WO2022111310A1 - 电子烟及其控制方法 - Google Patents

电子烟及其控制方法 Download PDF

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Publication number
WO2022111310A1
WO2022111310A1 PCT/CN2021/130379 CN2021130379W WO2022111310A1 WO 2022111310 A1 WO2022111310 A1 WO 2022111310A1 CN 2021130379 W CN2021130379 W CN 2021130379W WO 2022111310 A1 WO2022111310 A1 WO 2022111310A1
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WIPO (PCT)
Prior art keywords
air pressure
electronic cigarette
heating body
temperature
cigarette
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PCT/CN2021/130379
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English (en)
French (fr)
Inventor
杨智勇
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深圳市讴可电子科技有限公司
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Publication of WO2022111310A1 publication Critical patent/WO2022111310A1/zh

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    • 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
    • A24F40/57Temperature control
    • 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
    • A24F40/20Devices using solid inhalable precursors
    • 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
    • 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
    • A24F40/42Cartridges or containers for inhalable precursors
    • 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

Definitions

  • the present application relates to the technical field of electronic cigarettes, for example, to an electronic cigarette and a control method thereof.
  • Heat-not-burn electronic cigarette is a new type of tobacco product that uses a special tobacco rod to heat the treated cartridge to a preset temperature, but does not ignite the tobacco in the cartridge, even if the tobacco is only heated but not burned, heated enough to emit smoke To the extent, the taste is closer to real smoke.
  • the temperature in the cartridge is adjusted by adjusting the temperature of the heating body in the cartridge.
  • the design of the cartridge is in the shape of a cavity, the tobacco is filled in the cavity, and only a part of the air flow through the heating body, and due to the blocking effect of the tobacco attached to the heating body, the cooling speed of the tobacco far from the heating body is lower than that of the tobacco. In other words, the cooling rate of the heating body will be slower. Therefore, when the temperature of the heating body is lowered and the temperature of the heating body is adjusted to adjust the temperature in the cartridge, the temperature of the tobacco in the cartridge is already far lower than the temperature of the heating body, so the temperature adjustment in the cartridge has some effect. Lag, the tobacco cannot be stably heated during the user's smoking phase, so that the smoke cannot be fully emitted, which affects the user's smoking experience.
  • the present application provides an electronic cigarette and a control method thereof, which can compensate the temperature in the electronic cigarette in time, avoid the lag adjustment of the temperature in the electronic cigarette, ensure the stable heating of tobacco during the smoking phase of the user, and improve the smoking experience of the user.
  • An embodiment provides a control method of an electronic cigarette, and the control method of the electronic cigarette includes:
  • the temperature of the heating body in the electronic cigarette is adjusted and increased.
  • An embodiment also provides an electronic cigarette, the electronic cigarette includes: a cigarette rod, a pod and a heating body; the pod is located in the cigarette rod, the heating body is arranged in the pod, and the cigarette rod is electrically connected with the heating body; It is set to obtain the air pressure in the pod, and the cigarette rod is also set to determine whether the air pressure in the pod has changed according to the air pressure, and adjust and increase the temperature of the heating body based on the change of the air pressure in the pod.
  • FIG. 1 is a flowchart of a control method of an electronic cigarette provided by an embodiment of the present application
  • FIG. 2 is a flowchart of another electronic cigarette control method provided by an embodiment of the present application.
  • FIG. 3 is a flowchart of another electronic cigarette control method provided by an embodiment of the present application.
  • FIG. 4 is a schematic structural diagram of an electronic cigarette provided by an embodiment of the present application.
  • FIG. 1 is a flowchart of a control method for an electronic cigarette provided in an embodiment of the present application. Referring to FIG. Methods include:
  • the heat-not-burn electronic cigarette includes a cigarette rod and a pod, the pod is in the shape of a cavity, and the tobacco is filled in the cavity.
  • the pod is inserted into the cigarette rod, and the heating body generates heat, so that the tobacco in the pod is heated to emit smoke for the user to smoke.
