Battery rod and electronic atomization device

By creating clearance holes on the mounting bracket and molding the silicone parts in one piece, the problem of the silicone reset button easily falling off is solved, improving the assembly efficiency of the battery rod and the reset effect of the button, and extending the service life of the circuit board and control switch.

CN224219525UActive Publication Date: 2026-05-12SHENZHEN GEEKVAPE TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHENZHEN GEEKVAPE TECH CO LTD
Filing Date
2025-05-15
Publication Date
2026-05-12

AI Technical Summary

Technical Problem

In existing technologies, the silicone reset button used in electronic atomizing devices is prone to falling off during assembly, resulting in low assembly efficiency and success rate.

Method used

Clearance holes are formed on the mounting bracket, and the silicone parts are integrally molded. The circuit board is located at the clearance holes, and the button can be pressed and limited between the reset parts, which improves assembly efficiency and success rate, and the button can be elastically reset through the reset parts.

Benefits of technology

The assembly process of silicone parts and mounting brackets has been simplified, improving the assembly efficiency and success rate of battery poles, enhancing the reset effect of buttons and user feel, while reducing the impact of dust and dirt on circuit boards and control switches, thus extending their service life.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a battery rod and an electronic atomization device. Belongs to the technical field of aerosol generation. According to the battery rod, the avoiding hole is formed in the mounting rack, and the silica gel piece is integrally formed on the mounting rack, so that the assembling steps between the silica gel piece and the mounting rack are simplified, and the phenomenon that the silica gel piece falls off due to contact with the shell in the assembling process of mounting the mounting rack in the shell is avoided; the circuit board is arranged on the mounting frame, the control switch is arranged on the circuit board and located at the receding hole, the receding hole is covered with the reset part of the silica gel piece, and the key is limited between the shell and the reset part in a pressing mode, so that the assembly efficiency and the assembly success rate of the battery rod are effectively improved. Therefore, the reset of the pressed and released key is realized by using the reset part, the structure of the key is simplified, and the pressing hand feeling of a user is improved.
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Description

Technical Field

[0001] This application relates to the field of aerosol generation technology, and more specifically, to a battery rod and an electronic atomizing device. Background Technology

[0002] Electronic atomizing devices are devices that use atomizing components to heat an aerosol matrix, causing the heated aerosol matrix to atomize and generate an aerosol for users to inhale.

[0003] Electronic atomizing devices consist of two parts: the atomizer and the battery. The battery typically has buttons for controlling the atomizer. Currently, there are two common button structures. The first type has a built-in spring-loaded structure that resets after being pressed, allowing for repeated pressing. The second type lacks a spring-loaded structure and requires an additional elastic mechanism for reset after pressing. Existing elastic mechanisms often use silicone, which is directly mounted on the circuit board at the switch location. Because the connection area between the silicone and the circuit board is small, the connection strength is low. Therefore, the silicone is prone to falling off during assembly under external force, affecting assembly efficiency and success rate. Utility Model Content

[0004] The main objective of this application is to provide a battery rod and an electronic atomizing device to solve the problem that the silicone used for button reset in the prior art is prone to falling off during assembly.

[0005] This application provides a battery rod, the battery rod comprising:

[0006] case;

[0007] A mounting bracket and a silicone component are provided. The mounting bracket is disposed within the housing and is configured to form a clearance hole. The silicone component is integrally formed on the mounting bracket and includes a reset part that covers the clearance hole.

[0008] A circuit board and a control switch, wherein the circuit board is mounted on the mounting bracket, and the control switch is mounted on the circuit board and located at the clearance hole; and

[0009] A button, which is pressable and located between the housing and the reset part, and is located on the outside of the reset part.

[0010] Furthermore, the thickness of the reset part is greater than the thickness of the area other than the reset part, and the button abuts against the reset part on the side facing the reset part.

[0011] Furthermore, the housing has a limiting through hole, which is directly opposite the clearance hole;

[0012] The button, facing the clearance hole, includes a pressing part, a limiting plate part, and a supporting part in sequence. The pressing part passes through the limiting through hole, the limiting plate part is limited to the inner wall of the housing, and the supporting part protrudes from the limiting plate part and abuts against the reset part.

[0013] Furthermore, the mounting bracket is also configured to have mounting positions;

[0014] The silicone component also includes a sealing part, which is integrally formed at the mounting position and together with the mounting bracket and the housing, forms an air intake channel.

[0015] The battery rod also includes an air regulating component, which is movably disposed between the mounting bracket and the housing and is sealed to the sealing part for regulating the airflow entering the air intake.

