Hookah main machine with auxiliary atomization air channel and electronic hookah

By introducing an auxiliary atomizing airway into the hookah host, and using the air inlet and heating components to form the airway, the problem of incomplete combustion of the tobacco is solved, achieving uniform heating and efficient atomization of the tobacco, thus improving smoke quality and user experience.

CN223979419UActive 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

In traditional Arabic hookah, the tobacco only comes into contact with the outside air on the surface away from the bowl, resulting in incomplete combustion, which reduces the heating and atomization efficiency of the tobacco and may produce harmful substances.

Method used

The water pipe host with an auxiliary atomizing air duct is adopted. The air duct is formed through the first air inlet and the heating element. After the external unheated air enters the heating element, it mixes with the gas in the cavity and is discharged from the air outlet, ensuring that the cold air and the heated gas of the tobacco are convectively atomized.

Benefits of technology

It improves the combustion efficiency of tobacco, ensures uniform heating of tobacco, improves energy utilization efficiency, and enhances smoke quality and taste.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223979419U_ABST
    Figure CN223979419U_ABST
Patent Text Reader

Abstract

The utility model relates to a hookah main machine with an auxiliary atomization air channel and an electronic hookah. The hookah main machine comprises a main machine body, and the main machine body is provided with a first air inlet hole, an air outlet hole, a cavity used for containing tobacco materials and a heating component used for heating the tobacco materials; wherein the number of the first air inlet holes is at least one; the first air inlet hole is communicated with the heating part and the air outlet hole to form a first air channel; when air is exhausted through the air outlet hole, external unheated air enters through the first air inlet hole, is heated by the heating part, is mixed with second-temperature air in the cavity and is exhausted from the air outlet hole; wherein the temperature of the external unheated air after being heated is lower than the second temperature. The problem of incomplete combustion of the tobacco materials is solved through the second air inlet holes, convection atomization of cold air and heated gas of the tobacco materials in the using process is guaranteed, the heated gas is discharged from the air outlet holes, and the energy utilization efficiency 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 a hookah host with an auxiliary atomizing air channel and 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 have a bowl at the top for holding the tobacco 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 through a pipe.

[0003] However, the tobacco placed in the bowl only comes into contact with the outside air away from the surface of the bowl. The air in the bowl is difficult to enter the tobacco evenly, the tobacco does not burn completely, and the atomization effect of the tobacco is poor. Summary of the Invention

[0004] In view of the above problems, the present invention provides a hookah host with an auxiliary atomizing air duct and an electronic hookah to overcome or at least partially solve the above problems.

[0005] A hookah host with an auxiliary atomizing air duct, comprising a host unit;

[0006] The main unit is provided with a first air inlet, an air outlet, a cavity for loading tobacco, and a heating component for heating the tobacco; wherein, the first air inlet includes at least one.

[0007] The first air inlet is connected to the heating component and the air outlet to form a first air passage;

[0008] When air is drawn out through the vent, unheated external air enters through the first vent, is heated by the heating element, and mixes with the second-temperature gas in the cavity before being discharged through the vent; wherein the temperature of the unheated external air after being heated is lower than the second temperature.

[0009] Preferably, the first air inlet is connected to the heating component; the heating component is connected to the cavity.

[0010] Preferably, the host includes a first component and a second component connected to the first component;

[0011] The first component is provided with the heating component, the first air inlet and the first air passage;

[0012] The second component is provided with the air outlet and the cavity.

[0013] Preferably, a plurality of the first air inlets are longitudinally symmetrically distributed on both sides of the heating component, and the first air inlets on each side are arranged side by side.

[0014] Preferably, the heating surface of the heating element is positioned opposite to the cavity.

[0015] Preferably, the heating element includes a sheet-like heating element and a protective cover;

[0016] The protective cover is provided on the side of the sheet-shaped heating element facing the smoke material.

[0017] Preferably, the heating component further includes a heat insulation bracket and a heat insulation body;

[0018] The heat insulation bracket and the heat insulation body are spaced apart to form a first gap, and the heat insulation bracket is provided with the sheet-shaped heating element and the protective cover inside.

[0019] Preferably, the first air inlet is arranged around the first gap.

[0020] Preferably, the main unit is provided with a second air inlet; the second air inlet communicates with the cavity and the air outlet to form a second air passage; wherein, the second air inlet includes at least one;

[0021] When air is drawn out through the vent, unheated external air enters through the second inlet and mixes with the heated gas surrounding the smoke material in the cavity, and is then discharged through the vent.

[0022] To achieve this, the application also includes an electronic hookah, the electronic hookah comprising the hookah host with auxiliary atomizing air duct, and a container:

[0023] The second component is connected to a container containing the filtered liquid.

