WO2024234875A1 - 一种发热组件及主机 - Google Patents

一种发热组件及主机 Download PDF

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Publication number
WO2024234875A1
WO2024234875A1 PCT/CN2024/086876 CN2024086876W WO2024234875A1 WO 2024234875 A1 WO2024234875 A1 WO 2024234875A1 CN 2024086876 W CN2024086876 W CN 2024086876W WO 2024234875 A1 WO2024234875 A1 WO 2024234875A1
Authority
WO
WIPO (PCT)
Prior art keywords
heating component
atomizing
trigger member
action
atomization 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
Application number
PCT/CN2024/086876
Other languages
English (en)
French (fr)
Inventor
郑维
明志南
熊伟
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Shenzhen Smoore Technology Ltd
Smoore International Holdings Ltd
Original Assignee
Shenzhen Smoore Technology Ltd
Smoore International Holdings Ltd
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 Shenzhen Smoore Technology Ltd, Smoore International Holdings Ltd filed Critical Shenzhen Smoore Technology Ltd
Publication of WO2024234875A1 publication Critical patent/WO2024234875A1/zh
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

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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
    • A24F40/46Shape or structure of electric heating means

Definitions

  • the present application relates to the field of atomization technology, and in particular to a heating component and a host.
  • the heat-not-burn device is mainly composed of an atomizing device and an aerosol-generating medium. Different aerosols are generated according to different media and are inhaled by people.
  • the heating element and the aerosol-generating medium cannot fit well, resulting in low atomization efficiency.
  • the embodiments of the present application hope to provide a heating component and a host that can improve the atomization efficiency.
  • the present application provides a heating component, including:
  • a mounting seat wherein the mounting seat is provided with a mounting space and a first opening communicating with the mounting space;
  • An atomizing device including a heating element, wherein the atomizing device is movably disposed in the installation space, and one end of the heating element extends out of the installation space from the first opening;
  • the first restoring member is capable of moving along a first direction under the action of an external force, and the first restoring member is elastically deformed, and the atomizing device is capable of moving along a second direction opposite to the first direction under the action of the elastic force of the first restoring member.
  • the heating component includes a trigger, which is at least partially The trigger member is movably arranged in the installation space, and can drive the atomization device to move along a first direction by moving under the action of an external force.
  • the mounting seat is provided with a second opening connected to the mounting space
  • the trigger member includes a control part and a touch part
  • the control part is movably arranged in the second opening, and the control part moves under the action of external force so that the touch part drives the atomization device to move along the first direction.
  • the atomization device includes a shell, the heating element is arranged in the shell, the side wall of the shell is provided with an abutment portion, and one of the abutment portion and the touch portion is provided with a first guide slope, and the other abuts with the first guide slope to move the atomization device along a first direction.
  • the other of the abutting portion and the touch portion is provided with a second guiding inclined surface opposite to the first guiding inclined surface, and the second guiding inclined surface abuts against the first guiding inclined surface.
  • a partial area of the inner wall of the installation space protrudes to form a peripheral edge, and the peripheral edge is arranged to form a limiting groove, and an end of the control part away from the second opening is slidably disposed in the limiting groove.
  • the number of the trigger member and the first reset member are both one, the atomization device, the trigger member and the first reset member are arranged in a straight line, and the trigger member and the first reset member are respectively arranged on opposite sides of the atomization device.
  • the trigger member can move along a third direction perpendicular to the first direction under the action of an external force to drive the atomization device to move along the first direction within the installation space; or, the trigger member can move along the first direction under the action of an external force to drive the atomization device to move along the first direction within the installation space.
  • the heating component includes a second reset member
  • the trigger member can be The second reset member is elastically deformed by movement under the action of external force, and the trigger member can be reset under the elastic force of the second reset member.
  • An embodiment of the present application further provides a host, comprising a housing and the heating component described above, wherein the housing is provided with a receiving cavity, the heating component is arranged in the housing, and one end of the heating element extends into the receiving cavity from the first opening.
  • the mounting seat is provided with a second opening connected to the mounting space
  • the heating component includes a trigger member, one end of which can be movably extended into the accommodating cavity through the second opening, and the trigger member can move under the action of external force to drive the atomization device to move along the first direction.
  • the present application also provides an aerosol generating device, including:
  • an atomizing medium assembly detachably disposed in the accommodating chamber, the atomizing medium assembly comprising a strip-shaped medium and an accommodating device having an atomizing chamber, the strip-shaped medium being disposed in the accommodating device and movably passing through the atomizing chamber;
  • the atomizing medium assembly is assembled to the accommodating cavity, and the atomizing device moves along a first direction under the action of an external force so that the heating element fits the strip medium.
  • the heating component, main unit and aerosol generating device provided in the embodiment of the present application are used to heat the atomized strip medium by movably setting the atomizing device in the installation space, and one end of the heating element extends out of the installation space from the first opening.
  • the atomizing device can move along the first direction under the action of an external force, and by moving along the first direction to make the heating element fit with the strip medium, the distance between the heating element and the strip medium can be adjusted.
  • the heating element can move toward the strip medium to achieve a close fit with the strip medium, thereby improving the atomization efficiency and quickly generating an aerosol.
  • FIG1 is a schematic structural diagram of an aerosol generating device according to an embodiment of the present application.
  • FIG2 is an exploded view of FIG1 ;
  • FIG3 is a schematic diagram of the assembly of a main body and a heating component according to an embodiment of the present application
  • FIG4 is a cross-sectional view of a main body and a heating component according to an embodiment of the present application.
  • FIG5 is a schematic structural diagram of a heating component according to an embodiment of the present application.
  • FIG6 is a cross-sectional view of FIG5 , wherein the atomizing device is in a state before moving along the first direction;
  • FIG7 is a cross-sectional view of FIG5 , wherein the atomizing device is in a state after moving along the first direction;
  • FIG. 8 is a cross-sectional view of an atomizing medium assembly according to an embodiment of the present application.
  • orientations or positional relationships indicated by the terms “upper”, “lower”, “left”, “right”, “top”, “bottom”, “thickness direction”, “lateral direction”, etc. are based on the orientations or positional relationships shown in Figures 4 and 5, wherein the term “height direction” refers to the up and down direction, which is only for the convenience of describing the embodiments of the present application and simplifying the description, and does not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on the embodiments of the present application.
  • the terms “first”, “second”, and “third” are used for descriptive purposes only and cannot be understood as indicating or implying relative importance.
  • An embodiment of the present application provides an aerosol generating device, please refer to Figures 1 to 8, which includes an aerosol medium component 200 and a host 100 of any embodiment of the present application.
  • An embodiment of the present application provides a host, please refer to Figures 1 to 7, which includes a housing 2 and a heating component 1 of any embodiment of the present application.
  • the host 100 includes a power supply assembly, which is disposed in the housing 2 .
  • the atomizing device 12 of the heating component 1 is electrically connected to the power supply assembly, and the atomizing device 12 is used to atomize the strip medium 220 .
  • the housing 2 is provided with a receiving chamber 2a
  • the heating component 1 is provided in the housing 2
  • the atomizing device 12 includes a heating element 121, one end of the heating element 121 extends from the first opening 11b into the receiving chamber 2a.
  • the heating element 121 is used to heat the strip medium 220 of the atomizing medium component 200 and generate aerosol.
  • the housing 2 includes a main body 21 and an outer cover 22 disposed on the main body 21.
  • the main body 21 and the outer cover 22 are detachably connected.
  • the main body 21 and the outer cover 22 can be connected by magnetic attraction, snap connection, threaded connection, plug connection, or ultrasonic connection.
  • the atomized medium assembly 200 includes a strip medium 220 and a receiving device 210 having an atomizing chamber 212 a .
  • the strip medium 220 is disposed in the receiving device 210 and can movably pass through the atomizing chamber 212 a .
