Mounting assembly and atomization device

By designing the wiring holes, ribs, and sealing plates of the mounting components, the problems of pin wobbling and safety hazards of the atomizing components were solved, resulting in a stable and well-sealed atomizing device.

CN224165713UActive Publication Date: 2026-04-28SHENZHEN SKE TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHENZHEN SKE TECH CO LTD
Filing Date
2025-04-27
Publication Date
2026-04-28

AI Technical Summary

Technical Problem

In existing technologies, the pins of atomizing components are prone to wobbling during installation, resulting in poor fixation. Furthermore, adhesive may seep through the fixing holes and come into contact with the atomizing matrix, posing a safety hazard of inhalation.

Method used

The mounting components include a mounting base, mounting cylinder, fastener, sealing plate, and adhesive material. Through the design of the wire hole, rib, wire channel, and sealing plate, the pins are guided and fixed. The sealing plate prevents the adhesive material from contacting the atomizing matrix. Combined with the sealing sleeve of the sealing base and the vent, the airtightness is ensured.

Benefits of technology

This achieves stable fixation of the atomizing component pins, avoids inhalation safety issues, and improves the device's sealing and inhalation effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a mounting assembly and an atomization device. The mounting assembly comprises a mounting base, a mounting cylinder, a fixing piece, a sealing piece and a viscous substance. A wire passing hole is formed in the mounting seat, an annular bone position is arranged on the bottom surface of the mounting seat, and the bone position surrounds the bottom wall of the wire passing hole or at least partially coincides with the bottom wall of the wire passing hole; the mounting cylinder is arranged above the mounting seat, the bottom end of the mounting cylinder is connected with the mounting seat, and the mounting cylinder surrounds the top wall of the wire passing hole or partially coincides with the top wall of the wire passing hole; the fixing piece is sleeved in the mounting cylinder, and the fixing piece penetrates in the axial direction of the mounting cylinder to form a wire passing channel; the sealing piece seals the wire passing channel, and the sealing piece can be punctured by a pin of the atomization assembly; the viscous substance is coated in the bone position, and the viscous substance can be solidified to enhance the strength of the bone position. According to the mounting assembly, the fixing effect on the atomization assembly pin is good, and the viscous substance does not make contact with the atomization matrix in the atomization assembly.
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Description

Technical Field

[0001] This application relates to the field of atomization technology, and particularly to mounting components and atomizing devices. Background Technology

[0002] Electronic atomizing devices include an atomizing component and a mounting component for mounting the atomizing component. During the installation of the atomizing component, because the pins of the atomizing component are prone to wobbling, current technology generally uses UV adhesive to bond the pins to the mounting component. However, the adhesive can seep through the holes that fix the pins and come into contact with the atomizing matrix, leading to a potential safety hazard from inhalation. Utility Model Content

[0003] The main objective of this application is to provide a mounting component and an atomizing device to solve the technical problem of poor fixation of the pins of the atomizing component on the mounting component.

[0004] To achieve the above objectives, the first aspect of this application provides an installation component, the installation component comprising:

[0005] The mounting base has a wire-passing hole, and the bottom surface of the mounting base has an annular rib, which surrounds the bottom wall of the wire-passing hole or at least partially overlaps with the bottom wall of the wire-passing hole.

[0006] An mounting cylinder is positioned above the mounting base and its bottom end is connected to the mounting base. The mounting cylinder surrounds the top wall of the wire passage hole or partially overlaps with the top wall of the wire passage hole.

[0007] A fastener is fitted inside the mounting cylinder, and the fastener passes through the mounting cylinder along the axial direction to form a wire passage;

[0008] A sealing plate, sealing the wire passage, the sealing plate being puncturable by the pins of the atomizing component; and

[0009] An adhesive substance is applied to the bone site, and the adhesive substance can solidify to enhance the strength of the bone site.

[0010] Optionally, the number of the wire holes, the bone positions, and the wire channels are equal and there are at least two of them, and the at least two wire holes, the bone positions, and the wire channels are arranged in a one-to-one correspondence.

[0011] Optionally, the wire-passing hole is located at the edge of the mounting cylinder, and the inner wall of the mounting cylinder is recessed outward to form a mounting groove. The mounting groove passes through the mounting cylinder in the axial direction, and the mounting groove coincides with a portion of the wall of the wire-passing hole.

