Electronic vaporization apparatus and vaporizer thereof
Abstract
A vaporizer includes: a vaporization component having a vaporization cavity; and an air outlet channel. During inhaling by a user of the vaporizer, vapor formed by the vaporization component reaches a mouth of the user through the air outlet channel. An inner sidewall of the air outlet channel is provided with at least one first liquid absorbing groove. The at least one first liquid absorbing groove extends from the first end of the air outlet channel to the second end of the air outlet channel and absorbs condensed liquid formed on the inner sidewall of the air outlet channel through capillary force. An end surface of the first end of the air outlet channel is provided with an outlet that is in communication with the at least one first liquid absorbing groove and the vaporization component.
Claims
exact text as granted — not AI-modifiedWhat is claimed is:
1 . A vaporizer, comprising:
a vaporization component having a vaporization cavity; and an air outlet channel, wherein during inhaling by a user of the vaporizer, vapor formed by the vaporization component reaches a mouth of the user through the air outlet channel, wherein an inner sidewall of the air outlet channel is provided with at least one first liquid absorbing groove, wherein the at least one first liquid absorbing groove extends from the first end of the air outlet channel to the second end of the air outlet channel and is configured to absorb condensed liquid formed on the inner sidewall of the air outlet channel through capillary force, wherein an end surface of the first end of the air outlet channel is provided with an outlet that is in communication with the at least one first liquid absorbing groove and the vaporization component such that liquid in the at least one first liquid absorbing groove drips onto the vaporization component through the outlet, and wherein a groove depth of the at least one first liquid absorbing groove decreases from the first end of the air outlet channel to the second end of the air outlet channel, and a groove width of the at least one first liquid absorbing groove increases from the first end of the air outlet channel to the second end of the air outlet channel.
2 . The vaporizer of claim 1 , wherein the at least one first liquid absorbing groove extending from the first end of the air outlet channel to the second end of the air outlet channel such that the condensed liquid absorbed by the at least one first liquid absorbing groove flows to the vaporization component by gravity.
3 . The vaporizer of claim 2 , wherein the at least one first liquid absorbing groove and a central axis of the air outlet channel are parallel.
4 . The vaporizer of claim 2 , wherein the at least one first liquid absorbing groove is spirally disposed.
5 . The vaporizer of claim 2 , wherein the vaporization component is configured to vaporize the condensed liquid flowing from the at least one first liquid absorbing groove again.
6 . The vaporizer of claim 2 , wherein the at least one first liquid absorbing groove is in direct communication with the vaporization cavity.
7 . The vaporizer of claim 2 , wherein the at least one first liquid absorbing groove comprises a plurality of first liquid absorbing grooves, and
wherein the plurality of first liquid absorbing grooves are disposed at intervals and parallel to each other.
8 . The vaporizer of claim 7 , wherein the groove depth of each first liquid absorbing groove of the plurality of first liquid absorbing grooves decreases as each first liquid absorbing groove approaches the vaporization component, and
wherein the groove width of each first liquid absorbing groove of the plurality of first liquid absorbing grooves increases in an opening direction of the first liquid absorbing groove such that an inner part of the first liquid absorbing groove is narrow and an opening of the first liquid absorbing groove is wide so as to help the liquid flow onto the vaporization component along the first liquid absorbing groove.
9 . The vaporizer of claim 7 , wherein a groove width of each first liquid absorbing groove of the plurality of first liquid absorbing grooves increases in a direction away from the second end.
10 . The vaporizer of claim 7 , wherein the groove depth of each first liquid absorbing groove of the plurality of first liquid absorbing grooves is greater than or equal to 0.1 mm.
11 . The vaporizer of claim 7 , wherein a groove width of each first liquid absorbing groove of the plurality of first liquid absorbing grooves is 0.05 mm to 1 mm.
12 . The vaporizer of claim 7 , wherein a groove width of each first liquid absorbing groove of the plurality of first liquid absorbing grooves gradually increases in a direction from a bottom to an opening of the respective first liquid absorbing groove.
13 . The vaporizer of claim 1 , further comprising:
a housing; and a base, wherein the housing is sleeved on the base, the vaporization component is disposed on the base, and a sidewall of the air outlet channel and the housing are integrally formed.
14 . The vaporizer of claim 13 , wherein the housing comprises a body and an air outlet tube longitudinally disposed in the body,
wherein the air outlet channel is disposed in the air outlet tube, wherein the at least one first liquid absorbing groove is disposed on an inner sidewall of the air outlet tube, and wherein an inner side of the body and an outside of the air outlet tube form a liquid storage cavity in fluid connection with the vaporization component.
15 . An electronic vaporization apparatus, comprising:
a vaporization component having a vaporization cavity; and an air outlet channel comprising a first end close to the vaporization component and a second end away from the vaporization component, wherein during inhaling by a user of the electronic vaporization apparatus, vapor formed by the vaporization component reaches a mouth of the user through the air outlet channel, wherein an inner sidewall of the air outlet channel is provided with at least one first liquid absorbing groove extends from the first end of the air outlet channel to the second end of the air outlet channel, wherein the at least one first liquid absorbing groove is configured to absorb condensed liquid formed on the inner sidewall of the air outlet channel through capillary force, wherein an end surface of the first end of the air outlet channel is provided with an outlet that is in communication with the at least one first liquid absorbing groove and the vaporization component such that liquid in the at least one first liquid absorbing groove drips onto the vaporization component through the outlet, and wherein a groove depth of the at least one first liquid absorbing groove decreases from the first end of the air outlet channel to the second end of the air outlet channel, and a groove width of the at least one first liquid absorbing groove increases from the first end of the air outlet channel to the second end of the air outlet channel.
16 . The electronic vaporization apparatus of claim 15 , wherein the at least one first liquid absorbing groove extends from the first end of the air outlet channel to the second end of the air outlet channel such that the condensed liquid absorbed by the at least one first liquid absorbing groove flows to the vaporization component by gravity.
17 . The electronic vaporization apparatus of claim 16 , wherein the at least one first liquid absorbing groove and a central axis of the air outlet channel are parallel.
18 . The electronic vaporization apparatus of claim 16 , wherein the at least one first liquid absorbing groove is spirally disposed.
19 . The electronic vaporization apparatus of claim 16 , wherein the vaporization component is configured to vaporize the condensed liquid flowing from the at least one first liquid absorbing groove again, and
wherein the at least one first liquid absorbing groove is in direct communication with the vaporization cavity.
20 . The electronic vaporization apparatus of claim 16 , wherein the at least one first liquid absorbing groove comprises a plurality of first liquid absorbing grooves,
wherein the groove depth of each first liquid absorbing groove of the plurality of first liquid absorbing grooves decreases in a direction away from the second end of the air outlet channel, wherein the groove width of each first liquid absorbing groove of the plurality of first liquid absorbing grooves increases in a direction away from the second end of the air outlet channel, and/or wherein the groove width of each first liquid absorbing groove of the plurality of first liquid absorbing grooves increases in a direction from a bottom of the respective first liquid absorbing groove to an opening of the respective first liquid absorbing groove.Join the waitlist — get patent alerts
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