WO2019051632A1 - 一种烤烟烟支以及烤烟型电子烟 - Google Patents

一种烤烟烟支以及烤烟型电子烟 Download PDF

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Publication number
WO2019051632A1
WO2019051632A1 PCT/CN2017/101349 CN2017101349W WO2019051632A1 WO 2019051632 A1 WO2019051632 A1 WO 2019051632A1 CN 2017101349 W CN2017101349 W CN 2017101349W WO 2019051632 A1 WO2019051632 A1 WO 2019051632A1
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WO
WIPO (PCT)
Prior art keywords
flue
cured tobacco
particles
heating
smoke
Prior art date
Application number
PCT/CN2017/101349
Other languages
English (en)
French (fr)
Inventor
刘秋明
向智勇
Original Assignee
惠州市吉瑞科技有限公司深圳分公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 惠州市吉瑞科技有限公司深圳分公司 filed Critical 惠州市吉瑞科技有限公司深圳分公司
Priority to PCT/CN2017/101349 priority Critical patent/WO2019051632A1/zh
Publication of WO2019051632A1 publication Critical patent/WO2019051632A1/zh

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    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/40Constructional details, e.g. connection of cartridges and battery parts
    • A24F40/48Fluid transfer means, e.g. pumps
    • A24F40/485Valves; Apertures
    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24DCIGARS; CIGARETTES; TOBACCO SMOKE FILTERS; MOUTHPIECES FOR CIGARS OR CIGARETTES; MANUFACTURE OF TOBACCO SMOKE FILTERS OR MOUTHPIECES
    • A24D3/00Tobacco smoke filters, e.g. filter-tips, filtering inserts; Filters specially adapted for simulated smoking devices; Mouthpieces for cigars or cigarettes
    • A24D3/17Filters specially adapted for simulated smoking devices
    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/20Devices using solid inhalable precursors

Definitions

  • the present application relates to the field of electronic cigarettes, and in particular to a flue-cured tobacco and a flue-cured electronic cigarette.
  • the flue-cured electronic cigarette can be understood as an electronic cigarette product that heats the tobacco component in the flue-cured tobacco by the flue-curing device to form a smoke for smoking by the smoking user.
  • the flue-cured tobacco branch usually directly wraps the chopped tobacco leaf raw material with a paper bag, and the flue-cured tobacco cigarette is then inserted into the flue-cured tobacco device with a heating portion mounting position to complete the installation of the flue-cured tobacco branch.
  • the heating part is inserted into the flue-cured tobacco branch, and when the heating part is electrically heated, the flue-cured tobacco branch can be heated to form smoke.
  • the flue-cured tobacco is used to wrap the shredded tobacco raw material in a paper bag, the shredded tobacco raw material is often irregular, which causes the flue-cured tobacco to be easily deformed by force, and at the same time
  • the heating part is also often difficult to insert into the flue-cured tobacco branch. Therefore, it is inconvenient to install the flue-cured tobacco stick in the flue-cured tobacco.
  • the embodiment of the present application provides a flue-cured tobacco and a flue-cured electronic cigarette, which can be easily installed in a flue-cured tobacco.
  • the present invention provides a flue-cured tobacco branch, the flue-cured tobacco branch comprising a casing, the peripheral wall and the bottom wall of the casing forming a receiving cavity, the receiving cavity containing the smoking particles, and the smoking particles are Made of tobacco material, a nozzle is arranged at the top opening of the accommodating cavity, a filter is arranged between the nozzle and the smog particles, and a heating hole is arranged at the bottom wall;
  • the heating portion disposed at the installation position is inserted into the smoke particles through the heating hole;
  • the heating portion When the heating portion is energized and heated, the heating portion heats the smoke particles, and the smoke particles are heated to form smoke, and the smoke is filtered through the filter and then outputted at the nozzle.
  • smoking particles comprise tobacco material
  • the smoking particles further include at least one of a fragrance, propylene glycol, glycerin, and sorbitol.
  • the shape of the fuming particles includes at least one of a spherical shape, a cylindrical shape, and an irregular shape.
  • the fuming particles are powdery particles, and the powdery particles have a particle diameter ranging from 0.1 mm to 1 mm.
  • the filter is provided with a through hole for circulating air or smoke.
  • the heating hole is disposed at the center of the bottom wall, and when the heating portion is inserted into the smoking particles through the heating hole, the heating portion is located on the central axis of the receiving cavity.
  • the accommodating cavity sequentially includes a first accommodating cavity, a second accommodating cavity, and a third accommodating cavity;
  • the suction nozzle includes a gas transmission through hole and a resisting portion extending outwardly from the peripheral wall of the suction nozzle, and one end of the suction nozzle is abutted against the top opening of the receiving cavity through the abutting portion, and is fixed in the first receiving cavity;
  • the smoke particles are accommodated in the third accommodating cavity, and the filter is fixed in the second accommodating cavity, and the smoke formed by the smog particles is filtered through the filter and then outputted from the gas through hole.
  • the present invention provides a flue-cured electronic cigarette, which comprises a flue-cured tobacco branch provided by the first aspect and a flue-cured tobacco device corresponding to the flue-cured tobacco branch;
  • the heating portion is inserted into the smoke particles through the heating hole;
  • the heating portion When the heating portion is energized and heated, the heating portion heats the smoke particles, and the smoke particles are heated to form smoke, and the smoke is filtered through the filter and then outputted at the nozzle.
  • the heating temperature of the heating portion ranges from 200 ° C to 300 ° C.
  • the heating portion has a sheet-like structure, and an end portion of the heating portion forms an acute angle.
  • the flue-cured tobacco device is provided with a recess as a mounting position, the shape of the recess is matched with the shape of the flue-cured tobacco branch, and the heating portion is disposed at the bottom of the recess, and the flue-cured tobacco branch can be inserted into the recess and fixed in the recess.
  • the flue-cured tobacco device is provided with a heat-insulating cavity, and the heat-insulating cavity surrounds the recess, and the heat-insulating cavity is used for absorbing heat generated when the heating part heats the smoked particles.
  • the flue-cured tobacco device has a rod-like structure, and the installation position is set at the end of the flue-cured tobacco device.
  • the flue-cured tobacco is provided with a first thread
  • the mounting position is provided with a second thread
  • the flue-cured tobacco is mounted to the mounting position by the thread of the first thread and the second thread.
  • the tobacco hood includes a battery, a control circuit, and an electrode, and the control circuit is respectively connected to the battery And the electrode is connected, the electrode is connected to the heating part, and the control circuit can transmit the electric energy of the battery to the heating part through the electrode to perform electric heating of the heating part.
  • the flue-cured tobacco branch contains the smoking particles made of the tobacco material in the accommodating cavity formed by the non-deformable casing, because the smoky particles are inserted in the heating portion of the flue-curing device. After the applied force, it can be conveniently moved and moved in the accommodating cavity, so that it can cooperate with the heating part to remove the space required for the heating part to be inserted, so that the heating part can insert the smoky particles more labor-saving and convenient. , that is, inserted into the flue-cured tobacco, the flue-cured tobacco can be easily installed in the flue-cured tobacco.
  • FIG. 1 is a schematic structural view of a flue-cured tobacco branch according to an embodiment of the present application.
