Hookah main machine with auxiliary atomization air channel and electronic hookah

By designing auxiliary atomized airway and air intake pore structures in the hookah main unit, the problem of low combustion efficiency of tobacco materials in traditional hookahs is solved, and more efficient smoke generation and better taste are achieved, while reducing the production of harmful substances.

CN119969646APending Publication Date: 2025-05-13SHENZHEN IMPETUS TECH CO LTD
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Patent Information

Application Number
CN202510061544.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Priority Date
2024-04-26
Filing Date
2025-01-14
Publication Date
2025-05-13

AI Technical Summary

Technical Problem

In traditional Arabic hookahs, the tobacco material only comes into contact with the surface of the tobacco bowl, resulting in low combustion efficiency, poor smoke quality and taste, and incomplete combustion may produce harmful substances.

Method used

A hookah main machine with auxiliary atomization air duct is designed, adopting the design of the first air inlet and the second air inlet hole. The external unheated air is heated through the heating component and mixed with the gas in the cavity to discharge it from the air outlet hole to ensure convection atomization of the cold air and the heated gas.

Benefits of technology

It improves the heating and atomization efficiency of tobacco materials, improves the quality and taste of smoke, reduces the production of harmful substances, and improves energy utilization efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention 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.
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Description

Technical Field

[0001] The present invention relates to the technical field of hookahs, and in particular to a hookah main unit with an auxiliary atomization airway and an electronic hookah. Background Art

[0002] Hookah originated in India and is mainly popular in Arab countries. There are also similar hookahs in Turkey, Iran, and Central Asia. Traditional hookah smoking utensils usually have a bowl for holding tobacco at the top and water at the bottom. When using, burning charcoal is placed on the tobacco to heat and atomize the tobacco to form smoke, which is then filtered by water and then smoked through the pipe.

[0003] However, the tobacco material placed in the bowl is only in contact with the outside air away from the surface of the bowl, and the air in the bowl is difficult to enter the tobacco material evenly, so the tobacco material is not completely burned and the atomization effect of the tobacco material is poor. Summary of the invention

[0004] In view of the above problems, embodiments of the present invention are proposed to provide a hookah host and an electronic hookah with an auxiliary atomization airway that overcome the above problems or at least partially solve the above problems.

[0005] A hookah main unit with an auxiliary atomization airway comprises a main unit;

[0006] The main unit is provided with a first air inlet, an air outlet, a cavity for loading tobacco material, and a heating component for heating the tobacco material; 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 extracted through the air outlet, external unheated air enters through the first air inlet, is heated by the heating component, and is mixed with the second temperature gas in the cavity and discharged from the air outlet; wherein the temperature of the external unheated air after heating is lower than the second temperature.

[0009] Preferably, the first air inlet is communicated with the heating component; and the heating component is communicated with the cavity.

[0010] Preferably, the host comprises 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 hole and the first air channel;

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

[0013] Preferably, a plurality of the 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.

[0014] Preferably, the heating surface of the heating component is arranged opposite to the cavity.

[0015] Preferably, the heating component comprises a sheet-shaped heating element and a protective cover;

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

[0017] Preferably, the heating component further comprises a heat insulating bracket and a heat insulating body;

[0018] The heat insulation bracket and the heat insulation body are spaced apart to form a first gap, and the sheet-like heating body and the protective cover are arranged inside the heat insulation bracket.

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

[0020] Preferably, the host is provided with a second air inlet; the second air inlet is connected 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 through the air outlet, external unheated air enters through the second air inlet, mixes with the heated gas around the tobacco material in the cavity, and is discharged from the air outlet.

[0022] To realize the present application, an electronic hookah is also provided, wherein the electronic hookah includes the hookah main unit with the auxiliary atomization airway, and includes a container:

[0023] The second component is in communication with a container containing the filtrate.

