WO2020011113A1 - Atomiseur ayant un noyau d'atomisation intégré disposé transversalement et cigarette électronique associée - Google Patents

Atomiseur ayant un noyau d'atomisation intégré disposé transversalement et cigarette électronique associée Download PDF

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Publication number
WO2020011113A1
WO2020011113A1 PCT/CN2019/094944 CN2019094944W WO2020011113A1 WO 2020011113 A1 WO2020011113 A1 WO 2020011113A1 CN 2019094944 W CN2019094944 W CN 2019094944W WO 2020011113 A1 WO2020011113 A1 WO 2020011113A1
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WO
WIPO (PCT)
Prior art keywords
atomizing
liquid
core
liquid storage
tubular
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Application number
PCT/CN2019/094944
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English (en)
Chinese (zh)
Inventor
林光榕
郑贤彬
Original Assignee
惠州市新泓威科技有限公司
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Publication of WO2020011113A1 publication Critical patent/WO2020011113A1/fr

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    • A24F47/008

Definitions

  • the present invention relates to the technical field of atomizers and electronic cigarettes, and more particularly, the present invention relates to an atomizer with an integrated horizontally arranged atomizing core and an electronic cigarette thereof.
  • a detachable electronic atomizer generally includes an atomizer and a battery rod.
  • the atomizer is provided with a liquid storage chamber to store the electronic atomizer smoke liquid, and an atomizer device is also provided for the electronic atomizer smoke.
  • the liquid is heated and atomized.
  • Some electronic atomizers are generally provided with a liquid storage cavity and an atomization base inside, the liquid storage cavity is used to store smoke liquid, and an overhead liquid guide bar is arranged in the atomizer base, and the middle part of the liquid guide bar The heating wire is wound, and the two ends of the liquid guiding strip absorb and conduct the smoke liquid to the heating wire to be atomized.
  • the disadvantage of the above-mentioned electronic aerosolizer is that the heating wire is wound around the liquid guiding strip, and the cross section of the liquid guiding strip is necessarily small.
  • the heating wire When the heating wire is working, high temperature is generated to rapidly atomize the smoke of the liquid guiding strip.
  • the liquid conduction of the liquid guiding strip is easy to produce insufficient conduction, and the liquid guiding strip is easy to be damaged by burning.
  • the cavity in the atomizing seat directly forms the atomizing cavity, and the high temperature generated by the heating wire is directly transmitted to the atomizing seat, and the atomization is performed.
  • the base is easily deformed due to ablation, which causes the liquid leakage of the electronic atomizer, the occurrence of small amount of smoke, the abnormal smell of burning, and even failure of normal operation.
  • the object of the present invention is to provide an atomizer with an integrated horizontal atomizing core.
  • the atomizer can prevent the liquid leakage of the atomizer and the amount of smoke generated by improving the atomization heating structure. , Burning odor and other malfunctions.
  • the technical solution of the present invention is implemented as follows:
  • the atomizer having an integrated horizontally arranged atomizing core includes a suction nozzle, a liquid storage shell, an atomizing base, an integrated horizontally arranged atomizing core and a bottom cover;
  • the liquid storage shell is a hollow shell, the upper end of the liquid storage shell is closed, the lower end of the liquid storage shell is completely open, and the suction nozzle is sleeved on the upper outer surface of the liquid storage shell
  • a first smoking hole is provided at the upper end of the mouthpiece, the atomizing seat is sleeved in the liquid storage shell, and the bottom cover is provided at the mouth of the lower end of the liquid storage shell;
  • the left and right through cavities are provided in the atomizing seat, the integrated horizontal atomizing core is horizontally disposed in the cavity, and the integrated horizontal atomizing core includes an atomizing tube and a tube.
  • An electric heating core, a lead of a tubular electric heating core, an isolation ring and an electrode cover, the inner wall of the atomizing tube is sequentially covered with the tubular electric heating core, the insulating ring and an electrode cover, and a wall of the atomizing tube is provided with a liquid supply hole.
  • the integrated horizontal atomizing core further includes a tubular liquid storage, and the tubular liquid storage is sleeved between the atomizing tube and the tubular electric heating core.
  • the other end of the atomizing tube sleeve electrode cover is sleeved with another isolation ring.
