WO2022152004A1 - 气溶胶形成装置 - Google Patents
气溶胶形成装置 Download PDFInfo
- Publication number
- WO2022152004A1 WO2022152004A1 PCT/CN2021/143989 CN2021143989W WO2022152004A1 WO 2022152004 A1 WO2022152004 A1 WO 2022152004A1 CN 2021143989 W CN2021143989 W CN 2021143989W WO 2022152004 A1 WO2022152004 A1 WO 2022152004A1
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- aerosol
- heating
- liquid storage
- heating element
- forming device
- Prior art date
- Legal status (The legal status 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 status listed.)
- Ceased
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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
- A24F40/46—Shape or structure of electric heating means
- A24F40/465—Shape or structure of electric heating means specially adapted for induction heating
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- A—HUMAN NECESSITIES
- A24—TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
- A24F—SMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
- A24F1/00—Tobacco pipes
- A24F1/30—Hookahs
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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
- A24F40/10—Devices using liquid inhalable precursors
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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
-
- 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
- A24F40/42—Cartridges or containers for inhalable precursors
-
- 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
- A24F40/46—Shape or structure of electric heating means
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- H—ELECTRICITY
- H05—ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
- H05B—ELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
- H05B6/00—Heating by electric, magnetic or electromagnetic fields
- H05B6/02—Induction heating
- H05B6/10—Induction heating apparatus, other than furnaces, for specific applications
- H05B6/105—Induction heating apparatus, other than furnaces, for specific applications using a susceptor
- H05B6/108—Induction heating apparatus, other than furnaces, for specific applications using a susceptor for heating a fluid
Definitions
- the invention relates to the technical field of atomization equipment, in particular to an aerosol forming device.
- An aerosol-forming device is a device that atomizes an aerosol-forming substrate into an aerosol, which is widely used in medical equipment and electronic atomization devices.
- an aerosol forming device generally includes an atomizing component and a power supply component; wherein, the atomizing component includes a heating body, and the heating body is used to heat and atomize the aerosol-forming substrate when energized, and the power supply component is electrically connected to the atomizing component. for supplying power to the heating element.
- the heating element generally extends into the aerosol-forming substrate to heat the aerosol-forming substrate, the heating method is relatively simple, and the atomization speed is relatively slow.
- the present application provides an aerosol forming device, which can solve the problems of the existing aerosol forming device, the heating method of the atomizing component is relatively simple, and the atomization speed is relatively slow.
- the aerosol forming device includes an atomization component; the atomization component includes a liquid storage and a heating body; wherein, the storage liquid has a liquid storage atomization cavity, and the liquid storage atomization cavity is used for storing the aerosol forming matrix; the heating body is used for energizing When heating and atomizing the aerosol to form a matrix; wherein, the heating element is slidably connected to the storage liquid between the first position and the second position, and when the heating element is in the first position, the heating element is located outside the aerosol-forming matrix, and when the heating element is in the first position, the heating element is located outside the aerosol-forming matrix.
- the body is in the second position, at least a portion of the heat generating body extends into the aerosol-forming substrate.
- the atomization assembly further includes a cover body; the cover body is arranged at the port of the liquid storage atomization cavity to seal the liquid storage atomization cavity, and the cover body has a through hole communicating with the liquid storage atomization cavity; The extension part in the through hole, and the heating part connected to the extension part and located in the liquid storage atomization chamber, the extension part is slidably connected with the storage liquid through the through hole, so that the heating part can be separated from or extended into the aerosol forming matrix.
- the surface of the cover body facing the liquid storage side has a convex part
- the convex part has a sliding groove communicating with the through hole
- the part of the heating body extending into the liquid storage atomization cavity has a sliding block
- the sliding block moves along the sliding The slot moves, and when the heating body is located at the second position, the slider is released from the restriction of the chute.
- the heating body and the cover body are rotatably connected, so that the sliding block and the chute are aligned or deviated.
- the atomizing assembly further includes an elastic member, and the elastic member is used to provide a force toward the first position to the heating body when the heating body is in the second position.
- the heating body further includes a limiting portion extending circumferentially from one end of the extension portion away from the heating portion, the elastic piece is sleeved on the extending portion, one end of the elastic piece is in contact with the limiting portion, and the other end is in contact with the cover.
- the elastic member is a spring, the elastic member is sleeved on the heating body, one end of the elastic member is in contact with the end limiting portion of the heating body, and the other end is in contact with the cover body.
- the atomization assembly further includes a sealing member, sleeved on the outer side wall of the liquid storage, for fixing the cover and sealing the connection position between the cover and the liquid storage.
- the atomization assembly further includes a cooling body, and the cooling body is detachably connected with the storage liquid, and is used for cooling the aerosol generated by the atomization of the heating body.
- the cooling body includes a connecting part and a cooling part; wherein, the connecting part is detachably connected with the liquid storage, and communicates with the liquid storage atomization chamber; the cooling part communicates with the connecting part for accommodating the condensate.
- a power supply component which is detachably connected to the atomizing component for supplying power to the atomizing component.
- the power supply assembly includes a casing, a battery, a circuit board and a coil; wherein, the casing has an accommodating cavity; the battery is accommodated in the accommodating cavity for providing electrical energy; the circuit board is accommodated in the accommodating cavity, and The battery is connected; the coil is formed in the circumferential direction of the heating body and communicated with the circuit board for generating a magnetic field when electrified, so as to heat the heating body through electromagnetic induction.
- a first concave part is formed on one side surface of the casing, the coil is arranged on the inner side wall of the first concave part along the circumferential direction of the first concave part, and at least part of the liquid storage and at least part of the heating element are located in the first concave part.
- the heating body is heated by electromagnetic induction.
- a second concave portion is also formed on one side surface of the casing, and the atomization assembly further includes a cooling body, and the cooling body includes a cooling portion that communicates with the liquid storage atomization cavity, and at least part of the cooling portion is accommodated in the second recessed portion. , to fix the cooling body.
- an atomization assembly configured to include a liquid storage and a heating body, wherein the storage liquid has a liquid storage atomization chamber, so as to store the aerosol through the liquid storage atomization chamber
- the matrix is formed, and the matrix is formed by heating and atomizing the aerosol when the heating element is energized; meanwhile, the heating element is slidably connected to the storage liquid at the first position and the second position, and when the heating element is at the first position, the heating element is heated.
- the body is located outside the aerosol-forming substrate, and when the heat-generating body is at the second position, at least part of the heat-generating body extends into the aerosol-forming substrate, so that the heat-generating body can protrude into the aerosol-forming substrate to conduct the aerosol-forming substrate.
