CN107510097B - Electronic cigarette and control method thereof - Google Patents

Electronic cigarette and control method thereof Download PDF

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Publication number
CN107510097B
CN107510097B CN201710971680.5A CN201710971680A CN107510097B CN 107510097 B CN107510097 B CN 107510097B CN 201710971680 A CN201710971680 A CN 201710971680A CN 107510097 B CN107510097 B CN 107510097B
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tobacco
heating
nozzle
storage device
juice
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CN201710971680.5A
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Chinese (zh)
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CN107510097A (en
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不公告发明人
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Joyetech Europe Holding GmbH
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Joyetech Europe Holding GmbH
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    • A24F47/008
    • GPHYSICS
    • G05CONTROLLING; REGULATING
    • G05BCONTROL OR REGULATING SYSTEMS IN GENERAL; FUNCTIONAL ELEMENTS OF SUCH SYSTEMS; MONITORING OR TESTING ARRANGEMENTS FOR SUCH SYSTEMS OR ELEMENTS
    • G05B19/00Programme-control systems
    • G05B19/02Programme-control systems electric
    • G05B19/04Programme control other than numerical control, i.e. in sequence controllers or logic controllers

Abstract

The invention discloses an electronic cigarette which comprises a control device, a tobacco heating device, a tobacco storage device, a tobacco juice storage device and a driving device, wherein the tobacco heating device is used for heating tobacco stored in the tobacco storage device, the tobacco juice storage device is provided with a nozzle, the control device is used for controlling the driving device to drive the nozzle to move and then insert the nozzle into the tobacco, and the nozzle is controlled to spray the tobacco juice stored in the tobacco juice storage device onto the tobacco. Also disclosed is a control method comprising: receiving a cigarette lighting signal; after the cigarette ignition signal is received, the nozzle is controlled to move and then inserted into the tobacco, and the tobacco juice is sprayed onto the tobacco. Compared with the prior art, the tobacco juice storage device is provided with the nozzle, the control device controls the nozzle to move and then insert the tobacco, the tobacco juice is sprayed on the tobacco, the operation is simple and convenient, the tobacco juice and the tobacco can be uniformly mixed, and the taste which is closer to real tobacco is obtained.

