A method for matching a double-bomb heat-not-burn cigarette with a smoking device
Through the matching and use method of the double-engine heating non-combust cigarette posts and cigarette utensils, the dual heating elements and filter section designs are used to solve the problem of insufficient gas volume of the heating non-combust cigarettes, and the double increase of smoke volume and the improvement of the quality of the pumping are achieved.
Patent Information
- Application Number
- CN202010566445.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2020-06-19
- Publication Date
- 2025-08-15
- Estimated Expiration
- 2040-06-19
AI Technical Summary
The amount of smoke gas that does not burn cigarettes is insufficient and unstable. The existing methods of fragrance-increasing and replenishing fragrance are limited, and may lead to an increase in the temperature of the smoke, making it difficult to meet the needs of traditional smokers.
A method of matching and use of double-bomb heating non-combust cigarette posts and cigarette utensils is designed. The cigarette posts include cigarette sections and functional sections. The cigarette sets include cooling and heating devices. By breaking the cigarette posts into the cigarette sets and using two heating elements to heat the cigarette cartridges simultaneously, combining the filter sections and cooling structures to improve the smoke volume and suction quality.
The double increase in smoke volume is achieved, the cigarette branch structure and production process is simplified, the cost is reduced, and the smoking experience of heating and non-combustible cigarettes is improved.
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Figure CN113383990B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of heat-not-burn cigarettes, and in particular to a method for matching and using a double-bomb heat-not-burn cigarette with a smoking device. Background Art
[0002] As living standards improve, people are paying more and more attention to their health, and the health risks of smoking have garnered significant attention in recent years. To meet evolving consumer demands, major tobacco companies both domestically and internationally have developed a variety of alternatives to traditional cigarettes. Among these growing categories, heat-not-burn (HNB) cigarettes have been a leader in recent years and are poised to become a hot topic in the global tobacco industry.
[0003] Heat-not-burn (HNB) cigarettes heat the tobacco cartridge via a heating element in the smoking device, producing smoke at temperatures below 400°C. Their smoke, similar in flavor to traditional cigarettes, has gained widespread acceptance among smokers. Currently, the predominant tobacco distribution in HNB cigarette cartridges on the global market is either ordered or random. Heat-not-burn (HNB) filter structures primarily consist of four-component, three-component, and two-component structures. These components are divided into a support section for stiffness enhancement, a cooling section for reducing smoke temperature, and a filter section for filtering smoke. Because HNB cigarettes are heated and inhaled at temperatures below 400°C, low-temperature smoke production is significantly lower than that of traditional cigarettes. Furthermore, the tobacco media content is significantly reduced compared to traditional cigarettes. Consequently, the lack of aroma and smoke production, coupled with inconsistent puff-to-puff smoke release, are common drawbacks of HNB cigarettes, making them difficult for traditional smokers to adopt.
[0004] At present, the main methods to solve the problem of insufficient smoke volume are: 1. Further flavoring the tobacco in the cigarette cartridge by adding external flavors and spices. 2. Using flavored cigarette paper to enhance flavor. 3. Adding flavor particles, popping beads, scented lines, etc. to the filter rod. 4. By adapting the heat-not-burn cigarette smoking device and the cigarette, and by studying the heating temperature of the heating core, the contact area between the heating core and the tobacco, and the thermal effect of the temperature field inside the heated cigarette, the thermal effect of the heat-not-burn cigarette can be improved, and the amount of smoke released and the stability can be increased. Although the above methods can solve the problem of insufficient smoke, there are still corresponding problems: 1. The various flavoring methods in the cigarette cartridge can only help increase the amount of smoke within a certain range, and cannot significantly increase the amount of aroma and smoke. 2. Adding flavor particles, popping beads, scented lines, etc. to the filter rod increases the difficulty and cost of filter rod production, and also does not essentially increase the amount of aroma and smoke. 3. The temperature increase caused by the adaptation of heat-not-burn cigarette devices and cigarettes may cause the smoke temperature to increase, resulting in the problem of burning the mouth when smoking.
