Atomization assembly, atomization main machine and atomization device
By designing a detachable atomizing component that connects to the main unit, and using limiting grooves and guide surfaces to ensure stable installation, the problem of inconsistent aerosol taste in atomizing devices is solved, improving user experience and extending the lifespan of the equipment.
Patent Information
- Application Number
- CN202520347636.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-28
- Publication Date
- 2026-02-13
- Estimated Expiration
- 2035-02-28
AI Technical Summary
In existing atomizing devices, after a period of use, the atomizing components are prone to fatigue or carbon buildup, which can lead to a decrease or change in the taste of the aerosol, affecting the consistency of the taste.
An atomizing component is designed, including a heating element and a first liquid guiding element. It is detachably connected to the atomizing host through a first bracket. The component is securely installed by using a limiting groove and a guiding surface, and can be easily disassembled and installed by using the guiding surface and the limiting groove, ensuring the consistency of aerosol taste.
The detachable atomizing component design improves the consistency of aerosol taste, reduces user replacement and maintenance costs, and enhances the user experience.
Smart Images

Figure CN223900244U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of atomization equipment, in particular to an atomization assembly, an atomization main machine and an atomization device. BACKGROUND
[0002] The atomization device can include a liquid storage member and an atomization assembly, the liquid storage member is used for storing an atomization substrate, and the atomization assembly can heat the atomization substrate to generate an aerosol. In the related art, in order to prolong the use time of the atomization device, the capacity of the liquid storage member is large, but after the atomization assembly is used for a period of time, the atomization assembly is prone to problems such as fatigue and carbon deposition, and the taste of the aerosol generated by the atomization assembly is attenuated or changed, which leads to poor taste consistency of the aerosol and affects the user experience. CONTENT OF THE UTILITY MODEL
[0003] The present application provides an atomization assembly, an atomization main machine and an atomization device, which can solve the technical problem of poor taste consistency of the aerosol generated by the atomization assembly.
[0004] To solve the above technical problem, the present application provides an atomization assembly in one aspect, the atomization assembly includes a heating member and a first liquid guide member, the first liquid guide member wraps the heating member, the first liquid guide member is used for transmitting an atomization substrate to the heating member, and the heating member can heat the atomization substrate to produce an aerosol; the atomization assembly has a height direction, and the atomization assembly further includes a first support, the first support includes an atomization tube and a connecting portion, the first liquid guide member and the heating member are installed in the atomization tube, the connecting portion is connected to one end of the atomization tube along the height direction, and the connecting portion is used for detachably mounting the atomization assembly to an atomization main machine; a first limiting groove is arranged on the outer periphery of the connecting portion in the circumferential direction, and the first limiting groove is used for clamping the first support to the atomization main machine to limit movement of the atomization assembly along the height direction after being mounted in place.
[0005] In an embodiment, the outer periphery of the connecting portion is provided with at least one guide surface, the guide surface is parallel to the height direction, the guide surface extends to the first limiting groove near one side of the atomization tube, and the groove depth of the first limiting groove at the guide surface is smaller than that at other positions; the cross-sectional shape of the connecting portion perpendicular to the height direction is adapted to the shape of the mounting hole on the atomization main machine, and the guide surface is used for guiding the connecting portion to be assembled to the mounting hole along the height direction.
[0006] In an embodiment, the outer periphery of the connecting portion is provided with a second limiting groove, and the second limiting groove is used for limiting rotation of the atomization assembly in a plane perpendicular to the height direction after being mounted in place.
[0007] In an embodiment, the atomization assembly includes a pin, a first electrode and an insulating member, the insulating member is installed at one end of the connecting portion away from the atomization tube, and the first electrode is interposed in the insulating member, one of the pins connects the heating member and the connecting portion, and the other pin connects the heating member and the first electrode.
[0008] In an embodiment, one end of one pin is clamped between the connecting portion and the insulating member, and one end of the other pin is clamped between the insulating member and the first electrode.
[0009] Another aspect of the present application provides an atomization device, which comprises the atomization assembly and a liquid storage member, the liquid storage member is used for storing an atomization substrate, and the liquid storage member is detachably connected to the atomization main machine; when the liquid storage member is connected to the atomization main machine, one end of the atomization assembly is inserted into the liquid storage member, and the atomization assembly can heat the atomization substrate to generate an aerosol.
