WO2016029470A1 - Cigarette électronique et composant d'atomisation associé - Google Patents

Cigarette électronique et composant d'atomisation associé Download PDF

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Publication number
WO2016029470A1
WO2016029470A1 PCT/CN2014/085620 CN2014085620W WO2016029470A1 WO 2016029470 A1 WO2016029470 A1 WO 2016029470A1 CN 2014085620 W CN2014085620 W CN 2014085620W WO 2016029470 A1 WO2016029470 A1 WO 2016029470A1
Authority
WO
WIPO (PCT)
Prior art keywords
hole
atomizing assembly
atomizing
pipe
liquid
Prior art date
Application number
PCT/CN2014/085620
Other languages
English (en)
Chinese (zh)
Inventor
陈志平
Original Assignee
深圳麦克韦尔股份有限公司
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 深圳麦克韦尔股份有限公司 filed Critical 深圳麦克韦尔股份有限公司
Priority to PCT/CN2014/085620 priority Critical patent/WO2016029470A1/fr
Publication of WO2016029470A1 publication Critical patent/WO2016029470A1/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
    • A24F40/485Valves; Apertures
    • 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

  • This invention relates to smoker articles and, more particularly, to an electronic cigarette and its atomizing assembly.
  • Electronic cigarettes are also known as virtual cigarettes and electronic atomizers.
  • e-cigarettes are used to quit smoking.
  • E-cigarettes have a similar appearance and taste to cigarettes, but generally do not contain other harmful components such as tar, aerosols, etc. in cigarettes.
  • the electronic cigarette of the related art includes a cylindrical casing, an atomizing assembly disposed in the cylindrical casing, a power supply assembly and a liquid storage member, and a mouthpiece cover and an end cover that are capped at both ends of the cylindrical casing.
  • the electronic cigarette satisfies the function of the alternative cigarette product to a certain extent.
  • the atomizing assembly mostly includes only a snorkel, a positioning sleeve sleeved outside the vent tube, a liquid guiding cord disposed on the vent tube, and a heating element disposed on the liquid guiding cord.
  • the outlet end of the snorkel is susceptible to compression The shape obstructs the flow of the air carrying the smoke in the snorkel, and also causes the smoke liquid in the liquid storage member to be squeezed out in a large amount, which affects the use effect.
  • the technical problem to be solved by the present invention is to provide an improved electronic cigarette and an atomizing assembly thereof.
  • An atomizing assembly for an electronic cigarette comprising a snorkel, a liquid guiding cord traversing a sidewall of the vent tube, and a heating element disposed in the vent tube and fitted on the liquid guiding cord; the atomizing assembly further comprising a support a tube, the support tube is embedded on an outlet end of the vent tube, and an axial direction of the support tube is parallel to an axial direction of the vent tube.
  • the support tube includes a first pipe segment, a transition pipe segment connected to the first pipe segment, a second pipe segment connected to the transition pipe segment, and a resisting portion connected to the second pipe segment;
  • the outer diameter of the abutting portion is larger than the outer diameter of the vent pipe.
  • the outer wall surface of the transition tube segment is tapered, and the transition tube segment is connected to the second tube segment at a larger outer diameter end.
  • the support tube further includes a guide connected to a side of the first tube section facing away from the transition section; the guide portion is conical.
  • the side wall of the vent pipe is provided with two opposite through holes, the diameter of the through hole is matched with the diameter of the liquid guiding rope, and the positioning sleeve is located at the through hole.
  • the hole is adjacent to a side of the air outlet end of the air duct; the liquid guiding cord is disposed in the two through holes, and opposite ends of the liquid guiding cord are exposed outside the air duct.
  • the vent tube is further provided with a slit at a position above the through hole, the slit being in communication with the through hole.
  • the slit includes a cross-section extending outwardly inwardly on the vent tube and a slit segment connected to the cross-section, the slit segment extending to the two of the passages In the hole.
  • the atomizing assembly further includes a positioning sleeve; the positioning sleeve is sleeved on a portion of the vent tube corresponding to the slit.
  • an electronic cigarette comprising a cylindrical casing, an atomizing assembly mount, a liquid storage member, a power supply assembly, a mouthpiece cover, an end cover, and the atomizing assembly of any of the above, the mouthpiece cover and the end Covers are respectively attached to both ends of the cylindrical casing; the atomizing assembly mounting seat, the atomizing assembly, the liquid storage member and the power supply assembly are all mounted inside the cylindrical casing, wherein The atomizing assembly mounting seat is disposed at a middle position in the cylindrical housing, and the atomizing assembly is disposed on the atomizing assembly mounting seat and interposed between the atomizing assembly mounting seat and the mouthpiece cover; The liquid storage component is disposed on a periphery of the atomization component, and the power component is disposed between the atomization component mounting seat and the end cover, and is electrically connected to the atomization component.
  • the atomizing assembly mount includes a soft body coupled to an inner wall surface of the cylindrical housing and a rigid support supporting the atomizing assembly; a central portion of the soft body is formed a first central through hole, the rigid support being embedded in the first central through hole;
  • the rigid support includes a first insertion portion, a body portion, a second insertion portion, and a second center through hole; the first insertion portion and the second insertion portion are respectively connected to the upper and lower portions of the body portion Two sides, and are respectively embedded in the atomizing assembly and the soft body; the second central through hole sequentially penetrates the first embedded portion, the body portion and the second embedded portion to Air on the lower side of the atomization assembly mount is guided into the atomization assembly;
  • the air inlet end of the snorkel of the atomizing assembly is sleeved on the first embedding portion of the hard support, and the air outlet end of the vent tube is opposite to the central through hole of the mouthpiece cover.
  • the beneficial effects of the present invention are: by providing a support tube in the vent pipe, the outlet end of the vent pipe is prevented from being deformed by pressure, and the flow of the air carrying the smoke in the vent pipe is hindered.
  • the presence of the support tube can also prevent the external liquid storage member from being excessively squeezed when the external pressing force is applied to the electronic cigarette, thereby preventing the smoke liquid in the liquid storage member from being squeezed out.
  • FIG. 1 is a schematic perspective view of an electronic cigarette in some embodiments of the present invention.