[0005] Therefore, there is an urgent need to develop a cigarette that can increase the amount of smoke, and a smoking device that can be used in conjunction with the cigarette to solve the above technical problems. Summary of the Invention
[0006] In view of this, the purpose of the present invention is to provide a method for matching and using double-bomb heat-not-burn cigarettes and smoking utensils, avoiding the defects in the background technology, simplifying the cigarette structure, reducing processing investment, lowering material usage costs, and being able to heat two cigarette cartridges at the same time, doubling the smoke volume, and improving the smoking quality of heat-not-burn cigarettes.
[0007] The present invention solves the above technical problems through the following technical means:
[0008] A method for matching and using a double-bomb heat-not-burn cigarette and a smoking device, comprising a cigarette and a smoking device, wherein the cigarette comprises a smoking section, a functional section and two breaking structures, the smoking section comprises a first smoking section and a second smoking section, the first smoking section and the second smoking section are respectively fixedly connected to the two ends of the functional section, the first smoking section and the second smoking section are both filled with tobacco, the two breaking structures are respectively located at the connection between the first smoking section and the second smoking section and the functional section, or the two breaking mechanisms are both located on the functional section; the smoking device comprises a cooling function device, a cigarette cartridge heating device and a power chip device connected in sequence; a vertical penetrating The filter hole of the cooling function device, the cooling function device is provided with a cooling structure module at one end thereof close to the cartridge heating device; the cartridge heating device includes a cartridge fixing channel and two heating elements that pass through the cartridge heating device, the two heating elements are both located in the fixing channel, the two heating elements are fixedly connected to a fixed base at one end close to the power chip device, and the circumference of the cartridge heating device is provided with a suction air inlet that passes through the cartridge fixing channel; the power chip device is provided with a power supply and a control chip, and a switch is provided on the outer surface of the source chip device, the switch is electrically connected to the power supply, and the control chip is electrically connected to the power supply and the two heating elements;
[0009] The method for matching cigarettes and smoking articles comprises the following steps:
[0010] S1. breaking the first smoking segment and the second smoking segment of the cigarette at the fracture structure;
[0011] S2. Place the first smoking segment and the second smoking segment in the cigarette cartridge fixing channel of the smoking device, insert the two heating elements into the first smoking segment and the second smoking segment respectively, and insert the functional segment into the filter hole;
[0012] S3. Press the switch on the power chip device, the power supply provides electricity, the control chip controls the power supply, the heating element generates heat, and heats the smoking section mounted on the heating element;
[0013] S4. The smoker holds the functional section in the filter hole and smokes.
[0014] The first smoking segment and the second smoking segment serve as cigarette cartridges, and cooperate with the two heating elements on the smoking device. The two heating elements heat the first smoking segment and the second smoking segment respectively to generate smoke for the smoker to inhale; the functional segment can play the role of support, filtering, cooling, etc. The setting of the breaking structure makes it easy to disconnect the first smoking segment and the second smoking segment from the functional segment of the entire cigarette. When inhaling, the first smoking segment and the second smoking segment are placed on the two heating elements of the smoking device, and the functional segment is placed at the suction port of the smoking device.
[0015] Furthermore, the functional segment is a three-segment composite functional segment, and the three-segment functional segment includes a filter segment located in the middle, and both ends of the filter segment are fixedly connected to a first filter segment and a second filter segment respectively.
[0016] Furthermore, the breaking structure is an annular through hole, the through holes are in a single or double row, the through holes are circular, and the number of through holes in each row is 20. The arrangement of the through holes makes it easier to break the cigarette and convenient to use.
[0017] Furthermore, the cooling structure module is one of a planar mesh structure, a heterogeneous mesh structure, an internally coiled hollow tube structure, a venturi tube structure, a porous structure, and a spiral structure. The cooling structure module can play the role of cooling and filtering.
[0018] Furthermore, the cooling structure module is an aluminum flat mesh structure, which has good hardness and relative stability, is not easily decomposed or melted by heat, and has good cooling and filtering effects.
[0019] Furthermore, the cooling structure module is an internally coiled empty tube structure, which has better cooling and filtering effects.
