WO2017118347A1 - 调气机构、含有该调气机构的电子烟及其调气方法 - Google Patents

调气机构、含有该调气机构的电子烟及其调气方法 Download PDF

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Publication number
WO2017118347A1
WO2017118347A1 PCT/CN2016/113554 CN2016113554W WO2017118347A1 WO 2017118347 A1 WO2017118347 A1 WO 2017118347A1 CN 2016113554 W CN2016113554 W CN 2016113554W WO 2017118347 A1 WO2017118347 A1 WO 2017118347A1
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WO
WIPO (PCT)
Prior art keywords
air conditioning
inner ring
outer ring
motor
electronic cigarette
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PCT/CN2016/113554
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English (en)
French (fr)
Inventor
邱伟华
Original Assignee
常州聚为智能科技有限公司
卓尔悦欧洲控股有限公司
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Application filed by 常州聚为智能科技有限公司, 卓尔悦欧洲控股有限公司 filed Critical 常州聚为智能科技有限公司
Publication of WO2017118347A1 publication Critical patent/WO2017118347A1/zh
Priority to US16/029,660 priority Critical patent/US20180310629A1/en

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    • GPHYSICS
    • G05CONTROLLING; REGULATING
    • G05DSYSTEMS FOR CONTROLLING OR REGULATING NON-ELECTRIC VARIABLES
    • G05D13/00Control of linear speed; Control of angular speed; Control of acceleration or deceleration, e.g. of a prime mover
    • G05D13/62Control of linear speed; Control of angular speed; Control of acceleration or deceleration, e.g. of a prime mover characterised by the use of electric means, e.g. use of a tachometric dynamo, use of a transducer converting an electric value into a displacement
    • 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
    • A24F40/51Arrangement of sensors
    • 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
    • GPHYSICS
    • G05CONTROLLING; REGULATING
    • G05DSYSTEMS FOR CONTROLLING OR REGULATING NON-ELECTRIC VARIABLES
    • G05D11/00Control of flow ratio
    • G05D11/02Controlling ratio of two or more flows of fluid or fluent material
    • G05D11/13Controlling ratio of two or more flows of fluid or fluent material characterised by the use of electric means
    • G05D11/131Controlling ratio of two or more flows of fluid or fluent material characterised by the use of electric means by measuring the values related to the quantity of the individual components
    • G05D11/132Controlling ratio of two or more flows of fluid or fluent material characterised by the use of electric means by measuring the values related to the quantity of the individual components by controlling the flow of the individual components
    • 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

Definitions

  • the present invention relates to the field of electronic cigarette technology, and in particular to a gas regulating mechanism, an electronic cigarette containing the same, and a gas regulating method thereof.
  • the electronic cigarette is provided with a gas regulating mechanism, and the user can adjust the intake air through the gas regulating mechanism to meet the demand for the amount of smoke.
  • the existing air conditioning mechanism cannot automatically adjust the intake air, and the user needs to manually adjust it during use, which makes the user's experience poor. Therefore, it is necessary to provide a user-friendly, intelligent electronic cigarette that can automatically adjust the amount of intake air.
  • an object of the present invention is to provide a gas regulating mechanism, an electronic cigarette including the same, and a gas regulating method thereof.
  • a gas regulating mechanism includes a gas regulating component and a control system, and the gas regulating component includes a gas regulating inner ring, a gas regulating outer ring and a motor, and the gas regulating outer ring is sleeved in the gas regulating inner ring a first intake hole is defined in the outer ring of the air conditioning, and a second air inlet is opened on the outer ring of the air conditioning, and one end of the motor is matched with the inner ring of the air conditioning or the outer ring of the air conditioning through the gear.
  • the control system includes an input module, a storage module, and a control module.
  • the input module is configured to allow a user to input a working power/operating voltage/operating temperature of a desired atomizer
  • the storage module is configured to pre-store the corresponding relationship between the working power/operating voltage/operating temperature of the atomizer and the preset position of the air conditioning inner ring/air conditioning outer ring, and the air conditioning inner ring/air conditioning outer ring preset Correspondence data between position and motor preset revolution number, and
  • the control module is configured to control the rotation of the motor, so that the air conditioning inner ring/air conditioning outer ring returns to the initial position, and is further configured to control the motor rotation preset rotation according to the pre-stored corresponding relationship data. The number of the inner ring/air conditioning outer ring is rotated from the initial position to the preset position.
  • the ventilating assembly is disposed on the atomizer, or disposed on the battery assembly, or disposed between the atomizer and the battery assembly, and the control system is disposed on the battery assembly.
  • the initial position is a zero position or a position.
  • one end of the motor is coupled to the inner wall of the conditioned inner ring by a gear.
  • a retaining member is further disposed on the inner wall of the air conditioning inner ring, and the stopping member stops the inner ring of the air conditioning to rotate further after the initial rotation.
  • the air conditioning component is disposed on the atomizer, the atomizer includes a base connector, a liquid storage component, and an atomizing head, and one end of the air conditioning component is connected to the base connector, and the other end is stored
  • the liquid assembly is connected, the base connector is connected to the battery assembly at one end of the liquid storage assembly, the inner cavity of the liquid storage assembly forms a smoke passage, and one end of the atomization head is installed in the inner cavity of the base connector, and One end passes through the inner cavity of the air conditioning assembly and extends into the smoke passage, and one end of the motor relative to the inner ring of the air conditioning is installed in the inner cavity of the base connector.
  • a gas regulating mechanism includes a gas regulating component and a control system, and the gas regulating component includes a gas regulating inner ring, a gas regulating outer ring and a motor, and the gas regulating outer ring is sleeved in the gas regulating inner ring a first intake hole is defined in the outer ring of the air conditioning, and a second air inlet is opened on the outer ring of the air conditioning, and one end of the motor is matched with the inner ring of the air conditioning or the outer ring of the air conditioning through the gear.
  • the control system includes a sensor module, a storage module, and a control module.
  • the sensor module is configured to detect a value of a related physical quantity x related to an intake air amount
  • the storage module is configured to pre-store the correspondence between the value of the relevant physical quantity x and the preset position of the air conditioning inner ring/air conditioning outer ring, and the preset position of the air conditioning inner ring/air conditioning outer ring and the preset number of rotations of the motor.
