WO2019136594A1 - 一种烤烟器、烤烟型电子烟以及烤烟烟支拔出方法 - Google Patents

一种烤烟器、烤烟型电子烟以及烤烟烟支拔出方法 Download PDF

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Publication number
WO2019136594A1
WO2019136594A1 PCT/CN2018/071922 CN2018071922W WO2019136594A1 WO 2019136594 A1 WO2019136594 A1 WO 2019136594A1 CN 2018071922 W CN2018071922 W CN 2018071922W WO 2019136594 A1 WO2019136594 A1 WO 2019136594A1
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WO
WIPO (PCT)
Prior art keywords
assembly
flue
cured tobacco
target position
branch
Prior art date
Application number
PCT/CN2018/071922
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English (en)
French (fr)
Inventor
刘秋明
韩咚林
费翔
向智勇
喻森
邓永
包毅
Original Assignee
惠州市吉瑞科技有限公司深圳分公司
四川三联新材料有限公司
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Application filed by 惠州市吉瑞科技有限公司深圳分公司, 四川三联新材料有限公司 filed Critical 惠州市吉瑞科技有限公司深圳分公司
Priority to PCT/CN2018/071922 priority Critical patent/WO2019136594A1/zh
Publication of WO2019136594A1 publication Critical patent/WO2019136594A1/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
    • A24F40/20Devices using solid inhalable precursors

Definitions

  • the present application relates to the field of tobacco products, and more particularly to a method for extracting a flue-cured tobacco, a flue-cured electronic cigarette, and a flue-cured tobacco.
  • the flue-cured electronic cigarette can be understood as an electronic cigarette product that heats the tobacco component in the flue-cured tobacco by the flue-curing device to form a smoke for the user to smoke.
  • the flue-cured tobacco is usually inserted into the heating part of the flue-curing device to complete the installation of the flue-cured tobacco. After the installation, the flue-curing device can perform the heating and heating work of the heating unit component, and the flue-cured tobacco The tobacco material is heated to form a smoke for the user to smoke.
  • the application provides a method for extracting a flue-cured tobacco, a flue-cured electronic cigarette and a flue-cured tobacco, which is convenient for the user to pull out the flue-cured tobacco.
  • the present invention provides a flue-cured tobacco device provided with a heating portion assembly, a slider assembly, an elastic telescopic assembly, and a base assembly, wherein the heating portion assembly and the slider assembly are disposed in the cigarette receiving cavity of the toaster
  • the heating unit assembly is disposed on the base assembly;
  • the heating part assembly penetrates the slider assembly, and the first end of the elastic expansion and contraction assembly abuts against the end surface of the cigarette assembly facing the cigarette receiving cavity, and the second end of the elastic expansion and contraction assembly abuts the slider assembly, so that the flue-cured tobacco passes through the cigarette
  • the flue-cured tobacco branch passes through the slider assembly under the abutment of the elastic telescopic assembly, and is guided along the heating component assembly at the first target position.
  • Sliding between the second target position is a preset heating position of the flue-cured tobacco branch, and the second target position is a limit position for limiting the sliding distance of the slider assembly.
  • the flue-cured tobacco branch when the flue-cured tobacco branch is inserted into the heating part assembly through the cavity and the flue-cured tobacco branch exceeds the first target position, the flue-cured tobacco branch is compressed by the slider assembly against the elastic telescopic assembly to the base assembly, and the elastic telescopic assembly passes through the sliding The block assembly applies an elastic force to the flue-cured tobacco branch to prompt the user that the flue-cured tobacco branch exceeds the first target position.
  • the elastic telescopic assembly is further configured to apply an elastic force to the flue-cured tobacco through the slider assembly when the user withdraws, so that the flue-cured tobacco branch slides from the second target position to the first target position.
  • the base assembly includes a fixed seat assembly, and the heating part assembly is disposed on the fixed seat assembly.
  • a preset gap is disposed between the slider assembly and the fixed seat assembly, and the two ends of the preset gap are respectively
  • the first target position and the second target position correspond to each other, and the length of the preset gap is any value between 0.5 mm and 8 mm.
  • the slider assembly includes a side wall
  • the base assembly includes an outer electrode assembly
  • the outer electrode assembly is disposed at a lower end of the fixed seat assembly, along the axial direction of the tobacco smog, the side wall of the slider assembly and the outer electrode assembly are pre-formed Set the gap.
  • the elastic telescopic assembly includes a spring.
  • the present invention provides a flue-cured electronic cigarette
  • the flue-cured electronic cigarette includes a flue-cured tobacco
  • the flue-cured tobacco provided by the first aspect, wherein the flue-cured tobacco is installed in the flue-cured tobacco, and the heating unit is electrically heated At the time, the heating unit assembly heats the flue-cured tobacco, and the flue-cured tobacco is heated to form a smoke and is output.
  • the present invention provides a method for extracting a flue-cured tobacco, the method being applied to a flue-cured tobacco device, wherein the flue-cured tobacco device is provided with a heating portion assembly, a slider assembly, an elastic telescopic assembly and a base assembly, a heating portion assembly and a slider assembly
  • the heating unit assembly is disposed in the base assembly, and the heating unit assembly is disposed in the base assembly.
  • the heating unit assembly extends through the slider assembly, and the first end of the elastic telescopic assembly and the electrode assembly abut against the end surface of the cigarette receiving cavity.
  • the second end of the elastic telescopic assembly is in contact with the slider assembly, and the method includes:
  • the elastic telescopic assembly receives a first force, and the first force is a force for the flue-cured tobacco rod to resist the compression of the elastic telescopic assembly to the base assembly by the slider assembly when the user squeezes the flue-cured tobacco branch at the first target position.
  • the first target position is a preset heating position of the flue-cured tobacco branch;
  • the tobacco rod is guided along the heating unit assembly to slide from the first target position to the second target position, so that the tobacco material adhered to the heating unit assembly slides relative to the heating unit assembly, and the second target position is to limit the sliding distance of the slider assembly. Limit position
  • the flue-cured tobacco cigarette receives a second force, and the second force is a pulling force of the flue-cured tobacco branch to the first target position along the second target position when the user pulls out the flue-cured tobacco branch at the second target position;
  • the flue-cured tobacco branch is conveniently pulled out of the cigarette receiving cavity by the slider assembly under the abutment and tension of the elastic telescopic assembly.
  • the method further includes:
  • the elastic telescopic assembly receives a third force, and when the cigarette is inserted into the cavity of the cigarette receiving cavity and the flue-cured tobacco branch exceeds the first target position, the heating component is inserted into the flue-cured tobacco branch, and the flue-cured tobacco branch The force of compressing the elastic expansion and contraction assembly against the base assembly by the slider assembly;
  • the elastic telescopic assembly applies an elastic force to the flue-cured tobacco through the slider assembly to prompt the user that the flue-cured tobacco branch exceeds the first target position.
  • the method further includes:
  • the elastic telescopic assembly applies an elastic force to the flue-cured tobacco through the slider assembly, so that the flue-cured tobacco branch slides to the first target position.
