WO2015131406A1 - 电子烟及电子烟的烟雾量调节方法 - Google Patents

电子烟及电子烟的烟雾量调节方法 Download PDF

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Publication number
WO2015131406A1
WO2015131406A1 PCT/CN2014/073085 CN2014073085W WO2015131406A1 WO 2015131406 A1 WO2015131406 A1 WO 2015131406A1 CN 2014073085 W CN2014073085 W CN 2014073085W WO 2015131406 A1 WO2015131406 A1 WO 2015131406A1
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WIPO (PCT)
Prior art keywords
assembly
electronic cigarette
battery rod
rod assembly
atomizing
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Application number
PCT/CN2014/073085
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English (en)
French (fr)
Inventor
刘秋明
Original Assignee
吉瑞高新科技股份有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
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Publication date
Application filed by 吉瑞高新科技股份有限公司 filed Critical 吉瑞高新科技股份有限公司
Priority to CN201480076519.6A priority Critical patent/CN106455689B/zh
Priority to PCT/CN2014/073085 priority patent/WO2015131406A1/zh
Publication of WO2015131406A1 publication Critical patent/WO2015131406A1/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
    • A24F40/40Constructional 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
    • A24F40/10Devices 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
    • A24F40/50Control or monitoring

Definitions

  • the invention relates to the field of daily electronic products, in particular to a method for adjusting the amount of smoke of an electronic cigarette and an electronic cigarette.
  • the airflow sensing control assembly of the prior art electronic cigarette is disposed inside the battery rod assembly. Therefore, when the airflow sensing control assembly is damaged, only the entire battery rod assembly is replaced, causing great waste.
  • the existing electronic cigarette is usually opened on the side wall of the battery sleeve of the battery rod assembly. There is a perforation, and the battery rod assembly is provided with an output power adjustment button corresponding to the perforation position, by which the amount of smoke of the electronic cigarette is adjusted.
  • the electronic cigarette of such a structure does not easily insert a button into the battery sleeve to align with the perforation during assembly, and the assembly efficiency is low; and the button is prone to failure due to fatigue during use; in addition, due to the electronic cigarette
  • the structure of the battery sleeve is such that the position of the perforation is easily broken by an external force.
  • the button is liable to cause the electronic cigarette to malfunction due to the touch.
  • the existing method for adjusting the amount of smoke of the electronic cigarette and the electronic cigarette needs to be improved.
  • the technical solution adopted by the present invention to solve the technical problem is: providing An electronic cigarette comprising an electronic cigarette body and a nozzle assembly detachably connected to the electronic cigarette body, the electronic cigarette body comprising an atomizing component for atomizing the liquid smoke and for feeding the atomizing component
  • the power supply battery rod assembly is provided with an air flow sensing control assembly for controlling the electronic cigarette body to perform atomization work.
  • the nozzle assembly is detachably coupled to one end of the atomizing assembly
  • the battery rod assembly is detachably coupled to the other end of the atomizing assembly.
  • the electronic cigarette further comprises an oil reservoir, the nozzle assembly is detachably disposed at one end of the battery rod assembly, and the atomization assembly is coupled to the other end of the battery rod assembly, the storage An oiler is coupled to one end of the atomizing assembly away from the nozzle assembly.
  • the nozzle assembly is provided with a first smoke passage, an air flow passage and a receiving space communicating with the air flow passage, and the air flow sensing control assembly is disposed in the receiving space.
  • the first smoke passage and the air flow passage are respectively disposed axially along the nozzle assembly and respectively communicated to an outer surface of the nozzle assembly, and the first smoke passage and the air flow passage are mutually Isolation settings.
  • the nozzle assembly includes a suction portion for a user to suck and a connection portion for detachably connecting with the battery rod assembly;
  • the first smoke passage is penetrated from an end surface of the connecting portion adjacent to the battery rod assembly to a side of the sucking portion away from the connecting portion, and the air flow passage is away from the connecting portion by the connecting portion One side of the portion penetrates into the accommodation space.
  • an electrical connection assembly for electrically connecting the airflow sensing control assembly and the battery rod assembly is further provided;
  • the electrical connection assembly includes at least two elastic electrodes and a connecting plate, and the connecting plate is provided with at least two conductive portions respectively for elastically resisting and electrically connecting with the at least two elastic electrodes.
  • the connecting portion is mated with the battery rod assembly.
  • the connecting plate is fixedly disposed at an end of the nozzle assembly facing the battery rod assembly, and the at least two elastic electrodes are disposed on the battery rod assembly and extend toward the nozzle assembly.
  • the electrical connection assembly further includes an electrode holder, the electrode holder being provided with at least two mounting holes;
  • the elastic electrode includes a spring and an electrode post, each of the springs is mounted in the corresponding mounting hole, and one end of the electrode post is clamped in the corresponding mounting hole and elastically resists the spring .
  • the conductive portion is a metallized hole provided on the connecting plate, and the shape of the metalized hole is adapted to the shape of the electrode column.
  • the electronic cigarette is further provided with a limiting mechanism for preventing the nozzle assembly and the battery rod assembly from being misaligned when being inserted.
  • the battery rod assembly includes a battery sleeve, and the elastic electrode and the electrode holder are both disposed in the battery sleeve;
  • the limit mechanism includes:
  • a rib disposed on an inner side wall of the battery sleeve, the rib extending along an axial direction of the battery sleeve;
  • the nozzle assembly and the battery rod assembly are threaded.
  • the connecting plate is fixedly disposed at an end of the battery rod assembly facing the nozzle assembly, and the elastic electrode is disposed in the nozzle assembly and extends toward the battery rod assembly; the at least two Each of the conductive portions is annular and disposed on the connecting plate at a coaxial interval.
  • the connecting plate is fixedly disposed at an end of the battery rod assembly facing the nozzle assembly, and the elastic electrode is disposed in the nozzle assembly and extends toward the battery rod assembly;
  • One of the at least two conductive portions has a circular shape coaxial with the battery rod assembly, and the other conductive portions of the at least two conductive portions are annular and electrically conductive with the circular The portions are disposed coaxially spaced apart on the connecting plate.
  • the electrical connection assembly further includes an electrode holder, the electrode holder is provided with at least two mounting holes, and the elastic electrode comprises a spring and an electrode column;
  • the spring is mounted in the mounting hole, and an end of the electrode post is held in the mounting hole and elastically resists the spring.
  • the invention also provides an electronic cigarette, An electronic cigarette body, a nozzle assembly, and an oil reservoir for storing smoke oil, the electronic cigarette body including an atomizing assembly for atomizing the liquid smoke and a battery rod assembly for supplying the atomizing assembly, An airflow sensing control component for controlling the atomization work of the electronic cigarette body is disposed in the nozzle assembly;
  • the nozzle assembly is detachably disposed at one end of the battery rod assembly, the atomizing assembly is detachably coupled to the other end of the battery rod assembly, and the oil reservoir is detachably coupled to the mist An end of the assembly that is remote from the nozzle assembly;
  • the nozzle assembly includes a suction portion for a user to suck and a connection portion for detachably connecting with the battery rod assembly, the connection portion being integrally formed with the suction portion;
  • the nozzle assembly is provided with a first smoke passage, an air flow passage separated from the first smoke passage, and an accommodation space communicating with the air flow passage;
  • the first smoke passage is penetrated by an end surface of the connecting portion adjacent to the battery rod assembly to a receiving space of the suction portion that is away from the connecting portion, the receiving space is formed in the connecting portion, and the air flow passage is penetrated from the side of the sucking portion away from the connecting portion to the connecting portion Communicating with the accommodation space;
  • the electronic cigarette is further provided with an electrical connection assembly for electrically connecting the airflow sensing control component and the battery rod assembly;
  • the electrical connection assembly includes at least two elastic electrodes and a connecting plate, and the connecting plate is provided with at least two conductive portions respectively for elastically resisting and electrically connecting with the at least two elastic electrodes.
