Electronic hookah

By designing a detachable first and second component structure, the problem of the inability to replace or clean the tobacco inside electronic hookahs is solved, enabling convenient replacement and cleaning of the tobacco, and improving the ease of use and connection stability.

CN223979417UActive Publication Date: 2026-03-10SHENZHEN IMPETUS TECH CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-14
Publication Date
2026-03-10

AI Technical Summary

Technical Problem

Existing electronic hookahs have inconvenient internal tobacco materials that cannot be replaced or cleaned, are troublesome to use, and pose an electrical hazard.

Method used

A detachable connection structure comprising a first component and a second component is designed. The first component and the second component are detachably connected through a host mounting structure. The second component has a cavity for accommodating smoke material, and the first component has a heating component inside. Unlocking is achieved by rotating the locking component.

Benefits of technology

It enables convenient replacement and cleaning of the flue gas, improves ease of use and connection stability, and reduces electrical hazards.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223979417U_ABST
    Figure CN223979417U_ABST
Patent Text Reader

Abstract

The utility model relates to an electronic hookah. The electronic hookah specifically comprises a first component and a second component detachably connected with the first component. The first part and the second part are connected through a host mounting structure; the host mounting structure comprises a first clamping part arranged on the first component and a second clamping part arranged on the second component; a heating part is arranged in the first part; the second part is provided with a cavity for accommodating tobacco materials; the heating component is arranged opposite to the cavity; the bottom of the second part is provided with a switching part used for being connected with a container. And when the first clamping part and the second clamping part relatively rotate to a preset position, the first component and the second component are unlocked. The electronic hookah is convenient to replace in the use process, the electronic hookah is better cleaned, use is convenient, and the connection stability is improved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the field of hookah technology, and in particular to an electronic hookah. Background Technology

[0002] Hookah originated in India and is mainly popular in Arab countries. Similar hookahs also exist in Turkey, Iran, and Central Asia. Traditional hookah devices typically contain tobacco at the top and water at the bottom. To use it, burning charcoal is placed on top of the tobacco to heat and vaporize it, creating smoke. This smoke is then filtered through water and inhaled through a pipe.

[0003] The existing market has developed electronic hookahs, which are electronic devices that mimic traditional cigarettes. They work by mixing water vapor and nicotine into an aerosol for users to inhale. Unlike traditional hookahs, they are electronically controlled.

[0004] However, the internal tobacco material of existing electronic hookahs cannot be replaced or is inconvenient to clean, making them troublesome to use and posing an electrical hazard. Summary of the Invention

[0005] In view of the above problems, the present invention provides an electronic hookah that overcomes or at least partially solves the above problems.

[0006] An electronic hookah includes a first component and a second component detachably connected to the first component;

[0007] The first component and the second component are connected by a host mounting structure; the host mounting structure includes a first engaging portion disposed on the first component and a second engaging portion disposed on the second component;

[0008] The first component has a heating element inside; the second component has a cavity for accommodating smoke material; the heating element is disposed opposite to the cavity; the bottom of the second component has a connecting part for connecting a container;

[0009] When the first engaging part and the second engaging part rotate relative to each other to a preset position, the first component and the second component unlock.

[0010] Preferably, the first component includes a power-off assembly and a circuit board;

[0011] The circuit board is electrically connected to the power-off component; the power-off component is disposed on the side where the first component and the second component are connected.

[0012] The power-off component is turned on / off when the first component and the second component are turned on / off.

[0013] Preferably, the first component has a battery inside, and the battery is detachably connected to the first component.

[0014] Preferably, the first engaging portion includes a pivot portion, a base, and a slot;

[0015] The pivot is connected to the base, and the inner side of the base is provided with a slot for engaging the second component.

[0016] Preferably, the second engaging portion includes a hook and a mounting groove for accommodating the first engaging portion;

[0017] The hook is disposed inside the mounting groove;

[0018] The mounting groove is adapted to the first engaging part; the slot is adapted to the hook;

[0019] When the first component and the second component are opened or closed, the first component rotates at a preset angle, and the slot separates from or engages with the hook.

[0020] Preferably, the second engaging portion further includes a mounting button and a spring element;

[0021] The installation button is connected to the hook member through the elastic element, the installation button passes through the installation groove, and the elastic element and the hook member are disposed inside the installation groove;

[0022] The mounting groove is adapted to the first engaging part;

[0023] When the first component and the second component are opened or closed, pressing the installation button moves the hook component through the elastic element, and the slot separates from or engages with the hook component.

[0024] Preferably, the battery is detachably connected to the first component via a battery mounting structure; the battery mounting structure includes a spring plate, a push button, and a locking hook for fixing the battery in the first component;

[0025] The push button is connected to the locking hook; the battery is located on the top of the spring plate;

[0026] The battery is provided with a latch, which is adapted to the locking hook;

[0027] When the battery is unlocked from the first component, pushing the push button causes the locking hook to deflect away from the battery and disengage from the latch, and the spring plate pops the battery up.

[0028] Preferably, the power-off component includes an elastic pin, which is disposed at the bottom of the first component;

[0029] The elastic ejector pin is electrically connected to the circuit board;

[0030] When the first component and the second component are closed, the elastic pin is pushed inward by the pressure of the second component, thereby closing the power-off assembly;

[0031] When the first component and the second component are turned on, the elastic pin resets and pushes downward, thereby turning on the power-off component.

[0032] Preferably, a display is provided on one side of the first component, and the display is electrically connected to the circuit board.

[0033] This application also includes an electronic hookah, comprising the aforementioned electronic hookah and a container:

[0034] The second component is connected to a container containing the filtered liquid.

[0035] This application specifically includes the following advantages:

[0036] In the embodiments of this application, compared with the prior art's problems of "inconvenient internal tobacco topping, cumbersome use, and electrical hazards," this application provides a solution of "detachable connection between the first and second components." Specifically, it includes a first component and a second component detachably connected to the first component; the first and second components are connected via a host mounting structure; the host mounting structure includes a first engaging portion disposed on the first component and a second engaging portion disposed on the second component; a heating component is provided inside the first component; the second component has a cavity for accommodating the tobacco; the heating component is disposed opposite to the cavity; the bottom of the second component has a connecting portion for connecting a container; when the first and second engaging portions are rotated relative to each other to a preset position, the first and second components are unlocked. The "detachable connection between the first and second components" solves the problems of inconvenient internal tobacco topping, cumbersome use, and electrical hazards, achieving convenient tobacco topping replacement during use, better cleaning of electronic hookahs, ease of use, and improved connection stability. Attached Figure Description

[0037] 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.

[0038] Figure 1 This is a schematic diagram of the structure of an electronic hookah provided in one embodiment of this application.

[0039] Figure 2 yes Figure 1 The diagram shown is an exploded view of an electronic hookah.

[0040] Figure 3 This is a first-state perspective view of an electronic hookah provided in an embodiment of this application.

[0041] Figure 4 yes Figure 3 The diagram shows the second state of the host computer.

[0042] Figure 5 yes Figure 3 A partial schematic diagram of the first component shown.

[0043] Figure 6 yes Figure 5 A partial view of the first component from another angle is shown.

[0044] Figure 7 yes Figure 3 A three-dimensional schematic diagram of the second component of the host shown.

[0045] Figure 8 yes Figure 3 The diagram shows a first-angle cross-sectional view of the host computer.

[0046] Figure 9 yes Figure 3 The diagram shows a second-angle cross-sectional view of the host machine.

[0047] Figure 10 yes Figure 3 The schematic diagram of the third-angle cross-section of the host shown.

[0048] Figure 11 yes Figure 3 A second partial schematic diagram of the first component shown.

[0049] Figure 12 yes Figure 11 An exploded view of the first component shown.