  • the atomizing chamber 212a has through slots on opposite sides thereof, for allowing the strip medium 220 to movably pass through the atomizing chamber 212a.
  • the strip medium 220 can be inserted into the atomizing chamber 212a through the through slots on opposite sides thereof, that is, the strip medium 220 before atomization enters the atomizing chamber 212a from the through slot on one side of the atomizing chamber 212a, and is atomized in the atomizing chamber 212a to generate an aerosol, and the strip medium 220 after atomization moves out of the atomizing chamber 212a from the through slot on the other side of the atomizing chamber 212a.
  • the strip medium 220 is a flexible strip structure with a certain width and thickness, but the length can be extended and bent according to actual conditions.
  • the strip-shaped medium 220 has an aerosol generating substrate thereon, and the aerosol generating substrate is used to generate aerosol.
  • the strip-shaped medium 220 can be formed by attaching the aerosol generating substrate to a base tape.
  • the base tape has certain structural strength and flexibility, and as a carrier of the aerosol generating matrix, can be unrolled and reeled.
  • the base tape can be any tape that can withstand the atomization temperature and has a certain toughness, such as a paper tape, a polymer tape, a metal tape, a graphite tape, etc.
  • the base tape can also be a metal mesh, which can be formed by weaving metal wires or by providing a plurality of through holes on a metal sheet.
  • the aerosol generating substrate may be arranged on the baseband in any manner.
  • the aerosol generating substrate may be arranged on the baseband.
  • the aerosol-generating substrate is applied to the surface of the base tape, or penetrates into the interior of the base tape.
  • the aerosol-generating substrate is applied to the base tape in an intermittent manner.
  • the atomized medium assembly 200 is detachably disposed in the housing 2, that is, a new strip of medium 220 is assembled into the receiving device 210, and then the receiving device 210 is disposed in the housing 2 for use by the user.
  • the atomized medium assembly 200 can be removed from the housing 2 of the host 100, and then replaced with a new strip of medium 220, thereby reducing the user's use cost.
  • the atomizing medium assembly 200 is assembled to the accommodating chamber 2a, and the atomizing device 12 moves along the first direction under the action of an external force, and one end of the heating element 121 extends from the first opening 11b into the atomizing chamber 212a, and the atomizing device 12 moves along the first direction so that the heating element 121 fits with the strip medium 220.
  • the power supply assembly supplies power to the heating element 121, and the heating element 121 converts the electrical energy into thermal energy, and the strip medium 220 fits with the heating element 121 so that the strip medium 220 can be converted into an aerosol that can be used by the user under the action of thermal energy.
  • the shape of the heating element 121 is not limited, and can be columnar, sheet-shaped, or other shapes.
  • the heating element 121 is formed in a sheet shape, which can have a sufficiently large contact area with the strip medium 220 located in the atomization chamber 212a, thereby improving the atomization efficiency of the containing device 210.
  • the heating element 121 can be made of metal, ceramic or other materials, and atomization is achieved by heating the aerosol generating matrix through heat convection, heat conduction or other heating forms.
  • the embodiment of the present application provides a heating component, please refer to FIGS. 2 to 7 , which includes a mounting seat 11 , an atomizing device 12 and a first restoring member 14 .
  • the mounting base 11 is provided with a mounting space 11a and a first opening 11b connected to the mounting space 11a.
  • the atomizing device 12 includes a heating element 121.
  • the atomizing device 12 is movably disposed in the mounting space 11a.
  • One end of the heating element 121 extends out of the mounting space 11a from the first opening 11b and into the accommodating cavity 2a.
  • the atomizing device 12 moves along the first direction to make the heating element 121 fit with the strip medium 220.
  • the atomizing device 12 is movably arranged in the installation space 11a, which means that the atomizing device 12 is movable along the first
  • the mounting seat 11 can limit the atomizing device 12 in other directions, that is, after the atomizing device 12 is assembled in the mounting space 11a, it has only the degree of freedom in the first direction, thus improving the stability of the movement of the atomizing device 12.
  • the atomizing device 12 can move along the first direction under the action of an external force, and the first resetting member 14 can be elastically deformed, and the atomizing device 12 can move along the second direction opposite to the first direction under the elastic force of the first resetting member 14. That is, when the external force disappears, the atomizing device 12 moves along the second direction opposite to the first direction under the elastic force of the first resetting member 14, or, when the external force applied to the atomizing device 12 is less than the elastic force of the first resetting member 14, the atomizing device 12 will also move along the second direction, that is, the first resetting member 14 can be used to reset the atomizing device 12.
  • first direction and the second direction are not limited here, and may be, for example, along the top-bottom direction, the lateral direction, or the thickness direction of the aerosol generating device 300, wherein the top-bottom direction, the lateral direction, and the thickness direction are perpendicular to each other.
  • first direction is the direction from the bottom of the aerosol generating device 300 toward the top
  • second direction is the direction from the top of the aerosol generating device 300 toward the bottom.
  • the heating component provided in the embodiment of the present application is configured such that the atomizing device 12 is movably disposed in the installation space 11a, and one end of the heating element 121 extends out of the installation space 11a from the first opening 11b.
  • the atomizing medium component 200 is assembled to the accommodating cavity 2a of the main unit 100, one end of the heating element 121 extends into the atomizing cavity 212a of the atomizing medium component 200 from the first opening 11b.
  • the atomizing device 12 moves along the first direction under the action of an external force, and moves along the first direction to make the heating element 121 fit with the strip medium 220.
  • the atomizing device 12 can move along the first direction under the action of an external force, so that the distance between the heating element 121 and the strip medium 220 can be adjusted.
  • the atomizing medium assembly 200 is installed, interference between the heating element 121 and the strip medium 220 can be avoided, and damage to the strip medium 220 can be avoided.
  • the heating element 121 can move toward the strip medium 220 to achieve a close fit with the strip medium 220, thereby improving the atomization efficiency and quickly generating aerosol.
  • the first reset member 14 can be elastically deformed to reset the atomizing device 12, for example, it can be a compression spring, a tension spring, elastic rubber, etc. In the embodiment of the present application, the first reset member 14 is described as a compression spring (please refer to Figures 6 and 7).
  • the atomizing device 12 can move along the first direction under the action of an external force.
  • the external force described here may refer to the external force generated on the heating component 1 during the process of assembling the atomizing medium component 200 into the accommodating chamber 2a.
  • it can also be an external force applied to the atomizing device 12 by a driving member or manually.
  • the external force described in the embodiment of the present application is described by taking the external force generated on the heating component 1 during the process of assembling the atomizing medium component 200 into the accommodating chamber 2a as an example.
  • the heating component 1 includes a trigger 13, and the trigger 13 is at least partially movably disposed in the installation space 11a, and the trigger 13 can drive the atomization device 12 to move along the first direction by moving under the action of an external force.
  • the heating component 1 is provided with a trigger 13, and the trigger 13 cooperates with the atomization device 12 to control the movement of the atomization device 12. Therefore, the trigger 13 is equivalent to a transmission member, and the atomization device 12 is controlled by controlling the trigger 13, thereby improving the reliability and convenience of the motion structure.
  • the specific location of the trigger member 13 in this embodiment is not limited herein.
  • the trigger member 13 may be disposed on the mounting seat 11 or on the housing 2 .
  • the heating component 1 may not be provided with the trigger member 13, but the atomizing device 12 may be directly driven to move along the first direction by the atomizing medium component 200.
  • the atomizing medium component 200 will exert a force on the atomizing device 12 and drive the atomizing device 12 to move along the first direction.
  • the contact surface between the atomizing device 12 and the atomizing medium component 200 is a guide inclined surface with a certain slope.
  • the atomizing device 12 is subjected to a force perpendicular to the contact surface, which will cause the atomizing device 12 to be subjected to a component force toward the top of the aerosol generating device 300, so that it moves toward the top.
