Electronic atomization assembly shell capable of being rapidly assembled
The design of the card ball and arc slide allows for quick assembly and disassembly of the electronic atomizer component housing, solving the problems of production time and user disassembly inconvenience caused by traditional screw fixation, and improving connection stability and user experience.
Patent Information
- Application Number
- CN202422795686.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-15
- Publication Date
- 2025-10-28
- Estimated Expiration
- 2034-11-15
AI Technical Summary
The connection between the cover tube of the traditional electronic atomizer assembly housing and the atomizer assembly relies on multiple screws, which increases production time and cost and is inconvenient for users to disassemble and assemble, especially when cleaning or replacing.
It adopts a card ball and arc slide design, which can be quickly fixed by pushing and rotating the cover. When disassembling, press the pressure lever to unlock it. Combined with the sealing ring and magnetic baffle structure, it ensures a stable connection and prevents accidental touch.
It greatly simplifies the assembly and maintenance process, ensures a stable connection, improves user experience, prevents liquid leakage and accidental touch, and improves aesthetics and safety.
Smart Images

Figure CN223473132U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of electronic atomization component structure design, and in particular to an electronic atomization component shell that can be quickly assembled. Background Technology
[0002] The outer shell of an electronic atomizing component serves as both a protective exterior structure for the internal components and an aesthetic element of the product. Depending on the specific product design, the materials and manufacturing processes used for the shell can vary significantly.
[0003] In traditional electronic atomizer component designs, the connection between the housing and the atomizer assembly often relies on multiple screws. Each assembly or disassembly requires tightening or loosening these screws individually, which not only increases production time and costs but may also lead to a higher rate of human error on the production line. Furthermore, the frequent disassembly and assembly process is very inconvenient for ordinary users, especially when regular cleaning or replacement of the atomizer assembly is required.
[0004] Therefore, there is a particular need to design a housing for electronic atomizing components that can be assembled quickly in order to solve the aforementioned technical problems. Utility Model Content
[0005] In order to overcome the shortcomings of the existing technology, the present invention provides an electronic atomizing component housing that can be quickly assembled.
[0006] The technical solution of this utility model is as follows: A quickly assembled electronic atomizing component housing includes a housing, a cover plate, a bottle, a delivery pump, a conduit, an atomizer assembly, a cover, a conductive frame, screws, a heating wire, a retaining ball, and an elastic element. A cover plate is hinged to one side of the housing. A bottle is placed at the bottom front of the housing. A delivery pump is mounted in the upper part of the housing and connected to the upper part of the bottle below. A conduit is inserted into the top of the housing, connecting the delivery pump and the bottle. An atomizer assembly is threaded onto the top of the housing, and a cover is fitted over the atomizer assembly. A conductive frame is installed on the upper inner end of the atomizer assembly. Symmetrical screws are threaded on the upper and middle inner parts of the conductive frame. Heating wires are inserted into the upper and middle inner parts of the conductive frame. The ends of the screws at the corresponding positions are locked into the extension ends of the heating wires to achieve fixation. A retaining ball is slidably installed in the protrusions on both sides of the upper part of the atomizer assembly. An elastic element is provided between the end of the retaining ball and the end face of the corresponding protrusion. Two arc-shaped slides at the same horizontal height are opened on the inner side of the cover. The outer end of the retaining ball slides in contact with the arc-shaped slides at the same height.
[0007] In one embodiment, when the sleeve is pushed to the outside of the atomizer assembly, the inner ring wall of the sleeve first contacts the end of the retaining ball, and the retaining ball slides inward due to the friction generated by the contact. After the sleeve is fully pushed into place, it is rotated to the angle corresponding to the position of the retaining ball, and the retaining ball slides outward and embeds itself into the arc-shaped slide, thus achieving fixation.
[0008] In one embodiment, a sealing ring is also included, with sealing rings symmetrically arranged on both sides of the outer side of the atomizer assembly to contact the inner ring wall of the cover.
[0009] In one embodiment, a pressure rod is also included. The pressure rod is provided on the outside of the cover in a press-fit manner, with both ends of the pressure rod extending into the inside of the cover and close to the corresponding locking ball.
[0010] In one embodiment, the device further includes a sliding frame and a locking plate. The sliding frame is provided on one side of the lower part of the housing, and the locking plate is slidably disposed on the sliding frame. The end of the locking plate is embedded inside the cover plate.
[0011] In one embodiment, an elastic element two is also included, which is disposed between the interior of the sliding frame and the end of the card plate.
[0012] In one embodiment, a baffle and a magnet are also included. A baffle is slidably disposed on the upper front side of the housing corresponding to the outside of its own button. The baffle covers the housing's own button. A magnet is disposed on the top front side of the housing. The magnet and the baffle are magnetically attracted to each other.