  • the invention also provides a method for adjusting the amount of smoke of an electronic cigarette
  • the electronic cigarette includes an electronic cigarette body and a plurality of nozzle assemblies provided with an airflow sensing control assembly, and the electronic cigarette body is selectively detachably coupled to one of the nozzle assemblies, the method comprising: replacing and The said electronic cigarette body is connected The nozzle assembly adjusts the output power of the battery rod assembly of the electronic cigarette body to adjust the amount of smoke of the electronic cigarette body.
  • the electronic cigarette body comprises an atomizing assembly for atomizing the liquid smoke and the battery rod assembly for supplying power to the atomizing assembly, the nozzle assembly being detachably disposed on the battery rod At one end of the assembly, the atomizing assembly is coupled to the other end of the battery rod assembly.
  • the present invention has the following beneficial effects: since the nozzle assembly is detachably disposed on the electronic cigarette body and the airflow sensing control assembly is disposed in the nozzle assembly, When it is necessary to adjust the amount of smoke or the airflow sensing control component is damaged, the airflow sensing control component can be replaced by replacing the nozzle assembly, and the airflow sensing control component of each nozzle component controls the output power of the battery rod assembly to be different in size, thereby achieving adjustment
  • the amount of smoke of the electronic cigarette can reduce the maintenance cost of the user and is simple to operate, and overcomes the technical bias in the prior art that the amount of smoke can only be adjusted by pressing a button, and the button is easily fatigued in the prior art, and the battery casing is solved.
  • the setting button is easy to break and the button is easy to operate incorrectly. .
  • FIG. 1 is a schematic structural view of an electronic cigarette according to a first embodiment of the present invention
  • FIG. 2 is a schematic structural view of an electronic cigarette according to a second embodiment of the present invention.
  • FIG. 3 is a schematic structural view of an electronic cigarette in a third embodiment of the present invention.
  • Figure 4 is a partial enlarged structural view of the area indicated by A in Figure 3;
  • Figure 5 is a partial exploded structural view of the electronic cigarette in the embodiment shown in Figure 3;
  • FIG. 6 is a schematic structural view of an electronic cigarette in a fourth embodiment of the present invention.
  • Figure 7 is a partial enlarged structural view of the area indicated by B in Figure 6;
  • Figure 8 is a partial exploded structural view of the electronic cigarette in the embodiment shown in Figure 6;
  • Figure 9 is a circuit schematic diagram of an electronic cigarette in a third embodiment of the present invention.
  • the present invention detachably mounts the nozzle assembly 11 on the electronic cigarette body and sets the airflow sensing control assembly 15 to the nozzle assembly 11
  • the airflow sensing control assembly 15 can be replaced by replacing the nozzle assembly 11, each nozzle assembly 11
  • Airflow sensing control unit 15 controls the battery rod assembly 14 to have different output power levels , thereby adjusting the amount of smoke of the electronic cigarette.
  • the invention can reduce the maintenance cost of the user and is simple to operate, and overcomes the technical bias in the prior art that the amount of smoke can only be adjusted by pressing a button, and solves the problem that the button is easily fatigued in the prior art, and the battery casing
  • the setting button of 14a is easy to break and the button is easy to operate incorrectly.
  • the electronic cigarette body includes an atomizing assembly 13 for atomizing the liquid smoke and a battery rod assembly 14 for powering the atomizing assembly 13.
  • the air nozzle sensing assembly 15 for controlling the electronic cigarette body to perform the atomizing operation is disposed in the nozzle assembly 11.
  • the nozzle assembly 11 is detachably coupled to one end of the atomizing assembly 13, and the battery rod assembly 14 Removably attached to the other end of the atomizing assembly 13.
  • the oil reservoir 12 is disposed in the atomizing assembly 14 to provide the aerosolizing material for the atomizing assembly 14.
  • the oil reservoir 12 is disposed in the atomizing assembly 13 by using conventional conventional techniques, and thus will not be described in detail.
  • FIG. 2 is a schematic view showing the structure of an electronic cigarette in a second embodiment of the present invention, including an electronic cigarette body, a nozzle assembly 11, and a reservoir for accommodating the liquid smoke.
  • the electronic cigarette body includes an atomizing assembly 13 for atomizing the liquid smoke, and a battery rod assembly 14 for powering the atomizing assembly 13.
  • An airflow sensing control assembly 15 for controlling the battery rod assembly 14 to supply power to the atomizing assembly 13 is disposed in the nozzle assembly 11.
  • the oil reservoir 12 is disposed at one end of the electronic cigarette body, and the nozzle assembly 11 is detachably disposed at one end of the electronic cigarette body away from the oil reservoir 12.
  • the nozzle assembly 11 is detachably disposed at one end of the battery rod assembly 14, and the atomizing assembly 13 is detachably disposed at the other end of the battery rod assembly 14.
  • the oil reservoir 12 is detachably disposed on an end of the atomizing assembly 13 remote from the nozzle assembly 11. In the present embodiment, since the nozzle assembly 11 is away from the oil reservoir 12 and the atomizing assembly 13, the heat generated by the atomizing assembly 13 when the atomizing liquid is atomized can be prevented.
  • the smoke generated by the atomized smoke oil does not pass through the oil reservoir 12, so that the smoke does not condense under the action of the oil reservoir 12, and thus does not A smoke passage D1 that blocks the flow of smoke in the electronic cigarette.
  • the atomizing assembly 13 can be located between the battery rod assembly 14 and the reservoir 12 with the nozzle assembly 11 located outside of one end of the battery rod assembly 14, or the nozzle assembly 11 being located in the middle of the battery rod assembly 14, or The nozzle assembly 11 is located on the battery rod assembly 14 away from the atomizing assembly 13.
  • Fig. 3 is a view showing the structure of an electronic cigarette in a third embodiment of the present invention.
  • the electronic cigarette includes an electronic cigarette body, a nozzle assembly 11 and a receiver 12 for accommodating the smoke liquid.
  • the electronic cigarette body includes an atomizing assembly 13 for atomizing the liquid smoke, and a battery rod assembly 14 for powering the atomizing assembly 13.
  • An airflow sensing control assembly 15 for controlling the battery rod assembly 14 to supply power to the atomizing assembly 13 is disposed in the nozzle assembly 11.
  • the nozzle assembly 11 is detachably disposed at one end of the battery rod assembly 14, and the atomizing assembly 13 is detachably disposed at the other end of the battery rod assembly 14.
  • the oil reservoir 12 is detachably disposed on an end of the atomizing assembly 13 remote from the nozzle assembly 11.
  • the electronic cigarette further includes an electrical connection assembly for electrically connecting the airflow sensing control assembly 15 in the nozzle assembly 11 with the battery rod assembly 14.
  • the nozzle assembly 11 includes a suction portion 11a for the user to suck and a connecting portion 11b for detachably connecting with the battery rod assembly 14.
  • the sucking portion 11a may be a rotating body or may have another shape.
  • the connecting portion 11b is substantially cylindrical and is in contact with the sucking portion 11a. As a unitary structure.
  • the connecting portion 11b is for mating with the battery sleeve 14a of the battery rod assembly 14.