- Heating can also heat a small amount of aerosol-forming matrix bonded to the heating element outside the aerosol-forming matrix, which not only increases the heating method of the heating element, but also realizes the diversification of the heating method of the heating element;
- When outside the aerosol-forming substrate only a small amount of the aerosol-forming substrate bonded on the heating element needs to be heated and atomized.
- the atomization speed increases the amount of atomization per unit time.
- FIG. 1 is a schematic structural diagram of an atomizing assembly and a power source assembly provided by an embodiment of the present application after being assembled;
- FIG. 2 is a schematic structural diagram of an atomizing assembly and a power source assembly provided by an embodiment of the present application after disassembly;
- FIG. 3 is a schematic diagram of the overall structure of an atomizing assembly provided by an embodiment of the application.
- FIG. 4 is a schematic disassembly diagram of the structure shown in FIG. 3 according to an embodiment of the present application;
- FIG. 5 is a schematic structural diagram of a heating body located at a first position according to an embodiment of the present application
- FIG. 6 is a schematic structural diagram of a heating body located at a second position according to an embodiment of the present application.
- FIG. 7 is a schematic structural diagram of a slider of a heating body extending into a chute according to an embodiment of the application;
- FIG. 8 is a schematic structural diagram of the alignment arrangement of the slider of the heating body and the chute provided by an embodiment of the application;
- FIG. 9 is a schematic structural diagram of the slider and the chute of the heating body provided in an embodiment of the application deviate from each other.
- first”, “second” and “third” in this application are only used for descriptive purposes, and should not be construed as indicating or implying relative importance or implying the number of indicated technical features. Thus, a feature defined as “first”, “second”, “third” may expressly or implicitly include at least one of that feature.
- "a plurality of” means at least two, such as two, three, etc., unless otherwise expressly and specifically defined. All directional indications (such as up, down, left, right, front, rear%) in the embodiments of the present application are only used to explain the relative positional relationship between components under a certain posture (as shown in the accompanying drawings).
- FIG. 1 is a schematic structural diagram of the atomizing assembly and the power supply assembly provided by an embodiment of the application after assembly
- FIG. 2 is the disassembly of the atomizing assembly and the power supply assembly provided by an embodiment of the application
- the following structural diagram in this embodiment, an aerosol forming device is provided.
- the aerosol-forming device can heat and atomize the aerosol-forming substrate when electrified, so as to form an aerosol for the user to inhale; specifically, the aerosol-forming device can be a smoking device, and the aerosol-forming substrate can be cannabis cream or Oil.
- the aerosol forming device includes an atomizing component 11 and a power component 12 .
- the atomizing component 11 is used to heat and atomize the aerosol-forming substrate 111b when powered on (see FIGS. 5 and 6 below), and the power supply component 12 is detachably connected to the atomizing component 11 for use in the atomizing component 11
- the power supply component 12 is detachably connected to the atomizing component 11 for use in the atomizing component 11
- the product structure after the power supply assembly 12 is assembled with the atomizing assembly 11 can be seen in FIG. 1, and the product structure after disassembly can be seen in FIG. 2; It is detachably connected to the atomizing assembly 11 , so that the atomizing assembly 11 and the power supply assembly 12 can be separated when cleaning the two, thereby facilitating the cleaning of the atomizing assembly 11 and the power supply assembly 12 .
- FIG. 3 is a schematic diagram of the overall structure of an atomizing assembly provided by an embodiment of the application
- FIG. 4 is a schematic disassembly diagram of the structure shown in FIG. 3 provided by an embodiment of the application
- the atomizing assembly 11 includes Storage liquid 111 and heating element 112 .
- the liquid storage 111 may be a tubular structure, and a liquid storage atomizing cavity 111 a is formed on one surface of the liquid storage atomizing cavity 111 a, so as to store the aerosol-forming matrix 111 b through the liquid storage atomizing cavity 111 a.
- the heating body 112 may be a rod-shaped body for heating and atomizing the aerosol-forming substrate 111b when energized.
- FIG. 5 is a schematic structural diagram of a heating element provided in an embodiment of the application in a first position
- FIG. 6 is a heating element provided in an embodiment of the application in a second position.
- Schematic diagram of the structure; the heating body 112 is slidably connected to the storage liquid 111 along its axial direction between the first position and the second position; and when the heating body 112 is at the first position, the heating body 112 is located outside the aerosol-forming matrix 111b , at this time, the specific positional relationship between the heating element 112 and the liquid storage 111 can be seen in FIG.
- the part of the heating element 112 is still located in the liquid storage atomizing cavity 111a, but not in contact with the aerosol forming matrix 111b;
- the body 112 is located at the second position, at least a part of the heating body 112 extends into the aerosol-forming matrix 111b.
- the positional relationship between the heating body 112 and the liquid storage 111 can be found in FIG.
- the heating body 112 is The aerosol-forming substrate 111b can be inserted into the aerosol-forming substrate 111b to heat the aerosol-forming substrate 111b, and a small amount of the aerosol-forming substrate 111b adhered to the heating element 112 can also be heated outside the aerosol-forming substrate 111b, thereby not only increasing the heat generation
- the heating method of the body 112 realizes the diversification of the heating methods of the heating body 112; and in a specific embodiment, when the heating body 112 returns from the second position to the first position, the heating body 112 extends into the aerosol forming matrix 111b. A small amount of the aerosol-forming substrate 111b is partially adhered.
- the heating element 112 only needs to heat and atomize the small amount of the aerosol-forming substrate 111b.
- the solution of atomization greatly reduces the amount of the aerosol-forming matrix 111b that needs to be heated and atomized each time, thereby effectively improving the atomization efficiency, shortening the atomization time, and enabling the user to inhale a certain amount each time.
- the aerosol ensures the user's suction taste.
- the atomizing assembly 11 further includes a cover 113;
- the aerosol generated by atomization is exposed from the port of the liquid storage atomizing chamber 111a; specifically, the cover body 113 is provided with a through hole, and the through hole communicates with the liquid storage atomizing chamber 111a;
- the heating body 112 Specifically, it includes an extension part and a heating part axially connected with the extension part; wherein, the extension part is specifically penetrated in the through hole and is slidably connected with the liquid storage 111 through the through hole, so that the heating part is separated or extended into the aerosol to form Substrate 111b; the heating part is located in the liquid storage atomizing chamber 111a, and is used to heat and atomize the aerosol to form the substrate 111b when electrified.