  • Figure 2 is a plan view of the electronic cigarette shown in Figure 1;
  • Figure 3 is a cross-sectional view showing the structure of the electronic cigarette shown in Figure 2 in the A-A direction;
  • Figure 4 is a cross-sectional view showing the structure of the electronic cigarette shown in Figure 2 in the B-B direction;
  • Figure 5 is an enlarged schematic view showing the cross-sectional structure of the mouthpiece cover of the electronic cigarette shown in Figure 3;
  • Figure 6 is a perspective view showing the structure of the mouthpiece cover of the electronic cigarette shown in Figure 3;
  • Figure 7 is a perspective view showing the structure of the end cover of the electronic cigarette shown in Figure 3;
  • Figure 8 is a perspective view showing the three-dimensional structure of the end cover of the electronic cigarette shown in Figure 3;
  • Figure 9 is a perspective view showing the structure of the atomizing assembly mounting seat of the electronic cigarette shown in Figure 3;
  • Figure 10 is a perspective exploded view of the atomizing assembly mounting seat of Figure 9;
  • Figure 11 is a perspective view showing the three-dimensional structure of the soft body of the atomizing assembly mounting seat shown in Figure 9;
  • Figure 12 is an enlarged schematic cross-sectional view showing the soft body of the atomizing assembly mounting seat shown in Figure 3;
  • Figure 13 is an enlarged schematic cross-sectional view showing the rigid support of the atomizing assembly mounting seat shown in Figure 4;
  • Figure 14 is an enlarged schematic cross-sectional view showing the rigid support of the atomizing assembly mounting seat shown in Figure 3;
  • Figure 15 is a bottom plan view of the rigid support of the atomizing assembly mount of Figure 10;
  • Figure 16 is an enlarged schematic cross-sectional view showing the atomizing assembly mounting seat of Figure 4.
  • Figure 17 is an enlarged schematic cross-sectional view showing the atomizing assembly mounting seat of Figure 3;
  • Figure 18 is an enlarged schematic cross-sectional view of the atomizing assembly of Figure 3;
  • Figure 19 is a perspective view showing the structure of the atomizing assembly shown in Figure 3;
  • Figure 20 is a perspective exploded perspective view of the atomizing assembly of Figure 19;
  • Figure 21 is a perspective view showing the vent pipe of the atomizing assembly shown in Figure 19 as it is pulled apart along the slit;
  • Figure 22 is a perspective view showing the structure of the liquid storage member of the electronic cigarette shown in Figure 3;
  • Figure 23 is a perspective view showing the end cover of Figure 3 after assembling the light-emitting element
  • FIG. 24 is a cross-sectional structural view of another atomizing assembly in some embodiments of the present invention.
  • 25 is a cross-sectional structural view of still another atomizing assembly in some embodiments of the present invention.
  • Figure 26 is a perspective view showing the structure of another vent pipe in some embodiments of the present invention.
  • Figure 27 is a perspective view showing the structure of still another vent pipe in some embodiments of the present invention.
  • Figure 29 is a perspective view showing the structure of a cylindrical jig in some embodiments of the present invention.
  • FIG. 1 to 4 illustrate an electronic cigarette 1 in some embodiments of the present invention, which may include a cylindrical casing 10, a mouthpiece cover 20, and an end cover 30.
  • the mouthpiece cover 20 and the end cover 30 are respectively capped at both ends of the cylindrical casing 10, the atomizing assembly mounting seat 40, the atomizing assembly 50, and the liquid storage member 60 and the power supply unit 70 are located inside the cylindrical casing 10.
  • the atomizing assembly mounting seat 40 is disposed at a central position within the cylindrical housing 10.
  • the atomizing assembly 50 is disposed on the atomizing assembly mount 40 is between the atomizing assembly mount 40 and the mouthpiece cover 20.
  • the liquid storage member 60 is disposed on the atomizing assembly mount 40 and wrapped around the periphery of the atomizing assembly 50.
  • Power components 70 It is disposed between the atomizing assembly mount 40 and the end cover 30, and is electrically connected to the atomizing assembly 50.
  • Air switch 80 is provided on the end cover In the 30, the light-emitting element 90 is mounted on the air switch 80, and the air switch 80 and the light-emitting element 90 are electrically connected to the power source assembly 70.
  • Cylindrical housing 10 in some embodiments, it may be cylindrical and made of a soft plastic or the like so that the user can elastically deform when a certain amount of radial force is applied to simulate the tactile sensation of a real cigarette. Understandably, the cylindrical housing 10 It may be in the form of an elliptical cylinder or other cylindrical structure as needed, and may also be made of a hard material such as steel.
  • the mouthpiece cover 20 may be made of an elastic material such as silica gel in some embodiments, which may include a columnar body. 21 and a ring wall 23, a guide ring 25 and a flange 27 which are respectively connected to the columnar body 21.
  • the diameter of the columnar body 21 is slightly larger than the diameter of the corresponding end of the cylindrical casing 10, so that the mouthpiece cover 20 can be tightly embedded in the end of the cylindrical casing 10 by an interference fit to prevent the smoke liquid from leaking out through the fitting gap between the mouthpiece cover 20 and the cylindrical casing 10.
  • the cylindrical body 21 may include an inner end surface 211 and an outer end surface 212 opposite the inner end surface 211 in some embodiments. And a central through hole 210 extending from the inner end surface 211 to the outer end surface 212, the central through hole 210 for the smoke generated by the atomizing assembly 50 to flow out from the inside of the cylindrical casing 10 to the outside.
  • Ring wall 23 is erected on the inner end surface 211 of the columnar body 21 and surrounds the central through hole 210 so that the liquid smoke flows from the periphery of the inner end surface 211 of the mouthpiece cover 20 to the center through hole 210. The distance is greatly elongated, thereby significantly reducing the probability of smoke leaking from the central through hole 210.
  • the mouthpiece cover 20 may also be provided.
  • An annular groove 214 is formed on the outer wall surface of the columnar body 21 in the circumferential direction, and the annular groove 214 can be used to receive the inner wall surface of the cylindrical casing 10 from the columnar body 21
  • the matching gap between the side wall faces penetrates the smoke liquid.
  • the arrangement of the annular groove 214 greatly increases the flow of the liquid toward the cylindrical casing 10 due to the presence of the surface tension of the liquid.
  • the resistance to penetration in the direction of the end face can significantly reduce the probability of leakage of smoke from there.
  • the ring groove 214 The number is not limited to one, and it can also be two or more passes for the interval.
  • the guide ring 25 projects from the peripheral edge of the inner end surface of the columnar body 21 toward the atomizing assembly 50, that is, the guide ring 25
  • the peripheral edge of the inner end surface of the columnar body 21 is erected.
  • the front end of the guide ring 25 includes a conical guide surface.
