WO2018170829A1 - Atomiseur - Google Patents

Atomiseur Download PDF

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Publication number
WO2018170829A1
WO2018170829A1 PCT/CN2017/077860 CN2017077860W WO2018170829A1 WO 2018170829 A1 WO2018170829 A1 WO 2018170829A1 CN 2017077860 W CN2017077860 W CN 2017077860W WO 2018170829 A1 WO2018170829 A1 WO 2018170829A1
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WO
WIPO (PCT)
Prior art keywords
smoke
chamber
atomizer
assembly
tobacco
Prior art date
Application number
PCT/CN2017/077860
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English (en)
Chinese (zh)
Inventor
刘秋明
向智勇
牛建华
韦志林
Original Assignee
惠州市吉瑞科技有限公司深圳分公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
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Application filed by 惠州市吉瑞科技有限公司深圳分公司 filed Critical 惠州市吉瑞科技有限公司深圳分公司
Priority to PCT/CN2017/077860 priority Critical patent/WO2018170829A1/fr
Publication of WO2018170829A1 publication Critical patent/WO2018170829A1/fr

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  • the invention relates to the field of electronic cigarettes, and in particular to an atomizer.
  • 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 temperature of the other portion is insufficient, 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 present invention provides an atomizer capable of greatly reducing the user's consumption of tobacco harmful substances and facilitating the user to replace the tobacco.
  • the present invention provides an atomizer comprising an atomizer body, the surface of the outer surface of the atomizer is provided with a smoke outlet for discharging smoke for the user to take, characterized in that the atomizer body is provided with a body a receiving chamber, an oil storage chamber, an atomizing chamber and a heating assembly, the receiving chamber being in communication with the atomizing chamber and the smoke outlet, the receiving chamber for placing tobacco and serving as a first smoke passage, the heating An assembly is disposed in the atomization chamber and is used for atomizing the oil in the oil reservoir to form a smoke, and the mist formed by atomization in the atomization chamber is used to heat the tobacco in the chamber. To generate a mixed smoke such that, when smoking, the mixed smoke flows through the first smoke passage to the smoke outlet;
  • the accommodating cavity includes a first end surface and a second end surface disposed opposite to each other, and a distance between the first end surface and the atomizing chamber is smaller than a distance between the second end surface and the atomizing chamber,
  • the end of the receiving cavity facing the atomizing chamber is provided with at least one slit, the first end of the slit extends to the first end surface, and the first end of the slit communicates with the first end surface,
  • a resisting wall is disposed between the second end of the slit and the second end surface such that the resisting wall and the tobacco abut each other when the tobacco is placed inside the receiving chamber.
  • the atomizer body is further provided with a second smoke passage, the second smoke passage is in communication with the smoke outlet and the atomization chamber, and the second smoke passage is configured to divert the Part of the smoke within the atomization chamber and directing the portion of the smoke to the smoke outlet.
  • the atomizer body comprises an atomizer body and a nozzle assembly, wherein the atomizer body is used for atomizing smoke oil to form smoke, and the oil storage chamber is disposed in the atomizer body.
  • the atomizing chamber and the heating assembly; the nozzle assembly is detachably coupled to the atomizer body, the receiving chamber is located in the nozzle assembly, the receiving chamber and the nozzle assembly a surface facing the atomizer body and connected with a smoke insertion cavity facing the atomizer body, the atomizer body when the nozzle assembly is connected to the atomizer body Covering the mouth of the insertion chamber; when the nozzle assembly is separated from the atomizer body, the tobacco can be inserted into the receiving chamber from the mouth of the insertion chamber of the receiving chamber or the tobacco is removed from the Take out inside the accommodating chamber.
  • the first end of the slit is in communication with the outer surface of the nozzle assembly, and the first end of the slit is in communication with the mouth of the insertion chamber so that when the tobacco is inserted from the insertion a target position of the tobacco is exposed relative to the accommodating cavity via the slit when the vent opening is inserted into the accommodating cavity, the target position being a position of the tobacco opposite the slit, such that the slit is through the slit A force in a direction away from the nozzle assembly can be applied at the target position until the tobacco is removed from the receiving chamber.
  • the slit is "U" shaped, or rectangular, or square, or elliptical.
  • the nozzle assembly is provided with a slot at one end of the receiving cavity and is provided with a slot communicating with the outer surface of the nozzle assembly as the second smoke passage, the slot is located in the mist
  • two ends of the slit are respectively connected with the atomization chamber and the smoke outlet, and the slit is provided with a notch facing the receiving chamber and communicating with the receiving chamber;
  • the tobacco covers the notch so that at least part of the smoke in the atomizing chamber when the atomizer is operated Flow through the slit to the smoke outlet.
  • the nozzle assembly has a tubular structure, the smoke outlet is located at one end of the nozzle assembly, and the smoke insertion cavity of the receiving cavity is located away from the smoke outlet of the nozzle assembly.
  • the slit extends along the longitudinal direction of the nozzle assembly and extends through the side wall of the nozzle assembly.
  • the nozzle assembly is provided with a plurality of the slots, and a predetermined interval is disposed between any two adjacent slots, and the slots are strip-shaped.
  • an end of the receiving cavity facing away from the mouth of the insertion mouth is provided with a limiting plate for blocking movement of the tobacco away from the mouth of the insertion mouth, and the surface of the limiting plate faces the smoke
  • One side of the outlet is provided with a third smoke passage disposed coaxially with the receiving cavity, one end of the third smoke passage is in communication with the receiving chamber, and the other end of the third smoke passage is connected to the smoke outlet
  • the length of the slot is greater than the distance from the limiting plate to the mouth of the insertion chamber, and the end of the slot away from the mouth of the insertion chamber is in communication with the third smoke passage.
  • the nozzle assembly is disposed at a sidewall of one end of the atomizer body and is provided with a through hole communicating with an outer surface of the nozzle assembly and serving as the second smoke passage.
  • a through hole is in communication with the atomization chamber and the smoke outlet such that at least a portion of the smoke within the atomization chamber flows through the through hole to the smoke outlet when the atomizer is in operation.
  • an end of the receiving cavity facing away from the mouth of the insertion mouth is provided with a limiting plate for blocking movement of the tobacco away from the mouth of the insertion mouth, the surface of the limiting plate facing the smoke
  • One side of the outlet is provided with a third smoke passage disposed coaxially with the receiving cavity, one end of the third smoke passage is in communication with the receiving chamber, and the other end of the third smoke passage is connected to the smoke outlet
  • the distance from the through hole to the mouth of the insertion chamber is greater than the distance from the limiting plate to the mouth of the insertion chamber, and the through hole is in communication with the third smoke passage.
  • a gap is formed between the outer peripheral surface of one end of the atomizer body and the atomizer body, and the gap is communicated with the through hole and the atomization cavity.
  • the gap is for at least a portion of the smoke within the atomization chamber to flow into the through hole through the gap when the atomizer is in operation, and then flows through the through hole to the smoke outlet.