[0024] The present application specifically includes the following advantages:

[0025] In the embodiments of the present application, relative to the prior art that "the tobacco material in the bowl is only in contact with the external air away from the surface of the bowl, the air in the bowl is difficult to enter the tobacco material evenly, the tobacco material is not completely burned, and the atomization effect of the tobacco material is poor", the present application provides a "first air inlet" solution, 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 material and a heating component for heating the tobacco material; wherein, the first air inlet includes at least one; the first air inlet is connected to the heating component and the air outlet to form a first air passage; when air is drawn through the air outlet, external unheated air enters through the first air inlet, is heated by the heating component, and is mixed with the second temperature gas in the cavity and discharged from the air outlet; wherein, the temperature of the external unheated air after heating is lower than the second temperature. The "second air inlet hole" solves the problem that the tobacco material in the bowl is in contact with the outside air only away from the surface of the bowl, the air in the bowl is difficult to enter the tobacco material evenly, the tobacco material is not completely burned, and the atomization effect of the tobacco material is poor. It ensures that the cold air and the heated gas of the tobacco material are convectively atomized and discharged from the air outlet during use, thereby improving energy utilization efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0026] In order to more clearly illustrate the technical solution of the present application, the drawings required for use in the description of the present application will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present application. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative labor.

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

[0028] Figure 2 yes Figure 1 Schematic diagram of the exploded view of the electronic hookah shown.

[0029] Figure 3 This is a three-dimensional diagram of a host of an electronic hookah in a first state provided by an embodiment of the present application, wherein the host comprises a first component and a second component.

[0030] Figure 4 yes Figure 3 A three-dimensional schematic diagram of the host in the second state is shown.

[0031] Figure 5 yes Figure 3 A schematic cross-sectional view of the host from a first angle is shown.

[0032] Figure 6 yes Figure 3 A second angle cross-sectional diagram of the host shown

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

[0034] Figure 8 It is a three-dimensional schematic diagram of a heating component according to an embodiment of the present application.

[0035] Fig. 9 It is a three-dimensional schematic diagram of a heating component provided in one embodiment of the present application.

[0036] Fig.10 It is a three-dimensional schematic diagram of a heat insulation sheet assembly according to an embodiment of the present application.

[0037] Fig.11 It is a structural schematic diagram of an atomizer provided in one embodiment of the present application.

[0038] Fig.12 yes Fig.11 A three-dimensional schematic diagram of the atomizer pot shown.

[0039] Fig.13 yes Fig.11 The three-dimensional exploded schematic diagram of the pot body and the smoke material is shown.

[0040] Fig.14 yes Figure 3 A bottom view of the host is shown.

[0041] Fig.15 It is a schematic structural diagram of the first air inlet of an embodiment of the present application.

[0042] Fig.16 It is a schematic diagram of the structure of the first air inlet and the second air inlet of an embodiment of the present application.

[0043] Fig.17 It is a schematic structural diagram of the second air inlet of an embodiment of the present application.

[0044] 1000, electronic hookah; 1, host; 10, first component; 11, first bracket; 12, first shell; 15, heating component; 151, heating component; 1511, sheet heating element; 1512, connecting line; 1513, second air hole; 1514, electric heating material; 153, protective cover; 1531, third air hole; 154, heat insulation component; 1541, heat insulation element; 1542, heat insulation bracket; 1543, heat insulation sheet component; 15430, first heat insulation sheet; 154301, fourth air hole; 15431, second heat insulation sheet; 1544, first gap; 1545, second gap; 16, first airway; 17. First air inlet; 20. Second component; 21. Heating chamber; 22. Atomizer pot; 221. Pot body; 2210. First air hole; 2212. Top; 2213. Side; 2214. Cavity; 22141. Opening; 2215. Tobacco material; 222. Pot cover; 23. Adapter; 230. Air outlet; 231. Adapter body; 232. Socket; 234. Second air inlet; 235. Edge; 24. Second air duct; 25. Second bracket; 26. Second outer shell; 27. Gap; 9. Container; 90. Filtered liquid; 91. Smoke pipe; 910. Nozzle; 92. Pot body; 93. Support platform; 94. Adapter. DETAILED DESCRIPTION

[0045] In order to make the objects, features and advantages of the present application more obvious and understandable, the present application is further described in detail below in conjunction with the accompanying drawings and specific implementation methods. Obviously, the described embodiments are part of the embodiments of the present application, rather than all of the embodiments. Based on the embodiments in the present application, all other embodiments obtained by ordinary technicians in the field without creative work are within the scope of protection of the present application.

[0046] The inventors analyzed the prior art and found that in the use of traditional Arabic hookahs, the tobacco material only contacts the surface of the bowl, which makes the combustion efficiency of the tobacco material low, affecting the quality and taste of the smoke. In addition, incomplete combustion of tobacco material may also produce some harmful substances, posing a potential threat to health.

