WO2017020221A1 - Ensemble atomisation - Google Patents

Ensemble atomisation Download PDF

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Publication number
WO2017020221A1
WO2017020221A1 PCT/CN2015/085921 CN2015085921W WO2017020221A1 WO 2017020221 A1 WO2017020221 A1 WO 2017020221A1 CN 2015085921 W CN2015085921 W CN 2015085921W WO 2017020221 A1 WO2017020221 A1 WO 2017020221A1
Authority
WO
WIPO (PCT)
Prior art keywords
assembly
sleeve
atomizing
bracket
atomization
Prior art date
Application number
PCT/CN2015/085921
Other languages
English (en)
Chinese (zh)
Inventor
刘秋明
向智勇
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 CN201590001300.XU priority Critical patent/CN207653571U/zh
Priority to PCT/CN2015/085921 priority patent/WO2017020221A1/fr
Publication of WO2017020221A1 publication Critical patent/WO2017020221A1/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
    • A24F40/40Constructional details, e.g. connection of cartridges and battery parts
    • A24F40/48Fluid transfer means, e.g. pumps
    • 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

Definitions

  • the utility model relates to the field of electronic cigarettes, in particular to an atomizing assembly capable of facilitating adjustment of smoke concentration and temperature.
  • the atomizing component of the prior art for the atomized smoke of the electronic cigarette comprises an atomizing sleeve, the heating sleeve is internally provided with an electric heating wire, the oil guiding rope for conducting the tobacco oil and the oil storage cotton for storing the tobacco oil And the oil guiding rope is inserted into the oil storage cotton, so that the oil guiding rope can conduct the oil in the oil storage cotton to the electric heating wire, so that the electric heating wire can
  • the smoke oil is atomized to generate smoke that can be used by the user;
  • the prior art has a drawback in that the temperature of the mist atomized by the heating wire is fixed, but in actual use, different users have different requirements on the temperature of the smoke, thereby making the prior art
  • the user's personalized need to adjust the temperature of the smoke cannot be realized; moreover, the concentration of the smoke atomized by the electronic cigarette shown in the prior art is also fixed, but different users have different requirements on the concentration of the smoke, for example, Users who have just used e-cigarettes tend to have a lower demand for smoke concentration. However, if users who use e-cigarettes for a certain period of time, they will need higher concentrations of smoke.
  • the electronic cigarettes shown in the prior art cannot achieve the user's concentration of smoke. Personalized adjustment, which can not meet the different needs of different users for smoke concentration, and because the electronic cigarette after a certain period of use, the electronic cigarette will be hot, not convenient for users.
  • the present invention provides an atomizing assembly that facilitates adjustment of smoke concentration and temperature.
  • An atomizing assembly for forming an electronic cigarette in combination with a battery assembly, wherein: the atomizing assembly comprises a nozzle assembly, an oil storage assembly, an atomizing core assembly, a connecting assembly and a fan assembly, the nozzle assembly and the Connecting components are respectively connected to opposite ends of the oil storage assembly, at least one end of the atomizing core assembly is inserted into the oil storage assembly and used for atomizing the oil in the oil storage assembly, An atomizing chamber and an electric heating wire electrically connected to the connecting assembly are disposed in the atomizing core assembly, the atomizing chamber extending along an axial direction of the atomizing core assembly and end faces of the atomizing core assembly And the nozzle assembly is in communication, the heating wire is inserted in the atomization chamber, and the heating wire is wound into a hollow columnar structure and is atomized along the atomization An axial arrangement of the chamber, the oil storage assembly and an end of the atomizing core assembly facing away from the nozzle assembly being detachably coupled to the connection assembly such that
  • the fan assembly includes a blade and a motor for driving the blade to rotate, the motor is electrically connected to the connection assembly, and the blade and the atomization core assembly are separated from the atomization core assembly
  • One end of the nozzle assembly is correspondingly disposed to enable the airflow to be blown into the atomization chamber when the blade rotates.
  • one end of the atomizing core assembly is detachably connected to the oil storage assembly by means of a tension fit, and the other end of the atomizing core assembly is connected to the connecting assembly by threads.
  • the connecting component includes a first connecting sleeve, a second connecting sleeve, a first insulating ring and a motor bracket, and one end of the first connecting sleeve is connected to the oil storage component, and the first connecting sleeve is further One end is connected to the second connecting sleeve, and one end of the second connecting sleeve facing away from the first connecting sleeve is connected to the battery assembly, and the first insulating ring is inserted away from the second connecting sleeve One end of the atomizing core assembly is received in the first connecting sleeve toward the end of the atomizing core assembly and abuts the atomizing core assembly, and the motor is fixed in the On the motor bracket.
  • the motor is inserted into the motor bracket, and the motor bracket end is provided with a dimple portion, and the opening of the dimple portion is disposed toward the nozzle assembly, and the fan blade is located An end of the motor bracket away from the nozzle assembly is inserted into the first insulating ring and is connected to the battery assembly;
  • the fan assembly also includes a voltage adjustment circuit module for adjusting a voltage delivered to the motor.
  • the connecting component further includes an insulating fixing sleeve, wherein an inner wall of one end of the first connecting sleeve adjacent to the second connecting sleeve is provided with an annular groove, and the groove is connected to the first
  • the connecting sleeve faces an end surface of the second connecting sleeve, one end of the second connecting sleeve is inserted into the recess, and the insulating fixing sleeve is inserted into the first connecting sleeve and clamped therein Between the groove wall of the groove and the end face of the second connecting sleeve;
  • the voltage adjusting circuit module is received in the sealed space surrounded by the second connecting sleeve, the insulating fixing sleeve and the motor bracket.
  • two through holes are disposed through the motor bracket, and three electronic wires are electrically connected to the voltage adjusting circuit module, and the two electronic wires can be electrically connected to the motor through the through holes.
  • One of the electronic wires can pass between the first connecting sleeve and the insulating fixing sleeve and is electrically connected to the first connecting sleeve;
  • a conductive spring in a compressed state is disposed between the motor bracket and the voltage adjusting circuit module, and the motor bracket, the first connecting sleeve and the second connecting sleeve are made of a conductive material, and the voltage
  • the adjustment circuit module is electrically connected to the inner electrode of the battery assembly via the conductive spring and the motor bracket, and the voltage adjustment circuit module sequentially connects the battery via the first connection sleeve and the second connection sleeve
  • the outer electrodes of the assembly are electrically connected.