  • Obtaining the air pressure in the electronic cigarette may be obtaining the air pressure in the cartridge, or obtaining the air pressure in the interval between the cartridge and the cigarette rod, or obtaining the air pressure in the airway for the user to inhale the smoke. In order to obtain the change of air pressure in the cartridge more accurately and quickly, in one embodiment, the air pressure in the airway for the user to inhale smoke is obtained.
  • the change of air pressure in the electronic cigarette considering the change of air pressure in the electronic cigarette, it will affect the change of air pressure in the cartridge, and then affect the change of the temperature in the cartridge, and at the same time affect the temperature change of the tobacco in the cartridge, accordingly, It is determined whether the air pressure in the electronic cigarette has changed according to the obtained air pressure, so as to determine the change of the temperature of the tobacco in the electronic cigarette in time, thereby facilitating the timely compensation of the temperature of the tobacco in the electronic cigarette.
  • determining whether the air pressure in the electronic cigarette changes according to the air pressure in the electronic cigarette includes: judging whether the air pressure in the electronic cigarette at a previous moment is greater or less than the air pressure in the electronic cigarette at the current moment.
  • the current time is 2:02 and the air pressure in the electronic cigarette at the current time is the second air pressure
  • the previous time is 2:01 and the air pressure in the electronic cigarette at the previous time is the first air pressure, if the first air pressure If it is greater than or less than the second air pressure, it is determined that the air pressure in the electronic cigarette has changed. If the first air pressure is completely or approximately equal to the second air pressure, it is determined that the air pressure in the electronic cigarette has not changed.
  • the next moment is At 2:03, the air pressure in the electronic cigarette is the third air pressure at the next moment. If the third air pressure is greater than or less than the second air pressure, it is determined that the air pressure in the electronic cigarette can change. If the third air pressure and the second air pressure are completely equal Or approximately equal, it is determined that the air pressure in the electronic cigarette has not changed.
  • the air pressure in the electronic cigarette changes, it means that the user is inhaling smoke or making a puff action, and further indicates that the temperature in the e-cigarette has changed, and the user is inhaling smoke or making a puff action. It will cause the air pressure in the cartridge to decrease, so that the temperature in the cartridge will decrease, and at the same time, the temperature of the tobacco in the cartridge will decrease.
  • the heating body is easily covered by tobacco, the cooling speed of the tobacco covering the heating body lags behind the cooling speed of the tobacco far from the heating body, so the temperature compensation of the tobacco lags, so that the tobacco is not stably heated during the smoking stage of the user, and the tobacco is not heated stably.
  • step S11 determines whether the air pressure in the electronic cigarette changes according to the air pressure in the electronic cigarette.
  • the temperature of the heating body in the electronic cigarette is adjusted and increased, that is, when the air pressure in the electronic cigarette is lowered once the user takes a puff of smoke, the temperature of the heating body is immediately increased Compensate the temperature in the cartridge in time, that is, compensate the temperature of the tobacco in the cartridge in time, without waiting for the temperature of the heating body to decrease before compensating the temperature of the tobacco by adjusting the temperature of the heating body to ensure that the tobacco is in the smoking stage of the user. It is heated stably, fully and continuously provides smoke for the user, and improves the user's smoking experience.
  • the electronic cigarette includes an air pressure sensor; acquiring the air pressure in the electronic cigarette includes: acquiring the air pressure in the electronic cigarette from the air pressure sensor.
  • FIG. 2 is a flowchart of another control method of an electronic cigarette provided by an embodiment of the present application. Referring to FIG. 2 , the control method of the electronic cigarette includes:
  • the air pressure in the electronic cigarette is obtained from the air pressure sensor.
  • an air pressure sensor may be provided in the electronic cigarette, and the air pressure sensor is electrically connected to the electronic cigarette.
  • the air pressure sensor is electrically connected to the cigarette rod of the electronic cigarette, and the cigarette rod obtains the air pressure in the electronic cigarette from the air pressure sensor.
  • the air pressure sensor obtains the air pressure in the airway for the user to inhale smoke, and then the smoke rod obtains the air pressure in the airway through the air pressure sensor.