  • the tubular electric heating core includes a spiral-shaped electric heating wire and a tubular liquid-guiding liquid, and the electric heating wire is coaxially disposed on an inner wall of the tubular liquid-guiding liquid or integrally formed in a wall portion of the tubular liquid-guiding liquid. .
  • a groove is provided at the upper end of the atomizing seat, a throttle cover is provided on the upper cover of the groove, and a lower surface of the throttle cover is protruded downward by a first throttle hole.
  • a circle of outer vertical wall is provided, the outer vertical wall is sleeved on the vertical inner wall of the groove, and a middle of the lower surface of the throttling cover is downwardly protruded with a circle of inner vertical wall, and the inner vertical wall faces downward.
  • the bottom wall of the groove and the inner vertical wall are laterally provided with a second throttle hole.
  • the atomizing base includes an upper atomizing base and a lower atomizing base, a lower end of the upper atomizing base is provided with a slot in a shape upward, and the integrated horizontal atomizing core is provided on the In a slot, the lower atomizing seat closes the mouth of the slot, and after the upper atomizing seat and the lower atomizing seat are combined, the two ends of the integrated horizontal atomizing core
  • the upper atomizing seat is respectively provided with a through hole of the atomizing seat to allow air to enter and smoke to flow out.
  • the upper end of the suction nozzle is provided with a first smoke outlet
  • the inner wall of the liquid storage shell is provided with a vertical second smoke outlet
  • the upper end of the second smoke outlet penetrates the liquid storage shell.
  • a second smoke exit hole is formed in the wall portion, and a first smoke exit is provided between the second smoke exit hole and the center of the upper end of the liquid storage shell and between the outer wall of the liquid storage shell and the inner wall of the mouthpiece.
  • the first flue, the second flue, and the second flue are connected in sequence to form a flue gas passage, and the lower part of the liquid storage shell is provided with an air inlet to communicate with the integrated horizontal atomizing core.
  • the suction nozzle is further provided with a first suction hole at the upper end thereof, and the inner wall of the liquid storage shell is further provided with a vertical second suction channel, and the upper end of the second suction channel penetrates the storage liquid
  • a second suction hole is formed on the wall portion of the shell, and a first suction channel is provided between the second suction hole and the center of the upper end of the liquid storage shell and between the outer wall of the liquid storage shell and the inner wall of the suction nozzle, and the upper atomization
  • the seat is provided with a third suction hole
  • the bottom cover is provided with a fourth suction pipe, and the first suction
  • the holes, the first air-intake channel, the second air-intake hole, the second air-intake channel, the third air-intake hole, and the fourth air-intake tube communicate in this order to form a suction-induced airway.
  • the space formed by the inner wall of the liquid storage shell and the upper surface of the throttle cover forms a liquid storage chamber for storing smoke liquid, and the groove of the upper atomizing seat and the lower plane of the throttle cover
  • the enclosed space constitutes a liquid-conducting cavity that guides the smoke liquid into the integrated horizontal atomizing core.
  • a suction nozzle gasket is provided between the upper end of the liquid storage shell and the suction nozzle to seal the gap therebetween.
  • Another technical solution of the present invention is an electronic cigarette, which includes a battery rod connected to each other and the above-mentioned atomizer with an integrated horizontal atomizing core, and a rechargeable battery is provided in the battery rod.
  • a battery provides power to the atomizer.
  • a first electrode is electrically connected to the lead on the bottom cover
  • a second electrode is electrically connected to the battery on the battery rod
  • the first electrode is a socket electrode
  • the utility model comprises a cup-shaped electrode holder and an electrode crown spring, the electrode crown spring is arranged in the electrode holder, and the second electrode is a plug-type electrode inserted into the electrode crown spring and clamped by the electrode crown spring.
  • the bottom cover is provided with a first electrode to be electrically connected to the lead wire
  • the battery rod is provided with a second electrode to be electrically connected to the battery
  • the first electrode is a metal cylinder
  • An upper part of the second electrode is a metal insert rod inserted into the metal cylinder
  • a lower part of the second electrode is provided with a spring, and the spring elastically abuts the metal insert rod against an inner wall of the metal cylinder.
  • the atomizer with an integrated horizontal atomizing core no longer adopts a way of directly providing a liquid guide strip and a heating wire in the atomizing seat, but instead provides an upper atomizing seat and a lower atomizing seat.
  • An integrated horizontal atomizing core is provided.
  • the integrated horizontal atomizing core includes an atomizing tube, a tubular liquid storage tube, a tubular electric heating core, an isolation ring and an electrode cover.