  • the flange 27 can project radially outward from the side wall surface of the outer end of the body 21, the outer diameter of the flange 27 and the cylindrical housing The outer ends of the respective ends of the 10 are equivalent so that when the mouthpiece cover 20 is embedded in the cylindrical casing 10, the flange 27 abuts against the corresponding end surface of the cylindrical casing 10 (as shown in Figs. 3 and 4). Flange 27 One aspect can prevent the mouthpiece cover 20 from protruding into the cylindrical casing 10, and the other can facilitate the removal of the mouthpiece cover 20.
  • end cap 30 may be integrally injection molded from rigid plastic in some embodiments, and end cap 30 may include a bottom wall. 31 and a cylindrical side wall 33 coupled to the bottom wall 31.
  • the bottom wall 31 is for closing the corresponding end of the cylindrical casing 10, and the cylindrical side wall 33 is for tightly fitting into the cylindrical casing 10 In the corresponding end portion, the end cap 30 is coupled to the corresponding end of the cylindrical casing 10.
  • the bottom wall 31 is provided with a through hole 313 and an air inlet 314, and the through hole 313 penetrates the bottom wall 31, so that the end cover 30
  • the inside communicates with the outside for gas to enter the inside of the end cap 30 through the through hole 313;
  • the air inlet 314 is located on the outer wall surface of the bottom wall 31 for the gas to enter the cylindrical casing through the air inlet 314.
  • the bottom wall 31 may include a rim 311 and a cover plate 312 coupled to the rim 311, and the through hole 313 and the air inlet 314 are disposed at the rim 311. On.
  • the outer diameter of the rim 311 is equivalent to the outer diameter of the corresponding end of the cylindrical casing 10 so that the end rim 30 is embedded in the corresponding end of the cylindrical casing 10, the rim 311 and the cylindrical casing 10
  • the end faces of the corresponding ends are offset.
  • the cover plate 312 is preferably at least partially permeable to light so that the light-emitting element 90 The emitted light can be transmitted through the light-transmitting area to simulate the effect of real fireworks.
  • the cover plate 312 is disposed through the permeable region
  • the light transmissive portion may be a partial region on the cover plate or a whole region on the cover plate. In order to make the cover 312 more realistically simulate the pyrotechnic effect through the light transmission, and the appearance is more beautiful, the cover plate 312 is disposed in a spherical shape.
  • the cylindrical side wall 33 is provided with a wire gap 334 extending through the inner wall surface and the outer wall surface of the cylindrical side wall 33, as shown in the figure.
  • the electrical lead 81 of the air switch 80 can be connected to the power pack 70 through the trace notch 334.
  • the outer wall surface of the cylindrical side wall 33 is also provided with the outer wall surface end facing the bottom wall 31.
  • An outwardly extending air guiding groove 335 communicating with the air inlet port 314 for gas to sequentially enter the cylindrical casing through the air inlet port 314 and the outer air guiding groove 335 Take away the smoke inside.
  • the cylindrical side wall 33 may also be provided with a step 330 in some embodiments, the step being located on the inner wall surface of the cylindrical side wall 33, the air switch 80
  • the step 330 is disposed in the end cap 30, and the light-emitting element 90 is disposed on a side of the air switch 80 facing the bottom wall 31.
  • Through hole 313 on bottom wall 31 will end cover 30
  • the area below the step 330 of the internal installation air switch 80 communicates with the outside, so that the air pressure of the side of the air switch 80 with the light-emitting element 90 is consistent with the atmospheric pressure; and, the through hole 313
  • the air inlet can also generate a certain air pressure trigger air switch 80 in the area below the step 330 of the end cover 30, which is convenient to use.
  • the cylindrical side wall 33 can be stepped-axis in some embodiments, including a first section 331 having a larger outer diameter. a second section 333 having a smaller outer diameter and a transition section 332 connecting the first section 331 and the second section 333.
  • the first segment 331 is coupled to the rim of the bottom wall 31 311
  • the outer diameter thereof is slightly larger than the inner diameter of the corresponding end portion of the cylindrical casing 10, but smaller than the outer diameter of the corresponding end portion of the cylindrical casing 10 to facilitate an interference fit with the corresponding end portion of the cylindrical casing 10.
  • Second paragraph 333 The outer diameter is slightly smaller than the inner diameter of the corresponding end of the cylindrical casing 10, which together with the transition portion 332 can serve to guide the installation of the cylindrical side wall 33.
  • Steps 330 may be formed in transition section 332 and second section 333 in some embodiments.
  • the trace notch 334 extends from the end face of the first segment 331 to the bottom wall 31 For electrical conductors 81 connected to air switch 80.
  • the outer air guiding groove 335 extends from the end surface of the first length 331 to the bottom wall 31 and to the air inlet 314 of the bottom wall 31. The air is connected to allow the outside air to enter the inside of the cylindrical casing 10 through the air inlet 314 and the outer air channel 335 in sequence.
  • the cylindrical side wall 33 may also be provided with an inner air guide 336 in some embodiments.
  • the inner air guiding groove 336 is located on the inner wall surface of the cylindrical side wall 33.
  • the inner air guiding groove 336 extends from the end surface of the first segment 331 to the bottom wall 31 and the through hole 313 of the bottom wall 31 They are in communication so that part of the air can enter the inside of the cylindrical casing 10 via the through holes 313.
  • the atomizing assembly mount 40 can be included with the cylindrical housing 10 in some embodiments.
  • the soft body 41 combined with the inner wall surface and the rigid support 43 for mounting the atomizing assembly 50.
  • a first central through hole 410 is formed in the middle of the soft body 41 for the rigid support 43 Embedded in it.
  • the atomizing assembly mount 40 is a combination of a soft body 41 and a rigid support 43 on the one hand through the soft body 41. The upper and lower sides of the space are better sealed and sealed, and the other side provides better support for the atomizing assembly 50 through the rigid support 43.
  • the soft body 41 may be columnar in some embodiments and may be made of a soft material such as rubber.
  • the soft body 41 includes an upper end surface 411, a lower end surface 412 opposite to the upper end surface 411, and a side wall surface 413 connecting the upper end surface 412 and the lower end surface 412.
  • the first central through hole 410 is formed by the upper end surface
  • the 411 extends all the way to the lower end surface 412, and the inner wall surface is formed with at least two spaced annular projections 4101 (shown in Fig. 12) for use in the rigid support 43.
  • the second embedded portion 433 When the second embedded portion 433 is embedded in the first central through hole 410, it closely abuts against the side wall surface of the second embedded portion 433 to improve the sealing effect between the two.