  • FIG. 2 is a schematic view showing an embodiment of a casing of a flue-cured tobacco branch according to an embodiment of the present application
  • FIG. 3 is a schematic view showing an overall embodiment of a flue-cured electronic cigarette according to an embodiment of the present application
  • FIG. 4 is a schematic view showing another embodiment of a flue-cured tobacco branch in the embodiment of the present application.
  • FIG. 5 is a schematic diagram of an embodiment of a nozzle according to an embodiment of the present application.
  • FIG. 6 is a schematic diagram of an embodiment of a flue-curing device according to an embodiment of the present application.
  • FIG. 7 is a schematic view showing an embodiment of a partial structure of a heating portion according to an embodiment of the present application.
  • FIG. 8 is a schematic diagram of another embodiment of a flue-curing device according to an embodiment of the present application.
  • FIG. 9 is a schematic diagram of an embodiment of a specific structure of a mounting bit in an embodiment of the present application.
  • the embodiment of the present application provides a flue-cured tobacco and a flue-cured electronic cigarette, which can be easily installed in a flue-cured tobacco.
  • FIG. 1 is a schematic diagram showing an embodiment of a whole structure of a flue-cured tobacco pipe 100 according to an embodiment of the present application.
  • the flue-cured tobacco branch 100 includes a casing 101 .
  • the housing 101 can be made of one or more kinds of high temperature resistant materials such as ceramics, stainless steel, glass fiber, carbon fiber, plastic, etc. in practical applications, when a variety of high temperature resistant materials are used.
  • the housing 101 can also form corresponding and different composite structures according to different designs, so that a satisfactory balance can be obtained between the high temperature resistance, touch hand feeling, hardness, processing, shaping, cost and the like of the outer casing 101.
  • the outer casing 101 can also use a process such as baking varnish, painting, etc. to draw a pattern on the outer casing 101, thereby improving the aesthetic appearance of the outer casing 101, thereby improving the visual perception of the user and improving the user experience.
  • a process such as baking varnish, painting, etc.
  • FIG. 2 is a schematic view showing an embodiment of the overall structure of the housing 101.
  • the housing 101 includes a peripheral wall 1011 and a bottom wall 1012.
  • the peripheral wall 1011 and the bottom wall 1012 form a receiving cavity.
  • the shape of the outer surface of the cross section of the peripheral wall 1011 may be designed to be circular, elliptical, rectangular, polygonal or irregular.
  • the shape of the inner surface of the cross section of the peripheral wall 1011 may also be designed to be circular, elliptical, Rectangle, polygon, or irregular shape, the shape of the outer surface and the inner surface may be the same design, or may be separately designed separately, which is not limited herein.
  • the outer surface and the inner surface are all rounded, and at the same time, the shape of the receiving cavity 1013 is cylindrical, and is designed by a circular arc shape.
  • the outer surface of the shape is beneficial to the user's grip, so that the user can easily install the flue-cured tobacco 100 to the flue-cured tobacco device.
  • the circular inner surface also facilitates the filling, accommodating, and smoking of the fuming particles in the accommodating cavity. The particles can be evenly dispersed around the central axis of the receiving cavity 1013 to better promote a better heating effect.
  • the receiving cavity 1013 is of a semi-closed design, and the receiving cavity 1013 can be filled into the smoking particles 102 from the top opening to accommodate the smoking particles 102, and the smoking particles 102 are made of the tobacco material through a predetermined manufacturing process.
  • the bottom wall 1012 is structurally conformed to the bottom of the peripheral wall 1011, and is provided with a through hole as a heating hole 1014.
  • the shape of the heating hole 1014 corresponds to the shape of the heating portion of the tobacco smog so that the heating portion can be heated from the heating hole. 1014 is inserted above the heating hole 1014 to accommodate the smoke particles 102 contained in the cavity 1013.
  • the number of heating holes 1014 also corresponds to the number of heating portions of the tobacco hood. It can be understood that by increasing the number of heating portions in the smoky particles 102, the heating range and heating efficiency of the smoky particles 102 can be improved, and further The smoke formation efficiency and the amount of smoke formation of the fumed granules 102 can be significantly improved.
  • the smog A corresponding filter 103 may be disposed above the particle.
  • the filter 103 may be made of a filter material such as filter cotton or acetate fiber.
  • the filter 103 may perform smoke on the one hand after the smoke particles 102 are heated to form smoke. Filtration, on the other hand, also prevents the fuming granules 102 from spilling out of the accommodating cavity 1013.
  • a nozzle 104 is also provided at the top opening of the receiving cavity 1013.
  • the nozzle 104 can be made of stainless steel, silica gel, glass or the like.
  • the structure of the nozzle 104 can be used by the user in the nozzle 104. Suck and smoke.
  • FIG. 3 is a schematic diagram showing an embodiment of a whole structure of a flue-cured electronic cigarette according to an embodiment of the present application.
  • the flue-cured tobacco 100 may be provided with a corresponding one.
  • the flue-cured tobacco device 200 when the flue-cured tobacco 100 is installed in the flue-curing device 200, that is, installed in the mounting position 201 of the flue-curing device 200, the flue-curing device 200 is disposed at the heating portion 202 of the mounting position 201 to naturally align with the heating hole 1014, and is heated.
  • the hole 1014 is inserted into the fumed granules 102, wherein it is easy to understand that since the smoky particles 102 are in the form of fine granules, they can be easily moved and moved in the accommodating cavity 1013 when the heating portion 202 is inserted into the smoky particles 102.
  • the fuming granules 102 can naturally move around with the insertion of the heating portion 202 in accordance with the urging force applied by the heating portion 202, and the space required for the insertion of the heating portion 202 can be removed, so that the heating portion 202 can be more labor-saving and convenient.
  • the cigarette particles 102 are inserted into the fumes, and the installation of the flue-cured tobacco 100 is completed.
  • the heating unit 202 When the heating unit 202 performs electric heating, the heating unit 202 can heat the smoke particles 102, and the smoke particles 102 are heated to form smoke. The smoke is filtered by the filter 103 and then outputted at the nozzle 104, and the user can perform the smoke. Smoking and sucking. Among them, since the smoke particles 102 are in the form of fine particles, which are convenient for heat transfer and heat, the smoke particles 102 can rapidly form smoke, and the formed smoke is finer and has a more mellow taste.
  • the flue-cured tobacco branch 100 accommodates the smoking particles 102 made of tobacco material in the accommodating cavity 1013 formed by the non-deformable casing 101, since the smoky particles 102 are in the heating portion of the flue-curing device 200.
  • the space can be easily moved and moved in the accommodating cavity 1013, so that the space required for the insertion of the heating portion 202 can be removed from the heating portion 202, so that the heating portion 202 can be relatively labor-saving.
  • the cigarette particles 102 are conveniently inserted into the flue-cured tobacco 100, and the flue-cured tobacco 100 can be easily installed in the flue-curing device 200.
  • the flue-cured tobacco 100 can also have various optimized implementations to further improve the user experience. For ease of understanding, several preferred implementations will be listed below. Shao.
  • the smoking particles 102 include not only the comminuted tobacco material but also at least one of perfume, propylene glycol, glycerol, and sorbitol.
  • the tobacco material can be firstly crushed by a sharp-edged tool and then added to the corresponding fragrance, propylene glycol, glycerol or sorbitol according to the preset formula, and fried into the granule 102.