[0024] This application specifically includes the following advantages:

[0025] In the embodiments of this application, compared with the prior art where "the tobacco in the bowl only comes into contact with the outside air away from the surface of the bowl, making it difficult for the air in the bowl to enter the tobacco evenly, resulting in incomplete combustion and poor atomization of the tobacco," this application provides a solution of "first air inlet," specifically: including a main unit, the main unit is provided with a heating component, a first air inlet, an air outlet, a cavity for loading tobacco, and a heating component for heating the tobacco; wherein, at least one first air inlet is included; the first air inlet communicates with the heating component and the air outlet to form a first air passage; when air is drawn through the air outlet, unheated external air enters through the first air inlet, is heated by the heating component, and mixes with the second temperature gas in the cavity before being discharged from the air outlet; wherein, the temperature of the unheated external air after being heated is lower than the second temperature. The "second air inlet" solves the problem that the tobacco in the bowl only comes into contact with the outside air away from the surface of the bowl, making it difficult for the air in the bowl to enter the tobacco evenly, resulting in incomplete combustion and poor atomization of the tobacco. It ensures that the heated gas from the cold air and the tobacco is convected and atomized during use and discharged through the air outlet, thus improving energy efficiency. Attached Figure Description

[0026] 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.

[0027] Figure 1 This is a schematic diagram of the structure of an electronic hookah according to an embodiment of this application.

[0028] Figure 2 yes Figure 1 The diagram shown is an exploded view of an electronic hookah.

[0029] Figure 3 This is a perspective view of the first state of the main unit of an electronic hookah provided in an embodiment of this application. The main unit includes a first component and a second component.

[0030] Figure 4 yes Figure 3 The diagram shows the second state of the host computer.

[0031] Figure 5 yes Figure 3 The diagram shows a first-angle cross-sectional view of the host computer.

[0032] Figure 6 yes Figure 3 The second-angle cross-sectional view of the host shown.

[0033] Figure 7This is a cross-sectional schematic diagram of a heating component according to an embodiment of this application.

[0034] Figure 8 This is a perspective view of a heating component according to an embodiment of this application.

[0035] Figure 9 This is a three-dimensional schematic diagram of a heating component provided in an embodiment of this application.

[0036] Figure 10 This is a perspective view of a heat insulation sheet assembly according to an embodiment of this application.

[0037] Figure 11 This is a schematic diagram of the structure of an atomizing pot provided in an embodiment of this application.

[0038] Figure 12 yes Figure 11 A three-dimensional schematic diagram of the atomizing pot is shown.

[0039] Figure 13 yes Figure 11 The diagram shows a three-dimensional exploded view of the pot body and smoke material.

[0040] Figure 14 yes Figure 3 The diagram shows a top-view view of the host machine.

[0041] Figure 15 This is a schematic diagram of the structure of the first air inlet according to an embodiment of this application.

[0042] Figure 16 This is a schematic diagram of the structure of the first air inlet and the second air inlet according to an embodiment of this application.

[0043] Figure 17 This is a schematic diagram of the structure of the second air inlet according to an embodiment of this application.

[0044] 1000. Electronic hookah; 1. Main unit; 10. First component; 11. First bracket; 12. First outer shell; 15. Heating component; 151. Heating element; 1511. Sheet-shaped heating element; 1512. Connecting wire; 1513. Second air vent; 1514. Electric heating material; 153. Protective cover; 1531. Third air vent; 154. Heat insulation component; 1541. Heat insulation body; 1542. Heat insulation bracket; 1543. Heat insulation sheet assembly; 15430. First heat insulation sheet; 154301. Fourth air vent; 15431. Second heat insulation sheet; 1544. First gap; 1545. Second gap; 16. First air passage; 17. First air inlet; 20. Second component; 21. Heating chamber; 22. Atomizing pot; 221. Pot body; 2210. First air outlet; 2212. Top; 2213. Side; 2214. Cavity; 22141. Opening; 2215. Tobacco; 222. Pot lid; 23. Adapter; 230. Air outlet; 231. Adapter body; 232. Insert; 234. Second air inlet; 235. Edge; 24. Second air passage; 25. Second bracket; 26. Second outer shell; 27. Gap; 9. Container; 90. Filtrate; 91. Tobacco tube; 910. Mouthpiece; 92. Pot body; 93. Support platform; 94. Adapter. Detailed Implementation

[0045] 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.

[0046] The inventors, through analysis of existing technologies, discovered that in traditional hookah use, the tobacco only contacts the surface of the bowl, resulting in low combustion efficiency and affecting the quality and taste of the smoke. Furthermore, incomplete combustion of the tobacco may produce harmful substances, posing a potential health threat.

