Heat conduction base of electronic hookah
By using a heat-conducting base design, the air is preheated by the heating element before entering the tobacco bowl, which solves the problems of temperature drop and odor caused by the heating element directly contacting the tobacco paste or tobacco. This achieves constant temperature heating of the smoke and improves the taste, thus enhancing the user experience.
Patent Information
- Application Number
- CN202423023544.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-09
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2034-12-09
AI Technical Summary
Existing electronic hookah heating elements come into direct contact with tobacco paste or tobacco, causing a rapid drop in temperature, reduced smoke flavor, and potential off-odors, affecting the user experience and long-term reliability of the equipment.
Design a heat-conducting base that heats the base body via a heating element before the air enters the tobacco bowl through a duct, avoiding direct contact between the heating element and the tobacco paste or tobacco. The modular design of the base body and cover ensures uniform heating and sealing.
Maintaining a constant temperature for the tobacco paste enhances the flavor and smoking experience, reduces odor, and extends the lifespan of the equipment.
Smart Images

Figure CN223568719U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a water pipe technical field, especially electronic water pipe's heat conduction base. BACKGROUND
[0002] The structure of the Arabic water pipe usually includes a water pipe, a smoke pot (or a smoke bowl), a filter-tipped hose (or a smoke pipe) and tin paper. When smoking, first fill the water bottle with water, and then insert the upper body into a small filter copper pipe and tighten it. Then, put the appropriate amount of tobacco tar or tobacco in the smoke pot, wrap it with tin paper and make some small holes on it, and then put the well-burned charcoal (or electronic heater) on the tin paper with holes. Finally, insert the smoke pipe and start smoking.
[0003] At present, a variety of electronic heaters have emerged in the market. These devices use electric energy to replace traditional charcoal for heating. Common heating methods include electric heating wire / plate ring heating, electromagnetic heating and electric heating rod / plate direct heating. However, these heating methods all have a common problem: the heating element is usually directly fixed on the smoke pot or directly in contact with the tobacco tar or tobacco or directly exposed to the air.
[0004] Under this design, the external gas directly enters the smoke pot without any pretreatment and comes into contact with the tobacco tar or tobacco. This not only causes the internal temperature of the smoke pot to drop rapidly, making it difficult to maintain constant heating of the tobacco tar, but also affects the taste of the smoke, thereby reducing the overall experience of the smoker. More seriously, since the heating element is in direct contact with the tobacco tar or tobacco, the smoke is easily adsorbed on the heating element, causing the heating element to heat the smoke, air or impurities adhering to the surface of the heating element again, thereby producing odors or harmful gases, which are inhaled by the user during use, and if not cleaned in time, it not only reduces the heating effect, but also may affect the long-term use of the device, so it is necessary to improve it. SUMMARY
[0005] The utility model aims at the shortage of prior art, provides a kind of electronic water pipe's heat conduction base, and the tobacco tar or tobacco in the smoke pot is heated by heating element through seat body, avoid the direct contact of heating element with tobacco tar or tobacco. The seat body is provided with the air guide channel that allows external air to enter the smoke pot. The seat body is heated by the heating element, so that the external air is preheated before entering the smoke pot by contacting the air guide channel, reducing the direct influence of external air on the temperature in the heating cavity, which helps to maintain constant heating of the tobacco tar and improve the taste of the smoke and the overall experience of the smoker.
[0006] To achieve the above purpose, the utility model discloses a kind of electronic water pipe's heat conduction base, including seat body and cover body,
[0007] The seat cover is arranged on the top opening of the smoke pot, and the seat is internally provided with a heating cavity for accommodating a heating element;
[0008] The cover and the seat are detachably connected and used for sealing the heating cavity;
[0009] The seat is provided with an air guide channel allowing external air to enter the smoke pot.
[0010] Preferably, the seat is provided with an extension ring in the radial direction, which abuts against the top of the smoke pot.
[0011] Preferably, the cover is provided with a first limiting part at one end thereof abutting against the seat.
[0012] Preferably, the seat or the cover is provided with a first connecting part, and the seat or the cover is provided with a first connecting part, and the first connecting part is connected to the first connecting part.