  • the correspondence data is also used to store the value of the relevant physical quantity x detected by the sensor module, and
  • the control module is configured to control the rotation of the motor, so that the air conditioning inner ring/air conditioning outer ring returns to the initial position, and is further configured to control the motor to rotate the preset rotation number according to the pre-stored corresponding relationship data, so that the air conditioning inner ring / The air conditioning outer ring is rotated from the initial position to the preset position.
  • the air conditioning component is disposed on the atomizer, or disposed on the battery component, or disposed between the atomizer and the battery component, the sensor module is disposed on the atomizer, the storage module and The control module is placed on the battery pack.
  • the relevant physical quantity x is at least one of a smoke temperature, a smoke humidity, and a pressure applied to the mouthpiece when the user pumps.
  • the sensor module includes at least one of a temperature sensor, a humidity sensor, and a pressure sensor.
  • the temperature sensor or the humidity sensor is disposed in the inner cavity of the cigarette holder, or is disposed in the smoke passage, or is disposed inside the atomizing head, or is close to the atomization Head settings.
  • the pressure sensor is disposed close to the inner cavity wall of the mouthpiece, or the interlayer is disposed inside the wall of the mouthpiece, or is disposed close to the outer wall of the mouthpiece.
  • An electronic cigarette includes an atomizer and a battery assembly, and the electronic cigarette further includes any one of the air conditioning mechanisms.
  • An air conditioning method for an electronic cigarette comprising a gas regulating mechanism, the gas regulating mechanism comprising a gas regulating component and a control system, the gas regulating component comprising a gas regulating inner ring, a gas regulating outer ring and a motor
  • the control system includes an input module, a storage module and a control module, and the air conditioning method comprises the steps of:
  • the user inputs the working power/operating voltage/operating temperature of the desired atomizer through the input module;
  • the control module controls the rotation of the motor such that the conditioned inner ring/air conditioned outer ring returns to the initial position
  • the control module is based on the pre-stored atomizer's working power/operating voltage/operating temperature and the corresponding relationship between the gas-regulating inner ring/air-conditioning outer ring preset position and the gas-regulating inner ring/air-conditioning outer ring preset position and motor.
  • the corresponding relationship data of the preset number of revolutions controls the motor to rotate the preset number of revolutions, so that the air conditioning inner ring/air conditioning outer ring is rotated from the initial position to the preset position.
  • An air conditioning method for an electronic cigarette comprising a gas regulating mechanism, the gas regulating mechanism comprising a gas regulating component and a control system, the gas regulating component comprising a gas regulating inner ring, a gas regulating outer ring and a motor
  • the control system includes a sensor module, a storage module and a control module, and the air conditioning method comprises the steps of:
  • the sensor module detects the value of the related physical quantity x, and feeds back the value of the related physical quantity x to the control module, and the control module stores the value of the detected related physical quantity x into the storage module;
  • the control module controls the rotation of the motor such that the air conditioning inner ring/air conditioning outer ring returns to the initial position
  • the control module according to the corresponding relationship between the value of the pre-stored relevant physical quantity x and the preset position of the gas-regulating inner ring/air-conditioning outer ring and the corresponding relationship between the preset position of the gas-regulating inner ring/air-conditioning outer ring and the preset number of rotations of the motor Data, controlling the motor to rotate the preset number of revolutions, so that the air conditioning inner ring/air conditioning outer ring is rotated from the initial position to the preset position;
  • the electronic cigarette works for a period of time after the adjusted intake air amount
  • the sensor module detects the value of the related physical quantity x again, and feeds back the value of the related physical quantity x detected again to the control module, and the control module stores the value of the related physical quantity x obtained by the detection again into the storage module;
  • the control module determines whether the value of the related physical quantity x detected again is equal to the value of the related physical quantity x obtained by the last detection stored in the storage module;
  • the control module controls the electronic cigarette to operate for a period of time under the current intake air amount or the adjusted intake air amount according to the judgment result; and the sensor module detects the value of the related physical quantity x again, and detects the related physical quantity x again. The value is fed back to the control module, and the control module stores the value of the related physical quantity x obtained again to the storage module.
  • the step of controlling the electronic cigarette to operate for a period of time under the current intake air amount or the adjusted intake air amount according to the determination result further includes:
  • the electronic cigarette When the value of the correlated physical quantity x detected again is equal to the value of the related physical quantity x obtained by the last detection stored in the storage module, the electronic cigarette operates for a period of time at the current intake air amount;
  • control module controls the motor to rotate, so that the air conditioning inner ring/air conditioning outer ring returns to the initial position.
  • the control module according to the pre-stored correlation physical quantity x value and the corresponding relationship data of the gas-regulating inner ring/air-conditioning outer ring preset position and the corresponding position of the gas-regulating inner ring/air-conditioning outer ring preset position and the motor preset number of revolutions
  • the relationship data controls the motor to rotate the preset number of revolutions, so that the air conditioning inner ring/air conditioning outer ring rotates from the initial position to the preset position, and the electronic cigarette operates for a certain period of time under the adjusted intake air amount.
  • the intake air amount can be automatically adjusted according to the desired operating power/operating voltage/operating temperature of the atomizer input by the user, or according to the value of the relevant physical quantity x detected by the sensor module, the user does not Manual adjustments must be made, which makes the electronic cigarette more user-friendly and intelligent, which enhances the user experience.
  • FIG. 1 is a schematic structural view of an electronic cigarette according to a first embodiment of the present invention
  • Figure 2 is a cross-sectional view of the atomizer shown in Figure 1 after the air conditioning assembly is installed;
  • FIG. 3 is a circuit block diagram of the control system shown in FIG. 1 after connecting a motor and a battery assembly;
  • Figure 4 is a cross-sectional view of the air conditioning assembly shown in Figure 2 along the A-A plane, the air conditioning inner ring is located at a position;
  • Figure 5 is a cross-sectional view of the ventilating assembly of Figure 4 with the conditioned inner ring in a zero position;
  • FIG. 6 is a flow chart of the air conditioning of the electronic cigarette shown in FIG. 1;
  • FIG. 7 is a schematic structural view of an electronic cigarette according to a second embodiment of the present invention.