  • a partition plate is disposed between the atomization chamber and the accommodating chamber for blocking movement of the tobacco in the accommodating chamber toward the atomization chamber, and the partition plate is provided with at least one perforation.
  • the perforation The receiving chamber and the atomization chamber are in communication.
  • the atomizer body comprises an atomizer body and a nozzle assembly, wherein the atomizer body is used for atomizing smoke oil to form smoke, and the oil storage chamber is disposed in the atomizer body.
  • the atomization chamber and the heating assembly, one end of the atomizer body is provided with a insertion slot, and one end of the nozzle assembly is detachably inserted into the insertion slot, the spacer
  • the socket is received in the insertion slot and detachably connected to the slot wall of the insertion slot, so that the partition can be removed from the insertion slot after the nozzle assembly is detached.
  • the partition plate has a disc shape, and an outer circumferential surface of the partition plate is sleeved with a sealing ring that elastically abuts against a groove wall of the insertion groove.
  • the atomizer body comprises an atomizer body and a nozzle assembly, wherein the atomizer body is used for atomizing smoke oil to form smoke, and the oil storage chamber is disposed in the atomizer body.
  • the atomization chamber and the heating assembly, one end of the atomizer body is provided with a insertion slot, and one end of the nozzle assembly is detachably inserted into the insertion slot, the spacer
  • the insertion slot is disposed in the insertion slot, and the insertion slot is formed between the partition plate and the nozzle assembly to form the receiving cavity.
  • an end of the receiving cavity facing away from the mouth of the insertion mouth is provided with a limiting mechanism for blocking movement of the tobacco away from the mouth of the insertion mouth.
  • the limiting mechanism is a limiting step disposed around a cavity wall of the receiving cavity.
  • a filter screen is disposed in the receiving cavity at an end of the receiving cavity facing the smoke outlet, and the filter mesh is configured to block the tobacco in the receiving cavity from entering the user's mouth.
  • the heating component is the only heating device in the atomizer.
  • the atomizer body comprises an atomizer body and a nozzle assembly, the atomizer body comprises an oil storage assembly and an atomizing core assembly inserted in the oil storage assembly, the oil storage
  • the oil storage chamber is formed in the assembly;
  • the atomization core assembly comprises an atomization sleeve, a smoke oil adsorption sleeve, a heating wire, an upper insulation ring and an upper electrode, and the tube wall of the atomization sleeve is provided with An oil inlet hole communicating with the oil storage chamber, the smoke oil adsorption sleeve is disposed in the atomization sleeve and covering the oil inlet hole, and the heating wire is used as the heating assembly, the heating wire Winding and at least partially sleeved in the soot oil adsorption sleeve to atomize the smoke oil in the smoke oil adsorption sleeve, the atomization chamber is formed in the smoke oil adsorption sleeve, the insulation
  • the oil storage assembly includes a main body of the oil storage assembly and a detachable assembly detachably inserted at one end of the main body of the oil storage assembly, the detachable assembly comprising an air conditioning seat, an elastic member and a movable cover;
  • One end of the air conditioning seat is inserted into the main body of the oil storage assembly and is screwed with the main body of the oil storage assembly, and the other end of the air conditioning seat extends outside the main body of the oil storage assembly, the elasticity a member is fixed on the air conditioning seat and elastically resists the movable cover to provide the movable cover with an elastic force away from the main body of the oil storage assembly, and the movable cover is disposed at the air conditioning seat Facing the one end of the oil storage assembly body, the movable cover is provided with an engaging groove, and the air adjusting seat is provided with engaging teeth for engaging with the engaging groove, the engaging groove is away from the meshing tooth a preset distance; when the tamper assembly needs to be detached from the oil accommodating member body, a force in a direction toward the ventilating seat is applied to the movable cover until the engaging groove engages with the meshing tooth , thereby detaching the tamper-preventing assembly from the oil-storage assembly body by rotating the movable cover.
  • the atomizing core assembly is movably inserted in the oil storage assembly, and one end of the atomizing core assembly is screwed with the tamper assembly to enable the tamper assembly to be When the oil storage assembly body is removed, the atomizing core assembly can be taken out from the oil storage assembly body together with the tamper assembly.
  • the cavity wall of the accommodating cavity is recessed with a venting groove extending along a longitudinal direction of the accommodating cavity to serve as the second smog channel, and one end of the venting groove is connected to the atomizing cavity The other end of the venting groove is in communication with the smoke outlet.
  • the atomizer body comprises an atomizer body and a nozzle assembly
  • the atomizer body comprises a first sleeve, a smoke adsorbing member, a support tube and an electrode assembly
  • the support tube is inserted In the first sleeve
  • the heating assembly is fixed in the support tube
  • the atomization chamber is formed in the support tube
  • the oil storage chamber is formed between the support tube and the first sleeve.
  • the smoke oil adsorbing member is sleeved outside the support tube and located in the oil storage chamber
  • the heating assembly is electrically connected to the electrode assembly
  • one end of the electrode assembly is connected to the first sleeve.
  • the other end of the electrode assembly extends outside the first sleeve and is used for electrical connection with an external power source;
  • the nozzle assembly includes a second sleeve, a tobacco fixing sleeve and a nozzle cover, and the tobacco fixing sleeve is disposed In the second sleeve, the nozzle cover is disposed on an end surface of the second sleeve, the nozzle cover is provided with the smoke outlet, and the tobacco fixing sleeve is provided with the receiving a cavity and the venting groove, the first sleeve and the second sleeve are integrated .
  • an end of the accommodating cavity facing away from the nozzle cover is provided with an annular limiting step for blocking movement of the tobacco away from the smoke outlet direction, the limiting step A surface facing the nozzle cover is provided with a groove for communicating with the venting groove and the atomizing chamber for the flow of smoke.
  • the first smoke passage is spaced apart from the second smoke passage, and the first smoke passage and the second smoke passage are disposed to isolate the first smoke passage and the second Isolation component of the smoke passage.
  • the present invention is provided with a receiving chamber, an oil storage chamber, an atomizing chamber and a heating assembly in the atomizer body, the receiving chamber and the atomizing
  • the chamber is in communication with the smoke outlet
  • the receiving chamber is for placing tobacco and serving as a first smoke passage
  • the heating assembly is disposed in the atomization chamber and is used for atomizing the oil in the oil storage chamber to Forming smoke
  • the mist formed by atomization in the atomization chamber is used to heat the tobacco in the accommodation chamber to generate mixed smoke, so that the mixed smoke flows through the first smoke passage when smoking To the smoke exit.
  • the tobacco in the atomizer of the present invention is heated only by the high temperature smoke generated by the atomization chamber, and the tobacco is baked without an additional electric heating device, thereby uniformly heating and fully accommodating the aroma of the tobacco in the cavity.
  • the taste is steamed out, and the amount of smoke is large, which avoids the problem that the prior art is easy to carbonize when the tobacco is baked by the electric heating device, and still causes more harmful substances.
