Electronic hookah with a flip cover structure
By using a mechanical connection method where the flip cover assembly is hinged to the main unit and the mouthpiece assembly is rotated and hinged, combined with the flip cover sealing silicone, magnetic structure and torsion spring connection, the problems of cumbersome assembly, easy loosening and poor sealing of existing electronic hookahs are solved, achieving stable assembly and beautiful hidden design, and improving user experience.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHENZHEN IMPETUS TECH CO LTD
- Filing Date
- 2025-07-31
- Publication Date
- 2026-07-21
AI Technical Summary
Existing electronic hookahs are cumbersome to assemble and prone to loosening. The connection of components relies heavily on screws, glue and other auxiliary fixing methods, resulting in poor sealing and easy leakage of e-liquid and intrusion of impurities. The flip cover is also prone to jamming and damage, and there is a lack of effective hidden storage design. When carrying them, they are prone to accidental activation or have an obtrusive appearance.
The device employs a mechanical connection method where the flip-top assembly is hinged to the main unit, and the mouthpiece assembly is rotated and hinged to the main unit. Combined with the flip-top sealing silicone, magnetic structure, and torsion spring connection, it ensures that the components are tightly connected, reduces the risk of falling off, enhances sealing performance, and improves aesthetics through a concealed design.
This technology enables precise and stable assembly of electronic hookahs, reducing the risk of parts falling off, improving sealing and service life, and enhancing the user experience and aesthetics.
Smart Images

Figure CN224522362U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of hookah technology, and in particular to an electronic hookah with a flip-top structure. Background Technology
[0002] Electronic hookahs are electronic atomization devices that use electricity to power an atomizer to heat tobacco paste, producing an inhalable aerosol. Compared to traditional tobacco products, electronic hookahs reduce the formation of harmful substances through low-temperature atomization technology, while offering a variety of flavor options to meet users' needs for nicotine intake or simply the atomizing experience. In recent years, the electronic hookah market has continued to grow.
[0003] Currently, electronic water vapor atomizers on the market typically consist of components such as an e-liquid tank, a coil, wicking material, heating wire, and electrodes. Most atomizers employ an exposed or semi-embedded design, connecting to the battery via threads or snap-fit mechanisms. Flip-top designs are less common. Their core structure includes a battery assembly, a coil, e-liquid tank, airflow channel, and mouthpiece assembly. When the user inhales, the airflow sensor automatically triggers the circuitry, creating a directional airflow system between the external air intake and the central exhaust tube.
[0004] The existing technology has the following shortcomings: the assembly of flip-top electronic hookahs is cumbersome and easy to loosen; the connection of components relies on screws, glue and other auxiliary fixing methods, resulting in poor sealing, leakage of e-liquid and intrusion of impurities; the flip-top is prone to jamming and damage when rotating; the exposed atomizer is easily affected by external impact or contamination, affecting its service life; most atomizers lack an effective hidden storage design, which can easily lead to accidental activation or obtrusive appearance when carried. Summary of the Invention
[0005] In view of the above problems, the present invention provides an electronic hookah with a flip-top structure to overcome or at least partially solve the above problems.
[0006] An electronic hookah with a flip-top structure includes a main unit, and a flip-top assembly and a mouthpiece assembly disposed on the top of the main unit; the mouthpiece assembly is provided on one side of the flip-top assembly;
[0007] The flip-top assembly is hinged to the main unit, and the bottom shape of the flip-top assembly is the same as the top shape of the main unit; the flip-top assembly includes an air tube assembly, a flip-top housing, and a hinge base disposed on the main unit; the air tube assembly passes through the flip-top housing and the hinge base and communicates with the main unit;
[0008] The mouthpiece assembly is rotatably hinged to the main unit; when the mouthpiece assembly is at a preset angle to the main unit, the mouthpiece assembly is connected to the main unit.
[0009] Preferably, the air tube assembly includes an air inlet tube, a silicone handle, a handle housing, and a cover plate;
[0010] The silicone handle is embedded in the handle housing, one end of the air intake pipe is connected to the handle housing, and the other end of the air intake pipe is connected to the cover plate.