  • the upper end surface 411 The central portion is recessed downwardly to form a receiving portion 4110.
  • the receiving portion 4110 is preferably columnar and coaxial with the soft body 41.
  • the lower end surface 412 of the soft body 41 is concavely formed with a plurality of guiding grooves 4120, and the guiding grooves are formed.
  • the 4120 is radially evenly distributed around the first central through hole 410.
  • Each of the guiding grooves 4120 is transversely penetrated by the side wall surface 413 to the first central through hole 410 to facilitate air entering the first central through hole. 410.
  • the lower end surface 412 can be further recessed to form a plurality of receiving slots 4122.
  • the receiving slots 4122 It can be used to receive glue, that is, the accommodating groove 4122 can be used as a dispensing tank, the number of which can be equal to the number of the guiding grooves 4120, and the one-to-one corresponding guiding groove 4120 is intersected, and these accommodating grooves are arranged. 4122 is the same distance as the axis of the soft body 41.
  • each of the accommodating grooves 4122 has a depth greater than a depth of the corresponding guiding groove 4120.
  • Locating slot 4122 In some embodiments it may preferably be waist shaped and arranged in intersecting with the corresponding channel 4120.
  • the receiving groove 4122 and the corresponding guiding groove 4120 Arranged vertically.
  • the number of the accommodating grooves 4122 is preferably two or more to correspond to the positive and negative wires 531 of the atomizing assembly 50, respectively (as shown in FIG. 17).
  • the lower end surface 412 can further define a circular step 4123 around the first central through hole 410.
  • the annular step 4123 is for engaging with the limiting portion 4330 (shown in FIG. 13) of the second fitting portion 433 of the rigid support 43, and the soft body 41 and the rigid support 43 Locked up.
  • the surface of the annular step 4123 is flush with the bottom surface of the groove of the guide groove 4120.
  • the flexible body 41 can also include a plurality of slots 414 in some embodiments, the slots 414 being from the upper end
  • the 411 extends in the downward end surface 412 such that a retaining wall 415 is formed between the bottom of the slot 414 and the lower end surface 412.
  • the number of the slots 414 and the receiving slots 4122 The number is equal and is set in one-to-one correspondence with the receiving slots 4122.
  • the slot 414 extends from the upper end surface 411 toward the bottom surface of the corresponding receiving slot 4122.
  • each slot 414 The blind holes are formed by the bottom surface of the receiving portion 4110 toward the bottom surface of the corresponding receiving groove 4122, so that a thin barrier wall is formed between the slot 414 and the corresponding receiving groove 4122.
  • the retaining wall 415 can be pierced by the wire 531 of the atomizing assembly 50 (as shown in FIG. 17) so that the wire 531 can be electrically connected to the power source assembly 70.
  • Barrier A puncture hole 416 is formed at a position where the wire 531 is pierced at 415.
  • the corresponding receiving groove 4122 of the retaining wall 415 pierced by the wire 531 can be glued into the wire, and the wire 531 is paired. Fix it.
  • the soft body 41 is made of an elastic material such as silica gel
  • the puncture hole formed by the wire 531 on the retaining wall 415 when the wire 531 penetrates the retaining wall 415. 416 is a small hole that can be shrunk.
  • the wire 531 is in the puncture hole 416, it is tightened by the side wall of the puncture hole 416 to achieve a sealing effect.
  • the retaining wall 415 The arrangement can also prevent the glue from overflowing into the slot 414.
  • the wire 531 can be fixed with less glue, and on the other hand, the glue can be prevented from contaminating the smoke through the slot 414.
  • the number of slots 414 is preferably two or more in some embodiments to provide at least positive and negative conductors 531 for the atomizing assembly 50. Wear separately.
  • the number of slots 414 is correspondingly increased, for example, in the illustrated embodiment, the number of slots 414 is four.
  • some slots 414 are required for the conductor 531 to be worn, some slots 414 are required for the positioning post 435 to be placed, and the slot 414 is evenly arranged around the first central through hole 410, so that any slot can be used.
  • 414 can be used as the through hole of the wire 531 and the positioning post 435. That is, it is not necessary to pre-designate the slot 41 as the wire 531 and the positioning post 435.
  • the dedicated through hole provides a lot of convenience for the assembly of the entire electronic cigarette 1.
  • each slot 414 is preferably cylindrical and includes a first aperture 4141 having a larger aperture. a second hole section 4143 having a smaller aperture and a transition hole section 4142 connecting the first hole section 4141 and the second hole section 4143; the retaining wall 415 is formed in the second hole section 4143 Between the receiving slot 4122 and the receiving slot.
  • the aperture of the first bore section 4141 is preferably comparable to the diameter of the positioning post 435 of the rigid support 43, or slightly smaller than the diameter of the positioning post 435, the first bore section
  • the length of 4141 is greater than or equal to the length of the positioning post 435 that extends into the slot 414.
  • the aperture of the second hole segment 4143 is smaller than the aperture of the first hole segment 4141 to reduce the barrier 415
  • the area of the retaining wall 415 can accordingly increase the spring force of the retaining wall 415. Therefore, when the wire 531 penetrates the retaining wall 415, the wire 531 receives a greater tightening force and thus has a better sealing effect.
  • Transition hole 4142 is preferably in the shape of a truncated cone to guide the lead 531 to puncture the retaining wall 415.
  • each annular projection 4130 is disposed along the circumferential direction of the side wall surface 413, adjacent to the annular projection 4130. A space is formed therebetween so that the entire side wall surface 413 is wavy (as shown in Fig. 12).
  • each of the annular projections 4130 is larger than the inner diameter of the cylindrical casing 10 such that the soft body 41 When inserted into the cylindrical casing 10, the annular projection 4130 closely abuts against the cylindrical casing 10 to achieve an excellent sealing effect, preventing or significantly reducing the liquid smoke on the upper side of the soft body 41.
  • Shell The inner wall surface of 10 penetrates to the lower side of the soft body 41.
  • a rigid plastic material may be integrally molded, which may include a first embedded portion 431, a body portion 432, a second embedded portion 433, a second central through hole 434, and a pair of positioning posts. 435.
  • the first embedding portion 431 and the second embedding portion 433 are respectively embedded in the atomizing assembly 50 and the soft body 41, and the second embedding portion 433 is mainly from the upper end surface of the soft body 41.
  • the 411 is embedded in the first central through hole 410; the second central through hole 434 is used to guide the air on the lower side of the atomizing assembly mount 40 into the atomizing assembly 50.
