CN215075538U - Ceramic atomizing core and electron cigarette based on heat transfer fast - Google Patents
Ceramic atomizing core and electron cigarette based on heat transfer fast Download PDFInfo
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- CN215075538U CN215075538U CN202121045863.2U CN202121045863U CN215075538U CN 215075538 U CN215075538 U CN 215075538U CN 202121045863 U CN202121045863 U CN 202121045863U CN 215075538 U CN215075538 U CN 215075538U
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Abstract
The utility model relates to an electronic cigarette technical field, concretely relates to ceramic atomizing core and electronic cigarette based on quick heat transfer, including ceramic heat-generating body, integrative firing connect in the heating element of ceramic heat-generating body one side and connect in the heating element and extend to the heat transfer piece in the ceramic heat-generating body, the ceramic heat-generating body equipartition has a plurality of micropores, the ceramic heat-generating body is equipped with the arrangement groove, the arrangement groove has seted up the slot, the heat transfer piece is inserted and located in the slot, the heating element includes the heating piece and connects in the connection contact of heating piece, the heat transfer piece is connected in the heating piece; the utility model discloses with the equal integrated into one piece of heat transfer piece and heating element inside ceramic heat-generating body, heat transfer through the heat transfer piece when heating element generates heat for ceramic heat-generating body's inside heat is more stable, and the temperature uniformity is better, and the effect is better in the atomizing in-process, and the tobacco tar atomizing taste is better.
Description
Technical Field
The utility model relates to an electron cigarette technical field especially relates to a pottery atomizing core and electron cigarette based on heat transfer fast.
Background
The electronic cigarette is mainly used for quitting and replacing cigarettes, can simulate the taste of the cigarettes, but can not release tar, nicotine and second-hand smoke harmful to human bodies when the electronic cigarette is smoked, and can improve the smoking quitting success rate of nicotine replacement therapy, so that the electronic cigarette is popular in the market and is valued by the nation soon. The electronic atomized cigarette has the principle that a smoke agent is heated and gasified on an electric heating element of an atomization system to form high-temperature steam and the high-temperature steam is sprayed out of an opening end, and the sprayed steam expands and condenses into smoke-shaped micro liquid drops in the atmosphere, so that smoke similar to the traditional cigarette is formed.
Wherein, atomizing core is one of the key parts of electron cigarette, and current atomizing core is including cotton core atomizing, ceramic atomizing and ultrasonic atomization, and the effect is all with tobacco tar heating atomizing. The existing ceramic electronic cigarette atomizer has the defects that the existing ceramic electronic cigarette atomizer does not have a heat transfer structure in the using process, and can not carry out temperature equalization preheating in the smoke oil backflow process, so that the whole atomization effect and the taste are easily influenced.
SUMMERY OF THE UTILITY MODEL
In order to solve the problem, the utility model provides a with the equal integrated into one piece of heat transfer piece and heating element inside ceramic heat-generating body, carry out heat transfer through the heat transfer piece when heating element generates heat for ceramic heat-generating body's inside heat is more stable, and the temperature uniformity is better, and the effect is better in the atomizing process, and the better ceramic atomization core and the electron cigarette based on heat transfer fast of tobacco tar atomizing taste.
The utility model adopts the technical proposal that: the utility model provides a pottery atomizing core based on quick heat transfer, includes ceramic heat-generating body, integrative firing connect in the heating element of ceramic heat-generating body one side and connect in heating element and extend to the internal heat transfer piece of ceramic heat-generating body, ceramic heat-generating body equipartition has a plurality of micropores, ceramic heat-generating body is equipped with the resettlement groove, the slot has been seted up in the resettlement groove, the heat transfer piece is inserted and is located in the slot, heating element includes the piece that generates heat and connects in the connection contact of the piece that generates heat, the heat transfer piece is connected in the piece that generates heat.
The ceramic heating element is further improved in the scheme that a containing groove is formed in one surface of the ceramic heating element, which deviates from the placing groove, and the containing groove is gradually enlarged from bottom to top.
The scheme is further improved in that arc surfaces are arranged on two sides of the ceramic heating body, and limit tables are arranged on the arc surfaces.
In a further improvement of the above aspect, the ceramic heating element has a heating element and a heat transfer sheet integrally fired therein.
The ceramic heating body is arranged on the outer edge of the accommodating groove and is provided with a plurality of accommodating outer edges, and a plurality of groups of accommodating outer edges are arranged.
The scheme is further improved in that the heating sheet is a heating steel sheet.
The further improvement of the scheme is that the heating sheet is arranged in a bending lead shape and is provided with a reinforcing rib, the reinforcing rib is bent upwards, and the reinforcing rib is provided with a through hole.
The further improvement of the scheme is that the connecting contact and the heating sheet are integrally formed.