[0047] To address this issue, this application employs a more advanced heating method, using an electric heater instead of traditional charcoal fires. This allows for more even heating of the tobacco, improving combustion efficiency. Simultaneously, the improved design places the tobacco in a more open container, enabling more even airflow and further enhancing combustion efficiency. In summary, while traditional hookah has some drawbacks, these problems can be effectively solved through improved design and technology.

[0048] In the embodiments of this application, compared with the prior art where "the tobacco 2215 in the tobacco bowl only comes into contact with the outside air away from the surface of the tobacco bowl, making it difficult for the air in the tobacco bowl to enter the tobacco 2215 evenly, resulting in incomplete combustion of the tobacco 2215 and reducing the heating and atomization efficiency of the tobacco 2215", this application provides a solution of "first air inlet", specifically: including a main unit 1; the main unit 1 is provided with a heating component 15, a first air inlet 17, an air outlet 230, a cavity for loading tobacco, and a heating component 15 for heating the tobacco; wherein, the first air inlet includes at least one; the first air inlet 17 is connected to the heating component 15 and the air outlet 230 to form a first air passage; when air is drawn through the air outlet 230, the unheated outside air enters through the first air inlet 17, is heated by the heating component 15, and mixes with the second temperature gas in the cavity before being discharged from the air outlet 230; wherein, the temperature of the unheated outside air after being heated is lower than the second temperature. The "second air inlet 234" solves the problem that the tobacco 2215 in the tobacco bowl only comes into contact with the outside air on the surface away from the tobacco bowl, making it difficult for the air in the tobacco bowl to enter the tobacco 2215 evenly, resulting in incomplete combustion of the tobacco 2215 and reducing the heating and atomization efficiency of the tobacco 2215. It ensures that during use, the cold air and the heated gas of the tobacco 2215 are convected and atomized and discharged from the air outlet 230, thereby improving energy utilization efficiency.

[0049] Reference Figure 1 This diagram illustrates the structure of a hookah host with an auxiliary atomizing air passage according to the present invention. Specifically, it may include the following structure: a host unit; the host unit 1 is provided with a first air inlet 17, an air outlet 230, a cavity for loading tobacco, and a heating element 15 for heating the tobacco; wherein, at least one first air inlet is provided; the first air inlet 17 communicates with the heating element 15 and the air outlet 230 to form a first air passage; when air is drawn through the air outlet 230, unheated external air enters through the first air inlet 17, is heated by the heating element 15, and mixes with a second-temperature gas in the cavity before being discharged from the air outlet 230; wherein, the temperature of the unheated external air after heating is lower than the second temperature.

[0050] The following will further describe a hookah host with an auxiliary atomizing air duct in this exemplary embodiment.

[0051] The second vent assembly includes a second vent and a third vent; the heating component includes a heating assembly and a protective cover enclosing the heating assembly;

[0052] The heating component is provided with a second vent; the protective cover is provided with a third vent.

[0053] When the smoke is heated, the air enters the first air passage through the first air inlet to the heating component, and passes through the second and third air passages through the atomizing pot to the air outlet 230.

[0054] Reference Figure 1 The diagram shows a schematic of the airway structure of the electronic hookah 1000 of this utility model, which can specifically include the following structure: a main unit 1; the main unit 1 is provided with a heating component 15, a second air inlet 234, a second airway, an air outlet 230, a cavity for loading tobacco 2215, and a heating component 15 for heating the tobacco 2215; the second air inlet 234 communicates with the cavity and the air outlet 230 to form the second airway; wherein, at least one second air inlet 234 is included; the second air inlet 234 is disposed around the cavity; when air is drawn through the air outlet 230, external air enters through the second air inlet 234, mixes with the heated gas around the cavity, and is discharged from the air outlet 230.

[0055] The airway structure of an electronic hookah 1000 in this exemplary embodiment will now be further described.

[0056] In this embodiment of the application, the host 1 includes a first component 10 and a second component 20 connected to the first component 10; the first component 10 and the second component 20 are detachably connected; or; the first component 10 and the second component 20 can be integrally formed.

[0057] In one specific embodiment, the first component 10 and the second component 20 are connected by a snap-fit ​​connection on the side, facilitating the disassembly and washing of the second component 20. The connecting component is designed as a washable structure for easy cleaning and maintenance. The snap-fit ​​connection on the side not only facilitates disassembly and installation but also ensures the stability and reliability of the components. The first component 10 and the second component 20 are snap-fitted together through the following steps: a snap-fit ​​hole is provided on the side of the first component 10, the shape and size of which match the connecting component. A snap-fit ​​protrusion is provided on the side of the second component 20, the shape and size of which match the snap-fit ​​hole. The sides of the first component 10 and the second component 20 are placed face to face, so that the snap-fit ​​protrusion is inserted into the snap-fit ​​hole. A certain pressure is applied, causing the snap-fit ​​protrusion to snap into the snap-fit ​​hole, thereby fixing the first component 10 and the second component 20 together. When disassembly and washing are required, the components can be disassembled simply by pulling the snap-fit ​​protrusion out of the snap-fit ​​hole. The connection method is simple to operate and easy to implement.