  • FIG 8 is a circuit block diagram of the control system shown in Figure 7 after connecting the motor and the battery assembly;
  • Fig. 9 is a flow chart of the air conditioning of the electronic cigarette shown in Fig. 7.
  • Air conditioning mechanism 10, 40 atomizing head: 23 second air inlet: 115
  • Nebulizer 20 Smoke channel: 24 Stops: 116
  • Air conditioning components 11 air conditioning inner ring: 111 storage module: 122, 132
  • Control system 12, 13 air conditioning outer ring: 112 control module: 123, 133
  • Base connector 21 Motor: 113 Sensor module: 131
  • a first embodiment of the present invention provides a gas regulating mechanism 10, which includes a gas regulating assembly 11 and a control system 12.
  • the tempering assembly 11 is disposed on the atomizer 20, or disposed on the battery assembly 30, or disposed on the atomizer 20 and the battery assembly 30. between.
  • the tempering assembly 11 includes a conditioned inner ring 111, a conditioned outer ring 112, and a motor 113.
  • the air conditioning outer ring 112 is disposed on the outer circumference of the air conditioning inner ring 111.
  • the air conditioning inner ring 111 is provided with a first air inlet hole 114, and the air conditioning outer ring 112 is provided with a second air inlet hole 115.
  • the control system 12 is disposed on the battery assembly 30.
  • the control system 12 includes an input module 121, a storage module 122, and a control module 123.
  • the input module 121 , the storage module 122 , and the motor 113 are electrically connected to the control module 123 , and the control module 123 is also electrically connected to the battery component 30 .
  • the input module 121 is used for the user to input the desired operating power/operating voltage/operating temperature of the atomizer 20.
  • the storage module 122 is configured to pre-store the corresponding relationship data between the working power/operating voltage/operating temperature of the atomizer 20 and the preset position of the air conditioning inner ring 111/the air conditioning outer ring 112, and the air conditioning inner ring 111/tone Corresponding relationship data between the preset position of the gas outer ring 112 and the preset number of revolutions of the motor 113.
  • the control module 123 is configured to control the rotation of the motor 113 such that the tempering inner ring 111/the tempering outer ring 112 returns to the initial position, and is further configured to control the motor 113 to rotate the preset number of revolutions according to the pre-stored correspondence data.
  • the tempering inner ring 111/the tempering outer ring 112 is rotated from the initial position to the preset position such that the intake air amount satisfies the demand of the operating power/operating voltage/operating temperature of the atomizer 20 input by the user.
  • the initial position is a zero position or a position.
  • the zero position is a position where the first intake hole 114 and the second intake hole 115 are completely staggered, and when the intake air amount is zero, the position of the air conditioning inner ring 111 / the air conditioning outer ring 112 is located; the one position is the first position The intake hole 114 and the second intake hole 115 are completely connected, and when the intake air amount is maximum, the position of the air conditioning inner ring 111 / the air conditioning outer ring 112 is located.
  • one end of the motor 113 is engaged with the inner wall of the conditioned inner ring 111 by a gear.
  • the inner wall of the air conditioning inner ring 111 is further provided with a stopper 116, and the stopper 116 stops the rotation of the air conditioning inner ring 111 to the initial position and further rotates. This allows the control module 123 to judge that the conditioned inner ring 111 has rotated to the initial position.
  • the initial position is a position.
  • the stopping member 116 stops the air conditioning inner ring 111 from rotating further counterclockwise, and the control module 123 can thereby determine the air conditioning.
  • the inner ring 111 has been rotated to the initial position.
  • the air conditioning inner ring 111 rotates clockwise, it can be rotated from the initial position to the preset position.
  • the tempering assembly 11 is disposed on the atomizer 20.
  • the atomizer 20 includes a bottom The seat connector 21, the liquid storage assembly 22 and the atomizing head 23.
  • One end of the air conditioning assembly 11 is connected to the base connector 21, and the other end is connected to the liquid storage assembly 22.
  • the base connector 21 is coupled to the battery assembly 30 with respect to the other end of the reservoir assembly 22.
  • the inner cavity of the liquid storage assembly 22 forms a smoke passage 24, one end of which is installed in the inner cavity of the base connecting member 21, and the other end passes through the inner cavity of the air conditioning assembly 11 and extends into the smoke passage. 24 in.
  • One end of the motor 113 remote from the conditioned inner ring 111 is mounted in the inner cavity of the base connector 21.
  • the atomizer 20 further includes a mouthpiece 25 mounted at the other end of the liquid storage assembly 22 opposite the base connector 21, the mouthpiece 25 being in communication with the smoke passage 24.
  • the first embodiment of the present invention also provides an electronic cigarette 1, which includes an atomizer 20 and a battery assembly 30, and further includes the air conditioning mechanism 10.
  • a first embodiment of the present invention further provides a method for modulating a gas of an electronic cigarette 1 .
  • the modulating method includes the following steps:
  • Step S101 the user inputs the desired operating power / working voltage / operating temperature of the atomizer 20 through the input module 121, and then proceeds to step S102;
  • Step S102 the control module 123 controls the motor 113 to rotate, so that the air conditioning inner ring 111 returns to the initial position, and then proceeds to step S103;
  • step S103 the control module 123 pre-stores the corresponding relationship data between the operating power/operating voltage/operating temperature of the atomizer 20 and the preset position of the air conditioning inner ring 111, and the preset position of the air conditioning inner ring 111 and the motor 113.
  • the correspondence data of the number of revolutions is set, and the motor 113 is controlled to rotate by a preset number of revolutions, so that the air conditioning inner ring 111 is rotated from the initial position to the preset position.
  • the air conditioning method is to replace the air conditioning inner ring 111 in the air conditioning method by the air conditioning outer ring 112. Let me repeat.
  • a second embodiment of the present invention provides another air conditioning mechanism 40 that includes a plenum assembly 11 and a control system 13.
  • the gas regulating mechanism 40 is different from the gas regulating mechanism 10 in the first embodiment in that the control system is different.
  • the control system 13 includes a sensor module 131, a storage module 132, and a control module 133.
  • the sensor module 131 is disposed on the atomizer 20, and the storage module 132
  • the control module 133 is disposed on the battery assembly 30.