  • the receiving chamber shown in the present invention is provided with at least one slit facing the end of the atomizing chamber, the first end of the slit extending to the first end surface of the receiving cavity, and the first of the slit The end is in communication with the first end face such that a user can apply a force directly on the tobacco via the slit until the tobacco is removed from the interior of the receiving chamber to increase the efficiency of replacing the tobacco In order to protect the taste of the mixed smoke that the user smokes.
  • FIG. 1 is a schematic overall structural view of an embodiment of an atomizer provided by the present invention.
  • FIG. 2 is a schematic cross-sectional structural view of an embodiment of an atomizer provided by the present invention.
  • FIG. 3 is a cross-sectional structural view showing another embodiment of the atomizer provided by the present invention.
  • FIG. 4 is a schematic view showing an explosion connection structure of an embodiment of the atomizer provided by the present invention.
  • Figure 5 is a cross-sectional structural view showing another embodiment of the atomizer provided by the present invention.
  • FIG. 6 is a schematic view showing an explosion connection structure of an embodiment of the atomizer provided by the present invention.
  • FIG. 7 is a schematic cross-sectional exploded connection structure of an embodiment of an atomizer provided by the present invention.
  • FIG. 8 is a schematic overall structural view of an embodiment of a nozzle assembly provided by the present invention.
  • Figure 9 is a cross-sectional structural view showing another embodiment of the atomizer provided by the present invention.
  • FIG. 10 is a schematic overall structural view of an embodiment of a nozzle assembly provided by the present invention.
  • Figure 11 is a cross-sectional structural view showing another embodiment of the atomizing assembly provided by the present invention.
  • FIG. 12 is a cross-sectional structural view showing another embodiment of the atomizing assembly provided by the present invention.
  • Figure 13 is a schematic view showing a partial exploded connection structure of an embodiment of the atomizer provided by the present invention.
  • Figure 14 is a schematic view showing a partial explosion connection structure of an embodiment of the atomizer provided by the present invention.
  • 15 is a partial structural schematic view of an embodiment of an atomizer provided by the present invention.
  • 16 is a partial cross-sectional structural view showing an embodiment of an atomizer according to the present invention.
  • Figure 17 is a cross-sectional structural view showing another embodiment of the atomizer provided by the present invention.
  • Figure 18 is a schematic view showing the overall structure of an embodiment of a tobacco fixing sleeve provided by the present invention.
  • FIG. 19 is a schematic cross-sectional exploded connection structure of another embodiment of the atomizer provided by the present invention.
  • 20 is a schematic view showing an explosion connection structure of another embodiment of the atomizer provided by the present invention.
  • Figure 21 is a schematic view showing a cross-sectional exploded connection structure of another embodiment of the atomizer provided by the present invention.
  • the present embodiment provides an atomizer.
  • the atomizer shown in this embodiment enables the user to smoke the smoke with the same taste as the real cigarette during the process of smoking the smoke, and can avoid the burning of the real smoke.
  • the atomizer shown in this embodiment can also facilitate the user to replace the tobacco, thereby improving the efficiency of the user to replace the tobacco.
  • FIG. 1 is a schematic overall structural view of an embodiment of the atomizer provided by the present invention.
  • 2 is a schematic cross-sectional structural view of an embodiment of the atomizer provided by the present invention.
  • the atomizer shown in this embodiment includes an atomizer body 1 including an atomizer body 100 and a nozzle assembly 101, wherein the atomizer body 100 is used for atomizing smoke oil To form smoke In the mist, the nozzle assembly 101 is provided with a smoke outlet 102 for exhausting smoke for the user to smoke.
  • the atomizer body 100 is provided with an oil storage chamber 103, an atomization chamber 104 and a heating assembly 105.
  • the oil reservoir 103 for storing the smoke oil shown in this embodiment is electrically connected to the atomization chamber 104, so that the oil in the oil reservoir 103 can flow to the location.
  • the heating assembly 105 within the atomization chamber 104 enables the heating assembly 105 to atomize the fumes in the reservoir 103 to form a mist.
  • the specific structure of the oil storage chamber 103, the atomization chamber 104 and the heating assembly 105 is not limited in this embodiment, as long as the heating assembly 105 located in the atomization chamber 104 can set the smoke located in the oil storage chamber 103.
  • the oil is atomized to generate smoke.
  • the inside of the atomizer shown in this embodiment is further provided with a receiving cavity
  • the accommodating chamber 200 is disposed inside the nozzle assembly 101.
  • FIG. 3 is a schematic cross-sectional structural view of another embodiment of the atomizer according to the present invention. Specifically, FIG. 2 shows the receiving chamber 200. Tobacco is not disposed inside, and the inside of the accommodating chamber 200 shown in FIG. 3 is provided with tobacco 201.
  • the tobacco shown in this embodiment may be a common cigarette sold on the market, that is, in actual use, the user may directly insert the cigarette inside the accommodating chamber 200, or insert a part of the cigarette in the The interior of the chamber 200 is received.
  • it can also be homemade shredded tobacco, etc., and is not specifically limited herein.
  • the tobacco is placed directly inside the accommodating chamber 200, which is not limited in this embodiment.
  • the accommodating chamber 200 in this arrangement is in communication with the atomizing chamber 104 and the smoke outlet 102, respectively.
  • the first port 203 of the accommodating chamber 200 is in communication with the atomizing chamber 104, and the second port 204 of the accommodating chamber 200 is in communication with the smoke outlet 102.
  • the accommodating chamber 200 is used for placing the tobacco 201 and serving as a first smoke passage for circulating smoke. Specifically, the inside of the accommodating chamber 200 is used for inserting the tobacco 201, and the tobacco 201 is inserted.
  • the first smoke passage for circulating smoke is formed inside the accommodating chamber 200.
  • the mist atomized by the heating assembly 105 in the atomization chamber 104 can flow through the guide of the first smoke passage, and the flow direction is shown in FIG. 2 and FIG. In the direction indicated by the arrow, the direction of the smoke flowing along the first smoke passage is in a direction toward the smoke outlet 102.
  • the direction of the arrow shown in FIG. 3 is the airflow direction of the atomizer provided in the embodiment.
  • the atomizer shown in this embodiment is provided with an air inlet 106.
  • the air inlet 106 shown in this embodiment is electrically connected to the atomization chamber 104, so that the gas outside the atomizer can be Flowing through the air inlet 106 to the inside of the atomization chamber 104, the airflow inside the atomization chamber 104 can drive the mist atomized by the heating assembly 105 to flow into the interior of the accommodating chamber 200;
  • the smoke inside the accommodating chamber 200 shown in this embodiment has a relatively high humidity and temperature to enable the smoke to heat the tobacco 201 in the accommodating chamber 200 to generate mixed smoke.
  • the mixed smoke flows along the guide of the first smoke passage to the smoke outlet 102 to enable a user to smoke the mixed smoke through the smoke outlet 102.
  • the first port 203 of the accommodating cavity 200 is opposite to and coaxially disposed with the second port 204 of the accommodating cavity 200 .
  • all the smoke in the atomization chamber 104 can be flowed into the interior of the accommodating chamber 200 to heat the tobacco 201, avoiding the first port 203 and the first
  • the second port 204 is not opposite or different in axis, and the smoke in the atomization chamber 104 cannot flow to the inside of the accommodating chamber 200.
  • the first port 203 and the second are shown in this embodiment.
  • the ports 204 are positioned oppositely or coaxially to ensure that a sufficient amount of smoke flows into the interior of the containment chamber 200 such that a sufficient amount of smoke can heat the tobacco 201 to produce a sufficient amount of the mixed smoke.