  • the mounting seat 11 is provided with a second opening 11 c communicating with the mounting space 11 a , and one end of the trigger member 13 is movably extended into the accommodating cavity 2 a through the second opening 11 c .
  • the trigger member 13 can move under the action of an external force to drive the atomizing device 12 to move along the first direction.
  • the atomizing medium assembly 200 when the atomizing medium assembly 200 is assembled into the accommodating chamber 2a, the atomizing medium assembly 200 will squeeze the trigger member 13 extending into the accommodating chamber 2a and exert a force on the trigger member 13.
  • the trigger member 13 can move under the action of the force to drive the atomizing device 12 to move along the first direction.
  • the movement mode and direction of the trigger member 13 are not limited here.
  • the trigger member 13 can move along a third direction perpendicular to the first direction under the action of an external force to drive the atomization device 12 to move along the first direction in the installation space 11a.
  • the third direction mentioned here can be, for example, a lateral direction or a thickness direction of the aerosol generating device 300.
  • the third direction is along the thickness direction of the aerosol generating device 300.
  • the atomizing medium assembly 200 when the atomizing medium assembly 200 is assembled into the accommodating cavity 2a, the atomizing medium assembly 200 will squeeze the trigger member 13 extending into the accommodating cavity 2a, and the trigger member 13 will generate force on the atomizing device 12 during the movement along the thickness direction.
  • the atomizing device 12 is forced to move toward the top of the aerosol generating device 300, so that the heating element 121 fits with the strip medium 220.
  • the trigger member 13 can move in the first direction under the action of an external force to drive the atomizing device 12 to move in the first direction in the installation space 11a.
  • the atomizing medium assembly 200 when the atomizing medium assembly 200 is assembled into the accommodating chamber 2a, the atomizing medium assembly 200 will squeeze the trigger member 13 extending into the accommodating chamber 2a, and the trigger member 13 moves toward the top of the aerosol generating device 300 and exerts a force on the atomizing device 12.
  • the atomizing device 12 is forced to move toward the top of the aerosol generating device 300, so that the heating element 121 fits the strip medium 220.
  • the specific structure of the trigger 13 is not limited here.
  • the mounting seat 11 is provided with a second opening 11c connected to the mounting space 11a.
  • the trigger 13 includes a control unit 131 and a touch unit 132.
  • the control unit 131 is movably arranged in the second opening 11c.
  • the control unit 131 moves under the action of an external force so that the touch unit 132 drives the atomizing device 12 to move along the first direction.
  • the trigger 13 is provided with the control unit 131 and the touch unit 132.
  • the control unit 131 is movably arranged in the second opening 11c, so as to extend into the accommodating cavity 2a through the second opening 11c and contact the strip mist.
  • the touch control portion 132 cooperates with the atomizing device 12 to drive the atomizing device 12 to move along the first direction.
  • the trigger member 13 is disposed on a side of the atomizing device 12 close to the bottom
  • the touch control unit 132 is disposed on a side of the control unit 131 close to the atomizing device 12 , which facilitates the touch control unit 132 to abut against the atomizing device 12 and drive the atomizing device 12 to move.
  • the atomizing device 12 includes a housing 122, the heating element 121 is disposed in the housing 122, the side wall of the housing 122 is provided with an abutting portion 122a, one of the abutting portion 122a and the touch portion 132 is provided with a first guide slope 122b, and the other abuts against the first guide slope 122b to move the atomizing device 12 along the first direction.
  • one of the abutting portion 122a and the touch portion 132 is provided with the first guide slope 122b, so that the abutting portion 122a and the touch portion 132 abut against each other through the first guide slope 122b.
  • the contact surface between the atomizing device 12 and the touch control part 132 is a first guide inclined surface 122b with a certain slope.
  • the first guide inclined surface 122b abuts against each other, thereby reducing the friction and collision between the abutting part 122a and the touch control part 132, preventing the abutting part 122a from being damaged when it contacts the touch control part 132, and guiding the movement of the atomizing device 12.
  • one of the abutting portion 122a and the touch portion 132 is provided with a second guide slope 132a opposite to the first guide slope 122b, and the second guide slope 132a abuts against the first guide slope 122b, so that the atomizing device 12 moves along the first direction.
  • the abutting portion 122a is provided with the first guide slope 122b
  • the touch portion 132 is provided with the second guide slope 132a
  • the abutting portion 122a and the touch portion 132 cooperate through the first guide slope 122b and the second guide slope 132a to achieve linkage, and the cooperation structure is simple and reliable.
  • one of the contact portion 122a and the touch portion 132 is provided with a first guiding inclined surface 122b, and the other one contacts the first guiding inclined surface 122b through an arc surface, so that the atomizing device 12 moves along the first direction.
  • the heating component 1 shown in Figure 6 is in a state where the atomizing medium component 200 does not exert a force on the atomizing device 12.
  • the atomizing device 12 abuts against the trigger member 13 under the elastic force of the first reset member 14, that is, the abutting portion 122a of the shell 122 and the touch portion 132 of the trigger member 13 pass through the first guide slope 122b and the second guide slope 132a, and make one end of the control portion 131 of the trigger member 13 extend out of the installation space 11a through the second opening 11c.
  • the heating component 1 shown in Figure 7 is in a state where the atomizing medium component 200 is assembled into the accommodating chamber 2a.
  • the atomizing medium component 200 will squeeze the control part 131 extending into the accommodating chamber 2a and exert a force on the trigger member 13.
  • the control part 131 can move under the action of this force so that the second guide bevel 132a applies a force perpendicular to the first guide bevel 122b to the first guide bevel 122b, thereby causing the atomizing device 12 to be subjected to a component force toward the top of the aerosol generating device 300, causing it to move toward the top and compress the first reset member 14.
  • a portion of the inner wall of the installation space 11a protrudes to form a peripheral edge 11d, and the peripheral edge 11d is surrounded to form a limiting groove 11e, and one end of the control part 131 away from the second opening 11c is slidably disposed in the limiting groove 11e.
  • the second opening 11c is disposed on one side of the limiting groove 11e along the thickness direction, so that the two ends of the control part 131 are respectively disposed in the limiting groove 11e and the second opening 11c, that is, the limiting groove 11e and the second opening 11c can limit the two ends of the control part 131, so that the control part 131 can only move along the thickness direction.
  • the limiting groove 11 e and the second opening 11 c can limit both ends of the control portion 131 so that the control portion 131 can only move along the first direction.
  • the number of the trigger member 13 and the first reset member 14 are both one, and the atomization device 12, the trigger member 13 and the first reset member 14 are arranged in a straight line, that is, the centers of the atomization device 12, the trigger member 13 and the first reset member 14 are located on a straight line or approximately on a straight line, and the trigger member 13 and the first reset member 14 are respectively arranged on opposite sides of the atomization device 12, for example, the trigger member 13 is located on a side of the atomization device 12 close to the bottom, and the first reset member 14 is located on a side of the atomization device 12 close to the top.
  • the atomizing medium assembly 200 when the atomizing medium assembly 200 is assembled into the accommodating chamber 2a, the atomizing medium assembly 200 will squeeze the trigger member 13 extending into the accommodating chamber 2a, and the trigger member 13 abuts against the atomizing device 12 and exerts a force on the atomizing device 12.
  • the atomizing device 12 is forced to move toward the top of the aerosol generating device 300, and compresses the first resetting member 14 to cause the first resetting member 14 to produce elastic deformation.
  • the heating element 121 fits with the strip medium 220.
  • the atomizing device 12 can move toward the bottom of the aerosol generating device 300 and reset under the elastic force of the first resetting member 14.
  • the centers of the atomizing device 12, the triggering member 13 and the first reset member 14 are located on a straight line or approximately on a straight line, which occupies a small space, moves smoothly and reliably, and can avoid the problem of left and right unevenness caused by inconsistent left and right moving distances of the atomizing device 12 to a certain extent. In addition, it can save parts and improve assembly efficiency.