[0050] Figure 13 This is a three-dimensional schematic diagram of a heating component provided in an embodiment of this application.

[0051] Figure 14 yes Figure 13 A cross-sectional schematic diagram of the heating component shown.

[0052] Figure 15 This is a three-dimensional schematic diagram of a heating assembly provided in an embodiment of this application.

[0053] Figure 16 This is a three-dimensional schematic diagram of a mica sheet assembly provided in an embodiment of this application.

[0054] Figure 17 yes Figure 16 The diagram shows a three-dimensional exploded view of the mica sheet assembly.

[0055] Figure 18 This is a three-dimensional schematic diagram of an atomizing pot provided in an embodiment of this application.

[0056] Figure 19 yes Figure 18 A three-dimensional schematic diagram of the atomizing pot from another angle.

[0057] Figure 20 yes Figure 18 The diagram shows an exploded 3D view of the atomizing pot.

[0058] Figure 21 yes Figure 18 The diagram shows the assembly process of the atomizing pot.

[0059] Figure 22 This is a three-dimensional schematic diagram of a smoke pot provided in an embodiment of this application.

[0060] Figure 23 yes Figure 3 The diagram shows a top-view view of the host machine.

[0061] Figure 24 This is a schematic diagram of the elastic ejector pin of this application.

[0062] Figure 25 This is an overall schematic diagram of the elastic ejector pin of this application.

[0063] 1000. Electronic hookah; 1. Main unit; 10. First component; 11. Battery compartment; 12. Battery; 120. Battery body; 121. Bayonet; 122. Battery casing; 13. Battery mounting structure; 131. Spring plate; 132. Push button; 133. Locking hook; 14. Control component; 141. Main control board; 142. Function key; 1421. Left button; 1422. Main button; 1423. Right button; 15. Heating component; 151. Heating assembly; 1511. Heating element; 1512. Connecting wire; 1513. Air vent; 1514. Electric heating material; 152. Temperature sensing component; 153. Protective cover; 1531. Air vent; 154. Heat insulation component; 1541. Heat insulation body; 154 10. Positioning hole; 1542. Heat insulation bracket; 15420. Heat insulation bracket body; 15422. Protrusion; 15423. Connecting column; 1543. Mica sheet assembly; 15430. First mica sheet; 154301. Vent hole; 15431. Second mica sheet; 15432. Support tube; 15433. Fixing bracket; 154330. Top; 154331. Bottom; 1544. Heat insulation cover; 16. First air passage; 17. First air inlet; 18. Rotating structure; 180. Rotating shaft; 181. Rotating connection part; 1810. Connecting end; 1811. Limiting block; 1812. Hook; 182. Torsion spring; 1820a, 1820b. Body; 1821. Common end; 1822a. 1822b, Free end; 20, Second component; 21, Heating chamber; 211, Heat insulation component; 212, Heat insulation cavity; 213, Inner baffle; 22, Atomizing pot; 22', Tobacco pot; 221, Pot body; 2210, Air vent; 2212, Top; 22121, Protrusion; 22122, Flat part; 224, Air vent pipe; 22124, Rivet; 2213, Side wall; 2214, Cavity; 22141, Opening; 2215, Tobacco; 222, Pot lid; 2221, Engaging part; 223, Isolation net; 2231, Net bottom; 2232, Net edge; 2233, Arc-shaped mesh; 2234, Mounting hole; 23, Adapter part; 230, Air outlet; 231, Adapter part body; 232, Insertion port; 23 4. Second air inlet; 235. Edge; 24. Second air passage; 30. Main unit mounting structure; 31. First engaging part; 310. Pivot part; 3101. Pivot plate; 31010. Pivot hole; 312. Base; 3120. Front; 3122. Back; 3123a, 3123b. Side wall; 31230a, 31230b. Guide positioning groove; 3124. Connecting wall; 31240. First cross arm; 31242. Second cross arm; 314. Slot; 32. Second engaging part; 330. Mounting groove; 3301. Actuating hole; 3302. Assembly port; 3303. Positioning block; 332. Hook; 333. Elastic element; 331. Mounting button; 40. Main unit opening and closing structure; 41. First fastening part;42 Second fastening part; 421 Opening / closing button; 422 Elastic hook; 101 First mating end; 102 Mounting bracket; 201 Second mating end; 50 Display screen; 9. Container; 91. Smoke tube; 910 Mouthpiece; 90. Filtrate; 92. Kettle body; 93 Support platform; 94. Adapter; 95. Elastic ejector pin. Detailed Implementation

[0064] 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.

[0065] The inventors, through analysis of existing technology, discovered that traditional hookah devices typically contain tobacco at the top and water at the bottom. To use, burning charcoal is placed on top of the tobacco to heat and atomize it, creating smoke. This smoke is then filtered through water and inhaled via a pipe. The market has developed electronic hookahs, which are electronic devices that mimic traditional cigarettes. They mix water vapor and nicotine into an aerosol for the user to inhale. Unlike traditional hookahs, they are electronically controlled. However, existing electronic hookahs suffer from problems such as the inconvenience of replacing or cleaning the internal tobacco, cumbersome operation, and electrical hazards.

[0066] In the embodiments of this application, compared with the prior art's problems of "inconvenient internal tobacco topping, cumbersome use, and electrical hazards," this application provides a solution of "detachable connection between the first and second components." Specifically, it includes a first component and a second component detachably connected to the first component; the first and second components are connected via a host mounting structure; the host mounting structure includes a first engaging portion disposed on the first component and a second engaging portion disposed on the second component; a heating component is provided inside the first component; the second component has a cavity for accommodating the tobacco; the heating component is disposed opposite to the cavity; the bottom of the second component has a connecting portion for connecting a container; when the first and second engaging portions are rotated relative to each other to a preset position, the first and second components are unlocked. The "detachable connection between the first and second components" solves the problems of inconvenient internal tobacco topping, cumbersome use, and electrical hazards, achieving convenient tobacco topping replacement during use, better cleaning of electronic hookahs, ease of use, and improved connection stability.

[0067] Reference Figure 1The diagram shows a schematic of the electronic hookah structure of this utility model, which can specifically include the following structure: a first component 10 and a second component 20 detachably connected to the first component 10; the first component 10 and the second component 20 are connected by a host mounting structure 30; the host mounting structure 30 includes a first engaging portion 31 disposed on the first component 10 and a second engaging portion 32 disposed on the second component 20; a heating component 15 is provided inside the first component 10; the second component 20 has a cavity for accommodating tobacco; the heating component 15 is disposed opposite to the cavity; the bottom of the second component 20 has a connecting portion 23 for connecting a container; when the first engaging portion 31 and the second engaging portion 32 rotate relative to each other to a preset position, the first component 10 and the second component 20 are unlocked.

[0068] The following will further describe an electronic hookah in this exemplary embodiment.

[0069] In this embodiment, the application includes a first component 10 and a second component 20 detachably connected to the first component 10; the first component 10 and the second component 20 are connected via a host mounting structure 30; the host mounting structure 30 includes a first engaging portion 31 disposed on the first component 10 and a second engaging portion 32 disposed on the second component 20. This structure allows for easy disassembly and connection of the first component 10 and the second component 20, thereby improving the maintainability and operability of the device.

[0070] In this embodiment, the first engaging portion 31 includes a pivot portion 310, a base 312, and a slot 314; the pivot portion 310 is connected to the base 312, and the slot 314 for engaging the second component 20 is provided on the inner side of the base 312. The second engaging portion 32 includes a hook 332 and a mounting groove 330 for accommodating the first engaging portion; the hook 332 is disposed inside the mounting groove 330; the mounting groove 330 is adapted to the first engaging portion 31; the slot 314 is adapted to the hook 332; when the first component 10 and the second component 20 are opened or closed, the first component 10 rotates to a preset position, and the slot 314 separates from or engages with the hook 332. The preset position can be user-defined or can be a specific angle, such as 30 degrees, 60 degrees, etc. When the first engaging portion 31 and the second engaging portion 32 rotate relative to each other to the preset position, the first component 10 and the second component 20 are unlocked. When the first engaging part 31 and the second engaging part 32 do not rotate to the preset position, the first component 10 and the second component 20 are locked.