[0058] In the embodiments of this application, such as Figure 15As shown, the host 1 is provided with a first air inlet 17 and a first air passage; the first air inlet 17 is connected to the air outlet 230 to form the first air passage; the first air inlet 17 is arranged around the heating component 15; when air is drawn in through the air outlet 230, external air enters through the first air inlet 17, passes through the heating component 15 to form heated gas, mixes with the air in the first air inlet 17, and is discharged from the air outlet 230.

[0059] As an example, the first component 10 is provided with a heating component 15 for heating the smoke 2215; the main unit 1 is provided with a first air inlet 17 and a first air passage; the first air inlet 17 communicates with the air outlet 230 to form the first air passage; the first air inlet 17 is disposed around the heating component 15; when air is drawn through the air outlet 230, external air enters through the first air inlet 17, passes through the heating component 15 to form heated gas, mixes with the air in the second air inlet 234, and is discharged from the air outlet 230.

[0060] In one specific embodiment, this application includes a detachable first component 10, which includes a heating element 15 for heating the smoke 2215. A first air inlet 17 communicates with an air outlet 230 to form a first air passage. When air is drawn in through the air outlet 230, outside air enters through the first air inlet 17 and is heated by the heating element 15 to form heated gas. This heated gas is then mixed with cold air entering through the first air inlet 17, and the cold and hot air form convective atomization before being discharged from the air outlet 230. This design allows a user to inhale the vapor or aerosol generated by the heated smoke 2215. The design of this application also helps to control the heating process, thereby potentially improving the efficiency and safety of the device.

[0061] In this embodiment, the host unit 1 includes a first component 10 and a second component 20 connected to the first component 10. The first component 10 is provided with the heating component 15 and the cavity, and the second component 20 is provided with the second air inlet 234 and the air outlet 230. This design allows the heating component 15 and the cavity for loading tobacco to be located in the first component 10, while the second air inlet 234 and the air outlet 230 are located in the second component 20.

[0062] In this embodiment, the host unit 1 includes a first component 10 and a second component 20 connected to the first component 10. The first component 10 is provided with the heating component 15, the cavity, and the second air inlet 234, while the second component 20 is provided with the air outlet 230. The host unit 1 includes the first component 10 and the second component 20, which are combined together by connection. The first component 10 is provided with the heating component 15, the cavity, and the second air inlet 234, while the second component 20 is provided with the air outlet 230. This structural design allows air to enter the internal cavity of the host unit 1 through the second air inlet 234, be heated by the heating component 15, and finally be discharged from the air outlet 230, thereby achieving the functions of heating and filtering air.

[0063] In this embodiment, the host unit 1 includes a first component 10 and a second component 20 connected to the first component 10. The first component 10 is provided with a heating component 15 and a second air inlet 234, and the second component 20 is provided with an air outlet 230 and a cavity containing tobacco. This design allows the heating component 15 to effectively heat the tobacco, while simultaneously allowing smoke to circulate through the second air inlet 234 and the air outlet 230, thereby improving the smoking experience.

[0064] It should be noted that the cold air can enter from either the first air inlet 17 or the second air inlet 234; either is acceptable.

[0065] As an example, a plurality of first air inlets 17 are longitudinally symmetrically distributed on both sides of the heating component 15, and the first air inlets 17 on each side are arranged side by side. The first air inlets 17 may be configured as elongated strips.

[0066] As an example, the first air inlet 17 is disposed around the first gap.

[0067] In this embodiment, the host unit 1 is provided with a heating component 15, a first air inlet 17, a first air passage, an air outlet 230, a cavity for loading tobacco 2215, and a heating component 15 for heating the tobacco 2215. At least one first air inlet 17 is included. The first air inlet 17 communicates with the heating component 15 and the air outlet 230 to form the first air passage. When air is drawn through the air outlet 230, external air enters through the first air inlet 17, is heated by the heating component 15, mixes with air at a second temperature, and is discharged through the air outlet 230. The temperature of the second temperature air is lower than the temperature of the heated gas. This design enables uniform heating of the tobacco 2215 and, by controlling the first air inlet 17 and the air outlet 230, adjusts the mixing ratio of the heated gas and the second temperature air, thereby controlling the temperature and humidity of the discharged gas and improving the user experience. The host 1 includes a first air inlet 17; the first air inlet 17 is connected to the air outlet 230 to form a first air passage; when air is drawn through the air outlet 230, unheated external air enters through the first air inlet 17, is heated by the heating component 15, and mixes with the second temperature gas in the cavity before being discharged from the air outlet 230; wherein, the temperature of the unheated external air after being heated is lower than the second temperature.