  • the fragrance, propylene glycol, glycerol and sorbitol The addition can adjust the taste of the smoke formed by the smoked particles 102 to form a different style.
  • the ratio of the flavor, the propylene glycol, the glycerol, and the sorbitol in the smoked granules 102, as well as the specific components of the flavor and the proportion thereof, may be different according to different formulations, and are not limited herein.
  • the shape of the smoking particles 102 includes at least one of a spherical shape, a cylindrical shape, and an irregular shape.
  • the fuming granules 102 can have different shapes to correspond to the smoky particles 102 made of different formulations, to facilitate the classification, processing, transportation and the like of the smoky particles 120; or, the different shapes of the smoky particles 102
  • the corresponding smoke forming efficiency and the smoke mouthfeel may also be different. If the smoking particles 120 made under the same formula have different shapes, the smoke particles 102 of each shape may have different heating effects and smoke forming efficiency. Therefore, the formed smoke can be more layered and the taste is more abundant.
  • a spherical shape, a cylindrical shape or an irregular shape may be specifically used.
  • spherical smoky particles 102 are particularly mentioned, and the spherical smoky particles 102 are not only uniformly heated but also easy to process. Further, it is more advantageous to disperse the force applied to the smoke particles 102, so that when the heating portion 202 mentioned above is inserted into the smoke particles 102, the movement portion 202 can be more flexibly moved and moved. The space required at the time, thereby further improving the labor saving and convenient effect when the heating portion 202 is inserted into the smoke particles 102.
  • the smoking particles 102 may have different particle sizes, it being understood that, on the one hand, the desired particles of the smoking particles 102 made under different formulations are desirable.
  • the size is not the same; on the other hand, the smoked particles 102 made under the same formula can change the corresponding heating effect and the smoke forming efficiency under the heating conditions of different particle sizes, thereby forming different tastes of smoke, usually In other words, the smaller the particles, the more susceptible the fumed particles 102 are to heat and the formation of smoke; in another aspect, the different particle sizes may also affect the labor saving and convenient effect of the heating portion 202 being inserted into the fuming particles 102, for example, the smaller the particles. If the heating unit 202 is easier to insert In the smoke particles 102.
  • the fuming granules 102 can be made into finer particles, that is, powdery granules, and the powdery granules can have a particle diameter ranging from 0.1 mm to 1 mm, and the fuming granules 102 in the particle size range are convenient.
  • the insertion of the heating portion 202 has better heating effect and smoke forming efficiency, and is convenient in processing technology and low in processing cost, and is more advantageous for practical application and promotion.
  • FIG. 4 is a schematic diagram showing another embodiment of the overall structure of the flue-cured tobacco branch 100.
  • the filter 103 is provided with a through hole. 1031, the through hole 1031 is permeable to air or smoke.
  • the design of the through hole 1031 allows the air outside the flue-cured tobacco branch 100 to enter the flue-cured tobacco branch 100 from the nozzle, and directly enters the receiving chamber where the lower-smoke particle 102 is located through the through hole 1031 of the filter 103.
  • the smoke formed by the smoke particles 102 can be directly passed through the filter 103 through the through hole 1031 of the upper filter 103, and then outputted at the nozzle above the filter 103.
  • the through hole 1031 can not only improve the fluency of the smoke output of the flue-cured tobacco 100, thereby improving the output of the smoke, and also facilitating the cooling of the smoke. It can be understood that after the high-temperature smoke is mixed with the air, Directly achieve better cooling effect, after the smoke is cooled, the user can more smoothly suck and suck the smoke, greatly reducing the risk of being burned by smoke.
  • the number of the through holes 1031 may be one or plural. If it is one, it appropriately increases the size of the through hole 1031 and is disposed at the center of the filter 103 to ensure the smoke output and the cooling effect concentrated in the through hole 1031. If there are a plurality of holes, the size of the through holes 1031 can be appropriately reduced, and the nozzles 103 can be uniformly disposed on the filter 103 to uniformly achieve the smoke output and the temperature lowering effect of the through holes 1031 on the filter 103.
  • the heating hole 1014 is disposed at the center of the bottom wall 1012, and when the heating portion is inserted into the smoking particles 102 through the heating hole 1014, the heating portion is located on the central axis of the receiving cavity 1013.
  • the smoky particles 102 can be uniformly heated, so that the smoke formed by the smoky particles 102 is more uniform and fine, so as to achieve a better taste. .
  • the accommodating cavity 1013 can respectively correspond to the nozzle 104, the filter 103 and the smoky particles 102, and sequentially includes a first accommodating cavity, a second accommodating cavity, and The third receiving cavity.
  • FIG. 5 is a schematic diagram showing an embodiment of a specific structure of the nozzle 104.
  • the nozzle 104 includes a gas transmission through hole 1042 formed in the inside of the nozzle 104 by the peripheral wall 1041 of the nozzle, and The abutting portion 1043 of the suction nozzle peripheral wall 1041 extends outwardly, and one end of the suction nozzle 104 abuts against the top opening of the accommodating cavity 104 through the abutting portion 1043 so as to be fixed in the first accommodating cavity to be used for the nozzle It is fixed at the top opening of the accommodating cavity 1013.
  • the fuming granules 102 are accommodated in the third accommodating cavity, and the filter 103 is fixed in the second accommodating cavity. After the smog particles 102 are heated to form the smog, the smog can be filtered by the filter 103 and then transported from the suction nozzle 104.
  • the through hole 1042 is externally outputted, and the user can smoke and suck the smoke at the gas transmission through hole 1042.
  • FIG. 6 is a schematic view showing an overall structure of the flue-curing device 200.
  • the flue-curing device 200 includes a casing 203, and the casing 203 is provided with a mounting position 201 for flue-cured tobacco.
  • the housing 203 can be held and held by the user, so that the user can install the flue-cured tobacco 100 through the mounting position 201 on the flue-curing device 200 and after the installation is completed, the heating portion 202 at the position 201 can be installed.
  • the heating of the smoking particles 102 is performed to suck and suck the smoke formed by the heat generating particles 102.
  • the control circuit 205 can extract the electric energy stored in the battery 204 and transmit it to the heating unit 202.
  • the heating unit 202 is provided with a heating circuit, and the heating unit 202 can be energized after being energized. Heating, so that the fumed particles 102 in the flue-cured tobacco branch 100 can be heated to form smoke.
  • control circuit 205 can control not only the on/off of the heating function but also the functions of timing heating, time delay heating, adjusting heating power and the like.
  • the power supply adjusting button 206 can be connected to the control circuit 205.
  • the power adjusting button 206 can receive the power control command of the user by pressing or sliding, triggering, etc., through the power adjusting button 206.
  • Control circuit 205 can receive a power control command from a user, The electric energy output of the battery 204 to the heating portion 202 is adjusted, thereby adjusting the heating effect of the heating portion 202.
  • the power adjustment button 206 can only provide the function of starting or turning off the power, that is, starting or turning off the heating function of the heating unit 202; or, the heating power adjustment function can be set, that is, adjusting the power output power of the battery 204 and adjusting the heating part.
  • the heating power of 202 can employ one or more physical keys to achieve the functions described above.
  • one or more function indicators may be disposed on the housing 203 to indicate to the user the working state of the flue-curing device 200, such as an unheated state, a heated state, a low-temperature heating state, a high-temperature heating state, a timed heating state, The time delay heating state and the like are not limited herein.
