WO2019161633A1 - 一种气溶胶生成装置及气溶胶生成制品 - Google Patents
一种气溶胶生成装置及气溶胶生成制品 Download PDFInfo
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- WO2019161633A1 WO2019161633A1 PCT/CN2018/095931 CN2018095931W WO2019161633A1 WO 2019161633 A1 WO2019161633 A1 WO 2019161633A1 CN 2018095931 W CN2018095931 W CN 2018095931W WO 2019161633 A1 WO2019161633 A1 WO 2019161633A1
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- Prior art keywords
- aerosol
- heating
- electrode
- disposed
- generating device
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- A—HUMAN NECESSITIES
- A24—TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
- A24F—SMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
- A24F40/00—Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
- A24F40/40—Constructional details, e.g. connection of cartridges and battery parts
- A24F40/46—Shape or structure of electric heating means
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- A—HUMAN NECESSITIES
- A24—TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
- A24D—CIGARS; CIGARETTES; TOBACCO SMOKE FILTERS; MOUTHPIECES FOR CIGARS OR CIGARETTES; MANUFACTURE OF TOBACCO SMOKE FILTERS OR MOUTHPIECES
- A24D1/00—Cigars; Cigarettes
- A24D1/20—Cigarettes specially adapted for simulated smoking devices
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- A—HUMAN NECESSITIES
- A24—TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
- A24F—SMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
- A24F40/00—Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
- A24F40/40—Constructional details, e.g. connection of cartridges and battery parts
- A24F40/48—Fluid transfer means, e.g. pumps
- A24F40/485—Valves; Apertures
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- A—HUMAN NECESSITIES
- A24—TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
- A24F—SMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
- A24F40/00—Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
- A24F40/50—Control or monitoring
-
- A—HUMAN NECESSITIES
- A24—TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
- A24F—SMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
- A24F40/00—Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
- A24F40/10—Devices using liquid inhalable precursors
-
- A—HUMAN NECESSITIES
- A24—TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
- A24F—SMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
- A24F40/00—Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
- A24F40/20—Devices using solid inhalable precursors
Definitions
- the present invention relates to the field of aerosol-generating products and aerosol generating devices, and in particular to an aerosol-generating product having an internal heating element and an aerosol generating device.
- the aerosol-generating product and aerosol generating device are a novel type of electrically operated smoking device, which is different from the conventional electronic smoking articles and heated non-burning smoking articles.
- Electronic cigarettes are electronic products that mimic cigarettes and have the same appearance, smoke, taste and feel as cigarettes. It is a product that allows users to use nicotine and the like after being turned into steam by means of atomization, etc., beginning in 1963, American Herbert A Gilbert developed a smokeless non-cigarette device. This is a device that produces a vapor gas by heating a nicotine solution.
- his research and development patents were officially approved, and in the same year Gilbert's smokeless non-cigarette invention concept was first mentioned in the most popular journal of mechanics. Unfortunately, in 1967, Gilbert did not receive support when he was looking for a company to conduct mass production of e-cigarettes. Since then, Gilbert's smoke-free non-cigarette equipment has begun to fade slowly until it disappears.
- an electronic smoking article is a non-flammable electronic atomized cigarette applied by the applicant Han Li in 2003.
- the device comprises a housing, a high frequency generator, a nicotine reservoir and a container, a micro atomizer, an air flow sensor and an accessory.
- the heating of non-burning smoking articles was the patent application of Philip Morris Production Company in 1989 for a new type of electronic cigarette product (Application No. 89104827.8), which opened up a new field of tobacco products for heating non-burning cigarettes.
- the design includes a carbonaceous heat source through which heat is generated, which is transferred to the cigarette segment to produce flavored smoke, and the carbonaceous heat source and perfume segments are mixed into a cylindrical hollow ceramic sleeve.
- Cigarette products do not substantially produce spilled fumes.
- the patent uses a carbon rod as a heating source, and the carbon rod is a disposable product and cannot be reused.
- the cigarette includes: a carrier tube having first and second ends that are longitudinally separated from each other and having first and second surfaces, the first surface enclosing a first between the first and second ends a cavity having a second surface having a region for abutting against an electric heater; and a layer of smouldering material disposed on the first surface of the receiving tube and in the cavity when heated Producing a tobacco aroma to a smoker, wherein the receiving tube and the layer of tobacco material allow lateral airflow into the cavity, the patent uses electrical heating to heat the tobacco to release smoke by means of radiation, which is thermally inefficient and produces The amount of smoke is small.
- the aerosol generating device is configured to receive the aerosol-forming substrate and configured to heat the aerosol-forming substrate using both an internal heater and an external heater, the internal heater being positioned within the substrate, the external heater being positioned outside the substrate .
- the use of both internal and external heaters allows each heater to operate at a lower temperature than would be required when using internal or external heaters alone. By operating the external heater at a lower temperature than the internal heater, the substrate can be heated to a relatively uniform temperature profile while the external temperature of the device can be maintained to an acceptable low level.
- An aerosol-generating article of a heating element as mentioned in the patent: an aerosol-generating article comprising a rod; a mouthpiece positioned downstream of the rod; and a resistive heating element positioned within the rod, the resistor
- the heating element includes an upstream portion extending from an upstream end of the tobacco rod, wherein the upstream portion of the electrical resistance heating element includes at least two heater electrical contacts for the gas comprising the electrical resistance heating element
- the supply of electrical energy is received from at least two device electrical contacts when the sol-forming article is inserted into the aerosol-generating device.
- Relatively high-tar smoking cigarettes, low-tar heating non-burning smoke and tar-free electronic cigarettes will be healthier to the human body.
- the main principle of electronic cigarettes is to heat the evaporated liquid to generate smoke, and the main principle of heating non-combustible smoke is heating and baking.
- the smoke in the tobacco comes out, so in the current consumer market, the needs of the two types of electronic cigarettes and the heating of non-burning cigarettes are different.
- the structure of different devices also has many differences, which is not conducive to the widespread use.
- the electronic cigarette described in the patent is an aerosol-forming product which forms a smoke by electrically heating by adding an artificially prepared liquid smoke to an aerosol-forming agent.
- the liquid smoke described in this patent is a liquid aerosol forming agent used in combination with electronic cigarettes. After being electronically aerosolized, it is possible to generate a mist (aerosol) like a cigarette.
- the electronic cigarette liquid is generally added to the edible flavor from the extract of the plant, and the main components include a solvent such as glycerin (also called glycerin) or 1,2-propanediol or polyethylene glycol, and a tobacco-specific flavor. Nicotine is added to some electronic cigarette liquids, and nicotine is added. The main reason for adding nicotine is to make the taste more close to cigarettes.
- the main components of the heated non-combustion smoke may include plant granules or tobacco or tobacco leaf or nicotine-containing granules, and since the non-combusted smoke is substantially not burned, the carcinogens such as tar are reduced. It appears that the heating of the non-combusted smoke is designed to evaporate the active substance, giving the user a feeling of no difference from real smoke.
- the invention is improved on the basis of the prior art technology, and provides a technical solution for exchanging and using the electronic cigarette and the heated non-burning cigarette on the same equipment device, in particular, an aerosol generating device and an aerosol generating product. .
- An aerosol generating device comprising an outer casing and a built-in power source and a control circuit board electrically connected to the power source, the outer casing is provided with a socket, and the socket is provided with a fixing cylinder for containing the aerosol-generating product,
- the bottom of the fixed cylinder is provided with a vent hole, and the outer casing is provided with an air inlet hole and a control switch connected to the power source, and the air inlet hole and the vent hole are communicated by a gas path, and the fixed cylinder is connected
- Providing a conductive member and a heating member the conductive member comprising at least two supply electrodes disposed on a sidewall of the fixed cylinder, the supply electrode being electrically connected to the control circuit board, wherein the aerosol-generating article is interposed
- the conductive member is electrically connected to the aerosol-generating article when the cartridge is fixed.
- the aerosol generating device When the aerosol generating device is used, it is only necessary to insert the aerosol-generating product into the fixed cylinder, and the conductive member is turned on, and the power supply to the electrode is controlled by the switch, so that the aerosol-generating product can generate smoke.
- the aerosol generating device has the advantage that the supply electrode is disposed on the side wall of the jack to get rid of the conventional structure of placing the electrode at the bottom end of the aerosol generating product, which provides a smoother connection for heating the inlet end of the non-burning smoke or the electronic cigarette. And efficient air intake, first of all, if the electrode is placed at the bottom, the docking problem between the aerosol-generating product and the aerosol generating device should be considered. If the electrical connection method using the pin is used for a long time, wear and even disconnection will occur. Secondly, considering the air intake problem of the aerosol-generating product, the heating is carried out from the bottom end for heating the non-burning smoke.
- the efficiency of the intake air will be affected, thereby affecting the heat transfer and the hair.
- Thermal efficiency for electronic cigarettes, the structure of the atomization section, the transmission section and the nozzle section is usually adopted, and the atomization section is at the bottom end. If the electrode is disposed at the bottom end, the intake efficiency will also be affected, and once it appears The falling of the smoke droplets will first contaminate the supply electrode, which not only affects the service life of the aerosol generating device, but also affects some subsequent identification procedures such as impedance. Detecting and measuring cigarette smoking categories affect gas flow.
- the airflow detecting device is disposed under the vent hole, and the airflow detecting device is connected to the control circuit board.
