WO2023193324A1 - Ensemble noyau d'atomisation et atomiseur électronique - Google Patents

Ensemble noyau d'atomisation et atomiseur électronique Download PDF

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Publication number
WO2023193324A1
WO2023193324A1 PCT/CN2022/092067 CN2022092067W WO2023193324A1 WO 2023193324 A1 WO2023193324 A1 WO 2023193324A1 CN 2022092067 W CN2022092067 W CN 2022092067W WO 2023193324 A1 WO2023193324 A1 WO 2023193324A1
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WIPO (PCT)
Prior art keywords
oil
cotton
tube body
atomization
liquid
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PCT/CN2022/092067
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English (en)
Chinese (zh)
Inventor
杨淼文
林永辉
潘实梅
帅辉福
符亚娇
Original Assignee
深圳尊一品科技有限公司
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Publication of WO2023193324A1 publication Critical patent/WO2023193324A1/fr

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    • 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
    • A24F40/40Constructional details, e.g. connection of cartridges and battery parts
    • A24F40/42Cartridges or containers for 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
    • A24F40/40Constructional details, e.g. connection of cartridges and battery parts
    • A24F40/44Wicks
    • 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
    • A24F40/46Shape or structure of electric heating means
    • 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
    • A24F40/50Control or monitoring

Definitions

  • the present invention relates to the technical field of atomizers, and in particular to an atomizer core assembly and an electronic atomizer.
  • Atomization refers to turning liquid into small droplets through a special device and spraying them out in the form of mist. Atomization is widely used in people's production and life.
  • Electronic atomizers mainly atomize oil. According to the characteristics of the oil, the electronic atomizer uses heating to atomize the oil for the user to inhale.
  • an electronic atomizer is equipped with a cotton core, an oil chamber and a heating structure.
  • the cotton core absorbs oil from the oil chamber.
  • the heater heats the cotton core to atomize the oil in the cotton core.
  • the atomization process It is easy to cause oil leakage, and it is also easy to produce a "gurgling" noise during the atomization process.
  • the present invention aims to solve at least one of the technical problems existing in the prior art. To this end, the present invention proposes an atomization core assembly and an electronic atomizer, which can effectively improve the atomization effect and at the same time avoid oil leakage.
  • An atomization core assembly includes an outer tube body, a top cover, oil supply cotton, an inner tube body, an oil storage cotton and a heating element: the outer tube body is provided with an oil inlet; the top cover Connected to the top of the outer tube body, the top cover is provided with a smoke channel; the oil supply cotton is located in the outer tube body, and the oil supply cotton is provided with an oil supply channel; the inner tube body is located in the oil supply channel, and the inner tube body is provided with an oil outlet , the oil outlet hole and the oil inlet hole are located on the inner and outer sides of the oil supply cotton, and the oil outlet hole is located above the oil inlet hole so that the oil can be transported from bottom to top; the oil storage cotton is located in the inner tube body, and the oil storage cotton is equipped with a mist
  • the atomization channel is connected with the smoke channel; the heating element is located in the smoke channel, and the heating element is used to heat and atomize the oil in the oil storage cotton.
  • An atomization core assembly has at least the following beneficial effects: oil is transported to the oil storage cotton through the oil supply cotton, and the oil is transported from the oil inlet hole to the oil supply cotton, and in the oil supply cotton The oil is transported by capillary action instead of conventional flow, which can effectively control the speed of oil transportation in the oil supply cotton.
  • the oil outlet hole is located above the oil inlet hole. Through the action of the oil's own gravity, the oil can be transported Further reduce the speed of oil transportation in the oil supply cotton, thereby avoiding incomplete atomization caused by excessive flow of oil to the oil storage cotton, and thus effectively reducing the oil spillage into the atomization channel caused by incomplete atomization.
  • the formation of large oil droplets can ultimately prevent large oil droplets from leaking through the atomization channel and causing oil leakage. It can also effectively prevent the formation of large oil droplets in the atomization channel from acting on the passing airflow to produce "gurgling" effects. It can effectively reduce the noise generated when the atomizer core component is working, and can effectively improve the user experience.