[0011] Preferably, the air intake pipe includes a limiting bead, an air intake hole, and a handle connecting post;
[0012] The intake pipe is provided with the limiting bead and the intake hole in the middle, and the top of the intake pipe is provided with the handle connecting post; wherein, the intake hole is connected to the inside of the main unit.
[0013] Preferably, the height at both ends of the handle housing is greater than the height in the middle; the shape of the handle silicone is the same as that of the handle housing.
[0014] Preferably, the mouthpiece assembly includes a mouthpiece opening, a steel ring, and a rubber stopper;
[0015] The mouthpiece opening has a hollow air passage inside, and the rubber plug is fixed to the mouthpiece opening at the connection point between the mouthpiece opening and the main unit by a steel ring.
[0016] Preferably, one end of the mouthpiece connected to the main unit is a hollow sphere, and the other end of the mouthpiece is a ventilation rod; the ventilation rod is connected to the sphere.
[0017] Preferably, the cover plate is embedded in the top of the flip cover housing, and the flip cover sealing silicone is embedded in the bottom of the flip cover housing;
[0018] The bottom of the flip-top housing is connected to a base, and the base has a first magnet embedded in it.
[0019] Preferably, the hinged base includes a flip-top base and a second magnet disposed within the flip-top base;
[0020] The hinge base and the flip-top assembly are connected by a reset assembly.
[0021] Preferably, the reset assembly includes a bolt, a torsion spring, and a pivot plug; the bolt passes through the torsion spring, and the pivot plugs are provided on both sides of the bolt;
[0022] One end of the torsion spring is connected to the flip cover assembly, and the other end of the torsion spring is connected to the flip cover base.
[0023] Preferably, a display assembly is provided on one side of the flip-top base;
[0024] The display assembly includes a charging plate, a diaphragm, and buttons disposed below the diaphragm; the diaphragm is disposed on one side of the charging plate.
[0025] This application specifically includes the following advantages:
[0026] In the embodiments of this application, compared with the problems of cumbersome assembly and easy loosening in the prior art, exposed atomizer, and component connection relying on screws, glue and other auxiliary fixing methods, this application provides a solution for the hinged connection between the flip-top assembly and the main unit, and the rotatable hinged connection between the mouthpiece assembly and the main unit. Specifically, it includes a main unit, and a flip-top assembly and a mouthpiece assembly disposed on the top of the main unit; the mouthpiece assembly is provided on one side of the flip-top assembly; the flip-top assembly is hinged to the main unit, and the bottom shape of the flip-top assembly is the same as the top shape of the main unit; the flip-top assembly includes an air tube assembly, a flip-top shell, and a hinge base disposed on the main unit; the air tube assembly passes through the flip-top shell and the hinge base and communicates with the main unit; the mouthpiece assembly is rotatably hinged to the main unit; when the mouthpiece assembly is at a preset angle to the main unit, the mouthpiece assembly is connected to the main unit. With the electronic hookah with a flip-top structure of this application, the assembly is precise and stable: by using mechanical connection methods to replace traditional screws or glue, not only is the assembly process clear, but it also ensures tight component connection, reduces the risk of detachment, and facilitates later disassembly and maintenance. The flip-top sealant enhances the fit and seal between the base and the flip-top, reducing e-liquid leakage. The flip-top design conceals the atomizer's structure, resulting in an aesthetically pleasing appearance. Attached Figure Description
[0027] To more clearly illustrate the technical solution of this application, the drawings used in the description of this application 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 these drawings without creative effort.
[0028] Figure 1 This is a schematic diagram of the explosion structure of an electronic hookah with a flip-top structure according to the present invention.
[0029] Figure 2 This is a partial explosion structure diagram of an electronic hookah with a flip-top structure according to the present invention;
[0030] Figure 3 This is a schematic diagram of the disassembly structure of an electronic hookah with a flip-top structure according to the present invention;
[0031] Figure 4 This is a schematic diagram of the atomizer installation structure of an electronic hookah with a flip-top structure according to the present invention.