  • the nozzle assembly 11 is provided with a first smoke passage D11, an air flow passage D2, and a receiving space D3 communicating with the air flow passage D2, and the air flow sensing control assembly 15 is disposed in the receiving space D3.
  • a mounting seat 17 for mounting the airflow sensing control assembly 15 is also disposed in the receiving space D3.
  • the first smoke passage D11 and the air flow passage D2 are respectively disposed axially along the nozzle assembly 11 and respectively communicated to the outer surface of the nozzle assembly 11, and the first smoke passage D11 and the air flow passage D2 are disposed apart from each other. This prevents the mist generated by the atomization of the atomizing unit 13 from condensing and blocking the air flow path D2 or damaging the air flow sensing control unit 15 in the air flow path D2.
  • the accommodation space D3 is provided in the connection portion 11b which penetrates from the side of the suction portion 11a away from the connection portion 11b to the connection portion 11b to communicate with the accommodation space D3.
  • the connecting portion 11b or other portion is provided with an air inlet (not shown) that communicates with the accommodation space D3.
  • the first smoke passage D11 penetrates from the end surface of the connecting portion 11b close to the battery rod assembly 14 to the side of the sucking portion 11a away from the connecting portion 11b.
  • the first smoke passage D11 and the air flow passage D2 are both parallel to the axial direction of the nozzle assembly 11.
  • the battery rod assembly 14 includes a battery 14b and a battery sleeve 14a, and the battery 14b is housed in the battery sleeve 14a.
  • a second smoke passage D12 is also formed in the battery sleeve 14a, and the second smoke passage D12 is disposed along the axial direction of the battery sleeve 14a.
  • One end of the second smoke passage D12 communicates with the inside of the atomizing assembly 13 and the other end communicates with the first smoke passage D11.
  • the first smoke passage D11 and the second smoke passage D12 together constitute a smoke passage D1 of the electronic cigarette.
  • the electrical connection assembly includes at least two elastic electrodes 161 and a connecting plate 162.
  • the connecting plate 162 is fixedly disposed on an end surface of the connecting portion 11b facing the battery sleeve, and may be screwed, for example.
  • the connecting plate 162 is provided with at least two conductive portions 162a, for example three.
  • the three conductive portions 162a are electrically connected to the power supply end, the ground end, and the signal end of the airflow sensing control unit 15, respectively.
  • the connecting plate 162 is a PCB board, and the conductive portion 162a is a metallized hole disposed on the PCB board.
  • the shape of the metallized holes is adapted to the shape of the electrode posts 1612.
  • the at least two resilient electrodes 161 are disposed on the battery stem assembly 14 and extend toward the nozzle assembly 11. Specifically, in order to mount the at least two elastic electrodes 161, an electrode holder 163 is also engaged inside the battery can 14a.
  • the electrode holder 163 is provided with at least two mounting holes 1631.
  • the elastic electrode 161 includes a spring 1611 and an electrode post 1612.
  • the spring 1611 is mounted in the corresponding mounting hole 1631.
  • One end of the electrode post 1612 is held in the corresponding mounting hole 1631 and elastically abuts against the spring 1611.
  • the other ends of each of the electrode posts 1612 are elastically resisted on the conductive portions 162a and electrically connected in a one-to-one correspondence. This makes the circuit connection path more stable.
  • the electronic cigarette is also provided with a stopper mechanism between the connecting portion 11b and the battery can 14a.
  • the stopper mechanism includes a rib 141 provided on the inner side wall of the battery can 14a and a groove 111 provided on the outer side wall of the connecting portion 11b to be fitted with the rib 141.
  • the rib 141 extends in the axial direction of the battery can 14a.
  • the airflow sensing control component 14 includes a control chip and an airflow sensor M1. , FET Q1.
  • the model of the control chip in the figure is SN8P2711B.
  • the smoking signal is transmitted to the control chip or the smoking signal is transmitted to the control chip by pressing the button K1, and the control chip controls the FET Q1 to be turned on, so that the battery 14b is the heating wire D of the atomizing assembly 13. Power is supplied so that the heating wire D atomizes the oil and controls the switch indicators LED1 and LED2 to illuminate.
  • capacitor C2 is used when CH+ and CH- When a short circuit occurs, the control chip is powered so that the control chip has a buffer time to turn off the FET Q1, thereby avoiding a dangerous situation.
  • Control chip through control FET Q1 The duty cycle of the pulse wave in turn controls the amount of current flowing through the heating wire D, thereby controlling the amount of smoke generated by the atomizing assembly 13.
  • FIG. 6 shows an electronic cigarette according to a fourth embodiment of the present invention, which includes the electronic cigarette including an electronic cigarette body, a nozzle assembly 11, and a sump reservoir 12 for containing.
  • the electronic cigarette body includes an atomizing assembly 13 for atomizing the liquid smoke, and a battery rod assembly 14 for powering the atomizing assembly 13.
  • An airflow sensing control assembly 15 for controlling the battery rod assembly 14 to supply power to the atomizing assembly 13 is disposed in the nozzle assembly 11.
  • the nozzle assembly 11 is detachably disposed at one end of the battery rod assembly 14, and the atomizing assembly 13 is detachably disposed at the other end of the battery rod assembly 14.
  • the oil reservoir 12 is detachably disposed on an end of the atomizing assembly 13 remote from the nozzle assembly 11.
  • the electronic cigarette further includes an electrical connection assembly for electrically connecting the airflow sensing control assembly 15 in the nozzle assembly 11 to the battery stem assembly 14.
  • the nozzle assembly 11 includes a sucking portion 11a and a connecting portion 11b.
  • the sucking portion 11a may be a rotating body or may have another shape.
  • the connecting portion 11b has a substantially cylindrical shape and a suction portion 11a As a unitary structure.
  • the outer side wall surface of the connecting portion 11b is provided with a screw structure for screw connection with the battery sleeve 14a of the battery rod assembly 14.
  • the nozzle assembly 11 is provided with a first smoke passage D11, an air flow passage D2, and a receiving space D3 communicating with the air flow passage D2, and the air flow sensing control assembly 15 is disposed in the receiving space D3.
  • a mounting seat 17 for mounting the airflow sensing control assembly 15 is also disposed in the receiving space D3.
  • the first smoke passage D11 and the air flow passage D2 are respectively disposed axially along the nozzle assembly 11 and respectively communicated to the outer surface of the nozzle assembly 11, and the first smoke passage D11 and the air flow passage D2 are disposed apart from each other.
  • the first smoke passage D11 and the air flow passage D2 are disposed apart from each other to prevent the atomized smoke liquid in the first smoke passage D11 from entering the air flow passage D2, thereby preventing the airflow sensing control assembly 15 from being damaged by the smoke liquid.
  • the accommodation space D3 is provided in the connection portion 11b which penetrates from the side of the suction portion 11a away from the connection portion 11b to the connection portion 11b to communicate with the accommodation space D3.
  • the connecting portion 11b or other portion is provided with an air inlet (not shown) that communicates with the accommodation space D3.
  • the first smoke passage D11 penetrates from the end surface of the connecting portion 11b close to the battery rod assembly 14 to the side of the sucking portion 11a away from the connecting portion 11b.
  • the first smoke passage D11 and the air flow passage D2 are both parallel to the axial direction of the nozzle assembly.
  • the battery rod assembly 14 includes a battery 14b and a battery sleeve 14a, and the battery 14b is housed in the battery sleeve 14a.
  • a second smoke passage D12 is also formed in the battery sleeve 14a, and the second smoke passage D12 is disposed along the axial direction of the battery sleeve 14a.
