Electronic atomization device
By using a flexible air intake regulator in electronic atomizing devices, the air intake volume is automatically adjusted according to the suction force, solving the problem of mismatch in manual air intake adjustment in traditional devices and improving the user experience.
Patent Information
- Application Number
- CN202520258956.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-18
- Publication Date
- 2026-02-17
- Estimated Expiration
- 2035-02-18
AI Technical Summary
Traditional electronic atomizing devices require manual adjustment of the air intake, resulting in long adjustment cycles or mismatches for consumers, which affects the user experience.
It adopts a flexible air intake adjustment component, which automatically adjusts the size of the air intake opening according to the change of suction force to meet the needs of different consumers.
It achieves automatic adjustment of air intake based on suction power without the need for manual adjustment, thus improving the user experience.
Smart Images

Figure CN223913479U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of electronic atomization technology, specifically to an electronic atomization device. Background Technology
[0002] Electronic atomizing devices are devices that atomize a matrix to produce an aerosol for consumers to inhale. Different consumers have different requirements for the amount of aerosol they inhale. However, the air intake in traditional electronic atomizing devices often requires manual adjustment by the consumer or does not have a suction resistance adjustment function. This can easily lead to problems such as long adjustment cycles or mismatched air intake adjustments, resulting in the consumer not inhaling the required amount of aerosol and affecting the user experience. Utility Model Content
[0003] This application provides an electronic atomizing device in which the air intake regulating component can deform to different degrees according to the suction force of different consumers, thereby adjusting the air intake volume of the air intake opening, which can meet the usage needs of different consumers.
[0004] One embodiment of this application provides an electronic atomizing device, including: a housing; an atomizer disposed within the housing, the atomizer having an atomizing chamber; an air inlet channel disposed within the housing, one end of which communicates with the atomizing chamber and the other end of which communicates with the outside; and an air inlet regulating component disposed within the air inlet channel, which is an elastic structure, the air inlet regulating component having an air inlet opening through which airflow can pass, and the size of the air inlet opening can change according to the magnitude of the suction force.
[0005] In one embodiment, the air intake opening has a minimum gap when not in a suction state.
[0006] In one embodiment, the air intake opening shape includes at least one of a cross groove and an irregular groove.
[0007] In one embodiment, the air intake channel includes a first air intake channel and a second air intake channel. The electronic atomizing device also includes a power supply device. The power supply device and the side wall of the housing define the first air intake channel. The second air intake channel is disposed on the housing, and the two ends of the second air intake channel are respectively connected to the first air intake channel and the outside.
[0008] In one embodiment, the end of the second air intake channel opposite to the first air intake channel has a supporting step, which is used to support the air intake adjustment component; and / or, the electronic atomizing device further includes a fixing component disposed on the side wall of the second air intake channel for fixing the air intake adjustment component.
[0009] In one embodiment, a second air intake channel is disposed at the bottom of the housing, and a support member is disposed at the bottom of the housing to support the power supply device, thereby defining a portion of the first air intake channel with the bottom of the housing.
[0010] In one embodiment, the second air intake channel is disposed on the side wall of the housing and communicates with the outside.
[0011] In one embodiment, the device further includes a mouthpiece, the power supply is positioned away from the atomizer from the mouthpiece, and the mouthpiece and the atomization chamber are arranged in a straight line.
[0012] In one embodiment, the intake regulating component is a cylindrical structure with a hollow interior and an opening on one side, and the intake opening is located on the side of the intake regulating component opposite to the opening.
[0013] In one embodiment, the air intake regulator is a planar structure, and a fixing groove is provided around the side wall of the air intake hole. A fixing member is provided in the fixing groove. The air intake regulator is partially accommodated in the fixing groove, and the fixing member passes through the air intake regulator to fix the air intake regulator.