  • adjusting and increasing the temperature of the heating body in the electronic cigarette includes: adjusting and increasing the temperature of the heating body by adjusting and increasing the output power to the heating body.
  • FIG. 3 is a flowchart of another control method of an electronic cigarette provided by an embodiment of the present application. Referring to FIG. 3 , the control method of the electronic cigarette includes:
  • the air pressure in the electronic cigarette changes, it means that the user is smoking cigarettes, causing the air pressure in the pod to change, thereby causing the temperature in the pod to change and the temperature of the tobacco in the pod to change at the same time. , at this time, by increasing the output power to the heating body to increase the temperature of the heating body to compensate the tobacco temperature.
  • the cigarette rod of the electronic cigarette can be provided with a microcontroller, and the microcontroller can be electrically connected with the heating body.
  • the microcontroller determines that when the air pressure in the airway changes, that is, when it is determined that the air pressure in the airway changes due to the user inhaling smoke, the microcontroller increases The output power of the heating body increases the temperature of the heating body and compensates the temperature in the cartridge.
  • adjusting and increasing the temperature of the heating body in the electronic cigarette includes: adjusting and increasing the temperature of the heating body by adjusting and increasing the set temperature of the heating body.
  • the set temperature of the microcontroller that performs PID adjustment and control on the temperature of the heating body can also be increased, so as to adjust the temperature of the heating body through PID adjustment. The temperature increases to compensate for the temperature inside the cartridge.
  • FIG. 4 is a schematic structural diagram of an electronic cigarette provided by an embodiment of the present application.
  • the electronic cigarette 100 includes: a cigarette rod 10 , a cartridge 20 and a heater body 30; the cartridge 20 is located in the cartridge 10, the heating body 30 is arranged in the cartridge 20, the cartridge 10 is electrically connected with the heating body 30; the cartridge 10 obtains the air pressure in the cartridge 20; the cartridge 10 determines the smoke according to the air pressure Whether the air pressure in the cartridge 20 changes; if the air pressure in the cartridge 20 changes, the cigarette rod 10 adjusts and increases the temperature of the heating body 30 .
  • the cigarette rod 10 of the electronic cigarette 100 obtains the air pressure in the pod 20, and then determines whether the air pressure in the pod 20 changes according to the air pressure in the pod 20. If there is a change, the cigarette rod 10 adjusts to increase the cigarette
  • the temperature of the heating body 30 in the cartridge 20 compensates the temperature of the cartridge 20 in time, so as to compensate the temperature of the tobacco in the cartridge 20 in time, to ensure that the tobacco is stably heated during the smoking stage of the user, and to fully provide the user with continuous Smoke, improve the user's smoking experience.
  • the electronic cigarette 100 further includes an air pressure sensor 40 , and the air pressure sensor 40 is electrically connected to the cigarette rod;
  • the cigarette rod 10 is specifically used to determine whether the air pressure in the pod 20 at the previous moment is greater or less than the air pressure in the pod 20 at the current moment.
  • the cigarette rod 10 is provided with a microcontroller 11, the microcontroller 11 is electrically connected to the air pressure sensor 40, and the microcontroller 11 obtains the air pressure in the cartridge through the air pressure sensor. The air pressure in the airway of smoking tobacco is obtained to obtain the air pressure in the cartridge 20.
  • the microcontroller 11 judges whether the air pressure in the cartridge 20 at the previous moment is greater or less than the air pressure in the cartridge 20 at the current moment to determine the air pressure in the cartridge 20. Whether the air pressure has changed.
  • the cigarette rod 10 adjusts and increases the temperature of the heating body 30 by adjusting and increasing the output power to the heating body 30 . In one embodiment, if the air pressure in the cartridge 20 changes, the cigarette rod 10 adjusts and increases the temperature of the heating body 30 by adjusting the setting temperature of the heating body 30 . In one embodiment, if the microcontroller 11 on the cigarette rod 10 determines that the temperature in the cartridge 20 has changed, the temperature of the heating body 30 is adjusted and increased by adjusting and increasing the output power to the heating body 30, or by increasing the output power of the heating body 30.
