specific working sequence of the target atomizer through the selected switch,
  • the body arrangement mode is not limited in this embodiment.
  • the electronic cigarette provided by the embodiment can also make the airflow inside the electronic cigarette not Flow through the inoperative atomizer to avoid waste of airflow and increase the concentration of smoke.
  • a plurality of electromagnetic switches are further electrically connected to the microprocessor. 103.
  • the number of the electromagnetic switches 103 is equal to the number of the atomizers 101, and the respective electromagnetic switches 103 and The atomizers 101 are arranged one by one.
  • each of the atomizers 101 for circulating airflow to cause the airflow to drive the smoke A smoke passage 104 that is sucked by the user at the mouthpiece cover 100.
  • the smoke passage 104 is provided with an air inlet hole near the end of the electromagnetic switch 103 to make the electron Airflow inside the smoke body flows into the interior of the smoke passage 104 through the air intake aperture.
  • each of the electromagnetic switches 103 is disposed opposite to the air intake holes of the atomizer 101, and each The electromagnetic switch 103 is used to open or close the corresponding intake hole.
  • the microprocessor controls the battery 102 as a device according to the trigger signal.
  • the target atomizer and the target electromagnetic switch corresponding to the target atomizer are powered.
  • the target air inlet of the chemist is electrically connected to the air inlet of the electronic cigarette body. Further atomizing the target
  • the smoke passage 104 in the device is electrically connected to the air inlet so that the airflow can smoothly and smoothly pass through the mesh
  • the target intake port flows into the smoke passage 104 in the target atomizer.
  • the intake hole of the inoperative atomizer is not electrically connected to the air inlet, so that The air flow does not flow into the smoke passage 104 inside the inoperative atomizer. Effectively avoids the waves of airflow Fees increase the concentration of smoke.
  • the electronic cigarette provided by the embodiment enables the electronic cigarette to be controlled according to the operation of the user.
  • the atomizer works, which in turn enables multiple atomizers to atomize a variety of flavors of smoke oil to enable users to Smoking a variety of flavors of smoke, and the electronic cigarette shown in this embodiment enables the target fog selected by the user
  • the air inlet of the chemical device is electrically connected to the air inlet of the electronic cigarette body, so that the airflow flows into the target atomizer
  • the smoke passage which does not flow into the inside of the inoperative atomizer, thereby avoiding waste of airflow.
  • the flow of gas into the target atomizer is guaranteed, and the amount of smoke atomized by the target atomizer is guaranteed. And the concentration of smoke.
  • the embodiment controls how the electronic cigarette controls the airflow to flow only into the target atomizer.
  • the electromagnetic switch 103 specifically includes:
  • a first through hole is defined in one end of the fixing sleeve 201 near the atomizer 101.
  • the end of the fixing sleeve 201 away from the atomizer 101 is matched with an end cover 202.
  • the fixing sleeve 201 is matched with the end cover 202 to form an accommodating space 203.
  • the movable sleeve 204 is internally provided with a movable rod 204.
  • the movable bar 204 is inserted inside the accommodating space 203.
  • the movable rod 204 extends toward the atomizer 101 and passes through the first through hole to form an offset Abutment 205;
  • the abutting portion 205 is opposite to and opposite to the air inlet hole of the atomizer 101;
  • the movable rod 204 is disposed away from the inner end of the atomizer 101 with a movable iron core 206;
  • a spiral first magnetic coil 207 is disposed on the outer circumferential surface of the fixing sleeve 201.
  • the battery 102 when the microprocessor receives the trigger signal, the battery 102 is controlled to be the target atomizer and The first magnetic coil 207 of the target electromagnetic switch corresponding to the target atomizer is energized to enable the A magnetic coil 207 generates an electromagnetic force to suck the moving iron core 206 so that the moving iron core 206 is in the The electromagnetic force acts to move in a direction away from the atomizer.
  • the magnetic coil is energized to generate an electromagnetic force as a prior art, and in the embodiment, the electric The magnetic principle is not repeated here.
  • the movable rod 204 is adjacent to the radial side of the movable rod 204 near the circumferential side of the first through hole A retaining ring 208 is formed.
  • the reset elastic is fixed when the reset elastic member 209 is fixed to de-energize the first magnetic coil 207
  • the piece 209 will generate a reply because it is no longer squeezed by the retaining ring 208 and the end cap 202.
  • the original elastic force, the movable rod 204 is transported in the direction of the atomizer after being subjected to the elastic force Moving, the abutting portion 205 is again abutted against the air inlet of the atomizer.
  • the input module receives a first operation command input by a user to select a target atomizer
  • the smoking switch receives a trigger signal input by a user
  • the microprocessor controls the battery 102 as the target atomizer 301 according to the trigger signal. And supplying the target electromagnetic switch 304 opposite to the position of the target atomizer 301;
  • the moving iron core 206 is in a direction away from the target atomizer 301 by the electromagnetic force motion;
  • the moving iron core 206 moves in a direction away from the target atomizer 301
  • the The movable rod 204 of the movable iron core 206 is also moved in a direction away from the target atomizer 301 to
  • the abutting portion 205 of the movable rod 204 is away from the vent hole 303 of the target atomizer 301.
  • the airflow flowing into the interior of the electronic cigarette body is due to the air inlet 303 of the target atomizer 301 smoke passage 104. There is a gap between the abutting portion 205, so that the airflow flows into the smoke passage through the air inlet hole 303.
  • the inside of 104 is such that the airflow causes the smoke inside the target atomizer 301 to circulate to the nozzle cover 100.
  • the intake hole of the atomizer not selected by the user as the target atomizer is in contact with the abutting portion 205 So that there is no gap between the air inlet hole and the abutting portion 205, so that the electronic cigarette body flows into The internal air flow cannot flow into the interior of the atomizer through the air inlet. Thereby avoiding the waves of airflow fee.
  • the diameter of the retaining ring 208 is larger than the diameter of the first through hole, the retaining ring The latching action of 208 causes the movable bar 204 not to punch out of the fixing sleeve 201 and the end cap 202 The accommodating space 203 is formed.
  • the return elastic member 209 is a return spring.
  • the second setting mode is as follows: See Figure 5 and Figure 6 for details;
  • the electronic cigarette includes a housing 602 and is matched with the housing 602. a bottom cover 603 is provided to connect the housing 602 with the bottom cover 603 to form the electronic cigarette body.
  • the top of the housing 602 is provided with a nozzle cover 100, in the embodiment, with the nozzle cover 100
  • the communication is provided with a straw 601 through which the user can suck smoke.
  • An atomizer 101, a battery 102, and the atomizer 101 are disposed inside the electronic cigarette body.
  • the smoke channel 104 is provided in the section.
  • the electronic cigarette body further includes an electromagnetic switch 500 inside.
  • the electromagnetic switch 500 includes:
  • the coil 502 generates the electromagnetic force away from the atomizer 101.
  • the second magnetic coil 502 after being energized generates an electromagnetic force into the existing electromagnetic induction technology, in this embodiment. Do not repeat in the middle.
  • Each of the atomizers 101 is detachably connected to a fixed seat 503;
  • the number of the fixing seats 503 is equal to the number of the atomizers 101, and the fixing seat 503 is provided in one-to-one correspondence with the atomizer 101.
  • the atomizer 101 is detachably connected to the fixing base 503 so that the user can replace it at any time.
  • the atomizer 101 is arranged to facilitate the user to replace the atomizer.
  • the fixing base 503 is provided with a second through hole corresponding to the position of the air inlet hole of the atomizer;
  • the first through hole is fixedly disposed inside the first one-way valve 504;
  • a first iron piece 701 is disposed on the valve of the first one-way valve 504 (see FIG. 7).
  • the first iron piece 701 is opened when the second magnetic coil 502 is energized, so that the airflow flows into the smoke passage. 104, closing when the second magnetic coil 502 is powered off, so that the airflow cannot flow into the smoke passage 104.
  • the input module receives a first operation command input by the user to select a target atomizer 702;
  • the smoking switch receives a trigger signal input by a user
  • the microprocessor controls the battery 102 as the target atomizer 702 according to the trigger signal. And supplying the target electromagnetic switch 703 opposite to the position of the target atomizer 702;
  • the target electromagnetic switch 703 sucks the first iron piece 701 by the electromagnetic force to make the first An iron piece 701 moves in a direction away from the target air intake hole of the target atomizer 702 to make the first An iron piece 701 is formed between the target air inlet of the target atomizer to allow airflow into the smoke
  • the gap of the passage 104 is such that the target intake port is electrically connected to the intake port 302.
  • the airflow flowing into the interior of the electronic cigarette body is due to the target air intake hole of the target atomizer 702 and the first There is a gap between the iron pieces 701, so that the airflow flows into the interior of the smoke passage 104 through the target air inlet hole.