  • the connection method between the first reset member 14 and the atomization device 12 is not limited here.
  • the first reset member 14 is a spring, and both ends of the spring are respectively abutted between the top of the atomization device 12 and the inner wall of the installation space 11a.
  • the spring will be compressed to cause elastic deformation of the spring.
  • the atomization device 12 can move toward the bottom and reset under the action of the elastic force of the spring.
  • a mounting groove 12a is provided on the top of the atomizing device 12, one end of the spring is provided in the mounting groove 12a, and the other end abuts against the inner wall of the mounting space 11a.
  • the setting of the mounting groove 12a can limit the spring and improve the stability of the spring assembly.
  • the number of trigger members 13 is multiple, for example, the number of trigger members 13 is two, and the side wall of the housing 122 is correspondingly provided with two abutment portions 122a.
  • the number of the first reset member 14 can be multiple or one.
  • the two abutment portions 122a can be symmetrically arranged on the housing 122, so that the uniformity of the force of the atomizing device 12 can be improved.
  • the two abutment portions 122a can also be asymmetrically arranged on the housing 122.
  • the number of the first restoring members 14 is multiple, for example, the first restoring members 14
  • the number of the trigger members 13 is 2.
  • the number of the trigger members 13 can be multiple or one.
  • the two first reset members 14 can be symmetrically abutted against the atomizing device 12, so that the uniformity of the force applied to the atomizing device 12 can be improved.
  • the two first reset members 14 can also be asymmetrically abutted against the atomizing device 12.
  • the heating component 1 includes a second reset member (not shown), and the trigger member 13 can move under the action of an external force to cause the second reset member to produce elastic deformation, and the trigger member 13 can be reset under the elastic force of the second reset member.
  • the trigger member 13 when the external force disappears, the trigger member 13 is reset under the action of the elastic force of the second reset member, or, when the external force applied to the trigger member 13 is smaller than the elastic force of the second reset member, the trigger member 13 will also move in the direction of the restoring force of the second reset member, that is, the second reset member can be used to reset the trigger member 13.
  • the specific type of the second reset member is not limited here, as long as it can be elastically deformed to reset the trigger member 13, for example, it can be a compression spring, a tension spring, elastic rubber, etc.
  • the second reset member is described as a compression spring.
  • the accommodating device 210 includes a housing 211 , an atomizing seat 212 having an atomizing chamber 212 a formed therein, and a feeding assembly.
  • the atomizer seat 212 is disposed in the shell 211. It can be that part of the structure of the atomizer seat 212 is disposed in the shell 211, or that the entire structure of the atomizer seat 212 is disposed in the shell 211.
  • the shell 211 provides an installation space 11a for the atomizer seat 212 and supports and protects the atomizer seat 212.
  • the storage device 210 includes a storage space for storing the strip medium 220 before atomization and a storage space for storing the strip medium 220 after atomization.
  • the storage space and the receiving space are separated, that is, by arranging the strip medium 220 before atomization and the strip medium 220 after atomization in two independent spaces, the strip medium 220 before atomization and the strip medium 220 after atomization are isolated from each other, which can improve the situation of odor cross-talk between the strip medium 220 before atomization and the strip medium 220 after atomization to a certain extent. In addition, It can also prevent the debris generated by the atomized strip medium 220 from sticking to the strip medium 220 before atomization, thereby preventing the generation of a burnt smell to a certain extent.
  • the feeding assembly is used to drive the strip medium 220 in the storage space to pass through the atomization chamber 212a along the length direction and enter the storage space.
  • the atomizer seat 212 includes an air outlet channel 212b, which is roughly formed on the top side of the atomizer chamber 212a.
  • the aerosol generated in the atomizer chamber 212a can be directly discharged through the air outlet channel 212b, that is, the air outlet channel 212b is closer to the user, and the aerosol can be transported from the air outlet channel 212b to the outside in a short time and used by the user.
  • the user can use the aerosol by arranging a nozzle and other components outside the atomizer seat 212.
  • the side wall of the air outlet channel 212 b is substantially columnar, has a simple structure, and is easy to manufacture, which can reduce the structural requirements for the atomizer seat 212 , thereby reducing the difficulty of manufacturing the atomizer seat 212 .
  • the containing device 210 includes a filter 213 , and the filter 213 is connected to the air outlet channel 212 b and communicates with the air outlet channel 212 b .
  • the aerosol generating matrix on the surface or inside of the strip medium 220 located in the atomization chamber 212a is heated and atomized to generate aerosol, and the aerosol flows to the filter 213 through the air outlet channel 212b, and then diffuses outward after being filtered by the filter 213 for use by the user.
  • the filter 213 can absorb the large particle droplets and condensate generated by the atomization of the aerosol generating matrix on the surface or inside of the strip medium 220, thereby preventing the user from inhaling large particle droplets or condensate, thereby improving the user's experience of use.
  • the filter 213 may be made of a soft material, for example, the filter 213 may be made of acetate fiber, which has a good filtering effect and a small adsorption resistance.
  • the shell 211 is in a flat box shape
  • the atomizer seat 212 is located at the top of the shell 211
  • the feeding assembly is located at the bottom side of the atomizer seat 212
  • the strip medium 220 moves in the atomizer chamber 212a along the lateral direction, wherein the lateral direction, thickness direction, and top and bottom directions are perpendicular to each other.
  • the structural design of the housing 211 can provide a larger installation space 11a for the atomizer seat 212 and the feeding assembly.
  • the positions of the feeding assembly, the atomizer seat 212 and the strip medium 220 can be arranged so that the housing 211 can be installed in a larger space.
  • the container device 210 is arranged in a flat shape, which can maintain a small thickness and reasonably arrange various components, so that the internal structure layout of the container device 210 can be more reasonable.
  • the top-bottom direction does not specifically refer to the direction in which the outer contour of the container 210 is the longest.
  • the arrangement direction of the feeding assembly and the atomizing chamber 212a is consistent with the top-bottom direction; the extension direction of the air outlet channel 212b is parallel to the top-bottom direction.
  • the length of the container 210 along the top-bottom direction can be longer, shorter, or the same as the length in other directions.
  • the top and bottom directions are still the directions defined above, that is, the arrangement direction of the feeding assembly and the atomization chamber 212a, or the extension direction of the air outlet channel 212b.
  • the top and bottom directions of the containing device 210 can be any direction of the length, width, and height of the rectangular parallelepiped.

