WO2024066276A1 - 电连接件、连接组件及装置 - Google Patents

电连接件、连接组件及装置 Download PDF

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Publication number
WO2024066276A1
WO2024066276A1 PCT/CN2023/086001 CN2023086001W WO2024066276A1 WO 2024066276 A1 WO2024066276 A1 WO 2024066276A1 CN 2023086001 W CN2023086001 W CN 2023086001W WO 2024066276 A1 WO2024066276 A1 WO 2024066276A1
Authority
WO
WIPO (PCT)
Prior art keywords
circuit board
electrode
generating device
aerosol generating
battery
Prior art date
Application number
PCT/CN2023/086001
Other languages
English (en)
French (fr)
Inventor
张志良
徐文凯
Original Assignee
爱奇迹(香港)有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Priority claimed from CN202222582185.4U external-priority patent/CN218790509U/zh
Priority claimed from CN202222602729.9U external-priority patent/CN218790513U/zh
Priority claimed from CN202222586440.2U external-priority patent/CN218790510U/zh
Priority claimed from CN202222605738.3U external-priority patent/CN218790576U/zh
Application filed by 爱奇迹(香港)有限公司 filed Critical 爱奇迹(香港)有限公司
Publication of WO2024066276A1 publication Critical patent/WO2024066276A1/zh

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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
    • 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
    • A24F40/50Control or monitoring

Definitions

  • the present application relates to the field of electronic atomization devices, and in particular to an electrical connector, a connection assembly and a device.
  • an aerosol generating device generally has an electrical connector to electrically connect a power module and an atomizing module so that the power module supplies power to the atomizing module.
  • Elastic parts such as springs are installed on both sides of the existing electrical connector to give it a certain degree of mobility and resilience, and some electrical connectors are hollow inside for easy installation.
  • the atomized medium in the aerosol generating device may flow downward from the inside of the electrical connector, thereby causing a short circuit safety hazard to the solution board inside the power module.
  • the present application provides an electrical connector for preventing atomized medium from leaking downward from a first movable part of the electrical connector.
  • an electrical connector which includes a first connecting part and a second connecting part, a first movable part is slidably provided on one side of the first connecting part, the first movable part is elastically connected to the first connecting part, and one end of the first connecting part close to the second connecting part is solid.
  • One aspect of the present application provides an aerosol generating device, comprising the above-mentioned electrical connector.
  • connection component for an electronic atomization device, the connection component comprising: a sealing member, on which a blind hole is provided; a connecting electrode, at least a portion of which is inserted into the blind hole, and the connecting electrode is interference fit with the blind hole; one end of the connecting electrode inserted into the blind hole is used for contacting and connecting with the pin of a heating component to achieve electrical connection between the connecting electrode and the heating component; the other end of the connecting electrode is used for connecting with a battery module to achieve electrical connection between the sealing component and the battery module.
  • One aspect of the present application provides an electronic atomization device, comprising the above-mentioned connection assembly Piece.
  • an aerosol generating device which includes an atomizer and a control device; the control device includes a conductively connected circuit board and a transducer, the atomizer includes a heating element pin, and the heating element pin is connected to the circuit board.
  • the electrical connector proposed in the present application includes a first connecting part and a second connecting part, a first movable part is slidably provided on one side of the first connecting part, the first movable part is elastically connected to the first connecting part, and one end of the first connecting part close to the second connecting part is solid.
  • the present application sets a part of the first connecting part to be solid, so that the atomized medium will not leak downward along the gap between the first movable part and the first connecting part.
  • FIG1 is a schematic diagram of the structure of the electrical connector of the present application.
  • FIG2 is a schematic structural diagram of the electrical connector in the embodiment shown in FIG1 of the present application from another perspective;
  • FIG3 is a cross-sectional schematic diagram of the electrical connector in the embodiment shown in FIG2 of the present application.
  • FIG4 is a schematic structural diagram of an aerosol generating device of the present application.
  • FIG5 is a schematic diagram of the explosion structure of the aerosol generating device of the present application.
  • FIG6 is a schematic diagram of the explosion structure of the aerosol generating device of the present application from another perspective
  • FIG7 is a schematic structural diagram of the aerosol generating device of the present application from another perspective
  • FIG8 is a cross-sectional schematic diagram of the aerosol generating device in the embodiment shown in FIG7 of the present application.
  • FIG9 is a schematic diagram of the structure of the power module in the embodiment shown in FIG1 of the present application.
  • FIG10 is a schematic structural diagram of the power module in the embodiment shown in FIG1 of the present application from another perspective;
  • FIG11 is a schematic diagram of a partial structure of a power module in the embodiment shown in FIG1 of the present application;
  • FIG12 is a schematic diagram of the exploded structure of the power module in the embodiment shown in FIG1 of the present application.
  • FIG. 13 is a diagram showing the exploded structure of the atomizing module and the suction part in the embodiment shown in FIG. 4 of the present application. intention;
  • FIG14 is a schematic structural diagram of a connection assembly according to an embodiment of the present application.
  • FIG15 is a schematic structural diagram of a connection assembly according to another embodiment of the present application.
  • FIG16 is a schematic structural diagram of the connecting assembly at another angle in the embodiment shown in FIG15 ;
  • FIG17 is a schematic cross-sectional view of the connection assembly along line A-A in the embodiment shown in FIG15 ;
  • FIG18 is a schematic cross-sectional view of a connection assembly according to another embodiment of the present application.
  • FIG19 is a partial structural diagram of a connection assembly according to an embodiment of the present application.
  • FIG20 is a schematic structural diagram of a connection assembly according to another embodiment of the present application.
  • FIG21 is a schematic diagram of an exploded structure of the connecting assembly in the embodiment shown in FIG20 ;
  • FIG22 is a schematic structural diagram of a connection assembly according to another embodiment of the present application.
  • FIG23 is a schematic diagram of an exploded structure of the connecting assembly in the embodiment shown in FIG22 ;
  • FIG24 is a schematic cross-sectional view of the connecting assembly along the line B-B in the embodiment shown in FIG22 ;
  • FIG25 is a schematic cross-sectional structural diagram of another cross section of the connecting assembly in the embodiment shown in FIG22;
  • FIG26 is a schematic diagram of the structure of an electronic atomization device according to an embodiment of the present application.
  • FIG27 is a schematic diagram of the exploded structure of the electronic atomization device shown in FIG26 of the present application.
  • FIG28 is a partially exploded schematic diagram of an aerosol generating device provided by the present application.
  • FIG29 is a schematic diagram of the assembled three-dimensional structure of FIG28 , excluding the transparent housing;
  • FIG30 is a schematic diagram of the cross-sectional structure along the line A-A in FIG29;
  • FIG31 is a schematic diagram of the three-dimensional structure of the control device in FIG28 .
  • connection and “connected” should be understood in a broad sense, for example, it can be a fixed connection, It can also be a detachable connection or an integral connection; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium.
  • connection should be understood in a broad sense, for example, it can be a fixed connection, It can also be a detachable connection or an integral connection; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium.
  • the first feature being “above” or “below” the second feature may mean that the first and second features are in direct contact, or the first and second features are in indirect contact through an intermediate medium.
  • the first feature being “above”, “above” and “above” the second feature may mean that the first feature is directly above or obliquely above the second feature, or simply means that the first feature is higher in level than the second feature.
  • the first feature being “below”, “below” and “below” the second feature may mean that the first feature is directly below or obliquely below the second feature, or simply means that the first feature is lower in level than the second feature.
  • an electrical connector needs to be provided between the atomization module and the power module to transfer the electricity in the power module to the atomization module, so as to atomize the atomization medium in the atomization module and finally form an aerosol.
  • the electrical connector is generally located between the power module and the atomization module, and the atomization medium in the atomization module may flow along the atomization module toward the power module. Since the traditional aerosol generating device is usually provided with an electrical connector to establish an electrical connection with the atomization device.
  • Figure 1 is a schematic diagram of the structure of the electrical connector of the present application
  • Figure 2 is a schematic diagram of the structure of the electrical connector in another perspective in the embodiment shown in Figure 1 of the present application
  • Figure 3 is a cross-sectional schematic diagram of the electrical connector in the embodiment shown in Figure 2 of the present application.
  • the present application discloses an electrical connector 50, and the electrical connector 50 includes a first connecting portion 51 and a second connecting portion 52.
  • a first movable member 53 is slidably provided on one side of the first connecting portion 51.
  • the first movable member 53 is elastically connected to the first connecting portion 51.
  • the end of the first connecting portion 51 close to the second connecting portion 52 is solid.
  • a second movable member 54 is slidably provided on the side of the second connecting portion 52 away from the first connecting portion 51, and the second movable member 54 is elastically connected to the second connecting portion 52.
  • first connecting portion 51 and the second connecting portion 52 are both conductive members. Transfer electricity.
  • a first movable member 53 is slidably provided on the side of the first connecting portion 51 away from the second connecting portion 52, that is, the first movable member 53 can slide in the first connecting portion 51, and because the first movable member 53 and the first connecting portion 51 are elastically connected, the first movable member 53 can automatically rebound after being compressed, so that close contact with the electrode or solution plate can be achieved.
  • the connection relationship between the second movable member 54 and the second connecting portion 52 is consistent with the connection relationship between the first movable member 53 and the first connecting portion 51, which will not be repeated here.
  • first connecting portion 51 and the first movable member 53 or the second connecting portion 52 and the second movable member 54 are connected via a spring.
  • first connecting portion 51 and the first movable member 53 or the second connecting portion 52 and the second movable member 54 may also be connected via a spring sheet, a bellows or other suitable elastic elements.
  • the first connection part 51 and the second connection part 52 can be made of copper, iron, gold, silver, aluminum or zinc alloy. In this embodiment, copper is preferred considering the material conductivity, material hardness and material cost.
  • the first connection part 51 and the second connection part 52 are generally cylindrical.
  • the first movable member 53 and the second movable member 54 may also be made of copper, iron, gold, silver, aluminum or zinc alloy.
  • copper is preferably used in consideration of the conductivity, hardness and cost of the material.
  • the side of the first connecting portion 51 close to the second connecting portion 52 is solid, that is, the first movable member 53 and the second movable member 54 are isolated, and if the atomized medium flows into the gap between the first movable member 53 and the first connecting portion 51, it will not continue to flow downward.
  • only the side of the first connecting portion 51 close to the second connecting portion 52 is set to be solid.
  • first connecting portion 51 and the first movable member 53 may not be connected by sliding, but the first movable member 53 itself has a certain elasticity to ensure close contact between the first movable member 53 and the electrode or solution board.
  • the second connecting portion 52 and the second movable member 54 may not be connected by sliding, but the second movable member 54 itself has a certain elasticity to ensure close contact between the second movable member 54 and the electrode or solution board.
  • connection groove 56 is formed at one end of the first connection portion 51 away from the first movable member 53, and a portion of the second connection portion 52 is disposed in the connection groove 56.
  • the shape of the connection groove 56 may be circular, square, or other shapes, which are not specifically limited here.
  • the portion of the second connection portion 52 facing the first connection portion 51 is located in the connection groove 56, that is, not all of the second connection portion 52 is located in the connection groove 56, but a portion of the second connection portion 52 is located in the connection groove 56.
  • first connecting portion 51 and the second connecting portion 52 can be laser welded, and there is no gap between the two, which will not affect the conductive effect.
  • first connecting portion 51 and the second connecting portion 52 can also be connected by clamping, bonding or other suitable methods.
  • the first connection part 51 may have an annular flange 55 at one end away from the second connection part 52. It is understandable that the radius of the first connection part 51 is greater than the radius of the second connection part 52, which can prevent leakage of the atomized medium and facilitate installation of the electrical connector 50.
  • Figure 4 is a schematic diagram of the structure of the aerosol generating device of the present application
  • Figure 5 is a schematic diagram of the exploded structure of the aerosol generating device of the present application
  • Figure 6 is a schematic diagram of the exploded structure of the aerosol generating device of the present application from another perspective
  • Figure 7 is a schematic diagram of the structure of the aerosol generating device of the present application from another perspective
  • Figure 8 is a schematic diagram of the cross-section of the aerosol generating device in the embodiment shown in Figure 7 of the present application.
  • the present application discloses an aerosol generating device 100, which may include a housing 10 of a hollow tubular structure, a suction portion 20 disposed on one side of the housing 10, a power module 30 disposed on a side of the housing 10 away from the suction portion 20, and an atomization module 40 disposed in the suction portion 20.
  • the power module 30 is provided with two of the above-mentioned electrical connectors 50 at one end close to the atomization module 40, one end of the electrical connector 50 is electrically connected to the atomization module 40, and the other end of the electrical connector 50 is electrically connected to the power module 30.
  • the housing 10 is a hollow structure having a receiving cavity therein.
  • the housing 10 may be roughly cylindrical, or may be other suitable shapes, such as a square or other suitable shapes. It can be formed of metal (aluminum or iron, etc.), ceramic, fiber composite material or other suitable material or a combination of these materials.
  • the suction part 20 may include a suction part body 201 and a connecting plate 202.
  • the suction part body 201 may be divided into a flat suction port 2010 and a cylindrical mounting portion 2011, wherein the suction port 2010 is used to be placed in the user's mouth for the user to inhale, and the mounting portion 2011 is located in the housing 10 as a whole and is used to install the atomization module 40.
  • the connecting plate 202 is arranged on one side of the suction part body 201 close to the power module 30.
  • the connecting plate 202 may be a plate-like structure, which is made of a hard material, and the connecting plate 202 is made of an insulating material.
  • the edge portion of the connecting plate 202 is provided with a plurality of snap-in portions 2020.
  • a plurality of snap-in holes 203 are provided on one side of the suction part body 201 close to the connecting plate 202.
  • the snap-in portions 2020 have a certain elasticity.
  • the first electrode 206 and the second electrode 207 are provided on the connection plate 202, the first electrode 206 is connected to one of the electrical connectors 50, and the second electrode 207 is connected to the other electrical connector 50. Since the first movable member 53 is elastically connected to the first connecting portion 51, during the installation of the power module 30, after the first movable member 53 contacts the first electrode 206 or the second electrode 207, the mounting frame 301 will continue to be pushed inward, so that the elastic element between the first movable member 53 and the first connecting portion 51 is compressed, so that the first movable member 53 can be in close contact with the first electrode 206 or the second electrode 207, so that the conductive performance of the electrical connector 50 is better.
  • Figure 9 is a schematic diagram of the structure of the power module in the embodiment shown in Figure 1 of the present application
  • Figure 10 is a schematic diagram of the structure of the power module in another perspective of the embodiment shown in Figure 1 of the present application
  • Figure 11 is a schematic diagram of a part of the structure of the power module in the embodiment shown in Figure 1 of the present application.
  • the power module 30 may include a mounting frame 301, a battery cell 302 and a solution board 303.
  • the mounting frame 301 is interference-connected with the side of the shell 10 away from the atomization module 40.
  • Mounting frame A mounting groove 304 is provided on the mounting frame 301, and a battery cell 302 is placed in the mounting groove 304.
  • a solution plate 303 is provided on both sides of the mounting frame 301, and the two solution plates 303 are respectively connected to the positive and negative electrodes of the battery cell 302 through wires, and the two solution plates 303 are also connected through wires. Further, the two solution plates 303 are also connected through wires.