  • the sensor module 131, the storage module 132, and the motor 113 are electrically connected to the control module 133.
  • the control module 133 is also electrically connected to the battery assembly 30.
  • the sensor module 131 is configured to detect a value of the relevant physical quantity x related to the amount of intake air.
  • the storage module 132 is configured to pre-store the correspondence relationship between the value of the relevant physical quantity x and the preset position of the air conditioning inner ring 111 / the air conditioning outer ring 112, and the preset position of the air conditioning inner ring 111 / the air conditioning outer ring 112.
  • the motor 113 presets the correspondence data of the number of revolutions, and is also used to store the value of the correlation physical quantity x detected by the sensor module 131.
  • the control module 133 is configured to control the rotation of the motor 113 such that the tempering inner ring 111/the tempering outer ring 112 returns to the initial position, and is further configured to control the motor 113 to rotate the preset number of revolutions according to the pre-stored correspondence data.
  • the conditioned inner ring 111/the conditioned outer ring 112 is rotated from the initial position to the preset position, so that the intake air amount satisfies the demand of the value of the relevant physical quantity x.
  • the relevant physical quantity x is at least one of a smoke temperature, a smoke humidity, and a pressure applied to the mouthpiece 25 when the user pumps. Understandably, when the pressure applied to the mouthpiece 25 is relatively high when the smoke temperature is high/smoke is dry/user suction, it is necessary to increase the amount of intake air when the smoke temperature is low/smog is wet/user suction When the pressure applied by the mouthpiece 25 is small, it is necessary to reduce the amount of intake air.
  • the sensor module 131 includes at least one of a temperature sensor, a humidity sensor, and a pressure sensor.
  • the temperature sensor is disposed in the inner cavity of the mouthpiece 25, or disposed in the smoke passage 24, or disposed inside the atomizing head 23, or disposed adjacent to the atomizing head 23.
  • the humidity sensor is disposed in the inner cavity of the mouthpiece 25, or disposed in the smoke passage 24, or disposed inside the atomizing head 23, or disposed adjacent to the atomizing head 23.
  • the pressure sensor is disposed in close proximity to the inner cavity wall of the mouthpiece 25, or the interlayer is disposed inside the wall of the mouthpiece 25, or is disposed adjacent to the outer wall of the mouthpiece 25.
  • a second embodiment of the present invention also provides an electronic cigarette 2 comprising an atomizer 20 and a battery assembly 30, and further comprising the air conditioning mechanism 40.
  • a second embodiment of the present invention further provides a method for ventilating the electronic cigarette 2 .
  • the modulating method includes the steps. :
  • step S201 the sensor module 131 detects the value of the related physical quantity x, and feeds back the value of the related physical quantity x to the control module 133.
  • the control module 133 stores the value of the detected related physical quantity x into the storage module 132, and then proceeds to step S202. ;
  • Step S202 the control module 133 controls the motor 113 to rotate, so that the air conditioning inner ring 111 returns to the initial position, and then proceeds to step S203;
  • Step S203 the control module 133, according to the correspondence relationship data between the value of the correlation physical quantity x stored in advance and the preset position of the air conditioning inner ring 111, and the correspondence relationship between the preset position of the air conditioning inner ring 111 and the preset rotation number of the motor 113, Control motor 113 rotates the preset number of rotations, so that the air conditioning inner ring 111 is rotated from the initial position to the preset position, and then proceeds to step S204;
  • Step S204 the electronic cigarette 2 works for a period of time after the adjusted intake air amount, and then proceeds to step S205;
  • step S205 the sensor module 131 detects the value of the related physical quantity x again, and feeds back the value of the related physical quantity x detected again to the control module 133, and the control module 133 stores the value of the related physical quantity x obtained by the detection again into the storage module 132. Then, proceeding to step S206;
  • step S206 the control module 133 determines whether the value of the correlated physical quantity x detected again is equal to the value of the related physical quantity x obtained by the last detection stored in the storage module 132. If they are equal, the process proceeds to step S207, and if not, the process proceeds to Step S202;
  • step S207 the electronic cigarette 2 is operated for a certain period of time at the current intake air amount, and then proceeds to step S205.
  • the air conditioning method is to replace the air conditioning inner ring 111 in the air conditioning method by the air conditioning outer ring 112. Let me repeat.
  • the intake air amount can be automatically adjusted according to the desired operating power/operating voltage/operating temperature of the atomizer 20 input by the user, or according to the value of the relevant physical quantity x detected by the sensor module 131, and the user does not have to perform manual adjustment, which makes E-cigarettes are more user-friendly and intelligent, which enhances the user experience.