  • the motor is inserted into the motor bracket, and one end of the motor bracket away from the nozzle assembly is inserted into the first insulating ring and connected to the battery assembly, the fan a leaf is connected to an end of the motor bracket adjacent to the nozzle assembly, and the blade is located inside the atomization core assembly;
  • the fan assembly further includes a voltage adjustment circuit module for adjusting a voltage supplied to the motor, and the voltage adjustment circuit module is fixedly disposed at an end of the motor bracket adjacent to the atomization core assembly to enable the The voltage adjustment circuit module is disposed inside the first connection sleeve.
  • the motor bracket includes a first bracket, a second bracket, and a first electrode that are sequentially connected, and the first bracket and the second bracket are made of a conductive material, and the motor is inserted in the Inside the receiving space formed by the first bracket and the second bracket, the fan blade connected to the motor is located inside the first bracket;
  • first electrode and the second bracket are integrally formed, or the first electrode and the second bracket are detachably connected;
  • the first bracket and the second bracket are integrally formed, or the first bracket and the second bracket are disposed in a detachable connection.
  • the fan assembly further includes: adjusting the voltage supplied to the motor Voltage adjustment circuit module;
  • the voltage adjustment circuit module is clamped and fixed between the first bracket and the second bracket.
  • four electronic wires are disposed in electrical connection with the voltage adjusting circuit module, and two of the electronic wires located inside the motor bracket are electrically connected to the motor, and a device located outside the motor bracket An electron wire passes between the first electrode and the first insulating ring and is electrically connected to the first electrode, and another electronic wire located outside the motor bracket passes through the second connecting sleeve And the first insulating ring is electrically connected to the second connecting sleeve, and the voltage adjusting circuit module is electrically connected to the inner electrode of the battery component through the first electrode, and the voltage adjusting circuit module passes The second connecting sleeve is electrically connected to an outer electrode of the battery assembly.
  • the atomization core assembly comprises: a hollow atomization sleeve, a second insulation ring, a second electrode, a smoke oil adsorption sleeve and the heating wire, and the atomization sleeve is inserted in the oil storage assembly
  • An oil inlet passage is disposed through a side wall of the atomization sleeve, and the second insulation ring is inserted in an end of the atomization sleeve facing away from the nozzle assembly, and the second electrode is inserted in the In the second insulating ring, the smoke oil adsorption sleeve is inserted into the atomization sleeve, so that the oil in the oil storage assembly can sequentially pass through the oil inlet passage and the smoke oil adsorption sleeve. Transfered to the heating wire, the inner cavity of the soot adsorption sleeve forms the atomization chamber.
  • the second electrode is located in the connection component, and the second electrode is in contact with the motor bracket, and the second electrode is a hollow structure to enable the Driving the airflow when the fan blade rotates can be blown into the atomization cavity via the hollow second electrode;
  • One end of the heating wire is electrically connected to the inner electrode of the battery assembly via the second electrode and the motor bracket, and the other end of the heating wire is sequentially passed through the atomizing sleeve and the first connecting sleeve.
  • the second connecting sleeve is electrically connected to an outer electrode of the battery assembly.
  • the oil storage assembly includes an oil storage sleeve and a fixing seat, the fixing seat gap is inserted inside the oil storage sleeve, and a smoke is formed between the oil storage sleeve and the fixing seat for storing smoke
  • An oil storage chamber of the oil the atomization sleeve is inserted into one end of the fixing seat, so that the atomization sleeve and the fixing seat are tightly fitted, and the other end of the fixing seat is inserted
  • the nozzle assembly is configured to tighten the fit between the nozzle assembly and the mount.
  • At least one first air hole is disposed through the first connecting sleeve, at least one second air hole is disposed through the motor bracket, and the first air hole and the second air hole are oppositely disposed.
  • the airflow outside the atomization assembly can be electrically conducted to the fan blade through the first air hole and the second air hole in sequence.
  • the connecting component further includes a first air conditioning ring rotatably sleeved on the first connecting sleeve, and at least one third air hole is disposed on a sidewall of the first air conditioning ring.
  • At least one fourth air hole is disposed on a sidewall of the first connecting sleeve, and the third air hole and the fourth air hole are oppositely disposed to enable the first air conditioning ring to be adjusted when the first air conditioning ring is rotated
  • a coincidence area of the three air holes and the fourth air holes, and different overlapping areas of the third air holes and the fourth air holes correspond to different intake air amounts entering the inside of the connection assembly.
  • the nozzle assembly includes a nozzle assembly body and a second air conditioning ring rotatably sleeved on the nozzle assembly body, and the nozzle assembly body is disposed in the axial direction through the suction a smoke passage communicating with the atomizing core assembly at both ends of the nozzle assembly body, the side wall of the nozzle assembly body being provided with a fifth air inlet communicating with the smoke passage, the second air conditioning a sixth air inlet hole is disposed on a side wall of the ring, and the fifth air inlet hole and the sixth air inlet hole are oppositely disposed to enable the first air conditioning ring to be adjusted when the second air conditioning ring is rotated a coincidence area of the fifth air inlet hole and the sixth air inlet hole, and a different overlapping area of the fifth air inlet hole and the sixth air inlet hole corresponds to a different intake air amount entering the inside of the nozzle assembly .
  • the utility model provides an atomization assembly capable of facilitating adjustment of smoke concentration and temperature, comprising a nozzle assembly, an oil storage assembly, an atomization core assembly, a connection assembly and a fan assembly, wherein the fan assembly comprises a fan blade and is used for driving
  • the motor for rotating the blade can achieve the purpose of disassembling the components in the atomization assembly by the atomization assembly provided by the utility model, so as to realize the requirements of replacement, maintenance, etc., thereby avoiding some
  • the disadvantage of replacing the entire atomizing component in one device, avoiding waste, saving the cost of the user using the electronic cigarette, and the function of the fan assembly is that the airflow driven by the blade can be blown toward
  • the atomizing core assembly is configured to allow smoke to flow along the airflow of the fan blade to the nozzle assembly to be sucked by the user, so that the user can suction the smoke without vigorously pumping the nozzle assembly.
  • the rotating blade can reduce the temperature of the smoke and make the smoke smoked by the user. Degree is more appropriate, and to avoid that the temperature of the deposition surface temperature atomizing assembly that burns a user.
