CN110584218A - Cigarette cartridge heating device - Google Patents

Cigarette cartridge heating device Download PDF

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Publication number
CN110584218A
CN110584218A CN201910981882.7A CN201910981882A CN110584218A CN 110584218 A CN110584218 A CN 110584218A CN 201910981882 A CN201910981882 A CN 201910981882A CN 110584218 A CN110584218 A CN 110584218A
Authority
CN
China
Prior art keywords
cartridge
barrel
cylinder
heating apparatus
cartridge heating
Prior art date
Legal status (The legal status 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 status listed.)
Pending
Application number
CN201910981882.7A
Other languages
Chinese (zh)
Inventor
张和平
刘长城
程旭东
王成虎
王孝峰
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
China Tobacco Anhui Industrial Co Ltd
Institute of Advanced Technology University of Science and Technology of China
Original Assignee
China Tobacco Anhui Industrial Co Ltd
Institute of Advanced Technology University of Science and Technology of China
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 China Tobacco Anhui Industrial Co Ltd, Institute of Advanced Technology University of Science and Technology of China filed Critical China Tobacco Anhui Industrial Co Ltd
Priority to CN201910981882.7A priority Critical patent/CN110584218A/en
Publication of CN110584218A publication Critical patent/CN110584218A/en
Pending legal-status Critical Current

Links

Abstract

The invention provides a smoke cartridge heating device which comprises a cartridge main body, an articulated element and a rotating element, wherein the cartridge main body comprises a first cartridge body, a second cartridge body and an accommodating cavity formed by enclosing the first cartridge body and the second cartridge body, a gap is arranged between the first cartridge body and the second cartridge body, the first cartridge body is hinged with the second cartridge body through the articulated element, the rotating element is connected with the first cartridge body or the second cartridge body, and the rotating element drives the first cartridge body or the second cartridge body to rotate so as to change the accommodating space of the accommodating cavity. Therefore, the technical scheme provided by the invention can drive the first cylinder body or the second cylinder body to rotate through the rotating part, so that the friction acting force applied to the outer surface of the cigarette cartridge is reduced when the cigarette cartridge is put in or taken out, the cigarette cartridge is prevented from being broken, and the use is convenient; meanwhile, when the cartridge is put into the cartridge main body, the hinge member can make the inner wall of the cartridge main body in close contact with the cartridge, thereby improving the heating effect.

