Efficient atomization double-layer heating net

By using a vertical structure with a double-layer heating mesh and a nickel-chromium alloy material design, the problems of low heating surface and poor flexibility of the heating component are solved, achieving efficient atomization and convenient replacement, thus improving the performance of electronic atomizers.

CN223860215UActive Publication Date: 2026-02-03SHENZHEN JINGDA TECH CO LTD
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Patent Information

Application Number
CN202423262558.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-30
Publication Date
2026-02-03
Estimated Expiration
2034-12-30

AI Technical Summary

Technical Problem

Existing heating components have a low heating surface due to their mesh-like structure, resulting in poor heating performance, poor flexibility, and limited adaptability.

Method used

It adopts a double-layer heating mesh structure. The first and second heating meshes are set vertically and are made of nickel-chromium alloy material. They are arranged in a honeycomb pattern and can be easily replaced by a limiting mechanism of locking blocks and springs.

Benefits of technology

It improves heating efficiency and adaptability, facilitates replacement, and ensures both smoking effect and ease of use.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223860215U_ABST
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Abstract

The utility model discloses an efficient atomization double-layer heating net which comprises a first connecting plate, and the bottom of the first connecting plate is connected with a first wire harness. The heating device is characterized in that a first heating net and a second heating net are attached to the right end of the first connecting plate, the right end of the first heating net and the right end of the second heating net are attached to the left side of the second connecting plate, and the bottom of the second connecting plate is connected with a second wire harness; the first wire harness and the second wire harness are connected with the positive electrode and the negative electrode of the electronic atomizer respectively, and the first connecting plate, the first heating net, the second heating net and the second connecting plate are all arranged in the electronic atomizer. According to the efficient atomization double-layer heating net, the first heating net body and the second heating net body are installed, the first heating net body and the second heating net body are arranged in an overlapped mode, the heating efficiency can be improved through the first heating net body and the second heating net body, and then liquid can be heated through the first heating net body and the second heating net body; and therefore, the liquid can be conveniently atomized.
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Description

Technical Field

[0001] This utility model relates to the field of heating mesh technology, specifically a high-efficiency atomizing double-layer heating mesh. Background Technology

[0002] The heating element is the core heating component of an e-cigarette, responsible for converting electrical energy into heat energy to heat and atomize e-liquid or related liquids, producing vapor or smoke for the user to inhale. This is the most basic functional requirement of an e-cigarette and the most direct function of the heating element.

[0003] Existing electronic atomizer heating grids require time to heat up when heating liquids, resulting in lower initial temperatures and poor atomization, thus leading to unsatisfactory inhalation.

[0004] To address the aforementioned deficiencies, the heating component of the electronic cigarette atomizer, the electronic cigarette atomizer, and the electronic cigarette disclosed in CN207505931U are independent of each other through the heating component and the oil guiding component in the electronic cigarette atomizer. The individual differences of the heating component are small, and it can be replaced independently. The heating component has a simple structure, is easy to assemble, has low processing and manufacturing difficulty, can be mass-produced, has high processing efficiency, good heating effect, low cost, and is economical and environmentally friendly.

[0005] In actual use of the above-mentioned device, although the heating component has a good heating effect, its mesh-like arrangement results in a low heating surface, which in turn leads to a poor heating effect. Furthermore, the heating component has poor flexibility, resulting in low adaptability.

[0006] Therefore, we proposed a highly efficient atomizing double-layer heating mesh that can effectively solve the above problems. Utility Model Content

[0007] The purpose of this invention is to provide a highly efficient atomizing double-layer heating mesh to solve the problems mentioned in the background art, such as the low heating surface of current heating components on the market due to their mesh-like structure, resulting in poor heating effect, and poor flexibility of the heating components, leading to low adaptability.