  • the heating assembly 105 shown in this embodiment is the only heating device in the atomizer, that is, the only energy source for heating the tobacco in this embodiment is the embodiment.
  • the illustrated heating element 105 atomizes the smoke formed by the smoke oil, and adopts the structure shown in this embodiment. Under the premise of ensuring the user can smoke the smoke of the cigarette, there is no need to increase the inside of the atomizer. Additional components reduce the cost and manufacturing difficulty of the atomizer and reduce the assembly nebulizer The difficulty of assembling the atomizer is improved.
  • FIG. 4 is a schematic diagram of an explosion connection structure of an embodiment of the atomizer provided by the present invention
  • FIG. 19 is another embodiment of the atomizer provided by the present invention. Schematic diagram of the section structure.
  • the accommodating chamber 200 includes a first end surface 401 and a second end surface 402 that are oppositely disposed.
  • first end surface 401 and the second end surface 402 are oppositely disposed, and the first end surface 401 is provided with a second port 204 of the receiving cavity 200, and the second end surface 402 is provided with the receiving end The first port 203 of the cavity 200.
  • first port 203 and the second port 204 of the accommodating chamber 200 are shown in FIG. 2 , and details are not described herein.
  • the distance between the first end surface 401 and the atomization chamber 104 is smaller than the distance between the second end surface 402 and the atomization chamber 401.
  • the end of the accommodating chamber 200 facing the atomizing chamber 104 is provided with a slit 403.
  • the specific number of the slits 403 is not limited in this embodiment, that is, the slits 403 may be one or more, and the structure shown in FIG. 4 and FIG. 19 is used as an example.
  • FIG. 20 and FIG. 21 illustrate a structural embodiment in which the number of the slits 403 is two. In a specific application, the number of the slits 403 may be two or more. Narration.
  • the first end of the slit 403 extends to the first end surface 401, and the first end of the slit 403 is in communication with the first end surface 401. Specifically, The first end of the slit 403 is in communication with the second port 204 of the receiving chamber 200.
  • a resisting wall 404 is disposed between the second end of the slit 403 and the second end surface 402, such that when the tobacco 201 is placed inside the receiving chamber 200, the resisting wall 404 is Tobacco 201 resists each other.
  • the smoke shown in this embodiment is capable of heating the tobacco located in the accommodating chamber, so that the tobacco is heated to generate flue gas having the same or similar taste as that produced after the cigarettes on the market are sold, and then sucked by the user.
  • the smoke When the smoke is exported, it can be used to mix the smoke containing two kinds of taste, that is, mixed smoke.
  • One part of the mist is the smoke generated by the heating component to atomize the smoke oil, and the other is the smoke which is the same or similar to the taste produced by the burning of the cigarette, thereby enriching the taste of the user to smoke.
  • the smoke of the embodiment when the tobacco is heated, although the tobacco generates a smoke which is the same or similar to the taste produced after the cigarette is burned under the action of the high temperature of the smoke, the smoke does not contain the tar. Thereby, the harm of the tar to the user's body is effectively avoided, and the safety of the atomizer provided by the user in this embodiment is effectively guaranteed.
  • the content of the smoke in the mixed smoke generated by the smoke heating the tobacco is the same as or similar to that produced after the cigarette is burned, and the heating component is to the tobacco.
  • the tobacco contains more water, and the smoke cannot sufficiently heat the tobacco, so that the smoke cannot fully drive the flue gas in the tobacco that has the same or similar taste as that produced after the cigarette is burned to
  • the nozzle assembly can be seen that after the atomizer is used for a period of time, the user needs to replace the tobacco in order to ensure the taste of the mixed smoke. In the process of specific replacement, the nozzle assembly 101 can be removed from the nozzle assembly 101.
  • the tobacco shown in this embodiment can be exposed from the slit 403, and the user can directly apply the tobacco 201 to the tobacco 201 via the slit 403.
  • the smoke generated by the heating assembly 105 for heating the tobacco shown in this embodiment has a relatively high humidity, and the moisture contained in the tobacco is increased when the smoke heats the tobacco. It can be seen that as the time for the user to inhale the atomizer increases, the content of moisture in the smoke also tends to increase.
  • the smoke is difficult to be described in the above embodiment.
  • the first smoke passage flows, and on the other hand, the smoke is more difficult to drive the flue gas generated on the tobacco having the same or similar taste as the cigarette to flow along the first smoke passage described in the above embodiment, thereby enabling use
  • the household cannot smoothly ingest the mixed smoke.
  • FIG. 5 is a schematic cross-sectional structural view of another embodiment of the atomizer provided by the present invention.
  • the atomizer body 100 is further provided with a second smoke passage 501, the second smoke passage 501 and the smoke outlet 102 of the nozzle assembly 101 and the atomization chamber. 104 is connected.
  • the second smoke passage 501 is configured to divert part of the smoke in the atomization chamber 104 and introduce the partial smoke into the smoke outlet 102, that is, the second smoke passage 501 is used to At least a portion of the smoke within the atomization chamber 104 bypasses the containment chamber 200 and flows through the second smoke passage 501 to the smoke outlet 102 of the nozzle assembly 101.
  • the second smoke passage 501 and the accommodating chamber 200 shown in this embodiment are respectively electrically connected to the atomization chamber 104.
  • the heating assembly 105 is in the atomization.
  • the mist atomized within the cavity 104 is divided into a first smoke and a second smoke, the first smoke being able to flow into the interior of the receiving chamber 200 such that the first smoke can be located within the receiving chamber 200
  • the tobacco is heated, and the mixed mist formed after heating flows to the smoke outlet 102.
  • the second mist can flow around the accommodating chamber 200 and flow along the guide of the second smoke passage 501 to the smoke outlet 102.
  • the user can suck the mixed smoke and the second smoke at the smoke outlet 102, using the structure described in this embodiment, even if the tobacco is atomized
  • the length of time of use of the device is increased to contain considerable moisture, because the second smoke passage 501 is provided, thereby ensuring that at least part of the mist atomized by the heating assembly 105 can be conducted to the smoke outlet 102, thereby The occurrence of a situation where smoke is blocked by the tobacco and cannot be transferred to the smoke outlet 102 is avoided.
  • the mist atomized in the atomization chamber 104 is branched, thereby not only solving the smoke outlet 102 caused by the moisture of the accommodating chamber 200 after being used for a period of time.
  • the outflow of smoke is too small, resulting in a poor user experience, and increases the time for the release of tobacco flavor, greatly improving the user experience.
  • the specific structure of the second smoke passage 501 is not limited in this embodiment, as long as the second smoke can be transmitted to the smoke outlet 102 via the guide of the second smoke passage 501.
  • the cavity wall of the accommodating cavity 200 is recessed to form a venting groove 310 extending along the longitudinal direction of the accommodating cavity 200, and one end of the venting groove 310 is connected to the atomizing cavity 104. The other end of the venting groove 310 is in communication with the smoke outlet 102.
  • FIG. 6 is an embodiment of the atomizer provided by the present invention.
  • FIG. 7 is a schematic view showing a cross-sectional explosive connection structure of an embodiment of the atomizer provided by the present invention.
