WO2025026167A1 - Appareil d'atomisation et dispositif d'atomisation - Google Patents
Appareil d'atomisation et dispositif d'atomisation Download PDFInfo
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- WO2025026167A1 WO2025026167A1 PCT/CN2024/107422 CN2024107422W WO2025026167A1 WO 2025026167 A1 WO2025026167 A1 WO 2025026167A1 CN 2024107422 W CN2024107422 W CN 2024107422W WO 2025026167 A1 WO2025026167 A1 WO 2025026167A1
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- WIPO (PCT)
- Prior art keywords
- chamber
- air intake
- channel
- cover body
- intake pipe
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Classifications
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- A—HUMAN NECESSITIES
- A24—TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
- A24F—SMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
- A24F40/00—Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
- A24F40/40—Constructional details, e.g. connection of cartridges and battery parts
Definitions
- the present application relates to the technical field of atomization equipment, and in particular to an atomization device and atomization equipment for improving throat hit.
- the atomization device usually includes an atomization device and a power supply device that provides electrical energy to the atomization device.
- the power supply device is formed with an air flow channel and a negative pressure channel connected to the air inhalation channel of the atomization device.
- the other end of the air flow channel is connected to the outside, and the other end of the negative pressure channel is connected to the accommodating chamber where the microphone is installed.
- the power supply of the power supply device and the heating wire of the atomization device are turned on to heat the smoke liquid in the atomization device to produce smoke, which will flow into the air inhalation channel of the atomization device.
- the outside air is continuously inhaled through the air flow channel, thereby forming an air flow in the air inhalation channel, which can carry the smoke, so that the smoke is inhaled by the user.
- the smoke generated by the evaporation of the smoke liquid contains throat-hitting components that stimulate the surface of the throat.
- the concentration of throat hit components contained in the generated smoke is low due to the problem of the proportion of smoke liquid components.
- the main purpose of the present application is to propose an atomizing device and an atomizing equipment to solve the problem of low concentration of throat-hitting components in the smoke generated by the atomizing device in the related art.
- one aspect of the present application proposes an atomization device, in which an air intake channel and a first chamber are formed, the air intake channel is connected to the external space of the atomization device, the first chamber is used to accommodate volatile solids, and the first chamber and the air intake channel are connected to each other.
- the atomization device includes: a main body, which is formed with an atomization chamber; an air intake pipe, which is used to form the air intake channel, and the air intake pipe is inserted into the top wall of the main body, one end of the air intake pipe is connected to the atomization chamber, and the other end is connected to the outside; a first cover body, which is covered on the top wall of the main body and is sleeved with the air intake pipe, and the first cover body and the top wall of the main body and the side wall of the air intake pipe form the first chamber; wherein, a first through hole is opened on the side wall of the air intake pipe forming the first chamber, and the air intake channel is connected to the first chamber through the first through hole.
- the atomization chamber and the first chamber are connected to each other through a first connecting channel, and the first connecting channel is closer to the top wall of the main body than the first through hole.
- an atomizing chamber and a second chamber are further formed in the atomizing device, and the atomizing chamber, the second chamber, the first chamber and the air inhalation channel are connected in sequence, wherein the second chamber is used to accommodate a desiccant.
- the atomization device includes: a main body, which forms the atomization chamber; an air intake pipe, which is used to form the air intake channel, and the air intake pipe is connected to the top wall of the main body; a first cover body, which is covered on the top wall of the main body and is sleeved with the air intake pipe, and a partition sleeved with the air intake pipe is arranged on the inner side of the first cover body; wherein the first chamber is enclosed between the partition and the first part of the first cover body and the first side wall of the air intake pipe, a first through hole is provided on the first side wall of the air intake pipe, and the air intake channel is connected to the first chamber through the first through hole; the first part of the first cover body is the part located on the side of the partition facing away from the main body, and the first side wall of the air intake pipe is the side wall located on the side of the partition facing away from the main body.
- the second chamber is formed between the partition, the second portion of the first cover body, and the second side wall of the intake duct, the second portion of the first cover body is the portion located on the side of the partition facing the main body, and the second side wall of the intake duct is the side wall located on the side of the partition facing the main body; wherein a partition through hole is provided on the partition, and the first chamber and the second chamber are connected to each other through the partition through hole.