[0068] It should be noted that the principle of this application is that heated smoke and the heated and unheated gases around the smoke are drawn into the filtrate in the container through convection to form smoke.

[0069] In this embodiment, the first air inlet 17 is connected to the heating component 15; the heating component 15 is connected to the cavity; the first air inlet 17 is connected to the heating component 15, and the heating component 15 is connected to the cavity. The first air inlet 17 is connected to the cavity through the heating component 15. The structural design of this application allows the heating component 15 to receive air from the first air inlet 17, heat the air, and then deliver the heated air into the cavity.

[0070] In this embodiment, the heating surface of the heating component 15 is positioned opposite to the cavity. The cavity is the location for placing the atomizing pot, and the atomizing pot contains the smoke material 2215. The atomizing pot includes a pot body and a pot lid adapted to the pot body; both the pot body and the pot lid are provided with the first air vent 2210.

[0071] In this embodiment, the heating component 15 includes a sheet-shaped heating element 1511 and a protective cover 153; the protective cover 153 is provided on the side of the sheet-shaped heating element 1511 facing the smoke 2215. The heating component 15 also includes a heat insulation bracket 1542 and a heat insulation body 1541; the heat insulation bracket 1542 and the heat insulation body 1541 are spaced apart to form a first gap, and the sheet-shaped heating element 1511 and the protective cover 153 are disposed inside the heat insulation bracket 1542.

[0072] In one specific embodiment, the heating component 15 includes a sheet-shaped heating element 1511 and a protective cover 153, wherein the protective cover 153 is provided on the side of the sheet-shaped heating element 1511 facing the smoke 2215. Furthermore, the heating component 15 also includes a heat insulation bracket 1542 and a heat insulation body 1541, which are spaced apart to form a first gap. The sheet-shaped heating element 1511 and the protective cover 153 are disposed inside the heat insulation bracket 1542. This design can effectively isolate the heating element from the external environment, prevent heat loss, improve heating efficiency, and also protect the heating element from external factors, extending its service life. The sheet-shaped heating element 1511 is made of a superconducting thermal material, specifically SUS430.

[0073] In this embodiment, the heating component 15 includes a second vent assembly; the second vent assembly penetrates the heating component 15.

[0074] In one specific embodiment, the second vent assembly includes a second vent 1513 and a third vent 1531. The second vent 1513 is disposed on the sheet-like heating element 1511, and the third vent 1531 is disposed on the protective cover 153. The second vent 1513 and the third vent 1531 have the same shape and pattern.

[0075] In one specific embodiment, a first heat insulation sheet 15430 and a second heat insulation sheet for heat insulation are provided between the heat insulation body 1541 and the heat insulation bracket 1542. The sheet-shaped heating element 1511 includes a temperature sensing device; one end of the temperature sensing device is fixedly connected to the sheet-shaped heating element 1511. Both the first heat insulation sheet 15430 and the second heat insulation sheet can be made of mica sheets.

[0076] In one specific embodiment, a battery is provided on the top of the heating component 15 to power the entire device, and the heat insulation component 154 is used to separate the battery from the heating component; the heat insulation component 154 is used to prevent heat loss and protect the battery from high temperatures. A suitable type of battery, such as a lithium-ion battery or a nickel-metal hydride battery, is selected according to the heating power.

[0077] In one specific embodiment, the host 1 is further provided with an electronic screen, which is electrically connected to the circuit board and the battery. The electronic screen is an LED screen.

[0078] In the embodiments of this application, such as Figure 16 and Figure 17 As shown, the second component 20 is provided with a second air inlet 234, a second air passage, an air outlet 230, and a cavity. The second air inlet 234 communicates with the cavity and the air outlet 230 to form a second air passage; when air is drawn in through the air outlet 230, external air enters through the second air inlet 234, mixes with the heated gas around the smoke material 2215 in the cavity, and is discharged from the air outlet 230.

[0079] In this embodiment, the second air inlet 234 communicates only with the cavity. The second air inlet 234 does not pass through the heating component 15. It can be obtained by opening from any direction outside the host 1, bypassing the heating component and communicating with the cavity; or, the host 1 opens in an outward tilting direction and communicates with the cavity.

[0080] As an example, the heating surface of the heating element 15 is disposed opposite to the cavity. The heating surface of the heating element 15 is opposite to the cavity containing the tobacco 2215 so that heat can be transferred to the tobacco 2215 inside the cavity through the heating surface. This configuration facilitates the combustion process, thereby improving the quality and taste of the tobacco 2215 product.

[0081] In this embodiment, the opening height of the second air inlet 234 is not greater than the highest horizontal plane of the tobacco 2215. When the opening height of the second air inlet 234 is equal to or less than the highest horizontal plane of the tobacco 2215, the tobacco 2215 has sufficient contact with air, resulting in a better taste.