  • a tubular liquid storing sleeve is set inside the atomizing tube, and the tubular electric heating core is coaxially oriented. It is located inside the tubular liquid storage.
  • the tubular liquid storage and atomizing tube of this structure has the function of heat insulation and radiation prevention, which avoids the high temperature burn caused by the heating wire working directly in the atomizing base, and the tubular storage is also used.
  • the liquid and tubular electric heating core can fully absorb the e-cigarette liquid, avoid direct ablation by the electric heating wire due to insufficient liquid conductivity, and overcome the failure phenomenon that the atomizer is prone to liquid leakage, small amount of smoke generation, and burning odor when it is working at high temperature.
  • Another horizontal atomization core Another horizontal atomization core, its atomization
  • the channel also flows horizontally first, and the non-atomized small droplets entrained in the smoke are easily absorbed by the inner wall of the flue when it flows laterally, avoiding being directly sucked into the user's mouth, and bringing a good smoking experience to the user.
  • FIG. 1 is a perspective view of an atomizer according to an embodiment of the present invention.
  • FIG. 2 is an exploded view of the structure of an atomizer according to an embodiment of the present invention.
  • FIG. 3 is a front sectional view of a nebulizer according to an embodiment of the present invention.
  • FIG. 4 is a front sectional view of a nebulizer according to an embodiment of the present invention.
  • FIG. 5 is a front sectional view of an atomizer according to an embodiment of the present invention.
  • FIG. 6 is a side sectional view of an atomizer according to an embodiment of the present invention.
  • FIG. 7 is a top view of a suction nozzle according to an embodiment of the present invention.
  • FIG. 8 is a sectional view of a suction nozzle according to an embodiment of the present invention.
  • FIG. 9 is a first perspective view of a liquid storage case according to an embodiment of the present invention.
  • FIG. 10 is a second perspective view of a liquid storage case according to an embodiment of the present invention.
  • FIG. 11 is a sectional view of a liquid storage case according to an embodiment of the present invention.
  • FIG. 12 is a first perspective view of a throttle cover according to an embodiment of the present invention.
  • FIG. 13 is a second perspective view of a throttle cover according to an embodiment of the present invention.
  • FIG. 14 is a cross-sectional view of a throttle cover according to an embodiment of the present invention.
  • FIG. 15 is a combined perspective view of a throttle cover and an atomizing seat of the present invention.
  • FIG. 16 is a sectional view of a combination of a throttle cover, an atomizing seat and an atomizing core according to the present invention.
  • FIG. 17 is a first perspective view of an atomizing base according to an embodiment of the present invention.
  • FIG. 18 is a second perspective view of the atomizing base according to the embodiment of the present invention.
  • FIG. 19 is a front cross-sectional view of an atomizing base on an embodiment of the present invention.
  • FIG. 20 is a side sectional view of an atomizing base on the embodiment of the present invention.
  • FIG. 21 is a first perspective view of an atomizing base according to an embodiment of the present invention.
  • FIG. 22 is a second perspective view of the atomizing base under the embodiment of the present invention.
  • FIG. 23 is a sectional view of an atomizing base under an embodiment of the present invention.
  • FIG. 24 is a first perspective view of an integrated horizontal atomizing core according to an embodiment of the present invention
  • FIG. 25 is a second perspective view of an integrated horizontal atomizing core according to an embodiment of the present invention
  • FIG. 26 is a cross-sectional view of an integrated horizontal atomizing core according to an embodiment of the present invention.
  • FIG. 27 is an exploded view of the structure of an integrated horizontal atomizing core according to an embodiment of the present invention.
  • FIG. 28 is a cross-sectional view of an integrated horizontal atomizing core according to another embodiment of the present invention.
  • FIG. 29 is an exploded view of the structure of an integrated horizontal atomizing core according to another embodiment of the present invention.
  • FIG. 30 is an exploded view of the structure of a tubular electric heating core according to an embodiment of the present invention.
  • FIG. 31 is a sectional view of a tubular electric heating core according to an embodiment of the present invention.
  • FIG. 32 is a second sectional view of a tubular electric heating core according to an embodiment of the present invention.
  • FIG. 33 is a first perspective view of a nozzle gasket according to an embodiment of the present invention.
  • FIG. 34 is a second perspective view of the nozzle gasket of the embodiment of the present invention.