[0012] Optionally, the portion of the wall of the wire hole that does not overlap with the mounting groove tapers downwards.

[0013] Optionally, the mounting base has an vent hole, the mounting cylinder surrounds the top wall of the vent hole, and the fixing member passes through the mounting cylinder along the axial direction to form a vent channel.

[0014] Optionally, the wall of the air passage extends downward to form an air passage cylinder, the bone position is an open ring, the open side of the bone position is connected to the outer wall of the air passage cylinder, and the viscous substance is connected to the outer wall of the air passage cylinder.

[0015] Optionally, the outer wall of the top of the air cylinder is recessed downwards and inwards to form a relief groove, and the top wall of the relief groove coincides with part of the bottom wall of the wire hole.

[0016] Optionally, the closure sheet is made of an elastic material.

[0017] Optionally, the bottom surface of the mounting base is provided with a mounting groove and a clearance groove. The openings of the mounting groove and the clearance groove both face downwards. One side of the clearance groove is connected to one side of the mounting groove. The mounting assembly also includes a sealing seat. The sealing seat is located below the mounting base and is sealed to the mounting base. The top surface of the sealing seat is provided with a protrusion. The protrusion is opposite to the clearance groove. The protrusion is used to press the pin of the atomizing component into the clearance groove. The sealing seat has an insertion port corresponding to the mounting groove.

[0018] Optionally, the mounting groove protrudes from the bottom surface of the mounting base, the clearance groove is formed by the upward-facing recess of the mounting groove opening, the top surface of the sealing base extends upward to form a connecting groove, the connecting groove is fitted into the mounting groove, the insertion port is opened at the bottom of the connecting groove, the connecting groove has an axially penetrating clearance notch, the clearance notch is opened in the part of the connecting groove near the clearance groove, the clearance notch is used to avoid the pin of the atomizing component, and the protrusion is provided at the bottom wall of the clearance notch.

[0019] Optionally, the protrusion passes through the clearance notch.

[0020] Optionally, the periphery of the sealing seat extends toward the mounting seat and / or the periphery of the mounting seat extends toward the sealing seat, and the sealing seat is sealed to the mounting seat; the mounting seat has an vent hole and the wall of the vent hole extends downward to form an vent cylinder, the sealing seat has a vent hole corresponding to the vent hole and the wall of the vent hole extends upward to form a vent cylinder, and the vent cylinder and the vent cylinder are sealed to each other.

[0021] Optionally, the mounting base, the mounting cylinder, and the venting cylinder are integrally injection molded from polypropylene material; and / or, the sealing base and the venting cylinder are integrally injection molded from polypropylene material.

[0022] A second aspect of this application provides an atomizing device, the atomizing device comprising:

[0023] Atomizing components; and

[0024] In any of the above-described mounting components, the bottom end of the atomizing component is sleeved outside the mounting cylinder, the atomizing component includes a pin, the bottom end of the pin is capable of piercing the sealing plate, the bottom end of the pin passes through the wire channel, the wire hole and the bone position in sequence, and the pin is bonded to the adhesive material.

[0025] A third aspect of this application provides an atomizing device, the atomizing device comprising:

[0026] Atomizing components; and

[0027] The above-mentioned components also include a mounting assembly for a sealing base, wherein the bottom end of the atomizing component is sleeved outside the mounting cylinder, the atomizing component includes a pin, the bottom end of the pin is capable of piercing the sealing plate, the bottom end of the pin passes through the wire channel, the wire hole, the bone position and the clearance groove in sequence and bends in the opposite direction into the mounting groove, and the pin is bonded to the adhesive substance.

[0028] In the mounting assembly of this application, the pins of the atomizing component can be guided and fixed by the wire passage within the fixing component, resulting in a good pin fixation effect. Furthermore, even after the pins pass through the sealing plate, the sealing plate can still seal the wire passage, preventing viscous substances from contacting the atomizing matrix within the atomizing component and thus avoiding any inhalation safety issues.

[0029] In the mounting assembly of this application, after the pin of the atomizing component passes through the bone position, the pin further passes through the clearance groove and is bent in the opposite direction to install in the mounting groove. The protrusion on the sealing seat presses the pin tightly in the clearance groove, so that the pin will not move around in the clearance groove, thus the mounting assembly has a better fixing effect on the pin.