  • One end of the second smoke passage D12 communicates with the inside of the atomizing assembly 13 and the other end communicates with the first smoke passage D11.
  • the first smoke passage D11 and the second smoke passage D12 together constitute a smoke passage D1 of the electronic cigarette.
  • the electrical connection assembly includes at least two elastic electrodes 161 and a connecting plate 162.
  • the connecting plate 162 is fixedly disposed at one end of the battery sleeve 14a facing the connecting portion 11b.
  • the connecting plate 162 is provided with at least two conductive portions 162a, for example three.
  • the three conductive portions 162a are electrically connected to the power supply end, the ground end, and the signal end of the airflow sensing control unit 15, respectively.
  • the connecting plate 162 is a PCB board, and the three conductive portions 162a are all annular and disposed on the connecting plate 162 at a coaxial interval.
  • one of the three conductive portions 162a has a circular shape coaxial with the battery sleeve 14a, and the other two conductive portions 162a are annular and disposed coaxially spaced apart from the circular conductive portion 162a.
  • the arrangement of the conductive portion 162a has the following advantageous effects: when the nozzle assembly 11 is screwed into the battery sleeve 14a, each of the elastic electrodes 161 is always elastically resisted on the corresponding conductive portion 162a and along the corresponding The rotation of the conductive portion 162 prevents the conductive portion 162 from being displaced from its corresponding elastic electrode 161, and can provide a user experience.
  • a through hole D13 is further disposed on the connecting plate 162.
  • the through hole D13 connects the second smoke passage D12 with the first smoke passage D11.
  • the at least two resilient electrodes 161 are disposed in the nozzle assembly 11 and extend toward the battery stem assembly 14. Specifically, in order to mount the at least two elastic electrodes 161, an electrode holder 163 is also engaged inside the connecting portion 11b of the nozzle assembly 11.
  • the electrode holder 163 is provided with at least two mounting holes 1631.
  • the elastic electrode 161 includes a spring 1611 and an electrode post 1612.
  • the spring 1611 is mounted in the corresponding mounting hole 1631.
  • One end of the electrode post 1612 is held in the corresponding mounting hole 1631 and elastically abuts against the spring 1611.
  • the other ends of each of the electrode posts 1612 are elastically resisted on the conductive portions 162a and electrically connected in a one-to-one correspondence.
  • the invention also provides a method for adjusting the amount of smoke of an electronic cigarette, the electronic cigarette comprising an electronic cigarette body and a plurality of airflow sensing control components 15
  • the nozzle assembly 11 , the electronic cigarette body is selectively detachably coupled to a nozzle assembly 11 , the method comprising: replacing the nozzle assembly 11 connected to the electronic cigarette body to adjust the battery rod assembly of the electronic cigarette body
  • the output power of 14 further adjusts the amount of smoke in the body of the electronic cigarette.
  • the electronic cigarette body includes an atomizing assembly 13 for atomizing the liquid smoke and a battery rod assembly 14 for supplying power to the atomizing unit 13.
