WO2018120206A1 - Atomiseur - Google Patents

Atomiseur Download PDF

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Publication number
WO2018120206A1
WO2018120206A1 PCT/CN2016/113911 CN2016113911W WO2018120206A1 WO 2018120206 A1 WO2018120206 A1 WO 2018120206A1 CN 2016113911 W CN2016113911 W CN 2016113911W WO 2018120206 A1 WO2018120206 A1 WO 2018120206A1
Authority
WO
WIPO (PCT)
Prior art keywords
chamber
atomizer
receiving
smoke
accommodating
Prior art date
Application number
PCT/CN2016/113911
Other languages
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.)
Filing date
Publication date
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/CN2016/113911 priority Critical patent/WO2018120206A1/fr
Publication of WO2018120206A1 publication Critical patent/WO2018120206A1/fr

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Classifications

    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/30Devices using two or more structurally separated inhalable precursors, e.g. using two liquid precursors in two cartridges
    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/40Constructional details, e.g. connection of cartridges and battery parts
    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/10Devices using liquid inhalable precursors
    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/20Devices using solid inhalable precursors

Definitions

  • 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 the user to take, atomizing electrons.
  • the smoke overcomes the above deficiencies of traditional cigarettes, it can satisfy consumers' dependence on tobacco to a certain extent, but the smoke liquid of electronic cigarettes is made up of flavors and fragrances. It is not a real cigarette product, and its smoke is weak and lacking.
  • the aroma of tobacco is not 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 tobacco.
  • tobacco is a consumable.
  • the tobacco Although the tobacco is not burned, under the long-term use of the user, the tobacco will still appear black, carbonized, etc. If the user still sucks after this situation, it may cause some harmful substances in the tobacco. And it will also seriously affect the user's mouthfeel. Therefore, if the user feels that the taste is not good after smoking for a period of time, the tobacco should be replaced.
  • the tobacco is generally stored in the air flow passage near the nozzle end, and the user needs to take out the nozzle when replacing the tobacco, and then knock out the tobacco in the air passage by tapping, or pass the tweezers, etc.
  • the tool removes the tobacco from the airflow passage, which makes it difficult for the user to replace the tobacco once, and the replacement efficiency is low, which affects the user experience.
  • the present invention provides an atomizer that facilitates the replacement of tobacco.
  • the present invention provides an atomizer comprising an atomizer body for atomizing smoke oil and a nozzle assembly for allowing a user to smoke the atomizer body, the nozzle assembly being provided with smoke a smoke outlet for discharging by a user, wherein the nozzle assembly is detachably coupled to the atomizer body, the nozzle assembly includes a receiving member and a movable member, and the receiving member is provided with a seat a receiving chamber communicating with the smoke outlet, the receiving chamber for placing tobacco and serving as a first air flow passage, the receiving chamber Communicating with a surface of the nozzle assembly facing the atomizer body and forming a cavity facing the atomizer body, when the nozzle assembly is coupled to the atomizer body, An atomizer body covers the cavity; the movable member is movably inserted in the accommodating member and at least partially extends outside the accommodating member, and the movable member is used when the nozzle assembly is When the atomizer body is separated, the movable member is acted upon by an external force to enable
  • the atomizer body is provided with an oil storage chamber, an atomization chamber and a heating assembly, and the heating assembly is disposed in the atomization chamber and is used for atomizing the oil in the oil storage chamber to Forming a smoke
  • the accommodating chamber is in communication with the atomizing chamber
  • the mist formed by atomization in the atomizing chamber is used for heating the tobacco in the accommodating chamber to generate mixed smoke so that when smoking The mixed smoke flows to the smoke outlet through the first air flow passage.
  • the accommodating cavity is located in one end of the accommodating member, and the movable member is movably inserted at the other end of the accommodating member and is movable in a longitudinal direction of the accommodating member to be inserted into the accommodating cavity
  • the movable member extends away from the receiving cavity to the outside of the receiving member.
  • the movable member is provided with an airflow flow chamber disposed along a longitudinal extension of the movable member, and the smoke outlet is formed at an end surface of the movable member facing away from the receiving cavity, and the airflow flows.
  • One end of the chamber is in communication with the smoke outlet, the other end of the air flow chamber is in communication with the receiving chamber, and an end of the movable member extending outside the receiving member is used as a nozzle for the user to smoke unit.
  • the atomizer body is provided with a slot, one end of the nozzle assembly is inserted in the slot, and the other end of the nozzle assembly extends outside the slot;
  • the accommodating member includes a hollow accommodating tube and an elastic sealing ring sleeved outside the accommodating tube, one end of the accommodating tube is inserted in the slot, and the other end of the accommodating tube extends to the arranging Outside the slot, the elastic sealing ring is sandwiched between the receiving tube and the slot wall of the slot, and the receiving tube is provided with the receiving cavity and a limiting portion at one end of the receiving cavity, An end surface of the housing tube inserted into the slot is formed with the cavity;
  • the movable member includes a push tube, a suction nozzle and a first elastic member, the push tube is inserted in the receiving member and located between the suction nozzle and the receiving cavity, and the push tube faces away from the receiving One end of the cavity is connected to the suction nozzle, and the push tube and the inner cavity of the suction nozzle form the air flow flow chamber, the first elastic member One end abuts the limiting portion, and the other end of the first elastic member abuts the push tube or the suction nozzle to block the movement of the push tube toward the receiving cavity when the
  • the push tube is capable of pushing at least a portion of the tobacco within the receiving chamber from the receiving tube when the nozzle is subjected to a thrust toward the receiving chamber.