- a through hole can be opened in the center of the cover body 113 , and the part of the heating element 112 that penetrates through the through hole is located in the liquid storage atomizing chamber 111 a and the inner side wall of the liquid storage atomizing chamber 111 a Compared with the solution in which the heating body 112 and the inner wall of the liquid storage atomizing chamber 111a are arranged at intervals, the heat transfer of the heating body 112 to the storage liquid 111 can be reduced, the heat loss can be reduced, and the outer wall of the aerosol forming device can be ensured. At the appropriate temperature of the human body; at the same time, it can realize central heating and improve the uniformity of heating.
- the surface of the cover 113 facing the liquid storage 111 further has a raised portion 114, and the raised portion 114 is specifically penetrated in the liquid storage atomization chamber 111a, and can be connected with the liquid storage atomization chamber 111a.
- the inner side wall of the radiator has an interference fit to improve the tightness of the liquid storage atomizing chamber 111a; specifically, the raised portion 114 has a chute 114a that communicates with the through hole, and the heating element 112 extends into the liquid storage atomizing chamber 111a.
- There is a sliding block 112a the sliding block 112a can move along the sliding groove 114a so that the heating element 112 is in the first position or the second position.
- the material of the cover body 113 and/or the protruding portion 114 may be high temperature-resistant metal, plastic or ceramic.
- FIG. 7 is a schematic structural diagram of a slider of a heating body extending into a chute provided by an embodiment of the application
- FIG. 8 is a slider of a heating body provided by an embodiment of the application Schematic diagram of the structure aligned with the chute
- FIG. 9 is a schematic diagram of the structure of the slider of the heating body provided in an embodiment of the present application and the sliding slot offset; when the heating body 112 is in the first position, at least part of the slider 112a It is located in the chute 114a (see FIG.
- the vertical distance between the side surface of the slider 112a facing the cover body 113 and the side surface of the raised portion 114 away from the cover body 113 is less than or equal to that when the heating body 112 is in the first position and The vertical distance of the second position, so that after pressing down the heating element 112, when the heating element 112 is in the second position, the slider 112a can fall off the restriction of the chute 114a, and then the heating element 112 can be rotated so that the slider 112a can be rotated.
- the slider 112a and the slider 114a are arranged in alignment with or offset; the structure of the slider 112a and the slider 114a aligned with the slider 114a can be found in FIG.
- the heating element 112 when the heating element 112 is in the second position, the heating element 112 can be rotated and is clamped on the side wall of the chute 114a through the slider 112a, so that the heating element 112 can be fixed at the level of the second position. , so that at least part of the heating element 112 is always located in the aerosol-forming substrate 111b, that is, at least part of the heating element 112 is always in contact with the aerosol-forming substrate 111b, which can prevent the user from needing to The problem of pressing the heating body 112 occurs, and the operation is relatively simple.
- the heating scheme in which the slider 112a is clamped on the side wall of the chute 114a is specifically similar to heating in the same way as a traditional marijuana smoking set.
- the rotation angle may be 10 degrees to 120 degrees.
- the sliding groove 114a can extend from the side surface of the convex part 114 opposite to the through hole to the side surface opposite to the through hole along the axial direction of the convex part 114, and the sliding groove 114a can extend along the convex part 114
- the radial direction runs through the side wall of the raised portion 114; that is, the sliding groove 114a can be a through groove along its axial direction and radial direction; the sliding block 112a can be two, and the two sliding blocks 112a can be arranged opposite to each other
- the slider 112a may be a rectangular block arranged along the axial direction of the heating body 112, and the size of the rectangular block along the axial direction of the heating body 112 is greater than or equal to the size of the sliding groove 114a along the heating body 114a.
- the size of the axial direction of the body 112; the size of the rectangular block in the radial direction of the heating body 112 matches the radial size of the corresponding position of the sliding groove 114a and the sliding block 112a, and the corresponding position of the sliding groove 114a and the heating body 112
- the radial dimension at the position matches the radial dimension of the heating element 112 .
- the outer side wall of the heating body 112 is further provided with an annular protrusion 112b, and the annular protrusion 112b can be specifically arranged on the end of the slider 112a away from the cover 113, and can be integrally formed with the slider 112a. It is used to limit the movement of the heating body 112 in the direction of the first position, so as to prevent the heating body 112 from falling from the liquid storage 111 .
- the atomizing assembly 11 further includes an elastic member 115, and the elastic member 115 is arranged along the axial direction of the heating body 112, and is used for sending the heating body 112 to the heating body when the heating body 112 is in the second position. 112 provides a force towards the first position.
- the heating element 112 further includes a limiting portion 112c, and the limiting portion 112c extends circumferentially from an end of the extension portion away from the heating portion, that is, the limiting portion 112c is disposed at an end of the extension portion away from the heating portion, and and the radial dimension of the limiting portion 112c is larger than the radial dimension of the extending portion; in a specific embodiment, one end of the elastic member 115 is in contact with the limiting portion 112c of the heating body 112, and the other One end is in contact with the cover body 113; and when the heating body 112 is in the first position, the elastic member 115 is in a natural elongation state, and when the heating body 112 is in the second position, the elastic member 115 is in a compressed state to pass through the limiting portion 112c provides the heating element 112 with a driving force to move toward the first position.
- the elastic member 115 can be a spring, which can be sleeved on the outer side wall of the heating body 112 .
- the heating element 112 when the aerosol needs to be pumped, the heating element 112 can be pressed down by an external force to make the heating element 112 move from the first position to the second position and contact the aerosol-forming substrate 111b (see FIG. 6 ), When the external force is removed, the heating element 112 moves to the first position (see FIG. 5 ) under the action of the elastic force of the elastic member 115 to restore its natural extension state. At this time, the heating element 112 is in contact with the aerosol-forming substrate 111b.
- a small amount of aerosol forming matrix 111b is bonded, and the heating element 112 heats and atomizes the small amount of aerosol forming matrix 111b, and can quickly generate a large amount of aerosol in 5-10 seconds, effectively improving the atomization efficiency; Users can control the number of compressions according to their own satisfaction needs, and cultivate their personal smoking habits.
- the atomization assembly 11 may further include a sealing member 116, and the sealing member 116 may be sleeved on the outer side wall of the liquid storage 111, and wrap the side surface of the cover body 113 away from the liquid storage 111, so as to fix the cover body 113 and seal the connection position between the cover body 113 and the liquid storage 111 .
- the atomization assembly 11 further includes a cooling body 117 , and the cooling body 117 is detachably connected to and communicated with the liquid storage 111 , and is used for the cooling of the aerosol generated by the atomization of the heating body 112 . Cool down.