- a first connecting channel is formed between the air inhalation pipe and the main body, or on the main body, and the atomization chamber and the second chamber are connected to each other through the first connecting channel.
- the atomizing device further comprises a second cover, wherein the open end sleeve of the second cover
- the cover body is connected to the side wall of the main body to cover the first cover body, and the second cover body is provided with a second through hole which is arranged opposite to the end of the intake pipe connected to the outside;
- a top chamber is formed between the top wall of the first cover body and the second cover body, and a second connecting channel is also formed between the first cover body and the second cover body, and the top chamber is connected to the intake channel through the second connecting channel, and the top chamber is used to accommodate condensate.
- the atomization device also includes a second cover body, the open end of the second cover body is sleeved on the side wall of the main body to cover the first cover body, and the second cover body is provided with a second through hole arranged opposite to the end of the intake pipe connected to the outside; a top chamber is formed between the top wall of the first cover body and the second cover body, and a second connecting channel is also formed between the first cover body and the second cover body, the top chamber is connected to the intake channel through the second connecting channel, and the top chamber is used to accommodate a second volatile solid.
- the first chamber contains a first volatile solid for generating a volatile gas.
- the second chamber contains a desiccant for absorbing liquid.
- a first elastic valve for shielding the inhalation channel is disposed on the inner wall of the inhalation channel, and the first elastic valve is located at a port of the inhalation end of the inhalation channel.
- a second elastic valve covering the first through hole is disposed on the hole wall of the first through hole.
- the diameter of the first through hole gradually decreases along the direction from the first chamber to the air suction channel.
- Another aspect of the present application provides an atomization device, including a power supply device and an atomization device used in conjunction with the power supply device, wherein the atomization device is the atomization device described above.
- a first chamber for accommodating a first volatile solid is provided in the atomizer, and the first chamber is connected to an inhalation channel formed in the atomizer.
- the throat hit component gas is filled in the first chamber as the first volatile solid evaporates.
- a second chamber connected between the first chamber and the atomizing chamber is provided in the atomizing device.
- the second chamber is filled with a desiccant for absorbing liquid. The liquefied part of the smoke due to temperature change is absorbed by the desiccant, thereby reducing the humidity of the second chamber and the first chamber connected thereto, making the volatile solid in a relatively dry state and maintaining the volatility of the first volatile solid.
- FIG1 is a schematic structural diagram of an atomization device according to an embodiment of the present application.
- FIG2 is an exploded schematic diagram of an atomization device according to an embodiment of the present application.
- Fig. 3 is a cross-sectional view of the atomizing device at A-A in one embodiment of Fig. 2;
- Fig. 4 is a cross-sectional view of another embodiment of the atomizing device in Fig. 2 at A-A;
- Fig. 5 is a cross-sectional view of another embodiment of the atomizing device in Fig. 2 at A-A;
- 6a and 6b are schematic diagrams of the internal structure of the atomization device according to an embodiment of the present application.
- Atomizer 100 main body 111; first connecting channel 111a; air inlet pipe 112; first through hole 112a; first cover 113; second cover 114; second through hole 114a; first volatile solid 120a; first chamber 110a; air inlet channel 110b; first elastic valve 110c; smoke liquid chamber 110d; atomizer chamber 110e; heating wire 130; liquid guiding cotton 140; top chamber 110f; second connecting channel 110g; second volatile solid 150; power supply device 200; buffer pad 160; liquid absorbent cotton 170; partition 1131; partition through hole 1131a; second chamber 110h.
- the atomizing equipment comprises an atomizing device 100 and a power supply device 200.
- the power supply device 200 is used to provide electric energy to the atomizing device 100 and can control the opening and closing of the atomizing device 100, so that the atomizing device 100 generates smoke for the user to inhale.
- a smoke liquid chamber 110d, an atomization chamber 110e and an air inhalation channel 110b are formed in the atomization device 100.
- the smoke liquid chamber 110d is filled with smoke liquid
- the atomization chamber 110e is provided with a heating wire 130 and a liquid guiding cotton 140.