  • a second through hole 3031 is provided on the solution plate 303 close to the atomization module 40.
  • Figure 12 is a schematic diagram of the exploded structure of the power module in the embodiment shown in Figure 1 of the present application.
  • two electrical connectors 50 may be provided on one end of the mounting frame 301 near the connecting plate 202.
  • the electrical connector 50 may be connected to the mounting frame 301 by riveting, or by interference connection. Since there is a gap between the electrical connector 50 and the connecting plate 202, the atomized medium in the atomization module 40 may also leak through the gap to the power module 30, thereby causing the solution board 303 or the battery cell 302 in the power module 30 to be contaminated and easily damaged. Therefore, an annular flange 55 is provided at one end of the first connecting portion 51 away from the second connecting portion 52.
  • the setting of the annular flange 55 not only facilitates the installation of the electrical connector 50, but also when the atomized medium leaks downward along the gap between the electrical connector 50 and the connecting plate 202, due to the presence of the annular flange 55, the path of the atomized medium flow is lengthened, so that the atomized medium is not easy to leak downward.
  • a liquid storage tank 3010 is provided on one side of the mounting frame 301 close to the atomizing module 40, for storing the atomizing medium leaked from the atomizing module 40. It is understandable that when the atomizing medium in the atomizing module 40 falls, the atomizing medium will fall into the liquid storage tank 3010, thereby storing the atomizing medium and preventing the atomizing medium from continuing to fall into the power module 30, thereby causing damage to the battery cell 302, the solution board 303 or other parts.
  • a protrusion 3011 may also be provided on one side of the mounting frame 301 close to the atomization module 40.
  • a positioning hole 208 is provided on the connecting plate 202.
  • the number of the protrusion 3011 is one, and the number of the positioning holes 208 is two.
  • the mounting frame 301 may be provided with an air inlet 3012 on the side away from the suction unit 20, and the outside air may enter the housing 10 from the air inlet 3012.
  • the power module 30 may also include a microphone. 305 and microphone silicone 306, the microphone 305 is arranged on the side of the mounting frame 301 away from the suction part 20, the microphone 305 is located on the solution board 303 near the side of the air inlet 3012, and the microphone 305 is arranged toward the air inlet 3012. That is to say, when air enters the housing 10 from the outside, it will first flow through the microphone 305.
  • the microphone 305 After the microphone 305 senses that the flow rate or air pressure of the airflow reaches a preset threshold, the microphone 305 will control the circuit to be connected so that the power at the battery cell 302 is transmitted to the atomization module 40, so that the atomization module 40 can atomize the atomization medium.
  • the microphone silicone 306 is arranged on the outside of the microphone 305.
  • a first through hole 3013 can be provided on the side of the mounting frame 301 close to the atomization module 40 to facilitate the air entering from the air inlet 3012 to flow to the atomization module 40.
  • the power module 30 may further include a plurality of magnetic members 307, which are disposed on one side of the mounting frame 301 close to the suction portion 20.
  • the magnetic members 307 are used to generate magnetic attraction with the atomization module 40 to fix the power module 30 in the housing 10.
  • the magnetic member 307 may be omitted, and the mounting frame 301 is connected to the housing 10 by interference fit to fix the power module 30 in the housing 10 .
  • the atomizing module 40 may include an oil storage member 401 disposed in the suction portion 20, a heating member 402 disposed inside the oil storage member 401, and sealing members 403 disposed on both sides of the oil storage member 401.
  • the atomizing module 40 is disposed in the suction portion 20.
  • the suction part 20 is tightly arranged in the shell 10.
  • the suction part 20 and the atomization module 40 cannot be removed by the user.
  • the present application belongs to a disposable aerosol generating device 100, after the atomization medium in the atomization module 40 is used up, the entire aerosol generating device 100 will be directly discarded. Based on environmental protection and resource conservation, manufacturers generally recycle the aerosol generating device 100. At this time, the atomization module 40 can be completely removed in a special way, so that the atomization module 40, the power module 30 and the shell 10 are separated for easy recycling.
  • the oil storage member 401 may include an oil storage cup 4010 having an oil storage cavity and an oil storage cotton 4011 disposed in the oil storage cavity and used to store oil atomized medium.
  • An air flow channel 4012 is provided at the center of the oil storage cotton 4011.
  • the oil storage cup 4010 may be cylindrical with openings at both ends.
  • the oil storage cup 4010 is located in the suction part 20 and is in close contact with the inner wall of the suction part 20.
  • the oil storage cup 4010 may be formed of plastic, fiber composite material or other suitable materials or a combination of these materials.
  • the oil storage cotton 4011 The shape is cylindrical and is located in the oil storage cavity of the oil storage cup 4010.
  • the material of the oil storage cotton 4011 can be non-woven fabric, integrated cotton or PLA fiber.
  • the oil storage cotton 4011 has an excellent adsorption effect, and the atomized medium is stored in the oil storage cotton 4011.
  • An air flow channel 4012 is provided in the middle of the oil storage cotton 4011, and the air outlet holes 204 on the suction part body 201 and the air outlet holes 204 on the connecting plate 202 are both connected to the air flow channel 4012.
  • the connecting plate 202 may also be provided with a first electrode 206 and a second electrode 207 for close contact with the electrical connector 50, so as to facilitate the power on the power module 30 to be transmitted to the atomization module 40.
  • the heating element 402 may include a central tube 4020 disposed in the air flow channel 4012 of the oil storage cotton 4011, an oil guide body 4021 disposed in the central tube 4020, and a heating body 4022 disposed in the oil guide body 4021, wherein the central tube 4020 is a hollow circular tube.
  • the shape of the central tube 4020 is adapted to the air flow channel 4012 of the oil storage cotton 4011, and the outer wall of the central tube 4020 is closely fitted to the oil storage cotton 4011.
  • the central tube 4020 may be made of heat-resistant material, such as metal (aluminum or iron, etc.), ceramic, fiber composite material or other suitable material or a combination of these materials.
  • the oil guide body 4021 may include a cylindrical main body 4024 and an extension 4025.
  • the main body 4024 is completely located in the central tube 4020.
  • the extension 4025 passes through the central tube 4020 and contacts the oil storage cotton 4011. Or the extension 4025 is located in the oil storage cotton 4011, that is, a groove for accommodating the extension 4025 may be provided in the oil storage cotton 4011.
  • the function of the extension 4025 is to increase the contact area with the oil storage cotton 4011, so as to better transfer the atomized medium.
  • the material of the oil guide body 4021 may be medical absorbent cotton, organic cotton, fiber cotton or other suitable materials.
  • the heating element 4022 may be a heating wire or a heating net.
  • the heating element 4022 is provided with two pins 4023, and the two pins 4023 are respectively electrically connected to the first electrode 206 and the second electrode 207 on the connecting board 202.
  • the heating element 4022 may be made of a metal material with good heat resistance.
  • the pin 4023 can be installed in the gap, and then the first electrode 206 and the second electrode 207 are riveted to the connecting plate 202, so that the electrical connection between the pin 4023 and the first electrode 206 and the second electrode 207 can be achieved.
  • the sealing member 403 may include an upper silicone rubber 4030 and a lower silicone rubber 4031.
  • the upper silicone rubber 4030 is disposed on a side of the oil storage cup 4010 close to the air outlet 204.
  • a placement groove 4033 may be provided on one side of the oil storage cup 4010, and an oil absorbent body 4034 is provided in the placement groove 4033 for absorbing the atomized medium that is not completely atomized, and also for preventing the backflow of condensed liquid.
  • the material of the oil absorbent body 4034 may be medical absorbent cotton, organic cotton, fiber cotton or other suitable materials.
  • the lower silica gel 4031 is provided on the side of the oil storage cup 4010 away from the air outlet 204.
  • a third through hole 4032 is provided in the center of the upper silica gel 4030 and the lower silica gel 4031. The third through hole 4032 is connected to the air flow channel 4012.
  • the electrical connector 50 in the present application includes a first connecting portion 51 and a second connecting portion 52.
  • a first movable member 53 is slidably provided on one side of the first connecting portion 51.
  • the first movable member 53 is elastically connected to the first connecting portion 51.
  • One end of the first connecting portion 51 close to the second connecting portion 52 is solid.
  • the electronic atomization device includes an atomization assembly, wherein the atomization assembly mainly includes an oil storage tank for containing the atomization medium, an atomization core assembly for atomizing the atomization medium, and a mouthpiece assembly.
  • the smoke formed by the atomization medium in the atomization core is inhaled by the smoker through the mouthpiece assembly.
  • the electronic atomizer device when carried on a daily basis, transported over long distances, or not used for a long time, the microphone head and the battery core are connected by welding wires, and then the wires are pulled to the upper part and welded to the heating wire pins of the atomizer core assembly; the wire connection is relatively fragile; it is easy to cause the wire welding point to be disconnected when subjected to external forces, causing a short circuit. Therefore, by setting up the connection assembly, the connection between the atomizer assembly and the battery module is more stable, less likely to break and produce poor contact; at the same time, it also protects the heating wire heating assembly, preventing the heating wire heating assembly from deformation during installation or transportation, affecting the normal operation of the heating wire heating assembly.
  • Figure 14 is a schematic diagram of the structure of a connecting component according to one embodiment of the present application.
  • Figure 15 is a schematic diagram of the structure of a connecting component according to another embodiment of the present application.
  • Figure 16 is a schematic diagram of the structure of the connecting component at another angle in the embodiment shown in Figure 15.
  • Figure 17 is a schematic diagram of the cross-sectional structure of the connecting component taken along line A-A in the embodiment shown in Figure 15.
  • connection assembly 60 includes: a sealing assembly 70, on which a first blind hole 61 and a second blind hole 62 are provided; a first connection electrode 68 and a second connection electrode 69, at least a portion of which is inserted into the first connection electrode 68 and the second connection electrode 69.
  • the first connecting electrode 68 and the second connecting electrode 69 are interference fit with the first blind hole 61 and the second blind hole 62 respectively; the first connecting electrode 68 and the second connecting electrode 69 are inserted into one end of the first blind hole 61 and the second blind hole 62 for contacting and connecting with the two pins of the heating component 71 to realize electrical connection between the first connecting electrode 68 and the second connecting electrode 69 and the heating component 71; the other end of the first connecting electrode 68 and the second connecting electrode 69 away from the sealing component 70 is used to connect with the battery module to realize electrical connection between the sealing component 70 and the battery module.
  • the sealing component 70 is also provided with a first connecting hole 63 and a second connecting hole 64, and the first connecting hole 63 and the second connecting hole 64 are connected to the first blind hole 61 and the second blind hole 62, and the two pins of the heating component 71 are respectively inserted into the first connecting hole 63 and the second connecting hole 64 from one end of the first connecting hole 63 and the second connecting hole 64, and are respectively contacted and connected with the first connecting electrode 68 and the second connecting electrode 69 at the other end of the first connecting hole 63 and the second connecting hole 64.
  • FIG. 18 is a schematic cross-sectional structure diagram of a connection assembly according to another embodiment of the present application.
  • the sealing component 70 and the heating component 71 are integrally injection molded, and the two pins of the heating component 71 are respectively inserted from the sealing component 70 into the first blind hole 61 and the second blind hole 62 to achieve contact connection between the two pins of the heating component 71 and the first connecting electrode 68 and the second connecting electrode 69 inserted in the first blind hole 61 and the second blind hole 62.
  • FIG. 19 is a partial structural diagram of a connection assembly according to an embodiment of the present application.
  • the connection electrode includes a first conductive portion 681 and a second conductive portion 682, wherein the first conductive portion 681 is used to connect to the heating component 71, and the second conductive portion 682 is used to connect to the battery module; a protrusion 683 is provided between the first conductive portion 681 and the second conductive portion 682 of the connection electrode along the circumference of the connection electrode, and the protrusion 683 facilitates the installation and removal of the first conductive portion 681 and the second conductive portion 682.
  • the second connection electrode 69 has the same structure and size as the first connection electrode 68, and will not be described in detail here.
  • installation and removal refer, on the one hand, to the first conductive part 681 being inserted into the first blind hole 61 of the sealing assembly 70, and the first conductive part 681 being pulled out of the first blind hole 61 of the sealing assembly 70; and on the other hand, to the second conductive part 682 being inserted into the battery module, and the second conductive part 682 being pulled out of the battery module.
  • the protrusion 683 can limit the insertion depth of the first conductive part 681 and the second conductive part 682, and will not cause the insertion depth of the first conductive part 681 and the second conductive part 682 to be too deep, or one end of the first conductive part 681 or the second conductive part 682 to be too deep and the other end to be inserted too shallowly.
  • the first connecting electrode 68 and the second connecting electrode 69 cooperate with each other, the insertion depth of the two electrodes will not be inconsistent. Therefore, the presence of the protrusion can make the cooperation between the electrodes more convenient and efficient.
  • Figure 20 is a structural schematic diagram of a connection component in another embodiment of the present application
  • Figure 21 is an exploded structural schematic diagram of the connection component in the embodiment shown in Figure 20.
  • the sealing assembly 70 is used to seal the atomizing assembly 80, that is, the end of the sealing assembly 70 away from the first connecting electrode 68 and the second connecting electrode 69 is inserted into the end of the atomizing assembly 80 close to the sealing assembly 70.
  • an oil guide body is arranged on the periphery of the heating assembly 71, and the oil guide body is arranged between the oil storage cotton body 630 and the heating assembly 71. The oil guide body is inserted on the connecting pipe 620, and the connecting pipe 620 with the oil guide body inserted is inserted on the heating assembly bracket 610.
  • the connecting pipe 620 with the heating assembly bracket 610 is inserted into the inside of the oil storage cotton body 630, and the oil storage cotton body 630 is inserted and installed in the inside of the oil storage cup body 640.
  • An oil storage cup sealing cover 650 is also arranged at the end of the atomizing assembly 80 away from the connecting assembly 60.
  • One end of the atomization assembly 80 away from the oil storage cup sealing cover 650 is sealed by the connecting assembly 60, specifically, the sealing assembly 70 in the connecting assembly 60, and the end of the sealing assembly 70 away from the first connecting electrode 68 and the second connecting electrode 69 is interference fit with the end of the oil storage cup body 640 close to the sealing assembly 70.
  • oil-conducting body can be oil-conducting cotton.
  • the sealing assembly 70 also includes a first extension portion 66 and a second extension portion 67, which are arranged on one side of the second conductive portion of the sealing assembly 70 close to the first connecting electrode 68 and the second connecting electrode 69, and the first extension portion 66 and the second extension portion 67 are arranged in parallel, and the first extension portion 66 and the second extension portion 67 form an extension portion through groove 72.
  • a connecting component through hole 65 is provided in the middle of the sealing component 70 of the connecting component 60, and the connecting component through hole 65 communicates with the extension portion through groove 72 and a side of the connecting component 60 away from the first extension portion 66 and the second extension portion 67, that is, the connecting component through hole 65 penetrates the sealing component 70. Seal assembly 70.
  • middle position refers to an area close to the geometric center of the surface shape.
  • the connecting component 60 includes two connecting electrodes, namely a first connecting electrode 68 and a second connecting electrode 69; the first connecting electrode 68 and the second connecting electrode 69 are adjacently arranged between the first extension portion 66 and the second extension portion 67; the first connecting electrode 68 and the second connecting electrode 69 are respectively located on both sides of the connecting component through hole 65; the first extension portion 66 and the second extension portion 67 and the first connecting electrode 68 and the second connecting electrode 69 are arranged at the periphery of the connecting component through hole 65 along the circumference of the connecting component through hole 65.