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Abstract

本申请实施例提供的发热组件,包括安装座、雾化装置以及第一复位件,安装座设置有安装空间以及与安装空间连通的第一开口;雾化装置包括发热体,雾化装置可移动地设置在安装空间内,发热体的一端从第一开口伸出安装空间;雾化装置能够在外力作用下沿第一方向移动,并使第一复位件产生弹性形变,且雾化装置能够在第一复位件的弹力作用下沿与第一方向相反的第二方向移动。本申请实施例的雾化装置能够在外力作用下沿第一方向移动,以使发热体与带状介质贴合,在雾化介质组件安装的时候,可以避免发热体与带状介质的干涉,避免损坏带状介质,且发热体可以通过朝向带状介质移动,以实现与带状介质紧密贴合,进而提高雾化效率,并快速生成气溶胶。

Description

一种发热组件及主机
本申请基于申请号为202310540158.7、申请日为2023年05月12日的中国专利申请提出,并要求该中国专利申请的优先权,上述专利申请的全部内容在此引入本申请作为参考。
技术领域
本申请涉及雾化技术领域,尤其涉及一种发热组件及主机。
背景技术
相关技术中,加热不燃烧器具主要由雾化装置和气溶胶生成介质组合而成,根据介质不同,产生不同气溶胶,并供人抽吸。而相关技术中,发热体和气溶胶生成介质不能很好的贴合,从而导致雾化效率低的问题。
发明内容
有鉴于此,本申请实施例期望提供一种可以提高雾化效率的发热组件及主机。
本申请实施例提供一种发热组件,包括:
安装座,所述安装座设置有安装空间以及与所述安装空间连通的第一开口;
包括发热体的雾化装置,所述雾化装置可移动地设置在所述安装空间内,所述发热体的一端从所述第一开口伸出所述安装空间;
第一复位件,所述雾化装置能够在外力作用下沿第一方向移动,并使所述第一复位件产生弹性形变,且所述雾化装置能够在所述第一复位件的弹力作用下沿与第一方向相反的第二方向移动。
一些实施方案中,所述发热组件包括触发件,所述触发件至少部分可 移动地设置于所述安装空间,所述触发件能够在外力作用下通过运动,带动所述雾化装置沿第一方向移动。
一些实施方案中,所述安装座设置有与所述安装空间连通的第二开口,所述触发件包括控制部和触控部,所述控制部可移动地穿设于所述第二开口,所述控制部在外力作用下通过运动,以使所述触控部带动所述雾化装置沿第一方向移动。
一些实施方案中,所述雾化装置包括外壳,所述发热体设置在所述外壳内,所述外壳的侧壁设置有抵接部,所述抵接部与所述触控部的其中之一设置有第一导向斜面,其中另一通过与所述第一导向斜面抵接,以使所述雾化装置沿第一方向移动。
一些实施方案中,所述抵接部与所述触控部的其中另一设置有与所述第一导向斜面相对的第二导向斜面,所述第二导向斜面与所述第一导向斜面抵接。
一些实施方案中,所述安装空间的内壁的部分区域凸出形成围边,所述围边围设形成限位槽,所述控制部远离所述第二开口的一端可滑动地设置于所述限位槽中。
一些实施方案中,所述触发件和所述第一复位件的数量均为一个,所述雾化装置、所述触发件以及所述第一复位件呈直线排布,且所述触发件与所述第一复位件分别设置在所述雾化装置的相对两侧。
一些实施方案中,所述触发件的数量为多个。
一些实施方案中,所述第一复位件的数量为多个。
一些实施方案中,所述触发件能够在外力作用下沿与第一方向垂直的第三方向运动,以带动所述雾化装置在所述安装空间内沿第一方向移动;或者,所述触发件能够在外力作用下沿第一方向运动,以带动所述雾化装置在所述安装空间内沿第一方向移动。
一些实施方案中,所述发热组件包括第二复位件,所述触发件能够在 外力作用下通过运动,以使所述第二复位件产生弹性形变,且所述触发件能够在所述第二复位件的弹力作用下复位。
本申请实施例还提供一种主机,包括机壳以及上述所述的发热组件,所述机壳设置有容纳腔,所述发热组件设置于所述机壳内,且所述发热体的一端从所述第一开口伸入所述容纳腔。
一些实施方案中,所述安装座设置有与所述安装空间连通的第二开口,所述发热组件包括触发件,所述触发件的一端可移动地经所述第二开口伸入所述容纳腔,所述触发件能够在外力作用下通过运动,带动所述雾化装置沿第一方向移动。
本申请实施例还提供一种气溶胶生成装置,包括:
上述所述的主机;
可拆卸地设置于所述容纳腔内的雾化介质组件,所述雾化介质组件包括带状介质和具有雾化腔的容纳装置,所述带状介质设置于所述容纳装置中,且可移动地穿过所述雾化腔;
所述雾化介质组件装配至所述容纳腔,所述雾化装置在外力作用下沿第一方向移动,以使所述发热体与所述带状介质贴合。
本申请实施例提供的发热组件、主机及气溶胶生成装置,通过将雾化装置可移动地设置在安装空间内,发热体的一端从第一开口伸出安装空间,用于加热雾化带状介质。雾化装置能够在外力作用下沿第一方向移动,并通过沿第一方向移动以使发热体与带状介质贴合,从而可以实现发热体与带状介质之间的距离的调整,在雾化介质组件安装的时候,可以避免发热体与带状介质的干涉,避免损坏带状介质,且发热体可以通过朝向带状介质移动,以实现与带状介质紧密贴合,进而提高雾化效率,并快速生成气溶胶。
附图说明
图1为本申请一实施例的气溶胶生成装置的结构示意图;
图2为图1的爆炸图;
图3为本申请一实施例的主体与发热组件的装配示意图;
图4为本申请一实施例的主体与发热组件的剖视图;
图5为本申请一实施例的发热组件的结构示意图;
图6为图5的剖视图,其中,雾化装置为沿第一方向移动前的状态;
图7为图5的剖视图,其中,雾化装置为沿第一方向移动后的状态;
图8为本申请一实施例的雾化介质组件的剖视图。
具体实施方式
下面结合附图和实施例对本申请的实施方式作进一步详细描述。以下实施例用于说明本申请,但不能用来限制本申请的范围。
在本申请实施例的描述中,需要说明的是,术语“上”、“下”、“左”、“右”、“顶”、“底”、“厚度方向”、“横向方向”等指示的方位或位置关系为基于附图4和附图5所示的方位或位置关系,其中,术语“高度方向”指的是上下方向,仅是为了便于描述本申请实施例和简化描述,而不是指示或暗示所指的装置或元件必须具有特定的方位、以特定的方位构造和操作,因此不能理解为对本申请实施例的限制。此外,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。
本申请实施例提供一种气溶胶生成装置,请参阅图1至图8,包括雾化介质组件200以及本申请任意实施例的主机100。
本申请实施例提供一种主机,请参阅图1至图7,包括机壳2以及本申请任意实施例的发热组件1。
主机100包括电源组件,电源组件设置于机壳2内,发热组件1的雾化装置12与电源组件电连接,雾化装置12用于雾化带状介质220。
请参阅图2至图7,机壳2设置有容纳腔2a,发热组件1设置于机壳2内,雾化装置12包括发热体121,发热体121的一端从第一开口11b伸入容纳腔2a。发热体121用于加热雾化介质组件200的带状介质220并生成气溶胶。
示例性地,请参阅图2,机壳2包括主体21以及盖设在主体21上的外盖22。为了便于维修或者更换雾化介质组件200,需要便于对雾化介质组件200进行拆装,主体21与外盖22为可拆卸连接。示例性地,主体21与外盖22例如可以是磁吸连接、卡接、螺纹连接、插接或超声等方式连接。
请参阅图8,雾化介质组件200包括带状介质220和具有雾化腔212a的容纳装置210,带状介质220设置于容纳装置210中,且可移动地穿过雾化腔212a。
具体地,雾化腔212a的相对两侧具有通槽,用于供带状介质220可移动地穿过雾化腔212a。带状介质220可以通过雾化腔212a的相对两侧的通槽穿设于雾化腔212a,即雾化前的带状介质220从雾化腔212a的一侧的通槽进入雾化腔212a,并在雾化腔212a内被雾化生成气溶胶,雾化后的带状介质220从雾化腔212a的另一侧的通槽移出雾化腔212a。