  • the positioning post 435 It is embedded in the slot 414 of the soft body 41 to prevent the rigid support 43 from rotating circumferentially relative to the soft body 41.
  • the first embedded portions 431 are respectively connected to opposite ends of the body portion 432, and the second central through holes 434
  • the first fitting portion 431, the body portion 432, and the second fitting portion 433 are sequentially passed through.
  • the pair of positioning posts 435 are coupled to the body portion 432 and on the body portion 432 and the second embedded portion
  • the 433 is located at the same end, and the pair of positioning posts 435 are respectively located on opposite sides of the second embedding portion 433.
  • the body portion 432 can include a first end face 4321 in some embodiments. And a second end face 4322 opposite the first end face 4321.
  • a central portion of the first end surface 4321 is concavely formed with a receiving portion 4323, and the first embedded portion 431 is erected in the receiving portion
  • the bottom surface of the 4323, the second embedded portion 433 is erected in the middle of the second end surface 4322.
  • the receiving portion 4323 may be cylindrical in some embodiments, and the second central through hole 434 Coaxial and can be used to house oil storage parts 60.
  • the positioning post 435 is coupled to the second end face 4322.
  • the rigid support 43 may also include a pair of perforations 436 in some embodiments, the pair of perforations The 436 is located on opposite sides of the second embedding portion 433 and is disposed on the main body portion 432 for the positive and negative wires 531 of the atomizing assembly 50 (see FIG. 17). Shown separately).
  • the pair of perforations 436, together with the pair of positioning posts 435, are evenly distributed around a circumference of the second end face 4322 surrounding the second central through hole 434 (Fig. 15). The above is shown to correspond to the slot 414 of the flexible body 41, respectively.
  • the body portion 432 can be stepped-axis in some embodiments, including the first end face 4321 A first segment 4324, a second segment 4325, and a third segment 4326 are coupled to the second end face 4322 and are sequentially coaxially coupled together.
  • the diameter of the second section 4325 and the cylindrical housing The inner diameter of 10 is equal to the diameter of the first section 4324, so that an annular step 4327 is formed between the first section 4324 and the second section 4325 (Fig.
  • the annular step 4327 can be abutted against the end surface of a cylindrical jig 2 when the atomizing assembly mounting seat 40 is mounted in the cylindrical casing 10, facilitating the atomizing assembly mounting seat 40 Precise installation.
  • a cylindrical jig 2 as shown in Fig. 29 is provided, and the inner diameter of the cylindrical jig 2 is slightly larger than the first section 4324. The diameter is smaller than the inner diameter of the cylindrical casing 10.
  • the diameter of the third section 4326 of the body portion 432 is smaller than the diameter of the second section 4325, and the housing portion of the soft body 41
  • the diameter of the 4110 is equivalent, and the axial length of the third section 4326 is equivalent to the depth of the receiving portion 4110, so that the third section 4326 It can be better embedded in the receiving portion 4110 (as shown in FIG. 16).
  • the second portion 4325 of the body portion 432 closely abuts the soft body. 41 on the upper end face 411.
  • the second embedding portion 433 of the rigid support 43 may further include a barbed limit portion near the end. 4330, the limiting portion 4330 is circumferentially disposed along the second embedded portion 433, and has a diameter larger than an aperture of the first central through hole 410 of the soft body 41.
  • the accommodating portion 4110 has a distance from the bottom surface to the annular step 4123 so that when the second insertion portion 433 is embedded in the first central through hole 410 of the soft body 41, the limiting portion 4330 The hook can be securely barbed on the annular step 4123 to prevent the second fitting portion 433 from being detached or loosened from the first center through hole 410.
  • the front end of the limiting portion 4330 may further include a tapered guiding portion 4332 in some embodiments.
  • a tapered guiding portion 4332 To facilitate the limiting portion 4330 to penetrate the first central through hole 410 of the soft body 41.
  • the length of the limiting portion 4330 and the lower end surface 412 of the soft body 41 are known.
  • the distance to the surface of the annular step 4123 is equivalent.
  • the end of the second embedding portion 433 protrudes from the soft body 41.
  • a lower end surface 412 that prevents the power supply assembly 7 from adhering to the lower end surface 412 of the flexible body 41 as a wire 531
  • the wiring provides sufficient space to prevent the occurrence of blockage caused by insufficient space on the airflow path.
  • the second embedding portion 433 The middle portion of the end face may be concavely formed in some embodiments to form a recess 4334 which may extend from the end surface of the second insert portion 433 in a direction parallel to the axis of the second insert portion 433 to the limit portion.
  • the upper end surface of the 4330 is adjacent, and the groove 4334 extends through the second embedding portion 433 and the limiting portion 4330 in the lateral direction so as to be able to communicate with the guiding groove 4120 of the soft body 41 (as shown in the figure). 16 is shown) so that air can pass through the guide groove 4120 and the groove 4334 sequentially into the second central through hole 434 of the rigid support 43, and then through the second central through hole 434. Enter into the atomizing assembly 50.
  • the groove 4334 extends in the direction of the orthographic projection of the second end face 4322 and the pair of positioning posts 435.
  • the connections overlap.
  • the recess 4334 is opposed to the guide groove 4120 without the wire 531 to prevent the wire 531 and / or the glue used to fix the wire 531 blocks the air flow after solidification.
  • the guide groove 4120 provided with the wire 531 is inserted into the second insertion portion. 433 Block cut.
  • This arrangement has the advantage of preventing the high-speed flow of air from adversely affecting the blowing of the wires 531 and/or glue. For example, the long-term blowing of the airflow causes the pair of wires 531 Damage to the electrical connection or loosening of the bond between the conductor 531 and the glue reduces the fixing effect of the glue.
  • the atomizing assembly 50 can include a snorkel 51 and a liquid guiding cord 52 in some embodiments. , heating element 53 , positioning sleeve 54 and support tube 55 .
  • the intake end of the vent pipe 51 is sleeved on the first insert portion 431 of the rigid support 43 (see Figs. 3 and 4).
  • the air outlet end faces the center through hole 210 of the mouthpiece cover 20.
  • the liquid guiding cord 52 can be made of a glass fiber material which traverses the side wall of the vent pipe 51 and is exposed at both ends, and the exposed end portion and the liquid storage member 60 is connected to suck the smoke liquid in the liquid storage member 60 into the vent pipe 51 by the capillary force.