  • FIG. 1 is a schematic cross-sectional structural view of an atomizing assembly provided by the present invention
  • FIG. 2 is a schematic view showing an explosive connection structure of the atomization assembly provided by the present invention
  • FIG. 3 is a schematic cross-sectional structural view of an atomizing core assembly provided by the present invention.
  • connection assembly provided by the present invention
  • Figure 5 is a partial cross-sectional structural view of the atomizing assembly provided by the present invention.
  • FIG. 6 is a schematic view showing an overall structure of a motor bracket provided by the present invention.
  • Figure 7 is a schematic view showing the circuit structure inside the atomizing assembly provided by the present invention.
  • FIG. 8 is a schematic cross-sectional structural view of an atomizing assembly provided by the present invention.
  • Figure 9 is a partial cross-sectional structural view of the atomizing assembly provided by the present invention.
  • Figure 10 is a schematic view showing a partial exploded connection structure of the atomizing assembly provided by the present invention.
  • Figure 11 is a schematic view showing another partial structure of the motor bracket provided by the present invention.
  • FIG. 12 is another schematic diagram of the circuit structure inside the atomization assembly provided by the present invention.
  • Figure 13 is a schematic cross-sectional view showing another embodiment of the atomization assembly of the present invention.
  • Figure 14 is a schematic view showing another structure of the motor bracket provided by the present invention.
  • Figure 15 is a partial cross-sectional structural view of the atomizing assembly provided by the present invention.
  • Figure 16 is a schematic cross-sectional view of the oil storage assembly provided by the present invention.
  • Embodiment 1 The following describes the specific structure of the atomization assembly provided by this embodiment in detail with reference to the accompanying drawings;
  • the atomization assembly provided in this embodiment is combined with a battery assembly to form an electronic cigarette, and the battery assembly is used to supply power to the atomization assembly, so that the atomization assembly can atomize the smoke oil.
  • the battery assembly is used to supply power to the atomization assembly, so that the atomization assembly can atomize the smoke oil.
  • FIG. 1 is a schematic cross-sectional structural view of the atomization assembly provided by the present invention
  • FIG. 2 is a schematic view of the utility model.
  • the atomization assembly includes: an oil storage assembly 100, a connection assembly 200, an atomization core assembly 300, a nozzle assembly 400, and a fan assembly 500;
  • connection assembly 200 First to the oil storage assembly 100, the connection assembly 200, the atomization core assembly 300, The nozzle assembly 400 and the fan assembly 500 are specifically assembled to form the atomization assembly provided by the embodiment:
  • An oil storage chamber 101 (shown in FIG. 1) for storing the oil is disposed in the oil storage assembly 100;
  • the liquid oil may be directly stored in the oil storage chamber 101, or the oil storage cotton storing the oil oil may be placed in the oil storage chamber 101;
  • a liquid smoke oil is stored in the oil storage chamber 101;
  • the specific structure of the oil storage chamber 101 is not limited in this embodiment, as long as the oil storage chamber 101 can store the oil and the stored oil does not leak.
  • the connecting assembly 200 and the nozzle assembly 400 are respectively connected to opposite ends of the oil storage assembly 100;
  • At least one end of the atomizing core assembly 300 is inserted into the oil storage assembly 100 and used to atomize the oil in the oil storage assembly;
  • the atomizing core assembly 300 inserted in the oil storage assembly 100 can atomize the oil in the oil storage chamber 101 to generate a user for smoking.
  • FIG. 3 is a cross-sectional structure of the atomizing core assembly 300
  • the present embodiment is directed to the atomizing core assembly 300 as shown in FIG.
  • the description of the structure is an example and is not limited;
  • the atomizing core assembly 300 is provided with an atomizing chamber 301 and a heating wire 302 electrically connected to the connecting assembly 200;
  • the atomization chamber 301 extends along the axial direction of the atomization core assembly 300 and communicates with both end faces of the atomization core assembly 300 and the nozzle assembly 400;
  • the heating wire 302 is inserted into the atomization chamber 301, so that the mist atomized by the heating wire 302 can be conducted to the nozzle assembly 400 via the atomization chamber 301, so that the user can pump Suction the nozzle assembly 400 to draw smoke;
  • the heating wire 302 shown in this embodiment is wound into a hollow columnar structure and disposed along the axial direction of the atomization cavity 301. It should be clarified that the structure of the heating wire 302 in this embodiment is And the description of the setting manner is an example, which is not limited as long as the heating wire 302 can atomize the smoke oil to form It can be smog;
  • the advantage of using the heating wire 302 in a hollow columnar structure is:
  • the mist atomized by the heating wire 302 can be directly conducted to the nozzle assembly 400 via the atomizing chamber 301, so that the smoke does not need to pass through other components of the atomizing assembly, thereby effectively avoiding the smoke. Pre-cooling occurs when flowing through other devices, so that the user can suck the condensed smoke oil, so that the mist atomized by the heating wire 302 can smoothly flow to the nozzle assembly 400;
  • the heating wire 302 is disposed along the axial direction of the atomization chamber 301, so that the heating wire 302 can be evenly and in large contact with the smoke oil located in the oil storage chamber 101, thereby avoiding the problem.
  • the occurrence of a situation in which the heating wire 302 is in uneven contact with the oil in the oil storage chamber 101 and the concentration of the air-fired wire 302 is air-burned or the atomized smoke is uneven;
  • the heating wire 302 is directly inserted into the atomizing chamber 301 to complete the assembly, so that the heating wire 302 does not need to be adjusted during the specific assembly process.
  • the angle avoids the disadvantage that the atomizing assembly cannot work normally due to the inaccurate angle adjustment of the heating wire 302 during assembly, and can effectively improve the assembly efficiency of the atomizing assembly.
  • connection assembly 200 is detachably connected to the oil storage assembly 100, and the other end of the connection assembly 200 is for detachably connecting with the battery assembly;
  • the specific detachable connection manner of the connecting component 200 and the oil storage component 100 is not limited, for example, by a snap connection or a magnet connection, etc., this embodiment takes the example shown in FIG. 1 and FIG. 2 as an example. That is, the connecting assembly 200 and the oil storage assembly 100 are detachably connected by a threaded structure, and when the connecting assembly 200 is detached from the oil storage assembly 100, the connecting assembly 200 can be screwed. Until the connecting assembly 200 is disengaged from the oil storage assembly 100.