- the smoke liquid chamber 110d and the atomization chamber 110e are connected to each other, so that the smoke liquid in the smoke liquid chamber 110d flows to the heating wire 130 through the liquid guiding cotton 140.
- the air inhalation channel 110b is also connected to the atomization chamber 110e, so that after the smoke liquid is heated and converted into smoke, it is inhaled by the user through the air inhalation channel 110b.
- a first chamber 110a is also formed in the atomization device 100 of the present embodiment, and the air inhalation channel 110b is also connected to the first chamber 110a.
- the first chamber 110a is used to contain the first volatile solid 120a.
- the gas generated by the volatilization of the first volatile solid 120a will fill the first chamber 110a.
- the user inhales smoke through the inhalation channel 110b, since the first chamber 110a is also connected to the inhalation channel 110b, the user inhales the volatile gas of the first chamber 110a while inhaling the smoke.
- the user inhales the smoke through the atomizer 100 of this embodiment and also inhales the nicotine gas at the same time, so the concentration of the throat hit component inhaled by the user is higher, so that the user can feel a sufficient throat hit.
- the first volatile solid 120a is selected according to actual needs, for example, the first volatile solid 120a can be a fragrance that improves the taste of the smoke.
- first chamber 110a, the smoke liquid chamber 110d, the atomization chamber 110e and the air inhalation channel 110b of this embodiment can be formed by currently known conventional means, for example: the first chamber 110a, the smoke liquid chamber 110d, the atomization chamber 110e and the air inhalation channel 110b can be formed by independent components, or they can be formed into an integral structure by means of injection molding, etc. Other chambers that will appear below can also be formed by currently known conventional means.
- the first volatile solid 120a is relatively sensitive to temperature, and therefore can continuously generate volatile gas in a high temperature environment. Since the first chamber 110a of the present embodiment is connected to the air inhalation channel 110b, and the air inhalation channel 110b is connected to the outside, even if the user does not inhale the volatile gas, the volatile gas can leak out through the air inhalation channel 110b, thereby shortening the service life of the first volatile solid 120a.
- a first elastic valve 110c is provided on the inner wall of the air inhalation channel 110b to block the air inhalation channel 110b.
- the first elastic valve 110c is located
- the elastic valve is a thin film made of a silicone film or a plastic film, but is not limited thereto.
- the first elastic valve 110c always blocks the air inlet passage 110b, thereby preventing the volatile gas from leaking out through the air inlet passage 110b.
- the concentration of the volatile gas in the atomizing device 100 reaches a certain level, the first volatile solid 120a no longer volatilizes, thereby ensuring the normal service life of the first volatile solid 120a.
- the first elastic valve 110c tilts toward the inhalation end of the inhalation channel 110b along with the airflow in the inhalation channel 110b, thereby opening the inhalation channel 110b, so that the user can inhale the smoke and the volatile gas generated by the first volatile solid 120a.
- the first elastic valve 110c When the user stops inhaling, the first elastic valve 110c, under the action of the elastic restoring force, blocks the inhalation passage 110b again, thereby preventing the volatile gas from leaking out through the inhalation passage 110b.
- the atomizer 100 includes a main body 111, an air intake pipe 112, and a first cover 113.
- a smoke liquid chamber 110d and an atomizer chamber 110e are formed in the main body 111.
- the air intake pipe 112 is used to form an air intake channel 110b, that is, the air intake channel 110b is a tube cavity of the air intake pipe 112.
- One end of the air intake pipe 112 is connected to the atomizer chamber 110e inside the main body 111, and the other end is connected to the outside for the user to inhale.
- the first cover 113 is covered on the top wall of the main body 111 and is sleeved and connected with the air intake pipe 112, so that the first chamber 110a is enclosed between the first cover 113 and the top wall of the main body 111 and the side wall of the air intake pipe 112.
- a first through hole 112a is opened on the tube wall of the air intake pipe 112 that forms the first chamber 110a, and the air intake channel 110b is connected to the first chamber 110a through the first through hole 112a.
- the “top” in this article refers to the side of the atomizing device 100 facing the user in the normal use state, so the “top wall” refers to the side wall located on the top side.
