Rotating electrical atomizer to reduce stress
Abstract
A rotating electrical atomizer to reduce stress includes a controlling mechanism, a reducing-stress mechanism, an atomizing mechanism, and an inhaling part; the controlling mechanism includes a supply assembly and a controlling assembly electrically connected to each other; the reducing-stress mechanism is connected to the controlling mechanism and includes a decompression ring and at least one bearings; the outer ring of the bearing is connected to the decompression ring; the decompression ring rotates with the bearing as a rotation center; the atomizing mechanism is connected to the reducing-stress mechanism and provided with an atomizing core and an oil storage room enclosing the atomizing core, the atomizing core is electrically connected to the controlling assembly; the inhaling part is connected to the atomizing mechanism, and the oil mist heated by the atomizing core is sprayed from the inhaling part.
Claims
exact text as granted — not AI-modifiedWhat is claimed is:
1 . A rotating electrical atomizer to reduce stress, comprising:
a controlling mechanism, comprising a supply assembly and a controlling assembly electrically connected to each other; a reducing-stress mechanism, connected to said controlling mechanism and comprising a decompression ring and at least one bearing; said decompression ring rotates around said bearing as a center; an atomizing mechanism, connected to said reducing-stress mechanism and provided with an atomizing core and an oil storage room enclosing said atomizing core; said oil storage room used to store cigarette oil; said atomizing core is electrically connected to said controlling assembly and heats said cigarette oil into atomized oil; and an inhaling part, connected to said atomizing mechanism, and said atomized oil is sprayed from said inhaling part.
2 . The rotating electrical atomizer to reduce stress according to claim 1 , wherein said reducing-stress mechanism includes a base; a middle part of said base is hollow, and two ends of said base are respectively connected to said controlling mechanism and said atomizing mechanism, said base is provided with a rotating tube, an inner ring of said bearing is sheathed out of said rotating tube, an outer ring of said bearing is connected to said decompression ring.
3 . The rotating electrical atomizer to reduce stress according to claim 2 , wherein an absorbing oil cotton is disposed of in said base.
4 . The rotating electrical atomizer to reduce stress according to claim 2 , wherein said reducing-stress mechanism includes two bearings, an inner wall of said decompression ring is provided with a position-limiting base with a top surface and a bottom surface, and said decompression ring is sheathed out of said rotating tube, said top surface and said bottom surface of said position-limiting base respectively abuts against said two bearings.
5 . The rotating electrical atomizer to reduce stress according to claim 2 , wherein an outer wall of said decompression ring is provided with a convex texture.
6 . The rotating electrical atomizer to reduce stress according to claim 2 , wherein said controlling mechanism further comprises a shell connected to said base and a bracket arranged inside said shell; said controlling assembly is fixed in said bracket, and a button of said controlling assembly extends to an opening of a side wall of said shell.
7 . The rotating electrical atomizer to reduce stress according to claim 2 , wherein said atomizing mechanism comprises an oil cup and a fixing base connected to a bottom of the oil cup, said fixing base is connected to said base, and a top of said oil cup is provided with an oil-injected silica gel base;
said oil cup is internally provided with an atomizing passage passing through said oil-injected silica gel base and said bottom of said oil cup, and said atomizing core is arranged in said atomizing passage.
8 . The rotating electrical atomizer to reduce stress according to claim 7 , wherein said atomizing passage is provided with a guiding hole, and said cigarette oil in said oil storage room enters said atomizing core through said guiding hole.
9 . The rotating electrical atomizer to reduce stress according to claim 7 , wherein said inhaling part is connected to said oil cup and has a nozzle in communication with said atomizing passage, said inhaling part is provided with a block at a position corresponding to an opening of said oil-injected silica gel base, and said block is used for blocking said opening of the oil-injected silica gel base.
10 . The rotating electrical atomizer to reduce stress according to claim 7 , wherein said controlling mechanism, said reducing-stress mechanism, said atomizing mechanism and said inhale part have equal maximum diameters and are sequentially connected to form a columnar structure.Join the waitlist — get patent alerts
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