Electronic cigarette ceramic heating structure and method capable of intelligently controlling temperature

文档序号:175827 发布日期:2021-11-02 浏览:33次 中文

阅读说明:本技术 一种可智能温控的电子烟陶瓷发热结构及方法 (Electronic cigarette ceramic heating structure and method capable of intelligently controlling temperature ) 是由 何凯 于 2021-07-29 设计创作,主要内容包括:本发明涉及电子烟技术领域,具体涉及一种可智能温控的电子烟陶瓷发热结构及方法,包括控制板、与控制板连接的发热组件、与发热组件一体烧制成型的雾化芯、及设于控制板的温控组件和调节模块;所述控制板设有主控制器,所述主控制器与温控组件和调节模块电性连接,所述发热组件与温控组件电性连接,所述雾化芯包括圆柱体、开设于圆柱体的导油孔和设于导油孔的导油棉,所述发热组件通过烧制成型于圆柱体外沿;本发明设置调节模块用于对烟油温度进行适应调节,调节方便,方便实现智能温控,控制效果好,智能性强。(The invention relates to the technical field of electronic cigarettes, in particular to an electronic cigarette ceramic heating structure capable of intelligently controlling temperature and a method thereof, wherein the electronic cigarette ceramic heating structure comprises a control board, a heating component connected with the control board, an atomizing core integrally fired and formed with the heating component, a temperature control component arranged on the control board and an adjusting module; the control panel is provided with a main controller, the main controller is electrically connected with the temperature control assembly and the adjusting module, the heating assembly is electrically connected with the temperature control assembly, the atomizing core comprises a cylinder, an oil guide hole formed in the cylinder and oil guide cotton arranged in the oil guide hole, and the heating assembly is formed on the outer edge of the cylinder through firing; the invention is provided with the adjusting module for adaptively adjusting the temperature of the tobacco tar, is convenient to adjust, is convenient to realize intelligent temperature control, and has good control effect and strong intelligence.)

1. The utility model provides an electron cigarette pottery heating structure that can intelligent control by temperature change which characterized in that: the atomizing device comprises a control plate, a heating component connected with the control plate, an atomizing core integrally fired and molded with the heating component, and a temperature control component and an adjusting module which are arranged on the control plate; the control panel is equipped with main control unit, main control unit and temperature control assembly and adjusting module electric connection, heating element and temperature control assembly electric connection, the atomizing core includes the cylinder, set up in the oil guide hole of cylinder and locate the oil guide cotton of oil guide hole, heating element is followed outside the cylinder through firing the shaping.

2. The intelligent temperature-controllable electronic cigarette ceramic heating structure according to claim 1, characterized in that: the control panel is connected with power module, power module is connected with the charging panel, the charging panel is equipped with the interface that charges, the interface that charges for power module.

3. The intelligent temperature-controllable electronic cigarette ceramic heating structure according to claim 2, characterized in that: the heating assembly comprises a heating ring integrally fired and formed on the outer edge of the cylinder and a heating pin welded on the heating ring, and the heating pin is electrically connected with the control panel.

4. The intelligent temperature-controllable electronic cigarette ceramic heating structure according to claim 3, characterized in that: the cylinder is a ceramic body with micropores.

5. The intelligent temperature-controllable electronic cigarette ceramic heating structure according to claim 4, characterized in that: the oil guide hole transversely penetrates through the cylinder, an oil inlet hole is formed in the cylinder and communicated to the oil guide hole, and the heating ring is located outside the oil guide hole.

6. The intelligent temperature-controllable electronic cigarette ceramic heating structure according to claim 5, characterized in that: the main controller is an MCU controller, the temperature control assembly is a temperature controller, the adjusting module is used for adjusting the temperature control assembly, and the temperature control assembly is used for adjusting the temperature of the heating assembly.

7. An intelligent temperature control method for an electronic cigarette is characterized by comprising the following steps: the intelligent temperature-controllable electronic cigarette ceramic heating structure comprises the intelligent temperature-controllable electronic cigarette ceramic heating structure as claimed in any one of claims 1-6;

the intelligent temperature control method of the electronic cigarette comprises the following steps:

step S1, tobacco tar is led into the cylinder through the oil guide cotton;

step S2, adjusting the temperature control component to a specified temperature aiming at the tobacco tar by the adjusting module;

step S3, after the temperature is adjusted to the designated temperature, the main controller controls the heating component to heat;

and step S4, heating the cylinder through the heating component, and atomizing the tobacco tar to generate smoke.