- the gas generated by the volatilization of the first volatile solid 120a will fill the first chamber 110a.
- the user inhales smoke through the inhalation tube 112
- the tube cavity of the inhalation tube 112 is connected to the first chamber 110a through the first through hole 112a
- the user inhales the gas generated by the volatilization of the first volatile solid 120a while inhaling the smoke.
- the first volatile solid 120a contained in the first chamber 110a produces nicotine gas
- the concentration of the throat hit component inhaled by the user is relatively high, so that the user can feel a sufficient throat hit.
- the first through hole 112a is connected to the first chamber 110a through the first through hole 112a.
- the aperture of 112a gradually decreases along the direction from the first chamber 110a to the air inhalation channel 110b, thus forming a trumpet shape, so as to guide the volatile gas when the user inhales the volatile gas, making it easier for the user to absorb.
- the atomizing chamber 110e is connected to the first chamber 110a through the first connecting channel 111a, and the first connecting channel 111a is closer to the top wall of the main body 111 than the first through hole 112a. Since the atomizing chamber 110e is connected to the first chamber 110a through the first connecting channel 111a, a portion of the atomized gas in the atomizing chamber 110e will pass through the first connecting channel 111a to reach the first chamber 110a and be fully mixed with the volatile gas. When the user inhales, the mixed gas of the volatile gas and the smoke is inhaled by the user through the first through hole 112a and the inhalation channel 110b in sequence.
- the first connecting channel 111a can be opened at one end of the intake pipe 112 relatively close to the top wall of the main body 111, or when the intake pipe 112 is plugged into the main body 111, a gap is formed between the main body 111 and the outer wall of the intake pipe 112 to form the first connecting channel 111a, or a channel connecting the atomization chamber 110e and the top wall of the main body 111 is opened on the main body 111, so that the atomization chamber 110e and the first chamber 110a are connected to each other.
- a second elastic valve is disposed on the wall of the first through hole 112a to cover the first through hole 112a.
- the flexibility and material of the second elastic valve are the same as those of the first elastic valve 110c described above.
- the second elastic valve blocks the first through hole 112a, thereby preventing the volatile gas from leaking out through the inhalation tube 112.
- the second elastic valve tilts due to the change in air pressure, thereby opening the first through hole 112a, so that the volatile gas in the first chamber 110a flows into the inhalation tube 112 through the first through hole 112a.
- a third elastic valve for shielding the inhalation passage 110b is provided on the inner side of the tube wall of the inhalation tube 112, and the third elastic valve is located at the port at the other end of the inhalation tube 112.
- the flexibility, material and working principle of the third elastic valve are the same as those of the first elastic valve 110c described above, and will not be repeated here.
- the atomizing device 100 further includes a second cover body 114, the open end of which is sleeved on the side wall of the main body 111 to cover the first cover body 113.
- the second cover body 114 is provided with a second through hole 114a which is arranged opposite to the other end of the air intake pipe 112, so that the air intake pipe 112 is connected to the outside.
- a buffer pad 160 is arranged between the top wall of the first cover body 113 and the second cover body 114, and the buffer pad 160 can be one of elastic materials such as sponge, rubber, silicone, etc., but is not limited thereto.
- the buffer pad 160 between the first cover body 113 and the second cover body 114 can absorb part of the impact force, thereby reducing the damage of the first cover body 113 and the main body 111. possibility.
- a second connecting channel 110g and a top chamber 110f are formed between the top wall of the first cover body 113 and the second cover body 114 , and the top chamber 110f is connected to the air intake channel 110b via the second connecting channel 110g.
- the second cover body 114 not only protects the first cover body 113 and the main body 111, but also cooperates with the first cover body 113 to form a second connecting channel 110g and a top chamber 110f.
- the second connecting channel 110g is used to drain the condensate generated during the suction process using the atomizing device 100 to the top chamber 110f, and the top chamber 110f is used to store the condensate.