[0013] Preferably, the seat or the cover is provided with a first conductive channel allowing the conductive body of the heating element to pass through.
[0014] Preferably, the cover is provided with a heat dissipation fin for diffusing the heat of the heating element,
[0015] The heat dissipation fin is detachably connected to the cover.
[0016] Preferably, the cover is internally provided with a preheating cavity, and the preheating cavity is internally provided with a preheating heater;
[0017] The heat dissipation fin is attached to the preheating heater.
[0018] Preferably, the cover is provided with a heat-conducting top cover for sealing the preheating cavity and conducting the heat of the preheating heater;
[0019] The heat-conducting top cover is detachably connected to the cover, and the heat dissipation fin is detachably connected to the heat-conducting top cover.
[0020] Preferably, the cover or the heat-conducting top cover is provided with a second connecting part, and the cover or the heat-conducting top cover is provided with a second connecting part, and the second connecting part is connected to the second connecting part.
[0021] The heat-conducting top cover or the heat dissipation fin is provided with a third connecting part, and the heat-conducting top cover or the heat dissipation fin is provided with a third connecting part, and the third connecting part is connected to the third connecting part.
[0022] Preferably, the seat and / or the cover is provided with a second conductive channel allowing the conductive body of the preheating heater to pass through.
[0023] Preferably, the seat body is provided with a heat-conducting bottom cover for opening the heating cavity,
[0024] The heat-conducting bottom cover is detachably connected with the seat body or the cover body.
[0025] Preferably, the heat-conducting bottom cover or the seat body is provided with a fourth connecting piece, and the seat body or the cover body or the heat-conducting bottom cover is provided with a fourth connecting part, and the fourth connecting piece is connected with the fourth connecting part.
[0026] One end of the heat-conducting bottom cover towards the seat body is provided with a second limiting part, and the second limiting part is in abutment with the seat body.
[0027] The beneficial effects of the utility model are as follows: the utility model heats tobacco extract or tobacco in a smoke pot through a heating piece and a seat body, so that the heating piece is prevented from directly contacting the tobacco extract or tobacco. The seat body is provided with an air guide channel allowing external air to enter the smoke pot. The heating piece heats the seat body, so that the external air is heated in advance by the air guide channel before entering the smoke pot, the temperature in the heating cavity is reduced, and the continuous constant temperature heating of the tobacco extract is maintained, so that the taste of smoke and the overall experience of a smoker are improved. BRIEF DESCRIPTION OF DRAWINGS
[0028] Figure 1 It is a structural schematic diagram of the utility model.
[0029] Figure 2 It is a structural schematic diagram of the utility model in an exploded state.
[0030] Figure 3 It is a structural schematic diagram of the utility model in an exploded state.
[0031] Figure 4 It is a structural schematic diagram of the utility model in an exploded state.
[0032] Figure 5 It is a structural schematic diagram of the utility model in an exploded state.
[0033] Figure 6 It is a structural schematic diagram of the utility model in an exploded state.
[0034] Figure 7 It is a structural schematic diagram of the utility model in an exploded state.
[0035] The reference signs include:
[0036] 1, the seat body; 11, heating cavity; 12, air guide channel; 13, extension ring; 14, heat-conducting bottom cover; 141, second limiting part; 2, cover; 21, first limiting part; 22, preheating cavity; 23, preheating heater; 24, heat-conducting top cover; 25, heat sink; 100, heating element; 101, first connecting piece; 102, first connecting part; 103, first conductive channel; 104, conductive piece; 105, matching part; 106, second connecting piece; 107, second connecting part; 108, third connecting piece; 109, third connecting part; 110, second conductive channel; 111, fourth connecting piece; 112, fourth connecting part. DETAILED DESCRIPTION
[0037] The utility model is described in detail below in combination with the drawings.
[0038] As Figures 1 to 6 shown, the heat-conducting base of the electronic hookah includes a seat body 1 and a cover 2, and the seat body 1 is arranged on the top opening of the hookah pot to make the inside of the hookah pot closed.
[0039] The seat body 1 is internally provided with a heating cavity 11 for accommodating a heating element 100, so that the heating element 100 is fixed inside the seat body 1, and the heating element 100 heats the tobacco tar or tobacco in the hookah pot through the seat body 1, avoiding direct contact between the heating element 100 and the tobacco tar or tobacco.
