Novel multi-core ceramic atomizing core
Through the design of multi-core ceramic atomizer core, the use of ceramic skeleton powder, alumina ceramics and silicon carbide ceramic materials, combined with the diaphragm and electric wire heating structure, the oil conductivity, structural strength and atomization uniformity problems of the ceramic atomizer core are solved, and the atomization efficiency and service life are improved.
Patent Information
- Application Number
- CN202422479420.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-14
- Publication Date
- 2025-09-05
- Estimated Expiration
- 2034-10-14
AI Technical Summary
Existing ceramic atomizer cores are difficult to simultaneously take into account oil conductivity, structural strength and atomization uniformity, resulting in insufficient atomization or leakage of atomized substances.
It adopts a multi-core structure design, including a ceramic seat, a core body, a first core, a second core and a third core, which are made of ceramic skeleton powder, alumina ceramics and silicon carbide ceramics respectively. Combined with the heating structure of the diaphragm, membrane layer and electric wire, uniform heating and atomization are achieved.
The structural strength and oil-conducting capacity of the atomizer core are improved to ensure uniform atomization of the e-liquid, extend product life, reduce maintenance costs, and provide a stable and consistent smoking experience.
Smart Images

Figure CN223298579U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of ceramic atomizer cores, in particular to a novel multi-core ceramic atomizer core. Background Art
[0002] The atomizer cores of electronic cigarettes currently used on the market mostly use ceramic atomizer chips made of uniform material. However, for a single ceramic atomizer core made of uniform material, these three functional requirements are mutually exclusive. The ceramic structure with strong oil conductivity has low structural strength, and increasing the structural strength will reduce the oil conductivity of the ceramic. Effectively atomizing the smoke oil requires the ceramic matrix to have high thermal conductivity. However, for the oil conduction function and structural support function, a low thermal conductivity ceramic matrix is required to ensure the stability of the oil conduction when the atomization temperature rises. Therefore, it is difficult for a ceramic atomizer chip made of uniform material to take into account the above three functions at the same time, resulting in poor overall performance of the ceramic atomizer cores in the existing technology, such as uneven atomization or leakage of atomized material due to insufficient atomization. Utility Model Content
[0003] The purpose of the present invention is to solve at least one of the above technical deficiencies.
[0004] To this end, one purpose of the present invention is to propose a novel multi-core ceramic atomizing core to solve the problems mentioned in the background technology and overcome the shortcomings of the existing technology.
[0005] To achieve the above objectives, an embodiment of one aspect of the present invention provides a novel multi-core ceramic atomizer core, comprising a ceramic base and a core body. The top of the ceramic base is fixedly connected to the core body, and the core body is filled with a first core, a second core, and a third core.
[0006] The top surfaces of the first core, the second core, and the third core are flush with the top surface of the core body, the top surfaces of the first core, the second core, and the third core are all fixedly connected to membranes, the membrane of the first core is separated from the middle, and both parts of the membrane on the top surface of the first core are fixedly connected to electric wires;
[0007] A membrane layer is fixedly connected between adjacent membrane sheets, and the membrane layer is fixedly connected to the top surface of the core body and the top surfaces of the first core, the second core and the third core;
[0008] Extension pieces are fixedly connected to both sides of the film layer, and the extension pieces are fixedly connected to the top surface of the core body.
[0009] Preferably, any of the above solutions is that the ceramic seat and the core body are both ceramic bases, and the core body is provided with sockets that are compatible with the first core, the second core, and the third core.
[0010] Adopting the above technical solution: the device is divided into two parts. The first part is a ceramic structure, which is composed of a ceramic base, a core body, and an added first core, a second core and a third core.
[0011] The second part, the heating structure, consists of a diaphragm, a membrane layer, an extension sheet, and an electric wire.
[0012] Preferably, any of the above solutions is that the first core, the second core and the third core are arranged in a circular array about the central axis of the core body.
[0013] Adopting the above technical solution: This device adds a first core, a second core, and a third core in addition to the ceramic core, forming a multi-core ceramic atomizer core structure. The first core, the second core, and the third core are embedded or inserted into the socket of the core body. For the first core, the material of the first core is ceramic skeleton powder, which reduces the size of the gap and improves the adsorption and extraction efficiency of the smoke oil. The second core is made of alumina ceramic, which has high structural strength and can effectively improve the inherent strength of the core body. The material of the third core is silicon carbide ceramic, which has strong oil conductivity and can effectively promote the flow and distribution of smoke oil in the core body, ensuring that each part can fully participate in the atomization reaction, further improving the uniformity and efficiency of atomization. Through the design of these cores, the structural strength of the ceramic atomizer core, the adsorption and extraction efficiency of smoke oil, and the oil conductivity capacity are comprehensively improved; these advantages not only improve the atomization efficiency, but also extend the service life of the product and reduce maintenance costs.