Abstract

一种调气机构(10、40)、含有该调气机构(10、40)的电子烟(1、2)及其调气方法。其中,所述调气机构(10、40)包括调气组件(11)以及控制系统(12、13),所述调气组件(11)包括调气内环(111)、调气外环(112)以及马达(113),所述控制系统(12、13)包括输入模块(121)/传感器模块(131)、存储模块(122、132)以及控制模块(123、133)。通过本发明可以使得电子烟(1、2)根据用户输入的期望的雾化器(20)的工作功率/工作电压/工作温度,或根据传感器模块(131)检测到的相关物理量x的值,自动调节进气量,用户不必再进行手动调节,提升了用户体验。

Description

调气机构、含有该调气机构的电子烟及其调气方法 技术领域
本发明涉及电子烟技术领域,具体涉及一种调气机构、含有该调气机构的电子烟及其调气方法。
背景技术
通常,电子烟上设置有调气机构,用户可以通过调气机构来调节进气,以满足自身对烟雾量的需求。然而,现有的调气机构无法自动调节进气,需要用户在使用过程中,自行手动调节,使得用户的体验不佳。因此,有必要提供一种人性化的、智能化的,可以自动调节进气量的电子烟。
发明内容
针对上述技术问题,本发明的目的在于提供一种调气机构、含有该调气机构的电子烟及其调气方法。
实现本发明的技术方案如下:
一种调气机构,所述调气机构包括调气组件以及控制系统,所述调气组件包括调气内环、调气外环以及马达,所述调气外环套设在调气内环外周,所述调气内环上开设有第一进气孔,所述调气外环上开设有第二进气孔,所述马达的一端与调气内环或调气外环通过齿轮配合,所述马达转动时带动调气内环或调气外环转动,使得第一进气孔和第二进气孔连通或交错开,所述控制系统包括输入模块、存储模块以及控制模块,
所述输入模块,用于供用户输入期望的雾化器的工作功率/工作电压/工作温度,
所述存储模块,用于预先存储雾化器的工作功率/工作电压/工作温度与调气内环/调气外环预设位置的对应关系数据和调气内环/调气外环预设位置与马达预设转数的对应关系数据,以及
所述控制模块,用于控制马达转动,使得调气内环/调气外环回复至初始位置,还用于根据所述预先存储的对应关系数据控制马达转动预设转 数,使得调气内环/调气外环从初始位置转动到预设位置。
进一步地,所述调气组件设置在雾化器上,或设置在电池组件上,或设置在雾化器与电池组件之间,所述控制系统设置在电池组件上。
进一步地,所述初始位置是零位置或一位置。
进一步地,所述马达的一端与调气内环的内壁通过齿轮配合。
进一步地,所述调气内环的内壁上还设置有止挡件,所述止挡件止挡调气内环转动到初始后进一步转动。
进一步地,所述调气组件设置在雾化器上,所述雾化器包括底座连接件、储液组件以及雾化头,所述调气组件的一端与底座连接件连接,另一端与储液组件连接,所述底座连接件相对储液组件的一端与电池组件连接,所述储液组件的内腔形成烟雾通道,所述雾化头的一端安装在底座连接件的内腔中,另一端穿过调气组件的内腔,并伸入烟雾通道中,所述马达相对调气内环的一端安装在底座连接件的内腔中。
一种调气机构,所述调气机构包括调气组件以及控制系统,所述调气组件包括调气内环、调气外环以及马达,所述调气外环套设在调气内环外周,所述调气内环上开设有第一进气孔,所述调气外环上开设有第二进气孔,所述马达的一端与调气内环或调气外环通过齿轮配合,所述马达转动时带动调气内环或调气外环转动,使得第一进气孔和第二进气孔连通或交错开,所述控制系统包括传感器模块、存储模块以及控制模块,
所述传感器模块用于检测与进气量相关的相关物理量x的值,
所述存储模块用于预先存储相关物理量x的值与调气内环/调气外环预设位置的对应关系数据和调气内环/调气外环预设位置与马达预设转数的对应关系数据,还用于存储传感器模块检测所得的相关物理量x的值,以及
所述控制模块用于控制马达转动,使得调气内环/调气外环回复至初始位置,还用于根据所述预先存储的对应关系数据控制马达转动预设转数,使得调气内环/调气外环从初始位置转动到预设位置。
进一步地,所述调气组件设置在雾化器上,或设置在电池组件上,或设置在雾化器与电池组件之间,所述传感器模块设置在雾化器上,所述存储模块以及控制模块设置在电池组件上。
进一步地,所述相关物理量x是烟雾温度、烟雾湿度以及用户抽吸时对烟嘴施加的压力中的至少一个。
进一步地,所述传感器模块包括温度传感器、湿度传感器以及压力传感器中的至少一个。
进一步地,当所述传感器模块包括温度传感器或湿度传感器时,所述温度传感器或湿度传感器设置在烟嘴的内腔中,或设置在烟雾通道中,或设置在雾化头内部,或靠近雾化头设置。
进一步地,当所述传感器模块包括压力传感器时,所述压力传感器紧贴烟嘴的内腔腔壁设置,或夹层设置在烟嘴的壁体内部,或紧贴烟嘴的外壁设置。
一种电子烟,所述电子烟包括雾化器以及电池组件,所述电子烟还包括所述的任一种调气机构。
一种电子烟的调气方法,所述电子烟包括调气机构,所述调气机构包括调气组件以及控制系统,所述调气组件包括调气内环、调气外环以及马达,所述控制系统包括输入模块、存储模块以及控制模块,所述调气方法包括步骤:
用户通过输入模块输入期望的雾化器的工作功率/工作电压/工作温度;
控制模块控制马达转动,使得调气内环/调气外环回复至初始位置;以及
控制模块根据预先存储的雾化器的工作功率/工作电压/工作温度与调气内环/调气外环预设位置的对应关系数据和调气内环/调气外环预设位置与马达预设转数的对应关系数据,控制马达转动预设转数,使得调气内环/调气外环从初始位置转动到预设位置。
一种电子烟的调气方法,所述电子烟包括调气机构,所述调气机构包括调气组件以及控制系统,所述调气组件包括调气内环、调气外环以及马达,所述控制系统包括传感器模块、存储模块以及控制模块,所述调气方法包括步骤:
传感器模块检测相关物理量x的值,并将相关物理量x的值反馈给控制模块,控制模块将检测所得的相关物理量x的值存储至存储模块中;
控制模块控制马达转动,使得调气内环/调气外环回复至初始位置;
控制模块根据预先存储的相关物理量x的值与调气内环/调气外环预设位置的对应关系数据和调气内环/调气外环预设位置与马达预设转数的对应关系数据,控制马达转动预设转数,使得调气内环/调气外环从初始位置转动到预设位置;
电子烟在调整后的进气量下工作一段时间;
传感器模块再次检测相关物理量x的值,并将再次检测的相关物理量x的值反馈给控制模块,控制模块将再次检测所得的相关物理量x的值存储至存储模块中;