[0032] Figure 5 This is a schematic diagram of the air inlet pipe structure of an electronic hookah with a flip-top structure according to the present invention.
[0033] Figure 6This is a top view schematic diagram of an electronic hookah with a flip-top structure according to the present invention.
[0034] 1. Atomizer; 2. Flip-top assembly; 21. Air tube assembly; 211. Handle silicone; 212. Handle housing; 213. Air inlet tube; 214. Cover plate; 22. Flip-top housing; 23. Flip-top sealing silicone; 24. Base; 251. First magnet; 26. Flip-top base; 261. Second magnet; 26. Reset assembly; 261. Piston; 262. Torsion spring; 263. Rotary pivot plug; 3. Display assembly; 31. Charging board; 32. Diaphragm; 33. Button; 34. Button silicone; 4. Mouthpiece assembly. Detailed Implementation
[0035] To make the objectives, features, and advantages of this application more apparent and understandable, the application will be further described in detail below with reference to the accompanying drawings and specific embodiments. Obviously, the described embodiments are only some, not all, of the embodiments of this application. All other embodiments obtained by those skilled in the art based on the embodiments of this application without inventive effort are within the scope of protection of this application.
[0036] The inventors, through analysis of existing technologies, discovered that current electronic hookahs suffer from poor assembly stability. Component connections rely heavily on screws and glue for fixation, leading to cumbersome assembly steps and a high risk of component detachment due to loose screws or ineffective glue. Furthermore, they lack adequate sealing, exhibiting a lack of specialized sealing structures that facilitates e-liquid leakage. External moisture and dust can easily penetrate the device, impacting its lifespan and safety. The flip-top rotation also suffers from a poor user experience; its simple mechanism, relying on a single pivot or lacking elastic components, is prone to jamming and rattling. Over time, wear and tear can cause the flip-top to loosen, even failing to maintain stability at specific angles.
[0037] Reference Figure 1-6 This diagram illustrates the structure of an electronic hookah with a flip-top structure according to the present invention. Specifically, it includes the following structure: a main unit, and a flip-top assembly 2 and a mouthpiece assembly 4 disposed on the top of the main unit; the mouthpiece assembly 4 is located on one side of the flip-top assembly 2; the flip-top assembly 2 is hinged to the main unit, and the bottom shape of the flip-top assembly 2 is the same as the top shape of the main unit; the flip-top assembly 2 includes an air tube assembly 21, a flip-top housing 22, and a hinge base disposed on the main unit; the air tube assembly 21 passes through the flip-top housing 22 and the hinge base and communicates with the main unit; the mouthpiece assembly 4 is rotatably hinged to the main unit; when the mouthpiece assembly 4 is at a preset angle to the main unit, the mouthpiece assembly 4 communicates with the main unit.
[0038] In the embodiments of this application, compared with the problems of cumbersome assembly and easy loosening in the prior art, this application provides a solution for the hinged connection between the flip-top assembly 2 and the main unit, and the rotatable hinged connection between the mouthpiece assembly 4 and the main unit. Specifically, it includes a main unit, and a flip-top assembly 2 and a mouthpiece assembly 4 disposed on the top of the main unit; the mouthpiece assembly 4 is provided on one side of the flip-top assembly 2; the flip-top assembly 2 is hinged to the main unit, and the bottom shape of the flip-top assembly 2 is the same as the top shape of the main unit; the flip-top assembly 2 includes an air tube assembly 21, a flip-top housing 22, and a hinge base disposed on the main unit; the air tube assembly 21 passes through the flip-top housing 22 and the hinge base and communicates with the main unit; the mouthpiece assembly 4 is rotatably hinged to the main unit; when the mouthpiece assembly 4 is at a preset angle to the main unit, the mouthpiece assembly 4 is connected to the main unit. With the electronic hookah with a flip-top structure of this application, the assembly is precise and stable: by using mechanical connection instead of traditional screws or glue, the assembly process is not only clear, but also ensures tight connection of components, reduces the risk of detachment, and facilitates later disassembly and maintenance. The flip cover sealing silicone 23 enhances the fit and seal between the base 24 and the flip cover, reducing e-liquid leakage. A torsion spring 262 connects the base 24 and the lens, with the pivot fixed at the rotation node. Combined with the decorative reinforcement of the pivot plug 263, this ensures that the flip cover rotates smoothly and without jamming. The torsion spring 262 also helps maintain the flip cover's stability at different angles, improving the user experience and reducing the probability of wear and tear.