  • the center of the heating element and the center of the oil outlet hole are located at the same level.
  • the oil storage cotton is provided with a blocking portion
  • the inner tube body is provided with a blocking groove
  • the blocking portion is clipped in the blocking groove
  • the blocking portion is located at the oil inlet hole. above.
  • An atomizer core assembly further includes a fixed seat and a first sealing ring.
  • the bottom of the inner tube body is connected to the fixed seat, and the outer ring wall of the first sealing ring is in contact with the inside of the bottom of the outer tube body.
  • the fixed seat is in contact with the inner ring wall of the first sealing ring, and the fixed seat and the first sealing ring are used to block the bottom nozzle of the outer pipe body.
  • An electronic atomizer according to a second embodiment of the present invention includes the atomization core assembly of the first embodiment.
  • An electronic atomizer has at least the following beneficial effects: oil is transported to the oil storage cotton through the oil supply cotton, and the oil is transported from the oil inlet hole to the oil supply cotton, and is stored in the oil supply cotton.
  • the oil is transported by capillary action instead of conventional flow, which can effectively control the speed of oil transportation in the oil supply cotton.
  • the oil outlet hole is located above the oil inlet hole. Through the action of the oil's own gravity, the oil can be transported Further reduce the speed of oil transportation in the oil supply cotton, thereby avoiding incomplete atomization caused by excessive flow of oil to the oil storage cotton, and thus effectively reducing the oil spillage into the atomization channel caused by incomplete atomization.
  • the formation of large oil droplets can ultimately prevent large oil droplets from leaking through the atomization channel and causing oil leakage. It can also effectively prevent the formation of large oil droplets in the atomization channel from acting on the passing airflow to produce "gurgling" effects. It can effectively reduce the noise generated when the atomizer core assembly is working, and can effectively improve the user experience; during use of the electronic atomizer, it can effectively avoid factors such as vibration, temperature difference, air pressure changes, etc. that affect the delivery of oil to the oil storage. The flow rate of cotton can effectively ensure that the atomization effect is controllable.
  • An electronic atomizer further includes a shell, the shell is provided with an oil storage chamber, the atomization core assembly is located in the oil storage chamber, and the oil inlet hole is connected with the oil storage chamber.
  • the distance between the oil inlet hole and the oil outlet hole is A
  • the distance between the oil inlet hole and the top wall of the oil storage chamber is B
  • An electronic atomizer further includes a second sealing ring.
  • the outer ring wall of the second sealing ring is in contact with the inner wall of the housing.
  • the inner ring wall of the second sealing ring is in contact with the outer wall of the outer tube body.
  • the second sealing ring is in contact with the bottom of the oil storage chamber.
  • An electronic atomizer further includes an electronic control component.
  • the casing is further provided with an electronic control cavity.
  • the electronic control cavity is located on the side of the second sealing ring away from the oil storage cavity.
  • the electronic control component is located on the electronic nebulizer.
  • the heating element is electrically connected to the electric control component, and the electric control component is used to power the heating element.
  • a positioning tube is provided in the housing, and the top cover is connected to the bottom of the positioning tube.
  • Figure 1 is a schematic three-dimensional structural diagram of the atomization core assembly according to an embodiment of the present invention
  • Figure 2 is a schematic top structural view of the atomizing core assembly according to the embodiment of the present invention.
  • Figure 3 is a schematic cross-sectional structural diagram along the C-C direction shown in Figure 2;
  • Figure 4 is a schematic exploded structural diagram of the atomization core assembly according to the embodiment of the present invention.
  • Figure 5 is a schematic three-dimensional structural diagram of an electronic atomizer according to an embodiment of the present invention.
  • Figure 6 is a schematic top structural view of an electronic atomizer according to an embodiment of the present invention.
  • Figure 7 is a schematic cross-sectional structural diagram along the D-D direction shown in Figure 6;
  • Figure 8 is a schematic diagram of the exploded structure of the electronic atomizer according to the embodiment of the present invention.