[0016] Furthermore, the air regulating component has at least one air passage hole;

[0017] The sealing part is sealed against the corresponding inner wall of the housing, and the sealing part is configured to form a sealing groove;

[0018] The housing has an air regulating hole corresponding to the sealing groove, and the sealing groove, the housing, and the mounting bracket together define an air intake channel;

[0019] The gas regulating component is movably and sealingly connected within the sealing groove, and the gas regulating component has a first position and / or a second position and / or a third position relative to the gas regulating hole under the action of external force.

[0020] When the air regulating component is in the first position, the air passage is not connected to the outside. When the air regulating component is in the second position, some of the air passages are connected between the air intake and the outside. When the air regulating component is in the third position, all of the air passages are connected between the air intake and the outside.

[0021] Furthermore, the air regulating component includes an air regulating body and a toggle part, the air regulating body is disposed in the sealing groove, and the toggle part protrudes from the air regulating body and passes through the air regulating hole;

[0022] The air regulating body is configured to have a first sub-hole, a second sub-hole, and a third sub-hole along the movement direction of the air regulating component. The first sub-hole is close to the actuating part, the second sub-hole is located between the first sub-hole and the third sub-hole, and the third sub-hole is far away from the actuating part.

[0023] When the air regulating component is in the first position, the first sub-hole, the second sub-hole, and the third sub-hole are not connected to the outside. When the air regulating component is in the second position, the first sub-hole is connected between the air intake and the outside. When the air regulating component is in the third position, the first sub-hole, the second sub-hole, and the third sub-hole are respectively connected between the air intake and the outside.

[0024] Under the action of external force, the air regulating component has a fourth position relative to the air regulating hole. When the air regulating component is in the fourth position, the first sub-hole and the second sub-hole are respectively connected between the air intake and the outside.

[0025] Furthermore, the silicone component also includes a first connecting portion, which is integrally formed on the mounting bracket and connected between the sealing portion and the reset portion.

[0026] Furthermore, the silicone part also includes a second connecting portion, which is integrally formed on the mounting bracket and intersects with the first connecting portion, and one end of the second connecting portion away from the first connecting portion corresponds to the injection port of the mold.

[0027] Furthermore, the sealing part and the reset part are integrally formed on opposite sides of the mounting bracket, and the second connecting part is vertically connected to the middle of the first connecting part.

[0028] On the other hand, this application also provides an electronic atomizing device, the electronic atomizing device including the battery rod described in any of the above claims; and

[0029] Atomizer, which is connected to the battery rod.

[0030] In the battery rod of this application, by forming the clearance hole on the mounting bracket and integrally molding the silicone part on the mounting bracket, the assembly steps between the silicone part and the mounting bracket are simplified, and the silicone part is prevented from falling off due to contact with the outer shell during the assembly process of installing the mounting bracket into the housing. This effectively improves the assembly efficiency and success rate of the battery rod. Furthermore, by placing the circuit board on the mounting bracket, placing the control switch on the circuit board and located at the clearance hole, and setting the reset part of the silicone part to cover the clearance hole, and pressing the button between the housing and the reset part, the reset part is used to reset the button after it has been pressed and released. This simplifies the button structure and improves the user's pressing feel. In addition, setting the reset part to cover the clearance hole can effectively prevent external dust and dirt from entering the mounting bracket through the clearance hole, thereby reducing the impact of dust and dirt on the circuit board and the control switch and extending the service life of the circuit board and the control switch. Attached Figure Description

[0031] The accompanying drawings, which are included to provide a further understanding of this application and form part of this application, illustrate exemplary embodiments and are used to explain this application, but do not constitute an undue limitation of this application. In the drawings:

[0032] Figure 1 This is an overall schematic diagram of the assembly structure in one embodiment of this application.

[0033] Figure 2 for Figure 1 A cross-sectional view along the A-A1 direction.

[0034] Figure 3 for Figure 2 Enlarged view of point A in the middle.

[0035] Figure 4 This is a schematic diagram of the assembly structure behind the hidden mounting bracket in one embodiment of this application.

[0036] Figure 5 This is an exploded view of the assembly structure behind the hidden mounting bracket in one embodiment of this application.

[0037] Figure 6 This is a schematic diagram of a bracket in one embodiment of the present application.

[0038] Figure 7 This is a schematic diagram of the bracket from another perspective in one embodiment of this application.

[0039] Figure 8This is a schematic diagram of the battery rod in one embodiment of this application.

[0040] Figure 9 for Figure 8 A cross-sectional view along the B-B1 direction.

[0041] Figure 10 for Figure 8 A cross-sectional view along the C-C1 direction.

[0042] Figure 11 for Figure 10 The enlarged view at point B shows the airflow path L.

[0043] Figure 12 This is a schematic diagram of a silicone component in one embodiment of this application.