The scheme is further improved in that the heat transfer sheet is a steel sheet, a copper sheet, an aluminum sheet or a copper-aluminum composite sheet, and the heat transfer sheet is connected with the heating sheet through welding or riveting; the heat transfer sheet is provided with a plurality of contact grooves.
An electronic cigarette comprises the ceramic atomizing core based on rapid heat transfer.
The utility model has the advantages that:
compare traditional electron smog core, the utility model provides a current atomizing structure does not possess the problem of heat transfer function, with the equal integrated into one piece of heat transfer piece and heating element inside ceramic heat-generating body, transmit heat through the heat transfer piece when heating element generates heat for ceramic heat-generating body's inside heat is more stable, and the temperature uniformity is better, and the effect is better in the atomizing in-process, and tobacco tar atomizing taste is better. Specifically, set up ceramic heat-generating body, integrative firing connect in the heating element of ceramic heat-generating body one side and connect in heating element and extend to the heat transfer piece in the ceramic heat-generating body, ceramic heat-generating body equipartition has a plurality of micropores, ceramic heat-generating body is equipped with the resettlement groove, the slot has been seted up in the resettlement groove, the heat transfer piece is inserted and is located the slot, heating element includes the piece that generates heat and connects in the connection contact of the piece that generates heat, the heat transfer piece is connected in the piece that generates heat. The heating plate is connected with the heat transfer plate for heat transfer, so that the heating effect of the ceramic heating body is better, the connecting contact is used for electric connection, heating is controlled, and the structure is simple and reliable.
Drawings
Fig. 1 is an explosion structure diagram of the porous conductive ceramic atomization structure of the invention;
FIG. 2 is a schematic diagram of an exploded structure of FIG. 1 from another perspective based on a porous conductive ceramic atomizing structure;
fig. 3 is a schematic diagram of the internal structure of the ceramic atomization structure based on porous conduction in fig. 1.
Description of reference numerals: the ceramic heating element comprises a ceramic heating element 1, micropores 11, a placement groove 12, a slot 13, a containing groove 14, a containing outer edge 15, an arc surface 16, a limiting table 161, a heating assembly 2, a heating sheet 21, a reinforcing rib 211, a through hole 212, a connecting contact 22, a heat transfer sheet 3 and a contact groove 31.
Detailed Description
In order to facilitate understanding of the present invention, the present invention will be described more fully hereinafter with reference to the accompanying drawings. The preferred embodiments of the present invention are shown in the drawings. The invention may, however, be embodied in many different forms and should not be construed as limited to the embodiments set forth herein. Rather, these embodiments are provided so that this disclosure will be thorough and complete.
It will be understood that when an element is referred to as being "secured to" another element, it can be directly on the other element or intervening elements may also be present. When an element is referred to as being "connected" to another element, it can be directly connected to the other element or intervening elements may also be present.
Unless defined otherwise, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention belongs. The terminology used in the description of the invention herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention.
As shown in fig. 1-3, a ceramic atomizing core based on rapid heat transfer, includes ceramic heating element 1, an organic whole fires and connects in heating element 2 of ceramic heating element 1 one side and connect in heating element 2 and extend to the heat transfer piece 3 in ceramic heating element 1, ceramic heating element 1 equipartition has a plurality of micropores 11, ceramic heating element 1 is equipped with arrangement groove 12, arrangement groove 12 has seted up slot 13, heat transfer piece 3 inserts and locates in slot 13, heating element 2 includes heating piece 21 and connects in the connecting contact 22 of heating piece 21, heat transfer piece 3 connects in heating piece 21.
The arc surface 16 is opened to ceramic heat-generating body 1 both sides, spacing platform 161 has been seted up to the arc surface 16, cooperates the structural mounting that the arc surface 16 was used for ceramic heat-generating body 1 through spacing platform 161, simple to operate, stable in structure.
The ceramic heating body 1 integrally fires the heating component 2 and the heat transfer sheet 3 in the interior, and the structure is fired integrally, so that the ceramic heating body is strong in integrity, good in heat transfer effect and good in atomization effect during heating.
The heating sheet 21 is a heating steel sheet, and heats through the heating steel sheet, and has high heat resistance coefficient and good stability.
The connecting contact 22 and the heating sheet 21 are integrally formed, and an integrated structure is adopted, so that electric connection and heat transfer are facilitated, and the space is saved.
The heat transfer sheet 3 is a steel sheet, a copper sheet, an aluminum sheet or a copper-aluminum composite sheet, and the heat transfer sheet 3 is connected with the heating sheet 21 through welding or riveting; the heat transfer sheet 3 is provided with a plurality of contact grooves 31, the heat transfer sheet 3 is connected with the heating sheet 21 through riveting, a copper-aluminum composite structure is adopted, and the heat transfer efficiency is high and the stability is good. The contact grooves 31 are used to increase the contact area of the heat transfer sheet 3 with the ceramic heating body 1.