  • Processing table assembly 100 rotating table 110, rotating drive mechanism 111, turntable 112, first guide hole 113, second guide hole 114, product clamping structure 120, product fixture 130, film support column 140, film support member 141, Trigger column 150, linkage piece 160, self-locking mechanism 170, clamping spring 171, clamping piece 172, self-locking guide rail 173, guide wheel 174, push spring 180;
  • Cover film assembly 200 cover film translation mechanism 210, cover film pressure roller 220, cover film lifting mechanism 230;
  • Longitudinal pressing assembly 300 longitudinal pressing lifting mechanism 310, longitudinal pressing roller 320, longitudinal pressing lifting member 330, longitudinal pressing elastic member 340, swing arm 350, and pushing member 360;
  • Jacking reset assembly 500 jacking drive mechanism 510, jacking piece 520;
  • Press corner assembly 600 press corner lifting mechanism 610, press corner lifting component 620, guide hole 621, lifting guide rail 630, press corner spring 640, finger cylinder 650, press corner piece 660, guide post 670, and limiter 671.
  • orientation descriptions such as up, down, left, right, front, back, etc., are based on the orientation or position relationships shown in the drawings and are only In order to facilitate the description of the present invention and simplify the description, it is not intended to indicate or imply that the device or element referred to must have a specific orientation, be constructed and operate in a specific orientation, and therefore should not be construed as a limitation of the present invention.
  • An atomizer converts solutions such as oil into small droplets through heating for users to inhale.
  • Atomizers can be used in medical, daily life and other fields.
  • a cotton wick is usually provided inside the atomizer.
  • the oil in the oil chamber flows directly to the cotton core, and the heating structure heats the cotton core, so that the oil in the cotton core is atomized to form small oil droplets and are transported to the user along with the air flow.
  • the remaining amount of oil in the oil chamber is insufficient, during the use of the atomizer, due to vibration, temperature difference, air pressure changes and other factors, the oil flowing to the cotton core will flow too fast, which will cause the heating structure to be unable to heat the cotton core.
  • embodiments of the present invention provide an atomization core assembly and an electronic atomizer.
  • An oil supply cotton 130 is provided to supply oil to the oil storage cotton 150, and an oil outlet forming a height difference is provided.
  • the hole 141 and the oil inlet hole 111 can effectively control the speed of oil delivery to the oil storage cotton 150, and can effectively improve the atomization effect.
  • an atomization core assembly includes an outer tube body 110, a top cover 120, an oil supply cotton 130, an inner tube body 140, an oil storage cotton 150 and a heating element 160 :
  • the outer tube body 110 is provided with an oil inlet hole 111, which is used to supply oil;
  • the top cover 120 is connected to the top of the outer tube body 110, and the top cover 120 is provided with a smoke channel 121, which is used to output mist.
  • the oil supply cotton 130 is arranged in the outer tube body 110.
  • the oil supply cotton 130 is provided with an oil supply channel 131.
  • the oil inlet hole 111 is located at the outer bottom of the oil supply cotton 130. The oil reaches the oil supply from the oil inlet hole 111.
  • the outer bottom of the surface, optionally, the oil supply cotton 130 is an integrated cotton; the inner tube body 140 is located in the oil supply channel 131, and the oil supply cotton 130 is filled in the space formed between the inner tube body 140 and the outer tube body 110, so that Ensure that the oil can only be transported to the oil storage cotton 150 through the oil supply cotton 130.
  • the inner tube body 140 is provided with an oil outlet hole 141.
  • the oil outlet hole 141 is located at the inner top of the oil supply cotton 130.
  • the oil outlet hole 141 and the oil inlet hole 111 is located on the inner and outer sides of the oil supply cotton 130, and the oil outlet hole 141 is located above the oil inlet hole 111, so that the oil can be transported from bottom to top, thereby ensuring that the oil is transported in the bottom-to-top direction after entering the oil supply cotton 130 along the outside.
  • the gravity of the oil can be used to effectively reduce the flow rate of oil transportation, and can effectively ensure that the oil flow path is long enough, thereby providing a controllable and stable oil supply effect for subsequent atomization work; storage
  • the oil cotton 150 is arranged in the inner tube body 140.
  • the oil storage cotton 150 is provided with an atomization channel 151.