  • the present application has the following advantages:
  • the flue-cured tobacco When the flue-cured tobacco is pulled out, the flue-cured tobacco can be compressed by the slider assembly against the elastic telescopic assembly to the base assembly under the squeezing action of the user, and the flue-cured tobacco branch and the heating portion assembly slide relative to each other, and the flue-cured tobacco is heated. After that, the tobacco material and the heating part assembly adhered to the heating part assembly are separated from the heating part assembly by the sliding friction, and are no longer stuck to the heating part assembly. At this time, the user can effortlessly and conveniently remove the flue-cured tobacco out of the cigarette.
  • the cavity provides a high user experience.
  • FIG. 1 is a schematic partial structural view of a flue-curing device provided by the present application.
  • FIG. 2 is a partial structural schematic view of a heating unit assembly provided by the present application.
  • FIG. 3 is a schematic structural view of a flue-curing device provided by the present application.
  • FIG. 4 is a schematic structural view of still another tobacco hood provided by the present application.
  • FIG. 5 is a schematic flow chart of a method for extracting a flue-cured tobacco branch provided by the present application
  • FIG. 6 is still another schematic flow chart of the method for extracting flue-cured tobacco from the present application.
  • the application provides a method for extracting a flue-cured tobacco, a flue-cured electronic cigarette and a flue-cured tobacco, which is convenient for the user to pull out the flue-cured tobacco.
  • the tobacco hood provided by the present application is provided with a heating part assembly 101 , a slider assembly 102 , an elastic expansion and contraction assembly 103 , and a base assembly 104 , and a heating unit assembly 101 .
  • the slider assembly 102 is disposed in the cigarette receiving cavity 105 of the toaster, and the heating assembly 103 is disposed on the base assembly 104.
  • the slider assembly 102 is provided with a through hole corresponding to the heating portion assembly 101, so that the heating portion assembly 101 penetrates the slider assembly 102 from the through hole for subsequent insertion into the flue-cured tobacco branch, and the elastic telescopic assembly 103 is disposed at the base.
  • the first end of the elastic telescopic assembly 103 and the base assembly 104 are opposed to the end surface of the cigarette receiving cavity 105, and the second end of the elastic telescopic assembly 103 is opposite to the slider assembly 102. hold.
  • the elastic telescopic assembly 103 and the slider assembly 102 are relatively balanced, and the position of the slider assembly 102 can be regarded as the first target position S1, the first target position.
  • S1 is the standard insertion position of the flue-cured tobacco, that is, the preset heating position. It should be understood that, in practical applications, if the thickness factor of the slider assembly 102 is neglected, if the flue-cured tobacco branch is at the first target position S1, it can be understood that the lower end of the flue-cured tobacco branch is inserted to reach the first A target position S1.
  • the base assembly 104 includes a mount assembly 1041.
  • the heater assembly 101 is disposed between the mount assembly 1041, along the axial direction of the flue cooker, between the slider assembly 102 and the base assembly 104, that is, between the mount assembly 1041.
  • the preset gap H is achieved by the elastic force of the elastic telescopic assembly 103 itself against the slider assembly 102, and the preset gap H corresponds to the preset sliding distance of the slider assembly 102.
  • the preset gap H The two ends correspond to the first target position S1 and the second target position S2, respectively, the first target position S1 is the upper position of the preset gap H, and the second target position S2 is the preset gap.
  • the lower side position of the second target position S2 is a limit position for limiting the sliding distance of the slider assembly for the slider assembly 102 to slide between the first target position S1 and the second target position S2.
  • the flue-cured tobacco branch When the flue-cured tobacco is inserted into the flue-cured tobacco branch, the flue-cured tobacco branch is inserted into the heating unit assembly 101 through the mouth 1051 and the flue-cured tobacco branch exceeds the first target position S1. At this time, due to the elastic force caused by the elastic expansion and contraction assembly 103, the flue-cured tobacco The cigarette is slid along the guide of the heating unit assembly 101 by the slider assembly 102 under the abutment of the elastic telescopic assembly 103.
  • the structure of the heating unit assembly 101 can be referred to the partial structural diagram of the heating unit assembly 101 shown in Fig. 2, the heating member 101 is a sheet-like structure, and the end portion of the heating member 101 forms an acute angle.
  • the sheet-like structure can make the heating member 101 insert into the flue-cured tobacco branch, and can greatly reduce the resistance it receives, so that it can be inserted into the flue-cured tobacco branch more labor-savingly; on the other hand, the design of the acute angle can also make When the heating member 101 is inserted into the flue-cured tobacco branch, the inclined contact surface can greatly reduce the resistance of the heating member 101, and can also exert a more concentrated and greater force on the flue-cured tobacco branch, thereby further Labor-saving insertion into the flue-cured tobacco.
  • the heating unit assembly 101 is provided with a heating circuit, which can generate heat when energized, so as to realize heating of the inserted flue-cured tobacco branch, and the tobacco material in the flue-cured tobacco branch can form smoke after being heated, for the user to smoke.
  • the flue-cured tobacco branch may be squeezed first, and the flue-cured tobacco branch is compressed by the slider assembly 102 against the elastic telescopic assembly 103 to the base assembly 104.
  • the flue-cured tobacco branch slides along the heating unit assembly 101 from the first target position S1 to the second target position S2, so that the tobacco material adhered to the heating unit assembly 101 after being heated in the flue-cured tobacco branch and heated
  • the component 101 is relatively slid, that is, detached from the heating unit assembly 101, and is no longer adhered to the heating unit assembly 101; at this time, the user can apply a pulling force to the first target position S1 along the second target position S2 to the flue-cured tobacco, the flue-cured tobacco
  • the cigarette holder can be easily pulled out of the cigarette receiving cavity 105 by the slider assembly 102 under the abutment of the elastic telescopic assembly 103 and the tension.
  • the flue-cured tobacco branch can be compressed by the slider assembly 102 against the elastic telescopic assembly 103 against the base assembly 104 under the user's squeezing action, the flue-cured tobacco branch is The heating unit assembly 101 is relatively slid, and the tobacco material adhered to the heating unit assembly 101 and the heating unit assembly 101 are separated from the heating unit assembly 101 by the sliding friction, and are no longer adhered to the heating unit assembly 101.
  • the flue-cured tobacco can be pulled out of the cigarette accommodating cavity 105 with labor and convenience, thereby bringing a high user experience.
  • the tobacco material adhered to the heating unit assembly 101 is detached from the heating unit assembly 101 due to the relative sliding of the flue-cured tobacco and the heating unit assembly 101, due to the slider assembly. 102 resists the flue-cured tobacco cigarette and fails to fall in the accommodating cavity 105; then the flue-cured tobacco branch slides upward again, and the cigarette accommodating cavity 105 is pulled out.
  • the sliding friction is not generated again with the heating unit assembly 101, and the tobacco material is taken out and falls off in the cigarette accommodating cavity 105, which means that the process of pulling out the tobacco cigarette is not caused.
  • Tobacco material contamination of the flue-cured tobacco device the user does not need to clean the residual tobacco material, further bringing a higher user experience.
  • the flue-cured tobacco passes through The slider assembly 102 is pressed against the elastic telescopic assembly 103 to compress the base assembly 104.