  • Figure 22 is a structural schematic diagram of a connecting component in another embodiment of the present application
  • Figure 23 is an exploded structural schematic diagram of the connecting component in the embodiment shown in Figure 22
  • Figure 24 is a cross-sectional structural schematic diagram of the connecting component in the embodiment shown in Figure 22 taken along line B-B
  • Figure 25 is a cross-sectional structural schematic diagram of another cross section of the connecting component in the embodiment shown in Figure 22.
  • connection component 60 away from the atomizer component 80 is inserted into the end of the battery module 81 close to the connection component 60, specifically, the first extension portion 66 and the second extension portion 67 are interference fit with the accommodating connection groove 830 of the battery module 81.
  • the first extension portion 66 and the second extension portion 67 are connected and fixed to the battery module 81, which can connect and fix the connection component 60 and the battery module 81, and at the same time have a positioning function for the battery module 81, which facilitates the installation and removal of the connection component 60 and the battery module 81.
  • the connection assembly 60 includes a sealing assembly 70, on which a first blind hole 61 and a second blind hole 62 are provided; the connection assembly 60 is also provided with a first connection electrode 68 and a second connection electrode 69, and one end of the first connection electrode 68 and the second connection electrode 69 away from the battery module 81 is respectively inserted into the first blind hole 61 and the second blind hole 62.
  • One end of the first connection electrode 68 and the second connection electrode 69 away from the battery module 81 is respectively interference fit with the first blind hole 61 and the second blind hole 62; one end of the first connection electrode 68 and the second connection electrode 69 inserted in the first blind hole 61 and the second blind hole 62 is used to contact and connect with the heating assembly of the atomization assembly, so as to realize the electrical connection between the first connection electrode 68 and the second connection electrode 69 and the heating assembly.
  • One end of the first connection electrode 68 and the second connection electrode 69 away from the atomization assembly is used to connect with the battery module 81, so as to realize the electrical connection between the connection assembly 60 and the battery module 81.
  • the sealing assembly 70 is also provided with a first connecting The two pins of the heating component respectively pass through the first connecting hole 63 and the second connecting hole 64 to contact and connect with the first connecting electrode 68 and the second connecting electrode 69 to realize the electrical connection between the atomization component 80 and the first connecting electrode 68 and the second connecting electrode 69.
  • the sealing assembly 70 further includes a first extension portion 66 and a second extension portion 67 , which are disposed on one side of the sealing assembly 70 close to the battery module 81 , and an extension portion through groove is formed between the first extension portion 66 and the second extension portion 67 .
  • a connecting component through hole 65 is provided in the middle of the sealing component 70 , and the connecting component through hole 65 connects the extension portion through groove and a side of the sealing component 70 away from the battery module 81 .
  • an air hole 840 is provided in the accommodating connecting groove 830 of the battery module 81, and an extension portion is provided on the side of the air hole 840 close to the connecting component 60.
  • the extension portion is higher than the bottom surface of the accommodating connecting groove 830, and the extension portion is used to prevent the atomized medium and condensate from flowing back into the battery module 81.
  • Figure 26 is a schematic diagram of the structure of an electronic atomization device according to an embodiment of the present application.
  • Figure 27 is a schematic diagram of the exploded structure of the electronic atomization device shown in Figure 26 of the present application.
  • the electronic atomization device 200 includes a connection component 60; further includes: an outer shell 83, a battery module 81, an atomization component 80 and a nozzle 82; the battery module 81 and the atomization component 80 are fixedly installed in the outer shell 83; the extension portion in the sealing component 70 of the connection component 60 is inserted into the battery module 81, and the extension portion and the battery module 81 are interference fit; wherein, the battery module 81 is provided with a first electrode fixing through hole 810 and a second electrode fixing through hole 820 at one end close to the connection component 60, and at least a portion of the first connection electrode 68 and the second connection electrode 69 of the connection component 60 are respectively penetrated and fixed to The first electrode fixing through hole 810 and the second electrode fixing through hole 820, and the second conductive parts of the first connecting electrode 68 and the second connecting electrode 69 are respectively interference fit with the first electrode fixing through hole 810 and the second electrode fixing through hole 820; the battery module 81 and the connecting component 60 are fixedly
  • an elastic component is provided on the first connecting electrode 68 and the second connecting electrode 69, and the first connecting electrode 68 and the second connecting electrode 69 are in contact and connected with the battery module 81, that is, when a circuit board is provided at one end of the battery module 81 close to the first connecting electrode 68 and the second connecting electrode 69, and an electrode connection point is provided on the circuit board, the first connecting electrode 68 and the second connecting electrode 69 can be in contact and connected with the battery module 81, specifically, the end of the first connecting electrode 68 and the second connecting electrode 69 away from the atomization assembly 80 is in contact and connected with the electrode connection point on the circuit board.
  • the first connection electrode 68 and the second connection electrode 69 can be respectively contacted and connected with the positive and negative electrodes of the battery in the battery module 81 to achieve electrical connection; in addition, the first connection electrode 68 and the second connection electrode 69 can also be connected to the battery module 81 by a wire. It is also understood that the first connection electrode 68 and the second connection electrode 69 have the same structure as the above-mentioned electrical connector 50.
  • connection between the atomization component 80 and the battery module 81 is more stable through the setting of the connection component 60, and the connection is not easy to break and produce poor contact; at the same time, it also protects the heating component to prevent the heating component from being deformed during installation or transportation, which affects the normal operation of the heating component.
  • the setting of the connection component 60 makes the installation and disassembly between the atomization component 80 and the battery module 81 more convenient.
  • the electronic atomization device in the embodiment of the present application is a disposable electronic cigarette.
  • the detachable solution described in the embodiment is mainly designed for disassembly during recycling by the manufacturer. It is generally not recommended or required for users to disassemble the electronic cigarette by themselves.
  • the electronic atomization device includes three modules: a battery, a control device, and an atomizer.
  • the commonly used connection method for the three modules is to use wires to connect through soldering.
  • the pins extending from the heating wire are directly welded to the battery core and the circuit board through wires. Since the pin wires of the heating wire are generally made of nickel and are very thin, and the wires are made of copper, which is also very thin, the connections are prone to falling off. When subjected to external force, shock, falling, etc., the solder joints are prone to falling off, causing the electronic atomization device to be broken or short-circuited.
  • connection can be achieved by contacting the pins with the circuit board.
  • the circuit board supplies power to the atomizer without the need for wire connection, and the circuit board can provide support for the pins, making the connection of the pins more secure and less likely to fall off.
  • not using wire connection can also improve production efficiency.
  • Figure 28 is a partially exploded schematic diagram of an aerosol generating device provided in the present application
  • Figure 29 is a schematic diagram of the assembled three-dimensional structure in Figure 28, which does not include the transparent shell
  • Figure 30 is a schematic diagram of the cross-sectional structure along the A-A direction in Figure 29.
  • an aerosol generating device 300 including an atomizer 91 and a control device 93 .
  • the control device 93 includes a conductively connected transducer 931 and a circuit board 932.
  • the transducer 931 can be used to sense changes in airflow or air pressure, and the circuit board 932 can have discharge and charge control functions, power supply protection control functions, and the like.
  • the atomizer 91 includes a heating element pin 911, and the heating element pin 911 is connected to the circuit board 932, so that the atomizer 91 is powered by the circuit board 932.
  • the heating element pin 911 is in contact with the circuit board 932. That is, the heating element pin 911 is directly connected to the circuit board 932, so that the atomizer 91 is powered by the circuit board 932, and the circuit board 932 can also provide support for the heating element pin 911.
  • the heating element pin 911 is connected to the circuit board 932 so as to power the atomizer 91 through the circuit board 932, without the need for wire connection, and the circuit board 932 can provide support for the heating element pin 911, so that the connection of the heating element pin 911 is more secure and not easy to fall off. In addition, not using wire connection can also improve production efficiency.
  • the circuit board 932 provides support for the heating element pin 911 when it is connected to the heating element pin 911
  • the circuit board 932 is provided with a second preset groove 933, and the heating element pin 911 is inserted and fixed in the second preset groove 933, and is connected to the circuit board 932. Therefore, when the heating element pin 911 is inserted and fixed in the second preset groove 933, the second preset groove 933 not only has the function of electrical connection, but also has the function of stable connection. Even when subjected to external force, shock, falling, etc., the connection between the heating element pin 911 and the circuit board 932 is not easy to fall off.
  • an electrical connection device is provided on the surface of the circuit board 932, and the heating element pin 911 is connected to the electrical connection device and is conductively connected to the circuit board 932.
  • the connecting device may be a connecting pin provided on the circuit board 932, a metal film provided on the circuit board 932, or an electrical contact point provided on the circuit board 932, as long as the heating element pin 911 can be connected to the electrical connecting device on the surface of the circuit board 932 to electrically connect the circuit board 932 to the atomizer 91. That is to say, in this embodiment, unlike providing a preset groove on the circuit board 932, by providing the electrical connecting device on the surface of the circuit board 932, the preparation process of the circuit board 932 can be effectively reduced.
  • the transducer 931 is fixedly mounted on the circuit board 932, and the transducer 931 is fixedly mounted on the outside of the second preset groove 933.
  • the transducer 931 and the circuit board 932 are integrally arranged, that is, the connection between the transducer 931 and the circuit board 932 is not electrically connected by wire, but is connected by patch, hot pressing, welding, etc. It can be understood that patch, hot pressing, and welding are all optional ways to connect two components in the prior art.
  • the second preset groove 933 is set at the center of the circuit board 932, and the transducer 931 is fixedly installed at the edge of the circuit board 932 and does not interfere with the heating element pin 911 inserted and fixed in the second preset groove 933. This can reduce the torque on the circuit board 932 and ensure the stability of the connection.
  • the circuit board 932 includes a first surface 9321 and a second surface 9322 that are arranged opposite to each other, and the second preset groove 933 runs through the first surface 9321 and the second surface 9322. That is, the first preset groove 934 and the second preset groove 933 arranged on the circuit board 932 are through grooves.
  • the transducer 931 is patch mounted on the second surface 9322, and the heating element pin 911 is inserted into the second preset groove 933 from the first surface 9321. That is, the connection directions of the heating element pin 911 and the transducer 931 and the circuit board 932 are opposite.
  • the heating element pin 911 is installed in the second preset groove 933 from the first surface 9321, and the heating element pin 911 is fixed by heat pressing or welding on the second surface 9322 until it is conductively connected with the circuit board 932.
  • the heating element pin 911 of the atomizer 91 is located on the same side as the transducer 931, and is fixed by heat pressing or welding on the opposite side of the insertion surface of the heating element pin 911.
  • the aerosol generating device 300 further includes a battery 92 , and the battery 92 may be electrically connected to the circuit board 932 , thereby providing power to the circuit board 932 and the atomizer 91 .
  • the atomizer 91 is arranged facing the first surface 9321, and the battery 92 is arranged facing the second surface 9322. That is, the atomizer 91 and the battery 92 are arranged on both sides of the circuit board 932. In the vertical direction, the atomizer 91 is located above the circuit board 932, and the battery 92 is located below the circuit board 932.
  • the heating element pin 911 is inserted from the side close to the atomizer 91, that is, from the first surface 9321, into the second preset groove 933 and is fixed and electrically connected to the second preset groove 933 of the circuit board 932.
  • the battery 92 includes a first pole ear 9211 and a second pole ear 9212.
  • the first pole ear 9211 may be a positive electrode of the battery 92
  • the second pole ear 9212 may be a negative electrode of the battery 92.
  • the first pole ear 9211 and the second pole ear 9212 are located on the same end surface of the battery 92 and face the second surface.
  • the circuit board 932 is also provided with a first preset groove 934, and the first pole ear 9211 and the second pole ear 9212 are inserted and fixed in the first preset groove 934 from the second surface 9322. It can be understood that the heating element pin 911 and the pole ear 921 are inserted into the preset groove from the surfaces facing each other, which can facilitate the plug-in operation and effectively improve the compactness of the structure of the aerosol generating device 300.
  • first electrode tab 9211 and the second electrode tab 9212 are installed in the first preset groove 934 from the second surface 9322 , and the electrode tab 921 is fixed by hot pressing or welding on the first surface 9321 until it is conductively connected with the circuit board 932 .
  • the atomizer 91 and the battery 92 can also be arranged on the first surface 9321 facing the circuit board 932, that is, the atomizer 91 and the battery 92 are arranged on the same side of the circuit board 932. It can be understood that the battery 92 can be arranged below the atomizer 91, and the circuit board 932 is arranged on the right side of the atomizer 91 and/or the battery 92. In this case, the first surface 9321 is the side facing the atomizer 91 and/or the battery 92.
  • the atomizer 91 includes a housing 94, an oil storage assembly 95 and an atomizer 913 disposed in the housing 94.
  • the oil storage assembly 95 is used to store the atomizing medium
  • the atomizer 913 is used to heat the atomizing medium to form an aerosol.
  • the housing 94 has an inner cavity, and the oil storage assembly 95 is disposed in the inner cavity.
  • the housing 94 is generally cylindrical, and one end of the housing 94 is a suction nozzle for the user to suck, and the other end of the housing 94 is an opening.
  • the housing 94 can be formed of metal, plastic, ceramic, fiber composite material or other suitable materials or a combination of these materials.
  • the oil storage assembly 95 may include an oil cup 951 , a first sealing member 952 , and a second sealing member 953 .
  • the oil cup 951 is arranged in the inner cavity of the shell 94, and a first seal 952 is arranged at one end of the oil cup 951 close to the opening of the shell 94, and a second seal 953 is arranged at one end close to the suction nozzle of the shell 94.
  • the first seal 952 and the second seal 953 can be made of silicone, or can be made of rubber, plastic or other suitable materials, and can be used to seal the oil cup 951 to prevent the atomized medium in the oil cup 951 from flowing out.
  • the atomizing element 913 is disposed between the first sealing element 952 and the second sealing element 953 , and can be used to heat and atomize the atomizing medium in the oil cup 951 when the heating element pin 911 is energized.
  • the atomizer 913 includes an oil guide core 12 and a heating wire wound on the oil guide core.
  • the oil guide core can be a specific oil guide cotton core.
  • the heating element pin 911 is formed by extending the heating wire.
  • the circuit board 932 is arranged on the side of the first seal 952 away from the second seal 953; the first seal 952 is provided with a first through hole, and the heating element pin 911 passes through the first through hole and is in contact with the circuit board 932.
  • the heating wire can be spirally wound on the oil guide core 12.
  • the oil guide core 12 can absorb the atomizing medium to the surface of the heating wire, and the heated heating wire can heat the atomizing medium to atomize it to form an aerosol.
  • the circuit board 932 provides support for the heating element pin 911, so that the connection of the heating element pin 911 is more secure and not easy to fall off.
  • the circuit board 932 can be fixed to the housing 94. Since the atomizer 913 is arranged in the housing 94, the circuit board 932 is arranged on the housing 94, which can ensure that the movement of the circuit board 932 and the heating element pin 911 is relatively consistent, thereby further increasing the firmness of the connection of the heating element pin 911.
  • an oil absorbing member 96 is provided at one end of the battery 92 away from the pole ear 921.