  • annular groove extending to one end surface of the nozzle is disposed on an outer circumferential surface of the nozzle, and one end of the annular groove is formed with an annular limiting step, and one end of the pushing tube is inserted
  • the limiting portion is an annular limiting ring
  • the first elastic member is a spring
  • the spring is sleeved on the push tube
  • one end of the spring is The limit step abuts, and the other end of the spring abuts the limit ring.
  • a baffle is disposed on an end surface of the push tube facing away from the nozzle, and the baffle is provided with a plurality of perforations communicating with the receiving cavity and the nozzle.
  • an outer circumferential surface of the push tube facing away from the suction nozzle is provided with an annular fastening ring, and the fastening ring is located on a side of the limiting portion facing the receiving cavity and is opposite to the limit The seat is snapped to block movement of the push tube toward the nozzle.
  • the atomizer body is provided with a slot, one end of the nozzle assembly is inserted in the slot, and the other end of the nozzle assembly extends outside the slot;
  • the accommodating member includes a hollow accommodating tube, and the accommodating chamber is disposed at one end of the accommodating tube;
  • the movable member includes a tubular suction nozzle, one end of the suction nozzle is inserted in the receiving tube, and the other end of the suction nozzle extends outside the receiving tube, and the airflow is formed in the suction nozzle a cavity, the nozzle casing is provided with an elastic ring that abuts against the receiving tube, and the elastic ring is used to block the nozzle from sliding freely.
  • the receiving member is further provided with a second airflow passage, the second airflow passage is in communication with the smoke outlet of the nozzle assembly and the atomization chamber, and the second airflow passage is used for a diversion tunnel Part of the smoke within the atomization chamber is introduced and the portion of the smoke is directed to the smoke outlet.
  • the atomizer body is further provided with a slot communicating with the atomization chamber, at least one end of the receiving member is inserted in the slot, and the receiving cavity is located in the slot
  • the movable member includes a push tube and a suction nozzle, the push tube is inserted in the accommodating member and located between the suction nozzle and the accommodating chamber, and the push tube faces away from the end of the accommodating chamber Connected to the suction nozzle, the push tube and the inner cavity of the suction nozzle form the air flow flow chamber, and the air flow flow chamber communicates with the smoke outlet; the push tube faces a first air hole is further disposed on a sidewall of one end of the receiving cavity;
  • a sidewall of one end of the accommodating cavity is provided with a slot communicating with an outer surface of the accommodating member as the second airflow passage, the slot is located in the slot, and the two ends of the slot are respectively
  • the atomization chamber is in communication with the first air hole, and the slit is provided with a notch facing the receiving cavity and communicating with the receiving cavity; when the receiving cavity is inserted with tobacco, the The tobacco covers the slot such that at least a portion of the smoke within the atomizing chamber flows through the slot to the first air hole while the atomizer is operating, and flows to the smoke outlet via the first air hole .
  • the receiving member has a tubular structure, and a cavity at one end of the receiving cavity is located on an end surface of the receiving member facing away from the slot of the slot, and the slot extends along a longitudinal direction of the receiving member A side wall of the accommodating member is disposed and penetrated.
  • the receiving member is provided with a plurality of the slits, and a predetermined interval is disposed between any two adjacent slits, and the slits are strip-shaped.
  • the atomizer body is further provided with a slot communicating with the atomization chamber, at least one end of the receiving member is inserted in the slot, and the receiving cavity is located in the slot Inside;
  • a sidewall of one end of the receiving chamber is provided with a second air hole communicating with an outer surface of the nozzle assembly and serving as the second air flow passage, the second air hole and the atomizing chamber and the smoke outlet Connected to cause at least a portion of the fumes within the atomizing chamber to flow through the second air vent to the smoke outlet when the atomizer is in operation.
  • a gap is formed between the outer peripheral surface of the receiving member inserted into the slot and the atomizer body, and the gap communicates with the second air hole and the atomizing chamber, The gap is for flowing at least a portion of the smoke within the atomizing chamber through the gap into the second air hole while the atomizer is in operation, and then flows through the second air hole to the smoke outlet.
  • the heating assembly is the only heating device in the atomizer.
  • the atomizer body comprises an oil storage assembly and an atomization core assembly inserted in the oil storage assembly, the oil storage chamber is formed with the oil storage chamber; the atomization core assembly
  • the invention includes an atomization sleeve, a smoke oil adsorption sleeve, a heating wire, a first insulation ring and a first electrode, wherein the tube wall of the atomization sleeve is provided with an oil inlet hole communicating with the oil storage chamber, a smoke oil adsorption sleeve is disposed in the atomization sleeve and covers the oil inlet hole, the heating wire is used as the heating assembly, and the heating wire is wound into a spiral shape and at least partially sleeved on the smoke oil In the adsorption sleeve, to atomize the smoke oil in the smoke oil adsorption sleeve, and the smoke oil is adsorbed
  • the atomization chamber is formed in the sleeve, the first insulation ring is s
  • the oil storage assembly includes an oil storage assembly body and a detachable assembly detachably inserted at one end of the oil storage assembly body, the detachable assembly including an air conditioning seat, a second 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 to 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,
  • Two elastic members are fixed on the air conditioning seat and elastically resisting 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 adjustment
  • An end of the air bearing seat facing away from the main body of the oil storage assembly the movable cover is provided with an engaging groove
  • the air adjusting seat is provided with engaging teeth for engaging with the engaging groove, the engaging groove is away from the Engaging the teeth with a predetermined distance; when the tamper assembly needs to be detached from the oil sump main body, a force toward the damper seat is applied to the movable cover until the engaging groove engages with the meshing groove
  • the teeth engage to disassemble the tamper assembly from the oil reservoir body by rotating the movable cover.