- the cooling body 117 can be a water filter.
- the cooling body 117 may include a connecting portion 117a and a cooling portion 117b; wherein, the connecting portion 117a is detachably connected to the liquid storage 111, and communicates with the liquid storage atomizing cavity 111a; wherein, the connecting portion 117a may be threaded or The plug connection is detachably connected to the heating body 112, so that the liquid storage 111 and the cooling body 117 can be quickly separated, which is convenient for cleaning the inside of the container; specifically, the cooling part 117b is communicated with the connecting part 117a for accommodating the condensate 117c.
- the aerosol generated by the atomization of the heating element 112 enters the condensate 117c stored in the cooling part 117b through the connecting part 117a, so as to cool the aerosol by the condensate 117c, and filter out the aerosol carried in the aerosol. other impurities.
- the cooling portion 117b may be integrally formed with the connecting portion 117a; and the connecting portion 117a may be specifically disposed in the middle of the cooling portion 117b.
- the power supply assembly 12 may specifically include a casing 121 , a battery 122 , a circuit board 123 and a coil 124 .
- the battery 122 may specifically be a lithium battery.
- the housing 121 has an accommodating cavity 121a, and the battery 122 and the circuit board 123 can be specifically accommodated in the accommodating cavity 121a; wherein, the circuit board 123 is connected to the battery 122, and the battery 122 is used to provide the circuit board 123 with Electric energy; the coil 124 is formed in the circumferential direction of the heating body 112 and communicated with the circuit board 123 to generate a magnetic field when energized, so as to heat the heating body 112 through electromagnetic induction; Magnetic induction heating, so that the aerosol-forming substrate 111b can be rapidly and uniformly heated without contacting the coil 124.
- the non-contact heating through electromagnetic induction heating can be atomized at any time.
- the assembly 11 and the power source assembly 12 can be disassembled, and the disassembly is relatively convenient.
- a first concave portion 121b is formed on one side surface of the casing 121, and the coil 124 is specifically disposed on the inner sidewall of the first concave portion 121b along the circumferential direction of the first concave portion 121b; and the liquid storage At least part of the heating element 111 is located in the first recessed part 121b, so as to realize the detachable connection between the atomizing component 11 and the power supply component 12; When energized, the heating element 112 is in the magnetic field generated by the coil 124, and further generates electric current and generates heat through electromagnetic induction, so as to heat and atomize the aerosol-forming substrate 111b.
- a second recessed portion 121c is formed on one side surface of the housing 121.
- the second recessed portion 121c and the first recessed portion 121b are located on the same side of the housing 121 and communicate with each other.
- At least part of the cooling portion 117b is specifically accommodated in In the second recessed portion 121c, the cooling body 117 is fixed.
- the position where the liquid storage 111 is connected to the connecting portion 117a and the connecting portion 117a are located in the cavity where the first recessed portion 121b and the second recessed portion 121c communicate with each other. , to fix both.
- At least part of the liquid storage 111 and at least part of the cooling part 117b can be directly plugged into the first recessed part 121b and the second recessed part 121c, so that the atomization assembly 11 and the power supply assembly 12 can be quickly Separate for easy cleaning.
- the heating element 112 into the aerosol forming substrate 111b such as cannabis paste or oil
- the heat generated by the magnetic induction heating can be fully absorbed by the aerosol forming substrate 111b such as cannabis paste/oil, and the energy is converted into
- the efficiency is greater than or equal to 75%, which greatly increases the energy conversion rate compared to the traditional solution with a peripheral or bottom heating energy conversion efficiency of about 50%, thereby effectively improving the endurance of the aerosol forming device.
- the atomization assembly 11 is provided, and the atomization assembly 11 is configured to include a storage liquid 111 and a heating element 112, wherein the storage liquid 111 has a liquid storage atomization cavity 111a, so as to pass the storage liquid 111
- the liquid atomizing chamber 111a stores the aerosol-forming substrate 111b, and the heating element 112 heats and atomizes the aerosol-forming substrate 111b when energized; liquid 111, and when the heating element 112 is located at the first position, the heating element 112 is located outside the aerosol-forming matrix 111b, and when the heating element 112 is located at the second position, at least a part of the heating element 112 extends into the aerosol-forming matrix 111b In this way, the heating element 112 can not only extend into the aerosol-forming substrate 111b to heat the aerosol-forming substrate 111b, but also can heat a small amount of the aerosol-forming substrate 111b adhered to the heating element 112
- Heating not only increases the heating method of the heating element 112, but also realizes the diversification of the heating method of the heating element 112; and when the heating element 112 is in the first position, the heating element 112 only needs to adhere a small amount of the heating element 112 to the heating element 112.
- the aerosol-forming substrate 111b is heated and atomized.
- the power supply assembly 12 is provided to supply power to the atomizing assembly 11 through the power supply assembly 12, and the power supply assembly 12 and the atomizing assembly 11 are detachably connected, so that when cleaning the atomizing assembly 11 and the power supply assembly 12, the two can be quickly separation, thereby facilitating the cleaning of the atomizing assembly 11 and the power supply assembly 12; in addition, through electromagnetic induction heating, rapid and uniform heating can be performed without contacting the coil 124; It can be rotated to engage with the side wall of the chute 114a, so that the heating element 112 is always in the aerosol-forming substrate 111b, so that the user does not need to press the heating element 112 every time they puff, and the operation is relatively simple.