  • the first pole ear 9211 and the second pole ear 9212 of the battery 92 are arranged on the same end surface, and the pole ear 921 of the battery 92 is connected to the circuit board 932 in a slot-type manner, the length of the aerosol generating device 300 can be effectively reduced.
  • an oil absorbing member 96 is provided at one end of the battery 92 away from the pole ear 921.
  • the oil absorbing member 96 can not only absorb the condensed liquid and mist formed by the atomized medium that is not completely atomized in the aerosol generating device 300, but also absorb the condensed liquid and mist formed by the atomized medium that is not completely atomized in the aerosol generating device 300.
  • the condensed aerosol formed by pre-cooling of the aerosol formed by the aerosol forming medium and the atomized medium accidentally leaked from the oil storage cotton can also ensure that the length of the aerosol generating device 300 remains unchanged.
  • Figure 31 is a schematic diagram of the three-dimensional structure of the control device in Figure 28.
  • a clamping strip 941 is provided on one end of the housing 94 close to the opening
  • a clamping hook 942 is provided on the clamping strip 941
  • a clamping slot 935 is provided on the edge of the circuit board 932
  • the clamping strip 941 passes through the clamping slot 935
  • the clamping hook 942 abuts against the end surface of the circuit board 932 away from the first sealing member 952, so that the circuit board 932 is fixed to the housing 94 by the clamping hook.
  • the aerosol generating device 300 further includes a transparent housing 97.
  • the atomizer 91, the battery 92, and the control device 93 are all disposed in the transparent housing. It is understood that the electronic atomizer 91, the battery 92, and the control device 93 are all connected by hard connection, and there are no wires in the aerosol generating device 300.
  • the aerosol generating device 300 uses a transparent housing 97, there is no confusing layout of wires, and the overall device is more beautiful.
  • the electronic atomization device includes three modules: a battery, a control device, and an atomizer.
  • the commonly used connection method for the three modules is to use wires to connect through soldering. Because the solder joints are not firm, when subjected to external force, shock, falling, etc., the solder joints are easy to fall off, causing the electronic atomization device to be broken, short-circuited, and other undesirable phenomena. And connecting through wires will consume a lot of time and cost in the manufacturing process; and the wires are cumbersome and unsightly. Therefore, the battery and the pins are electrically connected to the circuit board, and the atomizer is powered by the circuit board.
  • the battery and the pins are connected without wires, and the battery's pole ears are hard-connected through slots to realize the electrical connection of the parts, which can facilitate the connection automation.
  • an overall module can be formed, which is easy to organize and beautiful.
  • Figure 28 is a partially decomposed schematic diagram of an aerosol generation provided in the present application
  • Figure 29 is a schematic diagram of the assembled three-dimensional structure in Figure 28, which does not include the transparent shell
  • Figure 30 is a schematic diagram of the cross-sectional structure along the A-A direction in Figure 29.
  • an aerosol generating device 300 including an atomizer 91 , a battery 92 , and a control device 93 .
  • the atomizer 91 includes a heating element pin 911 , and the heating element pin 911 is electrically connected to the circuit board 932 , so that the atomizer 91 is powered by the circuit board 932 .
  • the battery 92 includes a tab 921 , and the control device 93 can supply power to the aerosol generating device 300 by connecting to the tab 921 , so that the circuit board 932 and the heating element pin 911 can work normally.
  • the control device 93 includes a conductively connected circuit board 932.
  • the transducer 931 can be used to sense changes in airflow or air pressure, and the circuit board 932 can have discharge and charge control functions, power supply protection control functions, and the like.
  • the circuit board 932 is provided with at least a first preset groove 934 .
  • the tab 921 is inserted and fixed in the first preset groove 934 and is conductively connected with the circuit board 932 .
  • the battery 92 and the heating element pin 911 are both electrically connected to the circuit board 932, and the atomizer 91 is powered by the circuit board 932.
  • the battery 92 and the heating element pin 911 are not connected by wires, and the tab 921 of the battery 92 is connected by a slot-type hard connection to realize the electrical connection of the parts, which can facilitate the connection automation.
  • no wire is used, and an integral module can be formed, which is easy to organize and beautiful.
  • the plug-in slot connection can make the connection between the parts more firm and not easy to fall off.
  • the circuit board 932 is further provided with a second preset groove 933, and the heating element pin 911 is inserted into the second preset groove 933 and is conductively connected to the circuit board 932. That is, the heating element pin 911 and the tab 921 are both connected by a plug-in slot, which can facilitate the positioning of the connection and increase the stability of the connection between the heating element pin 911 and the circuit board 932. Even when subjected to external force, shock, falling, etc., the connection between the heating element pin 911 and the circuit board 932 is not easy to fall off.
  • the use of a plug-in slot connection can facilitate connection automation and improve productivity.
  • the heating element pin 911 can also be directly connected to the surface of the circuit board 932, and an electrical connection device is provided on the surface of the circuit board 932, so that the circuit board 932 is connected to the electrical connection device and is electrically connected to the circuit board 932.
  • the electrical connection device can be a connection pin provided on the circuit board 932, a metal film provided on the circuit board 932, or an electrical contact point provided on the circuit board 932, as long as the heating element pin 911 can be connected to the electrical connection device on the surface of the circuit board 932, the circuit board 932 can be electrically connected to the atomizer 1. That is to say, in this embodiment, unlike providing a preset groove on the circuit board 932, by providing an electrical connection device on the surface of the circuit board 932, the preparation process of the circuit board 932 can be effectively reduced.
  • the battery 92 is a single-sided tab battery, and the battery 92 includes a first tab 9211 and a second tab 9212.
  • the first tab 9211 may be the positive electrode of the battery 92
  • the second tab 9212 may be the negative electrode of the battery 92.
  • the first tab 9211 and the second tab 9212 are located on the same end surface of the battery 92. It is understood that the first tab 9211 and the second tab 9212
  • the first pole ear 9211 and the second pole ear 9212 disposed on one end face of the battery 92 are disposed on opposite end faces of the battery 92 to facilitate plugging with the first preset groove 934 of the circuit board 932.
  • the first pole ear 9211 and the second pole ear 9212 can be disposed on the end face close to the atomizer 91 or on the end face away from the atomizer 91.
  • first preset slots 934 there are two first preset slots 934, and the first pole tab 9211 and the second pole tab 9212 are respectively inserted and fixed in the two first preset slots 934 from the same side. That is, the circuit board 932 is located on the same side of the first pole tab 9211 and the second pole tab 9212.
  • the battery 92 is arranged in a vertical direction
  • the first pole tab 9211 and the second pole tab 9212 are arranged on the upper end surface of the battery
  • the circuit board 932 is arranged above the pole tab 921, rather than between the first pole tab 9211 and the second pole tab 9212.
  • the circuit board 932 is disposed between the atomizer 91 and the battery 92 .
  • the circuit board 932 includes a first surface 9321 and a second surface 9322 that are oppositely disposed.
  • the atomizer 91 is disposed on the first surface 9321 facing the circuit board 932
  • the battery 92 is disposed on the second surface 9322 facing the circuit board 932 .
  • the first preset groove 934 and the second preset groove 933 penetrate the first surface 9321 and the second surface 9322 to form a through hole on the circuit board 932 .
  • the heating element pin 911 is inserted into the second preset groove 933 from the first surface 9321, and the first pole tab 9211 and the second pole tab 9212 are inserted into the first preset groove 934 from the second surface 9322. It can be understood that the heating element pin 911 and the pole tab 921 are inserted into the preset groove from the surfaces facing each other, which can facilitate the plug-in operation and effectively improve the compactness of the structure of the aerosol generating device 300.
  • the heating element pin 911 is installed in the second preset groove 933 from the first surface 9321, and the heating element pin 911 is fixed by heat pressing or welding on the second surface 9322 until it is conductively connected with the circuit board 932.
  • the first pole ear 9211 and the second pole ear 9212 are installed in the first preset groove 934 from the second surface 9322, and the pole ear 921 is fixed by heat pressing or welding on the first surface 9321 until it is conductively connected with the circuit board 932.
  • the circuit board 932 and the transducer 931 are integrally arranged, that is, the connection between the transducer 931 and the circuit board 932 is not electrically connected by wires, but by patch, hot pressing, welding, etc. It can be understood that patch, hot pressing, Welding is an optional method for connecting two components in the prior art.
  • the transducer 931 is fixedly mounted on the first surface 9321 or the second surface 9322. That is, the microphone head can be arranged on the side of the circuit board 932 close to the atomizer 91, or on the side close to the battery 92.
  • first preset groove 934 and the second preset groove 933 not only have the function of electrical connection, but also have the function of stabilizing the connection.
  • the first preset groove 934 and the second preset groove 933 are preferably arranged at the center of the circuit board 932, and the transducer 931 patch is arranged at the edge of the circuit board 932 and does not interfere with the pole ear 921 and the heating element pin 911 inserted in the first preset groove 934 and the second preset groove 933. In this way, the torque on the circuit board 932 can be reduced to ensure the stability of the connection.
  • the first preset groove 934 and the second preset groove 933 can be set to different shapes to facilitate the installation and positioning of the connection.
  • the first preset groove 934 can be a square groove
  • the second preset groove 933 can be a circular groove.
  • the circuit board 932 provides support for the heating element pin 911, making the connection of the heating element pin 911 more secure and not easy to fall off.
  • the circuit board 932 moves, which may easily cause the connection between the heating element pin 911 and the circuit board 932 to fall off, or the heating element pin 911 to break.
  • the circuit board 932 can be fixed on the atomizer 91.
  • the atomizer 91 includes a housing 94, an oil storage assembly 95 and an atomizer 913 disposed in the housing 94.
  • the oil storage assembly 95 is used to store the atomizing medium
  • the atomizer 913 is used to heat the atomizing medium to form an aerosol.
  • the relative position of the circuit board 932 and the housing 94 can be fixed. Since the atomizer 91 is disposed in the housing 94, the circuit board can ensure that the movement of the circuit board 932 and the heating element pin 911 is relatively consistent, thereby further increasing the firmness of the connection of the heating element pin 911.
  • the housing 94 has an inner cavity, and the oil storage assembly 95 is disposed in the inner cavity.
  • the housing 94 is generally cylindrical, and one end of the housing 94 is a suction nozzle for the user to suck, and the other end of the housing 94 is an opening.
  • the housing 94 can be formed of metal, plastic, ceramic, fiber composite material or other suitable materials or a combination of these materials.
  • the oil storage assembly 95 may include an oil cup 951, a first seal 952, and a second seal 953.
  • the oil cup 951 is disposed in the inner cavity of the housing 94, and the first seal 952 is disposed at one end of the oil cup 951 close to the opening of the housing 94, and the second seal 953 is disposed at one end of the oil cup 951 close to the suction nozzle of the housing 94.
  • the first sealing member 952 and the second sealing member 953 may be made of silicone, or may be made of rubber, plastic or other suitable materials, and may be used to seal the oil cup 951 to prevent the atomized medium in the oil cup 951 from flowing out.
  • the atomizer 913 is disposed between the first sealing member 952 and the second sealing member 953, and the heating member pin 911 is energized to heat and atomize the atomizing medium in the oil cup 951.
  • the heating member pin 911 is formed by extending a heating wire, and a first through hole is disposed on the first sealing member 952, and the heating member pin 911 passes through the first through hole and is electrically connected to the circuit board 932.
  • the atomizer 913 includes a liquid guide 912 and a heating wire wound on the liquid guide 912, and the material of the liquid guide 912 can be glass fiber or cotton.
  • the heating element pin 911 is extended by the heating wire.
  • the circuit board 932 is arranged on the side of the first sealing member 952 away from the second sealing member 953; the first sealing member 952 is provided with a first through hole, and the heating element pin 911 passes through the first through hole and contacts and connects with the circuit board 932.
  • Figure 31 is a schematic diagram of the three-dimensional structure of the control device in Figure 28.
  • a clamping strip 941 is provided on one end of the housing 94 close to the opening, and a clamping hook 942 is provided on the clamping strip 941.
  • a clamping groove 935 is provided on the edge of the circuit board 932. The clamping strip 941 passes through the clamping groove 935, and the clamping hook 942 abuts against the end surface of the circuit board 932 away from the first sealing member 952, so that the circuit board 932 is fixed to the housing 94 through the clamping hook 942.
  • the first pole ear 9211 and the second pole ear 9212 of the battery 92 are respectively arranged on the opposite end surfaces of the battery 92, and the circuit board 932 can be arranged in the direction from the first pole ear 9211 to the second pole ear 9212.
  • the first pole ear 9211 and the second pole ear 9212 are inserted and fixed in the first preset groove 934 from two directions, and the heating element pin 911 is inserted and fixed in the second preset groove 933 from the side facing the circuit board 932.
  • the volume of the circuit board 932 in this embodiment will be larger.
  • an oil absorbing member 96 is disposed on one end of the battery 92 away from the pole ear 921.
  • the first pole ear 9211 and the second pole ear 9212 of the battery 92 are disposed on the same end surface, and the pole ear 921 of the battery 92 is connected to the circuit board 932 in a slot-type manner, the length of the aerosol generating device 300 can be effectively reduced.
  • an oil absorbing member 96 is disposed on one end of the battery 92 away from the pole ear 921, which can not only absorb the condensed liquid formed by the atomized medium that is not completely atomized in the aerosol generating device 300, but also absorb the condensed liquid formed by the atomized medium in the aerosol generating device 300.
  • the condensed aerosol formed by pre-cooling of the generated aerosol and the atomized medium accidentally leaked from the oil storage cotton can also ensure that the length of the aerosol generating device 300 remains unchanged.
  • the aerosol generating device 300 further includes a transparent housing 97, and the atomizer 91, the battery 92, and the control device 93 are all arranged in the transparent housing 97.
  • the positional relationship of the atomizer 91, the battery 92, and the control device 93 can be the positional relationship in any of the above embodiments, which will not be repeated here. Since the battery 92 and the heating element pin 911 in the aerosol generating device 300 in the present application are not connected by wires, the parts inside the transparent housing 97 are assembled together in a module, and there is no confusing layout of the wires. The use of the transparent housing 97 can effectively increase the aesthetics and ornamentality of the aerosol generating device 300.