[0008] To achieve the above objectives, this utility model provides the following technical solution: a high-efficiency atomizing double-layer heating mesh, including a first connecting plate, the bottom of which is connected to a first wire harness;

[0009] Its features are:

[0010] The right end of the first connecting plate is attached to a first heating mesh and a second heating mesh, and the right ends of the first heating mesh and the second heating mesh are attached to the left side of the second connecting plate. The bottom of the second connecting plate is connected to a second wire harness. The first wire harness and the second wire harness are respectively connected to the positive and negative terminals of the electronic atomizer. The first connecting plate, the first heating mesh, the second heating mesh and the second connecting plate are all located inside the electronic atomizer.

[0011] Preferably, the first heating mesh and the second heating mesh are arranged vertically, and the first heating mesh and the second heating mesh are made of nickel-chromium alloy material.

[0012] Preferably, the first heating mesh and the second heating mesh are arranged in a honeycomb pattern, and there is a gap between the first heating mesh and the second heating mesh.

[0013] Preferably, both the first connecting plate and the second connecting plate are slidably connected with locking blocks, and there are two sets of locking blocks, which are respectively located at the upper and lower ends of the first connecting plate and the second connecting plate.

[0014] Preferably, the inner side of the inner end of the card block is arc-shaped, and the outer end of the card block extends out of the interior of the first connecting plate and the second connecting plate to form a sliding mechanism.

[0015] Preferably, the inner end of the card block extends into the inside of the card slot to form a locking mechanism, and the card slot is opened on the outside of the first heating mesh and the second heating mesh.

[0016] Preferably, the outer end of the card block is connected to a spring, and the spring is respectively disposed inside the first connecting plate and the second connecting plate to form a limiting mechanism.

[0017] Compared with the prior art, the beneficial effects of this utility model are: the high-efficiency atomizing double-layer heating mesh has a high heating effect and is easy to replace. By setting the first heating mesh and the second heating mesh, the heating efficiency of the first heating mesh and the second heating mesh can be improved. Furthermore, the movement of the locking block can facilitate the replacement of the first heating mesh and the second heating mesh, thereby improving the convenience of use. The specific details are as follows:

[0018] (1) A first heating grid and a second heating grid are provided. By superimposing the first heating grid and the second heating grid, the heating efficiency of the first heating grid and the second heating grid can be improved. The liquid can be heated by the first heating grid and the second heating grid, which facilitates the atomization of the liquid.

[0019] (2) A locking block is provided. By moving the locking block, the locking block can be separated from the first heating grid and the second heating grid, so that the first heating grid and the second heating grid can be easily replaced.

[0020] (3) The first heating mesh and the second heating mesh are set through a vertical structure, and the first heating mesh and the second heating mesh are made of nickel-chromium alloy material, which makes the first heating mesh and the second heating mesh have efficient and stable heating properties;

[0021] (4) A spring is provided, and the spring is connected to the outer end of the block. The spring is respectively set inside the first connecting plate and the second connecting plate to form a limiting mechanism, so that the spring can limit the block, thereby improving the stability of the block.

[0022] (5) The first heating mesh and the second heating mesh are arranged in a honeycomb shape, and there is a gap between the first heating mesh and the second heating mesh, so that the first heating mesh and the second heating mesh can be attached to the tubular object, thereby improving adaptability. Attached Figure Description

[0023] Figure 1 This is a front view structural diagram of the present invention;

[0024] Figure 2 This is a side view of the structure of this utility model;

[0025] Figure 3 This is a front view schematic diagram of the second heating mesh structure of this utility model;

[0026] Figure 4 This is an exploded structural diagram of the present invention;

[0027] Figure 5 This is a front view structural diagram of the card block of this utility model;

[0028] Figure 6 This is a front view schematic diagram of the spring structure of this utility model.