[0071] As an example, this application improves connection stability: the connection structure adopted in this utility model, through the mutual cooperation of the first engaging part 31 and the second engaging part 32, makes the connection between the first component 10 and the second component 20 more stable. In particular, the design of the pivot part 310 and the base 312 of the first engaging part 31, and the design of the hook 332 and the mounting groove 330 of the second engaging part 32, make the connection structure less prone to loosening under external force, thereby improving the stability of the connection. Convenient disassembly and assembly: the connection structure of this utility model, through the mutual cooperation of the first engaging part 31 and the second engaging part 32, makes the disassembly and assembly between the first component 10 and the second component 20 more convenient. In particular, when the first component 10 and the second component 20 are opened or closed, the first component 10 rotates at a preset angle, causing the slot 314 to separate or engage with the hook 332, thereby achieving convenient disassembly and assembly. The connection structure of this utility model can ensure connection stability and facilitate disassembly and assembly, which has significant advantages over the prior art.

[0072] In one specific embodiment, this embodiment provides a detachable component installation structure, with the following specific steps: Step 1: Prepare a first component 10 and a second component 20, wherein the materials of the first component 10 and the second component 20 can be metal or plastic, and the specific materials can be selected according to actual needs. The shapes of the first component 10 and the second component 20 can be designed according to actual needs, for example, they can be designed as circles, squares, or other shapes. Step 2: Provide a first engaging portion 31 on the first component 10, and provide a pivot portion 310, a base 312, and a slot 314 on the first engaging portion 31. The pivot portion 310 and the base 312 can be fixedly connected by welding or bolts. The slot 314 can be located on the inner side of the base 312, and the shape of the slot 314 can be designed according to the shape of the second component 20, such as a U-shape or other shapes. Step 3: Provide a second engaging portion 32 on the second component 20, and provide a hook 332 and a mounting groove 330 on the second engaging portion 32. The hook 332 and the mounting groove 330 can be fixedly connected by welding or bolts. The shape of the mounting groove 330 can be designed according to the shape of the first engaging part 31, and can be designed as a U-shape or other shapes. Step 4: Connect the first component 10 and the second component 20 together through the main unit mounting structure 30, which includes the first engaging part 31 and the second engaging part 32. When the first component 10 and the second component 20 are opened or closed, the first component 10 can rotate around the pivot part 310 by a preset angle. The preset angle can be set according to actual needs, and can be set to 30 degrees or 60 degrees. Step 5: When the first component 10 and the second component 20 are opened or closed, the slot 314 and the hook 332 will separate or engage. When the slot 314 and the hook 332 are separated, the first component 10 and the second component 20 can be disassembled. When the slot 314 and the hook 332 are engaged, the first component 10 and the second component 20 are connected together. The above are the specific steps of this embodiment. In this way, the first component 10 and the second component 20 can be detachably connected, while improving the stability and interchangeability of the connection.

[0073] In this embodiment, the second engaging portion 32 further includes an installation button 331 and an elastic element 333; the installation button 331 is connected to the hook element 332 via the elastic element 333, the installation button 331 passes through the mounting groove 330, and the elastic element 333 and the hook element 332 are disposed inside the mounting groove 330; the mounting groove 330 is adapted to the first engaging portion 31;

[0074] As an example, when the first component 10 and the second component 20 are open or closed, pressing the installation button 331 moves the hook component 332 via the elastic element 333, causing the slot 314 to separate from or engage with the hook component 332. When the first component 10 and the second component 20 are open, pressing the installation button 331 moves the hook component 332 via the elastic element 333, causing the slot 314 to separate from the hook component 332. When the first component 10 and the second component 20 are closed, pressing the installation button 331 moves the hook component 332 via the elastic element 333, causing the slot 314 to engage with the hook component 332.

[0075] In this embodiment, the first component 10 is provided with a power-off assembly and a circuit board; the circuit board is electrically connected to the power-off assembly; the power-off assembly is disposed on the side where the first component 10 and the second component 20 are connected; when the first component 10 and the second component 20 are opened / closed, the power-off assembly is opened / closed. The power-off assembly includes an elastic pin 95, such as... Figure 24 and Figure 25 As shown, the elastic pin 95 is located at the bottom of the first component 10; the elastic pin 95 is electrically connected to the circuit board; when the first component 10 and the second component 20 are closed, the elastic pin 95 is pushed inward by the pressure of the second component 20, thereby closing the power-off assembly; when the first component 10 and the second component 20 are open, the elastic pin 95 returns to its original position and pushes downward, thereby opening the power-off assembly.

[0076] In this embodiment, the first component 10 contains a battery 12, which is detachably connected to the first component 10. The battery 12 is detachably connected to the first component 10 via a battery mounting structure 13. The battery mounting structure 13 includes a spring plate 131, a push button 132, and a locking hook 133 for fixing the battery inside the first component 10. The push button 132 is connected to the locking hook 133. The battery 12 is located on the top of the spring plate 131. The battery 12 has a latch that is adapted to the locking hook 133. When the battery 122 is unlocked from the first component, the push button 132 is pushed, and the locking hook 133 deflects away from the battery 12 and disengages from the latch. The spring plate 131 then springs the battery 12 up.

[0077] In this embodiment, a display is provided on one side of the first component 10, and the display is electrically connected to the circuit board. For example... Figures 1-2 , Figure 1An embodiment of the present application provides an electronic hookah 1000. The electronic hookah 1000 includes a main unit 1 and a container 9. The main unit 1 is an electronic device mounted on the container 9. The main unit 1 contains tobacco 2215 and, when in operation, heats the tobacco 2215 to form smoke, which then flows into the container 9. The container 9 contains an edible filter liquid 90, such as water, and the smoke flowing into the container 9 is filtered through the filter liquid 90. The container 9 is provided with a pipe 91 with a mouthpiece 910, through which the user can inhale the filtered smoke. In this embodiment, the discharge power of the electronic hookah 1000 is 100W. In this embodiment, the container 9 includes a pot body 92 containing the filter liquid 90, a support platform 93, and an adapter 94 disposed on the support platform 93 and communicating with the pot body 901. The container 9 is mounted to the main unit 1 via the adapter 94, thereby allowing the main unit 1 to be supported on the support platform 93.

[0078] In one specific embodiment, please refer to the reference Figure 3-4 The diagrams illustrate different states. The host unit 1 includes a first component 10 and a second component 20 assembled with the first component 10. The first component 10 and the second component 20 are rotatable relative to each other to open or close the host unit 1. In this embodiment, the first component 10 and the second component 20 are operably completely separable. Specifically, the host unit 1 also includes a host mounting structure 30 and a host opening / closing structure 40. The host mounting structure 30 is used to detachably assemble the first component 10 and the second component 20 together. The host opening / closing structure 40 is used to operably control the opening or closing of the first component 10 and the second component 20.

[0079] In one specific embodiment, please refer to the reference Figures 5-6 The host mounting structure 30 includes a first engaging portion 31 rotatably connected to the first component 10 and a second engaging portion 32 disposed on the second component 20. The first engaging portion 31 and the second engaging portion 32 are positioned opposite each other, and either the first engaging portion 31 or the second engaging portion 32 has an installation button 33. The installation button 33 operablely controls the engagement or disengagement of the first engaging portion 31 and the second engaging portion 32, thereby allowing the first component 10 and the second component 20 to be combined together or completely separated. In this embodiment, the second engaging portion 32 having an installation button 33 is used as an example for explanation.

