Atomization assembly and atomization device

By setting up support and air guide channels inside the atomization core, the problem of deformation of the heating wire in the atomization assembly is solved, and the user experience and taste stability are improved.

CN223081128UActive Publication Date: 2025-07-11HG INNOVATION LTD
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Patent Information

Application Number
CN202422131416.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-30
Publication Date
2025-07-11
Estimated Expiration
2034-08-30

AI Technical Summary

Technical Problem

The heating wires in the atomized assembly are prone to deform during use, affecting the user experience.

Method used

A support is provided inside the atomizing core, and an air guide passage is provided in the extension direction of the support, in communication with the atomizing air passage. The support is contacted by the inner wall of the atomizing core, providing support force to prevent the atomizing core and the heating element from deforming.

Benefits of technology

Effectively prevent the atomized core and heating parts from deforming during use, improving the user experience and the stability of the use taste.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an atomization assembly and an atomization device, and belongs to the technical field of atomization devices. Comprising an atomizing pipe; the atomizing core is arranged in the atomizing pipe, and an atomizing air channel is formed in the atomizing core; the supporting piece is arranged in the atomization air channel in a penetrating mode, and at least part of the structure of the supporting piece abuts against the inner wall of the atomization core so that the atomization core can be clamped between the supporting piece and the atomization pipe; an air guide channel is arranged on the supporting piece in the extending direction of the supporting piece in a penetrating mode, and the air guide channel communicates with the atomization air channel. In the embodiment of the invention, the supporting piece abuts against the inner wall of the atomizing core, in practical application, along with use of a user, the atomizing core may deform, the supporting piece is arranged in the atomizing core, at least part of the supporting piece abuts against the inner wall of the atomizing core, and it can be understood that the supporting piece can support the atomizing core from the interior of the atomizing core, so that the atomizing core can be supported by the supporting piece from the interior of the atomizing core; and supporting force is applied to the atomizing core from the inner wall in an abutting mode, and the beneficial effect that the atomizing core is prevented from deforming inwards is achieved.
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Description

Technical Field

[0001] This application belongs to the technical field of atomizing devices, and particularly relates to an atomizing component and an atomizing device. Background Art

[0002] An atomizing device is an apparatus that can heat a target liquid to atomize it into an aerosol for users to inhale, and has gained the favor of consumers in recent years. With its increasing popularity, consumers have higher and higher requirements for the functions of atomizing devices.

[0003] In related technologies, a support member (such as a cotton-wrapped stick) is required to support and fix the atomizing core in the assembly of the atomizing component. After the assembly of the atomizing component is completed, the support member will be withdrawn. However, during the use of the finished atomizing device by consumers, as the use time increases, after the wicking cotton absorbs the atomizing liquid, it will expand and deform inward, resulting in easy deformation of components such as the heating wire of the atomizing core, affecting the normal use of the atomizing core, and thus leading to differences in taste during use and affecting the user experience. Utility Model Content

[0004] The purpose of the embodiments of this application is to provide an atomizing component and an atomizing device, which can solve the problem that the heating wire in the atomizing component in the prior art is deformed, affecting the user experience.

[0005] To solve the above technical problems, this application is implemented as follows:

[0006] In a first aspect, an atomizing component is provided in an embodiment of this application, which is characterized by including: an atomizing tube; an atomizing core disposed inside the atomizing tube, and an atomizing airway is formed inside the atomizing core; and a support member passing through the atomizing airway, at least part of the structure of the support member abuts against the inner wall of the atomizing core, so that the atomizing core is clamped between the support member and the atomizing tube; a gas guiding channel is formed through the support member along its extending direction, and the gas guiding channel is communicated with the atomizing airway.