  • FIG. 35 is a cross-sectional view of a nozzle gasket according to an embodiment of the present invention.
  • FIG. 36 is a perspective view of a bottom cover according to an embodiment of the present invention.
  • FIG. 37 is an exploded view of a structure of a bottom cover according to an embodiment of the present invention.
  • FIG. 38 is a sectional view of a bottom cover according to an embodiment of the present invention.
  • FIG. 39 is a sectional view of an electrode holder according to an embodiment of the present invention.
  • FIG. 40 is a perspective view of an electrode crown spring according to an embodiment of the present invention.
  • FIG. 41 is a front view of an electrode crown spring according to an embodiment of the present invention.
  • FIG. 42 is an exploded view of an electronic cigarette according to an embodiment of the present invention.
  • FIG. 43 is an exploded view of a structure of a bottom cover according to another embodiment of the present invention.
  • an atomizer with an integrated horizontal atomizing core is provided.
  • the end of the nozzle of the atomizer with an integrated horizontal atomizing core faces upward.
  • descriptions of "upper, lower, upper, lower, upper, lower, upper, lower, upward, downward" and other descriptions of the components described herein refer to the atomization with the integrated horizontal atomizing core.
  • the embodiment of the present invention has an integrated atomizer with a horizontal atomizing core, which includes a nozzle 1, a liquid storage shell 2, and an atomizer
  • the base 4A, the integrated horizontal atomizing core 6 and the bottom cover 7, the atomizing base 4A includes an upper atomizing base 4 and a lower atomizing base 5.
  • the liquid storage case 2 is a hollow case, the upper end of the liquid storage case 2 is closed, and the lower end of the liquid storage case 2 is completely open.
  • the suction nozzle 1 is sleeved on the upper outer surface of the liquid storage case 2, and the first end of the suction nozzle 1 is provided with a first smoking hole 10 and an upper atomizing seat 4
  • the lower atomizing base 5 and the integrated horizontal atomizing core 6 are connected to each other and sleeved in the liquid storage case 2.
  • the bottom cover 7 is provided at the mouth of the lower end of the liquid case 2 and blocks the mouth.
  • the upper atomizing base 4 and the lower atomizing base 5 are connected to each other up and down, and a cavity passing through from left to right is provided inside the two, and an integrated type is horizontally arranged in the cavity. ⁇ atomizing core 6.
  • the upper end of the upper atomizing seat 4 is provided with a groove 41, the bottom wall of the groove 41 is provided with a liquid guide hole 40 downward, and the groove 41 is provided above
  • a throttle cover 3 is provided, the throttle cover 3 is provided with a first throttle hole 30, and an outer vertical wall 31 is protruded downward from the periphery of the lower surface of the throttle cover 3, and the external vertical wall 31 is sleeved on the groove 41
  • the first throttle hole 30 and the second throttle hole 33 both have the function of adjusting the smoke liquid flow.
  • the outer vertical wall 31 is sleeved on the groove 41 and has the function of supporting and fixing the soft upper atomizing seat 4.
  • the inner vertical The wall 32 bears against the bottom wall of the groove 41 downward, and also has the function of supporting and fixing the soft upper atomizing seat 4 to prevent the soft upper atomizing seat 4 from deforming and increasing displacement after increasing its flexibility at high temperatures. , Leakage and other failures.
  • the lower end of the upper atomizing seat 4 is provided with a straight groove 42 upwardly, the integrated horizontal atomizing core 6 is provided in the straight groove 42, and the lower atomizing seat 5 upwardly seals the mouth of the straight groove 42
  • the upper atomizing base 4 is respectively provided at the two ends of the integrated horizontal atomizing core 6 with atomizing base through holes 43 to allow air to enter and smoke to flow out.
  • the upper outer wall of the upper atomizing base 4 is also provided with a convex ring 44 which can be fully contacted and connected with the inner wall of the liquid storage case 2 to prevent leakage of smoke liquid in the liquid storage chamber.
  • the lower atomizing base 5 is fitted in the slot part of the slot 42 of the upper atomizing base 4, and the left and right ends are provided with a blocking slot 42
  • the convex portions 51 at both ends, the bottom of the lower atomizing base 5 is also provided with a lead hole 50 through which a heating wire lead 630 is passed, and a blind hole 52 for receiving the positive and negative electrodes 71.