[0014] Preferably, any of the above solutions is that the material of the first core is ceramic skeleton powder, the material of the second core is alumina ceramic, and the material of the third core is silicon carbide ceramic.
[0015] The above technical solution is adopted: when the electric wire is energized, the diaphragm, the membrane layer, and the extension sheet are heated. The cooperation of the extension sheet, the membrane core, and the diaphragm can evenly heat the core body, the first core, the second core, and the third core. The heat is evenly distributed and dispersed, thereby better and evenly heating the atomizing liquid in the ceramic atomizing core, i.e., the core body, the first core, the second core, and the third core, to a vaporized state, thereby forming sufficient mist.
[0016] Uniform heating not only helps the e-liquid to be quickly and completely converted into mist, but also reduces the difference in smoke taste caused by uneven temperature, bringing users a more stable and consistent smoking experience.
[0017] Preferably, any of the above schemes is that the membrane is adsorbed on the top surfaces of the first core, the second core and the third core, the membrane layer is adsorbed on the top surfaces of the core body and the first core, the second core and the third core, and the membrane layer is distributed in a triangular shape as a whole.
[0018] Preferably, any of the above solutions is that the extension piece serves as a fork of the film layer, and the extension piece is adsorbed on the top surface of the core.
[0019] Compared with the prior art, the advantages and beneficial effects of the present invention are as follows:
[0020] 1. This new multi-core ceramic atomizer core is constructed by combining a core body, a first core, a second core, a third core, a diaphragm, an electric wire, a membrane layer, and an extension sheet. In addition to the ceramic core body, the device adds a first core, a second core, and a third core, creating a multi-core ceramic atomizer core structure. The first, second, and third cores are embedded or inserted into the socket of the core body. The first core is made of ceramic skeleton powder, which reduces the size of the gaps and improves the adsorption and extraction efficiency of the smoke oil. The second core is made of alumina ceramic, which has high structural strength and can effectively improve the inherent strength of the core body. The third core is made of silicon carbide ceramic, which has strong oil conductivity and can effectively promote the flow and distribution of smoke oil within the core body, ensuring that every part can fully participate in the atomization reaction, further improving the uniformity and efficiency of atomization.
[0021] Through the design of these cores, the structural strength of the ceramic atomizer core, the adsorption and desorption efficiency of the e-liquid, and the oil-conducting capacity are comprehensively improved; these advantages not only improve the atomization efficiency, but also extend the service life of the product and reduce maintenance costs.
[0022] 2. This new multi-core ceramic atomizer core heats the diaphragm, membrane layer, and extension piece when the wire is energized. The extension piece, membrane core, and diaphragm work together to evenly heat the core body, first core, second core, and third core. Heat is evenly distributed and dispersed, effectively and evenly heating the atomizer liquid in the ceramic atomizer core—the core body, first core, second core, and third core—to a vaporized state, forming ample mist. This uniform heating not only facilitates the rapid and complete conversion of e-liquid into mist, but also reduces variations in vapor taste that can result from uneven temperatures, providing users with a more stable and consistent vaping experience.
[0023] Additional aspects and advantages of the present invention will be given in part in the following description and in part will become apparent from the following description or learned through practice of the present invention. BRIEF DESCRIPTION OF THE DRAWINGS
[0024] The above and / or additional aspects and advantages of the present invention will become apparent and readily understood from the description of the embodiments in conjunction with the following drawings, in which:
[0025] Figure 1 This is a schematic structural diagram of the utility model from the first perspective;
[0026] Figure 2 This is a schematic structural diagram of the utility model from a second viewing angle;
[0027] Figure 3 This is a schematic structural diagram of the utility model from a third perspective;
[0028] Figure 4 It is a schematic diagram of the top structure of the utility model.
[0029] In the figure: 1-ceramic seat, 2-core body, 3-first core, 4-second core, 5-third core, 6-diaphragm, 7-electric wire, 8-membrane layer, 9-extension sheet. DETAILED DESCRIPTION
[0030] The following describes in detail embodiments of the present invention, examples of which are shown in the accompanying drawings, wherein the same or similar reference numerals throughout represent the same or similar elements or elements having the same or similar functions. The embodiments described below with reference to the accompanying drawings are exemplary and are intended to explain the present invention, and should not be construed as limiting the present invention.