[0044] Figure 13 This is a schematic diagram of the mounting bracket in one embodiment of this application.

[0045] Figure 14 This is a schematic diagram of the mounting bracket from another perspective in one embodiment of this application.

[0046] Figure 15 This is an overall schematic diagram of the mounting bracket and silicone parts in one embodiment of this application.

[0047] Figure 16 This is a schematic diagram of the mounting bracket and silicone parts from another perspective in one embodiment of this application.

[0048] The above figures include the following reference numerals:

[0049] Battery rod 100, assembly structure 10, mounting bracket 11, mounting post 111, clearance hole 112, mounting position 113, mounting space 114, insertion slot 115, bracket 12, mounting plate 121, connecting post 122, clearance space 123, first side plate 124, second side plate 125, positioning post 126, fixing part 13, limiting part 131, connecting rod part 132, display screen 14, circuit board 15, first limiting hole 151, second limiting hole 152, heat dissipation channel 16, housing 20, transparent part 21, limiting Through hole 22, air regulating hole 23, silicone part 30, reset part 31, sealing part 32, sealing groove 321, first connecting part 33, second connecting part 34, control switch 40, button 50, pressing part 51, limiting plate part 52, supporting part 53, air inlet 60, air regulating part 70, air regulating body 71, toggle part 72, air passage hole 73, first sub-hole 731, second sub-hole 732, third sub-hole 733, battery 81, charging board 82, charging interface 83, power supply electrode 91, first magnetic part 92, airflow path L. Detailed Implementation

[0050] It should be noted that, unless otherwise specified, the embodiments and features described in this application can be combined with each other. This application will now be described in detail with reference to the accompanying drawings and embodiments.

[0051] It should be noted that the terminology used herein is for the purpose of describing particular embodiments only and is not intended to limit the exemplary embodiments according to this application. As used herein, the singular form is intended to include the plural form as well, unless the context clearly indicates otherwise. Furthermore, it should be understood that when the terms "comprising" and / or "including" are used in this specification, they indicate the presence of features, steps, operations, devices, components, and / or combinations thereof.

[0052] Unless otherwise specifically stated, the relative arrangement, numerical expressions, and values ​​of the components and steps described in these embodiments do not limit the scope of this application. It should also be understood that, for ease of description, the dimensions of the various parts shown in the drawings are not drawn to actual scale. Techniques, methods, and devices known to those skilled in the art may not be discussed in detail, but where appropriate, such techniques, methods, and devices should be considered part of the specification. In all examples shown and discussed herein, any specific values ​​should be interpreted as merely exemplary and not as limitations. Therefore, other examples of exemplary embodiments may have different values. It should be noted that similar reference numerals and letters in the following drawings denote similar items; therefore, once an item is defined in one drawing, it need not be further discussed in subsequent drawings.

[0053] Please see Figure 1-7 As shown, this application provides an assembly structure 10, which includes a mounting frame 11, a bracket 12, a fastener 13, and a display screen 14. The bracket 12 is connected to the mounting frame 11 via the fastener 13, and the fastener 13 does not extend beyond the side of the bracket 12 opposite to the mounting frame 11; the display screen 14 is connected to the side of the bracket 12 opposite to the mounting frame 11, and the display screen 14 covers the fastener 13.

[0054] By changing the assembly steps of the bracket 12, the display screen 14, and the fastener 13 onto the mounting frame 11, and first assembling the bracket 12 onto the mounting frame 11 via the fastener 13, while ensuring that the fastener 13 does not extend beyond the side of the bracket 12 away from the mounting frame 11, a larger installation area for the display screen 14 is provided on the side of the bracket 12 away from the mounting frame 11. Then, when the display screen 14 is assembled onto the side of the bracket 12 away from the mounting frame 11, the display screen 14 covers the surface of the fastener 13. This fully utilizes the area of ​​the bracket 12 corresponding to the fastener 13 for assembling the display screen 14, thereby achieving a larger display area for the display screen 14 on the bracket 12 with a limited installation area, thus improving the display effect and user experience of the display screen 14.

[0055] In some embodiments, the fastener 13 may be a screw or pin or other connecting structure that can be detachably connected to the mounting bracket 11.

[0056] Please see Figure 5-7 As shown, the bracket 12 includes a mounting plate 121 and a connecting post 122. The connecting post 122 is located on the side of the mounting plate 121 facing the mounting frame 11, therefore, the connecting post 122 protrudes from the mounting plate 121 towards the mounting frame 11. The mounting plate 121 has a clearance space 123 corresponding to the connecting post 122.

