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公开(公告)号:US20230000154A1
公开(公告)日:2023-01-05
申请号:US17756418
申请日:2020-11-26
Applicant: SHENZHEN FIRST UNION TECHNOLOGY CO., LTD.
Inventor: Jun YUAN , Baoling LEI , Wenpeng WANG , Ming CHEN , Zhongli XU , Yonghai LI
Abstract: An atomization assembly comprises an e-liquid reservoir, a porous body, and a healing element. The e-liquid reservoir comprises an e-liquid storage cavity (b) for storing e-liquid. Used for adsorbing e-liquid in the e-liquid storage cavity, the porous body comprises an e-liquid contract surface, an e-liquid atomization surface and an air inlet surface and it adsorbs the e-liquid in the e-liquid storage cavity by means of the e-liquid contact surface; the air inlet surface is for allowing gas to flow into the porous body and flow into the e-liquid storage cavity by means of the porous body; the distance between the air inlet surface and the e-liquid contact surface is smaller than the distance between the e-liquid atomization surface and the e-liquid contact surface, and at least part of the heating element is in contact with the e-liquid atomization surface so as to atomize the e-liquid on the e-liquid atomization surface.
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公开(公告)号:US20220240572A1
公开(公告)日:2022-08-04
申请号:US17597689
申请日:2020-07-29
Applicant: SHENZHEN FIRST UNION TECHNOLOGY CO., LTD.
Inventor: Jun YUAN , Baoling LEI , Qigen WANG , Wen SHI , Zhongli XU , Yonghai LI
Abstract: An atomizer and an electronic cigarette are provided. The atomizer comprises an outer housing, and an e-liquid storage chamber and an atomization assembly are disposed in the outer housing. The atomization assembly comprises a porous element and a heating element. The porous element comprises an e-liquid absorbing surface. A bubble guiding element opposite to the e-liquid absorbing surface is further provided in the outer housing, and comprises a bubble guiding surface opposite to the e-liquid absorbing surface. At least a portion of the bubble guiding surface is obliquely configured in a direction facing away from the e-liquid absorbing surface, such that bubbles emerging from the e-liquid absorbing surface of the porous element are guided toward the direction facing away from the e-liquid absorbing surface.
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