Description

Electronic cigarette and control method thereof
Technical Field
The invention relates to an electronic cigarette and a control method thereof.
Background
The electronic cigarette is mainly widely used in developed countries in Europe and America at present, and is mainly used for replacing traditional cigarettes. With the continuous improvement of the living standard of China, people also continuously pursue higher living quality, and gradually realize the serious hazard of smoking, and smoking cessation gradually becomes a common understanding. Therefore, the substitute like the electronic cigarette is gradually popular.
At present, the electronic cigarette sucks atomized tobacco juice by atomizing the tobacco juice. Although the tobacco juice is continuously improved to make the taste close to the real tobacco, the two have larger difference, so that the cigarette is difficult to accept by smokers, and the electronic cigarette cannot be widely popularized yet.
Disclosure of Invention
The invention aims to overcome the defects of the prior art and provides an electronic cigarette which generates smoke closer to real smoke and a control method thereof.
In order to achieve the above object, the present invention provides an electronic cigarette, which includes a control device, a tobacco heating device, a tobacco storage device, a tobacco juice storage device, and a driving device, wherein the tobacco heating device is configured to heat tobacco stored in the tobacco storage device, the tobacco juice storage device is provided with a nozzle, the control device is configured to control the driving device to drive the nozzle to move and then insert the nozzle into the tobacco, and control the nozzle to spray the tobacco juice stored in the tobacco juice storage device onto the tobacco.
In one embodiment, the tobacco heating device comprises a heating cavity for placing the tobacco storage device and a heating element positioned in the heating cavity, the heating element is provided with n heating segments, each heating segment corresponds to at least one nozzle, each heating segment is controlled by the control device respectively, and n is an integer greater than or equal to 2.
In one embodiment, the driving device includes a motor and a pushing mechanism, the pushing mechanism connects the motor and the tobacco juice storage device, and the motor pushes the tobacco juice storage device through the pushing mechanism to drive the nozzle to move towards the tobacco storage device.
In one embodiment, the pushing mechanism is a helical structure.
In one embodiment, the drive means comprises a pump and a ram mechanism, the ram mechanism connecting the pump and the nozzle, the pump pushing the nozzle towards the tobacco storage means by the ram mechanism.
The invention also provides a control method of the electronic cigarette, which is used in the electronic cigarette, and the method comprises the following steps: receiving a cigarette lighting signal; after the cigarette ignition signal is received, the nozzle is controlled to move and then inserted into the tobacco, and the tobacco juice is sprayed onto the tobacco.
In one embodiment, the tobacco heating device comprises a heating chamber for placing the tobacco storage device and a heating element located in the heating chamber, the heating element is provided with n heating segments, each heating segment corresponds to at least one nozzle, each heating segment is controlled by the control device, n is an integer greater than or equal to 2, and the method comprises the following steps:
controlling the heating of the ith heating section, and controlling at least one nozzle corresponding to the ith heating section to spray the tobacco juice into the tobacco, wherein i is an integer less than or equal to n, the initial value of i is 1, and the 1 st heating section is the heating section at the bottommost part in the heating element;
and when a preset condition is met, i +1 is carried out, the heating of the ith heating section is controlled again, and the operation that the tobacco juice is sprayed into the tobacco by at least one nozzle corresponding to the ith heating section is controlled.
In one embodiment, the preset conditions include: the heating time reaches a first preset time, or the proportion of components obtained by atomizing the tobacco in the smoke is smaller than a first set value.
In one embodiment, the controlling the heating in the ith heating section and the controlling the at least one nozzle corresponding to the ith heating section to inject the tobacco smoke into the tobacco includes:
firstly, controlling at least one nozzle corresponding to the ith heating section to spray the tobacco juice into the tobacco, and controlling the heating of the ith heating section after second preset time;
or the like, or, alternatively,
and firstly, controlling at least one nozzle corresponding to the ith heating section to spray the tobacco liquid into the tobacco, acquiring the proportion of components obtained by atomizing the tobacco in the smoke, and controlling the ith heating section to start heating when the proportion is lower than a second set value, wherein the second set value is lower than the first set value.
The invention also provides an electronic cigarette, which comprises a memory and a processor;
at least one program instruction is stored in the memory;
the processor, by loading and executing the at least one program instruction, implements the method of:
receiving a cigarette lighting signal;
after the cigarette lighting signal is received, the control nozzle is inserted into the tobacco stored in the tobacco storage device after moving, and the tobacco juice in the tobacco juice storage device is sprayed onto the tobacco.
Compared with the prior art, the tobacco juice storage device is provided with the nozzle, the control device controls the nozzle to move and then insert the tobacco, the tobacco juice is sprayed on the tobacco, the operation is simple and convenient, the tobacco juice and the tobacco can be uniformly mixed, and the taste which is closer to real tobacco is obtained.
Drawings
Figure 1 is an exploded view of an electronic cigarette according to a first embodiment of the present invention.
Figure 2 is a combination diagram of the e-cigarette shown in figure 1.
Figure 3 is a control flow diagram of the e-cigarette shown in figure 1.
Figure 4 is an exploded view of an electronic cigarette according to a second embodiment of the present invention.
Figure 5 is a combination diagram of the e-cigarette shown in figure 4.
Detailed Description
The present invention is described in detail below by way of specific, but not limiting, examples, so that the advantages and features of the present invention can be more readily understood by those of ordinary skill in the art.