[0014] This application provides an electronic atomizing device, including a housing, an atomizer, an air intake channel, and an air intake regulator. The electronic atomizing device features an atomization chamber and an air intake channel, enabling its inhalation function. Furthermore, the air intake regulator, located at the air intake opening, deforms to varying degrees depending on the suction force, thus changing the size of the air intake opening. Therefore, on the one hand, manual adjustment of the air intake is unnecessary; it can be adjusted simply by changing the suction force. On the other hand, different consumers can adjust the air intake to their individual needs. Moreover, the simple structure and ease of adjustment of the air intake regulator enhance the user experience. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the electronic atomization device in Example 1;
[0016] Figure 2 for Figure 1 A schematic cross-sectional view of the electronic atomizing device shown.
[0017] Figure 3 for Figure 1 The diagram shown is an exploded structural diagram of an electronic atomization device.
[0018] Figure 4 This is a schematic diagram of the air intake regulating component of the electronic atomizing device in the non-vacuuming state in Example 1;
[0019] Figure 5 This is a schematic diagram of the air intake adjustment component in the inhalation state of the electronic atomization device in Example 1;
[0020] Figure 6 for Figure 5 The diagram shows the structure of the intake regulator.
[0021] Reference numerals: Electronic atomizing device - 100, outer shell - 110, support component - 111, atomizer - 120, atomizing chamber - 121, air intake channel - 130, first air intake channel - 131, second air intake channel - 132, supporting step - 1321, air intake adjustment component - 140, air intake opening - 141, power supply device - 150, mouthpiece - 160, first mounting component - 170, second mounting component - 180, atomizing air passage - 190. Detailed Implementation
[0022] The present application will now be described in further detail with reference to the accompanying drawings and specific embodiments. Similar elements in different embodiments are referred to by related similar element reference numerals. In the following embodiments, many details are described to facilitate a better understanding of the present application. However, those skilled in the art will readily recognize that some features may be omitted in different situations, or may be replaced by other elements, materials, or methods. In some cases, certain operations related to the present application are not shown or described in the specification. This is to avoid obscuring the core parts of the present application with excessive description. For those skilled in the art, detailed description of these related operations is not necessary; they can fully understand the related operations based on the description in the specification and general technical knowledge in the art.
[0023] Furthermore, the features, operations, or characteristics described in the specification can be combined in any suitable manner to form various embodiments, and the operational steps involved in each embodiment can also be rearranged or adjusted in a manner that is obvious to those skilled in the art. Therefore, the specification and drawings are only for clearly describing a particular embodiment and do not imply that they represent the necessary components and / or order.
[0024] The serial numbers assigned to components in this document, such as "first" and "second," are used only to distinguish the described objects and have no sequential or technical meaning. The terms "connection" and "linkage" used in this application, unless otherwise specified, include both direct and indirect connections (linkages).
[0025] Example 1
[0026] This embodiment provides an electronic atomizing device 100. Please refer to [reference needed]. Figure 1-6 The electronic atomizing device 100 includes a housing 110, an atomizer 120, an air intake channel 130, and an air intake adjustment component 140.
[0027] Please refer to Figure 2The atomizer 120 is disposed within the housing 110, and the atomizer 120 has an atomizing chamber 121. The air intake channel 130 is disposed within the housing 110, with one end connected to the atomizing chamber 121 and the other end connected to the outside. The air intake regulating component 140 is disposed within the air intake channel 130 and is an elastic structure. The air intake regulating component 140 has an air intake opening 141, through which airflow can pass, and the size of the air intake opening 141 can change according to the suction force.
[0028] In this application, the atomizing chamber 121 and the air intake channel 130 are configured to enable the inhalation function of the electronic atomizer 120. A flexible air intake adjuster 140 is provided within the air intake channel 130. The air intake adjuster 140 has an air intake opening 141, the size of which can be adjusted according to the suction force, thereby regulating the air intake volume. This structure is simple, easy to adjust, and can meet the usage requirements of different consumers, improving the user experience.
[0029] Please refer to Figure 4 When not in a suction state, the air inlet opening 141 has a minimum gap.
[0030] The air intake opening 141 of this application has a gap even when not being sucked up, rather than being a closed structure, which can reduce the difficulty of sucking up for consumers in the initial stage.
[0031] In this embodiment, the air inlet opening 141 increases in size as the suction force increases. For example... Figure 5 In the suction state, the portion of the air intake adjustment component located at the air intake opening 141 is recessed toward the interior of the housing 110.