Landscapes

  • Disinfection, Sterilisation Or Deodorisation Of Air (AREA)

Abstract

一种电连接件(50)、连接组件(60)及装置(100),属于雾化装置领域。电连接件(50)包括第一连接部(51)和第二连接部(52),第一连接部(51)的一侧滑动设置有第一活动件(53),第一活动件(53)与第一连接部(51)弹性连接,第一连接部(51)靠近第二连接部(52)的一端为实心。通过将第一连接部(51)的其中一部分设置为实心的,使得雾化介质不会沿着第一活动件(53)与第一连接部(51)之间的间隙向下泄露。

Description

电连接件、连接组件及装置 技术领域
本申请涉及电子雾化装置领域,尤其是涉及一种电连接件、连接组件及装置。
背景技术
现有技术中,气溶胶产生装置中一般都会有电连接件,以电连接电源模组和雾化模组,使得电源模组为雾化模组供电。现有的电连接件的两侧加装弹簧等弹性件以使其具有一定活动及回弹性能,且有些电连接件为方便安装,其内部是中空的,气溶胶产生装置内的雾化介质可能会从电连接件内部向下流动,从而使得电源模组内部的方案板造成短路安全隐患。
发明内容
为解决上述技术问题,本申请提供一种电连接件,用于防止雾化介质从电连接件的第一活动件向下泄露。
本申请的一个方面:提供了一种电连接件,所述电连接件包括第一连接部和第二连接部,所述第一连接部的一侧滑动设置有第一活动件,所述第一活动件与所述第一连接部弹性连接,所述第一连接部靠近所述第二连接部的一端为实心。
本申请的一个方面:提供了一种气溶胶产生装置,包括上述的电连接件。
本申请的一个方面:提供了一种连接组件,用于电子雾化装置,所述连接组件包括:密封件,所述密封件上设置有盲孔;连接电极,所述连接电极的至少一部分插设于所述盲孔内,所述连接电极与所述盲孔过盈配合;所述连接电极插设于所述盲孔的一端用于与发热组件的引脚接触连接,以实现所述连接电极与所述发热组件电连接;所述连接电极的另一端用于与电池模组连接,以实现密封组件与电池模组电连接。
本申请的一个方面:提供了一种电子雾化装置,包括上述的连接组 件。
本申请的一个方面:提供了一种气溶胶生成装置,其包括雾化器、控制装置;所述控制装置包括导通连接的电路板及换能器,所述雾化器包括发热件引脚,所述发热件引脚与所述电路板连接。
本申请的有益效果是:相较于现有的电连接件,本申请提出的电连接件包括第一连接部和第二连接部,所述第一连接部的一侧滑动设置有第一活动件,所述第一活动件与所述第一连接部弹性连接,所述第一连接部靠近所述第二连接部的一端为实心。本申请通过将第一连接部的其中一部分设置为实心的,使得雾化介质不会沿着第一活动件与第一连接部之间的间隙向下泄露。
附图说明
为了更清楚地说明本申请实施例中的技术方案,下面将对实施例描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本申请的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图,其中:
图1为本申请电连接件的结构示意图;
图2为本申请图1所示实施例中电连接件另一视角的结构示意图;
图3为本申请图2所示实施例中电连接件的剖面示意图;
图4为本申请气溶胶产生装置的结构示意图;
图5为本申请气溶胶产生装置的爆炸结构示意图;
图6为本申请气溶胶产生装置另一视角的爆炸结构示意图;
图7为本申请气溶胶产生装置另一视角的结构示意图;
图8为本申请图7所示实施例中气溶胶产生装置的剖面示意图;
图9为本申请图1所示实施例中电源模组的结构示意图;
图10为本申请图1所示实施例中电源模组的另一视角的结构示意图;
图11为本申请图1所示实施例中电源模组的部分结构示意图;
图12为本申请图1所示实施例中电源模组的爆炸结构示意图;
图13为本申请图4所示实施例中雾化模组和抽吸部的爆炸结构示 意图;
图14是本申请一实施例的连接组件的结构示意图;
图15是本申请另一实施例的连接组件的结构示意图;
图16是图15所示实施例中连接组件另一角度结构示意图;
图17是图15所示实施例中连接组件由A-A的剖面结构示意图;
图18是本申请另一实施例的连接组件的剖面结构示意图;
图19是本申请一实施例的连接组件的部分结构示意图;
图20是本申请另一实施例的连接组件的结构示意图;
图21是图20所示实施例中连接组件的爆炸结构示意图;
图22是本申请另一实施例的连接组件的结构示意图;
图23是图22所示实施例中连接组件的爆炸结构示意图;
图24是图22所示实施例中连接组件由B-B的剖面结构示意图;
图25是图22所示实施例中连接组件另一剖面的剖面结构示意图;
图26是本申请一实施例的电子雾化装置的结构示意图;
图27是本申请图26所示的电子雾化装置的爆炸结构示意图;
图28是本申请提供的一种气溶胶生成装置的部分分解示意图;
图29是图28中的装配后的立体结构示意图,其中不包括透明外壳;
图30是图29中A-A向的剖面结构示意图;
图31是图28中控制装置的立体结构示意图。
具体实施方式
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。根据本申请中的实施例,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。
在本申请实施例的描述中,需要说明的是,除非另有明确的规定和限定,术语“相连”、“连接”应做广义理解,例如,可以是固定连接, 也可以是可拆卸连接,或一体连接;可以是机械连接,也可以是电连接;可以是直接相连,也可以通过中间媒介间接相连。对于本领域的普通技术人员而言,可以具体情况理解上述术语在本申请实施例中的具体含义。
在本申请实施例中,除非另有明确的规定和限定,第一特征在第二特征“上”或“下”可以是第一和第二特征直接接触,或第一和第二特征通过中间媒介间接接触。而且,第一特征在第二特征“之上”、“上方”和“上面”可是第一特征在第二特征正上方或斜上方,或仅仅表示第一特征水平高度高于第二特征。第一特征在第二特征“之下”、“下方”和“下面”可以是第一特征在第二特征正下方或斜下方,或仅仅表示第一特征水平高度小于第二特征。
目前,相关技术中,雾化模组和电源模组之间需要设置有电连接件,以将电源模组中的电力传递至雾化模组中,从而对雾化模组中的雾化介质进行雾化,最终形成气溶胶。电连接件一般是位于电源模组和雾化模组之间,雾化模组内的雾化介质可能会沿着雾化模组朝向电源模组流动,由于传统的气溶胶产生装置通常设有电连接件用以与雾化装置建立电性连接。同时,为确保电连接件与雾化装置的电极紧密贴合,因此,通常将电连接件的两侧加装弹簧等弹性件以使其具有一定活动及回弹性能,且有些电连接件为方便安装,其内部是中空的,气溶胶产生装置内的雾化介质可能会从电连接件内部向下流动,从而使得电源模组内部的方案板造成短路安全隐患。
请参阅图1、图2和图3,图1为本申请电连接件的结构示意图;图2为本申请图1所示实施例中电连接件另一视角的结构示意图;图3为本申请图2所示实施例中电连接件的剖面示意图。本申请公开了一种电连接件50,电连接件50包括第一连接部51和第二连接部52。第一连接部51的一侧滑动设置有第一活动件53。第一活动件53与第一连接部51弹性连接。第一连接部51靠近第二连接部52的一端为实心。第二连接部52远离第一连接部51的一侧滑动设置有第二活动件54,第二活动件54与第二连接部52弹性连接。
可以理解地是,第一连接部51和第二连接部52均为导电件,能够 传递电力。在第一连接部51远离第二连接部52的一侧滑动设置有第一活动件53,也就是说,第一活动件53是可以在第一连接部51内滑动的,且由于第一活动件53与第一连接部51之间是弹性连接的,故第一活动件53在被压缩后能够自动回弹,如此便能实现与电极或方案板的紧密接触。在一实施例中,第二活动件54与第二连接部52之间的连接关系与第一活动件53和第一连接部51之间的连接关系是一致的,此处不做赘述。
在本实施例中,第一连接部51与第一活动件53或第二连接部52与第二活动件54之间是通过弹簧连接的。在另外一个实施例中,第一连接部51与第一活动件53或第二连接部52与第二活动件54之间也可以是通过弹片、波纹管或其他合适的弹性元件连接。
第一连接部51和第二连接部52可以由铜、铁、金、银、铝或锌合金等材质制成,在本实施例中综合考虑材料导电性能、材料硬度、材料成本,优选铜材质。第一连接部51和第二连接部52的形状大体为圆柱状。
第一活动件53和第二活动件54也可以由铜、铁、金、银、铝或锌合金等材质制成,在本实施例中综合考虑材料导电性能、材料硬度、材料成本,优选铜材质。
为了防止雾化介质从第一活动件53和第一连接部51之间的间隙流动并从第二活动件54和第二连接部52之间的间隙流出,从而导致电源模组30中的方案板或其他零部件损坏。因此,本申请中,第一连接部51靠近第二连接部52的一侧为实心设置,也就是说,第一活动件53和第二活动件54之间是被隔离开的,若雾化介质流动至第一活动件53和第一连接部51之间的间隙中,也不会继续向下流动。为了使得本申请能够节省重量,节省成本,节省材料,故只将第一连接部51靠近第二连接部52的一侧设置为实心。
在另外一实施例中,第一连接部51和第一活动件53之间也可以不是滑动连接,而是第一活动件53本身具有一定的弹性,可以保证第一活动件53与电极或方案板之间进行紧密接触。
在另外一实施例中,第二连接部52和第二活动件54之间也可以不是滑动连接,而是第二活动件54本身具有一定的弹性,可以保证第二活动件54与电极或方案板之间进行紧密接触。
请继续参阅图3,第一连接部51远离第一活动件53的一端开设有连接槽56,第二连接部52部分设置于连接槽56内。具体地,连接槽56的形状可以是圆形的,也可以是方形或者是其他形状,此处不做具体限定。第二连接部52朝向第一连接部51的部分结构位于该连接槽56内,也就是说,并不是第二连接部52所有部分均位于连接槽56内,而是第二连接部52的一部分位于连接槽56内。
由于将整个电连接件50分为第一连接部51和第二连接部52设置,在装配的过程中,组装方便且稳定性高。在一实施例中,第一连接部51和第二连接部52之间可以采用激光焊接,两者之间无缝隙,不会影响其导电效果。在另外一个实施例中,第一连接部51和第二连接部52之间还可以通过卡接、粘接或其他合适的方式连接。
第一连接部51远离第二连接部52一端可以具有环状凸缘55。可以理解地是,第一连接部51的半径大于第二连接部52的半径,在雾化介质泄露时可以起到阻碍的作用,并能够便于电连接件50的安装。
请参阅图4、图5、图6、图7和图8,图4为本申请气溶胶产生装置的结构示意图;图5为本申请气溶胶产生装置的爆炸结构示意图;图6为本申请气溶胶产生装置另一视角的爆炸结构示意图;图7为本申请气溶胶产生装置另一视角的结构示意图;图8为本申请图7所示实施例中气溶胶产生装置的剖面示意图。本申请公开了一种气溶胶产生装置100,该气溶胶产生装置100可以包括为中空的管状结构的壳体10、设置于壳体10一侧的抽吸部20、设置于壳体10远离抽吸部20的一侧电源模组30和设置于抽吸部20内的雾化模组40。其中,电源模组30靠近雾化模组40的一端设置有两个上述的电连接件50,电连接件50一端与雾化模组40电连接,电连接件50另一端与电源模组30电连接。
壳体10为中空结构,其内具有容纳腔体。壳体10大致可以为圆柱状,也可以为其他合适的形状,例如方形或其他合适的形状。壳体10 可以由金属(铝或铁等)、陶瓷、纤维复合材料或其它合适的材料或这些材料的组合形成。
抽吸部20可以包括抽吸部本体201和连接板202。抽吸部本体201可以分为扁平状的抽吸口2010和圆柱状的安装部2011,其中,抽吸口2010用于放置在用户的口中,供用户进行抽吸,而安装部2011则整体位于壳体10内,用于安装雾化模组40。连接板202设置于抽吸部本体201靠近电源模组30的一侧。连接板202可以为板状结构,其为硬质材料制成,且连接板202为绝缘材料制成。
连接板202的边缘部分设置有多个卡接部2020。相对应的,抽吸部本体201靠近连接板202的一侧开设有多个卡接孔203。卡接部2020具有一定的弹性,在安装的过程中,当雾化模组40均安装在抽吸部本体201内后,将连接板202通过卡接部2020与卡接孔203的配合固定在抽吸部本体201上,从而使得整个雾化模组40和抽吸部20为整体结构,方便后续的装配。连接板202上开设有进气孔205,进气孔205可以在连接板202的中心位置。在另外一个实施例中,进气孔205也可以在连接板202的其他位置。抽吸部本体201上设置有出气孔204。
在本实施例中,连接板202上设置有第一电极206和第二电极207,第一电极206与其中一个电连接件50连接,第二电极207与另一个电连接件50连接。由于第一活动件53与第一连接部51之间是弹性连接的,在电源模组30安装的过程中,在第一活动件53与第一电极206或第二电极207接触之后,会继续将安装架301向内推动,使得第一活动件53与第一连接部51之间的弹性元件被压缩,如此,第一活动件53便能与第一电极206或第二电极207紧密接触,使得电连接件50的导电性能更佳。
请参阅图9、图10和图11,图9为本申请图1所示实施例中电源模组的结构示意图;图10为本申请图1所示实施例中电源模组的另一视角的结构示意图;图11为本申请图1所示实施例中电源模组的部分结构示意图。电源模组30可以包括安装架301、电芯302和方案板303。其中,安装架301与壳体10远离雾化模组40的一侧过盈连接。安装架 301上开设有安装槽304,安装槽304内放置有电芯302。安装架301两侧设置有方案板303,两个方案板303分别与电芯302的正负极通过导线连接,两个方案板303之间也通过。进一步地,两个方案板303之间也通过导线连接。靠近雾化模组40一侧的方案板303上开设有第二通孔3031。
请参阅图3和图12,图12为本申请图1所示实施例中电源模组的爆炸结构示意图。进一步地,安装架301上靠近连接板202的一端可以设置有两个电连接件50。电连接件50可以通过铆接的方式与安装架301连接,也可以通过过盈连接的方式与安装架301连接。由于电连接件50与连接板202之间是存在间隙的,故雾化模组40内的雾化介质也会通过该间隙向电源模组30泄露,从而导致电源模组30内的方案板303或电芯302受到浸染,并容易导致损坏。故在第一连接部51远离第二连接部52的一端具有环状凸缘55。该环状凸缘55的设置不仅可以方便电连接件50的安装,且在雾化介质沿着电连接件50与连接板202之间的间隙向下泄露时,由于环状凸缘55的存在,雾化介质流动的路径加长,使得雾化介质不容易向下泄露。
进一步地,安装架301靠近雾化模组40的一侧开设有储液槽3010,用于储存雾化模组40泄露的雾化介质。可以理解地是,当雾化模组40内的雾化介质掉落时,雾化介质会掉落在储液槽3010内,从而将雾化介质进行储存,防止雾化介质继续掉落至电源模组30内,从而对电芯302、方案板303或其他零件造成损害。
安装架301靠近雾化模组40的一侧还可以设置有突出部3011。相对应地,连接板202上开设有定位孔208。在一实施例中,突出部3011的数量为一个,定位孔208的数量为两个。在电源模组30进行安装时,可以直接将电源模组30推入壳体10中,然后转动电源模组30,在突出部3011和任意一个定位孔208相对应后,再次将电源模组30向内推动便能实现本申请的快速安装。