  • the nozzle assembly 11 is detachably disposed at one end of the battery rod assembly 14, and the atomizing assembly 13 is coupled to the other end of the battery rod assembly 14.
  • the nozzle assembly 11 having the airflow sensing control assembly 15 is manufactured.
  • the control chip of different nozzle components controls the flow of the heating wire by controlling the duty ratio of the pulse wave of the field effect transistor Q1.
  • the current magnitude of D is different, that is, the output power of the battery rod assembly 14 of the electronic cigarette body is different, so that the amount of smoke of the electronic cigarette body can be adjusted by replacing the nozzle assembly 11.
  • the invention can reduce the maintenance cost of the user and is simple in operation, and overcomes the technical prejudation that the amount of smoke can only be adjusted by the button in the prior art, and solves the problem that the button is easily fatigued in the prior art, and the battery sleeve 14a
  • the setting button is easy to break and the button is easy to operate incorrectly.

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Abstract

一种电子烟及电子烟的烟雾量调节方法,该电子烟包括电子烟本体及与该电子烟本体进行可拆卸连接的吸嘴组件(11),电子烟本体包括用于雾化烟液的雾化组件(13)以及用于给该雾化组件(13)供电的电池杆组件(14),吸嘴组件(11)中设置有用于控制电子烟本体进行雾化工作的气流感应控制组件(15)。该电子烟可以降低用户的维修成本且操作简单,克服了现有技术中只能通过按键才能进行烟雾量调节的技术偏见,解决了按键容易疲劳、电池套管的设置按键处容易折断及按键容易误操作的问题。

Description

电子烟及电子烟的烟雾量调节方法 技术领域
本发明涉及日用电子产品领域,尤其涉及一种 电子烟及电子烟的烟雾量调节方法 。
背景技术
现有技术中的电子烟的气流感应控制组件设置在电池杆组件的内部,因此,当气流感应控制组件损坏时,只有更换掉整个电池杆组件,造成极大的浪费。此外,由于不同的吸烟者的肺活量不同,而吸每口烟的烟雾量不同,为了满足不同人对烟雾量的需求,现有的电子烟通常在电池杆组件的电池套管的侧壁上开设有穿孔,所述电池杆组件设置有与所述穿孔位置相对应的输出功率调节按键,通过所述按键进行调节电子烟的烟雾量。
然而,此种结构的电子烟在组装时不容易将按键塞入所述电池套管内与所述穿孔对位,装配效率低;且按键在使用过程中容易因疲劳而失灵;此外,由于电子烟结构较小巧,所述电池套管的设置有所述穿孔的位置容易因受外力作用而折断,第三,所述按键容易因碰触到而使电子烟误动作。
因此,现有的所述电子烟及电子烟的烟雾量调节方法亟待改进。
发明内容
针对现有技术的电子烟的缺陷,提供一种电子烟及电子烟的烟雾量调节方法。
本发明解决技术问题采用的技术方案是:提供 一种电子烟,包括电子烟本体及与所述电子烟本体进行可拆卸连接的吸嘴组件,所述电子烟本体包括用于雾化烟液的雾化组件以及用于给所述雾化组件供电的电池杆组件,所述吸嘴组件中设置有用于控制所述电子烟本体进行雾化工作的气流感应控制组件。
优选地,所述吸嘴组件可拆卸地连接于所述雾化组件的一端,所述电池杆组件可拆卸地连接于所述雾化组件的另一端。
优选地,所述电子烟还包括储油器,所述吸嘴组件可拆卸地设置于所述电池杆组件的一端,所述雾化组件连接于所述电池杆组件的另一端,所述储油器连接于所述雾化组件上远离所述吸嘴组件的一端。
优选地,所述吸嘴组件内设置有第一烟雾通道、气流通道以及一与所述气流通道连通的容纳空间,所述气流感应控制组件设置在所述容纳空间中。
优选地,所述第一烟雾通道和所述气流通道分别沿所述吸嘴组件轴向设置且分别连通至所述吸嘴组件的外表面,所述第一烟雾通道和所述气流通道相互之间隔离设置。
优选地,所述吸嘴组件包括用于供用户吸食的吸食部以及用于与所述电池杆组件可拆卸地连接的连接部;
所述第一烟雾通道由所述连接部的靠近所述电池杆组件的端面贯穿至所述吸食部的远离所述连接部的一侧,所述气流通道由所述连接部的远离所述吸食部的一侧贯穿至所述容纳空间。
优选地,还设置有用于将所述气流感应控制组件和所述电池杆组件电连接的电连接组件;
所述电连接组件包括至少两个弹性电极和连接板,所述连接板上设置有分别用于与所述至少两个弹性电极弹性抵持并电连接的至少两个导电部。
优选地,所述连接部与所述电池杆组件插接。
优选地,所述连接板固定设置在所述吸嘴组件的朝向所述电池杆组件的一端,所述至少两个弹性电极设置在所述电池杆组件上并朝向所述吸嘴组件延伸。
优选地,所述电连接组件还包括电极支架,所述电极支架设置有至少两个安装孔;
所述弹性电极包括弹簧和电极柱,每一所述弹簧安装在对应的所述安装孔内,所述电极柱的一端部卡持在对应的所述安装孔内并与所述弹簧弹性抵持。
优选地,所述导电部为设置在所述连接板上的金属化孔,所述金属化孔的形状与所述电极柱的形状相互适配。
优选地,所述电子烟还设置有用于防止所述吸嘴组件和所述电池杆组件在插接时错位的限位机构。
优选地,所述电池杆组件包括电池套管,所述弹性电极以及所述电极支架均设置在所述电池套管内; 所述限位机构包括:
设置在所述电池套管的内侧壁上的凸肋,所述凸肋沿着所述电池套管的轴向延伸;以及,
设置在所述连接部的外侧壁上的与所述凸肋适配的凹槽。
优选地,所述吸嘴组件和所述电池杆组件螺纹连接。
优选地,所述连接板固定设置在所述电池杆组件的朝向所述吸嘴组件的一端,所述弹性电极设置在所述吸嘴组件中并朝向所述电池杆组件延伸;所述至少两个导电部均呈圆环状并同轴间隔地设置于所述连接板上。
优选地,所述连接板固定设置在所述电池杆组件的朝向所述吸嘴组件的一端,所述弹性电极设置在所述吸嘴组件中并朝向所述电池杆组件延伸;
所述至少两个导电部中的一个导电部呈与所述电池杆组件共轴心线的圆形,所述至少两个导电部中的其他导电部呈圆环状并与该圆形的导电部同轴间隔地设置在所述连接板上。
优选地,所述电连接组件还包括电极支架,所述电极支架设置有至少两个安装孔,所述弹性电极包括弹簧和电极柱;
所述弹簧安装在所述安装孔内,所述电极柱的端部卡持在所述安装孔内并与所述弹簧弹性抵持。
本发明还提供一种电子烟, 包括电子烟本体、吸嘴组件以及用于储存烟油的储油器,所述电子烟本体包括用于雾化烟液的雾化组件以及用于给所述雾化组件供电的电池杆组件,所述吸嘴组件中设置有用于控制所述电子烟本体进行雾化工作的气流感应控制组件;
所述吸嘴组件可拆卸地设置于所述电池杆组件的一端,所述雾化组件可拆卸地连接于所述电池杆组件的另一端,所述储油器可拆卸地连接于所述雾化组件上远离所述吸嘴组件的一端;
所述吸嘴组件包括用于供用户吸食的吸食部以及用于与所述电池杆组件可拆卸地连接的连接部,所述连接部与所述吸食部一体成型;所述吸嘴组件设置有第一烟雾通道、与所述第一烟雾通道相互隔离的气流通道以及与所述气流通道连通的容纳空间;所述第一烟雾通道由所述连接部的靠近所述电池杆组件的端面贯穿至所述吸食部的远离所述连接部的一侧,所述容纳空间形成于所述连接部内,所述气流通道由所述吸食部的远离所述连接部的一侧贯穿至所述连接部并与所述容纳空间连通;