[0007] In the embodiment of this application, the atomizing tube is provided to accommodate other components in the atomizing component. The atomizing tube has an accommodating cavity, and both the atomizing core and the support member are disposed in the accommodating cavity. An atomizing airway is formed inside the atomizing core, and the support member is disposed in the atomizing airway. Further, a gas guiding channel is formed inside the support member, and the atomizing airway is communicated with the gas guiding channel, so that suction can be realized during the use by the user. Among them, the support member abuts against the inner wall of the atomizing core. In practical applications, as the user uses it, the atomizing core may deform. Since the support member is disposed inside the atomizing core and at least part of it abuts against the inner wall of the atomizing core, it can be understood that the support member can form support for the atomizing core from the inside of the atomizing core and apply a supporting force to the atomizing core through abutment from the inner wall, having the beneficial effect of preventing the atomizing core from deforming inward.

[0008] In an embodiment of the present application, the air guiding channel is disposed inside the support member; and / or, the air guiding channel is disposed on the outer peripheral side of the support member.

[0009] In an embodiment of the present application, the atomization core includes a heating element, the heating element is disposed around the support member, and the heating element abuts against the support member.

[0010] In an embodiment of the present application, the support member is a tubular structure having the air guiding channel inside, the support member is provided with ventilation holes at positions corresponding to the atomization air channels, the ventilation holes communicate the air guiding channel and the atomization air channels, the heating element is a heating mesh, and the heating mesh is wrapped around the outer wall of the support member at the position corresponding to the atomization air channels.

[0011] In an embodiment of the present application, the number of the ventilation holes is multiple, and the multiple ventilation holes are arranged in an array along the extending direction and / or the circumferential direction of the support member.

[0012] In an embodiment of the present application, the atomization core further includes a liquid guiding member, the atomization tube is provided with a plurality of liquid inlet holes, and the plurality of liquid inlet holes are evenly spaced along the circumferential direction of the atomization tube; the liquid guiding member is disposed inside the atomization tube and at the positions of the liquid inlet holes, the inside of the liquid guiding member is hollow to form the atomization air channel, and the liquid guiding member is sleeved around the heating element.

[0013] In an embodiment of the present application, the liquid inlet holes include two sub-holes, the two sub-holes are independent of each other, and the two sub-holes are arranged along the extending direction of the atomization tube; the cross-section of the sub-hole is at least one of a circle, a square, and a sector.

[0014] In an embodiment of the present application, the material of the support member is a ceramic material.

[0015] In an embodiment of the present application, the atomization assembly further includes a fixing member, the fixing member is disposed inside the atomization tube, and the fixing member is used to support the atomization core and the support member; the atomization core further includes an electrical connection member, a wire hole is provided between the fixing member and the atomization tube, and the electrical connection member passes through the wire hole.

[0016] In an embodiment of the present application, there is also provided an atomization device, including the atomization assembly as described above. Description of the Drawings

[0017] Figure 1 is a schematic structural view of the atomization assembly in an embodiment of the present application;

[0018] Figure 2 is an exploded structural view of the atomization assembly in an embodiment of the present application;

[0019] Figure 3 It is a schematic cross-sectional structure diagram of the atomization component in the embodiment of the present application;

[0020] Figure 4 It is a schematic structure diagram of the atomization component from another angle in the embodiment of the present application;

[0021] Figure 5 It is a schematic cross-sectional structure of the support member in the embodiment of the present application Figure 1 ;

[0022] Figure 6 It is a schematic cross-sectional structure of the support member in the embodiment of the present application Figure 2 ;

[0023] Figure 7 It is a schematic cross-sectional structure of the support member in the embodiment of the present application Figure 3 ;

[0024] Figure 8 It is a schematic cross-sectional structure of the support member in the embodiment of the present application Figure 4 .

[0025] Description of reference numerals:

[0026] 10. Atomization tube; 20. Atomization core; 30. Support member; 40. Fixing member; 11. Liquid inlet hole; 111. Sub-hole; 21. Heating element; 22. Electrical connection member; 23. Liquid guiding member; 31. Air guiding channel; 32. Ventilation hole; 41. Wire hole. Detailed implementation manners

[0027] Next, the technical solutions in the embodiments of the present application will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are part of the embodiments of the present application, rather than all of the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present application.

