This application claims priority to Chinese Patent Application No. 202310258860.4 filed Mar. 8, 2023, the disclosure of which is incorporated herein by reference in its entirety.
The present disclosure relates to the technical field of electronic smoking sets, and for example, to an atomizing device and an electronic cigarette.
The electronic cigarette heats and atomizes the tobacco to generate smoke, through which the user can taste a smell similar to a regular cigarette. In this process, the tobacco does not burn. Since the smoke generated by the electronic cigarette does not have harmful substances in regular cigarettes such as tar and suspended particles, the electronic cigarette is favored by a large number of users.
The electronic cigarette heats the tobacco through an atomizing device. Specifically, the atomizing device includes a housing, a heating element mounted in the housing and a tobacco chamber for accommodating the tobacco, and the heating element is disposed around the tobacco chamber in a circle. One end of the housing has an air inlet, air enters the housing through the air inlet and is heated by the heating element, and the heated air flows through the tobacco from one end of the tobacco and into the mouth of the user. Since the tobacco is a loose porous medium, the heated air can smoothly flow through the tobacco.
However, since the heating element is disposed close to the housing, the heat generated by the heating element is transferred to the housing, leading to a too-high temperature of the housing which easily scalds the user when the user grasps the housing. Therefore, the electronic cigarette is inconvenient for the user to grasp and has low safety.
The present disclosure provides an atomizing device and an electronic cigarette.
The atomizing device includes a housing, a divider and a heating element.
The housing includes a housing body and a tail cap connected to one end of the housing body, and the tail cap has a first air inlet hole, a second air inlet hole and an air outlet hole.
The divider is of a cylindrical shape and disposed inside the housing body, a first air passage is formed between the housing body and an outer side wall of the divider, and the first air passage communicates with the first air inlet hole.
The heating element is disposed in the divider, a second air passage is formed between the heating element and an inner side wall of the divider, the heating element has a middle air passage, the second air passage communicates with the second air inlet hole, the middle air passage communicates with the air outlet hole, the first air passage and the second air passage separately communicate with the middle air passage, and the middle air passage is configured to accommodate a to-be-atomized object.
In an embodiment of the present disclosure, multiple first air inlet holes are provided, and the multiple first air inlet holes are equiangularly distributed in a circular matrix around the air outlet hole.
Multiple second air inlet holes are provided, and the multiple second air inlet holes are equiangularly distributed in a circular matrix around the air outlet hole.
In an embodiment of the present disclosure, the divider includes a dividing cylinder and a dividing plate fixedly connected to one end of the dividing cylinder, the first air passage is formed between the housing body and an outer side wall of the dividing cylinder, the second air passage is formed between the heating element and an inner side wall of the dividing cylinder, a head cap is connected to the other end of the housing body, a confluence chamber is formed between the dividing plate and the head cap, the dividing plate has multiple fourth through holes communicating with the second air passage and multiple fifth through holes communicating with the middle air passage, the first air passage communicates with the confluence chamber, the second air passage communicates with the confluence chamber through the multiple fourth through holes, and the middle air passage communicates with the confluence chamber through the multiple fifth through holes.
In an embodiment of the present disclosure, the housing further includes a support plate disposed in the confluence chamber and fixedly connected to an inner wall of the housing body, the support plate has multiple first flow-dividing holes communicating with the first air passage, multiple second flow-dividing holes communicating with the second air passage and a third flow-dividing hole communicating with the middle air passage, and the multiple second flow-dividing holes are in one-to-one correspondence with the multiple fourth through holes.
In an embodiment of the present disclosure, a side of the dividing plate facing the support plate has a protruding cylinder and multiple protruding blocks, the protruding cylinder extends into the third flow-dividing hole and is in contact with or connected to a hole wall of the third flow-dividing hole, the middle air passage communicates with the protruding cylinder, the multiple protruding blocks abut the support plate, and the other end of the dividing cylinder abuts the tail cap.
In an embodiment of the present disclosure, the heating element includes a support of a cylindrical shape, an electromagnetic induction coil wound around an outside of the support and an induction heating body fixedly disposed on an inside of the support, the second air passage is formed between the support, the electromagnetic induction coil and the inner side wall of the divider, the induction heating body has the middle air passage, and the induction heating body is configured to be capable of generating a corresponding eddy current and radiating heat under a magnetic field formed by the electromagnetic induction coil.
In an embodiment of the present disclosure, the induction heating body includes a metal core and a Teflon sleeve enclosing an outer surface of the metal core, and the Teflon sleeve is limited in the support.
In an embodiment of the present disclosure, one of the inner wall of the housing body and an outer wall of the divider has a first positioning recess, the other one of the inner wall of the housing body and the outer wall of the divider has a first positioning protrusion, and the first positioning protrusion is configured to be placed in the first positioning recess.
One of an inner wall of the divider and an outer wall of the heating element has a second positioning recess, the other one of the inner wall of the divider and the outer wall of the heating element has a second positioning protrusion, and the second positioning protrusion is configured to be placed in the second positioning recess.