  • the flue-curing device 200 can also have various optimized implementations to further improve the user experience. For ease of understanding, several preferred implementations are also listed below. For introduction.
  • the heating portion 202 can be ensured at a lower heating power.
  • the heating power of the fumes granules 120 forms the desired smog, thereby achieving low temperature heating.
  • the heating portion 202 can adjust the heating power, so that the heating temperature range of the heating portion 202 can be specifically adjusted to 200 ° C to 300 ° C. It can be understood that the energy consumption of the battery 204 can be reduced and ensured under the low temperature heating temperature interval.
  • the normal heating of the fuming granules 102 can also greatly reduce the tar content in the smoke formed by the fumes granules 102, greatly reducing the risk of tar damage to the user's health.
  • FIG. 7 shows a schematic diagram of a partial structure of the heating portion 202, as shown in FIG.
  • the heating portion 202 has a sheet-like structure, and an end portion thereof, that is, an end away from the mounting position 201 forms an acute angle.
  • the sheet-like structure can greatly reduce the resistance to the heating portion 202 when it is inserted into the smoke particles 102, so that the smoke particles 102 can be inserted more labor-savingly; It is also possible to cause the heating portion 202 to be inserted into the smoking particles 102, the inclined contact surface thereof, the resistance received by the heating portion 202 can be greatly reduced, and a more concentrated and larger force can be applied to the smoking particles 102. In this way, the smoking particles 102 can be inserted more effortlessly.
  • the tobacco hood 200 is provided with a recess as a mounting position 201, and the shape of the recess is matched with the shape of the flue-cured tobacco branch 100, such as the flue-cured tobacco shown in FIG.
  • the flue-cured tobacco branch 100 can be directly inserted into the recess and firmly fixed in the recess, which is not easy to move and loose.
  • the heating portion 202 is disposed at the bottom of the recess, and the heating circuit on the heating portion 202 can be connected to the battery 204 through the conductive member at the bottom end portion of the heating portion 202, and the electric energy transmitted can be electrically heated by the heating portion 202. .
  • the tobacco hood 200 is provided with a heat insulating cavity 205, and the heat insulating cavity 205 can be disposed around the above-mentioned recess, and the insulating cavity 205 can be filled.
  • the inert gas, the vacuuming, the silica gel layer and the like reduce the heat conduction efficiency, so that the heat emitted by the heating portion 202 when heating the smoking particles 102 can be absorbed, and the heat emitted from the outside of the tobacco hood 200 is greatly reduced, and the user holds and holds the tobacco hood.
  • the risk of overheating and scalding the user due to heating of the flue-cured tobacco unit 200 is greatly reduced.
  • FIG. 8 is a schematic diagram showing another embodiment of the structure of the flue-curing device 200, as shown in FIG. 8, compared to the block shown in FIG.
  • the roasting device 200 can also be an elongated rod-like structure, and the mounting position 201 is provided at the end of the flue-curing device 200.
  • the bar-shaped structure of the flue-curing device 200 shown in FIG. 8 is more convenient for clamping between the fingers of the user, and the user only needs two fingers to facilitate the folder.
  • the cigarette holder 200 is generally held by the cigarette, and the smoke is sucked and sucked at the nozzle 104 of the flue-cured tobacco 100 installed on the flue-cured tobacco unit 200.
  • the bar-shaped structure of the flue-curing device 200 is also more convenient to store, and the user can conveniently store in a clothing pocket, a briefcase, and the like, and is convenient to carry.
  • FIG. 9 is a schematic diagram showing an embodiment of a specific structure of the installation position of the tobacco hood 200, as shown in FIG.
  • the bottom of the flue-cured tobacco 100 is provided with a first thread
  • the corresponding mounting position 201 is provided with a second thread.
  • the flue-cured tobacco 100 can be mounted to the mounting position 201 by a threaded engagement of the first thread and the second thread.
  • the first thread may be an external thread disposed on the outer surface of the bottom of the flue-cured tobacco branch; correspondingly, the second thread may be an internal thread disposed on the inner surface of the mounting position 201 of the flue-cured tobacco unit 200.
  • the first thread may be an internal thread disposed on the inner surface of the bottom of the flue-cured tobacco branch; correspondingly, the second screw
  • the ribs may be externally threaded and disposed on the outer surface of the mounting position 201 of the flue-curing device 200, which is not limited herein.
  • the space utilization rate of the bar-shaped structure of the tobacco squeegee 200 can be improved, the required space of the mounting position 201 is greatly reduced, and the thread mounting manner is relatively firm, and the flue-cured tobacco branch 100 is not easily loosened from the mounting position 201, and The user can apply a little force in the corresponding direction to realize the loading and unloading of the flue-cured tobacco branch 100, and is also convenient for the user's operation.
  • the tobacco hood 200 includes a battery 204, a control circuit 205, and an electrode 207.
  • the control circuit 205 is respectively connected to the battery 204 and the electrode 207, and the electrode 207 and the heating unit.
  • the heating circuit of 202 is connected, and the control circuit 205 can transmit the electric energy of the battery 204 to the heating circuit of the heating unit 202 through the electrode 207 to perform electric heating of the heating unit 202.
  • the electrode 207 can be made of a material such as copper, zinc, silver, platinum or graphite.
  • the arrangement of the electrodes 207 provides a more specific implementation for the transmission of electrical energy between the battery 204 and the heating portion 202, facilitating the application and promotion of the cigarette maker 200.
  • the flue-cured tobacco branch 100 accommodates the smoking particles 102 made of tobacco material in the accommodating cavity 1013 formed in the non-deformable casing 101, since the smoky particles 102 are in the heating portion 202 of the smoky hood 200 After the force applied during the insertion, it can be conveniently moved and moved in the accommodating cavity 1013, so that the heating portion 202 can be engaged with the space required for the insertion of the heating portion 202, so that the heating portion 202 can be more labor-saving.
  • the cigarette particles 102 are conveniently inserted into the flue-cured tobacco 100, and the flue-cured tobacco 100 can be easily installed in the flue-cured tobacco unit 200.