[0040] The cover 2 is detachably connected with the seat body 1 and is used for sealing the heating cavity 11, so that the heating cavity 11 forms an independent sealed space, thereby reducing the adsorption of smoke on the heating element 100 and improving the heating effect and thermal efficiency. At the same time, safety is improved, avoiding direct contact with the heating element 100.
[0041] The detachable connection between the cover 2 and the seat body 1 facilitates the opening or closing of the heating cavity 11, improving the efficiency of assembling or replacing the heating cavity 11.
[0042] The seat body 1 is provided with an air guide channel 12 allowing external air to enter the hookah pot. The heating element 100 heats the seat body 1, so that the external air is preheated before entering the hookah pot by contacting the air guide channel 12, reducing the direct influence of external air on the temperature in the heating cavity 11, helping to maintain constant temperature heating of the tobacco tar and improving the taste of smoke and the overall experience of the smoker.
[0043] Specifically, the air guide channel 12 can be a straight pipe type round hole or a straight pipe type arc, and in other embodiments, it can also be set to other shapes according to actual needs.
[0044] In use, first place the heating element 100 into the heating chamber 11 inside the base 1. Then, detachably connect the cover 2 to the base 1 to seal the heating chamber 11 and prevent heat leakage.
[0045] When the electronic hookah is activated, the heating element 100 starts working, generating heat and transferring it to the tobacco paste or tobacco in the bowl through the base 1. Due to the presence of the heating chamber 11, a certain distance is maintained between the heating element 100 and the tobacco paste or tobacco, avoiding direct contact.
[0046] External air enters the tobacco bowl through air guide channels 12 that run through the base 1. These air guide channels 12 are carefully designed to ensure that the airflow is evenly distributed in the tobacco bowl and to preheat the external air through the air guide channels 12, so that the temperature inside the tobacco bowl is constant, thereby improving the efficiency and taste of tobacco paste or tobacco atomization.
[0047] When a user inhales through the smoking pipe, the smoke is filtered from the bowl and then enters the smoking pipe for the user to inhale. Thanks to the design of the heating chamber 11 and the air passage 12, the taste of the smoke and the smoking experience are significantly improved.
[0048] like Figure 1 and Figure 2 As shown, in another embodiment, the base 1 is provided with an extension ring 13 in the radial direction, and the extension ring 13 abuts against the top of the tobacco bowl.
[0049] The addition of the extension ring 13 significantly increases the contact area and friction between the base 1 and the soot bowl, thereby improving the stability of the connection. This helps ensure that the device remains stable during use and is less prone to loosening or falling off.
[0050] Through close contact, the extension ring 13 can effectively prevent the leakage of smoke, heat or other substances, improving the sealing performance of the device.
[0051] The presence of the extension ring 13 makes the connection between the base 1 and the soot bowl more stable, reducing the risk of damage due to long-term use or improper operation. It also simplifies the installation and removal of the extension ring from the soot bowl.
[0052] like Figure 3 As shown, in another embodiment, the cover 2 is provided with a first limiting part 21 at one end facing the seat 1, and the first limiting part 21 abuts against the seat 1.
[0053] The first limiting part 21 is provided so that the cover 2 abuts against the base 1 to limit the range of movement of the cover 2. The first limiting part 21 plays a limiting role and enhances the connection stability between the cover 2 and the base 1.
[0054] The first limiting part 21 designed reasonably can also provide a user-friendly operation experience. For example, it can serve as a guide or alignment mark when the user closes the cover 2, enabling the user to easily position the cover 2 in the correct position.
[0055] As shown in Figure 3 and Figure 6 , the seat body 1 or cover 2 of another embodiment is provided with a first connecting piece 101, and the seat body 1 or cover 2 is provided with a first connecting part 102, and the first connecting piece 101 is connected with the first connecting part 102.
[0056] The provision of the first connecting piece 101 and the first connecting part 102 enables the seat body 1 and the cover 2 to form a detachable connection. This design allows the user to easily open or close the device when needed, facilitating use and maintenance.