[0032] Please refer to Figure 4 The air intake opening 141 includes a cross groove, or in other embodiments, a shaped groove or a combination of both.
[0033] The cross groove or irregular groove design facilitates the deformation of the air intake adjustment component 140, allowing the size of the air intake opening 141 to change with the magnitude of the suction force.
[0034] Please refer to Figure 2 The air intake channel 130 includes a first air intake channel 131 and a second air intake channel 132. The electronic atomizing device 100 also includes a power supply device 150. The power supply device 150 and the side wall of the housing 110 define the first air intake channel 131. The second air intake channel 132 is disposed on the housing 110, and the two ends of the second air intake channel 132 are respectively connected to the first air intake channel 131 and the outside.
[0035] It should be noted that in other embodiments, the first air intake channel 131 can be omitted, and the second air intake channel 132 on the outer shell 110 can be directly connected to the atomizing chamber 121.
[0036] Please refer to Figure 2 The second air intake channel 132 has a retaining step 1321 at one end opposite to the first air intake channel 131, the retaining step 1321 being used to retain the air intake adjustment component 140. And / or, the electronic atomizing device 100 also includes a fixing component, which is disposed on the side wall of the second air intake channel 132 for fixing the air intake adjustment component 140.
[0037] The support step 1321 is designed to prevent the air intake adjustment component 140 from falling off. Similarly, since the air intake adjustment component 140 is relatively light, it may be carried out of the second air intake channel 132 during suction. Therefore, the air intake adjustment component 140 is fixed by setting a fixing component.
[0038] Please refer to Figure 2 The second air intake channel 132 is located at the bottom of the housing 110, and a support member 111 is provided at the bottom of the housing 110. The support member 111 is used to support the power supply device 150, so as to define a portion of the first air intake channel 131 with the bottom of the housing 110.
[0039] When the power supply device 150 is placed inside the housing 110, it may cover the first air intake channel 131 at the bottom of the housing 110, affecting air intake. The support member 111 can leave a gap at the bottom of the housing 110 to prevent the first air intake channel 131 from being covered by the power supply device 150.
[0040] The second air intake channel 132 is disposed on the side wall of the housing 110 and communicates with the outside. For example, it can be disposed on the side wall of the housing 110 corresponding to the atomizer 120.
[0041] Please refer to Figure 1 The electronic atomizing device 100 also includes a mouthpiece 160. The power supply device 150 is positioned away from the mouthpiece 160 relative to the atomizer 120, and the mouthpiece 160 and the atomizing chamber 121 are arranged in a straight line. Specifically, the atomizing tube, atomizing air passage 190 and mouthpiece 160 in the atomizer 120 are arranged in a straight line to facilitate smooth flow of aerosol.
[0042] Please refer to Figure 4 The intake adjustment component 140 is a cylindrical structure with a hollow interior and an opening on one side. The intake opening 141 is located on the side of the intake adjustment component 140 opposite to the opening.
[0043] Please refer to Figure 2The electronic atomizing device 100 also includes a first mounting member 170, which is disposed within the housing 110. The first mounting member 170 and the side wall of the housing 110 define an atomizing chamber 121. The first mounting member 170 has a first mounting through hole, in which the atomizer 120 is partially inserted. Additionally, the first mounting member 170 has two openings at the end opposite to the atomizer 120. These openings connect to the power supply device 150 and the first air intake channel 131 defined by the housing 110, and also communicate with the first mounting through hole. The first mounting member 170 is made of silicone.
[0044] Please refer to Figure 2 The electronic atomizing device 100 also includes a second mounting member 180, which is disposed within the housing 110 and has a second mounting through hole. The steel pipe containing the atomizing air passage 190 is inserted into the second mounting through hole, and the end of the atomizing air passage 190 facing away from the second mounting through hole is connected to the atomizing tube of the atomizer 120. The second mounting member 180 is made of silicone.
[0045] Example 2
[0046] This embodiment provides an electronic atomizing device 100. Please refer to [reference needed]. Figure 1-6 The electronic atomizing device 100 includes a housing 110, an atomizer 120, an air intake channel 130, and an air intake adjustment component 140.