[0030] In the installation component of this application, the sealing between the installation component and the atomizing component is relatively good due to the sealing sleeve between the sealing seat and the installation seat, as well as the sealing sleeve between the air cylinder and the ventilation cylinder, so that the gas will not leak between the two, thus resulting in a better inhalation effect. Attached Figure Description

[0031] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on the structures shown in these drawings without creative effort.

[0032] Figure 1 This is an exploded view of an embodiment of the atomizing device of this application;

[0033] Figure 2 for Figure 1 A cross-sectional view of the embodiment shown;

[0034] Figure 3 for Figure 1 Details of some structures in the illustrated embodiment Figure 1 ;

[0035] Figure 4 for Figure 1 Details of some structures in the illustrated embodiment Figure 2 ;

[0036] Figure 5 for Figure 1 Details of some structures in the illustrated embodiment Figure 3 ;

[0037] Figure 6 Explosion of another embodiment of the atomizing device of this application Figure 1 ;

[0038] Figure 7 for Figure 6 Explosion of the illustrated embodiment Figure 2 .

[0039] Explanation of icon numbers:

[0040] label name label name 100 Installation components 110 Mounting base 111 wire hole 112 bone position 113 air pump 114 clearance slot 115 Mounting slot 116 Safe slot 120 Mounting cylinder 121 Mounting slot 130 Fasteners 131 Through-line channel 132 air passage 140 Sealing seat 141 Connecting slot 142 jack 143 bump 144 Avoiding gaps 145 Ventilation tube 150 Closed sheet 200 Atomizing components 210 pin

[0041] The realization of the purpose, functional features and advantages of this application will be further explained in conjunction with the embodiments and with reference to the accompanying drawings. Detailed Implementation

[0042] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of this application, and not all of the embodiments. Based on the embodiments of this application, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of this application.

[0043] It should be noted that all directional indicators (such as up, down, left, right, front, back, etc.) in the embodiments of this application are only used to explain the relative positional relationship and movement of each component in a certain specific posture (as shown in the figure). If the specific posture changes, the directional indicator will also change accordingly.

[0044] Furthermore, the use of terms such as "first" and "second" in this application is for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined with "first" or "second" may explicitly or implicitly include at least one of those features. Additionally, the term "and / or" throughout the text includes three solutions; taking A and / or B as an example, it includes technical solution A, technical solution B, and a technical solution that simultaneously satisfies A and B. Furthermore, the technical solutions of various embodiments can be combined with each other, but this must be based on the ability of a person skilled in the art to implement them. When the combination of technical solutions is contradictory or impossible to implement, it should be considered that such a combination of technical solutions does not exist and is not within the scope of protection claimed in this application.

[0045] This application discloses an installation assembly for mounting an atomizing component, comprising a mounting base, a mounting cylinder, a fixing member, a sealing plate, and an adhesive substance. The mounting base has a wire-passing hole, and the bottom surface of the mounting base has an annular rib, which surrounds or at least partially coincides with the bottom wall of the wire-passing hole. The mounting cylinder is positioned above the mounting base and its bottom end is connected to the mounting base, and the mounting cylinder surrounds or partially coincides with the top wall of the wire-passing hole. The fixing member is sleeved inside the mounting cylinder and extends through the mounting cylinder axially to form a wire-passing channel. The sealing plate seals the wire-passing channel and can be punctured by the pins of the atomizing component. The adhesive substance is applied to the rib and can solidify to enhance the strength of the rib.

[0046] In the mounting assembly of this application, the pins of the atomizing component can be guided and fixed by the wire passage within the fixing component, resulting in a good pin fixation effect. Furthermore, even after the pins pass through the sealing plate, the sealing plate can still seal the wire passage, preventing viscous substances from contacting the atomizing matrix within the atomizing component and thus avoiding any inhalation safety issues.

[0047] The following will mainly describe the specific structure of the installation components.

[0048] Please see Figures 1 to 4 , Figure 6 and Figure 7 The mounting assembly 100 of this application includes a mounting base 110, which has a wire-passing hole 111. The bottom surface of the mounting base 110 has an annular support 112 surrounding the wire-passing hole 111. When the atomizing assembly 200 is mounted on the mounting assembly 100, the pins 210 of the atomizing assembly 200 pass through the wire-passing hole 111 and the support 112 in sequence. The mounting assembly 100 includes an adhesive substance, which is applied to the support 112. The adhesive substance can solidify to enhance the strength of the support 112. The adhesive substance can be glue, such as UV-curing adhesive. The adhesive substance is used to bond with the pins 210, and the adhesive substance and the support 112 cooperate to fix the pins 210.

