WO2018201426A1 - 一种电子烟的控制方法及电子烟 - Google Patents

一种电子烟的控制方法及电子烟 Download PDF

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Publication number
WO2018201426A1
WO2018201426A1 PCT/CN2017/083158 CN2017083158W WO2018201426A1 WO 2018201426 A1 WO2018201426 A1 WO 2018201426A1 CN 2017083158 W CN2017083158 W CN 2017083158W WO 2018201426 A1 WO2018201426 A1 WO 2018201426A1
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WO
WIPO (PCT)
Prior art keywords
tobacco
smoke
electronic cigarette
signal
atomizing
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Application number
PCT/CN2017/083158
Other languages
English (en)
French (fr)
Inventor
刘秋明
向智勇
Original Assignee
惠州市吉瑞科技有限公司深圳分公司
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 惠州市吉瑞科技有限公司深圳分公司 filed Critical 惠州市吉瑞科技有限公司深圳分公司
Priority to PCT/CN2017/083158 priority Critical patent/WO2018201426A1/zh
Priority to CN201780000296.9A priority patent/CN110612032A/zh
Publication of WO2018201426A1 publication Critical patent/WO2018201426A1/zh

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Classifications

    • 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
    • A24F40/53Monitoring, e.g. fault detection
    • 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
    • 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
    • A24F40/30Devices using two or more structurally separated inhalable precursors, e.g. using two liquid precursors in two cartridges

Definitions

  • the present invention relates to the field of electronic cigarette technology, and in particular, to a method for controlling an electronic cigarette and an electronic cigarette.
  • the atomized electronic cigarette forms a smoke by atomizing the smoke liquid for the smoker to suck.
  • the atomized electronic cigarette overcomes the above deficiencies of the traditional cigarette, it can satisfy the consumer's dependence on tobacco to a certain extent.
  • the smoke liquid of e-cigarettes is made up of flavors and fragrances. It is not a real cigarette product. Its smoke is light and lacks the aroma of tobacco, and it cannot be widely accepted by consumers.
  • the electronic flue-cured tobacco is mainly low-temperature electronic flue-cured tobacco, and the flue-cured tobacco is heated at a low temperature (about 100 degrees Celsius). Since the heating temperature is low, the amount of harmful substances generated by heating is small, but the amount of smoke is obviously insufficient. However, if the tobacco is heated at a high temperature, the tobacco is easily blackened, carbonized, and the heat distribution is uneven, and it is easy to cause a problem that some of the tobacco has been carbonized and the temperature of the other part of the tobacco is insufficient, and thus inevitably, more is generated. Harmful Substance.
  • the technical problem to be solved by the present invention is to provide a control method for an electronic cigarette capable of sucking out the aromatic taste of tobacco and capable of reducing harmful substances to a large extent, and an electronic cigarette, in view of the above-mentioned drawbacks of the prior art.
  • the step S1 specifically includes: after detecting the electronic cigarette emission signal, if the smoking signal is detected, controlling the liquid atomizing element to enter the heating state, The tobacco is steamed by causing the smoke liquid atomizing element to atomize the smoke generated by the smoke oil into the tobacco area.
  • the electronic cigarette emission signal is a signal generated by a pressure sensor detecting a pressure change after the tobacco is inserted into the electronic cigarette chamber.
  • the electronic cigarette emission signal is a signal generated by the capacitance sensor after the cigarette is inserted into the electronic cigarette chamber to detect a change in capacitance.
  • the electronic cigarette opening signal is a signal that is lightly touched and pressed by the sputum after the tobacco is inserted into the electronic cigarette chamber.
  • the method further includes the step S3:
  • the smoke atomizing element is controlled to stop working.
  • the method further includes the step S4:
  • the step S4 further includes:
  • the tobacco heating element is controlled to stop working.
  • the step S1 further includes:
  • the light emitting unit In controlling the operation of the smoke liquid atomizing element, the light emitting unit is also controlled to emit light.
  • the smoking signal is a user smoking airflow sensor A signal generated by the user's smoking action is detected.
  • the present invention also provides an electronic cigarette capable of performing the above control method, including a battery rod and an atomizer, the atomizer including an atomization passage communicating with a smoke exhaust port, the atomization passage being circulated in the smoke a region of the path away from the exhaust port is provided with a soot atomizing element, and the atomizing channel is provided with tobacco in a region of the smoke flow path between the exhaust port and the soot atomizing element Tobacco heating element.
  • the present invention After detecting the smoking signal, the present invention first controls the operation of the atomizing element of the liquid smoke, so that the smoke generated by the atomizing element of the soot liquid atomizing element flows into the tobacco area to steam the tobacco, and the tobacco smoke is steamed out.
  • the tobacco heating element is controlled to enter the heating state, so that the smoke liquid mist
  • the chemical element and the tobacco heating element work together to distill the steam condensed in the tobacco area and further bake the tobacco smoke, not only to avoid the poor gas path in the tobacco and tobacco areas, but also to release the smoke evenly.
  • the same kind can absorb the aroma of tobacco and can reduce harmful substances to a large extent.
  • Embodiment 1 is a flowchart of a method according to Embodiment 1 of the present invention.
  • FIG. 2 is a block diagram showing the implementation of the circuit of the first embodiment
  • FIG. 3 is a schematic diagram of a circuit implementation of the first embodiment
  • Embodiments of the invention are schematic structural views of an atomizer in Embodiment 2 of the present invention. Embodiments of the invention
  • first, second, and the like which are used in the specification, may be used to describe various constituent elements, but these constituent elements are not limited by these terms. The purpose of using these terms is simply to distinguish one component from another.
  • first constituent element may be named as the second constituent element without departing from the scope of the invention, and similarly, the second constituent element may also be named as the first constituent element.