8. The intelligent temperature control method for the electronic cigarette according to claim 7, wherein the method comprises the following steps: the tobacco tar comprises the following components in parts by mass:

10-20 parts of a spice;

35-40 parts of propylene glycol;

32-43 parts of glycerol;

4-5 parts of grape essence;

2-3 parts of grape juice concentrated solution;

the propylene glycol is medicinal grade propylene glycol;

the spice consists of the following raw materials in parts by mass,

0.1-0.5 part of n-propanol;

0.05-0.13 part of glacial acetic acid;

0.15-0.25 part of isobutanol;

0.15-0.35 part of n-butyl alcohol;

0.15-0.2 part of ethyl propionate;

0.55-1.4 parts of diethanol acetal;

0.36-0.5 part of ethyl butyrate;

0.4-0.8 part of sugar alcohol;

2.2-3.6 parts of benzyl alcohol;

90-95 parts of propylene glycol;

the grape essence consists of the following components: methyl anthranilate, methyl N-methyl anthranilate, ethyl acetate, ethyl butyrate, isoamyl acetate, ethyl 2-methyl butyrate, maltol, 2-methyl butanol, phenethyl alcohol, trans-2-hexenol, citral, fusel oil, sweet orange oil terpene, Combrek green oil, and propylene glycol.

9. The intelligent temperature control method for the electronic cigarette according to claim 8, wherein the method comprises the following steps: the grape essence comprises the following components in parts by weight: 3-6 parts of methyl anthranilate, 2-7 parts of N-methyl anthranilate, 1-5 parts of ethyl acetate, 0.1-1 part of ethyl butyrate, 0.1-1 part of isoamyl acetate, 0.1-1 part of ethyl 2-methylbutyrate, 0.1-1 part of maltol, 1-5 parts of 2-methyl butanol, 0.1-1 part of phenethyl alcohol, 0.01-1 part of trans-2-hexenol, 0.01-1 part of citral, 1-5 parts of fusel oil, 0.2-2 parts of sweet orange oil terpene, 0.1-1 part of Kangniang green oil and 70-90 parts of propylene glycol.

10. The intelligent temperature control method for the electronic cigarette according to claim 9, wherein: the preparation method of the grape essence comprises weighing cleaned grape, and mashing with tissue mashing machine; squeezing with a small basket squeezer to obtain grape juice; concentrating the grape juice by rotary evaporation under reduced pressure to obtain viscous liquid.

Technical Field

The invention relates to the technical field of electronic cigarettes, in particular to an electronic cigarette ceramic heating structure capable of intelligently controlling temperature and a method.

Background

The electronic cigarette is mainly used for quitting and replacing cigarettes, can simulate the taste of the cigarettes, but can not release tar, nicotine and second-hand smoke harmful to human bodies when the electronic cigarette is smoked, and can improve the smoking quitting success rate of nicotine replacement therapy, so that the electronic cigarette is popular in the market and is valued by the nation soon. The electronic atomized cigarette has the principle that a smoke agent is heated and gasified on an electric heating element of an atomization system to form high-temperature steam and the high-temperature steam is sprayed out of an opening end, and the sprayed steam expands and condenses into smoke-shaped micro liquid drops in the atmosphere, so that smoke similar to the traditional cigarette is formed.

Traditional electron cigarette is when heating the atomizing to the heating structure, and the heating structure can only provide the temperature that generates heat of one kind, can't control the temperature to some specific tobacco tar and realize different tastes of inhaling, and whole experience is relatively poor, and the practicality is lower.

Disclosure of Invention

In order to solve the problems, the invention provides an electronic cigarette ceramic heating structure and method which are provided with an adjusting module for adaptively adjusting the temperature of tobacco tar, are convenient to adjust, are convenient to realize intelligent temperature control, have a good control effect and are high in intelligence and capable of intelligently controlling the temperature.

The technical scheme adopted by the invention is as follows: an electronic cigarette ceramic heating structure capable of intelligently controlling temperature comprises a control panel, a heating assembly connected with the control panel, an atomizing core integrally fired and formed with the heating assembly, a temperature control assembly arranged on the control panel and an adjusting module; the control panel is equipped with main control unit, main control unit and temperature control assembly and adjusting module electric connection, heating element and temperature control assembly electric connection, the atomizing core includes the cylinder, set up in the oil guide hole of cylinder and locate the oil guide cotton of oil guide hole, heating element is followed outside the cylinder through firing the shaping.

The further improvement of the scheme is that the control panel is connected with a power module, the power module is connected with a charging plate, the charging plate is provided with a charging interface, and the charging interface charges the power module.

The heating assembly comprises a heating ring integrally formed on the outer edge of the cylinder in a fired manner and a heating pin welded on the heating ring, and the heating pin is electrically connected with the control panel.