  • the oil outlet 141 is located outside the oil storage cotton 150.
  • the atomization channel 151 is connected with the smoke channel 121; the heating element 160 is located in the smoke Through the channel 121, oil is transported from the outside to the inside of the oil storage cotton 150.
  • the heating element 160 is used to heat and atomize the oil that reaches the inner wall area of the oil storage cotton 150.
  • the oil is transported to the oil storage cotton 150 through the oil supply cotton 130.
  • the oil is transported from the oil inlet hole 111 to the oil supply cotton 130, and the oil is transported by capillary action in the oil supply cotton 130.
  • the oil is transported by capillary action instead of conventional flow.
  • the speed at which the oil is transported in the oil supply cotton 130 can be effectively controlled, and the oil outlet hole 141 is located above the oil inlet hole 111. Through the action of the oil's own gravity, the speed at which the oil is transported in the oil supply cotton 130 can be further reduced, thus This prevents incomplete atomization caused by excessive flow of oil to the oil storage cotton 150, thereby effectively reducing oil spillage into the atomization channel 151 to form large oil droplets due to incomplete atomization, and ultimately preventing large particles.
  • Oil droplets leak out through the atomization channel 151 to form oil leakage, which can also effectively prevent the formation of large oil droplets in the atomization channel 151 and act on the passing airflow to produce "gurgling" noise, thereby effectively reducing atomization.
  • the noise generated when the core components are working can effectively improve the user experience.
  • the atomizer core assembly When the atomizer core assembly is used in an atomizer, even if vibration, temperature difference, air pressure change, etc. occur during use, since the oil reaches the oil storage cotton 150 through capillary action, the above factors will not affect the oil transportation through the oil supply cotton 130 to the speed of the oil storage cotton 150, thereby effectively ensuring that the atomization effect of the heating element 160 on the oil in the oil storage cotton 150 is controllable, and the overall structure has strong anti-interference performance.
  • the center of the heating element 160 and the center of the oil outlet hole 141 are located at the same level. Since the oil enters the oil supply cotton 130 into the oil storage cotton 150, it needs to pass through the oil outlet hole 141 before the oil reaches the oil storage. Positions in the cotton 150 that are far away from the oil outlet hole 141 require longer time. By setting the center of the heating element 160 and the center of the oil outlet hole 141 to be at the same level, it can be ensured that the oil entering the oil storage cotton 150 can be misted in time. atomization to avoid problems such as oil leakage due to the oil not being atomized in time, and the atomization effect is good.
  • the heating element 160 is a mesh heating wire, and the mesh heating wire is evenly distributed on the inner wall of the oil storage cotton 150, thereby effectively ensuring that the mesh heating wire forms a uniform heating and atomization effect on the oil storage cotton 150, and can To further avoid incomplete atomization, the mesh structure can effectively ensure that the small oil droplets generated by atomization can be smoothly output to the atomization channel 151, thereby ensuring the reliability of heated atomization.
  • the heating element 160 covers the inner wall of the oil storage cotton 150, which can effectively ensure that each area of the oil storage cotton 150 can obtain an effective heating atomization effect, and avoid failure to obtain the oil storage cotton 150 due to accumulation in the edge area.
  • the problem of oil overflow occurs due to completely atomized oil, which can further improve the atomization effect of the overall structure.
  • the oil storage cotton 150 is provided with a locking portion 152, which protrudes from one side of the oil storage cotton 150, and the inner tube body 140 is provided with a locking groove 142, and the locking portion 152
  • the oil storage cotton 150 can be positioned reliably through the cooperation between the locking groove 142 and the locking portion 152 .
  • the locking portion 152 is located above the oil inlet hole 111 . Due to the oil storage cotton 150 A height difference has been formed between the clamping portion 152 and the oil inlet hole 111. In addition to the oil being transported to the oil storage cotton 150 through the oil inlet hole 111, the oil supply cotton 130 and the oil outlet hole 141 in sequence, the oil can also be transported along the oil inlet hole 111.
  • the oil supply cotton 130 and the clamping part 152 are sequentially transported to the oil storage cotton 150.