- condensate when the user inhales smoke through the inhalation channel 110b, condensate will be generated when the smoke with a higher temperature contacts the inner wall of the inhalation pipe 112 with a lower temperature. If this part of the condensate is not separated from the smoke, the condensate will be inhaled into the user's mouth along with the smoke, greatly affecting the user's inhalation taste. In addition, the condensate may also fall on the unheated heating wire 130. When the solvent component in the condensate is completely evaporated, the remaining solute component forms a thin film layer on the heating wire 130, thereby reducing the heating efficiency of the heating wire 130.
- a second connecting channel 110g is provided between the second through hole 114a of the atomizing device 100 and the air inhalation channel 110b, and a top chamber 110f is enclosed and formed between the top wall of the first cover body 113 and the second cover body 114 of the atomizing device 100.
- the condensate carried in the smoke will reach the top chamber 110f through the second connecting channel 110g and be stored in the top chamber 110f, while the separated smoke can be inhaled by the user through the second through hole 114a.
- the smoke will also produce condensate, and this part of the condensate can also reach the top chamber 110f through the second connecting channel 110g.
- a liquid-absorbing cotton 170 is disposed in the top chamber 110f, and the liquid-absorbing cotton 170 can absorb the condensed liquid to prevent the condensed liquid from leaking to other positions in the atomizing device 100 and causing pollution.
- a fourth elastic valve is disposed on the wall of the second through hole 114a to cover the second through hole 114a.
- the flexibility and material of the fourth elastic valve are the same as those of the first elastic valve 110c described above.
- the fourth elastic valve blocks the second through hole 114a to prevent the volatile gas from leaking outward through the second through hole 114a.
- the fourth elastic valve tilts outward under the effect of the change in air pressure, thereby opening the second through hole 114a, so that the user can inhale smoke and volatile gas.
- a smoke is formed in the atomizing device 100.
- the liquid chamber 110d is filled with liquid, and the atomizing chamber 110e is provided with an atomizing assembly, which at least includes a heating wire 130 and a liquid-conducting cotton 140.
- additional components such as a filter membrane may be added according to actual needs.
- the liquid chamber 110d and the atomizing chamber 110e are connected to each other, so that the liquid in the liquid chamber 110d flows to the heating wire 130 through the liquid-conducting cotton 140.
- the inhalation channel 110b is also connected to the atomizing chamber 110e, so that the liquid is heated and converted into smoke, and then inhaled by the user through the inhalation channel 110b.
- the atomization device 100 of this embodiment also has a first chamber 110a and a second chamber 110h formed therein, and the atomization chamber 110e, the second chamber 110h, the first chamber 110a and the air inlet channel 110b are sequentially connected, that is, the smoke generated in the atomization chamber 110e passes through the second chamber 110h and the first chamber 110a in sequence before reaching the air inlet channel 110b.
- the first chamber 110a is used to contain the first volatile solid 120a.
- the gas generated by the volatilization of the first volatile solid 120a will fill the first chamber 110a.
- the second chamber 110h is used to contain the desiccant 120b.
- the desiccant 120b can absorb the liquefied part of the smoke due to temperature change, thereby helping to reduce the humidity of the first chamber 110a.
- the user When the user inhales smoke through the inhalation channel 110b, since the first chamber 110a is also connected to the inhalation channel 110b, the user inhales the smoke and the volatile gas of the first chamber 110a at the same time. In this process, the smoke generated in the atomization chamber 110e first flows into the second chamber 110h along with the airflow.
- the desiccant 120b in the second chamber 110h can absorb the liquefied part, so that the humidity of the second chamber 110h and the first chamber 110a connected thereto can be reduced, so that the first volatile solid 120a is in a relatively dry state, and the volatility of the first volatile solid 120a is maintained.
- the user inhales the smoke through the atomizer 100 of this embodiment and also inhales the nicotine gas at the same time, so the concentration of the throat hit component inhaled by the user is higher, so that the user can feel a sufficient throat hit.
- the first volatile solid 120a is selected according to actual needs, for example, the first volatile solid 120a can be a fragrance that improves the taste of the smoke.
- first chamber 110a, the second chamber 110h, the smoke liquid chamber 110d, the atomizing chamber 110e and the inhalation passage 110b of the present embodiment can be formed by conventional means known at present, for example: the first chamber 110a, the second chamber 110h, the smoke liquid chamber 110d, the atomizing chamber 110e and the inhalation passage
- the channels 110b may be formed by separate components, or may be formed as an integral structure by injection molding or the like. Other chambers that will be described below may also be formed by conventional means known at present.