[0031] In this utility model, unless otherwise specified or limited, the terms "installed," "connected," "connect," "fixed," etc. should be understood in a broad sense. For example, they can refer to fixed connection, detachable connection, or integral connection; mechanical connection or electrical connection; direct connection or indirect connection through an intermediate medium; and internal communication between two components. Those skilled in the art will understand the specific meanings of the above terms in this utility model based on specific circumstances.
[0032] like Figure 1-4 As shown, the novel multi-core ceramic atomizer core includes a ceramic base 1 and a core body 2. The top of the ceramic base 1 is fixedly connected to the core body 2, and the core body 2 is filled with a first core 3, a second core 4 and a third core 5;
[0033] The top surfaces of the first core 3, the second core 4, and the third core 5 are flush with the top surface of the core body 2. The top surfaces of the first core 3, the second core 4, and the third core 5 are all fixedly connected with a diaphragm 6. The diaphragm 6 of the first core 3 is separated from the middle. The two parts of the diaphragm 6 on the top surface of the first core 3 are fixedly connected with an electric wire 7.
[0034] A membrane layer 8 is fixedly connected between adjacent membrane sheets 6, and the membrane layer 8 is fixedly connected to the top surface of the core body 2 and the top surfaces of the first core 3, the second core 4 and the third core 5;
[0035] Extension pieces 9 are fixedly connected to both sides of the film layer 8 , and the extension pieces 9 are fixedly connected to the top surface of the core 2 .
[0036] Example 1: Ceramic base 1 and core 2 are both ceramic substrates, with core 2 provided with sockets compatible with first core 3, second core 4, and third core 5. This device is divided into two parts. The first part, the ceramic structure, consists of ceramic base 1, core 2, and the additional first core 3, second core 4, and third core 5.
[0037] The second part, the heating structure, consists of a diaphragm 6, a membrane layer 8, an extension sheet 9, and an electric wire 7.
[0038] Example 2: A circular array of first, second, and third cores 3, 4, and 5 about the central axis of the core 2. This device incorporates a first, second, and third cores 3, 4, and 5 in addition to the ceramic core 2, creating a multi-core ceramic atomizer core structure. These cores are embedded or inserted into the sockets of the core 2. The first core 3 is constructed from ceramic skeleton powder, which reduces voids and improves the efficiency of liquid adsorption and extraction. The second core 4 is made of alumina ceramic, offering high structural strength and effectively enhancing the inherent strength of the core 2. The third core 5 is made of silicon carbide ceramic, offering strong oil conductivity and effectively promoting the flow and distribution of liquid within the core, ensuring that every component fully participates in the atomization reaction, further improving atomization uniformity and efficiency. The first core 3 is constructed from ceramic skeleton powder, the second core 4 is constructed from alumina ceramic, and the third core 5 is constructed from silicon carbide ceramic. Membrane sheet 6 is attached to the top surfaces of first core 3, second core 4, and third core 5. Membrane layer 8 is attached to the top surfaces of core body 2 and the top surfaces of first core 3, second core 4, and third core 5. Membrane layer 8 is distributed in a triangular shape. Extension sheet 9 serves as a fork of membrane layer 8 and is attached to the top surface of core body 2.
[0039] The working principle of this utility model is as follows:
[0040] This device incorporates a first core 3, a second core 4, and a third core 5 in addition to the ceramic core 2, creating a multi-core ceramic atomizer core structure. These cores are embedded or inserted into the sockets of the core 2. The first core 3 is constructed from ceramic skeleton powder, which reduces voids and improves the efficiency of oil adsorption and extraction. The second core 4, made from alumina ceramic, boasts high structural strength and effectively enhances the inherent strength of the core 2. The third core 5, constructed from silicon carbide ceramic, exhibits strong oil conductivity and effectively promotes the flow and distribution of oil within the core, ensuring that every component fully participates in the atomization reaction, further enhancing the uniformity and efficiency of atomization.
[0041] When the electric wire 7 is energized, the diaphragm 6, the membrane layer 8, and the extension piece 9 are heated. The cooperation of the extension piece 9, the membrane layer 8, and the diaphragm 6 can evenly heat the core body 2, the first core 3, the second core 4, and the third core 5. The heat is evenly distributed and dispersed, thereby better and evenly heating the atomized liquid in the ceramic atomization core, i.e., the core body 2, the first core 3, the second core 4, and the third core 5, to a vaporized state, forming sufficient mist.