  • the elastic telescopic assembly 103 applies an elastic force to the flue-cured tobacco through the slider assembly 102.
  • the user can clearly perceive that the inserted flue-cured tobacco is subjected to resistance.
  • the user can evacuate the squeezing of the flue-cured tobacco branch and stop the insertion of the flue-cured tobacco branch.
  • the flue-cured tobacco branch since the flue-cured tobacco branch exceeds the first target position S1, it can continue to slide to the second target position S2 for a certain distance. Therefore, the flue-cured tobacco branch does not resist the block group 102. The excessive squeezing causes damage to the flue-cured tobacco branch, which is one of the effects that the existing flue-cured tobacco structure cannot achieve.
  • the elastic telescopic assembly 103 is further configured to apply an elastic force to the flue-cured tobacco through the slider assembly 102 when the user withdraws the squeeze of the flue-cured tobacco, so that the flue-cured tobacco slips from the second target position S2 to The first target position S1 achieves the effect of automatically positioning the flue-cured tobacco branch. Therefore, in the sliding structure of the flue-cured tobacco device, the heating effect of the flue-cured tobacco branch is controllable, and the different heating effects are not caused by the difference in the position of the flue-cured tobacco branch. The heating effect is more stable, so that a more delicate and fragrant smoke is formed for the user to smoke.
  • the length of the preset gap H may specifically be any value between 0.5 mm and 8 mm.
  • the slider assembly 102 includes side walls, and the design of the side walls of the slider assembly 102 not only facilitates assembly of the slider assembly 102, but also elastic expansion and contraction assembly.
  • the base assembly 104 Fixed in the side wall, so that the elastic expansion and contraction assembly 103 does not loosen; on the other hand, the base assembly 104 further includes an outer electrode assembly 1042, and the outer electrode assembly 1042 is disposed at the lower end of the above-mentioned fixed seat assembly 1041 along the axis of the tobacco grill A pre-set gap H is also provided between the side wall of the slider assembly 102 and the outer electrode assembly 1042.
  • a pre-set gap H is also provided at the side wall of the slider assembly 102 to further limit the sliding distance of the slider assembly 102 and prevent the slider assembly 102 from over-squeezing the mount assembly 1041.
  • the tobacco hood includes not only the outer electrode assembly 1042 but also the inner electrode assembly 1043 and the insulating ring assembly 1044.
  • the insulating ring 1044 is used to isolate the outer electrode assembly 1042 and the inner electrode assembly 1043 to avoid short circuit.
  • the outer electrode 1042 The component and the inner electrode assembly 1043 are respectively connected to the positive and negative poles of the flue-cured battery to form a complete closed loop through the conductive circuit in the fixing base assembly 1041 and the heating circuit on the heating unit assembly 101 to supply power to the heating circuit for heating. .
  • the elastic expansion and contraction assembly 103 is a spring.
  • the spring can be wound by a spring or a plurality of sub-springs.
  • the spring can be directly sleeved around the above-mentioned fixing base assembly 1041 and then the sliding assembly 102 can be installed during the installation process, thereby completing the spring.
  • the installation can be conveniently installed between the fixed seat assembly 1041 and the sliding assembly 102, which is more convenient for assembly.
  • a plurality of sets of springs may be provided, and a plurality of sets of springs are disposed around the mount assembly 1041.
  • the number of springs can be adjusted to achieve the adjustment of the elastic force of the elastic telescopic assembly 104. For example, if the number of springs is small, the flue-cured tobacco can more effectively squeeze the slider assembly 102 to make it The base assembly 104 slides, or when the flue-cured tobacco is pulled out, the elastic telescopic assembly 104 can achieve a greater elastic force to abut the flue-cured tobacco through the slider assembly 102, so that the flue-cured tobacco is more labor-savingly pulled out.
  • FIG. 1 only shows a partial structure of the flue-curing device.
  • the flue-cured tobacco device further includes a battery rod assembly, and the structure of the flue-cured tobacco device shown in FIG. 3 and FIG. 4 is different at different angles.
  • the battery rod assembly 105 can also include a battery assembly 1051 and a control circuit 1052.
  • the battery assembly 1051 generally includes a secondary battery, that is, a rechargeable battery.
  • the secondary battery may specifically be a nickel-hydrogen battery, a nickel-cadmium battery, a lead-acid battery (lead battery), or a lithium ion battery (including a lithium battery and a lithium ion polymer battery).
  • the battery module 1051 may also include a primary battery, which is not limited herein.
  • the battery pack 1051 further includes a power transmission circuit (not shown) so that the battery pack 1051 supplies a working power source to the power components such as the control circuit 1053, the heater unit 101, and the like through the power transmission circuit.
  • the control circuit 1052 may include components such as a circuit board, an integrated circuit, or a chip in addition to the control lines between the battery assembly 1051 and the heating unit assembly 101, etc., in order to control the operation of the components of the toaster.
  • the circuit board may be a printed circuit board (PCB) which is simple in process, excellent in cost performance, and relatively stable, or may have high wiring density, light weight, thin thickness, and good bending property.
  • PCB printed circuit board
  • FPC flexible printed circuit
  • a soft and hard bonded board that combines the structure and characteristics of the PCB and the FPC, and is not limited in practical applications.
  • the control circuit 1052 can be disposed at the lower end of the battery rod assembly 105, as shown in FIG. 3 and FIG. 4, and can be disposed at the upper end of the battery rod assembly 105, which is not limited herein.
  • the end of the battery rod assembly 105 may also be provided with a corresponding outer electrode assembly 1053, an inner electrode assembly 1054, and an insulating ring assembly 1055. In order to cooperate, the details are not described here.
  • the outer electrode assembly 1053 and the inner electrode assembly 1054 of the battery rod assembly 105 are electrically formed with the outer electrode assembly 1042 and the inner electrode assembly 1043 of the base assembly 104, respectively.
  • the connection relationship is such that the battery pack 1051 supplies operating power to the heating unit assembly 101.
  • the battery rod assembly 105 may further include other components.
  • a protective gasket may be disposed at either or both ends of the battery assembly 1051.
  • the protective gasket may be an ethylene-vinyl acetate copolymer (EVA).
  • EVA ethylene-vinyl acetate copolymer
  • a material such as silica gel to protect the battery module 1051 from isolation, buffering, insulation, etc., to ensure the operational stability of the battery assembly 1051.
  • the battery rod assembly 105 is provided with a receiving cavity for assembling and fixing the internal battery assembly 1051 and the control circuit 1052.
  • one end of the receiving cavity is closed by the mounting of the base assembly 104, and the other end can be set.
  • a cover 1056 is closed to ensure assembly and fixation of the various components within the battery rod assembly 105.
  • the cover 1056 may further be provided with a charging interface, and a charging component is further disposed between the charging interface and the battery assembly 1051.
  • a charging component is further disposed between the charging interface and the battery assembly 1051.
  • the connector can be fixedly mounted with the charging interface, and the charging connector can supply power to the battery module 1051 through the charging component to perform charging operation of the battery component 1051.
  • the battery rod assembly 105 can also be provided with a working indicator light, for example, disposed on the cover 1056 or at any outer casing of the battery rod assembly 105.