[0057] The fixing member 13 includes a limiting part 131 and a connecting rod part 132. The limiting part 131 is located at one end of the connecting rod part 132. The connecting rod part 132 passes through the connecting post 122 and is connected to the mounting bracket 11. The limiting part 131 limits each other with at least one of the connecting post 122 and the mounting plate 121, thereby fixing the bracket 12 to the mounting bracket 11 and recessing it within the clearance space 123. This prevents the fixing member 13 from extending beyond the side of the bracket 12 away from the mounting bracket 11, thus allowing the bracket 12 to have a larger installation area for mounting the display screen 14.

[0058] In some embodiments, the clearance space 123 may be a notch or a countersunk hole, so that the limiting part 131 can be recessed into the clearance space 123, thereby preventing the fastener 13 from protruding from the mounting plate 121.

[0059] The bracket 12 further includes a first side plate 124 and a second side plate 125. The first side plate 124 and the second side plate 125 are respectively disposed on the mounting plate 121 and are respectively located on adjacent sides of the mounting plate 121. The first side plate 124 and the second side plate 125 extend from the side of the bracket 12 away from the mounting frame 11, so that the first side plate 124 and the second side plate 125 form a positioning angle on the mounting plate 121. The positioning angle is used to limit and position one of the adjacent sides of the display screen 14, so that when the display screen 14 is assembled on the side of the bracket 12 away from the mounting frame 11, it can be quickly positioned, and in subsequent use, the limiting effect of the first side plate 124 and the second side plate 125 can ensure that the display screen 14 is always stably maintained in the mounting position 113 on the bracket 12.

[0060] When the electronic atomizing device with the assembly structure 10 is placed vertically, one of the first side plate 124 and the second side plate 125 also serves to support the display screen 14, thereby further enabling the display screen 14 to be stably held in the mounting position 113 on the bracket 12.

[0061] Please see Figure 3-5 As shown, the assembly structure 10 also includes a circuit board 15. The circuit board 15 is electrically connected to the display screen 14 and is used to control the display of the display screen 14. The circuit board 15 is provided with a first limiting hole 151. The circuit board 15 is located between the bracket 12 and the mounting bracket 11. The fixing member 13 passes through the first limiting hole 151 of the connecting post 122 and connects to the mounting bracket 11. Thus, the bracket 12 and the circuit board 15 are connected through the fixing member 13, which can effectively simplify the assembly steps of the bracket 12 and the circuit board 15 and improve assembly efficiency.

[0062] In addition, since the connecting post 122 protrudes from the mounting plate 121, the circuit board 15 is sandwiched between the connecting post 122 and the mounting bracket 11, which can effectively limit the distance between the display screen 14 and the circuit board 15, thereby forming a heat dissipation channel 16 between the display screen 14 and the circuit board 15. This helps to dissipate the heat generated by the display screen 14 and the circuit board 15 more efficiently during operation. Furthermore, the separation by the mounting plate 121 can reduce the mutual interference of the heat generated by the display screen 14 and the circuit board 15 during their respective operations.

[0063] Please see Figure 3-5As shown, the mounting bracket 11 is also provided with a mounting post 111. The mounting post 111 is used to connect with the fixing member 13. By setting the mounting post 111, when the circuit board 15 is installed between the bracket 12 and the mounting bracket 11, it can be suspended in the air by the support of the connecting post 122 and the mounting post 111, which is conducive to the efficient heat dissipation of the circuit board 15.

[0064] The circuit board 15 is also provided with a second limiting hole 152. The bracket 12 also includes a positioning post 126. The positioning post 126 is connected to the mounting plate 121 and extends toward the circuit board 15, passing through the second limiting hole 152. By setting the positioning post 126, the bracket 12 and the circuit board 15 can be positioned during the assembly of the bracket 12 and the display screen 14 with the fixing frame, thereby reducing assembly difficulty and improving assembly efficiency.

[0065] The portion of the positioning post 126 that passes through the second limiting hole 152 is heat-fused and then connected to the side of the circuit board 15 near the mounting bracket 11. This allows the positioning post 126 to not only position the circuit board 15 but also fix the circuit board 15 to the bracket 12, thereby preventing the circuit board 15 from detaching from the bracket 12, improving the stability of the circuit board 15 fixed between the bracket 12 and the mounting bracket 11, and thus enabling the circuit board 15 to be stably electrically connected to the display screen 14.

[0066] In some embodiments, please refer to Figure 5-7 As shown, the mounting plate 121 is generally rectangular, thus having a first diagonal and a second diagonal. The bracket 12 includes two connecting posts 122 and two positioning posts 126. The two connecting posts 122 are respectively connected to the mounting plate 121 along the first diagonal and facing one side of the mounting frame 11, and the two positioning posts 126 are respectively connected to the mounting plate 121 along the second diagonal and facing one side of the mounting frame 11.