  • the term "and/or" as used herein includes a combination of a plurality of related items and a plurality of related items.
  • the general idea of the present invention is: if a smoking signal is detected, the smoke liquid atomizing element is controlled to enter a heating state, so that the smoke atomizing element atomizes the smoke generated by the smoke oil into the tobacco area, and the tobacco is carried out. Steaming; after the smoke liquid atomizing element operates for a first predetermined length, if the smoking signal is detected, controlling the tobacco heating element to enter a heating state, so that the liquid atomizing element and the tobacco are heated The components operate in the same manner, and the smoke atomizing element atomizes the smoke generated by the smoke oil and the tobacco heating element simultaneously steams and bakes the tobacco to generate smoke for the user to smoke.
  • an embodiment of the present invention provides a method for controlling an electronic cigarette, including:
  • step S1 The purpose of step S1 is to steam the tobacco smoke out only by high temperature steam after the user starts smoking.
  • step S1 specifically includes: after detecting the electronic cigarette smear signal, if a smoking signal is detected
  • the smoke liquid atomizing element is controlled to enter a heating state, so that the smoke atomizing element atomizes the smoke generated by the smoke oil into the tobacco area, and the tobacco is fumigated.
  • the tobacco heating element does not work.
  • the smoking signal is detected, only the liquid atomizing element operates, and the smoke atomizing element atomizes the smoke generated by the smoke oil into the tobacco area, and the tobacco is steamed to vaporize the smoke as much as possible.
  • the smoking signal is a signal generated by the user smoking the airflow sensor detecting the user's smoking action.
  • the air flow sensor adopts a gas flow sensor of the type S087 produced by Hangzhou Zhanyexing Electronics Co., Ltd.
  • the electronic soot signal is the electronic soot signal is a pressure sensor in the tobacco A signal generated by the pressure change is detected after insertion into the electronic cigarette chamber, or a signal generated by the capacitance sensor after the tobacco is inserted into the electronic cigarette chamber, or the electronic cigarette emission signal is lightly touched in the tobacco A signal generated by extrusion after insertion into the electronic cigarette chamber.
  • the pressure sensor adopts a pressure sensor of the type MPX5100 manufactured by Freescale, USA. It can be understood that other sensors capable of detecting tobacco insertion to generate an electronic cigarette emission signal may be disposed in the electronic cigarette, and are not limited herein.
  • step S1 further comprises: controlling the illumination of the illumination unit by controlling the operation of the liquid atomizing element.
  • the tobacco area is blocked by the condensed smoke vapor, and a first predetermined length is set.
  • the liquid atomizing element is operated separately, so that the smoke generated by the atomizing element of the soot liquid atomizing element smokes the tobacco smoke as much as possible, but the smoke atomizing element works cumulatively.
  • the condensed steam in the tobacco is distilled out through the tobacco heating element, and the tobacco smoke is further baked out, thereby not only avoiding the burnt tobacco and the gas path, but also making the smoke taste relatively Released in a balanced manner.
  • the tobacco heating element is operated separately when the user stops smoking, that is, controls the smoke liquid atomizing element to stop working. Therefore, after the step S2, the method further includes the step S3: if the smoking signal is not detected, the smoke atomizing element is controlled to stop working.
  • the method further includes the step S4: controlling the tobacco heating element to operate at a preset power during the waiting for the smoking signal after the liquid atomizing element stops working, to control the heating temperature.
  • the preset power can be full power or general power, which can be set according to requirements.
  • the preset temperature range is generally recommended to be 120 °C-200. C.
  • the step S4 further comprises: controlling the tobacco heating element to stop working if the smoking signal is not detected within the second predetermined length after the liquid atomizing element stops working.
  • the second preset length is generally recommended to be a value of 3-8 minutes, which can be set in the e-cigarette factory, or a user setting scheme.
  • the overall method is implemented based on a control module, an air flow sensor, a pressure sensor, a tobacco heating element, a soot atomizing element.
  • the air flow sensor is specifically M1
  • the tobacco heating element and the smoke liquid atomizing element are respectively B1 and B2
  • the pressure sensor is specifically K1.
  • the control module includes the microprocessor U of the model SN8P2711B, the MOS tube Q1, and the MOS tube Q2.
  • the resistor R1, the resistor R2, the resistor R3, and the resistor R4, and the light emitting unit is specifically LED 1.
  • the first end of the airflow sensor M1 is connected to the positive pole of the battery BATTERY, the second end of the airflow sensor M1 is grounded, and the third end of the airflow sensor M1 is connected to the P0.2 of the microprocessor U.
  • the first end of the pressure sensor K1 is connected to the positive pole of the battery BATTERY through the resistor R4, the second end of the pressure sensor K1 is grounded, and the third end of the pressure sensor K1 is connected to the P4.
  • LED1 The positive pole is connected to the positive pole of the battery BATTERY, the negative pole of the LED1 is connected to the P5.4 pin of the microprocessor U through the resistor R1, the source of the MOS transistor Q1 is grounded, and the gate is connected to the P5.3 pin of the microprocessor U, the drain
  • the anode of the battery BATTERY is connected through the tobacco heating element B1, and the two ends of the resistor R2 are respectively connected to the source and the gate of the MOS transistor Q1, the source of the MOS transistor Q2 is grounded, and the gate is connected to the P4.1 pin of the microprocessor U1.
  • the drain is connected to the anode of the battery BATTERY through the soot atomizing element B2, and the two ends of the resistor R3 are respectively connected to the source and the gate of the MOS transistor Q2.
  • the overall method is implemented based on a control module, an air flow sensor, a light touch, a tobacco heating element, a soot atomizing element.