[0080] In one specific embodiment, the first engaging portion 31 includes a pivot portion 310 pivotally connected to the first component 10, a base 312 connected to the pivot portion 310, and a slot 314 disposed in the first engaging portion 31. The pivot portion 310 includes two opposing disc-shaped pivot plates 3101 protruding from one end of the base 312, and the pivot plates 3101 are provided with two pivot holes 31010.

[0081] In one specific embodiment, the base 312 is generally rectangular in shape. The base 312 includes an inwardly facing back surface 3122 and a front surface 3120 facing away from the back surface 3122. A pivot portion 310 protrudes from the front surface 3120 in a direction away from the back surface 3122. The middle portion of the base 312 is recessed relative to the front surface 3120 and the back surface 3122, resulting in a base 312 that is thinner in the middle and thicker at the sides. Understandably, the base 312 includes two opposing sidewalls 3123a and 3123b, and a connecting wall 3124 connecting the two sidewalls. The thickness of the connecting wall 3124 is thinner than the thickness of the two sidewalls 3123a and 3123b. Two sidewalls 3123a and 3123b are provided with strip-shaped guide positioning grooves 31230a and 31230b on their opposite sides from the connecting wall 3124. The guide positioning grooves 31230a and 31230b are arranged along the extension direction of the base 312. A slot 314 is provided in the connecting wall 3124 and extends through both the front side 3120 and the back side 3122, thereby dividing the connecting wall 3124 into a first horizontal arm 31240 near the pivot 310 and a second horizontal arm 31242 away from the pivot 310. The bottom of the second horizontal arm 31242 away from the slot 314 is inclined.

[0082] In one specific embodiment, please refer to the reference Figure 7-8 The second engaging portion 32 includes a mounting groove 330 disposed in the second component 20, an actuation hole 3301 and a mounting opening 3302 communicating with the mounting groove 330, a mounting button 331, a hook 332, and an elastic member 333. The mounting button 331, the hook 332, and the elastic member 333 are mounted within the mounting groove 330. The mounting opening 3302 faces the first component 10; the actuation hole 3301 is perpendicular to the direction of the mounting opening 3302 and opens inward from the outer surface of the second component 20. The mounting button 33 extends out of the second component 20 through the actuation hole 3301. The hook 332 is connected to the mounting button 331, and the hook 332 is also rotatably connected to the second component 20 and exposed through the mounting opening 3302. The elastic member 333 is located on the side of the hook 332 opposite to the mounting button 331 and is located between the hook 332 and the groove wall of the mounting groove 330. In this embodiment, the elastic element 333 is a spring. In some other feasible embodiments, the elastic element 333 can be elastic foam, washer, sheet metal, etc. Positioning blocks 3303 are respectively provided on the groove wall of the mounting groove 330 at positions opposite to the guide positioning grooves 31230a and 31230b.

[0083] In one specific embodiment, such as Figure 4 , Figure 7 and Figure 8When the first component 10 and the second component 20 are to be installed together, the first engaging part 31 is inserted into the mounting groove 330 from the assembly port 3302. After being aligned and engaged with the positioning block 3303 by the guide positioning grooves 31230a and 31230b, the first engaging part 31 can continue to be inserted into the mounting groove 330 downward along the positioning block 3303. The first engaging part 31 will squeeze the hook 332. More specifically, the bottom of the second cross arm 31242 will squeeze the hook 332, thereby forcing the hook 332 to shift, so that the hook 332 is engaged in the slot 314, thereby engaging the first component 10 and the second component 20 together.

[0084] When the first component 10 and the second component 20 are to be separated, when a pressing force is applied to move the mounting button 331 inward, the mounting button 331 moves the hook 332 to disengage from the slot 314, and when the force applied to the mounting button 331 is released, the mounting button 331 returns to its original position under the elastic force of the elastic member 333.

[0085] In one specific embodiment, specific reference is made. Figures 3-4 ,and Figure 8 The host opening and closing structure 40 includes a first fastening part 41 disposed on the first component 10 and a second fastening part 42 disposed on the second component 20. The first fastening part 41 and the second fastening part 42 are positioned opposite each other. The first fastening part 41 is disposed on one side of the first component 10, located at the first mating end 101 of the first component 10 facing the second component 20, protruding in a direction away from the first fastening part 41, and located inside the outer surface of the first component 20. The second fastening part 42 includes an elastic hook 422 disposed within the second component 20 and rotatably connected to the second component 20, and an opening / closing button 421 disposed within the second component 20 and connected to the elastic hook 422. The opening / closing button 421 extends out of the outer surface of the second component 20, and the elastic hook 422 protrudes from the second component 20 and extends towards the second mating end 201 of the first component 10. The first fastening part 41 is a locking block.

[0086] When the first component 10 and the second component 20 rotate to the point where the first mating end 101 and the second mating end 201 are in contact, the elastic hook 422 is squeezed and rotated, thereby engaging with the first fastening part 41, thus engaging the first component 10 and the second component 20 together.

[0087] When the open / close button 421 is pressed, it pushes the elastic hook 422 to rotate and disengage from the first engaging part 41, thereby disengaging the first engaging part 41 from the second engaging part 42. This unlocks the first component 10 and the second component 20, allowing the first component 10 to rotate away from the second component 20, effectively opening the first component 10 and the second component 20. Furthermore, when the pressure applied to the open / close button 421 is released, the button returns to its original position.

[0088] In one specific embodiment, such as Figure 3 , Figure 5 , Figure 8 as well as Figure 9 The first component 10 also includes a battery compartment 11, a battery 12, a battery mounting structure 13, a control component 14, a heating component 15, a first air passage 16, a first air inlet 17 communicating with the first air passage 16, a rotating structure 18 for rotating the first component 10 relative to the second component 20, and a mounting bracket 102. The mounting bracket 102 is integrally formed with the battery compartment 11 and is used to connect with the heating component 15, with the battery compartment 11 and the heating component 15 located at opposite ends of the mounting bracket 102. The rotating structure 18 is located on one side of the mounting bracket 102. The battery 12 is detachably housed in the battery compartment 11 and is used to provide energy for the normal operation of the main unit 1. The battery mounting structure 13 is used to install the battery 12 into or remove it from the battery compartment 11. The control component 14 is used to control the operation of the main unit 1, such as turning it on, turning it off, heating it, and adjusting the temperature. The heating component 15 is located at the bottom of the first component 10 away from the top and heats up under the power supplied by the battery 12. The first air inlet 17 is disposed on the surface of the first component 10 for allowing external air to flow in and through the first air passage 16 to the heating component 15. The first air passage 16 penetrates the first component 10 for conveying external air flowing in from the first air inlet 17 to the heating component 15.

[0089] In this embodiment, the rotating structure 18 includes a rotating connecting portion 181 extending from the first component 10, a rotating shaft 180, and a torsion spring 182. Specifically, the rotating connecting portion 181 extends obliquely downward from the mounting bracket 102. The connecting end 1810 of the rotating connecting portion 181, away from the first component 10, is sleeved with the rotating shaft 180. A hook 1812 is provided on the rotating connecting portion 181 near the first component 10. The torsion spring 182 includes two helical bodies 1820a and 1820b arranged side by side, a common end 1821 connecting the two adjacent ends of the two bodies 1820a and 1820b, and free ends 1822a and 1822b of the bodies 1820a and 1820b arranged opposite to each other. The bodies 1820a and 1820b are sleeved side by side on the rotating shaft 180 and are respectively located on both sides of the connecting end 1810. The common end 1821 is engaged with the hook 1812 and connected to the rotating connecting part 181. The two free ends 1822a and 1822b are fixed to the two side walls 3123a and 3123b, respectively. When the first component 10 rotates to the closed and locked state with the second component 20, the torsion spring 182 generates an elastic restoring force. When the first component 10 rotates to the unlocked state with the second component 20, the first component 10 rotates to a preset angle open with the second component 20 under the elastic restoring force generated by the torsion spring 182. Further, the connecting end 1810 is provided with a limiting block 1811. When the first component 10 rotates to open with the second component 20 at a preset angle, the limiting block 1811 abuts against the first component 10, thereby fixing the first component 10 at the preset angle.