[0010] In an embodiment, the atomization assembly has a height direction, the mounting member comprises a cover body and a first limiting member, the cover body is provided with a mounting hole, and the first limiting member is protrudingly arranged on a hole wall of the mounting hole; the first limiting member can be clamped in the first limiting groove of the connecting portion, so as to limit the movement of the atomization assembly along the height direction after the atomization assembly is mounted in place.
[0011] In an embodiment, the mounting member comprises a positioning member, the positioning member is protrudingly arranged on the hole wall of the mounting hole; when the connecting portion is assembled into the mounting hole along the height direction and is rotated along the first direction, the guide surface of the connecting portion can abut against the positioning member, so as to assemble the atomization assembly to a preset position.
[0012] In an embodiment, the mounting member comprises a second limiting member, the second limiting member is protrudingly arranged on the hole wall of the mounting hole, and the second limiting member can be clamped in the second limiting groove of the connecting portion, so as to limit the rotation of the atomization assembly in a plane perpendicular to the height direction after the atomization assembly is mounted in place.
[0013] Another aspect of the present application provides an atomization device, which comprises the atomization assembly and a liquid storage member, the liquid storage member is used for storing an atomization substrate, and the liquid storage member is detachably connected to the atomization main machine; when the liquid storage member is connected to the atomization main machine, one end of the atomization assembly is inserted into the liquid storage member, and the atomization assembly can heat the atomization substrate to generate an aerosol.
[0014] The atomization assembly provided by the present application comprises a first support, and the first support comprises an atomization tube and a connecting portion; the connecting portion is connected to one end of the atomization tube along a height direction, and the connecting portion is used for detachably mounting the atomization assembly to an atomization main machine; the atomization assembly can be conveniently assembled and disassembled; when the atomization assembly reaches the service life, the atomization assembly can be separated from the atomization main machine; the atomization main machine can continue to be used after the atomization assembly is replaced, so that the taste consistency of the aerosol generated by the atomization assembly can be improved. BRIEF DESCRIPTION OF DRAWINGS
[0015] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings needed to be used in the embodiments description will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the present application, and for those skilled in the art, other drawings can be obtained based on these drawings without creative labor.
[0016] Figure 1 is a structural schematic diagram of an embodiment of an atomization device provided by the present application;
[0017] Figure 2 is an exploded structural schematic diagram of an embodiment of an atomization assembly provided by the present application;
[0018] Figure 3 is an exploded structural schematic diagram of an embodiment of a control assembly provided by the present application;
[0019] Figure 4 is a sectional structural schematic diagram of an embodiment of an atomization main machine provided by the present application from one perspective;
[0020] Figure 5 is a sectional structural schematic diagram of an embodiment of an atomization main machine provided by the present application from another perspective;
[0021] Figure 6 is a sectional structural schematic diagram of an embodiment of an atomization main machine provided by the present application from still another perspective;
[0022] Figure 7 is a structural schematic diagram of an embodiment of a first support provided by the present application;
[0023] Figure 8 is a structural schematic diagram of an embodiment of a mounting provided by the present application;
[0024] Figure 9 is a sectional structural schematic diagram of an embodiment of a mounting provided by the present application from one perspective.
[0025] Legend of reference signs:
[0026] atomization device 500;
[0027] atomization main machine 100;
[0028] atomization assembly 10; heating piece 11; first liquid guide piece 12; first support 13; atomization tube 131; connecting part 132; first limiting groove 133; second limiting groove 134; guide surface 135; lead 14; insulating piece 15; first electrode 16; second liquid guide piece 17; outer cover 18; sealing ring 19;
[0029] Control assembly 20; mounting member 21; cover 211; first limiting member 212; positioning member 213; second limiting member 214; mounting hole 215; second bracket 22; battery 23; circuit board 24; sealing member 25; airflow sensor 26; second electrode 27; buffer member 28; liquid suction member 29;
[0030] Housing 30;
[0031] Light guide member 40;
[0032] Liquid storage member 50. DETAILED DESCRIPTION
[0033] The application will be further described below in conjunction with the drawings and embodiments. It is particularly pointed out that the following embodiments are only for illustrating the application, but not for limiting the scope of the application. Similarly, the following embodiments are only part of the embodiments of the application, but not all the embodiments of the application. All other embodiments obtained by those skilled in the art without making creative efforts fall within the scope of the application.