具体地,带状介质220为具有一定的宽度和厚度,但长度可根据实际情况延长和弯折的柔性长条状结构。
带状介质220上具有气溶胶生成基质,气溶胶生成基质用于产生气溶胶。例如,带状介质220可以采用在基带上附着气溶胶生成基质而形成。
基带具有一定的结构强度和柔韧性,作为气溶胶生成基质的载体,能够被解卷和收卷。
基带可以是任何能耐受雾化温度具有一定韧性的条带,例如纸质条带、聚合物条带、金属条带、石墨条带等。基带也可以为金属网,该金属网可通过金属丝编织形成,也可以在金属片上设置多个通孔形成。
气溶胶生成基质在基带上的设置方式不限,例如,可以设置在基带的 表面,或者渗入基带的内部。示例性地,气溶胶生成基质以间隔式交替铺涂在基带上。
雾化介质组件200可拆卸地设置在机壳2内,即将新的带状介质220装配至容纳装置210内,再将容纳装置210设置在机壳2,以供用户使用。当容纳装置210内的带状介质220使用完后,可以先将雾化介质组件200从主机100的机壳2中拆出,再更换新的带状介质220,降低用户的使用成本。
雾化介质组件200装配至容纳腔2a,雾化装置12在外力作用下沿第一方向移动,发热体121的一端从第一开口11b伸入雾化腔212a,雾化装置12通过沿第一方向移动以使发热体121与带状介质220贴合。电源组件为发热体121供电,发热体121将电能转化为热能,带状介质220通过与发热体121贴合,以使带状介质220能够在热能的作用下转换为可供用户使用的气溶胶。
发热体121的形状不限,可以是柱状,也可以是片状,或者是其他形状。一些示例中,发热体121形成为片状,可以与位于雾化腔212a内的带状介质220具有足够大的接触面积,提高容纳装置210的雾化效率。
可以理解的是,发热体121可以是金属、陶瓷或者其他材质,通过热对流、热传导或其他加热形式对气溶胶生成基质进行加热实现雾化。
本申请实施例提供了一种发热组件,请参阅图2至图7,包括安装座11、雾化装置12以及第一复位件14。
请参阅图3至图7,安装座11设置有安装空间11a以及与安装空间11a连通的第一开口11b,雾化装置12包括发热体121,雾化装置12可移动地设置在安装空间11a内,发热体121的一端从第一开口11b伸出安装空间11a,并伸入容纳腔2a,雾化装置12通过沿第一方向移动以使发热体121与带状介质220贴合。
雾化装置12可移动地设置在安装空间11a内指的是雾化装置12沿第 一方向移动,安装座11在其他方向上可以对雾化装置12形成限位,即雾化装置12装配至安装空间11a中后,只有第一方向上的自由度,如此,可以提高雾化装置12移动的稳定性。
雾化装置12能够在外力作用下沿第一方向移动,并使第一复位件14产生弹性形变,且雾化装置12能够在第一复位件14的弹力作用下沿与第一方向相反的第二方向移动。也就是说,在外力消失的状态下,雾化装置12在第一复位件14的弹力作用下沿与第一方向相反的第二方向移动,或者,在雾化装置12受到的外力小于第一复位件14的弹力的状态下,雾化装置12也会沿第二方向移动,即第一复位件14可以用于对雾化装置12进行复位。
需要说明的是,第一方向、第二方向的具体方向在此不做限制,例如可以是沿气溶胶生成装置300的顶底方向、横向方向或者厚度方向,其中,顶底方向、横向方向、厚度方向相互垂直。本申请实施例中以第一方向为气溶胶生成装置300的底部朝向顶部的方向,第二方向为气溶胶生成装置300的顶部朝向底部的方向为例进行描述。
本申请实施例提供的发热组件,通过将雾化装置12可移动地设置在安装空间11a内,发热体121的一端从第一开口11b伸出安装空间11a,当雾化介质组件200装配至主机100的容纳腔2a,发热体121的一端从第一开口11b伸入雾化介质组件200的雾化腔212a,雾化装置12在外力作用下沿第一方向移动,并通过沿第一方向移动以使发热体121与带状介质220贴合。即雾化装置12能够在外力作用下沿第一方向移动,从而可以实现发热体121与带状介质220之间的距离的调整,在雾化介质组件200安装的时候,可以避免发热体121与带状介质220的干涉,避免损坏带状介质220,且发热体121可以通过朝向带状介质220移动,以实现与带状介质220紧密贴合,进而提高雾化效率,并快速生成气溶胶。
需要说明的是,第一复位件14的具体类型在此不做限制,只要能够发 生弹性形变,以使雾化装置12复位即可,例如可以为压簧、拉簧、弹性橡胶等。本申请实施例中以第一复位件14为压簧(请参阅图6和图7,)为例进行描述。
雾化装置12能够在外力作用下沿第一方向移动,需要说明的是,此处所述的外力可以是指在雾化介质组件200装配至容纳腔2a内的过程中对发热组件1产生的外力。当然,也可以是通过驱动件或者手动对雾化装置12施加的外力。本申请实施例所述的外力以雾化介质组件200装配至容纳腔2a内的过程中对发热组件1产生的外力为例进行描述。
示例性地,一些实施方式中,请参阅图4至图7,发热组件1包括触发件13,触发件13至少部分可移动地设置于安装空间11a,触发件13能够在外力作用下通过运动,带动雾化装置12沿第一方向移动。也就是说,发热组件1通过设置触发件13,并通过触发件13与雾化装置12配合,以控制雾化装置12的移动,由此,触发件13相当于一个传动件,通过控制触发件13,以实现对雾化装置12的控制,提高了运动结构的可靠性和便利性。
需要说明的是,该实施例中的触发件13的具体设置位置在此不做限制,例如,触发件13可以设置在安装座11上,也可以设置在机壳2上。
当然,另一些实施方式中,发热组件1也可以不设置触发件13,而是通过雾化介质组件200直接带动雾化装置12沿第一方向移动,具体地,雾化介质组件200装配至容纳腔2a内的过程中,雾化介质组件200会对雾化装置12产生力的作用,并带动雾化装置12沿第一方向移动。例如,雾化装置12与雾化介质组件200的接触面为一定斜度的导向斜面,雾化介质组件200装配至容纳腔2a内的过程中,雾化装置12受到垂直接触面的作用力,会使雾化装置12受到一个朝向气溶胶生成装置300的顶端的分力,使其朝向顶端移动。
示例性地,请参阅图4至图7,安装座11设置有与安装空间11a连通的第二开口11c,触发件13的一端可移动地经第二开口11c伸入容纳腔2a, 触发件13能够在外力作用下通过运动,带动雾化装置12沿第一方向移动。例如在雾化介质组件200装配至容纳腔2a内的过程中,雾化介质组件200会挤压伸入容纳腔2a中的触发件13,并对触发件13产生力的作用,触发件13能够在该力的作用下通过运动,带动雾化装置12沿第一方向移动。
需要说明的是,触发件13的运动方式以及方向在此不做限制,示例性地,一些实施例中,请参阅图4至图7,触发件13能够在外力作用下沿与第一方向垂直的第三方向运动,以带动雾化装置12在安装空间11a内沿第一方向移动。此处所述的第三方向例如可以是沿气溶胶生成装置300的横向方向或者厚度方向。
一具体实施例中,第三方向为沿气溶胶生成装置300的厚度方向。该实施例中,雾化介质组件200在装配至容纳腔2a内的过程中,雾化介质组件200会挤压伸入容纳腔2a中的触发件13,触发件13沿厚度方向运动的过程中,并对雾化装置12产生力的作用,雾化装置12受力朝向气溶胶生成装置300的顶部移动,以使发热体121与带状介质220贴合。
另一些实施例中,触发件13能够在外力作用下沿第一方向运动,以带动雾化装置12在安装空间11a内沿第一方向移动。该实施例中,雾化介质组件200在装配至容纳腔2a内的过程中,雾化介质组件200会挤压伸入容纳腔2a中的触发件13,触发件13朝向气溶胶生成装置300的顶部移动,并对雾化装置12产生力的作用,雾化装置12受力朝向气溶胶生成装置300的顶部移动,以使发热体121与带状介质220贴合。