[0047] Please refer to Figure 2 The atomizer 120 is disposed within the housing 110, and the atomizer 120 has an atomizing chamber 121. The air intake channel 130 is disposed within the housing 110, with one end connected to the atomizing chamber 121 and the other end connected to the outside. The air intake regulating component 140 is disposed within the air intake channel 130 and is an elastic structure. The air intake regulating component 140 has an air intake opening 141, through which airflow can pass, and the size of the air intake opening 141 can change according to the suction force.
[0048] In this application, the atomizing chamber 121 and the air intake channel 130 are configured to enable the inhalation function of the electronic atomizer 120. A flexible air intake adjuster 140 is provided within the air intake channel 130. The air intake adjuster 140 has an air intake opening 141, the size of which can be adjusted according to the suction force, thereby regulating the air intake volume. This structure is simple, easy to adjust, and can meet the usage requirements of different consumers, improving the user experience.
[0049] Please refer to Figure 4 When not in a suction state, the air inlet opening 141 has a minimum gap.
[0050] The air intake opening 141 of this application has a gap even when not being sucked up, rather than being a closed structure, which can reduce the difficulty of sucking up for consumers in the initial stage.
[0051] In this embodiment, the air inlet opening 141 increases in size as the suction force increases. For example... Figure 5 In the suction state, the portion of the air intake adjustment component located at the air intake opening 141 is recessed toward the interior of the housing 110.
[0052] Please refer to Figure 4 The air intake opening 141 includes a cross groove, or in other embodiments, a shaped groove or a combination of both.
[0053] The cross groove or irregular groove design facilitates the deformation of the air intake adjustment component 140, allowing the size of the air intake opening 141 to change with the magnitude of the suction force.
[0054] Please refer to Figure 2 The air intake channel 130 includes a first air intake channel 131 and a second air intake channel 132. The electronic atomizing device 100 also includes a power supply device 150. The power supply device 150 and the side wall of the housing 110 define the first air intake channel 131. The second air intake channel 132 is disposed on the housing 110, and the two ends of the second air intake channel 132 are respectively connected to the first air intake channel 131 and the outside.
[0055] It should be noted that in other embodiments, the first air intake channel 131 can be omitted, and the second air intake channel 132 on the outer shell 110 can be directly connected to the atomizing chamber 121.
[0056] Please refer to Figure 2 The second air intake channel 132 has a retaining step 1321 at one end opposite to the first air intake channel 131, the retaining step 1321 being used to retain the air intake adjustment component 140. And / or, the electronic atomizing device 100 also includes a fixing component, which is disposed on the side wall of the second air intake channel 132 for fixing the air intake adjustment component 140.
[0057] The support step 1321 is designed to prevent the air intake adjustment component 140 from falling off. Similarly, since the air intake adjustment component 140 is relatively light, it may be carried out of the second air intake channel 132 during suction. Therefore, the air intake adjustment component 140 is fixed by setting a fixing component.
[0058] Please refer to Figure 2 The second air intake channel 132 is located at the bottom of the housing 110, and a support member 111 is provided at the bottom of the housing 110. The support member 111 is used to support the power supply device 150, so as to define a portion of the first air intake channel 131 with the bottom of the housing 110.
[0059] When the power supply device 150 is placed inside the housing 110, it may cover the first air intake channel 131 at the bottom of the housing 110, affecting air intake. The support member 111 can leave a gap at the bottom of the housing 110 to prevent the first air intake channel 131 from being covered by the power supply device 150.
[0060] The second air intake channel 132 is disposed on the side wall of the housing 110 and communicates with the outside. For example, it can be disposed on the side wall of the housing 110 corresponding to the atomizer 120.
[0061] Please refer to Figure 1 The electronic atomizing device 100 also includes a mouthpiece 160. The power supply device 150 is positioned away from the mouthpiece 160 relative to the atomizer 120, and the mouthpiece 160 and the atomizing chamber 121 are arranged in a straight line. Specifically, the atomizing tube, atomizing air passage 190 and mouthpiece 160 in the atomizer 120 are arranged in a straight line to facilitate smooth flow of aerosol.