  • 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 airflow passage, 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 first air flow channel is spaced apart from the second air flow channel, and the first air flow channel and the second air flow channel are disposed to isolate the first air flow channel from the second The isolation component of the airflow channel.
  • the atomizer of the present invention includes an atomizer body and a nozzle assembly, the atomizer body being detachably coupled to the nozzle assembly,
  • the nozzle assembly includes a receiving member and a movable member, and a receiving cavity disposed in the receiving chamber and communicating with the smoke outlet, the receiving cavity is configured to place tobacco and serve as a first airflow passage, the receiving cavity and the chamber a surface of the nozzle assembly facing the atomizer body and communicating with a cavity facing the atomizer body, the atomization when the nozzle assembly is coupled to the atomizer body a body covering the cavity, the movable member being movably inserted in the accommodating member and extending at least partially outside the accommodating member, the movable member being used when the nozzle assembly and the mist are to be
  • the external force acts a movable member to enable the movable member to push at least a portion of the tobacco in the receiving chamber from the cavity.
  • FIG. 1 is a schematic cross-sectional structural view of an embodiment of an atomizer provided by the present invention
  • FIG. 2 is a schematic overall structural view of an embodiment of a nozzle assembly 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 another sectional connection structure 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 a nozzle assembly provided by the present invention.
  • FIG. 7 is a cross-sectional structural view showing an embodiment of a nozzle assembly according to the present invention.
  • FIG. 8 is a schematic overall structural view of an embodiment of a push tube provided by the present invention.
  • Figure 9 is a cross-sectional structural view showing another embodiment of the atomizer provided by the present invention.
  • Figure 10 is a schematic view showing the overall structure of an embodiment of a receiving member provided by the present invention.
  • Figure 11 is a schematic view showing the overall structure of another embodiment of the accommodating member provided by the present invention.
  • FIG. 12 is a cross-sectional structural view showing another embodiment of a nozzle assembly according to the present invention.
  • Figure 13 is a cross-sectional structural view showing an embodiment of the atomizer body according to the present invention.
  • FIG. 14 is a schematic view showing an explosion connection structure of an embodiment of a tamper-removing assembly provided by the present invention.
  • 15 is a schematic view showing a partial explosion connection structure of an embodiment of a tamper-preventing assembly provided by the present invention.
  • Figure 16 is a cross-sectional structural view showing another embodiment of the atomizer provided by the present invention.
  • FIG. 17 is a schematic view showing an explosion connection structure of an embodiment of an atomization core assembly provided by the present invention.
  • FIG. 18 is a cross-sectional structural view showing another embodiment of the nozzle assembly provided by the present invention.
  • the embodiment provides an atomizer.
  • the atomizer shown in this embodiment can facilitate the user to replace the tobacco and improve the user experience.
  • the atomizer shown in this embodiment includes an atomizer body 101 for atomizing the smoke oil and a nozzle assembly 102 for the user to suck the smoke in the atomizer body 101, and the nozzle assembly 102 is disposed.
  • the nozzle assembly 102 is detachably coupled to the atomizer body 101.
  • the nozzle assembly 102 includes a receiving member 104 and a movable member 105.
  • the receiving member 104 is disposed in communication with the smoke outlet 103.
  • a receiving chamber 106 is provided for placing tobacco and acting as a first air flow passage.
  • the manner in which the nozzle assembly 102 and the atomizer body 101 are detachably connected to each other may be a tension-fit connection, a screw connection or a magnetic connection, and is not specifically limited herein, as long as the detachable connection is achieved. .
  • the nozzle assembly 102 When the user inhales, the nozzle assembly 102 is inhaled, and a negative pressure is generated in the atomizer body 101 so that the heat generating component in the atomizer body 101 operates to atomize the smoke oil stored in the atomizer body 101 to form high temperature smoke.
  • the high temperature smoke passes through the tobacco in the accommodating chamber 106 through the first air flow passage, so that the high temperature smog heats the tobacco to form a mixed smog, and the mixed smog finally flows through the smog outlet 103 into the oral cavity of the user.
  • 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 106, or insert a part of the cigarette in the The interior of the chamber 106 is received.
  • it can also be homemade shredded tobacco, etc., and is not specifically limited herein.
  • the tobacco is placed directly inside the accommodating cavity 106, which is not limited in this embodiment.
  • 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 exits it can be used to absorb mixed smoke containing two kinds of mouthfeel, that is, a part of the mixed smoke is the smoke generated by atomizing the smoked oil by the heating component, and the other is the taste generated after burning with the cigarette.
  • the same or similar smoke which enriches the taste of the user.