Description

Cigarette cartridge heating device
Technical Field
The invention relates to the field of smoking products, in particular to a cigarette cartridge heating device.
Background
At present, in a heating non-combustible tobacco suction device, a peripheral heating method is generally adopted, but after smoking of a smoke bomb is finished, the process of taking out the smoke bomb is complex; moreover, after external high-temperature heating, the external packing strength of the cartridge becomes small, so that in the process of taking out the cartridge, the external surface of the cartridge is subjected to larger friction force, the cartridge is easy to break, and the cartridge is inconvenient to use.
Disclosure of Invention
The invention mainly aims to provide a cigarette bullet heating device, which solves the problem that the existing cigarette bullet is easy to break when taken out due to the fact that the external packing strength of the cigarette bullet is reduced after the existing cigarette bullet is heated at high temperature outside.
To achieve the above object, the present invention proposes a cartridge heating apparatus comprising:
the barrel comprises a barrel main body and a barrel body, wherein the barrel main body comprises a first barrel body, a second barrel body and an accommodating cavity formed by enclosing the first barrel body and the second barrel body, and a gap is formed between the first barrel body and the second barrel body;
the first cylinder is hinged with the second cylinder through the hinge;
the rotating part is connected to the first barrel or the second barrel, and the rotating part drives the first barrel or the second barrel to rotate so as to change the accommodating space of the accommodating cavity.
Further, the cartridge heating device further comprises a limiting part, the limiting part is connected with the cylinder main body, and the limiting part is movably connected with the rotating part.
Further, the locating part includes limiting plate and lug, spacing hole has been seted up on the limiting plate, rotate the piece and locate spacing downthehole, just rotate the piece with the lug is connected.
Furthermore, an insertion hole is formed in the limiting plate and penetrates through the limiting plate, and the insertion hole is communicated with the accommodating cavity.
Furthermore, a first connecting piece is arranged on the first cylinder, and a second connecting piece is arranged on the second cylinder;
the articulated elements include fixed axle and elastic component, the fixed axle passes in proper order first connecting piece, elastic component and the second connecting piece, so that first barrel with the second barrel is articulated.
Further, the elastic member is a torsion spring.
Further, the cartridge heating device further comprises a gasket, and the gasket is arranged at the bottom of the cylinder main body.
Further, the inner wall of the cylinder main body is of a thin-wall shell structure made of a high-heat-conductivity-coefficient material, and the outer wall of the cylinder main body is of a heat-insulating layer made of a low-heat-conductivity-coefficient material.
Further, the surface of the thin-wall shell structure facing the containing cavity is coated with a glass glaze film.
Further, the cartridge heating device further comprises an air inlet, and the air inlet is arranged on the first cylinder and/or the second cylinder.
In an embodiment of the present invention, the cartridge heating device includes a cartridge main body, a hinge element, and a rotating element, the cartridge main body includes a first cartridge, a second cartridge, and an accommodating cavity enclosed by the first cartridge and the second cartridge, a gap is provided between the first cartridge and the second cartridge, the first cartridge is hinged to the second cartridge through the hinge element, the rotating element is connected to the first cartridge or the second cartridge, and the rotating element drives the first cartridge or the second cartridge to rotate so as to change an accommodating space of the accommodating cavity. Therefore, the technical scheme provided by the invention can drive the first cylinder or the second cylinder to rotate through the rotating piece, so that the friction acting force applied to the outer surface of the cigarette bullet is reduced when the cigarette bullet is put in or taken out, the cigarette bullet is prevented from being broken, and the use is convenient; meanwhile, when the cartridge is put into the cartridge main body, the hinge member can make the inner wall of the cartridge main body in close contact with the cartridge, thereby improving the heating effect.
Drawings
In order to more clearly illustrate the embodiments or exemplary technical solutions of the present invention, the drawings used in the embodiments or exemplary descriptions will be briefly described below, it is obvious that the drawings in the following description are only some embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to the drawings without creative efforts.
FIG. 1 is a schematic view of a cartridge heater according to an embodiment of the present invention in one direction;
FIG. 2 is a schematic view of the cartridge heating apparatus of the present invention in another orientation;