  • the nozzle assembly 101 shown in this embodiment is detachably coupled to the atomizer body 100.
  • the manner in which the nozzle assembly 101 and the atomizer body 100 are detachably connected is not limited.
  • a protrusion 205 is disposed on an outer circumferential surface of the nozzle assembly 101.
  • the inner peripheral surface of the atomizer body 100 is provided with a groove 206 matching the protrusion 205 such that the nozzle assembly 101 is connected to the groove 206 and the protrusion 205 that are fitted to each other to
  • the nozzle assembly 101 and the atomizer body 100 can also adopt various methods such as magnetic adsorption connection.
  • the accommodating chamber 200 is located in the nozzle assembly 101 and communicates with a surface of the nozzle assembly 100 facing the atomizer body 100, the accommodating chamber 200 facing one end of the atomizer body 100
  • the surface is formed with a smoke insertion cavity 302 for inserting tobacco into the accommodating cavity 200 and the smoke in the atomization cavity 104 into the accommodating cavity 200 when the suction
  • the atomizer body 100 covers the insertion chamber 302 of the accommodating chamber 200 facing the atomizer body 100, and adopts
  • Such a structure can effectively ensure that the smoke in the atomization chamber 104 can flow to the tobacco 301 located in the accommodating chamber 200, thereby ensuring that the smoke can smoothly heat the tobacco 301.
  • a friction pattern 207 may be disposed on the outer circumferential surface of the nozzle assembly 101.
  • the specific structure of the friction pattern 207 in this embodiment It is not limited as long as the user can easily apply force to the nozzle assembly 200 through the friction rib 207.
  • the tobacco can be removed
  • the 301 is inserted into the accommodating chamber 200, and then the nozzle assembly 200 into which the tobacco 301 has been inserted is attached to the atomizer body 100.
  • the nozzle assembly 101 and the atomizer body 100 are detachably connected, the nozzle assembly 101 can be removed from the mist.
  • the sterilizer main body 100 is detached, and the tobacco 301 can be taken out from the accommodating chamber 200.
  • the first end of the slit 403 is in communication with the outer surface of the nozzle assembly 101, and the first end of the slit 403 is The smoke insertion cavity 302 is in communication such that when the tobacco is inserted into the receiving cavity 200 from the insertion cavity 302, the target position 405 of the tobacco is relative to the receiving cavity 200 via the slit 403 Exposed.
  • the target position 405 is a position of the tobacco opposite to the slit 403, such that a user can apply a force away from the nozzle assembly 101 at the target position 405 via the slit 403 until the position is The tobacco is taken out of the accommodating chamber 200.
  • the contact area of the user's finger with the tobacco can be improved, thereby facilitating the user to stay away from the place.
  • the force in the direction of the nozzle assembly 101 acts on the tobacco, thereby increasing the efficiency with which the user can disassemble the tobacco.
  • the target position 405 of the tobacco can pass through the slit as long as the user detaches the nozzle assembly 101 from the atomizer body 100.
  • the user can directly apply the force away from the nozzle assembly 101 to the target position 405 of the tobacco through the slit 403, thereby improving the efficiency of the user disassembling the tobacco, and facilitating the user. Replace the tobacco.
  • the slit 403 shown in this embodiment has a "U" shape, or a rectangular shape, or a square shape or an elliptical shape.
  • the specific shape of the slit 403 is not limited in this embodiment, as long as the shape of the slit 403 can match the shape of the user's finger, so that the user's finger can be completely fitted.
  • the slit 403 is formed such that the force input by the user can be fully applied to the tobacco via the slit 403, effectively increasing the contact area of the user's finger with the tobacco, thereby improving the user's replacement of the tobacco. The efficiency and greatly improved the success rate of users replacing the tobacco.
  • the tobacco of different tastes or brands can be installed according to the different taste requirements of the different users, to meet the personalized needs of the user, and the tobacco use must be certain.
  • the new tobacco can be replaced at any time, so that the smoke of the same or similar taste of the solid cigarette can be maintained at a certain concentration in the mixed smoke of the user without replacing the whole atomizer, and the mixed smoke is avoided.
  • the concentration of the flue gas is the same as or similar to that of the solid cigarette, the service life of the nebulizer is prolonged, and the use cost of the nebulizer is saved.
  • FIG. 8 is a schematic overall structural view of an embodiment of the nozzle assembly provided by the present invention.
  • the nozzle assembly 101 is provided with a slit 208 at one end side wall of the accommodating chamber 200 that communicates with the outer surface of the nozzle assembly 101 as the second smoke passage.
  • the slot 208 is located in the atomizer body 100, and the two ends of the slot 208 are respectively associated with the atomization chamber 104 and The smoke outlets 102 are in communication.
  • the slit 208 is provided with a notch 209 facing the receiving chamber 200 and communicating with the receiving chamber 200.
  • the tobacco 301 covers the notch 209 such that at least part of the smoke in the atomizing chamber 104 bypasses the tobacco 301 when the atomizer is in operation
  • the slot 208 flows to the smoke outlet 102.
  • the nozzle assembly 101 has a tubular structure, the smoke outlet 102 is located at one end of the nozzle assembly 101, and the smoke insertion cavity 302 at one end of the receiving chamber 200 is located away from the nozzle assembly 101.
  • the slit 208 extends along the longitudinal direction of the nozzle assembly 101 and penetrates the side wall of the nozzle assembly 101.
  • the slits 208 are strip-shaped.
  • the number of the slots 208 may be one or more.
  • any two adjacent slots 208 are disposed between There is a predetermined interval to steam out the smoke in the tobacco adjacent to the slit 208 as much as possible.
  • the specific number of the slots 208 and the size of the preset interval are not limited in this embodiment.
  • FIG. 9 is a schematic cross-sectional structural view of another embodiment of the atomizer provided by the present invention.
  • One end of the accommodating chamber 200 facing away from the insertion chamber 302 is provided with a limiting plate 303 for blocking the movement of the tobacco 301 away from the insertion chamber 302.
  • the position of the tobacco 301 can be effectively blocked, so that the tobacco 301 is stably disposed inside the accommodating cavity 200, avoiding the tobacco 301.
  • the change in position allows the user to smoke to the tobacco.
  • the tobacco 301 moves to a position close to the smoke outlet 102, when the smoke flows onto the tobacco 301, the heat of the smoke is lowered, and the temperature is lowered. The reduced smoke cannot sufficiently heat the tobacco 301, so that the smoke smell of the tobacco cannot be sufficiently distilled.
  • a side of the limiting plate 303 facing the smoke outlet 102 is provided with a third smoke passage 304 disposed coaxially with the receiving cavity 200, and one end of the third smoke passage 304 is connected to the receiving cavity 200 The other end of the third smoke passage 304 is in communication with the smoke outlet 102.
  • the length of the slot 208 in the embodiment is greater than the distance from the limiting plate 303 to the insertion port 302, and the slot 208 is away from the end of the insertion port 302 and the The third smoke passages 304 are in communication.
  • the mixed smoke can be smoothly conducted to the smoke outlet 102, and the use of the third smoke passage 304 enables the flow into the third smoke passage 304 via
  • the smoke flowing through the second smoke passage and the mixed mist flowing through the first smoke passage can be sufficiently mixed in the third smoke passage 304, thereby enabling the smoke outlet 102 to output a uniform concentration of smoke.
  • FIG. 10 is a schematic overall structural view of an embodiment of the nozzle assembly provided by the present invention.
  • Figure 11 is a cross-sectional view showing another embodiment of the atomizing assembly of the present invention.