[0067] The circuit board 15 is provided with a first limiting hole 151 corresponding to each of the connecting posts 122, and a second limiting hole 152 corresponding to each of the positioning posts 126. The bracket 12 is provided with a mounting post 111 corresponding to each of the connecting posts 122.

[0068] By setting two positioning posts 126 along the second diagonal, the circuit board 15 can be effectively and accurately positioned on the bracket 12. By setting two connecting posts 122 along the first diagonal and setting a mounting post 111 for each connecting post 122, and by having two fixing members 13 pass through the corresponding connecting post 122 and the first limiting block respectively, and lock them onto the corresponding mounting post 111, the circuit board 15 can be stably clamped and connected between the bracket 12 and the mounting frame 11.

[0069] In some embodiments, the display screen 14 extends at least partially beyond the bracket 12 and is suspended relative to the bracket 12, so that the back side of the portion of the display screen 14 extending beyond the bracket 12 is not blocked by the mounting plate 121, thereby giving the display screen 14 a larger heat dissipation area and better heat dissipation effect.

[0070] On the other hand, please see Figure 8-16 and combined Figure 1-7 As shown, this application also provides a battery rod 100. The battery rod 100 includes the assembly structure 10 described in any of the above claims. Therefore, the battery rod 100 has all the above-described beneficial effects, which will not be repeated here.

[0071] Please see Figure 8-9 As shown, the battery rod 100 also includes a housing 20, the assembly structure 10 is disposed inside the housing 20, and the housing 20 is provided with a transparent element 21 corresponding to the display screen 14. The transparent element 21 is used to protect the display screen 14, and the content displayed on the display screen 14 can be seen through the housing 20 through the transparent element 21 for the user to view.

[0072] Please see Figure 10-13 As shown, the battery rod 100 also includes a silicone part 30, a control switch 40, and a button 50. The mounting bracket 11 is configured to form a clearance hole 112. The silicone part 30 is integrally formed on the mounting bracket 11 and includes a reset part 31, which covers the clearance hole 112. The control switch 40 is disposed on the circuit board 15 and located at the clearance hole 112. The button 50 is pressable and located between the housing 20 and the reset part 31, and is located outside the reset part 31.

[0073] By forming the clearance hole 112 on the mounting bracket 11 and integrally molding the silicone part 30 onto the mounting bracket 11, the assembly steps between the silicone part 30 and the mounting bracket 11 are simplified, and the silicone part 30 is prevented from falling off due to contact with the outer shell during the assembly process of installing the mounting bracket 11 into the housing 20. This effectively improves the assembly efficiency and success rate of the battery rod 100. Furthermore, by placing the circuit board 15 on the mounting bracket 11, placing the control switch 40 on the circuit board 15 and placing it at the clearance hole 112, and providing the reset part 3 of the silicone part 30, the assembly process is simplified. The clearance hole 112 is covered, and the button 50 is pressably positioned between the housing and the reset part 31. The reset part 31 is used to reset the button 50 after it has been pressed and released, thereby simplifying the structure of the button 50 and improving the user's pressing feel. In addition, setting the reset part 31 to cover the clearance hole 112 can effectively prevent external dust and dirt from entering the mounting bracket 11 through the clearance hole 112, thereby reducing the impact of dust and dirt on the circuit board 15 and the control switch 40, and improving the service life of the circuit board 15 and the control switch 40.

[0074] In some embodiments, please refer to Figure 11-12 As shown, the thickness of the reset part 31 is greater than the thickness of the area other than the reset part 31, so that the reset part 31 protrudes towards the button 50, and the side of the button 50 facing the reset part 31 abuts against the reset part 31. Therefore, the reset part 31 can work with the housing 20 to elastically limit and clamp the button 50, thereby preventing the button 50 from falling off, and improving the user's pressing feel and the reset effect of the button 50.

[0075] The housing 20 has a limiting through hole 22. The limiting through hole 22 is directly opposite the clearance hole 112. The button 50, facing the clearance hole 112, includes a pressing part 51, a limiting plate part 52, and a supporting part 53 in sequence. The pressing part 51 passes through the limiting through hole 22, the limiting plate part 52 is limited to the inner wall of the housing 20, and the supporting part 53 protrudes from the limiting plate part 52 and abuts against the reset part 31. This allows the button 50 to be limited and clamped by the elastic support of the reset part 31 and the limiting position of the housing 20, thereby effectively preventing the button 50 from falling off.