控制模块判断再次检测的相关物理量x的值与存储在存储模块中的上一次检测所得的相关物理量x的值是否相等;
控制模块根据判断结果控制电子烟在当前进气量或调整后的进气量下工作一段时间;以及再次进行所述的传感器模块再次检测相关物理量x的值,并将再次检测的相关物理量x的值反馈给控制模块,控制模块将再次检测所得的相关物理量x的值存储至存储模块中的步骤。
进一步地,所述的控制模块根据判断结果控制电子烟在当前进气量或调整后的进气量下工作一段时间的步骤还包括:
当再次检测的相关物理量x的值与存储在存储模块中的上一次检测所得的相关物理量x的值相等时,电子烟在当前进气量下工作一段时间;
当再次检测的相关物理量x的值与存储在存储模块中的上一次检测所得的相关物理量x的值不相等时,控制模块控制马达转动,使得调气内环/调气外环回复至初始位置,控制模块根据预先存储的相关物理量x的值与调气内环/调气外环预设位置的对应关系数据和调气内环/调气外环预设位置与马达预设转数的对应关系数据,控制马达转动预设转数,使得调气内环/调气外环从初始位置转动到预设位置,电子烟在调整后的进气量下工作一段时间。
一种电子烟,所述电子烟用于执行所述的任一种调气方法。
本发明具有如下有益效果:
可以根据用户输入的期望的雾化器的工作功率/工作电压/工作温度,或根据传感器模块检测到的相关物理量x的值,自动调节进气量,用户不 必再进行手动调节,这使得电子烟更加人性化、智能化,提升了用户体验。
附图说明
图1为本发明第一实施例的电子烟的结构示意图;
图2为图1所示的雾化器安装调气组件后的剖视图;
图3为图1所示的控制系统连接马达及电池组件后的电路框图;
图4为图2所示的调气组件沿A-A面的剖视图,调气内环位于一位置;
图5为图4所示的调气组件其调气内环位于零位置时的剖视图;
图6为图1所示的电子烟的调气流程图;
图7为本发明第二实施例的电子烟的结构示意图;
图8为图7所示的控制系统连接马达及电池组件后的电路框图;
图9为图7所示的电子烟的调气流程图。
电子烟:1、2       储液组件:22       第一进气孔:114
调气机构:10、40   雾化头:23         第二进气孔:115
雾化器:20         烟雾通道:24       止挡件:116
电池组件:30       烟嘴:25           输入模块:121
调气组件:11       调气内环:111      存储模块:122、132
控制系统:12、13   调气外环:112      控制模块:123、133
底座连接件:21     马达:113          传感器模块:131
具体实施方式
为了对本发明的技术特征、目的和效果有更加清楚的理解,现结合附图详细说明本发明的具体实施方式。显然,所描述的实施例是本发明的一部分实施例,而不是全部的实施例。基于本发明中的实施例,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,都属于本发明的保护范围。
第一实施例
请参照图1至图5,本发明的第一实施例提供了一种调气机构10,所述调气机构10包括调气组件11以及控制系统12。所述调气组件11设置在雾化器20上,或设置在电池组件30上,或设置在雾化器20与电池组件30之 间。所述调气组件11包括调气内环111、调气外环112以及马达113。所述调气外环112套设在调气内环111外周,所述调气内环111上开设有第一进气孔114,所述调气外环112上开设有第二进气孔115,所述马达113的一端与调气内环111或调气外环112通过齿轮配合,所述马达113转动时带动调气内环111或调气外环112转动,使得第一进气孔114和第二进气孔115连通或交错开,从而调节进气量。所述控制系统12设置在电池组件30上。所述控制系统12包括输入模块121、存储模块122以及控制模块123。所述输入模块121、存储模块122以及马达113均与控制模块123电性连接,所述控制模块123还与电池组件30电性连接。所述输入模块121用于供用户输入期望的雾化器20的工作功率/工作电压/工作温度。所述存储模块122用于预先存储雾化器20的工作功率/工作电压/工作温度与调气内环111/调气外环112预设位置的对应关系数据,以及调气内环111/调气外环112预设位置与马达113预设转数的对应关系数据。所述控制模块123用于控制马达113转动,使得调气内环111/调气外环112回复至初始位置,还用于根据所述预先存储的对应关系数据控制马达113转动预设转数,使得调气内环111/调气外环112从初始位置转动到预设位置,从而使得进气量满足用户输入的雾化器20的工作功率/工作电压/工作温度的需求。
其中,所述初始位置是零位置或一位置。所述零位置是第一进气孔114和第二进气孔115完全错开,进气量为零时,调气内环111/调气外环112所在的位置;所述一位置是第一进气孔114和第二进气孔115完全连通,进气量最大时,调气内环111/调气外环112所在的位置。
本实施例中,所述马达113的一端与调气内环111的内壁通过齿轮配合。
进一步地,所述调气内环111的内壁上还设置有止挡件116,所述止挡件116止挡调气内环111转动到初始位置后进一步转动。这就使得控制模块123得以判断调气内环111已转动至初始位置。
进一步地,所述初始位置是一位置,当调气内环111逆时针转动到初始位置时,止挡件116止挡调气内环111进一步逆时针转动,控制模块123由此可以判断调气内环111已转动至初始位置。调气内环111顺时针转动时,可由初始位置转动至预设位置。
进一步地,所述调气组件11设置在雾化器20上。所述雾化器20包括底 座连接件21、储液组件22以及雾化头23。所述调气组件11的一端与底座连接件21连接,另一端与储液组件22连接。所述底座连接件21相对储液组件22的另一端与电池组件30连接。所述储液组件22的内腔形成烟雾通道24,所述雾化头23的一端安装在底座连接件21的内腔中,另一端穿过调气组件11的内腔,并伸入烟雾通道24中。所述马达113远离调气内环111的一端安装在底座连接件21的内腔中。
进一步地,所述雾化器20还包括烟嘴25,所述烟嘴25安装在储液组件22相对底座连接件21的另一端,所述烟嘴25与烟雾通道24连通。
本发明的第一实施例还提供了一种电子烟1,所述电子烟1包括雾化器20以及电池组件30,还包括所述调气机构10。
