Atomizer and electronic atomization device
Abstract
An atomizer of an electronic atomization device includes: a housing provided with a liquid storage chamber for storing liquid and a liquid outlet channel communicated with the liquid storage chamber; an atomization component mounted on the housing, the liquid storage chamber being capable of supplying liquid to the atomization component through the liquid outlet channel; and an on-off component connected to the housing and having a first station and a second station. When the on-off component is located at the first station, the on-off component blocks the liquid outlet channel, and when the on-off component is located at the second station. the on-off component opens the liquid outlet channel. An electronic atomization device is further provided.
Claims
exact text as granted — not AI-modifiedWhat is claimed is:
1 . An atomizer of an electronic atomization device, the atomizer comprising:
a housing provided with a liquid storage chamber for storing liquid and a liquid outlet channel communicated with the liquid storage chamber; an atomization component mounted on the housing, the liquid storage chamber being capable of supplying liquid to the atomization component through the liquid outlet channel; and an on-off component connected to the housing and having a first station and a second station; when the on-off component is located at the first station, the on-off component blocking the liquid outlet channel; and when the on-off component is located at the second station, the on-off component opening the liquid outlet channel.
2 . The atomizer according to claim 1 , wherein the housing comprises a body portion and an isolation portion connected to each other, the isolation portion and the body portion define a first chamber and a second chamber, the atomization component is partially received in the first chamber, and a remaining part of the first chamber except a space for receiving the atomization component forms the liquid storage chamber; and the on-off component is arranged in the second chamber.
3 . The atomizer according to claim 2 , wherein the on-off component is rotatably arranged in the second chamber.
4 . The atomizer according to claim 2 , wherein the on-off component slidably engages with the second chamber, the second chamber is a cylindrical chamber, and the on-off component comprises a cylindrical slide bar.
5 . The atomizer according to claim 4 , wherein the on-off component further comprises a sealing member, the sealing member being embedded into the slide bar and capable of abutting between the slide bar and an inner wall of the second chamber.
6 . The atomizer according to claim 4 , wherein the on-off component further comprises a handle, the handle is connected to the slide bar and configured to push the slide bar to move, the body portion is provided with an air inlet communicating the second chamber with the outside, and the handle passes through the air inlet.
7 . The atomizer according to claim 6 , wherein when the on-off component is located at the first station, the slide bar blocks the air inlet.
8 . The atomizer according to claim 2 , wherein the body portion is provided with an air outlet communicating the second chamber with the outside, and during movement of the on-off component from the first station to the second station, air in the second chamber is discharged from the air outlet.
9 . The atomizer according to claim 1 , wherein the atomization component is provided with a liquid suction chamber communicated with the liquid outlet channel, and the atomization component is capable of atomizing liquid in the liquid suction chamber.
10 . The atomizer according to claim 9 , wherein the atomization component comprises an atomizing core and is provided with a first airflow channel, the atomizing core defines a partial boundary of the liquid suction chamber and has an atomizing surface capable of atomizing liquid, the first airflow channel passes through the atomizing surface, and the atomizing core defines a surface of the boundary of the liquid suction chamber to be recessed toward the atomizing surface to form a buffer chamber communicated with the liquid suction chamber.
11 . The atomizer according to claim 10 , wherein a size of a cross section of the buffer chamber decreases along a direction of the liquid suction chamber pointing to the first airflow channel.
12 . The atomizer according to claim 9 , wherein the atomization component further comprises a base and a top cover connected to each other, the atomizing core and the top cover define the liquid suction chamber, the base is provided with a first step surface, the top cover is provided with a second step surface arranged opposite to the first step surface, and the atomizing core is sandwiched between the first step surface and the second step surface.
13 . The atomizer according to claim 12 , wherein the atomization component further comprises a silicon gel sleeve, the atomizing core is sleeved with the silicon gel sleeve and the silicon gel sleeve abuts between the first step surface and the second step surface.
14 . The atomizer according to claim 1 , wherein the electronic atomization device comprises a sensing component, the housing and the atomization component are each provided with a suction channel communicated with the outside, the atomization component is provided with a sensing channel capable of being communicated with the suction channel, and negative pressure in the suction channel is sensed by the sensing component through the sensing channel; and
when the on-off component is located at the first station, the on-off component closes the sensing channel to isolate the suction channel from the sensing channel, and the sensing component stops sensing the negative pressure in the suction channel; and when the on-off component is located at the second station, the sensing channel is communicated with the suction channel, and the sensing component is capable of sensing the negative pressure in the suction channel.
15 . The atomizer according to claim 14 , wherein the on-off component is provided with a jack, the atomization component is provided with an insertion portion, and a communicating port of the sensing channel and the suction channel is arranged on the insertion portion; when the on-off component is located at the first station, the insertion portion engages with the jack, and a bottom wall of the jack blocks the communicating port; and when the on-off component is located at the second station, the bottom wall of the jack stops blocking the communicating port.
16 . The atomizer according to claim 15 , wherein the on-off component is further provided with a guide groove communicating the jack with the suction channel, and the insertion portion is further provided with a guide piece capable of engaging with the guide groove.
17 . The atomizer according to claim 14 , wherein the sensing component is arranged at a position of the atomization component close to the sensing channel.
18 . An electronic atomization device, comprising: a battery component, a sensing component, and the atomizer according to claim 1 , the battery component being connected to the atomizer.
19 . The electronic atomization device according to claim 18 , wherein the sensing component comprises an airflow sensor, the airflow sensor being arranged on the battery component or the atomizer.
20 . The electronic atomization device according to claim 18 , wherein an end portion of the battery component away from the atomizer is provided with a charging interface for charging.Join the waitlist — get patent alerts
Track US2025204600A1 — get alerts on status changes and closely related new filings.
We store only your email — no account needed. See our privacy policy.