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Liquid recycling atomization device

Pending Publication Date: 2022-08-11
SHENZHEN HUACHENGDA PRECISION IND CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Benefits of technology

The present disclosure provides an improved liquid recycling atomization device, which aims to solve the defects in prior art. The device includes a housing, a liquid conducting member, and a heating element. It also has an air inlet and an air outlet, and a liquid absorbing structure. The device allows air and smoke to enter and flow out of the housing. The liquid absorbing structure is connected with the liquid conducting member, allowing the liquid to be heated and atomized by the heating element. The device further includes an annular air inlet protrusion and an annular vent protrusion, which improve the air inflow and ensure the recycling of the condensate.

Problems solved by technology

Currently, electronic cigarette vaporizers used in the field of electronic cigarette vaporization generally have the problem of leakage of condensate.
When the condensed liquid inside the cartridge increases, it will gather together and flows out of the air inlet formed in a base of the cartridge into a battery located in a cigarette rod to damage the battery and electronic parts, or, the condensed liquid may enter the user's mouth from an air outlet when the user smokes the electronic cigarette, causing a poor user experience.

Method used

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Examples

Experimental program
Comparison scheme
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first embodiment

[0066]Referring to FIGS. 1 to 23, a liquid recycling atomization device in the present disclosure includes a housing 1, a liquid conducting member 2, and a heating element 3 arranged on the liquid conducting member 2. The liquid conducting member 2 and the heating element 3 are arranged in the housing 1. A liquid storage cavity 11 is formed in the housing 1 such that the liquid in the liquid storage cavity 11 can pass through the liquid conducting member 2 to reach the heating element 3 for heating and atomization. An air inlet 12 and an air outlet 13 are formed in the housing 1 such that air can enter the housing 1 through the air inlet 12 and the smoke can be taken out of the housing 1 through the air outlet 13. A liquid absorbing structure 4 is arranged on an outer periphery of the air inlet 12 to absorb the liquid around the air inlet 12. The liquid absorbing structure 4 is connected with the liquid conducting member 2 such that the liquid conducting member 2 can absorb the liqu...

second embodiment

[0070]Referring to FIGS. 11 to 16, in a second embodiment, the liquid absorbing structure 4 and the liquid conducting member 2 are integrated. For example, when the liquid conducting member 2 is made of hard porous material, the liquid conducting member 2 and the liquid absorbing structure 4 are integrally made of hard porous material. The liquid absorbing structure 4 is a protrusion extending from the liquid conducting member 2.

[0071]The heating element 3 is arranged on one side of the liquid conducting member 2, and the liquid absorbing structure 4 is arranged on the side of the liquid conducting member 2 where the heating element 3 is arranged. Compared with the connection position of the heating element 3 and the liquid conducting member 2, the connection position of the liquid absorbing structure 4 and the liquid conducting member 2 is relatively closer to an outer edge of the liquid conducting member 2. In an embodiment, at least a part of the liquid absorbing structure 4 is i...

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PUM

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Abstract

The disclosure provides a liquid recycling atomization device, including a housing, a liquid conducting member and a heating element arranged on the liquid conducting member. A liquid storage cavity is arranged in the housing such that liquid in the liquid storage cavity can be conducted through the liquid conducting member to the heating element. An air inlet and an air outlet are formed in the housing, air can enter from the air inlet and smoke can flow out through the air outlet. The device further includes a liquid absorbing structure surrounding the air inlet for absorbing the condensate around the air inlet. The liquid absorbing structure is in contact with the liquid conducting member, when the heating element is heated, the liquid in the liquid conducting member is consumed, and the liquid conducting member can suck back the condensate in the liquid absorbing structure, realizing the recycling of the condensate.

Description

TECHNICAL FIELD[0001]The present disclosure relates to the field of atomization technology, and more particularly, to a liquid recycling atomization device.BACKGROUND[0002]Currently, electronic cigarette vaporizers used in the field of electronic cigarette vaporization generally have the problem of leakage of condensate. How is the condensate produced? The atomization principle of an electronic cigarette is to vaporize the smoke liquid into high-temperature atomized steam through electric heating. The high-temperature atomized steam contacts an inner wall of an airflow channel inside a cartridge when flowing in the airflow channel. Condensed liquid may be generated when the high-temperature atomized steam encounters the inner wall of the airflow channel having the normal temperature. When the condensed liquid inside the cartridge increases, it will gather together and flows out of the air inlet formed in a base of the cartridge into a battery located in a cigarette rod to damage the...

Claims

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Application Information

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IPC IPC(8): A24F40/44A24F40/48A24F40/42
CPCA24F40/44A24F40/42A24F40/48A24F40/10
Inventor CHEN, PING
Owner SHENZHEN HUACHENGDA PRECISION IND CO LTD