FIG. 3 is a schematic cross-sectional view of a cartridge heating apparatus according to an embodiment of the present invention;
FIG. 4 is a schematic structural diagram of a limiting element in one direction according to an embodiment of the present invention;
fig. 5 is a schematic structural diagram of a limiting element in another direction according to an embodiment of the invention.
The implementation, functional features and advantages of the objects of the present invention will be further explained with reference to the accompanying drawings.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
It should be noted that all the directional indicators (such as up, down, left, right, front, and rear … …) in the embodiment of the present invention are only used to explain the relative position relationship between the components, the movement situation, etc. in a specific posture (as shown in the drawing), and if the specific posture is changed, the directional indicator is changed accordingly.
In addition, the descriptions related to "first", "second", etc. in the present invention are for descriptive purposes only and are not to be construed as indicating or implying relative importance or implicitly indicating the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include at least one such feature. In addition, technical solutions between various embodiments may be combined with each other, but must be realized by a person skilled in the art, and when the technical solutions are contradictory or cannot be realized, such a combination should not be considered to exist, and is not within the protection scope of the present invention.
As shown in FIGS. 1 to 5, the present invention provides a cartridge heating device.
In one embodiment, as shown in fig. 1 and 2, the cartridge heating device includes a cartridge main body 1, a hinge member 2, and a rotation member 3, where the cartridge main body 1 includes a first cartridge body 11, a second cartridge body 12, and a containing cavity 13 enclosed by the first cartridge body 11 and the second cartridge body 12, and a gap 14 is provided between the first cartridge body 11 and the second cartridge body 12. Wherein, the containing cavity 13 is used for containing the cartridge, since a gap 14 is provided between the first cylinder 11 and the second cylinder 12, the gap 14 is used for providing a space for the mutual rotation between the first cylinder 11 and the second cylinder 12, so as to open the containing cavity 13 when the cartridge is placed or taken out, or close the containing cavity 13 after the cartridge is placed, so that the inner walls of the first cylinder 11 and the second cylinder 12 clamp the cartridge, and the cartridge is prevented from falling off in the suction process; meanwhile, when the cartridge is put into the cartridge main body 1, the hinge member 2 can make the inner wall of the cartridge main body 1 and the cartridge in close contact, that is, the inner walls of the first cartridge 11 and the second cartridge 12 and the cartridge in close contact, so that the first cartridge 11 and the second cartridge 12 are better transferred to the cartridge, thereby improving the heating effect of the cartridge.
Further, hold chamber 13 and be upper end opening, lower extreme confined structure, wherein, the cigarette bullet can follow the upper end that holds chamber 13 inserts to this hold chamber 13, the lower extreme that holds chamber 13 is connected with heat sources such as heating element, or directly places the heat source at the lower extreme that holds chamber 13 to with heat transfer to holding in the chamber 13, with to insert to the cigarette bullet that holds in the chamber 13 heats, through the setting that holds chamber 13 promptly, the cigarette bullet heating device of this embodiment both can be used to heat, can realize holding and fixed function again, and simple structure is reliable, can practice thrift suction device's inner space.
Further, the heat source may be a device that generates heat by burning fuel or by heating with electric energy to heat the cartridge in the accommodating chamber 13.
Further, the cylinder body 1 has a cylindrical layered structure, that is, the first cylinder 11 and the second cylinder 12 are layered structures. The inner wall of the cylinder main body 1 is a thin-walled shell structure made of a high thermal conductivity material, which includes but is not limited to copper or alloy metal thereof, i.e., the inner walls of the first cylinder 11 and the second cylinder 12 are both thin-walled shell structures, so that heat is transferred to the smoke bomb contacting the thin-walled shell structures through the thin-walled shell structures. The outer wall of the cylinder body 1 is made of a heat insulating layer made of a low thermal conductivity material, including but not limited to glass fiber, porous ceramic, etc., i.e., the inner walls of the first cylinder 11 and the second cylinder 12 are heat insulating layers to prevent heat from diffusing, thereby causing heat loss.
Further, since the cartridge is directly contacted with the cavity wall of the accommodating cavity 13 after being inserted into the accommodating cavity 13, that is, directly contacted with the inner walls of the first cylinder 11 and the second cylinder 12, in this case, in order to avoid carbonization and adhesion of the cartridge on the inner walls of the first cylinder 11 and the second cylinder 12, the inner walls of the first cylinder 11 and the second cylinder 12 are coated with glass glaze film in the present embodiment, that is, the surface of the thin-walled shell structure facing the accommodating cavity is coated with glass glaze film.