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Abstract
本申请提供一种气溶胶形成装置。该气溶胶形成装置包括雾化组件;雾化组件包括储液体和发热体;其中,储液体具有储液雾化腔,储液雾化腔用于存储气溶胶形成基质;发热体用于在通电时加热并雾化气溶胶形成基质;其中,发热体在第一位置和第二位置之间滑动连接于储液体,在发热体位于第一位置时,发热体位于气溶胶形成基质外,在发热体位于第二位置时,发热体的至少部分伸入气溶胶形成基质内。该气溶胶形成装置的加热方式多样化,且雾化速度较快。
Description
相关申请的交叉引用
本申请基于2021年01月18日提交的中国专利申请2021201320163主张其优先权,此处通过参照引入其全部的记载内容。
本发明涉及雾化设备技术领域,尤其涉及一种气溶胶形成装置。
气溶胶形成装置是一种将气溶胶形成基质雾化成气溶胶的装置,其被广泛应用于医疗设备和电子雾化装置。
目前,气溶胶形成装置一般包括雾化组件和电源组件;其中,雾化组件包括发热体,发热体用于在通电时加热并雾化气溶胶形成基质,电源组件与雾化组件电连接,用于向发热体供电。然而,现有的气溶胶形成装置,其发热体一般伸入气溶胶形成基质内以对气溶胶形成基质进行加热,加热方式较为单一,且雾化速度较慢。
【发明内容】
本申请提供一种气溶胶形成装置,该装置能够解决现有气溶胶形成装置,其雾化组件的加热方式较为单一,且雾化速度较慢的问题。
为解决上述技术问题,本申请采用的一个技术方案是:提供一种气溶胶形成装置。该气溶胶形成装置包括雾化组件;雾化组件包括储液体和发热体;其中,储液体具有储液雾化腔,储液雾化腔用于存储气溶胶形成基质;发热体用于在通电时加热并雾化气溶胶形成基质;其中,发热体在第一位置和第二位置之间滑动连接于储液体,在发热体位于第一位置时,发热体位于气溶胶形成基质外,在发热体位于第二位置时,发热体的至少部分伸入气溶胶形成基质内。
其中,雾化组件还包括盖体;盖体设置在储液雾化腔的端口以密封储液雾化腔,且盖体具有与储液雾化腔连通的贯通孔;发热体包括穿设在贯通孔中的延伸部,以及连接延伸部并位于储液雾化腔内的发热部,延伸部通过贯通孔与储液体滑动连接,以使发热部脱离或伸入气溶胶形成基质。
其中,盖体朝向储液体的一侧表面具有一凸起部,凸起部具有一与贯通孔连通的滑槽,发热体伸入储液雾化腔的部分具有一滑块,滑块沿滑槽移动,且在发热体位于第二位置时,滑块脱离滑槽的限制。
其中,发热体与盖体旋转连接,以使滑块与滑槽对准或偏离设置。
其中,雾化组件还包括弹性件,弹性件用于在发热体处于第二位置时向发热体提供一朝向第一位置的作用力。
其中,发热体还包括由延伸部远离发热部的一端周向延伸的限位部,弹性件套设在延伸部上,弹性件的一端与限位部抵接,另一端与盖体抵接。
其中,弹性件为弹簧,弹性件套设在发热体上,且弹性件的一端与发热体的端部限位部抵接,另一端与盖体抵接。
其中,雾化组件还包括密封件,套设在储液体的外侧壁上,用于固定盖体并密封盖体和储液体的连接位置。
其中,雾化组件还包括降温体,降温体与储液体可拆卸式连接,用于对发热体雾化产生的气溶胶进行降温。
其中,降温体包括连接部和降温部;其中,连接部与储液体可拆卸式连接,并与储液雾化腔连通;降温部与连接部连通,用于容置冷凝液。
其中,还包括电源组件,电源组件与雾化组件可拆卸连接,用于向雾化组件供电。
其中,电源组件包括壳体、电池、线路板和线圈;其中,壳体具有一容置腔;电池容置在容置腔内,用于提供电能;线路板容置在容置腔内,与电池连接;线圈形成于发热体的周向方向上,并与线路板连通,用于在通电时产生磁场,以通过电磁感应使发热体加热。
其中,壳体的一侧表面形成有一第一凹陷部,线圈沿第一凹陷部的 周向方向设置在第一凹陷部的内侧壁上,且储液体的至少部分及发热体的至少部分位于第一凹陷部内,以在线圈通电时,通过电磁感应使发热体加热。
其中,壳体的一侧表面还形成有第二凹陷部,雾化组件还包括降温体,降温体包括与储液雾化腔连通的降温部,降温部的至少部分容置在第二凹陷部内,以对降温体进行固定。
本申请提供的气溶胶形成装置,通过设置雾化组件,并将雾化组件设置成包括储液体和发热体,其中,储液体具有储液雾化腔,以通过储液雾化腔存储气溶胶形成基质,通过发热体在通电时加热并雾化气溶胶形成基质;同时,通过使发热体在第一位置和第二位置滑动连接于储液体,并在发热体位于第一位置时,使发热体位于气溶胶形成基质外,在发热体位于第二位置时,使发热体的至少部分伸入气溶胶形成基质内,从而使发热体即能够伸入气溶胶形成基质以对气溶胶形成基质进行加热,也可以在气溶胶形成基质外对粘结在发热体上的少量气溶胶形成基质进行加热,进而不仅增加了发热体的加热方式,实现了发热体的加热方式多样化;且在发热体处于气溶胶形成基质外时,仅需对发热体上粘结的少量气溶胶形成基质进行加热并雾化,相比于现有技术中对所有气溶胶形成基质进行加热的方案,有效提高了雾化速度,增加了单位时间内的雾化量。
图1为本申请一实施例提供的雾化组件与电源组件装配之后的结构示意图;
图2为本申请一实施例提供的雾化组件与电源组件拆解之后的结构示意图;
图3为本申请一实施例提供的雾化组件的整体结构示意图;
图4为本申请一实施例提供的图3所示结构的拆解示意图;
图5为本申请一实施例提供的发热体位于第一位置的结构示意图;
图6为本申请一实施例提供的发热体位于第二位置的结构示意图;
图7为本申请一实施例提供的发热体的滑块伸入滑槽的结构示意图;
图8为本申请一实施例提供的发热体的滑块与滑槽对准设置的结构示意图;
图9为本申请一实施例提供的发热体的滑块与滑槽偏离设置的结构示意图。
下面将结合本申请实施例中的附图,对本申请实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅是本申请的一部分实施例,而不是全部的实施例。基于本申请中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本申请保护的范围。
本申请中的术语“第一”、“第二”、“第三”仅用于描述目的,而不能理解为指示或暗示相对重要性或者隐含指明所指示的技术特征的数量。由此,限定有“第一”、“第二”、“第三”的特征可以明示或者隐含地包括至少一个该特征。本申请的描述中,“多个”的含义是至少两个,例如两个,三个等,除非另有明确具体的限定。本申请实施例中所有方向性指示(诸如上、下、左、右、前、后……)仅用于解释在某一特定姿态(如附图所示)下各部件之间的相对位置关系、运动情况等,如果该特定姿态发生改变时,则该方向性指示也相应地随之改变。此外,术语“包括”和“具有”以及它们任何变形,意图在于覆盖不排他的包含。例如包含了一系列步骤或单元的过程、方法、系统、产品或设备没有限定于已列出的步骤或单元,而是可选地还包括没有列出的步骤或单元,或可选地还包括对于这些过程、方法、产品或设备固有的其它步骤或单元。