  • the heating unit assembly 101 Under the control of the control circuit 1052, the heating unit assembly 101 can be electrically heated.
  • the relevant lighting effects can be output to the user to indicate different working states of the tobacco hood. For example, the green light effect indicates the standby state, the red light effect indicates the positive heating state, the yellow light effect indicates the charging state, and the like, and the specific lighting effect depends on the actual situation, and is not limited herein.
  • the battery rod assembly 105 can also be provided with a power button 1057.
  • the power button 1057 is connected to the control circuit 1052.
  • the user can input a corresponding control signal to the control circuit 1052 through the pressing operation of the power button 1057, so as to implement manual control of the tobacco oven by the user.
  • the electricity is heated to work.
  • the components of the flue-cured tobacco can be made of ceramics, plastics, stainless steel or the like, which is not limited herein.
  • the above is an introduction to the flue-curing device provided in the embodiment of the present application.
  • the embodiment of the present application further provides a flue-cured electronic cigarette.
  • the flue-cured electronic cigarette not only includes the flue-cured tobacco device described above, but also includes a flue-cured tobacco cigarette corresponding to the flue-cured tobacco device.
  • the heating portion assembly 101 is electrically heated. In operation, the heating unit assembly 101 heats the flue-cured tobacco, and the flue-cured tobacco is heated to form a smoke and is output for the user to smoke.
  • the present application also provides a method for extracting a flue-cured tobacco, and the method for extracting the flue-cured tobacco is as shown in the flow chart of FIG. 5, which specifically includes:
  • Step 501 The elastic telescopic assembly receives the first force
  • the first force is a force for the flue-cured tobacco rod to resist the compression of the elastic telescopic assembly to the base assembly by the slider assembly when the user squeezes the flue-cured tobacco branch at the first target position, and the first target position is the flue-cured tobacco The preset heating position of the branch.
  • Step 502 the guiding of the flue-cured tobacco branch along the heating portion assembly slides from the first target position to the second target position, so that the tobacco material adhered to the heating portion assembly slides relative to the heating portion assembly;
  • the second target position is a limit position for limiting the sliding distance of the slider assembly.
  • Step 503 the flue-cured tobacco branch receives the second force
  • the second force is a pulling force of the flue-cured tobacco branch to the first target position along the second target position when the user pulls out the flue-cured tobacco branch at the second target position.
  • Step 504 the flue-cured tobacco branch is conveniently pulled out of the cigarette receiving cavity by the slider assembly under the abutment and tension of the elastic telescopic assembly.
  • the flue-cured tobacco branch when the flue-cured tobacco branch is pulled out, the flue-cured tobacco branch can be compressed by the slider assembly against the elastic telescopic assembly to the base assembly under the user's pressing action, and the flue-cured tobacco branch and the heating portion assembly Relatively sliding, after the tobacco smoke is heated, the tobacco material and the heating part component stuck to the heating part assembly are separated from the heating part assembly by the sliding friction, and are no longer stuck on the heating part assembly, and the user can save the flue-cured tobacco conveniently and conveniently.
  • the cigarettes pull out the cigarette accommodating cavity, resulting in a high user experience.
  • the method for extracting the flue-cured tobacco can further include:
  • Step 604 the elastic expansion and contraction assembly receives the first force
  • the first force is a force for the flue-cured tobacco rod to resist the compression of the elastic telescopic assembly to the base assembly by the slider assembly when the user squeezes the flue-cured tobacco branch at the first target position, and the first target position is the flue-cured tobacco The preset heating position of the branch.
  • Step 605 the flue-cured tobacco branch slides along the guiding of the heating part assembly from the first target position to the second target position, so that the tobacco material adhered to the heating part assembly slides relative to the heating part assembly;
  • the second target position is a limit position for limiting the sliding distance of the slider assembly.
  • Step 606 the flue-cured tobacco branch receives the second force
  • the second force is a pulling force of the flue-cured tobacco branch to the first target position along the second target position when the user pulls out the flue-cured tobacco branch at the second target position.
  • Step 607 the flue-cured tobacco branch is conveniently pulled out of the cigarette receiving cavity by the slider assembly under the abutment and tension of the elastic telescopic assembly.
  • the method for extracting the flue-cured tobacco includes:
  • Step 601 The elastic telescopic assembly receives a third force
  • the third force is that when the tobacco mouth of the cigarette receiving cavity is inserted with the flue-cured tobacco branch and the flue-cured tobacco branch exceeds the first target position, the heating part assembly is inserted into the flue-cured tobacco branch, and the flue-cured tobacco branch resists the elasticity through the slider assembly The force of compression of the telescoping assembly toward the base assembly;
  • Step 602 The elastic telescopic assembly applies an elastic force to the flue-cured tobacco through the slider assembly to prompt the user that the flue-cured tobacco branch exceeds the first target position.
  • the method for extracting the flue-cured tobacco includes:
  • Step 603 when the user withdraws, the elastic telescopic assembly applies an elastic force to the flue-cured tobacco through the slider assembly, so that the flue-cured tobacco branch slides to the first target position.