[0020] Furthermore, the smoking segment heating device also includes a smoking segment rejection groove and a smoking segment rejection tray; the smoking segment rejection tray is arranged at the bottom of the cigarette cartridge fixing channel; the smoking segment rejection groove is arranged on the outer wall of the smoking segment heating device, and the smoking segment rejection tray is fixedly connected to a smoking segment rejection handle, and the smoking segment rejection handle is slidably arranged in the smoking segment rejection groove. The main function of the smoking segment rejection tray is to reject the smoking segment; the main function of the smoking segment rejection groove is to provide a channel for the use of the smoking segment rejection handle and the smoking segment rejection tray; the main function of the smoking segment rejection handle is to provide a starting point for consumers to reject smoking segments. When the smoking segment of the cigarette is placed in the cigarette cartridge fixing channel, the heating element is inserted into the inside of the smoking segment. After the smoking segment is heated and inhaled, pinch the smoking segment removal handle with your hand and push it upward along the smoking segment removal groove to drive the smoking segment removal plate to eject the used smoking segment in the cigarette cartridge fixing channel; in this way, the smoking segment can be easily ejected for next use.
[0021] Furthermore, the heating element is one of a needle-type heating core, a sheet-type heating core, an "S"-shaped heating core, and a triangular sheet-type heating core.
[0022] Furthermore, the heating element is one of a sheet-type heating core, an S-shaped heating core, and a triangular sheet-type heating core. The sheet-type heating core, the S-shaped heating core, and the triangular sheet-type heating core can increase the heating contact area of the heating core on the tobacco in the smoking section, thereby increasing the smoke release of the cigarette.
[0023] Furthermore, the two ends of the smoking section heating device are respectively connected to the cooling function device and the power chip device through threads or snaps. The smoking section heating device is threadedly connected to the cooling function device and the power chip device, and the threaded connection provides better fixation; the smoking section heating device is threadedly connected to the cooling function device and the power chip device, and the snap connection is more convenient during disassembly and connection.
[0024] Beneficial effects of the present invention:
[0025] 1. The present invention provides that when used with a corresponding heat-not-burn cigarette smoking device, two cigarette cartridges can be inserted for simultaneous inhalation, doubling the smoke volume, thereby effectively increasing the smoke volume of the break-type double-cartridge heat-not-burn cigarette and effectively improving the smoking quality of the cigarette.
[0026] 2. The present invention can be realized in the industrial production process by reducing the cigarette rolling and cutting steps, forming a structure with cigarette cartridges at both ends and a filter in the middle. The existing traditional equipment can be used in the rolling and manufacturing process, which reduces the work and is easier to implement.
[0027] 3. The design of the double cigarette cartridges and the filter section of the present invention increases the length of the entire cigarette and can be designed to the length of traditional cigarettes, avoiding the equipment investment in the short packaging of commercially available heat-not-burn cigarettes. Therefore, the existing traditional cigarette packaging machines can be used for box packaging, reducing the various costs required for cigarette processing and production.
[0028] 4. The cigarette filter segment of the present invention is of ordinary traditional structure. It adopts ordinary one-component and two-component composite structure, which can effectively reduce production costs and can be fully applicable to existing filter rod rolling and forming machines, reducing the investment in new equipment.
[0029] 5. The smoking device of the present invention comprises two heating units, which are adapted to the breakable double-smoke cartridge heat-not-burn cigarettes. The two cigarette cartridges can be heated simultaneously, the smoke volume is doubled, and the smoking quality of the heat-not-burn cigarettes is improved. BRIEF DESCRIPTION OF THE DRAWINGS
[0030] Figure 1 It is a schematic diagram of the first structure of a heat-not-burn cigarette according to the present invention.
[0031] Figure 2 It is a schematic diagram of the second structure of a heat-not-burn cigarette according to the present invention.
[0032] Figure 3 It is a schematic diagram of a first structure of a heat-not-burn cigarette smoking device of the present invention.
[0033] Figure 4 It is a schematic diagram of the second structure of a heat-not-burn cigarette smoking device of the present invention.