  • the heating element 53 is disposed in the snorkel 51 and fits on the liquid guiding cord 52, which is mainly connected with the liquid guiding rope 52
  • a portion located inside the vent pipe 51 cooperates to atomize the liquid smoke on the portion of the liquid guiding cord 52 located inside the vent pipe 51 by heating.
  • the positioning sleeve 54 is sleeved on the vent pipe 51
  • the axial direction of the axially parallel vent tube 51 provides a structural reinforcement for a specific portion of the vent tube 51.
  • a support tube 55 is embedded in the outlet end of the vent pipe 51 for preventing the vent pipe 51 The outlet end is deformed by pressure, and the flow of the mist-laden air in the vent pipe 51 is hindered.
  • the presence of the support tube 55 also prevents the outside from applying a radial squeezing force to the electronic cigarette 1 to the liquid storage member 60. Excessive extrusion can prevent the smoke liquid in the liquid storage member 60 from being squeezed out in a large amount.
  • the support tube 55 is kept at a certain distance from the ring wall 23 of the mouthpiece cover 20 to prevent the support tube 55. The liquid smoke on it is transferred to the ring wall 23.
  • the vent tube 51 may have an elongated cylindrical configuration in some embodiments, which may be woven from a material such as fiber.
  • Snorkel 51 The aperture of the air inlet end is slightly smaller than the diameter of the first insertion portion 431 of the rigid support 43 so as to be sleeved on the first insertion portion 431 in an interference fit manner.
  • Two opposite through holes 510 are defined in the side wall, and the diameter of the through hole 510 is matched with the diameter of the liquid guiding cord 52 for the liquid guiding cord 52 to be inserted therein, and the opposite ends of the liquid guiding rope 52 Exposed in the snorkel 51 outside.
  • a slit 512 is further provided on the side wall of the vent pipe 51, and the slit 512 communicates with the through hole 510 for the liquid guiding rope 52 to pass through to the through hole. 510.
  • the slit 512 is located above the through hole 510 on the vent tube 51.
  • the slit 512 enables the vent tube 51 to be cut by the slit 512.
  • the cut portions are opened at an angle such that the closed through hole 510 defines an opening having a width to allow the liquid guiding cord 52 to be laterally inserted into the through hole 510.
  • the slit 512 in some embodiments, can include a cross-section 5121 extending outwardly from the vent tube 51. And a slit segment 5123 connected to the cross section 5121, the slit segment 5123 extending into the two through holes 510.
  • Cross section 5121 and slit section 5123 The included angle is preferably an obtuse angle, and it is understood that the angle may be a right angle.
  • the vent pipe 51 is provided by the setting of the slit 512 on the vent pipe 51.
  • the strength is greatly reduced, and the vent tube 51 appears in the slit 512 when subjected to an external force (for example, the pressure of the peripheral liquid member 60).
  • the probability of collapse is greatly increased.
  • some embodiments of the present invention provide a positioning sleeve 54 that can be sleeved over the vent tube 51. The position is such that the force applied to the position where the slit 512 is placed on the vent pipe 51 is dispersed to other portions of the vent pipe 51, thereby reducing the external force on the vent pipe 51. Stress concentration at the location.
  • the positioning sleeve 54 may be made of the same material as the vent tube 51, and has an inner diameter equal to the outer diameter of the vent tube 51, and a length greater than the slit 512 in the vent tube 51. The maximum length in the longitudinal direction. Thus, the positioning sleeve 54 can be tightly sleeved on the vent pipe 51 and completely cover the slit 52, so that the overall external force resistance of the vent pipe 51 is greatly improved.
  • the heating element 53 may be a metal heating wire in some embodiments, which is wound around the liquid guiding wire 52 at the vent pipe 51. On the inner portion, the liquid smoke in the portion of the liquid guiding cord 52 located inside the vent pipe 51 is heated and atomized.
  • the two ends of the heating element 53 can be respectively separated from the two wires 531. Connecting, the two wires 531 can respectively protrude from the two through holes 510 on the vent pipe 51 to the outside of the vent pipe 51, and the wire 531 sequentially penetrates the through hole 436 of the rigid support 43.
  • the slot 414 of the soft body 41 penetrates the retaining wall 415 at the bottom of the slot 414 and is electrically connected to the power component 70.
  • the support tube 55 can be made of a hard plastic material in some embodiments, including a first tube segment 552 and a first tube segment 552 A connected transition section 553, a second section 554 connected to the transition section 553, and a resisting section 555 connected to the second section 554.
  • the outer diameter of the first pipe section 552 is slightly larger than the snorkel
  • the inner diameter of 51 allows the first tube section 552 to be placed in the vent tube 51 by an interference fit.
  • the outer diameter of the second pipe section 554 is slightly larger than the outer diameter of the first pipe section 552, and the transition pipe section 553
  • the outer wall surface is tapered, and the transition pipe section 553 is connected to the second pipe section 554 at the outer diameter end to connect the first pipe section 552 with the second pipe section 554.
  • Support tube 55 The support tube 55 and the vent tube 51 are more secure due to the two-stage interference fit between the first tube section 552 and the second tube section 554 and the vent tube 51.
  • the outer diameter of the resisting portion 555 is larger than the snorkel
  • the outer diameter of 51 is such that when the support tube 55 is completely inserted into the vent tube 51, the resisting portion 555 is abutted against the end surface of the vent tube 51.
  • the support tube 55 may also include a guide 551 attached to the side of the first tube section 552 that faces away from the transition section 553 in some embodiments.
  • the guiding portion 551 is located at the foremost end of the support tube 55.
  • the guiding portion 551 has a conical shape and has an outer diameter smaller than the diameter of the vent tube 51 to facilitate the alignment of the support tube 55 with the vent tube 51. Center through hole.
  • the liquid storage member 60 may be in the form of a cylinder in some embodiments, which may be formed by crimping a liquid storage sheet. See Figure 3 together.
  • the liquid storage member 60 is wrapped around the periphery of the atomizing assembly 50 and closely adheres to the liquid guiding cord 52 of the atomizing assembly 50, so that the liquid in the liquid storage member 60 can be in the liquid guiding rope 52. Under the action of the capillary force, it is continuously transmitted to the inside of the ventilator 51.
  • the lower end of the liquid storage member 60 is embedded in the accommodating portion 4323 of the rigid support 43, and the upper end is lower than the support tube of the atomizing assembly 50.
  • the rear end face prevents the liquid storage member 60 from blocking the center through hole of the support tube 55.
  • the power supply assembly 70 may, in some embodiments, include a cylindrical soft pack lithium battery with a cylindrical housing 10 A gap is formed between the inner wall surfaces for air circulation.