  • the nozzle assembly 101 is inserted into one end wall of the atomizer body 100 and is disposed to communicate with the outer surface of the nozzle assembly 101 as the second smoke passage. Through hole 305.
  • smoke can communicate to the smoke outlet 102 through the through hole as the second smoke passage.
  • the through hole 305 is in communication with the atomizing chamber 104 and the smoke outlet 102, so that at least part of the smoke in the atomizing chamber 104 bypasses the receiving chamber 200 when the atomizer is operated.
  • the through hole 305 flows to the smoke outlet 102.
  • the through hole 305 and the accommodating cavity 200 shown in this embodiment are respectively electrically connected to the atomization chamber 104.
  • the heating assembly 105 is in the atomization chamber 104.
  • the atomized smoke is divided into a first smoke and a second smoke, the first smoke being able to flow into the interior of the receiving chamber 200, thereby enabling the first smoke to heat the tobacco located in the receiving chamber 200
  • the mixed smoke formed after heating flows to the smoke outlet 102.
  • the second mist can bypass the accommodating chamber 200 and flow along the guiding of the second smog channel (ie, via the through hole 305) to the smoke outlet 102.
  • the user can suck the mixed smoke and the second smoke at the smoke outlet 102, using the structure described in this embodiment, even if the tobacco is atomized
  • the length of the use time is increased to contain considerable moisture, and the through hole 305 is provided, thereby ensuring that at least part of the mist atomized by the heating assembly 105 can be conducted to the smoke outlet 102, thereby avoiding The occurrence of a situation where smoke is blocked by the tobacco and cannot be transferred to the smoke outlet 102.
  • the cavity wall of the accommodating chamber 200 is further provided with a vent 3051 communicating with the atomizing chamber 104.
  • an end of the accommodating cavity 200 facing away from the insertion port 302 is provided with a limiting plate 303 for blocking the movement of the tobacco 301 away from the insertion port 302.
  • a side of the limiting plate 303 facing the smoke outlet is provided with a third smoke passage 304 disposed coaxially with the receiving cavity, and one end of the third smoke passage 304 communicates with the receiving cavity 200. The other end of the third smoke passage 304 is in communication with the smoke outlet 102.
  • the distance from the through hole 305 to the smoke insertion cavity 302 is greater than the distance from the limiting plate 303 to the insertion cavity 302, and the through hole 305 is connected to the third smoke channel 304. through.
  • the smoke flowing out through the through hole 305 can be effectively secured.
  • the tobacco 301 located in the accommodating chamber 200 is not passed, so that the smoke flowing out through the through hole 305 can flow directly to the smoke outlet 102, thereby preventing the tobacco 301 containing moisture from blocking the smoke, thereby ensuring protection
  • the user is able to smoke.
  • a gap 306 is formed between the outer peripheral surface of one end of the atomizer body 100 and the atomizer body 100, and the gap 306 and the through hole 305 and the mist are formed.
  • the chemistry chambers 104 are in communication.
  • the gap 306 is used for at least part of the smoke in the atomization chamber 104 to flow into the through hole 305 through the gap 306 while the atomizer is in operation, and then pass through the through hole 305.
  • a hole 305 flows to the smoke outlet 102, that is, the first smoke passage is spaced apart from the second smoke passage, and a cavity wall of the accommodating chamber 200 serves as the first smoke passage and the second smoke passage Isolation between parts.
  • the structure of the partition member between the first smoke passage and the second smoke passage is not specifically limited herein, as long as the first smoke passage and the second smoke passage can be isolated. can.
  • a partition 307 for blocking the movement of the tobacco 301 in the receiving chamber 200 toward the atomizing chamber 104 is disposed between the atomizing chamber 104 and the receiving chamber 200.
  • the partition 307 is provided with at least one through hole 308, and the through hole 308 is in communication with the receiving chamber 200 and the atomizing chamber 104.
  • the partition 307 shown in this embodiment is used, so that the tobacco located in the accommodating chamber 200 does not block the orientation of the atomizing chamber 104 under the action of the partition 307.
  • the cavity of the chamber 200 is such that smoke within the atomizing chamber 104 flows to the receiving chamber 200 via the perforations 308 of the diaphragm 307.
  • one end of the atomizer body 100 is provided with a insertion slot 601 .
  • One end of the nozzle assembly 101 is detachably inserted into the insertion slot 601, and the partition 307 is received in the insertion slot 601 and detachably connected to the slot wall of the insertion slot 601. Therefore, the partition plate 307 can be taken out from the insertion groove 601 after the nozzle assembly 101 is detached.
  • the partition plate 307 has a disc shape, and the outer peripheral surface of the partition plate 307 is sleeved with the insert
  • the sealing groove 602 of the groove wall of the groove 601 is elastically abutted.
  • the insertion slot 601 is located between the partition 307 and the nozzle assembly 101 to form the receiving cavity. It can be seen that the structure shown in this embodiment can improve the structure of the atomizer. stable.
  • the atomizer shown in this embodiment can also prevent the user from smoking the tobacco.
  • FIG. 12 shows a cross-sectional structure of another embodiment of the atomizer provided by the present invention. schematic diagram.
  • An end of the accommodating chamber 200 facing away from the insertion chamber 302 is provided with a limiting mechanism 603 for blocking the movement of the tobacco 301 away from the insertion chamber 302.
  • the limiting mechanism 603 always gives a force to the tobacco 301 located in the accommodating chamber 200 toward the insertion chamber 302.
  • the tobacco 301 is prevented from moving away from the mouth of the insertion chamber 302, so that the smoke flowing out of the atomization chamber 104 can quickly heat the tobacco 301 located in the receiving chamber 200, avoiding The loss of smoke heat prior to heating the tobacco 301 increases the efficiency with which the smoke heats the tobacco.
  • the limiting mechanism 603 can also prevent the tobacco 301 from moving to the nozzle assembly 101, thereby effectively preventing the user from sucking the tobacco 301 through the nozzle assembly 101, thereby ensuring the use of the atomizing assembly shown in this embodiment. Safety in the process.
  • the limiting mechanism 603 can be a limiting step disposed around a cavity wall of the accommodating cavity 200.
  • the specific structure of the limiting mechanism 603 is not limited in this embodiment, as long as the limiting mechanism 603 can prevent the user from sucking the tobacco 301 through the nozzle assembly 101, thereby ensuring the use of the atomizing assembly shown in this embodiment.
  • the safety in the process can be.
  • the accommodating chamber 200 shown in this embodiment is further provided with a screen 604 covering the receiving chamber 200 facing the end of the smoke outlet 102, and the screen 604 is used to block the accommodating The tobacco 301 and the tobacco particles in the chamber 200 enter the mouth of the user. It can be seen that the screen 604 can filter out the tobacco 301 and the tobacco particles but can allow the mixed smoke to pass smoothly without affecting the user's efficiency in mixing the smoke. To avoid the possibility of users absorbing tobacco and tobacco particles.
  • FIG. 13 is a schematic diagram of a partial explosion connection structure of an embodiment of the atomizer provided by the present invention.
  • the atomizer body 100 includes an oil storage assembly and an atomizing core assembly 702 inserted in the oil storage assembly, and the oil storage chamber 103 is formed in the oil storage assembly.
  • the atomizing core assembly 702 includes an atomizing sleeve 703, a smoke adsorbing sleeve 705, an upper insulating ring 706, an upper electrode 707, and a heating wire 708.