[0034] In the description of the application, the meaning of "a plurality of" is at least two, such as two, three, etc., unless otherwise explicitly and specifically limited. The terms "first", "second", "third" in the embodiments of the application are only for the purpose of description, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features limited by "first", "second", "third" can explicitly or implicitly include at least one of the features. All directional indications (such as up, down, left, right, front, back, etc.) in the embodiments of the application are only for explaining the relative position relationship, movement condition, etc. between the components in a certain posture (as shown in the drawings), and if the certain posture changes, the directional indications also change accordingly. The terms "include" and "have" and any variations thereof in the embodiments of the application are intended to cover non-exclusive inclusion. For example, a process, method, system, product or device including a series of steps or units is not limited to the listed steps or units, but can optionally include steps or units not listed, or can optionally include other steps or components inherent to the process, method, product or device.
[0035] In this paper, the phrase "embodiment" means that the specific features, structures or characteristics described in conjunction with the embodiment can be included in at least one embodiment of the application. The phrase appears in various places in the specification does not necessarily refer to the same embodiment, nor is it a separate or alternative embodiment independent of or to other embodiments. Those skilled in the art explicitly and implicitly understand that the embodiments described herein can be combined with other embodiments.
[0036] The application provides an atomization device. Please refer toFigure 1 The atomization device 500 can include the atomization main machine 100 and the liquid storage piece 50. The liquid storage piece 50 is used for storing the atomization substrate, and the liquid storage piece 50 is detachably connected to the atomization main machine 100. The atomization main machine 100 is used for heating the atomization substrate to generate the aerosol. The connection between the liquid storage piece 50 and the atomization main machine 100 can be clamping, screwing, bonding or magnetic attraction. For example, in an embodiment, one end of the atomization main machine 100 is provided with a receiving portion, the receiving portion is formed by the shell of the atomization main machine 100 to form a containing cavity, one end of the liquid storage piece 50 is inserted into the containing cavity, and the liquid storage piece 50 is clamped on the shell. The liquid storage piece 50 is detachably connected to the atomization main machine 100. When the atomization substrate in the liquid storage piece 50 is consumed, the user can conveniently separate the liquid storage piece 50 from the atomization main machine 100. The atomization device 500 continues to be used after replacing the liquid storage piece 50, so that the atomization main machine 100 can be used multiple times, thereby reducing the use cost of the user.
[0037] Please refer to Figures 2-6 The atomization main machine 100 includes the atomization assembly 10 and the control assembly 20. When the liquid storage piece 50 is connected to the atomization main machine 100, one end of the atomization assembly 10 is inserted into the liquid storage piece 50, and the atomization assembly 10 can heat the atomization substrate to generate the aerosol. The control assembly 20 is electrically connected to the atomization assembly 10, and the control assembly 20 is used for controlling the working state of the atomization assembly 10. For example, the control assembly 20 can control the atomization assembly 10 to heat the atomization substrate to generate the aerosol or stop heating according to the user's puffing action. The atomization assembly 10 is detachably mounted to the atomization main machine 100. In this way, after the atomization device 500 is used for a period of time, if the taste of the aerosol is attenuated or the aerosol tastes bad, the user can conveniently separate the atomization assembly 10 from the atomization main machine 100 to replace the atomization assembly 10, so that the taste consistency of the aerosol generated by atomization can be improved. Specifically, when the atomization assembly 10 needs to be replaced, the liquid storage piece 50 can be separated from the atomization main machine 100 first, so that one end of the atomization assembly 10 is exposed, and then the atomization assembly 10 is separated from the atomization main machine 100.