  • the airflow is caused to circulate the smoke inside the target atomizer 702 to the nozzle cover 100.
  • the microprocessor controls the second magnetic coil 502 to be powered off, the first iron piece 701 is no longer subject to To the effect of the electromagnetic force away from the atomizer, and due to the internal airflow of the electronic cigarette, The first iron piece 701 is returned to the valve of the first one-way valve 504 so that the air flow is no longer flowing.
  • the first check valve 504 is disposed on the fixing base 503, and the fog is The changer does not change, so that the electronic cigarette can use a general-purpose atomizer.
  • the third setting mode is as follows: See Figure 8 and Figure 9 for details;
  • the electronic cigarette includes a housing 602 and is matched with the housing 602. a bottom cover 603 is provided to connect the housing 602 with the bottom cover 603 to form the electronic cigarette body.
  • the top of the housing 602 is provided with a nozzle cover 100, in the embodiment, with the nozzle cover 100
  • the communication is provided with a straw 601 through which the user can suck smoke.
  • An atomizer 101, a battery 102, and an interior of the atomizer 101 are disposed inside the electronic cigarette body
  • a smoke channel 104 and the electromagnetic switch 500 are provided.
  • the air inlet of the atomizer 101 is matched with a second check valve 801;
  • the second check valve 801 is disposed inside the smoke passage 104 of the atomizer 101.
  • a second iron piece 802 is disposed on the valve of the second one-way valve 801.
  • the second iron piece 802 is opened when the second magnetic coil 502 is energized, so that the airflow flows into the smoke.
  • the mist channel 104 is closed when the second magnetic coil 502 is powered off, so that the airflow cannot flow into the smoke Fog channel 104.
  • the input module receives a first operation command input by the user to select the target atomizer 1002;
  • the smoking switch receives a trigger signal input by a user
  • the microprocessor controls the battery 102 as the target atomizer according to the trigger signal 1002 and the target electromagnetic switch 1003 opposite to the target atomizer 1002 is powered;
  • the second magnetic coil 502 of the target electromagnetic switch 1003 is energized to generate a distance away from the target fog. Electromagnetic force in the direction of the device 1002;
  • the target electromagnetic switch 1003 absorbs the second iron piece 802 by the electromagnetic force to make the The second iron piece 802 moves in a direction away from the target air intake hole of the target atomizer 1002 to An air flow can be formed between the second iron piece 802 and the target air intake hole of the target atomizer 1002.
  • the gap of the smoke passage 104 is such that the target intake port is electrically connected to the intake port 302.
  • the airflow flowing into the interior of the electronic cigarette body is due to the target air intake hole of the target atomizer 1002 and the second There is a gap between the iron pieces 802, so that the airflow flows into the interior of the smoke passage 104 through the target air inlet hole.
  • the airflow is caused to circulate the smoke inside the target atomizer 1002 to the nozzle cover 100.
  • the second iron piece 802 is no longer subject to To the effect of the electromagnetic force away from the atomizer, and due to the internal airflow of the electronic cigarette, The second iron piece 802 is returned to the valve of the second check valve 801 so that the air flow is not flowing in.
  • the second check valve 801 is disposed inside the smoke passage of the atomizer, so that The second check valve 801 is more tightly connected to the atomizer, further reducing the flow of air into the chamber The possibility within the smoke channel 104 is described.
  • Embodiment 3 This embodiment further describes the specific structure of the electronic cigarette in further detail:
  • the inside of the electronic cigarette body may further include a mounting seat 901 .
  • a plurality of the atomizers 101 can be movably inserted into the mount through the mount 901
  • the plurality of the atomizers 101 are detachably connected to the electronic cigarette body. So that users can The atomizer 101 should be replaced at any time, so that the user can replace the damaged atomizer 101 to make the fog Smoke oil is added to the chemicalizer 101.
  • the specific detachable connection manner may be that the mount 901 and the atomizer 101 pass the thread or the card.
  • the detachable connection is not described in detail in this embodiment.
  • the atomizer 101 specifically includes:
  • the specific structure of the electric heating component 1005 is not limited, as long as the The electrothermal assembly 1005 can atomize the smoke oil to form an aerosol, for example, the electrothermal assembly 1005 can be wrapped Winding the electric heating wire disposed on the oil guiding rope, or rotating the electric heating wire pressed into a sheet shape into a spiral shape or Serpentine and so on.
  • the specific structure of the oil storage component 1006 is not limited in this embodiment, as long as the oil storage component 1006 can store the oil and deliver the oil to the electric heating component 1005, for example, the electric heating component 1005 may be an oil storage cotton, the guide rope may pass through the oil storage cotton; the arrangement may prevent smoke The oil is reversed to prevent the smoke from leaking.
  • the oil storage assembly 1006 can also be an oil storage chamber, and the oil storage chamber and the sheet-shaped electric heating component 1005 A tarpaulin is disposed between the tarpaulins so that the sheet-like electrothermal assembly 1005 is coiled on the tarpaulin, thereby Effectively avoiding the electric heating component 1005 in operation burning the oil storage cotton, and improving the electric heating component 1005 The contact area with the oil storage assembly 1006 increases the amount of smoke.
  • the atomizer 101 further includes:
  • the outer electrode 1007 is inserted on the atomization sleeve 1004;
  • An internal electrode 1009 is inserted into the insulating ring 1008, and the internal electrode 1009 is opened. Said air intake hole.
  • the smoking switch is configured to generate the trigger signal according to a user smoking action.
  • the air flow sensing switch 1010 can also be a push button switch, which is not limited herein.
  • the internal pressure of the electronic cigarette body is reduced, so that The airflow sensing switch 1010 is reduced according to the internal pressure of the electronic cigarette, and correspondingly generates the trigger signal;
  • a microprocessor 1011 is provided in electrical communication with the airflow sensing switch 1010.
  • a first operation button may be disposed on the electronic cigarette body, and the first operation button may be Controlling the battery 102 for the atomizer 101 and the electromagnetic switch according to a pressing operation of a user Electricity.
  • the input module is disposed on the housing 602;
  • the input module is configured to generate the first according to a pressing operation input by a user a second operation button 1012 of the operation instruction;
  • the second operation button 1012 is equal to the number of the atomizers 101, that is, each of the second operations
  • the button 1012 is in one-to-one correspondence with each of the atomizers 101, and the user corresponds to the atomizer 101.
  • the second operation button 1012 can select the corresponding atomizer as the target atomizer.
  • a touch screen may also be disposed on the electronic cigarette body, and the touch screen is used for input according to a user.
  • a touch operation generates the first operation instruction
  • a voice smoking switch may be disposed on the electronic cigarette body, and the voice smoking switch is used for the root
  • the first operation instruction is generated according to a voice input by a user.
  • Embodiment 4 details the control method of the electronic cigarette based on the above embodiment. That is, the control method shown in this embodiment enables the electronic cigarette to atomize a plurality of flavors of smoke Oil, and can increase the amount of smoke.
  • control method specifically includes:
  • the input module selects a plurality of the atomizations according to the first operation instruction input by a user. At least one atomizer in the device acts as the target atomizer;
  • the microprocessor determines the target atomizer according to the first operation instruction
  • the smoking switch generates the trigger signal according to a user operation.
  • the microprocessor controls the battery as the target atomizer according to the trigger signal.
  • the target electromagnetic switch is powered;
  • the target atomizer atomizes the smoke oil stored therein to form the smoke
  • the target electromagnetic switch after being energized generates an electromagnetic force away from the target atomizer
  • the target electromagnetic switch controls the target intake hole and the intake air by the electromagnetic force
  • the mouth is conductive.
  • Embodiment 5 because the electronic cigarette controls the airflow only to flow into the target atomizer, the control method is The structure of the sub-smoke is different, and the control method is further described in detail in this embodiment. Bright:
  • the first control method the specific structure of the electronic cigarette used to implement the first control method, please be realistic
  • the input module selects a plurality of the atomizations according to the first operation instruction input by a user. At least one atomizer in the device acts as the target atomizer;
  • the microprocessor determines the target atomizer according to the first operation instruction
  • the smoking switch generates the trigger signal according to a user operation
  • the microprocessor controls the battery as the target atomizer according to the trigger signal.
  • the target electromagnetic switch is powered;
  • the target atomizer atomizes the smoke oil stored therein to form the smoke
  • Steps 1201 to 1205 in this embodiment and steps 1101 to 1105 in the fourth embodiment The process is the same, and will not be described in the embodiment.