请参照图6,本发明的第一实施例还提供了一种电子烟1的调气方法,当所述马达113的一端与调气内环111通过齿轮配合,所述调气方法包括步骤:
步骤S101,用户通过输入模块121输入期望的雾化器20的工作功率/工作电压/工作温度,然后,进入步骤S102;
步骤S102,控制模块123控制马达113转动,使得调气内环111回复至初始位置,然后,进入步骤S103;
步骤S103,控制模块123根据预先存储的雾化器20的工作功率/工作电压/工作温度与调气内环111预设位置的对应关系数据,以及调气内环111预设位置与马达113预设转数的对应关系数据,控制马达113转动预设转数,使得调气内环111从初始位置转动到预设位置。
可以理解地,当所述马达113的一端与调气外环112通过齿轮配合时,其调气方法是将上述调气方法中的调气内环111由调气外环112替代,此处不再赘述。
第二实施例
请参照图7和图8,本发明的第二实施例提供了另一种调气机构40,所述调气机构40包括调气组件11以及控制系统13。所述调气机构40与所述第一实施例中的调气机构10的不同之处在于:控制系统不同。
具体地,所述控制系统13包括传感器模块131、存储模块132以及控制模块133。所述传感器模块131设置在雾化器20上,所述存储模块132以及 控制模块133设置在电池组件30上。所述传感器模块131、存储模块132以及马达113均与控制模块133电性连接,所述控制模块133还与电池组件30电性连接。所述传感器模块131用于检测与进气量相关的相关物理量x的值。所述存储模块132用于预先存储相关物理量x的值与调气内环111/调气外环112预设位置的对应关系数据,以及调气内环111/调气外环112预设位置与马达113预设转数的对应关系数据,还用于存储传感器模块131检测所得的相关物理量x的值。所述控制模块133用于控制马达113转动,使得调气内环111/调气外环112回复至初始位置,还用于根据所述预先存储的对应关系数据控制马达113转动预设转数,使得调气内环111/调气外环112从初始位置转动到预设位置,从而使得进气量满足相关物理量x的值的需求。
其中,所述相关物理量x是烟雾温度、烟雾湿度以及用户抽吸时对烟嘴25施加的压力中的至少一个。可以理解地,当烟雾温度较高/烟雾较干/用户抽吸时对烟嘴25施加的压力较大时,需要增大进气量,当烟雾温度较低/烟雾较湿/用户抽吸时对烟嘴25施加的压力较小时,需要减小进气量。
相应地,为检测相关物理x的值,所述传感器模块131包括温度传感器、湿度传感器以及压力传感器中的至少一个。
当所述传感器模块131包括温度传感器时,所述温度传感器设置在烟嘴25的内腔中,或设置在烟雾通道24中,或设置在雾化头23内部,或靠近雾化头23设置。
当所述传感器模块131包括湿度传感器时,所述湿度传感器设置在烟嘴25的内腔中,或设置在烟雾通道24中,或设置在雾化头23内部,或靠近雾化头23设置。
当所述传感器模块131包括压力传感器时,所述压力传感器紧贴烟嘴25的内腔腔壁设置,或夹层设置在烟嘴25的壁体内部,或紧贴烟嘴25的外壁设置。
本发明的第二实施例还提供了一种电子烟2,所述电子烟2包括雾化器20以及电池组件30,还包括所述调气机构40。
请参照图9,本发明的第二实施例还提供了一种电子烟2的调气方法,当所述马达113的一端与调气内环111通过齿轮配合时,所述调气方法包括步骤:
步骤S201,传感器模块131检测相关物理量x的值,并将相关物理量x的值反馈给控制模块133,控制模块133将检测所得的相关物理量x的值存储至存储模块132中,然后,进入步骤S202;
步骤S202,控制模块133控制马达113转动,使得调气内环111回复至初始位置,然后,进入步骤S203;
步骤S203,控制模块133根据预先存储的相关物理量x的值与调气内环111预设位置的对应关系数据,以及调气内环111预设位置与马达113预设转数的对应关系数据,控制马达113转动预设转数,使得调气内环111从初始位置转动到预设位置,然后,进入步骤S204;
步骤S204,电子烟2在调整后的进气量下工作一段时间,然后,进入步骤S205;
步骤S205,传感器模块131再次检测相关物理量x的值,并将再次检测的相关物理量x的值反馈给控制模块133,控制模块133将再次检测所得的相关物理量x的值存储至存储模块132中,然后,进入步骤S206;
步骤S206,控制模块133判断再次检测的相关物理量x的值与存储在存储模块132中的上一次检测所得的相关物理量x的值是否相等,如果相等,则进入步骤S207,如果不相等,则进入步骤S202;
步骤S207,电子烟2在当前进气量下工作一段时间,然后,进入步骤S205。
可以理解地,当所述马达113的一端与调气外环112通过齿轮配合时,其调气方法是将上述调气方法中的调气内环111由调气外环112替代,此处不再赘述。
本发明具有如下有益效果:
可以根据用户输入的期望的雾化器20的工作功率/工作电压/工作温度,或根据传感器模块131检测到的相关物理量x的值,自动调节进气量,用户不必再进行手动调节,这使得电子烟更加人性化、智能化,提升了用户体验。

Claims (20)

  1. 一种调气机构,所述调气机构用于电子烟,所述电子烟包括雾化器及电池组件,其特征在于,所述调气机构包括调气组件以及控制系统,所述调气组件包括调气内环、调气外环以及马达,所述调气外环套设在调气内环外周,所述调气内环上开设有第一进气孔,所述调气外环上开设有第二进气孔,所述马达的一端与调气内环或调气外环通过齿轮配合,所述马达转动时带动调气内环或调气外环转动,使得第一进气孔和第二进气孔连通或交错开,所述控制系统包括输入模块、存储模块以及控制模块,
    所述输入模块,用于供用户输入期望的雾化器的工作功率/工作电压/工作温度,
    所述存储模块,用于预先存储雾化器的工作功率/工作电压/工作温度与调气内环/调气外环预设位置的对应关系数据和调气内环/调气外环预设位置与马达预设转数的对应关系数据,以及
    所述控制模块,用于控制马达转动,使得调气内环/调气外环回复至初始位置,还用于根据所述预先存储的对应关系数据控制马达转动预设转数,使得调气内环/调气外环从初始位置转动到预设位置。
  2. 根据权利要求1所述的调气机构,其特征在于,所述调气组件设置在雾化器上,或设置在电池组件上,或设置在雾化器与电池组件之间,所述控制系统设置在电池组件上。
  3. 根据权利要求2所述的调气机构,其特征在于,所述初始位置是零位置或一位置。