触发件13的具体结构在此不做限制,示例性地,请参阅图4至图7,安装座11设置有与安装空间11a连通的第二开口11c,触发件13包括控制部131和触控部132,控制部131可移动地穿设于第二开口11c,控制部131在外力作用下通过运动,以使触控部132带动雾化装置12沿第一方向移动。也就是说,触发件13通过设置控制部131和触控部132,控制部131可移动地穿设于第二开口11c,用于经第二开口11c伸入容纳腔2a并与带状雾 化介质配合,以使触控部132按照需求移动,触控部132用于与雾化装置12配合,用于带动雾化装置12沿第一方向移动。
具体地,请参阅图4至图7,触发件13设置在雾化装置12靠近底部的一侧,触控部132设置在控制部131靠近雾化装置12的一侧,有利于触控部132与雾化装置12抵接并带动雾化装置12移动。
示例性地,请继续参阅图4至图7,雾化装置12包括外壳122,发热体121设置在外壳122内,外壳122的侧壁设置有抵接部122a,抵接部122a与触控部132的其中之一设置有第一导向斜面122b,其中另一通过与第一导向斜面122b抵接,以使雾化装置12沿第一方向移动。也就是说,抵接部122a与触控部132的其中之一通过设置第一导向斜面122b,以使抵接部122a与触控部132之间通过第一导向斜面122b抵接。
雾化装置12和触控部132的接触面为一定斜度的第一导向斜面122b,按压触发件13朝向顶部移动时,雾化装置12受到垂直接触面的作用力,会使雾化装置12受到一个朝向气溶胶生成装置300的顶端的分力,使其朝向顶端移动。此外,通过第一导向斜面122b抵接,减少抵接部122a与触控部132之间的摩擦力以及碰撞,防止在抵接部122a与触控部132接触的时候被损坏,对雾化装置12的移动起到导向作用。
示例性地,请继续参阅图4至图7,抵接部122a与触控部132的其中另一设置有与第一导向斜面122b相对的第二导向斜面132a,第二导向斜面132a与第一导向斜面122b抵接,以使雾化装置12沿第一方向移动。例如,抵接部122a通过设置第一导向斜面122b,触控部132通过设置第二导向斜面132a,抵接部122a与触控部132通过第一导向斜面122b与第二导向斜面132a配合以实现联动,该配合结构简单可靠。
当然,在其他实施例中,抵接部122a与触控部132的其中之一设置有第一导向斜面122b,其中另一通过弧面与第一导向斜面122b抵接,以使雾化装置12沿第一方向移动。
示例性地,如图6所示的发热组件1为雾化介质组件200没有对雾化装置12产生力的作用的状态,此时,雾化装置12在第一复位件14的弹力作用下与触发件13抵接,即外壳122的抵接部122a与触发件13的触控部132通过第一导向斜面122b与第二导向斜面132a,并使得触发件13的控制部131的一端经第二开口11c伸出安装空间11a。
示例性地,如图7所示的发热组件1为在雾化介质组件200装配至容纳腔2a内的状态,此时,雾化介质组件200会挤压伸入容纳腔2a中的控制部131,并对触发件13产生力的作用,控制部131能够在该力的作用下通过运动,以使第二导向斜面132a对第一导向斜面122b施加一个垂直于第一导向斜面122b的力,从而会使雾化装置12受到一个朝向气溶胶生成装置300的顶端的分力,使其朝向顶端移动,并压缩第一复位件14。
示例性地,请参阅图4至图7,安装空间11a的内壁的部分区域凸出形成围边11d,围边11d围设形成限位槽11e,控制部131远离第二开口11c的一端可滑动地设置于限位槽11e中。第二开口11c设置于限位槽11e沿厚度方向的一侧,以使控制部131的两端分别设置于限位槽11e和第二开口11c中,即限位槽11e和第二开口11c可以对控制部131的两端进行限位,以使控制部131只能沿厚度方向移动。
在控制部131需要沿第一方向移动的实施例中,限位槽11e和第二开口11c可以对控制部131的两端进行限位,以使控制部131只能沿第一方向移动。
示例性地,请参阅图4至图7,触发件13和第一复位件14的数量均为一个,雾化装置12、触发件13以及第一复位件14呈直线排布,即雾化装置12、触发件13以及第一复位件14的中心位于一条直线上或者大致位于一条直线上,且触发件13与第一复位件14分别设置在雾化装置12的相对两侧,例如,触发件13位于雾化装置12靠近底部的一侧,第一复位件14位于雾化装置12靠近顶部的一侧。
该实施例中,雾化介质组件200在装配至容纳腔2a内的过程中,雾化介质组件200会挤压伸入容纳腔2a中的触发件13,触发件13与雾化装置12抵接并对雾化装置12产生力的作用,雾化装置12受力朝向气溶胶生成装置300的顶部移动,并压缩第一复位件14以使第一复位件14产生弹性形变,当雾化介质组件200装配到位,发热体121与带状介质220贴合。将雾化介质组件200从容纳腔2a中拆出后,雾化装置12能够在第一复位件14的弹力作用下朝向气溶胶生成装置300的底部移动并复位。
该实施例中,雾化装置12、触发件13以及第一复位件14的中心位于一条直线上或者大致位于一条直线上,占用空间小,运动平稳可靠,在一定程度上可以避免雾化装置12左右移动距离不一致导致的左右不平的问题。此外,还可以节省零部件,提高装配效率。
第一复位件14与雾化装置12的连接方式在此不做限制,示例性地,一些实施例中,第一复位件14为弹簧,弹簧的两端分别抵接在雾化装置12的顶端与安装空间11a的内壁之间,雾化装置12在朝向顶端移动的过程中,会压缩弹簧以使弹簧发生弹性形变,在外力消失的状态下,雾化装置12能够在弹簧的弹力作用下朝向底端移动并复位。
进一步地,请参阅图6和图7,雾化装置12的顶部设置有安装槽12a,弹簧的一端设置于安装槽12a,另一端与安装空间11a的内壁抵接,安装槽12a的设置能够对弹簧起到限位左右,提高了弹簧装配的稳定性。
另一些实施例中,触发件13的数量为多个,例如,触发件13的数量为2个,外壳122的侧壁对应设置有2个抵接部122a。该实施例中,第一复位件14的数量可以为多个,也可以为一个。需要说明的是,2个抵接部122a可以是对称设置在外壳122上,如此,可以提高雾化装置12受力的均匀性。当然,2个抵接部122a也可以是非对称地设置在外壳122上。
本申请实施例中所述的多个是指数量为2个或2个以上。
又一些实施例中,第一复位件14的数量为多个,例如,第一复位件14 的数量为2个。该实施例中,触发件13的数量可以为多个,也可以为一个。需要说明的是,2个第一复位件14可以是对称地与雾化装置12抵接,如此,可以提高雾化装置12受力的均匀性。当然,2个第一复位件14也可以是非对称地与雾化装置12抵接。
示例性地,发热组件1包括第二复位件(图未示),触发件13能够在外力作用下通过运动,以使第二复位件产生弹性形变,且触发件13能够在第二复位件的弹力作用下复位。
也就是说,在外力消失的状态下,触发件13在第二复位件的弹力作用下复位,或者,在触发件13受到的外力小于第二复位件的弹力的状态下,触发件13也会沿第二复位件的恢复力的方向移动,即第二复位件可以用于对触发件13进行复位。
需要说明的是,第二复位件的具体类型在此不做限制,只要能够发生弹性形变,以使触发件13复位即可,例如可以为压簧、拉簧、弹性橡胶等。本申请实施例中以第二复位件为压簧为例进行描述。
请参阅图8,容纳装置210包括壳体211、形成有雾化腔212a的雾化座212、送料组件。
可以理解的是,雾化座212的至少一部分设置于壳体211内,可以是,雾化座212的部分结构设置在壳体211内,也可以是,雾化座212的全部结构设置在壳体211内,壳体211为雾化座212提供安装空间11a,并对雾化座212起到支撑和保护作用。
容纳装置210包括用于存储雾化前的带状介质220的存储空间以及用于收纳雾化后的带状介质220的收纳空间。
存储空间与收纳空间分隔设置,也就是说,通过将雾化前的带状介质220与雾化后的带状介质220分别设置在两个独立的空间,以实现对雾化前的带状介质220与雾化后的带状介质220的隔离,在一定程度上可以改善雾化前的带状介质220与雾化后的带状介质220发生窜味的情况,此外, 还可以避免雾化后的带状介质220产生的碎屑粘到雾化前的带状介质220上,从而在一定程度上还可以避免产生焦味的情况。