所述电子烟还设置有用于将所述气流感应控制组件和所述电池杆组件电连接的电连接组件;
所述电连接组件包括至少两个弹性电极和连接板,所述连接板上设置有分别用于与所述至少两个弹性电极弹性抵持并电连接的至少两个导电部。
本发明还提供了一种电子烟的烟雾量调节方法, 所述电子烟包括电子烟本体以及多个设置有气流感应控制组件的吸嘴组件,所述电子烟本体可选择性地与一个所述吸嘴组件可拆卸地连接,所述方法包括:更换与所述电子烟本体连接的所述 吸嘴组件以调节所述电子烟本体的电池杆组件的输出功率,进而调节电子烟本体的烟雾量。
优选地,所述电子烟本体包括用于雾化烟液的雾化组件以及用于给所述雾化组件供电的所述电池杆组件,所述吸嘴组件可拆卸地设置于所述电池杆组件的一端,所述雾化组件连接于所述电池杆组件的另一端。
实施本发明具有以下有益效果:由于本发明中将吸嘴组件可拆卸地设置在电子烟本体上并将气流感应控制组件设置在该吸嘴组件中, 在需要进行调节烟雾量或者气流感应控制组件损坏时,可以通过更换吸嘴组件来更换气流感应控制组件,每个吸嘴组件的气流感应控制组件控制电池杆组件的输出功率大小不同,从而实现调节电子烟的烟雾量,本发明可以降低用户的维修成本且操作简单,克服了现有技术中只能通过按键才能进行调节烟雾量的技术偏见,解决了现有技术中按键容易疲劳、电池套管的设置按键处容易折断及按键容易误操作的问题 。
附图说明
下面将结合附图及实施例对本发明作进一步说明,附图中:
图 1 是本发明第一实施例中电子烟的结构示意图;
图 2 是本发明第二实施例中电子烟的结构示意图;
图 3 是本发明第三实施例中电子烟的结构示意图;
图 4 是图 3 中 A 所指区域的局部放大结构示意图;
图 5 是图 3 所示施例中的电子烟的局部分解结构示意图;
图 6 是本发明第四实施例中的电子烟的结构示意图;
图 7 是图 6 中 B 所指的区域的局部放大结构示意图;
图 8 是图 6 所示实施例中的电子烟的局部分解结构示意图;
图 9 是本发明第三实施例中的电子烟的电路原理图。
具体实施方式
本发明通过将吸嘴组件 11 可拆卸地设置在电子烟本体上并将气流感应控制组件 15 设置在该吸嘴组件 11 中, 在需要进行调节烟雾量或者气流感应控制组件 15 损坏时,可以通过更换吸嘴组件 11 来更换气流感应控制组件 15 ,每个吸嘴组件 11 的气流感应控制组件 15 控制电池杆组件 14 的输出功率大小不同 ,从而实现调节电子烟的烟雾量。本发明可以降低用户的维修成本且操作简单,克服了现有技术中只能通过按键才能进行调节烟雾量的技术偏见,解决了现有技术中按键容易疲劳、电池套管 14a 的设置按键处容易折断及按键容易误操作的问题。下面结合附图对本发明作进一步详细说明。
图 1 示出了本发明第一实施例中的电子烟,该电子烟包括 电子烟本体、与电子烟本体进行可拆卸连接的吸嘴组件11以及一用于存储烟油的储油器12。电子烟本体包括用于雾化烟液的雾化组件13以及用于给雾化组件13供电的电池杆组件14。吸嘴组件11中设置有用于控制电子烟本体进行雾化工作的气流感应控制组件15。
具体地, 在本实施例中,吸嘴组件 11 可拆卸地连接于雾化组件 13 的一端,电池杆组件 14 可拆卸地连接于雾化组件 13 的另一端。储油器 12 设置于雾化组件 14 中,为雾化组件 14 提供烟油。 储油器12设置于雾化组件13中采用现有的常规技术手段即可实现,因此不作详细描述。
图2示出了本发明第二实施例中的电子烟的结构示意图,包括电子烟本体、吸嘴组件11以及用于容纳烟液储油器12。该电子烟本体包括用于雾化烟液的雾化组件13、用于给雾化组件13供电的电池杆组件14。吸嘴组件11中设置有用于控制电池杆组件14为雾化组件13供电的气流感应控制组件15。其中,储油器12设置于电子烟本体的一端,吸嘴组件11可拆卸地设置于电子烟本体上远离储油器12的一端。
在本实施例中,吸嘴组件11可拆卸地设置于电池杆组件14的一端,雾化组件13可拆卸地设置于电池杆组件14的另一端。储油器12可拆卸地设置在雾化组件13的远离吸嘴组件11的一端上。在本实施例中,由于吸嘴组件11远离储油器12以及雾化组件13,可以防止雾化组件13雾化烟液时产生的热量烫嘴。并且,由于储油器12和雾化组件13这种排布方式,雾化烟油产生的烟雾不会通过储油器12,从而使得烟雾不会在储油器12的作用下冷凝,进而不会阻塞电子烟内的烟雾流通的烟雾通道D1。
可以理解地,雾化组件13可以位于电池杆组件14和储油器12之间,且吸嘴组件11位于电池杆组件14的一端外侧、或吸嘴组件11位于电池杆组件14的中部、或吸嘴组件11位于电池杆组件14上远离雾化组件13的位置。
图3示出了本发明第三实施例中的电子烟的结构示意图。该电子烟包括电子烟本体、吸嘴组件11以及用于容纳烟液储油器12。该电子烟本体包括用于雾化烟液的雾化组件13、用于给雾化组件13供电的电池杆组件14。吸嘴组件11中设置有用于控制电池杆组件14为雾化组件13供电的气流感应控制组件15。吸嘴组件11可拆卸地设置于电池杆组件14的一端,雾化组件13可拆卸地设置于电池杆组件14的另一端。储油器12可拆卸地设置在雾化组件13的远离吸嘴组件11的一端上。
具体地,同时参照图4,该电子烟还包括一用于将吸嘴组件11中的气流感应控制组件15与电池杆组件14电连接的电连接组件。
参照图5所示,吸嘴组件11包括供用户吸食的吸食部11a以及用于与电池杆组件14可拆卸地连接的连接部11b。该吸食部11a可以为旋转体,也可以呈其他形状。该连接部11b大致呈圆柱状,与吸食部11a 为一体结构。该连接部11b用于与电池杆组件14的电池套管14a插接。
该吸嘴组件11设置有第一烟雾通道D11、气流通道D2以及一与气流通道D2连通的容纳空间D3,气流感应控制组件15设置在容纳空间D3中。当然,为了便于气流感应控制组件15的固定,在该容纳空间D3中还设置有用于安装气流感应控制组件15的安装座17。第一烟雾通道D11和气流通道D2分别沿吸嘴组件11轴向设置且分别连通至吸嘴组件11的外表面,第一烟雾通道D11和气流通道D2相互之间隔离设置。这样可以防止雾化组件13雾化产生的烟雾在气流通道D2中冷凝堵塞气流通道D2或者损坏气流感应控制组件15。
具体地,该容纳空间D3设置在连接部11b内,该气流通道D2从吸食部11a的远离连接部11b的一侧贯穿至连接部11b以与容纳空间D3连通。并且,该连接部11b或者其他部位设置有与该容纳空间D3连通的进气口(未示出)。第一烟雾通道D11从连接部11b的靠近电池杆组件14的端面贯穿至吸食部11a的远离该连接部11b的一侧。优选地,该第一烟雾通道D11和气流通道D2均平行于吸嘴组件11的轴向。
该电池杆组件14包括电池14b以及电池套管14a,电池14b收纳于该电池套管14a中。该电池套管14a中还形成有第二烟雾通道D12,该第二烟雾通道D12沿着电池套管14a的轴向设置。该第二烟雾通道D12一端与雾化组件13的内部连通,另一端与第一烟雾通道D11连通。该第一烟雾通道D11和第二烟雾通道D12共同构成该电子烟的烟雾通道D1。
该电连接组件包括至少两个弹性电极161以及一连接板162。
该连接板162固定设置在连接部11b的朝向电池套管的端面上,例如可采用螺钉螺接。该连接板162上设置有至少两个导电部162a,例如三个。该三个导电部162a分别与气流感应控制组件15的供电端、接地端以及信号端电连接。在本实施例中,该连接板162为PCB板,导电部162a为设置于该PCB板上的金属化孔。金属化孔的形状与电极柱1612的形状相互适配。
该至少两个弹性电极161设置在电池杆组件14上并朝向吸嘴组件11延伸。具体地,为了安装该至少两个弹性电极161,还在电池套管14a的内部卡接有一电极支架163。该电极支架163设置有至少两个安装孔1631。弹性电极161包括弹簧1611以及电极柱1612。弹簧1611安装在对应的安装孔1631内,电极柱1612的一端部卡持在对应的安装孔1631内并与弹簧1611弹性抵持。每一电极柱1612的另一端分别一一对应地弹性抵持在导电部162a上并电连接。这样使得电路连接通路更加稳定。