安装架301远离抽吸部20一侧可以设置有进气口3012,外界的空气可以从进气口3012进入壳体10内部。电源模组30还可以包括咪头 305和咪头硅胶306,咪头305设置在安装架301远离抽吸部20的一侧,咪头305位于靠近进气口3012一侧的方案板303上,且该咪头305朝向进气口3012设置。也就是说,当空气从外界进入壳体10内时,会先流经咪头305,咪头305感应到气流的流量或气压达到预设的阈值后,咪头305会控制电路连通,以使电芯302处的电力传递至雾化模组40处,供雾化模组40对雾化介质进行雾化。咪头硅胶306设置于咪头305外侧。安装架301靠近雾化模组40的一侧可以设置有第一通孔3013,以便于从进气口3012进入的空气向雾化模组40流动。
在一实施例中,电源模组30还可以包括多个磁性件307,磁性件307设置于安装架301靠近抽吸部20的一侧。磁性件307用于与雾化模组40产生磁吸力,以将电源模组30固定于壳体10内。
在另外一个实施例中,磁性件307可以省略,安装架301与壳体10过盈连接,以将电源模组30固定于壳体10内。
请参阅图13,图13为本申请图4所示实施例中气溶胶产生装置的剖面示意图。雾化模组40可以包括设置于抽吸部20内的储油件401、设置于储油件401内侧的发热件402和设置于储油件401两侧的密封件403。雾化模组40设置在抽吸部20内。
具体地,用户在使用本申请时,抽吸部20是紧紧设置在壳体10内的,一般情况下,抽吸部20和雾化模组40是不能被用户取下的。由于本申请属于一次性气溶胶产生装置100,在雾化模组40中的雾化介质使用完之后,会直接将整个气溶胶产生装置100丢弃。基于对环境的保护,节约资源,一般厂商会对气溶胶产生装置100进行回收,此时可以通过特别的方式将雾化模组40整个取下,使得雾化模组40、电源模组30和壳体10分离,便于回收利用。
储油件401可以包括具有储油腔的储油杯4010和设置于储油腔内且用于储油雾化介质的储油棉4011。储油棉4011中心处开设有气流通道4012。储油杯4010可以为两端具有开口的圆柱状。储油杯4010位于抽吸部20内,且与抽吸部20内壁紧密接触。储油杯4010可以由塑料、纤维复合材料或其它合适的材料或这些材料的组合形成。储油棉4011 的形状为圆柱状,其位于储油杯4010的储油腔内。储油棉4011的材质可以是无纺布、一体棉或者PLA纤维,储油棉4011具有极好的吸附效果,雾化介质储存在储油棉4011内。
储油棉4011中部设置有气流通道4012,抽吸部本体201上的出气孔204和连接板202上的出气孔204均与气流通道4012连通。连接板202上还可以设置有第一电极206和第二电极207,用于与电连接件50紧密接触,便于电源模组30上的电力传递至雾化模组40处。
发热件402可以包括设置于储油棉4011内气流通道4012的中心管4020、设置于中心管4020内的导油体4021和设置于导油体4021内的发热体4022,其中,中心管4020为中空的圆管状。中心管4020的形状与储油棉4011的气流通道4012相适配,中心管4020的外壁与储油棉4011紧密贴合。中心管4020可以由耐热的材料制成,例如金属(铝或铁等)、陶瓷、纤维复合材料或其它合适的材料或这些材料的组合。
导油体4021可以包括圆柱状的本体部4024和延伸部4025。其中本体部4024完全位于中心管4020内。延伸部4025穿过中心管4020与储油棉4011接触。或延伸部4025位于储油棉4011内,也就是说,储油棉4011内可以开设有容纳延伸部4025的槽。延伸部4025的作用是能够加大与储油棉4011的接触面积,能够更好地进行雾化介质的传递。导油体4021的材料可以是医用脱脂棉、有机棉、纤维棉或其他合适的材料。
发热体4022可以是发热丝,也可以是发热网。发热体4022上设置有两个引脚4023,两个引脚4023分别与连接板202上的第一电极206和第二电极207电连接。发热体4022可以由耐热性较好的金属材料制成。
具体地,第一电极206和第二电极207与连接板202之间均具有很小的间隙,在安装的过程中,可以将引脚4023安装在间隙内,之后再将第一电极206和第二电极207铆接在连接板202上,如此便能实现引脚4023与第一电极206和第二电极207之间的电连接。
密封件403可以包括上硅胶4030和下硅胶4031。上硅胶4030设置于储油杯4010靠近出气孔204的一侧。在上硅胶4030远离下硅胶4031 的一侧可以开设有放置槽4033,该放置槽4033内设置有吸油体4034,用于吸收未完全雾化的雾化介质,也可以防止冷凝液的回流。吸油体4034的材料可以是医用脱脂棉、有机棉、纤维棉或其他合适的材料。下硅胶4031设置于储油杯4010远离出气孔204的一侧。上硅胶4030和下硅胶4031中心均开设有第三通孔4032。第三通孔4032与气流通道4012相连通。
本申请中的电连接件50包括第一连接部51和第二连接部52,所述第一连接部51的一侧滑动设置有第一活动件53,所述第一活动件53与所述第一连接部51弹性连接,所述第一连接部51靠近所述第二连接部52的一端为实心。通过将第一连接部51的其中一部分设置为实心的,使得雾化介质不会沿着第一活动件53与第一连接部51之间的间隙向下泄露。
相关技术中,电子雾化装置包括有雾化组件,其中雾化组件主要包括有盛放雾化介质的储油仓、将雾化介质雾化的雾化芯组件和烟嘴组件,雾化介质在雾化芯内形成的烟雾,通过烟嘴组件供吸食者吸入。
然而,电子雾化装置在平日携带、长途运输过程或者长时间不使用时,由于咪头和电芯之间通过导线焊接连通,再把导线拉到上部和雾化芯组件的发热丝引脚焊接;导线连接比较脆弱;很容易在受到外力作用的时候,导致导线焊点脱离连接,造成断路。因此,通过连接组件的设置,使雾化组件与电池模组之间的连接更稳定,不易断裂和产生接触不良的情况;同时也对发热丝发热组件起到保护作用,防止发热丝发热组件在安装或者运输过程中发生变形,影响发热丝发热组件正常工作。
请参阅图14、图15、图16和图17,图14是本申请一实施例的连接组件的结构示意图,图15是本申请另一实施例的连接组件的结构示意图,图16是图15所示实施例中连接组件另一角度结构示意图,图17是图15所示实施例中连接组件由A-A的剖面结构示意图。
在一些实施例中,连接组件60包括:密封组件70,密封组件70上设置有第一盲孔61和第二盲孔62;第一连接电极68和第二连接电极69,第一连接电极68和第二连接电极69的至少一部分别分插设于第一 盲孔61和第二盲孔62内,第一连接电极68和第二连接电极69分别与第一盲孔61和第二盲孔62过盈配合;第一连接电极68和第二连接电极69插设于第一盲孔61和第二盲孔62的一端用于与发热组件71的两个引脚接触连接,以实现第一连接电极68和第二连接电极69与发热组件71电连接;第一连接电极68和第二连接电极69远离密封组件70的另一端用于与电池模组连接,以实现密封组件70与电池模组电连接。
在一些实施例中,密封组件70上还设置有第一连通孔63和第二连通孔64,第一连通孔63和第二连通孔64与第一盲孔61和第二盲孔62连通,发热组件71的两个引脚分别从第一连通孔63和第二连通孔64的一端插入第一连通孔63和第二连通孔64,并分别在第一连通孔63和第二连通孔64的另一端与第一连接电极68和第二连接电极69接触连接。
请参阅图14和图18,图18是本申请另一实施例的连接组件的剖面结构示意图。
在一些实施例中,密封组件70与发热组件71一体注塑成型,发热组件71的两个引脚分别从密封组件70穿入第一盲孔61和第二盲孔62,以实现发热组件71的两个引脚与插设于第一盲孔61和第二盲孔62中的第一连接电极68和第二连接电极69的接触连接。
请参阅图19,图19是本申请一实施例的连接组件的部分结构示意图。
在一些实施例中,连接电极包括第一导电部681和第二导电部682,第一导电部681用于与发热组件71连接,第二导电部682用于与电池模组连接;连接电极的第一导电部681和第二导电部682之间沿连接电极的周向设置有凸出部683,凸出部683方便第一导电部681和第二导电部682的安装和拆卸。第二连接电极69与第一连接电极68的结构及尺寸相同,此处不再赘述。
可以理解的是,安装和拆卸一方面是指第一导电部681插设于密封组件70的第一盲孔61,以及第一导电部681从密封组件70的第一盲孔61拔出;另一方面是指第二导电部682插设于电池模组,以及第二导电 部682从电池模组中拔出。凸出部683的存在可以对第一导电部681以及第二导电部682的插入深度进行限定,不会导致第一导电部681以及第二导电部682的插入深度过深,或者第一导电部681或第二导电部682的一端出入过深而另一端的插入过浅,当第一连接电极68和第二连接电极69互相配合的时候,就不会出现两个电极的插入深浅程度不一致的情况。因此,凸出部的存在可以使电极之间的配合更方便和高效。
请参阅图15、图20和图21,图20是本申请另一实施例的连接组件的结构示意图,图21是图20所示实施例中连接组件的爆炸结构示意图。
在一些实施例中,密封组件70用于密封雾化组件80,即密封组件70远离第一连接电极68和第二连接电极69的一端插设于雾化组件80靠近密封组件70的一端。在雾化组件80中,发热组件71外周设置有导油体,导油体设置于储油棉体630和发热组件71之间,导油体插设于连通管620上,插设有导油体的连通管620穿设于发热组件支架610上,套设有发热组件支架610的连通管620穿设于储油棉体630的内部,储油棉体630插设安装于储油杯体640的内部。在雾化组件80远离连接组件60的一端还设置有储油杯密封盖650。雾化组件80远离储油杯密封盖650的一端由连接组件60密封,具体为连接组件60中的密封组件70密封,密封组件70远离第一连接电极68和第二连接电极69的一端与储油杯体640靠近密封组件70的一端过盈配合。
可以理解的是,导油体可以是导油棉。
在一些实施例中,密封组件70还包括第一延伸部66和第二延伸部67,第一延伸部66和第二延伸部67设置于密封组件70靠近第一连接电极68和第二连接电极69的第二导电部的一侧,第一延伸部66和第二延伸部67平行设置,第一延伸部66和第二延伸部67形成一个延伸部通槽72。
在一些实施例中,连接组件60的密封组件70的中部位置设置有连接组件通孔65,连接组件通孔65连通延伸部通槽72与连接组件60远离第一延伸部66和第二延伸部67的一侧,即连接组件通孔65贯穿密 封组件70。
可以理解的是,中部位置指的是一个靠近表面形状几何中心的区域。
在一些实施例中,连接组件60包含连接电极的数量为两个,分别为第一连接电极68和第二连接电极69;第一连接电极68和第二连接电极69相邻设置于第一延伸部66和第二延伸部67之间;第一连接电极68和第二连接电极69分别位于连接组件通孔65的两侧;第一延伸部66和第二延伸部67与第一连接电极68和第二连接电极69沿连接组件通孔65的周向设置于连接组件通孔65的外围。
请参阅图22、图23、图24和图25,图22是本申请另一实施例的连接组件的结构示意图,图23是图22所示实施例中连接组件的爆炸结构示意图,图24是图22所示实施例中连接组件由B-B的剖面结构示意图,图25是图22所示实施例中连接组件另一剖面的剖面结构示意图。
在一些实施例中,连接组件60远离雾化组件80的一端插设于电池模组81靠近连接组件60的一端,具体为第一延伸部66和第二延伸部67与电池模组81的容置连接槽830过盈配合。第一延伸部66和第二延伸部67连接固定于电池模组81上,可以连接固定连接组件60和电池模组81,同时对电池模组81有定位的作用,方便连接组件60和电池模组81的安装和拆卸。
连接组件60包括密封组件70,密封组件70上设置有第一盲孔61和第二盲孔62;连接组件60上还设置有第一连接电极68和第二连接电极69,第一连接电极68和第二连接电极69远离电池模组81的一端分别插设于第一盲孔61和第二盲孔62内。第一连接电极68和第二连接电极69远离电池模组81的一端分别与第一盲孔61和第二盲孔62过盈配合;第一连接电极68和第二连接电极69插设于第一盲孔61和第二盲孔62的一端用于与雾化组件的发热组件接触连接,以实第一连接电极68和第二连接电极69与发热组件电连接。第一连接电极68和第二连接电极69远离雾化组件的一端用于与电池模组81连接,以实现连接组件60与电池模组81电连接。
在一些实施例中,请结合图23,密封组件70上还设置有第一连通 孔63和第二连通孔64,发热组件的两个引脚分别穿过第一连通孔63和第二连通孔64与第一连接电极68和第二连接电极69接触连接,以实现雾化组件80与第一连接电极68和第二连接电极69的电连接。
在一些实施例中,密封组件70还包括第一延伸部66和第二延伸部67,第一延伸部66和第二延伸部67设置于密封组件70靠近电池模组81的一侧,第一延伸部66和第二延伸部67之间形成一个延伸部通槽。
在一些实施例中,密封组件70的中部位置设置有连接组件通孔65,连接组件通孔65连通延伸部通槽与密封组件70远离电池模组81的一侧。
在一些实施例中,电池模组81的容置连接槽830内设置有气孔840,气孔840靠近连接组件60的一侧设置有延长部,延长部高于容置连接槽830的底面,延长部用于防止雾化介质和冷凝液回流到电池模组81内部。
请参阅图23、图26和27,图26是本申请一实施例的电子雾化装置的结构示意图,图27是本申请图26所示的电子雾化装置的爆炸结构示意图。
在一些实施例中,电子雾化装置200包括连接组件60;还包括:外壳体83、电池模组81、雾化组件80和吸嘴82;电池模组81和雾化组件80固定安装在外壳体83内;连接组件60的密封组件70中的延伸部插设于电池模组81,延伸部与电池模组81过盈配合;其中,电池模组81靠近连接组件60的一端设置有第一电极固定通孔810和第二电极固定通孔820,连接组件60的第一连接电极68和第二连接电极69的至少一部分分别穿设固定于第一电极固定通孔810和第二电极固定通孔820,第一连接电极68和第二连接电极69的第二导电部分别与第一电极固定通孔810和第二电极固定通孔820过盈配合;通过延伸部与电池模组81上的容置连接槽830过盈配合,以及第一连接电极68和第二连接电极69的第二导电部分别与第一电极固定通孔810和第二电极固定通孔820过盈配合,实现电池模组81和连接组件60的固定连接;吸嘴82安装在雾化组件80远离电池模组81的一端。
在一些实施例中,第一连接电极68和第二连接电极69上设置有弹性部件,第一连接电极68和第二连接电极69与电池模组81接触连接,即当电池模组81靠近第一连接电极68和第二连接电极69的一端设置有电路板,且电路板上设置有电极连接点时,第一连接电极68和第二连接电极69与电池模组81可以接触连接,具体为第一连接电极68和第二连接电极69远离雾化组件80的一端与电路板上的电极连接点接触连接。
可以理解的是,当电池模组81包含的电池为单边双极耳电池(即电池的正负极设于电池的同一边)时,第一连接电极68和第二连接电极69可以与电池模组81中电池的正负极分别接触连接,以实现电连接;另外,第一连接电极68和第二连接电极69与电池模组81也可以通过用导线连接。还可以理解的是第一连接电极68和第二连接电极69与上述电连接件50结构相同。