[0034] Figure 5 yes Figure 1 After the cigarette is broken, Figure 3 Schematic diagram of the three-dimensional structure used in matching the smoking set.
[0035] Figure 6 yes Figure 2 After the cigarette is broken, Figure 4 Schematic diagram of the three-dimensional structure used in matching the smoking set.
[0036] Among them, the smoking segment 1, the first smoking segment 1a, the second smoking segment 1b, the filtering segment 2, the filter segment 3, the first filter segment 3a, the second filter segment 3b, the through hole 4, the filter hole 5, the planar mesh structure 6a, the internal coiled empty tube structure 6b, the cigarette cartridge fixing channel 7, the heating element 8, the needle-type heating core 8a, the sheet-type heating core 8b, the smoking segment rejection groove 9, the smoking segment rejection handle 10, the suction air inlet 11, the smoking segment rejection disk 12, the fixed base 13, the switch 14, the cooling function device 100, the smoking segment heating device 200, and the power chip device 300. DETAILED DESCRIPTION
[0037] The present invention will be described in detail below with reference to the accompanying drawings:
[0038] Example 1
[0039] A method for matching a double-bomb heat-not-burn cigarette with a smoking device, comprising a cigarette and a smoking device, such as Figure 1 As shown, the cigarette comprises a smoking section 1, a filter section 2, and two breaking mechanisms. The smoking section 1 comprises a first smoking section 1a and a second smoking section 1b, which are fixedly connected to the ends of the filter section 2, respectively. The first smoking section 1a, the second smoking section 1b, and the filter section 2 are simultaneously rolled with ordinary cigarette paper. The first smoking section 1a and the second smoking section 1b are both filled with tobacco. Both breaking mechanisms are located on the filter section 2. The filter section 2 has one of a solid filling structure, a hollow structure, a Venturi tube structure, a porous structure, a spiral structure, a cellulose braided tube structure, a flow-blocking baffle structure, or a mesh structure. In this embodiment, a hollow structure is preferred.
[0040] The fracture structure comprises a single or double row of circular through-holes 4. In this embodiment, double rows of circular through-holes 4 are preferred, with 20 holes in each row, for a total of 40 holes. The tobacco filling the first smoking segment 1a and the second smoking segment 1b can be orderly arranged reconstituted tobacco leaves or granular tobacco material processed from tobacco materials; or it can be randomly arranged shredded tobacco leaves, reconstituted tobacco leaves, expanded tobacco leaves, or cut stems. In this embodiment, randomly arranged shredded tobacco leaves are preferred.
[0041] like Figure 3 and 5 As shown,
[0042] The smoking device comprises, from top to bottom, a cooling function device 100 , a cigarette cartridge heating device 200 and a power chip device 300 , which are sequentially threadedly connected.
[0043] The cooling device 100 is integrally formed with a filter hole 5 that vertically penetrates the cooling device 100. The diameter of the filter hole 5 matches the filter section 4 of the cigarette. The cooling device 100 is integrally formed with a cooling structure module at its lower end. The cooling structure module is one of a planar mesh structure 6a, a heterogeneous mesh structure, an internally coiled hollow tube structure 6b, a Venturi tube structure, a porous structure, and a spiral structure. In this embodiment, the planar mesh structure 6a is preferably made of aluminum.
[0044] The cigarette cartridge heating device 200 includes a cigarette cartridge fixing channel 7, two heating elements 8, a cigarette cartridge rejection groove 9 and a cigarette cartridge rejection plate 12 that passes through the cigarette cartridge heating device 200. The two heating elements 8 are located in the fixed channel, and the lower ends of the two heating elements 8 are fixedly connected to the fixed base 13. The cigarette cartridge heating device 200 is circumferentially provided with a suction air inlet 11 that passes through the cigarette cartridge fixing channel 7; the cigarette cartridge rejection plate 12 is arranged at the bottom of the cigarette cartridge fixing channel 7; the cigarette cartridge rejection groove 9 is opened on the outer wall of the cigarette cartridge heating device 200, and a cigarette cartridge rejection handle 10 is adhered to the cigarette cartridge rejection plate 12, and the cigarette cartridge rejection handle 10 is slidably arranged in the cigarette cartridge rejection groove 9; the two heating elements 8 are one of a needle-type heating core 8a, a sheet-type heating core 8b, an "S"-shaped heating core, and a triangular sheet-type heating core. The present embodiment is preferably a needle-type heating core 8a.