- the purpose of the airflow detecting device is to control the supply of current to the electrode or to provide a higher current when it is being used for suction, so that the aerosol-generating article rapidly generates smoke, and has a taste of smoking smoke when it is in the suction use gap. Limiting or limiting the current to the electrode to prevent the aerosol-generating article from overheating and burning the heating element.
- an impedance detecting device is disposed in parallel between the supply electrodes, and the impedance detecting device is connected to the control circuit board.
- the purpose of the impedance detecting device is to identify the inserted aerosol-generating article, the impedance of the heating element for heating the non-combustion smoke and the electronic cigarette is different, and the impedance detecting device supplies the impedance data to the control circuit board, and the control circuit board.
- different currents are used for power supply, and more preferably, the impedance of the heating element of different flavors or varieties of heated non-burning smoke or electronic cigarette is tested, and a more accurate current-to-gas is used after the identification.
- the sol-generating article is heated by electric power.
- the jack is further provided with a heating component, the heating component is a heating wire disposed on the outer wall of the fixing cylinder, and the heating wire is spirally wound on the fixing cylinder,
- the feed wire is electrically connected to the control switch, and the purpose of feeding the hot wire is similar to the preheating process of the engine.
- the heating wire starts to feed heat, and the temperature of the feeding heat is approximately 100- At 200 degrees Celsius, the benefit of heat feeding is to uniformly increase the temperature of the oil-containing body or the heated non-combustible material in the aerosol-generating product, so that it is closer to the critical point of the atomization temperature, and at the same time, the aerosol-forming product does not start to fog.
- the heating element inside the aerosol-generating product heats up, the temperature can be quickly reached to the atomization temperature, and no cold smoke can be generated, and the temperature change in the aerosol-generating product can be more balanced, thereby improving smoking. Taste.
- Another beneficial function of providing a heating member in the insertion cavity is that when a heated non-combustion cigarette having no built-in heating element is inserted, the function of the power supply switch can be manually selected to increase the temperature of the fixed cylinder to 300 to 450 degrees Celsius. It can bake out the smoke in the heated non-combustible smoke without the built-in heating element, but the effect will be less than the amount of heated non-burning smoke with built-in heating elements.
- the heating component is integrally provided with the fixed cylinder as an electrothermal film ceramic, and the electric heating film is electrically connected to the control circuit board.
- the structure is more convenient in actual production, and the heating component is disposed inside the ceramic body, and the fixing cylinder
- One-piece molding eliminates the need to add a reduction process outside the fixed cylinder, which is convenient.
- the aerosol-generating article is a heating non-combustion smoke, comprising a nozzle provided at one end, a casing of the peripheral, the casing comprises an atomization section, a transmission section and a nozzle section in sequence, and the atomization section is built-in.
- the heating non-combustion material comprises plant grain or tobacco silk or tobacco leaf or nicotine-containing grain
- the shell has at least two annular shapes on the side wall thereof
- the electrode, the heating element is a resistance wire, and the resistance wire is connected to the annular electrode, and the resistance wire is disposed in contact with the heating non-combustion material.
- the annular electrode When the suction is used, the annular electrode is supplied with power, and the heating element heats up and heats the non-combusted raw material in the atomization section to generate smoke, and the temperature of the smoke generation is high, and the high temperature gas is liquefied into smoke by the cooling of the transmission section, and is sucked.
- the mouth segment is drawn into the user's mouth.
- the heated non-combustion smoke is provided with at least two annular electrodes on the side wall of the envelope, which is used in combination with the supply electrode in the aerosol generating device.
- the advantage of this structure is that the annular electrode does not need to be considered when heating.
- the non-burning smoke is inserted into the jack, it is also necessary to find the problem of the electrode. It is only necessary to insert the heated non-burning smoke to a certain depth and naturally connect with the supply electrode.
- the annular electrode also has an advantage in that it is easy to implement, first heating
- the shell of the burning smoke is generally packaged in paper, and the paper which is resistant to a certain temperature is internally wound and fixed, and only a conductive strip is set on the paper by printing or pasting, and the circle is naturally formed after the coil is wound. Ring electrode.
- the aerosol-generating article is a disposable electronic cigarette, comprising a casing having a peripheral, a nozzle provided at one end of the casing, a support provided at the other end, and an air inlet provided thereon,
- the tube casing comprises an atomization section, a transmission section and a nozzle section in sequence.
- the atomization section is internally provided with an oil body, a heating element, and an air flow passage, wherein the oil body is tubular, and the air flow passage and the heating element are disposed therein.
- the air flow passage is in communication with the air inlet, the heating resistance wire is disposed in the steam flow passage, and the side wall of the shell is provided with at least two annular electrodes for use with the aerosol generating device
- the annular electrode is electrically connected to the heating element.
- the ring electrode When pumping, the ring electrode is powered, the heating element is heated, and the oil body is heated to generate smoke, and the air flow enters the user mouth through the atomization section, the transmission section and the nozzle section from the air inlet, which is different from
- the purpose of fixing the oil-containing body is to fix the oil droplets in the oil-containing body at the same time.
- the annular electrode is used in combination with the supply electrode in the aerosol generating device.
- the advantage of this structure is that the annular electrode does not need to consider the problem of finding the electrode when the non-combusted smoke is inserted into the jack. Inserting the heated non-burning smoke to a certain depth and naturally connecting it with the electrode
- bottom end and “bottom” as referred to in the patent refer to a position or a portion in the upstream direction when the aerosol-generating product and the aerosol generating device are in an operating state.
- top or “top” as used in the patent refers to a position or portion downstream of the route in which the airflow is operated when the aerosol-generating article and the aerosol-generating device are in operation.
- the invention has the following advantages: 1.
- the electrode arrangement mode of the aerosol generating device is improved, and the use of the heated non-burning smoke and the electronic cigarette is compatible, which provides a smoother connection for heating the intake end of the non-burning smoke or the electronic cigarette.
- Efficient setting method 2.
- the feeding electrode for heating non-burning smoke is improved, and the heating non-combustion smoke has the experience of one-time use of real smoke while being convenient to use.
- the electrode of the electronic cigarette has been improved, and the use is more convenient and comfortable. 4.
- Preheating the airflow entering the heated non-combustion smoke and the electronic cigarette increases the amount of smoke generated.
- Fig. 1 is a schematic cross-sectional view showing a specific embodiment 1 of an aerosol generating device.
- Fig. 2 is a perspective view showing the fixing cylinder of the specific embodiment 1 of the aerosol generating device.
- FIG 3 is a partial perspective cross-sectional view showing a first embodiment of an aerosol generating device.
- Fig. 4 is a perspective view showing the bottom of the fixed cylinder in the first embodiment of the aerosol generating device.
- Fig. 5 is a schematic cross-sectional view showing a second embodiment of the aerosol generating device.
- Figure 6 is a cross-sectional view of the fixed cylinder of the second embodiment of the aerosol generating device.
- Figure 7 is a partial perspective cross-sectional view showing a third embodiment of the aerosol generating device.
- Figure 8 is a schematic view showing the structure of a specific embodiment 1 of an aerosol-generating article.
- Figure 9 is a schematic view showing the structure of Concrete Example 2 of the aerosol-generating article.
- Figure 10 is a front elevational view showing the envelope of a specific embodiment 2 of the aerosol-generating article.
- Fig. 11 is a perspective view showing the reverse side of the envelope of the second embodiment of the aerosol-generating article.
- Figure 12 is a cross-sectional view of the atomization section of Concrete Example 3 of the aerosol-generating article.
- Figure 13 is a schematic perspective cross-sectional view showing a specific embodiment 4 of the aerosol-generating article.
- Figure 14 is a schematic cross-sectional view of the atomization section of Part 4 of the aerosol-generating article.
- Fig. 15 is a schematic view showing the structure of a specific example 4 of the aerosol-generating article in use.
- Figure 16 is a schematic view showing the structure of a specific embodiment 5 of an aerosol-generating article.
- Aerosol generating device embodiment 1 Aerosol generating device embodiment 1
- the aerosol generating device of the present invention comprises an outer casing 1 and a built-in power source 3 and a control circuit board 2.
- the outer casing 1 is provided with a socket 13, and the jack 13 is provided with a receiving body.
- the fixed cylinder 7 of the aerosol-generating product is provided with a venting hole 9 at the bottom of the fixing cylinder 7, and an airflow detecting device 14 is disposed under the venting hole 9, and the airflow detecting device 14 is connected to the control circuit board 2, the outer casing
- the body 1 is provided with a control switch 4 connected to the power source 3 and an air inlet hole 10, and the air inlet hole 10 is communicated with the vent hole 9, and the fixed cylinder 7 is provided with a conductive member and a heating member.
- the heating member is a heating wire 6, and the conductive member is a fixed cylinder 7 and two supply electrodes 8 disposed on the side wall of the fixed cylinder 7.
- the power supply is extremely annular, and the annular power supply is provided.
- the pole 8 and the control switch 4 are electrically connected by a wire, and when the aerosol-generating article is inserted into the insertion hole 13, the conductive member is electrically connected to the heat generating component provided in the aerosol-generating article.
- the annular supply electrode 8 is provided with a bump 11 which is provided for clamping the aerosol-generating article so that the contact between the supply electrode 8 and the annular electrode is more compact and reduced. Contact resistance.
- FIG. 2 which is a perspective view of the fixing cylinder in the first embodiment
- the outer side wall of the fixing cylinder 7 is provided with a heating wire 6
- the heating wire 6 is spirally wound around the fixing cylinder 7 .