[0090] In one specific embodiment, the battery 12 includes a battery body 120 and a battery casing 122 that encapsulates the battery body 120. The battery casing 122 is provided with a snap-fit ​​121. The battery compartment 11 is located within the first component 10 and is located away from the second component 20. The battery compartment 10 is a hollow cylindrical body with an open top. The battery compartment 11 is used to install the battery 12. In this embodiment, the shape inside the battery compartment 11 is adapted to the shape of the battery 12.

[0091] In one specific embodiment, the battery mounting structure 13 includes a spring plate 131, a push button 132, and a locking hook 133. The locking hook 133 is rotatably connected to the first component 10 and corresponds to the battery compartment 11. The push button 132 is exposed outside the first component 10 and is connected to the locking hook 133. Both the push button 132 and the locking hook 133 are elastically rotatably connected to the first component 10. When the battery 12 is installed in the battery compartment 11, the locking hook 133 is positioned at the latch 121 to lock the battery 12 inside the battery compartment 11. When the push button 132 is pushed, the locking hook 133 deflects away from the battery casing 122 and disengages from the latch 121, thereby unlocking the battery 12. The spring plate 131 is located at the bottom of the battery compartment 11. When the battery 12 is locked in the battery compartment 11 by the battery mounting structure 13, the spring plate 131 accumulates elastic restoring force due to the compression of the battery 12. When the battery 12 is unlocked by the push button 132, the spring plate 131 ejects the battery 12 out of the battery compartment 11 under the elastic force.

[0092] As an example, when battery 12 is installed in main unit 1, battery 12 is pushed into battery compartment 11 until locking hook 133 is inserted into slot 121 of battery 12, thus fixing battery 12 inside main unit 1. At the same time, spring plate 131 is compressed, generating elastic force. When removing battery 12 from main unit 1, the user only needs to push push button 132 to disengage locking hook 133 from slot 121. At this time, battery 12 pops out under the elastic force of spring plate 131, and battery 12 can be removed.

[0093] In one specific embodiment, specific reference is made. Figure 8-10 The control component 14 includes a main control board 141 and several function keys 142. The function keys 142 are located on the outer side of the first component 10, corresponding to the main control board 141. The main control board 141 is electrically connected to the function keys 142, the heating component 151, the temperature sensing component 152, and the battery 12. In this embodiment, the battery 12 provides power to the main control board 141. The main control board 141 controls the heating component 151 to generate heat, and simultaneously controls the temperature sensing component 152 to detect the heating temperature of the heating component 151 and receives the temperature value fed back by the temperature sensing component 152. The fed-back temperature value is compared with a preset temperature value, and the heating temperature of the heating component 151 is adjusted according to the comparison result. In this embodiment, the function keys 142 include a left button 1421, a main button 1422, and a right button 1423. The main button 1422 is used to power on or off the host 1, and the left button 1421 and right button 1423 are used to increase or decrease the heating temperature of the heating component 151.

[0094] In this embodiment, the outer surface of the first component 10 is further provided with a display screen 50 for displaying the working information or status information of the electronic hookah, such as temperature, battery level, and working status. The display screen 50 is electrically connected to the main control board 141.

[0095] In one specific embodiment, such as Figure 11-15 In this embodiment, the heating component 15 is disposed on the end face of the mounting bracket 102 opposite to the battery compartment 11, i.e., the heating component 15 is located directly below the battery compartment 11. The heating component 15 includes a heating assembly 151, a temperature sensing assembly 152, a protective cover 153, and a heat insulation assembly 154. The heating assembly 151 and the temperature sensing assembly 152 are electrically connected to the main control board 141. One side of the heating assembly 151 is covered by the protective cover 153, and the protective cover 153 faces the second component 20; the temperature sensing assembly 152 is disposed on the opposite side of the heating assembly 151; the heat insulation assembly 154 covers the heating assembly 151 except for the area covered by the protective cover 153. The heating assembly 151 generates heat when powered on; the temperature sensing assembly 152 is used to measure the temperature of the heating assembly 151; the protective cover 153 is used to protect the heating assembly 151; and the heat insulation assembly 154 is used to prevent the heat from the heating assembly 151 from being transferred to the outside.

[0096] In one specific embodiment, such as Figure 15 The heating assembly 151 includes a generally disc-shaped heating element 1511 and a connecting line 1512 extending from the heating element 1511 to the power supply compartment 11. The heating assembly 151 is electrically connected to the main control board 141 via the connecting line 1512. The heating element 1511 is provided with an electric heating material 1514, which is formed by thick mold printing and low-temperature glazing. In this embodiment, the heating material 1514 is arranged in a planar spiral shape on the heating element 1511. That is, the heating material 1514 is arranged in a specific pattern on the heating element 1511. In this embodiment, the heating element 1511 uses SUS430 superconducting thermal material as the electric heating material 1514. In this embodiment, the heating element 1511 is provided with a plurality of air passages 1513, and the heating element 1511 is located on the first air passage 16, with the air passages 1513 for the first air passage 16 to circulate.

[0097] In one specific embodiment, the protective cover 153 is fixed to the heat insulation assembly 154 by a fastener (not shown). The protective cover 153 covers the side of the heating element 1511 facing the second component 20 to prevent the heating element 1511 from being directly exposed to the outside and damaged. In this embodiment, the protective cover 153 is made of stainless steel. The protective cover 153 is circular and adapted to the shape of the heating element 1511, covering the heating element 1511. The protective cover 153 is also provided with a plurality of vent holes 1531. The protective cover 153 is located on the first air passage 16, and the vent holes 1531 communicate with the first air passage 16.

[0098] In one specific embodiment, such as Figure 16 and Figure 17 The heat insulation assembly 154 includes a heat insulation bracket 1542, a heat insulation body 1541, a mica sheet assembly 1543, and a heat insulation cover 1544. The mica sheet assembly 1543 is located between the heat insulation bracket 1542 and the heat insulation body 1541. The heat insulation body 1541 is located on the side of the heating component 15 near the battery compartment 11. The heat insulation cover 1543 surrounds the heat insulation bracket 1542 and faces the second component 20. The heat insulation body 1541 is generally disc-shaped, with a recess on the side facing the mounting bracket 102 to fit the shape of the bottom of the mounting bracket 102, making it easier to position and stabilize. Several positioning holes 15410 are also provided at intervals near the edge of the heat insulation body 1541. The heat insulation body 1541 is made of silicone material.

[0099] In one specific embodiment, the heat insulation bracket 1542 includes an annular body 15420 and a tongue-shaped protrusion 15422 extending from one side of the body 15420. A plurality of connecting posts 15423 extend from the side of the body 15420 opposite to the protrusion 15422. The protrusion 15422 protrudes toward the second component 20, and the first fastening part 41 of the main unit opening and closing structure 40 is disposed on the outer surface of the protrusion 15422. The heating component 151 is located in the middle of the body 15420 and is surrounded by the body 15420. A plurality of connecting posts 15423 correspond one-to-one with a plurality of positioning holes 15410 and pass through the corresponding positioning holes 15420 through the heat insulation body 1541 to be supported on the mounting bracket 102. The heat insulation cover 1544 is an annular body that covers the end face of the heat insulation bracket 1542, further isolating the heat from the heating component 151, and also covering the fasteners and gaps. The heat insulation cover 1544 is made of silicone material.