  • the first magnetic coil of the target electromagnetic switch after being energized generates the electromagnetic force
  • the electromagnetic force generated by the first magnetic coil absorbs a place located inside the movable bar. Comment on the iron core;
  • the movable bar including the moving magnet is moved away from the target atomizer. Moving, the target air inlet is electrically connected to the air inlet;
  • the input module receives a user input for controlling the target atomizer to stop working. Second operation instruction;
  • the input module Not only receiving the first operation instruction input by the user, but also receiving the second operation instruction input by the user, The user stops the work by the second operation command to control the target atomizer that is working to generate smoke Work.
  • the microprocessor controls the target atomizer and the first according to the second operation instruction.
  • a magnetic coil is de-energized.
  • the reset elastic member in a compressed state rebounds to control the The movable rod is reset to bring the abutment back against the intake aperture.
  • the second control method is used to implement the specific structure of the electronic cigarette of the second control method.
  • the input module selects a plurality of the atomizations according to the first operation instruction input by a user. At least one atomizer in the device acts as the target atomizer;
  • the microprocessor determines the target atomizer according to the first operation instruction
  • the smoking switch generates the trigger signal according to a user operation.
  • the microprocessor controls the battery as the target atomizer according to the trigger signal.
  • the target electromagnetic switch is powered;
  • the target atomizer atomizes the smoke oil stored therein to form the smoke
  • Steps 1301 to 1305 in this embodiment and steps 1101 to 1105 in the fourth embodiment pass The process is the same, and will not be described in the embodiment.
  • the second magnetic coil of the target atomizer after being energized generates the electromagnetic force
  • the electromagnetic force generated by the second magnetic coil absorbs the first iron piece
  • the first iron piece moves toward a direction away from the target air inlet hole, so that the target air intake a hole is electrically connected to the air inlet;
  • the input module receives the second operation instruction input by a user.
  • the microprocessor controls the target atomizer and the first according to the second operation instruction.
  • the two magnetic coils are powered off.
  • the second magnetic coil is de-energized to cause the first iron piece to flow inside the electronic cigarette body Reacting against the air intake hole under the action.
  • the third control method the specific structure of the electronic cigarette used to implement the third control method, please be realistic
  • the input module selects a plurality of the atomizations according to the first operation instruction input by a user. At least one atomizer in the device acts as the target atomizer;
  • the microprocessor determines the target atomizer according to the first operation instruction
  • the smoking switch generates the trigger signal according to a user operation.
  • the microprocessor controls the battery as the target atomizer according to the trigger signal.
  • the target electromagnetic switch is powered;
  • the target atomizer atomizes the smoke oil stored therein to form the smoke
  • Steps 1401 to 1405 in this embodiment and steps 1101 to 1105 in the fourth embodiment The process is the same, and will not be described in the embodiment.
  • the second magnetic coil after being energized generates the electromagnetic force
  • the second iron piece moves in a direction away from the target air inlet hole, so that the target advances
