The utility model relates to the field of electronic smoke
The utility model relates to the field of electronic smoke, in particular to an electromagnetic heating electronic smoke.
Background technology:
there are dozens of carcinogens in the smoke of tobacco combustion, such as tar, which will cause great harm to human health. Moreover, the smoke diffuses in the air, forming second-hand smoke, and the people around will cause harm to the body after inhalation. Therefore, smoking is prohibited in most public places. Therefore, in order to meet the needs of some smokers, e-cigarettes should be born in the market.
The early heating mode of electronic smoke on the market is heating by electric heating wire. The disadvantages of heating by electric heating wire are slow reaction speed, low conduction efficiency, and inaccurate temperature control, which may lead to burning and other peculiar smell in the smoke. Chinese patent document cn201420564863.7 discloses "electronic smoke and atomizer". Its coil generates high-frequency current and high-speed changing magnetic field at the same time. Magnetic metal heater generates eddy current and heat in the magnetic field, so as to atomize the smoke oil.
At present, the existing electronic smoke structure of electromagnetic induction heating in the market is generally to fix the electromagnetic induction coil on the atomizer, and connect with the battery part through the wire or thread. In this way, the structure of electronic cigarette atomizer becomes complex, its volume is large and its shape design is limited.
Technical implementation elements:
the technical problem to be solved by the utility model is to overcome the shortcomings of the prior art, and to provide an electromagnetic heating electronic smoke with simple structure and small volume of atomizer.
In order to solve the above technical problems, this paperThe technical scheme adopted by the new type is as follows: an electromagnetic heating electronic cigarette is provided with an atomizing component and a battery component, the atomizing component is provided with a hollow oil guide material, the inner side of the oil guide material is provided with a metal mesh; the top of the battery component is provided with a concave cup body, and the sensing coil is arranged around the cup body; the tail end of the atomizing component is contained in the cup body.
The atomization component has a hollow atomization sleeve, a vent pipe is arranged in the center of the atomization component, an oil storage cavity is arranged between the atomization sleeve and the vent pipe, an air inlet is arranged at the bottom of the atomization component, and the air inlet is connected with the vent pipe.
The oil conducting material is arranged between the air inlet and the ventilation pipe, the oil conducting material is annular hollow structure, and the oil guiding material is connected with the oil storage cavity.
The bottom of the atomization component is also provided with a side hole which is connected with the air inlet hole.
The oil guide material is an oil guide cotton or porous ceramic body.
The battery assembly also has a built-in electric core, a control circuit board, a charging base and an opening key.
The charging base is located at the lowest end of the battery assembly, which is used to charge the electric core; the control circuit board is connected with the electric core and the induction coil; the switch key is arranged on the outside of the battery assembly.
A groove is arranged on the top of the battery assembly, and the cup body is arranged in the groove, and the inner diameter of the cup body is larger than the outer diameter of the atomization assembly.
The upper side of the cup body is provided with a cover body, which compresses and fixes the cup body and the induction coil.
The middle part of the cover body is provided with a through hole, and the through hole diameter allows the end of the atomization component to be inserted; the cover body is also provided with an additional hole, which is distributed at the edge of the through hole.
The beneficial effect of the utility model is: atomizing componentThe plug-in connection with the battery module is adopted, and the atomization module does not need to be connected with the battery to power on, reducing the components connected with the electric cell to power on, and the structure is simple and easy to do; the replacement of the atomization module is convenient and quick, which is conducive to the use of the disposable smoke bomb; the cup body of the battery module completely encloses the lower end of the atomization module, avoiding the damage of the control circuit board caused by the downward leakage of the traditional electronic smoke liquid 。
Fig. 1 is the external schematic diagram of the utility model's use state of electromagnetic heating electronic smoke;
Fig. 2 is the sectional schematic diagram of the utility model's use state of electromagnetic heating electronic smoke;
Fig. 3 is the sectional schematic diagram of the utility model's use state of electromagnetic heating electronic smoke;
Fig. 4 is the stereoscopic schematic diagram of the utility model's use state of electromagnetic heating electronic smoke;
< Br > Fig. 5 is a partial enlarged schematic diagram of the electromagnetic heating electronic smoke Fig. 2 of the utility model.
The specific embodiment
will give a further detailed description of the electromagnetic heating electronic smoke of the utility model in combination with the attached drawings.
As shown in Figures 1 to 5, the electromagnetic heating electronic smoke of the utility model comprises an atomizing component 1 and a battery component 2, and the atomizing component 1 and the battery component 2 are connected in a separable way. The atomization assembly 1 has a hollow atomization sleeve 11, the atomization assembly 1 is provided with a vent pipe 12 in the center, an oil storage cavity 13 is arranged between the atomization sleeve 11 and the vent pipe 12, the bottom of the atomization assembly 1 is provided with an air inlet 14 which is connected with the vent pipe 12. An oil guide material 15 is arranged between the air inlet 14 and the vent pipe 12, the oil guide material 15 is a ring hollow structure, and the oil guide material 15 is connected with the oil storage chamber 13Pass. For example, the oil guide material 15 may be an oil guide cotton or a porous ceramic body. The hollow inner side of the oil guide material 15 is also provided with a metal mesh 16, when the metal mesh 16 is heated, the smoke oil adsorbed on the metal mesh is atomized, so as to be absorbed by the user.