  • a temperature sensor 50 is also shown. The temperature sensor 50 is used to measure the temperature of the heating body 30 in real time, thereby assisting the microcontroller 11 to perform PID adjustment on the temperature of the heating body 30 .
  • the electronic cigarette control method provided by the embodiments of the present application is to obtain the air pressure in the electronic cigarette, and determine whether the air pressure in the electronic cigarette changes according to the air pressure. body temperature. That is, unlike the related art that only adjusts and increases the temperature of the heating body according to the temperature decrease of the heating body to adjust and increase the temperature in the cartridge, an implementation of the present application also adjusts and increases the temperature of the heating body according to the change of air pressure in the electronic cigarette, In order to compensate the temperature in the electronic cigarette in time during the user's smoking phase, it avoids the lag adjustment of the temperature in the electronic cigarette caused by only adjusting the temperature of the heating body to decrease and increase the temperature of the heating body, and ensures the user's smoking phase. Stable heating improves the user's smoking experience.

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Abstract

一种电子烟(100)及其控制方法,该方法包括获取电子烟(100)内的气压,根据气压确定电子烟(100)内的气压是否发生变化,及基于电子烟(100)内的气压发生变化的结果,调节增大电子烟(100)内加热体(30)的温度。电子烟(100)包括烟杆(10)、烟弹(20)和加热体(30);烟弹(20)位于烟杆(10)内,加热体(30)设置于烟弹(20)内,烟杆(10)与加热体(30)电连接。

Description

电子烟及其控制方法
本申请要求申请日为2020年11月27日、申请号为202011364823.4的中国专利申请的优先权,该申请的全部内容通过引用结合在本申请中。
技术领域
本申请涉及电子烟技术领域,例如涉及一种电子烟及其控制方法。
背景技术