Abstract

一种烤烟烟支(100)以及烤烟型电子烟,用于烤烟烟支(100)可简便地安装于烤烟器(200)。烤烟烟支(100)包括壳体(101),壳体(101)的周壁(1011)以及底壁(1012)形成一容纳腔体(1013),容纳腔体(1013)容纳有发烟颗粒(102),发烟颗粒(102)由烟草材料制成,容纳腔体(1013)的顶部开口处设有吸嘴(104),吸嘴(104)以及发烟颗粒(102)之间设有滤嘴(103),底壁(1012)设有加热孔(1014);当烤烟烟支(100)安装于烤烟器(200)的安装位(201)时,设于安装位(201)的加热部(202)通过加热孔(1014)插入发烟颗粒(102)中;当加热部(202)进行通电加热时,加热部(202)对发烟颗粒(102)进行加热,发烟颗粒(102)受热形成烟雾,烟雾经滤嘴(103)过滤后在吸嘴(104)处输出。

Description

一种烤烟烟支以及烤烟型电子烟 技术领域
本申请涉及电子烟领域,尤其涉及一种烤烟烟支以及烤烟型电子烟。
背景技术
烤烟型电子烟可以理解为,是一种通过烤烟器对烤烟烟支里的烟草成分进行加热、形成烟雾供吸烟用户吸食的电子烟产品。
在传统的烤烟型电子烟中,烤烟烟支通常直接用纸袋包裹切碎后的烟叶原料,烤烟烟支再塞入烤烟器设有加热部的安装位以完成烤烟烟支的安装,安装好后,加热部会插入烤烟烟支中,当加热部通电加热时,即可对烤烟烟支进行加热,即可形成烟雾。
然而,容易理解的是,由于烤烟烟支采用的做法是用纸袋包裹切碎后的烟叶原料,而切碎的烟草原料往往不规则,这就造成了烤烟烟支容易受力变形的特点,同时,加热部也往往很难插入烤烟烟支中,因此,将烤烟烟支安装于烤烟器,实为不便。
发明内容
本申请实施例提供了一种烤烟烟支以及烤烟型电子烟,用于烤烟烟支可简便地安装于烤烟器。
本申请实施例在第一方面,提供了一种烤烟烟支,烤烟烟支包括壳体,壳体的周壁以及底壁形成一容纳腔体,容纳腔体容纳有发烟颗粒,发烟颗粒由烟草材料制成,容纳腔体的顶部开口处设有吸嘴,吸嘴以及发烟颗粒之间设有滤嘴,底壁设有加热孔;
当烤烟烟支安装于烤烟器的安装位时,设于安装位的加热部通过加热孔插入发烟颗粒中;
当加热部进行通电加热时,加热部对发烟颗粒进行加热,发烟颗粒受热形成烟雾,烟雾经滤嘴过滤后在吸嘴处输出。
进一步的,发烟颗粒包括烟草材料;
发烟颗粒还包括香料、丙二醇、丙三醇以及山梨醇中的至少一种。
进一步的,发烟颗粒的形状包括球形、圆柱形以及不规则形状中的至少一种。
进一步的,发烟颗粒为粉末状颗粒,粉末状颗粒的粒径范围为0.1毫米至1毫米。
进一步的,滤嘴设有通孔,通孔可供空气或者烟雾流通。
进一步的,加热孔设于底壁的中心,加热部通过加热孔插入发烟颗粒时,加热部位于容纳腔体的中轴线上。
进一步的,容纳腔体依次包括第一容纳腔体、第二容纳腔体以及第三容纳腔体;
吸嘴包括输气通孔以及吸嘴周壁向外延伸形成的抵持部,吸嘴的一端通过抵持部与容纳腔体的顶部开口相抵持,固定于第一容纳腔体中;
发烟颗粒容纳于第三容纳腔体,滤嘴固定于第二容纳腔体中,发烟颗粒受热形成的烟雾经滤嘴过滤后从输气通孔对外输出。
本申请实施例在第二方面,提供了一种烤烟型电子烟,烤烟型电子烟包括第一方面提供的烤烟烟支以及与烤烟烟支对应的烤烟器;
当烤烟烟支安装于安装位时,加热部通过加热孔,插入发烟颗粒中;
当加热部进行通电加热时,加热部对发烟颗粒进行加热,发烟颗粒受热形成烟雾,烟雾经滤嘴过滤后在吸嘴处输出。
进一步的,加热部的加热温度范围为200℃至300℃。
进一步的,加热部为片状结构,加热部的端部形成一锐角。
进一步的,烤烟器设有一凹陷作为安装位,凹陷的形状与烤烟烟支的形状相贴合,加热部设于凹陷的底部,烤烟烟支可插入凹陷并固定于凹陷。
进一步的,烤烟器设有隔热腔,隔热腔环绕凹陷,隔热腔用于吸收加热部加热发烟颗粒时散发的热量。
进一步的,烤烟器为棒状结构,安装位设于烤烟器的端部。
进一步的,烤烟烟支设有第一螺纹,安装位设有第二螺纹,烤烟烟支通过第一螺纹与第二螺纹的螺纹配合安装于安装位。
进一步的,烤烟器包括电池、控制电路以及电极,控制电路分别与电池以 及电极连接,电极与加热部连接,控制电路可将电池的电能通过电极传输至加热部,以进行加热部的通电加热。
本申请实施例提供的技术方案中,烤烟烟支通过在不易变形的壳体形成的容纳腔体中,容纳烟草材料制成的发烟颗粒,由于发烟颗粒在受烤烟器的加热部插入时所施加的作用力后,可在容纳腔体中方便地移动、活动,从而可与加热部配合、挪出加热部插入时所需的空间,因此加热部可较为省力、便捷地插入发烟颗粒,即插入烤烟烟支中,实现烤烟烟支可简便地安装于烤烟器。
附图说明
图1为本申请实施例中一种烤烟烟支的结构示意图;
图2为本申请实施例中一种烤烟烟支的壳体的实施例示意图;
图3为本申请实施例中一种烤烟型电子烟整体的实施例示意图;
图4为本申请实施例中又一种烤烟烟支的实施例示意图;
图5为本申请实施例中一种吸嘴的实施例示意图;
图6为本申请实施例中一种烤烟器的实施例示意图;
图7为本申请实施例中一种加热部的局部结构的实施例示意图;
图8为本申请实施例中又一种烤烟器的实施例示意图;
图9为本申请实施例中一种安装位的具体结构的实施例示意图。
具体实施方式
下面将结合本申请实施例中的附图,对本申请实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本申请一部分实施例,而不是全部的实施例。
本申请实施例提供了一种烤烟烟支以及烤烟型电子烟,用于烤烟烟支可简便地安装于烤烟器。
首先,请参阅图1,图1示出了本申请实施例提供的烤烟烟支100整体结构的实施例示意图,如图1所示,本申请实施例中,烤烟烟支100包括了壳体101。壳体101在实际应用中可采用陶瓷、不锈钢、玻璃纤维、碳纤维、塑料等一种或者多种的可耐高温材料制成,当采用多种可耐高温材料时。
壳体101还可根据不同的设计形成对应的、不同的复合结构,从而可在外壳101的耐高温、触摸手感、硬度、加工、塑形、成本等考量因素之间取得满意的平衡。
外壳101还可使用烤漆、喷漆等工艺,以在外壳101上进行图案的绘制,提高外壳101的外观美感,进而提高用户的视觉观感、提高用户的使用体验。
接着请参阅图2,图2示出的是壳体101整体结构的实施例示意图,如图2所示,壳体101包括了周壁1011以及底壁1012,周壁1011以及底壁1012形成一容纳腔体1013。
周壁1011的横截面的外表面的形状可以设计为圆形、椭圆形、矩形、多边形或者不规则图形,类似的,周壁1011的横截面的内表面的形状也可以设计为圆形、椭圆形、矩形、多边形或者不规则图形,外表面以及内表面的形状可以相同设计,也可以分开独立设计,具体在此不做限定。