[0039] The following will further describe an electronic hookah with a flip-top structure in this exemplary embodiment.
[0040] In this embodiment of the application, a main unit is included, as well as a flip cover assembly 2 and a mouthpiece assembly 4 disposed on the top of the main unit; the mouthpiece assembly 4 is provided on one side of the flip cover assembly 2.
[0041] As an example, the electronic hookah host is equipped with a flip-top assembly 2 and a side-mounted mouthpiece assembly 4, featuring a compact structure and convenient operation. The flip-top design effectively prevents dust and leaks, and opens and closes smoothly; the mouthpiece is ergonomically designed to fit the lips, enhancing user comfort. The overall design is lightweight and portable, made of safe and heat-resistant materials, combining aesthetics and practicality, and boasts advantages such as strong hygiene protection, superior smoking experience, and long battery life.
[0042] In this embodiment of the application, the flip cover assembly 2 is hinged to the main unit, and the bottom shape of the flip cover assembly 2 is the same as the top shape of the main unit; the flip cover assembly 2 includes an air tube assembly 21, a flip cover housing 22, and a hinge base disposed on the main unit; the air tube assembly 21 passes through the flip cover housing 22 and the hinge base and communicates with the main unit.
[0043] In one specific embodiment, the flip-top assembly 2 is connected to the main unit via a hinge. Its bottom shape perfectly matches the top shape of the main unit to ensure a tight fit when closed. The flip-top assembly 2 consists of an air tube assembly 21, a flip-top housing 22, and a hinge base. The air tube assembly 21 passes through the flip-top housing 22 and the hinge base and connects to the inside of the main unit. This design achieves efficient airflow transmission and avoids external interference. The hinge base is fixed to the main unit to provide stable support. The flip-top housing 22 is designed to reduce overall weight while maintaining structural strength. The overall structure is compact, easy to operate, and highly durable. The seamless connection when closed enhances aesthetics. When opened, the hinge rotates flexibly without jamming. The reasonable layout of the air tube assembly 21 ensures unobstructed airflow. This design takes into account both functionality and practicality, is suitable for various working scenarios, is easy to maintain, and is not easily deformed or worn after long-term use. It overcomes the shortcomings of existing technologies that use screws and glue for connection, significantly improving the overall performance of the device and the user experience.
[0044] In this embodiment, the mouthpiece assembly 4 is rotatably hinged to the main unit; when the mouthpiece assembly 4 is at a preset angle to the main unit, the mouthpiece assembly 4 is in communication with the main unit. The mouthpiece assembly 4 includes a mouthpiece opening, a steel ring, and a rubber stopper; the mouthpiece opening has a hollow air passage inside, and the rubber stopper is fixed to the mouthpiece opening by the steel ring at the connection point between the mouthpiece opening and the main unit.
[0045] In this embodiment of the application, one end of the mouthpiece connected to the main unit is a hollow sphere, and the other end of the mouthpiece is a ventilation rod; the ventilation rod is connected to the sphere.
[0046] As an example, the mouthpiece is rod-shaped to fit the shape of the human mouth, allowing for a better experience of atomizing the e-liquid. The mouthpiece can be rotated around the sphere at a certain angle to close the airway, making it convenient to use. The rubber stopper serves both a sealing and aesthetic purpose.
