WO2019071575A1 - Ensemble d'atomisation et système d'atomisation - Google Patents
Ensemble d'atomisation et système d'atomisation Download PDFInfo
- Publication number
- WO2019071575A1 WO2019071575A1 PCT/CN2017/106065 CN2017106065W WO2019071575A1 WO 2019071575 A1 WO2019071575 A1 WO 2019071575A1 CN 2017106065 W CN2017106065 W CN 2017106065W WO 2019071575 A1 WO2019071575 A1 WO 2019071575A1
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- WO
- WIPO (PCT)
- Prior art keywords
- assembly
- rod
- heating
- induction coil
- tobacco
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Ceased
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Classifications
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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
- A24F40/465—Shape or structure of electric heating means specially adapted for induction heating
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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
- A24F40/53—Monitoring, e.g. fault detection
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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
- A24F40/20—Devices using solid inhalable precursors
Definitions
- the present invention relates to the field of electronic cigarettes, and more particularly to an atomizing assembly and an atomizing system.
- the technicians developed atomized electronic cigarettes and electronic flue-cured tobacco.
- the atomized electronic cigarettes form aerosols by atomizing the smoke liquid for smoking by smokers, atomizing
- e-cigarette overcomes the above deficiencies of traditional cigarettes, it can satisfy consumer's dependence on tobacco to a certain extent, but the smoke liquid of e-cigarette is made up of flavor and fragrance, which is not a real cigarette product, and its smoke is light. Lack of tobacco aroma, and can not be widely accepted by consumers.
- the existing low-temperature electronic flue-cured tobacco uses a low temperature (about 100 degrees Celsius) non-combustion method to heat the shredded tobacco.
- the heating temperature is low, the amount of harmful substances generated by heating is small, but the amount of smoke is obviously insufficient.
- the tobacco is heated at a high temperature, the tobacco is easily blackened, carbonized, and the heat distribution is uneven, and it is easy to cause a problem that some of the tobacco has been carbonized and the other portion is insufficient in temperature, thereby causing more harmful. substance.
- How to absorb the aromatic smell of tobacco and to reduce harmful substances to a large extent has become an urgent problem for the tobacco industry.
- the embodiment of the invention provides an atomization assembly and an atomization system capable of improving the heating efficiency of the tobacco rod.
- a first aspect of the embodiments of the present invention provides an atomizing assembly, the atomizing assembly is provided with a receiving cavity, and an inner portion of the receiving cavity is fixedly fixed with an induction coil assembly, and the receiving cavity is used for inserting a fixed tobacco rod
- the receiving cavity includes a first cavity and a second cavity which are oppositely disposed, and the second cavity is fixedly inserted and made of a ferromagnetic material having electrical conductivity.
- a heating assembly extending toward the first cavity for insertion into the induction coil assembly such that the tobacco rod is inserted into the induction via a first cavity of the receiving cavity
- the heating assembly is inserted inside the tobacco rod, and the induction coil assembly is used for the battery rod assembly Electrically coupled to cause the battery rod assembly to pass a high frequency alternating current to the induction coil assembly to heat the heating assembly such that the heating assembly heats the rod to generate smoke.
- the heating assembly includes a base and a heating member, the base abutting the second cavity to cover the base at the second cavity, the base facing the first Extending the direction of a cavity with the heating member to insert the heating member into the induction coil assembly via the second cavity;
- a plurality of first through holes are disposed through the base along the axial direction of the atomizing assembly, so that a flow of air outside the atomizing assembly flows into the tobacco rod through the first through hole.
- the heating member has a tubular structure or a sheet structure, and the heating member has a cross-sectional area smaller than a cross-sectional area of the tobacco rod.
- the induction coil assembly is wound by a wire having electrical conductivity to form a cylindrical shape, and the heating assembly is inserted into the cylindrical induction coil assembly;
- the induction coil assembly includes an induction coil and an inner tobacco tube made of a non-metallic material, the induction coil being wound by a wire having electrical conductivity to form a disk-shaped sheet structure to be formed, After the disk-shaped sheet structure is bent, a cavity is formed, the cavity is sleeved on the outer peripheral wall of the inner pipe, and the heating assembly is inserted into the inner pipe.