[0042] Compared with the prior art, the present invention has the following beneficial effects:
[0043] 1. This novel multi-core ceramic atomizer core is constructed by combining a core body 2, a first core 3, a second core 4, and a third core 5, a diaphragm 6, an electric wire 7, a membrane layer 8, and an extension piece 9. In addition to the ceramic core body 2, the device adds the first core 3, the second core 4, and the third core 5, creating a multi-core ceramic atomizer core structure. The first core 3, the second core 4, and the third core 5 are embedded or inserted into the socket of the core body 2. The first core 3 is made of ceramic skeleton powder, which reduces the size of the gaps and improves the adsorption and extraction efficiency of the smoke oil. The second core 4 is made of alumina ceramic with high structural strength, which can effectively improve the inherent strength of the core body 2. The third core 5 is made of silicon carbide ceramic with strong oil conductivity, which can effectively promote the flow and distribution of smoke oil within the core, ensuring that every part can fully participate in the atomization reaction, further improving the uniformity and efficiency of atomization. Through the design of these cores, the structural strength of the ceramic atomizer core, the adsorption and desorption efficiency of the e-liquid, and the oil-conducting capacity are comprehensively improved; these advantages not only improve the atomization efficiency, but also extend the service life of the product and reduce maintenance costs.
[0044] 2. When the wire 7 of this new multi-core ceramic atomizer core is energized, the diaphragm 6, membrane layer 8, and extension piece 9 heat up. The extension piece 9, membrane layer 8, and diaphragm 6 work together to evenly heat the core body 2, first core 3, second core 4, and third core 5. Heat is evenly distributed and dispersed, effectively and evenly heating the atomized liquid in the ceramic atomizer core (i.e., the core body 2, first core 3, second core 4, and third core 5) to a vaporized state, forming a sufficient amount of mist. This uniform heating not only facilitates the rapid and complete conversion of the e-liquid into mist, but also reduces the variation in smoke taste that can result from uneven temperatures, providing users with a more stable and consistent smoking experience.
Claims
1. A new type of multi-core ceramic atomizer core, characterized in that: It comprises a ceramic seat (1) and a core body (2), wherein the top of the ceramic seat (1) is fixedly connected to the core body (2), and the core body (2) is filled with a first core (3), a second core (4) and a third core (5); The top surfaces of the first core (3), the second core (4) and the third core (5) are flush with the top surface of the core body (2); the top surfaces of the first core (3), the second core (4) and the third core (5) are all fixedly connected with a diaphragm (6); the diaphragm (6) of the first core (3) is separated from the middle; and electric wires (7) are fixedly connected to both parts of the diaphragm (6) on the top surface of the first core (3); A membrane layer (8) is fixedly connected between adjacent membrane sheets (6), and the membrane layer (8) is fixedly connected to the top surface of the core body (2) and the top surfaces of the first core (3), the second core (4) and the third core (5); Extension pieces (9) are fixedly connected to both sides of the film layer (8), and the extension pieces (9) are fixedly connected to the top surface of the core body (2).
2. The novel multi-core ceramic atomizer core according to claim 1, characterized in that: The ceramic seat (1) and the core body (2) are both ceramic bases, and the core body (2) is provided with sockets that are compatible with the first core (3), the second core (4), and the third core (5).
3. The novel multi-core ceramic atomizer core according to claim 2, characterized in that: The first core (3), the second core (4), and the third core (5) are arranged in a circular array about the central axis of the core body (2).
4. The novel multi-core ceramic atomizer core according to claim 3, characterized in that: The material of the first core (3) is ceramic skeleton powder, the material of the second core (4) is alumina ceramic, and the material of the third core (5) is silicon carbide ceramic.
5. The novel multi-core ceramic atomizer core according to claim 4, characterized in that: The membrane (6) is adsorbed on the top surfaces of the first core (3), the second core (4) and the third core (5); the membrane layer (8) is adsorbed on the top surface of the core body (2) and the top surfaces of the first core (3), the second core (4) and the third core (5); and the membrane layer (8) is distributed in a triangular shape as a whole.
6. The novel multi-core ceramic atomizer core according to claim 5, characterized in that: The extension piece (9) serves as a fork of the film layer (8), and the extension piece (9) is adsorbed on the top surface of the core (2).