[0049] Please see Figures 2 to 4 The mounting base 110 has an vent hole, the wall of which extends downward to form an vent cylinder 113. The rib 112 is an open ring (e.g., a C-shaped ring, U-shaped ring, V-shaped ring, or irregularly shaped open ring), and the open side of the rib 112 is connected to the outer wall of the vent cylinder 113. An adhesive substance is used to connect the outer wall of the vent cylinder 113. Thus, the rib 112 has greater strength by connecting the vent cylinder 113 with the adhesive substance. The outer wall of the top of the vent cylinder 113 is recessed downward and inward to form a relief groove 114, the top of which coincides with part of the bottom wall of the wire hole 111. Therefore, the vent hole and the wire hole 111 are relatively close, the structure of the mounting assembly 100 is relatively compact, and with a suitable wall thickness for the vent cylinder 113, the wire hole 111 can have a suitable space for the pin 210 to pass through.

[0050] In one embodiment, the pin 210 extending from the bone position 112 is directly electrically connected to an external electrode.

[0051] In another embodiment, please refer to Figure 4 The bottom surface of the mounting base 110 is provided with a mounting groove 115, with the groove opening facing downwards. The mounting groove 115 is recessed into the bottom surface of the mounting base 110, and the pin 210, which protrudes from the rib position 112, is bent in the opposite direction and installed in the mounting groove 115. Through the design of the mounting groove 115, the mounting assembly 100 provides a relatively good fixing effect on the pin 210. Of course, the mounting groove 115 can also protrude from the bottom surface of the mounting base 110.

[0052] In yet another embodiment, please refer to Figure 7 The bottom surface of the mounting base 110 is provided with a mounting groove 115 and a clearance groove 116. The opening of the mounting groove 115 faces downward and protrudes from the bottom surface of the mounting base 110. The opening of the clearance groove 116 faces downward and one side of the clearance groove 116 communicates with one side of the mounting groove 115. The clearance groove 116 is formed by the upward-facing recess of the opening end of the mounting groove 115. The bottom end of the mounting groove 115 is flush with the bottom end of the clearance groove 116. The pin 210 that protrudes from the bone position 112 can pass through the clearance groove 116 and bend in the opposite direction to be installed in the mounting groove 115. The clearance groove 116 can guide and fix the pin 210, thereby providing a better fixing effect of the mounting assembly 100 on the pin 210. The mounting groove 115 and the clearance groove 116 can also be formed by the bottom surface of the mounting base 110 being recessed upwards. That is, both the mounting groove 115 and the clearance groove 116 are grooves, and the bottom end of the mounting groove 115 is flush with the bottom end of the clearance groove 116.

[0053] Please see Figures 1 to 3The mounting assembly 100 of this application includes a mounting cylinder 120, which is located above the mounting base 110 and connected to the mounting base 110 at its bottom end. The mounting cylinder 120 and the mounting base 110 can be integrally formed or detachably connected (e.g., snap-fit ​​or screw-fit).

[0054] Please see Figure 3 In one embodiment, the wire through hole 111 is located at the bottom edge of the mounting cylinder 120. The inner wall of the mounting cylinder 120 is recessed outward to form a mounting groove 121, which extends axially through the mounting cylinder 120 and partially overlaps with the top wall of the wire through hole 111. The pin 210 can be guided and fixed within the mounting cylinder 120 by the mounting groove 121, resulting in better pin fixation. The two mounting grooves 121 are lug-shaped, and the outer wall of the mounting cylinder 120 is cylindrical. Compared to a mounting cylinder 120 with lugs (formed by the mounting grooves 121) on its outer wall, the cylindrical mounting cylinder 120 is easier to manufacture and connect to other components. Please refer to [link to relevant documentation]. Figure 3 The portion of the wall of the through hole 111 that does not overlap with the mounting groove 121 tapers downwards. This improves the guiding and securing effect of the through hole 111 on the pin 210. The aforementioned wall can be a wall on a different side of the through hole 111 from the mounting groove 121 (e.g., Figure 3 (As shown), it can also be the wall on the same side as the mounting slot 121, without specific limitations. Please refer to the relevant documentation. Figure 3 and Figure 4 The clearance groove 114 (described above) and the through hole 111 together form an arc-shaped guide surface for guiding the pin 210.