[0100] In one specific embodiment, the mica sheet assembly 1543 includes a first mica sheet 15430 and a second mica sheet 15431 arranged in parallel and spaced apart, a support tube 15432 located between the first mica sheet 15430 and the second mica sheet 15431, and a fixing frame 15433. The cross-sections of the first mica sheet 15430 and the second mica sheet 15431 are circular. The first mica sheet 15430 is close to the heating component 151, and the second mica sheet 15431 is close to the heat insulation body 1541. The diameter of the second mica sheet 15431 is larger than the diameter of the first mica sheet 15430. The mica sheet assembly 1543 is located on the first air passage 16, wherein the first mica sheet 15430 is provided with an air passage 154301 for the first air passage 16 to flow into the heating component 151. The mounting bracket 15433 is roughly in the shape of a cover with a central hole at the top. The top 154330 covers the first mica sheet 15430, and the bottom 154331 is supported by the second mica sheet 15431.

[0101] In one specific embodiment, one end of the temperature sensing component 152 is bonded to the heating element 1511, and the other end is electrically connected to the main control board 141. The temperature sensing component 152 measures the temperature value of the heating element 1511 and transmits the temperature value to the main control board 141 to achieve precise temperature control. In this embodiment, the temperature sensing component 152 is a type K thermocouple. As a type K thermocouple, it can measure the surface temperature of various liquid vapors and gases, as well as solids, ranging from 0°C to 1300°C in production processes.

[0102] In one specific embodiment, such as Figure 3 , 7 as well as Figure 9-11 The second component 20 includes a heating chamber 21, an atomizing pot 22, a connecting part 23, a second air passage 24, and a second air inlet 234 communicating with the second air passage 24. The heating chamber 21 is located at the second mating end 201 of the second component 20 opposite to the first component 10, and is used to install the atomizing pot 22 within it. The atomizing pot 22 is used to hold tobacco material 2215, which includes, but is not limited to, tobacco paste, tobacco, etc. The second air passage 24 is located inside the second component 20. The second air inlet 234 is located at the bottom of the second component 20, allowing external air to flow in and through the second air passage 24 to the heating chamber 21. The connecting part 23 is located at the bottom of the second component 20 away from the second mating end 201 and is connected to the container 9 to install the main unit 1 into the container 9. The connecting part 23 has an air outlet 230 extending vertically through it.

[0103] In one specific embodiment, such as Figure 7-10 The heating chamber 21 is recessed inward from the second mating end 201 of the second component 20. The heating chamber 21 is provided with a heat insulation component 211 and an inner baffle 213. The heat insulation component 211 is laid on the inner surface of the heating chamber 21 and forms a heat insulation cavity 212, in which the atomizing pot 22 is placed. The inner baffle 213 is a hollow cylindrical shape disposed between the inner wall of the heat insulation component 211 and the atomizing pot 22. The outer wall of the atomizing pot 22 is in contact with the inner baffle 213. In this embodiment, the inner baffle 213 is made of stainless steel for easy cleaning. In this embodiment, when the first component 10 and the second component 20 are closed, the protective cover 153 of the heating assembly 151 directly contacts the atomizing pot 22 and heats the atomizing pot 22, thereby heating the tobacco 2215 loaded in the atomizing pot 22 to generate smoke. As an example, the atomizing pot 22 protrudes from the second mating end 201, which facilitates the removal and placement of the atomizing pot 22.

[0104] In one specific embodiment, such as Figure 18-22The atomizing pot 22 includes a pot body 221, a pot lid 222, an air passage pipe 224, and an isolation net 223. The air passage pipe 224 and the isolation net 224 are disposed inside the pot body 221, and the isolation net 224 is fitted over the air passage pipe 224. The pot body 221 has a plurality of air passage holes 2210. The pot body 221 includes a top 2212, a side wall 2213 extending along the edge of the top 2212, and a cavity 2214 with an opening 22141 formed by the top 2212 and the side wall 2213. The air passage holes 2210 are used to guide air from outside the atomizing pot 22 into the cavity 2214 and to guide gas from inside the cavity 2214 to the outside of the atomizing pot 22. The top 2212 is used to generate heat by being heated by the heating assembly 151. The heating element 151 is located outside the atomizing pot 22 and can be a heating element 151 provided in a smoking device with an atomizing pot 22. This application uses an open cavity 2214 provided in the pot body 221 to hold the tobacco 2215. The pot lid 222 covers the cavity 2214, thus confining the tobacco 2215 within the atomizing pot 22. Since the side wall 2213 extends around the edge of the top 2212, the top 2212 transfers heat to the side wall 2213 after being heated, causing the tobacco 2215 in contact with the side wall 2213 to heat up and produce smoke. This increases the heating area of ​​the tobacco 2215 loaded in the cavity 2214 while preventing localized burning due to overheating. The pot body 221 can be made of a material that easily conducts and stores heat, such as stainless steel.

[0105] In this embodiment, the lid 222 is detachably mounted on the side wall 2213 away from the top 2212. The lid 222 covers the opening 22141 so that when the top 2212 is heated, the heat from the side wall 2213 is partially conducted to the lid 222, further uniformly heating the smoke 2215 received at different locations in the cavity 2214. Specific features of the lid 222 will be further described below.

[0106] In one specific embodiment, the lid 222 is provided with a plurality of air passages 2210 to allow the smoke generated by the tobacco 2215 to flow out of the atomizing pot 22. The shape, number, and spacing of the air passages 2210 in this application are merely examples and not limitations on the air passages 2210; the shape, number, and spacing of the air passages 2210 can be adjusted according to the needs of the atomizing pot 22. The edge of the lid 222 is also provided with a plurality of engaging portions 2221. These engaging portions 2221 engage with the bottom edge of the pot body 221 away from the top 2212. Preferably, the engaging portions 2221 are symmetrically distributed on the bottom edge of the lid 222 facing the cavity 2214.

[0107] As an example, the atomizing pot 22 is described how the heat from the heating component 151 is conducted to the top 2212, side walls 2213, and lid 222 after the top 2212 is heated, thus achieving uniform heating of the tobacco loaded in the cavity 2214. In this application, when the top 2212 is heated by the heating component 151, the tobacco 2215 is located above the lid 222, and the pot body 221 is located above the tobacco 2215. That is, when the heating component 151 heats the atomizing pot 22, the order from top to bottom is heating component 151, pot body 221, tobacco 2215, and lid 222. The specific features of the top will be further described below to illustrate how to avoid overheating of the tobacco 2215 near the heating component 151.

[0108] In one specific embodiment, since the top 2212 is in direct contact with the heat source, to avoid overheating of the smoke 2215 near the top 2212, this application provides several annular protrusions 22122 and several annular flat portions 22121 on the top 2212, and several air passages 2210 on the top 2212. The protrusions 22122 and flat portions 22121 can be adjusted according to the shape of the pot body 221. For example, when the pot body 221 is generally frustum-shaped, the protrusions 22122 and flat portions 22121 can be annular. The protrusions 22122 are the portion of the top of the atomizing pot 22 that protrudes away from the cavity 2214. The flat portions 22121 and protrusions 22122 appear alternately, and the air passages 2210 are provided on the flat portions 22121 to evenly distribute the heat of the heating assembly 151 to the top 2212. Specifically, since the protrusion 22122 is in direct contact with the heating component 151, and there is some gap between the flat portion 22121 with the air passage 2210 and the heating component 151, air can fully enter the cavity 2214 and overheat the smoke 2215.