[0057] The first connecting piece 101 and the first connecting part 102 can adopt various forms of connecting structures, such as threaded connection, snap connection, magnetic attraction connection, etc. These different connection methods can be selected according to specific application scenarios and requirements to meet different use requirements.
[0058] Through reasonable design of the first connecting piece 101 and the first connecting part 102, the stability of the seat body 1 and the cover 2 in the connected state can be ensured. This stability is crucial to prevent the device from being accidentally opened or damaged during use.
[0059] In this embodiment, the cover 2 is provided with the first connecting piece 101, which is a screw, and the seat body 1 is provided with the first connecting part 102, which is a threaded hole column, and the screw is threadedly connected with the threaded hole column.
[0060] As shown in Figure 3 , Figure 4 and Figure 6 , the seat body 1 or cover 2 of another embodiment is provided with a first conductive passage 103 that allows the conductive body of the heating element 100 to pass through.
[0061] The first conductive passage 103 is provided to allow the conductive body of the heating element 100 to pass through, such as wires, cables, electrodes, etc., thereby achieving electrical connection between the heating element 100 and the power supply or other electrical components. This design enables the heating element 100 to receive electrical energy and convert it into heat energy for heating or insulation purposes.
[0062] By integrating the first conductive passage 103 in the seat body 1 or cover 2, the overall structure of the device can be simplified, reducing additional electrical connection components and wiring. This helps to reduce production costs, improve the reliability and maintainability of the device.
[0063] A well-designed first conductive channel 103 can provide additional safety protection, preventing damage to the conductor or electrical faults during use. For example, the first conductive channel 103 can be designed to have sufficient strength and insulation properties. Specifically, an insulating layer can be provided within the first conductive channel 103 to withstand certain mechanical stresses and electrical loads.
[0064] The number of first conductive channels 103 is at least one. When the number of first conductive channels 103 is one, the positive and negative conductors of the heating element 100 are connected to the outside through the first conductive channel 103.
[0065] When there are two first conductive channels 103, the positive and negative conductors of the heating element 100 are connected to the outside through the two first conductive channels 103 respectively.
[0066] The two first conductive channels 103 can be arranged side by side or spaced apart.
[0067] Preferably, if the base 1 is provided with a first conductive channel 103, the conductor of the heating element 100 is an electric wire, and the electric wire of the heating element 100 extends out of the base 1 through the first conductive channel 103.
[0068] If the cover 2 is provided with a first conductive channel 103, the conductor of the heating element 100 is an electrode, the first conductive channel 103 is provided with a conductive element 104, and the conductive element 104 is provided with a mating part 105 corresponding to the electrode of the heating element 100, and the electrode mating part 105 of the heating element 100 abuts against each other.
[0069] like Figure 4 As shown, in another embodiment, the cover 2 is provided with a heat sink 25 for dissipating heat from the heating element 100.
[0070] The heat sink 25 is detachably connected to the cover 2. This detachable connection is typically achieved using fasteners (such as screws, clips, etc.). In another embodiment, the heat sink 25 and the cover 2 can also be integrally formed to ensure a stable connection between them.
[0071] The heat sink 25 is typically made of a material with good thermal conductivity (such as metal, aluminum alloy, copper, or copper alloy), and its surface area is much larger than that of the heating element 100. When the heating element generates heat, the heat is transferred to the heat sink through thermal conduction, and then the heat sink dissipates the heat from its surface into the surrounding environment.
[0072] Specifically, the heat dissipation fin 25 is arranged at the upper portion of the air guide channel 12, and the heat dissipation fin 25 is provided with a heat dissipation gap through which external air passes, and the external air is heated after passing through the heat dissipation gap and enters the air guide channel 12, so that the external air is preheated before entering the air guide channel 12, thereby making the temperature of the external air entering the smoke pot more controllable, and ensuring the constant temperature inside the smoke pot.
[0073] The lid 2 of another embodiment is internally provided with a preheating cavity 22, and the preheating cavity 22 is internally provided with a preheating heater 23.
[0074] The heat dissipation fin 25 is attached to the preheating heater 23.