其中,优选的,上述外表面以及内表面的形状皆设为圆形,与此同时,容纳腔体1013的形状随着设成了圆柱形,通过圆形形状的弧面结构设计,一方面圆形的外表面有益于用户的握持,从而方便用户将烤烟烟支100安装至烤烟器,另一方面圆形的内表面还方便发烟颗粒在容纳腔体中的填充、容纳,且发烟颗粒可围绕容纳腔体1013的中轴线分散均匀,更能促进较佳的加热效果。
容易理解,容纳腔体1013为半封闭设计,容纳腔体1013可从顶部开口填充进发烟颗粒102,以容纳发烟颗粒102,发烟颗粒102由烟草材料经预设的制作工艺制成。
底壁1012与周壁1011的底部在结构上相贴合,其设有通孔以作加热孔1014,加热孔1014的形状与烤烟器的加热部的形状相对应,以便该加热部可从加热孔1014插入加热孔1014上方、容纳腔体1013容纳的发烟颗粒102中。
类似的,加热孔1014的数量也与烤烟器的加热部的数量相对应,可以理解,通过增加发烟颗粒102中的加热部的数量,可提高发烟颗粒102的受热范围以及受热效率,进而可以显著提升发烟颗粒102的烟雾形成效率以及烟雾形成量。
在容纳腔体1013填充发烟颗粒102完成后,在容纳腔体1013内、发烟颗 粒上方处可设置一对应的滤嘴103,滤嘴103具体可采用如过滤棉、醋酸纤维等的滤嘴材料制成,滤嘴103一方面可在发烟颗粒102受热形成烟雾后对烟雾进行过滤,另一方面还可防止发烟颗粒102从容纳腔体1013洒落出。
滤嘴103的上方处,也是容纳腔体1013的顶部开口处设有吸嘴104,吸嘴104具体可采用不锈钢、硅胶、玻璃等材料制成,吸嘴104的结构可供用户在吸嘴104处吸咄、吸食烟雾。
请参阅图3,图3示出了本申请实施例提供的烤烟型电子烟整体结构的实施例示意图,如图3所示,在烤烟型电子烟中,烤烟烟支100可配有相对应的烤烟器200,当烤烟烟支100安装于烤烟器200,即安装于烤烟器200的安装位201时,烤烟器200设于安装位201的加热部202即可自然对准加热孔1014,通过加热孔1014插入发烟颗粒102中,其中,容易理解的,由于发烟颗粒102为细小的颗粒状,在容纳腔体1013中可方便的移动、活动,当加热部202插入发烟颗粒102中时,发烟颗粒102可自然地随着加热部202所施加的作用力,配合加热部202的插入向四周移动、挪出加热部202的插入所需的空间,从而加热部202可较为省力、便捷地插入发烟颗粒102中,完成烤烟烟支100的安装。
当加热部202进行通电加热时,加热部202即可对发烟颗粒102进行加热,发烟颗粒102受热形成烟雾,烟雾经滤嘴103过滤后在吸嘴104处输出,用户即可进行烟雾的吸食、吸咄。其中,由于发烟颗粒102为细小的颗粒状,较为方便热量的传递以及受热,因此发烟颗粒102可迅速形成烟雾,且形成的烟雾较为细腻、具有更加香醇的口感。
本申请实施例中,烤烟烟支100通过在不易变形的壳体101形成的容纳腔体1013中,容纳烟草材料制成的发烟颗粒102,由于发烟颗粒102在受烤烟器200的加热部202插入时所施加的作用力后,可在容纳腔体1013中方便地移动、活动,从而可与加热部202配合、挪出加热部202插入时所需的空间,因此加热部202可较为省力、便捷地插入发烟颗粒102,即插入烤烟烟支100中,实现烤烟烟支100可简便地安装于烤烟器200。
在实际应用中,烤烟烟支100还可具有多种优化的实现方式,以便进一步地提高用户体验,为便于理解,下面将列举其中几种较佳的实现方式,以作介 绍。
首先,在一种可能的实现方式中,发烟颗粒102不仅包括粉碎的烟草材料,还包括香料、丙二醇、丙三醇以及山梨醇中的至少一种。烟草材料可先通过利刃工具破碎后再根据预设的配方加入对应的香料、丙二醇、丙三醇或者山梨醇,炒制成发烟颗粒102,可以理解,香料、丙二醇、丙三醇以及山梨醇的加入都可调整发烟颗粒102受热所形成的烟雾的口感,以此形成不同的风格。在实际应用中,根据不同的配方,发烟颗粒102中香料、丙二醇、丙三醇以及山梨醇的比例,以及香料的具体不同成分及其比例可有所不同,具体在此不做限定。
其次,在另一种可能的实现方式中,发烟颗粒102的形状包括球形、圆柱形以及不规则形状中的至少一种。
可以理解,发烟颗粒102可具有不同的形状,以对应不同配方制成的发烟颗粒102,方便发烟颗粒120的分类、加工以及运输等等处理;或者,不同形状的发烟颗粒102所对应的烟雾形成效率以及烟雾口感也可具有不同,若同一配方下制成的发烟颗粒120具有不同的形状,其每种形状的发烟颗粒102还可具有不同的受热效果以及烟雾形成效率,因此可使得所形成的烟雾更具有层次感,口感更加的丰富。
在发烟颗粒102的形状中,具体可以采用球形、圆柱形状或者不规则形状,其中,需要特别提及的是球形的发烟颗粒102,球形的发烟颗粒102不仅可均匀的受热、易于加工,且还更有利于分散对发烟颗粒102所施加的作用力,从而在上述提及的加热部202插入发烟颗粒102中时,可更为灵活地移动、活动,挪出加热部202插入时所需的空间,由此进一步提升加热部202插入发烟颗粒102中时省力以及便捷的效果。
接着,在又一种可能的实现方式中,与上述类似,发烟颗粒102可具有不同的颗粒大小,可以理解的是,一方面,不同配方下制成的发烟颗粒102所需的理想颗粒大小也不尽相同;另一方面,同一配方下制成的发烟颗粒102在不同颗粒大小的受热条件下,也可改变对应的受热效果以及烟雾形成效率,以此形成不同口感的烟雾,通常来说,颗粒越小,发烟颗粒102越容易受热以及形成烟雾;又一方面,不同的颗粒大小还可影响加热部202插入发烟颗粒102中时省力以及便捷的效果,例如,颗粒越小的话加热部202则可越容易插入发 烟颗粒102中。
其中,发烟颗粒102具体可以制成为较为细小的颗粒,即粉末状颗粒,该粉末状颗粒的粒径范围可以为0.1毫米至1毫米,在该粒径范围下的发烟颗粒102,不仅方便加热部202的插入,兼具较佳的受热效果以及烟雾形成效率,而且在加工工艺上较为方便、加工成本较低,更有利于实际的应用以及推广。
再接着,请参阅图4,图4示出了又一种烤烟烟支100整体结构的实施例示意图,如图4所示,在又一种可能的实现方式中,滤嘴103设有通孔1031,通孔1031可供空气或者烟雾流通。
可以理解,通孔1031的设计,一方面可供烤烟烟支100外部的空气从吸嘴处进入烤烟烟支100后,通过滤嘴103上的通孔1031直接进入下方发烟颗粒102所在的容纳腔体1013中,另一方面发烟颗粒102受热形成的烟雾可直接经上方的滤嘴103上的通孔1031通过滤嘴103,后在滤嘴103上方的吸嘴处输出。在这过程中,通孔1031不仅可提高烤烟烟支100烟雾的输出的流畅性,进而提高烟雾的输出效果,同时还有利于烟雾的降温,可以理解,高温的烟雾与空气混合后,即可直接取得较佳的降温效果,烟雾降温后用户即可更为顺畅地吸食、吸咄烟雾,大大减少被烟雾烫伤的风险。