- the atomizing assembly includes a tobacco tube provided with the receiving cavity, the receiving cavity is internally provided with a cylindrical receiving member, and the first end of the receiving member is provided with an annular shape a first fixing member, the second end of the receiving member is provided with a second fixing member in a circular shape, and the first fixing member and the second fixing member are used for fixing the receiving member
- the induction coil assembly is abutted between the first fixing member end surface and the end surface of the second fixing member.
- an insulation gap is formed between the outer peripheral wall of the induction coil assembly and the inner peripheral wall of the accommodating member, and the heat insulation gap is provided with a heat insulation member, and the heat insulation member has a cylindrical shape.
- the heat insulating member is made of a material having thermal insulation properties.
- an end surface of the first fixing member extends along an axial direction of the atomizing assembly, and a first abutting arm and a second abutting arm, the first abutting arm and the second abutting arm a slot is formed between the holding arms, so that the receiving member is inserted and fixed in the slot;
- the second fixing member is provided with a first receiving groove in a direction toward the first fixing member.
- the first receiving groove is configured to insert and fix the base,
- the bottom of the groove accommodating the first receiving groove is provided with a second through hole, and the first through hole and the second through hole are electrically connected.
- a bracket is fixedly inserted from an end of the pipe away from the receiving cavity, and a second receiving groove is disposed on an end surface of the bracket facing the receiving cavity, and the second receiving groove is used for inserting Fixing the second fixing member;
- An outer electrode is sleeved and fixed from an end surface of the bracket facing away from the receiving cavity, an inner electrode is inserted and fixed inside the outer electrode, and the outer electrode and the inner electrode are interposed between the outer electrode and the inner electrode for electrically isolating the outer electrode.
- An electrode and an insulating ring of the inner electrode, the outer electrode and the inner electrode being electrically connected to the battery rod assembly.
- a third through hole and a fourth through hole are disposed through the bracket, and the first fixing member is provided with a track to make the first of the induction coil assembly
- the conductive connecting portion sequentially passes through the rail, the first through hole and the third through hole are interposed between the outer electrode and the insulating ring, and the second conductive connecting portion of the induction coil assembly
- the first through hole and the fourth through hole are sequentially inserted and fixed between the inner electrode and the insulating ring.
- the atomization component further includes a temperature detecting component electrically connected to the battery rod assembly through a wire, and the temperature detecting component is when the tobacco rod is inserted into the receiving cavity.
- a processor is disposed in the battery rod assembly or the atomization assembly, and the temperature detecting member is configured to detect the temperature of the smoke in the tobacco rod, and is used to indicate An indication of the temperature of the smoke within the tobacco rod is sent to the processor.
- a second aspect of the embodiments of the present invention provides an atomization system, including the atomization assembly provided in the first aspect of the embodiment of the present invention, a battery rod assembly connected to the atomization assembly, and a tobacco rod.
- the tobacco rod comprises a filter rod and a smoking rod made of tobacco material, and the filter rod is connected to the smoking rod, and when the induction coil assembly is heated by the smoking rod The smoke generated by the smoking rod follows the guiding of the smoking rod, and is filtered by the filter rod and sucked by the user.
- the advantage of using the atomization assembly and the atomization system provided by the invention is that the smoke rod generates smoke under the action of high temperature heating of the heating assembly, so that the smoke generated by the tobacco rod does not contain harmful substances such as nicotine, and can be ensured.
- the tobacco rod can fully release the tobacco-specific aroma components to meet the user's demand for tobacco aroma.
- the heating component is inserted inside the tobacco rod, so that the heating component can uniformly and fully heat the tobacco rod, thereby ensuring that the user smokes the smoke with uniform concentration and protects the smoke.
- the taste of the smoke sucked by the user is blocked, and the atomizing component heats the tobacco rod based on the electromagnetic heating principle, so that the induction coil assembly can quickly heat the heating assembly, and the efficiency of heating the tobacco rod by the electromagnetic heating principle is high. And energy saving and environmental protection.