[0055] In another embodiment, the mounting cylinder 120 may also surround the top wall of the wire hole 111, that is, the wire hole 111 is located in the middle of the bottom end of the mounting cylinder 120.

[0056] Please see Figure 2 and Figure 3 The bottom end of the mounting cylinder 120 also surrounds the top wall of the vent hole, meaning the vent hole is located in the middle of the bottom end of the mounting cylinder 120. As a result, the structure of the mounting assembly 100 is relatively compact.

[0057] Please see Figure 1 The mounting assembly 100 of this application includes a fixing member 130, which is sleeved inside the mounting cylinder 120. The fixing member 130 extends through the mounting cylinder 120 along its axial direction to form a wire passage 131 and an air passage 132. The wire passage 131 allows the pin 210 to pass through and guides and fixes the pin 210, while the air passage 132 allows gas to flow through.

[0058] Please see Figure 5The mounting component 100 of this application includes a sealing plate 150, which seals the wire passage 131. The sealing plate 150 can be punctured by the pin 210 of the atomizing component 200. Even after the pin 210 passes through the sealing plate 150, the sealing plate 150 still seals the wire passage 131. Adhesive substances are blocked by the sealing plate 150 and will not come into contact with the atomizing matrix inside the atomizing component 200, thus preventing inhalation safety issues. The sealing plate 150 can be made of an elastic material (such as silicone, plastic, rubber, or PVC). Therefore, when the sealing plate 150 is punctured by the pin 210, the sealing plate 150 and the pin 210 are sealed together, resulting in better fixation of the pin 210 and better isolation of adhesive substances. The sealing plate 150 can be disposed within the wire passage 131 (e.g., ...). Figure 5 (As shown), it can also be located at one end of the fixing member 130.

[0059] Please refer to the following: Figures 1 to 4 The number of pins 210, wire holes 111, bone positions 112, and wire channels 131 are equal and at least two, and at least two pins 210, wire holes 111, bone positions 112, and wire channels 131 are arranged in a one-to-one correspondence. Therefore, each pin 210 can be relatively well fixed by the mounting assembly 100. Please refer to [reference needed]. Figure 5 When the sealing piece 150 is located within the wire passage 131, the number of sealing pieces 150 is equal to the number of wire passages 131. When the sealing piece 150 is located at one end of the fixing member 130, the number of sealing pieces 150 can be one, and one sealing piece 150 can close all wire passages 131.

[0060] See Figure 1 , Figure 2 , Figure 6 and Figure 7 In some embodiments, the mounting assembly 100 further includes a sealing seat 140, which is located below and seals the mounting base 110, and the pin 210 and the external electrode are connected through the sealing seat 140.

[0061] Please see Figure 2 The periphery of the sealing seat 140 extends toward the mounting seat 110 and / or the periphery of the mounting seat 110 extends toward the sealing seat 140. The sealing seat 140 is sealed and fitted with the mounting seat 110. The sealing seat 140 has a vent hole corresponding to the air passage hole. The wall of the vent hole extends upward to form a vent cylinder 145. The air passage cylinder 113 and the vent cylinder 145 are sealed and fitted together. Thus, through the sealed fit between the sealing seat 140 and the mounting seat 110 and the sealed fit between the air passage cylinder 113 and the vent cylinder 145, the sealing performance between the mounting assembly 100 and the atomizing assembly 200 is relatively good, and gas will not leak between the two, resulting in a better inhalation effect.

[0062] Please refer to the following: Figures 1 to 4 The mounting base 110, mounting cylinder 120, and vent cylinder 113 can be integrally injection molded from polypropylene (PP) material, as can the sealing base 140 and vent cylinder 145. Thus, a tight connection is formed between the components through a riveting process, achieving a silicone-free sealing effect and reducing material costs and assembly steps.

[0063] In one embodiment, the sealing seat has an opening, the mounting seat 110 does not have a clearance groove 116 and a mounting groove 115, the external electrode is inserted through the opening and electrically connected to the pin 210 extending out of the bone position 112, or the pin 210 extending out of the bone position 112 is extended through the opening and electrically connected to the external electrode.