[0076] The supporting part 53 is directly opposite the control switch 40, and the cross-sectional area of ​​the supporting part 53 is smaller than the cross-sectional area of ​​the pressing part 51. The cross-sectional area of ​​the pressing part 51 is smaller than the cross-sectional area of ​​the limiting plate part 52. Therefore, the supporting part 53 can quickly squeeze the reset part 31 under the action of external force, and press the control switch 40 through the corresponding reset part 31, so that the control switch 40 can be pressed quickly. Also, because the part of the reset part 31 facing the supporting part 53 has a large deformation, it can also quickly drive the button 50 to reset when the button 50 is no longer subjected to external force.

[0077] Please see Figure 8 as well as Figure 11-16 As shown, the mounting bracket 11 also has a mounting position 113; the silicone part 30 also includes a sealing part 32, which is integrally formed at the mounting position 113 and together with the mounting bracket 11 and the housing 20 forms an air intake duct 60, which is used to allow external gas to enter and flow to the atomization channel of the atomizer.

[0078] The battery rod 100 also includes an air regulating component 70. The air regulating component 70 is movably disposed between the mounting bracket 11 and the housing 20 and is sealed to the sealing part 32. It is used to regulate the airflow entering the air inlet 60, so that the airflow of the atomizer inside the machine is adjustable, so that the user can adjust the airflow according to the vaping needs.

[0079] By integrally forming the sealing part 32 at the mounting position 113 of the mounting bracket 11, the sealing part 32 and the mounting bracket 11 at the mounting position 113 have better connection strength and sealing effect, thereby simplifying the assembly steps between the sealing part 32 and the mounting bracket 11 and reducing the assembly difficulty.

[0080] In some embodiments, the air regulating member 70 has at least one air passage 73, which can connect the airflow channel to the outside, and when connected, the external airflow flows sequentially through the airflow channel and the atomizing channel under the user's suction.

[0081] The sealing part 32 is sealed against the inner wall of the corresponding housing 20, and the sealing part 32 is configured to form a sealing groove 321; the housing 20 is formed with an air regulating hole 23 corresponding to the sealing groove 321, and the sealing groove 321, the housing 20 and the mounting bracket 11 together define an air intake duct 60, and the end face of the sealing groove 321 facing the inner wall of the housing 20 is sealed against the housing 20, and the air regulating hole 23 is located within the range of the sealing groove 321 that is sealed against the housing 20.

[0082] The air regulating component 70 is movably and sealingly connected within the sealing groove 321, and under the action of external force, the air regulating component 70 has at least two of the first, second, and third positions relative to the air regulating hole 23, thereby allowing the air regulating component 70 to be controlled in different positions to adjust the communication between the airflow channel and the outside.

[0083] In some embodiments, when the air regulating component 70 is in the first position, the air passage 73 is not connected to the outside, and the air regulating component 70 blocks the air regulating hole 23; when the air regulating component 70 is in the second position, some of the air passages 73 are connected between the air intake 60 and the outside, and the airflow entering the airflow channel is moderate; when the air regulating component 70 is in the third position, all the air passages 73 are connected between the air intake 60 and the outside, and the airflow entering the airflow channel is maximum.

[0084] In some embodiments, please refer to Figure 11 As shown, the air regulating component 70 includes an air regulating body 71 and a toggle part 72. The air regulating body 71 and the toggle part 72 can be separate structures that can be connected to each other, or the air regulating body 71 and the toggle part 72 can be an integral structure to facilitate the installation of the air regulating component 70. The air regulating body 71 is disposed in the sealing groove 321, and the outer wall of the air regulating body 71 is sealed to the groove wall of the sealing groove 321. The toggle part 72 protrudes from the air regulating body 71 and passes through the air regulating hole 23, for the user to apply force to adjust the position of the air regulating component 70 relative to the air regulating hole 23.

[0085] The air passage 73 includes a first sub-hole 731, a second sub-hole 732, and a third sub-hole 733. The air regulating body 71 is configured to form the first sub-hole 731, the second sub-hole 732, and the third sub-hole 733 along the movement direction of the air regulating component 70. The first sub-hole 731 is close to the actuating part 72, the second sub-hole 732 is located between the first sub-hole 731 and the third sub-hole 733, and the third sub-hole 733 is away from the actuating part 72. The diameters of the first sub-hole 731, the second sub-hole 732, and the third sub-hole 733 may be the same or different, and are not limited here.

[0086] When the air regulating component 70 is in the first position, the first sub-hole 731, the second sub-hole 732, and the third sub-hole 733 are not connected to the outside. At this time, the air regulating component 70 blocks the air regulating hole 23. When the air regulating component 70 is in the second position, only the first sub-hole 731 is connected between the air intake duct 60 and the outside. At this time, the second sub-hole 732 and the third sub-hole 733 are blocked. Therefore, the air flow rate entering the airflow duct is relatively small. When the air regulating component 70 is in the third position, the first sub-hole 731, the second sub-hole 732, and the third sub-hole 733 are respectively connected between the air intake duct 60 and the outside. At this time, the air flow rate entering the airflow duct is the largest.