  • the air switch 80 may be in the form of a flat cylinder in some embodiments, as shown in Figures 8 and 23, the air switch 80 being mounted to the step inside the end cap 30. On the 330, and with the inner wall surface of the end cap 30 an interference fit.
  • the air switch 80 forms a cavity with the bottom wall 31 of the end cap 30, and the cavity communicates with the outside through the through hole 313.
  • Light-emitting element In some embodiments, an LED light emitting diode can be disposed on the surface of the air switch 80 opposite the bottom wall 31.
  • the above electronic cigarette 1 can be assembled as follows:
  • An atomizing assembly mount 40 and an atomizing assembly 50 are provided, and the atomizing assembly 50 is placed on the atomizing assembly mounting seat 40
  • a wire 531 that is connected to the heating element 53 of the atomizing assembly 50 is sequentially passed through the perforation of the rigid support 43. a slot 414 of the soft body 41 and piercing the retaining wall 415 at the bottom of the slot 414;
  • Glue is inserted into the corresponding receiving groove 4122 of the retaining wall 415 pierced by the wire 531 to seal the retaining wall 415 a puncture hole 416 formed by the penetration of the wire 531;
  • a liquid storage member 60 is provided and the liquid storage member 60 is tightly wrapped around the periphery of the atomizing assembly 50;
  • a cylindrical casing 10 is provided, and the atomizing assembly mount 40, the atomizing assembly 50, and the liquid storage member 60 are utilized by the tubular jig 2
  • the assembly is inserted from a distal end of the cylindrical casing 10 into a predetermined position inside the cylindrical casing 10; wherein the annular projection 4130 on the side wall surface 413 of the soft body 41 of the atomizing assembly mounting seat 40
  • the cylindrical casing 10 is tightly abutted to improve the sealing effect between the two.
  • a power supply assembly 70 is provided, and the power supply assembly 70 is inserted from the other end of the cylindrical housing 10 opposite the one end into the cylindrical housing Within 10
  • An end cap 30, an air switch 80, and a light emitting element 90 are provided, and the air switch 80 is embedded in the end cap 30 Inside, and mounting the light-emitting element 90 on the surface of the air switch 80 opposite to the bottom wall 31 of the end cover 30;
  • the air switch 80 and the light emitting element 90 are electrically connected to the power component 70 respectively;
  • step A assembling an atomizing assembly mount 40
  • the atomizing assembly mounting seat 40 is further included
  • the assembly includes the following steps:
  • a rigid support 43 and a soft body 41 are provided.
  • the second fitting portion 433 of the rigid holder 43 is embedded from the upper end surface 411 of the soft body 41 to the soft body The first central through hole 410 of 41.
  • the second embedding portion 433 is before the second embedding portion 433 is embedded in the first central through hole 410.
  • the upper perforation 436 is aligned with the slot 414 in the soft body 41 for subsequent passage of the subsequent wires 531.
  • Annular protrusion on the inner wall surface of the first central through hole 410 of the soft body 41 4101 closely abuts the side wall surface of the second insert portion 433 to improve the sealing effect between the two.
  • the body portion 432 of the rigid holder 43 abuts on the upper end surface 411 of the soft body 41.
  • the third section 4326 of the body portion 432 of the rigid support 43 is embedded in the upper end surface of the soft body 41.
  • the second portion 4325 of the main body portion 432 closely abuts against the upper end surface 411 of the soft body 41.
  • the second embedding portion of the rigid support 43 433 The stopper 4330 near the end is barbed on the annular step 4123 of the lower end surface 412 of the soft body 41 to lock the soft body 41 and the rigid support 43.
  • Air switch 80 After the negative pressure is sensed, the power supply assembly 70 is turned on with the heat generating component 53 of the atomizing assembly 50, and the heating element 53 is placed on the venting tube 51. The liquid in the middle portion is heated to atomize the liquid in the portion. The air switch 80 also turns on the light-emitting element 90 and the power supply unit 70 to simulate the illuminating effect of real smoking.
  • a part of the outside air first passes through the air inlet 314 of the end cover 30. Enter the outer air channel 335 and enter the inside of the electronic cigarette 1 through the outer air channel 335. The portion of air then follows the power assembly 70 and the cylindrical housing 10 The gap between the inner wall faces flows into the center through hole 434 of the rigid holder 43. The vent pipe that flows into the atomizing assembly 50 through the center through hole 434 51 Finally, the atomized smoke liquid is passed through the support tube 55 and the mouthpiece cover 20 to the outside, and the effect of simulating smoking is achieved.
  • Figure 24 illustrates an atomizing assembly 50a in some embodiments of the invention, which may include a snorkel in some embodiments. 51, the liquid guiding cord 52a, the heating element 53, the positioning sleeve 54 and the support tube 55.
  • the intake end of the vent pipe 51 is sleeved on the first insert portion 431 of the rigid support 43 (as shown in the figure). 3 and FIG. 4) are electrically connected to the center through hole 434 of the rigid support 43.
  • the liquid guiding cord 52a traverses the side wall of the vent pipe 51, and both ends are exposed, the exposed ends and the liquid storage member 60 They are connected to suck the smoke liquid in the liquid storage member 60 into the vent pipe 51 by the action of capillary force.
  • the exposed ends are preferably arranged in such a manner that one end faces upward and one end faces downward, and this arrangement is compared with FIG.
  • the liquid smoke in the upper and lower portions of the liquid storage member 60 can be more uniformly guided into the vent pipe 51 by the liquid guiding wire 52a.
  • Heating element 53 and liquid guiding cord 52 are located in the snorkel
  • the inner portion of 51 cooperates to atomize the liquid smoke on the portion of the liquid guiding cord 52a located inside the vent pipe 51 by heating.
  • the positioning sleeve 54 is sleeved on the vent pipe 51 and is a vent pipe 51. A specific part provides structural support.
  • the support tube 55 is embedded in the outlet end of the vent pipe 51 for preventing the outlet end of the vent pipe 51 from being deformed by pressure, and obstructing the air carrying the smoke in the vent pipe 51.
  • the presence of the support tube 55 prevents excessive squeezing of the liquid storage member 60 when a foreign squeezing force is applied to the electronic cigarette 1, thereby avoiding the liquid storage member 60.
  • the liquid in the smoke is squeezed out in large quantities.
  • FIG 25 illustrates an atomizing assembly 50b in some embodiments of the invention, which may include a snorkel in some embodiments. 51, two liquid guiding cords 52b, heating elements 53, positioning sleeves 54 and support tubes 55.