As shown in fig. 1 and 2, the electronic cigarette according to the first embodiment of the present invention includes a battery 1, a tobacco heating device 2, a tobacco juice storage device 3, a driving device 4, a control device 5, and a tobacco storage device 6.
The tobacco heating device 2 is used for heating tobacco (such as cigarettes, cut tobacco or regenerated tobacco leaves) stored in the tobacco storage device 6; the tobacco juice storage device 3 is used for storing tobacco juice and is provided with a nozzle 32; the control device 5 is used for respectively controlling the nozzle 32 to move and then inserting the tobacco, and spraying the tobacco juice stored in the tobacco juice storage device 3 to the tobacco; the driving device 4 is used for providing power for the movement of the nozzle 32; the battery is used to provide electrical power to the devices (in other embodiments, electrical power may not be used, and other power may be provided by other means).
In practical implementation, the devices can be placed as follows: the battery 1 is horizontally arranged, and the tobacco heating device 2 and the tobacco juice storage device 3 are arranged above the battery 1 side by side; the driving device 4 is arranged on one side of the tobacco liquid storage device 3 far away from the tobacco heating device 2, the control device is arranged on one side of the tobacco heating device 2 far away from the tobacco liquid storage device 3, and the tobacco storage device 6 is placed in the tobacco heating device 2.
Alternatively, the tobacco heating device 2 includes a heating cavity 21 for placing the tobacco storage device and a heating element 22 located in the heating cavity 21, the heating element 22 is provided with n heating segments (n is an integer greater than or equal to 2), each heating segment corresponds to at least one nozzle, and the heating segments are respectively controlled by the control device, so that segmented heating can be realized. The heating section corresponding to at least one nozzle in this embodiment means that the position of the nozzle after moving and inserting the tobacco corresponds to a certain heating section, and is not described herein again.
Alternatively, the tobacco storage device 6 is of a cartridge structure, tobacco is filled in the cartridge, the tobacco storage device 6 is inserted into the heating element 22 in the heating chamber 21 before smoking, and the whole cartridge is taken away after the tobacco is used up, so that the replacement is simple. Of course, in other embodiments, other configurations of tobacco storage means may be used instead of cartridges, such as by using the heating chamber directly as the tobacco storage means.
Optionally, the liquid storage means 3 comprises a storage chamber 31 for storing the liquid, and each nozzle 32 is connected to the storage chamber 31 by a tube or other connection means. In practice, each of the nozzles 32 may be provided on a wall of the storage chamber 31 on a side close to the heating member 22, with one end inserted into the storage chamber 31 and the other end located outside the storage chamber 31.
Optionally, each nozzle 32 is positioned in correspondence with each heating zone, and each heating zone corresponds to at least one nozzle 32, so that segment-by-segment spraying and segment-by-segment heating can be achieved.
The nozzle 32 may be used in a variety of spray modes, for example, by connecting a motor-driven micro-pump in the storage chamber 31, and the opening and closing of the nozzle 32 may be achieved by corresponding valves.
In this embodiment, the driving device 4 includes a motor 41 and a pushing mechanism 42 (e.g. a spiral structure), and the pushing mechanism 42 connects the motor 41 and the tobacco juice storage device 3, so that the motor 41 can push the tobacco juice storage device 3 to move towards the tobacco storage device 6 through the pushing mechanism 42, thereby driving the nozzle 32 to move towards the tobacco storage device 6 and piercing the side wall of the tobacco storage device 6.
In this embodiment, the control device 5 includes a PCB 51, and a display 52, a switch 53 and a sensor connected thereto. The PCB 51 is a main control element, the display screen 52 is used for displaying various parameters of the electronic cigarette, and the switch 43 is used for turning on and off the electronic cigarette. Wherein the sensor is used to detect whether the tobacco storage means 6 has been inserted into the tobacco heating means 3. Alternatively, the sensor may be a pressure sensor, a magnetic sensor, or a light-sensitive sensor, which is not limited in this respect.
The specific operation process of this embodiment is described as follows.
The tobacco storage device 6 is inserted into the heating element 22 after the tobacco such as cigarette, tobacco shred or regenerated tobacco leaf is loaded into the tobacco storage device 6 for fixation. When the tobacco storage device 6 is inserted into the heating element 22, the sensor senses that the tobacco storage device 6 is inserted, the control device 5 operates the motor 41, the motor 41 pushes the tobacco liquid storage device 3 to move towards the tobacco storage device 6 through the pushing mechanism 42, and the nozzle 32 pierces the wall of the tobacco storage device 6. At this time, the preparation work is completed, and control operations such as spraying and heating can be performed.
The present embodiment employs a staged injection and heating approach. As shown in fig. 3, the first nozzle (i.e., the bottom-most nozzle) sprays the liquid tobacco into the bottom of the tobacco storage device, causing the liquid tobacco and tobacco to mix. Can begin to heat after the time of predetermineeing, also can set up a humidity transducer in heating member bottom position, the humidity that detects the pipe tobacco when humidity transducer has reached the default, then reminds the user to heat, and the user heating can have smog to produce this moment (when the actual realization of course, when humidity transducer detected the humidity of pipe tobacco and reached the default, can also directly trigger tobacco heating device and begin to heat). After a predetermined time of heating, the tobacco in the tobacco storage device may be substantially atomised, i.e. the heating site will have no more smoke, and the next section of the cartridge is heated, and correspondingly the lower nozzle may be deactivated and the upper nozzle triggered to start spraying.