[0038] Please refer to Figure 2 , Figure 4 , Figure 5 The atomization assembly 10 includes the heating piece 11 and the first liquid guide piece 12. The first liquid guide piece 12 is a porous medium, for example, a fiber cotton, and the first liquid guide piece 12 can adsorb the atomization substrate. The first liquid guide piece 12 wraps the heating piece 11, and the first liquid guide piece 12 is used for transmitting the atomization substrate to the heating piece 11. The heating piece 11 can heat the atomization substrate to produce the aerosol. The atomization assembly 10 has a height direction. For example, the height direction can be the Z-axis direction in Figure 4 Please refer to Figure 7The atomization assembly 10 further comprises a first support 13, which comprises an atomization tube 131 and a connecting portion 132. The first liquid guide 12 and the heating element 11 are installed in the atomization tube 131, so that the atomization assembly 10 forms a relatively independent module to facilitate assembly and disassembly of the atomization assembly 10. The connecting portion 132 is connected to one end of the atomization tube 131 in the height direction, and is used to detachably install the atomization assembly 10 to the atomization main machine 100. In this way, the assembly and disassembly of the atomization assembly 10 can be facilitated, and when the atomization assembly 10 reaches the service life, the atomization assembly 10 can be separated from the atomization main machine 100. The atomization main machine 100 continues to be used after replacing the atomization assembly 10, so that the taste consistency of the aerosol generated by the atomization assembly 10 can be improved. The connecting portion 132 and the atomization tube 131 can be an integral piece integrally processed and formed, or can be a split piece separately processed and then assembled and connected.
[0039] The connection mode between the atomization assembly 10 and the control assembly 20 can be screw connection, adhesive connection or magnetic attraction connection. For example, the outer periphery of the connecting portion 132 can be provided with threads, so that the atomization assembly 10 can be installed to the atomization main machine 100 through the threads.
[0040] In an embodiment, the atomization assembly 10 and the control assembly 20 are connected by clamping. As shown in Figure 3 、 Figure 8 、 Figure 9 The control assembly 20 comprises a mounting piece 21, which is provided with a mounting hole 215, and the connecting portion 132 passes through the mounting hole 215 and is clamped in the mounting piece 21. The clamping connection has the advantages of quick installation or disassembly, reliable connection and the like, and can improve the user experience.
[0041] The connecting portion 132 can be provided with a clamping groove, and the mounting piece 21 is provided with a clamping buckle, so that the connecting portion 132 can be clamped in the mounting piece 21. Alternatively, please refer to Figures 7-9In an embodiment, the outer periphery of the connecting portion 132 is provided with a first limiting groove 133 in the circumferential direction, which is used to engage the first support 13 with the atomization main machine 100 to limit the movement of the atomization assembly 10 in the height direction after being installed in place. The first limiting groove 133 can be arranged around the circumference of the connecting portion 132, or it can be arranged only in a local area of the outer periphery of the connecting portion 132. The mounting member 21 includes a cover body 211 and a first limiting member 212, the cover body 211 is provided with a mounting hole 215, and the first limiting member 212 is protrudingly arranged on the hole wall of the mounting hole 215. The first limiting member 212 can be engaged with the first limiting groove 133 of the connecting portion 132 to limit the movement of the atomization assembly 10 in the height direction after being installed in place. The first limiting member 212 can be a flange, a protrusion or a spring needle. The first limiting member 212 cooperates with the first limiting groove 133 to engage the first support 13 with the mounting member 21, so that the connection between the atomization assembly 10 and the control assembly 20 is reliable, and the installation or disassembly of the atomization assembly 10 is facilitated.
[0042] The outer periphery of the connecting portion 132 can be provided with a guide groove extending in the height direction, which is communicated with the first limiting groove 133. When assembling the atomization assembly 10, the first limiting member 212 can slide along the guide groove so that the first limiting member 212 can be engaged with the first limiting groove 133 of the connecting portion 132. Alternatively, in an embodiment, as shown in Figures 7-9 the outer periphery of the connecting portion 132 is provided with at least one guide surface 135, which is parallel to the height direction. The guide surface 135 extends to the first limiting groove 133 from one side of the atomization tube 131, and the groove depth of the first limiting groove 133 at the guide surface 135 is smaller than that at other positions, so as to facilitate the sliding of the first limiting member 212 into or out of the first limiting groove 133 from the guide surface 135, thereby assembling or disassembling the atomization assembly 10 to or from the atomization main machine 100. The number of guide surfaces 135 can be one, two, three or more. The cross-sectional shape of the connecting portion 132 perpendicular to the height direction is adapted to the shape of the mounting hole 215 on the atomization main machine 100, and the guide surface 135 is used to guide the connecting portion 132 to be assembled to the mounting hole 215 in the height direction. Compared with the guide groove, the guide surface 135 can have a larger setting range, and correspondingly, the first limiting member 212 can be a flange with a larger circumferential dimension of the mounting hole 215, so that the strength of the first limiting member 212 is higher, and the connection between the atomization assembly 10 and the control assembly 20 is more reliable.