在本文中提及“实施例”意味着,结合实施例描述的特定特征、结构或特性可以包含在本申请的至少一个实施例中。在说明书中的各个位置出现该短语并不一定均是指相同的实施例,也不是与其它实施例互斥的独立的或备选的实施例。本领域技术人员显式地和隐式地理解的是,本 文所描述的实施例可以与其它实施例相结合。
下面结合附图和实施例对本申请进行详细的说明。
请参阅图1和图2,其中,图1为本申请一实施例提供的雾化组件与电源组件装配之后的结构示意图;图2为本申请一实施例提供的雾化组件与电源组件拆解之后的结构示意图;在本实施例中,提供一种气溶胶形成装置。该气溶胶形成装置能够在通电时加热并雾化气溶胶形成基质,以形成气溶胶,供用户抽吸;具体的,该气溶胶形成装置可为烟具,该气溶胶形成基质可为大麻膏或油。
具体的,该气溶胶形成装置包括雾化组件11和电源组件12。其中,雾化组件11用于在通电时加热并雾化气溶胶形成基质111b(见下图5和图6),电源组件12与雾化组件11可拆卸式连接,用于在雾化组件11与电源组件12装配之后向雾化组件11供电;其中,电源组件12与雾化组件11装配之后的产品结构可参见图1,拆解之后的产品结构可参见图2;其中,由于电源组件12与雾化组件11可拆卸式连接,这样能够在清洗雾化组件11和电源组件12时,可将二者分离开来,进而方便雾化组件11和电源组件12的清洗。
参见图3和图4,图3为本申请一实施例提供的雾化组件的整体结构示意图;图4为本申请一实施例提供的图3所示结构的拆解示意图;雾化组件11包括储液体111和发热体112。其中,储液体111具体可为一管状结构,其一侧表面形成有一储液雾化腔111a,以通过该储液雾化腔111a存储气溶胶形成基质111b。发热体112可为一棒状体,用于在通电时加热并雾化气溶胶形成基质111b。
在一具体实施例中,参见图5和图6,图5为本申请一实施例提供的发热体位于第一位置的结构示意图;图6为本申请一实施例提供的发热体位于第二位置的结构示意图;发热体112沿其轴向方向在第一位置和第二位置之间滑动连接于储液体111;且在发热体112位于第一位置时,发热体112位于气溶胶形成基质111b外,此时,发热体112与储液体111的具体位置关系可参见图5,此时,发热体112的部分仍位于储液雾化腔111a内,但不与气溶胶形成基质111b接触;在发热体112 位于第二位置时,发热体112的至少部分伸入气溶胶形成基质111b内,此时,发热体112与储液体111之间的位置关系具体可参见图6;这样使发热体112即能够伸入气溶胶形成基质111b以对气溶胶形成基质111b进行加热,也可以在气溶胶形成基质111b外对粘结在发热体112上的少量气溶胶形成基质111b进行加热,进而不仅增加了发热体112的加热方式,实现了发热体112的加热方式多样化;且在具体实施例中,当发热体112从第二位置返回至第一位置后,发热体112伸入气溶胶形成基质111b的部分粘结有少量气溶胶形成基质111b,此时,发热体112仅需对该少量的气溶胶形成基质111b进行加热并雾化,相比于伸入气溶胶形成基质111b对气溶胶形成基质111b进行雾化的方案,大大减少了每次需加热并雾化的气溶胶形成基质111b的量,从而有效提高了雾化效率,缩短了雾化时间,使用户每次都能抽吸到一定量的气溶胶,保证了用户抽吸口感。
在一具体实施例中,参见图1至图4,雾化组件11还包括盖体113;盖体113具体可设置在储液雾化腔111a的端口,以密封储液雾化腔111a,防止雾化产生的气溶胶从储液雾化腔111a的端口露出;具体的,盖体113上开设有贯通孔,该贯通孔与储液雾化腔111a连通;在具体实施例中,发热体112具体包括延伸部和与延伸部轴向连接的发热部;其中,延伸部具体穿设在该贯通孔中并通过该贯通孔与储液体111滑动连接,以使发热部脱离或伸入气溶胶形成基质111b;发热部位于储液雾化腔111a内,用于在通电时加热并雾化气溶胶形成基质111b。
在具体实施例中,贯通孔可开设在盖体113的中央位置,穿设在该贯通孔中的发热体112其位于储液雾化腔111a内的部分与储液雾化腔111a的内侧壁间隔设置,相比于发热体112与储液雾化腔111a的内侧壁贴壁设置的方案,能够减少发热体112的热量传导至储液体111,减少热量损失,并保证气溶胶形成装置的外壁处于人体适宜温度;同时能够实现中心加热,提高加热的均匀性。
在一实施例中,盖体113朝向储液体111的一侧表面还具有一凸起部114,凸起部114具体穿设在储液雾化腔111a内,并可与储液雾化腔 111a的内侧壁过盈配合,以提高储液雾化腔111a的密封性;具体的,凸起部114具有一与贯通孔连通的滑槽114a,发热体112伸入储液雾化腔111a的部分具有一滑块112a,滑块112a可沿滑槽114a移动以使发热体112处于第一位置或第二位置。其中,盖体113和/或凸起部114的材料可为耐高温的金属、塑胶或陶瓷等。
具体的,参见图7至图9,其中,图7为本申请一实施例提供的发热体的滑块伸入滑槽的结构示意图;图8为本申请一实施例提供的发热体的滑块与滑槽对准设置的结构示意图;图9为本申请一实施例提供的发热体的滑块与滑槽偏离设置的结构示意图;当发热体112处于第一位置时,滑块112a的至少部分位于滑槽114a内(参见图7),且滑块112a朝向盖体113的一侧表面与凸起部114远离盖体113的一侧表面的垂直距离小于或等于发热体112处于第一位置与第二位置的垂直距离,以在下压发热体112之后,使发热体112处于第二位置时,滑块112a能够脱落滑槽114a的限制,进而能够对发热体112进行旋转,以使滑块112a与滑槽114a对准设置或偏离设置;其中,滑块112a与滑槽114a对准设置的结构具体可参见图8;滑块112a与滑槽114a偏离设置的结构具体可参见图9。其中,通过在发热体112处于第二位置时,使发热体112可旋转并通过滑块112a卡接在滑槽114a的侧壁上,能够将发热体112固定在第二位置所在的水平高度上,进而使发热体112的至少部分始终位于气溶胶形成基质111b内,即发热体112的至少部分始终与气溶胶形成基质111b接触,这样能够避免用户在抽吸过程中,每次抽吸均需按压发热体112的问题发生,操作较为简单。具体的,滑块112a卡接在滑槽114a的侧壁上的加热方案具体类似于传统大麻烟具一样进行加热。
