US2025366515A1PendingUtilityA1
Atomizer
Est. expiryMay 28, 2044(~17.9 yrs left)· nominal 20-yr term from priority
A24F 40/10A24F 40/485A24F 40/44A24F 40/30
74
PatentIndex Score
0
Cited by
0
References
0
Claims
Abstract
This application relates to the technical field of electronic atomization, and specifically discloses an atomizer comprising a nozzle body. The nozzle body is provided with a mixing chamber and a first air inlet port, a second air inlet port and a suction port in communication with the mixing chamber. The mixing chamber is provided with a spoiler structure, which is configured that gas flowing into the mixing chamber from the second air inlet port passes through at least part of the spoiler structure.
Claims
exact text as granted — not AI-modifiedWhat is claimed is:
1 . An atomizer comprising:
a nozzle body ( 111 ); wherein, a mixing chamber ( 1111 ) is provided in the nozzle body ( 111 ), a side of the nozzle body ( 111 ) is provided with a first air inlet port ( 1112 ) and a second air inlet port ( 1113 ) in communication with the mixing chamber ( 1111 ), another side of the mixing chamber ( 1111 ) is provided with a suction port ( 1117 ) in communication with the mixing chamber ( 1111 ); and a spoiler structure ( 200 ) is provided in the mixing chamber ( 1111 ), and the spoiler structure ( 200 ) is configured that gas flowing into the mixing chamber ( 1111 ) from the second air inlet port ( 1113 ) passes through at least part of the spoiler structure ( 200 ).
2 . The atomizer of claim 1 , wherein,
an installation chamber ( 1114 ) is provided in the nozzle body ( 111 ), and the installation chamber ( 1114 ) is in communication with the mixing chamber ( 1111 ) and forms a communicating port ( 1115 ); the spoiler structure ( 200 ) comprises a spoiler plug ( 112 ), and the spoiler plug ( 112 ) is arranged in the installation chamber ( 1114 ); and the spoiler plug ( 112 ) has a flow guiding surface ( 1121 ), and the flow guiding surface ( 1121 ) forms a flow guide path from the second air inlet port ( 1113 ) to the communicating port ( 1115 ).
3 . The atomizer of claim 2 , wherein the spoiler structure ( 200 ) further comprises spoiler ribs ( 115 ), which are arranged on an inner wall of the installation chamber ( 1114 ) and/or the spoiler plug ( 112 ), and are located within the flow guide path.
4 . The atomizer of claim 2 , wherein the flow guiding surface ( 1121 ) is a smooth inclined surface, a lower portion ( 1122 ) of the smooth inclined surface corresponds to the second air inlet port ( 1113 ) in a first direction (X), and a higher portion ( 1123 ) of the smooth inclined surface corresponds to the communicating port ( 1115 ) in a second direction (Y); and
wherein, the first direction (X) intersects with the second direction (Y).
5 . The atomizer of claim 2 , wherein a head of the spoiler plug ( 112 ) is interference-fitted in the installation chamber ( 1114 ), a tail of the spoiler plug ( 112 ) is provided with two supporting legs ( 1124 ), the two supporting legs ( 1124 ) abut against the nozzle body ( 111 ), and the flow guiding surface ( 1121 ) is located between the two supporting legs ( 1124 ).
6 . The atomizer of claim 1 , wherein the atomizer ( 100 ) comprises a second atomization assembly ( 150 ), and a second air outlet port ( 1511 ) of the second atomization assembly ( 150 ) is in communication with the second air inlet port ( 1113 ).
7 . The atomizer of claim 6 , wherein the second air outlet port ( 1511 ) is non-coaxial with the second air inlet port ( 1113 ).
8 . The atomizer of claim 6 , wherein the second atomization assembly ( 150 ) comprises a second reservoir cotton ( 151 ) and a second atomization member ( 152 ), a center of the second reservoir cotton ( 151 ) is provided with a second atomization channel ( 1512 ), the second atomization assembly ( 152 ) is located at a bottom of the second atomization channel ( 1512 ), and the second air outlet port ( 1511 ) is formed at a top of the second atomization channel ( 1512 ).
9 . The atomizer of claim 6 , wherein the atomizer ( 100 ) further comprises a first atomization assembly ( 140 ), the first air outlet port ( 1411 ) of the first atomization assembly ( 140 ) is in communication with the first air inlet port ( 1112 ), and the first air outlet port ( 1411 ) is coaxially arranged with the first air inlet port ( 1112 ).
10 . The atomizer of claim 9 , wherein the first atomization assembly ( 140 ) comprises a first reservoir cotton ( 141 ) and a first atomization assembly ( 142 ), a center of the first reservoir cotton ( 141 ) is provided with a first atomization channel ( 1412 ), the first atomization assembly ( 142 ) is located at a bottom of the first atomization channel ( 1412 ), and the first air outlet port ( 1411 ) is formed at a top of the first atomization channel ( 1412 ).
11 . The atomizer of claim 1 , wherein the spoiler structure ( 200 ) comprises a plurality of spoiler plates ( 116 ); and
the spoiler plates ( 116 ) are located on an inner wall of the mixing chamber ( 1111 ), and a flow guide gap is provided between the spoiler plates ( 116 ) and the inner wall of the mixing chamber ( 1111 ).
12 . The atomizer of claim 1 , wherein the nozzle body ( 111 ) further comprises a reduction chamber ( 1116 ), the reduction chamber ( 1116 ) is isolated from the mixing chamber ( 1111 ), and the first air inlet port ( 1112 ) is located closer to the reduction chamber ( 1116 ) relative to the second air inlet port ( 1113 ).
13 . The atomizer of claim 1 , further comprising a nozzle pad ( 113 ),
wherein the nozzle pad ( 113 ) is wrapped around a side of the nozzle body ( 111 ) provided with the suction port ( 1117 ); and wherein the nozzle pad ( 113 ) is provided with an avoiding port ( 1131 ), and the avoiding port ( 1131 ) is aligned with the suction port ( 1117 ).
14 . The atomizer of claim 1 , further comprising a nozzle cover ( 114 ),
wherein the nozzle cover ( 114 ) covers a side of the nozzle body ( 111 ) provided with the suction port ( 1117 ); and wherein an inner wall of the nozzle cover ( 114 ) is provided with a sealing plug ( 1141 ) inserted in the suction port ( 1117 ).
15 . The atomizer of claim 1 , wherein a gas flow of the first air inlet port ( 1112 ) entering the mixing chamber ( 1111 ) is greater than a gas flow of the second air inlet port ( 1113 ) entering the mixing chamber ( 1111 ).
16 . The atomizer of claim 1 , wherein the spoiler structure ( 200 ) comprises a rotating fan blade.
17 . The atomizer of claim 2 , wherein the spoiler plug ( 112 ) is made of a silicone material.
18 . The atomizer of claim 13 , wherein the nozzle pad ( 113 ) is made of a liquid silicone material.
19 . The atomizer of claim 10 , wherein the atomizer further comprises a power supply assembly ( 160 ), and the power supply assembly ( 160 ) is electrically connected to the first atomization assembly ( 142 ) and the second atomization assembly ( 152 ), respectively.
20 . The atomizer of claim 19 , wherein the power supply assembly ( 160 ) is configured to selectively provide electric energy to the first atomization assembly ( 142 ) and the second atomization assembly ( 152 ).Join the waitlist — get patent alerts
Track US2025366515A1 — get alerts on status changes and closely related new filings.
We store only your email — no account needed. See our privacy policy.