- the first volatile solid 120a is relatively sensitive to temperature, and therefore can continuously generate volatile gas in a high temperature environment. Since the first chamber 110a of the present embodiment is connected to the air inhalation channel 110b, and the air inhalation channel 110b is connected to the outside, even if the user does not inhale the volatile gas, the volatile gas can leak outward through the air inhalation channel 110b, thereby shortening the service life of the first volatile solid 120a.
- a first elastic valve 110c that blocks the air inhalation channel 110b is provided on the inner wall of the air inhalation channel 110b, and the first elastic valve 110c is located at the port of the air inhalation end of the air inhalation channel 110b.
- the elastic valve is a thin film made of a silicone film or a plastic mold, but is not limited thereto.
- the first elastic valve 110c always blocks the air inlet passage 110b, thereby preventing the volatile gas from leaking out through the air inlet passage 110b.
- the concentration of the volatile gas in the atomizing device 100 reaches a certain level, the first volatile solid 120a no longer volatilizes, thereby ensuring the normal service life of the first volatile solid 120a.
- the first elastic valve 110c tilts toward the inhalation end of the inhalation channel 110b along with the airflow in the inhalation channel 110b, thereby opening the inhalation channel 110b, so that the user can inhale the smoke and the volatile gas generated by the first volatile solid 120a.
- the first elastic valve 110c When the user stops inhaling, the first elastic valve 110c, under the action of the elastic restoring force, blocks the inhalation passage 110b again, thereby preventing the volatile gas from leaking out through the inhalation passage 110b.
- the atomizer 100 includes a main body 111, an air intake pipe 112, and a first cover 113.
- a smoke liquid chamber 110d and an atomizer chamber 110e are formed in the main body 111.
- the air intake pipe 112 is used to form an air intake channel 110b, that is, the air intake channel 110b is the lumen of the air intake pipe 112.
- one end of the air intake pipe 112 is connected to the top wall of the main body 111 and is blocked, and the other end is connected to the outside.
- the “top” in this article refers to the side of the atomizer 100 facing the user in the normal use state, so the "top wall” refers to the side wall located on the top side.
- the first cover 113 is covered on the top wall of the main body 111 and is sleeved with the air intake pipe 112, and a partition 1131 sleeved with the air intake pipe 112 is also provided on the inner side of the first cover 113.
- the partition plate 1131, the first portion of the first cover body 113, and the first side wall of the air intake pipe 112 enclose a first chamber 110a.
- the so-called first part of the first cover body 113 refers to the part of the first cover body 113 located on the side of the partition 1131 facing away from the main body 111.
- the so-called first side wall of the air intake pipe 112 refers to the side wall of the air intake pipe 112 located on the side of the partition 1131 facing away from the main body 111. As shown in FIG. 5, a first through hole 112a is provided on the first side wall of the air intake pipe 112, and the air intake channel 110b is connected to the first chamber 110a through the first through hole 112a.
- the partition 1131 and the second part of the first cover 113 and the second side wall of the air intake pipe 112 enclose a second chamber 110h.
- the so-called second part of the first cover 113 refers to the part of the first cover 113 located on the side of the partition 1131 facing the main body 111
- the so-called second side wall of the air intake pipe 112 refers to the side wall of the air intake pipe 112 located on the side of the partition 1131 facing the main body 111.
- a partition through hole 1131a is provided on the partition 1131, and the first chamber 110a and the second chamber 110h are connected to each other through the partition through hole 1131a.
- the atomizing chamber 110e and the second chamber 110h are connected to each other through the first connecting channel 111a.
- the first connecting channel 111a is directly formed on the main body 111, one end of the first connecting channel 111a is connected to the atomizing chamber 110e, and the other end is connected to the second chamber 110h, so that the smoke generated in the atomizing chamber 110e flows along the first connecting channel 111a to the second chamber 110h.
- the first connecting channel 111a can also be formed by the gap between the air intake pipe 112 and the main body 111.
- the gas generated by the volatilization of the first volatile solid 120a will fill the first chamber 110a.