[0028] The terms "first", "second", etc. in the specification and claims of the present application are used to distinguish similar objects, rather than to describe a specific order or sequence. It should be understood that such data can be interchanged under appropriate circumstances so that the embodiments of the present application can be implemented in an order different from those illustrated or described herein, and the objects distinguished by "first", "second", etc. are usually of the same category, and the number of objects is not limited. For example, the first object can be one or more. In addition, "and / or" in the specification and claims means at least one of the connected objects, and the character " / ", generally represents an "or" relationship between the associated objects before and after.

[0029] The following will, with reference to the accompanying drawings, elaborate on the atomization component and atomization device provided by the embodiments of the present application through specific embodiments and their application scenarios.

[0030] Currently, atomizers on the market generally include a liquid storage chamber and an atomization component. The liquid storage chamber is provided for storing the atomization medium. The atomization component generally includes a liquid guiding member 23, a heating member 21, and an air passage. The atomization medium is guided by the liquid guiding member 23 to the position of the heating member 21. The heating member 21 generates heat to atomize the atomization medium into an aerosol. As the user uses it, the aerosol enters the air passage and is sucked by the user. However, with the long-term use of the user, the components in the atomization component may be deformed or aged. For example, the heating member 21 is deformed, resulting in the taste of the atomizer may be different from that at the initial stage of use, affecting the user experience. For the above content, see Figures 1 to 4 , embodiments of the present application provide an atomization component, including: an atomization tube 10; an atomization core 20 disposed inside the atomization tube 10, and an atomization air passage is formed inside the atomization core 20; and a support member 30 passing through the atomization air passage, at least part of the structure of the support member 30 abuts against the inner wall of the atomization core 20, so that the atomization core 20 is clamped between the support member 30 and the atomization tube 10; a gas guiding channel 31 is formed through the support member 30 along its extending direction, and the gas guiding channel 31 is communicated with the atomization air passage.

[0031] In the embodiments of the present application, the atomization tube 10 is provided for accommodating other components in the atomization component. The atomization tube 10 has an accommodation cavity, and both the atomization core 20 and the support member 30 are disposed in the accommodation cavity. An atomization air passage is formed inside the atomization core 20, and the support member 30 is disposed in the atomization air passage. Further, a gas guiding channel 31 is formed inside the support member 30, and the atomization air passage is communicated with the gas guiding channel 31, and suction can be realized during the user's use. Among them, the support member 30 abuts against the inner wall of the atomization core 20. In practical applications, with the user's use, the atomization core 20 may be deformed. And the support member 30 is disposed inside the atomization core 20 and at least part of it abuts against the inner wall of the atomization core 20. It can be understood that the support member 30 can support the atomization core 20 from the inside of the atomization core 20 and apply a supporting force to the atomization core 20 through abutting from the inner wall, having the beneficial effect of preventing the atomization core 20 from deforming inward.

[0032] Optionally, as Figures 5 to 8 shown, the gas guiding channel 31 is disposed inside the support member 30; and / or, the gas guiding channel 31 is disposed on the outer peripheral side of the support member 30.

[0033] In the embodiments of the present application, the support member 30 can have various shapes, and different support members 30 all have an air guiding channel 31. Specifically, the support member 30 can have a hollow channel extending along its extending direction inside, and the channel is the air guiding channel. That is to say, in the above case, the air guiding channel is arranged inside the support member 30. Further, a recessed portion can be arranged on the outer peripheral side of the support member 30. The recessed portion is recessed in the axial direction of the support member 30 and extends along the extending direction of the support member 30. It can be understood that the support member 30 is inserted into the atomization air channel. Therefore, an air guiding channel 31 is formed by enclosing between the support member 30 with a recessed portion on the outer peripheral side and the inner wall of the atomization tube 10. Thus, the air guiding channel 31 is arranged on the outer peripheral side of the support member 30. Further still, as described above for the shape and structural features of the support member 30, the air guiding channel 31 can also be arranged inside the support member 30 and between the support member and the atomization tube 10 at the same time.