- FIG. 1 is a schematic overall structural view of an embodiment of an atomization system provided by the present invention.
- FIG. 2 is a partial cross-sectional structural view showing an embodiment of an atomization system according to the present invention
- FIG. 3 is a partial cross-sectional structural view showing another embodiment of the atomization system provided by the present invention.
- FIG. 4 is a schematic view showing a partial explosion connection structure of an embodiment of an atomization system according to the present invention.
- FIG. 5 is a schematic view showing a partial explosion connection structure of another embodiment of the atomization system provided by the present invention.
- FIG. 6 is a schematic view showing a partial explosion connection structure of another embodiment of the atomization system provided by the present invention.
- FIG. 7 is a schematic structural view of an embodiment of an induction coil assembly provided by the present invention.
- FIG. 8 is a schematic diagram of an electrical connection relationship of an embodiment of an atomization system for performing smoke temperature detection according to the present invention.
- FIG. 9 is a schematic structural view of an embodiment of a tobacco rod provided by the present invention.
- Embodiment 1 This embodiment provides an atomization assembly that is applied to an atomization system that is capable of heating a tobacco rod to generate smoke that does not contain harmful substances.
- FIG. 1 An overall structural diagram of an embodiment of an atomization system is provided.
- the atomization system shown in this embodiment includes a tobacco rod 100 made of tobacco material for use in the smoke.
- the rod 100 is heated to generate a mist atomizing assembly 200 and a battery rod assembly 300.
- FIGS. 2 to 5 are schematic cross-sectional structural views of the atomizing assembly 200 with the tobacco rod 100 inserted under different sides, and FIGS. 3 and 4 are exploded connections of the atomizing assembly 200 at different viewing angles. Structure intention.
- the atomizing assembly 200 shown in this embodiment is internally provided with a receiving cavity 201, and the inside of the receiving cavity 201 is inserted and fixed with an induction coil assembly 202, wherein the induction coil assembly 202 is made of a conductive material.
- the atomizing assembly 200 shown in this embodiment further includes a heating assembly 101 having electrical conductivity. Made of ferromagnetic material.
- the specific material for forming the heating assembly 101 is not limited.
- the heating assembly 101 shown in this embodiment may be a ferromagnetic metal material, such as iron, cobalt, nickel, or the like.
- the heating assembly 101 shown in this embodiment may also be a non-metal material, as long as the heating assembly 101 has ferromagnetism and has certain electrical conductivity, and the resistance value of the heating assembly 101 is within a preset range. Therefore, the heating assembly 101 can heat the tobacco rod 100 under the action of electromagnetic heating.
- the accommodating cavity 201 includes a first cavity 2011 and a second cavity 2012 which are oppositely disposed.
- the heating unit 101 is inserted and fixed in the second cavity opening 2012, and the heating assembly 101 extends toward the first cavity opening 2011 to be inserted into the induction coil assembly 202 so that the When the tobacco rod 100 is inserted into the induction coil assembly 202 via the first cavity opening 2011 of the accommodating chamber 201, the heating assembly 101 is inserted inside the tobacco rod 100.
- the atomizing assembly 200 can heat the tobacco rod 100 based on the electromagnetic heating principle.
- the target state is that the tobacco rod 100 is inserted into the induction coil assembly 202 via the first cavity opening 2011 of the accommodating cavity 201, and the heating assembly 101 is inserted into the tobacco rod 100.
- the tobacco rod 100, the heating assembly 101, and the induction coil assembly 202 are disposed opposite each other, that is, in the radial direction of the atomizing assembly.
- the battery rod assembly 300 shown in this embodiment is electrically connected to the induction coil assembly 202.
- the user can press the push switch 301 located on the battery rod assembly 300 as shown in FIG. 1 , and the battery rod assembly 300 and the induction are performed when the push switch 301 is pressed.
- the coil assemblies 202 are electrically connected to each other such that the battery rod assembly 300 passes a high frequency alternating current to the induction coil assembly 202, and the high frequency alternating current generates a high frequency intersection in the induction coil assembly 202.