[0109] As an example, the inverted heating method can prevent the smoke 2215 near the top 2212 from overheating and burning. Simultaneously, several protrusions 22122 and several flat portions 22121 are added to the top 2212, along with several air passages 2210, allowing sufficient air to enter the atomizing pot 22, ensuring the smoke 2215 is fully heated. To further increase the contact area between the smoke 2215 and external air, thereby achieving sufficient heating of the smoke 2215, this embodiment uses an air passage pipe 224. The atomizing pot 22 also has an air passage pipe 224, which guides external air to the smoke 2215 contained in the cavity 2214, ensuring sufficient heating of the smoke 2215. The air passage pipe 224 is a hollow cylinder. One end of the air passage pipe 224 is connected to the top 2212, and the other end extends away from the top 2212. The end of the air passage 224 does not protrude from the side wall 2213 to facilitate the disassembly and cleaning of the atomizing pot 22. In this application, the air passage 224 and the smoke 2215 are housed together in the cavity 2214, and the air passage 224 is in full contact with the smoke 2215. The air passage 224 is provided with several air passage holes 2210 to allow external air to contact the smoke 2215. Preferably, one end of the air passage 224 is riveted to the center of the top 2212 by a rivet 22124 to further increase the contact area between the air passage 224 and the smoke 2215.

[0110] As an example, an air passage 224 extending from the top 2212 and away from the cavity 2214 is used to increase the contact area between the smoke 2215 and the outside air within the cavity 2214. The atomizing pot 22 provided in this application further reduces the possibility of overheating of the smoke 2215 by isolating the top 2212 and the smoke 2215. The specific features of the atomizing pot 22 will be further described below to illustrate how the overheating of the smoke 2215 is further reduced.

[0111] To further ensure uniform heating of the smoke 2215, the atomizing pot 22 of this embodiment further includes an insulating mesh 223. The insulating mesh 223 is located within the cavity 2214 and near the top 2212. Specifically, the edge of the insulating mesh 223 contacts the top 2212, while the other parts of the insulating mesh 223 form a certain gap with the top 2212. That is, the insulating mesh 223 partially contacts the top 2212, and the heat received by the top 2212 is transferred from the edge of the insulating mesh 223 to the insulating mesh 223, and then to the smoke 2215 near the top 2212. Therefore, contact between the smoke 2215 and the top 2212 is avoided. This facilitates cleaning of the pot body 221 and also reduces the probability of the smoke 2215 near the top 2212 being locally scorched due to uneven heating caused by excessively high temperatures at the top 2212.

[0112] In one specific embodiment, the isolation mesh 223 is made of stainless steel to conduct heat generated by the top 2212 to the smoke 2215. The isolation mesh 223 has a mesh-like arc-shaped structure. The isolation mesh 223 has mounting holes 2234 to be fitted onto the air passage pipe 224 through the mounting holes 2234. The isolation mesh 223 includes a mesh bottom 2231 opposite to the top 2212 and a mesh edge 2232 extending obliquely from the mesh bottom 2231 towards the top 2212. The mesh bottom 2231 has a plurality of arc-shaped mesh holes 2233. The plurality of arc-shaped mesh holes 2233 are used to increase the contact area between the smoke 2215 and the air, thereby improving the heating efficiency of the smoke 2215. The edge of the isolation mesh 223 is the edge of the mesh edge 2232. Since one end of the air passage pipe 224 is riveted to the center position of the top 2212 by rivets 22124, the mounting holes 2234 also correspond to the center position of the top 2212.

[0113] As an example, by providing an insulating mesh 223 near the top 2212 within the cavity 2214, the smoke 2215 within the cavity 2214 is isolated from the top 2212, which receives heat from the heating assembly 151, further reducing the possibility of overheating of the smoke 2215. This application allows for adjustment of the heating of the smoke 2215 by changing the orientation of the top 2212 of the atomizing pot 22 relative to or away from the heating assembly 151. The following specific embodiments will illustrate how to achieve this adjustment.

[0114] In one specific embodiment, the pot body 221 is generally frustum-shaped. The dimensions of the sidewalls 2213 gradually increase from the top 2212 to the bottom. Along the axis parallel to the top 2212, the cross-sectional area of ​​the top 2212 is smaller than the cross-sectional area of ​​the lid 222. During the heating process of the atomizing pot 22 by the heating assembly 151, the top 2212 is positioned relative to the heating assembly 151. The heating assembly 151 and the atomizing pot 22 are arranged from top to bottom as follows: heating assembly 151, top 2212, pot body 221, and lid 222. In this application, the tobacco 2215 is loaded in the cavity 2214 in the form of tobacco paste. When the smoke 2215 is not fully loaded into the cavity 2214, the vertical height of the smoke 2215 from the top 2212 is less than the vertical height from the top 2212 to the lid 222. That is, the smoke 2215 can only contact one of the top 2212 and the lid 222, and the smoke 2215 conforms to the shape of the cavity 2214 and the side wall 2213 to contact the side wall 2213. When the top 2212 is heated by the heating assembly 151, the smoke 2215 conforms to the shape of the cavity 2214 and simultaneously makes direct contact with the isolation mesh 223 and the side wall 2213 to be fully heated. When the smoke 2215 is fully loaded into the cavity 2214 and the top 2212 is heated by the heating component 151, the smoke 2215 will receive heat from the isolation mesh 223, the side wall 2213 and the lid 222 and be fully heated. At the same time, the local heating process of the smoke 2215 near the top 2212 is slowed down so that it will not burn.

[0115] As an example, the heating process of the atomizing pot 22 under different loading conditions of the smoke material 2215 is illustrated. The following will explain how to install the atomizing pot 22.

[0116] In one specific embodiment, such as Figure 21 This is a schematic diagram of the assembly process of the atomizing pot provided in this application embodiment. First, the air passage 224 is riveted to the center of the top 2212 with rivets 22124, ensuring that the air passage 224 does not protrude from the side wall 2213 and that several air passage holes 2210 are located in the cavity 2214. Then, the isolation net 223 is fitted onto the air passage 224 through the mounting hole 2234, so that the net edge 2232 contacts the top 2212 and the net bottom 2231 is away from the top 2212 relative to the top 2212. Then, the smoke material 2215, which is adapted to the shape of the isolation net 223, the top 2212, and the cavity 2214, is placed on the net bottom 2231, so that the isolation net 223 supports the smoke material 2215 and accommodates it in the cavity 2214. The pot lid 222 is closed onto the side wall 2213, so that the engaging part 2221 faces the cavity 2214. Finally, the engaging part 2221 is locked to the bottom of the side wall 2213 to complete the installation of the atomizing pot 22. Similarly, the disassembly steps of the atomizing pot 22 can be derived from the installation steps of the atomizing pot 22, which facilitates the cleaning of the components in the atomizing pot 22.

[0117] In one specific embodiment, such as Figure 22 The tobacco 2215 can be placed in the atomizing pot along with the atomizing pot as a standard component, namely the tobacco pot 22', through standardized operations. Specifically, the tobacco 2215 can be loaded into the atomizing pot 22 using an automatic filling device. Further, firstly, the automatic filling device fills the pot body 221, which is equipped with an isolation mesh 223 and an air passage 224, with the tobacco 2215; then, after the tobacco 2215 is filled, the pot lid 222 is placed over the bottom of the pot body 221 by the automatic filling device or manually. At this point, the tobacco pot 22' is completed. The atomizing pot 22 with a detachable lid 222 allows for tobacco standardization, greatly improving the efficiency of tobacco 2215 filling. When using electronic hookah, if the tobacco 2215 is used up, the user can directly replace the tobacco pot 22', making it more convenient for the user. The lid 222 is detachably installed on the pot body 221, which facilitates the installation of the smoke material 2215 and the cleaning of the atomizing pot 22. When the atomizing pot 22 is heated, the lid 222 is below and the pot body 221 is above. The atomizing pot 22 is heated by the pot body 221, forming an inverted heating of the atomizing pot 22. The smoke material 2215 does not directly contact the high temperature, so it is not easy to burn.