  • Both of the above two paths can form a bottom-up transportation effect, and both pass through the oil supply cotton 130, which can effectively ensure the control of the oil delivery speed. effect, thereby improving the atomization effect and avoiding problems such as oil leakage and noise.
  • the oil supply cotton 130 is provided with a deformation avoidance seam 132.
  • the deformation avoidance seam 132 can enable the oil supply cotton 130 to form a good deformation adaptability.
  • the blocking portion 152 of the oil storage cotton 150 passes through the blocking position.
  • the groove 142 then reaches the outside of the inner tube body 140 and is inserted into the deformation avoidance slit 132. Due to the effect of the deformation avoidance slit 132, the oil supply cotton 130 can effectively clamp the clamping portion 152, thereby effectively improving the firmness of the overall structure. sex.
  • the length of the oil storage cotton 150 is less than the length of the oil supply cotton 130, that is, the height of the oil storage cotton 150 is less than the height of the oil supply cotton 130.
  • the oil storage cotton 150 is located on one side of the oil outlet hole 141, which can ensure that the oil output through the oil outlet hole 141 can be efficiently transported to various positions of the oil storage cotton 150, thereby ensuring the atomization effect and avoiding the oil stored in the oil storage cotton 150.
  • the oil storage cotton 150 was burnt due to the untimely supply of oil.
  • the four oil inlet holes 111 are evenly distributed in the bottom area of the outer tube body 110 , and the two oil outlet holes 141 are evenly distributed in the inner tube body 110 .
  • the four oil inlet holes 111 can ensure that each area in the oil supply cotton 130 can transport oil with similar efficiency, and can ensure that the amount of oil temporarily stored in the oil supply cotton 130 is sufficient.
  • the two oil outlet holes 141 can control The speed of the oil entering the oil storage cotton 150 through the oil supply cotton 130 can further ensure the effectiveness of the atomization action.
  • the atomization core assembly also includes a fixed seat 170 and a first sealing ring 180.
  • the bottom of the inner tube body 140 is connected to the fixed seat 170, and the first sealing ring 180 seals the outer ring wall.
  • the fixing seat 170 is in contact with the inner wall of the bottom of the outer tube body 110 and the inner ring wall of the first sealing ring 180 .
  • the bottom nozzle of the outer tube body 110 can be blocked by the fixing seat 170 and the first sealing ring 180 .
  • the first sealing ring 180 is an elastic silicone ring.
  • the inner tube body 140 is connected to the fixing base 170 through buckles, which can facilitate disassembly during maintenance.
  • an electronic atomizer according to the second embodiment of the present invention includes the atomization core assembly of the first embodiment.
  • the oil is transported to the oil storage cotton 150 through the oil supply cotton 130.
  • the oil is transported from the oil inlet hole 111 to the oil supply cotton 130, and the oil is transported by capillary action in the oil supply cotton 130.
  • the oil is transported by capillary action instead of conventional flow.
  • the speed at which the oil is transported in the oil supply cotton 130 can be effectively controlled, and the oil outlet hole 141 is located above the oil inlet hole 111. Through the action of the oil's own gravity, the speed at which the oil is transported in the oil supply cotton 130 can be further reduced, thus This prevents incomplete atomization caused by excessive flow of oil to the oil storage cotton 150, thereby effectively reducing oil spillage into the atomization channel 151 to form large oil droplets due to incomplete atomization, and ultimately preventing large particles.
  • the noise generated when the core component is working can effectively improve the user experience; during use, the electronic atomizer can effectively avoid factors such as vibration, temperature difference, air pressure changes, etc. that affect the flow rate of oil delivered to the oil storage cotton 150, thereby effectively ensuring The atomization effect is controllable.
  • the oil is smoke oil.
  • the electronic cigarette using the above-mentioned embodiment of the first aspect can provide users with a stable atomization effect, and the user has a good experience when using the electronic cigarette.
  • the electronic atomizer also includes a housing 200.
  • the housing 200 is provided with an oil storage chamber 210.
  • the atomization core assembly is located in the oil storage chamber 210.
  • the oil storage chamber 210 is used to store oil and feed oil.