[0047] In order to solve this problem, the present application adopts a more advanced heating method, using an electric heater to replace the traditional charcoal fire, which can heat the tobacco more evenly and improve the combustion efficiency. At the same time, the improved design places the tobacco in a more open container, so that the air can circulate more evenly, thereby improving the combustion efficiency. In general, although the traditional Arabic hookah has some shortcomings, these problems can be effectively solved through some improved designs and technologies.

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

[0049] Reference Figure 1 , shows a schematic structural diagram of a hookah host with an auxiliary atomization airway of the present invention, which may specifically include the following structure: comprising a host; the host 1 is provided with a first air inlet 17, an air outlet 230, a cavity for loading tobacco material, and a heating component 15 for heating the tobacco material; wherein, the first air inlet includes at least one; the first air inlet 17 is connected with the heating component 15 and the air outlet 230 to form a first airway; when air is drawn through the air outlet 230, external unheated air enters through the first air inlet 17, is heated by the heating component 15, and is mixed with the second temperature gas in the cavity and discharged from the air outlet 230; wherein, the temperature of the external unheated air after being heated is lower than the second temperature.

[0050] Next, a hookah main unit with an auxiliary atomization airway in this exemplary embodiment will be further described.

[0051] The second air hole component includes a second air hole and a third air hole; the heating component includes a heating component and a protective cover wrapping the heating component;

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

[0053] When the tobacco material is heated, the air enters the first air passage through the first air inlet to the heating component, and passes through the second air hole and the third air hole through the atomizer to the air outlet 230 .

[0054] Reference Figure 1 , showing a schematic structural diagram of the airway structure of the electronic hookah 1000 of the present invention, which may specifically include the following structure: comprising a host 1; the host 1 is provided with a heating component 15, a second air inlet 234, a second airway, an air outlet 230, a cavity for loading a tobacco material 2215, and a heating component 15 for heating the tobacco material 2215; the second air inlet 234 is connected with the cavity and the air outlet 230 to form the second airway; wherein the second air inlet 234 includes at least one; the second air inlet 234 is arranged 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] Next, the airway structure of an electronic hookah 1000 in this exemplary embodiment will be further described.

[0056] In the embodiment of the present 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 a specific embodiment, the first component 10 and the second component 20 are connected by snapping through a connecting component on the side, so that the second component 20 can be easily disassembled and washed. The connecting component is designed to be a detachable structure for easy cleaning and maintenance. The connection is connected by snapping through the connecting component on the side. This connection method is not only convenient for disassembly and installation, but also can ensure the stability and reliability of the components. The first component 10 and the second component 20 can be snap-connected by the following steps: a snap hole is provided on the side of the first component 10, and the shape and size of the snap hole match the connecting component. A snap protrusion is provided on the side of the second component 20, and the shape and size of the snap protrusion match the snap hole. The sides of the first component 10 and the second component 20 are opposite to each other, so that the snap protrusion is inserted into the snap hole. A certain pressure is applied to make the snap protrusion snap-connected with the snap hole, so that the first component 10 and the second component 20 are fixed together. When it is necessary to disassemble and wash, the snap protrusion only needs to be pulled out of the snap hole to realize the disassembly of the components. The connection method is simple to operate and easy to implement.

[0058] In the embodiments of the present application, Fig.15As shown, the host 1 is provided with a first air inlet 17 and a first air duct; the first air inlet 17 is connected with the air outlet 230 to form the first air duct; the first air inlet 17 is arranged around the heating component 15; when air is drawn through the air outlet 230, external air enters through the first air inlet 17 and passes through the heating component 15 to form heated gas, which is mixed with the air of the first air inlet 17 and discharged from the air outlet 230.

[0059] As an example, the first component 10 is provided with a heating component 15 for heating the tobacco material 2215; the main unit 1 is provided with a first air inlet 17 and a first air duct; the first air inlet 17 is connected to the air outlet 230 to form the first air duct; the first air inlet 17 is arranged around the heating component 15; when air is drawn through the air outlet 230, external air enters through the first air inlet 17 and passes through the heating component 15 to form heated gas, which is mixed with the air of the second air inlet 234 and discharged from the air outlet 230.

