ELECTRONIC CIGARETTE
20200253277 ยท 2020-08-13
Inventors
Cpc classification
H01M10/46
ELECTRICITY
A24F40/40
HUMAN NECESSITIES
H01M10/425
ELECTRICITY
F22B1/284
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
A24F40/90
HUMAN NECESSITIES
A61M15/0015
HUMAN NECESSITIES
Y02E60/10
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
H01M50/213
ELECTRICITY
H01M50/247
ELECTRICITY
H02J7/00
ELECTRICITY
H01M10/0525
ELECTRICITY
H01M10/488
ELECTRICITY
H01M50/284
ELECTRICITY
H01M2220/30
ELECTRICITY
H05B3/06
ELECTRICITY
H01M50/202
ELECTRICITY
International classification
A24F40/40
HUMAN NECESSITIES
H01M10/42
ELECTRICITY
H02J7/00
ELECTRICITY
F22B1/28
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
H01M10/48
ELECTRICITY
H01M10/46
ELECTRICITY
H01M10/0525
ELECTRICITY
H05B3/06
ELECTRICITY
Abstract
An electronic cigarette includes a battery assembly and an atomizer assembly within a housing with the battery assembly electrically connected to the atomizer assembly. The housing has one or more air inlets. A liquid storage component is in contact with a porous component of the atomizer assembly, with the porous component having a run-through hole. A heating wire is in an air flow path through the run-through hole.
Claims
1. A vaporizing device comprising: a cylindrical housing having a central longitudinal axis; an atomizer in the cylindrical housing, the atomizer having a chamber formed by an elongated hollow porous component having first and second open ends; the chamber co-axial with the central longitudinal axis of the cylindrical housing; a heating coil inside the chamber, the heating coil wound around an axis parallel to and co-axial with the central longitudinal axis of the cylindrical housing; the cylindrical housing having at least one inlet and an outlet; an air flow path from the inlet to the outlet; and the atomizer between the inlet and the outlet to allow air to pass through the elongated hollow porous component from the first open end to the second open end and along the heating coil.
2. The vaporizing device of claim 1 wherein the chamber is cylindrical.
3. The vaporizing device of claim 2 wherein the diameter of the first open end is equal to the diameter of the second open end, and the diameter of the chamber is equal to the diameter of the first and second open ends.
4. The vaporizing device of claim 1 wherein the elongated hollow porous component comprises a fiber material or a ceramic material.
5. The vaporizing device of claim 4 wherein the heating coil has a diameter less than the diameter of the chamber.
6. The vaporizing device of claim 1 further including an LED operating indicator in the housing.
7. The vaporizing device of claim 1 further including a rechargeable battery in the housing, the battery electrically connectable to the heating coil.
8. The vaporizing device of claim 7 wherein the battery has a charging slot or a charging plug.
9. The vaporizing device of claim 1 further comprising a battery assembly in the housing, the battery assembly including a battery and an airflow sensor electrically connected to an electronic circuit board.
10. The vaporizing device of claim 1 further comprising a liquid storage component in the housing.
11. The vaporizing device of claim 10 wherein the liquid storage component contains a liquid and is positioned to provide the liquid to the elongated hollow porous component.
12. The vaporizing device of claim 10 wherein the liquid storage component comprises a detachable bottle assembly.
13. The vaporizing device of claim 10 further comprising a restriction component at one end of the elongated hollow porous component, the restriction component having a restriction hole having a diameter less than the diameter of the chamber.
14. The vaporizing device of claim 13 wherein the restriction component is detachable.
15. The vaporizing device of claim 11 further comprising a disc-shaped plate at the first open end of the elongated hollow porous component, the disc-shaped plate supporting the heating coil.
16. The vaporizing device of claim 15 with the disc-shaped plate supporting the elongated hollow porous component on the central longitudinal axis.
17. A vaporizing device comprising: a cylindrical housing having a central longitudinal axis; an atomizer in the cylindrical housing, the atomizer having a cylindrical chamber formed by an elongated hollow porous component having first and second open ends, the first and second open ends having the same diameter, and the chamber having a diameter equal to the diameter of the first and second open ends; the chamber co-axial with the central longitudinal axis of the cylindrical housing; a heating coil inside the chamber, the heating coil wound around an axis parallel to and co-axial with the central longitudinal axis of the cylindrical housing, the heating coil having a diameter less than the diameter of the chamber; the cylindrical housing having at least one inlet and an outlet; an air flow path from the inlet to the outlet; and the atomizer between the inlet and the outlet to allow air to pass through the elongated hollow porous component from the first open end to the second open end and along the heating coil.
18. The vaporizing device of claim 18 further comprising a battery assembly in the cylindrical housing, the battery assembly including a battery and an airflow sensor electrically connected to an electronic circuit board.
19. A vaporizing device comprising: a cylindrical housing having a central longitudinal axis; an atomizer in the cylindrical housing, the atomizer having a cylindrical chamber formed by an elongated hollow porous component having first and second open ends, the first and second open ends having the same diameter, and the chamber having a diameter equal to the diameter of the first and second open ends; the chamber co-axial with the central longitudinal axis of the cylindrical housing; a heating coil inside the chamber, the heating coil wound around an axis parallel to and co-axial with the central longitudinal axis of the cylindrical housing, the heating coil having a diameter less than the diameter of the chamber; the cylindrical housing having at least one inlet and an outlet; an air flow path from the inlet to the outlet; and the atomizer between the inlet and the outlet to allow air to pass through the elongated hollow porous component from the first open end to the second open end and along the heating coil.