- a variable magnetic field, a magnetic flux of a high-frequency alternating magnetic field passes through the heating assembly 101 to generate a large amount of annular eddy current inside the heating assembly 101, thereby causing the heating assembly 101 to generate a vortex heat effect to release a large amount of heat so that it is inserted.
- the heating assembly 101 in the tobacco rod 100 heats the tobacco rod 100 to generate smoke, thereby enabling a user to smoke the smoke generated by the tobacco rod 100.
- the heating assembly 101 shown in this embodiment can not only heat the tobacco rod 100 based on the electromagnetic heating principle described above, but the heating assembly 101 can also apply the tobacco rod based on the principle of hysteresis loss. 100 is heated. Specifically, in the case where the battery rod assembly 300 is connected to the induction coil assembly 202 with a high-frequency alternating current, the heating element 101 generates a magnetic state under the action of the induction coil assembly 202. The change, the magnetization of the heating assembly 101 lags behind the magnetic field strength of the induction coil assembly 202, and the hysteresis loss per unit volume of the heating assembly 101 is proportional to the area of the hysteresis loop, which is part of the energy conversion. For thermal energy, the heating assembly 101 heats the tobacco rod 100 based on the generated thermal energy.
- the advantage of heating the tobacco rod 100 by using the atomization system shown in this embodiment is that the tobacco rod 100 generates smoke under the high temperature heating of the heating assembly 101, thereby causing the tobacco rod 100 to be
- the generated smoke does not contain harmful substances such as nicotine, and can ensure that the tobacco rod 100 can fully release the tobacco-specific aroma components, thereby satisfying the user's demand for tobacco aroma.
- the heating assembly 101 shown in this embodiment is disposed inside the tobacco rod 100, so that the heating assembly 101 can uniformly and sufficiently heat the tobacco rod 100, thereby ensuring the user to absorb the concentration.
- the uniform smoke ensures the mouthfeel of the smoke taken by the user, and the atomizing assembly 200 shown in this embodiment heats the tobacco rod 100 based on the electromagnetic heating principle, thereby enabling the induction coil assembly 202 to be fast.
- Heating the heating assembly 101 and passing electromagnetic The heating principle has high efficiency in heating the tobacco rod 100, and is energy-saving and environmentally friendly.
- Embodiment 2 This embodiment exemplifies a specific structure of the atomization assembly.
- the specific structure of the heating assembly 101 is exemplarily described below, which is not limited as long as the heating assembly 101 can be inserted into the tobacco rod 100 and the induction coil assembly 202 to make the induction coil assembly 202.
- the tobacco rod 100 can be heated by the heating unit 101.
- the heating assembly 101 shown in this embodiment includes a base 401 and a heating member 402.
- the base 401 is abutted against the second cavity 2012, so that the base 401 covers the second cavity 2012, and the base 401 extends in a direction toward the first cavity 2011.
- the heating member 402 is provided to insert the heating member 402 into the induction coil assembly 202 via the second cavity 2012.
- the heating element 402 shown in this embodiment has a tubular structure or a sheet structure, and the heating element 402 has a cross-sectional area smaller than a cross-sectional area of the tobacco rod 100.
- the heating member 402 can be inserted into the tobacco rod 100.
- the central position of the base 401 shown in this embodiment may be extended with the heating member 402 in a direction toward the first cavity opening 2011, so that the heating member 402 and the receiving cavity are 201 is coaxially disposed, such that when the tobacco rod 100 is inserted into the accommodating chamber 201, the heating member 402 is disposed coaxially with the tobacco rod 100, and the heating member 402 can be opposite to the tobacco rod 100 is uniformly heated to make the smoke concentration generated by the tobacco rod 100 uniform.
- the first through hole 403 is disposed through the base 401 along the axial direction of the atomization assembly 200, so that the airflow outside the atomization assembly 200 passes through the first through hole. 403 is circulated into the tobacco rod 100.
- the atomization assembly 200 shown in this embodiment includes a smoke pipe 204 and a bracket 208.
- the smoke pipe 204 and the bracket 208 shown in this embodiment are connected in series, and the smoke pipe 204 is internally provided with the receiving cavity. 201.