  • the integrated horizontal atomizing core 6 of the present invention includes an atomizing tube 61, a tubular electric heating core 63, a spacer 64, and an electrode cover 65, and an inner wall middle sleeve of the atomizing tube 61
  • a tubular electric heating core 63, one end of an inner wall of the atomizing tube 61 is sleeved with an isolation ring 64 and an electrode cover 65, and a liquid supply hole 610 is provided on a wall portion of the atomizing tube 61.
  • the integrated horizontal atomizing core 6 further includes a tubular liquid storage 62, and the tubular liquid storage 62 is sleeved on the atomizing tube 61 and the tubular electric heating core 63 between.
  • the piped liquid storage 62 is added to store a layer of smoke liquid, so that the smoke liquid in the liquid storage chamber or the liquid guiding chamber is prevented from flowing directly into the piped liquid 632 in the tubular electric heating core 63, which increases the buffering of the smoke liquid circulation. To prevent the smoke liquid from leaking into the atomizing cavity 633 inside the tubular electric heating core 63 due to excessive suction.
  • the other end of the atomizing tube sleeved electrode cover of the integrated horizontal atomizing core 6 is sleeved with another isolation ring 64.
  • This structure The tubular electric heating core 6 3 in the atomizing tube 61 can be blocked to prevent it from slipping out, and the smoke liquid can be blocked from leaking out, which is also convenient for manufacturing.
  • the tubular electric heating core 63 includes a spiral electric heating wire 631, a tubular liquid-conducting 632, and a lead wire 630 of the electric heating wire 631.
  • the electric heating wire 631 of this embodiment is the same as The axial direction is provided on the inner wall of the tubular liquid-conducting 632.
  • the heating wire 631 is coaxially integrally formed in the wall portion of the tubular liquid-conducting 632.
  • the smoke liquid of the tubular liquid conducting liquid 632 is heated by the electric heating wire 631, and the smoke liquid evaporates and atomizes from the inner wall of the tubular liquid conducting liquid 632. Therefore, the central through hole of the tubular electric heating core 63 or the tubular liquid conducting liquid 63 2 constitutes Atomization cavity 633.
  • the upper end of the suction nozzle 1 is provided with a first smoke outlet 10
  • the inner wall of the liquid storage shell 2 is provided with a vertical second smoke outlet 22, and the upper end of the second smoke outlet 22 penetrates the liquid storage
  • the wall part of the shell 2 forms a second smoke outlet 21, and a first smoke outlet 20 is provided between the second smoke outlet 21 and the upper end center of the liquid storage shell 2 and between the outer wall of the liquid storage shell 2 and the inner wall of the suction nozzle 1.
  • the specific structure of the first flue duct 20 in this embodiment is as follows: a smoke-exiting groove is provided on the outer wall of the liquid-storing case 2 between the second smoke-exiting hole 21 and the upper end center of the liquid-storing case 2; The second smoke exit hole 21 is in communication but not in communication with the first air exit 25, and the smoke exit groove is enclosed with the inner wall of the suction nozzle 1 to form a first smoke exit 20.
  • a smoke exhaust groove may be provided on the inner wall of the suction nozzle 1, and the smoke exhaust groove and the outer wall of the liquid storage shell 2 form a first smoke exhaust duct 20.
  • the first smoke exit hole 10, the first smoke exit 20, the second smoke exit 21 and the second smoke exit 22 are communicated in sequence to form a smoke exit channel; the air inlet hole 23 provided in the lower part of the liquid storage shell 2 and the integral type
  • the atomizing cavity 633 in the horizontally arranged atomizing core 6 communicates.
  • the upper end of the suction nozzle is further provided with a first suction hole 11, and the inner wall of the liquid storage shell 2 is further provided with a vertical second Suction channel 27, the upper end of the second suction channel 27 penetrates the wall portion of the liquid storage case 2 to form a second suction hole 26, between the second suction hole 26 and the center of the upper end of the liquid storage case 2, and the outer wall of the liquid storage case 2 and
  • a first suction channel 25 is provided between the inner walls of the suction nozzle 1, and the specific structure of the first suction channel 25 in this embodiment is: a liquid storage case 2 between the second suction hole 26 and the upper end center of the liquid storage case 2
  • the outer wall is provided with a suction groove, which is in communication with the second suction hole 26 but not in the first exhaust duct 20, and the suction groove is enclosed with the inner wall of the suction nozzle 1 to form a first suction Road 25.