- the heating wire 6 is electrically connected to the control switch 4.
- the heating wire 6 can be made of ptc material, and the heating temperature is about 100-200 degrees Celsius, and the material has a certain temperature (Curie temperature). When the resistance value increases stepwise with increasing temperature, the heating temperature is fixed.
- FIG. 3 it is a partial perspective cross-sectional view of the aerosol generating device.
- the fixing cylinder 7 is provided with a supporting plate 17 integrally formed with the outer casing 1.
- the fixing cylinder 7 is The bottom portion is provided with a height block 18, and a gap between the height blocks 18 is provided with a gas passage groove 19, and the support plate 17 is provided with a heat insulating tube 5 integrally formed with the support plate 17, and the heat insulation tube 5 is sleeved on
- the supporting plate 17 is provided with a through hole 16 on the outer side of the heat insulating tube 5.
- the supporting plate 17 is further provided with a gas passing plate integrally formed with the outer casing 1.
- the air plate 20 is provided with a detecting hole 15
- the control circuit board 2 is provided with a flow detecting device 14 and the air detecting device 14 is aligned with the detecting hole 15, and the air path is moved according to the air flow.
- the detecting hole 15 In the direction of the air intake hole 10, the detecting hole 15, the through hole 16, the outer side of the heat insulating tube 15, the inner side of the heat insulating tube 15, the air passing groove 19, the vent hole 9, the air detecting hole 10 and the detecting The hole 15 is in communication, and the detecting hole 15 is in communication with the through hole 16 .
- the through hole 16 communicates with the outside of the heat insulating tube 15 , and the outer side of the heat insulating tube 15 and the heat insulating tube 15 Communicating inside, the inside of the insulating tube 15 through the gas communication groove 19, the groove 19 communicates with the air through the vent hole 9.
- the air first enters the outer casing 1 from the air inlet 10, and the air inlet 10 may be provided with a plurality of air intake holes 10, two of which are in the present embodiment, and the air is directed to the air-passing plate 20 due to the pressure difference.
- the detection holes 15 converge to form a gas flow
- the airflow detecting device 14 detects the airflow, and sends a signal to the control circuit board, and the control circuit board controls the supply of the electrodes to generate smoke.
- the airflow detecting device 14 has the advantage that during the user's pumping process. It is necessary to instantaneously atomize, need to provide high temperature, and the heating temperature is often insufficient. It is necessary to control the circuit board to send a signal to reinforce the electrode current.
- the air does not flow, such as the continuous supply of the electrode will result in If the temperature is too high to damage the heating element, the air passes through the detecting hole 15 and then reaches the through hole 16 from the gap between the supporting plate 17 and the air passing plate 20, where the air plate and the supporting plate and the gap between the two are provided.
- the air enters the gap between the outer casing 1 and the heat insulating tube 15 through the through hole 16, that is, the heat insulating tube 15
- the gas bypasses the gap between the heat insulating tube 15 and the fixed cylinder from the top of the heat insulating tube 15, that is, the inner side of the heat insulating tube 15, and the air passes through the spiral heating wire 6 and the heat insulating tube 15,
- the spiral passage formed by the three fixing cylinders 7 reaches the air passage 19, and the advantage of this design is that there is a gap between the outer casing 1 and the heat insulating tube 15, which has good heat insulation effect and does not cause the outer casing 1
- the overheating affects the user experience.
- the airflow is in full contact with the heating wire 6 during the process of passing the long spiral passage to the inside of the heat insulating pipe 15 to preheat the air, so that the air has reached the atomization when it enters the fixed cylinder again.
- the critical temperature provides good preparation for subsequent supply and atomization of the electrode, and achieves the instant effect of atomization immediately after the user sucks. Similar to real smoke, the user experience is improved, and the air passes through the air vent 19 and then passes through the vent hole. 9 reaches the inside of the fixed cylinder 7, providing the air and air temperature required for atomization.
- the annular supply electrode 8 has an " ⁇ " cross section, and the curved portion 12 in the middle of the annular supply electrode has a certain elasticity, which ensures the annular supply electrode 8 and aerosol generation.
- the thickness of the ring electrode with the aerosol-generating article allows a certain tolerance.
- the circuit portion in this embodiment is from the detecting hole 15 to the outer side of the fixed cylinder 7.
- the fixing cylinder 7 is provided with a small hole specially prepared for the electrode to reach the feeding electrode, which needs attention in this embodiment.
- the top of the fixing cylinder 7 is sealed from the inner side of the outer casing 1, otherwise the gas escapes directly from the socket 13.
- the heating component can also be integrally provided with the fixed cylinder as an electrothermal film ceramic, and the electric heating film is electrically connected to the control circuit board.
- This structure is more convenient in actual production, and the heating component is disposed inside the ceramic body. It is integrally formed with the fixed cylinder, but there is a gap between the fixed cylinder and the heat insulating tube, and the airflow may not be too smooth.
- Aerosol generating device embodiment 2 Aerosol generating device embodiment 2
- the present embodiment improves the electrode portion on the basis of the embodiment 1, and expands the two supply electrodes into five electrode electrodes.
- the first supply electrode 41, the second supply electrode 42, the third supply electrode 43, the fourth supply electrode 44, and the fifth supply electrode 45, respectively, are provided with a spring and a bump.
- the structure, as shown in FIG. 4, one end of the elastic piece of the first supply electrode 41 is caught in the first supply electrode slot 46, and the other end provided with the bump can still swing in the first supply electrode slot 46, and the power supply is also ensured.
- the thickness of the donor electrode and the aerosol-generating article are matched to allow a certain tolerance.
- the electrodes at the same height are defined as the same power supply.
- the first supply electrode 41 closest to the insertion hole 13 is symmetrically distributed by two, and the two first supply electrodes 41 are electrically connected, and the second supply electrode 42 is similarly advanced.
- Three supply electrodes 43, fourth supply electrode 44, and fifth supply electrode 4 5 have two.
- a ring of magnetic connecting members 47 is further disposed on the bottom of the fixed cylinder 7 for use with the aerosol generating device, in particular, the electronic cigarette, which can adsorb the matching structure on the electronic cigarette and align and turn on the feeding electrode. .
- the first supply electrode 41, the third supply electrode 43, and the fifth supply electrode 45 provide a positive voltage
- the second supply electrode 42 and the fourth supply electrode 44 provide a negative voltage.
- the step of heating atomization of the aerosol-generating article in particular, for the further optimization of the heating of the non-combustion smoke, firstly, in the case of sufficient heat supply, the fifth supply electrode 45 is positively applied by the control circuit board signal.
- the voltage, the fourth supply electrode 44 is applied with a negative voltage by the control circuit board signal, and the remaining supply electrodes are in a high impedance state without voltage, and the aerosol generating product is matched with the fourth supply electrode 44 and the fifth supply electrode 45.
- the heating section is in a heating state to heat atomize the heated non-combustion smoke.
- the control circuit board 2 After the airflow detecting device 14 performs the counting five times, the control circuit board 2 reaches a preset threshold value, and the signal is turned off after the section has been exhausted.
- the positive electrode voltage of the supply electrode 45 causes the fifth supply electrode 45 to be in a high impedance state while supplying a forward voltage to the third supply electrode 43, so that the fourth supply electrode 44 and the third supply electrode 4 are provided.
- the heating section of the suitable aerosol-generating product is in a state of heat, heating and atomizing the heated non-combustion smoke, and sequentially heating the non-combustion smoke step by step, so that the heating non-combustion smoke has the characteristics of using real smoke. It is more uniform and continuous in terms of the amount of smoke generated.
- the first supply electrode 41, the third supply electrode 43, and the fifth supply electrode 45 simultaneously provide a positive voltage
- the second supply electrode 42 and the fourth supply electrode 44 provide a negative voltage. At this time, all the heating segments generate heat at the same time to generate a large amount of smoke. The user smokes.
- the range is not limited to only two, and there may be three or more or less, and although this embodiment is only provided
- the first supply electrode 41, the second supply electrode 42, the third supply electrode 43, the fourth supply electrode 44, and the fifth supply electrode 45 are understood to be not limited to the range of the first to fifth supply electrodes 41 to 42. There may even be more such as the sixth supply electrode and the seventh supply electrode, and it may be less depending on the situation.
- the embodiment is different from the aerosol generating device embodiment 1 in that the power supply spring probe electrode includes two positive spring probe electrodes 21 and Two negative spring probe electrodes 22, all of which are inserted through the wall of the fixed cylinder 7 and disposed on the fixed cylinder 7, and the two positive spring probe electrodes 21 are electrically connected and at the same height, two negative springs
- the probe electrodes 22 are also electrically connected at the same height.
- the spring probe electrodes have the advantages of facilitating the supply of the electrodes and reducing the processing cost, and have a good use effect in the actual production process.
- Aerosol-generating article embodiment 1 Aerosol-generating article embodiment 1
- the present embodiment is an aerosol-generating article, in particular, a heated non-combustion fumes used in combination with the aerosol generating device embodiment 1, as shown in FIG. 8, which is an aerosol-generating article for heating the non-combustible smoke, including
- the nozzle 33 is disposed at one end, and the tube shell 34 of the peripheral device.
- the tube shell 34 is made of refractory paper material, and the tube shell 34 is sequentially provided with an atomization section 31, a transmission section 32, and a nozzle section 33.