- the receiving cavity 201 is internally provided with a cylindrical receiving member 205.
- the first end of the receiving member 205 is provided with a first fixing member 206 having an annular shape, and the second end of the receiving member 205 is provided with a second fixing member 207 having a circular shape, the first fixing member
- the second fixing member 207 is used for holding and holding the receiving member 205 in the receiving cavity 201.
- the end surface of the first fixing member 206 shown in this embodiment extends along the axial direction of the atomizing assembly 200 with a first abutting arm 2061 and a second abutting arm 2062.
- the first abutting arm A slot 2063 is formed between the 2061 and the second abutting arm 2062, and the receiving member 205 is inserted and fixed in the slot 2063.
- the second fixing member 207 is disposed with a first receiving groove 209 in a direction toward the first fixing member 206, and the first receiving groove 209 is configured to insert and fix the base 401, the first receiving portion
- the bottom of the groove 209 is hollowed out with a second through hole 404, and the first through hole 403 and the second through hole 404 are electrically connected.
- the induction coil assembly 202 is abutted between the end surface of the first fixing member 206 and the end surface of the second fixing member 207.
- an insulation gap is formed between the outer peripheral wall of the induction coil assembly 202 and the inner peripheral wall of the accommodating member 205 shown in this embodiment.
- the induction coil assembly 202 during the heating of the tobacco rod 100, the induction coil assembly 202 generates heat, and in order to prevent the heat generated by the induction coil assembly 202 from scalding the user, the embodiment is as shown in this embodiment.
- the heat of the induction coil assembly 202 can be isolated by the thermal insulation gap.
- the heat insulation gap shown in this embodiment may be provided with a heat insulating member, the heat insulating member has a cylindrical shape, and the partition is The hot parts are made of materials with thermal insulation properties.
- the heat insulating member shown in this embodiment is an aerogel member, so that the heat insulating member can restrict the induction coil assembly 202 from conducting heat to the smoke pipe 204, and the aerogel system is formed.
- the piece can withstand the high temperature of 1400 degrees Celsius, thereby effectively avoiding the occurrence of scalding of the user due to the excessive heat of the pipe 204, and the aerogel article is very light in weight, thereby improving the insulation of the heat insulating member.
- it also effectively reduces the overall weight of the smoking article, effectively avoiding the use of excessive smoking
- the ease of use of the smoking implement is reduced, so that the smoking implement shown in this embodiment can effectively improve the comfort of the user during the process of absorbing smoke.
- the heat insulating member shown in this embodiment is formed by multi-layer winding of an aerogel felt made of the aerogel, and an inner peripheral wall of the heat insulating member covers the induction coil assembly.
- the outer peripheral wall of the insulating member is disposed, and the outer peripheral wall of the heat insulating member and the cavity wall of the inner cavity of the accommodating cavity 201 are mutually abutted, so that the heat insulating member shown in the embodiment can efficiently isolate the
- the induction coil assembly 202 conducts heat to the smoke tube 204.
- At least one air inlet hole 211 is disposed through the smoke pipe 204, and air located outside the atomization assembly sequentially passes through the air inlet hole 211 and the second portion of the second fixing member 207.
- the through hole 404 and the first through hole 403 are circulated into the tobacco rod 100 that has been inserted into the accommodating chamber 201, and the air flowing into the tobacco rod 100 can drive the induction coil assembly 202 through the heating.
- the smoke generated by the assembly 101 during the heating of the tobacco rod 100 is circulated along the guide of the tobacco rod 100 to enable the user to smoke the smoke circulating to the end of the tobacco rod 100.
- the structure of the induction coil assembly 202 is exemplified below:
- the induction coil assembly 202 is wound by a wire having electrical conductivity to form a cylindrical shape, so that the heating assembly 101 is inserted into the cylindrical shape.
- the induction coil assembly 202 is inside.
- FIG. 7 is a schematic structural diagram of an embodiment of an induction coil assembly 202 according to the present invention.