  • 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 receiving cavity 106 and the nozzle assembly 102 face the atomizer body 101
  • the surface is in communication with a cavity 107 facing the atomizer body 101, and when the nozzle assembly 102 is coupled to the atomizer body 101, the atomizer body 101 covers the cavity 107.
  • the accommodating cavity 106 is located at one end of the nozzle assembly 102 near the atomizer body 101, and the port at this end is formed with a cavity 107. Since the cavity 107 has the function of placing tobacco, the nozzle is When the assembly 102 is separated from the atomizer body 101, the cavity 107 is completely exposed, facilitating the user to replace the tobacco placed in the receiving chamber 106.
  • the chamber 107 also acts as a part of the first air flow passage, i.e., the air flow flows from the atomizer body 101 to an inlet of the nozzle assembly 101, and thus, when the nozzle assembly 102 is coupled to the atomizer body 101, the mist The main body 101 covers the cavity 107 to prevent leakage of air.
  • the movable member 105 is movably inserted into the accommodating member 104 and at least partially extends at least outside the accommodating member 104, and the movable member 105 is used when the nozzle assembly 102 and the mist are When the main body 101 is separated, the movable member 105 is acted upon by an external force to enable the movable member 105 to push at least a portion of the tobacco in the accommodating chamber 106 from the cavity 107.
  • the portion of the movable member 105 extending outside the receiving member 104 is located at an end of the receiving member 104 facing away from the atomizer body 101.
  • the user may By pushing the portion of the movable member 105 that extends outside the accommodating member 104 toward the tobacco in the accommodating chamber 106, the movable member 105 acts on at least a portion of the tobacco in the accommodating chamber 106 to be pushed out from the cavity 107, so that the user can conveniently Remove the tobacco.
  • the atomizer of the present invention includes an atomizer body and a nozzle assembly, the atomizer body being detachably coupled to the nozzle assembly, the nozzle assembly including a receiving member and a movable member, the receiving member a receiving cavity disposed in the cavity in communication with the smoke outlet, the receiving cavity for placing tobacco and serving as a first air flow passage, the receiving cavity and a surface of the nozzle assembly facing the atomizer body Connected to and formed with a cavity facing the atomizer body, when the nozzle assembly is connected to the atomizer body, the atomizer body covers the cavity, and the movable member is actively inserted Provided in the accommodating member and extending at least partially outside the accommodating member, the movable member is configured to act on the movable member by an external force when the nozzle assembly is separated from the atomizer body, The movable member is configured to push at least a portion of the tobacco in the receiving chamber from the cavity.
  • the atomizer body 101 is provided with an oil storage chamber 201, an atomization chamber 202 and a heating assembly 203.
  • the heating assembly 203 is disposed in the atomization chamber 202 and used for Atomizing the smoke oil in the oil storage chamber 201 to form a smoke
  • the accommodating chamber 106 is in communication with the atomization chamber 202
  • the aerosol formed by atomization in the atomization chamber 202 is used for the accommodating chamber
  • the tobacco 100 within 106 is heated to generate a mixed mist such that upon smoking, the mixed smoke flows through the first airflow path to the smoke outlet 103.
  • the mist atomized by the heating assembly 203 in the atomization chamber 202 can flow through the guiding of the first air flow passage, and the flow direction is shown in the direction indicated by the arrow shown in FIG.
  • the direction of the smoke flowing through the first air flow passage is in a direction toward the smoke outlet 103.
  • the accommodating cavity 106 is located in one end of the accommodating member 104 , and the movable member 105 is movably inserted at the other end of the accommodating member 104 and can be along the accommodating member 104 .
  • the longitudinal movement is inserted into the receiving cavity 106, and the movable member 105 extends away from the receiving cavity 106 to the outside of the receiving member.
  • the movable member 105 is provided with an airflow flow chamber 301 disposed along a longitudinal extension of the movable member 105, and an end surface of the movable member 105 facing away from the receiving cavity 106
  • the smoke outlet 103 is formed, one end of the air flow chamber 301 is in communication with the smoke outlet 103, and the other end of the air flow chamber 301 is in communication with the receiving chamber 106, and the extension of the movable member 105
  • An end to the outside of the accommodating member 104 serves as a suction portion for the user to smoke.
  • the movable member 105 is provided with an air flow flow chamber 301 disposed along the longitudinal extension of the movable member 105, that is, the movable member 105 is hollow, and the hollow portion is the air flow flow chamber 301, and the movable member 105
  • the hollow airflow flow chamber 301 communicates with the accommodating chamber 106 in the accommodating member 104, and the end portion of the movable member 105 that extends outside the accommodating member 104 serves as a absorbing portion for the user to smoke, so that When the user smokes, the smoke flows out of the atomizer body 101, enters the accommodating chamber 106, passes through the airflow flow chamber 301, and finally flows out of the smoke outlet 103 into the user's mouth.
  • the atomizer body 101 is provided with a slot 401, one end of the nozzle assembly 102 is inserted in the slot 401, and the nozzle assembly 102 is shown in FIG. 4 to FIG. The other end extends beyond the slot 401.
  • the accommodating member 104 includes a hollow receiving tube 402 and an elastic sealing ring 403 disposed outside the receiving tube 402.
  • One end of the receiving tube 402 is inserted into the slot 401, and the receiving tube 402 is The other end extends to the outside of the slot 401.
  • the elastic sealing ring 403 is clamped between the receiving tube 402 and the slot wall of the slot 401.