  • the air hole is electrically connected to the air inlet;
  • the input module receives the second operation instruction.
  • the microprocessor controls the target atomizer and the first according to the second operation instruction.
  • the two magnetic coils are powered off.
  • the second magnetic coil is de-energized to cause the second iron piece to flow inside the electronic cigarette body Reacting against the air inlet of the atomizer.

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Abstract

一种电子烟以及基于该电子烟的控制方法。所述电子烟包括:电子烟本体,所述电子烟本体设置有多个雾化器(101)、电池(102)、吸烟开关、输入模块以及分别与所述输入模块、所述吸烟开关、所述电池(102)以及所述雾化器(101)电连接的微处理器;与所述微处理器还电连接设置有多个电磁开关(103),各个所述电磁开关(103)与各个所述雾化器(101)的进气孔一一相对设置并用于开启或关闭对应的所述进气孔。所述微处理器根据所述触发信号使得所述电池(102)为所述目标雾化器(101)以及所述目标电磁开关(103)供电,以使电子烟本体内部的气流不流经未工作的雾化器(101),使得该气流只会流入目标雾化器(101),从而使得流入目标雾化器(101)中的气流增加,增大了雾化器(101)可雾化的烟雾量以及烟雾的浓度。

Description

一种电子烟以及基于该电子烟的控制方法
本申请要求于2014年04月24日提交中国专利局、申请号为 201420204130.2、发明名称为“一种电子烟”的中国专利申请的优先权,其全 部内容通过引用结合在本申请中。
技术领域
本实用新型涉及电子烟技术领域,特别涉及一种可雾化多种口味的烟油以 及增大烟雾量的电子烟以及基于该电子烟的控制方法。
背景技术
现有技术的电子烟包括雾化器,该雾化器内部存储有烟油,若电子烟感应 到用户抽吸电子烟的动作,则控制电子烟的电池为雾化器供电,以使雾化器内 部的电热丝雾化该雾化器内部的烟油。
现有技术中雾化器所能够存储的烟油有限,而且只能够存储一种口味的烟 油,若用户想要抽吸多种口味的烟油,则需要多个电子烟,为用户带来了不便。 现有技术中也有将多个雾化器设置在电子烟内部的,用户抽吸电子烟后,会在 电子烟内部形成气流,该气流流经各个雾化器以带动烟雾流通至吸嘴,从而使 得用户通过吸嘴能够抽吸到烟雾。但是若一部分雾化器工作,而另一部分不工 作,但是电子烟本体内部的气流会同时流入工作中的雾化器以及不工作的雾化 器,而流入不工作中的雾化器的气流不会带动烟雾,从而造成了气流的浪费, 使得流入工作中的雾化器气流量的减少,进而减少了雾化器的烟雾量。而且使 得用户抽吸到的气流中包含有携带有烟雾的气流以及没有携带烟雾的气流,从 而使得用户抽吸到的气流中烟雾浓度降低,降低用户的抽吸体验。
发明内容
有鉴于此,本实用新型提供了一种可雾化多种口味的烟油以及增大烟雾量 的电子烟以及基于该电子烟的控制方法。
一种电子烟,其中,包括:
电子烟本体;
所述电子烟本体设置有多个用于雾化烟油的雾化器、用于为所述雾化器供 电的电池、用于根据用户的操作生成触发信号的吸烟开关、用于接收用户的第 一操作指令以选定目标雾化器的输入模块以及分别与所述输入模块、所述吸烟 开关、所述电池以及所述雾化器电连接的微处理器;
与所述微处理器还电连接设置有多个电磁开关,各个所述电磁开关与各个 所述雾化器的进气孔一一相对设置并用于开启或关闭对应的所述进气孔,以使 所述微处理器根据所述触发信号控制所述电池为所述目标雾化器和与所述目 标雾化器对应的目标电磁开关供电,以使所述目标雾化器的目标进气孔与所述 电子烟本体上的进气口导通。
所述的电子烟,其中,所述电磁开关包括:
固定套;
所述固定套靠近所述雾化器的一端开设有第一通孔;
所述固定套远离所述雾化器的一端匹配设置有端盖;
所述固定套内部设置有活动棒,且所述活动棒朝向所述雾化器延伸并穿过 所述第一通孔以形成抵靠部;
所述抵靠部与所述雾化器的进气孔相对且抵靠设置;
所述活动棒远离所述雾化器的一端内部设置有动铁芯;
绕制在所述固定套的外周面设置有螺旋形的第一磁力线圈,使得通电后的 所述第一磁力线圈生成电磁力以吸动所述动铁芯,使得所述目标进气孔与所述 进气口导通;
所述活动棒靠近所述第一通孔的圆周侧面沿所述活动棒的径向延伸形成 卡持环,且所述卡持环的直径大于所述第一通孔的直径;
套设在所述活动棒上,且位于所述卡持环和所述端盖之间卡持固定有复位 弹性件,以使所述第一磁力线圈断电时,所述复位弹性件控制所述抵靠部抵靠 所述目标进气孔。
所述的电子烟,其中,所述复位弹性件为复位弹簧。
所述的电子烟,其中,所述电磁开关包括:
磁芯;
绕制在所述磁芯外周面的第二磁力线圈,以使通电后的第二磁力线圈生成 远离所述雾化器的所述电磁力。
所述的电子烟,其中,
分别与多个所述雾化器可拆卸连接设置有固定座;
所述固定座上设置有与所述雾化器的进气孔位置对应的第二通孔;
所述第二通孔内部固定设置有第一单向阀;
所述第一单向阀的阀门上设置有第一铁片,使得若所述第二磁力线圈断 电,则所述第一铁片在所述电子烟本体内部气流的作用下抵靠所述雾化器的进 气孔;且使得若所述第二磁力线圈通电,则使得所述第二磁力线圈生成的所述 电磁力吸动所述第一铁片,以使所述第一铁片朝远离所述目标进气孔的方向运 动,使得所述目标进气孔与所述进气口导通。
所述的电子烟,其中,
所述雾化器的进气孔匹配设置有第二单向阀;
所述第二单向阀的阀门上设置有第二铁片,使得若所述第二磁力线圈断 电,则所述第二铁片在所述电子烟本体内部气流的作用下抵靠所述雾化器的进 气孔;且使得若所述第二磁力线圈通电,则使得所述第二磁力线圈生成的所述 电磁力吸动所述第二铁片,以使所述第二铁片朝远离所述目标进气孔的方向运 动,使得所述目标进气孔与所述进气口导通。
任一所述的电子烟,其中,所述电子烟内部还包括:
安装座,多个所述雾化器活动插设在所述安装座内部以使多个所述雾化器 与所述电子烟本体可拆卸连接。
所述的电子烟,其中,所述雾化器包括:
雾化套;
位于所述雾化套内部,用于雾化所述烟油的电热组件;
位于所述雾化套内部,用于存储所述烟油并将所述烟油输送给所述电热组 件的储油组件;
插设在所述雾化套上的外电极;
套设在所述外电极内的绝缘环;
插设在所述绝缘环内的内电极,所述内电极上开设有所述进气孔。
所述的电子烟,其中,所述吸烟开关为用于根据用户吸烟动作生成所述触 发信号的气流感应开关。
所述的电子烟,其中,所述输入模块包括:
用于根据用户输入的按压操作生成所述第一操作指令的第二操作按键;
和/或,
用于根据用户输入的触摸操作生成所述第一操作指令的触摸屏;
和/或,
用于根据用户输入的语音生成所述第一操作指令的语音吸烟开关。
一种基于上述任一项所述电子烟的控制方法,其中,包括:
所述输入模块根据用户输入的所述第一操作指令选定若干所述雾化器中 的至少一个雾化器作为所述目标雾化器;
所述微处理器根据所述第一操作指令确定所述目标雾化器;
所述吸烟开关根据用户的操作生成所述触发信号;
所述微处理器根据所述触发信号控制所述电池为所述目标雾化器和所述 目标电磁开关供电;
所述目标雾化器雾化其内部所存储的所述烟油以形成所述烟雾;
通电后的所述目标电磁开关生成远离所述目标雾化器的电磁力;
所述目标电磁开关通过所述电磁力控制所述目标进气孔与所述进气口导 通。
所述的控制方法,其中,
通电后的所述目标电磁开关生成远离所述目标雾化器的电磁力包括:
通电后的所述目标电磁开关的第一磁力线圈生成所述电磁力;
所述目标电磁开关通过所述电磁力控制所述目标进气孔与所述进气口导 通包括:
所述第一磁力线圈生成的所述电磁力吸动位于所述活动棒内部的所述动 铁芯;
包含有所述动磁铁的所述活动棒朝向远离所述目标雾化器的方向运动,使 得所述目标进气孔与所述进气口导通;
朝向远离所述雾化器方向运动的所述活动棒压缩所述复位弹性件,以使所 述复位弹性件呈压缩状态。
所述的控制方法,其中,所述朝向远离所述雾化器方向运动的所述活动棒 压缩所述复位弹性件之后还包括:
所述输入模块接收用户输入的用于控制所述目标雾化器停止工作的第二 操作指令;
所述微处理器根据所述第二操作指令控制所述目标雾化器和所述第一磁 力线圈断电,以使呈压缩状态的所述复位弹性件回弹以控制所述活动棒复位以 使所述抵靠部重新抵靠所述进气孔。
所述的控制方法,其中,
通电后的所述目标电磁开关生成远离所述目标雾化器的电磁力包括:
通电后的所述目标雾化器的所述第二磁力线圈生成所述电磁力;
所述目标电磁开关通过所述电磁力控制所述目标进气孔与所述进气口导 通包括:
所述第二磁力线圈生成的所述电磁力吸动所述第一铁片;
所述第一铁片朝远离所述目标进气孔方向运动,使得所述目标进气孔与所 述进气口导通。
所述的控制方法,其中,所述第一铁片朝远离所述目标进气孔方向运动之 后还包括:
所述输入模块接收用户输入的所述第二操作指令;
所述微处理器根据所述第二操作指令控制所述目标雾化器和所述第二磁 力线圈断电,以使所述第一铁片在所述电子烟本体内部气流的作用下重新抵靠 所述进气孔。
所述的控制方法,其中,通电后的所述目标电磁开关生成远离所述目标雾 化器的电磁力包括:
通电后的所述第二磁力线圈生成所述电磁力;
所述目标电磁开关通过所述电磁力控制所述目标进气孔与所述进气口导 通包括:
所述第二磁力线圈生成的所述电磁力吸动所述第二铁片;
所述第二铁片朝远离所述目标进气孔的方向运动,使得所述目标进气孔与 所述进气口导通。
所述的控制方法,其中,所述第二铁片朝远离所述目标进气孔的方向运动 之后还包括:
所述输入模块接收所述第二操作指令;
所述微处理器根据所述第二操作指令控制所述目标雾化器和所述第二磁 力线圈断电,以使所述第二铁片在所述电子烟本体内部气流的作用下重新抵靠 所述雾化器的进气孔。
本实用新型所提供的电子烟包括:电子烟本体,所述电子烟本体设置有多 个雾化器、电池、吸烟开关、输入模块以及分别与所述输入模块、所述吸烟开 关、所述电池以及所述雾化器电连接的微处理器;与所述微处理器还电连接设 置有多个电磁开关,各个所述电磁开关与各个所述雾化器的进气孔一一相对设 置并用于开启或关闭对应的所述进气孔。通过本实用新型所提供的电子烟使得 微处理器可控制电池为至少一个目标雾化器供电,可使得多个目标雾化器工 作,而且微处理器根据所述触发信号还可控制所述电池为与所述目标雾化器对 应的目标电磁开关供电,以使电子烟本体内部的气流不流经未工作的雾化器, 使得该气流只会流入目标雾化器,从而使得流入目标雾化器中的气流增加,增 大了雾化器可雾化的烟雾量,且提升了用户抽吸到的烟雾的浓度,提升用户的 抽吸体验。
附图说明
为了更清楚地说明本实用新型实施例或现有技术中的技术方案,下面将对 实施例或现有技术描述中所需要使用的附图作简单地介绍,显而易见地,下面 描述中的附图仅仅是本实用新型的一些实施例,对于本领域普通技术人员来 讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1为本实用新型所提供的没有通电的电子烟的一种较佳实施例整体结 构剖面示意图;
图2为本实用新型所提供的电子烟的电磁开关的一种较佳实施例结构剖 面示意图;
图3为本实用新型所提供的电子烟的电磁开关的一种较佳实施例结构爆 炸示意图;
图4为本实用新型所提供的通电的电子烟的一种较佳实施例整体结构剖 面示意图;
图5为本实用新型所提供的没有通电的电子烟的另一种较佳实施例整体 结构剖面示意图;
图6为本实用新型所提供的电子烟的一种较佳实施例结构爆炸示意图;
图7为本实用新型所提供的通电的电子烟的另一种较佳实施例整体结构 剖面示意图;
图8为本实用新型所提供的没有通电的电子烟的另一种较佳实施例整体 结构剖面示意图;
图9为本实用新型所提供的电子烟的另一种较佳实施例结构爆炸示意图;
图10为本实用新型所提供的通电的电子烟的另一种较佳实施例整体结构 剖面示意图;
图11为本实用新型所提供的控制方法的一种较佳实施例步骤流程图;
图12为本实用新型所提供的控制方法的另一种较佳实施例步骤流程图;
图13为本实用新型所提供的控制方法的另一种较佳实施例步骤流程图;
图14为本实用新型所提供的控制方法的另一种较佳实施例步骤流程图。
具体实施方式
实施例一,通过本实施例详细说明本实用新型公开的电子烟的具体结构, 该电子烟的结构请参见图1所示。
由图1所示可知,图1为本实用新型所提供的没有通电的电子烟的一种较 佳实施例整体结构剖面示意图;
所述电子烟包括:
电子烟本体;
所述电子烟本体的顶端设置有吸嘴盖100。
与所述吸嘴盖100可拆卸连接设置匹配用户嘴型的吸嘴或吸管,以使用户 通过吸嘴或吸管抽吸烟雾,当然用户也可直接通过该吸嘴盖100抽吸烟雾,具 体方式在本实施例中不作限定。
所述电子烟本体设置有多个用于雾化烟油的雾化器101;
其中,图1所示的电子烟整体剖面显示有两个所述雾化器101,需明确的 是,所述电子烟本体内部设置的雾化器101可有多个,具体数目在本实施例中 不做赘述。
本实施例中各个所述雾化器101内部分别存储有烟油,不同的所述雾化器 101内可存储不同口味的烟油,也可存储相同口味的烟油,在本实施例中为使 得用户能够品吸到不同口味的烟油,则较佳的为不同的所述雾化器101内部存 储有不同口味的烟油。
具体的,各个所述雾化器101存储烟油的方式不作限定,例如可在各个所 述雾化器101内部设置有用于存储烟油的储油棉,或者分别与各个所述雾化器 101连接设置有储油瓶,以使所述储油瓶将其内部存储的烟油输送给所述雾化 器101。
用于为所述雾化器101供电的电池102。
用于根据用户的操作生成触发信号的吸烟开关。
用于接收用户的第一操作指令以选定目标雾化器的输入模块。
即用户将存储有自己希望抽吸烟油口味的雾化器确定为目标雾化器,希望 目标雾化器工作以生成对应口味的烟雾,则输入模块即可接收用户输入的用于 选定目标雾化器的第一操作指令。
分别与所述输入模块、所述吸烟开关、所述电池以及所述雾化器电连接有 微处理器。
具体的所述微处理器可为CPU或单片机。
即微处理器可根据所述输入模块接收到的所述第一操作指令确定需要工 作的所述目标雾化器,其中,用户可选定一个或多个雾化器101作为所述目标 雾化器。
所述微处理器检测到其接收到所述吸烟开关输入的触发信号,则所述微处 理器控制所述电池102为所述目标雾化器供电。
为便于用户品烟,以使用户能够抽吸到不同口味的烟雾,则在本实施例中, 所述输入模块根据用户输入的所述第一操作指令选定的目标雾化器为多个。
微处理器检测到所述触发信号,则控制所述电池102为多个已被确定为目 标雾化器的多个雾化器供电,以使所述目标雾化器工作以雾化烟油。
采用本实施例所提供的电子烟使得用户可同时选定设置有不同口味烟油 的目标雾化器,以使多个所述目标雾化器同时工作,从而使得用户可同时抽吸 到不同口味的烟雾;
微处理器还可控制多个所述目标雾化器按序雾化烟油,以使用户能够按序 的吸食到不同口味的烟雾,从而便于用户品烟。
所述微处理器还可控制多个所述目标雾化器随机雾化烟油,以使用户能够 随机的吸食到不同口味的烟雾,从而增加了用户吸烟过程中的趣味性。
所述微处理器具体控制所述目标雾化器的雾化次序在本实施例中不作限 定。
其中,所述微处理器具体控制多个所述目标雾化器同时工作、按序工作或 随机工作可为制造商在出厂时设定,也可设定一选定开关,该选定开关设置在 电子烟本体上,通过该选定开关即可控制所述目标雾化器具体工作的顺序,具 体设置方式在本实施例中不作限定。
更佳的是,采用本实施例所提供的电子烟还可使得电子烟内部的气流不会 流经不工作的雾化器,避免气流的浪费,提升烟雾的浓度。
具体请继续参见图1所示,与所述微处理器还电连接设置有多个电磁开关 103。
该电磁开关103的数量与雾化器101的数量相等,且各个电磁开关103与 雾化器101一一相对设置。
在各个所述雾化器101内部设置有用于流通气流以使该气流带动烟雾以 被用户在吸嘴盖100处吸食的烟雾通道104。
该烟雾通道104靠近所述电磁开关103的端部设置有进气孔,以使得电子 烟本体内部的气流通过该进气孔流入所述烟雾通道104内部。
具体的,各个电磁开关103与雾化器101的进气孔一一相对设置,且各个 电磁开关103用于开启或关闭对应的所述进气孔。
即在具体应用中,所述微处理器根据所述触发信号控制所述电池102为所 述目标雾化器和与所述目标雾化器对应的目标电磁开关供电。以使所述目标雾 化器的目标进气孔与所述电子烟本体上的进气口导通。进而使得所述目标雾化 器内的烟雾通道104与进气口导通,以使的气流能够顺利且通畅的通过所述目 标进气孔流入所述目标雾化器内的烟雾通道104。
通过本实施例,使得不工作的雾化器的进气孔不与所述进气口导通,使得 气流不会流入不工作的雾化器内部的烟雾通道104。有效的避免了气流的浪 费,提升烟雾的浓度。
通过本实施例所提供的电子烟使得该电子烟能够根据用户的操作控制多 个雾化器工作,继而使得多个雾化器能够雾化多种口味的烟油,以使用户能够 吸食到多种口味烟雾,而且本实施例所示的电子烟能够使得用户选定的目标雾 化器的进气孔与电子烟本体上的进气口导通,以使得气流流入目标雾化器内部 的烟雾通道,而该气流不会流入不工作的雾化器内部,从而避免了气流的浪费, 保障了流入目标雾化器内部的气流量,保障了目标雾化器雾化烟雾的烟雾量以 及烟雾浓度。
实施例二,本实施例对所述电子烟如何控制气流只流入目标雾化器进行详 细说明;
第一种请见图2和图3所示,所述电磁开关103具体包括:
固定套201。
所述固定套201靠近所述雾化器101的一端开设有第一通孔。
所述固定套201远离所述雾化器101的一端匹配设置有端盖202。
所述固定套201与所述端盖202相匹配设置以形成容置空间203。
所述固定套201内部设置有活动棒204。
具体的,该活动棒204插设在所述容置空间203内部。