  • the hole 111 is connected with the oil storage chamber 210, and the oil in the oil storage chamber 210 enters the oil supply cotton 130 through the oil inlet hole 111.
  • the distance between the oil inlet hole 111 and the oil outlet hole 141 is A
  • the distance between the oil inlet hole 111 and the top wall of the oil storage chamber 210 is B
  • A>0.08B is set. Since the oil passes through the capillary The larger the ratio between A and B is when the oil supply cotton 130 is transported, the oil will be transported from the oil inlet hole 111 through the oil supply cotton 130 in the upward direction through the oil outlet hole 141 to the oil storage cotton 150 more stably. Reliable. During use, even if problems such as vibration, temperature difference, air pressure, etc. occur, it can effectively prevent the oil from being transported to the oil storage cotton 150 too quickly, thereby avoiding the incomplete atomization effect formed by the heating element 160, thereby ensuring heating. The component 160 can achieve a more complete atomization effect on the oil in the oil storage cotton 150, and ultimately can effectively avoid problems such as "gurgling" noises and oil leakage during atomization.
  • the electronic atomizer also includes a second sealing ring 300, the outer ring wall of the second sealing ring 300 abuts the inner wall of the housing 200, and the inner ring wall of the second sealing ring 300 In contact with the outer wall of the outer tube body 110, the second sealing ring 300 is sealed at the bottom of the oil storage chamber 210, which can effectively prevent the oil in the oil storage chamber 210 from leaking.
  • the electronic atomizer has good sealing and anti-leakage performance.
  • the second sealing ring 300 is an elastic silicone ring.
  • the electronic atomizer also includes an electronic control assembly 400.
  • the housing 200 is also provided with an electronic control chamber 220.
  • the electronic control chamber 220 is located at a side of the second sealing ring 300 away from the oil storage chamber 210. side, that is, the second sealing ring 300 divides the internal space of the housing 200 into an oil storage chamber 210 and an electric control chamber 220 distributed up and down.
  • the electric control component 400 is located in the electric control chamber 220.
  • the heating element 160 is electrically connected to the electric control component 400. Connected, the electronic control assembly 400 is used to power the heating element 160 and control the working mode of the heating element 160 .
  • the electronic control assembly 400 includes a sleeve 410 and a battery 420.
  • the sleeve 410 is connected to the housing 200, the sleeve 410 is located in the electrical control cavity 220, and the heating element 160 is electrically connected to the battery 420. , the battery 420 is used to power the heating element 160 .
  • the electronic control assembly 400 also includes an oil barrier 430.
  • the oil barrier 430 is located in the sleeve 410.
  • the oil barrier 430 is located on the side of the battery 420 close to the oil storage chamber 210.
  • the oil part 430 is used to prevent oil from entering the sleeve 410 and affecting the performance of the battery 420.
  • the oil isolating part 430 can be set as oil-absorbing cotton.
  • the electronic control assembly 400 includes a circuit board 440 and a bottom cover 450.
  • the circuit board 440 is connected to the bottom cover 450.
  • the bottom cover 450 is located at the bottom of the electronic control cavity 220.
  • the bottom cover 450 passes through the card.
  • the bottom cover 450 is connected to the shell 200 by buckling or screwing.
  • the bottom cover 450 can be removed according to the needs to perform corresponding operations such as battery 420 replacement or repair.
  • the sleeve 410, the second sealing ring 300 and the atomization core assembly can all be removed in sequence; heating
  • the component 160 is electrically connected to the battery 420 through a circuit board 440.
  • the circuit board 440 is provided with a control module.
  • the control module can control the working state of the heating component 160 to form different atomization effects to meet the different needs of the user.
  • the circuit board 440 An indicator light may also be provided to indicate the working status of the heating element 160 .
  • the housing 200 is provided with a positioning tube 230 located in the top area.
  • the positioning tube 230 and the housing 200 are an integrally formed structure, which can effectively improve the firmness of the overall structure and the accuracy of installation.
  • the top cover 120 Connected to the bottom of positioning tube 230.