In an embodiment of the present disclosure, the tail cap has multiple third positioning protrusions, the inner wall of the housing body has multiple third positioning recesses, the plurality of third positioning recesses are in one-to-one correspondence with the multiple third positioning protrusions, and one of the multiple third positioning protrusions is configured to be placed in a respective one of the multiple third positioning recesses.
Each of at least one positioning protrusion of the plurality of third positioning protrusions is fixedly connected to a fourth positioning protrusion, the inner wall of the housing body has a fourth positioning recess corresponding to the fourth positioning protrusion, the divider has a fifth positioning recess corresponding to the fourth positioning protrusion, a part of the fourth positioning protrusion is configured to be placed in the fourth positioning recess, and another part of the fourth positioning protrusion is configured to be placed in the fifth positioning recess.
An embodiment of the present disclosure provides an electronic cigarette including any one of the preceding atomizing devices.
To make solved problems, adopted technical solutions and achieved effects of the present disclosure more apparent, the technical solutions of the present disclosure are described hereinafter in conjunction with drawings and embodiments. It is to be understood that the specific embodiments set forth below are intended to illustrate and not to limit the present disclosure. In addition, it should be noted that for ease of description, only part, instead of all, related to the present disclosure is illustrated in the drawings.
In the description of the present disclosure, unless otherwise expressly specified and limited, the term “connected to each other”, “connected” or “fixed” is to be construed in a broad sense, for example, as fixedly connected, detachably connected or integrated; mechanically connected or electrically connected; directly connected to each other or indirectly connected to each other via an intermediary; or internal connection between two components or interaction relations between two components. For those of ordinary skill in the art, specific meanings of the preceding terms in the present disclosure may be construed based on specific situations.
In the present disclosure, unless otherwise expressly specified and limited, when a first feature is described as “above” or “below” a second feature, the first feature and the second feature may be in direct contact or be in contact via another feature between the two features. Moreover, when the first feature is described as “on”, “above” or “over” the second feature, the first feature is right on, above or over the second feature, or the first feature is obliquely on, above or over the second feature, or the first feature is simply at a higher level than the second feature. When the first feature is described as “under”, “below” or “underneath” the second feature, the first feature is right under, below or underneath the second feature or the first feature is obliquely under, below or underneath the second feature, or the first feature is simply at a lower level than the second feature.
In the description of this embodiment, the orientation or position relationships indicated by terms “above”, “below”, “right” and the like are based on the orientation or position relationships shown in the drawings. These orientations or position relationships are merely for ease of description and simplifying an operation and do not indicate or imply that the referred device or element has a specific orientation and is constructed and operated in a specific orientation. Thus, these orientations or position relationships are not to be construed as limiting the present disclosure. In addition, the terms “first” and “second” are used only to distinguish between descriptions and have no special meaning.
An embodiment provides an atomizing device. The temperature of the circumferential outer surface of the atomizing device is ensured to be relatively low, so that the probability of scalding the user is reduced, the grip by the user is facilitated, and thus the atomizing device has relatively high safety.
As shown in
The housing 1 includes a housing body 11 of a cylindrical shape and a head cap 12 and a tail cap 13 which are connected to two ends of the housing body 11, respectively. In an embodiment, the head cap 12 is hermetically connected to one end of the housing body 11, and the tail cap 13 is hermetically connected to the other end of the housing body 11. As shown in
As shown in
With continued reference to
The atomizing device provided in the embodiment is used as below. As shown in
According to the atomizing device provided in the embodiment, the first air inlet hole 131 communicates with the first air passage 10, the second air inlet hole 132 communicates with the second air passage 20, and the first air passage 10 and the second air passage 20 both communicate with the middle passage 30 so that both the first air passage 10 and the second air passage 20 are used for air entering. In this manner, parallel air entering through the first air passage 10 and the second air passage 20 is achieved; parallel air entering of the atomizing device can carry away the heat which may be transmitted to the housing body 11, and the divider 2 can also absorb part of the heat, so that the thermal resistance between the heating element 3 and the housing body 11 is increased, and relatively less heat is transmitted to the housing body 11; therefore, the temperature of the housing body 11 is ensured to be relatively low, the probability of scalding the user is reduced, the grip by the user is facilitated, and thus the atomizing device has relatively high safety.
In an embodiment, as shown in
In an embodiment, as shown in
In an embodiment, the first air inlet holes 131 and the second air inlet holes 132 are all bar-shaped holes or arc-shaped holes extending along a circumferential direction of the housing body 11.
In an embodiment, as shown in
Moreover, a confluence chamber 40 is formed between the dividing plate 22 and the head cap 12, the dividing plate 22 has multiple fourth through holes 221 communicating with the second air passage 20 and multiple fifth through holes 222 communicating with the middle air passage 30, the first air passage 10 communicates with the confluence chamber 40, the second air passage 20 communicates with the confluence chamber 40 through the multiple fourth through holes 221, and the middle air passage 30 communicates with the confluence chamber 40 through the multiple fifth through holes 222. The air in the first air passage 10 and the air in the second air passage 20 both enter the confluence chamber 40 and flow into the middle air passage 30 through the confluence chamber 40. The arrangement of the confluence chamber 40 enables the air in the first air passage 10 to be sufficiently mixed with the air in the second air passage 20, so that the temperature of the air entering the middle air passage 30 is prevented from being too low, and thus the atomization effect is improved.