[0045] The power chip device 300 is the same as the power chip device 300 of the existing heat-not-burn cigarette smoking device, which is equipped with a power supply and a control chip. A switch 14 is provided on the outer surface of the power chip device, and the switch 14 is electrically connected to the power supply. The control chip is electrically connected to the power supply and the two heating elements 8.
[0046] Example 2
[0047] A method for matching a double-bomb heat-not-burn cigarette with a smoking device, such as Figure 2 As shown, the cigarette includes a smoking segment 1, a filtering segment 2, a filter segment 3 and two breaking structures. The smoking segment 1 includes a first smoking segment 1a and a second smoking segment 1b. The filtering segment 2 includes a first filter segment 3a and a second filter segment 3b. The first filter segment 3a and the second filter segment 3b are fixedly connected to the two ends of the filtering segment 2. The first smoking segment 1a and the second smoking segment 1b are respectively fixedly connected to the ends of the first filter segment 3a and the second filter segment 3b. The first smoking segment 1a, the second smoking segment 1b, the first filter segment 3a, the second filter segment 3b, and the filter segment 2 are simultaneously rolled using ordinary cigarette paper. Both the first smoking segment 1a and the second smoking segment 1b are filled with tobacco. Two breaking mechanisms are located at the junctions between the filter segment 2 and the first filter segment 3a and the second filter segment 3b, respectively. The filter segment 2, the first filter segment 3a, and the second filter segment 3b have a solid filling structure, a hollow structure, a Venturi tube structure, a porous structure, a spiral structure, a cellulose braided tube structure, a flow-blocking baffle structure, or a mesh structure. In this embodiment, the first filter segment 3a and the second filter segment 3b are preferably solid structures, while the filter segment 2 is preferably hollow.
[0048] The fracture structure is a single or double row of through holes 4 arranged in a ring shape. In this embodiment, double rows of through holes 4 are preferred. The through holes 4 are circular, and there are 20 through holes 4 in each row, for a total of 40.
[0049] The tobacco filled in the first smoking segment 1a and the second smoking segment 1b can be orderly arranged reconstituted tobacco leaves or granular tobacco material processed from tobacco materials; or can be one or more of randomly arranged cut tobacco leaves, reconstituted tobacco leaves, expanded tobacco leaves, and cut stems. In this embodiment, orderly arranged reconstituted tobacco leaves are preferred.
[0050] like Figure 4 and Figure 6 As shown,
[0051] A double-cartridge heat-not-burn cigarette smoking device comprises, from top to bottom, a cooling function device 100, a cartridge heating device 200, and a power chip device 300, which are snap-connected in sequence.
[0052] The cooling function device 100 is integrally formed with a filter hole 5 that vertically penetrates the cooling function device 100. The diameter of the filter hole 5 matches the filter section 4 of the cigarette. The lower end of the cooling function device 100 is integrally formed with a cooling structure module. The cooling structure module is one of a planar mesh structure 6a, an anisotropic mesh structure, an internally coiled hollow tube structure 6b, a Venturi tube structure, a porous structure, and a spiral structure. In order to achieve better cooling and filtering effects, this embodiment preferably uses an internally coiled hollow tube structure 6b.