The electron cigarette of structure more than adopting has the heat transfer and carries out the atomizing to the tobacco tar, and atomization effect is good for ceramic heat-generating body 1's inside heat is more stable.
The utility model provides a current atomizing structure problem that does not possess the heat transfer function, with heat transfer piece 3 and the 2 homogeneous body shaping of heating element in ceramic heat-generating body 1 inside, transmit heat through heat transfer piece 3 when heating element 2 generates heat for ceramic heat-generating body 1's inside heat is more stable, and the temperature uniformity is better, and the effect is better in the atomizing process, and the tobacco tar atomizing taste is better. Specifically, set up ceramic heat-generating body 1, integrative firing connect in the heating element 2 of 1 one side of ceramic heat-generating body and connect in heating element 2 and extend to the heat transfer piece 3 in ceramic heat-generating body 1, 1 equipartition of ceramic heat-generating body has a plurality of micropores 11, ceramic heat-generating body 1 is equipped with arrangement groove 12, slot 13 has been seted up in arrangement groove 12, heat transfer piece 3 inserts and locates in slot 13, heating element 2 includes heating element 21 and connects in the connecting contact 22 of heating element 21, heat transfer piece 3 is connected in heating element 21. The heating plate 21 is connected with the heat transfer plate 3 for heat transfer, so that the heating effect of the ceramic heating body 1 is better, the connecting contact 22 is used for electric connection, the heating is controlled, and the structure is simple and reliable.
The above-mentioned embodiments only represent some embodiments of the present invention, and the description thereof is specific and detailed, but not to be construed as limiting the scope of the present invention. It should be noted that, for those skilled in the art, without departing from the spirit of the present invention, several variations and modifications can be made, which are within the scope of the present invention. Therefore, the protection scope of the present invention should be subject to the appended claims.
Claims (10)
1. A ceramic atomizing core based on rapid heat transfer is characterized in that: including ceramic heat-generating body, integrative firing connect in the heating element of ceramic heat-generating body one side and connect in heating element and extend to the heat transfer piece in the ceramic heat-generating body, ceramic heat-generating body equipartition has a plurality of micropores, ceramic heat-generating body is equipped with the resettlement groove, the slot has been seted up in the resettlement groove, the heat transfer piece is inserted and is located in the slot, heating element includes the piece that generates heat and connects in the connection contact of the piece that generates heat, the heat transfer piece is connected in the piece that generates heat.
2. The ceramic atomizing core based on rapid heat transfer according to claim 1, characterized in that: the ceramic heating element deviates from one surface of the placing groove and is provided with a containing groove, and the containing groove is gradually enlarged from bottom to top.
3. The ceramic atomizing core based on rapid heat transfer according to claim 2, characterized in that: arc surfaces are arranged on two sides of the ceramic heating body, and limit tables are arranged on the arc surfaces.
4. The ceramic atomizing core based on rapid heat transfer according to claim 3, characterized in that: the ceramic heating body integrally burns the heating component and the heat transfer sheet inside.
5. The ceramic atomizing core based on rapid heat transfer according to claim 4, characterized in that: the ceramic heating body is provided with a plurality of accommodating outer edges at the outer edges of the accommodating groove, and a plurality of groups of the accommodating outer edges are arranged.
6. The ceramic atomizing core based on rapid heat transfer according to claim 1, characterized in that: the heating sheet is a heating steel sheet.
7. The ceramic atomizing core based on rapid heat transfer according to claim 6, characterized in that: the heating sheet is arranged in a bent lead shape and is provided with a reinforcing rib, the reinforcing rib is bent upwards, and the reinforcing rib is provided with a through hole.
8. The ceramic atomizing core based on rapid heat transfer according to claim 7, wherein: the connecting contact and the heating sheet are integrally formed.
9. The ceramic atomizing core based on rapid heat transfer according to claim 1, characterized in that: the heat transfer sheet is a steel sheet, a copper sheet, an aluminum sheet or a copper-aluminum composite sheet, and the heat transfer sheet is connected with the heating sheet through welding or riveting; the heat transfer sheet is provided with a plurality of contact grooves.
10. An electronic cigarette, characterized in that: comprising a ceramic atomizing core based on rapid heat transfer according to any one of claims 1 to 9.
Priority Applications (1)
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CN202121045863.2U CN215075538U (en) | 2021-05-17 | 2021-05-17 | Ceramic atomizing core and electron cigarette based on heat transfer fast |
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CN202121045863.2U CN215075538U (en) | 2021-05-17 | 2021-05-17 | Ceramic atomizing core and electron cigarette based on heat transfer fast |
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CN215075538U true CN215075538U (en) | 2021-12-10 |
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CN202121045863.2U Active CN215075538U (en) | 2021-05-17 | 2021-05-17 | Ceramic atomizing core and electron cigarette based on heat transfer fast |
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2021
- 2021-05-17 CN CN202121045863.2U patent/CN215075538U/en active Active
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