Detachable tar guide piece and electronic cigarette using same
An oil guide and oil guide technology, applied in the field of electronic cigarettes, can solve the problems such as the inability to stably maintain the thickness of the liquid film, the easy accumulation of residues in the oil guide holes, and the easy cracking of the surface acoustic wave chip, and achieve better atomization effect. , Improve the atomization effect and reduce the weight
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Embodiment 1
[0032] like Figure 1-3 As shown, the detachable oil guide device in this embodiment includes an oil guide member and a metal support member. The metal support includes an oil guide tube 1 and a metal plate 2 located in the circumferential direction of the oil guide tube 1. The top of the oil guide tube 1 is embedded in the through hole of the surface acoustic wave chip 11. The oil guide part is detachably installed on the oil guide tube of the metal support. 1, the top surface of the oil guide is continuous with the top surface of the surface acoustic wave chip 11, and the metal plate 2 is attached to the bottom surface of the surface acoustic wave chip 11. The surface acoustic wave chip 11 is provided with a through hole for the oil guiding tube 1 to be embedded. After the oil guide tube 1 is embedded, the metal plate 2 is completely attached to the bottom surface of the surface acoustic wave chip 11 . The surface acoustic wave chip 11 is provided with interdigital transdu...
Embodiment 2
[0037] like Figure 4 As shown, the difference between the present embodiment and the first embodiment lies in the structure of the oil guiding member. The oil guiding member of this embodiment includes a porous wick 5 and several first metal pillars 3, the several first metal pillars 3 are located in the porous wick 5, and the several first metal pillars 3 are connected to the bottom surface of the oil guiding cylinder 1. The included angle is less than 90 degrees, that is, each first metal column 3 is placed obliquely, which can maintain the liquid surface tension of the e-liquid at the top of the porous wick 5 . The top surfaces of the several first metal pillars 3 are located on the same plane, and the overall shape of the liquid surface formed by the e-liquid on the top surfaces of the several first metal pillars 3 is planar. The top surfaces of several first metal pillars 3 can also be connected to form a meniscus shape depressed at the bottom of the oil guide tube 1 , ...
Embodiment 3
[0039] like Figure 5 As shown, the difference between the present embodiment and the first embodiment lies in the structure of the oil guiding member. The oil guide in this embodiment includes several second metal pillars 4 and linear wicking objects 6 , and the several second metal pillars 4 are all perpendicular to the bottom surface of the oil guide cylinder 1 . The wire-shaped wicking material 6 is wound outside the second metal post 4 . The top surfaces of the several second metal pillars 4 are located on the same plane, and the overall shape of the liquid surface formed by the e-liquid on the top surfaces of the several second metal pillars 4 is planar. The top surfaces of several second metal pillars 4 can also be connected to form a meniscus shape depressed at the bottom of the oil guide barrel 1 , and the overall shape of the liquid surface formed by the e-liquid on the top surfaces of several second metal pillars 4 is a meniscus shape.
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