加热不燃烧电子烟是利用特制烟杆将经过处理的烟弹加热到预设温度,但不点燃烟弹中的烟草,即使烟草只加热而不燃烧的新型烟草制品,加热到足以散发出烟气的程度,口感更接近真烟。
通过调节烟弹内加热体的温度以对烟弹内的温度进行调节。然而,烟弹的设计呈腔体状,烟草填充于腔体内,流经加热体的气流只有一部分,而且由于附着在加热体上的烟草的阻挡作用,相较于远离加热体的烟草的降温速度而言,加热体的降温速度会偏慢一些。因此,等到加热体的温度降低后调节加热体的温度以调节烟弹内的温度时,烟弹内烟草的温度已经远远低于加热体的温度了,因此对烟弹内的温度调节有所滞后,烟草在用户吸食阶段不能被稳定加热,从而无法充分散发烟气,影响了用户的吸食体验。
发明内容
本申请提供了一种电子烟及其控制方法,能够及时对电子烟内的温度进行补偿,避免对电子烟内温度的滞后调节,保证用户吸食阶段对烟草的稳定加热,提升用户吸食体验。
一实施例提供了一种电子烟的控制方法,该电子烟的控制方法包括:
获取电子烟内的气压;
根据气压确定电子烟内的气压是否发生变化;及
基于电子烟内的气压发生变化的结果,调节增大电子烟内加热体的温度。
一实施例还提供了一种电子烟,该电子烟包括:烟杆、烟弹和加热体;烟弹位于烟杆内,加热体设置于烟弹内,烟杆与加热体电连接;烟杆设置为获取烟弹内的气压,烟杆还设置为根据气压确定烟弹内的气压是否发生变化,并基 于烟弹内的气压发生变化,调节增大加热体的温度。
附图说明
图1是本申请一实施例提供的一种电子烟的控制方法流程图;
图2是本申请一实施例提供的另一种电子烟的控制方法流程图;
图3是本申请一实施例提供的另一种电子烟的控制方法流程图;
图4是本申请一实施例提供的一种电子烟的结构示意图。
具体实施方式
本实施例提供的电子烟的控制方法,该方法适用于加热不燃烧电子烟,图1是本申请一实施例提供的一种电子烟的控制方法流程图,参考图1,该电子烟的控制方法包括:
S10,获取电子烟内的气压。
本实施例中,加热不燃烧电子烟包括烟杆和烟弹,烟弹呈腔体状,烟草填充在腔体中。烟弹插入烟杆中,加热体发热,从而烟弹内的烟草被加热而散发出供用户吸食的烟气。获取电子烟内的气压可以是获取烟弹内的气压,也可以是获取烟弹与烟杆之间间隔中的气压,还可以是获取用于供用户吸食烟气的气道内的气压。为了更准确且快速地获取烟弹内气压的变化情况,在一实施例中,获取用于供用户吸食烟气的气道内的气压。
S11,根据气压确定电子烟内的气压是否发生变化。
在一实施例中,考虑到电子烟内的气压变化,会影响到烟弹内的气压的变化,进而影响到烟弹内温度的变化,同时影响到烟弹内烟草的温度变化,据此,根据获取到的气压确定电子烟内的气压是否发生变化,以便及时确定电子烟内烟草的温度的变化,从而有利于及时对电子烟内烟草的温度进行补偿。
在一实施例中,根据电子烟内的气压确定电子烟内的气压是否发生变化包括:判断上一时刻电子烟内的气压是否大于或者小于当前时刻电子烟内的气压。
在一实施例中,可以是判断获取到的上一时刻的电子烟内的气压是否大于或者小于获取到的当前时刻的电子烟内的气压的大小,以确定电子烟内的气压是否发生变化。例如,若获取到的气道内的上一时刻的电子烟的气压大于获取到的当前时刻的电子烟内的气压,则确定电子烟内的气压发生变化;或者,获取到的气道内的上一时刻的电子烟的气压小于获取到的当前时刻的电子烟内的 气压,同样确定电子烟内的气压发生变化。示例性地,当前时刻为2点02分且当前时刻电子烟内的气压为第二气压,上一时刻为2点01分且上一时刻电子烟内的气压为第一气压,若第一气压大于或者小于第二气压,则确定电子烟内的气压发生了变化,若第一气压与第二气压完全相等或者近似相等,则确定电子烟内的气压没有发生变化,类似的,下一时刻为2点03分且下一时刻电子烟内的气压为第三气压,若第三气压大于或者小于第二气压,则确定电子烟内的气压发生可变化,若第三气压与第二气压完全相等或者近似相等,则确定电子烟内的气压没有发生变化。
S12,若电子烟内的气压发生变化,则调节增大电子烟内加热体的温度。