[0047] In one specific embodiment, the mouthpiece assembly 4 is connected to the main unit via a rotary hinge, a design that allows the mouthpiece assembly 4 to rotate flexibly relative to the main unit. When the mouthpiece assembly 4 and the main unit are at a preset angle, their air passages are precisely connected, ensuring smooth delivery of the atomized e-liquid; when the angle deviates from this preset value, the air passages close accordingly, enabling convenient switching between usage states. The mouthpiece assembly 4 mainly consists of a mouthpiece opening, a steel ring, and a rubber stopper. The mouthpiece opening has a hollow air passage inside, providing a channel for the flow of atomized e-liquid. At the connection point between the mouthpiece opening and the main unit, the steel ring plays a crucial fixing role, tightly securing the rubber stopper to the mouthpiece opening, ensuring connection stability and laying the foundation for subsequent sealing performance.
[0048] In one specific embodiment, the end of the mouthpiece connected to the main unit is designed as a hollow sphere, while the other end is a ventilation rod, which is interconnected with the sphere. This structure allows the mouthpiece to rotate around the sphere as a fulcrum. As an example, the mouthpiece adopts a rod-shaped design adapted to the shape of the human mouth. This ergonomic design allows users to have a more comfortable experience when inhaling, thus better experiencing the atomization effect of the e-liquid. When the mouthpiece rotates around the sphere at a certain angle, the airway closes accordingly, making operation very convenient and requiring no complicated steps to start and stop. The rubber stopper not only provides a good seal at the connection between the mouthpiece assembly 4 and the main unit, effectively preventing leakage of the atomized e-liquid, but also covers the mechanical structure of the connection area, improving the overall aesthetics. This allows the mouthpiece assembly 4 to have a better visual effect while possessing practical functionality.
[0049] As an example, the smoke is filtered through water and flows to the sphere, and then to the air rod.
[0050] In this embodiment, the mouthpiece assembly 4 includes a mouthpiece opening, a steel ring, and a rubber stopper. The mouthpiece opening has a hollow air passage inside, and the rubber stopper is fixed to the mouthpiece opening by the steel ring at the connection point between the mouthpiece opening and the main unit. One end of the mouthpiece opening connected to the main unit is a hollow sphere, and the other end of the mouthpiece opening is a ventilation rod; the ventilation rod communicates with the sphere.
[0051] In one specific embodiment, the mouthpiece assembly 4 consists of a mouthpiece opening, a steel ring, and a rubber stopper. The mouthpiece opening has an internal air channel, and the connection between it and the main unit is secured by the steel ring, which fixes the rubber stopper to the mouthpiece opening. The steel ring's tightening action ensures stable connection of all components, preventing loosening. One end of the mouthpiece opening connects to the main unit as a hollow sphere, and the other end is a ventilation rod, which is connected to the sphere to form a complete airflow channel. This structural design allows airflow to smoothly flow from the sphere into the ventilation rod, ensuring effective delivery of the atomized e-liquid. Simultaneously, the spherical structure provides a stable fulcrum for the rotation of the mouthpiece opening.
[0052] In this embodiment of the application, the air tube assembly 21 includes an air inlet pipe 213, a handle silicone 211, a handle housing 212, and a cover plate 214; the handle silicone 211 is embedded in the handle housing 212, one end of the air inlet pipe 213 is connected to the handle housing 212, and the other end of the air inlet pipe 213 is connected to the cover plate 214.
[0053] As an example, the handle housing 212 is shaped like a gold ingot, allowing for a smoother opening and closing during use. The handle silicone 211 is embedded within the handle housing 212 and is one size smaller than the handle housing 212.