In an embodiment, as shown in
In an embodiment, as shown in
The heating element 3 may be a heating device in the related art. The embodiment provides a heating element 3. As shown in
In an embodiment, the head cap 12 further has a first electrode hole, the support plate 4 further has a second electrode hole, and the dividing plate 22 further has a third electrode hole. The atomizing device further includes electrodes 5 penetrating the first electrode hole, the second electrode hole and the third electrode hole in sequence, and the electrodes 5 are electrically connected to the electromagnetic induction coil 32 and are configured to transmit electric energy.
In an embodiment, as shown in
In an embodiment, one of the inner wall of the housing body 11 and an outer wall of the divider 2 has a first positioning recess 111, the other one of the inner wall of the housing body 11 and the outer wall of the divider 2 has a first positioning protrusion 23. The first positioning protrusion 23 is configured to be placed in the first positioning recess 111 for positioning assembly of the housing body 11 with the divider 2 and also for circumferential limiting on the divider 2 by the housing body 11. As shown in
In addition, one of an inner wall of the divider 2 and an outer wall of the heating element 3 has a second positioning recess 24, and the other one of the inner wall of the divider 2 and the outer wall of the heating element 3 has a second positioning protrusion 34. The second positioning protrusion 34 is configured to be placed in the second positioning recess 24 for positioning assembly of the divider 2 with the heating element 3 and for circumferential limiting on the heating element 3 by the divider 2. As shown in
In an embodiment, as shown in
In an embodiment, as shown in
The atomizing device provided in the above embodiments has beneficial effects described below.
1) The atomizing device has low air resistance. The tail end of the atomizing device has multiple external air inlet vents, that is, multiple first air inlet holes 131 and multiple second air inlet holes 132. Each layer of air vents are equiangularly distributed in a circular matrix. At the head end, all the air flows converge in the confluence chamber 40 and enter the middle air passage 30, and finally the gas generated by heating the heat-not-burn tobacco or herb flows uniformly from the surface of the loose porous medium to the mouth, having the negative air pressure, of the consumer.
2) The atomizing device has no heating on the external surface. The first air passage 10 and the second air passage 20 form multiple layers of air flows, and the multiple layers of internal air flows can completely carry away the heat that may be transmitted to the housing body 11, fully ensuring that the circumferential outer surface of the housing body 11 is approximately at a normal temperature.
3) The atomizing device has the effect that sufficient heating and no burning. The electromagnetic field eddy current generated by the electromagnetic induction coil 32 which is electrified generates an electromagnetic induction heating effect with the metal core 331 of the induction heating body 33 in the middle. According to the heating principle, the surface temperature of the induction heating body 33 can be substantially constant and the junction temperature in the center of the induction heating body 33 can be relatively high. Since the current can be controlled and output very accurately, the temperature generated by the electromagnetic induction heating effect can be finely controlled and thus precise temperature control can be achieved. In summary, substantially-equivalent heating effects can be obtained by heating both the surface and the center of the heat-not-burn tobacco or herbal, and the disadvantage of poor heating effect of the center can be prevented.
The embodiment two differs from embodiment one in that the structure of the divider 2 is different.
In the embodiment, the divider 2 includes multiple dividing cylinders which are coaxially sleeved with each other and a dividing plate connected to an end of the multiple dividing cylinders. Inner diameters of the multiple dividing cylinders are different, and a dividing air passage can be formed between two adjacent dividing cylinders. The tail cap 13 further has a third air inlet hole communicating with the dividing air passage. The dividing plate has a hole structure communicating with the dividing air passage. The dividing air passage communicates with the middle air passage 30 through the hole structure. Air enters the dividing air passage through the third air inlet hole, absorbs heat emitted by the heating element 3 in the dividing air passage, flows out through the hole structure and flows into the middle air passage 30. It is to be noted that a confluence chamber may be formed between the dividing plate and the head cap 12, the air flowing out from the hole structure enters the confluence chamber and is mixed with the air flowing out from the first air passage 10 and the air flowing out from the second air passage 20, and the mixed air enters the middle air passage 30. It is to be noted that a first air passage 10 is formed between an outer cylinder and the housing body 11, and a second air passage 20 is formed between an inner cylinder and the housing body 11. Multiple dividing cylinders are disposed, so that at least one dividing air passage can be formed, the air in the dividing air passage can absorb the heat emitted by the heating element 3, and thus the temperature of the housing body 11 is further reduced.
Other structures of the embodiment are the same as the corresponding structures of Embodiment one and have the same beneficial effects, which are not repeated in the embodiment.
The embodiment provides an electronic cigarette including any one of the atomizing devices described in embodiment one and embodiment two. The electronic cigarette provided in the embodiment has a better heating effect, and the temperature of the circumferential surface of the electronic cigarette is relative low, so that the user will not be burned, and thus the electronic cigarette has relatively high safety and comfort.
Number | Date | Country | Kind |
---|---|---|---|
202310258860.4 | Mar 2023 | CN | national |