在一实施例中,若电子烟内的气压发生变化,则说明用户正在吸食烟气或者发出抽吸动作,进而说明电子烟内的温度发生了变化,而用户吸食烟气或者发出抽吸动作必定会引起烟弹内气压的降低,从而烟弹内的温度降低,同时烟弹内烟草的温度降低,这时,若不及时对烟草的温度进行补偿,而是等到加热体的温度降低后再补偿,由于加热体容易被烟草覆盖,覆盖加热体的烟草降温速度相对于远离加热体的烟草的降温速度有滞后,因此对烟草的温度补偿出现滞后,使得在用户吸食阶段烟草没有被稳定加热,烟草因为无法充分散发烟气,影响用户的吸食体验。此外,若电子烟内的气压没有发生变化,则返回步骤S11,继续不断地根据电子烟内的气压确定电子烟内的气压是否发生变化。
本实施例中,一旦电子烟内的气压发生变化,则调节增大电子烟内加热体的温度,即在用户一旦吸食一口烟气导致电子烟内的气压降低时,立即调大加热体的温度对烟弹内的温度及时进行补偿,即及时对烟弹内烟草的温度进行补偿,无需等到加热体的温度降低后才通过调节加热体的温度对烟草的温度进行补偿,保证在用户吸食阶段烟草稳定地被加热,充分为用户持续地提供烟气,提升用户吸食体验。
在一实施例中,电子烟包括气压传感器;获取电子烟内的气压包括:从气压传感器获取电子烟内的气压。图2是本申请一实施例提供的电子烟的另一种控制方法的流程图,参考图2,该电子烟的控制方法包括:
S20,从气压传感器获取电子烟内的气压。
在一实施例中,电子烟内可以设置气压传感器,气压传感器与电子烟电连接,例如气压传感器与电子烟的烟杆电连接,烟杆从气压传感器获取电子烟内的气压。例如,气压传感器获取用于供用户吸食烟气的气道内的气压,进而烟 杆通过气压传感器获取气道内的气压。
S21,根据气压确定电子烟内的气压是否发生变化。
S22,若电子烟内的气压发生变化,则调节增大电子烟内加热体的温度。
在一实施例中,若电子烟内的气压发生变化,则调节增大电子烟内加热体的温度包括:通过调节增大对加热体的输出功率而调节增大加热体的温度。图3是本申请一实施例提供的电子烟的另一种控制方法流程图,参考图3,该电子烟的控制方法包括:
S30,获取电子烟内的气压。
S31,根据气压确定电子烟内的气压是否发生变化。
S32,若电子烟内的气压发生变化,则通过调节增大对加热体的输出功率而调节增大加热体的温度。
在一实施例中,若电子烟内的气压发生变化,则说明用户在吸食烟气导致烟弹内的气压发生变化,从而引起烟弹内的温度发生变化,同时烟弹内烟草的温度发生变化,此时,通过增大对加热体的输出功率以增大加热体的温度,以对烟草温度进行补偿。电子烟的烟杆上可设置有微控制器,微控制器可与加热体电连接。微控制器根据从气压传感器获取到的气道内的气压,确定到气道内的气压在发生变化时,即确定到因用户吸食烟气导致气道内的气压在发生变化时,则微控制器增大对加热体的输出功率以增大加热体的温度,对烟弹内的温度进行补偿。
在一实施例中,若电子烟内的气压发生变化,则调节增大电子烟内加热体的温度包括:通过调节增大对加热体的设置温度而调节增大加热体的温度。在一实施例中,当微控制器确定到气道内的气压在发生变化时,还可以增大对加热体的温度进行PID调节控制的微控制器的设置温度,以通过PID调节将加热体的温度增大,补偿烟弹内的温度。
本申请一实施例还提供了一种电子烟,图4是本申请一实施例提供的一种电子烟的结构示意图,参考图4,该电子烟100包括:烟杆10、烟弹20和加热体30;烟弹20位于烟杆10内,加热体30设置于烟弹20内,烟杆10与加热体30电连接;烟杆10获取烟弹20内的气压;烟杆10根据气压确定烟弹20内的气压是否发生变化;若烟弹20内的气压发生变化,则烟杆10调节增大加热体30的温度。
本实施例中,电子烟100的烟杆10获取烟弹20内的气压,进而根据烟弹20内的气压确定烟弹20内的气压是否发生变化,若发生变化则烟杆10调节增大烟弹 20内加热体30的温度,以及时对烟弹20的温度进行补偿,从而及时对烟弹20内烟草的温度进行补偿,保证在用户吸食阶段烟草稳定地被加热,充分为用户持续地提供烟气,提升用户吸食体验。