[0060] In a specific embodiment, the present application includes a detachable first component 10, wherein the first component 10 includes a heating component 15 for heating the tobacco material 2215. The first air inlet 17 is connected to the air outlet 230 to form a first airway. When air is drawn through the air outlet 230, external air enters through the first air inlet 17 and is heated by the heating component 15 to form heated gas. This heated gas is then mixed with the cold air entering through the first air inlet 17, and the cold air and the hot air form convection atomization and are then discharged from the air outlet 230. This design allows the user to inhale the vapor or aerosol generated by the heated tobacco material 2215. The design of the present application also helps to control the heating process, thereby potentially improving the efficiency and safety of the device.

[0061] In the embodiment of the present application, the host 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. The first component 10 is provided with the heating component 15 and the cavity for loading tobacco materials, and the second component 20 is provided with the second air inlet 234 and the air outlet 230. Such a design can make the heating component 15 and the cavity for loading tobacco materials 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 the embodiment of the present application, the host 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, and the second component 20 is provided with the air outlet 230; the host 1 includes the first component 10 and the second component 20, and the two components are combined together by connection. The first component 10 is provided with a heating component 15, a cavity and a second air inlet 234, and the second component 20 is provided with an air outlet 230. This structural design allows air to enter the internal cavity of the host 1 through the second air inlet 234, and after being heated by the heating component 15, it is finally discharged from the air outlet 230, thereby realizing the heating and filtering functions of the air.

[0063] In the embodiment of the present application, the host 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 second air inlet 234, and the second component 20 is provided with the air outlet 230 and the cavity containing the tobacco material. The first component 10 is provided with the heating component 15 and the second air inlet 234, and the second component 20 is provided with the air outlet 230 and the cavity containing the tobacco material. Such a design enables the heating component 15 to effectively heat the tobacco material, while realizing the circulation of smoke 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 may enter from the first air inlet hole 17 or from the second air inlet hole 234, either one is acceptable.

[0065] As an example, a plurality of first air inlet holes 17 are longitudinally symmetrically arranged on both sides of the heating component 15, and the first air inlet holes 17 on each side are arranged side by side. The first air inlet holes 17 can be arranged in a long strip shape.

[0066] As an example, the first air inlet holes 17 are arranged around the first gap.

[0067] In the embodiment of the present application, the host 1 is provided with a heating component 15, the host 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 a smoke material 2215, and a heating component 15 for heating the smoke material 2215; wherein, the first air inlet 17 includes at least one; the first air inlet 17 is connected 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, and is mixed with the second temperature air and discharged from the air outlet 230; the temperature of the second temperature air is lower than the temperature of the heated gas. The design of the present application can achieve uniform heating of the smoke material 2215, and by controlling the first air inlet 17 and the air outlet 230, adjust the mixing ratio of the heated gas and the second temperature air, thereby controlling the temperature and humidity of the exhaust 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, external unheated air enters through the first air inlet 17, is heated by the heating component 15, and is mixed with the second temperature gas in the cavity and discharged from the air outlet 230; wherein the temperature of the external unheated air after heating is lower than the second temperature.

[0068] It should be noted that the principle of the present application is that the heated smoke material and the heated gas and unheated gas around the smoke material are convectively drawn into the filtered liquid in the container to form smoke.

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

[0070] In the embodiment of the present application, the heating surface of the heating component 15 is arranged opposite to the cavity. The cavity is where the atomizer pot is placed, and the smoke material 2215 is placed inside the atomizer pot. The atomizer pot includes a pot body and a pot cover adapted to the pot body; the pot body and the pot cover are both provided with the first air hole 2210.

[0071] In the embodiment of the present application, the heating component 15 includes a sheet heating element 1511 and a protective cover 153; the protective cover 153 is provided on the side of the sheet heating element 1511 facing the tobacco material 2215. The heating component 15 also includes a heat insulating bracket 1542 and a heat insulating body 1541; the heat insulating bracket 1542 and the heat insulating body 1541 are arranged to form a first gap, and the sheet heating element 1511 and the protective cover 153 are provided inside the heat insulating bracket 1542.

[0072] In a specific embodiment, the heating component 15 includes a sheet heating element 1511 and a protective cover 153, wherein the protective cover 153 is provided on the side of the sheet heating element 1511 facing the tobacco material 2215. In addition, the heating component 15 also includes a heat insulating bracket 1542 and a heat insulating body 1541, which are arranged at intervals to form a first gap, and the interior of the heat insulating bracket 1542 is provided with a sheet heating element 1511 and a protective cover 153. This design can effectively isolate the heating element from the external environment, prevent heat loss, and improve heating efficiency. At the same time, it can also protect the heating element from external factors and extend its service life. The sheet heating element 1511 is made of a super thermal conductive material, and the super thermal conductive material is SUS430.