  • the atomizing core assembly 300 is inserted into the oil storage assembly 100;
  • the depth of the atomization core assembly 300 inserted into the oil storage assembly 100 is not limited in this embodiment.
  • the atomization core assembly 300 may be partially inserted in the oil storage.
  • the component 100 or the atomizing core assembly 300 may be entirely inserted into the oil storage assembly 100 as long as the atomizing core assembly 300 can atomize the oil in the oil storage assembly 100;
  • One end of the atomizing core assembly 300 is detachably connected to the oil storage assembly 100, and the other end of the atomizing core assembly 300 is in contact with the connecting assembly 200;
  • the atomizing core assembly 300 and the oil storage assembly 100 are simultaneously connected to the end of the connecting assembly 200 and connected to the atomizing core on the end of the connecting assembly 200.
  • the assembly 300 is located inside the oil storage assembly 100.
  • the atomization assembly provided in this embodiment can achieve the purpose of replacing the components in the atomization assembly.
  • the nozzle assembly 400 can be replaced or cleaned.
  • the detachable connection of the nozzle assembly 400 to the oil storage assembly 100 during maintenance the nozzle assembly 400 can be detached from the end of the oil storage assembly 100;
  • the other end of the atomizing core assembly 300 in the present embodiment is connected to the connecting assembly 200 such that when the connecting assembly 200 is removed from the storage When the oil assembly 100 is detached, the connection assembly 200 can be detached from the oil storage assembly 100 together with the atomizing core assembly 300;
  • the connecting assembly 200 can be detached from the oil storage assembly 100 such that the connecting assembly 200 together with the atomizing core assembly 300
  • the oil storage assembly 100 is detached, and the atomizing core assembly 300 is detachably connected to the connecting assembly 200, and the atomizing core assembly 300 that has been detached from the oil storage assembly 100 is
  • the purpose of disassembling the atomizing core assembly 300 can be achieved by detaching the connecting assembly 200.
  • connection assembly 200 away from the nozzle assembly 400 is used for connection with the battery assembly
  • the heating wire 302 shown in this embodiment is electrically connected to the connecting component 200, because the connecting component 200 is electrically connected to the battery component, so that the heating wire 302 can be combined with the battery component. Electrically connecting, thereby enabling the battery assembly to power the heating wire 302 to atomize the heating wire 302 to form smoke;
  • the fan assembly 500 is disposed in the connecting assembly 200 and is used to blow the smoke generated by the atomizing core assembly 300 to the nozzle assembly 400;
  • the fan assembly 500 includes a blade 501 and a motor 502 for driving the blade 501 to rotate;
  • the specific structure of the fan blade 501 is not limited in this embodiment, as long as the fan blade 501 can drive the airflow to flow in the direction of the nozzle assembly 400 when rotating;
  • the specific structure and implementation process of the motor 502 are not limited in this embodiment, as long as the motor 502 can drive the fan blade 501 to rotate;
  • the motor 502 is electrically connected to the connection assembly 200 to enable the battery assembly to supply power to the motor 502 through the connection assembly 200;
  • the fan blade 501 is disposed corresponding to an end of the atomizing core assembly 300 facing away from the nozzle assembly, so that when the blade 501 rotates, the airflow can be blown into the atomization chamber 301 to make the airflow.
  • the mist atomized by the heating wire 302 can be caused to flow to the nozzle assembly 400.
  • the battery assembly can supply power to the motor 502, so that the motor 502 drives the blade 501 to rotate, so that the blade 501
  • the rotating airflow can be blown to the heating wire 302, so that the air can be circulated to the nozzle assembly 400 along the airflow of the fan blade 501 to be sucked by the user.
  • the user is required to pump vigorously.
  • the suction will have enough airflow to drive the smoke flow, and in this embodiment, because the fan blade 501 is provided, the user can pump the smoke without vigorously pumping the nozzle assembly 400, in a specific application process. The user only needs to gently suck to get enough smoke, which is convenient for the user's use and improves the comfort of the user during the suction process;
  • the rotating fan blade 501 can blow the smoke toward the nozzle assembly 400, and the user can adjust the rotation speed of the blade 501 by the motor 502. Because the rotation speed of the blade 501 is different, the smoke concentration is Different, thus satisfying the user's individualized demand for smoke concentration;
  • the smoke atomized by the heating wire 302 directly flows into the nozzle assembly 400, so that the temperature of the smoke flowing to the nozzle assembly 400 is higher, and the higher the temperature of the smoke reduces the user experience.
  • the scalding of the user may even occur, and the fan blade 501 rotated in this embodiment can reduce the temperature of the smoke, so that the temperature of the smoke sucked by the user is suitable, which improves the comfort of the user during the suction process;
  • the 501 can cool down the components of the atomizing component, thereby effectively avoiding the possibility of the atomizing component being burnt out, effectively ensuring the service life of the atomizing component, and avoiding the deposition of heat to burn the user.
  • Embodiment 2 This embodiment describes in detail how the fan assembly 500 is specifically disposed inside the atomization assembly and how it works.
  • connection component 200 The structure of the connecting component 200 is specifically described in detail.
  • the present embodiment provides three configurations of the connecting component 200 for fixing the motor 502. It should be clarified that this embodiment is
  • the specific structure of the connection component 200 is an example and is not limited;
  • connection assembly 200 for fixing the fan assembly 500 will be described in detail below with reference to the accompanying drawings:
  • FIG. 4 is a schematic cross-sectional structural view of a connection assembly provided by the present invention
  • FIG. 5 is a partial cross-sectional structural view of the atomization assembly provided by the present invention. Specifically, FIG. An enlarged schematic view of the area 201 shown;
  • the connecting component 200 includes a first connecting sleeve 202, a second connecting sleeve 203, a first insulating ring 204 and a motor bracket 205;
  • One end of the first connecting sleeve 202 is connected to the oil storage assembly 100. As shown in FIG. 1 , the first connecting sleeve 202 and the oil storage assembly 100 can be detachably connected by a thread structure;
  • the other end of the first connecting sleeve 202 is connected to the second connecting sleeve 203;
  • the detachable connection between the first connecting sleeve 202 and the second connecting sleeve 203 is performed by plugging and connecting, so that the first connecting sleeve 202 and the second connecting sleeve 202 An interference fit between the connecting sleeves 203;
  • One end of the second connecting sleeve 203 facing away from the first connecting sleeve 202 is connected to the battery assembly to enable the second connecting sleeve 203 to be electrically connected to the battery assembly;
  • connection sleeve 202 and the second connection sleeve 203 can also be detachably connected by a thread structure or the like.