Abstract

一种烤烟器、烤烟型电子烟以及烤烟烟支拔出方法,用于用户方便的拔出烤烟烟支。烤烟器设有加热部组件(101)、滑块组件(102)、弹性伸缩组件(103)以及基座组件(104),加热部组件(101)以及滑块组件(102)设于烤烟器的烟支容纳腔体(105)中,加热部组件(101)设于基座组件(104);加热部组件(101)贯穿滑块组件(102),弹性伸缩组件(103)的第一端与基座组件(104)朝向烟支容纳腔体(105)的端面相抵持,弹性伸缩组件(103)的第二端与滑块组件(102)相抵持,使得烤烟烟支通过烟支容纳腔体(105)的腔口插设于加热部组件(101)且烤烟烟支超过第一目标位置(S1)时,烤烟烟支通过滑块组件(102)在弹性伸缩组件(103)抵持下,沿加热部组件(101)的导向在第一目标位置(S1)与第二目标位置(S2)之间滑动,第一目标位置(S1)为烤烟烟支的预设加热位置,第二目标位置(S2)为限制滑块组件(102)滑动距离的限位位置。

Description

一种烤烟器、烤烟型电子烟以及烤烟烟支拔出方法 技术领域
本申请涉及烟草制品领域,尤其涉及一种烤烟器、烤烟型电子烟以及烤烟烟支拔出方法。
背景技术
烤烟型电子烟可以理解为,是一种通过烤烟器对烤烟烟支里的烟草成分进行加热以形成烟雾供用户吸食的电子烟产品。
在传统的烤烟型电子烟中,烤烟烟支通常插进烤烟器上的加热部组件以完成烤烟烟支的安装,安装好后,烤烟器即可进行加热部组件的通电加热工作,对烤烟烟支的烟草材料进行加热,以形成烟雾,供用户吸食。
然而在实际中发现,烤烟烟支受热后,烟草材料容易粘在加热部组件上,用户拔出烤烟烟支较为不便,且拔出后,烟草材料容易残留在烤烟器中。
发明内容
本申请提供一种烤烟器、烤烟型电子烟以及烤烟烟支拔出方法,用于用户方便的拔出烤烟烟支。
本申请在第一方面,提供一种烤烟器,烤烟器设有加热部组件、滑块组件、弹性伸缩组件以及基座组件,加热部组件以及滑块组件设于烤烟器的烟支容纳腔体中,加热部组件设于基座组件;
加热部组件贯穿滑块组件,弹性伸缩组件的第一端与电极组件朝向烟支容纳腔体的端面相抵持,弹性伸缩组件的第二端与滑块组件相抵持,使得烤烟烟支通过烟支容纳腔体的腔口插设于加热部组件且烤烟烟支超过第一目标位置时,烤烟烟支通过滑块组件在弹性伸缩组件的抵持下,沿加热部组件的导向在第一目标位置与第二目标位置之间滑动,第一目标位置为烤烟烟支的预设加热位置,第二目标位置为限制滑块组件滑动距离的限位位置。
进一步的,当烤烟烟支通过腔口插设于加热部组件且烤烟烟支超过第一目标位置时,烤烟烟支通过滑块组件抵持弹性伸缩组件向基座组件压缩,弹性伸 缩组件通过滑块组件向烤烟烟支施加弹力,以提示用户烤烟烟支超过第一目标位置。
进一步的,弹性伸缩组件还用于当用户撤离时,弹性伸缩组件通过滑块组件向烤烟烟支施加弹力,使得烤烟烟支从第二目标位置滑动至第一目标位置。
进一步的,基座组件包括固定座组件,加热部组件设于固定座组件,沿烤烟器的轴向,滑块组件与固定座组件之间设有预置空隙,预置空隙的两端分别与第一目标位置以及第二目标位置相对应,预置空隙的长度为0.5mm至8mm之间的任意数值。
进一步的,滑块组件包括侧壁,基座组件包括外电极组件,外电极组件设于固定座组件下端,沿烤烟器的轴向,滑块组件的侧壁与外电极组件之间设有预置空隙。
进一步的,弹性伸缩组件包括弹簧。
本申请在第二方面,提供一种烤烟型电子烟,烤烟型电子烟包括烤烟烟支以及如上述第一方面提供的烤烟器,当烤烟烟支安装于烤烟器,且加热部组件进行通电加热时,加热部组件加热烤烟烟支,烤烟烟支受热形成烟雾并输出。
本申请在第三方面,提供一种烤烟烟支拔出方法,方法应用于烤烟器,烤烟器设有加热部组件、滑块组件、弹性伸缩组件以及基座组件,加热部组件以及滑块组件设于烤烟器的烟支容纳腔体中,加热部组件设于基座组件,加热部组件贯穿滑块组件,弹性伸缩组件的第一端与电极组件朝向烟支容纳腔体的端面相抵持,弹性伸缩组件的第二端与滑块组件相抵持,方法包括:
弹性伸缩组件接收第一作用力,第一作用力为当用户挤压处于第一目标位置的烤烟烟支时,烤烟烟支通过滑块组件抵持弹性伸缩组件向基座组件压缩的作用力,第一目标位置为烤烟烟支的预设加热位置;
烤烟烟支沿加热部组件的导向,从第一目标位置向第二目标位置滑动,使得粘在加热部组件上的烟草材料与加热部组件相对滑动,第二目标位置为限制滑块组件滑动距离的限位位置;
烤烟烟支接收第二作用力,第二作用力为当用户拔出处于第二目标位置的烤烟烟支时,烤烟烟支受到的沿第二目标位置向第一目标位置的拉力;
烤烟烟支通过滑块组件在弹性伸缩组件的抵持以及拉力下,方便的拔出烟 支容纳腔体。
进一步的,弹性伸缩组件接收第一作用力之前,方法还包括:
弹性伸缩组件接收第三作用力,第三作用力为当烟支容纳腔体的腔口插设烤烟烟支且烤烟烟支超过第一目标位置时,加热部组件插入烤烟烟支,烤烟烟支通过滑块组件抵持弹性伸缩组件向基座组件压缩的作用力;
弹性伸缩组件通过滑块组件向烤烟烟支施加弹力,以提示用户烤烟烟支超过第一目标位置。
进一步的,方法还包括:
当用户撤离时,弹性伸缩组件通过滑块组件向烤烟烟支施加弹力,使得烤烟烟支滑动至第一目标位置。
从以上技术方案可以看出,本申请具有以下优点:
由于在拔出烤烟烟支时,烤烟烟支可在用户的挤压动作下,通过滑块组件抵持弹性伸缩组件向基座组件压缩,烤烟烟支与加热部组件相对滑动,烤烟烟支受热后、粘在加热部组件的烟草材料与加热部组件由于滑动摩擦,脱离加热部组件、不再粘在加热部组件上,此时用户即可省力、方便的将烤烟烟支拔出烟支容纳腔体,从而带来较高的用户使用体验。
附图说明
图1为本申请提供的烤烟器的一种局部结构示意图;
图2为本申请提供的加热部组件的一种局部结构示意图;
图3为本申请提供的烤烟器的一种结构示意图;
图4为本申请提供的烤烟器的又一种结构示意图;
图5为本申请提供的烤烟烟支拔出方法的一种流程示意图;
图6为本申请提供的烤烟烟支拔出方法的又一种流程示意图。
具体实施方式
本申请提供一种烤烟器、烤烟型电子烟以及烤烟烟支拔出方法,用于用户方便的拔出烤烟烟支。
下面开始介绍本申请。
首先,参考图1示出的烤烟器的一种局部结构示意图,本申请提供的烤烟器设有加热部组件101、滑块组件102、弹性伸缩组件103以及基座组件104,加热部组件101以及滑块组件102设于烤烟器的烟支容纳腔体105中,加热部组件103设于基座组件104。
其中,滑块组件102设有与加热部组件101对应的通孔,以便加热部组件101从该通孔处贯穿滑块组件102,以便后续插入到烤烟烟支中,弹性伸缩组件103设于基座组件104与滑块组件102之间,弹性伸缩组件103的第一端与基座组件104朝向烟支容纳腔体105的端面相抵持,弹性伸缩组件103的第二端与滑块组件102相抵持。