Further, in order to avoid the metal or alloy metal of the thin-wall shell structure from being oxidized, an anti-oxidation film is arranged between the thin-wall shell structure and the glass glaze film.
Optionally, the thin-walled shell structure has a thickness of 0.2 mm. However, in other embodiments, the thickness of the thin-walled shell structure may be set to other values according to specific requirements, such as: 0.25mm, 0.3mm, etc., but is not limited thereto.
Further, the first cylinder 11 is hinged to the second cylinder 12 through the hinge 2, so that the first cylinder 11 and the second cylinder 12 rotate around the hinge 2 as a rotation center. The rotating part 3 is connected to the first cylinder 11 or the second cylinder 12, and the rotating part 3 drives the first cylinder 11 or the second cylinder 12 to rotate, so as to change the accommodating space of the accommodating cavity 13. That is, when the rotating member 3 is connected to the first cylinder 11, a pulling force or a pushing force is applied to the rotating member 3, so that the rotating member 3 drives the first cylinder 11 to rotate, at this time, the second cylinder 12 does not rotate, that is, the first cylinder 11 rotates about the rotation center of the hinge member 2 to open the accommodating cavity 13, when the accommodating cavity 13 is in an open state, a cartridge is put in, then, the pulling force or the pushing force applied to the rotating member 3 is withdrawn, the first cylinder 11 returns to an initial position under the action of the hinge member 2, that is, the inner surface of the cylinder main body 1 is in close contact with the cartridge, at this time, a heat source is activated to heat the cartridge and start suction, and after the suction is finished, the pulling force or the pushing force is applied to the rotating member 3 again to open the accommodating cavity 13 and take out the cartridge. Like this, when taking out the cigarette bullet, the cigarette bullet surface receives frictional force and reduces to prevent the breakage of cigarette bullet, and facilitate the use.
Further, when the rotating member 3 is connected to the second cylinder 12, a pulling force or a pushing force is applied to the rotating member 3, so that the rotating member 3 drives the second cylinder 12 to rotate, at this time, the first cylinder 11 does not rotate, that is, the second cylinder 12 rotates around the rotation center of the hinge member 2, so as to open the accommodating cavity 13, when the accommodating cavity 13 is in an open state, a cartridge is put in, then the pulling force or the pushing force applied to the rotating member 3 is withdrawn, the second cylinder 12 returns to an initial position under the action of the hinge member 2, that is, the inner surface of the cylinder main body 1 is in close contact with the cartridge, at this time, the heat source is activated to heat the cartridge and start to suck, after the suction is finished, the pulling force or the pushing force is applied to the rotating member 3 again so as to open the accommodating cavity 13 and take out the cartridge, which can also be achieved after the suction of the cartridge is finished, the friction force is reduced when the cigarette is taken out, and the cigarette cartridge is prevented from being broken.
Further, the quantity that rotates 3 settings is two, one of them rotate 3 connect in on the first barrel 11, another rotate 3 connect in on the second barrel 12, can rotate through setting up two and rotate 3 in order to drive respectively first barrel 11 with second barrel 12 rotates towards opposite direction, in order to open hold chamber 13, be convenient for put into or take out the cigarette bullet to the protection cigarette bullet is not by the breakage.
In an embodiment of the present invention, the cartridge heating device includes a cartridge main body 1, a hinge 2, and a rotating member 3, where the cartridge main body 1 includes a first cartridge 11, a second cartridge 12, and an accommodating cavity 13 enclosed by the first cartridge 11 and the second cartridge 12, a gap 14 is provided between the first cartridge 11 and the second cartridge 12, the first cartridge 11 is hinged to the second cartridge 12 through the hinge 2, the rotating member 3 is connected to the first cartridge 11 or the second cartridge 12, and the rotating member 3 drives the first cartridge 11 or the second cartridge 12 to rotate, so as to change an accommodating space of the accommodating cavity 13. Therefore, the technical scheme provided by the invention can drive the first cylinder body 11 or the second cylinder body 12 to rotate through the rotating part 3, so that the friction acting force applied to the outer surface of the cigarette bullet is reduced when the cigarette bullet is put in or taken out, the cigarette bullet is prevented from being broken, and the use is convenient; meanwhile, when the cartridge is put into the cartridge body 1, the hinge member 2 can make the inner wall of the cartridge body 1 closely contact with the cartridge, thereby improving the heating effect.