- the atomization section 31 is internally provided with a heating non-combustion material and a heating element.
- the heating non-combustion material is a porous loose structure, and the heating non-combustion material contains a raw material for generating smoke, and the outer side of the casing 34
- the wall is provided with a ring-shaped electrode 35 and a ring-shaped electrode 36.
- the heating element is a resistance wire 39 printed on the inner side wall of the tube casing 34, and the resistance wire 39 is connected On the annular electrode, the electric resistance wire 39 is placed in contact with the heated non-combustion material.
- the heating non-combustion raw material is not limited to tobacco silk, and may be some plant fibers with an aerosol forming agent, or nicotine-containing particles, or some other porous porous material having gas permeability. These materials absorb the aerosol-forming agent and have the function of heating the non-combustible material, which is heated and atomized into smoke for human consumption.
- Aerosol-generating article embodiment 2 Aerosol-generating article embodiment 2
- This embodiment is an aerosol-generating article, specifically a heated non-combustion fumes for use with the aerosol generating device embodiment 2, as shown in Fig. 9, this embodiment is the basis of the aerosol-generating article embodiment 1.
- the number of ring electrodes is increased, and the purpose thereof is also designed in accordance with Embodiment 2 of the aerosol generating device.
- the specific use and working process are described in detail in Embodiment 2 of the aerosol generating device, and in this embodiment, the tube is removed.
- the shell is different from the aerosol-generating article embodiment 1, and the structures in the envelope are all the same. Therefore, the specific arrangement of the shell of the present embodiment will be described here.
- the envelope 20 itself is a paper material having high temperature resistance.
- the envelope 20 Before the heating of the non-combustion cigarette package, the envelope 20 is rectangular in a state of being unfolded and tiled, and the front surface of the envelope 20 is first. Ring electrode 106, second ring electrode 107, third ring electrode 108, fourth ring electrode 109, fifth ring electrode 110, first ring electrode 106, second ring electrode 107, third ring electrode 108, fourth ring electrode 109.
- the fifth ring electrodes 110 are parallel to each other, and both ends of all the ring electrodes are disposed on two opposite sides of the tube shell 20.
- the width of the ring electrodes must be smaller than the width between the ring electrodes, otherwise the short circuit is likely to occur.
- the heating element of the embodiment is a heating strip.
- the reverse side of the tube shell 100 is provided with a heating strip.
- the heating strip is similar to the electric resistance wire by electric current heating, and the heating strip is printed. Disposed on the package 100, as shown in FIG.
- the heating strip is divided into a first heating section 111, a second heating section 112, a third heating section 113, and a fourth heating section 114, and the tube casing is further provided with a first
- the conductive lead strip 105, the second conductive lead strip 104, the third conductive lead strip 103, the fourth conductive lead strip 102, and the fifth conductive lead strip 101 are connected to the first conductive lead strip 105 and the second conductive strip 105.
- the second heating section 112 is connected between the second conductive lead strip 104 and the third conductive lead strip 103
- the third heating section 113 is connected between the third conductive lead strip 103 and the fourth conductive lead strip 102.
- the fourth heating section 114 is connected between the fourth conductive lead strip 102 and the fifth conductive lead strip 101.
- the first conductive lead strip 105, the second conductive lead strip 104, the third conductive lead strip 103, and the fourth conductive lead a strip 102, a fifth conductive strip 101 and a first ring electrode 106, a second ring electrode 107, a third ring electrode 108, Four annular electrode 109, fifth electrode 110 on the annular envelope 100 is disposed directly opposite to the same height.
- the first conductive lead strip 105, the second conductive lead strip 104, the third conductive lead strip 103, the fourth conductive lead strip 102, and the fifth conductive lead strip 101 have a lower resistance value and do not cause heat generation, and the purpose is to prevent the tube.
- the temperature of the shell 100 at the edge of the joint after being packaged into a tubular shape is too high, and the seam of the final packaged tubular shell 100 is cracked due to the property of thermal expansion and contraction of the material.
- an extended substrate 51 is added on the basis of the envelope 50, and the extended substrate 51 is designed in a curled form.
- the extension substrate 51 has a spiral cross section, and the extension substrate 51 is provided with a resistance wire 52.
- the heating element of the embodiment is a resistance wire 52, and the non-combustion material 53 is heated to be extended by the substrate 51.
- the distance between the substrate-by-layer extended substrates 51 is only 1 mm to 2 mm, thereby ensuring heating of the non-combustion raw material 53 and uniform heating.
- the present embodiment is for heating non-combustion smoke, and the extension substrate is modified in consideration of actual production convenience, and the extension substrate is replaced with a separately processable heat-generating sheet 67 on the heat-generating sheet 67.
- the junction of the ring electrode 65 is a conventional metal wire or printed circuit, the resistance of which is much smaller than that of the resistance wire 66, and the protection of the temperature of the first ring electrode 64 and the second ring electrode 65 is also considered.
- the reference numerals in FIG. 13 are described: the atomization section 61, the transmission section 62, the nozzle section 63, the first ring electrode 64, the second ring electrode 65, the resistance wire 66, and the heat generating sheet 67.
- aerosol-generating article embodiment 3 and the aerosol-generating article embodiment 4 only illustrate some preferred embodiments of the extended substrate arrangement, and the extended substrate should be in any other form, but The provision of a heating wire on the substrate is to be understood as the scope of protection of the present invention.
- the present embodiment is an electronic cigarette, an aerosol-generating product, including a casing 70 having a peripheral, a suction nozzle 72 disposed at one end of the casing 70, and a support member 71 disposed at the other end.
- the air inlet 83 on the support member 71 is further provided with an iron attracting member 85 for magnetic connection with the aerosol generating device, which can be accurately and timely adsorbed in the fixed cylinder of the aerosol generating device during use, and has an automatic pair
- the casing 70 includes an atomizing section, a transmitting section and a nozzle section in sequence, and the atomizing section is internally provided with an oil-containing body 76, a heating element 78, and an airflow passage 77, in this embodiment
- the oil-containing body 76 is composed of a liquid permeating member which is a microporous ceramic, the oil-containing body 76 has a tubular shape, and an air flow passage 77 and a heat generating member 78 are disposed therein, and the air flow passage 77 is provided.
- the heating resistor wire 78 is disposed in the steam flow passage, and the side wall of the shell 70 is provided with four annular electrodes for use with the aerosol generating device, respectively An annular electrode 79, a second annular electrode 80, and a third annular electric 81.
- the fourth annular electrode 82 is electrically connected to the heating element 78 through the conductive sheet 84.
- the atomizing section and the transmitting section are provided with a liquid storage chamber 74.
- the chamber is also provided in a hollow annular shape, and the soot liquid storage chamber 74 is provided with an opening and communicates with the oil-containing body 76, since the opening is small as shown in FIG.
- This embodiment can be used in conjunction with an aerosol generating device having four supply electrodes.
- the oil body may be a combination of a smoke paste or a liquid exudate and a smoke liquid.
- the smoke paste is actually a solid smoke liquid containing a coagulant, and may also include tobacco extract, Natural extracts, food flavors and other additives, which can be atomized to produce smoke, liquid seepage and smoke liquid, only the liquid smoke can be atomized and the liquid seepage is only temporary storage of smoke liquid, so it is necessary to add a little distinguish.
- the invention has the following advantages: 1.
- the electrode arrangement mode of the aerosol generating device is improved, and the use of the heated non-burning smoke and the electronic cigarette is compatible, which provides a smoother connection for heating the intake end of the non-burning smoke or the electronic cigarette.
- Efficient setting method 2.
- the feeding electrode for heating non-burning smoke is improved, and the non-burning smoke is heated to have the same experience as the real smoke.
- the electrode of the electronic cigarette has been improved, and the use is more convenient and comfortable. 4.
- Preheating the airflow entering the heated non-combustion smoke and the electronic cigarette increases the amount of smoke generated.