The preset time can be default or set by a user, certainly, the proportion of components obtained by atomizing tobacco in the current section of atomized smoke can be measured, if the proportion is smaller than a set value, the current section of tobacco is completely atomized, at the moment, the previous section of tobacco is atomized, and the lower nozzle is closed to open the upper nozzle. In practical implementation, a first preset time and a second preset time can be set, the first preset time is less than the second preset time, and when the heating time reaches the first preset time, at least one nozzle corresponding to the previous heating section sprays the tobacco juice into the tobacco; after a second preset time, the last heating section is heated. Or setting a first set value and a second set value of the proportion of components obtained by atomizing the tobacco in the smoke, wherein the first set value is larger than the second set value, and if the proportion is smaller than the first set value, at least one nozzle corresponding to the previous heating section sprays the tobacco juice into the tobacco; and if the ratio is smaller than a second set value, heating the previous heating section.
Through the steps, the heating position of the heating element is moved upwards from the bottommost part to the topmost part in sequence, and the nozzles corresponding to the heating section are correspondingly and sequentially sprayed from the bottommost part to the topmost part, so that the heating element is uniformly mixed and fully heated, and the generated smoke is closer to real smoke. And the nozzle sprays the current heating position in advance according to the heating position of the heating element, so that more consistent mouthfeel can be obtained.
Of course, in other embodiments, the nozzle may be used to spray all of the heating elements at once.
The embodiment also provides a control method for the electronic cigarette, which includes:
receiving a cigarette lighting signal; the cigarette ignition signal can be a physical key signal, a trigger signal applied by a touch screen, a signal detected by a sensor after the tobacco storage device is inserted, and the like;
after receiving the cigarette lighting signal, the control nozzle is inserted into the tobacco after moving, and the tobacco juice is sprayed on the tobacco.
For example, after the cartridge is inserted, the sensor detects a corresponding insertion signal, and at this time, the electronic cigarette controls the touch nozzle to move and then insert the electronic cigarette into the tobacco, and the tobacco juice stored in the tobacco juice storage device is sprayed into the tobacco.
Optionally, the control method comprises: controlling the heating of the ith heating section, and controlling at least one nozzle corresponding to the ith heating section to spray the tobacco juice into the tobacco, wherein i is an integer less than or equal to n, the initial value of i is 1, and the 1 st heating section is the heating section at the bottommost part in the heating element; and when the preset condition is met, controlling the i +1 heating section to heat again, and controlling at least one nozzle corresponding to the i heating section to spray the tobacco juice into the tobacco.
Wherein, the preset conditions include: the heating time reaches a first preset time, or the proportion of components obtained by atomizing the tobacco in the smoke is smaller than a first set value.
In practice, the above-mentioned control the heating of ith heating section to control at least one nozzle that ith heating section corresponds and spray the tobacco juice in the tobacco, include:
firstly, controlling at least one nozzle corresponding to the ith heating section to spray the tobacco juice into the tobacco, and controlling the heating of the ith heating section after a second preset time;
or the like, or, alternatively,
the method comprises the steps of firstly controlling at least one nozzle corresponding to the ith heating section to spray tobacco liquid into tobacco, obtaining the proportion of components obtained by atomizing the tobacco in smoke, and controlling the ith heating section to start heating when the proportion is lower than a second set value, wherein the second set value is lower than a first set value.
The detailed technical details thereof are described in the above embodiments and will not be described herein.
Fig. 4 and 5 show an electronic cigarette according to a second embodiment of the present invention, which is different from the first embodiment in the structure of the liquid storage device 7 and the driving device 8, and of course, the control device is also adaptively adjusted.
In this embodiment, the liquid storage device 7 includes a storage chamber 71 for storing liquid and a plurality of nozzles 72 for spraying the liquid onto the tobacco. Each nozzle 72 is mounted on a ram structure 82 and is in communication with the storage chamber 71 via a conduit.
In this embodiment, the driving device 8 comprises a driving pump 81 and a push rod structure 82, the driving pump 81 is located in the storage chamber 71, and the output end is connected with the push rod structure 82, so that the driving pump 81 can push the nozzle 72 to move towards the tobacco storage device 9 through the push rod structure 82 and can pierce the wall of the tobacco storage device 9. Of course, fig. 4 and 5 illustrate only the driving pump 81 located in the storage chamber 71, and in practical implementation, the driving pump 81 may be located at other positions, only for the purpose of controlling the push rod structure 82 and driving the nozzle 72 to move through the push rod structure 82.
In operation, when the tobacco storage device 9 is inserted into the heating element, and the sensor senses that the tobacco storage device 9 has been inserted, the control device operates the driving pump 81, the driving pump 81 pushes the nozzle 72 to move towards the tobacco storage device 9 through the push rod structure 82, and then the nozzle 72 pierces the wall of the tobacco storage device 9. The control method is the same as the first embodiment, and is not described herein again.
The embodiment also provides an electronic cigarette, which comprises a memory and a processor;
the memory has at least one program instruction stored therein;
the processor loads and executes at least one program instruction to realize the following method:
receiving a cigarette lighting signal;
after the cigarette lighting signal is received, the control nozzle is inserted into the tobacco stored in the tobacco storage device after moving, and the tobacco juice in the tobacco juice storage device is sprayed onto the tobacco.
The above description is only for the specific embodiments of the present invention, but the scope of the present invention is not limited thereto, and any person skilled in the art can easily conceive of the changes or substitutions within the technical scope of the present invention, and all the changes or substitutions should be covered within the scope of the present invention. Therefore, the protection scope of the present invention shall be subject to the protection scope of the appended claims.