  • the first insulating ring 204 is inserted into an end of the second connecting sleeve 203 facing away from the atomizing core assembly 300;
  • the motor bracket 205 is received in the first connecting sleeve toward one end of the atomizing core assembly 300 The inner portion of 202 is in contact with the atomizing core assembly 300.
  • the motor bracket 205 shown in this embodiment is used to fix the motor 502, and the connection assembly 200 can electrically connect the motor 502 to the battery assembly to ensure that the motor 502 drives the blade 501 to rotate. .
  • FIG. 6 is a schematic overall structural view of the motor bracket 205
  • the motor bracket 205 is integrally formed, thereby facilitating assembly, effectively improving the assembly efficiency of the atomizing assembly, and effectively improving the stability of the atomizing assembly structure;
  • the end of the motor bracket 205 is provided with a dimple portion 206, and the opening of the dimple portion 206 is disposed toward the nozzle assembly 400;
  • the blade 501 is located within the dimple portion (as shown in FIG. 5) to enable the flow of the airflow toward the nozzle assembly 400 when the blade 501 is rotated.
  • One end of the motor bracket 205 away from the nozzle assembly 400 is inserted into the first insulating ring 204 and is connected to the battery assembly;
  • connection assembly 200 further includes an insulating fixing sleeve 207;
  • the insulating sleeve 207 is disposed between the first connecting sleeve 202 and the motor bracket 205, so that the insulating sleeve 207 can electrically isolate the first connecting sleeve 202. And the motor bracket 205.
  • first connecting sleeve 202 and the second connecting sleeve 203 adjacent one end of the inner wall is provided with an annular groove 208;
  • the groove 208 is connected to an end surface of the first connecting sleeve 202 facing the second connecting sleeve 203.
  • One end of the second connecting sleeve 203 is inserted into the recess 208, and the insulating sleeve is inserted.
  • 207 is inserted in the first connecting sleeve 202 and is sandwiched between the groove wall of the groove 208 and one end surface of the second connecting sleeve 203;
  • the efficiency of the process of assembling the connecting component 200 can be improved by the recess 208, and the insulating sleeve 207 is fixed by the recess 208, and the first connecting sleeve 202 and the motor bracket 205 can be effectively secured. Electrical isolation between;
  • the fan assembly 500 further includes a voltage for adjusting the voltage supplied to the motor 502. Voltage adjustment circuit module 503.
  • the voltage adjustment circuit module 503 is configured to electrically connect the motor 502 to the battery component, so that the battery component supplies power to the motor 502 through the voltage adjustment circuit module 503, and passes through the voltage adjustment circuit module 503.
  • the voltage supplied to the motor 502 can be relatively stable, which effectively ensures the normal operation of the motor 502.
  • the voltage adjustment circuit module 503 provided in this embodiment can also adjust the rotation speed of the blade 501, thereby adjusting the concentration and temperature of the smoke by the difference in the rotation speed of the blade 501, thereby satisfying the personalized requirement of the user.
  • the voltage adjustment circuit module 503 is received in the sealed space enclosed by the second connecting sleeve 203, the insulating fixing sleeve 207 and the motor bracket 205;
  • the voltage adjusting circuit module 503 is located in the sealed space surrounded by the second connecting sleeve 203, the insulating fixing sleeve 207 and the motor bracket 205, the voltage adjusting circuit module 503 and the smoke oil are effectively avoided. Contacting, thereby effectively improving the safety of the voltage adjustment circuit module 503, avoiding the possibility of short circuit of the voltage adjustment circuit module 503, and effectively ensuring the normal operation of the fan assembly 500.
  • the motor bracket 205, the first connecting sleeve 202 and the second connecting sleeve 203 shown in this embodiment are made of a conductive material
  • the two electronic wires 210 can be electrically connected to the motor 502 through the through holes 209;
  • One of the electronic wires 211 can pass between the first connecting sleeve 202 and the insulating fixing sleeve 207 and is electrically connected to the first connecting sleeve 202;
  • the electronic wire 211 is clamped and fixed by the first connecting sleeve 202 and the insulating fixing sleeve 207, thereby eliminating the need to solder the electronic wire 211 to the first connecting sleeve 202, thereby effectively improving assembly efficiency. Moreover, the stability of the electrical connection structure in the atomization assembly can be effectively ensured.
  • a conductive spring 212 in a compressed state
  • the conductive spring 212 is sleeved on the motor bracket 205, and the outer peripheral wall of the motor bracket 205 is provided with a holding arm 213, so that when the voltage adjusting circuit module 503 is located in the second When the connecting sleeve 203, the insulating fixing sleeve 207 and the motor bracket 205 are enclosed in a sealed space, the conductive spring 212 located between the voltage adjusting circuit module 503 and the holding arm 213 is in a compressed state. So that the conductive spring 212 can be stably connected to the voltage adjusting circuit module 503 and the motor bracket 205 respectively;
  • the voltage adjusting circuit module 503 is electrically connected to the inner electrode 701 of the battery assembly via the conductive spring 212 and the motor bracket 205 in sequence. connection;
  • the voltage adjustment circuit module 503 is electrically connected to the outer electrode 702 of the battery assembly via the first connection sleeve 202 and the second connection sleeve 203 in sequence.
  • an energization loop between the voltage adjustment circuit module 503 and the electrode of the battery component is established, so that the battery electrode can supply power to the voltage adjustment circuit module 503, and
  • the electronic line 210 can establish an electrical connection relationship between the motor 502 and the voltage adjustment circuit module 503, so that the voltage adjustment circuit module 503 can supply power to the motor 502.
  • connection assembly 200 for fixing the fan assembly 500 Second: The specific structure of the connection assembly 200 for fixing the fan assembly 500 will be described in detail below with reference to the accompanying drawings:
  • FIG. 8 is a schematic cross-sectional structural view of an atomizing assembly provided by the present invention
  • FIG. 9 is a partial cross-sectional structural view of the atomizing assembly provided by the present invention, that is, FIG. 9 is a schematic view of FIG. An enlarged schematic view of the area 801 shown;
  • the connecting assembly 200 includes a first connecting sleeve 202, a second connecting sleeve 203, a first insulating ring 204 and a motor bracket 205;
  • the setting manners of the first connecting sleeve 202 and the second connecting sleeve 203 are shown in the first setting manner, and details are not described herein.
