TECHNICAL FIELD
[0001] The present invention relates to electronic cigarettes, and particularly to an atomizer
and an electronic cigarette using same.
BACKGROUND ART
[0002] An atomizer for an electronic cigarette in related art includes: an opaque housing,
a solution reservoir arranged in the housing and integrally formed with the housing,
an atomizing device in the housing including a heating wire and an atomizing cup,
a solution guiding pipe configured for guiding a tobacco solution to the atomizing
device, and a mouthpiece cover at one end of the housing. One end of the solution
guiding pipe is inserted into the solution reservoir, while the other end of the solution
guiding pipe extends to the atomizing device. The tobacco solution flows from the
solution guiding pipe to the atomizing device. Electrical leads at two ends of the
heating wire are welded with a positive electrode and a negative electrode of the
atomizer, respectively.
[0003] The above described atomizer of the electronic cigarette has some shortages that
the solution guiding pipe has to be inserted into the solution reservoir through a
small hole, thus to assemble the solution guiding pipe is inconvenient, and the entire
configuration may be complicated. In addition, in order to prevent the tobacco solution
from leaking out, a precision of the small hole is highly required, which makes the
assembly more difficult.
[0004] What is needed, therefore, are an atomizer and an electronic cigarette using same,
which can overcome the above shortcomings.
SUMMARY
[0005] An exemplary atomizer includes a housing, a solution reservoir, and an atomizing
part. The housing defines an air inlet, an air outlet, and an air passage communicating
the air inlet and the air outlet. The solution reservoir is received in the housing
and is configured for reserving a tobacco solution. The atomizing part is configured
for atomizing the tobacco solution. The atomizing part includes an atomizing cup with
an atomizing cavity, and an atomizing unit received in the atomizing cavity. The atomizer
further includes a first solution guiding component between the solution reservoir
and the atomizing part. The first solution guiding component is configured for conveying
the tobacco solution from the solution reservoir to the atomizing cup for atomization.
The first solution guiding component includes a porous ceramic body. The tobacco solution
is absorbed and stored in the porous ceramic body, and is then conveyed to the atomizing
unit for atomization.
BRIEF DESCRIPTION OF THE DRAWINGS
[0006] Many aspects of the present disclosure can be better understood with reference to
the following drawings. The components in the drawings are not necessarily drawn to
scale, the emphasis instead being placed upon clearly illustrating the principles
of the present atomizer and electronic cigarette. Moreover, in the drawings, like
reference numerals designate corresponding parts throughout the several views.
FIG. 1 is a front view of an atomizer according to a first embodiment;
FIG. 2 is a top view of the atomizer of FIG. 1;
FIG. 3 is a cross-sectional view of the atomizer of FIG. 1 taken along the line A-A;
FIG. 4 is a structural view of a solution cup of FIG. 3;
FIG. 5 is a perspective exploded view of the atomizer of FIG. 1;
FIG. 6 is a front view of an atomizer according to a second embodiment;
FIG. 7 is a top view of the atomizer of FIG. 6;
FIG. 8 is a cross-sectional view of the atomizer of FIG. 6, taken along the line B-B;
and
FIG. 9 is a schematic view of an electronic cigarette according to a third embodiment
of the present utility model.
DETAILED DESCRIPTION
[0007] Embodiments of the present disclosure will now be described in detail below and with
references to the drawings.
[0008] Referring to FIGS. 1-2, an atomizer 11 for an electronic cigarette includes a housing
10, a mouthpiece cover 20 at one end of the housing 10. The mouthpiece cover 20 defines
an air outlet 201. Then referring to FIGS. 3 and 5, an atomizing part 60 for atomizing
a tobacco solution and a solution cup 31 are disposed in the housing 10. The solution
cup 31 defines a solution reservoir 30 for reserving the tobacco solution. The atomizing
part 60 includes an atomizing cup 62 with an atomizing cavity 621, and an atomizing
unit 61 arranged in the atomizing cavity 621. The housing 10 defines an air inlet
202, an aerosol outlet 102, and an air passage 101 communicating with the air inlet
202 and the aerosol outlet 102. The mouthpiece cover 20 is arranged at one end of
the housing 10 with the aerosol outlet 102. The air outlet 201 communicates with the
aerosol outlet 102. A first solution guiding component 40 is arranged between the
solution reservoir 30 and the atomizing part 60. The atomizing part 60 is configured
for conducting the tobacco solution from the solution reservoir 30 to the atomizing
cup 62, and is capable of preventing the tobacco solution from leaking out. In the
present embodiment, the first solution guiding component 40 is a porous ceramic body.