- the user inhales smoke through the inhalation tube 112
- the tube cavity of the inhalation tube 112 is connected to the first chamber 110a through the first through hole 112a
- the user inhales the gas generated by the volatilization of the first volatile solid 120a while inhaling the smoke.
- the first volatile solid 120a contained in the first chamber 110a generates nicotine gas
- the concentration of the throat hit component inhaled by the user is relatively high, so that the user feels a sufficient throat hit.
- the aperture of the first through hole 112a gradually decreases along the direction from the first chamber 110a to the air inhalation channel 110b, thereby forming a trumpet shape, so as to guide the volatile gas when the user inhales the volatile gas, thereby facilitating the user's absorption.
- a second elastic valve is disposed on the wall of the first through hole 112a to cover the first through hole 112a.
- the flexibility and material of the second elastic valve are the same as those of the first elastic valve 110c described above.
- the second elastic valve blocks the first through hole 112a, thereby preventing the volatile gas from leaking out through the inhalation tube 112.
- the second elastic valve tilts, thereby opening the first through hole 112a, so that the volatile gas in the first chamber 110a flows into the air intake pipe 112 through the first through hole 112a.
- a third elastic valve for shielding the inhalation passage 110b is provided on the inner side of the tube wall of the inhalation tube 112, and the third elastic valve is located at the port at the other end of the inhalation tube 112.
- the flexibility, material and working principle of the third elastic valve are the same as those of the first elastic valve 110c described above, and will not be repeated here.
- the atomizing device 100 further includes a second cover 114 as a protective member, and the open end of the second cover 114 is sleeved on the side wall of the main body 111 to cover the first cover 113.
- the second cover 114 is provided with a second through hole 114a arranged opposite to the other end of the air intake pipe 112, so that the air intake pipe 112 is connected to the outside.
- the top wall of the first cover 113 and the second cover 114 are enclosed to form a second connecting channel 110g and a top chamber 110f.
- the top chamber 110f is connected to the air intake channel 110b through the second connecting channel 110g.
- the top chamber 110f is used to accommodate the second volatile solid 150.
- the first volatile solid 120a contained in the first chamber 110a and the second volatile solid 150 contained in the top chamber 110f can be the same component, or different components.
- the first volatile solid 120a in the first chamber 110a can volatilize nicotine gas
- the second volatile solid 150 in the top chamber 110f can volatilize aromatic gas, thereby improving and adjusting the taste of the smoke.
- a fourth elastic valve is disposed on the wall of the second through hole 114a to cover the second through hole 114a.
- the flexibility and material of the fourth elastic valve are the same as those of the first elastic valve 110c described above.
- the fourth elastic valve blocks the second through hole 114a to prevent the volatile gas from leaking outward through the second through hole 114a.
- the fourth elastic valve tilts outward under the action of the change in air pressure, thereby opening the second through hole 114a, so that the user can inhale smoke and volatile gas.
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- Disinfection, Sterilisation Or Deodorisation Of Air (AREA)
Abstract
L'invention concerne un appareil d'atomisation (100) et un dispositif d'atomisation utilisant l'appareil d'atomisation (100). Un canal d'inhalation (110b) et une première cavité (110a) sont formés dans l'appareil d'atomisation (100) ; le canal d'inhalation (110b) est utilisé pour aspirer de la vapeur ; la première cavité (110a) est utilisée pour recevoir une première matière solide volatile (120a) ; et la première cavité (110a) et le canal d'inhalation (110b) sont en communication l'un avec l'autre. L'appareil d'atomisation (100) est intérieurement pourvu de la première cavité (110a) utilisée pour recevoir la première matière solide volatile (120a), et la première cavité (110a) est en communication avec le canal d'inhalation (110b) formé dans l'appareil d'atomisation (100). Lorsque la première cavité (110a) est remplie avec la première matière solide volatile (120a) contenant un composant d'effet en fond de gorge, sous l'action de volatilisation de la matière solide volatile, la première cavité (110a) est remplie d'un gaz de composant d'effet en fond de gorge. Du fait que le canal d'inhalation (110b) est en communication avec la première cavité (110a), lorsqu'un utilisateur inhale à l'aide de l'appareil d'atomisation (100), l'utilisateur inhale le gaz de composant d'effet en fond de gorge dans la première cavité (110a) tout en inhalant la vapeur générée par l'évaporation d'un e-liquide pendant l'inhalation, fournissant ainsi à l'utilisateur une sensation d'effet en fond de gorge suffisante.