- the induction coil assembly 202 includes an induction coil 2021 and an inner smoke tube 2022 made of a non-metallic material, and the induction coil 2021 is wound by a wire having electrical conductivity to form a disk-shaped sheet structure to be formed.
- the disc shape shown in this embodiment may be in the form of a mosquito coil.
- the disk-shaped sheet structure is bent and formed with a cavity, and the cavity is sleeved on the outer peripheral wall of the inner pipe 2022, so that the heating assembly 101 is inserted therein.
- the smoke pipe 2022 is internally disposed.
- the bracket 208 is disposed with a second receiving groove 405 facing the end surface of the receiving cavity 201, and the second receiving groove 405 is configured to insert and fix the second fixing member 207.
- An outer electrode 213 is disposed on the end surface of the bracket 208 facing away from the accommodating cavity 201.
- the outer electrode 213 is inserted away from the end of the accommodating cavity 201.
- the inner electrode 213 is internally inserted and fixed with the inner electrode 214.
- An insulating ring 215 for electrically isolating the outer electrode 213 and the inner electrode 214 is interposed between the outer electrode 213 and the inner electrode 214.
- the induction coil assembly 202 includes a first conductive connection segment 216 and a second conductive connection segment 217.
- the induction coil assembly 202 includes a body having a cylindrical shape and a first conductive connection portion 216 and a second conductive connection portion 217 connected to both ends of the cylindrical body.
- a third through hole 2081 and a fourth through hole 2082 are disposed through the bracket 208 along the axial direction of the atomizing assembly 200.
- the first fixing member 206 is provided with a rail 218 such that the first conductive connecting portion 216 of the inductive coil assembly 202 sequentially passes through the rail 218, the first through hole 403, and the third through hole 2081. Inserted between the outer electrode 213 and the insulating ring 215, the second conductive connecting portion 217 of the inductive coil assembly 202 sequentially passes through the first through hole 403 and the fourth through hole 2082 It is fixed between the inner electrode 214 and the insulating ring 215.
- the specific extension direction of the track 218 is not limited in this embodiment, as long as the first conductive connection segment 216 can be inserted and fixed between the outer electrode 213 and the insulating ring 215 through the track 218. can.
- the battery rod 300 passes through the outer electrode 213 and the inner electrode 214 as the induction coil assembly 202. Pass high frequency alternating current.
- the structure of the battery rod assembly is not limited, as long as the battery rod assembly 300 can pass a high-frequency alternating current to the induction coil assembly 202.
- the outer electrode 213 is sleeved at an end of the bracket 208 away from the receiving cavity 201, and the outer electrode 213
- the outer peripheral wall is provided with a third receiving groove 502, and the third receiving groove 502 is inserted and fixed with an elastic member 501, and the outer electrode 213 is sleeved at the end of the bracket 208 away from the receiving cavity 201.
- the elastic member 501 is located between the tobacco tube 204 and the outer electrode 213, and the elastic member 501 causes an interference fit between the tobacco tube 204 and the outer electrode 213.
- the outer peripheral wall of the outer electrode 213 is disposed along a radial direction of the atomizing assembly 200, and a first protrusion is disposed extending away from the bracket 208, and the tobacco tube 204 is along the mist.
- the assembly 200 has a radial direction, and a second protrusion is disposed extending in a direction toward the bracket 208, and the outer electrode 213 is sleeved at an end of the bracket 208 away from the receiving cavity 201, The first protrusion and the second protrusion are fixed to each other such that the outer electrode 213 is inserted and fixed in the tobacco tube 204.
- FIG. 8 is a schematic diagram of an electrical connection relationship of an embodiment of the atomization system for performing smoke temperature detection according to the present invention.
- the atomizing assembly 200 shown in this embodiment further includes a temperature detecting member 901 electrically connected to the battery rod assembly 300 through a wire.
- the temperature detecting member 901 is inserted into the tobacco rod 100, and the battery rod assembly 300 or the atomizing assembly is disposed with processing.
- the processor 902 is electrically connected to the temperature detecting member 901 and the battery rod assembly 300.