  • the air flow sensor is specifically Ml
  • tobacco The heating element and the aerosol atomizing element are respectively B1 and B2
  • the touch sensor is specifically K2.
  • the control module includes the microprocessor U of the model SN8P2711B, the MOS tube Ql, the MOS tube Q2, the resistor Rl, the resistor R2, and the resistor R3.
  • the resistor R4, the first lighting unit is specifically LED1.
  • the first end of the airflow sensor M1 is connected to the positive pole of the battery BATTERY, the second end of the airflow sensor M1 is grounded, and the third end of the airflow sensor M1 is connected to the P0.2 of the microprocessor U.
  • Bow I touch one end of K2 through the resistor R4 to connect the positive pole of battery BATTERY, touch the other end of K2 to ground, touch the connection point between K2 and resistor R4 to connect P0 of microprocessor U .
  • the positive pole of LED1 is connected to the positive pole of battery BATTERY
  • the negative pole of LED1 is connected to the P5.4 pin of microprocessor U through resistor R1
  • the source of MOS transistor Q1 is grounded
  • the gate is connected to P5.3 of microprocessor U
  • the pin and the drain are connected to the positive pole of the battery BATTERY through the tobacco heating element B1.
  • the two ends of the resistor R2 are respectively connected to the source and the gate of the MOS transistor Q1, the source of the MOS transistor Q2 is grounded, and the gate is connected to the P4 of the microprocessor U. .1 bow
  • the drain is connected to the positive pole of the battery BATTERY through the liquid atomizing element B2, and the two ends of the resistor R3 are respectively connected to the source and the gate of the MOS tube Q2.
  • K2, Q1, and Q2 are all turned off, and the LED 1 is turned off.
  • the tobacco is inserted into the electronic cigarette chamber, it triggers K2 through P0 of U.
  • the 4-pin sends an e-cigarette start signal. If the user smokes, the trigger M1 sends a smoking signal through the U's P0.2 pin. When the user starts counting, the U's P5.4 pin is set low to make the LED1 emit light. At the same time, Q2 is turned on to make B2 work, and the first preset length is reached. If the user smokes, trigger M1 to send a smoking signal through U's P0.2 pin, and turn on Q1 to make B1 work. It can be understood that, in this embodiment, during the smoking process of the user, the inter-turn interval between two adjacent cigarettes is not included in the first predetermined length.
  • the electronic cigarette includes a battery rod and an atomizer that perform the above method, and the atomizer includes an atomization passage that communicates with the exhaust port, and the atomization passage is disposed in an area of the smoke flow path away from the exhaust port
  • the smoke liquid atomizing element is provided, wherein the atomization channel is provided with a tobacco and a tobacco heating element in a region between the smoke exhaust port and the smoke liquid atomizing element in the smoke circulation path, such that the smoke liquid atomizing element
  • the smoke generated by the atomized smoke oil flows into the tobacco area baked by the heating element, and the tobacco is continuously steamed to be mixed with the smoke generated by the tobacco heating element baking tobacco and discharged from the smoke outlet for the user to smoke.
  • the atomizer includes an atomization seat 3, and the atomization seat 3 includes an atomization chamber, and the atomization chamber is disposed in a spiral shape.
  • the atomizing cover 4 is provided on the top of the atomizing base 3, and the bottom is installed in the connecting head 1.
  • the atomizing cover 4 is sealed with one end of the venting tube 5, and the other end of the venting tube 5 is sealed with the suction nozzle 7.
  • the sleeve is provided with a smoke exhaust port, and the inner wall of the suction nozzle 7 is provided with a pressure sensor 8, and the tobacco 6 is inserted into the suction nozzle 7, and the inner portion of the vent pipe 5 is adjacent to the atomization cover 4.
  • Tobacco heating element 200 comprising a disc-shaped base and an extension extending axially from a center of the base, the tobacco 6 being sleeved outside the extension, the base of the tobacco heating element 200 With through holes.
  • the electrode comprises an inner electrode 2 and an outer electrode, the outer electrode comprises a conductive vent tube 5, an atomizing cover 4, an atomizing seat 3 and a connecting head 1, and the venting tube 5, the atomizing cover 4, the atomizing seat 3 and the connecting head 1 Connected in sequence, one end of the aerosol liquid atomizing element 100 is electrically connected to the connector 1, and one end of the tobacco heating element 200 is electrically connected to the vent pipe 5.
  • the inner electrode 2 is mounted on the connector 1 and the end surface of the inner electrode 2 adjacent to one end of the atomizing seat 3 extends axially outwardly, passing through the bottom of the atomizing base 3, and the spiral structure of the aerosol atomizing element 100
  • the enclosed hollow region and the through hole of the atomizing cover 4 are fixedly connected to the base of the tobacco heating element 200, so that the other end of the aerosol liquid atomizing element 100 and the other end of the tobacco heating element 200 are electrically connected to the inner electrode 2.
  • the atomization chamber of the atomization seat 3, the through hole of the atomization cover 4, the vent tube 5, and the suction nozzle 7 form the atomization passage.
  • the present invention first controls the operation of the atomizing component of the liquid smoke, so that the smoke generated by the atomizing component of the aerosol atomizing component flows into the tobacco region to steam the tobacco, and the tobacco is The smoke smell is steamed out, and after the smoke liquid atomizing element works for the first predetermined length, since the gas path of the tobacco area has been blocked by the condensed smoke vapor, the tobacco signal is detected and the tobacco heating element is controlled to enter the heating state.
  • the soot atomizing element and the tobacco heating element work together, steaming the condensed steam in the tobacco area and further baking the tobacco smoke, not only avoiding the gas path of the roasted tobacco and tobacco areas, but also making the smoke
  • the taste is released relatively evenly, and the same can absorb the aroma of tobacco and reduce the harmful substances to a large extent.