[0053] The cigarette cartridge heating device 200 includes a cigarette cartridge fixing channel 7, two heating elements 8, a cigarette cartridge rejection groove 9 and a cigarette cartridge rejection plate 12 that passes through the cigarette cartridge heating device 200. The two heating elements 8 are located in the fixed channel, and the lower ends of the two heating elements 8 are fixedly connected to the fixed base 13. The cigarette cartridge heating device 200 is circumferentially provided with a suction air inlet 11 that passes through the cigarette cartridge fixing channel 7; the cigarette cartridge rejection plate 12 is arranged at the bottom of the cigarette cartridge fixing channel; the cigarette cartridge rejection groove 9 is opened on the outer wall of the cigarette cartridge heating device 200, and a cigarette cartridge rejection handle 10 is adhered to the cigarette cartridge rejection plate 12, and the cigarette cartridge rejection handle 10 is slidably arranged in the cigarette cartridge rejection groove 9; the two heating elements 8 are one of a needle-type heating core 8a, a sheet-type heating core 8b, an "S"-shaped heating core, and a triangular sheet-type heating core. In order to increase the heating contact area of the heating core on the tobacco in the cigarette cartridge 1, thereby increasing the smoke release amount of the cigarette, the present embodiment is preferably a sheet-type heating core 8b.
[0054] The power chip device 300 is the same as the power chip device 300 of the existing heat-not-burn cigarette smoking device, which is equipped with a power supply and a control chip. A switch 14 is provided on the outer surface of the power chip device, and the switch 14 is electrically connected to the power supply. The control chip is electrically connected to the power supply and the two heating elements 8.
[0055] When using Example 1 and Example 2, the method of use is basically the same, and the method of use is as follows:
[0056] During use, the first smoking segment 1a and the second smoking segment 1b are broken at the through hole 4, and then the first smoking segment 1a and the second smoking segment 1b are placed in the cartridge fixing channel 7. At this time, the circumferential parameters of the cartridge fixing channel 7 should be adapted to the circumferential parameters of the two cartridges 1, so that they can be inserted smoothly to avoid deformation of the cartridges 1; and the two cartridges 1 are stably fixed so that the two cartridges 1 are not easy to fall off or shake inside the smoking device during normal smoking; after the smoking is completed, the heated and discarded cartridges can be smoothly removed.
[0057] Insert the two heating elements 8 into the cigarette cartridge 1, and insert the filter segment 4 into the filter hole 5. The circumferential parameters of the filter hole 5 should be adapted to the circumferential parameters of the filter segment 4 so that it can be inserted smoothly to avoid deformation of the filter segment 4; and stably fix the filter segment 4 of the heat-not-burn cigarette so that the filter segment 4 is not easy to fall off during normal smoking; and it is easy to pull out the filter segment 4 after the smoking is completed.
[0058] When smoking, the switch 14 on the power chip device 300 is pressed by hand, the power supply provides electricity, the control chip controls the power supply, the two heating elements 8 heat up at the same time, and then the two cigarette cartridges 1 mounted on the two heating elements 8 are heated at the same time. The smoker holds the filter segment 4 in the filter hole 5 with his mouth. During the smoking process, the suction air inlet 11 serves as a channel for providing an air path when using the smoking device to smoke heat-not-burn cigarettes, making the smoking smooth and unobstructed. Because two heating elements 8 are installed on the smoking device, two cigarette cartridges 1 can be installed. When smoking, the amount of smoke is doubled, improving the smoking quality of heat-not-burn cigarettes.
[0059] After the cigarette cartridge 1 is heated and smoked, pinch the cigarette cartridge removal handle 10 and push it upward along the cigarette cartridge removal groove 9 to drive the cigarette cartridge removal plate 12 to push out the used smoking segment in the cigarette cartridge fixing channel 7; this can conveniently push out the smoking segment for next use.
[0060] When the cigarette of the present invention and the smoking device matched with the present invention are used to smoke in a conventional heat-not-burn cigarette manner, the smoke release amount generated by smoke detection is twice that of a heat-not-burn cigarette made of a single, disorderly arranged tobacco shreds and reconstituted tobacco leaf of the same volume and quantity produced by our company, and the smoke release amount is significantly improved, the sense of satisfaction increases accordingly, and the smoking quality is improved.
[0061] The above embodiments are intended only to illustrate the technical solutions of the present invention and are not intended to limit the scope of the present invention. Although the present invention has been described in detail with reference to the preferred embodiments, those skilled in the art will appreciate that the technical solutions of the present invention may be modified or replaced with equivalents without departing from the spirit and scope of the technical solutions of the present invention, and such modifications or equivalents shall be encompassed by the claims of the present invention. Any techniques, shapes, and structures not described in detail herein are well known.