[0082] In this embodiment, the second air inlet 234 is disposed at the bottom of the second component 20. The air outlet 230 is disposed at the center of the bottom of the second component 20, and the second air inlet 234 is disposed around the air outlet 230.

[0083] In one specific embodiment, the second air inlet 234 is located at the bottom of the second component 20, while the air outlet 230 is located at the center of the bottom of the second component 20. The second air inlet 234 is arranged around the air outlet 230. The design of this application ensures that gas can flow evenly into the second component 20 through the second air inlet 234 and be discharged through the air outlet 230 at the center. This structure is very useful in applications that require precise control of airflow distribution, such as in heat exchangers, burners, or other devices that require precise gas distribution. The arrangement of the second air inlet 234 allows air to enter the second component 20 from the bottom and then be discharged through the air outlet 230, forming an airflow. This airflow helps with heat dissipation, especially in electronic or mechanical equipment that requires heat dissipation to maintain normal operation. From an aesthetic point of view, this design can also make the device look more attractive. The relative position and shape of the air outlet 230 and the second air inlet 234 can be coordinated with the overall design of the device, thereby improving the overall visual effect.

[0084] In one specific embodiment, the second air inlet 234 can be provided in two rings or in one ring; when one ring is provided, the second air inlet 234 is square and four are provided; when two rings are provided, the second ring is provided outside the first ring and the second air inlets 234 are provided at equal intervals.

[0085] This application also includes a hookah, comprising an airway structure and a container for an electronic hookah 1000: the second component 20 of the main unit 1 is connected to a container containing a filter liquid.

[0086] As an example, refer to Figures 1-2 , Figure 1 An embodiment of the electronic hookah 1000 provided in this application is shown. The electronic hookah 1000 includes a main unit 1 and a container 9. The main unit 1 is an electronic device assembled in 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 assembled with the main unit 1 through the adapter 94, thereby allowing the main unit 1 to be supported on the support platform 93.

[0087] As an example, please refer to [reference]. Figures 3-4 , Figures 3-4The diagram illustrates different states. The host unit 1 includes a first component 10 and a second component 20 assembled together with the first component 10. In this embodiment, the first component 10 and the second component 20 can rotate relative to each other to open or close the host unit 1, and the first component 10 and the second component 20 can be operably combined together or completely separated.

[0088] As an example, please combine Figure 5-6 , Figure 5 and Figure 6 The diagram shows cross-sectional views of the main unit at different angles. The first component 10 includes a first bracket 11, a first outer shell 12 surrounding the first bracket 11, a heating component 15, a first air passage 16, and a first air inlet 17 communicating with the first air passage 16. The first air inlet 17 is disposed in the first outer shell 12, and the heating component 15 is disposed inside the first bracket 11 and partially exposed outside the first outer shell 12.

[0089] As an example, please combine Figure 7 , Figure 7 A cross-sectional view of the heating element is shown. The heating element 15 includes a heating component 151, a protective cover 153, and a heat insulation component 154. One side of the heating component 151 is covered by the protective cover 153, and the heat insulation component 154 covers the portion of the heating component 151 not covered by the protective cover 153. The heating component 151 generates heat, the protective cover 153 protects the heating component 151, and the heat insulation component 154 prevents heat from the heating component 151 from being transferred to the outside.

[0090] In one specific embodiment, reference is made to Figure 9 The heating element 151 is generally a disc-shaped sheet heating element 1511, and a connecting line 1512 extending from the sheet heating element 1511 to the top of the main unit 1. The sheet heating element 1511 has a second vent 1513, and the sheet heating element 1511 is located on the first air passage 16. The second vent 1513 is used to allow air to flow through the first air passage 16. The sheet heating element 1511 has an electric heating material 1514, which is formed by thick mold printing and low-temperature glazing. In this embodiment, the electric heating material 1514 is arranged in a planar spiral shape on the sheet heating element 1511. In this embodiment, the sheet heating element 1511 uses SUS430 superconducting thermal material as the electric heating material 1514.

[0091] As an example, the heat insulation assembly 154 includes a heat insulation bracket 1542, a heat insulation body 1541, and a heat insulation sheet assembly 1543. The heat insulation bracket 1542 and the heat insulation body 1541 are spaced apart to form a first gap 1544, which is annular. Air enters the heating element 15 through a first air inlet 17 and the first gap 1544. The heat insulation 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 element 15 away from the second component 20. The heating element 151 is disposed between the heat insulation bracket 1542 and the heat insulation body 1541 and is exposed to the heat insulation bracket 1542 via a connecting line 1512.