[0013] In one embodiment, a protective shell is also included, with the outer part of the hood covered by a protective shell for creating a sanitary space.
[0014] The beneficial effects are: 1. This utility model uses a ball-locking and arc-shaped slide design to fix the cover by simply pushing it in and rotating it. When disassembling, pressing the lever will unlock it, which greatly simplifies the assembly and maintenance process.
[0015] 2. This utility model uses a ball-locking mechanism that engages with the arc-shaped slide inside the cover tube under the action of the elastic element, ensuring a stable connection between the cover tube and the atomizer assembly and preventing loosening due to vibration or impact.
[0016] 3. This utility model features a press-type lever that allows users to quickly disassemble the cover, facilitating cleaning and replacement of the atomizer components, thereby enhancing the user experience.
[0017] 4. The present invention can cover the control buttons by means of a sliding baffle on the front side of the upper part of the housing to avoid accidental touch. At the same time, the magnetic attraction between the baffle and the magnet ensures that the baffle remains closed when not in use. Attached Figure Description
[0018] Figure 1 This is a three-dimensional structural diagram of the present invention.
[0019] Figure 2 This is a three-dimensional structural diagram of the components of this utility model, including the shell, the e-liquid bottle, and the delivery pump.
[0020] Figure 3This is a three-dimensional structural diagram of the components of this utility model, including the conduit, atomizer assembly, and cover.
[0021] Figure 4 This is a three-dimensional structural diagram of the sealing ring, conductive frame, screws, and other components of this utility model.
[0022] Figure 5 This is a three-dimensional structural diagram of the ball-holding device and the elastic element of this utility model.
[0023] Figure 6 This is a three-dimensional structural diagram of the arc-shaped slide, pressure bar, and sliding frame of this utility model.
[0024] Figure 7 This is a three-dimensional structural diagram of the card plate and sliding frame of this utility model.
[0025] Figure 8 This is a three-dimensional structural diagram of the elastic element 2 and the sliding frame of this utility model.
[0026] In the attached diagram, the following are the reference numerals: 1-shell, 2-cover plate, 3-bottle body, 4-delivery pump, 5-conduit, 6-atomizer assembly, 7-shroud, 8-sealing ring, 9-conductive frame, 10-screw, 11-heating wire, 12-ball catch, 13-elastic element one, 14-arc slide, 15-pressure rod, 16-sliding frame, 17-clamping plate, 18-elastic element two, 19-baffle, 191-magnet, 20-protective shell. Detailed Implementation
[0027] The embodiments of this utility model will now be described in detail with reference to the accompanying drawings.
[0028] Example: A rapidly assembleable electronic atomizing component housing, such as... Figures 1-6As shown, the assembly includes a housing 1, a cover plate 2, a bottle 3, a delivery pump 4, a conduit 5, an atomizer assembly 6, a cover 7, a conductive frame 9, screws 10, a heating wire 11, a retaining ball 12, and an elastic element 13. The housing 1 serves as the main structure of the entire electronic atomizing assembly, providing installation space for the internal components and protecting them from external environmental influences. A cover plate 2 is hinged to one side of the housing 1 to close the opening and prevent dust and impurities from entering. The bottle 3 is placed at the bottom front of the housing 1 to store liquid. The delivery pump 4 is mounted in the upper part of the housing 1. The liquid is transported from bottle 3 to atomizer assembly 6. The delivery pump 4 is connected to the upper part of bottle 3 below. A conduit 5 is inserted into the top of the housing 1, connecting the delivery pump 4 and bottle 3 to form a liquid delivery channel. The atomizer assembly 6 is threaded onto the top of the housing 1, and a cover 7 is fitted around it. A conductive frame 9 is installed on the upper inner end of the atomizer assembly 6. Symmetrical screws 10 are threaded into the upper and middle inner parts of the conductive frame 9 to ensure the heating wire 11 is securely fixed, preventing loosening and improving the reliability and safety of the equipment. It can be disassembled and replaced when necessary. The new heating wire 11 is inserted into the upper and middle parts of the conductive frame 9. The conductive frame 9 converts the liquid into a mist through the heating effect of the heating wire 11, realizing the atomization function. The ends of the screws 10 at the corresponding positions are locked into the extension ends of the heating wire 11 for fixation. The protrusions on both sides of the upper part of the atomizer assembly 6 are slidably provided with retaining balls 12, which cooperate with the arc-shaped slide 14 to fix and remove the cover 7. An elastic element 13 is provided between the end of the retaining ball 12 and the end face of the corresponding protrusion to provide elastic force and ensure that the retaining ball 12 is pushed in and rotated. During the process, it can smoothly slide and embed into the arc-shaped slide 14 to achieve stable fixation. The inner side of the cover 7 has two arc-shaped slides 14 at the same horizontal height, and the outer end of the locking ball 12 slides in contact with the arc-shaped slide 14 at the same height. When the cover 7 is pushed into the outside of the atomizer assembly 6, the inner ring wall of the cover 7 first contacts the end of the locking ball 12, and the locking ball 12 slides inward due to the friction generated by the contact. After the cover 7 is fully pushed into place, it is rotated to the corresponding position angle of the locking ball 12, and the locking ball 12 slides outward and embeds into the arc-shaped slide 14 to achieve fixation.