The battery assembly 2 includes a built-in cell 21, a control circuit board 22, an induction coil 23, a charging base 24 and an on-off key 25. The charging base 24 is located at the lowest end of the battery assembly 2, and is used for charging the battery cell 21. The control circuit board 22 is connected with the cell 21 and the induction coil 23; the on-off key 25 is arranged on the outside of the battery assembly 2, and the user can guide the control circuit board 22 by pressing the on-off key 25 externally, and finally the induction coil 23 is powered on or powered off.
The top of the battery assembly 2 is provided with a groove, in which the cup body 26 is arranged, and the induction coil 23 is arranged around the cup body 26, and the inner diameter of the cup body 26 is slightly larger than the outer diameter of the atomizing assembly 1; when the atomizing assembly 1 is contained in the cup body 26, there should be a gap between the outer side of the atomizing assembly 1 and the inner wall of the cup body 26. The cup body 26 is made of non-metallic materials. After the end of the atomizing assembly 1 is inserted into the cup body 26, the electromagnetic coil is activated through the opening key 25 to generate an induction magnetic field, and the metal mesh 16 inside the atomizing assembly generates heat energy through cutting the magnetic field line to atomize the soot. The upper side of the cup body 26 is provided with a cover body 27, which compresses and fixes the cup body 26 and the induction coil 23. The middle part of the cover body 27 is provided with a through hole 271, and the hole diameter of the through hole 271 shall allow the end end of the atomizing assembly 1 to be inserted.
For a sense of assuranceThe magnetic field generated by coil 23 shall not be blocked and absorbed by other parts. The part of atomizing assembly 1 inserted into battery assembly 2 shall be made of non-metallic materials, so that the heating metal mesh 16 in atomizing assembly can be the only part cutting the magnetic field line, and the heat energy generated by magnetic field can be concentrated on the metal mesh to ensure the maximum use of heat energy.
In addition, the bottom of the atomizing assembly 1 is also provided with a side hole 17, which is connected with the air inlet 14. The side hole 17 is one or more. The purpose is that when the atomizing assembly 1 is placed in the cup body 26, the bottom of the atomizing assembly 1 is in full contact with the cup body 26, and the side hole 17 can ensure the air intake. The cover body 27 also has an additional hole 272 distributed on the edge of the through hole 271, which is one or more. The through-hole 271 is matched with the outer diameter of the atomizing assembly 1 to ensure that the end of the atomizing assembly 1 is stable after being placed in the cup body 26 and will not shake. At this time, the gap between the cover body 27 and the atomizing assembly 1 is small and the air intake is not smooth, while the attached hole 272 solves the problem of air intake very well.
The above embodiments are only the partial embodiments listed in the specification for the convenience of understanding the contents of the utility model, not any limitation of the technical scheme of the utility model, nor the exhaustive of all the implementable schemes. Therefore, any minor improvement or equivalent substitution of the structure, process or step of the utility model shall be included in its protection scope 。
Technical features:
1. An electromagnetic heating electronic cigarette has an atomizing component and a battery component, which is characterized in that the atomizing component is provided with a hollow oil guide material, the inner side of the oil guide material is provided with a metal mesh; the top of the battery component is provided with a concave cup body, and the induction coil is arranged around the cup body; the tail end of the atomizing component is contained in the cup body.
2. The electromagnetic heating electronic smoke according to claim 1, which is characterized in that the atomization component has a hollow atomization sleeve, a vent pipe is arranged in the center of the atomization component, an oil storage cavity is arranged between the atomization sleeve and the vent pipe, an air inlet is arranged at the bottom of the atomization component, and the air inlet is connected with the vent pipe.
3. The electromagnetic heating electronic smoke according to claim 2, which is characterized in that the oil guide material is arranged between the air inlet and the vent pipe, the oil guide material is a ring-shaped hollow structure, and the oil guide material is connected with the oil storage cavity.
4. The electromagnetic heating electronic smoke according to claim 2, which is characterized in that the bottom of the atomization component is also provided with a side hole which is connected with the air inlet.
5. The electromagnetic heating electronic smoke according to claim 1, which is characterized in that the oil conducting material is an oil conducting cotton or porous ceramic body.
6. The electromagnetic heating electronic smoke according to claim 1, which is characterized in that the battery assembly also has a built-in electric core, a control circuit board and a charging baseAnd the key.
7. The electromagnetic heating electronic smoke according to claim 6, which is characterized in that the charging base is located at the lowest end of the battery assembly and is used to charge the electric core; the control circuit board is connected with the electric core and the induction coil; the switch key is arranged on the outside of the battery assembly.
8. The electromagnetic heating electronic smoke according to claim 1, which is characterized in that the top of the battery assembly is provided with a groove, the cup body is arranged in the groove, and the inner diameter of the cup body is larger than the outer diameter of the atomization assembly.
9. The electromagnetic heating electronic cigarette according to claim 8, which is characterized in that the upper side of the cup body is provided with a cover body, and the cover body compresses and fixes the cup body and the induction coil.
10. The electromagnetic heating electronic smoke according to claim 9, which is characterized in that: the middle of the cover body is provided with a through hole, and the through hole diameter allows the end of the atomization component to be inserted; the cover body is also provided with an additional hole, which is distributed at the edge of the through hole.
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The utility model relates to an in station flow control and automatic regulation system of a city natural valve station, a pressure regulating station, a sub transmission station and a natural gas transmission station with similar process flow. In recent years, with the development of industrial cities, the number of industrial users of air volume is increasing day by day, and with the emergence of peak valley period of gas consumption and the special requirements of industrial users for natural gas quality, the flow allocation of urban natural valve stations becomes a trade-off between efficiency and economy
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