[0064] In another embodiment, the mounting base 110 is provided with a mounting groove 115 (e.g., Figure 4 As shown), the sealing seat 140 has a through-hole (not shown), and the external electrode is inserted into the mounting groove 115 through the through-hole and electrically connected to the pin 210 in the mounting groove 115.

[0065] In yet another embodiment, please refer to Figure 6 and Figure 7 The mounting base 110 is provided with a clearance groove 116 and a mounting groove 115. The top surface of the sealing base 140 is provided with a protrusion 143, which is opposite to the clearance groove 116. The protrusion 143 is used to press the pin 210 of the atomizing component 200 into the clearance groove 116. Thus, the protrusion 143 can press the pin 210 into the clearance groove 116, preventing the pin 210 from moving around in the clearance groove 116, and improving the fixing effect of the mounting component 100 on the pin 210. The sealing base 140 has a socket 142 corresponding to the mounting groove 115, which is used for inserting an external electrode.

[0066] Please see Figure 6 In the embodiment where the mounting base 110 has a mounting groove 115 and a clearance groove 116, the top surface of the sealing base 140 extends upward to form a connecting groove 141, which fits onto the mounting groove 115. The connecting groove 141 can fit either outside or inside the mounting groove 115. An insertion port 142 is formed at the bottom of the connecting groove 141. The connecting groove 141 has an axially penetrating clearance notch 144, which is located near the clearance groove 116 and is used to avoid the pin 210 of the atomizing assembly 200. A protrusion 143 is provided at the clearance notch 144. Therefore, the sealing base 140 can cooperate with the mounting base 110 to fix the pin 210, and the external electrode can be electrically connected to the pin 210.

[0067] Please see Figure 6 The protrusion 143 passes through the clearance notch 144, making the protrusion 143 longer and improving the connection between the protrusion 143 and the clearance groove 116. This results in a better fixation effect of the protrusion 143 and the clearance groove 116 on the pin 210. Of course, the protrusion 143 can also be without the clearance notch 144, and the protrusion 143 can still achieve the effect of fixing the pin 210.

[0068] Please see Figures 1 to 7 This application also proposes an atomizing device, which includes an atomizing component 200 and the aforementioned mounting component 100. The bottom end of the atomizing component 200 is sleeved outside the mounting cylinder 120. The atomizing component 200 includes a pin 210, the bottom end of which can pierce the sealing plate 150. The bottom end of the pin 210 passes through the wire channel 131, the wire hole 111, and the bone position 112 in sequence. The pin 210 is bonded to an adhesive substance. The pin 210 of the atomizing device of this application has a better fixing effect.

[0069] In one embodiment of the nebulizer, the mounting assembly does not include a sealing seat, and the pin 210 extending from the bone position 112 is electrically connected to an external electrode. In another embodiment of the nebulizer, the mounting assembly includes a sealing seat with a through-hole, through which the pin 210 extending from the bone position 112 and the external electrode are electrically connected. In yet another embodiment of the nebulizer, please refer to... Figures 1 to 5 The mounting assembly 100 includes a sealing seat 140, which has an opening (not shown), and the mounting base 110 has a mounting groove 115 (e.g., Figure 4 (As shown), the external electrode is inserted into the mounting slot 115 via a port and electrically connected to the pin 210 within the mounting slot 115. In another embodiment of the atomizing device, please refer to... Figure 6 and Figure 7 The mounting assembly 100 includes a sealing seat 140. The mounting seat 110 is provided with a clearance groove 116 and a mounting groove 115. The sealing seat 140 is provided with a protrusion 143. In this embodiment, the pin 210 of the atomizing device has a better fixing effect. Please refer to the above for details, which will not be repeated here.

[0070] The above description is merely a preferred embodiment of this application and does not limit the patent scope of this application. Any equivalent structural transformations made based on the inventive concept of this application and the contents of the specification and drawings of this application, or direct / indirect applications in other related technical fields, are included within the patent protection scope of this application.