具体的,旋转角度可为10度-120度。
其中,滑槽114a可沿凸起部114的轴向方向从凸起部114与贯通孔相对的一侧表面延伸至与贯通孔相背的一侧表面,且滑槽114a可沿凸起部114的径向方向贯穿凸起部114的侧壁;即,该滑槽114a沿其轴向方向和径向方向均可为一通槽;滑块112a可为两个,两个滑块112a可相对设置在发热体112的两侧;具体的,滑块112a可为沿发热体112的轴 向方向设置的矩形块,该矩形块沿发热体112的轴向方向的尺寸大于或等于滑槽114a沿发热体112的轴向方向的尺寸;矩形块沿发热体112的径向方向的尺寸与滑槽114a与滑块112a的相应位置处的径向尺寸匹配,且滑槽114a的与发热体112相应位置处的径向尺寸与发热体112的径向尺寸匹配。
在具体实施例中,发热体112的外侧壁上还设置有环形凸起112b,该环形凸起112b具体可设置在滑块112a的远离盖体113的一端,并可与滑块112a一体成型,用于对发热体112朝向第一位置的方向的运动进行限位,以防发热体112从储液体111上掉落。
在具体实施例中,参见图1至图8,雾化组件11还包括弹性件115,弹性件115沿发热体112的轴向方向设置,用于在发热体112处于第二位置时向发热体112提供一朝向第一位置的作用力。
在一具体实施例中,发热体112还包括限位部112c,限位部112c由延伸部远离发热部的一端周向延伸,即,限位部112c设置在延伸部远离发热部的一端,且沿延伸部的周向方向延伸;且限位部112c的径向尺寸大于延伸部的径向尺寸;在具体实施例中,弹性件115的一端与发热体112的限位部112c抵接,另一端与盖体113抵接;且在发热体112处于第一位置时,弹性件115处于自然伸长状态,在发热体112处于第二位置时,弹性件115处于压缩状态,以通过限位部112c向发热体112提供一朝向第一位置移动的驱动力。
具体的,弹性件115可为弹簧,其具体可套设在发热体112的外侧壁上。
在具体实施例中,当需要抽吸气溶胶时,可通过外力下压发热体112以使发热体112从第一位置移动至第二位置并与气溶胶形成基质111b接触(参见图6),而当撤去外力后,发热体112在弹性件115恢复其自然伸长状态的弹性力作用下移动至第一位置(参见图5),此时,发热体112与气溶胶形成基质111b接触的位置粘结有少量气溶胶形成基质111b,发热体112对该少量气溶胶形成基质111b进行加热并雾化,并可在5-10秒迅速产生大量气溶胶,有效提高了雾化效率;同时可使用户根 据自己满足感需求控制按压次数,培养个人抽吸习惯。
在具体实施例中,雾化组件11还可包括密封件116,密封件116可套设在储液体111的外侧壁上,并包裹盖体113远离储液体111的一侧表面,用于固定盖体113并密封盖体113和储液体111的连接位置。
在具体实施例中,参见图1和图2,雾化组件11还包括降温体117,降温体117与储液体111可拆卸式连接并连通,用于对发热体112雾化产生的气溶胶进行降温。具体的,降温体117可为水过滤器。
具体的,降温体117可包括连接部117a和降温部117b;其中,连接部117a与储液体111可拆卸式连接,并与储液雾化腔111a连通;其中,连接部117a具体可通过螺纹或插接的方式与发热体112可拆卸式连接,这样可以使储液体111和降温体117快速分离,便于清洗容器内部;具体的,降温部117b与连接部117a连通,用于容置冷凝液117c;在具体实施例中,发热体112雾化产生的气溶胶通过连接部117a进入降温部117b存储的冷凝液117c中,以通过冷凝液117c对气溶胶进行降温,并滤除气溶胶中携带的其他杂质。
具体的,降温部117b可与连接部117a一体成型;且连接部117a具体可设置在降温部117b的中间位置。
其中,电源组件12具体可包括壳体121、电池122、线路板123和线圈124。其中,电池122具体可为锂电池。
具体的,壳体121具有一容置腔121a,电池122和线路板123具体可容置在该容置腔121a内;其中,线路板123与电池122连接,电池122用于向线路板123提供电能;线圈124形成于发热体112的周向方向上,并与线路板123连通,用于在通电时产生磁场,以通过电磁感应使发热体112加热;其中,由于该发热体112是通过电磁感应加热,从而能够在不接触线圈124的情况下对气溶胶形成基质111b进行快速、均匀地加热,相比于直接通过电连接的方案,通过电磁感应加热的非接触式加热能够随时对雾化组件11与电源组件12进行拆卸,且拆卸较为方便。
在一具体实施例中,壳体121的一侧表面形成有一第一凹陷部121b, 线圈124具体沿第一凹陷部121b的周向方向设置在第一凹陷部121b的内侧壁上;且储液体111的至少部分位于第一凹陷部121b内,以实现雾化组件11与电源组件12的可拆卸式连接;具体的,发热体112的至少部分也处于第一凹陷部121b内,以在线圈124通电时,发热体112处于线圈124产生的磁场中,进而通过电磁感应产生电流并发热,以对气溶胶形成基质111b进行加热并雾化。
具体的,壳体121的一侧表面还形成有第二凹陷部121c,第二凹陷部121c与第一凹陷部121b位于壳体121的同侧且连通,降温部117b的至少部分具体容置在该第二凹陷部121c内,以对降温体117进行固定;具体的,储液体111与连接部117a连接的位置以及连接部117a位于第一凹陷部121b与第二凹陷部121c连通的凹腔中,以对二者进行固定。
在具体实施例中,储液体111的至少部分和降温部117b的至少部分可直接插接在第一凹陷部121b和第二凹陷部121c内,这样能够实现雾化组件11和电源组件12的快速分离,便于清洁。
本实施例提供的气溶胶形成装置,通过使发热体112插入大麻膏或油等气溶胶形成基质111b中,磁感应加热产生的热量能够被大麻膏/油等气溶胶形成基质111b充分吸收,能量转换效率大于或等于75%,相比于传统周圈或底部加热的能量转换效率约为50%的方案,大大增加了能量转换率,从而有效提高了气溶胶形成装置的续航能力。