在上述实施例中,电子雾化装置200中,通过连接组件60的设置,使雾化组件80与电池模组81之间的连接更稳定,连接不易断裂和产生接触不良的情况;同时也对发热组件起到保护作用,防止发热组件在安装或者运输过程中发生变形,影响发热组件正常工作。通过连接组件60的设置,使雾化组件80和电池模组81之间的安装和拆卸更佳方便。
区别于现有技术,本申请实施例中的电子雾化装置为一次性电子烟,实施例中描述的可拆卸方案主要是针对厂家回收时拆卸的方案设计,一般不建议也不需要用户自行拆卸电子烟。
相关技术中,电子雾化装置包括电池、控制装置及雾化器三大模组,现有技术中三大模组常用的连接方式都是使用导线通过锡焊连接。其中,发热丝延伸下来的引脚,直接和电芯和电路板之间通过导线直接焊接导通。由于发热丝的引脚线材一般为镍材质,并且很细,导线的材质为铜,同样很细,连接处很容易出现脱落的情况,在受到外力,震荡,跌落等情况时,焊点容易脱落,造成电子雾化装置断路、短路等不良的现象。且通过导线进行连接,在制造过程中会耗费大量的时时间和成本;且导线规整麻烦,不美观。因此,通过将引脚与电路板接触连接可以通过电 路板为雾化器供电,无需导线连接,且可通过电路板为引脚提供支撑,使得引脚的连接更牢固,不易脱落。另外不采用导线连接,还可提高生产制备效率。
请参阅图28、图29和图30,图28是本申请提供的一种气溶胶生成装置的部分分解示意图;图29是图28中的装配后的立体结构示意图,其中不包括透明外壳;图30是图29中A-A向的剖面结构示意图。
本申请的一个方面,提供了一种气溶胶生成装置300包括雾化器91及控制装置93。
控制装置93包括导通连接的换能器931及电路板932。其中,换能器931可用于感测气流或气压的变化,电路板932可以具有放充电控制功能、电源保护控制功能等。
雾化器91包括发热件引脚911,且发热件引脚911与电路板932连接,从而通过电路板932为雾化器91供电。优选的,发热件引脚911与电路板932接触连接。也即发热件引脚911直接连接在电路板932上,从而通过电路板932为雾化器91供电,且电路板932还可为发热件引脚911提供支撑。
由此,本申请中,通过将发热件引脚911与电路板932接触连接,以通过电路板932为雾化器91供电,无需导线连接,且可通过电路板932为发热件引脚911提供支撑,使得发热件引脚911的连接更牢固,不易脱落。另外不采用导线连接,还可提高生产制备效率。
可以理解的是,为了更好的实现电路板932在与发热件引脚911连接时,为发热件引脚911提供支撑,在一些实施例中,电路板932设有第二预设槽933,发热件引脚911插入并固定在第二预设槽933内,并与电路板932导通连接。由此,当发热件引脚911插入并固定在第二预设槽933内,第二预设槽933不仅具备有电连接的作用,还有连接稳固的作用。即使在受到外力,震荡,跌落等情况时,发热件引脚911与电路板932的连接也不易脱落。
可选的,在一些实施例中,电路板932表面设置有电连接装置,发热件引脚911与电连接装置连接,并与电路板932导通连接。其中电连 接装置可以是设置在电路板932上的连接脚,可以是设置在电路板932上的金属薄膜,还可以是设置在电路板932上的电接触点,只要能够实现发热件引脚911与电路板932表面的电连接装置连接后能将电路板932与雾化器91电连接即可。也就是说,在该实施例中,与在电路板932上设置预设槽不同,通过在电路板932表面上设置电连接装置,可以有效的减少电路板932的制备流程。
在一些具体的实施例中,换能器931固定安装在电路板932上,且换能器931固定安装在第二预设槽933的外侧。其中,换能器931与电路板932一体设置,也即换能器931与电路板932之间的连接也不采用导线的方式进行电连接,采用贴片、热压、焊接等方式连接。可以理解的是,贴片、热压、焊接均是现有技术中将两零部件进行连接的可选方式。
优选的,第二预设槽933设置在电路板932的中心部位,换能器931固定安装在电路板932的边缘部位并不与插入并固定在第二预设槽933的发热件引脚911发生干涉。由此可减小电路板932所受的力矩,保证连接的稳固性。
在一些具体的实施例中,电路板932包括相对设置的第一面9321和第二面9322,第二预设槽933贯穿第一面9321和第二面9322。也即在电路板932上设置的第一预设槽934和第二预设槽933为通槽。
换能器931贴片安装在第二面9322,发热件引脚911从第一面9321插固在第二预设槽933内。也即,发热件引脚911和换能器931与电路板932的连接方向相反。
在一些具体的实施例中,发热件引脚911从第一面9321安装在第二预设槽933内,并在第二面9322热压固定或焊接固定发热件引脚911至与电路板932导通连接。也就是说,雾化器91的发热件引脚911与换能器931位于同侧,并在发热件引脚911插入面的相对面对其进行热压固定或焊接。
在一些具体的的实施例中,气溶胶生成装置300还包括电池92,电池92可与电路板932电连接,从而为电路板932及雾化器91供电。
其中,雾化器91设置在面向第一面9321,电池92设置在面向第二面9322。也即雾化器91和电池92设置在电路板932的两侧,在竖直方向上来看,雾化器91位于电路板932的上方,电池92位于电路板932的下方。发热件引脚911从靠近雾化器91的一面,也即从第一面9321插入到第二预设槽933固定且电连接在电路板932的第二预设槽933内。
在一些更为具体的实施例中,电池92包括第一极耳9211和第二极耳9212。其中,第一极耳9211可以为电池92的正极,第二极耳9212可以为电池92的负极。第一极耳9211和第二极耳9212位于电池92的同一端面上且面向第二面。
电路板932上还设置有第一预设槽934,第一极耳9211和第二极耳9212从第二面9322插固在第一预设槽934。可以理解的是,发热件引脚911和极耳921从各自面向的面插设在预设槽中,可以便于插接操作,且还可有效的提高气溶胶生成装置300结构的紧凑性。
可以理解的是,第一极耳9211和第二极耳9212从第二面9322安装在第一预设槽934内,并在第一面9321热压固定或焊接固定极耳921至与电路板932导通连接。
需要说明的是,雾化器91和电池92还可均设置在面向电路板932的第一面9321,也即雾化器91和电池92设置在电路板932的同侧。可以理解的是,电池92可设置在雾化器91的下方,电路板932设置在雾化器91和/或电池92的右侧,此时第一面9321为面向雾化器91和/或电池92的一面。
在一些实施例中,雾化器91包括外壳94及设置在外壳94内的储油组件95和雾化件913。其中,储油组件95用于储存雾化介质,雾化件913用于将雾化介质加热形成气溶胶。
外壳94具有内腔,储油组件95设置于内腔中。外壳94大致为圆柱体,外壳94一端为供使用者抽吸的吸嘴,外壳94另一端为开口。外壳94可以由金属、塑料、陶瓷、纤维复合材料或其它合适的材料或这些材料的组合形成。
储油组件95可以包括油杯951、第一密封件952、第二密封件953。 油杯951设置在外壳94的内腔中,且油杯951靠近外壳94开口的一端设置有第一密封件952,靠近外壳94吸嘴的一端设置有第二密封件953,第一密封件952和第二密封件953可以由硅胶制成,也可以由橡胶、塑胶或其他合适的材料制成,可用于对油杯951进行密封,防止油杯951中的雾化介质向外流出。
雾化件913设置在第一密封件952和第二密封件953之间,可用于在发热件引脚911通电对油杯951中的雾化介质进行加热雾化。
在一些具体的实施例中,雾化件913包括导油芯12及缠绕在导油芯上的发热丝。导油芯具体可以为导油棉芯。其中,发热件引脚911由发热丝延伸而成。电路板932设置在第一密封件952远离第二密封件953的一侧;第一密封件952上设置有第一通孔,发热件引脚911穿过第一通孔并与电路板932接触连接。
发热丝可螺旋缠绕在导油芯12上。导油芯12可以将雾化介质吸到发热丝的表面,由此加热的发热丝可加热雾化介质使之雾化以形成气溶胶。
可以理解的是,当发热件引脚911与电路板932接触连接,其电路板932为发热件引脚911提供支撑,使得发热件引脚911的连接更牢固,不易脱落。但是,仍然存在电路板932发生移动的情况下,容易导致发热件引脚911与电路板932的连接脱落,或者发热件引脚911断裂。因此,可将电路板932固定在外壳94上,由于雾化件913设置在外壳94内,所以将电路板932设置在外壳94上,可以保证电路板932与发热件引脚911的运动较为一致,从而进一步增加发热件引脚911连接的牢固性。
在一些实施例中,电池92远离极耳921的一端侧设置有吸油件96。当电池92的第一极耳9211和第二极耳9212设置在同一端面上,且电池92的极耳921与电路板932采用插槽式的方式连接,可有效的减小气溶胶生成装置300的长度,为了保证气溶胶生成装置300的可适配性,在电池92远离极耳921的一端侧设置有吸油件96,吸油件96不仅可以吸收气溶胶生成装置300内的未雾化完全的雾化介质形成的冷凝液、雾 化介质形成的气溶胶预冷形成的冷凝气溶胶、储油棉中不慎泄漏的雾化介质,还可以保证气溶胶生成装置300的长度不变。
请参阅图29和图31,图31是图28中控制装置的立体结构示意图。在一些实施例中,外壳94靠近开口的一端上设置有卡条941,卡条941上设置有卡钩942,电路板932的边缘上设置有卡槽935,卡条941穿过卡槽935,且卡钩942与电路板932远离第一密封件952的端面抵接,从而通过卡钩将电路板932固定在外壳94上。
在一些实施例中,气溶胶生成装置300还包括透明外壳97。其中,雾化器91、电池92及控制装置93均设置在透明外壳内。可以理解的是,电子雾化器91、电池92及控制装置93都通过硬连接的方式进行连接,气溶胶生成装置300内没有导线。当气溶胶生成装置300采用透明外壳97时,不存在导线混乱不清的布局,整体设备更美观。
相关技术中,电子雾化装置包括电池、控制装置及雾化器三大模组,现有技术中三大模组常用的连接方式都是使用导线通过锡焊连接。由于焊点不牢固,在受到外力,震荡,跌落等情况时,焊点容易脱落,造成电子雾化装置断路、短路等不良的现象。且通过导线进行连接,在制造过程中会耗费大量的时间和成本;且导线规整麻烦,不美观。因此此,将电池和引脚均与电路板电连接,通过电路板为雾化器供电,电池和引脚无导线连接,且电池的极耳通过插槽式硬连接实现零件的电连接,可便于连接自动化,另外不采用导线,可形成整体模组,易整理且美观。
参照图28、图29和图30,图28是本申请提供的一种气溶胶生成的部分分解示意图;图29是图28中的装配后的立体结构示意图,其中不包括透明外壳;图30是图29中A-A向的剖面结构示意图。
本申请的一个方面,提供了一种气溶胶生成装置300包括雾化器91、电池92及控制装置93。
雾化器91包括发热件引脚911,发热件引脚911与电路板932电连接,从而通过电路板932为雾化器91供电。
电池92包括极耳921,控制装置93通过与极耳921连接可为气溶胶生成装置300供电,使得电路板932和发热件引脚911能正常的工作。
控制装置93包括导通连接的电路板932。其中,换能器931可用于感测气流或气压的变化,电路板932可以具有放充电控制功能、电源保护控制功能等。
电路板932设有至少第一预设槽934。组装状态下,极耳921插固在第一预设槽934内,并与电路板932导通连接。
由此,电池92和发热件引脚911均与电路板932电连接,通过电路板932为雾化器91供电,电池92和发热件引脚911无导线连接,且电池92的极耳921通过插槽式硬连接实现零件的电连接,可便于连接自动化,另外不采用导线,可形成整体模组,易整理且美观。并且插接槽式连接可使零部件之间的连接更牢固,不易脱落。
在一些实施例中,电路板932上还设置有第二预设槽933,发热件引脚911插固在第二预设槽933内,并与电路板932导通连接。也即,发热件引脚911与极耳921均通过插接槽式连接,可以便于连接的定位,并增加发热件引脚911与电路板932连接的稳固性,即使在受到外力,震荡,跌落等情况时,发热件引脚911与电路板932的连接也不易脱落。且采用插接槽式连接可便于连接自动化,可提高生产率。
可选的,发热件引脚911还可直接连接在电路板932的表面,通过在电路板932表面设置有电连接装置,从而实现电路板932与电连接装置连接,并与电路板932导通连接。其中电连接装置可以是设置在电路板932上的连接脚,可以是设置在电路板932上的金属薄膜,还可以是设置在电路板932上的电接触点,只要能够实现发热件引脚911与电路板932表面的电连接装置连接后能将电路板932与雾化器电1电连接即可。也就是说,在该实施例中,与在电路板932上设置预设槽不同,通过在电路板932表面上设置电连接装置,可以有效的减少电路板932的制备流程。
在一些实施例中,电池92为单边极耳电池,电池92包括第一极耳9211和第二极耳9212。其中,第一极耳9211可以为电池92的正极,第二极耳9212可以为电池92的负极。第一极耳9211和第二极耳9212位于电池92的同一端面上。可以理解的是,第一极耳9211和第二极耳9212 设置在一端面比电池92的第一极耳9211和第二极耳9212分为位于电池92的相对两端面便于与电路板932的第一预设槽934插接。第一极耳9211和第二极耳9212可以设置在靠近雾化器91的端面上,还可以设置在远离雾化器91的端面上。
在一些实施例中,第一预设槽934为两个,第一极耳9211和第二极耳9212从同一侧分别插固在两个第一预设槽934内。也即电路板932位于第一极耳9211和第二极耳9212的同侧。举例来说,电池92沿竖直方向设置,且第一极耳9211和第二极耳9212设置在电池的上端面,电路板932设置在极耳921的上方,而不是设置在第一极耳9211和第二极耳9212之间。
在一些具体的实施例中,电路板932设置在雾化器91和电池92之间,电路板932包括相对设置的第一面9321和第二面9322,雾化器91设置在面向电路板932的第一面9321,电池92设置在面向电路板932的第二面9322。
在一些更为具体的实施例中,第一预设槽934和第二预设槽933贯穿第一面9321和第二面9322,以在电路板932上形成通孔。
发热件引脚911从第一面9321插固在第二预设槽933内,第一极耳9211和第二极耳9212从第二面9322插固在第一预设槽934内。可以理解的是,发热件引脚911和极耳921从各自面向的面插设在预设槽中,可以便于插接操作,且还可有效的提高气溶胶生成装置300结构的紧凑性。
可以理解的,发热件引脚911从第一面9321安装在第二预设槽933内,并在第二面9322热压固定或焊接固定发热件引脚911至与电路板932导通连接。第一极耳9211和第二极耳9212从第二面9322安装在第一预设槽934内,并在第一面9321热压固定或焊接固定极耳921至与电路板932导通连接。
在一些更为具体的实施例中,电路板932与换能器931一体设置,也即换能器931与电路板932之间的连接也不采用导线的方式进行电连接,采用贴片、热压、焊接等方式连接。可以理解的是,贴片、热压、 焊接均是现有技术中将两零部件进行连接的可选方式。其中,换能器931固定安装在第一面9321或第二面9322。也即咪头可以设置在电路板932靠近雾化器91的一面,也可以设置在靠近电池92的一面。