[0034] Optionally, as Figure 1 shown, in the embodiments of the present application, the atomization core 20 includes a heating element 21. The heating element 21 is arranged outside the support member 30, and the heating element 21 abuts against the support member 30.

[0035] In the embodiments of the present application, the heating element 21 is arranged to heat the atomization matrix. The heating element 21 is arranged outside the support member 30 and abuts against the support member 30. Among them, the support member 30 abuts against the heating element 21. In actual application, as the user uses it, the heating element 21 may deform. And the arrangement that the support member 30 is arranged inside the heating element 21 and abuts against the heating element 21. It can be understood that the support member 30 can form a support for the heating element 21 from inside the heating element 21 and apply a supporting force to the heating element 21 through abutment from inside the heating element 21. It has the beneficial effect of avoiding the inward deformation of the heating element 21, thereby avoiding the difference in taste during use due to the deformation of the heating element 21 and improving the user experience.

[0036] It should be noted that the heating element 21 can be a heating mesh, or a heating wire, or a combination of a heating mesh and a heating wire. For example, a part of the heating element 21 is a heating mesh, and the other part is a heating wire, and the heating wire is wound around the heating mesh to realize the mutual connection between the two.

[0037] Optionally, in the embodiments of the present application, the support member 30 is a tubular structure with an air guiding channel 31 inside. The support member 30 is provided with a ventilation hole 32 at a position corresponding to the atomization air channel. The ventilation hole 32 communicates the air guiding channel and the atomization air channel. The heating element 21 is a heating mesh, and the heating mesh is wrapped around the outer wall of the support member 30 at a position corresponding to the atomization air channel.

[0038] In the embodiment of the present application, the support member 30 of the tube structure can not only provide support for the heating element 21 during user use, but also provide support for the atomization core 20 during the assembly process of the atomization component. Moreover, since the support member 30 also has an air guiding channel 31, it can be understood that after the assembly is completed, the support member 30 does not need to be removed from the atomization component, which has the beneficial effects of reducing the assembly steps and improving the production efficiency. Further, the heating element 21 is a heating mesh, and the heating mesh is an integral structure, which has the beneficial effect of being easy to assemble and set up in practical applications. And the heating mesh is wrapped around the outer wall of the position of the support member 30 corresponding to the atomization air passage, and is wrapped around the support member 30 and arranged corresponding to the position of the corresponding atomization air passage. The heating mesh can be more stably arranged around the support member 30, and the structure of the heating mesh and the heating wire can atomize the atomization matrix more thoroughly, which has the beneficial effect of improving the taste of use.

[0039] It should be noted that the grid density of the heating mesh can be set to a uniform density. The heating mesh with a uniform grid density can improve the atomization degree and atomization uniformity, which has the beneficial effect of improving the user experience.

[0040] It should be noted that the support member 30 can be a square tube or other shapes such as a round tube. The specific setting can be determined according to the actual situation, and this embodiment does not make any limitation on this.

[0041] Optionally, as Figure 2 and Figure 3 shown, in the embodiment of the present application, the number of the ventilation holes 32 is multiple, and the multiple ventilation holes 32 are arranged in an array along the extending direction and / or the circumferential direction of the support member 30.

[0042] In the embodiment of the present application, the number of the ventilation holes 32 can be multiple. The multiple ventilation holes 32 have the function of improving the air guiding efficiency. The multiple ventilation holes 32 can realize the connection between the air guiding channel 31 and the atomization air passage, and improve the gas exchange rate between the air guiding channel 31 and the atomization air passage. The multiple ventilation holes 32 can be arranged along the extending direction of the support member 30. For example, four, five or six ventilation holes 32 are arranged along the extending direction of the support member 30. The multiple ventilation holes 32 can also be arranged along the circumferential direction of the support member 30. For example, three, four or five ventilation holes 32 are arranged along the axial direction of the support member 30. The multiple ventilation holes 32 can also be arranged along the extending direction and the circumferential direction of the support member 30. For example, four, five or six ventilation holes 32 are arranged along the circumferential direction of the support member 30, and at the same time, three, four or five ventilation holes 32 are arranged along the extending direction of the support member 30.