The first solution guiding component 40 absorbs the tobacco solution stored in the
solution reservoir 30 by capillary action, holds the tobacco solution, and prevents
the tobacco solution from leaking out. After the tobacco solution permeates the first
solution guiding component 40, the tobacco solution is stored in the first solution
guiding component 40, and is then provided to the atomizing unit 61 for atomization.
In the present embodiment, the solution cup 31 is substantially cylindrical, the air
passage 101 is a gap formed between the solution cup 31 and the housing 10, and the
first solution guiding component 40 is plate shaped.
[0009] Because the first solution guiding component 40 is arranged between the solution
reservoir 30 and the atomizing part 60, and the first solution guiding component 40
is made of porous ceramic, the first solution guiding component 40 can convey the
tobacco solution from the solution reservoir 30 to the atomizing cup 62 for atomization
by the capillary action due to porous characteristics. The first solution guiding
component 40 can prevent the tobacco solution in the solution reservoir 30 from leaking
out. Thus, the first solution guiding component 40 conducts the tobacco solution well,
and has the effect of preventing the tobacco solution from leaking out. Furthermore,
the present atomizer 11 has the advantage of simple assembly.
[0010] Referring to FIG. 3, a connecting tube 50 for fixing the solution cup 31 is fixed
in the housing 10. The atomizing part 60 is received in the connecting tube 50. Also
referring to FIG. 4, the solution reservoir 30 includes an opening end 301. The first
solution guiding component 40 is disposed in the opening end 301, and abuts against
one end of the atomizing cup 62 with the atomizing cavity.
[0011] A first electrode 70 and a second electrode 90, which are configured for connecting
to an external power source 12 (referring to FIG. 9), are further arranged in the
housing 10. An insulator 80 is disposed between the first electrode 70 and the second
electrode 80, and the insulator 80 makes the first electrode 70 insulated from the
second electrode 80. In the present embodiment, the insulator 80 is an insulated ring
nesting the second electrode 90, and is made of silica gel. The insulator 80 makes
the first electrode 70 not in contact with the second electrode 90. Referring to FIG.
5, the atomizing unit 61 includes a heating wire 612 and a second solution guiding
component 611. One end of the heating wire 612 is electrically connected to the first
electrode 70 of the atomizer 11, and the other end of the heating wire 612 is electrically
connected to the second electrode 90 of the atomizer 11. The second solution guiding
component 611 is in contact with the first solution guiding component 40 so that the
tobacco solution reserved in the first solution guiding component 40 is conveyed to
the heating wire 612 for atomization. In the present embodiment, the first electrode
70 is electrically connected to a negative electrode of the power source 12, and the
second electrode 90 is electrically connected to a positive electrode of the power
source 12. The first electrode 70 includes screws for connecting with the external
power source 12, and the screws are internal screws 701. The air inlet 202 is formed
in the second electrode 90.
[0012] In the present embodiment, the second solution guiding component 611 is made of glass
fiber, the housing 10 is made of a partially transparent housing, and the solution
cup 31 is made of transparent material. Because the quantity of the tobacco solution
in the solution reservoir 30 can be clearly seen through a transparent part of the
housing 10, it is prevented that the heating wire 612 keeps heating after the tobacco
solution is used up. In other embodiments, the second solution guiding component 611
may also be made of porous ceramic, and the entire solution cup 31 and the entire
housing 10 may be made of transparent material.
[0013] Referring to FIGS. 6-8, the present embodiment mainly differentiates the first embodiment
in that: an housing 10' and the solution cup 31 of the first embodiment are integrally
formed; a solution reservoir 30' has an annular structure, defines an air passage
101' centrally located within the solution reservoir 30', and the air passage 101'
functions similarly as the air passage 101; a first solution guiding component 40'
includes a porous ceramic body 402 and a cotton cloth 404 formed on the bottom of
the porous ceramic body 402. The cotton cloth can further prevent the tobacco solution
from leaking out. In the present embodiment, screws for connecting the external power
source 12 are external screws 702. The housing 10' is an entirely transparent shell.
The mouthpiece cover 20' is made of semi-transparent material.