In a further improvement of the above scheme, the cylinder is a ceramic body with micropores.

The further improvement of the scheme is that the oil guide hole transversely penetrates through the cylinder, an oil inlet hole is formed in the cylinder and communicated to the oil guide hole, and the heating ring is located outside the oil guide hole.

The further improvement of the scheme is that the main controller is an MCU controller, the temperature control assembly is a temperature controller, the adjusting module is used for adjusting the temperature control assembly, and the temperature control assembly is used for adjusting the temperature of the heating assembly.

An intelligent temperature control method for an electronic cigarette comprises an electronic cigarette ceramic heating structure capable of intelligently controlling temperature;

the intelligent temperature control method of the electronic cigarette comprises the following steps:

step S1, tobacco tar is led into the cylinder through the oil guide cotton;

step S2, adjusting the temperature control component to a specified temperature aiming at the tobacco tar by the adjusting module;

step S3, after the temperature is adjusted to the designated temperature, the main controller controls the heating component to heat;

and step S4, heating the cylinder through the heating component, and atomizing the tobacco tar to generate smoke.

The further improvement of the scheme is that the tobacco tar consists of the following components in percentage by mass:

10-20 parts of a spice;

35-40 parts of propylene glycol;

32-43 parts of glycerol;

4-5 parts of grape essence;

2-3 parts of grape juice concentrated solution;

the propylene glycol is medicinal grade propylene glycol;

the spice consists of the following raw materials in parts by mass,

0.1-0.5 part of n-propanol;

0.05-0.13 part of glacial acetic acid;

0.15-0.25 part of isobutanol;

0.15-0.35 part of n-butyl alcohol;

0.15-0.2 part of ethyl propionate;

0.55-1.4 parts of diethanol acetal;

0.36-0.5 part of ethyl butyrate;

0.4-0.8 part of sugar alcohol;

2.2-3.6 parts of benzyl alcohol;

90-95 parts of propylene glycol.

The scheme is further improved in that the grape essence comprises the following components: methyl anthranilate, methyl N-methyl anthranilate, ethyl acetate, ethyl butyrate, isoamyl acetate, ethyl 2-methyl butyrate, maltol, 2-methyl butanol, phenethyl alcohol, trans-2-hexenol, citral, fusel oil, sweet orange oil terpene, Combrek green oil, and propylene glycol.

The scheme is further improved in that the grape essence comprises the following components in parts by weight: 3-6 parts of methyl anthranilate, 2-7 parts of N-methyl anthranilate, 1-5 parts of ethyl acetate, 0.1-1 part of ethyl butyrate, 0.1-1 part of isoamyl acetate, 0.1-1 part of ethyl 2-methylbutyrate, 0.1-1 part of maltol, 1-5 parts of 2-methyl butanol, 0.1-1 part of phenethyl alcohol, 0.01-1 part of trans-2-hexenol, 0.01-1 part of citral, 1-5 parts of fusel oil, 0.2-2 parts of sweet orange oil terpene, 0.1-1 part of Kangniang green oil and 70-90 parts of propylene glycol.

The preparation method of the grape essence comprises weighing cleaned grape, and mashing with tissue mashing machine; squeezing with a small basket squeezer to obtain grape juice; concentrating the grape juice by rotary evaporation under reduced pressure to obtain viscous liquid.

The invention has the beneficial effects that:

compared with a traditional electronic cigarette heating structure, the electronic cigarette heating structure is provided with the temperature control component which is matched with the heating component to generate heat for atomizing and heating the electronic cigarette, and the adjusting module is used for adaptively adjusting the temperature of tobacco tar, so that the electronic cigarette heating structure is convenient to adjust, convenient to realize intelligent temperature control, good in control effect, strong in intelligence and convenient to use. Specifically, the atomizing device is provided with a control plate, a heating assembly connected with the control plate, an atomizing core integrally fired and molded with the heating assembly, and a temperature control assembly and an adjusting module which are arranged on the control plate; the control panel is equipped with main control unit, main control unit and temperature control assembly and adjusting module electric connection, heating element and temperature control assembly electric connection, the atomizing core includes the cylinder, set up in the oil guide hole of cylinder and locate the oil guide cotton of oil guide hole, heating element is followed outside the cylinder through firing the shaping. In the reuse, lead oily cotton and be used for the leading-in back of tobacco tar to generate heat the atomizing through the heating element through the cylinder as atomizing core, the cooperation, atomization effect is good, and the control by temperature change is effectual, promotes to suck the taste.