[0043] It should be noted that the interval between two adjacent ventilation holes 32 can be the same or different, and the apertures of the multiple ventilation holes 32 can be the same or different. This embodiment does not make any limitation on this and can be determined according to the actual situation.

[0044] Further, the shape of the vent hole 32 can be circular, square, or irregular, and can be determined according to the actual situation. This embodiment does not impose any limitation on the shape of the vent hole 32.

[0045] Furthermore, the aperture of the vent hole 32 can be set according to actual applications to adjust the user's need for different tastes. This embodiment does not impose any limitation on the specific aperture size.

[0046] Optionally, in the embodiment of the present application, the atomization component further includes a fixing member 40. The fixing member 40 is disposed inside the atomization tube 10 and is used to support the atomization core 20 and the support member 30. The atomization core 20 further includes an electrical connection member 22. A wire hole 41 is provided between the fixing member 40 and the atomization tube 10, and the electrical connection member 22 passes through the wire hole 41.

[0047] In the embodiment of the present application, the setting of the fixing member 40 is used to provide a supporting force for the atomization core 20 and the support member 30. Specifically, the atomization core 20 is disposed at one end of the fixing member 40, and the fixing member 40 is disposed at the end close to the atomization core 20. The atomization core 20 is connected to the fixing member 40. The fixing member 40 can support the atomization core 20, and the atomization core 20 also abuts against the support member 30. Thus, the fixing member 40 indirectly supports the support member 30. The setting of the fixing member 40 has the beneficial effect of preventing the atomization core 20 and the support member 30 from separating from each other during the use of the atomization component, which affects the user experience.

[0048] After being electrically connected to the power supply component, the electrical connection member 22 is used to supply power to the heating element 21 to enable the heating element 21 to generate heat, and then atomize the atomization matrix. One end of the electrical connection member 22 is connected to the heating element 21, and the other end of the electrical connection member 22 passes through the wire hole 41 and extends out of the support member 30 to be connected to the power supply component to realize the power supply function of the power supply component to the heating element 21. In actual applications, the electrical connection member 22 may be a structural member with a certain flexibility, passing through the wire hole 41 of the fixing member 40 to be connected to other circuit structures. The fixing member 40 and the atomization tube 10 play a role in fixing the heating element 21. At the same time, the fixing member 40 can also protect the electrical connection member 22, having the beneficial effect of preventing the electrical connection member 22 from deforming or being damaged, which causes the heating element 21 to be unable to generate heat and affects the atomization effect.

[0049] Optionally, in the embodiment of the present application, the atomization core 20 further includes a liquid guiding member 23. The atomization tube 10 is provided with a plurality of liquid inlet holes 11, and the plurality of liquid inlet holes 11 are evenly spaced along the circumferential direction of the atomization tube 10. The liquid guiding member 23 is disposed inside the atomization tube 10 and is located at the liquid inlet holes 11. The inside of the liquid guiding member 23 is hollow to form an atomization airway, and the liquid guiding member 23 is sleeved around the heating element 21.