Claims

1. A mounting assembly for mounting an atomizing assembly, characterized in that, The installation components include: The mounting base has a wire-passing hole, and the bottom surface of the mounting base has an annular rib, which surrounds the bottom wall of the wire-passing hole or at least partially overlaps with the bottom wall of the wire-passing hole. An mounting cylinder is positioned above the mounting base and its bottom end is connected to the mounting base. The mounting cylinder surrounds the top wall of the wire passage hole or partially overlaps with the top wall of the wire passage hole. A fastener is fitted inside the mounting cylinder, and the fastener passes through the mounting cylinder along the axial direction to form a wire passage; A sealing plate, sealing the wire passage, the sealing plate being puncturable by the pins of the atomizing component; and An adhesive substance is applied to the bone site, and the adhesive substance can solidify to enhance the strength of the bone site. The number of the wire-passing holes, the bone positions, and the wire-passing channels are equal and there are at least two of them. The at least two wire-passing holes, bone positions, and wire-passing channels are arranged in a one-to-one correspondence.

2. The mounting assembly according to claim 1, characterized in that, The inner wall of the mounting cylinder is recessed outward to form a mounting groove, which extends through the mounting cylinder in the axial direction and coincides with a portion of the wall of the wire hole. The portion of the wall of the wire hole that does not overlap with the mounting groove tapers downwards.

3. The mounting assembly according to claim 1, characterized in that, The mounting base has an vent hole, the mounting cylinder surrounds the top wall of the vent hole, and the fixing member passes through the mounting cylinder along the axial direction to form a vent channel.

4. The mounting assembly according to claim 3, characterized in that, The wall of the air passage extends downward to form an air passage cylinder, the bone position is an open ring, the open side of the bone position is connected to the outer wall of the air passage cylinder, and the viscous substance is bonded to the outer wall of the air passage cylinder. The outer wall of the top of the air cylinder is recessed downwards and inwards to form a relief groove, and the top wall of the relief groove coincides with part of the bottom wall of the wire hole.

5. The mounting assembly according to claim 1, characterized in that, The sealing sheet is made of an elastic material.

6. The mounting assembly according to any one of claims 1 to 5, characterized in that, The bottom surface of the mounting base is provided with a mounting groove and a clearance groove. The openings of both the mounting groove and the clearance groove face downwards. One side of the clearance groove communicates with one side of the mounting groove. The mounting assembly further includes: A sealing seat is provided below the mounting seat and is sealed to the mounting seat. The top surface of the sealing seat is provided with a protrusion, which is opposite to the clearance groove. The protrusion is used to press the pin of the atomizing component into the clearance groove. The sealing seat is provided with an insertion port corresponding to the mounting groove.

7. The mounting assembly according to claim 6, characterized in that, The mounting groove protrudes from the bottom surface of the mounting base. The clearance groove is formed by the upward-facing recess of the mounting groove opening. The top surface of the sealing base extends upward to form a connecting groove. The connecting groove fits into the mounting groove. The insertion port is opened at the bottom of the connecting groove. The connecting groove has an axially penetrating clearance notch. The clearance notch is opened in the part of the connecting groove near the clearance groove. The clearance notch is used to avoid the pins of the atomizing component. The protrusion is provided at the bottom wall of the clearance notch.

8. The mounting assembly according to claim 6, characterized in that, The periphery of the sealing seat extends toward the mounting seat and / or the periphery of the mounting seat extends toward the sealing seat, and the sealing seat is sealed to the mounting seat. The mounting base has an air passage hole and the wall of the air passage hole extends downward to form an air passage cylinder. The sealing base has a vent hole corresponding to the air passage hole and the wall of the vent hole extends upward to form a vent cylinder. The air passage cylinder and the vent cylinder are sealed together.

9. The mounting assembly according to claim 8, characterized in that, The mounting base, the mounting cylinder, and the air passage cylinder are integrally injection molded from polypropylene material; And / or, the sealing seat and the vent cylinder are integrally injection molded from polypropylene material.

10. An atomizing device, characterized in that, The atomizing device includes an atomizing component and an installation component as described in any one of claims 1 to 5. The bottom end of the atomizing component is sleeved outside the installation cylinder. The atomizing component includes a pin. The bottom end of the pin can pierce the sealing plate. The bottom end of the pin passes through the wire channel, the wire hole, and the bone position in sequence. The pin is bonded to the adhesive material. Alternatively, the atomizing device includes an atomizing component and an installation component as described in any one of claims 6 to 9, wherein the bottom end of the atomizing component is sleeved outside the installation cylinder, the atomizing component includes a pin, the bottom end of the pin being able to pierce the sealing plate, the bottom end of the pin sequentially passing through the wire passage, the wire hole, the bone position and the clearance groove and bending in the opposite direction into the installation groove, and the pin being bonded to the adhesive substance.