可以理解,当烤烟器未插设烤烟烟支时,弹性伸缩组件103与滑块组件102保持相对平衡,此时滑块组件102的位置即可认为是第一目标位置S1,该第一目标位置S1为烤烟烟支的标准插设位置,即预设加热位置。需要理解的是,在实际应用中,若忽略滑块组件102的厚度因素,此时若烤烟烟支处于该第一目标位置S1时,即可理解为烤烟烟支的下端部插设到达该第一目标位置S1。
基座组件104包括固定座组件1041,加热部组件101设于固定座组件1041,沿烤烟器的轴向,滑块组件102与基座组件104之间,即与固定座组件1041之间设有预置空隙H,该预置空隙H通过弹性伸缩组件103自身的弹力抵持滑块组件102实现,预置空隙H与滑块组件102的预置滑动距离相对应,具体的,预置空隙H的两端分别与上述的第一目标位置S1第一目标位置S1以及第二目标位置S2相对应,第一目标位置S1即预置空隙H的上侧位置,第二目标位置S2即预置空隙H的下侧位置,该第二目标位置S2为限制滑块组件滑动距离的限位位置,以供滑块组件102在第一目标位置S1与第二目标位置S2之间滑动。
当烤烟器插设烤烟烟支,烤烟烟支通过腔口1051插设于加热部组件101且烤烟烟支超过第一目标位置S1时,此时由于弹性伸缩组件103产生形变带来的弹力,烤烟烟支通过滑块组件102在弹性伸缩组件103的抵持下,沿加热部组件101的导向滑动。
加热部组件101的结构可参考图2示出的加热部组件101的局部结构示意 图,加热件101为片状结构,加热件101的端部形成一锐角。
可以理解,一方面片状的结构可使得加热件101插入烤烟烟支时,可大大减小其所受到的阻力,从而可更省力地插入烤烟烟支中;另一方面锐角的设计也可使得加热件101插入烤烟烟支中时,其倾斜的接触面,可大大减小加热件101所受到的阻力,而且还可对烤烟烟支施加更为集中、更大的作用力,以此可更省力地插入烤烟烟支中。
加热部组件101设有加热电路,当通电时即可发热,以便实现对插设的烤烟烟支进行加热,烤烟烟支里的烟草材料受热后即可形成烟雾,供用户吸食。
吸食完烟雾,当用户拔出处于第一目标位置S1的烤烟烟支时,可先挤压烤烟烟支,烤烟烟支通过滑块组件102抵持弹性伸缩组件103向基座组件104压缩,在这过程中,烤烟烟支沿加热部组件101的导向,从第一目标位置S1向第二目标位置S2滑动,从而使得烤烟烟支里受热后、粘在加热部组件101上的烟草材料与加热部组件101相对滑动,即脱离加热部组件101,不再粘在加热部组件101上;此时,用户即可对烤烟烟支施加沿第二目标位置S2向第一目标位置S1的拉力,烤烟烟支通过滑块组件102在弹性伸缩组件103的抵持以及该拉力下,即可方便的拔出烟支容纳腔体105。
从上述中可看出,由于在拔出烤烟烟支时,烤烟烟支可在用户的挤压动作下,通过滑块组件102抵持弹性伸缩组件103向基座组件104压缩,烤烟烟支与加热部组件101相对滑动,烤烟烟支受热后、粘在加热部组件101的烟草材料与加热部组件101由于滑动摩擦,脱离加热部组件101、不再粘在加热部组件101上,此时用户即可省力、方便的将烤烟烟支拔出烟支容纳腔体105,从而带来较高的用户使用体验。
并且,在上述拔出烤烟烟支的过程中,由于烤烟烟支与加热部组件101相对滑动,烤烟烟支粘在加热部组件101上的烟草材料从加热部组件101上脱离,由于滑块组件102抵持烤烟烟支,未能掉落在容纳腔体105内;然后烤烟烟支再向上滑动,拔出烟支容纳腔体105,在这过程中,由于烤烟烟支里未有烟草材料粘在加热部组件101上,因此未能与加热部组件101再次产生滑动摩擦,带出烟草材料、脱落在烟支容纳腔体105中,这意味着该拔出烤烟烟支的过程,不会造成烟草材料对烤烟器的污染,用户也无需对残留的烟草材料进行 清理,进一步带来更高的用户使用体验。
应当理解的是,上述提供的烤烟器结构,还有进一步的优化。
在实际应用中,当用户插设烤烟烟支、烤烟烟支通过烟支容纳腔体105的腔口1051插设于加热部组件101且烤烟烟支超过第一目标位置S1时,烤烟烟支通过滑块组件102抵持弹性伸缩组件103向基座组件104压缩,弹性伸缩组件103通过滑块组件102向烤烟烟支施加弹力,此时用户即可清晰地感知到插设烤烟烟支受到了阻力,达到提示用户烤烟烟支超过第一目标位置S1的效果,用户即可撤离对烤烟烟支的挤压、停止对烤烟烟支的插设动作。
其中,值得一提的是,由于烤烟烟支超过第一目标位置S1时,还可继续向第二目标位置S2进行滑动一段距离,因此,烤烟烟支不会因为滑块组102件的抵持而造成过度的挤压,造成烤烟烟支的损坏,这也是现有的烤烟器结构达不到的效果之一。
进一步的,弹性伸缩组件103还用于当用户撤离对烤烟烟支的挤压时,弹性伸缩组件103通过滑块组件102向烤烟烟支施加弹力,使得烤烟烟支从第二目标位置S2滑动至第一目标位置S1,达到自动定位烤烟烟支的效果,因此,在烤烟器的滑动结构中,烤烟烟支的加热效果可控,不会由于烤烟烟支的位置差异导致其不同的加热效果,使之加热效果更为稳定,从而形成更为细腻、香醇的烟雾供用户吸食。
在实际应用中,预置空隙H的长度具体可以为0.5mm至8mm之间的任意数值。
可以理解,滑块组件102在第一目标位置S1处向第二目标位置S2滑动0.5mm至8mm之间的任意距离时,即可有效地保证烤烟烟支里粘在加热部组件101上的烟草材料从加热部组件101上完全脱离。
进一步的,在实际应用中,如图1示出的,一方面,滑块组件102包括侧壁,滑块组件102的侧壁的设计不仅便于滑块组件102的组装,还可将弹性伸缩组件固定在侧壁内,使弹性伸缩组件103不会松脱;另一方面,基座组件104还包括外电极组件1042,外电极组件1042设于上述的固定座组件1041下端,沿烤烟器的轴向,滑块组件102的侧壁与外电极组件1042之间也设有 预置空隙H。
可以理解,在滑块组件102的侧壁处也设置一预置空隙H,可进一步限制滑块组件102的滑动距离,防止滑块组件102对固定座组件1041造成过度挤压。
应当理解的是,烤烟器不仅包括外电极组件1042,还包括了内电极组件1043,以及绝缘环组件1044,绝缘环1044用于隔离外电极组件1042以及内电极组件1043,避免短路,外电极1042组件以及内电极组件1043分别与烤烟器电池的正、负极相连,以便通过固定座组件1041内的导电线路与加热部组件101上的加热电路形成完整的闭合回路,为加热电路供电,进行通电加热。
进一步的,在实际应用中,弹性伸缩组件103为弹簧。