本实施例提供的气溶胶形成装置,通过设置雾化组件11,并将雾化组件11设置成包括储液体111和发热体112,其中,储液体111具有储液雾化腔111a,以通过储液雾化腔111a存储气溶胶形成基质111b,通过发热体112在通电时加热并雾化气溶胶形成基质111b;同时,通过使发热体112在第一位置和第二位置之间滑动连接于储液体111,并在发热体112位于第一位置时,使发热体112位于气溶胶形成基质111b外,在发热体112位于第二位置时,使发热体112的至少部分伸入气溶胶形成基质111b内,这样使发热体112即能够伸入气溶胶形成基质111b以对气溶胶形成基质111b进行加热,也可以在气溶胶形成基质111b外对粘结在发热体112上的少量气溶胶形成基质111b进行加热,进而不仅 增加了发热体112的加热方式,实现了发热体112的加热方式多样化;且在发热体112处于第一位置时,发热体112仅需对发热体112上粘结的少量气溶胶形成基质111b进行加热并雾化,相比于现有技术中对所有气溶胶形成基质111b进行加热的方案,有效提高了雾化速度,增加了单位时间内的雾化量;另外,通过设置电源组件12,以通过电源组件12向雾化组件11供电,并使电源组件12与雾化组件11可拆卸式连接,以在清洗雾化组件11和电源组件12时,可将二者快速分离,进而方便雾化组件11和电源组件12的清洗;另外,通过电磁感应加热,能够在不接触线圈124的情况下进行快速、均匀地加热;此外,通过使发热体112在位于第二位置时可旋转至与滑槽114a的侧壁卡接,能够使发热体112始终处于气溶胶形成基质111b内,从而无需用户每次抽吸均需按压发热体112,操作较为简单。
以上仅为本申请的实施方式,并非因此限制本申请的专利范围,凡是利用本申请说明书及附图内容所作的等效结构或等效流程变换,或直接或间接运用在其他相关的技术领域,均同理包括在本申请的专利保护范围内。
Claims (13)
- 一种气溶胶形成装置,其中,包括:雾化组件,包括:储液体,具有储液雾化腔,所述储液雾化腔用于存储气溶胶形成基质;发热体,用于在通电时加热并雾化气溶胶形成基质;其中,所述发热体在第一位置和第二位置之间滑动连接于所述储液体,在所述发热体位于所述第一位置时,所述发热体位于所述气溶胶形成基质外,在所述发热体位于所述第二位置时,所述发热体的至少部分伸入所述气溶胶形成基质内。
- 根据权利要求1所述的气溶胶形成装置,其中,所述雾化组件还包括:盖体,设置在所述储液雾化腔的端口以密封所述储液雾化腔,且所述盖体具有与所述储液雾化腔连通的贯通孔;所述发热体包括穿设在所述贯通孔中的延伸部,以及连接所述延伸部并位于所述储液雾化腔内的发热部,所述延伸部通过所述贯通孔与所述储液体滑动连接,以使所述发热部脱离或伸入所述气溶胶形成基质。
- 根据权利要求2所述的气溶胶形成装置,其中,所述盖体朝向所述储液体的一侧表面具有一凸起部,所述凸起部具有一与所述贯通孔连通的滑槽,所述发热体伸入所述储液雾化腔的部分具有一滑块,所述滑块沿所述滑槽移动,且在所述发热体位于所述第二位置时,所述滑块脱离所述滑槽的限制。
- 根据权利要求3所述的气溶胶形成装置,其中,所述发热体与所述盖体旋转连接,以使所述滑块与所述滑槽对准或偏离设置。
- 根据权利要求2所述的气溶胶形成装置,其中,所述雾化组件还包括弹性件,所述弹性件用于在所述发热体处于所述第二位置时向所述发热体提供一朝向所述第一位置的作用力。
- 根据权利要求5所述的气溶胶形成装置,其中,所述发热体还 包括由所述延伸部远离所述发热部的一端周向延伸的限位部,所述弹性件套设在所述延伸部上,所述弹性件的一端与所述限位部抵接,另一端与所述盖体抵接。
- 根据权利要求1所述的气溶胶形成装置,其中,所述雾化组件还包括密封件,套设在所述储液体的外侧壁上,用于固定所述盖体并密封所述盖体和所述储液体的连接位置。
- 根据权利要求1所述的气溶胶形成装置,其中,所述雾化组件还包括降温体,所述降温体与所述储液体可拆卸式连接,用于对所述发热体雾化产生的气溶胶进行降温。
- 根据权利要求8所述的气溶胶形成装置,其中,所述降温体包括:连接部,与所述储液体可拆卸式连接,并与所述储液雾化腔连通;降温部,与所述连接部连通,用于容置冷凝液。
- 根据权利要求1所述的气溶胶形成装置,其中,还包括电源组件,所述电源组件与所述雾化组件可拆卸连接,用于向所述雾化组件供电。
- 根据权利要求10所述的气溶胶形成装置,其中,所述电源组件包括:壳体,具有一容置腔;电池,容置在所述容置腔内,用于提供电能;线路板,容置在所述容置腔内,与所述电池连接;线圈,形成于所述发热体的周向方向上,并与所述线路板连通,用于在通电时产生磁场,以通过电磁感应使所述发热体加热。
- 根据权利要求11所述的气溶胶形成装置,其中,所述壳体的一侧表面形成有一第一凹陷部,所述线圈沿所述第一凹陷部的周向方向设置在所述第一凹陷部的内侧壁上,且所述储液体的至少部分及所述发热体的至少部分位于所述第一凹陷部内,以在所述线圈通电时,通过电磁感应使所述发热体加热。
- 根据权利要求12所述的气溶胶形成装置,其中,所述壳体的 一侧表面还形成有第二凹陷部,所述雾化组件还包括降温体,所述降温体包括与所述储液雾化腔连通的降温部,所述降温部的至少部分容置在所述第二凹陷部内,以对所述降温体进行固定。
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| CN105212277A (zh) * | 2015-10-28 | 2016-01-06 | 云南中烟工业有限责任公司 | 烟油软胶囊型电子烟 |
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| CN210747238U (zh) * | 2019-07-19 | 2020-06-16 | 深圳市施美乐科技股份有限公司 | 用于电子烟的降温组件 |
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| CN105212277A (zh) * | 2015-10-28 | 2016-01-06 | 云南中烟工业有限责任公司 | 烟油软胶囊型电子烟 |
| CN205321219U (zh) * | 2016-01-21 | 2016-06-22 | 河南易星科技有限公司 | 一种电子烟用可降温的雾化装置 |
| CN210747238U (zh) * | 2019-07-19 | 2020-06-16 | 深圳市施美乐科技股份有限公司 | 用于电子烟的降温组件 |
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