[0073] In the embodiment of the present application, the heating component 15 includes a second air hole component; the second air hole component passes through the heating component 15.

[0074] In a specific embodiment, the second air hole assembly includes a second air hole 1513 and a third air hole 1531, the second air hole 1513 is arranged on the sheet heating element 1511, and the third air hole 1531 is arranged on the protective cover 153, and the second air hole 1513 and the third air hole 1531 have the same shape and pattern.

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

[0076] In a 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 temperature. A suitable type of battery is selected according to the heating power, such as a lithium-ion battery, a nickel-hydrogen battery, etc.

[0077] In a 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 the present application, Fig.16 and Fig.17 As shown, the second component 20 is provided with the second air inlet 234, the second air passage, the air outlet 230 and the cavity. The second air inlet 234 is connected with the cavity and the air outlet 230 to form a second air passage; 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 smoke material 2215 in the cavity, and is discharged from the air outlet 230.

[0079] In the embodiment of the present application, the second air inlet hole 234 is only connected to the cavity. The second air inlet hole 234 does not pass through the heating component 15, and can be opened in any direction from the outside of the main unit 1 to obtain the second air inlet hole 234, bypassing the heating component and connecting to the cavity; or; the main unit 1 is opened in an outward tilted direction to connect to the cavity.

[0080] As an example, the heating surface of the heating component 15 is arranged opposite to the cavity. The heating surface of the heating component 15 is opposite to the cavity loaded with the tobacco material 2215, so that heat is transferred to the tobacco material 2215 in the cavity through the heating surface. This configuration helps the combustion process, thereby improving the quality and taste of the tobacco material 2215 product.

[0081] In the embodiment of the present application, the opening height of the second air inlet 234 is not greater than the highest level of the smoke material 2215. When the opening height of the second air inlet 234 is equal to or less than the highest level of the smoke material 2215, the smoke material 2215 is fully in contact with the air, and the taste of the smoke material 2215 is better.

[0082] In the embodiment of the present application, 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 a specific embodiment, the second air inlet 234 is arranged at the bottom of the second component 20, and 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 the present application can ensure that the gas can flow into the second component 20 evenly through the second air inlet 234 and be discharged through the air outlet 230 at the center. This structure is very useful in applications where precise control of air flow distribution is required, such as in heat exchangers, burners or other devices that require precise gas distribution. The setting 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 to form air flow. This flow can help dissipate heat, especially in electronic or mechanical equipment, which requires heat dissipation to maintain normal operation. From an aesthetic point of view, this design can also make the device look more beautiful. 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 enhancing the overall visual effect.

[0084] In a specific embodiment, the second air inlet holes 234 can be arranged in two circles or in one circle; when arranged in one circle, the second air inlet holes 234 are square and four are arranged; when arranged in two circles, the second circle is arranged outside the first circle, and the second air inlet holes 234 are arranged at equal intervals.

[0085] The present application also includes a hookah, including an airway structure of an electronic hookah 1000 and a container: the second component 20 of the host 1 is connected to the container containing filtered liquid.

[0086] As an example, see Figure 1-Figure 2 , Figure 1 The electronic hookah 1000 provided in one embodiment of the present 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 a cigarette material 2215 and when working, heats the cigarette material 2215 to form smoke and allows the smoke to flow into the container 9. The container 9 contains an edible filter liquid 90, such as water, and the smoke flows into the container 9 and is filtered through the filter liquid 90. The container 9 is provided with a smoke pipe 91 with a suction nozzle 910, and the user can suck through the suction nozzle 910 to 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 kettle body 92 containing the filter liquid 90, a support platform 93, and an adapter 94 arranged on the support platform 93 and connected to the kettle body 901. Among them, the container 9 is assembled with the main unit 1 through the adapter 94, so that the main unit 1 is carried on the support platform 93.

[0087] As an example, please refer to Figure 3-Figure 4 , Figure 3-Figure 4The schematic diagrams in different states are shown. The host 1 includes a first component 10 and a second component 20 assembled with the first component 10. In this embodiment, the first component 10 and the second component 20 can rotate relative to each other so that the host 1 is opened or closed, and the first component 10 and the second component 20 can be operably combined together or completely separated.