需要说明的是,通孔1031可以设为一个,也可设为多个。若为一个,则其适当增大通孔1031的大小,且将之设于滤嘴103的中心,以便保证通孔1031集中的烟雾输出及降温效果。若为多个,则可适当减小通孔1031的大小,同时将之均匀设于滤嘴103上,以便在滤嘴103上均匀实现通孔1031的烟输出及降温效果。
然后,在又一种可能的实现方式中,加热孔1014设于底壁1012的中心,加热部通过加热孔1014插入发烟颗粒102时,加热部位于容纳腔体1013的中轴线上。
可以理解,加热部位于容纳腔体1013的中轴线上时,即可对发烟颗粒102进行均匀的加热,从而发烟颗粒102所受热形成的烟雾更加的均匀、细腻,以达到更佳的口感。
再然后,在又一种可能的实现方式中,容纳腔体1013可分别与吸嘴104、滤嘴103以及发烟颗粒102对应,依次包括第一容纳腔体、第二容纳腔体以及 第三容纳腔体。
其中,请参阅图5,图5示出了吸嘴104具体结构的实施例示意图,如图5所示,吸嘴104包括吸嘴周壁1041在吸嘴104内部形成的输气通孔1042,以及吸嘴周壁1041向外延伸形成的抵持部1043,吸嘴104的一端通过抵持部1043与容纳腔体104的顶部开口相抵持,从而可固定于第一容纳腔体中,以将吸嘴固定在容纳腔体1013的顶部开口处。
发烟颗粒102容纳于第三容纳腔体,滤嘴103固定于第二容纳腔体中,发烟颗粒102在受热形成烟雾后,烟雾即可经滤嘴103过滤后从吸嘴104的输气通孔1042对外输出,用户即可在输气通孔1042处进行烟雾的吸食、吸咄。
容易看出,上述主要内容是从烤烟型电子烟中的烤烟烟支100出发进行说明的,下面则开始从烤烟型电子烟中的烤烟器200出发进行说明。
首先,请参阅图6,图6示出了烤烟器200整体结构的实施例示意图,如图6所示,烤烟器200包括了壳体203,壳体203上设有安装位201,以供烤烟烟支100的安装,壳体203可供用户的手持、握持,以便用户将烤烟烟支100通过安装位201安装在烤烟器200上以及安装完成后,安装位201处的加热部202即可进行发烟颗粒102的加热,吸食、吸咄发烟颗粒102受热形成的烟雾。
壳体203中可设置烤烟器200工作所需的其他部件,例如电池204、控制电路205。在烤烟器200的工作过程中,控制电路205可将电池204存储的电能抽取出,并将之传输至加热部202,加热部202上设有发热电路,通电后即可进行加热部202的通电加热,从而可对烤烟烟支100中的发烟颗粒102进行加热,以形成烟雾。
控制电路205在控制电池204向加热部202提供电能进行通电加热的功能中,不仅可控制加热功能的通断,还可实现定时加热、延时加热、调节加热功率等等功能。
壳体203上还可设有电源调节键206,电源调节键206与控制电路205相连接,电源调节键206可采用按压或者滑动、触发等方式接收用户的电源控制指令,通过电源调节键206,控制电路205可接收到来自用户的电源控制指令, 调节电池204对加热部202的电能输出,从而调节加热部202的加热效果。
其中,电源调节键206可只提供启动或关闭电源的功能,即启动或者关闭加热部202的加热功能;或者,还可设置加热功率的调节功能,即调节电池204的电能输出功率、调节加热部202的加热功率。当然,对应的,电源调节键206可采用一个或者多个的物理键以实现上述的功能。
类似的,壳体203上还可设置一个或者多个的功能指示灯,以向用户指示烤烟器200的工作状态,例如未加热状态、加热状态、低温加热状态、高温加热状态、定时加热状态、延时加热状态等等,具体在此不做限定。
在实际应用中,与上述的烤烟烟支100类似,烤烟器200也可具有多种优化的实现方式,以便进一步地提高用户体验,为便于理解,下面同样将列举其中几种较佳的实现方式,以作介绍。
首先,在一种可能的实现方式中,由于烤烟烟支100中的烟颗粒102为细小的颗粒状,较为方便热量的传递以及受热,因此,加热部202在较低的加热功率下也可保证对发烟颗粒120的加热功率、形成所需的烟雾,从而实现了低温加热。
进一步的,加热部202可调整加热功率,从而加热部202的加热温度范围具体可以调整为200℃至300℃,可以理解,在这低温加热温度区间下,不仅可降低电池204的能耗以及保证发烟颗粒102的正常加热,还可大大减少发烟颗粒102受热形成的烟雾中的焦油含量,大大降低烟雾中焦油伤害用户身体健康的风险。
其次,在另一种可能的实现方式中,介绍加热部202一种较佳的结构方式,请参阅图7,图7示出了加热部202的局部结构的实施例示意图,如图7所示,加热部202为片状结构,其端部,即远离安装位201的一端形成一锐角。
可以理解,一方面片状的结构可使得加热部202插入发烟颗粒102中时,可大大减小其所受到的阻力,从而可更省力地插入发烟颗粒102中;另一方面锐角的设计也可使得加热部202插入发烟颗粒102中时,其倾斜的接触面,可大大减小加热部202所受到的阻力,而且还可对发烟颗粒102施加更为集中、更大的作用力,以此可更省力地插入发烟颗粒102中。
接着,在又一种可能的实现方式中,如图6所示,烤烟器200设有一凹陷作为安装位201,凹陷的形状与烤烟烟支100的形状相贴合,如图3示出的烤烟烟支100与烤烟器200完成安装后的配合结构,烤烟烟支100可直接插入该凹陷,并稳靠地固定于该凹陷中,不易活动、松脱。
同时,加热部202设于该凹陷的底部,加热部202上的加热电路可在加热部202的底端部位与电池204通过导电部件构成连接,并将传输过来的电能进行加热部202的通电加热。
再接着,针对上一种可能的实现方式中,在下一个可能的实现方式中,烤烟器200设有隔热腔205,隔热腔205可环绕上述的凹陷设置,隔热腔205中可采用填充惰性气体、抽真空、硅胶层等方式,降低热传导效率,从而可吸收加热部202加热发烟颗粒102时散发的热量,大大减少烤烟器200向外散发的热量,用户在手持、握持烤烟器200时,大大降低由于烤烟器200加热时会可能温度过高、烫伤用户的风险。
然后,在又一种可能的实现方式中,请参阅图8,图8示出了烤烟器200又一种结构的实施例示意图,如图8所示,相较于图6中示出的块状结构,烤烟器200还可以为细长的棒状结构,安装位201设于烤烟器200的端部。
可以理解,相较于图6中示出的块状结构,图8中示出的棒状结构的烤烟器200更便于在用户手指间的夹持,用户仅需两根手指即可方便的如夹持香烟一般夹持住烤烟器200,并在安装于烤烟器200上的烤烟烟支100的吸嘴104处进行烟雾的吸食、吸咄。
而且,棒状结构的烤烟器200也更便于收纳,用户可方便的收纳于衣物口袋、公文包夹层等地方,方便携带。