  • the receiving tube 402 is provided with the receiving cavity 106.
  • a limiting portion 404 at one end of the receiving cavity 106, the end surface of the receiving tube 402 inserted into the slot 401 is formed with the cavity 107.
  • the nozzle assembly 102 is detachably connected to the atomizer body 101.
  • the atomizer body 101 can be provided with a slot 401, and the nozzle assembly 102 is partially inserted into the slot. 401, and in order to enhance the overall sealing of the atomizer, the elastic sealing ring 403 may be sandwiched between the housing tube 402 of the nozzle assembly 102 and the groove wall of the slot 401 of the atomizer body 101.
  • the movable member includes a push tube 405, a suction nozzle 406 and a first elastic member 407.
  • the push tube 405 is inserted into the receiving member 104 and located between the suction nozzle 406 and the receiving cavity 106.
  • An end of the push tube 405 facing away from the receiving cavity 106 is connected to the suction nozzle 406, and the inner tube of the push tube 405 and the suction nozzle 406 form the air flow flow chamber 301, the first elastic member 407
  • One end of the first elastic member 407 abuts against the push tube 405 or the suction nozzle 406 to block the push tube 405 toward the receiving cavity 106.
  • the direction of movement when the nozzle 406 is subjected to a thrust toward the receiving chamber 106, the push tube 405 can push at least a portion of the tobacco within the receiving chamber 106 out of the receiving tube 402.
  • the user can push out the tobacco placed in the accommodating cavity 106 by pushing the movable member 104.
  • the movable member may further include a push tube 405, a suction nozzle 406 and a first elastic member 407.
  • One end of the first elastic member 407 abuts on the limiting portion 404 of the housing tube 402 such that the first elastic member 407 does not slip and the other end abuts on the suction nozzle 406 or the push tube 405, so that the push tube 405 can be blocked.
  • the push tube 405 can be pushed out to push out a portion of the tobacco in the accommodating chamber 106, and the first elastic member 407 is contracted by the external pressure.
  • the first elastic member 407 returns to the original shape, thereby moving the suction nozzle 406 away from the accommodating chamber 106.
  • the position of the nozzle is automatically restored, thereby avoiding the user needing to restore the nozzle through the external tool, thereby improving the user experience.
  • the end of the push tube 405 facing the accommodating cavity 106 may be provided with an annular limiting protrusion, thus increasing the contact area of the push tube 405 with the tobacco. Convenient to launch tobacco.
  • an annular groove 501 extending to one end surface of the nozzle 406 is disposed on an outer circumferential surface of the nozzle 406, and one end of the annular groove 501 is formed with a ring-shaped limit.
  • a step 502 one end of the push tube 405 is inserted in the annular groove 501, the limiting portion 404 is an annular limiting ring, the first elastic member 407 is a spring, and the spring sleeve is On the push tube 405, one end of the spring abuts against the limiting step 502, and the other end of the spring abuts against the limiting ring.
  • the first elastic member 407 may be a spring piece or an air bag or the like, which is not specifically limited herein.
  • One end of the spring abuts on the limiting step 502 of the suction nozzle 406, and the other end abuts on the limiting ring of the housing tube 402, thereby preventing the spring from slipping out.
  • a baffle 601 is disposed on an end surface of the push tube 405 facing away from the suction nozzle 406 , and the baffle 601 is provided with a plurality of the receiving cavity 106 and the A perforation 602 in which the nozzle 406 is in communication is described.
  • a baffle 601 is disposed on the end surface, and a plurality of perforations 602 are disposed in the baffle 601, so that the user reduces the inflow of tobacco debris into the user's mouth during smoking, thereby improving the user's smoking experience.
  • an outer ring surface of the push tube 405 facing away from the suction nozzle 406 is provided with an annular fastening ring 701 , and the fastening ring 701 is located at the facing surface of the limiting portion 404 .
  • One side of the accommodating cavity 106 is coupled to the limiting portion 404 to block the push tube 405 from moving toward the suction nozzle 406.
  • the fastening ring 701 can not only hinder the movement of the push tube 405 toward the suction nozzle 406 when being engaged with the limiting portion 404, but also can push the tobacco placed in the receiving chamber 106 when the push tube 405 is pushed out. Increasing the area of contact with tobacco makes it easier to introduce tobacco.
  • the cross-sectional area of the baffle 601 may be set to be larger than the cross-sectional area of the push tube 405, thereby increasing the contact area of the baffle 601 with the tobacco. Make it easier to introduce tobacco.
  • the suction nozzle 406 is provided with an elastic ring 801 that is abutted against the receiving tube 402 , and the elastic ring 801 is used to block the suction nozzle 406 from sliding.
  • the arrows in Figure 9 are used to indicate the direction of flow of the airflow through the second airflow passage.
  • the accommodating member 104 is further provided with a second air flow passage communicating with the smoke outlet 103 of the nozzle assembly 102 and the atomization chamber 202, and the second air flow passage is used for the diversion chamber A portion of the smoke within the atomization chamber 202 is described and the portion of the smoke is directed to the smoke outlet 103.
  • a first air hole 901 is further disposed on a side wall of the one end of the push tube 405 facing the receiving cavity 106, and one end side wall of the receiving cavity 106 is provided.