- the temperature detecting member 901 is configured to detect the temperature of the smoke within the tobacco rod 100 and transmit indication information for indicating the temperature of the smoke within the tobacco rod 100 to the processor 902.
- the processor 902 can adjust the operating power provided by the battery rod assembly 300 for the induction coil assembly 202 according to the temperature of the smoke in the tobacco rod 100 measured by the temperature detecting member 901, so that the The smoke generated by the tobacco rod 100 is within a preset temperature range, so that the temperature of the mist atomized by the atomizing assembly provided in the embodiment does not cause scalding to the user, and is located in the The smoke within the preset temperature range maintains the best appetite and improves the user's experience of smoking.
- Embodiment 3 This embodiment exemplifies the structure of the tobacco rod 100 inserted into the atomization assembly 200. It should be clarified that the description of the structure of the tobacco rod 100 in this embodiment is optional. The example is not limited as long as the heating unit 101 is inserted into the tobacco rod 100 and the tobacco rod 100 is heated.
- FIG. 9 is a schematic structural view of an embodiment of the tobacco rod provided by the present invention.
- the tobacco rod 100 shown in this embodiment includes a filter rod 102 and a smoking rod 104 made of a tobacco material.
- the tobacco rod further includes a first molding paper 103, wherein the molding paper used by the first molding paper 103 may also be referred to as a cigarette molding paper or a cigarette molding paper, and the first molding paper 103 may be provided with a layer. Or multiple layers.
- the first molding paper 103 is exemplified as a plurality of layers, and the first molding paper 103 is wound along the filter rod 102 and the peripheral wall of the smoking rod 104 to make the first molding paper. 103 covers the filter rod 102 and the peripheral wall of the smoking rod 104 to fix the filter rod 102 and the smoking rod 104, thereby facilitating shaping and fixing of the components of the entire tobacco rod 100.
- the filter rod 102 includes a first filter rod 1021, a cooling rod 1022, and a second filter rod 1023 which are sequentially connected, and the first filter rod 1021 is further connected to the smoking rod 104. .
- the filter rod material used in the first filter rod 1021 and the second filter rod 1023 can also be understood as a material for a cigarette filter, a material for a cigarette filter, which can be used for the circulation of smoke and filtered; the temperature reduction rod 1022 is used.
- the smoking rods 104 are made of a tobacco material, and the tobacco materials used may be determined according to various needs, such as specific tobacco types, tobacco tastes, and the like, and are not limited herein.
- the smoke formed by heating the smoking rod 104 can follow the guiding of the tobacco rod 100, and follow the smoking rod 104 to reach the first filter rod 1021, and after being filtered by the first filter rod 1021, the temperature is cooled.
- the smoke is cooled by the cooling rod 1022, and then reaches the second filter rod 1023, and passes through the second filter rod.
- the filtered and cooled smoke is output for the user to suck and smoke.
- the smoke formed by heating the smoking rod 104 in the tobacco rod 100 absorbs heat through the cooling rod 1022, thereby reducing the temperature of the smoke, so that the tobacco rod 100 can output the smoke after cooling.
- Obtaining a more comfortable smoke outlet temperature, which is convenient for the suction resistance of the tobacco rod 100 the user can more effortlessly suck out a lower temperature and a larger amount of smoke, effectively preventing the user from being burnt when sucking, so that the user can obtain the smoke after sucking and smoking. Better physiological satisfaction and ultimately improve the user experience.
- the cooling rod 1022 or the smoking rod 104 contains at least one of glycerin and propylene glycol for absorbing the heat of the smoke and reducing the temperature of the smoke when the smoke flows.
- glycerin and propylene glycol can be used alternatively or in combination in practical applications.
- Glycerin and propylene glycol have a high smoke passing rate, facilitate the circulation of smoke in the cooling rod 1022 or the smoking rod 104, and can be volatilized. Absorbs heat from the smoke to achieve, for example, low-temperature heating at 200 degrees, and the effect of cooling the smoke.
- glycerin and propylene glycol are highly polar, and can also adsorb and trap moisture in the smoke, thereby The effect of purifying the smoke is so that the smoke can also obtain a better tobacco aroma, thereby improving the user experience of the tobacco rod 100.