  • the tube wall of the atomization sleeve 703 is provided with an oil inlet hole 704 communicating with the oil reservoir 103, and the smoke oil adsorption sleeve 705 is sleeved in the atomization sleeve 703 and The oil inlet hole 704 is covered, and the heating wire 708 is used as the heating assembly 105. It is to be understood that the heating assembly 105 is not limited as long as it can atomize the oil.
  • the heating wire 708 is wound into a spiral shape and at least partially sleeved in the oil absorbing sleeve 705 to atomize the smoke oil in the smoke oil adsorption sleeve 705, and the smoke oil adsorption sleeve 705 is formed therein.
  • the upper insulating ring 706 is sleeved in one end of the atomizing sleeve 703, and the upper electrode 707 is sleeved in the insulating ring 706, and one end of the heating wire 708 is The upper electrode 707 is electrically connected, and the other end of the heating wire 708 is electrically connected to the atomizing sleeve 703 to be electrically connected to an external power source through the upper electrode 707 and the atomizing sleeve 703.
  • an end of the atomization sleeve 703 facing away from the upper electrode 707 is sleeved with an atomization core cover 709, and the atomization core cover 709 is provided with a gasket 710, and the atomization sleeve 703 is provided.
  • An oil hood 711 is further disposed, and a gap for the intake air is formed between the oil hood 711 and the atomization sleeve 703, and the atomization sleeve 703 is provided with the oil inlet 704.
  • the surface is closely attached to the oil barrier 711 and communicates with the oil reservoir through a through hole (not shown) of the sidewall of the oil barrier 711.
  • FIG. 14 is a schematic diagram of a partial explosion connection structure of an embodiment of the atomizer provided by the present invention.
  • the oil storage assembly includes an oil storage assembly body 801 and a tamper-preventing assembly 802 detachably inserted at one end of the oil storage assembly body 801.
  • the oil storage assembly body 801 includes a fixing sleeve 8011, an oil storage sleeve 8012, a first gasket 8013, a second gasket 8014, a first connector 8015, a second connector 8016, a lower insulation ring 8017, and a lower portion.
  • An electrode 8018, the oil storage sleeve 8012 is sleeved in the fixing sleeve 8011, and the first gasket 8013 and the second gasket 8014 are respectively disposed at two ends of the oil storage sleeve 8012.
  • the first connector 8015 and the second connector 8016 are respectively inserted at the two ends of the oil storage sleeve 8012.
  • the lower insulation ring 8017 is inserted into the lower connector, and the lower electrode 8018 is sleeved.
  • the first connector 8015 is for connecting with the tamper-preventing component 802
  • the lower electrode 8018 and the second connector 8016 are for electrically connecting with an external power source. It is to be understood that the oil storage assembly is not limited as long as it can store the oil.
  • the tamper-removing component 802 includes an air-conditioning seat 803, an elastic member 804, and a movable cover 805.
  • One end of the air-conditioning seat 803 is inserted into the oil storage assembly main body 801 and is connected to the oil storage assembly main body 801.
  • the first connector 8015 is screwed, the other end of the air conditioning seat 803 extends outside the oil storage assembly body 801, and the elastic member 804 is fixed on the air conditioning seat 803 and the movable cover
  • the 805 is elastically resisted to provide the movable cover 805 with an elastic force away from the oil storage assembly main body 801, and the movable cover 805 is disposed at the back of the detachable assembly facing the oil storage assembly main body 801. On one end.
  • FIG. 14 is a partial structural view of an atomizer according to an embodiment of the present invention
  • FIG. 16 is a partial cross-sectional structure of an atomizer according to an embodiment of the present invention. schematic diagram.
  • the movable cover 805 is provided with an engaging groove 806, and an end surface of the air adjusting seat 803 is provided with engaging teeth 807 for engaging with the engaging groove 806.
  • the engaging groove 806 is at a predetermined distance from the meshing tooth 807.
  • the user can perform the disassembling action on the atomizer without performing the screwing operation on the atomizer anyway, thereby avoiding The occurrence of the disassembly of the nebulizer due to the user's misoperation, and avoiding the child disassembling the nebulizer when the atomizer is accidentally screwed, thereby effectively preventing the child from smoking the smoke oil. It may be seen that the use of the atomizer shown in this embodiment can improve the safety of use of the atomizer structure and avoid accidental disassembly of the atomizer.
  • the movable cover 805 When the atomizer needs to be disassembled, that is, when the air conditioning seat 803 needs to be detached from the oil storage body, the movable cover 805 is required to apply a force toward the air conditioning seat 803. Until the engaging groove 806 is engaged with the engaging tooth 807, the tamper-proof assembly can be removed from the damper assembly 805 by rotating the movable cover 805 The oil storage assembly body 801 is detached.
  • the atomizing core assembly 702 is movably inserted into the oil storage assembly. Specifically, one end of the atomizing core assembly 702 is screwed with the tamper assembly, and more specifically, the mist One end of the oil jacket 711 of the core assembly 702 is screwed to the air conditioning seat 803 such that the atomizing core assembly 702 can be removed when the tamper assembly is removed from the oil storage assembly body 801 The detachment assembly is taken out from the oil storage assembly main body 801.
  • a socket 808 is formed in the air conditioning seat 803 shown in this embodiment, and the nozzle assembly 101 is detachably inserted into the insertion slot 808.
  • the ventilating seat 803 is internally provided with a venting pipe 809.
  • the movable cover 805 is disposed inside the venting groove 810, and the venting seat 803 is provided with a venting hole 811.
  • the movable cover 805 can be rotated to control the overlapping area between the ventilation slot 810 of the movable cover 805 and the ventilation hole 811 of the air conditioning seat 803, that is, the The intake air amount of the atomizer increases as the overlapping area between the vent holes 811 of the air conditioning seat 803 increases.
  • the nebulizer shown in this embodiment can be applied to the user's demand for different smoke concentrations, and can meet the user's demand for personalized smoke.
  • FIG. 17 is a cross-sectional structural view showing another embodiment of the atomizer according to the present invention
  • FIG. 18 is a view of the present invention.
  • the atomizer body 100 includes a support tube 900, a first sleeve 901, a smoke adsorbing member 902, and An electrode assembly 903, the support tube 900 is inserted into the first sleeve 901, the heating assembly 105 is fixed in the support tube 900, and the atomization chamber 104 is formed in the support tube 900.
  • the oil storage chamber 103 is formed between the support tube 900 and the first sleeve 901, and the smoke oil adsorbing member 902 is sleeved outside the support tube 900 and located in the oil reservoir 103.
  • the heating assembly 105 is electrically connected to the electrode assembly 903.
  • One end of the electrode assembly 903 is connected to the first sleeve 901, and the other end of the electrode assembly 903 extends outside the first sleeve 901. And used to electrically connect with an external power source;
  • the heating assembly 105 is capable of atomizing the smoky oil to generate a smog capable of heating the tobacco.
  • the nozzle assembly 101 includes a second sleeve 904, a tobacco fixing sleeve 905, and a nozzle cover 906.
  • the tobacco fixing sleeve 905 is disposed in the second sleeve 904, the nozzle cover 906 is disposed on the end surface of the second sleeve 904, and the receiving cavity is disposed in the tobacco fixing sleeve 905 200 and the ventilation slot 310, the first sleeve 901 and the second sleeve 904 are integrated.
  • An end of the accommodating chamber 200 facing away from the nozzle cover 906 is provided with an annular limiting step 907 for blocking the movement of the tobacco 910 away from the smoke outlet 102.
  • a step 907 facing the surface of the nozzle cover 906 is provided with a groove 908 for communicating with the venting groove 310 and the atomizing chamber 104 for the flow of smoke.