[0029] In the diagram: 1. First connecting plate; 2. First wire harness; 3. First heating mesh; 301. Second heating mesh; 4. Second connecting plate; 5. Second wire harness; 6. Locking block; 7. Locking slot; 8. Spring. Detailed Implementation

[0030] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0031] Example 1: This utility model solves the problems of existing heating components, which, due to their mesh-like arrangement, result in a low heating surface and thus poor heating effect, and also have poor flexibility, leading to low adaptability. By using the first heating mesh 3 and the second heating mesh 301, the efficiency of liquid heating can be improved. The following is disclosed:

[0032] A first connecting plate 1 has a first wiring harness 2 connected to its bottom. A first heating mesh 3 and a second heating mesh 301 are attached to the right end of the first connecting plate 1, and the right ends of the first heating mesh 3 and the second heating mesh 301 are attached to the left side of a second connecting plate 4. A second wiring harness 5 is connected to the bottom of the second connecting plate 4. The first wiring harness 2 and the second wiring harness 5 are respectively connected to the positive and negative terminals of the electronic atomizer. The first connecting plate 1, the first heating mesh 3, the second heating mesh 301, and the second connecting plate 4 are all located inside the electronic atomizer. The first heating mesh 3 and the second heating mesh 301 are arranged vertically and are made of nickel-chromium alloy.

[0033] refer to Figures 1 to 4 The first wiring harness 2 and the second wiring harness 5 are connected to the positive and negative terminals of the electronic atomizer. The electronic atomizer can then supply power to the first wiring harness 2 and the second wiring harness 5, allowing current to flow through the first connecting plate 1 and the second connecting plate 4 to power the first heating mesh 3 and the second heating mesh 301. This allows the first heating mesh 3 and the second heating mesh 301 to be heated by the current, thus heating the liquid inside the electronic atomizer. This facilitates the atomization of the liquid through the electronic atomizer, making it easier for the user to inhale and ensuring a good taste. The first heating mesh 3 and the second heating mesh 301 can efficiently heat the liquid, thereby improving the efficiency of use.

[0034] Example 2: This utility model solves the problem of poor applicability of existing heating nets. The first heating net 3 and the second heating net 301 can improve adaptability. The following is disclosed:

[0035] The first heating mesh 3 and the second heating mesh 301 are arranged in a honeycomb pattern, and there is a gap between the first heating mesh 3 and the second heating mesh 301.

[0036] refer to Figures 1 to 6 Furthermore, the first heating mesh 3 and the second heating mesh 301 can be bent, thereby allowing the first heating mesh 3 and the second heating mesh 301 to fit onto pipes of different shapes, thus enabling the first heating mesh 3 and the second heating mesh 301 to adapt to different needs and thereby improving adaptability.

[0037] Example 3: This utility model solves the problem of inconvenience in replacing damaged heating elements by using the locking block 6, which improves the ease of replacement. The following is disclosed:

[0038] Both the first connecting plate 1 and the second connecting plate 4 are slidably connected to a locking block 6, and there are two sets of locking blocks 6. The two sets of locking blocks 6 are respectively located at the upper and lower ends of the first connecting plate 1 and the second connecting plate 4. The inner side of the inner end of the locking block 6 is arc-shaped, and the outer end of the locking block 6 extends out of the interior of the first connecting plate 1 and the second connecting plate 4 to form a sliding mechanism. The inner end of the locking block 6 extends into the interior of the locking groove 7 to form a locking mechanism. The locking groove 7 is opened on the outer side of the first heating mesh 3 and the second heating mesh 301. The outer end of the locking block 6 is connected to a spring 8, and the spring 8 is respectively located inside the first connecting plate 1 and the second connecting plate 4 to form a limiting mechanism.

[0039] refer to Figures 1 to 6 When the first heating mesh 3 or the second heating mesh 301 is damaged, pulling the locking block 6 will cause it to move into the first connecting plate 1 and the second connecting plate 4. This movement will disengage the locking block 6 from the locking groove 7, and the movement of the locking block 6 will compress the spring 8, causing the first connecting plate 1 and the second connecting plate 4 to detach from the first heating mesh 3 or the second heating mesh 301. This allows the damaged first heating mesh 3 or the second heating mesh 301 to be disassembled. After replacing the first heating mesh 3 or the second heating mesh 301, the above operation is reversed. The spring 8 will then drive the locking groove 7 into the locking block 6, allowing the first heating mesh 3 and the second heating mesh 301 to be quickly fixed to the first connecting plate 1 and the second connecting plate 4, thereby improving the ease of use.