[0029] like Figure 4 As shown, it also includes sealing rings 8. The sealing rings 8 are symmetrically arranged on both sides of the atomizer assembly 6 to contact the inner ring wall of the cover 7, so as to prevent liquid leakage and enhance the sealing performance of the equipment.
[0030] like Figure 6 As shown, it also includes a pressure rod 15. The pressure rod 15 is provided on the outside of the cover 7. Both ends of the pressure rod 15 extend into the inside of the cover 7 and are close to the corresponding locking ball 12. By pressing the pressure rod 15, the locking ball 12 is pushed inward, releasing the locking state between the locking ball 12 and the arc-shaped slide 14, making it convenient for users to quickly disassemble the cover 7 for cleaning or replacement.
[0031] like Figure 7-Figure 8 As shown, it also includes a sliding frame 16 and a locking plate 17. The sliding frame 16 is provided on one side of the lower part of the housing 1 for slidingly setting the locking plate 17. Through the cooperation of the sliding frame 16 and the locking plate 17, the cover plate 2 is ensured to be tightly closed, improving the sealing performance of the equipment. The locking plate 17 is slidably set on the sliding frame 16. The end of the locking plate 17 is embedded in the cover plate 2. Under the action of the elastic element 2 18, it is automatically embedded in the cover plate 2, ensuring that the cover plate 2 is tightly closed and preventing dust from entering.
[0032] like Figure 8 As shown, it also includes an elastic element 2 18. An elastic element 2 18 is provided between the inside of the sliding frame 16 and the end of the card plate 17 to provide elastic force, ensuring that the card plate 17 slides freely in the sliding frame 16 and automatically embeds itself when the cover plate 2 is closed, thereby improving the sealing and stability of the equipment.
[0033] like Figures 1-2 As shown, it also includes a baffle 19 and a magnet 191. The baffle 19 is slidably arranged on the upper front side of the housing 1 corresponding to the outside of its own button. The baffle 19 covers the button of the housing 1. The magnet 191 is arranged on the top front side of the housing 1. The magnet 191 and the baffle 19 are magnetically attracted to each other, thereby ensuring that the baffle 19 remains closed when not in use, improving the aesthetics and safety of the device.
[0034] like Figure 1 As shown, it also includes a protective shell 20. The outer casing 7 is covered with a protective shell 20 for creating a sanitary space. The protective shell 20 can increase the aesthetics of the equipment, reduce the impact of external pollutants, and improve the safety and hygiene of use.
[0035] First, place the bottle 3 at the bottom front of the housing 1. Then, install the delivery pump 4 in the upper part of the housing 1, ensuring that the delivery pump 4 is connected to the upper part of the bottle 3 through the conduit 5. This design ensures that the liquid can be smoothly delivered from the bottle 3 to the atomization area. Next, install the atomizer assembly 6 on the top of the housing 1 via a threaded connection. Beforehand, a cover 7 is pre-fitted onto the outside of the atomizer assembly 6. The conductive frame 9 inside the atomizer assembly 6 is fixed to the heating wire 11 by screws 10, ensuring that the heating wire 11 can heat stably and achieve the atomization function. When the cover 7 is fitted onto the outside of the atomizer assembly 6, the inner ring wall of the cover 7 first contacts the end of the retaining ball 12. Due to the friction between the retaining ball 12 and the inner wall of the cover 7, the retaining ball 12 will slide inward. As the cover 7 is fully pushed into place, gently rotate the cover 7 so that the retaining ball 12 is aligned with the arc-shaped slide 14 on the inner side of the cover 7. At this time, the retaining ball 12 slides outward under the action of the elastic element 13. The cover 7 is fixed by inserting it into the arc-shaped slide 14. The sealing ring 8 on the outside of the atomizer assembly 6 is in close contact with the inner ring wall of the cover 7, effectively preventing liquid leakage and enhancing sealing performance. When the cover 7 needs to be disassembled, press the lever 15. The lever 15 pushes the locking ball 12 inward, releasing the locking state between the locking ball 12 and the arc-shaped slide 14, making it convenient for users to quickly disassemble the cover 7 for cleaning or replacement. When the cover 2 is closed, the locking plate 17 is automatically inserted into the cover 2 under the action of the elastic element 18, ensuring that the cover 2 is tightly closed and preventing dust from entering. The baffle 19 covers the control button of the housing 1 to avoid accidental touch. The magnet 191 magnetically engages with the baffle 19 to ensure that the baffle 19 remains closed when not in use. Finally, a protective shell 20 is put on the outside of the cover 7. The protective shell 20 not only increases the aesthetics of the equipment, but also creates a hygienic space, reducing the impact of external pollutants and improving the safety and hygiene of use.