Landscapes

  • Disinfection, Sterilisation Or Deodorisation Of Air (AREA)

Abstract

L'invention concerne un atomiseur, comprenant un corps principal d'atomiseur (1), une sortie pour la fumée (102) située sur une surface extérieure du corps principal d'atomiseur (1), et une cavité de réception (200), une cavité de stockage d'huile (103), une cavité d'atomisation (104) et un élément chauffant (105) agencés dans le corps principal d'atomiseur (1). La cavité de réception (200) est en communication avec la cavité d'atomisation (104) et la sortie pour la fumée (102) ; sert à placer le tabac (201) ; et une partie d'extrémité, en regard de la cavité d'atomisation (104), de ladite cavité de réception (200) comporte au moins une ouverture de coupe (403). Le tabac dans l'atomiseur n'est chauffé que par la fumée à haute température générée dans la cavité d'atomisation, sans dispositif de chauffage électrique supplémentaire pour faire cuire le tabac, et par conséquent, le tabac peut être chauffé de manière uniforme, et le parfum du tabac dans la cavité de réception peut être pratiquement complètement vaporisé, d'où une quantité de fumée relativement importante ; en outre, l'utilisateur exerce directement une force d'action sur le tabac par l'intermédiaire de l'ouverture de coupe jusqu'à ce que le tabac soit extrait de la cavité de réception pour améliorer l'efficacité du remplacement du tabac, et garantir ainsi la saveur de fumée mélangée inhalée par l'utilisateur.
PCT/CN2017/077860 2017-03-23 2017-03-23 Atomiseur WO2018170829A1 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
PCT/CN2017/077860 WO2018170829A1 (fr) 2017-03-23 2017-03-23 Atomiseur

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
PCT/CN2017/077860 WO2018170829A1 (fr) 2017-03-23 2017-03-23 Atomiseur

Publications (1)

Publication Number Publication Date
WO2018170829A1 true WO2018170829A1 (fr) 2018-09-27

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110115398A (zh) * 2019-05-14 2019-08-13 深圳麦克韦尔股份有限公司 电子雾化装置
WO2021000399A1 (fr) * 2019-07-03 2021-01-07 深圳雾芯科技有限公司 Dispositif de vaporisation

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP3100622A1 (fr) * 2015-06-04 2016-12-07 Fontem Holdings 1 B.V. Atomiseur amovible et dispositif à fumer électronique avec ouverture latérale
CN106490692A (zh) * 2016-12-30 2017-03-15 惠州市吉瑞科技有限公司深圳分公司 一种雾化器
CN106510002A (zh) * 2016-12-20 2017-03-22 惠州市吉瑞科技有限公司深圳分公司 一种雾化器
CN106510001A (zh) * 2016-12-20 2017-03-22 惠州市吉瑞科技有限公司深圳分公司 一种雾化器

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP3100622A1 (fr) * 2015-06-04 2016-12-07 Fontem Holdings 1 B.V. Atomiseur amovible et dispositif à fumer électronique avec ouverture latérale
CN106510002A (zh) * 2016-12-20 2017-03-22 惠州市吉瑞科技有限公司深圳分公司 一种雾化器
CN106510001A (zh) * 2016-12-20 2017-03-22 惠州市吉瑞科技有限公司深圳分公司 一种雾化器
CN106490692A (zh) * 2016-12-30 2017-03-15 惠州市吉瑞科技有限公司深圳分公司 一种雾化器

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110115398A (zh) * 2019-05-14 2019-08-13 深圳麦克韦尔股份有限公司 电子雾化装置
WO2021000399A1 (fr) * 2019-07-03 2021-01-07 深圳雾芯科技有限公司 Dispositif de vaporisation

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