[0040] Working principle: When using this high-efficiency atomizing double-layer heating mesh, firstly, refer to... Figures 1 to 4 The first wiring harness 2 and the second wiring harness 5 are connected to the positive and negative terminals of the electronic atomizer. The electronic atomizer can then supply power to the first wiring harness 2 and the second wiring harness 5, so that the first heating grid 3 and the second heating grid 301 can be heated by the current. This facilitates the atomization of the liquid through the electronic atomizer. The first heating grid 3 and the second heating grid 301 can heat the liquid efficiently, thereby improving the efficiency of use.

[0041] refer to Figures 1 to 6 Furthermore, the first heating mesh 3 and the second heating mesh 301 can be bent, thereby enabling the first heating mesh 3 and the second heating mesh 301 to fit onto pipes of different shapes, thus improving adaptability.

[0042] refer to Figures 1 to 6When the first heating mesh 3 or the second heating mesh 301 is damaged, by pulling the locking block 6, the locking block 6 will move into the interior of the first connecting plate 1 and the second connecting plate 4, thereby allowing the damaged first heating mesh 3 or the second heating mesh 301 to be disassembled. After replacing the first heating mesh 3 or the second heating mesh 301, the above operation is reversed, and then the spring 8 can drive the locking groove 7 to extend into the interior of the locking block 6, thereby allowing the first heating mesh 3 and the second heating mesh 301 to be quickly fixed on the first connecting plate 1 and the second connecting plate 4, thus improving the convenience of use.

[0043] The contents not described in detail in this specification are existing technologies known to those skilled in the art.

[0044] Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.

Claims

1. A high-efficiency atomizing double-layer heating mesh, comprising a first connecting plate (1), wherein a first wire harness (2) is connected to the bottom of the first connecting plate (1); Its features are: The right end of the first connecting plate (1) is attached to the first heating mesh (3) and the second heating mesh (301), and the right ends of the first heating mesh (3) and the second heating mesh (301) are attached to the left side of the second connecting plate (4). The bottom of the second connecting plate (4) is connected to the second wire harness (5). The first wire harness (2) and the second wire harness (5) are respectively connected to the positive and negative poles of the electronic atomizer. The first connecting plate (1), the first heating mesh (3), the second heating mesh (301) and the second connecting plate (4) are all located inside the electronic atomizer.

2. The high-efficiency atomizing double-layer heating mesh according to claim 1, characterized in that: The first heating mesh (3) and the second heating mesh (301) are arranged vertically, and the first heating mesh (3) and the second heating mesh (301) are made of nickel-chromium alloy material.

3. The high-efficiency atomizing double-layer heating mesh according to claim 1, characterized in that: The first heating mesh (3) and the second heating mesh (301) are arranged in a honeycomb pattern, and there is a gap between the first heating mesh (3) and the second heating mesh (301).

4. The high-efficiency atomizing double-layer heating mesh according to claim 1, characterized in that: Both the first connecting plate (1) and the second connecting plate (4) are slidably connected with locking blocks (6), and there are two sets of locking blocks (6). The two sets of locking blocks (6) are respectively located at the upper and lower ends of the first connecting plate (1) and the second connecting plate (4).

5. The high-efficiency atomizing double-layer heating mesh according to claim 4, characterized in that: The inner side of the inner end of the card block (6) is arc-shaped, and the outer end of the card block (6) extends out of the interior of the first connecting plate (1) and the second connecting plate (4) to form a sliding mechanism.

6. The high-efficiency atomizing double-layer heating mesh according to claim 5, characterized in that: The inner end of the card block (6) extends into the inside of the card slot (7) to form a locking mechanism, and the card slot (7) is opened on the outside of the first heating net (3) and the second heating net (301).

7. The high-efficiency atomizing double-layer heating mesh according to claim 6, characterized in that: The outer end of the card block (6) is connected to a spring (8), and the spring (8) is respectively set inside the first connecting plate (1) and the second connecting plate (4) to form a limiting mechanism.

Citation Information

Patent Citations

  • Heating element , electron smog spinning disk atomiser and electron cigarette of electron smog spinning disk atomiser

    CN207505931U