[0087] Under the action of external force, the air regulating component 70 has a fourth position relative to the air regulating hole 23. When the air regulating component 70 is in the fourth position, the first sub-hole 731 and the second sub-hole 732 are respectively connected between the air intake 60 and the outside. At this time, the third sub-hole 733 is blocked, and the air flow rate entering the airflow channel is large.

[0088] By setting the first sub-hole 731, the second sub-hole 732 and the third sub-hole 733, the air regulating component 70 can have four different air flow adjustment levels, thereby meeting the different air flow adjustment needs of users.

[0089] Please see Figure 12 as well as Figure 15-16 As shown, the silicone part 30 also includes a first connecting part 33, which is integrally formed on the mounting bracket 11 and connected between the sealing part 32 and the reset part 31. By providing the first connecting part 33, the reset part 31 and the sealing part 32 form an integral whole. Therefore, it is not only convenient to integrally form the silicone part 30 on the mounting bracket 11, but also to effectively increase the connection area between the silicone part 30 and the mounting bracket 11, thereby improving the connection strength between the silicone part 30 and the mounting part.

[0090] The silicone part 30 also includes a second connecting part 34, which is integrally formed on the mounting bracket 11 and intersects with the first connecting part 33. One end of the second connecting part 34 away from the first connecting part 33 corresponds to the injection port of the mold. Therefore, after the silicone part 30 is integrally formed on the mounting bracket 11, the connection strength between the first connecting part 33 and the mounting bracket 11 will not be affected, and the connection strength between the silicone part 30 and the mounting part can be further improved.

[0091] In some embodiments, the sealing part 32 and the reset part 31 are integrally formed on opposite sides of the mounting bracket 11, so as to ensure the structural strength of the mounting bracket 11 and effectively extend the length of the first connecting part 33, so that the first connecting part 33 can be more stably connected to the mounting bracket 11. By setting the second connecting part 34 vertically connected to the middle of the first connecting part 33, the liquid silicone poured from the injection port of the mold corresponding to one end of the second connecting part 34 can flow evenly from the connection between the first connecting part 33 and the second connecting part 34 along the first connecting part 33 toward the reset part 31 and the sealing part 32, thereby improving the efficiency of the silicone part 30 injection molding onto the mounting bracket 11.

[0092] Please see Figure 9-11 As shown, the battery rod 100 also includes a battery 81, a charging board 82, and a charging interface 83. The mounting bracket 11 is also configured to form an installation space 114. The battery 81 and the charging board 82 are respectively disposed in the installation space 114 and are electrically connected to the circuit board 15. The charging interface 83 is electrically connected to the charging board 82 and can be connected to an external power source via a charging cable to charge the battery 81. The battery 81 is used to supply power to the circuit board 15 and the display screen 14.

[0093] The battery 81 is disposed between the circuit board 15 and the charging board 82 along the length of the housing 20, and the charging board 82 is located at one end of the bracket 12 near the bottom of the housing 20, so that the charging interface 83 can be exposed from the bottom of the housing 20 for charging.

[0094] The housing 20 is configured to form a plug-in groove 115, which is located at one end of the housing 20 away from the first bottom. The battery rod 100 also includes a power supply electrode 91 and a first magnetic element 92. The two power supply electrodes 91 are respectively connected to the mounting bracket 11 and electrically connected to the circuit board 15, and the two power supply electrodes 91 extend into the plug-in groove 115. The two first magnetic elements 92 are respectively disposed on the mounting bracket 11 and are respectively riveted to one of the power supply electrodes 91.

[0095] On the other hand, please refer to Figure 1-16 As shown, this application also provides an electronic atomizing device, which includes the battery rod 100 described in any of the above claims. Therefore, the electronic atomizing device has all the above-mentioned beneficial effects, which will not be repeated here.

[0096] The electronic atomizing device further includes an atomizer. The atomizer insert includes a connector, two receiving electrodes, and two second magnetic components. The connector is inserted into the connector slot 115, and each second magnetic component is attracted to a first magnetic component 92. Each receiving electrode is electrically connected to a power supply electrode 91, so that the atomizer is connected to the battery rod 100, thereby enabling the battery rod 100 to supply power to the atomizer and control the atomizer to work or stop working.

[0097] For ease of description, spatial relative terms such as "above," "on top of," "on the upper surface of," "above," etc., are used here to describe the spatial positional relationship of a device or feature as shown in the figure to other devices or features. It should be understood that spatial relative terms are intended to encompass different orientations in use or operation beyond the orientation of the device as described in the figure. For example, if a device in the figure is inverted, a device described as "above" or "on top of other devices or features" will subsequently be positioned as...