[0092] As an example, refer to Figure 8 The protective cover 153 is disposed opposite to the sheet-shaped heating element 1511 and faces the second component 20. The protective cover 153 also has a third vent 1531, which is located on the first air passage 16 and communicates with it. In this 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 sheet-shaped heating element 1511 facing the second component 20 to prevent the sheet-shaped 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 disc-shaped and its shape is adapted to the sheet-shaped heating element 1511.

[0093] As an example, refer to Figure 10 The heat insulation assembly 1543 includes a first heat insulation sheet 15430 and a second heat insulation sheet 15431 arranged in parallel and spaced apart, with a second gap 1545 formed between the first heat insulation sheet 15430 and the second heat insulation sheet 15431. The heat insulation assembly 1543 is located on a first air passage 16. The first heat insulation sheet 15430 has a fourth air passage 154301 for airflow from the first air passage 16 to the heating element 151. In this embodiment, the cross-sections of the first heat insulation sheet 15430 and the second heat insulation sheet 15431 are circular. The first heat insulation sheet 15430 is closer to the heating element 151, and the second heat insulation sheet 15431 is closer to the heat insulation body 1541. The diameter of the second heat insulation sheet 15431 is larger than the diameter of the first heat insulation sheet 15430.

[0094] In one specific embodiment, both the first heat insulation sheet 15430 and the second heat insulation sheet 15431 are mica sheets.

[0095] As an example, a plurality of first air inlets 17 are provided, arranged along a ring-shaped pattern corresponding to the first gap 1544. The plurality of first air inlets 17 are longitudinally symmetrically distributed on both sides of the first outer casing 12, with each side having a parallel arrangement of the first air inlets 17. In this embodiment, the number of the plurality of first air inlets 17 is ten, with five on each side. The first air inlets 17 are elongated, and their lengths decrease sequentially in the direction away from the other side.

[0096] As an example, the first air passage 16 passes sequentially through the first air inlet 17, the heating element 15, the atomizing pot 22, and the air outlet 230. Specifically, external air flows into the first element 10 through the first air inlet 17, passes through the first gap 1544, enters the heating element 15, and flows out of the heating element 15 sequentially through the second gap 1545, the second air outlet 1513, and the third air outlet 1531. It enters the atomizing pot 22 and comes into contact with the smoke material 2215 inside the atomizing pot 22. The smoke material 2215 is atomized under the heat of the heating element 15 to obtain smoke, and the smoke flows out from the air outlet 230 and enters the container 9.

[0097] As an example, the second component 20 includes a second support 25, a second outer shell 26 surrounding the second support 25, an atomizing pot 22, a heating chamber 21 for mounting the 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 second air inlet 234 is located in the second outer shell 26. The atomizing pot 22 is used to load tobacco 2215, which includes, but is not limited to, tobacco paste, tobacco, etc. The second component 20 is assembled with the container 9 via the connecting part 23. The connecting part 23 is provided with an air outlet 230 that extends vertically through the connecting part 23 and communicates with the heating chamber 21.

[0098] In one specific embodiment, reference is made to Figure 11-12 , Figure 11-12 The diagram shows two perspective views of the atomizing pot 22 from different angles. The atomizing pot 22 includes a pot body 221, a pot lid 222, and smoke material 2215. The heating element 15 is disposed opposite to the outside of the atomizing pot 22 and is in direct contact with the atomizing pot 22 through the pot body 221.

[0099] In one specific embodiment, reference is made to Figure 13 , Figure 13This is a three-dimensional exploded view of the pot body and the smoke material. The pot body 221 includes a top 2212, side walls 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 walls 2213. The top 2212 is in direct contact with the atomizing pot 22 and is used to generate heat by being heated by the heating element 151. The top 2212 is disposed opposite to the pot lid 222 and has a first vent 2210, which is used to guide air from outside the atomizing pot 22 into the cavity 2214. In this application, the smoke material 2215 is contained in the cavity 2214 with the opening 22141 provided in the pot body 221. The pot lid 222 covers the cavity 2214, so that the smoke material 2215 is confined within the atomizing pot 22. The pot body 221 can be made of a material that is easy to conduct heat and store heat, such as stainless steel.

[0100] 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.

[0101] In one specific embodiment, the lid 222 is also provided with a first vent 2210. The first vent 2210 is used to guide air from outside the atomizing pot 22 to the cavity 2214 and to guide the smoke from the cavity 2214 to the outside of the atomizing pot 22. The shape, number, and spacing of the first vents 2210 in this application are merely examples of the first vents 2210 and are not a limitation thereof. The shape, number, and spacing of the first vents 2210 can be adjusted according to the needs of the atomizing pot 22.

[0102] In one specific embodiment, please refer to Figure 6 The adapter 23 includes an adapter body 231, an air outlet 230 near the first component 10, a connector 232 away from the first component 10, and a second air inlet 234. The adapter 23 is surrounded by a second bracket 25, and there is a gap 27 between the second brackets 25. The gap 27 communicates with the second air inlet 234. The second air inlet 234 is positioned along the gap 27 and is located at the bottom of the second component 20 away from the first component 10. The air outlet 230, the adapter body 231, and the connector 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.