  • the position and arrangement of the first insulating ring 204 shown in this embodiment are the same as those of the first type.
  • the first insulation is Ring 204
  • a receiving groove 1001 is disposed in a direction toward the nozzle assembly 400, and the motor bracket 205 can be stably disposed inside the receiving groove 1001, thereby facilitating assembly and ensuring electrical connection structures of the devices inside the atomizing assembly. stable.
  • the position of the motor bracket 205 is the same as that of the first type, that is, one end of the motor bracket 205 is inserted in the first insulating ring 204, and the other end of the motor bracket 205 is inserted in the same position.
  • the first connecting sleeve 202 is in contact with the atomizing core assembly 300.
  • the difference between the setting mode and the first setting mode is that the structure of the motor bracket 205 is different.
  • the motor bracket 205 is detachably connected;
  • the motor bracket 205 includes a first bracket 901, a second bracket 902, and a first electrode 903 which are sequentially connected;
  • the first bracket 901, the second bracket 902 and the first electrode 903 connected in sequence are assembled to form the motor bracket 205;
  • the first bracket 901 and the second bracket 902 are made of a conductive material
  • the motor 502 is inserted inside the receiving space 904 formed by the first bracket 901 and the second bracket 902;
  • the blade 501 connected to the motor 502 is located inside the first bracket 901;
  • the first bracket 901 is provided with a venting hole 905;
  • vent 905 is disposed toward the atomizing core assembly 300 such that the motor bracket 205 is disposed in communication with the atomizing chamber 301 via the venting hole 905;
  • the end of the first electrode 903 away from the second bracket 902 is inserted into the first insulating ring 204 and is connected to the battery assembly.
  • first electrode 903 and the second bracket 902 are integrally formed, or the first electrode 903 and the second bracket 902 are detachably connected;
  • the first bracket 901 and the second bracket 902 are integrally formed, or the first bracket Between the 901 and the second bracket 902 is a detachable connection.
  • the fan assembly 500 also includes a voltage adjustment circuit module 503 for adjusting the voltage delivered to the motor 502.
  • the voltage adjustment circuit module 503 is configured to electrically connect the motor 502 to the battery component, so that the battery component supplies power to the motor 502 through the voltage adjustment circuit module 503, and passes through the voltage adjustment circuit module 503.
  • the voltage supplied to the motor 502 can be relatively stable, which effectively ensures the normal operation of the motor 502.
  • the voltage adjustment circuit module 503 provided in this embodiment can also adjust the rotation speed of the blade 501, thereby adjusting the concentration and temperature of the smoke by the difference in the rotation speed of the blade 501, thereby satisfying the personalized requirement of the user.
  • the voltage adjustment circuit module 503 is clamped and fixed between the first bracket 901 and the second bracket 902.
  • the voltage adjustment circuit module 503 is clamped and fixed between the first bracket 901 and the second bracket 902, the space in which the voltage adjustment circuit module 503 can be placed is relatively large, thereby facilitating the
  • the voltage adjustment circuit module 503 is configured to solder electronic wires, perform assembly and maintenance, and the like, and can effectively prevent the electronic wires soldered on the voltage adjustment circuit module 503 from being mixed together to cause a short circuit, thereby effectively ensuring the protection.
  • the voltage adjustment circuit module 503 operates normally.
  • Two of the electronic wires 906 located inside the motor bracket 205 are electrically connected to the motor 503;
  • One of the electron wires 907 located outside the motor bracket 205 passes between the first electrode 903 and the first insulating ring 204 and is electrically connected to the first electrode 903;
  • Another electronic wire 908 located outside the motor bracket 205 passes between the second connecting sleeve 203 and the first insulating ring 204 and is electrically connected to the second connecting sleeve 203;
  • the electronic wire 907 is clamped and fixed by the first electrode 903 and the first insulating ring 204 to achieve electrical connection with the first electrode 903, and the electronic wire 908 passes through the
  • the second connecting sleeve 203 and the first insulating ring 204 are clamped and fixed to achieve electrical connection with the second connecting sleeve 203, thereby eliminating the need for soldering steps, facilitating operation, and avoiding the subsequent use of the atomizing assembly.
  • the loosening of the electronic wire between the first electrode 903 and the second connecting sleeve 203 ensures the stability of the electrical connection structure.
  • the voltage adjustment circuit module 503 is electrically connected to the inner electrode 701 of the battery component through the first electrode 903 through the description of the structure of the atomization assembly described above, in conjunction with the circuit diagram shown in FIG. 12;
  • the voltage adjustment circuit module 503 is electrically connected to the outer electrode 702 of the battery assembly through the second connection sleeve 203.
  • an energization loop between the voltage adjustment circuit module 503 and the electrode of the battery component is established, so that the battery electrode can supply power to the voltage adjustment circuit module 503, and
  • the electronic line 906 can establish an electrical connection relationship between the motor 502 and the voltage adjustment circuit module 503, so that the voltage adjustment circuit module 503 can supply power to the motor 502.
  • connection assembly 200 for fixing the fan assembly 500 will be described in detail below with reference to the accompanying drawings:
  • first connecting sleeve 202 the second connecting sleeve 203 and the first insulating ring 204, please refer to the first type, specifically in this setting mode. Make a statement;
  • the difference between the setting manner and the first setting manner is that the manner in which the fan assembly 500 is fixed on the motor bracket 205 is different;
  • the motor 502 is inserted into the motor bracket 205;
  • One end of the motor bracket 205 away from the nozzle assembly 400 is inserted into the first insulating ring 204 and is connected to the battery assembly;
  • the specific structure of the first insulating ring 204 is not limited in this embodiment, for example, as shown in the first setting mode or the second setting mode;
  • the fan blade 501 is connected to one end of the motor bracket 205 near the nozzle assembly 400. As shown in FIG. 14 and FIG. 15, the blade 501 is located outside the motor bracket 205;
  • the blade 501 in the setting mode, the blade 501 is exposed outside the motor bracket 205, that is, as shown in FIG. 13, the blade 501 is located inside the atomizing core assembly 300.