[0054] In one specific embodiment, the air tube assembly 21 comprises an air inlet pipe 213, a handle silicone 211, a handle housing 212, and a cover plate 214, exhibiting a precise structure and optimized function. The handle silicone 211 is embedded within the handle housing 212, its slightly smaller size ensuring a tight fit while improving grip comfort. One end of the air inlet pipe 213 connects to the handle housing 212, and the other end connects to the cover plate 214, which connects to the base 24, forming a stable airflow path. The handle housing 212 adopts a gold ingot shape, conforming to ergonomic design, facilitating flip-top operation, and enhancing ease of use. This structure effectively reduces the risk of air leakage and ensures atomization efficiency; the silicone material possesses anti-slip and high-temperature resistance properties, improving safety. The gold ingot-shaped housing design balances aesthetics and practicality, allowing for easy one-handed opening and closing. The air inlet pipe 213 employs a high-sealing connection method to prevent e-liquid leakage and extend the assembly's lifespan. The overall design is compact, facilitating cleaning and maintenance, and is compatible with various atomizer coil configurations, offering strong compatibility. This solution optimizes the user experience while ensuring airtightness, making it suitable for high-frequency use scenarios.
[0055] In this embodiment, the air intake pipe 213 includes a limiting bead, an air intake hole, and a handle connecting post; the limiting bead and the air intake hole are located in the middle of the air intake pipe 213, and the handle connecting post is located at the top of the air intake pipe 213; wherein, the air intake hole communicates with the interior of the main unit. The height at both ends of the handle housing 212 is greater than the height in the middle; the handle silicone 211 has the same shape as the handle housing 212.
[0056] In one specific embodiment, the air intake pipe 213 includes a limiting bead, an air intake hole, and a handle connecting post, exhibiting a precise structure and clearly defined functions. The limiting bead located in the middle of the air intake pipe 213 precisely fixes the position of the air pipe, preventing displacement and air leakage; the air intake hole communicates with the inside of the main unit, ensuring stable airflow delivery and optimizing atomization efficiency. The top handle connecting post adopts a snap-fit design, quickly connecting with the handle housing 212 for easy disassembly and maintenance. The handle housing 212 features a unique ingot-shaped structure, with both ends slightly higher than the middle section, forming an ergonomically designed recessed area that improves the comfort of thumb pressure and enhances the leverage effect during flip-top operation. The embedded handle silicone 211 perfectly matches the shape of the housing, is made of food-grade silicone, and features anti-slip textures on the surface, providing a flexible touch while ensuring a tight seal. This design gives the air tube assembly 21 airtightness, ease of operation, and durability: the limiting bead and air inlet work together to prevent e-liquid backflow; the height difference design of the shell reduces the probability of accidental opening; and the silicone buffer layer effectively absorbs the impact of opening and closing, extending its service life. The air inlet can be one, or two can be arranged around the perimeter, etc.
[0057] In this embodiment, the cover plate 214 is embedded in the top of the flip-cover housing 22, and the flip-cover sealing silicone 23 is embedded in the bottom of the flip-cover housing 22; the bottom of the flip-cover housing 22 is connected to a base 24, and a first magnet 251 is embedded in the base 24. The hinge base includes a flip-cover base and a second magnet 261 disposed in the flip-cover base; the hinge base and the flip-cover assembly 2 are connected by a reset assembly 26. The first magnet 251 and the second magnet 261 attract each other, thereby opening and closing.
[0058] In one specific embodiment, the top of the flip-top housing 22 is embedded with a cover plate 214 to ensure a flat surface and strong protection, while the bottom is embedded with a flip-top sealing silicone 23 to effectively improve airtightness when closed and prevent external dust or liquid from seeping in. The bottom of the flip-top housing 22 is connected to a base 24, which embeds a first magnet 251 to attract the second magnet 261 within the hinge base, achieving stable opening and closing of the flip-top assembly 2. The hinge base is composed of a flip-top base and contains the second magnet 261, which, together with the first magnet 251, forms a magnetic attraction structure, allowing the flip-top assembly 2 to automatically align and tightly attract when closed, reducing the need for manual adjustment and minimizing mechanical wear. A reset component 26 connects the hinge base and the flip-top assembly 2, ensuring that the flip-top automatically returns to its original position or maintains a specific angle after opening, improving operational convenience. The magnetic attraction structure design makes the opening and closing process smooth and stable, avoiding the jamming problem of traditional mechanical hinges and reducing noise. The elastic properties of the flip-top sealing silicone 23 further enhance the sealing effect when closed, making it suitable for applications with high airtightness requirements. The connection between the base 24 and the flip-top housing 22 is made of high-strength material, ensuring that it is not easily deformed or loosened during long-term use. The overall structure is compact, balancing functionality and durability. The magnetic opening and closing mechanism not only simplifies user operation but also extends the service life of the device, making it suitable for industrial or consumer electronic devices that are frequently opened and closed, significantly improving the user experience.