Landscapes
- Electrostatic Spraying Apparatus (AREA)
Abstract
气溶胶生成装置,包括外壳体(1)和内置的电源(3)及控制电路板(2),外壳体(1)设有插孔(13),插孔(13)下设有容纳气溶胶生成制品的固定筒(7),固定筒(7)上设有导电部件和加热部件,导电部件包括设置在固定筒(7)侧壁上的至少两个供电极(8)。气溶胶生成制品,一端设置的吸嘴(33),外设的管壳(34),管壳(34)的侧壁上设有至少两个圆环状电极(35)(36),环状电极(35)(36)与气溶胶生成装置的供电极(8)相配适。有益效果:1.对气溶胶生成装置的电极设置方式进行了改进,兼容加热非燃烧烟和电子烟的使用,使进气端为更通畅。2.对加热非燃烧烟的供电极进行了改进,方便使用的同时使加热非燃烧烟具有真烟一次性使用的体验。3.对电子烟的供电极进行了改进,更为便捷。
Description
本发明属于气溶胶生成制品及气溶胶生成装置技术领域,具体涉及具有内置发热元件的气溶胶生成制品及气溶胶生成装置。
气溶胶生成制品及气溶胶生成装置是一种新型的电操作吸烟的装置,不同以往的的电子烟具和加热非燃烧烟具。
电子烟是一种模仿卷烟的电子产品,有着与卷烟一样的外观、烟雾、味道和感觉。它是通过雾化等手段,将尼古丁等变成蒸汽后,让用户吸食的一种产品,最早于1963年开始,美国人赫伯特A吉尔伯特研发了一种无烟非香烟的装置,这是一种通过加热尼古丁溶液,产生蒸汽气体的一种设备。1965年,他的研发专利获得正式批准,同年吉尔伯特的无烟非香烟发明理念首次在最流行的力学杂志中被提到。不过很遗憾的是,1967年吉尔伯特寻找公司进行电子烟量产的时候,并没有获得支持。此后,吉尔伯特的无烟非香烟的设备开始慢慢淡化,直至消失。
电子烟具在中国是由申请人韩力于2003年申请的一种非可燃性电子雾化香烟,该专利中提到:将烟碱的水、醇溶液微喷雾化,经口吸入肺中吸收,该装置包括壳体、高频发生器、烟碱贮液及容器、微喷雾化器、气流传感器及附件组成的整体。基本确立的现代电子烟的组成部件以及工作方式,由于吸烟有害健康,提倡戒烟,电子烟变流行起来。
加热非燃烧烟具是菲利普莫里斯生产公司在1989年申请了一种新型电子香烟制品的专利(申请号89104827.8),开创了加热非燃烧卷烟这一新型烟草制品领域。该设计包含一种碳质热源,通过其燃烧产生热量,该热量传递给香烟段产生加香烟雾,炭质热源和香料段被混装于圆柱形空心陶瓷套管内。香烟制品基本上不产生外溢烟雾。该专利采用炭棒作为加热源,炭棒为一次性用品,无法重复使用。为了实现加热器具的重复使用,菲利普莫里斯生产公司于1994年申请了一种用于将烟草香味送给吸烟者的至少具有一个电加热器的吸烟系统的卷烟(申请号:94102530.6)。所述卷烟包括:一个承载管,所述承载管具有纵向相互分开的第一和第二端部和具有第一和第二表面,第一表面在第一和第二端部之间围出一个腔,第二表面有一个用来贴靠在一个电加热器上的区域;以及一层烟香物质层,所述烟香物质层配置在承接管第一表面上,在受到加热时在腔内产生送给吸烟者的烟草香味,其中所述承接管和烟香物质层容许横向气流流入腔内,该专利采用电加热的方式,通过辐射的方式加热烟丝释放烟雾,该加热方式热效率低,产生的烟雾量少。为了改善加热均匀以及烟雾产生量,菲利普莫里斯生产公司在2012年中国的涉外专利(申请号201280060098.9)中提到具有改进的温度分布的气雾产生装置对加热装置的发热部分进行了改进,这种气雾产生装置构造成接收气雾形成基体,并且构造成使用内部加热器和外部加热器两者而加热气雾形成基体,该内部加热器定位在基体内,该外部加热器定位在基体外。内部和外部加热器两者的使用允许每个加热器在比当单独使用内部或外部加热器时可能要求的低的温度下操作。通过在比内部加热器低的温度下操作外部加热器,可将基体 加热成具有比较均匀的温度分布,同时装置的外部温度可保持到可接受的低水平。于此同时又带来了新的问题,其内部加热器的累积使用时间一旦过长,渐渐的会出现焦黑的污垢粘覆在内部加热器上,难以清洗,同时也会在后续的吸食烟雾时产生其他物质,导致口感不纯,为了解决该问题,菲利普莫里斯生产公司索性将发热部件做成一体化用品,并在2016年在中国申请的涉外专利(申请号201680006286.1)中的提出了具有一体式加热元件的气溶胶生成制品,在专利中提到:气溶胶生成制品包括烟条;定位于所述烟条下游的吹嘴;以及定位于所述烟条内的电阻加热元件,所述电阻加热元件包含从所述烟条的上游端伸出的上游部分,其中所述电阻加热元件的所述上游部分包含至少两个加热器电触点用于当包含所述电阻加热元件的所述气溶胶生成制品插入气溶胶生成装置中时从至少两个装置电触点接收电能的供应。但由于该专利没有对烟条以及电触点做出明确和系统阐述,许多概念都是功能性的模糊定义,没有给出具体的实施过程,使其包括了许多现有的电子烟具。
相对吸食高焦油的卷烟,低焦油的加热非燃烧烟与无焦油的电子烟对人体会更健康,由于电子烟主要原理是加热蒸发烟液产生烟雾,而加热非燃烟主要原理是加热烘烤出来烟草中的烟雾,所以在当前的消费市场一般电子烟与加热非燃烧香烟俩种产品使用时的需要各不相同装置,不同装置的结构也有诸多区别,不利于广泛流通的使用。
需要说明的是,本专利中所说的电子烟是通过加入人工制备的烟液以气溶胶形成剂为载体的通过电加热的方式形成烟雾的气溶胶形成制品。
需要说明的是,本专利所述的烟液又名电子烟液,是种配合电子烟使用的液态状气溶胶形成剂。通过电子烟雾化后,能够产生如香烟一样的雾气(气溶胶)。电子烟液一般是从植物中提取液加入了食用香料,主要成分包括丙三醇(也称甘油)或1,2-丙二醇或和聚乙二醇等溶剂,以及烟草专用香精。部分电子烟液中也有添加烟碱,尼古丁成分,添加烟碱主要是为了其口感更加贴近香烟。
需要说明的是,一般来说,加热非燃烧烟的主要成分会包括植物棵粒或烟草丝或烟叶沫或含尼古丁棵粒,由于加热非燃烧烟实质上没有燃烧,故减少焦油等致癌物质的出现,加热非燃烧烟的加热旨在将有效物质蒸发出来,让使用者产生与真烟无异的感受。
发明内容
在当前的形势下提供一种便捷的兼容电子烟和加热非燃烧烟,同时使加热非燃烧烟如真烟一般具有一次性使用的功能的新产品势在必行。
本发明在现有技术的技术基础上改进,提供在同一个设备装置上电子烟和加热非燃烧香烟的均可交换使用的技术方案,具体来说是一种气溶胶生成装置及气溶胶生成制品。
气溶胶生成装置,包括外壳体和内置的电源及与电源电连接的控制电路板,所述外壳体设有插孔,所述的插孔下设有容纳气溶胶生成制品的固定筒,所述的固定筒底部设有通气孔,所述的外壳体上设有进气孔和与电源连接的控制开关,所述的进气孔与通气孔之间通过气路连通,所述的固定筒上设有导电部件和加热部件,所述的导电部件包括设置在固定筒侧壁上的至少两个供电极,所述的供电极与控制电路板电连接,当气溶胶生成制品 插设在所述的固定筒内时,导电部件与气溶胶生成制品电连接。
气溶胶生成装置使用时只需将气溶胶生成制品插入固定筒内,导电部件导通,通过开关控制向供电极供电,则可使气溶胶生成制品产生烟雾。
气溶胶生成装置的优点在于,将供电极设置在插孔的侧壁,摆脱常规的将电极设置在气溶胶生成制品底端的结构,为加热非燃烧烟或电子烟的进气端提供了更通畅和高效的进气方式,首先假如电极设置在底端,要考虑气溶胶生成制品和气溶胶生成装置的对接问题,如果是采用插针的电连接方式使用时间一长则必然出现磨损甚至断路情况,其次考虑到气溶胶生成制品的进气问题,对加热非燃烧烟来说都是从底端进气,如果在底端设置电极显然将会影响到进气的效率,从而影响到热传递和发热效率,对电子烟来说通常都是采用雾化段、传递段、吸嘴段这种结构,雾化段在底端,如果电极设置在底端同样将会影响到进气效率,同时一旦出现烟液滴落的情况首先将会污染到供电极,不但影响气溶胶生成装置的使用寿命,而且对一些后续鉴别程序例如用阻抗检测烟类别以及吸烟气流量的检测产生影响。
优选的,所述的通气孔下设有气流检测装置,所述的气流检测装置连接控制电路板。气流检测装置的目的在于当正在抽吸使用,控制向供电极提供电流或是提供更高的电流,使气溶胶生成制品迅速产生烟雾,有抽真烟的口感,当处在抽吸使用间隙时,限制或限定供电极的电流,避免气溶胶生成制品温度过高而烧坏加热元件。
优选的,所述的供电极之间并联设置有阻抗检测装置,所述的阻抗检测装置连接控制电路板。阻抗检测装置的目的在于对插设的的气溶胶生成制品进行识别,加热非燃烧烟和电子烟的加热元件的阻抗是不同的,阻抗检测装置将阻抗的数据提供给控制电路板,控制电路板对气溶胶生成制品识别后采用不同电流进行供电,更为优选的通过对不同的加热非燃烧烟或电子烟的口味或品种的发热元件的阻抗进行测试,识别后采用更为精准的电流对气溶胶生成制品进行供电加热。