  • a slot 902 is provided in communication with the outer surface of the receiving member 104 as the second air flow passage, and the slot 902 is located in the slot 401, and the two ends of the slot 902 are respectively associated with the atomization
  • the cavity 202 is in communication with the first air hole 901, and the slot 901 is provided with a notch facing the receiving cavity 106 and communicating with the receiving cavity 106; when the receiving cavity 106 is inserted with the tobacco 100
  • the tobacco 100 covers the notch such that at least a portion of the smoke within the atomization chamber 202 flows through the slot 901 to the first air vent 901 when the atomizer is in operation, and via the An air vent flows to the smoke outlet 103.
  • the smoke generated by the atomization reaches the accommodating cavity 106 through the atomizer body 101, and a portion of the smoke passes through the tobacco 100 in the accommodating cavity 106 to the smoke outlet 103, that is, through the first airflow passage.
  • a smoke outlet; another portion of the smoke can flow from the slot 902 around the tobacco 100, through the first air vent 901 of the push tube 405, and finally to the smoke outlet 103.
  • the user can suck the mixed smoke and the smoke flowing out through the second air flow passage at the smoke outlet 103, and adopt the structure described in this embodiment, even if The tobacco contains a considerable amount of moisture as the length of time the atomizer is used, because the second air flow passage is provided, thereby ensuring that at least a portion of the mist atomized by the heating assembly can be conducted to the smoke
  • the outlet 103 avoids the occurrence of a situation where smoke is blocked by the tobacco and cannot be transferred to the smoke outlet 103.
  • the mist atomized in the atomization chamber is branched, thereby not only solving the problem that the smoke outlet 103 flows out due to moisture after the tobacco of the accommodating chamber 106 is used for a period of time. Too little smoke, resulting in poor user experience, and increased the release of tobacco flavor, greatly improving the user experience.
  • the tobacco placed in the accommodating cavity 106 may completely cover the notch or may not completely cover the notch.
  • the tobacco in the schematic diagram of FIG. 9 does not completely cover the groove.
  • the smoke can also directly enter the first air hole 901 through the uncovered slot, and the smoke can be flowed more smoothly without passing through the tobacco placed in the receiving cavity 106, and the smoke flows faster. Thereby, the user smokes more smoke once, which improves the user's smoking experience.
  • the receiving member 104 has a tubular structure, and a cavity at one end of the receiving cavity 106 is located on an end surface of the receiving member 104 facing away from the slot of the slot 401, and the slot 902 is along the The longitudinal extension of the receiving member 104 is disposed and penetrates the side wall of the receiving member 104.
  • the receiving member 104 is provided with a plurality of the slits 902, and a predetermined interval is disposed between any two adjacent slits 902, and the slits 902 are strip-shaped.
  • the slits 902 are provided in the chamber wall of the accommodating chamber 106 such that the smoke passes through the slit 902 as the second air passage to the smoke outlet 103.
  • a venting groove may also be recessed at the cavity wall of the accommodating cavity 106 of the housing tube 106 such that the smoke passes through the second airflow path to the outlet of the smog outlet 103.
  • the cavity wall of the accommodating cavity 106 is recessed to form a venting groove extending along the longitudinal direction of the accommodating cavity 106 to serve as the second airflow passage, and one end of the venting groove and the atomizing cavity 202 In communication, the other end of the venting groove is in communication with the smoke outlet 103.
  • the venting groove does not penetrate the wall of the housing tube 106.
  • the slit is provided on the side wall of the accommodating chamber 106 so that the smoke flows toward the second air flow passage, optionally in the ground, and in another implementation, also on the side of the accommodating chamber 106.
  • the second air vent is provided in the wall such that the smoke flows toward the second air flow passage.
  • a sidewall of one end of the accommodating cavity 106 is provided with a second air hole 903 communicating with an outer surface of the nozzle assembly and serving as the second airflow passage.
  • a second air hole 903 communicating with the atomization chamber 106 and the smoke outlet 103, so that at least part of the smoke in the atomization chamber flows to the smoke through the second air hole 903 when the atomizer is operated Exit 103.
  • a gap is formed between the outer peripheral surface of the receiving member 106 inserted into the slot 401 and the atomizer body 101, and the gap is Second vent And the atomization chamber 202 is in communication, the gap is used for at least part of the smoke in the atomization chamber 202 to flow into the second air hole through the gap and then flow through the second air hole when the atomizer is in operation To the smoke outlet 103.
  • the first air flow channel is spaced apart from the second air flow channel, and the cavity wall of the receiving cavity 106 serves as an isolation component between the first air flow channel and the second air flow channel.
  • the structure of the partitioning member between the first airflow passage and the second airflow passage is not specifically limited herein, as long as the first airflow passage and the second airflow passage can be isolated. can.
  • the nozzle assembly of the present invention is similar in structure to the nozzle assembly of the above embodiment, and includes the housing tube 402 and the nozzle 406, and the housing tube 402 is provided for mounting.
  • the accommodating cavity 106 of the tobacco 100 is provided with the slit 902 on the cavity wall of the accommodating cavity 106; the difference is that the movable member of the embodiment is the push plate 108 inserted at one end of the accommodating cavity.
  • the outer peripheral surface of the push plate 108 is provided with a push arm 109 extending through the slit 902 to extend outside the receiving tube, and when the tobacco 100 needs to be pushed out from the receiving cavity 106, The external force urges the push arm 109 to move the push plate 108 toward the cavity of the receiving cavity 106, so that the tobacco 100 can be pushed out from the receiving cavity 106.