[0118] In one specific embodiment, reference is made to Figure 9 and Figure 10 The main unit 1 has air ducts including a first air duct 16 disposed on the first component 10 and a second air duct 24 disposed on the second component 20, with the first air duct 16 and the second air duct 24 connected. Specifically, the first air duct 16 passes sequentially through the heating assembly 151 and the atomizing pot 22 from the first air inlet 17. Specifically, the first air inlet 17 and the second air inlet 234 respectively form the first air duct 16 and the second air duct 24 connected to the heat insulation cavity 212. In the embodiment of this application, the mica sheet assembly 1543, the heating element 1511, and the protective cover 153 are all located on the first air duct 16. In this embodiment, the first air passage 16 connects to the atomizing pot 22 from the end face of the atomizing pot 22 near the first component 10, and the second air passage 24 connects to the atomizing pot 22 from the end face of the atomizing pot 22 away from the first component 10. Understandably, when the electronic hookah 1000 is used, external air enters through the first air inlet 17 and the second air inlet 234, and then flows through the first air passage 16 and the second air passage 24 respectively. The external air enters the atomizing pot 22 from both the upper and lower end faces and fully contacts the solid tobacco material inside, improving atomization efficiency. Please refer to the reference... Figure 8-10 and Figure 23The adapter 23 includes an adapter body 231, an air outlet 230 near the first component 10, and an insertion port 232 away from the first component 10. The air outlet 230, the adapter body 231, and the insertion port 232 are interconnected. The air outlet 230 is opposite to the atomizing pot 22 and is used to output the smoke generated by the atomizing pot 22. The insertion port 232 extends outward perpendicular to the axis of the adapter 23, forming an edge 235. The edge 235 has several notches at certain intervals, forming several second air inlets 234. The orientation of the second air inlets 234 is the same as the orientation of the insertion port 232. In this embodiment, there are two second air inlets 234, which are arranged opposite each other on both sides of the edge 235.

[0119] In this embodiment, when using the electronic hookah 1000, the adapter 94 is first installed on the top of the container 9, then the adapter 23 of the main unit 1 is aligned with the adapter 94, and finally the adapter 94 is inserted into the socket 232 of the adapter 23. The outer wall of the adapter 94 is in close contact with the inner wall of the adapter body 231. The smoke generated by the atomizing pot 22 enters the adapter 94 through the air outlet of the adapter 23, and after being filtered by the filter liquid 90 in the container 9, flows into the user through the smoke tube 91 on the container 9. In this embodiment, the adapter 94 is a hollow frustum that is narrower at the top and wider at the bottom. Correspondingly, the adapter 23 is also a hollow frustum that is narrower at the top and wider at the bottom, and its overall size is larger than that of the adapter 94.

[0120] When using the electronic hookah 1000, firstly, close the first component 10 and the second component 20, insert the battery 12 into the battery compartment 1, open the first component 10 and the second component 20, invert the atomizing pot 22 onto the heat insulation chamber 212, and close the first component 10 and the second component 20 again; then, install the adapter 94 onto the container opening (not shown) at the top of the container 9 containing the filter liquid 90, and assemble the assembled main unit 1 into the container 9 by connecting it to the adapter 94 on the container 9 via the adapter 23; finally, the user operates the main button 1422 to turn on the main unit 1, which is powered by the battery 12 and heats the atomizing pot 22 through the heating component 151 to produce smoke. The user inhales the smoke through the mouthpiece 910 of the container 9 and can adjust the heating temperature of the heating component 151 by operating the left button 1421 and the right button 1423.

[0121] In one specific embodiment, the electronic hookah 1000 can heat the atomizing pot 22 containing the tobacco 2215 by directly contacting the heating element 15 with the atomizing pot 22. The tobacco 2215 is atomized under the heat of the atomizing pot 22 to produce smoke, which flows from the main unit 1 into the container 9 for filtration and is then inhaled. Since the heating element 15 is in direct contact with the atomizing pot 22 containing the tobacco 2215, the tobacco 2215 can be heated more thoroughly. Moreover, the heating element 15 is electrically controlled and temperature can be controlled.

[0122] 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.

[0123] The above description of the electronic hookah provided by this utility model is only for the purpose of helping to understand the method and core idea of ​​this utility model. For those skilled in the art, there will be changes in the specific implementation and application scope based on the idea of ​​this utility model. The content of this specification should not be construed as a limitation of this utility model.

Claims

1. An electronic shisha, characterized in that, The first component and the second component are detachably connected; The first component and the second component are connected through a host installation structure, which comprises a first clamping part arranged on the first component and a second clamping part arranged on the second component; The first component is internally provided with a heating part; the second component is provided with a cavity for accommodating tobacco material; the heating part is arranged opposite to the cavity; the bottom of the second component is provided with an adapter for connecting a container; When the first clamping part and the second clamping part are relatively rotated to a preset position, the first component and the second component are unlocked.

2. The electronic hookah of claim 1, wherein, The first component is provided with a power-off assembly and a circuit board; The circuit board is electrically connected with the power-off assembly; the power-off assembly is arranged on the side where the first component and the second component are connected; When the first component and the second component are opened / closed, the power-off assembly is opened / closed.

3. The electronic hookah of claim 1, wherein, The first component is internally provided with a battery, which is detachably connected with the first component.

4. The electronic hookah of claim 1, wherein, The first clamping part comprises a pivot part, a base and a clamping groove; The pivot part is connected with the base, and the inside of the base is provided with a clamping groove for clamping the second component.

5. The electronic shisha of claim 4, wherein, The second clamping part comprises a clamping hook and a mounting groove for accommodating the first clamping part; The clamping hook is arranged inside the mounting groove; The mounting groove is matched with the first clamping part; the clamping groove is matched with the clamping hook; When the first component and the second component are opened or closed, the first component is rotated by a preset angle, and the clamping groove is separated from or embedded in the clamping hook.

6. The electronic shisha of claim 5, wherein, The second clamping part further comprises a mounting button and an elastic member; The mounting button is connected with the clamping hook through the elastic member; the mounting button penetrates through the mounting groove, and the elastic member and the clamping hook are arranged inside the mounting groove; The mounting groove is matched with the first clamping part; When the first component and the second component are opened or closed, the mounting button is pressed and the clamping hook is moved through the elastic member, and the clamping groove is separated from or embedded in the clamping hook.

7. The electronic hookah of claim 3, wherein, The battery is detachably connected with the first component through a battery installation structure; the battery installation structure comprises a spring plate, a push button and a locking clasp for fixing the battery in the first component; The push button is connected with the locking clasp; the top of the spring plate is provided with the battery; The battery is provided with a bayonet, which is matched with the locking clasp; When the battery is unlocked from the first component, the push button is pushed, the locking clasp is deflected away from the battery and is separated from the bayonet, and the spring plate pops up the battery.

8. The electronic shisha of claim 2, wherein, The power-off assembly comprises an elastic ejector pin, which is arranged at the bottom of the first component; The elastic ejector pin is electrically connected with the circuit board; When the first component and the second component are closed, the elastic ejector pin is inwardly ejected under the extrusion of the second component, so that the power-off assembly is closed; When the first component and the second component are opened, the elastic ejector pin is reset downwardly, so that the power-off assembly is opened.

9. The electronic shisha of claim 2, wherein, The first component is provided with a display on one side, and the display is electrically connected with the circuit board.

10. An electronic shisha, characterized in that An electronic hookah comprising a container and a cartridge according to any one of claims 1 to 9: The second component is in communication with a container containing a filter liquid.