弹簧可以为一根弹簧或者多根子弹簧绕制得到,在该设置下,弹簧在安装过程中,可将弹簧直接套设在上述的固定座组件1041周围再安装滑动组件102,即可完成弹簧的安装,可较为便捷地安装在固定座组件1041与滑动组件102之间,更便于组装。
或者,还可为多组的弹簧,多组弹簧环绕固定座组件1041周围设置。
在该设置下,可调整弹簧的数量,以便实现弹性伸缩组件104的弹力的调整,例如弹簧数量较少的情况下,则烤烟烟支可更为省力地挤压滑块组件102,使其向基座组件104滑动,或者在拔出烤烟烟支时,弹性伸缩组件104可实现以自身更大的弹力通过滑块组件102抵持烤烟烟支,使得烤烟烟支更为省力的拔出。
应当理解的是,图1仅示出了烤烟器的部分结构,在实际应用中,烤烟器还包括电池杆组件,如图3及图4示出的的烤烟器在不同角度下的结构示意图,电池杆组件105还可包括电池组件1051以及控制电路1052。
其中,电池组件1051一般包括二次电池,即可充电电池。二次电池具体可以为镍氢电池、镍镉电池、铅酸电池(铅蓄电池)或者锂离子电池(包括锂电池和锂离子聚合物电池)等类型的电池。当然,电池组件1051也可包括一次电池,具体在此不做限定。电池组件1051还包括输电电路(未图示),以便电池组件1051通过输电电路对控制电路1053、加热部组件101等用电组件提 供工作电源。
控制电路1052除了包括与电池组件1051以及加热部组件101等部件之间的控制线路,还可包括电路板、集成电路或者芯片等等元器件,以便控制烤烟器各组件的工作。
进一步的,电路板具体除了可以为工艺简单、性价比优异且较为稳固的印刷电路板(printed circuit board,PCB),或者也可以为配线密度高、重量轻、厚度薄、弯折性较佳且易于安装的柔性电路板(flexible printed circuit,FPC),或者还可以为结合PCB以及FPC结构及特性的软硬结合板,在实际应用中,具体在此不做限定。
控制电路1052除了可如图3及图4示出的,设于电池杆组件105的下端,也可设在电池杆组件105的上端,具体在此不做限定。
与上述提及的外电极组件1042、内电极组件1043以及绝缘环组件1044类似的,电池杆组件105的端部也可设有对应的外电极组件1053、内电极组件1054以及绝缘环组件1055,以便配合,具体在此不再赘述。
当电池杆组件105的端部安装于基座组件104的下方时,电池杆组件105的外电极组件1053、内电极组件1054分别与基座组件104的外电极组件1042、内电极组件1043形成电连接关系,以便电池组件1051向加热部组件101提供工作电源。
当然,电池杆组件105具体还可包括其他组件,例如,可在电池组件1051的任意一端或者两端设置保护垫片,保护垫片可以采用乙烯-醋酸乙烯共聚物(ethylene-vinyl acetate copolymer,EVA)或者硅胶等材料构成,以对电池组件1051起到隔离、缓冲、绝缘等保护作用,保证电池组件1051的工作稳定性。
又例如,电池杆组件105设有容纳腔体,以供内部电池组件1051、控制电路1052的组装及固定,对应的,容纳腔体的一端由基座组件104的安装二封闭,另一端可设置一封盖1056封闭,以此保证电池杆组件105内各组件的组装、固定。
进一步的,若电池组件1051包括二次电池,则封盖1056还可设有充电接口,充电接口与电池组件1051之间还设有充电组件,当二次电池进行充电时,烤烟器外部的充电接头可与充电接口完成安装固定,充电接头可将外部的电源 通过充电组件向电池组件1051提供电源,以进行电池组件1051的充电工作。
此外,电池杆组件105还可设有工作指示灯,例如设在封盖1056,或者设于电池杆组件105的任意外壳处,在控制电路1052的控制下,可在加热部组件101进行通电加热工作或者电池组件1051进行充电工作时,可向用户输出相关的灯光效果,以指示烤烟器的不同工作状态。例如,绿色灯光效果表示待机状态、红色灯光效果表示正加热状态,黄色灯光效果表示充电状态等等,具体灯光效果视实际情况而定,具体在此不做限定。
或者,电池杆组件105还可设有电源按钮1057,电源按钮1057与控制电路1052连接,用户可通过电源按钮1057的按压操作,向控制电路1052输入对应的控制信号,以实现用户手动控制烤烟器的通电加热工作。
应当理解的是,烤烟器除了需导电或者绝缘的组件外,其他组件可采用陶瓷、塑料、不锈钢等材料制成,具体在此不做限定。
以上是对本申请实施例所提供的烤烟器的介绍,本申请实施例另外还提供一种烤烟型电子烟。
本申请所提供的烤烟型电子烟不仅包括了上述介绍的烤烟器,还包括了与烤烟器对应的烤烟烟支,当烤烟烟支插设、安装于烤烟器,且加热部组件101进行通电加热工作时,加热部组件101加热烤烟烟支,烤烟烟支受热形成烟雾并输出,供用户吸食。
需要说明的是,烤烟型电子烟的具体内容可参照上述实施例内容,具体在此不再重复赘述。
本申请还提供一种烤烟烟支拔出方法,该烤烟烟支拔出方法如图5示出的流程示意图,具体包括:
步骤501,弹性伸缩组件接收第一作用力;
其中,第一作用力为当用户挤压处于第一目标位置的烤烟烟支时,烤烟烟支通过滑块组件抵持弹性伸缩组件向基座组件压缩的作用力,第一目标位置为烤烟烟支的预设加热位置。
步骤502,烤烟烟支沿加热部组件的导向,从第一目标位置向第二目标位 置滑动,使得粘在加热部组件上的烟草材料与加热部组件相对滑动;
其中,第二目标位置为限制滑块组件滑动距离的限位位置。
步骤503,烤烟烟支接收第二作用力;
其中,第二作用力为当用户拔出处于第二目标位置的烤烟烟支时,烤烟烟支受到的沿第二目标位置向第一目标位置的拉力。
步骤504,烤烟烟支通过滑块组件在弹性伸缩组件的抵持以及拉力下,方便的拔出烟支容纳腔体。
从上述中可看出,由于在拔出烤烟烟支时,烤烟烟支可在用户的挤压动作下,通过滑块组件抵持弹性伸缩组件向基座组件压缩,烤烟烟支与加热部组件相对滑动,烤烟烟支受热后、粘在加热部组件的烟草材料与加热部组件由于滑动摩擦,脱离加热部组件、不再粘在加热部组件上,此时用户即可省力、方便的将烤烟烟支拔出烟支容纳腔体,从而带来较高的用户使用体验。
进一步的,在实际应用中,如图6示出的又一种流程示意图,烤烟烟支拔出方法还可具体包括:
步骤604,弹性伸缩组件接收第一作用力;
其中,第一作用力为当用户挤压处于第一目标位置的烤烟烟支时,烤烟烟支通过滑块组件抵持弹性伸缩组件向基座组件压缩的作用力,第一目标位置为烤烟烟支的预设加热位置。
步骤605,烤烟烟支沿加热部组件的导向,从第一目标位置向第二目标位置滑动,使得粘在加热部组件上的烟草材料与加热部组件相对滑动;
