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Atomizing core and smoke cartridge

An atomizing core and atomizing liquid technology, which is applied in the field of electronic cigarettes, can solve the problems affecting the atomization of e-liquid, the rupture of heating wires, and oil leakage, so as to reduce the risk of oil leakage, reduce the number of sintering, and reduce manufacturing costs. Effect

Pending Publication Date: 2021-07-16
DONGGUAN ALPHA ELECTRONICS TECH CO LED
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

For example, the pod disclosed in patent CN211020987U uses a ceramic atomizing core. The ceramic atomizing core is generally divided into a liquid-absorbing surface and an atomizing surface. There are also some disadvantages. First, the porous ceramics are relatively brittle and easily broken, requiring thicker strength support, and the heating wire is printed on the bottom surface of the porous ceramics. The porous ceramics bear the supporting force and are easily broken, resulting in The heating wire is broken to form an open circuit, which affects the atomization of e-liquid; secondly, porous ceramics are generally fired with clay. After the e-liquid is atomized through the porous ceramic, it is easy to carry a muddy smell, and the reduction degree of e-liquid is not as good as that of cotton wicks.
[0003] At the same time, there has always been a technical problem in pod products that is difficult to solve, that is, the problem of oil leakage. Generally, the atomizing core uses a porous ceramic substrate as a liquid seepage device. The atomized liquid penetrates through the porous ceramic substrate. Atomized liquid atomized into smoke
The outside of the porous ceramic matrix needs to be wrapped with sealing silica gel and other materials to prevent oil leakage, but oil leakage still exists in actual use, and a balance air channel connecting the liquid storage chamber needs to be opened to ensure the air pressure balance in the liquid storage chamber
However, the porous ceramic matrix is ​​easily deformed during use, and there are micropores connected on the outer periphery, resulting in poor sealing and serious oil leakage.

Method used

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Examples

Experimental program
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Embodiment 1

[0033] see Figure 1 to Figure 5 As shown, the atomizing core 40 of the present application includes a porous body 41, an insulating and heat-conducting layer 42 coated on one side of the porous body 41, a heating element 43 adhered to the surface of the insulating and heat-conducting layer 42, and wrapped in the A casing 45 around the periphery of the porous body 41 .

[0034] The porous body 41 is made of metal, which is sintered by mixing metal powder and organic material to form a mixture. The organic material is ablated and removed to form micropores. The pore diameter of the micropores is between 15-22um, and the porosity The range is between 50%-60%.

[0035] In one embodiment, the porous body 41 made of metal has a pore diameter ranging from 18-20um, and a porosity ranging from 54%-55%.

[0036] In one embodiment, the pore size of the metal porous body 41 is between 18-20um, and the porosity is between 54.87%-55.05%.

[0037] The porous body 41 includes a liquid-abs...

Embodiment 2

[0057] key reference Figure 9 As shown, compared with Embodiment 1, the difference of Embodiment 2 is that the porous body 41 is made of porous ceramic material instead of metal material, the insulation and heat conduction layer 42 is omitted, and the heating element 43 is directly arranged on the The bottom surface of the porous body 41 can be sintered and formed.

[0058] This embodiment can effectively solve the brittleness problem of the porous body 41 made of ceramic materials. By using the rigid shell 45 as a supporting force-bearing element, the shell 45 can effectively protect the porous body 41 from cracking due to force. The product is scrapped, or deformed due to force, resulting in product deformation and partial damage, resulting in serious oil leakage.

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Abstract

An atomizing core comprises a shell provided with a vertically-through containing cavity, a porous body wrapped in the containing cavity of the shell and a heating element arranged on the bottom face of the porous body, the porous body comprises a first surface making contact with atomized liquid and a second surface opposite to the first surface, the first surface is a liquid absorbing surface, the second surface is an atomizing surface, the heating element is arranged on the atomizing surface, the atomized liquid permeates to the atomizing surface from the liquid absorbing surface, the heating element on the atomizing surface is used for heating, and heat is conducted into the porous body to atomize the atomized liquid. The invention further discloses a smoke cartridge.

Description

technical field [0001] The present application relates to the field of electronic cigarettes, in particular to an atomizing core and a cartridge. Background technique [0002] The key component of the e-liquid atomized electronic cigarette is the atomizer. The atomizer needs an atomizing core that penetrates the e-liquid. The atomizing core is originally made of organic cotton, but organic cotton is prone to burning problems and odors And affect the use. In order to solve the above technical problems, a technical solution of using ceramic porous body as the atomizing core has appeared in the industry. The ceramic atomizing core will not cause the problem of burning, and the filtration performance is more stable than that of the cotton core. For example, the pod disclosed in patent CN211020987U uses a ceramic atomizing core. The ceramic atomizing core is generally divided into a liquid-absorbing surface and an atomizing surface. There are also some disadvantages. First, the...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): A24F40/10A24F40/46A24F40/40
CPCA24F40/10A24F40/46A24F40/40
Inventor 李亚勇
Owner DONGGUAN ALPHA ELECTRONICS TECH CO LED
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