[0088] As an example, combine Figure 5-6 , Figure 5 and Figure 6 The first component 10 includes a first bracket 11, a first shell 12 surrounding the first bracket 11, a heating component 15, a first air channel 16, and a first air inlet 17 connected to the first air channel 16. The first air inlet 17 is arranged in the first shell 12, and the heating component 15 is arranged in the first bracket 11 and partially exposed in the first shell 12.

[0089] As an example, combine Figure 7 , Figure 7 The cross-sectional view of the heating component is shown. The heating component 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 heating component 151 except for the position covered by the protective cover 153. The heating component 151 is used to generate heat, the protective cover 153 is used to protect the heating component 151, and the heat insulation component 154 is used to prevent the heat of the heating component 151 from being transmitted to the outside.

[0090] In a specific embodiment, referring to Fig. 9 The heating component 151 is a roughly 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 is provided with a second air hole 1513, and the sheet heating element 1511 is located on the first air channel 16. The second air hole 1513 is used for the circulation of the first air channel 16. The sheet heating element 1511 is provided with an electric heating material 1514, and the electric heating material 1514 is formed by thick mold printing and low-temperature glazing. In this embodiment, the electric heating material 1514 is arranged in a plane spiral shape on the sheet heating element 1511. In this embodiment, the sheet heating element 1511 uses SUS430 super thermal conductive material as the electric heating material 1514.

[0091] As an example, the heat insulation assembly 154 includes a heat insulation bracket 1542, a heat insulator 1541, and a heat insulation sheet assembly 1543. The heat insulation bracket 1542 and the heat insulator 1541 are arranged to form a first gap 1544, and the first gap 1544 is annular. Air enters the heating component 15 through the first air inlet 17 and the first gap 1544. Among them, the heat insulation sheet assembly 1543 is located between the heat insulation bracket 1542 and the heat insulator 1541. The heat insulator 1541 is located on the side of the heating component 15 away from the second component 20. Among them, the heating component 151 is arranged between the heat insulation bracket 1542 and the heat insulator 1541 and is exposed to the heat insulation bracket 1542 through the connecting line 1512.

[0092] As an example, see Figure 8 , the protective cover 153 is arranged opposite to the sheet heating element 1511 and faces the second component 20. The protective cover 153 is also provided with a third air hole 1531, and the protective cover 153 is located on the first air duct 16, and the third air hole 1531 is connected to the first air duct 16. In the present embodiment, the protective cover 153 is fixed to the thermal insulation assembly 154 by a fixing member (not shown). The protective cover 153 covers the side of the sheet heating element 1511 facing the second component 20 to prevent the sheet heating element 1511 from being directly exposed to the outside and being damaged. In the present 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 heating element 1511.

[0093] As an example, see Fig.10 The heat-insulating sheet assembly 1543 includes a first heat-insulating sheet 15430 and a second heat-insulating sheet 15431 which are arranged in parallel and at intervals, and a second gap 1545 is formed between the first heat-insulating sheet 15430 and the second heat-insulating sheet 15431, wherein the heat-insulating sheet assembly 1543 is located on the first air channel 16, and the first heat-insulating sheet 15430 is provided with a fourth air hole 154301 for the first air channel 16 to flow to the heating component 151. In this embodiment, the cross-sections of the first heat-insulating sheet 15430 and the second heat-insulating sheet 15431 are circular. The first heat-insulating sheet 15430 is close to the heating component 151, and the second heat-insulating sheet 15431 is close to the heat-insulating body 1541, and the diameter of the second heat-insulating sheet 15431 is greater than the diameter of the first heat-insulating sheet 15430.

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

[0095] As an example, a plurality of first air inlet holes 17 are provided, and the plurality of first air inlet holes 17 are provided along positions corresponding to the annular shape of the first gap 1544. The plurality of first air inlet holes 17 are longitudinally symmetrically provided on both sides of the first housing 12, and the first air inlet holes 17 on each side are provided side by side. In this embodiment, the number of the plurality of first air inlet holes 17 is ten, and the number of the first air inlet holes 17 on each side is five. The first air inlet holes 17 are in the shape of long strips, and the lengths of the first air inlet holes 17 decrease successively in the direction away from the first air inlet holes 17 on the other side.