- the smoking rod 104 or the cooling rod 1022 can be made by using a strip of tobacco, a tobacco leaf or a tobacco, and the smoking rod 104 or the cooling rod 1022 can also pass the papermaking process from the tobacco material and the fiber material.
- the obtained tobacco sheet is rolled up.
- the addition of the fiber material component contributes to the improvement of the toughness of the tobacco sheet, or can also be understood as the properties of ductility, tensile strength or tensile strength, so that the tobacco sheet can be subsequently rolled into a cigarette.
- the shaping effect of the smoking rod 104 or the cooling rod 1022 is promoted to make the structure more stable and less deformable.
- the cigarette rod 104 is rolled by the tobacco material and the tobacco sheet obtained by the paper material through the papermaking process, which not only facilitates the production and processing of the smoking rod 104, but also facilitates the smoking rod 104 in the tobacco rod 100.
- the assembly is convenient for automation, standardized production, and improves the production efficiency of the tobacco rod 100.
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Abstract
La présente invention concerne un ensemble d'atomisation (200) et un système d'atomisation. L'ensemble d'atomisation (200) comporte une cavité de réception (201). Un ensemble bobine d'induction (202) est inséré dans la cavité de réception (201) et maintenu à l'intérieur de celle-ci. La cavité de réception (201) est utilisée pour recevoir et maintenir une tige de cigarette (100). Un ensemble chauffant (101) est disposé et maintenu à l'intérieur de la cavité de réception (201). L'ensemble chauffant (101) est positionné à l'intérieur de l'ensemble bobine d'induction (202) et inséré dans la tige de cigarette (100). Comme l'ensemble chauffant (101) est disposé à l'intérieur de la tige de cigarette (100), l'ensemble chauffant (101) peut assurer un chauffage uniforme et adéquat de la tige de cigarette, ce qui permet à un utilisateur d'inhaler un aérosol de concentration constante, et de procurer de bonnes caractéristiques de sensation en bouche à l'aérosol. De plus, l'ensemble d'atomisation (200) chauffe la tige de cigarette (100) selon des principes de chauffage électromagnétique, de telle sorte que l'ensemble bobine d'induction (202) peut chauffer rapidement l'ensemble chauffant (101). Le chauffage de la tige de cigarette (100) selon des principes de chauffage électromagnétique permet d'obtenir une efficacité de chauffage élevée, réduit la consommation d'énergie, et est respectueux de l'environnement.
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| PCT/CN2017/106065 WO2019071575A1 (fr) | 2017-10-13 | 2017-10-13 | Ensemble d'atomisation et système d'atomisation |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
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| PCT/CN2017/106065 WO2019071575A1 (fr) | 2017-10-13 | 2017-10-13 | Ensemble d'atomisation et système d'atomisation |
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Cited By (3)
| Publication number | Priority date | Publication date | Assignee | Title |
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| CN112890304A (zh) * | 2021-01-18 | 2021-06-04 | 河南中烟工业有限责任公司 | 基于铁磁化薄片的电涡流感应加热雾化方法 |
| CN113907426A (zh) * | 2021-09-28 | 2022-01-11 | 深圳市真味生物科技有限公司 | 电子雾化装置 |
| CN116491713A (zh) * | 2023-05-12 | 2023-07-28 | 深圳市劳斯韦伯科技有限公司 | 一种烤烟容器和烤烟装置及水烟 |
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| CN112890304A (zh) * | 2021-01-18 | 2021-06-04 | 河南中烟工业有限责任公司 | 基于铁磁化薄片的电涡流感应加热雾化方法 |
| CN113907426A (zh) * | 2021-09-28 | 2022-01-11 | 深圳市真味生物科技有限公司 | 电子雾化装置 |
| CN113907426B (zh) * | 2021-09-28 | 2023-10-27 | 深圳市真味生物科技有限公司 | 电子雾化装置 |
| CN116491713A (zh) * | 2023-05-12 | 2023-07-28 | 深圳市劳斯韦伯科技有限公司 | 一种烤烟容器和烤烟装置及水烟 |
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