[0043] Please refer to Figure 8 , Figure 9In one embodiment, the mounting member 21 includes a positioning member 213, which protrudes from the wall of the mounting hole 215. The positioning member 213 can be used for assembling and positioning the atomizing assembly 10. When the connecting part 132 is assembled into the mounting hole 215 along the height direction and rotates along a first direction, the guide surface 135 of the connecting part 132 can abut against the positioning member 213. The positioning member 213 can prevent the connecting part 132 from rotating further relative to the mounting member 21, so that the atomizing assembly 10 is assembled to a preset position. The first direction can be clockwise or counterclockwise. Accordingly, when it is necessary to disassemble the atomizing assembly 10, the atomizing assembly 10 can be rotated in the opposite direction to the first direction. By providing the positioning member 213, the guide surface 135 can be used to guide the connecting part 132 into the mounting hole 215 along the height direction, and can also cooperate with the positioning member 213 for assembling and positioning the atomizing assembly 10. It is not necessary to provide other positioning and mating parts on the connecting part 132, which can reduce the number of parts and simplify the structure of the connecting part 132.
[0044] In one embodiment, such as Figures 7-9 As shown, a second limiting groove 134 is provided on the outer periphery of the connecting portion 132. The second limiting groove 134 is used to restrict the rotation of the atomizing component 10 in the plane of vertical height after it is installed in place. The mounting member 21 includes a second limiting member 214, which protrudes from the wall of the mounting hole 215. The second limiting member 214 can engage with the second limiting groove 134 of the connecting portion 132 to restrict the rotation of the atomizing component 10 in the plane of vertical height after it is installed in place. The second limiting groove 134 can be a circular groove, and correspondingly, the second limiting member 214 can be a protrusion, and the second limiting member 214 can engage with the second limiting groove 134 of the connecting portion 132; or, the second limiting groove 134 is an elongated groove extending along the height direction, and correspondingly, the second limiting member 214 is an elongated rib extending along the height direction, and the second limiting member 214 can engage with the second limiting groove 134 of the connecting portion 132. By setting the second limiting groove 134 and the second limiting member 214 to restrict the atomizing component 10 from rotating in the plane in the vertical direction after it is installed, the connection between the atomizing component 10 and the control component 20 can be made more stable, and the atomizing component 10 is not easy to move.
[0045] Please see Figure 2 , Figure 4In an embodiment, the atomization assembly 10 comprises the pins 14 connected with the heating element 11, and the heating element 11 can be connected with the power supply through the pins 14 to provide the heating element 11 with the electric energy during operation. The pins 14 can be directly extended out of the connecting portion 132 to be connected with the power supply. Alternatively, the pins 14 are connected with the power supply through other components, and the atomization assembly 10 further comprises the first electrode 16 and the insulating element 15 installed at the end of the connecting portion 132 away from the atomization tube 131, and the first electrode 16 is inserted in the insulating element 15. One of the pins 14 is connected with the heating element 11 and the connecting portion 132, and the other pin 14 is connected with the heating element 11 and the first electrode 16, so that the heating element 11 can be connected with the power supply through the connecting portion 132 and the first electrode 16 to provide the heating element 11 with the electric energy during operation. In this way, the electric connection contact of the heating element 11 is extended to the connecting portion 132, which can facilitate the electric connection between the heating element 11 and the power supply, compared with the case that the pins 14 are directly extended out of the connecting portion 132 to be connected with the power supply. In addition, one of the pins 14 is electrically connected with the connecting portion 132, so that the connecting portion 132 can serve as one of the electrodes when the atomization assembly 10 is detachably installed in the atomization main machine 100. Only one first electrode 16 needs to be electrically connected with the other pin 14, which can reduce the number of electrodes, facilitate the assembly of the atomization assembly 10, and is conducive to reducing the size of the atomization assembly 10.