[0050] In the embodiment of the present application, the liquid guiding member 23 is provided to guide the atomization matrix to the position where the heating member 21 is located, so that the heating member can heat the atomization matrix to achieve atomization. The liquid inlet hole 11 is provided to cooperate with the liquid guiding member 23 to realize introducing the atomization matrix outside the atomization tube 10 into the heating member 21 through the liquid guiding member 23, so that the heating member 21 generates heat to atomize the atomization matrix, and the atomized aerosol is used by the user through the atomization airway and the air guiding channel 31. Specifically, the liquid guiding member 23 is sleeved around the heating member 21 and contacts the heating member 21. In practical applications, a certain amount of atomization matrix is adsorbed in the liquid guiding member 23, and the liquid guiding member 23 contacts the heating member 21, and the heating member 21 generates heat to atomize the atomization matrix. In practical applications, as the atomization core 20 is used, the liquid guiding member 23 may be deformed, and the heating wire in contact with the liquid guiding member 23 will be subjected to the external force generated by the deformation of the liquid guiding member 23 on itself, and then the heating member 21 will be extruded towards the support member 30. The setting of the support member 30 has the beneficial effect of preventing the liquid guiding member 23 from squeezing the heating member 21 to cause deformation of the heating member 21.

[0051] Furthermore, arranging the liquid guiding member 23 around the heating member 21 has the effect of atomizing the atomization matrix more fully, and can also effectively avoid the dry burning and damage of the heating member 21, having the beneficial effect of prolonging the service life of the atomization core 20.

[0052] It should be noted that the liquid guiding member 23 can be cotton for guiding oil or fiber for guiding oil, and the present embodiment does not make any limitation thereto.

[0053] Furthermore, the liquid guiding member 23 can have a sponge-like or foam-like structure. Suitable materials can include sponge or foam materials, ceramic or graphite-based materials in the form of fibers or sintered powders, foam metals or plastic materials, for example, fibrous materials manufactured by spinning or extruding fibers, such as cellulose acetate, polyester or bonded polyolefins, polyethylene, polyester or polypropylene fibers, nylon fibers or ceramics.

[0054] Optionally, in the embodiment of the present application, the liquid inlet hole 11 includes two sub-holes 111, the two sub-holes 111 are independent of each other, and the two sub-holes 111 are arranged along the extending direction of the atomization tube 10; the cross-section of the sub-hole 111 is at least one of a circle, a square and a sector.

[0055] In the embodiments of the present application, two independent sub-holes 111 can increase the area of the liquid inlet hole 11. At the same time, there is a solid structure between the independent sub-holes 111, and the solid structure can provide a certain fixing effect on the liquid guiding member 23, preventing the liquid guiding member 23 from being disengaged from the atomizing tube 10 due to the excessive area of the liquid inlet hole 11. Further, the two sub-holes 111 are arranged along the extending direction of the atomizing tube 10, that is, along the extending direction of the liquid guiding member 23. The above arrangement can expose as much of the liquid guiding member 23 as possible from the sub-holes 111, thereby facilitating the liquid guiding member 23 to adsorb the atomizing matrix and introduce it to the heating member 21.

[0056] Optionally, in the embodiments of the present application, the material of the support member 30 is a ceramic material.

[0057] In the embodiments of the present application, the ceramic support member 30 has the characteristics of stable structure, high strength, and high temperature resistance. It provides a supporting and protecting effect on the heating member 21 from the inside of the heating member 21, and has the effect of preventing the heating member 21 from deforming inward under external force. Further, the heating member 21 is attached to the support member 30, and the heating member 21 generates heat. The ceramic support member 30 is not sintered at high temperature with the heating member 21, which has the beneficial effect of preventing the heating member 21 from being oxidized during sintering.

[0058] Optionally, in the embodiments of the present application, an atomizing device is further provided, including the atomizing assembly as described above.

[0059] In the embodiments of the present application, the atomizing device includes the atomizing assembly as described above. The atomizing assembly is configured to atomize the atomizing matrix. The atomizing device further includes a liquid storage chamber, which can be used to store the atomizing matrix. The atomizing assembly can be arranged in the liquid storage chamber. The atomizing matrix is conducted to the atomizing core through the liquid inlet hole 11 of the atomizing assembly. The liquid guiding member 23 of the atomizing core adsorbs and conducts the atomizing matrix to the heating member 21. The heating member 21 heats the atomizing matrix to form an aerosol, and the formed aerosol is discharged from the ventilation hole of the support member and then discharged through the air guiding channel of the support member.