  • the nozzle 406 is provided to enable the user to better smoke the smoke. It is understood that the nozzle 406 may not be provided, and the user may directly smoke the smoke through the end of the housing tube 402. .
  • the above embodiment describes the specific device in the nozzle assembly 102.
  • the specific device of the atomizer body 101 in the atomizer will be described in detail below, in conjunction with Figs. 13 and 14.
  • the heating assembly 203 is the only heating device in the atomizer.
  • the only energy source for heating the tobacco is the heating assembly 203 shown in the embodiment, and the structure shown in this embodiment is used to ensure that the user can smoke the cigarette.
  • the structure shown in this embodiment is used to ensure that the user can smoke the cigarette.
  • the atomizer body 101 includes an oil storage assembly and an atomization core assembly inserted in the oil storage assembly, and the oil storage chamber 201 is formed in the oil storage assembly, the oil storage An electrode assembly 1001 is disposed at one end of the assembly, and the atomization core assembly is electrically connected to an external power source through the electrode assembly 1001; the atomization core assembly includes an atomization sleeve 1002, a smoke oil adsorption sleeve 1003, and a heating wire 1004.
  • the first insulating ring 1005 and the first electrode 1006, the tube wall of the atomizing sleeve 1002 is provided with an oil inlet hole 10021 communicating with the oil storage chamber 201, and the smoke oil adsorption sleeve 1003 is sleeved in the same
  • the oil inlet hole 10021 is disposed in the atomization sleeve 1002, and the heating wire 1004 is used as the heating assembly, and the heating wire 1004 is spirally wound and at least partially sleeved on the smoke oil adsorption sleeve.
  • the atomizing chamber 202 is formed in the soot oil adsorption sleeve 1003, and the first insulating ring 1005 is sleeved on the atomizing sleeve.
  • the first electrode 1006 is sleeved in the first insulating ring 1005, one end of the heating wire 1004 is electrically connected to the first electrode 1006, and the other end of the heating wire 1004 is
  • the atomization sleeve 1002 is electrically connected to be electrically connected to an external power source through the first electrode 1004 and the atomization sleeve 1002.
  • an end of the atomization sleeve 1002 facing away from the first electrode 1006 is sleeved with an atomizing core cover 1007, and the atomization core cover 1007 is provided with a sealing ring. 1008.
  • the atomization sleeve 1002 is further provided with a grease trap 1009.
  • a gap for the intake air is formed between the oil barrier sleeve 1009 and the atomization sleeve 1002.
  • the atomization sleeve 1002 is formed.
  • the surface of the oil inlet 10021 is closely attached to the oil barrier 1009 and communicates with the oil reservoir through a through hole 10091 of the sidewall of the oil barrier 1009. It can be understood that the atomization core is only required to atomize the smoke oil, and the structure thereof is not specifically limited herein.
  • the oil storage assembly includes an oil storage assembly main body 1101 and a tamper-preventing assembly 1100 detachably inserted at one end of the oil storage assembly main body 1101 .
  • the oil storage assembly main body 1101 includes a fixing sleeve 11 , an oil storage sleeve 12 , a first gasket 13 , a second gasket 14 , a first joint 15 , a second joint 16 , a second insulating ring 17 and a second electrode 18, the oil storage sleeve 12 is sleeved in the fixing sleeve 11, and the first gasket 13 and the second gasket 14 are respectively disposed at two ends of the oil storage sleeve 12, A connecting head 15 and the second connecting head 16 are respectively inserted at two ends of the oil storage sleeve 12, and the second insulating ring 17 is inserted into the second connecting head 16, the second electrode 18 sets are disposed in the second insulating ring 17 and electrically connected to the first electrode 1006, the first connecting head 15 is used for connecting with the tampering component, the second electrode 18 and the first
  • the two connectors 16 collectively form the electrode assembly 1001 and are for electrical connection with an external power source. It
  • the tamper-preventing assembly 1100 includes an air-conditioning seat 1102 and a second elasticity.
  • a member 1103 and a movable cover 1104 one end of the air conditioning seat 1102 is inserted into the oil storage assembly main body 1101 and is screwed to the oil storage assembly main body 1101, and the other end of the air conditioning base 1102 extends to Outside the oil storage assembly body 1101, the second elastic member 1103 is fixed on the air conditioning seat 1102 and elastically abuts against the movable cover 1104 to provide the movable cover 1104 away from the oil storage.
  • the movable cover 1104 is disposed on an end of the air conditioning base 1102 facing away from the oil storage assembly main body 1101.
  • the movable cover 1104 is provided with an engaging groove 1105.
  • the seat 1102 is provided with a meshing tooth 1106 for engaging with the engaging groove 1105.
  • the engaging groove 1104 is at a predetermined distance from the meshing tooth 1106; when the detachable component needs to be detached from the oil storage body 1101 In the lower case, the movable cover 1104 is required to apply a force in the direction of the air-conditioning seat 1102 until the engaging groove 1105 is engaged with the meshing tooth 1106, thereby rotating the movable cover 1104 to disassemble the detachable component. It is detached from the oil storage assembly main body 1101.
  • the second elastic member 1103 is a hollow silicone ring.
  • the second elastic member may be a spring or the like, which is not specifically limited herein.