  • an air suction groove may be provided on the inner wall of the suction nozzle 1,
  • a third suction hole 49 is provided on the upper atomizing seat 4, a fourth suction pipe 79 is provided on the bottom cover 7, a first suction hole 11, a first suction passage 25, and a second suction hole 26
  • the second air intake passage 27, the third air intake hole 49, and the fourth air intake pipe 79 communicate in sequence to form a suction induction air passage.
  • the space formed by the inner wall of the liquid storage case 2 and the upper plane of the throttle cover 3 is set as a liquid storage chamber 28 for storing the smoke liquid, and the groove 41 of the upper atomizing seat 4 and the node
  • the space enclosed by the lower plane of the flow cover 3 is set to guide the smoke liquid into the liquid guide cavity 29 of the integrated horizontal atomizing core 6.
  • the tubular electric heating core 63 includes a spiral electric heating wire 631 and a tubular liquid conducting 632. As shown in FIG. 31, in this embodiment, the electric heating wire 631 is coaxially disposed on the tubular conducting wire.
  • the inner wall of the liquid 332 is another embodiment shown in FIG. 32, and the heating wire 631 is formed coaxially and integrally in the wall portion of the tubular liquid conducting 632.
  • the central through hole of the tubular electric heating core 63 constitutes an atomizing cavity 633 for generating smoke.
  • the tubular liquid-conducting material 632 may be made of a glass fiber material or a porous ceramic material.
  • a nozzle gasket 8 is provided between the upper end of the liquid storage shell 2 and the suction nozzle 1 to seal the gap therebetween.
  • 8 is provided with two through holes 81, 82, the through hole 81 is used to communicate the first smoke exit hole 10 and the first smoke duct 20, and the through hole 82 is used to communicate the first suction hole 11 and the first suction passage 25 .
  • a sealing ring 91 is also provided between the lower end of the suction nozzle 1 and the liquid storage case 2 to seal the gap between the two.
  • a portion of the liquid storage case 2 corresponding to the thick ring 91 is provided with a thick ring 91 ⁇ ⁇ ⁇ 24 ⁇ 91 ring groove 24.
  • a positive and negative electrode 71 is provided on the bottom cover 7 of the liquid storage case, and the positive and negative electrode 71 is electrically connected to the lead of the tubular electric heating core 6.
  • the positive and negative electrode 71 is a socket-type electrode and includes The cup-shaped electrode holder 711 and the electrode crown spring 712 are provided in the electrode holder 711.
  • a seal ring 92 is provided between the bottom cover 6 and the liquid storage case 2 to seal the gap therebetween.
  • the working mode of the atomizer in this embodiment is as follows: [0086] As shown in FIG. 4, when the atomizer of this embodiment works, the electronic cigarette liquid stored in the liquid storage cavity 28 flows through the first throttle hole 30 and the second throttle hole 33 of the throttle plate 3. The smoke liquid in the guide liquid cavity 29 and the liquid guide cavity 29 flows into the tubular liquid storage 62 through the liquid guide hole 40 on the atomizing base 4 and the liquid supply hole 610 on the atomizing tube 61, and the tubular liquid storage 62 can store enough The smoke liquid is supplied to the tubular conductive liquid 632, and the electric heating wire 631 heats and evaporates the smoke liquid on the tubular conductive liquid 632. After the smoke liquid is evaporated, the smoke is generated in the atomizing cavity 633 of the tubular electric heating core 63.
  • the direction in which the smoke liquid in this embodiment flows in the atomizer is the direction indicated by the continuous arrows in FIG. 4.
  • the user smokes from the suction nozzle 1, the negative pressure is generated in the atomization cavity 633 in the horizontally arranged atomizing core 6, and the air is removed from the liquid storage case 2.
  • the first air inlet 23 is sucked in, and enters the atomization cavity 633 through the atomization base through hole 43.
  • the smoke generated in the atomization cavity 633 flows out with the incoming air to the second smoke duct 22, and passes through the second smoke outlet 21, After the first smoke duct 20 and the first smoking hole 10, the smoke is sucked into the user's mouth.
  • the directions of the intake and smoke generation and discharge of the atomizer in this embodiment refer to the directions indicated by the continuous arrows in FIG. 5.
  • the electronic cigarette of the present invention includes a battery rod B connected to each other and the above-mentioned atomizer A with an integrated atomizing core.