  • the top of the top cover 120 is set as a conical structure, and the top cover 120 is set as a silicone cover.
  • the top of the silicone cover is inserted into the positioning tube 230. Due to the elastic effect of the silicone cover, the silicone cover is installed on the positioning tube. 230 can effectively improve the stability of the installation and has good vibration resistance. In addition, it can ensure the tight contact between the silicone cover and the positioning tube 230, thereby ensuring that the atomized airflow can reliably enter the positioning tube 230 through the smoke channel 121, which can avoid The problem of atomized air flow leakage occurs.
  • the electronic atomizer also includes a suction nozzle 500.
  • the suction nozzle 500 is used to contact the user's mouth.
  • the suction nozzle 500 is inserted into the top of the positioning tube 230.
  • the suction nozzle 500 An output channel 510 is provided.
  • the output channel 510 is connected with the smoke channel 121.
  • the user can inhale the atomized substance through the nozzle 500.
  • the nozzle 500 can be configured as an integrated structure with the shell 200.
  • the electronic cigarette device further includes a blocking block 600, which is used to block one end of the output channel 510 away from the smoke channel 121, which can achieve dust-proof and anti-pollution effects.
  • the housing 200 is also provided with an oil filling hole 240, which is connected with the oil storage chamber 210.
  • the electronic atomizer also includes an oil filling plug 700, which is used to block the oil filling hole 240.
  • the oil filling plug 700 is pulled out to open the oil filling hole 240, and the user can inject oil into the oil storage chamber 210 or pour out the oil in the oil storage chamber 210.

Abstract

L'invention concerne un ensemble noyau d'atomisation et un atomiseur électronique. L'ensemble noyau d'atomisation comprend un corps de tube externe (110), un couvercle supérieur (120), du coton d'alimentation en liquide à vapoter (130), un corps de tube interne (140), du coton de stockage de liquide à vapoter (150) et un élément chauffant (160), le corps de tube externe (110) étant pourvu d'un trou d'admission de liquide à vapoter (111) ; le couvercle supérieur (120) est relié au sommet du corps de tube externe (110) et le couvercle supérieur (120) est pourvu d'un canal de fumée (121) ; le coton d'alimentation en liquide à vapoter (130) est agencé dans le corps de tube externe (110) et le coton d'alimentation en liquide à vapoter (130) est pourvu d'un canal d'alimentation en liquide à vapoter (131) ; le corps de tube interne (140) est agencé dans le canal d'alimentation en liquide à vapoter (131), le corps de tube interne (140) est pourvu d'un trou de sortie de liquide à vapoter (141), le trou de sortie de liquide à vapoter (141) et le trou d'admission de liquide à vapoter (111) sont respectivement formés dans le côté interne et le côté externe du coton d'alimentation en liquide à vapoter (130), et le trou de sortie de liquide à vapoter (141) est positionné au-dessus du trou d'admission de liquide à vapoter (111) ; le coton de stockage de liquide à vapoter (150) est agencé dans le corps de tube interne (140) et le coton de stockage de liquide à vapoter (150) est pourvu d'un canal d'atomisation (151), le canal d'atomisation (151) étant en communication avec le canal de fumée (121) ; et l'élément chauffant (160) est agencé dans le canal de fumée (121). Une action capillaire dans le coton d'alimentation en liquide à vapoter (130) est utilisée pour transporter un liquide à vapoter, de telle sorte qu'une vitesse de transport de liquide à vapoter dans le coton d'alimentation en liquide à vapoter (130) puisse être efficacement régulée ; et le trou de sortie de liquide à vapoter (141) est formé au-dessus du trou d'admission de liquide à vapoter (111), de telle sorte que la vitesse de transport de liquide à vapoter dans le coton d'alimentation en liquide à vapoter (130) puisse être davantage réduite, que la fuite de grandes gouttes de liquide à vapoter par l'intermédiaire du canal d'atomisation (151) puisse être empêchée et que le bruit généré pendant le fonctionnement puisse également être réduit.
PCT/CN2022/092067 2022-04-06 2022-05-10 Ensemble noyau d'atomisation et atomiseur électronique WO2023193324A1 (fr)

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