Applications Claiming Priority (4)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202322024163.0U CN220571555U (zh) | 2023-07-28 | 2023-07-28 | 一种雾化装置及雾化设备 |
| CN202322024163.0 | 2023-07-28 | ||
| CN202310944190.1A CN116763004A (zh) | 2023-07-28 | 2023-07-28 | 一种雾化装置及雾化设备 |
| CN202310944190.1 | 2023-07-28 |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| WO2025026167A1 true WO2025026167A1 (fr) | 2025-02-06 |
Family
ID=94394059
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| PCT/CN2024/107422 Pending WO2025026167A1 (fr) | 2023-07-28 | 2024-07-25 | Appareil d'atomisation et dispositif d'atomisation |
Country Status (1)
| Country | Link |
|---|---|
| WO (1) | WO2025026167A1 (fr) |
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| US20210153546A1 (en) * | 2017-05-15 | 2021-05-27 | British American Tobacco (Investments) Limited | Liquid tobacco extract |
| US20210386116A1 (en) * | 2019-02-13 | 2021-12-16 | Nicoventures Trading Limited | Container for aerosolisable material |
| WO2022198960A1 (fr) * | 2021-03-25 | 2022-09-29 | 比亚迪精密制造有限公司 | Cigarette électronique |
| CN218185263U (zh) * | 2022-07-27 | 2023-01-03 | 深圳市赛尔美电子科技有限公司 | 冷凝液二次雾化装置 |
| WO2023005991A1 (fr) * | 2021-07-30 | 2023-02-02 | 深圳麦克韦尔科技有限公司 | Composant aromatisant et dispositif d'atomisation électronique |
| US20230092745A1 (en) * | 2020-02-26 | 2023-03-23 | Philip Morris Products S.A. | Inhaler mouthpiece with separate flavour air channel |
| CN116763004A (zh) * | 2023-07-28 | 2023-09-19 | 深圳市斯科尔科技股份有限公司 | 一种雾化装置及雾化设备 |
| CN220571555U (zh) * | 2023-07-28 | 2024-03-12 | 深圳市斯科尔科技股份有限公司 | 一种雾化装置及雾化设备 |
-
2024
- 2024-07-25 WO PCT/CN2024/107422 patent/WO2025026167A1/fr active Pending
Patent Citations (9)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US20210153546A1 (en) * | 2017-05-15 | 2021-05-27 | British American Tobacco (Investments) Limited | Liquid tobacco extract |
| US20190289909A1 (en) * | 2018-03-26 | 2019-09-26 | Rai Strategic Holdings, Inc. | Aerosol delivery device providing flavor control |
| US20210386116A1 (en) * | 2019-02-13 | 2021-12-16 | Nicoventures Trading Limited | Container for aerosolisable material |
| US20230092745A1 (en) * | 2020-02-26 | 2023-03-23 | Philip Morris Products S.A. | Inhaler mouthpiece with separate flavour air channel |
| WO2022198960A1 (fr) * | 2021-03-25 | 2022-09-29 | 比亚迪精密制造有限公司 | Cigarette électronique |
| WO2023005991A1 (fr) * | 2021-07-30 | 2023-02-02 | 深圳麦克韦尔科技有限公司 | Composant aromatisant et dispositif d'atomisation électronique |
| CN218185263U (zh) * | 2022-07-27 | 2023-01-03 | 深圳市赛尔美电子科技有限公司 | 冷凝液二次雾化装置 |
| CN116763004A (zh) * | 2023-07-28 | 2023-09-19 | 深圳市斯科尔科技股份有限公司 | 一种雾化装置及雾化设备 |
| CN220571555U (zh) * | 2023-07-28 | 2024-03-12 | 深圳市斯科尔科技股份有限公司 | 一种雾化装置及雾化设备 |
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