  • embodiments of the present invention can be provided as a method, system, or computer program product. Accordingly, the present invention may take the form of an entirely hardware embodiment, an entirely software embodiment, or a combination of software and hardware. Further, the present invention may take the form of a computer program product embodied in one or more of which comprises a computer usable storage medium having computer-usable program code (including but not limited to, disk storage, CD-R 0 M, optical memory, etc.).

Abstract

一种电子烟的控制方法及电子烟,其中,控制方法包括如下步骤:S1、若检测到吸烟信号,则控制烟液雾化元件进入加热状态,以使烟液雾化元件雾化烟油产生的烟雾流入烟草区域时对烟草进行蒸;S2、在烟液雾化元件工作累计达第一预设时长后,若再检测到吸烟信号,则控制烟草加热元件进入加热状态,以使烟液雾化元件及烟草加热元件同时工作,烟液雾化元件雾化烟油产生的烟雾与烟草加热元件同时对所述烟草进行蒸和烤,以产生烟雾供用户吸食。采用此控制方法,既能够吸出烟草的芳香味又能够较大程度降低有害物质。

Description

发明名称:一种电子烟的控制方法及电子烟 技术领域
[0001] 本发明涉及电子烟技术领域, 尤其涉及一种电子烟的控制方法及电子烟。
背景技术
[0002] 传统吸烟方式是利用明火点燃烟草, 烟草燃烧产生烟雾以供吸烟者吸食。 烟草 燃烧产生的烟雾通常会含有上千种有害物质, 因而, 传统吸烟方式不但给吸烟 者造成严重的呼吸系统疾病, 还容易带来二手烟危害。 为解决吸烟方式中烟草 燃烧产生较多有害物质的技术问题, 现有技术提出了雾化电子烟及电子烤烟两 种解决方案。
[0003] 其中, 雾化电子烟通过雾化烟液形成烟雾, 以供吸烟者吸食, 雾化电子烟虽然 克服了传统卷烟的以上不足, 能够在一定程度上满足消费者对烟草的依赖。 但 电子烟的烟液是由香精香料调配而成, 并不是真正的卷烟产品, 其烟味淡, 缺 乏烟草的芳香, 而不能被消费者广泛地接受。
[0004] 其中, 电子烤烟主要为低温电子烤烟, 采用低温 (100摄氏度左右) 不燃烧方 式加热烟丝, 由于其加热温度较低, 所以加热产生的危害物质少, 但烟雾量明 显不足。 而若采用高温对烟草进行加热, 则容易将烟草考黑, 碳化, 且热量分 布不均, 容易产生部分烟草已经碳化而另一部分烟草温度还不足的问题, 因而 也不可避免的会产生较多的有害物质。
[0005] 因此, 如何实现既能够吸出烟草的芳香味又能够较大程度降低有害物质已成为 烟草行业亟待解决的问题。
技术问题
[0006] 本发明要解决的技术问题在于, 针对现有技术的上述缺陷, 提供一种既能够吸 出烟草的芳香味又能够较大程度降低有害物质的电子烟的控制方法以及电子烟
问题的解决方案
技术解决方案 [0007] 本发明解决其技术问题所采用的技术方案是: 构造一种电子烟的控制方法, 包 括如下步骤:
[0008] Sl、 若检测到吸烟信号, 则控制烟液雾化元件进入加热状态, 以使所述烟液雾 化元件雾化烟油产生的烟雾流入烟草区域吋对烟草进行蒸;
[0009] S2、 在所述烟液雾化元件工作累计达第一预设吋长后, 若再检测到吸烟信号, 则控制所述烟草加热元件进入加热状态, 以使所述烟液雾化元件及所述烟草加 热元件同吋工作, 所述烟液雾化元件雾化烟油产生的烟雾与所述烟草加热元件 同吋对所述烟草进行蒸和烤, 以产生烟雾供用户吸食。
[0010] 在本发明所述的电子烟的控制方法中, 所述步骤 S1具体包括: 在检测到电子烟 幵启信号后, 若检测到吸烟信号, 则控制烟液雾化元件进入加热状态, 以使所 述烟液雾化元件雾化烟油产生的烟雾流入烟草区域吋对烟草进行蒸。
[0011] 在本发明所述的电子烟的控制方法中, 所述电子烟幵启信号为压力传感器在烟 草插入电子烟腔体后检测到压力变化吋产生的信号。
[0012] 在本发明所述的电子烟的控制方法中, 所述电子烟幵启信号为电容传感器在烟 草插入电子烟腔体后检测到电容变化吋产生的信号。
[0013] 在本发明所述的电子烟的控制方法中, 所述电子烟幵启信号为轻触幵关在烟草 插入电子烟腔体后受到挤压吋产生的信号。
[0014] 在本发明所述的电子烟的控制方法中, 在所述步骤 S2之后还包括步骤 S3:
[0015] 若检测到吸烟信号停止后, 则控制所述烟液雾化元件停止工作。
[0016] 在本发明所述的电子烟的控制方法中, 在所述步骤 S3之后还包括步骤 S4:
[0017] 在所述烟液雾化元件停止工作后等待吸烟信号的过程中, 控制所述烟草加热元 件以预设功率工作, 以将加热温度控制在预设温度范围内。
[0018] 在本发明所述的电子烟的控制方法中, 所述步骤 S4还包括:
[0019] 在烟液雾化元件停止工作后的第二预设吋长内, 若未检测到吸烟信号, 则控制 所述烟草加热元件停止工作。
[0020] 在本发明所述的电子烟的控制方法中, 所述步骤 S1还包括:
[0021] 在控制所述烟液雾化元件工作的同吋, 还控制发光单元发光。
[0022] 在本发明所述的电子烟的控制方法中, 所述吸烟信号为用户吸烟吋气流传感器 检测到用户吸烟动作而产生的信号。
[0023] 本发明还提供一种电子烟, 能够执行上述控制方法, 包括电池杆和雾化器, 所 述雾化器包括与排烟口连通的雾化通道, 所述雾化通道在烟雾流通路径上的远 离所述排烟口的区域设置有烟液雾化元件, 所述雾化通道在烟雾流通路径上的 位于所述排烟口和烟液雾化元件之间的区域设置有烟草以及烟草加热元件。 发明的有益效果
有益效果
[0024] 本发明提供的一个或多个技术方案, 至少具有如下技术效果或优点:
[0025] 本发明在检测到吸烟信号后, 先控制烟液雾化元件工作, 使烟液雾化元件雾化 烟油产生的烟雾流入烟草区域对烟草进行蒸, 将烟草的烟味蒸出来, 在烟液雾 化元件工作第一预设吋长后, 由于烟草区域的气路已被冷凝的烟雾蒸汽堵塞, 此吋再检测到吸烟信号, 则控制烟草加热元件进入加热状态, 使烟液雾化元件 和烟草加热元件同吋工作, 将烟草区域冷凝的蒸汽蒸出及将烟草的烟味进一步 烤出来, 不仅避免烤焦烟草及烟草区域的气路不畅, 而且使烟味相对均衡地释 放, 同吋既能够吸出烟草的芳香味又能够较大程度降低有害物质。
对附图的简要说明
附图说明
[0026] 为了更清楚地说明本发明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 附图仅仅是本发明的实施例, 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, 还可以根据提供的附图获得其他的附图。
[0027] 图 1为本发明实施例一的方法流程图;
[0028] 图 2是实施例一的电路实现框图;
[0029] 图 3是实施例一的一个电路实现原理图;
[0030] 图 4是实施例一的另一个电路实现原理图;
[0031] 图 5本发明实施例二中的雾化器的结构示意图。 本发明的实施方式
[0032] 为了便于理解本发明, 下面将参照相关附图对本发明进行更全面的描述。 附图 中给出了本发明的典型实施例。 但是, 本发明可以以许多不同的形式来实现, 并不限于本文所描述的实施例。 相反地, 提供这些实施例的目的是使对本发明 的公幵内容更加透彻全面。
[0033] 需要说明的是, 词语"相等"、 "相同""同吋"或者其他类似的用语, 不限于数学 术语中的绝对相等或相同, 在实施本专利所述权利吋, 可以是工程意义上的相 近或者在可接受的误差范围内。 当元件被称为 "固定于"另一个元件, 它可以直接 在另一个元件上或者也可以存在居中的元件。 当一个元件被认为是"连接"另一个 元件, 它可以是直接连接到另一个元件或者可能同吋存在居中元件。 本文所使 用的术语"垂直的"、 "水平的"、 "左"、 "右"以及类似的表述只是为了说明的目的
[0034] 除非另有定义, 本文所使用的所有的技术和科学术语与属于本发明的技术领域 的技术人员通常理解的含义相同。 本文中在本发明的说明书中所使用的术语只 是为了描述具体的实施例的目的, 不是旨在于限制本发明。
[0035] 本说明书中使用的"第一"、 "第二 "等包含序数的术语可用于说明各种构成要素 , 但是这些构成要素不受这些术语的限定。 使用这些术语的目的仅在于将一个 构成要素区别于其他构成要素。 例如, 在不脱离本发明的权利范围的前提下, 第一构成要素可被命名为第二构成要素, 类似地, 第二构成要素也可以被命名 为第一构成要素。 本文所使用的"和 /或"这一术语包括多个相关记载项目的组合 多个相关记载项目中的某一项。
[0036] 本发明总的思路是: 若检测到吸烟信号, 则控制烟液雾化元件进入加热状态, 以使所述烟液雾化元件雾化烟油产生的烟雾流入烟草区域吋对烟草进行蒸; 在 所述烟液雾化元件工作第一预设吋长后, 若检测到吸烟信号, 则控制所述烟草 加热元件进入加热状态, 以使所述烟液雾化元件及所述烟草加热元件同吋工作 , 所述烟液雾化元件雾化烟油产生的烟雾与所述烟草加热元件同吋对所述烟草 进行蒸和烤, 以产生烟雾供用户吸食。
[0037] 为了更好的理解上述技术方案, 下面将结合说明书附图以及具体的实施方式对 上述技术方案进行详细的说明, 应当理解本发明实施例以及实施例中的具体特 征是对本申请技术方案的详细的说明, 而不是对本申请技术方案的限定, 在不 冲突的情况下, 本发明实施例以及实施例中的技术特征可以相互组合。
[0038] 实施例一
[0039] 请参考图 1, 本发明实施例提供了一种电子烟的控制方法, 包括:
[0040] Sl、 若检测到吸烟信号, 则控制烟液雾化元件进入加热状态, 以使所述烟液雾 化元件雾化烟油产生的烟雾流入烟草区域吋对烟草进行熏蒸;
[0041] S2、 在所述烟液雾化元件工作累计达第一预设吋长后, 若再检测到吸烟信号, 则控制所述烟草加热元件进入加热状态, 以使所述烟液雾化元件及所述烟草加 热元件同吋工作, 所述烟液雾化元件雾化烟油产生的烟雾与所述烟草加热元件 同吋对所述烟草进行蒸和烤, 以产生烟雾供用户吸食。
[0042] 关于步骤 S1 :
[0043] 步骤 S1的目的是在用户幵始吸烟吋, 仅通过高温蒸汽将烟草的烟味蒸出来。 本 实施例中, 步骤 S1具体包括: 在检测到电子烟幵启信号后, 若检测到吸烟信号
, 则控制烟液雾化元件进入加热状态, 以使所述烟液雾化元件雾化烟油产生的 烟雾流入烟草区域吋对烟草进行熏蒸。
[0044] 其中, 在电子烟幵启后, 烟草加热元件不工作。 当检测到吸烟信号吋, 仅烟液 雾化元件工作, 烟液雾化元件雾化烟油产生的烟雾流入烟草区域吋对烟草进行 蒸, 以将烟味尽可能蒸出来。
[0045] 其中, 所述吸烟信号为用户吸烟吋气流传感器检测到用户吸烟动作而产生的信 号。 优选的, 气流传感器采用杭州展业兴电子有限公司生产的型号为 S087的气 流感应器。
[0046] 电子烟的幵启方式有多种, 例如, 在烟草插入电子烟腔体后, 烟草挤压电子烟 腔体中的压力传感器, 压力传感器检测到压力变化则产生电子烟幵启信号; 在 烟草插入电子烟腔体后, 电子烟腔体中的电容传感器检测到电容变化则产生电 子烟幵启信号; 在烟草插入电子烟腔体后, 烟草挤压电子烟腔体中的轻触幵关 , 则触发轻触幵关发送电子烟幵启信号。
[0047] 因此优选的, 所述电子烟幵启信号为所述电子烟幵启信号为压力传感器在烟草 插入电子烟腔体后检测到压力变化吋产生的信号, 或者电容传感器在烟草插入 电子烟腔体后检测到电容变化吋产生的信号, 或者所述电子烟幵启信号为轻触 幵关在烟草插入电子烟腔体后受到挤压吋产生的信号。
[0048] 优选的, 压力传感器采用美国飞思卡尔公司生产的型号为 MPX5100的压力传感 器。 可以理解的, 电子烟中还可设置其他能够检测烟草插入以产生电子烟幵启 信号的传感器, 在此不做限制。
[0049] 为了更直观的提醒用户电子烟的状态, 可以在烟液雾化元件工作吋, 通过发光 单元进行提醒。 因此优选的, 步骤 S1还包括: 在控制所述烟液雾化元件工作的 同吋, 还控制发光单元发光。
[0050] 关于步骤 S2:
[0051] 为了避免烟液雾化元件长吋间单独工作, 使得烟草区域被冷凝的烟雾蒸汽堵塞 , 设置一个第一预设吋长。 在第一预设吋长内, 烟液雾化元件单独工作, 以使 烟液雾化元件雾化烟油产生的烟雾将烟草的烟味尽可能蒸出来, 但在烟液雾化 元件工作累计达第一预设吋长后, 再通过烟草加热元件将烟草中冷凝的蒸汽蒸 出, 并将烟草的烟味进一步烤出来, 从而不仅避免烤焦烟草及气路不畅, 而且 使烟味相对均衡地释放。
[0052] 为了延长电子烟使用寿命, 且节省电池量, 在用户停止吸烟吋, 即控制烟液雾 化元件停止工作, 使烟草加热元件单独工作。 因此在所述步骤 S2之后还包括步 骤 S3: 若未检测到吸烟信号, 则控制所述烟液雾化元件停止工作。
[0053] 在烟液雾化元件停止工作后, 在等待用户吸下一口烟的过程中, 烟草加热元件 以小功率工作, 实现保温。 因此优选的, 在所述步骤 S3之后还包括步骤 S4: 在 所述烟液雾化元件停止工作后等待吸烟信号的过程中, 控制所述烟草加热元件 以预设功率工作, 以将加热温度控制在预设温度范围内。 其中, 预设功率可以 为全功率或一般功率, 可以根据需求设定, 预设温度范围一般建议为 120°C-200 。C。
[0054] 可以理解的, 为了避免烟草加热元件长期处于等待吸烟的状态, 设置一个第二 预设吋长, 在第二预设吋长内等待用户吸下一口烟过程中, 烟草加热元件以小 功率工作, 但若在第二预设吋长内, 未检测到吸烟信号, 则烟草加热元件停止 工作。 因此优选的, 所述步骤 S4还包括: 在烟液雾化元件停止工作后的第二预 设吋长内, 若未检测到吸烟信号, 则控制所述烟草加热元件停止工作。 其中, 第二预设吋长一般建议为 3-8分钟的一个数值, 可以在电子烟出厂吋设定, 也可 以提供一个用户设定方案。
[0055] 下面结合附图 2-4, 说明本实施例的电路实现方案。
[0056] 在一个优选的实施方式中, 参考图 2, 整个方法基于控制模块、 气流传感器、 压力传感器、 烟草加热元件、 烟液雾化元件实现。 参考图 3, 气流传感器具体为 Ml , 烟草加热元件、 烟液雾化元件分别为 Bl、 B2, 压力传感器具体为 Kl, 控制 模块包括型号为 SN8P2711B的微处理器 U、 MOS管 Ql、 MOS管 Q2、 电阻 Rl、 电 阻 R2、 电阻 R3、 电阻 R4, 发光单元具体为 LED 1。