Further, the cartridge heating device further comprises an air inlet 4, and the air inlet 4 is opened on the first cylinder 11 and/or the second cylinder 12. Wherein, air inlet 4 with the accommodation space intercommunication that holds chamber 13, air inlet 4 be arranged in the cigarette bullet suction in-process, to let in outside air in holding chamber 13 to the flue gas mixed air that makes the cigarette bullet produce sucks together, thereby conveniently sucks, improves user's suction experience.
Further, the number of the air inlets 4 is one, that is, the air inlets 4 may be disposed at the bottom of the first cylinder 1, or the air inlets 4 may be disposed at the bottom of the second cylinder 1. Certainly, in order to increase the flow rate of the air flowing into the accommodating cavity 13, the number of the air inlets 4 is two, that is, one of the air inlets 4 is arranged on the first cylinder 11, and the other air inlet 4 is arranged on the second cylinder 12, so as to flow double air into the accommodating cavity 13, thereby facilitating the suction and improving the suction experience of the user.
Further, as shown in fig. 3, the cartridge heating device further includes a gasket 5, and the gasket 5 is installed at the bottom of the cartridge main body 1. Wherein, the bottom of section of thick bamboo main part 1 is bottom plate 15, gasket 5 install in 5 orientation of bottom plate hold the surface of chamber 13, promptly gasket 5 is located hold in the chamber 13 to keep apart the cigarette bullet bottom with bottom plate 15 avoids when bottom plate 15 contacts with the cigarette bullet bottom, because bottom plate 15's temperature is higher, makes bottom plate 15 heats the cigarette bullet bottom, thereby causes not good suction experience.
Further, the gasket 5 includes, but is not limited to, high temperature resistant heat insulation material such as asbestos, mica, etc.
Further, as shown in fig. 2, a first connecting member 16 is disposed on the first cylinder 11, and a second connecting member 17 is disposed on the second cylinder 12. The hinge assembly 2 comprises a fixed shaft 21 and an elastic member 22, wherein the fixed shaft 21 sequentially penetrates through the first connecting member 16, the elastic member 22 and the second connecting member 17, so that the first cylinder 11 is hinged to the second cylinder 12. The first connecting piece 16 and the second connecting piece 17 are both hollow structures, that is, through holes with the same size and size are arranged on the first connecting piece 16 and the second connecting piece 17, and the cross section of each through hole is circular, so that the first cylinder 11 and the second cylinder 12 can rotate mutually.
Further, the fixing shaft 21 is used for fixing the first connecting piece 16 and the second connecting piece 17. The fixing shaft 21 has a cylindrical structure, and the diameter of the fixing shaft 21 is smaller than that of the through hole, so that the fixing shaft 21 can pass through the through hole. Specifically, one end of the fixing shaft 21 passes through the through hole of the first connecting member 16, the other end of the fixing shaft 21 passes through the through hole of the second connecting member 17, and the middle region of the fixing shaft 21 passes through the elastic member 22, that is, the first connecting member 16 and the second connecting member 17 can rotate around the fixing shaft 21, so that the first barrel 11 and the second barrel 12 can rotate relatively.
Further, the elastic member 22 is a torsion spring that accumulates an elastic force when receiving an external force, so that the torsion spring allows the first cylinder 11 and the second cylinder 12 to be in close contact with each other by the accumulated elastic force when not receiving the external force, even if the first cylinder 11 and/or the second cylinder 12 are restored to the initial position.
Further, in order to avoid heat transfer to the fixing shaft 21 to cause temperature rise and heat loss, the first connecting piece 16 and the second connecting piece 17 are made of metal materials, the first connecting piece 16 is connected with the first cylinder 11 in a welding mode, and the second connecting piece 17 is connected with the second cylinder 12 in a welding mode, so that heat transfer from the first cylinder 11 or the second cylinder 12 to the first connecting piece 16 or the second connecting piece 17 is avoided.
Further, a layer of low thermal conductivity material is compounded on the hole walls of the through holes arranged on the first connecting piece 16 and the second connecting piece 17, such as: porous ceramics, aerogels, etc., to prevent heat transfer and diffusion.
Further, in order to avoid a large amount of heat from being transferred to the rotating member 3, the rotating member 3 is made of a low thermal conductivity, high temperature resistant material with certain toughness, such as: polyarylethersulfone ketones, and the like, are not limited herein.