可以理解的是,第一预设槽934和第二预设槽933不仅具备有电连接的作用,还有连接稳固的作用。第一预设槽934和第二预设槽933优选的设置在电路板932的中心部位,换能器931贴片设置在电路板932的边缘部位并不与插固在第一预设槽934和第二预设槽933的极耳921和发热件引脚911发生干涉。由此可减小电路板932所受的力矩,保证连接的稳固性。第一预设槽934和第二预设槽933可设置为不同的形状,便于连接的安装定位。举例来说,第一预设槽934可为方形槽,第二预设槽933可为圆形槽。
可以理解的是,当发热件引脚911与电路板932接触连接,其电路板932为发热件引脚911提供支撑,使得发热件引脚911的连接更牢固,不易脱落。但是,仍然存在电路板932发生移动的情况下,容易导致发热件引脚911与电路板932的连接脱落,或者发热件引脚911断裂。优选的,可将电路板932固定在雾化器91上。
雾化器91包括外壳94及设置在外壳94内的储油组件95和雾化件913。其中,储油组件95用于储存雾化介质,雾化件913用于将雾化介质加热形成气溶胶。由此可将电路板932与外壳94相对位置固定,由于雾化器91设置在外壳94内,电路板由此可以保证电路板932与发热件引脚911的运动较为一致,从而进一步增加发热件引脚911连接的牢固性。
外壳94具有内腔,储油组件95设置于内腔中。外壳94大致为圆柱体,外壳94一端为供使用者抽吸的吸嘴,外壳94另一端为开口。外壳94可以由金属、塑料、陶瓷、纤维复合材料或其它合适的材料或这些材料的组合形成。
储油组件95可以包括油杯951、第一密封件952、第二密封件953。油杯951设置在外壳94的内腔中,且油杯951靠近外壳94开口的一端设置有第一密封件952,靠近外壳94吸嘴的一端设置有第二密封件953, 第一密封件952和第二密封件953可以由硅胶制成,也可以由橡胶、塑胶或其他合适的材料制成,可用于对油杯951进行密封,防止油杯951中的雾化介质向外流出。
雾化件913设置第一密封件952和第二密封件953之间,在发热件引脚911通电并对油杯951中的雾化介质进行加热雾化。其中,发热件引脚911由发热丝延伸而成,第一密封件952上设置有第一通孔,发热件引脚911穿过第一通孔并与电路板932电连接。
在一些具体的实施例中,雾化件913包括导液件912及缠绕在导液件912上的发热丝,导液件912的材质可以为玻纤或棉。其中,发热件引脚911由发热丝延伸而成。电路板932设置在第一密封件952远离第二密封件953的一侧;其第一密封件952上设置有第一通孔,发热件引脚911穿过第一通孔并与电路板932接触连接。
结合参阅图31,图31是图28中控制装置的立体结构示意图。在一些具体的实施例中,外壳94靠近开口的一端上设置有卡条941,卡条941上设置有卡钩942,电路板932的边缘上设置有卡槽935,卡条941穿过卡槽935,且卡钩942与电路板932远离第一密封件952的端面抵接,从而通过卡钩942将电路板932固定在外壳94上。
在一实施例中,电池92的第一极耳9211和第二极耳9212分别设置在电池92的相对相端面,电路板932可沿第一极耳9211到第二极耳9212的方向设置。由此,第一极耳9211和第二极耳9212从两个方向上插固在第一预设槽934内,发热件引脚911从面向电路板932的一侧插固在第二预设槽933内。相较于将电路板932设置在电池92和雾化器91之间,该实施例中的电路板932的体积会更大。
在一些实施例中,电池92远离极耳921的一端侧设置有吸油件96。当电池92的第一极耳9211和第二极耳9212设置在同一端面上,且电池92的极耳921与电路板932采用插槽式的方式连接,可有效的减小气溶胶生成装置300的长度,为了保证气溶胶生成装置300的可适配性,在电池92远离极耳921的一端侧设置有吸油件96,不仅可以吸收气溶胶生成装置300内的未雾化完全的雾化介质形成的冷凝液、雾化介质形 成的气溶胶预冷形成的冷凝气溶胶、储油棉中不慎泄漏的雾化介质,还可以保证气溶胶生成装置300的长度不变。
在一些实施例中,气溶胶生成装置300还包括透明外壳97,雾化器91、电池92及控制装置93均设置在透明外壳97内。其中,雾化器91、电池92及控制装置93的位置关系可以是上述任一实施例中的位置关系,在此不再赘述。由于本申请中的气溶胶生成装置300内的电池92与发热件引脚911未采用导线连接,因此透明外壳97内部的零件以模组的防止装配在一起,不存在导线混乱不清的布局,采用透明外壳97可有效的增加气溶胶生成装置300的美观性及可观赏性。
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它相关的技术领域,均同理包括在本申请的专利保护范围内。

Claims (40)

  1. 一种电连接件,其特征在于,所述电连接件包括第一连接部和第二连接部,所述第一连接部的一侧滑动设置有第一活动件,所述第一活动件与所述第一连接部弹性连接,所述第一连接部靠近所述第二连接部的一端为实心。
  2. 根据权利要求1所述的电连接件,其特征在于,所述第二连接部远离所述第一连接部的一侧滑动设置有第二活动件,所述第二活动件与所述第二连接部弹性连接。
  3. 根据权利要求1所述的电连接件,其特征在于,所述第一连接部远离所述第二连接部的一端具有环状凸缘。
  4. 根据权利要求2所述的电连接件,其特征在于,所述第一连接部远离所述第一活动件的一端开设有连接槽,所述第二连接部部分设置于所述连接槽内。
  5. 根据权利要求1所述的电连接件,其特征在于,所述第一连接部和所述第二连接部之间通过激光焊接固定。
  6. 一种气溶胶产生装置,其特征在于,包括权利要求1-5中任意一项所述的电连接件。
  7. 根据权利要求6所述的气溶胶产生装置,其特征在于,还包括:
    壳体,所述壳体为中空的管状结构;
    抽吸部,设置于所述壳体一侧;
    雾化模组,设置于所述抽吸部内;
    电源模组,设置于所述壳体远离所述抽吸部的一侧;
    其中,所述电连接件与所述电源模组靠近所述雾化模组的一端,所述电连接件一端与所述雾化模组电连接,所述电连接件另一端与所述电源模组电连接。
  8. 根据权利要求7所述的气溶胶产生装置,其特征在于,所述抽吸部包括抽吸部本体和连接板,所述连接板设置于所述抽吸部本体靠近所述电源模组的一侧,所述连接板与所述抽吸部本体通过卡扣连接。
  9. 根据权利要求8所述的气溶胶产生装置,其特征在于,所述连接板 上设置有第一电极和第二电极,所述第一电极与其中一个所述电连接件连接,所述第二电极与另外一个所述电连接件连接;
    所述雾化模组包括储油件、发热件和密封件,所述储油件设置于所述抽吸部本体内,所述储油件内开设有气流通道,所述发热件设置于所述储油件内的气流通道内,所述发热件的两个引脚分别与所述第一电极和所述第二电极连接,所述密封件设置于所述储油件的两侧。
  10. 根据权利要求8所述的气溶胶产生装置,其特征在于,所述抽吸部本体远离所述电源模组的一侧开设有出气孔,所述出气孔贯穿所述抽吸部本体,所述连接板上开设有进气孔,所述进气孔贯穿所述连接板;
    所述电源模组包括安装架、电芯和方案板,所述安装架设置于所述壳体远离所述抽吸部的一侧,所述电芯设置于所述安装架内,所述安装架内设置有两个方案板,所述方案板分别位于所述电芯两侧,靠近所述抽吸部一侧的所述方案板与所述第二连接部电连接。
  11. 一种连接组件,其特征在于,用于电子雾化装置,所述连接组件包括:
    密封件,所述密封件上设置有盲孔;
    连接电极,所述连接电极的至少一部分插设于所述盲孔内,所述连接电极与所述盲孔过盈配合;
    所述连接电极插设于所述盲孔的一端用于与发热组件的引脚接触连接,以实现所述连接电极与所述发热组件电连接;
    所述连接电极的另一端用于与电池模组连接,以实现密封组件与电池模组电连接。
  12. 如权利要求11所述的连接组件,其特征在于,所述密封件上还设置有连通孔,所述连通孔与所述盲孔连通;
    所述发热组件从所述连通孔的一端插入所述连通孔,并在所述连通孔的另一端与所述连接电极接触连接。
  13. 如权利要求11所述的连接组件,其特征在于,所述密封组件与所述发热组件一体注塑成型,所述发热组件的一端从所述密封组件穿入所述盲孔,以实现与插设于盲孔中的连接电极接触连接。
  14. 如权利要求11所述的连接组件,其特征在于,所述连接电极包括 第一导电部和第二导电部,所述第一导电部用于与所述发热组件连接,所述第二导电部用于与所述电池模组连接;
    所述连接电极的所述第一导电部和所述第二导电部之间沿所述连接电极的周向设置有凸出部,所述凸出部方便所述第一导电部和所述第二导电部的安装和拆卸。
  15. 如权利要求11所述的连接组件,其特征在于,还包括至少一个延伸部,所述延伸部设置于所述密封组件靠近所述连接电极的第二导电部的一侧,所述延伸部形成一个延伸部通槽。
  16. 如权利要求15所述的连接组件,其特征在于,所述连接组件的中部位置设置有连接组件通孔,所述连接组件通孔连通所述延伸部通槽与所述连接组件远离所述密封组件延伸部的一侧。
  17. 如权利要求16所述的连接组件,其特征在于,
    所述连接电极的数量为两个;
    两个所述连接电极相邻设置于两个所述密封组件延伸部之间;
    两个所述连接电极分别位于所述连接组件通孔的两侧;
    两个所述密封组件延伸部和两个所述连接电极沿所述连接组件通孔的周向设置于所述连接组件连通孔的外围。
  18. 一种电子雾化装置,其特征在于,包括如权利要求11-17中任一项所述的连接组件。
  19. 如权利要求18所述的电子雾化装置,其特征在于,还包括:
    壳体、电池模组、雾化组件和吸嘴;
    所述电池模组和雾化组件固定安装在所述壳体内;
    所述电池模组包括支架,所述连接组件的密封件延伸部插设于所述支架,所述密封件延伸部与所述支架过盈配合,
    其中,所述支架靠近所述连接组件的一端设置有电极固定通孔,所述连接组件的连接电极的至少一部分穿设固定于所述电极固定通孔,所述连接电极的至少一部分与所述电极固定通孔过盈配合;
    通过所述密封件延伸部与所述支架过盈配合,以及连接电极的至少一部分与所述电极固定通孔过盈配合,实现所述电池模组和所述连接组件的固定连接;
    所述吸嘴安装在所述雾化组件远离所述电池模组的一端。
  20. 如权利要求19所述的电子雾化装置,其特征在于,所述连接电极上设置有弹性部件,所述连接电极与所述电池模组接触连接。
  21. 一种气溶胶生成装置,其特征在于,其包括雾化器、控制装置;
    所述控制装置包括导通连接的电路板及换能器,所述雾化器包括发热件引脚,所述发热件引脚与所述电路板连接。
  22. 根据权利要求21所述的气溶胶生成装置,其特征在于,所述发热件引脚与所述电路板接触连接。
  23. 根据权利要求22所述的气溶胶生成装置,其特征在于,所述电路板设有第二预设槽,所述发热件引脚插固在所述第二预设槽内,并与所述电路板导通连接。
  24. 根据权利要求22所述的气溶胶生成装置,其特征在于,所述电路板表面设置有电连接装置,所述发热件引脚与所述电连接装置连接,并与所述电路板导通连接。
  25. 根据权利要求23所述的气溶胶生成装置,其特征在于,所述换能器固定安装在所述电路板上,且所述换能器固定安装在所述第二预设槽的外侧。
  26. 根据权利要求23所述的气溶胶生成装置,其特征在于,所述电路板包括相对设置的第一面和第二面,所述第二预设槽贯穿所述第一面和所述第二面;
    所述换能器固定安装在所述第二面;
    所述发热件引脚从所述第一面插固在所述第二预设槽内。
  27. 根据权利要求26所述的气溶胶生成装置,其特征在于,所述气溶胶生成装置还包括电池,所述雾化器设置在面向所述第一面;所述电池设置在面向所述第二面。
  28. 根据权利要求26所述的气溶胶生成装置,其特征在于,所述气溶胶生成装置还包括电池,所述雾化器和所述电池均设置在面向所述电路板的所述第一面。
  29. 根据权利要求22所述的气溶胶生成装置,其特征在于,所述雾化器包括外壳及设置在所述外壳内的储油组件和雾化件,所述雾化件设置 在所述储油组件内;所述储油组件包括相对设置的第一密封件和第二密封件,所述雾化件设置在所述第一密封件和所述第二密封件之间。
  30. 根据权利要求29所述的气溶胶生成装置,其特征在于,
    所述雾化件包括导油芯及缠绕在所述导油芯上的发热丝,所述发热件引脚由所述发热丝延伸而成,所述电路板设置在所述第一密封件远离所述第二密封件的一侧;其中,所述第一密封件上设置有第一通孔,所述发热件引脚穿过所述第一通孔并与所述电路板接触连接。
  31. 根据权利要求29所述的气溶胶生成装置,其特征在于,
    所述外壳上设置有卡条,所述卡条上设置有卡钩,所述电路板上设置有卡槽,所述卡条穿过卡槽并通过所述卡钩将所述电路板固定在所述外壳上。
  32. 根据权利要求21所述的气溶胶生成装置,其特征在于,还包括电池,所述电池包括极耳,所述电路板设有第一预设槽,在组装状态下,所述极耳插固在所述第一预设槽内,并与所述电路板导通连接。
  33. 根据权利要求32所述的气溶胶生成装置,其特征在于,
    所述电池包括第一极耳和第二极耳,所述第一极耳和所述第二极耳位于所述电池的同一端面上。
  34. 根据权利要求33所述的气溶胶生成装置,其特征在于,
    所述第一预设槽为两个,所述第一极耳和所述第二极耳从同一侧分别插固在两个所述第一预设槽内。
  35. 根据权利要求34所述的气溶胶生成装置,其特征在于,
    所述电路板设置在所述雾化器和所述电池之间,所述电路板包括相对设置的第一面和第二面,所述雾化器设置在面向所述电路板的所述第一面,所述电池设置在面向所述电路板的所述第二面。
  36. 根据权利要求35所述的气溶胶生成装置,其特征在于,
    所述第一预设槽和所述第二预设槽贯穿所述第一面和所述第二面;
    所述发热件引脚从所述第一面插固在所述第二预设槽内;所述第一极耳和所述第二极耳从所述第二面插固在所述第一预设槽。
  37. 根据权利要求35所述的气溶胶生成装置,其特征在于,
    所述电路板与所述换能器一体设置,且所述换能器固定安装在所述 第一面或所述第二面。
  38. 根据权利要求32所述的气溶胶生成装置,其特征在于,所述电池包括第一极耳和第二极耳,所述第一极耳和所述第二极耳分别设置在所述电池的相对两端面,所述第一极耳和所述第二极耳从两个方向插固在所述第一预设槽内;
    所述电路板上还设置有第二预设槽,所述发热件引脚插固在所述第二预设槽内。
  39. 根据权利要求32所述的气溶胶生成装置,其特征在于,
    所述电池远离所述极耳的一端侧设置有吸油件。
  40. 根据权利要求31-39任一项所述的气溶胶生成装置,其特征在于,所述气溶胶生成装置还包括透明外壳,所述雾化器、所述电池及所述控制装置均设置在所述透明外壳内。
PCT/CN2023/086001 2022-09-28 2023-04-03 电连接件、连接组件及装置 WO2024066276A1 (zh)

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