[0014] Referring to FIG. 9, an electronic cigarette includes an atomizer 11 according to
the first embodiment, and a power source 12. The atomizer 11 and the power source
12 are connected via screw threads. The power source 12 is configured for supplying
power for the atomizer 11. In other embodiments, the atomizer 11 can also be replaced
by the atomizer 10' as described in the second embodiment.
[0015] It is understood that the above-described embodiments are intended to illustrate
rather than limit the disclosure. Variations may be made to the embodiments and methods
without departing from the spirit of the disclosure. Accordingly, it is appropriate
that the appended claims be construed broadly and in a manner consistent with the
scope of the disclosure.
1. An atomizer for an electronic cigarette, comprising:
a housing defining an air inlet, an air outlet, and an air passage communicating the
air inlet and the air outlet;
a solution reservoir received in the housing and configured for reserving tobacco
solution; and
an atomizing part configured for atomizing the tobacco solution, the atomizing part
comprising an atomizing cup with an atomizing cavity, and an atomizing unit received
in the atomizing cavity;
wherein the atomizer further comprises a first solution guiding component positioned
between the solution reservoir and the atomizing part, the first solution guiding
component is configured for conveying the tobacco solution from the solution reservoir
to the atomizing cup for atomization, the first solution guiding component comprises
a porous ceramic body, the tobacco solution is absorbed and stored in the porous ceramic
body, and is then conveyed to the atomizing unit for atomization.
2. The atomizer of claim 1, wherein the solution reservoir comprises an opening end facing
the atomizing cup, the first solution guiding component is disposed in the opening
end, and abuts against one end of the atomizing cup with the atomizing cavity.
3. The atomizer according to any of claims 1-2, wherein the atomizing unit comprises
a second solution guiding component and a heating wire in contact with the second
solution guiding component, and the second solution guiding component contacts the
first solution guiding component, so that the tobacco solution is conveyed to the
heating wire for atomization.
4. The atomizer of claim 3, wherein the second solution guiding component is made of
a glass fiber material.
5. The atomizer of claim 3, further comprising a first electrode and a second electrode
arranged in the housing, wherein two opposite ends of the heating wire are connected
with the first and the second electrodes respectively, the first and the second electrodes
are configured for electrically connecting to an external power source.
6. The atomizer according to any of claims 1-5, further comprising a solution cup in
the housing, wherein the solution reservoir is formed by the solution cup, and the
air passage is a gap between the solution cup and the housing.
7. The atomizer of claim 6, further comprising a connecting tube fixed in the housing,
wherein the connecting tube is configured for fixing the solution cup, and the atomizing
part is received in the connecting tube.
8. The atomizer of claim 1, wherein the solution reservoir has an annular structure,
the air passage is centrally defined within the solution reservoir.
9. The atomizer of claim 1, wherein the housing and the solution cup are integrally formed.
10. The atomizer according to any of claims 1-9, wherein the first solution guiding component
further comprises a cotton cloth formed on a bottom of the porous ceramic body.
11. The atomizer according to any of claims 1-10, wherein the housing is partially transparent.
12. An electronic cigarette, comprising:
an atomizer; and
a power source configured for supplying power to the atomizer, the atomizer comprising:
a housing, the housing defining an air inlet, an air outlet, and an air passage communicating
the air inlet and the air outlet;
a solution reservoir received in the housing and configured for reserving tobacco
solution; and
an atomizing part configured for atomizing the tobacco solution, the atomizing part
comprising an atomizing cup with an atomizing cavity, and an atomizing unit received
in the atomizing cavity;
wherein the atomizer further comprises a first solution guiding component between
the solution reservoir and the atomizing part, the first solution guiding component
is configured for conveying the tobacco solution from the solution reservoir to the
atomizing cup for atomization, the first solution guiding component comprises a porous
ceramic body, the tobacco solution is absorbed and stored in the porous ceramic body,
and is then conveyed to the atomizing unit for atomization.
13. The electronic cigarette of claim 12, wherein the solution reservoir comprises an
opening end facing the atomizing cup, the first solution guiding component is disposed
in the opening end, and abuts against one end of the atomizing cup with the atomizing
cavity.
14. The electronic cigarette according to any of claims 12-13, wherein the atomizing unit
comprises a second solution guiding component and a heating wire in contact with the
second solution guiding component, and the second solution guiding component contacts
the first solution guiding component, so that the tobacco solution is conveyed to
the heating wire for atomization.
15. The electronic cigarette of claim 14, wherein the second solution guiding component
is made of glass fiber material.