Further, referring to fig. 4 and 5, the cartridge heating device further includes a limiting member 6, the limiting member 6 is connected to the cartridge main body 1, and the limiting member 6 is movably connected to the rotating member 3. The limiting member 6 is connected to an opening end of the barrel body 1, that is, the limiting member 6 covers the first barrel body 11 and the second barrel body 12. The limiting member 6 is used for limiting a rotation angle between the first cylinder 11 and the second cylinder 12, and preventing the hinge 2 from being damaged due to an excessive rotation angle, thereby damaging the elastic member 22.
Further, the limiting part 6 includes a limiting plate 61 and a bump 62, a limiting hole 63 has been opened on the limiting plate 61, the rotating part 3 is disposed in the limiting hole 63, and the rotating part 3 is connected with the bump 62. The stopper plate 61 is provided as a circular plate matching the shape of the cartridge body 1.
Further, the limiting plate 61 corresponds the area of rotating the piece 3 and has been seted up spacing hole 63, and this spacing hole 63 is used for restricting the direction of rotation and the rotational position of rotating the piece 3 to the restriction first barrel 11 with the turned angle between the second barrel 12 is prevented when the turned angle between the first barrel 11 with the second barrel 12 is too big, damages the torsion spring in the articulated elements 2. The opening of the limiting hole 63 on the limiting plate 61 can be set according to the maximum bearing capacity of the torsion spring, and is not limited herein.
Further, in order to apply pulling force or thrust to the rotation piece 3, namely, the height of the rotation piece 3 in the vertical direction is greater than the thickness of the limiting plate 61, namely, one end of the rotation piece 3 is fixed on the first cylinder 11 or the second cylinder 12, and the other end of the rotation piece is extended from the limiting hole 63 to the outer side of the limiting plate 61, and is connected with the projection 62, namely, when applying pulling force or thrust to the rotation piece 3, the pulling force or thrust can be applied to the projection 62 to drive the rotation piece 3 to move within the range of the limiting hole 63, and then the rotation piece 11 or the second cylinder 12 is driven.
Further, in order to increase the friction force, in this embodiment, the bumps 62 are wrapped with soft plastic or other material with good hand feeling, so as to facilitate the operation. Wherein, the pulling force or pushing force applied to the bump 62 can be applied manually or mechanically, such as: a power device is disposed on the cam 62, and the cam 62 and the rotating member 3 are driven by the power device to move, but not limited thereto.
Furthermore, the stopper plate 61 is further provided with an insertion hole 64, the insertion hole 64 penetrates through the stopper plate 61, and the insertion hole 64 communicates with the accommodating cavity 13. Wherein the insertion hole 64 is a cartridge insertion hole, that is, a cartridge is inserted from the insertion hole 64 so that the cartridge is wholly or partially accommodated in the accommodation chamber 13.
Further, the aperture of the insertion hole 64 is slightly larger than the diameter of the cartridge to facilitate insertion of the cartridge. Wherein, the insert hole 64 is located in the middle area of the limiting plate 61, so that when the cartridge is inserted, the cartridge can be located in the first barrel 11 and the second barrel 12, that is, there is no gap between the inner wall of the first barrel 11 and the second barrel 12 and the cartridge, so that the cartridge is in close contact with the inner wall of the first barrel 11 and the second barrel 12, thereby reducing the thermal resistance and improving the heat transfer rate and the heating effect.
In an embodiment of the present invention, the cartridge heating device includes a cartridge main body 1, a hinge 2, and a rotating member 3, where the cartridge main body 1 includes a first cartridge 11, a second cartridge 12, and an accommodating cavity 13 enclosed by the first cartridge 11 and the second cartridge 12, a gap 14 is provided between the first cartridge 11 and the second cartridge 12, the first cartridge 11 is hinged to the second cartridge 12 through the hinge 2, the rotating member 3 is connected to the first cartridge 11 or the second cartridge 12, and the rotating member 3 drives the first cartridge 11 or the second cartridge 12 to rotate, so as to change an accommodating space of the accommodating cavity 13. Therefore, the technical scheme provided by the invention can drive the first cylinder body 11 or the second cylinder body 12 to rotate through the rotating part 3, so that the friction acting force applied to the outer surface of the cigarette bullet is reduced when the cigarette bullet is put in or taken out, the cigarette bullet is prevented from being broken, and the use is convenient; meanwhile, when the cartridge is put into the cartridge body 1, the hinge member 2 can make the inner wall of the cartridge body 1 closely contact with the cartridge, thereby improving the heating effect.
The above description is only an alternative embodiment of the present invention, and not intended to limit the scope of the present invention, and all equivalent changes made by using the contents of the specification and the drawings, or any other related technical fields directly or indirectly applied thereto under the conception of the present invention are included in the scope of the present invention.