[0060] Further, the atomizing device further includes a power supply assembly, and the power supply assembly is configured to provide electrical energy for the atomizing assembly, so as to enable the user to use it. Specifically, the power supply assembly can be connected to the electrical connection member 22, and the power provided by the power supply assembly is transmitted to the heating member 21 through the electrical connection member 22, and the heating member 21 generates heat to realize the atomization of the atomizing medium. The atomizing device in this embodiment adopts all the technical solutions of all the embodiments of the above atomizing assembly, so it has at least all the beneficial effects brought by the technical solutions of the above embodiments, which will not be elaborated herein one by one.

[0061] Furthermore, the atomization device in the present application can be applied to a variety of atomization scenarios. For example, the atomization device can be applied to atomization scenarios such as medical beauty, nicotine delivery, and daily life. The aerosol atomization matrix can be a medicinal powder, fragrance, nicotine preparation, and aerosol matrix that can produce special odors, etc. Those skilled in the art can understand that there can be various application scenarios for the atomization device, and the embodiments of the present application do not limit the application scenarios of the atomization device.

[0062] The embodiments of the present application have been described above in conjunction with the accompanying drawings. However, the present application is not limited to the above specific embodiments. The above specific embodiments are merely illustrative and not restrictive. Under the inspiration of the present application, those of ordinary skill in the art can also make many forms without departing from the purpose of the present application and the scope protected by the claims, and all belong to the protection scope of the present application.

Claims

1. An atomization component, characterized in that, Comprising: An atomization tube; An atomization core disposed within the atomization tube, an atomization airway being formed inside the atomization core; And A support member inserted into the atomization airway, at least part of the structure of the support member abutting against the inner wall of the atomization core, such that the atomization core is clamped between the support member and the atomization tube; A gas guiding channel is provided through the support member along its extending direction, and the gas guiding channel communicates with the atomization airway.

2. The atomization component according to claim 1, wherein, The gas guiding channel is disposed inside the support member; And / or, the gas guiding channel is disposed on the outer peripheral side of the support member.

3. The atomization component according to claim 1, characterized in that The atomization core includes a heating element disposed around the support member, and the heating element abuts against the support member.

4. The atomization component according to claim 3, characterized in that, The support member is a tubular structure having the gas guiding channel inside, ventilation holes are provided at positions of the support member corresponding to the atomization airway, the ventilation holes communicate the gas guiding channel and the atomization airway, the heating element is a heating mesh, and the heating mesh wraps around the outer wall of the support member at positions corresponding to the ventilation holes.

5. The atomization assembly according to claim 4, wherein The number of the ventilation holes is multiple, and the multiple ventilation holes are arranged in an array along the extending direction and / or the circumferential direction of the support member.

6. The atomization component according to claim 3, characterized in that, The atomization core further includes a liquid guiding member, the atomization tube is provided with multiple liquid inlet holes, and the multiple liquid inlet holes are evenly spaced along the circumferential direction of the atomization tube; The liquid guiding member is disposed within the atomization tube and at the positions of the liquid inlet holes, the interior of the liquid guiding member is hollow to form the atomization airway, and the liquid guiding member is sleeved around the heating element.

7. The atomization component according to claim 6, characterized in that, The liquid inlet holes include two sub-holes, the two sub-holes are independent of each other, and the two sub-holes are arranged along the extending direction of the atomization tube; The cross-section of the sub-hole is at least one of a circle, a square, and a sector.

8. The atomization assembly according to any one of claims 1 to 7, characterized in that, The material of the support member is a ceramic material.

9. The atomization component according to any one of claims 1 to 7, characterized in that, The atomization assembly further includes a fixing member disposed within the atomization tube, and the fixing member is used to support the atomization core and the support member; The atomization core further includes an electrical connecting member, a wire hole is provided between the fixing member and the atomization tube, and the electrical connecting member is inserted through the wire hole.

10. An atomizing device, characterized in that, Comprising the atomization assembly according to any one of claims 1 to 9.