[0075] By arranging the preheating cavity 22 inside the lid 2 and providing the preheating heater 23, the heating element 100 or related components can be preheated before formal heating, thereby shortening the heating response time and improving the heating efficiency. The heat generated by the preheating heater 23 is not only used for preheating, but also further diffused to the surrounding environment through the heat dissipation fin 25.
[0076] As shown in Figures 5 to 7 , the lid 2 of another embodiment is provided with a heat-conducting top cover 24 for sealing the preheating cavity 22 and conducting the heat of the preheating heater 23.
[0077] The heat-conducting top cover 24 is detachably connected to the lid 2, and the heat dissipation fin 25 is detachably connected to the heat-conducting top cover 24.
[0078] The arrangement of the heat-conducting top cover 24 ensures the sealing of the preheating cavity 22, prevents heat leakage and external impurities from entering, and at the same time, the heat-conducting top cover can efficiently conduct the heat generated by the preheating heater 23, thereby improving the utilization rate of heat and the heating efficiency.
[0079] The heat-conducting top cover 24 and the heat dissipation fin 25 are both detachably connected to the lid 2, and such a modular design makes the entire device more flexible in structure, facilitating assembly, disassembly and maintenance.
[0080] As shown in Figures 5 to 7 , the lid 2 or the heat-conducting top cover 24 of another embodiment is provided with a second connecting piece 106, the lid 2 or the heat-conducting top cover 24 is provided with a second connecting portion 107, and the second connecting piece 106 is connected to the second connecting portion 107.
[0081] The heat-conducting top cover 24 or the heat dissipation fin 25 is provided with a third connecting piece 108, the heat-conducting top cover 24 or the heat dissipation fin 25 is provided with a third connecting portion 109, and the third connecting piece 108 is connected to the third connecting portion 109.
[0082] The connection of the second connecting piece 106 and the second connecting part 107, and the connection of the third connecting piece 108 and the third connecting part 109, are both for the purpose of modular design. This design makes it convenient to install or disassemble the heat-conducting top cover 24 and the heat dissipation fins 25 to or from the cover body 2.
[0083] Through the cooperation of the connecting piece and the connecting part, it can be ensured that the heat-conducting top cover 24 and the heat dissipation fins 25 have a stable structure after installation and are not easy to loosen or fall off. This helps to ensure the heat conduction and heat dissipation effect during heating.
[0084] The modular connection design makes it convenient to replace or disassemble the heat-conducting top cover 24 and the heat dissipation fins 25 when they are damaged or need to be cleaned, reducing maintenance costs and time.
[0085] The second connecting piece 106 and the second connecting part 107, and the third connecting piece 108 and the third connecting part 109, can adopt various forms of connection structures, such as threaded connection, buckle connection, magnetic attraction connection, etc. These different connection methods can be selected according to specific application scenarios and needs to meet different use requirements.
[0086] In this embodiment, the second connecting piece 106 and the second connecting part 107, and the third connecting piece 108 and the third connecting part 109, adopt the threaded connection method of bolts and threaded holes.
[0087] As shown in Figure 7 Another embodiment of the seat body 1 and / or the cover body 2 is provided with a second electrically conductive channel 110 that allows the electrically conductive body of the preheating heater 23 to pass through.
[0088] Specifically, the seat body 1 is provided with a second electrically conductive channel 110 that allows the electrically conductive body of the preheating heater 23 to pass through. In another embodiment, the seat body 1 and the cover body 2 are both provided with a second electrically conductive channel 110 that allows the electrically conductive body of the preheating heater 23 to pass through. In another embodiment, the cover body 2 is provided with a second electrically conductive channel 110 that allows the electrically conductive body of the preheating heater 23 to pass through.
[0089] By providing the second electrically conductive channel 110 on the seat body 1 and / or the cover body 2, the direct integration of the electrically conductive body of the preheating heater 23 is achieved. This design simplifies the overall structure, reduces additional connecting components and assembly steps, thereby reducing production costs and complexity.
[0090] The second electrically conductive channel 110 provides a dedicated channel for the electrically conductive body of the preheating heater 23, avoiding the exposure and random arrangement of the electrically conductive body inside the device. This reduces the risk of electrical short circuit and electric shock, improving the safety of the product.
[0091] The dedicated conductive channels ensure stable connection between the conductive body of the preheating heater 23 and the power source. This helps to reduce heating failures caused by poor or loose connections, improving the reliability and durability of the product.