送料组件用于驱动存储空间内的带状介质220沿长度方向穿过雾化腔212a,并进入收纳空间。
示例性地,一些实施例中,请参阅图8,雾化座212包括出气通道212b,出气通道212b大致形成于雾化腔212a的顶侧,雾化腔212a内产生的气溶胶可直接经出气通道212b排出,也就是说,出气通道212b更靠近使用者,气溶胶可以在较短时间内从出气通道212b输送至外界,并被用户使用。用户可以通过在雾化座212外套设吸嘴等组件使用气溶胶。
另一方面,出气通道212b的侧壁大致呈柱状,结构简单,便于制造,可以降低对雾化座212的结构要求,从而降低雾化座212的制造难度。
示例性地,请参阅图8,容纳装置210包括滤嘴213,滤嘴213与出气通道212b的连接,并与出气通道212b连通。
具体地,位于雾化腔212a内的带状介质220表面或者内部的气溶胶生成基质受热雾化产生气溶胶,气溶胶经出气通道212b流向滤嘴213,然后经滤嘴213的过滤再向外扩散,以供用户使用,滤嘴213能够将带状介质220表面或者内部的气溶胶生成基质雾化产生的大颗粒雾滴以及冷凝液吸附,避免用户吸入大颗粒雾滴或者冷凝液,提高用户的使用感。
滤嘴213可以采用软质材质,例如,滤嘴213可以采用醋酸纤维,过滤效果好,吸附阻力小。
一些实施例中,请参阅图2和图8,壳体211呈扁平盒状,雾化座212位于壳体211的顶部,送料组件位于雾化座212的底侧,带状介质220在雾化腔212a中沿横向方向移动,其中,横向方向、厚度方向、顶底方向相互垂直。
壳体211的结构设计可以为雾化座212和送料组件提供较大的安装空间11a,送料组件、雾化座212以及带状介质220的位置排布,可以使得容 纳装置210呈扁平状布置,既能保持较小的厚度,又能合理布局各个零部件,使得容纳装置210的内部结构布局可以更加合理。
本申请实施例中,顶底方向并不特指容纳装置210的外观轮廓最长的方向。具体地,送料组件和雾化腔212a的排列方向和顶底方向一致;出气通道212b的延伸方向与顶底方向平行。容纳装置210沿顶底方向的长度可以比其他方向上的长度更长、或者更短、或者相同。
例如,当容纳装置210的外观轮廓呈长方体时,顶底方向仍然是上述定义的方向,即送料组件和雾化腔212a的排列方向,或者,出气通道212b的延伸方向,容纳装置210的顶底方向可以是长方体的长、宽、高的任意一个方向。
在本申请的描述中,参考术语“一个实施例”、“一些实施例”、“示例”、“具体示例”、或“一些示例”等的描述意指结合该实施例或示例描述的具体特征、结构、材料或者特点包含于本申请实施例的至少一个实施例或示例中。在本申请中,对上述术语的示意性表述不是必须针对的是相同的实施例或示例。而且,描述的具体特征、结构、材料或者特点可以在任一个或多个实施例或示例中以合适的方式结合。此外,在不相互矛盾的情况下,本领域的技术人员可以将本申请中描述的不同实施例或示例以及不同实施例或示例的特征进行结合。
以上所述仅为本申请的较佳实施例而已,并不用于限制本申请,对于本领域的技术人员来说,本申请可以有各种更改和变化。凡在本申请的精神和原则之内,所作的任何修改、等同替换、改进等,均应包含在本申请的保护范围之内。

Claims (10)

  1. 一种发热组件,包括:
    安装座,所述安装座设置有安装空间以及与所述安装空间连通的第一开口;
    包括发热体的雾化装置,所述雾化装置可移动地设置在所述安装空间内,所述发热体的一端从所述第一开口伸出所述安装空间;
    第一复位件,所述雾化装置能够在外力作用下沿第一方向移动,并使所述第一复位件产生弹性形变,且所述雾化装置能够在所述第一复位件的弹力作用下沿与第一方向相反的第二方向移动。
  2. 根据权利要求1所述的发热组件,所述发热组件包括触发件,所述触发件至少部分可移动地设置于所述安装空间,所述触发件能够在外力作用下通过运动,带动所述雾化装置沿第一方向移动。
  3. 根据权利要求2所述的发热组件,所述安装座设置有与所述安装空间连通的第二开口,所述触发件包括控制部和触控部,所述控制部可移动地穿设于所述第二开口,所述控制部在外力作用下通过运动,以使所述触控部带动所述雾化装置沿第一方向移动。
  4. 根据权利要求3所述的发热组件,所述雾化装置包括外壳,所述发热体设置在所述外壳内,所述外壳的侧壁设置有抵接部,所述抵接部与所述触控部的其中之一设置有第一导向斜面,其中另一通过与所述第一导向斜面抵接,以使所述雾化装置沿第一方向移动。
  5. 根据权利要求4所述的发热组件,所述抵接部与所述触控部的其中另一设置有与所述第一导向斜面相对的第二导向斜面,所述第二导向斜面与所述第一导向斜面抵接。
  6. 根据权利要求3所述的发热组件,所述安装空间的内壁的部分区域凸 出形成围边,所述围边围设形成限位槽,所述控制部远离所述第二开口的一端可滑动地设置于所述限位槽中。
  7. 根据权利要求2-6任意一项所述的发热组件,所述触发件和所述第一复位件的数量均为一个,所述雾化装置、所述触发件以及所述第一复位件呈直线排布,且所述触发件与所述第一复位件分别设置在所述雾化装置的相对两侧。
  8. 根据权利要求2-6任意一项所述的发热组件,所述触发件能够在外力作用下沿与第一方向垂直的第三方向运动,以带动所述雾化装置在所述安装空间内沿第一方向移动;或者,所述触发件能够在外力作用下沿第一方向运动,以带动所述雾化装置在所述安装空间内沿第一方向移动。
  9. 根据权利要求2-6任意一项所述的发热组件,所述发热组件包括第二复位件,所述触发件能够在外力作用下通过运动,以使所述第二复位件产生弹性形变,且所述触发件能够在所述第二复位件的弹力作用下复位。
  10. 一种主机,包括机壳以及权利要求1-9任意一项所述的发热组件,所述机壳设置有容纳腔,所述发热组件设置于所述机壳内,且所述发热体的一端从所述第一开口伸入所述容纳腔。
PCT/CN2024/086876 2023-05-12 2024-04-09 一种发热组件及主机 Ceased WO2024234875A1 (zh)

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CN109820247A (zh) * 2017-11-23 2019-05-31 上海烟草集团有限责任公司 一种雾化器及电子烟
CN114376273A (zh) * 2022-01-12 2022-04-22 深圳市大迈发展有限公司 雾化结构件、雾化器及气溶胶生成装置
CN216674701U (zh) * 2021-01-18 2022-06-07 深圳麦克韦尔科技有限公司 气溶胶形成装置
CN115363269A (zh) * 2022-07-11 2022-11-22 云南中烟工业有限责任公司 一种用于加热固态雾化物质的电子雾化装置
CN218889299U (zh) * 2022-11-30 2023-04-21 深圳麦克韦尔科技有限公司 一种雾化弹及电子雾化器具
WO2023065239A1 (zh) * 2021-10-21 2023-04-27 海南摩尔兄弟科技有限公司 雾化芯、雾化器及电子雾化装置

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CN109820247A (zh) * 2017-11-23 2019-05-31 上海烟草集团有限责任公司 一种雾化器及电子烟
CN216674701U (zh) * 2021-01-18 2022-06-07 深圳麦克韦尔科技有限公司 气溶胶形成装置
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