[0046] One end of each of the two pins 14 can be welded to the connecting portion 132 and the first electrode 16, respectively, so that the heating element 11 can be connected with the power supply through the connecting portion 132 and the first electrode 16. Alternatively, in an embodiment, as shown in Figure 5 , one end of one of the pins 14 is clamped between the connecting portion 132 and the insulating element 15, and one end of the other pin 14 is clamped between the insulating element 15 and the first electrode 16. In this way, during the assembly of the atomization assembly 10, the insulating element 15 can be first inserted in the connecting portion 132, so that one end of one of the pins 14 is clamped between the connecting portion 132 and the insulating element 15. Then, the first electrode 16 is inserted in the insulating element 15, so that one end of the other pin 14 is clamped between the insulating element 15 and the first electrode 16. The electric connection between the pins 14 and the connecting portion 132 and the first electrode 16 can be achieved during the assembly of the insulating element 15 and the first electrode 16, without the need for additional welding operation, which can simplify the assembly process of the atomization assembly 10 and thus reduce the production cost.
[0047] In an embodiment, as shown in Figure 2 , Figure 4As shown, the atomization assembly 10 further comprises a second liquid guide 17 and an outer cover 18. The second liquid guide 17 is wrapped around the first support 13, and the outer cover 18 is sleeved on the second liquid guide 17. When the atomization assembly 10 is connected to the liquid storage 50, the outer cover 18 is inserted into the liquid storage 50, and the outer cover 18 is provided with a through hole, so that the atomization substrate in the liquid storage 50 can be transmitted to the atomization assembly 10. A sealing ring 19 can be sleeved on the outer cover 18, and the sealing ring 19 is used to seal the gap between the atomization assembly 10 and the liquid storage 50 to prevent the atomization substrate from leaking.
[0048] Please refer to Figures 3-5 In an embodiment, the control assembly 20 further comprises a second support 22, a battery 23, a circuit board 24, a sealing member 25, an airflow sensor 26, and a second electrode 27. One end of the second support 22 is connected with the mounting member 21, and the other end of the second support 22 away from the mounting member 21 is provided with the circuit board 24, the battery 23 is accommodated in the second support 22, the airflow sensor 26 is installed at one end of the second support 22 close to the mounting member 21, and the airflow sensor 26 is sleeved with the sealing member 25. The second electrode 27 is inserted into one end of the second support 22 close to the mounting member 21, and the second electrode 27 is used to electrically connect with the first electrode 16 and the first support 13. The second electrode 27 can be a spring needle electrode, when the atomization assembly 10 is assembled to the atomization main machine 100, the second electrode 27 is elastically deformed under external pressure, so that the second electrode 27 can be in close contact with the first electrode 16 and the first support 13, thereby improving the reliability of the electrical connection between the control assembly 20 and the atomization assembly 10. The battery 23, the second electrode 27, and the airflow sensor 26 are respectively electrically connected with the circuit board 24. The airflow sensor 26 is configured to control the conduction state of the electrical connection between the atomization assembly 10 and the battery 23 according to the user's puffing action. Specifically, when the user inhales, the airflow sensor 26 senses the change of airflow, the airflow sensor 26 controls the atomization assembly 10 and the battery 23 to be conductive, and the atomization assembly 10 can heat the atomization substrate to generate aerosol; when the user stops inhaling, the airflow sensor 26 does not sense the change of airflow within a preset time, the airflow sensor 26 controls the atomization assembly 10 and the battery 23 to be disconnected, and the atomization assembly 10 stops heating. The space enclosed by the second support 22 and the mounting member 21 is further provided with a buffer 28 and a liquid suction member 29, and the connecting portion 132 abuts against the buffer 28, which can prevent the connecting portion 132 from damaging the second support 22 when subjected to impact force, and the liquid suction member 29 is used to adsorb the leaked atomization substrate.