[0059] In this embodiment of the application, the reset assembly 26 includes a pin 261, a torsion spring 262, and a pivot plug 263; the pin 261 passes through the torsion spring 262, and the pivot plugs 263 are provided on both sides of the pin 261; one end of the torsion spring 262 is connected to the flip cover assembly 2, and the other end of the torsion spring 262 is connected to the flip cover base.
[0060] As an example, a torsion spring 262 is used to connect the base 24 and the flip cover base, with the shaft fixing the rotation node. Combined with the decorative reinforcement of the pivot plug 263, the flip cover can be rotated elastically and stably without jamming. The spring force of the torsion spring 262 can maintain the stability of the flip cover at different angles, improving the user experience and reducing the probability of wear. The reset component 26 passes through the torsion spring 262 via the pin 261, and pivot plugs 263 are provided on both sides of the pin 261 to ensure stable operation of the torsion spring 262 and prevent it from shifting. One end of the torsion spring 262 is connected to the flip cover component 2, and the other end is fixed to the flip cover base. When the flip cover is opened, the torsion spring 262 stores energy and provides a rebound force when released to make the flip cover automatically close or maintain a specific angle. The design of the pivot plugs 263 reduces friction and improves the smoothness of rotation, avoiding wear caused by direct metal contact. The pin 261 is made of high-strength material to ensure that it will not deform after long-term use, ensuring that the opening and closing force of the flip cover is moderate. It will not cause excessive impact when closing due to excessive elasticity, nor will it fail to fully reset due to insufficient elasticity. The overall structure is compact and reliable, and is suitable for frequent opening and closing scenarios.
[0061] In this embodiment, a display assembly 3 is provided on one side of the flip-top base; the display assembly 3 includes a charging plate 31, a diaphragm 32, and a button 33 disposed below the diaphragm 32; the diaphragm 32 is provided on one side of the charging plate 31. The button 33 is provided with button silicone 34 on its exterior for greater convenience during use. The charging plate 31 is vertically arranged.
[0062] In one specific embodiment, the present application forms a flip-top structure that is adapted to the contour of the internal structure of the host to accommodate the atomizer 1. The size and shape of the space match the atomizer 1, thereby hiding the atomizer 1, preventing the atomizer 1 from being exposed, ensuring that the atomizer 1 does not shake significantly after being placed in, and at the same time leaving the necessary assembly gap for easy removal and placement.
[0063] In this embodiment, the cover plate 214 is first placed on the air intake pipe 213, then the air intake pipe 213 is pressed into the groove of the handle housing 212, and then the silicone handle is installed into the handle housing 212. Next, the first magnet 251 is pressed into the magnet groove of the base 24, then the flip-cover sealing silicone 23 is installed onto the base 24, then the torsion spring 262 is installed onto the base 24, then the base 24 and the flip-cover housing 22 are fastened together, then the air intake pipe 213 is installed into the flip-cover housing 22, and finally the cover plate 214 is fastened onto the flip-cover housing 22. The second magnet 261 is pressed into the magnet slot of the flip-cover base, then the torsion spring 262 on the base 24 is installed at the connection point with the flip-cover base, then fixed with a shaft bolt 261, then a rotating shaft plug 263 is installed into the rotating shaft groove for decoration, and finally the diaphragm 32 is attached to the screen of the charging board 31. Next, insert the button silicone 34 into the button 33 of the charging plate 31, then insert the button into the button slot of the flip base, and then insert the charging plate 31 into the flip base.