[0036] The above embodiments are provided for those skilled in the art to implement or use the present invention. Those skilled in the art can make various modifications or changes to the above embodiments without departing from the inventive concept of the present invention. Therefore, the protection scope of the present invention is not limited to the above embodiments, but should be the maximum scope that conforms to the innovative features mentioned in the claims.
Claims
1. A rapidly assembleable electronic atomizing component housing, comprising a housing (1), a cover plate (2), a bottle (3), a delivery pump (4), a conduit (5), and an atomizer assembly (6), wherein the cover plate (2) is hinged to one side of the housing (1), the bottle (3) is placed at the bottom front of the housing (1), the delivery pump (4) is mounted in the upper part of the housing (1), the delivery pump (4) is connected to the upper part of the bottle (3) below, the conduit (5) is inserted into the top of the housing (1), the conduit (5) is connected to the delivery pump (4) and the bottle (3), and the atomizer assembly (6) is threaded on the top of the housing (1); characterized in that, It also includes a cover (7), a conductive frame (9), screws (10), heating wires (11), a retaining ball (12), and an elastic element (13). The atomizer assembly (6) is covered by a cover (7). A conductive frame (9) is installed on the upper inner end of the atomizer assembly (6). Symmetrical screws (10) are threaded in the upper and middle inner parts of the conductive frame (9). Heating wires (11) are inserted in the upper and middle inner parts of the conductive frame (9). The screws in the corresponding parts are... The ends of the nails (10) are all locked to the extension end of the heating wire (11) to achieve fixation. The upper two sides of the atomizer assembly (6) are slidably provided with ball clamps (12). An elastic element (13) is provided between the end of the ball clamp (12) and the end face of the corresponding protrusion. Two arc-shaped slides (14) at the same horizontal height are opened on the inner side of the cover (7), and the outer end of the ball clamp (12) slides in contact with the arc-shaped slides (14) at the same height.
2. The rapidly assembleable electronic atomizing component housing according to claim 1, characterized in that, When the sleeve (7) is pushed into the outside of the atomizer assembly (6), the inner ring wall of the sleeve (7) first contacts the end of the retaining ball (12), and the retaining ball (12) slides inward due to the friction generated by the contact. After the sleeve (7) is fully pushed into place, it is rotated to the corresponding position angle of the retaining ball (12), and the retaining ball (12) slides outward and embeds itself into the arc-shaped slide (14) to achieve fixation.
3. The rapidly assembleable electronic atomizing component housing according to claim 2, characterized in that, It also includes sealing rings (8), and sealing rings (8) that contact the inner ring wall of the cover (7) are symmetrically arranged on both sides of the atomizer assembly (6).
4. The rapidly assembleable electronic atomizing component housing according to claim 3, characterized in that, It also includes a pressure rod (15), which is pressed on the outside of the cover (7). Both ends of the pressure rod (15) extend into the inside of the cover (7) and are close to the corresponding locking ball (12).
5. The rapidly assembleable electronic atomizing component housing according to claim 4, characterized in that, It also includes a sliding frame (16) and a locking plate (17). The sliding frame (16) is provided on one side of the lower part of the housing (1), and the locking plate (17) is slidably provided on the sliding frame (16). The end of the locking plate (17) is embedded in the cover plate (2).
6. The rapidly assembleable electronic atomizing component housing according to claim 5, characterized in that, It also includes a second elastic element (18), which is provided between the inside of the sliding frame (16) and the end of the card plate (17).
7. The rapidly assembleable electronic atomizing component housing according to claim 6, characterized in that, It also includes a baffle (19) and a magnet (191). The baffle (19) is slidably provided on the front upper part of the housing (1) corresponding to the outside of its own button. The baffle (19) covers the button of the housing (1). A magnet (191) is provided on the front top of the housing (1). The magnet (191) and the baffle (19) are magnetically attracted to each other.
8. The rapidly assembleable electronic atomizing component housing according to claim 7, characterized in that, It also includes a protective shell (20), which is used to create a sanitary space.