且所述活动棒204朝向所述雾化器101延伸并穿过所述第一通孔以形成抵 靠部205;
所述抵靠部205与所述雾化器101的进气孔相对且抵靠设置;
所述活动棒204远离所述雾化器101的一端内部设置有动铁芯206;
绕制在所述固定套201的外周面设置有螺旋形的第一磁力线圈207。
即在微处理器接收到所述触发信号时,则控制电池102为目标雾化器以及 与目标雾化器对应的目标电磁开关的第一磁力线圈207通电,以使通电后的第 一磁力线圈207生成电磁力以吸动所述动铁芯206,以使所述动铁芯206在所 述电磁力的作用下沿远离所述雾化器的方向运动。
其中,所述磁力线圈通电以生成电磁力为现有技术,在本实施例中对该电 磁原理不再赘述。
所述活动棒204靠近所述第一通孔的圆周侧面沿所述活动棒204的径向延 伸形成卡持环208。
套设在所述活动棒204上,且位于所述卡持环208和所述端盖202之间卡 持固定有复位弹性件209,以使所述第一磁力线圈207断电时,所述复位弹性 件209因不再受到所述卡持环208和所述端盖202的挤压作用,则会生成回复 原状的弹力,所述活动棒204受到该弹力作用之后沿朝向所述雾化器的方向运 动,则使得所述抵靠部205重新抵靠所述所述雾化器的进气孔。
具体的结合图4所示对本实施例中所述电磁开关103的具体工作流程进行 详细说明:
所述输入模块接收用户输入的第一操作指令选定目标雾化器;
所述吸烟开关接收用户输入的触发信号;
所述微处理器根据所述触发信号控制所述电池102为所述目标雾化器301 和与所述目标雾化器301位置相对的所述目标电磁开关304供电;
即目标电磁开关304的第一磁力线圈207通电,则生成远离所述目标雾化 器301方向的电磁力;
所述动铁芯206在所述电磁力的作用下沿远离所述目标雾化器301的方向 运动;
且沿远离所述目标雾化器301的方向运动的所述动铁芯206压缩位于所述 卡持环208和所述端盖202之间的复位弹性件209,以使所述复位弹性件209 发生弹性形变;
因所述动铁芯206沿远离所述目标雾化器301的方向运动,则包含设置有 该动铁芯206的活动棒204也沿远离所述目标雾化器301的方向运动,以使所 述活动棒204的抵靠部205远离目标雾化器301的通气孔303。
当用户通过吸嘴盖100处抽吸电子烟,则电子烟本体内部的压强减小,则 气流从位于电子烟本体上的进气口302流入电子烟本体内部。
流入电子烟本体内部的气流因目标雾化器301烟雾通道104的进气孔303 与所述抵靠部205之间有间隙,则使得气流通过该进气孔303流入烟雾通道 104内部,以使得该气流带动目标雾化器301内部的烟雾流通至吸嘴盖100。
其中,具体的气流方向请见图4所示的箭头方向。
而没有被用户选定为目标雾化器的雾化器的进气孔与所述抵靠部205抵 合,以使的进气孔与所述抵靠部205之间没有间隙,使得流入所述电子烟本体 内部的气流无法通过该进气孔流入所述该雾化器内部。从而避免了气流的浪 费。
较佳的,因所述卡持环208的直径大于所述第一通孔的直径,则使得所述 活动棒204被所述复位弹性件209弹起以重新抵靠所述进气孔时,因卡持环 208的卡持作用,使得所述活动棒204不会冲出所述固定套201与所述端盖202 所形成的容置空间203。
更佳的是,所述复位弹性件209为复位弹簧。
第二种设置方式为:具体请参见图5和图6所示;
由图5和图6所示可知,所述电子烟包括壳体602和与所述壳体602匹配 设置的底盖603,以使所述壳体602与所述底盖603连接以形成所述电子烟本 体。
所述壳体602顶部设置有吸嘴盖100,在本实施例中,与所述吸嘴盖100 连通设置有吸管601,用户通过该吸管601即可抽吸烟雾。
所述电子烟本体内部设置有雾化器101、电池102以及所述雾化器101内 部设置有烟雾通道104,具体请见实施例一,在本实施例中不做赘述。
所述电子烟本体内部还包括电磁开关500。
所述电磁开关500包括:
磁芯501;
绕制在所述磁芯501外周面的第二磁力线圈502,以使通电后的第二磁力 线圈502生成远离所述雾化器101的所述电磁力。
通电后的第二磁力线圈502生成电磁力为现有电磁感应技术,在本实施例 中不做赘述。
分别与多个所述雾化器101可拆卸连接设置有固定座503;
即所述固定座503的数量与所述雾化器101的数量相等,且所述固定座 503与所述雾化器101一一对应设置。
因所述雾化器101与所述固定座503可拆卸连接,以使用户可随时的更换 所述雾化器101,以便于用户更换雾化器。
所述固定座503上设置有与所述雾化器的进气孔位置对应的第二通孔;
所述第二通孔内部固定设置有第一单向阀504;
所述第一单向阀504的阀门上设置有第一铁片701(请见图7所示),所 述第一铁片701在所述第二磁力线圈502通电时打开,以使气流流入烟雾通道 104,在所述第二磁力线圈502断电时闭合,以使气流无法流入所述烟雾通道 104。
以下结合图7所示,对所述微处理器如何控制气流只流入目标雾化器的方 式进行详细说明:
所述输入模块接收用户输入的第一操作指令选定目标雾化器702;
所述吸烟开关接收用户输入的触发信号;
所述微处理器根据所述触发信号控制所述电池102为所述目标雾化器702 和与所述目标雾化器702位置相对的所述目标电磁开关703供电;
即目标电磁开关703的第二磁力线圈502通电,则生成远离所述目标雾化 器702方向的电磁力;
所述目标电磁开关703通过该电磁力吸动所述第一铁片701,以使所述第 一铁片701朝远离所述目标雾化器702的目标进气孔的方向运动,以使所述第 一铁片701与所述目标雾化器的目标进气孔之间形成可供气流流入所述烟雾 通道104的间隙,即使得所述目标进气孔与进气口302导通。
当用户通过吸管601处抽吸电子烟,则电子烟本体内部的压强减小,则气 流从位于电子烟本体上的进气口302流入电子烟本体内部。
流入电子烟本体内部的气流因目标雾化器702的目标进气孔与所述第一 铁片701之间有间隙,则使得气流通过该目标进气孔流入烟雾通道104内部, 以使得该气流带动目标雾化器702内部的烟雾流通至吸嘴盖100。
本种设置方式中所述气流的具体方向请见图7所示的箭头方向。
而没有被用户选定为目标雾化器的雾化器的进气孔与所述第一铁片701 之间没有间隙,则气流无法通过该进气孔流入烟雾通道内部。从而避免了气流 的浪费。
若微处理器控制所述第二磁力线圈502断电,则所述第一铁片701不再受 到远离所述雾化器方向电磁力的作用,且因电子烟内部气流的作用下,使得所 述第一铁片701重新返回至所述第一单向阀504的阀门上,以使气流不再流入。
且因本种设置方式中,所述固定座503上设置有第一单向阀504,而对雾 化器没有进行改变,则使得所述电子烟可使用通用的雾化器。
第三种设置方式为:具体请参见图8和图9所示;
由图8和图9所示可知,所述电子烟包括壳体602和与所述壳体602匹配 设置的底盖603,以使所述壳体602与所述底盖603连接以形成所述电子烟本 体。
所述壳体602顶部设置有吸嘴盖100,在本实施例中,与所述吸嘴盖100 连通设置有吸管601,用户通过该吸管601即可抽吸烟雾。
所述电子烟本体内部设置有雾化器101、电池102、所述雾化器101内部 设置有烟雾通道104以及所述电磁开关500,具体请见第二种设置方式,在本 方式中不做赘述。
本种设置方式中,在所述雾化器101的进气孔匹配设置有第二单向阀801;
即所述第二单向阀801设置在所述雾化器101的烟雾通道104内部。
所述第二单向阀801的阀门上设置有第二铁片802。
所述第二铁片802在所述第二磁力线圈502通电时打开,以使气流流入烟 雾通道104,在所述第二磁力线圈502断电时闭合,以使气流无法流入所述烟 雾通道104。
以下结合图10所示,对所述微处理器如何控制气流只流入目标雾化器的 方式进行详细说明:
所述输入模块接收用户输入的第一操作指令选定目标雾化器1002;
所述吸烟开关接收用户输入的触发信号;
所述微处理器根据所述触发信号控制所述电池102为所述目标雾化器 1002和与所述目标雾化器1002位置相对的所述目标电磁开关1003供电;
即目标电磁开关1003的第二磁力线圈502通电,则生成远离所述目标雾 化器1002方向的电磁力;
所述目标电磁开关1003通过该电磁力吸动所述第二铁片802,以使所述 第二铁片802朝远离所述目标雾化器1002的目标进气孔的方向运动,以使所 述第二铁片802与所述目标雾化器1002的目标进气孔之间形成可供气流流入 所述烟雾通道104的间隙,即使得所述目标进气孔与进气口302导通。
当用户通过吸管601处抽吸电子烟,则电子烟本体内部的压强减小,则气 流从位于电子烟本体上的进气口302流入电子烟本体内部。
流入电子烟本体内部的气流因目标雾化器1002的目标进气孔与所述第二 铁片802之间有间隙,则使得气流通过该目标进气孔流入烟雾通道104内部, 以使得该气流带动目标雾化器1002内部的烟雾流通至吸嘴盖100。
本种设置方式中的气流方向请见图10所示的箭头方向。
而没有被用户选定为目标雾化器的雾化器的进气孔与所述第二铁片802 之间没有间隙,则气流无法通过该进气孔流入烟雾通道内部。从而避免了气流 的浪费。