优选的,所述的插孔内还设有加热部件,所述的加热部件为设置在固定筒外壁上的喂热丝,所述的喂热丝呈螺旋状缠绕在固定筒上,所述的喂热丝与控制开关电连接,喂热丝的目的类似发动机的预热过程,在阻抗检测装置检测到有气溶胶生成制品存在时,喂热丝开始喂热,喂热的温度大致在100-200摄氏度,喂热的好处是均匀的提高了气溶胶生成制品中含油体或加热非燃烧原料的温度,使其距离雾化温度的临界点更近,同时也不至使气溶胶生成制品开始雾化,一旦气溶胶生成制品内部的发热元件发热,则可使温度迅速达到雾化温度,不会出现吸冷烟的情况,也使气溶胶生成制品内的温度变化更为平和,提升了吸烟的口感。插腔内设有加热部件另一个有益的作用在于,当插入普通没有内置发热元件的加热非燃烧香烟时,可以通过控制电源开关手动选择功能,让固定筒的温度升至300~450摄氏度,也能将普通没有内置发热元件的加热非燃烟中的烟雾烘烤出来,只是效果会相对于内置有发热元件的加热非燃烧烟会烟雾量较少。
优选的,加热部件与固定筒一体设置为电热膜陶瓷,所述的电热膜与控制电路板电连接,这种结构在实际生产时更为便捷,加热部件设置在陶瓷体的内部,与固定筒一体成型,无需在固定筒外加设减少工序,较为便捷。
气溶胶生成制品为加热非燃烧烟,包括有一端设置的吸嘴,外设的管壳,所述的管壳依次包括雾化段、传递段、吸嘴段,所述的雾化段内置设有加热非燃烧原料和发热元件,所述的加热非燃烧原料包括有植物棵粒或烟草丝或烟叶沫或含尼古丁棵粒,所述的管壳的侧壁上设有至少两个圆环状电极,所述的发热元件为电阻丝,所述的电阻丝连接在圆环状电极上,所述的电阻丝与加热非燃烧原料接触设置在一起。
抽吸使用时,对圆环状电极进行供电,发热元件发热加热雾化段内的加热非燃烧原料产生烟雾,烟雾产生温度较高,通过传递段的降温将高温气体液化成烟雾,并从吸嘴段抽入使用者口中。
加热非燃烧烟在管壳的侧壁上设有至少两个圆环状电极,是与气溶胶生成装置内的供电极配合使用的,该结构的优点在于,圆环状电极不需要考虑当加热非燃烧烟插入插孔时还需寻找电极的问题,只需将加热非燃烧烟插入到一定的深度后自然与供电极连接在一起,圆环状电极还有一个优点在于易实施,首先加热非燃烧烟的管壳一般采用纸质进行包装,将耐一定温度的纸将内部卷圈后固定,事前只需在纸张上通过印刷或粘贴等方式设出一条导电长条,卷圈后自然形成圆环状电极。
气溶胶生成制品为一次性使用的电子烟,包括有外设的管壳,所述的管壳一端设置的吸嘴,另一端设置的支撑件及设在其上的进气口,所述的管壳依次包括雾化段、传递段、吸嘴段,所述的雾化段内置设置有含油体、发热元件、气流通道,所述的含油体呈管状,气流通道和发热元件设在在其中,所述的气流通道与进气口连通,所述的加热电阻丝设置在汽流通道内,所述的管壳的侧壁上设有至少两个与气溶胶生成装置配合使用的圆环状电极,所述的圆环状电极与发热元件电连接。
抽吸使用时,对圆环状电极进行供电,发热元件发热,含油体受热产生烟雾,气流则从进气口进入依次经过雾化段、传递段、吸嘴段送入使用者口中,不同于加热非燃烧烟的设置,为了防止漏油在电子烟的底端设置了支撑件,目的在于固定好含油体同时方式含油体内的油液滴落。
圆环状电极,是与气溶胶生成装置内的供电极配合使用的,该结构的优点在于,圆环状电极不需要考虑当加热非燃烧烟插入插孔时还需寻找电极的问题,只需将加热非燃烧烟插入到一定的深度后自然与供电极连接在一起
需要说明的是本专利中所指的“底端”、“底部”是指当气溶胶生成制品和气溶胶生成装置处于工作状态下时,以气流运行的路线为方向处于上游的位置或部位,本专利中所指的“顶端”、“顶部”是指当气溶胶生成制品和气溶胶生成装置处于工作状态下时,以气流运行的路线为方向处于下游的位置或部位。
本发明有益效果在于:1.对气溶胶生成装置的电极设置方式进行了改进,同时兼容加热非燃烧烟和电子烟的使用,为加热非燃烧烟或电子烟的进气端提供了更通畅和高效的设置方式2.对加热非燃烧烟的供电极进行了改进,在方便使用的同时,使加热非燃烧烟具有真烟一次性使用的体验。3.对电子烟的供电极进行了改进,使用更为便捷,舒适。4.对进入加热非燃烧烟和电子烟的气流预先加热,提高了烟雾生成量。
图1为气溶胶生成装置的具体实施例1的剖面示意图。
图2为气溶胶生成装置的具体实施例1中固定筒的立体示意图。
图3为气溶胶生成装置的体实施例1的部分立体剖面示意图。
图4为气溶胶生成装置的具体实施例1中固定筒底部的立体示意图。
图5为气溶胶生成装置的具体实施例2的剖面示意图。
图6为气溶胶生成装置的具体实施例2中固定筒的剖视图。
图7为气溶胶生成装置的体实施例3的部分立体剖面示意图。
图8为气溶胶生成制品的具体实施例1的结构示意图。
图9气溶胶生成制品的具体实施例2的结构示意图。
图10为气溶胶生成制品的具体实施例2的管壳的正面展开示意图。
图11为气溶胶生成制品的具体实施例2的管壳的反面展开示意图。
图12为气溶胶生成制品的具体实施例3的雾化段的截面图。
图13为气溶胶生成制品的具体实施例4的立体剖面示意图。
图14为气溶胶生成制品的具体实施例4的雾化段的截面示意图。
图15为气溶胶生成制品的具体实施例4的使用时的结构示意图。
图16为气溶胶生成制品的具体实施例5的结构示意图。
下面结合附图对本发明的具体实施方式进行进一步说明。
首先需要说明的是,便于说明书附图的清晰,所有的说明书附图中省略了将导线部分画出,说明书中如出现:电连接,电性连接,导线连接等词语时应理解为所述的两个部件之间使用了导线连接,两部件之间的电位相等,即使说明书附图中没有画出,此处导线应当理解为广义上的导线包括直接用金属或石墨烯等但凡使两个部件之间电位相等的元件。
气溶胶生成装置实施例1
如图1所示,本发明的气溶胶生成装置,包括外壳体1和内置的电源3及控制电路板2,所述外壳体1设有插孔13,所述的插孔13下设有容纳气溶胶生成制品的固定筒7,所述的固定筒7底部设有通气孔9,通气孔9下设有气流检测装置14,所述的气流检测装置14连接控制电路板2,所述的外壳体1上设有与电源3连接的控制开关4和进气孔10,所述的进气孔10与通气孔9连通,所述的固定筒7上设有导电部件和加热部件,本实施例中加热部件为喂热丝6,所述的导电部件为固定筒7和设置在固定筒7侧壁上的两个供电极8,本实施例中供电极为环形供电极8,所述的环形供电极8与控制开关4通过导线电连接,当气溶胶生成制品插入插孔13内时,导电部件与气溶胶生成制品内设的发热元件导通。本实施例中环形的供电极8上设有突点11,设置所述的突点11的目的在于夹紧气溶胶生成制品,使得供电极8与圆环状电极之间的接触更加紧密,减少接触电阻。
如图2所示,为实施例1中固定筒的立体示意图,本实施例中固定筒7的外侧壁上设有喂热丝6,所述的喂热丝6呈螺旋状缠绕在固定筒7上,所述的喂热丝6与控制开关4电连接,所述的喂热丝6可以采用ptc材料,喂热的温度大致在100-200摄氏度,该材料 有超过一定的温度(居里温度)时,它的电阻值随着温度的升高呈阶跃性的增高,从而使发热温度固定。
如图3所示,为气溶胶生成装置的部分立体剖面示意图,所述的固定筒7下设有与外壳体1一体成型的支撑板17,如图4所示,所述的固定筒7的底部设有垫高块18,垫高块18之间间隙设置有过气槽19,所述的支撑板17上设有与支撑板17一体成型的隔热管5,隔热管5套设在固定筒7上,所述的支撑板17在隔热管5的外侧设有过孔16,如图1所示,所述的支撑板17下方还设有与外壳体1一体成型的过气板20,所述的过气板20上设有检测孔15,所述的控制电路板2上设有气流检测装置14设置且气流检测装置14对准检测孔15,所述的气路按气流运动的方向上依次包括进气孔10、检测孔15、过孔16、隔热管15的外侧、隔热管15的内侧、过气槽19、通气孔9,所述的进气孔10与检测孔15连通,所述的检测孔15与过孔16连通,所述的过孔16与隔热管15的外侧连通,所述的隔热管15的外侧与隔热管15的内侧连通,所述的隔热管15的内侧与过气槽19连通,所述的过气槽19与通气孔9连通。在用户抽吸使用的过程中,空气首先从进气孔10进入外壳体1内,进气孔10可以设有多个,本实施例中有两个,空气由于压强差向过气板20上的检测孔15汇聚形成气流,气流检测装置14检测到气流,并向控制电路板发出信号,控制电路板控制供电极供电,产生烟雾,该气流检测装置14的优点在于在用户抽吸的过程中是需要瞬间雾化,需要提供高温,喂热温度往往不够,需要控制电路板发出再次加强供电极电流的信号,相对的,在用户抽吸间隙,空气不流动,如供电极持续供电则会导致温度过高而损害发热元件,空气经过检测孔15后再由支撑板17与过气板20之间间隙到达过孔16,此处设置过气板和支撑板以及两者之间的间隙,目的在于防止固定筒内的温度过高影响气流检测装置的正常工作,空气再由过孔16进入外壳体1与隔热管15之间的间隙,也就是隔热管15的外侧,气体在从隔热管15的最顶部绕过进入隔热管15与固定筒之间的间隙,也就是隔热管15的内侧,空气经由螺旋状喂热丝6与隔热管15、固定筒7三者形成的螺旋通道到达过气槽19,此种设计的优点在于:首先在于外壳体1与隔热管15之间有间隙,起到了良好的隔热作用不会导致外壳体1过热影响用户使用体验,其次气流在隔热管15的内侧经过较长的螺旋通道到达19的过程中与喂热丝6充分接触进行预热,使空气再进入固定筒内时已经达到雾化的临界温度,为后续的供电极供电、雾化提供了良好的准备,达到用户一吸就能立刻雾化的瞬间效果,与真烟类似,提高用户体验,空气经过气槽19后再经过通气孔9到达固定筒7内部,提供雾化时需要的空气以及空气温度。