[0062] In this embodiment, the intake regulating component 140 has a planar structure. A fixing groove is provided around the side wall of the intake hole, and a fixing component is provided in the fixing groove. The intake regulating component 140 is partially accommodated in the fixing groove, and the fixing component passes through the intake regulating component 140 to fix the intake regulating component 140.
[0063] Please refer to Figure 2 The electronic atomizing device 100 also includes a first mounting member 170, which is disposed within the housing 110. The first mounting member 170 and the side wall of the housing 110 define an atomizing chamber 121. The first mounting member 170 has a first mounting through hole, in which the atomizer 120 is partially inserted. Additionally, the first mounting member 170 has two openings at the end opposite to the atomizer 120. These openings connect to the power supply device 150 and the first air intake channel 131 defined by the housing 110, and also communicate with the first mounting through hole. The first mounting member 170 is made of silicone.
[0064] Please refer to Figure 2 The electronic atomizing device 100 also includes a second mounting component 180, which is disposed inside the housing 110 and has a second mounting through hole. The steel pipe containing the atomizing air passage 190 is inserted into the second mounting through hole, and the end of the atomizing air passage 190 away from the second mounting through hole is connected to the atomizing tube of the atomizer 120.
[0065] The above-described specific examples are for illustrative purposes only and are not intended to limit the scope of this invention. Those skilled in the art to which this invention pertains can make various simple deductions, modifications, or substitutions based on the concept of this invention.
Claims
1. An electronic atomization device, comprising: The electronic atomization device comprises: a shell; an atomizer arranged in the shell, the atomizer having an atomization cavity; an air inlet channel arranged in the shell and having one end in communication with the atomization cavity and the other end in communication with the outside; and an air inlet adjusting member arranged in the air inlet channel and having an elastic structure, the air inlet adjusting member being provided with an air inlet opening, the air inlet opening being capable of allowing airflow to pass through and the size of the air inlet opening being capable of changing according to the size of the suction force.
2. The electronic atomizing device of claim 1, wherein, In the non-suction state, the air inlet opening has a minimum gap.
3. The electronic atomizing device of claim 1, wherein, The shape of the air inlet opening comprises at least one of a cross-shaped groove and a special-shaped groove.
4. The electronic atomizing device of claim 1, wherein, The air inlet channel comprises a first air inlet channel and a second air inlet channel, and the electronic atomization device further comprises a power supply device, the power supply device and the side wall of the shell defining the first air inlet channel, the second air inlet channel being arranged on the shell, and the two ends of the second air inlet channel being in communication with the first air inlet channel and the outside, respectively.
5. The electronic atomizing device of claim 4, wherein, The end of the second air inlet channel away from the first air inlet channel has a bearing step for bearing the air inlet adjusting member. And / or, the electronic atomization device further comprises a fixing member arranged on the side wall of the second air inlet channel for fixing the air inlet adjusting member.
6. The electronic atomizing device of claim 4, wherein, The second air inlet channel is arranged on the bottom of the shell, and the bottom of the shell is provided with a support for supporting the power supply device to define part of the first air inlet channel with the bottom of the shell.
7. The electronic atomizing device of claim 4, wherein, The second air inlet channel is arranged on the side wall of the shell and is in communication with the outside. 8.The electronic atomizing device of claim 4, wherein, Further comprising a suction nozzle, the power supply device being arranged away from the suction nozzle relative to the atomizer, and the suction nozzle and the atomization cavity being arranged in a linear manner. 9.The electronic atomization device of claim 1, wherein, The air inlet adjusting member is a hollow cylindrical structure with one side being open, and the air inlet opening is arranged on the side of the air inlet adjusting member opposite to the opening.
10. The electronic atomizing device of claim 1, wherein, The air inlet adjusting member is a planar structure, the side wall of the air inlet hole being provided with a fixing groove, and the fixing groove being provided with a fixing member, the air inlet adjusting member being partially accommodated in the fixing groove, and the fixing member being arranged on the air inlet adjusting member to fix the air inlet adjusting member.