若微处理器控制所述第二磁力线圈502断电,则所述第二铁片802不再受 到远离所述雾化器方向电磁力的作用,且因电子烟内部气流的作用下,使得所 述第二铁片802重新返回至所述第二单向阀801的阀门上,以使气流不在流入。
本种设置方式中将所述第二单向阀801设置在雾化器的烟雾通道内部,使 得所述第二单向阀801与所述雾化器的连接更紧固,进一步的减少气流流入所 述烟雾通道104内的可能。
实施例三,本实施例对电子烟的具体结构进行进一步的详细说明:
请见图9所示,所述电子烟本体内部还可包括安装座901。
通过所述安装座901可使得多个所述雾化器101活动插设在所述安装座内 部以使多个所述雾化器101与所述电子烟本体可拆卸连接。以使用户可根据需 要随时更换所述雾化器101,便于用户更换损坏的雾化器101,以使往所述雾 化器101内添加烟油。
具体可拆卸连接方式可为所述安装座901与所述雾化器101通过螺纹或卡 扣可拆卸连接,具体可拆卸连接方式在本实施例中不做赘述。
以下结合体图5和图6所示,对雾化器101的具体结构进行详细说明:
所述雾化器101具体包括:
雾化套1004;
位于所述雾化套1004内部,用于雾化所述烟油的电热组件1005;
位于所述雾化套1004内部,用于存储所述烟油并将所述烟油输送给所述 电热组件1005的储油组件1006;
具体的在本实施例中,所述电热组件1005的具体结构不作限定,只要该 电热组件1005能够雾化烟油以形成烟雾即可,例如所述电热组件1005可为缠 绕设置在导油绳上的电热丝,或,由压制成片状的电热丝旋转盘绕成螺旋状或 蛇形等。
所述储油组件1006的具体结构在本实施例中不作限定,只要该储油组件 1006能够存储烟油并将烟油输送给电热组件1005即可,例如所述电热组件 1005可为储油棉,所述导游绳可穿过该储油棉;采用该种设置方式可防止烟 油倒流,防止烟油泄露。
所述储油组件1006还可为储油腔,所述储油腔与呈片状的电热组件1005 之间设置有导油布,以使呈片状的电热组件1005盘绕设置在导油布上,从而 有效的避免工作中的电热组件1005烧坏储油棉,而且提升了电热组件1005 与储油组件1006的接触面积,提升烟雾量。
进一步参见图6所示,所述雾化器101还包括:
插设在所述雾化套1004上的外电极1007;
套设在所述外电极1007内的绝缘环1008;
插设在所述绝缘环1008内的内电极1009,所述内电极1009上开设有所 述进气孔。
在本实施例中,所述吸烟开关为用于根据用户吸烟动作生成所述触发信号 的气流感应开关1010;当然,也可以为按键开关,在此不作限定。
具体的,用户通过吸嘴盖100处抽吸时,电子烟本体内部压强减小,以使 的气流感应开关1010根据电子烟内部压强减少,并对应生成所述触发信号;
与所述气流感应开关1010电连接设置有微处理器1011。
本实施例中,还可在电子烟本体上设置第一操作按键,该第一操作按键可 根据用户的按压操作控制所述电池102为所述雾化器101和所述电磁开关供 电。
更具体的,在所述壳体602上设置有所述输入模块;
在本实施例中,所述输入模块用于根据用户输入的按压操作生成所述第一 操作指令的第二操作按键1012;
即用户通过该第二操作按键1012即可选定目标雾化器,在本实施例中, 所述第二操作按键1012与所述雾化器101的数量相等,即各个所述第二操作 按键1012与各个所述雾化器101一一对应,用户通过与所述雾化器101对应 的第二操作按键1012即可选定对应的雾化器作为目标雾化器。
还可在所述电子烟本体上设置有触摸屏,所述触摸屏用于根据用户输入的 触摸操作生成所述第一操作指令;
还可在所述电子烟本体上设置有语音吸烟开关,所述语音吸烟开关用于根 据用户输入的语音生成所述第一操作指令。
实施例四,本实施例对基于上述实施例的电子烟的控制方法进行详细说 明,即通过本实施例所示的控制方法使得所述电子烟能够雾化多种口味的烟 油,而且能够提升烟雾量。
请见图11所示,所述控制方法具体包括:
1101、所述输入模块根据用户输入的所述第一操作指令选定若干所述雾化 器中的至少一个雾化器作为所述目标雾化器;
1102、所述微处理器根据所述第一操作指令确定所述目标雾化器;
1103、所述吸烟开关根据用户的操作生成所述触发信号;
1104、所述微处理器根据所述触发信号控制所述电池为所述目标雾化器和 所述目标电磁开关供电;
1105、所述目标雾化器雾化其内部所存储的所述烟油以形成所述烟雾;
1106、通电后的所述目标电磁开关生成远离所述目标雾化器的电磁力;
1107、所述目标电磁开关通过所述电磁力控制所述目标进气孔与所述进气 口导通。
其中,用于实现本实施例所示的控制方法的电子烟的具体结构请见实施例 一至实施四,在本实施例中不做赘述。
实施例五,因所述电子烟控制气流只流入目标雾化器的控制方法,会因电 子烟的结构的不同而有所不同,本实施例对所述控制方法进行进一步的详细说 明:
第一种控制方法,用于实现本第一种控制方法的电子烟的具体结构请见实 施例二所示的第一种电子烟结构:
本实施例中的第一种控制方法具体包括:
1201、所述输入模块根据用户输入的所述第一操作指令选定若干所述雾化 器中的至少一个雾化器作为所述目标雾化器;
1202、所述微处理器根据所述第一操作指令确定所述目标雾化器;
1203、所述吸烟开关根据用户的操作生成所述触发信号;
1204、所述微处理器根据所述触发信号控制所述电池为所述目标雾化器和 所述目标电磁开关供电;
1205、所述目标雾化器雾化其内部所存储的所述烟油以形成所述烟雾;
本实施例中的步骤1201至步骤1205与实施例四中的步骤1101至1105过 程相同,在本实施例中不做赘述。
1206、通电后的所述目标电磁开关的第一磁力线圈生成所述电磁力;
1207、所述第一磁力线圈生成的所述电磁力吸动位于所述活动棒内部的所 述动铁芯;
1208、包含有所述动磁铁的所述活动棒朝向远离所述目标雾化器的方向运 动,使得所述目标进气孔与所述进气口导通;
1209、朝向远离所述雾化器方向运动的所述活动棒压缩所述复位弹性件, 以使所述复位弹性件呈压缩状态;
1210、所述输入模块接收用户输入的用于控制所述目标雾化器停止工作的 第二操作指令;
本实施例中所述的输入模块的具体结构请见实施例三所示,所述输入模块 不仅仅可接收用户输入的第一操作指令,还可接收用户输入的第二操作指令, 用户通过所述第二操作指令以控制正在工作以生成烟雾的目标雾化器停止工 作。
1211、所述微处理器根据所述第二操作指令控制所述目标雾化器和所述第 一磁力线圈断电。
因所述第一磁力线圈断电,则呈压缩状态的所述复位弹性件回弹以控制所 述活动棒复位以使所述抵靠部重新抵靠所述进气孔。
第二种控制方法,用于实现本第二种控制方法的电子烟的具体结构请见实 施例二所示的第二种电子烟结构:
本实施例中的第二种控制方法具体包括:
1301、所述输入模块根据用户输入的所述第一操作指令选定若干所述雾化 器中的至少一个雾化器作为所述目标雾化器;
1302、所述微处理器根据所述第一操作指令确定所述目标雾化器;
1303、所述吸烟开关根据用户的操作生成所述触发信号;
1304、所述微处理器根据所述触发信号控制所述电池为所述目标雾化器和 所述目标电磁开关供电;
1305、所述目标雾化器雾化其内部所存储的所述烟油以形成所述烟雾;
本实施例中的步骤1301至步骤1305与实施例四中的步骤1101至1105过 程相同,在本实施例中不做赘述。
1306、通电后的所述目标雾化器的所述第二磁力线圈生成所述电磁力;
1307、所述第二磁力线圈生成的所述电磁力吸动所述第一铁片;
1308、所述第一铁片朝远离所述目标进气孔方向运动,使得所述目标进气 孔与所述进气口导通;
1309、所述输入模块接收用户输入的所述第二操作指令;
1310、所述微处理器根据所述第二操作指令控制所述目标雾化器和所述第 二磁力线圈断电。
因所述第二磁力线圈断电,以使所述第一铁片在所述电子烟本体内部气流 的作用下重新抵靠所述进气孔。
第三种控制方法,用于实现本第三种控制方法的电子烟的具体结构请见实 施例三所示的第三种电子烟结构:
本实施例中的第三种控制方法具体包括:
1401、所述输入模块根据用户输入的所述第一操作指令选定若干所述雾化 器中的至少一个雾化器作为所述目标雾化器;
1402、所述微处理器根据所述第一操作指令确定所述目标雾化器;
1403、所述吸烟开关根据用户的操作生成所述触发信号;
1404、所述微处理器根据所述触发信号控制所述电池为所述目标雾化器和 所述目标电磁开关供电;
1405、所述目标雾化器雾化其内部所存储的所述烟油以形成所述烟雾;
本实施例中的步骤1401至步骤1405与实施例四中的步骤1101至1105过 程相同,在本实施例中不做赘述。
1406、通电后的所述第二磁力线圈生成所述电磁力;
1407、所述第二磁力线圈生成的所述电磁力吸动所述第二铁片;
1408、所述第二铁片朝远离所述目标进气孔的方向运动,使得所述目标进 气孔与所述进气口导通;
1409、所述输入模块接收所述第二操作指令;
1410、所述微处理器根据所述第二操作指令控制所述目标雾化器和所述第 二磁力线圈断电。
因所述第二磁力线圈断电,以使所述第二铁片在所述电子烟本体内部气流 的作用下重新抵靠所述雾化器的进气孔。