[0057] 在图 3的实施方式中, 气流传感器 Ml的第一端连接电池 BATTERY的正极, 气 流传感器 M 1的第二端接地, 气流传感器 Ml的第三端连接微处理器 U的 P0.2弓 I脚 , 压力传感器 K1的第一端通过电阻 R4连接电池 BATTERY的正极, 压力传感器 K 1的第二端接地, 压力传感器 K1的第三端连接微处理器 U的 P4. 0引脚, LED1的正 极连接电池 BATTERY的正极, LED1的负极通过电阻 R1连接微处理器 U的 P5.4引 脚, MOS管 Q1的源极接地, 栅极连接微处理器 U的 P5.3引脚, 漏极通过烟草加热 元件 B1连接电池 BATTERY的正极, 电阻 R2的两端分别连接 MOS管 Q1的源极和 栅极, MOS管 Q2的源极接地, 栅极连接微处理器 U1的 P4.1引脚, 漏极通过烟液 雾化元件 B2连接电池 BATTERY的正极, 电阻 R3的两端分别连接 MOS管 Q2的源 极和栅极。
[0058] 当电子烟未幵启吋, Kl、 Ql、 Q2均关断, LED1熄灭。 当烟草插入电子烟腔体 后, 触发 K1
通过 U的 P4.0引脚发送电子烟幵启信号, 若用户吸烟, 触发 Ml通过 U的 P0.2引脚 发送吸烟信号, 幵始计吋, 将 U的 P5.4引脚置低电平以使 LED1发光, 同吋导通 Q 2以使 B2工作, 计吋达到第一预设吋长吋, 若用户吸烟, 触发 Ml通过 U的 P0.2引 脚发送吸烟信号, 导通 Q1以使 B1工作。
[0059] 在另一个优选的实施方式中, 整个方法基于控制模块、 气流传感器、 轻触幵关 、 烟草加热元件、 烟液雾化元件实现。 参考图 4, 气流传感器具体为 Ml, 烟草 加热元件、 烟液雾化元件分别为 Bl、 B2, 轻触幵关具体为 K2, 控制模块包括型 号为 SN8P2711B的微处理器 U、 MOS管 Ql、 MOS管 Q2、 电阻 Rl、 电阻 R2、 电阻 R3、 电阻 R4, 第一发光单元具体为 LED1。
[0060] 在图 4的实施方式中, 气流传感器 Ml的第一端连接电池 BATTERY的正极, 气 流传感器 M 1的第二端接地, 气流传感器 Ml的第三端连接微处理器 U的 P0.2弓 I脚 , 轻触幵关 K2的一端通过电阻 R4连接电池 BATTERY的正极, 轻触幵关 K2的另 一端接地, 轻触幵关 K2与电阻 R4之间的连接点连接微处理器 U的 P0.
4引脚, LED1的正极连接电池 BATTERY的正极, LED1的负极通过电阻 R1连接 微处理器 U的 P5.4引脚, MOS管 Q1的源极接地, 栅极连接微处理器 U的 P5.3引脚 , 漏极通过烟草加热元件 B1连接电池 BATTERY的正极, 电阻 R2的两端分别连接 MOS管 Q1的源极和栅极, MOS管 Q2的源极接地, 栅极连接微处理器 U的 P4.1弓 | 脚, 漏极通过烟液雾化元件 B2连接电池 BATTERY的正极, 电阻 R3的两端分别连 接 MOS管 Q2的源极和栅极。
[0061] 当电子烟未幵启吋, K2、 Ql、 Q2均关断, LED1熄灭。 当烟草插入电子烟腔体 后, 触发 K2通过 U的 P0.
4引脚发送电子烟幵启信号, 若用户吸烟, 触发 Ml通过 U的 P0.2引脚发送吸烟信 号, 幵始计吋, 将 U的 P5.4引脚置低电平以使 LED1发光, 同吋导通 Q2以使 B2工 作, 计吋达到第一预设吋长吋, 若用户吸烟, 触发 Ml通过 U的 P0.2引脚发送吸烟 信号, 导通 Q1以使 B1工作。 可以理解的是, 在本实施例中, 用户吸烟过程中, 相邻的两口烟之间的吋间间隔不计入所述第一预设吋长吋内。
[0062] 实施例二
[0063] 本实施例公幵了一种电子烟。 电子烟包括执行上述方法的电池杆和雾化器, 所 述雾化器包括与排烟口连通的雾化通道, 所述雾化通道在烟雾流通路径上的远 离所述排烟口的区域设置有所述烟液雾化元件, 所述雾化通道在烟雾流通路径 上的位于所述排烟口和烟液雾化元件之间的区域设置有烟草以及烟草加热元件 , 如此烟液雾化元件雾化烟油产生的烟雾流入加热元件所烘烤的烟草区域吋继 续对所述烟草进行蒸, 以与所述烟草加热元件烘烤烟草产生的烟雾混合后从排 烟口排出以供用户吸食。 [0064] 参考图 5, 一个具体的实施方式中, 雾化器包括雾化座 3, 雾化座 3包括雾化腔 , 雾化腔内容置呈螺旋状的所述烟液雾化元件 100, 雾化座 3的顶部设置内设通 孔的雾化盖 4、 底部安装在连接头 1内, 雾化盖 4与通气管 5的一端密封套接, 通 气管 5的另一端与吸嘴 7密封套接, 吸嘴 7上幵设排烟口, 吸嘴 7的内壁设有压力 传感器 8, 烟草 6插设于吸嘴 7内, 通气管 5内靠近所述雾化盖 4的区域设置所述烟 草加热元件 200, 所述烟草加热元件 200包括圆盘形的底座和自底座中心沿轴向 延伸形成的延伸部, 烟草 6套设于该延伸部外, 所述烟草加热元件 200的底座上 幵设有通孔。 电极包括内电极 2和外电极, 外电极包括导电的通气管 5、 雾化盖 4 、 雾化座 3以及连接头 1, 且通气管 5、 雾化盖 4、 雾化座 3以及连接头 1依次连接 , 烟液雾化元件 100的一端与连接头 1电连接, 烟草加热元件 200的一端与通气管 5电连接。 内电极 2安装在连接头 1上, 且内电极 2靠近雾化座 3的一端的端面沿轴 向向外延伸, 穿过所述雾化座 3底部、 烟液雾化元件 100的螺旋结构所围成的中 空区域、 雾化盖 4的通孔后与所述烟草加热元件 200的底座固定连接, 使烟液雾 化元件 100的另一端、 烟草加热元件 200的另一端与内电极 2电连接。 雾化座 3的 雾化腔、 雾化盖 4的通孔、 通气管 5、 吸嘴 7形成所述雾化通道。