[0092] When the preheating heater 23 needs to be repaired or replaced, the conductive body can be easily disconnected and reconnected through the second conductive channel 110. This reduces the difficulty of maintenance and improves repair efficiency.
[0093] The number of second conductive channels 110 is at least one. When the number of second conductive channels 110 is one, the positive and negative conductive bodies of the preheating heater 23 are connected to the outside through the second conductive channel 110.
[0094] When the number of first conductive channels 103 is two, the positive and negative conductive bodies of the preheating heater 23 are connected to the outside through the two first conductive channels 103 respectively.
[0095] The two first conductive channels 103 can be arranged side by side or spaced apart.
[0096] As shown in FIG. 1, the seat body 1 of another embodiment is provided with a heat-conducting bottom cover 14 for opening the heating cavity 11, Figures 5 to 7
[0097] The heat-conducting bottom cover 14 is detachably connected to the seat body 1 or the cover body 2.
[0098] The design of the heat-conducting bottom cover 14 allows users to easily open the heating cavity 11, thereby facilitating cleaning and maintenance of the interior. This prolongs the service life of the equipment and ensures the hygiene of the heating process.
[0099] The heat-conducting bottom cover 14 is usually made of high thermal conductivity material, which can effectively conduct heat from the heating element to the heating cavity 11. This design improves heating efficiency and ensures uniformity and stability of heating.
[0100] The detachable heat-conducting bottom cover 14 makes the repair process more convenient. When the heating element or other internal components fail, users can quickly open the bottom cover for necessary inspection and replacement, thereby reducing downtime and maintenance costs.
[0101] By replacing the heat-conducting bottom cover 14 made of different materials, users can adjust the heating characteristics and temperature distribution of the heating cavity 11. This design enables the equipment to adapt to different heating needs and application scenarios.
[0102] The design of the heat-conducting bottom cover 14 also considers safety. By ensuring a firm connection between the bottom cover and the seat body 1 or the cover body 2, it can prevent heat leakage and the risk of electric shock. In addition, the heat-conducting bottom cover 14 can also serve as an additional protective layer to prevent external objects from entering the heating cavity 11.
[0103] As Figures 4 to 6 shown, the heat-conducting bottom cover 14 or the seat body 1 of another embodiment is provided with a fourth connecting piece 111, and the seat body 1 or the cover body 2 or the heat-conducting bottom cover 14 is provided with a fourth connecting part 112, and the fourth connecting piece 111 is connected with the fourth connecting part 112.
[0104] The end of the heat-conducting bottom cover 14 towards the seat body 1 is provided with a second limiting part 141, and the second limiting part 141 is in contact with the seat body 1.
[0105] Through the connection of the fourth connecting piece 111 and the fourth connecting part 112, the heat-conducting bottom cover 14 can be conveniently installed on the seat body 1 or detached from the cover body 2. This modular design makes the replacement and maintenance of the heat-conducting bottom cover 14 more simple and fast, and reduces the maintenance cost.
[0106] The close connection of the fourth connecting piece 111 and the fourth connecting part 112 ensures the stable combination between the heat-conducting bottom cover 14 and the seat body 1 or the heat-conducting bottom cover 14 and the cover body 2, preventing loosening or falling off due to vibration or external force during use.
[0107] The setting of the second limiting part 141 enables the heat-conducting bottom cover 14 to accurately align with the corresponding position on the seat body 1 during installation, ensuring the correct assembly relationship between the heat-conducting bottom cover 14 and the seat body 1. This helps to improve the sealing performance and heat conduction efficiency of the heating cavity 11.
[0108] The contact of the second limiting part 141 with the seat body 1 not only plays a positioning role, but also increases the contact area between the heat-conducting bottom cover 14 and the seat body 1, thereby improving the overall stability and safety. During heating, this design helps to prevent heat leakage or electric shock risk caused by loosening or falling off of the heat-conducting bottom cover 14.
[0109] By changing the fourth connecting piece 111 and the fourth connecting part 112, various forms of connection structures can be adopted, such as threaded connection, buckle connection, magnetic attraction connection, etc. These different connection methods can be selected according to specific application scenarios and requirements to meet different use requirements.