优选地,为了防止连接部11b与电池套管14a在插接的过程中错位,导致弹性电极161无法和导电部162a一一对应地弹性抵持并电连接。该电子烟还在连接部11b与电池套管14a之间设置了限位机构。限位机构包括设置在电池套管14a的内侧壁上的凸肋141以及设置在连接部11b的外侧壁上的与凸肋141适配的凹槽111。凸肋141沿着电池套管14a的轴向延伸。当然,可以理解地,该凸肋141的位置和凹槽111的位置可以交换。
如图 9 所示,本发明中电子烟的电路原理图,该气流传感控制组件 14 包括控制芯片、气流传感器 M1 、场效应管 Q1 。图中控制芯片的型号为 SN8P2711B ,下面详细说明上述电路的工作过程:吸烟时,气流传感器 M1 将吸烟信号传送至控制芯片或者通过按压按键 K1 将吸烟信号传送至控制芯片,控制芯片控制场效应管 Q1 导通,从而使电池 14b 为雾化组件 13 的电热丝 D 供电,以使电热丝 D 将烟油雾化,同时控制开关指示灯 LED1 及 LED2 亮。图中电容 C2 用于当 CH+ 及 CH- 之间发生短路时,给所述控制芯片供电,使所述控制芯片具有关闭所述场效应管 Q1 的缓冲时间,从而避免危险状况的发生。控制芯片通过控制场效应管 Q1 的脉冲波的占空比进而控制流过电热丝 D 的电流大小,从而控制雾化组件 13 产生的烟雾量。
图6示出了本发明第四实施例中的电子烟,其包括该电子烟包括电子烟本体、吸嘴组件11以及用于容纳烟液储油器12。该电子烟本体包括用于雾化烟液的雾化组件13、用于给雾化组件13供电的电池杆组件14。吸嘴组件11中设置有用于控制电池杆组件14为雾化组件13供电的气流感应控制组件15。吸嘴组件11可拆卸地设置于电池杆组件14的一端,雾化组件13可拆卸地设置于电池杆组件14的另一端。储油器12可拆卸地设置在雾化组件13的远离吸嘴组件11的一端上。
具体地,同时参照图7和图8,该电子烟还包括一用于将吸嘴组件11中的气流感应控制组件15与电池杆组件14电连接的电连接组件。
吸嘴组件11包括吸食部11a以及连接部11b。该吸食部11a可以为旋转体,也可以呈其他形状。该连接部11b大致呈圆柱筒状,与吸食部11a 为一体结构。该连接部11b的外侧壁面上设置有螺纹结构,用于与电池杆组件14的电池套管14a螺旋连接。
该吸嘴组件11设置有第一烟雾通道D11、气流通道D2以及一与气流通道D2连通的容纳空间D3,气流感应控制组件15设置在容纳空间D3中。当然,为了便于气流感应控制组件15的固定,在该容纳空间D3中还设置有用于安装气流感应控制组件15的安装座17。第一烟雾通道D11和气流通道D2分别沿吸嘴组件11轴向设置且分别连通至吸嘴组件11的外表面,第一烟雾通道D11和气流通道D2相互之间隔离设置。第一烟雾通道D11和气流通道D2相互之间隔离设置可以防止第一烟雾通道D11中的雾化烟液进入该气流通道D2中,从而防止气流感应控制组件15被烟液体损坏。
具体地,该容纳空间D3设置在连接部11b内,该气流通道D2从吸食部11a的远离连接部11b的一侧贯穿至连接部11b以与容纳空间D3连通。并且,该连接部11b或者其他部位设置有与该容纳空间D3连通的进气口(未示出)。第一烟雾通道D11从连接部11b的靠近电池杆组件14的端面贯穿至吸食部11a的远离该连接部11b的一侧。优选地,该第一烟雾通道D11和气流通道D2均平行于吸嘴组件的轴向。
该电池杆组件14包括电池14b以及电池套管14a,电池14b收纳于该电池套管14a中。该电池套管14a中还形成有第二烟雾通道D12,该第二烟雾通道D12沿着电池套管14a的轴向设置。该第二烟雾通道D12一端与雾化组件13的内部连通,另一端与第一烟雾通道D11连通。该第一烟雾通道D11、以及第二烟雾通道D12共同构成该电子烟的烟雾通道D1。
该电连接组件包括至少两个弹性电极161以及一连接板162。
该连接板162固定设置在电池套管14a的朝向连接部11b的一端,该连接板162上设置有至少两个导电部162a,例如三个。该三个导电部162a分别与气流感应控制组件15的供电端、接地端以及信号端电连接。在本实施例中,该连接板162为PCB板,该三个导电部162a均呈圆环状并同轴间隔地设置于连接板162上。或者该三个导电部162a中的一个呈与电池套管14a共轴线的圆形,另外两个导电部162a呈圆环状并与该圆形的导电部162a同轴间隔地设置。导电部162a采用这种设置具有以下有益效果:当吸嘴组件11在螺接到电池套管14a的过程中,每一弹性电极161始终弹性抵持在对应的导电部162a上并沿着对应的导电部162旋转,可以防止导电部162与其对应的弹性电极161错位,可以提供用户体验。
该连接板162上还设置有一通孔D13。通孔D13将 第二烟雾通道D12和第一烟雾通道D11连通。
该至少两个弹性电极161设置在吸嘴组件11中上并朝向电池杆组件14延伸。具体地,为了安装该至少两个弹性电极161,还在吸嘴组件11的连接部11b内部卡接有一电极支架163。该电极支架163设置有至少两个安装孔1631。弹性电极161包括弹簧1611以及电极柱1612。弹簧1611安装在对应的安装孔1631内,电极柱1612的一端部卡持在对应的安装孔1631内并与弹簧1611弹性抵持。每一电极柱1612的另一端分别一一对应地弹性抵持在导电部162a上并电连接。
可以理解地,连接板162和该至少两个弹性电极161的位置可以交换。
本发明还提供了一种电子烟的烟雾量调节方法, 该电子烟包括电子烟本体以及多个设置有气流感应控制组件 15 的吸嘴组件 11 ,电子烟本体可选择性地与一个吸嘴组件 11 可拆卸地连接,该方法包括:更换与电子烟本体连接的 吸嘴组件 11 以调节电子烟本体的电池杆组件 14 的输出功率,进而调节电子烟本体的烟雾量。
该电子烟本体包括用于雾化烟液的雾化组件 13 以及用于给雾化组件 13 供电的电池杆组件 14 ,吸嘴组件 11 可拆卸地设置于电池杆组件 14 的一端,雾化组件 13 连接于电池杆组件 14 的另一端。
具体地,请参阅图 8 及图 9 ,在制造具有气流感应控制组件 15 的 所述吸嘴组件 11 时,通过在所述气流感应控制组件 15 的控制芯片上写入不同的程序 ,不同的吸嘴组件的控制芯片通过控制场效应管 Q1 的脉冲波的占空比不同,进而控制流过电热丝 D 的电流大小不同,即 电子烟本体的电池杆组件 14 的输出功率不同,从而通过更换吸嘴组件 11 便实现调节电子烟本体的烟雾量。其中,为了使用户了解吸嘴组件 11 对应控制的烟雾量大小,优选为在吸嘴组件 11 的表面设置有文字标示,以供用户方便进行选择。
本发明可以降低用户的维修成本且操作简单,克服了现有技术中只能通过按键才能进行调节烟雾量的技术偏见,解决了现有技术中按键容易疲劳、电池套管 14a 的设置按键处容易折断及按键容易误操作的问题。
应当理解的是,对本领域普通技术人员来说,上面结合附图对本发明的实施例进行了描述,但是本发明并不局限于上述的具体实施方式,上述的具体实施方式仅仅是示意性的,而不是限制性的,本领域的普通技术人员在本发明的启示下,在不脱离本发明宗旨和权利要求所保护的范围情况下,还可做出很多形式,这些均属于本发明的保护之内。

Claims (20)

  1. 一种电子烟,包括电子烟本体及与所述电子烟本体进行可拆卸连接的吸嘴组件( 11 ),所述电子烟本体包括用于雾化烟液的雾化组件( 13 )以及用于给所述雾化组件( 13 )供电的电池杆组件( 14 ),其特征在于,所述吸嘴组件( 11 )中设置有用于控制所述电子烟本体进行雾化工作的气流感应控制组件( 15 )。
  2. 根据权利要求 1 所述的电子烟,其特征在于,所述吸嘴组件( 11 )可拆卸地连接于所述雾化组件( 13 )的一端,所述电池杆组件( 14 )可拆卸地连接于所述雾化组件( 13 )的另一端。
  3. 根据权利要求 1 所述的电子烟,其特征在于,所述电子烟还包括储油器( 12 ),所述吸嘴组件( 11 )可拆卸地设置于所述电池杆组件( 14 )的一端,所述雾化组件( 13 )连接于所述电池杆组件( 14 )的另一端,所述储油器( 12 )连接于所述雾化组件( 13 )上远离所述吸嘴组件( 11 )的一端。
  4. 根据权利要求 3 所述的电子烟,其特征在于,所述吸嘴组件( 11 )内设置有第一烟雾通道( D11 )、气流通道( D2 )以及一与所述气流通道( D2 )连通的容纳空间( D3 ),所述气流感应控制组件( 15 )设置在所述容纳空间( D3 )中。