  • the intake end of the vent pipe 51 is sleeved to the first insert portion 431 of the rigid support 43 Upper (as shown in Figures 3 and 4) and electrically connected to the central through hole 434 of the rigid support 43.
  • the two liquid guiding cords 52b traverse the side walls of the vent pipe 51 and are adjacent to each other; the two liquid guiding ropes Both ends of the 52b are exposed, and the exposed ends of each of the liquid guiding cords 52b are connected to the liquid storage member 60 to suck the smoke liquid in the liquid storage member 60 into the vent pipe by the capillary force.
  • the exposed ends of the two liquid guiding cords 52b are preferably arranged such that both ends of one liquid guiding cord 52b face upward and both ends of the other liquid guiding cord 52b face downward, compared with Fig.
  • the arrangement of the single liquid guiding cord 52a with one end facing upward and one end facing downward can make the smoking liquid stronger, and the liquid smoke in the upper and lower portions of the liquid storage member 60 can be more uniformly guided by the liquid guiding wire 52b.
  • the heating element 53 is engaged with a portion of the liquid guiding cord 52b located inside the venting tube 51 to heat the liquid guiding cord 52b to the venting tube 51.
  • the liquid smoke on the inner part is atomized.
  • the positioning sleeve 54 is sleeved on the vent tube 51 to provide structural support for a specific portion of the vent tube 51.
  • the support tube 55 is embedded in the vent tube 51
  • the outlet end serves to prevent the outlet end of the vent pipe 51 from being deformed by pressure, and to block the flow of the mist-laden air in the vent pipe 51.
  • the presence of the support tube 55 can also prevent external exposure to the electronic cigarette 1 Excessive squeezing of the liquid storage member 60 when a radial pressing force is applied, thereby preventing the smoke liquid in the liquid storage member 60 from being squeezed out in a large amount.
  • Figure 26 shows a vent tube 51c in some embodiments of the present invention, which is convenient for the liquid guide cord 52.
  • the insertion portion is further provided with a slit 512c at a position above the through hole 510, and the slit 512c communicates with the through hole 510 and has a certain width.
  • the slit 512c The two portions of the vent tube 51 that are cut by the slit 512c can be opened at an angle to allow the liquid guiding cord 52 to be laterally inserted into the through hole 510. In the middle, the trouble of perforation installation is eliminated, and the installation of the liquid guiding cord 52 is largely facilitated.
  • the slit 512c may, in some embodiments, include a cross-section 5121c extending from the outside to the inside and a cross-section The 5121c is connected to the longitudinal section 5123c, and the slit section 5123c extends into the two through holes 510.
  • FIG. 27 shows a vent tube 51d in some embodiments of the present invention, which is for facilitating the catheter cord 52.
  • the insertion portion is further provided with a slit 512d extending from the upper end surface of the vent pipe 51d to the through hole 510 at a position above the through hole 510.
  • the two portions of the vent tube 51d that are cut by the slit 512d are opened at an angle to allow the liquid guiding cord 52 to be laterally inserted into the through hole 510. In the middle, the trouble of perforation installation is eliminated, and the installation of the liquid guiding cord 52 is largely facilitated.
  • Figure 28 shows a vent tube 51e in some embodiments of the present invention, which is for facilitating the catheter cord 52.
  • the insertion portion is further provided with a slit 512e extending from the lower end surface of the vent pipe 51d to the through hole 510 at a position below the through hole 510.
  • the two portions of the vent tube 51e cut by the slit 512e are opened at an angle to allow the liquid guiding cord 52 to be laterally inserted into the through hole 510. In the middle, the trouble of perforation installation is eliminated, and the installation of the liquid guiding cord 52 is largely facilitated.

Abstract

L'invention concerne une cigarette électronique (1) et un composant d'atomisation (50) associé. Le composant d'atomisation (50) comprend un conduit de circulation d'air (51), une mèche de conduction d'e-liquide (52) s'étendant à travers la paroi latérale du conduit de circulation d'air (51) et un élément de chauffage (53) disposé dans le conduit de circulation d'air (51) et placé sur la mèche de conduction d'e-liquide (52). Le composant d'atomisation (50) comprend également un conduit de support (55). Le conduit de support (55) est intégré à une extrémité de sortie du conduit de circulation d'air (51). D'autre part, la direction axiale du conduit de support (55) est parallèle à la direction axiale du conduit de circulation d'air (51). En disposant le conduit de support (55) dans le conduit de circulation d'air (51), on évite une compression et une déformation de l'extrémité de sortie du conduit de circulation d'air (51), qui empêchent l'écoulement de l'air transportant de la fumée dans le conduit de circulation d'air (51). La présence du conduit de support (55) empêche également une compression excessive d'un élément de stockage d'e-liquide interne (60) lorsque l'environnement extérieur applique une force de compression radiale à la cigarette électronique (1), ceci évitant ainsi que de grandes quantités d'un e-liquide se trouvant dans l'élément de stockage d'e-liquide (60) ne soient extraites par compression.
PCT/CN2014/085620 2014-08-29 2014-08-29 Cigarette électronique et composant d'atomisation associé WO2016029470A1 (fr)

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PCT/CN2014/085620 WO2016029470A1 (fr) 2014-08-29 2014-08-29 Cigarette électronique et composant d'atomisation associé

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PCT/CN2014/085620 WO2016029470A1 (fr) 2014-08-29 2014-08-29 Cigarette électronique et composant d'atomisation associé

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CN204015122U (zh) * 2014-08-29 2014-12-17 深圳市麦克韦尔科技有限公司 电子烟
CN104188114A (zh) * 2014-08-29 2014-12-10 深圳市麦克韦尔科技有限公司 电子烟及其雾化组件
CN204015121U (zh) * 2014-08-29 2014-12-17 深圳市麦克韦尔科技有限公司 电子烟壳体及电子烟
CN204070579U (zh) * 2014-08-29 2015-01-07 深圳市麦克韦尔科技有限公司 电子烟及其端盖
CN204091013U (zh) * 2014-08-29 2015-01-14 深圳市麦克韦尔科技有限公司 电子烟及其雾化组件
CN104323426A (zh) * 2014-08-29 2015-02-04 深圳市麦克韦尔科技有限公司 电子烟及其组装方法
CN204180935U (zh) * 2014-08-29 2015-03-04 深圳市麦克韦尔科技有限公司 电子烟及其雾化组件
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