[0096] As an example, the first air duct 16 passes through the first air inlet 17, the heating component 15, the atomizer pot 22, and the air outlet 230 in sequence. Specifically, external air flows into the first component 10 from the first air inlet 17, passes through the first gap 1544, enters the heating component 15, and flows out of the heating component 15 from the second gap 1545, the second air hole 1513 and the third air hole 1531 in sequence to enter the atomizer pot 22 and contact the smoke material 2215 in the atomizer pot 22. The smoke material 2215 is atomized to obtain smoke under the heat of the heating component 15, and the smoke flows out from the air outlet 230 and enters the container 9.

[0097] As an example, the second component 20 is provided with a second bracket 25, a second shell 26 surrounding the second bracket 25, an atomizer 22, a heating chamber 21 for installing the atomizer 22, an adapter 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 provided on the second shell 26, and the atomizer 22 is used to load tobacco material 2215, and the tobacco material 2215 includes but is not limited to tobacco paste, tobacco, etc. The second component 20 is assembled with the container 9 through the adapter 23, and the adapter 23 is provided with an air outlet 230 penetrating the adapter 23 in a vertical direction, and the air outlet 230 is communicated with the heating chamber 21.

[0098] In a specific embodiment, referring to Figure 11-12 , Figure 11-12 The three-dimensional schematic diagrams of the atomizer pot 22 at two different angles are shown. The atomizer pot 22 includes a pot body 221, a pot cover 222, and a smoke material 2215. The heating component 15 is arranged opposite to the outside of the atomizer pot 22 and directly contacts the atomizer pot 22 through the pot body 221.

[0099] In a specific embodiment, referring to Fig.13 , Fig.13It is a three-dimensional exploded schematic diagram of the pot body and the tobacco material. 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 surrounded by the top 2212 and the side wall 2213. The top 2212 is in direct contact with the atomizer pot 22, and is used to be heated by the heating component 151 to generate heat. The top 2212 is arranged opposite to the pot cover 222 and is provided with a first air hole 2210, and the first air hole 2210 is used to guide the air outside the atomizer pot 22 to the cavity 2214. The present application contains the tobacco material 2215 by means of the cavity 2214 with an opening 22141 arranged on the pot body 221. The pot cover 222 covers the cavity 2214, so that the tobacco material 2215 is confined in the atomizer pot 22. The material of the pot body 221 can be a material that is easy to conduct heat and store heat, such as stainless steel.

[0100] In the embodiment of the present application, the pot cover 222 is detachably mounted on an end of the side wall 2213 away from the top 2212. The pot cover 222 covers the opening 22141, so that when the top 2212 is heated, the heat of the side wall 2213 is partially conducted to the pot cover 222, further evenly heating the heat received by the smoke material 2215 at different positions of the cavity 2214. The specific features of the pot cover 222 will be further described below.

[0101] In a specific embodiment, the pot cover 222 is also provided with a first air hole 2210, and the first air hole 2210 is used to guide the air outside the atomizer pot 22 to the cavity 2214, and guide the smoke in the cavity 2214 to the outside of the atomizer pot 22. The shape, number, and interval between the first air holes 2210 in the present application are only examples of the first air holes 2210, and are not limitations on the first air holes 2210, that is, the shape, number, and interval between the first air holes 2210 can be adjusted according to the needs of the atomizer pot 22.

[0102] In a specific embodiment, please refer to Figure 6 The adapter 23 includes an adapter body 231, an air outlet 230 close to the first component 10, a socket 232 away from the first component 10, and a second air inlet 234. The adapter 23 is surrounded by the second bracket 25 and there is a gap 27 between the second bracket 25. The gap 27 is connected to the second air inlet 234, wherein the second air inlet 234 is arranged along a position corresponding to the gap 27, and the second air inlet 234 is arranged at the bottom of the second component 20 away from the first component 10. The air outlet 230, the adapter body 231, and the socket 232 are interconnected, and the air outlet 230 is opposite to the atomizer 22, and is used to output the smoke generated by the atomizer 22.