其中,第二目标位置为限制滑块组件滑动距离的限位位置。
步骤606,烤烟烟支接收第二作用力;
其中,第二作用力为当用户拔出处于第二目标位置的烤烟烟支时,烤烟烟支受到的沿第二目标位置向第一目标位置的拉力。
步骤607,烤烟烟支通过滑块组件在弹性伸缩组件的抵持以及拉力下,方便的拔出烟支容纳腔体。
其中,步骤604之前,烤烟烟支的拔出方法还包括:
步骤601,弹性伸缩组件接收第三作用力;
其中,第三作用力为当烟支容纳腔体的腔口插设烤烟烟支且烤烟烟支超过 第一目标位置时,加热部组件插入烤烟烟支,烤烟烟支通过滑块组件抵持弹性伸缩组件向基座组件压缩的作用力;
步骤602,弹性伸缩组件通过滑块组件向烤烟烟支施加弹力,以提示用户烤烟烟支超过第一目标位置。
进一步的,步骤602之后,烤烟烟支的拔出方法还包括:
步骤603,当用户撤离时,弹性伸缩组件通过滑块组件向烤烟烟支施加弹力,使得烤烟烟支滑动至第一目标位置。
可以理解,图5及图6对应方法实施例的具体说明,可参照上述图1至图4对应结构实施例的说明,具体在此不再赘述。
本申请的说明书和权利要求书及上述附图中的术语“第一”、“第二”、“第三”、“第四”等(如果存在)是用于区别类似的对象,而不必用于描述特定的顺序或先后次序。应该理解这样使用的数据在适当情况下可以互换,以便这里描述的实施例能够以除了在这里图示或描述的内容以外的顺序实施。此外,术语“包括”和“具有”以及他们的任何变形,意图在于覆盖不排他的包含,例如,包含了一系列步骤或单元的过程、方法、系统、产品或设备不必限于清楚地列出的那些步骤或单元,而是可包括没有清楚地列出的或对于这些过程、方法、产品或设备固有的其它步骤或单元。
以上所述,以上实施例仅用以说明本申请的技术方案,而非对其限制;尽管参照前述实施例对本申请进行了详细的说明,本领域的普通技术人员应当理解:其依然可以对前述各实施例所记载的技术方案进行修改,或者对其中部分技术特征进行等同替换;而这些修改或者替换,并不使相应技术方案的本质脱离本申请各实施例技术方案的精神和范围。

Claims (10)

  1. 一种烤烟器,其特征在于,所述烤烟器设有加热部组件、滑块组件、弹性伸缩组件以及基座组件,所述加热部组件以及滑块组件设于所述烤烟器的烟支容纳腔体中,所述加热部组件设于所述基座组件;
    所述加热部组件贯穿所述滑块组件,所述弹性伸缩组件的第一端与所述电极组件朝向所述烟支容纳腔体的端面相抵持,所述弹性伸缩组件的第二端与所述滑块组件相抵持,使得烤烟烟支通过所述烟支容纳腔体的腔口插设于所述加热部组件且所述烤烟烟支超过第一目标位置时,所述烤烟烟支通过所述滑块组件在所述弹性伸缩组件的抵持下,沿所述加热部组件的导向在所述第一目标位置与第二目标位置之间滑动,所述第一目标位置为所述烤烟烟支的预设加热位置,所述第二目标位置为限制所述滑块组件滑动距离的限位位置。
  2. 根据权利要求1所述的烤烟器,其特征在于,当所述烤烟烟支通过所述腔口插设于所述加热部组件且所述烤烟烟支超过所述第一目标位置时,所述烤烟烟支通过所述滑块组件抵持所述弹性伸缩组件向所述基座组件压缩,所述弹性伸缩组件通过所述滑块组件向所述烤烟烟支施加弹力,以提示用户所述烤烟烟支超过所述第一目标位置。
  3. 根据权利要求1所述的烤烟器,其特征在于,所述弹性伸缩组件还用于当用户撤离时,所述弹性伸缩组件通过所述滑块组件向所述烤烟烟支施加弹力,使得所述烤烟烟支从所述第二目标位置滑动至所述第一目标位置。
  4. 根据权利要求1所述的烤烟器,其特征在于,所述基座组件包括固定座组件,所述加热部组件设于所述固定座组件,沿所述烤烟器的轴向,所述滑块组件与所述固定座组件之间设有预置空隙,所述预置空隙的两端分别与所述第一目标位置以及所述第二目标位置相对应,所述预置空隙的长度为0.5mm至8mm之间的任意数值。
  5. 根据权利要求4所述的烤烟器,其特征在于,所述滑块组件包括侧壁,所述基座组件包括外电极组件,所述外电极组件设于所述固定座组件下端,沿所述烤烟器的轴向,所述滑块组件的侧壁与所述外电极组件之间设有所述预置空隙。
  6. 根据权利要求1所述的烤烟器,其特征在于,所述弹性伸缩组件包括 弹簧。
  7. 一种烤烟型电子烟,其特征在于,所述烤烟型电子烟包括烤烟烟支以及如权利要求1至6中任一项所述的烤烟器,当所述烤烟烟支安装于所述烤烟器,且所述加热部组件进行通电加热时,所述加热部组件加热所述烤烟烟支,所述烤烟烟支受热形成烟雾并输出。
  8. 一种烤烟烟支拔出方法,其特征在于,所述方法应用于烤烟器,所述烤烟器设有加热部组件、滑块组件、弹性伸缩组件以及基座组件,所述加热部组件以及滑块组件设于所述烤烟器的烟支容纳腔体中,所述加热部组件设于所述基座组件,所述加热部组件贯穿所述滑块组件,所述弹性伸缩组件的第一端与所述电极组件朝向所述烟支容纳腔体的端面相抵持,所述弹性伸缩组件的第二端与所述滑块组件相抵持,所述方法包括:
    所述弹性伸缩组件接收第一作用力,所述第一作用力为当用户挤压处于第一目标位置的所述烤烟烟支时,所述烤烟烟支通过所述滑块组件抵持所述弹性伸缩组件向所述基座组件压缩的作用力,所述第一目标位置为所述烤烟烟支的预设加热位置;
    所述烤烟烟支沿所述加热部组件的导向,从所述第一目标位置向第二目标位置滑动,使得粘在所述加热部组件上的烟草材料与所述加热部组件相对滑动,所述第二目标位置为限制所述滑块组件滑动距离的限位位置;
    所述烤烟烟支接收第二作用力,所述第二作用力为当用户拔出处于所述第二目标位置的所述烤烟烟支时,所述烤烟烟支受到的沿所述第二目标位置向所述第一目标位置的拉力;
    所述烤烟烟支通过所述滑块组件在所述弹性伸缩组件的抵持以及所述拉力下,方便的拔出所述烟支容纳腔体。
  9. 根据权利要求8所述的烤烟烟支拔出方法,其特征在于,所述弹性伸缩组件接收第一作用力之前,所述方法还包括:
    所述弹性伸缩组件接收第三作用力,所述第三作用力为当所述烟支容纳腔体的腔口插设烤烟烟支且所述烤烟烟支超过所述第一目标位置时,所述加热部组件插入所述烤烟烟支,所述烤烟烟支通过所述滑块组件抵持所述弹性伸缩组件向所述基座组件压缩的作用力;
    所述弹性伸缩组件通过所述滑块组件向所述烤烟烟支施加弹力,以提示用户所述烤烟烟支超过所述第一目标位置。
  10. 根据权利要求9所述的烤烟烟支拔出方法,其特征在于,所述方法还包括:
    当用户撤离时,所述弹性伸缩组件通过所述滑块组件向所述烤烟烟支施加所述弹力,使得所述烤烟烟支滑动至所述第一目标位置。
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