The intelligent temperature control method of the electronic cigarette comprises the following steps: step S1, tobacco tar is led into the cylinder through the oil guide cotton; step S2, adjusting the temperature control component to a specified temperature aiming at the tobacco tar by the adjusting module; step S3, after the temperature is adjusted to the designated temperature, the main controller controls the heating component to heat; and step S4, heating the cylinder through the heating component, and atomizing the tobacco tar to generate smoke. Adopt temperature control unit cooperation tobacco tar to generate heat the atomizing, it is effectual to generate heat the atomizing to the tobacco tar, and the structure is reliable, and is intelligent strong.

The tobacco tar comprises the following components in parts by mass: 10-20 parts of a spice; 35-40 parts of propylene glycol; 32-43 parts of glycerol; 4-5 parts of grape essence; 2-3 parts of grape juice concentrated solution; the tobacco tar prepared from the components is matched with temperature control for heating and atomizing, so that tastes with different tastes can be produced, and the experience effect is better.

Drawings

Fig. 1 is a schematic structural diagram of a ceramic heating structure of an electronic cigarette according to the present invention;

fig. 2 is a partial structural schematic view of the ceramic heating structure of the electronic cigarette in fig. 1;

FIG. 3 is a schematic structural diagram of a heating element of the ceramic heating structure of the electronic cigarette in FIG. 1;

fig. 4 is a connection schematic diagram of the ceramic heating structure of the electronic cigarette in fig. 1.

Description of reference numerals: the device comprises a control panel 1, a main controller 11, a power supply module 12, a charging panel 121, a heating assembly 2, a heating ring 21, a heating pin 22, an atomizing core 3, a cylinder 31, an oil guide hole 32, an oil inlet hole 321, oil guide cotton 33, a temperature control assembly 4 and an adjusting module 5.

Detailed Description

To facilitate an understanding of the invention, the invention will now be described more fully with reference to the accompanying drawings. Preferred embodiments of the present invention are shown in the drawings. This invention may, however, be embodied in many different forms and should not be construed as limited to the embodiments set forth herein. Rather, these embodiments are provided so that this disclosure will be thorough and complete.

It will be understood that when an element is referred to as being "secured to" another element, it can be directly on the other element or intervening elements may also be present. When an element is referred to as being "connected" to another element, it can be directly connected to the other element or intervening elements may also be present.

Unless defined otherwise, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention belongs. The terminology used in the description of the invention herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention.

As shown in fig. 1 to 4, an electronic cigarette ceramic heating structure capable of intelligent temperature control comprises a control board 1, a heating element 2 connected with the control board 1, an atomizing core 3 integrally fired with the heating element 2, and a temperature control element 4 and an adjusting module 5 arranged on the control board 1; control panel 1 is equipped with main control unit 11, main control unit 11 and temperature control component 4 and 5 electric connection of adjusting module, heating element 2 and 4 electric connection of temperature control component, atomizing core 3 includes cylinder 31, opens in the oil guide hole 32 of cylinder 31 and locates the oil guide cotton 33 of oil guide hole 32, heating element 2 is followed outside cylinder 31 through firing the shaping.

Control panel 1 is connected with power module 12, power module 12 is connected with charging panel 121, charging panel 121 is equipped with the interface that charges, the interface that charges for power module 12, is used for charging for power module 12 through the interface that charges of charging panel 121 cooperation to realize intelligent control.

Heating element 2 includes that integrative the firing shaping is in the heating coil 21 of cylinder 31 outer edge and weld in the heating pin 22 of heating coil 21, heating pin 22 and control panel 1 electric connection are used for connecing the electricity through heating coil 21 cooperation heating pin 22, and the back is generated heat through heating coil 21 to cylinder 31, and it is effectual to generate heat the atomizing.

Cylinder 31 is for taking the micropore ceramic body, conveniently generates heat through heating element 2 after adsorbing the tobacco tar and atomizes, and the atomization effect that generates heat is good, and the structure is reliable.

Lead the oilhole 32 and transversely run through in cylinder 31, cylinder 31 has seted up inlet port 321, inlet port 321 communicates to leading oilhole 32, heating ring 21 is located and leads the oilhole 32 outside, adopts transversely to link up the structure, conveniently leads to the tobacco tar to carry out the heating atomization to inlet port 321, and atomization effect is good.

The main control unit 11 is the MCU controller, temperature control assembly 4 is the temperature controller, adjusting module 5 is used for adjusting temperature control assembly 4, temperature control assembly 4 is used for adjusting the 2 temperatures of heating element, adopts the MCU controller to carry out main control, realizes intelligent control by temperature change and adjusts to the tobacco tar that realizes different tobacco tar atomizes, promotes the taste.