[0103] In a specific embodiment, please refer to Fig.14In the above embodiment, the socket 232 extends outward from the axis of the vertical transfer portion 23 to form an edge 235, and the edge 235 is provided with a plurality of notches at a certain interval, and the plurality of notches form a plurality of second air inlet holes 234, and the orientation of the plurality of second air inlet holes 234 is consistent with the orientation of the socket 232. In this embodiment, the number of the second air inlet holes 234 is two, and the two second air inlet holes 234 are relatively arranged on both sides of the edge 235. The air outlet 230 is arranged at the center of the bottom of the host 1, and the second air inlet holes 234 are arranged around the air outlet 230 at equal intervals with the air outlet 230 as the center.

[0104] In a specific embodiment, the second air passage 24 passes through the second air inlet 234, the gap 27, the atomizer 22, and the air outlet 230 in sequence. External air flows into the second component 20 from the second air inlet 234, enters the atomizer 22 after passing through the gap 27, and contacts the smoke material 2215 in the atomizer 22. The smoke material 2215 is atomized to obtain smoke under the heat of the heating component 15, and the smoke flows out from 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 a specific embodiment, the electronic hookah 1000 and the host 1 are included, and external air flows into the host from the first air inlet 17 and the second air inlet 234, and enters the atomizer 22 from the first air duct 16 and the second air duct 24 respectively to contact the smoke material 2215 in the atomizer 22, so that the smoke material 2215 is fully in contact with the air, thereby improving the heating and atomization efficiency of the smoke material 2215.

[0106] Finally, it should be noted that, in this article, relational terms such as first and second, etc. are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Moreover, the terms "include", "comprise" or any other variants thereof are intended to cover non-exclusive inclusion, so that a process, method, article or terminal device including a series of elements includes not only those elements, but also other elements not explicitly listed, or also includes elements inherent to such process, method, article or terminal device. In the absence of further restrictions, the elements defined by the sentence "comprise a ..." do not exclude the existence of other identical elements in the process, method, article or terminal device including the elements.

[0107] The above is a detailed introduction to a hookah main unit, a smoke pot and an electronic hookah with an auxiliary atomization airway provided by the present invention. Specific examples are used in this article to illustrate the principle and implementation mode of the present invention. The description of the above embodiments is only used to help understand the method of the present invention and its core idea; at the same time, for a general technician in this field, according to the idea of ​​the present invention, there will be changes in the specific implementation mode and the scope of application. In summary, the content of this specification should not be understood as a limitation on the present invention.

Claims

1. A hookah main unit with an auxiliary atomization airway, characterized in that: Including host; The main unit is provided with a first air inlet, an air outlet, a cavity for loading tobacco material, and a heating component for heating the tobacco material; wherein the first air inlet includes at least one; The first air inlet is connected to the heating component and the air outlet to form a first air passage; When air is extracted through the air outlet, external unheated air enters through the first air inlet, is heated by the heating component, and is mixed with the second temperature gas in the cavity and discharged from the air outlet; wherein the temperature of the external unheated air after heating is lower than the second temperature.

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

3. The hookah main unit with auxiliary atomization 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 channel; The second component is provided with the air outlet and the cavity.

4. The hookah main unit with auxiliary atomization airway according to claim 1, characterized in that: The 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 main unit with auxiliary atomization airway according to claim 1, characterized in that: The heating surface of the heating component is arranged opposite to the cavity.

6. The hookah main unit with auxiliary atomization airway according to claim 1, characterized in that: The heating component includes a sheet-shaped heating element and a protective cover; The protective cover is provided on the side of the sheet heating element facing the tobacco material.

7. The hookah main unit with auxiliary atomization airway according to claim 6, characterized in that: The heating component also includes a heat insulation bracket and a heat insulation body; The heat insulation bracket and the heat insulation body are spaced apart to form a first gap, and the sheet-like heating body and the protective cover are arranged inside the heat insulation bracket.

8. The hookah main unit with auxiliary atomization airway according to claim 7, characterized in that: The first air inlet hole is arranged around the first gap.

9. The hookah main unit with auxiliary atomization airway according to claim 1, characterized in that: The host is provided with a second air inlet; the second air inlet is connected with the cavity and the air outlet to form a second air passage; wherein the second air inlet includes at least one; When air is drawn through the air outlet, external unheated air enters through the second air inlet, mixes with the heated gas around the tobacco material in the cavity, and is discharged from the air outlet.

10. An electronic hookah, characterized in that: The electronic hookah includes a hookah host with an auxiliary atomization airway as claimed in any one of claims 1 to 9, including a container: The second component is in communication with a container containing the filtrate.