20. The vaporizing device of claim 19 further comprising a restriction component at one end of the elongated hollow porous component, the restriction component having a restriction hole having a diameter less than the diameter of the chamber.
Description
DESCRIPTION OF DRAWINGS
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SPECIFIC MODE FOR CARRYING OUT THE INVENTION
[0034] As shown in
[0035] In this specific embodiment, the battery assembly includes the battery, and the operating indicator (1), electronic circuit board (4), and airflow sensor (5), which are connected with the battery. It also includes a check valve (7). The signal output of the airflow sensor (5) is connected with the said electronic circuit board (4). The battery is a rechargeable battery (3), which may be either a rechargeable polymer lithium ion battery or a rechargeable lithium ion battery. The airflow sensor (5) may be alternatively a semiconductor force-sensitive chip capacitance sensor or an inductance sensor.
[0036] The rechargeable battery (3) has a flexibly connected charging plug (2). The blades (21) of the charging plug (2) come out of the other end of the shell (a). Between the charging plug (2) and rechargeable battery (3) is a spring (6), which lies against the body of the rechargeable battery (3) on one end, while its free end lies against the charging plug (2), forming a flexible structure, which buffers the charging plug (2) when plugged for charging, thus protecting the rechargeable battery against any damage. Of course, the rechargeable battery (3) in this embodiment has a charging slot on it, which replaces the structure of charging plug (2) to perform the charging function and protect the rechargeable battery (3) against any damage. The operating indicator (1) is a LED. In this embodiment, there are two LEDs. The electronic circuit board (4) includes an electronic switch circuit, which controls the electric circuit according to the input signals, so that the rechargeable battery (3) electrifies the electric heating rod (82) inside the atomizer (8) and the LEDs as well.
[0037] As shown in
[0038] As shown in
[0039] As shown in
[0040] The heating wire is made of platinum wire, nickel-chromium alloy wire or iron-chromium alloy wire containing rare earth, or is flaked. The electric heating rod (82) may alternatively have on its peripheral wall the heating layer made of electrically conductive ceramic PTC material, to replace the heating wire.
[0041] In this embodiment, the battery assembly and atomizer assembly are mutually connected and then installed inside the integrally formed shell (a) to form a one-piece part. The rechargeable battery (3) may be charged without frequent change of battery. The user just needs to plug the cigarette bottle assembly into the open end of the shell (a), for easy use and very easy change.
[0042] As shown in
[0043] As shown in
[0044] As shown in
[0045] In the meantime, the electric heating rod (82) is electrified by the rechargeable battery (3) under the control of electronic circuit board (4), to heat the fine drops for atomization. After atomization, the big-diameter fine drops are re-absorbed by the porous component (81) under the action of vortex, while the small-diameter fine drips are suspended in the airflow to form aerosol, which is discharged through the negative pressure cavity (83) and run-through hole (813), flows into the cigarette holder shell (b) of the cigarette bottle assembly, and is absorbed by the air channel (b1). When the aerosol enters the cigarette holder shell (b), multiple small liquid drops are condensed into bigger ones, which fall into the clearance between the cigarette holder shell (b) and air channel (b1) without being absorbed by the air channel (b1). The perforated component for liquid storage (9) of the cigarette bottle assembly and the porous component (81) of the atomizer (8) contact each other to achieve the capillary impregnation for liquid supply.
[0046] The unit and its connecting structure of this invention may also be loaded with drugs for delivery to the lung.
[0047] As shown in
[0048] As shown in
[0049] In the second preferred embodiment, a restriction component (10), which is detachable, is set on one end of the porous component (81). There is a restriction hole (101) on the body of the restriction component (10). The restriction hole (101) corresponds to the atomizing chamber (811). The pore diameter of the restriction hole is less than the inner diameter of the atomizing chamber (811) to the extent that the size of the restriction component (10) installed on the porous component (81) varies, for the purpose of airflow capacity control. On the basis of different applications, the restriction component of different sizes and pore diameters may be used.
[0050] In the third preferred embodiment of this utility model, as shown in 11 and 12, on the outer peripheral wall of the cigarette shell (b), there is a protruding rib (b2) that is evenly partitioned. The perforated component for liquid storage (9) enters the cigarette holder shell (b) and lies against the protruding rib (b2). Thus, there appears a clearance between the outer peripheral surface of the perforated component for liquid storage (9) and the interior wall of the shell (b). The clearance is for connection the shell (a) and cigarette holder shell (b). When the user smokes, the air channel (b1) absorbs the air to cause airflow inside the shell (a), thus triggering the airflow sensor (5) and eventually starting the electronic cigarette. Also, the atomizer (8) works to atomize the cigarette liquid and produce gas flow, which enters the cigarette holder shell (b).
[0051] In the fourth preferred embodiment, as shown in
[0052] In the fifth preferred embodiment, as shown in
[0053] In the sixth preferred embodiment, as shown in