The electronic cigarette temperature control device is provided with the temperature control component 4 which is matched with the heating component 2 to generate heat for atomizing and heating the electronic cigarette, and the adjusting module 5 which is used for adaptively adjusting the tobacco tar temperature, is convenient to adjust, convenient to realize intelligent temperature control, good in control effect, strong in intelligence and convenient to use. Specifically, a control plate 1, a heating component 2 connected with the control plate 1, an atomizing core 3 integrally fired and molded with the heating component 2, a temperature control component 4 arranged on the control plate 1 and an adjusting module 5 are arranged; control panel 1 is equipped with main control unit 11, main control unit 11 and temperature control component 4 and 5 electric connection of adjusting module, heating element 2 and 4 electric connection of temperature control component, atomizing core 3 includes cylinder 31, opens in the oil guide hole 32 of cylinder 31 and locates the oil guide cotton 33 of oil guide hole 32, heating element 2 is followed outside cylinder 31 through firing the shaping. In the reuse, lead oily cotton 33 and be used for the leading-in back of tobacco tar to generate heat the atomizing through heating element 2 through cylinder 31 as atomizing core 3, lead in the cooperation, atomizing effect is good, and the control by temperature change is effectual, promotes to suck the taste.

The intelligent temperature control method of the electronic cigarette comprises the following steps: step S1, tobacco tar is guided into the cylinder 31 through the oil guide cotton 33; step S2, adjusting the temperature control component 4 to the specified temperature aiming at the tobacco tar by the adjusting module 5; step S3, after the temperature is adjusted to the designated temperature, the main controller 11 controls the heating component 2 to heat; in step S4, the heating element 2 generates heat to the cylinder 31, and the tobacco tar is atomized to generate smoke. Adopt temperature control module 4 cooperation tobacco tar to generate heat the atomizing, it is effectual to generate heat the atomizing to the tobacco tar, and the structure is reliable, and is intelligent strong.

The tobacco tar comprises the following components in parts by mass: 10-20 parts of a spice; 35-40 parts of propylene glycol; 32-43 parts of glycerol; 4-5 parts of grape essence; 2-3 parts of grape juice concentrated solution; the tobacco tar prepared from the components is matched with temperature control for heating and atomizing, so that tastes with different tastes can be produced, and the experience effect is better.

The propylene glycol is pharmaceutical grade propylene glycol.

The spice consists of the following raw materials in parts by mass,

0.1-0.5 part of n-propanol;

0.05-0.13 part of glacial acetic acid;

0.15-0.25 part of isobutanol;

0.15-0.35 part of n-butyl alcohol;

0.15-0.2 part of ethyl propionate;

0.55-1.4 parts of diethanol acetal;

0.36-0.5 part of ethyl butyrate;

0.4-0.8 part of sugar alcohol;

2.2-3.6 parts of benzyl alcohol;

90-95 parts of propylene glycol.

In this example, the grape essence consists of the following components: methyl anthranilate, methyl N-methyl anthranilate, ethyl acetate, ethyl butyrate, isoamyl acetate, ethyl 2-methyl butyrate, maltol, 2-methyl butanol, phenethyl alcohol, trans-2-hexenol, citral, fusel oil, sweet orange oil terpene, Combrek green oil, and propylene glycol.

In another embodiment, the grape essence comprises the following components in parts by weight: 3-6 parts of methyl anthranilate, 2-7 parts of N-methyl anthranilate, 1-5 parts of ethyl acetate, 0.1-1 part of ethyl butyrate, 0.1-1 part of isoamyl acetate, 0.1-1 part of ethyl 2-methylbutyrate, 0.1-1 part of maltol, 1-5 parts of 2-methyl butanol, 0.1-1 part of phenethyl alcohol, 0.01-1 part of trans-2-hexenol, 0.01-1 part of citral, 1-5 parts of fusel oil, 0.2-2 parts of sweet orange oil terpene, 0.1-1 part of Kangniang green oil and 70-90 parts of propylene glycol.

The grape essence is prepared by weighing cleaned grape, and mashing with tissue mashing machine; squeezing with a small basket squeezer to obtain grape juice; concentrating the grape juice by rotary evaporation under reduced pressure to obtain viscous liquid. The tobacco tar formula adopting the components has excellent mouthfeel for atomizing and smoking the tobacco tar in cooperation with temperature control.

The above-mentioned embodiments only express several embodiments of the present invention, and the description thereof is more specific and detailed, but not construed as limiting the scope of the present invention. It should be noted that, for a person skilled in the art, several variations and modifications can be made without departing from the inventive concept, which falls within the scope of the present invention. Therefore, the protection scope of the present patent shall be subject to the appended claims.

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