Claims (10)

1. The electronic cigarette is characterized by comprising a control device, a tobacco heating device, a tobacco storage device, a tobacco juice storage device and a driving device, wherein the tobacco heating device is used for heating tobacco stored in the tobacco storage device, the tobacco juice storage device is provided with a nozzle, the control device is used for controlling the driving device to drive the nozzle to move and then insert into the tobacco, and the nozzle is controlled to spray tobacco juice stored in the tobacco juice storage device onto the tobacco.
2. The electronic cigarette of claim 1, wherein the tobacco heating device comprises a heating chamber for placing the tobacco storage device and a heating element located in the heating chamber, the heating element is provided with n heating segments, each heating segment corresponds to at least one nozzle, each heating segment is controlled by the control device, and n is an integer greater than or equal to 2.
3. The electronic cigarette of claim 1, wherein the driving device comprises a motor and a pushing mechanism, the pushing mechanism connects the motor and the tobacco juice storage device, and the motor pushes the tobacco juice storage device through the pushing mechanism to drive the nozzle to move towards the tobacco storage device.
4. The electronic cigarette of claim 3, wherein the pushing mechanism is a helical structure.
5. The electronic cigarette of claim 1, wherein the drive mechanism comprises a pump and a ram mechanism, the ram mechanism connecting the pump and the nozzle, the pump pushing the nozzle towards the tobacco storage device via the ram mechanism.
6. A method of controlling an electronic cigarette, for use in an electronic cigarette according to any of claims 1 to 5, the method comprising:
receiving a cigarette lighting signal;
after the cigarette ignition signal is received, the nozzle is controlled to move and then inserted into the tobacco, and the tobacco juice is sprayed onto the tobacco.
7. The control method according to claim 6, wherein the tobacco heating device comprises a heating chamber for placing the tobacco storage device and a heating element located in the heating chamber, the heating element is provided with n heating segments, each heating segment corresponds to at least one nozzle, each heating segment is controlled by the control device, n is an integer greater than or equal to 2, and the method comprises:
controlling the heating of the ith heating section, and controlling at least one nozzle corresponding to the ith heating section to spray the tobacco juice into the tobacco, wherein i is an integer less than or equal to n, the initial value of i is 1, and the 1 st heating section is the heating section at the bottommost part in the heating element;
and when a preset condition is met, i +1 is carried out, the heating of the ith heating section is controlled again, and the operation that the tobacco juice is sprayed into the tobacco by at least one nozzle corresponding to the ith heating section is controlled.
8. The control method according to claim 7, wherein the preset condition includes: the heating time reaches a first preset time, or the proportion of components obtained by atomizing the tobacco in the smoke is smaller than a first set value.
9. The method of claim 8, wherein said controlling the heating of the ith heating segment and controlling the at least one nozzle corresponding to the ith heating segment to inject the smoke liquid into the tobacco comprises:
firstly, controlling at least one nozzle corresponding to the ith heating section to spray the tobacco juice into the tobacco, and controlling the heating of the ith heating section after second preset time;
or the like, or, alternatively,
and firstly, controlling at least one nozzle corresponding to the ith heating section to spray the tobacco liquid into the tobacco, acquiring the proportion of components obtained by atomizing the tobacco in the smoke, and controlling the ith heating section to start heating when the proportion is lower than a second set value, wherein the second set value is lower than the first set value.
10. An electronic cigarette, comprising a memory and a processor;
at least one program instruction is stored in the memory;
the processor, by loading and executing the at least one program instruction, implements the method of:
receiving a cigarette lighting signal;
after the cigarette lighting signal is received, the control nozzle is inserted into the tobacco stored in the tobacco storage device after moving, and the tobacco juice in the tobacco juice storage device is sprayed onto the tobacco.
CN201710971680.5A 2017-10-18 2017-10-18 Electronic cigarette and control method thereof Active CN107510097B (en)

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