Claims (10)

1. A cartridge heating apparatus, comprising:
the barrel comprises a barrel main body and a barrel body, wherein the barrel main body comprises a first barrel body, a second barrel body and an accommodating cavity formed by enclosing the first barrel body and the second barrel body, and a gap is formed between the first barrel body and the second barrel body;
the first cylinder is hinged with the second cylinder through the hinge;
the rotating part is connected to the first barrel or the second barrel, and the rotating part drives the first barrel or the second barrel to rotate so as to change the accommodating space of the accommodating cavity.
2. The cartridge heating apparatus of claim 1, further comprising a retaining member, wherein the retaining member is coupled to the cartridge body and the retaining member is movably coupled to the rotating member.
3. The cartridge heating apparatus according to claim 2, wherein the limiting member comprises a limiting plate and a protrusion, the limiting plate is provided with a limiting hole, the rotating member is disposed in the limiting hole, and the rotating member is connected to the protrusion.
4. The cartridge heating apparatus according to claim 3, wherein the limiting plate is further provided with an insertion hole, the insertion hole penetrates through the limiting plate, and the insertion hole is communicated with the accommodating cavity.
5. The cartridge heating apparatus of claim 1, wherein the first barrel is provided with a first connector and the second barrel is provided with a second connector;
the articulated elements include fixed axle and elastic component, the fixed axle passes in proper order first connecting piece, elastic component and the second connecting piece, so that first barrel with the second barrel is articulated.
6. The cartridge heating apparatus of claim 5, wherein the resilient member is a torsion spring.
7. The cartridge heating apparatus of claim 1, further comprising a gasket mounted to a bottom of the cartridge body.
8. The cartridge heating apparatus according to claim 1, wherein the inner wall of the cartridge body is a thin-walled shell structure made of a high thermal conductivity material and the outer wall of the cartridge body is an insulating layer made of a low thermal conductivity material.
9. The cartridge heating apparatus of claim 8, wherein a surface of the thin-walled shell structure facing the receiving cavity is coated with a glass enamel film.
10. The cartridge heating apparatus according to claim 1, further comprising an air inlet opening on the first and/or second barrel.
CN201910981882.7A 2019-10-15 2019-10-15 Cigarette cartridge heating device Pending CN110584218A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201910981882.7A CN110584218A (en) 2019-10-15 2019-10-15 Cigarette cartridge heating device

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Application Number Priority Date Filing Date Title
CN201910981882.7A CN110584218A (en) 2019-10-15 2019-10-15 Cigarette cartridge heating device

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Publication Number Publication Date
CN110584218A true CN110584218A (en) 2019-12-20

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CN201910981882.7A Pending CN110584218A (en) 2019-10-15 2019-10-15 Cigarette cartridge heating device

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CN211065046U (en) * 2019-10-15 2020-07-24 中国科学技术大学先进技术研究院 Cigarette cartridge heating device

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