[0103] In one specific embodiment, please refer to the reference Figure 14In the above embodiment, the axis of the vertical adapter 23 of the connector 232 extends outward to form an edge 235. This 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 that of the connector 232. In this embodiment, there are two second air inlets 234, which are positioned opposite each other on both sides of the edge 235. The air outlet 230 is located at the center of the bottom of the main unit 1, and the second air inlets 234 are evenly spaced around the air outlet 230 with the air outlet 230 as the center.

[0104] In one specific embodiment, the second air passage 24 sequentially passes through the second air inlet 234, the gap 27, the atomizing pot 22, and the air outlet 230. External air flows into the second component 20 through the second air inlet 234, passes through the gap 27, and enters the atomizing pot 22, where it comes into contact with the smoke material 2215. The smoke material 2215 is atomized by the heat from the heating component 15 to produce smoke, which flows out through the air outlet 230 and enters the container 9. The direction in which air flows in from the first air inlet 17 is perpendicular to the direction in which air flows in from the second air inlet 234.

[0105] In one specific embodiment, the device includes an electronic hookah 1000 and a main unit 1. External air flows into the main unit through the first air inlet 17 and the second air inlet 234, and enters the atomizing pot 22 through the first air passage 16 and the second air passage 24 respectively, coming into contact with the tobacco 2215 inside the atomizing pot 22. This allows the tobacco 2215 to come into full contact with the air, thereby improving the heating and atomization efficiency of the tobacco 2215.

[0106] 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.

[0107] The above provides a detailed description of the hookah host with auxiliary atomizing air duct, the tobacco pot, and the electronic hookah provided by this utility model. Specific examples have been used to illustrate the principle and implementation of this utility model. The description of the above embodiments is only for the purpose of helping to understand the method and core idea of ​​this utility model. 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 utility model. Therefore, the content of this specification should not be construed as a limitation of this utility model.

Claims

1. A water pipe main unit with an auxiliary atomizing airway, characterized in that, A host; The host is provided with a first air inlet hole, an air outlet hole, a cavity for loading tobacco material, and a heating component for heating the tobacco material; wherein the first air inlet hole comprises at least one; The first air inlet hole is in communication with the heating component and the air outlet hole to form a first air passage; When air is drawn through the air outlet hole, external unheated air enters through the first air inlet hole, is heated by the heating component, and is mixed with second-temperature gas in the cavity and discharged from the air outlet hole; wherein the temperature of the heated external unheated air is lower than the second temperature.

2. The hookah main unit with auxiliary atomizing airway according to claim 1, characterized in that, The first air inlet hole is in communication with the heating component; the heating component is in communication with the cavity.

3. The hookah main unit with auxiliary atomizing airway according to claim 1, characterized in that, The host comprises a first component and a second component connected to the first component; The first component is provided with the heating component, the first air inlet hole, and the first air passage; The second component is provided with the air outlet hole and the cavity.

4. The hookah main unit with auxiliary atomizing airway according to claim 1, characterized in that, A plurality of first air inlet holes are longitudinally symmetrically arranged on both sides of the heating component, and the first air inlet holes on each side are arranged side by side.

5. The hookah master with an auxiliary atomizing airway according to claim 1, characterized in that, The heating surface of the heating component is arranged opposite to the cavity.

6. The hookah master with an auxiliary atomizing airway according to claim 1, characterized in that, The heating component comprises a sheet-shaped heating body and a protective cover; The sheet-shaped heating body is provided with the protective cover on the side facing the tobacco material.

7. The waterpipe master with an auxiliary atomizing airway according to claim 6, characterized in that, The heating component further comprises a heat insulation support and a heat insulation body; The heat insulation support and the heat insulation body are arranged with a first gap therebetween, and the sheet-shaped heating body and the protective cover are arranged inside the heat insulation support.

8. The waterpipe master with an auxiliary atomizing airway according to claim 7, characterized in that, The first air inlet hole is arranged around the first gap.

9. The hookah master with an auxiliary atomizing airway according to claim 1, characterized in that, The host is provided with a second air inlet hole; the second air inlet hole is in communication with the cavity and the air outlet hole to form a second air passage; wherein the second air inlet hole comprises at least one; When air is drawn through the air outlet hole, external unheated air enters the second air inlet hole and is mixed with heated gas around the tobacco material in the cavity and is discharged from the air outlet hole.

10. An electronic shisha, characterized in that The electronic hookah comprises a hookah host with an auxiliary atomization air passage according to any one of claims 1 to 9, and a container; The second component is in communication with the container containing the filtering liquid.