如图3所示,固定筒7内,所述的环形供电极8的截面呈“Ω”形,环形供电极中部的弧形部12具有一定的弹性,保证了环形供电极8与气溶胶生成制品之间连接的紧密性的前提下,使环形电极与气溶胶生成制品的粗细大小匹配允许一定的容差。
需要说明的是,本实施例中的电路部分是从检测孔15,到达固定筒7的外侧,固定筒7上设有专门为供电极准备的小孔抵达供电极的,本实施例中需要注意的是,固定筒7的顶部与外壳体1内侧是密封设置的,否则气体直接从插孔13逸出。
需要说明是的,加热部件也可与固定筒一体设置为电热膜陶瓷,所述的电热膜与控 制电路板电连接,这种结构在实际生产时更为便捷,加热部件设置在陶瓷体的内部,与固定筒一体成型,但固定筒和隔热管之间需存在间隙,不可过紧导致气流不通畅。
气溶胶生成装置实施例2
如图5所示,为气溶胶生成装置的另一个实施例本实施例,本实施例在实施例1的基础上对供电极部分进行了改进,将两个供电极扩展成为五个供电极,如图6所示,分别为第一供电极41、第二供电极42、第三供电极43、第四供电极44、第五供电极45,五个供电极都是采用弹片加凸点的结构,如图4所示,第一供电极41的弹片的一端卡在第一供电极槽46内,设有凸点的另一端仍然可以在第一供电极槽46内摆动,同样保证了供电极与气溶胶生成制品之间连接的紧密性的前提下,使供电极与气溶胶生成制品的粗细大小匹配允许一定的容差,本实施例中处于同一高度的供电极都定义为同一个供电极,如图4所示,距离插孔13最近的第一供电极41左右对称分布有两个,两个第一供电极41之间都是电连接的,依次类推第二供电极42、第三供电极43、第四供电极44、第五供电极45均有两个。在固定筒7的底部上还设有一圈磁性连接件47,用于配合气溶胶生成装置具体来说是电子烟使用,能吸附电子烟上的相配适结构并使之对准并导通供电极。
然而本实施例中,第一供电极41、第三供电极43、第五供电极45提供正极电压,第二供电极42、第四供电极44提供负极电压,此种设置方式优点在于可逐级的对气溶胶生成制品进行加热雾化,具体来说是针对加热非燃烧烟的进一步优化的设置方式,首先在喂热充分的情况下,第五供电极45受控制电路板信号施加了正极电压,第四供电极44受控制电路板信号施加了负极电压,其余的供电极则处于高阻抗的状态没有电压,则与第四供电极44和第五供电极45配适的气溶胶生成制品的加热段处于发热状态对加热非燃烧烟进行加热雾化,在气流检测装置14进行5次计数后,控制电路板2达到了预先设置的阀值认为该段已经抽完则发出信号关闭第五供电极45的正极电压,使第五供电极45处于高阻抗状态,同时向第三供电极43提供正向电压,使得与第四供电极44和第三供电极43配适的气溶胶生成制品的加热段处于发热状态对加热非燃烧烟进行加热雾化,依次类推对加热非燃烧烟进行分段逐级加热,使得加热非燃烧烟更具有真烟的使用特点,就产生烟雾量来说较为均匀持续,不同于在先的其他加热非燃烧烟在开始吸食时烟雾大而后续较小的情况,同时根据用户的使用需求,为了大烟雾的口感,亦可以选择第一供电极41、第三供电极43、第五供电极45同时提供正极电压,第二供电极42、第四供电极44提供负极电压,此时所有的加热段同时发热产生大量烟雾,供用户吸食。
需要说明的是,同时本实施例中虽然同一供电极有两个,可以理解其范围不局限于只有两个的情况,可以有三个或更多或更少,同时本实施例虽然只设有了第一供电极41、第二供电极42、第三供电极43、第四供电极44、第五供电极45,可以理解其范围并不局限于5第一供电极41至第五供电极42,甚至可以出现更多如第六供电极、第七供电极,也可以依据情况更少。
气溶胶生成装置实施例3
如图7所示,为气溶胶生成装置的部分立体剖面示意图,本实施例与气溶胶生成装置 实施例1的区别之处在于,供电极为弹簧探针电极包括两个正弹簧探针电极21和两个负弹簧探针电极22,所有弹簧探针电极都贯穿固定筒7的筒壁并设置在固定筒7上,且两个正弹簧探针电极21电连接并处于相同高度,两个负弹簧探针电极22电连接也处于相同高度,弹簧探针电极的设置优点在于,方便对供电极的供电以及,减少加工成本,在实际生产过程中有良好的使用效果。
气溶胶生成制品实施例1
本实施例为气溶胶生成制品,具体来说是与气溶胶生成装置实施例1相配合使用的加热非燃烧烟,如图8所示,为该加热非燃烧烟的气溶胶生成制品,包括有一端设置的吸嘴33,外设的管壳34,本实施例中管壳34采用耐火纸质材料,所述的管壳34内依次设有雾化段31、传递段32、吸嘴段33,所述的雾化段31内置设有加热非燃烧原料和发热元件,所述的加热非燃烧原料为多孔疏松结构,加热非燃烧原料包含有产生烟雾的原料,所述的管壳34的外侧壁上设有圆环状电极35和圆环状电极36,所述的发热元件为电阻丝39,所述的电阻丝39印刷在管壳34的内侧壁上,所述的电阻丝39连接在圆环状电极上,所述的电阻丝39与加热非燃烧原料接触设置。
需要说明的是加热非燃烧原料并不局限于为烟草丝,还可以是一些粘上气溶胶形成剂的一些植物纤维,或含尼古丁棵粒,或者一些其他的多孔疏松具有透气性能的材料,但凡这些材料吸收气溶胶形成剂就具备了加热非燃烧原料的功能,其受热后雾化成烟供人吸食。
气溶胶生成制品实施例2
本实施例为气溶胶生成制品,具体来说是与气溶胶生成装置实施例2相配合使用的加热非燃烧烟,如图9所示,本实施例是在气溶胶生成制品实施例1的基础上进行了环形电极数量的增加,其目的也是配合气溶胶生成装置实施例2所设计,其具体的使用和工作过程在气溶胶生成装置实施例2中有详细介绍,而本实施例中除管壳与气溶胶生成制品实施例1不同,管壳内的结构均相同,故此处对本实施例的管壳的具体设置方式进行介绍。
如图10所示,管壳20本身是具有耐高温的纸质材料,在该加热非燃烧烟包装前,管壳20是处于展开平铺的状态呈矩形,管壳20的正面设有第一环形电极106、第二环形电极107、第三环形电极108、第四环形电极109、第五环形电极110,第一环形电极106、第二环形电极107、第三环形电极108、第四环形电极109、第五环形电极110互相平行,且所有环形电极的两端设置在管壳20的两条相对的边上,需要注意的是环形电极的宽度必须小于环形电极之间的宽度否则容易出现短路情况。如图11所示为图10管壳展开的反面图,本实施例的发热元件为加热条,管壳100的反面设置有加热条,加热条与电阻丝类似通过电流发热,加热条是通过印刷设置在管壳100上的,如图9所示,加热条分为第一加热段111、第二加热段112、第三加热段113、第四加热段114,管壳上还设有第一导电引条105、第二导电引条104、第三导电引条103、第四导电引条102、第五导电引条101,第一加热段111连接在第一导电引条105和第二导电引条104之间,第二加热段112连接在第二导电引条104和第三导电引条103之间,第三加热段113连接在第三导电 引条103和第四导电引条102之间,第四加热段114连接在第四导电引条102和第五导电引条101之间,第一导电引条105、第二导电引条104、第三导电引条103、第四导电引条102、第五导电引条101与第一环形电极106、第二环形电极107、第三环形电极108、第四环形电极109、第五环形电极110在管壳100上正反相对设置在相同的高度。第一导电引条105、第二导电引条104、第三导电引条103、第四导电引条102、第五导电引条101具有较低的阻值,不会引起发热,目的在于防止管壳100在包装成管状后在合缝边缘处温度过高,由于材料热胀冷缩的性质使最终包装成管状的管壳100的合缝线出现裂开的情况。
气溶胶生成制品实施例3