[0049] In an embodiment, as Figure 4 , Figure 5As shown, the atomization host 100 comprises a housing 30 and a light guide 40. The control assembly 20 is accommodated in the housing 30, and the mounting member 21 is clamped to the housing 30. The light guide 40 is mounted on the housing 30, and the light emitted by the light source on the circuit board 24 is visible through the light guide 40, so that the working state of the atomization device 500 can be displayed through the light guide 40. Other structures inside the atomization device 500 are not described again.
[0050] The above merely describes some embodiments of the present application, and does not limit the protection scope of the present application. Any equivalent device or equivalent process transformation using the content of the present application specification and drawings, or direct or indirect application in other related technical fields, are also included in the patent protection scope of the present application.
Claims
1. An atomizing component, characterized in that, It includes a heating element and a first liquid guiding element, the first liquid guiding element encapsulating the heating element and being used to transfer the atomizing matrix to the heating element, the heating element being able to heat the atomizing matrix to produce an aerosol; The atomizing component has a height direction, and the atomizing component further includes a first support, the first support including an atomizing tube and a connecting part, the first liquid guiding element and the heating element are installed in the atomizing tube, the connecting part is connected to one end of the atomizing tube along the height direction, and the connecting part is used to detachably install the atomizing component to the atomizing host. The outer periphery of the connecting part is provided with a first limiting groove in the circumferential direction. The first limiting groove is used to engage the first bracket with the atomizing host to restrict the movement of the atomizing component along the height direction after it is installed in place.
2. The atomizing component according to claim 1, characterized in that, The outer periphery of the connecting part is provided with at least one guide surface, the guide surface is parallel to the height direction, and the side of the guide surface near the atomizing tube extends to the first limiting groove. The groove depth of the first limiting groove at the guide surface is smaller than the groove depth at other positions. The cross-sectional shape of the connecting part perpendicular to the height direction is adapted to the shape of the mounting hole on the atomizing host, and the guide surface is used to guide the connecting part to be assembled into the mounting hole along the height direction.
3. The atomizing component according to claim 2, characterized in that, The outer periphery of the connecting part is provided with a second limiting groove, which is used to restrict the atomizing component from rotating in a plane perpendicular to the height direction after it is installed in place.
4. The atomizing component according to any one of claims 1-3, characterized in that, The atomizing component includes pins, a first electrode, and an insulating component. The insulating component is installed at the end of the connecting portion away from the atomizing tube. The first electrode is inserted into the insulating component. One of the pins connects the heating element to the connecting portion, and the other pin connects the heating element to the first electrode.
5. The atomizing component according to claim 4, characterized in that, One end of one of the pins is clamped between the connection portion and the insulating member, and one end of the other pin is clamped between the insulating member and the first electrode.
6. An atomizing device, characterized in that, Includes an atomizing component as described in any one of claims 1-5 and a control component, wherein the control component is electrically connected to the atomizing component and is used to control the operating state of the atomizing component; The control component includes a mounting member with a mounting hole, and a connecting part passes through the mounting hole and engages with the mounting member.
7. The atomizing host according to claim 6, characterized in that, The atomizing component has a height direction, and the mounting component includes a cover and a first limiting member. The cover has the mounting hole, and the first limiting member protrudes from the hole wall of the mounting hole. The first limiting member can engage with the first limiting groove of the connecting part to restrict the atomizing component from moving along the height direction after it is installed in place.
8. The atomizing host according to claim 7, characterized in that, The mounting component includes a positioning element that protrudes from the wall of the mounting hole; When the connecting part is assembled to the mounting hole along the height direction and rotated along the first direction, the guide surface of the connecting part can abut against the positioning member so that the atomizing component is assembled to a preset position.
9. The atomizing host according to claim 7, characterized in that, The mounting component includes a second limiting member, which protrudes from the wall of the mounting hole and can engage with the second limiting groove of the connecting part to restrict the atomizing component from rotating in a plane perpendicular to the height direction after it is installed.
10. An atomizing device, characterized in that, Includes an atomizing host and a liquid storage device as described in any one of claims 6-9, wherein the liquid storage device is used to store the atomizing matrix and the liquid storage device is detachably connected to the atomizing host; When the liquid storage device is connected to the atomizing host, one end of the atomizing component is inserted into the liquid storage device, and the atomizing component can heat the atomizing matrix to generate an aerosol.