  • the airflow driven by the rotation of the blade 501 does not need to pass through the motor bracket 205, but can flow directly to the atomizing core assembly 300, thereby avoiding the shunting of the airflow, effectively ensuring the flow to the atomizing core assembly 300. Air flow.
  • the fan assembly 500 further includes a voltage adjustment circuit module 503 for adjusting the voltage supplied to the motor.
  • the function and structure of the voltage adjustment circuit module 503 are described in the first setting mode. The difference in the arrangement manner is that the setting positions of the voltage adjustment circuit module 503 are different;
  • the voltage adjustment circuit module 503 is fixedly disposed at an end of the motor bracket 205 near the atomization core assembly 300, so that the voltage adjustment circuit module 503 is disposed inside the first connection sleeve 202;
  • the arrangement of the voltage adjustment circuit module 503 can be relatively large, so that the electronic wire can be soldered on the voltage adjustment circuit module 503 for assembly and maintenance, and the welding can be effectively avoided.
  • the electronic lines on the voltage adjustment circuit module 503 are mixed together to cause a short circuit, which effectively ensures the normal operation of the voltage adjustment circuit module 503.
  • the motor 502 is specifically connected to the battery component.
  • the second setting mode which is not described in detail in this embodiment.
  • Embodiment 3 This embodiment further describes the specific structure of the atomization component in further detail:
  • one end of the atomizing core assembly 300 is detachably connected to the oil storage assembly 100 by means of a tension fit, and the other end of the atomizing core assembly 300 is threaded.
  • the connection assembly 200 is connected.
  • connection manner between the devices of the atomization assembly is an example and is not limited.
  • the structure of the atomizing core assembly 300 is exemplified in the following with reference to FIG. 3 and FIG. 8. It should be clarified that the description of the atomizing core assembly 300 in this embodiment is an example, and no Limited
  • the atomizing core assembly 300 includes:
  • a hollow atomizing sleeve 303 a hollow atomizing sleeve 303, a second insulating ring 304, a second electrode 305, a soot adsorption sleeve 306 and the heating wire 302;
  • the atomization sleeve 303 is inserted into the oil storage assembly 100;
  • An oil inlet passage 307 is disposed through the side wall of the atomization sleeve 303 to enable the oil in the oil storage assembly 100 to flow through the oil inlet passage 307 to the inside of the atomization sleeve 303;
  • the second insulating ring 304 is inserted into an end of the atomizing sleeve 303 facing away from the nozzle assembly 400, and the second electrode 305 is inserted into the second insulating ring 304 to make the first
  • the second insulating ring 304 can electrically isolate the second electrode 305 and the atomizing sleeve 303;
  • the smoke oil adsorption sleeve 306 is inserted into the atomization sleeve 303, and the smoke oil adsorption sleeve 306 is matched with the atomization sleeve 303, that is, the smoke oil adsorption sleeve 306 is also a hollow column structure. ;
  • the smoke oil located in the oil storage assembly 100 can be sequentially transferred to the heating wire 302 via the oil inlet passage 307 and the smoke oil adsorption sleeve 306;
  • the inner cavity of the soot adsorption sleeve 306 forms the atomization chamber 301.
  • the smoke oil adsorption sleeve 306 is disposed on the outer circumferential surface of the heating wire 302, so that the oil adsorption sleeve 306 can uniformly transfer the oil to the heating wire 302, thereby avoiding
  • the heating wire 302 appears to be uneven due to uneven smoke oil, and the outer peripheral surface of the heating wire 302 is disposed in close contact with the oil absorbing sleeve 306, thereby effectively avoiding the heating wire.
  • the occurrence of the situation of 302 air-burning avoids the situation in which the heating wire 302 is generated by the air-burning to cause damage to the user's body, thereby effectively protecting the health of the user.
  • the second electrode 305 is located in the connection assembly 200, and the second electrode 305 is in contact with the motor bracket 205 to electrically connect the second electrode 305 and the motor bracket 205.
  • the second electrode 305 is a hollow structure, so that when the fan blade located in the connecting component 200 rotates, the airflow can be blown into the atomization cavity 301 via the hollow second electrode 305;
  • one end of the heating wire 302 is electrically connected to the inner electrode of the battery assembly via the second electrode 305 and the motor bracket 205 in sequence;
  • the other end of the heating wire 302 is sequentially passed through the atomizing sleeve 303 and the first connecting sleeve 202.
  • the second connection sleeve 203 is electrically connected to an outer electrode of the battery assembly.
  • the oil storage assembly 100 includes: an oil storage sleeve 102 and a fixing seat 103;
  • the fixing seat 103 is interposed between the oil storage sleeve 102, and an oil storage chamber 101 for storing smoke oil is formed between the oil storage sleeve 102 and the fixing base 103;
  • the oil storage sleeve 102 shown in this embodiment may be made of a transparent material, so that the user can view the remaining amount of smoke oil at any time.
  • the oil storage sleeve 102 can also be partially transparent, specifically The material and the size of the transparent area are not described in this embodiment;
  • the atomizing sleeve 303 is inserted into one end of the fixing base 103 to make a tight fit between the atomizing sleeve 303 and the fixing base 103;
  • the other end of the fixing base 103 is inserted with the nozzle assembly 400 to make a tight fit between the nozzle assembly 400 and the fixing base 103.
  • the first air hole 601 and the second air hole 602 are oppositely disposed such that airflow outside the atomization assembly can be circulated to the motor bracket 205 through the first air hole 601 and the second air hole 602 in sequence. Internally, the airflow through the first air hole 601 and the second air hole 602 can be caused to flow to the blade 501 located in the motor bracket 205.
  • the connecting assembly 200 further includes a first air conditioning ring 214 rotatably sleeved on the first connecting sleeve 202;
  • the first air conditioning ring 214 is provided with at least one third air hole 215 on the side wall;
  • At least one fourth air hole 216 is disposed on a sidewall of the first connecting sleeve 202, and the third air hole 215 and the fourth air hole 216 are disposed opposite to each other such that when the first air conditioning ring 214 is rotated
  • the overlapping area of the third air hole 215 and the fourth air hole 216 can be adjusted, and the different The overlapping area of the third air hole 215 and the fourth air hole 216 corresponds to a different amount of intake air entering the inside of the connection assembly 200.