  5. 根据权利要求 4 所述的电子烟,其特征在于,所述第一烟雾通道( D11 )和所述气流通道( D2 )分别沿所述吸嘴组件( 11 )轴向设置且分别连通至所述吸嘴组件( 11 )的外表面, 所述第一烟雾通道( D11 )和所述气流通道( D2 )相互之间隔离设置。
  6. 根据权利要求 5 所述的电子烟,其特征在于,所述吸嘴组件( 11 )包括用于供用户吸食的吸食部( 11a )以及用于与所述电池杆组件( 14 )可拆卸地连接的连接部( 11b );
    所述第一烟雾通道( D11 )由所述连接部( 11b )的靠近所述电池杆组件( 14 )的端面贯穿至所述吸食部 (11a) 的远离所述连接部 (11b) 的一侧 ;
    所述气流通道( D2 )由所述连接部 (11b) 的远离所述吸食部 (11a) 的一侧贯穿至所述容纳空间 (D3) 。
  7. 根据权利要求 6 所述的电子烟,其特征在于,还设置有用于将所述气流感应控制组件( 15 )和所述电池杆组件( 14 )电连接的电连接组件;
    所述电连接组件包括至少两个弹性电极( 161 )和连接板( 162 ),所述连接板( 162 )上设置有分别用于与所述至少两个弹性电极( 161 )弹性抵持并电连接的至少两个导电部( 162a )。
  8. 根据权利要求 7 所述的电子烟,其特征在于,所述连接部( 11b )与所述电池杆组件( 14 )插接。
  9. 根据权利要求 8 所述的电子烟,其特征在于,所述连接板( 162 )固定设置在所述吸嘴组件( 11 )的朝向所述电池杆组件( 14 )的一端,所述至少两个弹性电极( 161 )设置在所述电池杆组件( 14 )上并朝向所述吸嘴组件( 11 )延伸。
  10. 根据权利要求 9 所述的电子烟,其特征在于,所述电连接组件还包括电极支架( 163 ),所述电极支架( 163 )设置有至少两个安装孔( 1631 );
    所述弹性电极( 161 )包括弹簧( 1611 )和电极柱( 1612 ),每一所述弹簧( 1611 )安装在对应的所述安装孔( 1631 )内,所述电极柱( 1612 )的一端部卡持在对应的所述安装孔( 1631 )内并与所述弹簧( 1611 )弹性抵持。
  11. 根据权利要求 10 所述的电子烟,其特征在于,所述导电部( 162a )为设置在所述连接板( 162 )上的金属化孔,所述金属化孔的形状与所述电极柱( 1612 )的形状相互适配。
  12. 根据权利要求 11 所述的电子烟,其特征在于,所述电子烟还设置有用于防止所述吸嘴组件( 11 )和所述电池杆组件( 14 )在插接时错位的限位机构。
  13. 根据权利要求 11 所述的电子烟,其特征在于,所述电池杆组件( 14 )包括电池套管( 14a ),所述弹性电极( 161 )以及所述电极支架( 163 )均设置在所述电池套管( 14a )内;
    所述限位机构包括:
    设置在所述电池套管( 14a )的内侧壁上的凸肋( 141 ),所述凸肋( 141 )沿着所述电池套管( 14a )的轴向延伸;以及,
    设置在所述连接部( 11b )的外侧壁上的与所述凸肋( 141 )适配的凹槽( 111 )。
  14. 根据权利要求 5 所述的电子烟,其特征在于,所述吸嘴组件( 11 )和所述电池杆组件( 14 )螺纹连接。
  15. 根据权利要求 14 所述的电子烟,其特征在于,所述连接板( 162 )固定设置在所述电池杆组件( 14 )的朝向所述吸嘴组件( 11 )的一端,所述弹性电极( 161 )设置在所述吸嘴组件( 11 )中并朝向所述电池杆组件( 14 )延伸;所述至少两个导电部( 162a )均呈圆环状并同轴间隔地设置于所述连接板( 162 )上。
  16. 根据权利要求 15 所述的电子烟,其特征在于,所述连接板( 162 )固定设置在所述电池杆组件( 14 )的朝向所述吸嘴组件( 11 )的一端,所述弹性电极( 161 )设置在所述吸嘴组件( 11 )中并朝向所述电池杆组件( 14 )延伸;
    所述至少两个导电部( 162a )中的一个导电部( 162a )呈与所述电池杆组件( 14 )共轴心线的圆形,所述至少两个导电部( 162a )中的其他导电部( 162a )呈圆环状并与该圆形的导电部( 162a )同轴间隔地设置在所述连接板( 162 )上。
  17. 根据权利要求 16 所述的电子烟,其特征在于,所述电连接组件还包括电极支架( 163 ),所述电极支架( 163 )设置有至少两个安装孔( 1631 ),所述弹性电极( 161 )包括弹簧( 1611 )和电极柱( 1612 );
    所述弹簧( 1611 )安装在所述安装孔( 1631 )内,所述电极柱( 1612 )的端部卡持在所述安装孔( 1631 )内并与所述弹簧( 1611 )弹性抵持。
  18. 一种电子烟, 包括电子烟本体、吸嘴组件( 11 )以及用于储存烟油的储油器( 12 ),所述电子烟本体包括用于雾化烟液的雾化组件( 13 )以及用于给所述雾化组件( 13 )供电的电池杆组件( 14 ),其特征在于,所述吸嘴组件( 11 )中设置有用于控制所述电子烟本体进行雾化工作的气流感应控制组件( 15 );
    所述吸嘴组件( 11 )可拆卸地设置于所述电池杆组件( 14 )的一端,所述雾化组件( 13 )可拆卸地连接于所述电池杆组件( 14 )的另一端,所述储油器( 12 )可拆卸地连接于所述雾化组件( 13 )上远离所述吸嘴组件( 11 )的一端;
    所述吸嘴组件( 11 )包括用于供用户吸食的吸食部( 11a )以及用于与所述电池杆组件( 14 )可拆卸地连接的连接部( 11b ),所述连接部( 11b )与所述吸食部( 11a )一体成型;所述吸嘴组件( 11 )设置有第一烟雾通道( D11 )、与所述第一烟雾通道( D11 )相互隔离的气流通道( D2 )以及与所述气流通道( D2 )连通的容纳空间 (D3) ;所述第一烟雾通道( D11 )由所述连接部 (11b) 的靠近所述电池杆组件( 14 )的端面贯穿至所述吸食部 (11a) 的远离所述连接部 (11b) 的一侧,所述容纳空间 (D3) 形成于所述连接部 (11b) 内,所述气流通道( D2 )由所述吸食部 (11a) 的远离所述连接部 (11b) 的一侧贯穿至所述连接部 (11b) 并与所述容纳空间( D3 )连通;
    所述电子烟还设置有用于将所述气流感应控制组件( 15 )和所述电池杆组件( 14 )电连接的电连接组件;
    所述电连接组件包括至少两个弹性电极( 161 )和连接板( 162 ),所述连接板( 162 )上设置有分别用于与所述至少两个弹性电极( 161 )弹性抵持并电连接的至少两个导电部( 162a )。
  19. 一种电子烟的烟雾量调节方法,其特征在于,所述电子烟包括电子烟本体以及多个设置有气流感应控制组件( 15 )的吸嘴组件( 11 ),所述电子烟本体可选择性地与一个所述吸嘴组件( 11 )可拆卸地连接,所述方法包括:更换与所述电子烟本体连接的所述 吸嘴组件( 11 )以调节所述电子烟本体的电池杆组件( 14 )的输出功率,进而调节所述电子烟本体的烟雾量。
  20. 根据权利要求 19 所述的电子烟的烟雾量调节方法,其特征在于, 所述电子烟本体包括用于雾化烟液的雾化组件( 13 )以及用于给所述雾化组件 ( 13 )供电的所述电池杆组件( 14 ),所述吸嘴组件( 11 )可拆卸地设置于所述电池杆组件( 14 )的一端,所述雾化组件( 13 )连接于所述电池杆组件( 14 )的另一端。
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CN113331482A (zh) * 2021-06-29 2021-09-03 立讯精密工业股份有限公司 雾化装置的制作方法及雾化装置
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CN113662259B (zh) * 2021-08-24 2023-10-24 深圳市真味生物科技有限公司 一种具有反馈功能的电子烟

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