[0110] In this embodiment, the fourth connecting piece 111 and the fourth connecting part 112 adopt the threaded connection mode of bolts and threaded holes as an example.
[0111] The above is only a preferred embodiment of the present application, and for those skilled in the art, according to the idea of the present application, the specific implementation and application range will be changed, and the content of the specification should not be understood as a limitation of the present application.
Claims
1. A thermally conductive base for an electronic shisha, characterized in that: The seat body (1) and the cover body (2), The seat body (1) is arranged on the top opening of the smoke pot, and a heating cavity (11) for accommodating a heating element (100) is arranged in the seat body (1). The cover body (2) is detachably connected with the seat body (1) and is used for sealing the heating cavity (11). The seat body (1) is provided with a gas guide channel (12) allowing external air to enter the smoke pot.
2. The thermally conductive base of an electronic hookah of claim 1, wherein: The seat body (1) is provided with an extension ring (13) in the radial direction, and the extension ring (13) abuts against the top of the smoke pot.
3. The thermally conductive base of an electronic hookah of claim 1, wherein: The cover body (2) is provided with a first limiting portion (21) at one end thereof facing the seat body (1), and the first limiting portion (21) abuts against the seat body (1).
4. The thermally conductive base of an electronic hookah of claim 1, wherein: The seat body (1) or the cover body (2) is provided with a first connecting member (101), and the seat body (1) or the cover body (2) is provided with a first connecting portion (102), and the first connecting member (101) is connected with the first connecting portion (102).
5. The thermally conductive base of an electronic hookah of claim 1, wherein: The seat body (1) or the cover body (2) is provided with a first conductive channel (103) allowing a conductive body of the heating element (100) to pass through.
6. The thermally conductive base of an electronic hookah of claim 1, wherein: The cover body (2) is provided with a heat dissipation fin (25) for diffusing heat of the heating element (100), The heat dissipation fin (25) is detachably connected with the cover body (2).
7. A thermally conductive base for an electronic shisha according to claim 6, wherein: The cover body (2) is provided with a preheating cavity (22) inside, and a preheating heater (23) is arranged in the preheating cavity (22). The heat dissipation fin (25) is attached to the preheating heater (23).
8. A thermally conductive base for an electronic shisha according to claim 7, wherein: The cover body (2) is provided with a heat-conducting top cover (24) for sealing the preheating cavity (22) and conducting heat of the preheating heater (23). The heat-conducting top cover (24) is detachably connected with the cover body (2), and the heat dissipation fin (25) is detachably connected with the heat-conducting top cover (24).
9. A thermally conductive base for an electronic shisha according to claim 8, wherein: The cover body (2) or the heat-conducting top cover (24) is provided with a second connecting member (106), and the cover body (2) or the heat-conducting top cover (24) is provided with a second connecting portion (107), and the second connecting member (106) is connected with the second connecting portion (107). The heat-conducting top cover (24) or the heat dissipation fin (25) is provided with a third connecting member (108), and the heat-conducting top cover (24) or the heat dissipation fin (25) is provided with a third connecting portion (109), and the third connecting member (108) is connected with the third connecting portion (109).
10. The thermally conductive base of an electronic hookah of claim 7, wherein: The seat body (1) and / or the cover body (2) is provided with a second conductive channel (110) allowing a conductive body of the preheating heater (23) to pass through.
11. The thermally conductive base of an electronic hookah of claim 1, wherein: The seat body (1) is provided with a heat-conducting bottom cover (14) for opening the heating cavity (11), The heat-conducting bottom cover (14) is detachably connected with the seat body (1) or the cover body (2).
12. A thermally conductive base for an electronic shisha according to claim 11, wherein: The heat-conducting bottom cover (14) or the seat body (1) is provided with a fourth connecting member (111), and the seat body (1) or the cover body (2) or the heat-conducting bottom cover (14) is provided with a fourth connecting portion (112), and the fourth connecting member (111) is connected with the fourth connecting portion (112). The heat-conducting bottom cover (14) is provided with a second limiting part (141) at one end thereof facing the seat body (1), and the second limiting part (141) is in abutment with the seat body (1).