  4. 根据权利要求3所述的调气机构,其特征在于,所述马达的一端与调气内环的内壁通过齿轮配合。
  5. 根据权利要求4所述的调气机构,其特征在于,所述调气内环的内壁上还设置有止挡件,所述止挡件止挡调气内环转动到初始位置后进一步转动。
  6. 根据权利要求5所述的调气机构,其特征在于,所述调气组件设置在雾化器上,所述雾化器包括底座连接件、储液组件以及雾化头,所述调气组件的一端与底座连接件连接,所述调气组件的另一端与储液组件连接,所述底座连接件相对储液组件的另一端与电池组件连接,所述储液组 件的内腔形成烟雾通道,所述雾化头的一端安装在底座连接件的内腔中,所述雾化头的另一端穿过调气组件的内腔并伸入烟雾通道中,所述马达远离调气内环的一端安装在底座连接件的内腔中。
  7. 一种电子烟,所述电子烟包括雾化器以及电池组件,其特征在于,所述电子烟还包括如权利要求1-6任一项所述的调气机构。
  8. 一种调气机构,所述调气机构用于电子烟,所述电子烟包括雾化器及电池组件,所述雾化器包括烟嘴,其特征在于,所述调气机构包括调气组件以及控制系统,所述调气组件包括调气内环、调气外环以及马达,所述调气外环套设在调气内环外周,所述调气内环上开设有第一进气孔,所述调气外环上开设有第二进气孔,所述马达的一端与调气内环或调气外环通过齿轮配合,所述马达转动时带动调气内环或调气外环转动,使得第一进气孔和第二进气孔连通或交错开,所述控制系统包括传感器模块、存储模块以及控制模块,
    所述传感器模块用于检测与进气量相关的相关物理量x的值,
    所述存储模块用于预先存储相关物理量x的值与调气内环/调气外环预设位置的对应关系数据和调气内环/调气外环预设位置与马达预设转数的对应关系数据,还用于存储传感器模块检测所得的相关物理量x的值,以及
    所述控制模块用于控制马达转动,使得调气内环/调气外环回复至初始位置,还用于根据所述预先存储的对应关系数据控制马达转动预设转数,使得调气内环/调气外环从初始位置转动到预设位置。
  9. 根据权利要求8所述的调气机构,其特征在于,所述调气组件设置在雾化器上,或设置在电池组件上,或设置在雾化器与电池组件之间,所述传感器模块设置在雾化器上,所述存储模块以及控制模块设置在电池组件上。
  10. 根据权利要求9所述的调气机构,其特征在于,所述相关物理量x是烟雾温度、烟雾湿度以及用户抽吸时对烟嘴施加的压力中的至少一个。
  11. 根据权利要求10所述的调气机构,其特征在于,所述传感器模块包括温度传感器、湿度传感器以及压力传感器中的至少一个。
  12. 根据权利要求11所述的调气机构,其特征在于,当所述传感器 模块包括温度传感器和/或湿度传感器时,所述温度传感器和/或湿度传感器设置在烟嘴的内腔中,或设置在烟雾通道中,或设置在雾化头内部,或靠近雾化头设置。
  13. 根据权利要求11所述的调气机构,其特征在于,当所述传感器模块包括压力传感器时,所述压力传感器紧贴烟嘴内腔的腔壁设置,或夹层设置在烟嘴的壁体内部,或紧贴烟嘴的外壁设置。
  14. 一种电子烟,所述电子烟包括雾化器以及电池组件,其特征在于,所述电子烟还包括如权利要求8-13任一项所述的调气机构。
  15. 一种电子烟的调气方法,所述电子烟包括调气机构及雾化器,所述调气机构包括调气组件以及控制系统,所述调气组件包括调气内环、调气外环以及马达,所述控制系统包括输入模块、存储模块以及控制模块,其特征在于,所述调气方法包括步骤:
    输入模块接收用户输入的期望的雾化器的工作功率/工作电压/工作温度;
    控制模块控制马达转动,使得调气内环/调气外环回复至初始位置;以及
    控制模块根据预先存储的雾化器的工作功率/工作电压/工作温度与调气内环/调气外环预设位置的对应关系数据和调气内环/调气外环预设位置与马达预设转数的对应关系数据,控制马达转动预设转数,使得调气内环/调气外环从初始位置转动到预设位置。
  16. 一种电子烟,其特征在于,所述电子烟用于执行如权利要求15所述的调气方法。
  17. 一种电子烟的调气方法,所述电子烟包括调气机构,所述调气机构包括调气组件以及控制系统,所述调气组件包括调气内环、调气外环以及马达,所述控制系统包括传感器模块、存储模块以及控制模块,其特征在于,所述调气方法包括步骤:
    传感器模块检测相关物理量x的值,并将相关物理量x的值反馈给控制模块,控制模块将检测所得的相关物理量x的值存储至存储模块中;
    控制模块控制马达转动,使得调气内环/调气外环回复至初始位置;
    控制模块根据预先存储的相关物理量x的值与调气内环/调气外环预 设位置的对应关系数据和调气内环/调气外环预设位置与马达预设转数的对应关系数据,控制马达转动预设转数,使得调气内环/调气外环从初始位置转动到预设位置;
    电子烟在调整后的进气量下工作一段时间。
  18. 根据权利要求17所述的调气方法,其特征在于,所述的电子烟在调整后的进气量下工作一段时间的步骤还包括:
    传感器模块再次检测相关物理量x的值,并将再次检测的相关物理量x的值反馈给控制模块,控制模块将再次检测所得的相关物理量x的值存储至存储模块中;
    控制模块判断再次检测的相关物理量x的值与存储在存储模块中的上一次检测所得的相关物理量x的值是否相等;
    控制模块根据判断结果控制电子烟在当前进气量或调整后的进气量下工作一段时间。
  19. 根据权利要求18所述的调气方法,其特征在于,所述的控制模块根据判断结果控制电子烟在当前进气量或调整后的进气量下工作一段时间的步骤还包括:
    当再次检测的相关物理量x的值与存储在存储模块中的上一次检测所得的相关物理量x的值相等时,电子烟在当前进气量下工作一段时间;
    当再次检测的相关物理量x的值与存储在存储模块中的上一次检测所得的相关物理量x的值不相等时,控制模块控制马达转动,使得调气内环/调气外环回复至初始位置,控制模块根据预先存储的相关物理量x的值与调气内环/调气外环预设位置的对应关系数据和调气内环/调气外环预设位置与马达预设转数的对应关系数据,控制马达转动预设转数,使得调气内环/调气外环从初始位置转动到预设位置,电子烟在调整后的进气量下工作一段时间。
  20. 一种电子烟,其特征在于,所述电子烟用于执行如权利要求17-19任一项所述的调气方法。
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