Claims
1. A method for matching a double-bomb heat-not-burn cigarette with a smoking device, characterized by: The cigarette comprises a cigarette and a smoking device, wherein the cigarette comprises a smoking segment, a functional segment, and two breaking structures. The smoking segment comprises a first smoking segment and a second smoking segment, the first smoking segment and the second smoking segment being fixedly connected to both ends of the functional segment, respectively. The first smoking segment and the second smoking segment are both filled with tobacco. The two breaking structures are respectively located at the connection between the first smoking segment and the second smoking segment and the functional segment, or both breaking structures are located on the functional segment. The smoking device includes a cooling function device, a cigarette cartridge heating device and a power chip device connected in sequence; the cooling function device is provided with a filter hole vertically penetrating the cooling function device, and a cooling structure module is provided at one end of the cooling function device close to the cigarette cartridge heating device; the cigarette cartridge heating device includes a cigarette cartridge fixing channel penetrating the cigarette cartridge heating device and two heating elements, both of the two heating elements are located in the fixing channel, and one end of the two heating elements close to the power chip device is fixedly connected to a fixed base, and the circumference of the cigarette cartridge heating device is provided with a suction inlet hole penetrating the cigarette cartridge fixing channel; a power supply and a control chip are provided in the power chip device, and a switch is provided on the outer surface of the source chip device, the switch is electrically connected to the power supply, and the control chip is electrically connected to the power supply and the two heating elements; The method for matching cigarettes and smoking articles comprises the following steps: S1. breaking the first smoking segment and the second smoking segment of the cigarette at the fracture structure; S2. Place the first smoking segment and the second smoking segment in the cigarette cartridge fixing channel of the smoking device, insert the two heating elements into the first smoking segment and the second smoking segment respectively, and insert the functional segment into the filter hole; S3. Press the switch on the power chip device, the power supply provides electricity, the control chip controls the power supply, the heating element generates heat, and heats the smoking section mounted on the heating element; S4. The smoker holds the functional segment in the filter hole and smokes; The functional section is a three-section composite functional section, and the three-section composite functional section includes a filter section located in the middle, and the two ends of the filter section are respectively fixedly connected to the first filter section and the second filter section; the smoking section heating device includes a smoking section rejection groove and a smoking section rejection disk; the smoking section rejection disk is arranged at the bottom of the cigarette cartridge fixing channel; the smoking section rejection groove is arranged on the outer wall of the smoking section heating device, and the smoking section rejection disk is fixedly connected to a smoking section rejection handle, and the smoking section rejection handle is slidably arranged in the smoking section rejection groove.
2. The method for matching a double-bomb heat-not-burn cigarette with a smoking device according to claim 1, characterized in that: The fracture structure is a ring-shaped through hole, the through holes are in a single or double ring-shaped row, the through holes are circular, and the number of the through holes in each row is 20.
3. The method for matching a double-bomb heat-not-burn cigarette with a smoking device according to claim 2, characterized in that: The cooling structure module is an aluminum flat mesh structure.
4. The method for matching a double-bomb heat-not-burn cigarette with a smoking device according to claim 3, characterized in that: The cooling structure module is an internally coiled empty tube structure.
5. The method for matching a double-bomb heat-not-burn cigarette with a smoking device according to claim 4, characterized in that: The heating element is one of a needle-type heating core, a sheet-type heating core, an "S"-shaped heating core, and a triangular sheet-type heating core.
6. The method for matching a double-bomb heat-not-burn cigarette with a smoking device according to claim 5, characterized in that: The heating element is one of a sheet-type heating core, an "S"-shaped heating core, and a triangular sheet-type heating core.
7. The method for matching a double-bomb heat-not-burn cigarette with a smoking device according to claim 6, characterized in that: The two ends of the smoking section heating device are respectively connected with the cooling function device and the power chip device by threads or snaps.
Citation Information
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Cuttable and length-adjustable cigarette and application method thereof
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