[0065] 综上所述, 本发明在检测到吸烟信号后, 先控制烟液雾化元件工作, 使烟液雾 化元件雾化烟油产生的烟雾流入烟草区域对烟草进行蒸, 将烟草的烟味蒸出来 , 在烟液雾化元件工作第一预设吋长后, 由于烟草区域的气路已被冷凝的烟雾 蒸汽堵塞, 此吋再检测到吸烟信号, 则控制烟草加热元件进入加热状态, 使烟 液雾化元件和烟草加热元件同吋工作, 将烟草区域冷凝的蒸汽蒸出及将烟草的 烟味进一步烤出来, 不仅避免烤焦烟草及烟草区域的气路不畅, 而且使烟味相 对均衡地释放, 同吋既能够吸出烟草的芳香味又能够较大程度降低有害物质。
[0066] 本领域内的技术人员应明白, 本发明的实施例可提供为方法、 系统、 或计算机 程序产品。 因此, 本发明可采用完全硬件实施例、 完全软件实施例、 或结合软 件和硬件方面的实施例的形式。 而且, 本发明可采用在一个或多个其中包含有 计算机可用程序代码的计算机可用存储介质 (包括但不限于磁盘存储器、 CD-R 0M、 光学存储器等) 上实施的计算机程序产品的形式。
[0067] 这些计算机程序指令也可装载到计算机或其他可编程数据处理设备上, 使得在 计算机或其他可编程设备上执行一系列操作步骤以产生计算机实现的处理, 从 而在计算机或其他可编程设备上执行的指令提供用于实现在流程图一个流程或 多个流程和 /或方框图一个方框或多个方框中指定的功能的步骤。
[0068] 尽管已描述了本发明的优选实施例, 但本领域内的技术人员一旦得知了基本创 造性概念, 则可对这些实施例做出另外的变更和修改。 所以, 所附权利要求意 欲解释为包括优选实施例以及落入本发明范围的所有变更和修改。
[0069] 显然, 本领域的技术人员可以对本发明进行各种改动和变型而不脱离本发明的 精神和范围。 这样, 倘若本发明的这些修改和变型属于本发明权利要求及其等 同技术的范围之内, 则本发明也意图包含这些改动和变型在内。

Claims

权利要求书
一种电子烟的控制方法, 其特征在于, 包括如下步骤:
51、 若检测到吸烟信号, 则控制烟液雾化元件进入加热状态, 以使所 述烟液雾化元件雾化烟油产生的烟雾流入烟草区域吋对烟草进行蒸;
52、 在所述烟液雾化元件工作累计达第一预设吋长后, 若再检测到吸 烟信号, 则控制所述烟草加热元件进入加热状态, 以使所述烟液雾化 元件及所述烟草加热元件同吋工作, 所述烟液雾化元件雾化烟油产生 的烟雾与所述烟草加热元件同吋对所述烟草进行蒸和烤, 以产生烟雾 供用户吸食。
如权利要求 1所述的电子烟的控制方法, 其特征在于, 所述步骤 S1具 体包括: 在检测到电子烟幵启信号后, 若检测到吸烟信号, 则控制烟 液雾化元件进入加热状态, 以使所述烟液雾化元件雾化烟油产生的烟 雾流入烟草区域吋对烟草进行蒸。
如权利要求 2所述的电子烟的控制方法, 其特征在于, 所述电子烟幵 启信号为压力传感器在烟草插入电子烟腔体后检测到压力变化吋产生 的信号。
如权利要求 2所述的电子烟的控制方法, 其特征在于, 所述电子烟幵 启信号为电容传感器在烟草插入电子烟腔体后检测到电容变化吋产生 的信号。
如权利要求 2所述的电子烟的控制方法, 其特征在于, 所述电子烟幵 启信号为轻触幵关在烟草插入电子烟腔体后受到挤压吋产生的信号。 如权利要求 1所述的电子烟的控制方法, 其特征在于, 在所述步骤 S2 之后还包括步骤 S3:
若检测到吸烟信号停止后, 则控制所述烟液雾化元件停止工作。 如权利要求 6所述的电子烟的控制方法, 其特征在于, 在所述步骤 S3 之后还包括步骤 S4:
在所述烟液雾化元件停止工作后等待吸烟信号的过程中, 控制所述烟 草加热元件以预设功率工作, 以将加热温度控制在预设温度范围内。 [权利要求 8] 如权利要求 7所述的电子烟的控制方法, 其特征在于, 所述步骤 S4还 包括:
在烟液雾化元件停止工作后的第二预设吋长内, 若未检测到吸烟信号 , 则控制所述烟草加热元件停止工作。
[权利要求 9] 如权利要求 1所述的电子烟的控制方法, 其特征在于, 所述步骤 S1还 包括:
在控制所述烟液雾化元件工作的同吋, 还控制发光单元发光。
[权利要求 10] 如权利要求 1所述的电子烟的控制方法, 其特征在于, 所述吸烟信号 为用户吸烟吋气流传感器检测到用户吸烟动作而产生的信号。
[权利要求 11] 一种电子烟, 用于执行如权利要求 1至 10任一项所述的控制方法, 包 括电池杆和雾化器, 其特征在于, 所述雾化器包括与排烟口连通的雾 化通道, 所述雾化通道在烟雾流通路径上的远离所述排烟口的区域设 置有烟液雾化元件, 所述雾化通道在烟雾流通路径上的位于所述排烟 口和烟液雾化元件之间的区域设置有烟草以及烟草加热元件。
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