  • the air venting seat 1102 is further provided with a snorkel 1000 that is tightly matched with the air venting seat, and the snorkel is used for the nozzle assembly and the atomizing The core components are plugged in and connected.
  • the user can perform the disassembling action on the atomizer without screwing 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 arrow direction shown in Fig. 16 is used to indicate the flow direction of the smoke entering and the atomized by the user from the air inlet when the user smokes.
  • the atomizer shown in this embodiment is further provided with an air inlet 1201.
  • the air inlet 1201 shown in this embodiment is electrically connected to the atomization chamber 202 to make the gas outside the atomizer.
  • the airflow port 1201 can flow into the interior of the atomization chamber 202, and the airflow inside the atomization chamber 202 can drive the mist atomized by the heating component to flow into the interior of the accommodating cavity 106.

Landscapes

  • Disinfection, Sterilisation Or Deodorisation Of Air (AREA)

Abstract

L'invention concerne un atomiseur, comprenant un corps d'atomiseur (101) et un ensemble formant embout buccal (102), le corps d'atomiseur et l'ensemble formant embout buccal étant reliés l'un à l'autre de manière détachable. L'ensemble formant embout buccal comprend un élément de réception (104) et un élément mobile (105). La cavité de l'élément de réception est pourvue d'une cavité de réception (106) qui est en communication avec une sortie de fumée (103) et configurée pour recevoir du tabac. La cavité de réception est en communication avec la surface de l'ensemble formant embout buccal, qui est tournée vers le corps d'atomiseur, et forme une ouverture de cavité (107) faisant face au corps d'atomiseur. Lorsque l'ensemble formant embout buccal et le corps d'atomiseur sont reliés, l'élément mobile est inséré de façon mobile dans l'élément de réception et s'étend au moins partiellement hors de l'élément de réception. Lorsque l'ensemble formant embout buccal et le corps d'atomiseur sont détachés, au moyen d'une force extérieure appliquée à l'élément mobile, l'élément mobile peut pousser au moins une partie du tabac se trouvant dans la cavité de réception à partir de l'ouverture de cavité. De cette manière, un utilisateur peut, lors du remplacement du tabac, pousser au moins une partie du tabac se trouvant dans la cavité de réception uniquement par pression de l'élément mobile dans l'ensemble formant embout buccal, ce qui facilite l'extraction du tabac par l'utilisateur, ceci améliorant son expérience d'utilisation.
PCT/CN2016/113911 2016-12-30 2016-12-30 Atomiseur WO2018120206A1 (fr)

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CN109043640A (zh) * 2018-09-27 2018-12-21 深圳市科伊斯科技有限公司 一种烟草烟弹及其香烟空气加热装置
CN110403255A (zh) * 2019-08-26 2019-11-05 云南中烟工业有限责任公司 一种能使发烟材料与其封装纸分离的加热不燃烧型烟具及其使用方法
CN113161665A (zh) * 2021-03-31 2021-07-23 深圳易马达科技有限公司 电池仓及换电柜
CN113273918A (zh) * 2021-06-07 2021-08-20 厦门倍杰特科技有限公司 一种防渗水雾化器、马桶盖及智能马桶
CN113274593A (zh) * 2020-02-20 2021-08-20 深圳麦克韦尔科技有限公司 电子雾化装置及其应用的气帘形成结构
JP2022502014A (ja) * 2018-10-03 2022-01-11 ジェイティー インターナショナル エス.エイ.JT International S.A. 蒸気生成装置
CN113974217A (zh) * 2021-11-25 2022-01-28 深圳市汉清达科技有限公司 一种电子烟用烟油充分雾化装置
EP4173503A1 (fr) * 2021-10-31 2023-05-03 Shenzhen Eigate Technology Co., Ltd. Produit de tabac chauffé

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CN109043640A (zh) * 2018-09-27 2018-12-21 深圳市科伊斯科技有限公司 一种烟草烟弹及其香烟空气加热装置
JP2022502014A (ja) * 2018-10-03 2022-01-11 ジェイティー インターナショナル エス.エイ.JT International S.A. 蒸気生成装置
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CN110403255A (zh) * 2019-08-26 2019-11-05 云南中烟工业有限责任公司 一种能使发烟材料与其封装纸分离的加热不燃烧型烟具及其使用方法
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CN113274593A (zh) * 2020-02-20 2021-08-20 深圳麦克韦尔科技有限公司 电子雾化装置及其应用的气帘形成结构
CN113274593B (zh) * 2020-02-20 2024-04-05 深圳麦克韦尔科技有限公司 电子雾化装置及其应用的气帘形成结构
CN113161665A (zh) * 2021-03-31 2021-07-23 深圳易马达科技有限公司 电池仓及换电柜
CN113273918A (zh) * 2021-06-07 2021-08-20 厦门倍杰特科技有限公司 一种防渗水雾化器、马桶盖及智能马桶
EP4173503A1 (fr) * 2021-10-31 2023-05-03 Shenzhen Eigate Technology Co., Ltd. Produit de tabac chauffé
CN113974217A (zh) * 2021-11-25 2022-01-28 深圳市汉清达科技有限公司 一种电子烟用烟油充分雾化装置
CN113974217B (zh) * 2021-11-25 2024-01-16 深圳市汉清达科技有限公司 一种电子烟用烟油充分雾化装置

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