  • a rechargeable battery 95 is provided in the battery rod B as a mist.
  • the carburetor A provides power.
  • a first electrode 72 is provided on the bottom cover 7 and a lead 630 of the tubular heating core 63 is electrically connected, and a second electrode is provided on the battery rod B.
  • 96 is electrically connected to the battery 95.
  • the first electrode 71 is a socket-type electrode and includes a cup-shaped electrode holder 961 and an electrode crown spring 962.
  • the electrode crown spring 962 is disposed in the electrode holder 961, and the second electrode 96 is an electrode crown spring 962.
  • the pin electrode is clamped by the electrode crown spring 962.
  • Each of the first electrode 71 and the second electrode 96 includes a positive electrode and a negative electrode.
  • the first electrode may also be a plug-type electrode
  • the second electrode may also be a socket-type electrode.
  • the first electrode 71 is a socket-type electrode, and includes a cup-shaped electrode holder 711 and an electrode crown spring 712.
  • the electrode crown spring 712 is disposed in the electrode holder 711.
  • the second electrode 96 is provided with electricity A pole insert (not shown), the electrode insert is correspondingly inserted into the electrode crown spring 712, and the middle portion of the electrode crown spring 712 that projects inward can clamp the electrode insert, maintain electrical connection, and prevent The looseness after the battery rod B is connected to the atomizer A is shown in FIGS. 36, 39, 43, and 44.
  • the bottom cover 7 is provided with a first electrode 71 and an electric heating core.
  • the lead 630 is electrically connected.
  • the battery pole B is provided with a second electrode 96 electrically connected to the battery 91.
  • the first electrode 71 includes an electrode holder 711 as a metal cylinder, and the upper part of the second electrode 96 is a metal insert 961 inserted into the metal cylinder.
  • the lower part of the second electrode 96 is provided with a spring 962.
  • the spring 962 elastically abuts the metal plug 961 on the inner wall of the metal cylinder 711.
  • the elastic abutment method can ensure that the first electrode 71 and the second electrode 96 remain electrically connected at any time. , And make the battery rod B and the atomizer easily pluggable.
  • Each of the first electrode 71 and the second electrode 96 includes a positive electrode and a negative electrode.
  • the first electrode may also be a plug-type electrode
  • the second electrode may also be a socket-type electrode.

Abstract

L'invention concerne un atomiseur ayant un noyau d'atomisation intégré disposé transversalement, comprenant un embout buccal (1), un logement de stockage de liquide à vapoter (2), une base d'atomisation supérieure (4), une base d'atomisation inférieure (5), un noyau d'atomisation intégré disposé transversalement (6), et un couvercle inférieur (7). Le noyau d'atomisation intégré disposé transversalement (6) comprend un tube d'atomisation (61), un corps tubulaire de stockage de liquide à vapoter (62), un noyau tubulaire de chauffage électrique (63), un anneau isolant (64), et un capuchon d'électrode (65) ; le corps tubulaire de stockage de liquide à vapoter (62) et le tube d'atomisation (61) de l'atomiseur présentent des effets d'isolation thermique et anti-rayonnement, ce qui permet d'éviter la combustion de la base d'atomisation (4A) sous une température élevée en raison du fonctionnement d'un fil chauffant électrique (631) directement dans la base d'atomisation (4A) ; en outre, au moyen du corps tubulaire de stockage de liquide à vapoter (62) et du noyau tubulaire de chauffage électrique (63), un liquide à vapoter de cigarette électronique peut être complètement absorbé, une combustion directe du fil chauffant électrique (631) en raison d'un guidage insuffisant de liquide à vapoter est évitée, et l'apparition de défauts tels qu'une fuite de liquide à vapoter, une faible quantité de génération de vapeur, une odeur de brûlé et similaires de l'atomiseur lors du fonctionnement à haute température est éliminée.
PCT/CN2019/094944 2018-07-13 2019-07-05 Atomiseur ayant un noyau d'atomisation intégré disposé transversalement et cigarette électronique associée WO2020011113A1 (fr)

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Application Number Priority Date Filing Date Title
CN201810771317.3A CN108576938B (zh) 2018-07-13 2018-07-13 具有一体式横置雾化芯的雾化器及其电子烟
CN201810771317.3 2018-07-13

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WO2020011113A1 true WO2020011113A1 (fr) 2020-01-16

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