  • the advantage of this arrangement is that not only can the airflow outside the atomization assembly flow smoothly to the blade 501, but also the connection to the connection assembly 200 can be adjusted by screwing the first air distribution ring 214.
  • the amount of internal air intake further satisfies the user's demand for intake air.
  • the nozzle assembly 400 includes a nozzle assembly body 401 and a second air conditioning ring 402 that is rotatably sleeved on the body of the nozzle assembly 401;
  • the nozzle assembly body 401 is axially disposed with a smoke passage 403 extending through both ends of the nozzle assembly body 401 and communicating with the atomizing core assembly 300;
  • the user can suction the smoke through the smoke passage 403;
  • a fifth air inlet 404 is formed on the side wall of the nozzle assembly body 401, and a sixth air inlet 405 is disposed on the sidewall of the second air conditioning ring 402.
  • the fifth intake hole 404 and the sixth intake hole 405 are oppositely disposed such that the fifth intake hole 404 and the sixth feed can be adjusted when the second air circulation ring 402 is rotated.
  • the overlapping area of the air holes 405 and the different overlapping areas of the fifth air inlet holes 404 and the sixth air inlet holes 405 correspond to different intake air amounts entering the inside of the nozzle assembly 400.
  • the user can adjust the fifth intake air.
  • the effective reduction of the smoke concentration can also effectively reduce the temperature of the smoke, that is, the user can adjust the overlapping area of the fifth air inlet 404 and the sixth air inlet 405 to adjust the temperature of the smoke.
  • the purpose is to further facilitate the user and effectively improve the user experience.

Abstract

L'invention concerne un ensemble atomisation capable de réguler de manière appropriée la concentration et la température d'une fumée, et qui comprend un composant buse (400) d'aspiration, un composant de stockage (100) de goudrons, un composant noyau (300) d'atomisation, un composant de raccordement (200) et un composant ventilateur (500), le composant ventilateur (500) comprenant des pales (501) et un moteur (502) ; un écoulement d'air entraîné par la rotation des pales (501) peut être soufflé vers le composant noyau (300) d'atomisation, de sorte que la fumée peut suivre l'écoulement d'air entraîné par les pales (501) pour s'écouler vers le composant buse (400) d'aspiration en vue d'être inhalée par un utilisateur, l'utilisateur pouvant ainsi inhaler la fumée sans devoir aspirer fortement sur le composant buse (400) d'aspiration ; et les pales rotatives (501) peuvent réduire la température de la fumée, de sorte que la température de la fumée inhalée par l'utilisateur est modérée. Tous les composants de l'ensemble atomisation peuvent être démontés afin de répondre à des exigences de remplacement, de réparation, etc., ce qui évite un gaspillage et réduit le coût d'utilisation de cigarettes électroniques pour les utilisateurs.
PCT/CN2015/085921 2015-08-03 2015-08-03 Ensemble atomisation WO2017020221A1 (fr)

Priority Applications (2)

Application Number Priority Date Filing Date Title
CN201590001300.XU CN207653571U (zh) 2015-08-03 2015-08-03 一种雾化组件
PCT/CN2015/085921 WO2017020221A1 (fr) 2015-08-03 2015-08-03 Ensemble atomisation

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
PCT/CN2015/085921 WO2017020221A1 (fr) 2015-08-03 2015-08-03 Ensemble atomisation

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USD842536S1 (en) 2016-07-28 2019-03-05 Juul Labs, Inc. Vaporizer cartridge
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US10638792B2 (en) 2013-03-15 2020-05-05 Juul Labs, Inc. Securely attaching cartridges for vaporizer devices
US10279934B2 (en) 2013-03-15 2019-05-07 Juul Labs, Inc. Fillable vaporizer cartridge and method of filling
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US10264823B2 (en) 2013-12-23 2019-04-23 Juul Labs, Inc. Vaporization device systems and methods
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US10076139B2 (en) 2013-12-23 2018-09-18 Juul Labs, Inc. Vaporizer apparatus
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US10117465B2 (en) 2013-12-23 2018-11-06 Juul Labs, Inc. Vaporization device systems and methods
US10912331B2 (en) 2013-12-23 2021-02-09 Juul Labs, Inc. Vaporization device systems and methods
US10159282B2 (en) 2013-12-23 2018-12-25 Juul Labs, Inc. Cartridge for use with a vaporizer device
US10701975B2 (en) 2013-12-23 2020-07-07 Juul Labs, Inc. Vaporization device systems and methods
US10667560B2 (en) 2013-12-23 2020-06-02 Juul Labs, Inc. Vaporizer apparatus
US10201190B2 (en) 2013-12-23 2019-02-12 Juul Labs, Inc. Cartridge for use with a vaporizer device
US10045567B2 (en) 2013-12-23 2018-08-14 Juul Labs, Inc. Vaporization device systems and methods
US10058130B2 (en) 2013-12-23 2018-08-28 Juul Labs, Inc. Cartridge for use with a vaporizer device
US10058124B2 (en) 2013-12-23 2018-08-28 Juul Labs, Inc. Vaporization device systems and methods
US10512282B2 (en) 2014-12-05 2019-12-24 Juul Labs, Inc. Calibrated dose control
US10865001B2 (en) 2016-02-11 2020-12-15 Juul Labs, Inc. Fillable vaporizer cartridge and method of filling
US10405582B2 (en) 2016-03-10 2019-09-10 Pax Labs, Inc. Vaporization device with lip sensing
USD849996S1 (en) 2016-06-16 2019-05-28 Pax Labs, Inc. Vaporizer cartridge
USD929036S1 (en) 2016-06-16 2021-08-24 Pax Labs, Inc. Vaporizer cartridge and device assembly
USD913583S1 (en) 2016-06-16 2021-03-16 Pax Labs, Inc. Vaporizer device
USD836541S1 (en) 2016-06-23 2018-12-25 Pax Labs, Inc. Charging device
USD851830S1 (en) 2016-06-23 2019-06-18 Pax Labs, Inc. Combined vaporizer tamp and pick tool
USD842536S1 (en) 2016-07-28 2019-03-05 Juul Labs, Inc. Vaporizer cartridge
USD825102S1 (en) 2016-07-28 2018-08-07 Juul Labs, Inc. Vaporizer device with cartridge
USD887632S1 (en) 2017-09-14 2020-06-16 Pax Labs, Inc. Vaporizer cartridge
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