如图12所示,本实施例为加热非燃烧烟,考虑到对加热非燃烧原料53的充分利用,在管壳50的基础上增设了延长衬底51,延长衬底51设计成卷曲的形式,延长衬底51的截面呈螺线形,延长衬底51上设有电阻丝52,本实施例的发热元件为电阻丝52,加热非燃烧原料53则被延长衬底51一层一层的包裹起来,且逐层的延长衬底51之间间距只有1mm-2mm,从而保证加热非燃烧原料53的加热温度和均匀受热。
气溶胶生成制品实施例4
如图13和图14所示,本实施例为加热非燃烧烟,考虑到实际生产便利,对延长衬底做了改进,将延长衬底替换为可单独加工的发热片67,发热片67上印刷或粘贴设置有电阻丝66,而电阻丝66与管壳60上的第一环形电极64和第二环形电极65电连接,注意图13中的电阻丝66与第一环形电极64和第二环形电极65的连接处为普通的金属线或印刷电路,其电阻远小于电阻丝66,亦是考虑对第一环形电极64和第二环形电极65温度的保护。
对图13中的附图标记介绍:雾化段61、传递段62、吸嘴段63、第一环形电极64、第二环形电极65、电阻丝66、发热片67
如图15所示,可清楚了解到本实施例与气溶胶生成装置实施例1配合使用的情况,具体使用不在赘述。
需要说明的是,气溶胶生成制品实施例3和气溶胶生成制品实施例4仅对延长衬底设置的一些较优的实施例进行了阐述,延长衬底应当可以是其他的任意的形式,但凡在该衬底上设有加热丝的都应当理解为本发明的保护范围。
气溶胶生成制品实施例5
如图16所示,本实施例为电子烟,气溶胶生成制品,包括有外设的管壳70,所述的管壳70一端设置的吸嘴72,另一端设置的支撑件71及设在其上的进气口83,支撑件71上还设有与气溶胶生成装置配合磁性连接使用的吸铁件85,使用时能准确及时的吸附在气溶胶生成装置的固定筒内,具有自动对准供电极的功能,所述的管壳70依次包括雾化段、传递段、吸嘴段,所述的雾化段内置设置有含油体76、发热元件78、气流通道77,本实施例中含油体76由渗液件和烟液组成,所述的渗液件为微孔陶瓷,所述的含油体76呈管状,气流通道77和发热元件78设在在其中,所述的气流通道77与进气口83连通,所 述的加热电阻丝78设置在汽流通道内,所述的管壳70的侧壁上设有四个与气溶胶生成装置配合使用的圆环状电极,分别为第一圆环状电极79、第二圆环状电极80、第三圆环状电极81、第四圆环状电极82,所述的圆环状电极与发热元件78通过导电片84电连接,所述的雾化段和传递段之间设置有烟液存储腔74,烟液储74存腔也是中空环形设置的,所述的烟液存储腔74上设有开口并与含油体76连通,由于开口较小图16中省略。本实施例可与具有四个供电极的气溶胶生成装置进行配合使用。使用过程不在赘述,需要说明的是,含油体可以是烟膏或渗液件和烟液的组合体,烟膏其实是一种固体的烟液其内含有凝固剂,还可以包括烟草提取物、天然提取物、食用香精等一些添加剂,其本身就能进行雾化产生烟雾,渗液件和烟液,中只有烟液能雾化而渗液件只是暂时的保存烟液,故有必要稍加区分。
本发明有益效果在于:1.对气溶胶生成装置的电极设置方式进行了改进,同时兼容加热非燃烧烟和电子烟的使用,为加热非燃烧烟或电子烟的进气端提供了更通畅和高效的设置方式2.对加热非燃烧烟的供电极进行了改进,在方便使用的同时,使加热非燃烧烟具有真烟一样的使用体验。3.对电子烟的供电极进行了改进,使用更为便捷,舒适。4.对进入加热非燃烧烟和电子烟的气流预先加热,提高了烟雾生成量。
Claims (21)
- 气溶胶生成装置,包括有外壳体和内置的电源及与电源电连接的控制电路板,所述外壳体设有插孔,所述的插孔下设有容纳气溶胶生成制品的固定筒,所述的固定筒底部设有通气孔,所述的外壳体上设有进气孔和与电源连接的控制开关,所述的进气孔与通气孔之间通过气路连通,其特征在于:所述的固定筒上设有导电部件和加热部件,所述的导电部件包括设置在固定筒侧壁上的至少两个供电极,所述的供电极与控制电路板电连接,当气溶胶生成制品插设在所述的固定筒内时,导电部件与气溶胶生成制品电连接。
- 根据权利要求1所述的气溶胶生成装置,其特征在于:所述的供电极包括有至少一个正供电极和至少一个负供电极,且所述的正供电极和负供电极交替相间设置在所述的固定筒侧壁上,所述的每一个正供电极和负供电极与控制电路板电连接。
- 根据权利要求2所述的气溶胶生成装置,其特征在于:所述的供电极为导电凸触点或弹性导电片或弹簧探针电极。
- 根据权利要求2所述的气溶胶生成装置,其特征在于:所述的供电极呈圆环形状设置在所述的固定筒侧壁上。
- 根据权利要求1所述的气溶胶生成装置,其特征在于:所述的固定筒内加设有用于与气溶胶生成制品磁性连接的磁性件。
- 根据权利要求1所述的气溶胶生成装置,其特征在于:所述的供电极之间并联设置有阻抗检测装置,所述的阻抗检测装置连接控制电路板。
- 根据权利要求1所述的气溶胶生成装置,其特征在于:所述的加热部件为设置在固定筒外壁上的喂热丝,所述的喂热丝呈螺旋状缠绕在固定筒上,所述的喂热丝与控制电路板电连接。
- 根据权利要求1所述的气溶胶生成装置,其特征在于:所述的加热部件与固定筒一体设置为电热膜陶瓷,所述的电热膜与控制电路板电连接。
- 根据权利要求1-8任意一项所述的气溶胶生成装置,其特征在于:所述的固定筒下设有与外壳体一体成型的支撑板,所述的固定筒的底部设有垫高块,垫高块之间间隙设置有过气槽,所述的支撑板上设有与支撑板一体成型的隔热管,隔热管套设在固定筒上,所述的支撑板在隔热管的外侧设有过孔,所述的气路按气流运动的方向上依次包括进气孔、过孔、隔热管外侧、隔热管内侧、过气槽、通气孔,所述的进气孔与过孔连通,所述的过孔与隔热管外侧连通,所述的隔热管外侧与隔热管内侧连通,所述的隔热管内侧与过气槽连通,所述的过气槽与通气孔连通。
- 根据权利要求9所述的气溶胶生成装置,其特征在于:所述的支撑板下方还设有与外壳体一体成型的过气板,所述的过气板上设有检测孔,所述的控制电路板上设有气流检测装置设置且气流检测装置对准检测孔,所述的气路还包括检测孔,按气流运动的方向所述的检测孔设置在进气孔与过孔之间。
- 一种配合权利要求1-10中气溶胶生成装置的气溶胶生成制品,包括有一端设置的吸嘴,外设的管壳,所述的管壳内依次设有雾化段、传递段、吸嘴段,所述的雾化段内置设有加热非燃烧原料和发热元件,所述的加热非燃烧原料具有多孔疏松结构,其特征在于:所述的管壳的侧壁上设有至少两个圆环状电极,所述的发热元件连接在圆环状电极 上,所述的发热元件与加热非燃烧原料接触设置。
- 根据权利要求11所述的气溶胶生成制品,其特征在于:所述的发热元件为发热片。
- 根据权利要求11所述的气溶胶生成制品,其特征在于:所述的管壳还包括延长衬底,所述的发热元件为电阻丝,所述的电阻丝设置在延长衬底上,所述的延长衬底为耐高温复合膜或耐高温纸。
- 根据权利要求11所述的气溶胶生成制品,其特征在于:所述的延长衬底截面呈螺线形设置,所述的电阻丝密集的设置在延长衬底上。
- 根据权利要求11-14任意一项权利要求所述的气溶胶生成制品,其特征在于:所述的电阻丝分为包含有至少一段的多节加热段,所述的加热段的两端连接在圆环状电极上。
- 一种配合权利要求1-10中气溶胶生成装置的气溶胶生成制品,包括有外设的管壳,所述的管壳一端设置的吸嘴,另一端设置的支撑件及设在其上的进气口,所述的管壳依次包括雾化段、传递段、吸嘴段,所述的雾化段内置设置有含油体、发热元件、气流通道,所述的含油体呈管状,气流通道和发热元件设在在其中,所述的气流通道与进气口连通,所述的发热元件设置在汽流通道内,其特征在于:所述的管壳的侧壁上设有至少两个与气溶胶生成装置配合使用的圆环状电极,所述的圆环状电极与发热元件电连接。
- 根据权利要求16所述的气溶胶生成制品,其特征在于:所述的含油体为烟膏,所述的烟膏由包括烟草提取物、天然提取物、食用香精、凝固剂。
- 根据权利要求16所述的气溶胶生成制品,其特征在于:所述的含油体由渗液件和烟液组成,所述的渗液件包括烟棉或微孔陶瓷或多孔纤维。
- 根据权利要求16所述的气溶胶生成制品,其特征在于:所述的雾化段和传递段之间设置有烟液存储腔,所述的烟液存储腔连通含油体。
- 根据权利要求16所述的气溶胶生成制品,其特征在于:所述的支撑件上还设有与气溶胶生成装置配合磁性连接使用的吸铁件。
- 根据权利要求16-20任意一项权利要求所述的气溶胶生成制品,其特征在于:所述的发热元件包括至少一个加热段,所述的每个加热段的两端连接在圆环状电极上。
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| CN108185537B (zh) | 2020-11-20 |
| CN108185537A (zh) | 2018-06-22 |
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