下面将结合本实用新型实施例中的附图,对本实用新型实施例中的技术方 案进行清楚、完整地描述,显然,所描述的实施例仅仅是本实用新型一部分实 施例,而不是全部的实施例。基于本实用新型中的实施例,本领域普通技术人 员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本实用新型 保护的范围。
本说明书中各个实施例采用递进的方式描述,每个实施例重点说明的都是 与其他实施例的不同之处,各个实施例之间相同相似部分互相参见即可。
对所公开的实施例的上述说明,使本领域专业技术人员能够实现或使用本 实用新型。对这些实施例的多种修改对本领域的专业技术人员来说将是显而易 见的,本文中所定义的一般原理可以在不脱离本实用新型的精神或范围的情况 下,在其它实施例中实现。因此,本实用新型将不会被限制于本文所示的这些 实施例,而是要符合与本文所公开的原理和新颖特点相一致的最宽的范围。

Claims (17)

  1. 一种电子烟,其特征在于,包括:
    电子烟本体;
    所述电子烟本体设置有多个用于雾化烟油的雾化器、用于为所述雾化器供 电的电池、用于根据用户的操作生成触发信号的吸烟开关、用于接收用户的第 一操作指令以选定目标雾化器的输入模块以及分别与所述输入模块、所述吸烟 开关、所述电池以及所述雾化器电连接的微处理器;
    与所述微处理器还电连接设置有多个电磁开关,各个所述电磁开关与各个 所述雾化器的进气孔一一相对设置并用于开启或关闭对应的所述进气孔,以使 所述微处理器根据所述触发信号控制所述电池为所述目标雾化器和与所述目 标雾化器对应的目标电磁开关供电,以使所述目标雾化器的目标进气孔与所述 电子烟本体上的进气口导通。
  2. 根据权利要求1所述的电子烟,其特征在于,所述电磁开关包括:
    固定套;
    所述固定套靠近所述雾化器的一端开设有第一通孔;
    所述固定套远离所述雾化器的一端匹配设置有端盖;
    所述固定套内部设置有活动棒,且所述活动棒朝向所述雾化器延伸并穿过 所述第一通孔以形成抵靠部;
    所述抵靠部与所述雾化器的进气孔相对且抵靠设置;
    所述活动棒远离所述雾化器的一端内部设置有动铁芯;
    绕制在所述固定套的外周面设置有螺旋形的第一磁力线圈,使得通电后的 所述第一磁力线圈生成电磁力以吸动所述动铁芯,使得所述目标进气孔与所述 进气口导通;
    所述活动棒靠近所述第一通孔的圆周侧面沿所述活动棒的径向延伸形成 卡持环,且所述卡持环的直径大于所述第一通孔的直径;
    套设在所述活动棒上,且位于所述卡持环和所述端盖之间卡持固定有复位 弹性件,以使所述第一磁力线圈断电时,所述复位弹性件控制所述抵靠部抵靠 所述目标进气孔。
  3. 根据权利要求2所述的电子烟,其特征在于,所述复位弹性件为复位 弹簧。
  4. 根据权利要求1所述的电子烟,其特征在于,所述电磁开关包括:
    磁芯;
    绕制在所述磁芯外周面的第二磁力线圈,以使通电后的第二磁力线圈生成 远离所述雾化器的所述电磁力。
  5. 根据权利要求4所述的电子烟,其特征在于,
    分别与多个所述雾化器可拆卸连接设置有固定座;
    所述固定座上设置有与所述雾化器的进气孔位置对应的第二通孔;
    所述第二通孔内部固定设置有第一单向阀;
    所述第一单向阀的阀门上设置有第一铁片,使得若所述第二磁力线圈断 电,则所述第一铁片在所述电子烟本体内部气流的作用下抵靠所述雾化器的进 气孔;且使得若所述第二磁力线圈通电,则使得所述第二磁力线圈生成的所述 电磁力吸动所述第一铁片,以使所述第一铁片朝远离所述目标进气孔的方向运 动,使得所述目标进气孔与所述进气口导通。
  6. 根据权利要求4所述的电子烟,其特征在于,
    所述雾化器的进气孔匹配设置有第二单向阀;
    所述第二单向阀的阀门上设置有第二铁片,使得若所述第二磁力线圈断 电,则所述第二铁片在所述电子烟本体内部气流的作用下抵靠所述雾化器的进 气孔;且使得若所述第二磁力线圈通电,则使得所述第二磁力线圈生成的所述 电磁力吸动所述第二铁片,以使所述第二铁片朝远离所述目标进气孔的方向运 动,使得所述目标进气孔与所述进气口导通。
  7. 根据权利要求1至6任一所述的电子烟,其特征在于,所述电子烟内 部还包括:
    安装座,多个所述雾化器活动插设在所述安装座内部以使多个所述雾化器 与所述电子烟本体可拆卸连接。
  8. 根据权利要求7所述的电子烟,其特征在于,所述雾化器包括:
    雾化套;
    位于所述雾化套内部,用于雾化所述烟油的电热组件;
    位于所述雾化套内部,用于存储所述烟油并将所述烟油输送给所述电热组 件的储油组件;
    插设在所述雾化套上的外电极;
    套设在所述外电极内的绝缘环;
    插设在所述绝缘环内的内电极,所述内电极上开设有所述进气孔。
  9. 根据权利要求1所述的电子烟,其特征在于,所述吸烟开关为用于根 据用户吸烟动作生成所述触发信号的气流感应开关。
  10. 根据权利要求1所述的电子烟,其特征在于,所述输入模块包括:
    用于根据用户输入的按压操作生成所述第一操作指令的第二操作按键;
    和/或,
    用于根据用户输入的触摸操作生成所述第一操作指令的触摸屏;
    和/或,
    用于根据用户输入的语音生成所述第一操作指令的语音吸烟开关。
  11. 一种基于权利要求1至10任一项所述电子烟的控制方法,其特征在 于,包括:
    所述输入模块根据用户输入的所述第一操作指令选定若干所述雾化器中 的至少一个雾化器作为所述目标雾化器;
    所述微处理器根据所述第一操作指令确定所述目标雾化器;
    所述吸烟开关根据用户的操作生成所述触发信号;
    所述微处理器根据所述触发信号控制所述电池为所述目标雾化器和所述 目标电磁开关供电;
    所述目标雾化器雾化其内部所存储的所述烟油以形成所述烟雾;
    通电后的所述目标电磁开关生成远离所述目标雾化器的电磁力;
    所述目标电磁开关通过所述电磁力控制所述目标进气孔与所述进气口导 通。
  12. 根据权利要求11所述的控制方法,其特征在于,
    通电后的所述目标电磁开关生成远离所述目标雾化器的电磁力包括:
    通电后的所述目标电磁开关的第一磁力线圈生成所述电磁力;
    所述目标电磁开关通过所述电磁力控制所述目标进气孔与所述进气口导 通包括:
    所述第一磁力线圈生成的所述电磁力吸动位于所述活动棒内部的所述动 铁芯;
    包含有所述动磁铁的所述活动棒朝向远离所述目标雾化器的方向运动,使 得所述目标进气孔与所述进气口导通;
    朝向远离所述雾化器方向运动的所述活动棒压缩所述复位弹性件,以使所 述复位弹性件呈压缩状态。
  13. 根据权利要求12所述的控制方法,其特征在于,所述朝向远离所述 雾化器方向运动的所述活动棒压缩所述复位弹性件之后还包括:
    所述输入模块接收用户输入的用于控制所述目标雾化器停止工作的第二 操作指令;
    所述微处理器根据所述第二操作指令控制所述目标雾化器和所述第一磁 力线圈断电,以使呈压缩状态的所述复位弹性件回弹以控制所述活动棒复位以 使所述抵靠部重新抵靠所述进气孔。
  14. 根据权利要求11所述的控制方法,其特征在于,
    通电后的所述目标电磁开关生成远离所述目标雾化器的电磁力包括:
    通电后的所述目标雾化器的所述第二磁力线圈生成所述电磁力;
    所述目标电磁开关通过所述电磁力控制所述目标进气孔与所述进气口导 通包括:
    所述第二磁力线圈生成的所述电磁力吸动所述第一铁片;
    所述第一铁片朝远离所述目标进气孔方向运动,使得所述目标进气孔与所 述进气口导通。
  15. 根据权利要求14所述的控制方法,其特征在于,所述第一铁片朝远 离所述目标进气孔方向运动之后还包括:
    所述输入模块接收用户输入的所述第二操作指令;
    所述微处理器根据所述第二操作指令控制所述目标雾化器和所述第二磁 力线圈断电,以使所述第一铁片在所述电子烟本体内部气流的作用下重新抵靠 所述进气孔。
  16. 根据权利要求11所述的控制方法,其特征在于,通电后的所述目标 电磁开关生成远离所述目标雾化器的电磁力包括:
    通电后的所述第二磁力线圈生成所述电磁力;
    所述目标电磁开关通过所述电磁力控制所述目标进气孔与所述进气口导 通包括:
    所述第二磁力线圈生成的所述电磁力吸动所述第二铁片;
    所述第二铁片朝远离所述目标进气孔的方向运动,使得所述目标进气孔与 所述进气口导通。
  17. 根据权利要求16所述的控制方法,其特征在于,所述第二铁片朝远 离所述目标进气孔的方向运动之后还包括:
    所述输入模块接收所述第二操作指令;
    所述微处理器根据所述第二操作指令控制所述目标雾化器和所述第二磁 力线圈断电,以使所述第二铁片在所述电子烟本体内部气流的作用下重新抵靠 所述雾化器的进气孔。
    +
PCT/CN2014/080190 2014-04-24 2014-06-18 一种电子烟以及基于该电子烟的控制方法 WO2015161556A1 (zh)

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