[0098] "below other devices or constructions" or "under other devices or constructions". Thus, the exemplary term "in..."

[0099] The term "above" can include both "above" and "below". The device can also be positioned in other different ways (rotated 90 degrees or in other orientations), and the spatial relative descriptions used herein are interpreted accordingly.

[0100] Furthermore, it should be noted that the use of terms such as "first" and "second" to define components is merely for the purpose of distinguishing the corresponding components. Unless otherwise stated, the above terms have no special meaning and therefore cannot be construed as limiting the scope of protection of this application.

[0101] The above are merely preferred embodiments of this application and are not intended to limit this application. Various modifications and variations can be made to this application by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this application should be included within the protection scope of this application.

Claims

1. A battery pole, characterized in that, include: case; A mounting bracket and a silicone component are provided. The mounting bracket is disposed within the housing and is configured to form a clearance hole. The silicone component is integrally formed on the mounting bracket and includes a reset part that covers the clearance hole. A circuit board and a control switch, wherein the circuit board is mounted on the mounting bracket, and the control switch is mounted on the circuit board and located at the clearance hole; as well as A button, which is pressable and located between the housing and the reset part, and is located on the outside of the reset part.

2. The battery rod according to claim 1, characterized in that, The thickness of the reset part is greater than the thickness of the area other than the reset part, and the button abuts against the reset part on the side facing the reset part.

3. The battery rod according to claim 1, characterized in that, The housing has a limiting through hole, which is directly opposite to the clearance hole; The button, facing the clearance hole, includes a pressing part, a limiting plate part, and a supporting part in sequence. The pressing part passes through the limiting through hole, the limiting plate part is limited to the inner wall of the housing, and the supporting part protrudes from the limiting plate part and abuts against the reset part.

4. The battery rod according to any one of claims 1-3, characterized in that, The mounting bracket is also configured to have mounting positions; The silicone component also includes a sealing part, which is integrally formed at the mounting position and together with the mounting bracket and the housing, forms an air intake channel. The battery rod also includes an air regulating component, which is movably disposed between the mounting bracket and the housing and is sealed to the sealing part for regulating the airflow entering the air intake.

5. The battery rod according to claim 4, characterized in that, The air regulating component has at least one air passage hole; The sealing part is sealed against the corresponding inner wall of the housing, and the sealing part is configured to form a sealing groove; The housing has an air regulating hole corresponding to the sealing groove, and the sealing groove, the housing, and the mounting bracket together define an air intake channel; The gas regulating component is movably and sealingly connected within the sealing groove, and the gas regulating component has a first position and / or a second position and / or a third position relative to the gas regulating hole under the action of external force. When the air regulating component is in the first position, the air passage is not connected to the outside. When the air regulating component is in the second position, some of the air passages are connected between the air intake and the outside. When the air regulating component is in the third position, all of the air passages are connected between the air intake and the outside.

6. The battery rod according to claim 5, characterized in that, The gas regulating component includes a gas regulating body and a toggle part. The gas regulating body is disposed in the sealing groove, and the toggle part protrudes from the gas regulating body and passes through the gas regulating hole. The air regulating body is configured to have a first sub-hole, a second sub-hole, and a third sub-hole along the movement direction of the air regulating component. The first sub-hole is close to the actuating part, the second sub-hole is located between the first sub-hole and the third sub-hole, and the third sub-hole is far away from the actuating part. When the air regulating component is in the first position, the first sub-hole, the second sub-hole, and the third sub-hole are not connected to the outside. When the air regulating component is in the second position, the first sub-hole is connected between the air intake and the outside. When the air regulating component is in the third position, the first sub-hole, the second sub-hole, and the third sub-hole are respectively connected between the air intake and the outside. Under the action of external force, the air regulating component has a fourth position relative to the air regulating hole. When the air regulating component is in the fourth position, the first sub-hole and the second sub-hole are respectively connected between the air intake and the outside.

7. The battery rod according to claim 4, characterized in that, The silicone component further includes a first connecting portion, which is integrally formed on the mounting bracket and connected between the sealing portion and the reset portion.

8. The battery rod according to claim 7, characterized in that, The silicone part further includes a second connecting part, which is integrally formed on the mounting bracket and intersects with the first connecting part. One end of the second connecting part away from the first connecting part corresponds to the injection port of the mold.

9. The battery rod according to claim 8, characterized in that, The sealing part and the reset part are integrally formed on opposite sides of the mounting bracket, and the second connecting part is vertically connected to the middle of the first connecting part.

10. An electronic atomizing device, characterized in that, The electronic atomizing device includes the battery rod as described in any one of claims 1-9; and Atomizer, which is connected to the battery rod.