[0064] Although preferred embodiments of the present invention have been described, those skilled in the art, upon learning the basic inventive concept, can make other changes and modifications to these embodiments. Therefore, the appended claims are intended to be interpreted as including the preferred embodiments as well as all changes and modifications falling within the scope of the present invention.
[0065] Finally, it should be noted that in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or terminal device that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or terminal device. Without further limitations, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the process, method, article, or terminal device that includes said element.
[0066] The above provides a detailed description of an electronic hookah with a flip-top structure provided by this utility model. Specific examples have been used to illustrate the principle and implementation of this invention. The description of the above embodiments is only for the purpose of helping to understand the method and core idea of this invention. At the same time, for those skilled in the art, there will be changes in the specific implementation and application scope based on the idea of this invention. Therefore, the content of this specification should not be construed as a limitation of this invention.
Claims
1. An electronic hookah with a flip-top structure, characterized in that, It includes a main unit, and a flip cover assembly and a mouthpiece assembly disposed on the top of the main unit; the mouthpiece assembly is provided on one side of the flip cover assembly; The flip-top assembly is hinged to the main unit, and the bottom shape of the flip-top assembly is the same as the top shape of the main unit; the flip-top assembly includes an air tube assembly, a flip-top housing, and a hinge base disposed on the main unit; the air tube assembly passes through the flip-top housing and the hinge base and communicates with the main unit; The mouthpiece assembly is rotatably hinged to the main unit; when the mouthpiece assembly is at a preset angle to the main unit, the mouthpiece assembly is connected to the main unit.
2. The electronic hookah with a flip-top structure according to claim 1, characterized in that, The air tube assembly includes an air inlet tube, a silicone handle, a handle housing, and a cover plate; The silicone handle is embedded in the handle housing, one end of the air intake pipe is connected to the handle housing, and the other end of the air intake pipe is connected to the cover plate.
3. The electronic hookah with a flip-top structure according to claim 2, characterized in that, The air intake pipe includes a limiting bead, an air intake hole, and a handle connecting post; The intake pipe is provided with the limiting bead and the intake hole in the middle, and the top of the intake pipe is provided with the handle connecting post; wherein, the intake hole is connected to the inside of the main unit.
4. The electronic hookah with a flip-top structure according to claim 2, characterized in that, The height at both ends of the handle housing is greater than the height in the middle; the silicone handle has the same shape as the handle housing.
5. The electronic hookah with a flip-top structure according to claim 1, characterized in that, The mouthpiece assembly includes a mouthpiece opening, a steel ring, and a rubber stopper; The mouthpiece opening has a hollow air passage inside, and the rubber plug is fixed to the mouthpiece opening at the connection point between the mouthpiece opening and the main unit by a steel ring.
6. The electronic hookah with a flip-top structure according to claim 5, characterized in that, The mouthpiece is connected to the main unit at one end, which is a hollow sphere, and the other end is a ventilation rod; the ventilation rod is connected to the sphere.
7. The electronic hookah with a flip-top structure according to claim 2, characterized in that, The cover plate is embedded in the top of the flip cover housing, and the flip cover sealing silicone is embedded in the bottom of the flip cover housing; The bottom of the flip-top housing is connected to a base, and the base has a first magnet embedded in it.
8. The electronic hookah with a flip-top structure according to claim 1, characterized in that, The hinged base includes a flip-top base and a second magnet disposed within the flip-top base; The hinge base and the flip-top assembly are connected by a reset assembly.
9. The electronic hookah with a flip-top structure according to claim 8, characterized in that, The reset assembly includes a bolt, a torsion spring, and a rotating shaft plug; the bolt passes through the torsion spring, and the rotating shaft plugs are provided on both sides of the bolt; One end of the torsion spring is connected to the flip cover assembly, and the other end of the torsion spring is connected to the flip cover base.
10. The electronic hookah with a flip-top structure according to claim 8, characterized in that, A display assembly is provided on one side of the flip-top base; The display assembly includes a charging plate, a diaphragm, and buttons disposed below the diaphragm; the diaphragm is disposed on one side of the charging plate.