在一实施例中,参考图4,电子烟100还包括气压传感器40,气压传感器40与烟杆电连接;烟杆设置为从气压传感器40获取烟弹20内的气压。在一实施例中,烟杆10具体用于判断上一时刻烟弹20内的气压是否大于或者小于当前时刻烟弹20内的气压。在一实施例中,烟杆10上设置有微控制器11,微控制器11与气压传感器40电连接,微控制器11通过气压传感器获取烟弹内的气压,例如气压传感器40通过获取供用户吸食烟草的气道内的气压以获取烟弹20内的气压,微控制器11通过判断上一时刻烟弹20内的气压是否大于或者小于当前时刻烟弹20内的气压以判断烟弹20内的气压是否发生变化。
在一实施例中,若烟弹20内的气压发生变化,则烟杆10通过调节增大对加热体30的输出功率而调节增大加热体30的温度。在一实施例中,若烟弹20内的气压发生变化,则烟杆10通过调节增大对加热体30的设置温度而调节增大加热体30的温度。在一实施例中,若烟杆10上的微控制器11确定烟弹20内的温度发生变化,则通过调节增大对加热体30的输出功率而调节增大加热体30的温度,或者通过调节增大对加热体30的设置温度而调节加热体30的温度,以及时对烟弹20内烟草的温度进行补偿,保证在用户吸食阶段烟草稳定地被加热,充分为用户持续地提供烟气,提升用户吸食体验,图4中还示意出温度传感器50,温度传感器50用以实时测量加热体30的温度,从而辅助微控制器11对加热体30的温度进行PID调节。
本申请的实施例提供的电子烟的控制方法,通过获取电子烟内的气压,根据气压确定电子烟内的气压是否发生变化,若电子烟内的气压发生变化,进而调节增大电子烟内加热体的温度。即不同于相关技术中的仅根据加热体的温度降低调节增大加热体温度以调节增大烟弹内温度,本申请一实施还根据电子烟内的气压变化将加热体的温度调节增大,以在用户吸食阶段,及时对电子烟内的温度进行补偿,避免了仅根据加热体的温度降低调节增大加热体温度而造成对电子烟内温度的滞后调节,保证了用户吸食阶段对烟草的稳定加热,提升了用户吸食体验。

Claims (10)

  1. 一种电子烟的控制方法,包括:
    获取电子烟内的气压;
    根据所述气压确定所述电子烟内的气压是否发生变化;及
    基于所述电子烟内的气压发生变化的结果,调节增大所述电子烟内加热体的温度。
  2. 根据权利要求1所述的电子烟的控制方法,其中,
    所述电子烟包括气压传感器;
    所述获取电子烟内的气压包括:通过所述气压传感器获取所述电子烟内的气压。
  3. 根据权利要求1所述的电子烟的控制方法,其中,所述根据所述气压确定所述电子烟内的气压是否发生变化包括:判断上一时刻所述电子烟内的气压是否大于或者小于当前时刻所述电子烟内的气压。
  4. 根据权利要求1所述的电子烟的控制方法,其中,基于所述电子烟内的气压发生变化的结果,调节增大所述电子烟内加热体的温度包括:通过调节增大对所述加热体的输出功率而调节增大所述加热体的温度。
  5. 根据权利要求1所述的电子烟的控制方法,其中,基于所述电子烟内的气压发生变化的结果,调节增大所述电子烟内加热体的温度包括:通过调节增大对所述加热体的设置温度而调节增大所述加热体的温度。
  6. 一种电子烟,包括:烟杆、烟弹和加热体;所述烟弹位于所述烟杆内,所述加热体设置于所述烟弹内,所述烟杆与所述加热体电连接;
    所述烟杆设置为获取所述烟弹内的气压,所述烟杆还设置为根据所述气压确定所述烟弹内的气压是否发生变化,并基于所述烟弹内的气压发生变化的结果,调节增大所述加热体的温度。
  7. 根据权利要求6所述的电子烟,还包括气压传感器,所述气压传感器与所述烟杆电连接;所述烟杆设置为通过所述气压传感器获取所述烟弹内的气压。
  8. 根据权利要求6所述的电子烟,其中,所述烟杆还设置为判断上一时刻所述烟弹内的气压是否大于或者小于当前时刻所述烟弹内的气压,确定所述烟弹内的气压是否发生变化。
  9. 根据权利要求6所述的电子烟,其中,所述烟杆还设置为基于所述烟弹内的气压发生变化的结果,通过调节增大对所述加热体的输出功率而调节增大所述加热体的温度。
  10. 根据权利要求6所述的电子烟,其中,所述烟杆还设置为基于所述烟弹内的气压发生变化的结果,通过调节增大对所述加热体的设置温度而调节增大所述加热体的温度。
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