再然后,针对上一种可能的实现方式中,在下一个可能的实现方式中,请参阅图9,图9示出了烤烟器200安装位的具体结构的实施例示意图,如图9所示,烤烟烟支100的底部设有第一螺纹,对应的安装位201设有第二螺纹,烤烟烟支100可通过第一螺纹与第二螺纹的螺纹配合安装于安装位201。
在实际应用中,第一螺纹可以为外螺纹,设于烤烟烟支的底部的外表面;对应的,第二螺纹可以为内螺纹,设于烤烟器200的安装位201的内表面。或者,第一螺纹可以为内螺纹,设于烤烟烟支的底部的内表面;对应的,第二螺 纹可以为外螺纹,设于烤烟器200的安装位201的外表面,具体在此不做限定。
通过该螺纹安装方式,可提高棒状结构的烤烟器200的空间利用率,大大减小安装位201的所需空间,且螺纹安装方式较为牢靠,烤烟烟支100不易从安装位201松脱,且用户在对应方向上施加少许作用力即可实现烤烟烟支100的装卸,也方便用户的操作。
再然后,在又一种可能的实现方式中,如图8所示,烤烟器200包括电池204、控制电路205以及电极207,控制电路205分别与电池204以及电极207连接,电极207与加热部202的加热电路连接,控制电路205可将电池204的电能通过电极207传输至加热部202的加热电路,以进行加热部202的通电加热。
电极207具体可采用铜、锌、银、铂或者石墨等材料制成。通过电极207的设置,为电池204与加热部202之间电能的传输提供了一种更为具体的实现方式,便于烤烟器200的应用和推广。
综上所述,烤烟烟支100通过在不易变形的壳体101形成的容纳腔体1013中,容纳烟草材料制成的发烟颗粒102,由于发烟颗粒102在受烤烟器200的加热部202插入时所施加的作用力后,可在容纳腔体1013中方便地移动、活动,从而可与加热部202配合、挪出加热部202插入时所需的空间,因此加热部202可较为省力、便捷地插入发烟颗粒102,即插入烤烟烟支100中,实现烤烟烟支100可简便地安装于烤烟器200。
本申请的说明书和权利要求书及上述附图中的术语“第一”、“第二”、“第三”、“第四”等(如果存在)是用于区别类似的对象,而不必用于描述特定的顺序或先后次序。应该理解这样使用的数据在适当情况下可以互换,以便这里描述的实施例能够以除了在这里图示或描述的内容以外的顺序实施。此外,术语“包括”和“具有”以及他们的任何变形,意图在于覆盖不排他的包含,例如,包含了一系列步骤或单元的过程、方法、系统、产品或设备不必限于清楚地列出的那些步骤或单元,而是可包括没有清楚地列出的或对于这些过程、方法、产品或设备固有的其它步骤或单元。
以上所述,以上实施例仅用以说明本申请的技术方案,而非对其限制;尽管参照前述实施例对本申请进行了详细的说明,本领域的普通技术人员应 当理解:其依然可以对前述各实施例所记载的技术方案进行修改,或者对其中部分技术特征进行等同替换;而这些修改或者替换,并不使相应技术方案的本质脱离本申请各实施例技术方案的精神和范围。

Claims (15)

  1. 一种烤烟烟支,其特征在于,所述烤烟烟支包括壳体,所述壳体的周壁以及底壁形成一容纳腔体,所述容纳腔体容纳有发烟颗粒,所述发烟颗粒由烟草材料制成,所述容纳腔体的顶部开口处设有吸嘴,所述吸嘴以及所述发烟颗粒之间设有滤嘴,所述底壁设有加热孔;
    当所述烤烟烟支安装于烤烟器的安装位时,设于所述安装位的加热部通过所述加热孔插入所述发烟颗粒中;
    当所述加热部进行通电加热时,所述加热部对所述发烟颗粒进行加热,所述发烟颗粒受热形成烟雾,所述烟雾经所述滤嘴过滤后在所述吸嘴处输出。
  2. 根据权利要求1所述的烤烟烟支,其特征在于,所述发烟颗粒包括所述烟草材料;
    所述发烟颗粒还包括香料、丙二醇、丙三醇以及山梨醇中的至少一种。
  3. 根据权利要求1所述的烤烟烟支,其特征在于,所述发烟颗粒的形状包括球形、圆柱形以及不规则形状中的至少一种。
  4. 根据权利要求1所述的烤烟烟支,其特征在于,所述发烟颗粒为粉末状颗粒,所述粉末状颗粒的粒径范围为0.1毫米至1毫米。
  5. 根据权利要求1所述的烤烟烟支,其特征在于,所述滤嘴设有通孔,所述通孔可供空气或者所述烟雾流通。
  6. 根据权利要求1所述的烤烟烟支,其特征在于,所述加热孔设于所述底壁的中心,所述加热部通过所述加热孔插入所述发烟颗粒时,所述加热部位于所述容纳腔体的中轴线上。
  7. 根据权利要求1所述的烤烟烟支,其特征在于,所述容纳腔体依次包括第一容纳腔体、第二容纳腔体以及第三容纳腔体;
    所述吸嘴包括输气通孔以及吸嘴周壁向外延伸形成的抵持部,所述吸嘴的一端通过所述抵持部与所述容纳腔体的顶部开口相抵持,固定于所述第一容纳腔体中;
    所述发烟颗粒容纳于所述第三容纳腔体,所述滤嘴固定于所述第二容纳腔体中,所述发烟颗粒受热形成的所述烟雾经所述滤嘴过滤后从所述输气通孔对外输出。
  8. 一种烤烟型电子烟,其特征在于,所述烤烟型电子烟包括权利要求1至7中任一项所述的烤烟烟支以及与所述烤烟烟支对应的烤烟器;
    当所述烤烟烟支安装于所述安装位时,所述加热部通过所述加热孔,插入所述发烟颗粒中;
    当所述加热部进行通电加热时,所述加热部对所述发烟颗粒进行加热,所述发烟颗粒受热形成烟雾,所述烟雾经所述滤嘴过滤后在所述吸嘴处输出。
  9. 根据权利要求8所述的烤烟型电子烟,其特征在于,所述加热部的加热温度范围为200℃至300℃。
  10. 根据权利要求8所述的烤烟型电子烟,其特征在于,所述加热部为片状结构,所述加热部的端部形成一锐角。
  11. 根据权利要求8所述的烤烟型电子烟,其特征在于,所述烤烟器设有一凹陷作为所述安装位,所述凹陷的形状与所述烤烟烟支的形状相贴合,所述加热部设于所述凹陷的底部,所述烤烟烟支可插入所述凹陷并固定于所述凹陷。
  12. 根据权利要求11所述的烤烟型电子烟,其特征在于,所述烤烟器设有隔热腔,所述隔热腔环绕所述凹陷,所述隔热腔用于吸收所述加热部加热所述发烟颗粒时散发的热量。
  13. 根据权利要求8所述的烤烟型电子烟,其特征在于,所述烤烟器为棒状结构,所述安装位设于所述烤烟器的端部。
  14. 根据权利要求8所述的烤烟型电子烟,其特征在于,所述烤烟烟支设有第一螺纹,所述安装位设有第二螺纹,所述烤烟烟支通过所述第一螺纹与所述第二螺纹的螺纹配合安装于所述安装位。
  15. 根据权利要求8所述的烤烟型电子烟,其特征在于,所述烤烟器包括电池、控制电路以及电极,所述控制电路分别与所述电池以及所述电极连接,所述电极与所述加热部连接,所述控制电路可将所述电池的电能通过所述电极传输至所述加热部,以进行所述加热部的通电加热。
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