TECHNICAL FIELD
[0001] The present disclosure relates to the field of novel cigarette smoking utensil, and
in particular, to a smoke generating device with enhanced heat exchange effect.
BACKGROUND
[0002] Existing heating cigarettes consist of two parts: a tobacco section and a filter
rod. Most of filter rods are composed of a supporting section close to the tobacco
section, a cooling section in the middle, and the end that is in contact with the
consumer's lips. When the heating cigarette is inserted into the existing smoke generating
device to heat the cigarette, as the tobacco section of the cigarette is relatively
short, most of which is only 10~15mm, with the maximum no more than 20mm. Most cigarettes
need to be inserted the smoke generating device together with the tobacco section
and/or the supporting section of the filter rod into the heating cavity. Besides,
in case consumers use general-purpose smoking utensils that are not produced for a
certain variety (or brand) of cigarettes, the end of the heating element may be less
than 2mm away from the supporting section of the cigarette filter rod, or even penetrating
into the head of the supporting section of the filter rod. Under the above circumstances,
once the cigarette is normally heated and smoked, there is a high probability that
the supporting-section material cannot withstand the high temperature of the heating
body with the occurrence of heat shrinkage or collapse. This not only affects the
smoking of the second half of the cigarette (the cigarette deforms or softens due
to heat shrinkage or collapse of the supporting section), but also directly affects
the smoking taste of the cigarette.
[0003] Smoke generating device with induction heating in a folded airway (Application No.
2020110443853) by the applicant designs a novel cigarette introduction pipe that reduces the contact
area between the smoking utensil and the cigarette filter rod to reduce heat shrinkage
of the material in the supporting section of the cigarette filter rod.
[0004] The present disclosure further improves on the basis of the above-mentioned patent
(Application No.:
2020110443853). It is expected to further reduce heat transmission of the smoking utensil to the
supporting section of the cigarette filter rod, while enhancing heat exchange effect
of the smoking utensil and increasing heat utilization rate.
SUMMARY
[0005] The present disclosure only improves the cigarette introduction pipe 1 of the smoking
utensil in the above-mentioned patent (Application No.:
2020110443853), and the remaining parts, e.g., the heating part, are the same as the patent (Application
No.:
2020110443853), which will not be described in detail in the description.
[0006] The present disclosure provides a smoke generating device with enhanced heat exchange
effect. The smoke generating device includes: a cigarette introduction pipe 1;
[0007] Wherein, the cigarette introduction pipe 1 is disposed at the upper end of the smoke
generating device, with a hollow tubular structure, its internal cavity is an air-mixing
cavity 1D, the center of the upper end of the cigarette introduction pipe 1 is the
first introduction hole 1B, and the center of its lower end is the second introduction
hole IE, the outer ring of the first introduction hole 1B is provided with a plurality
of air-guiding grooves 1C, the diameter of the air-mixing cavity 1D is greater than
that of the first introduction hole 1B, the second introduction hole 1E and the first
introduction hole 1B have the same diameter and are co-axial, the lower end of the
cigarette introduction pipe 1 has at least one air inlet channel 1A;
[0008] Wherein, the cigarette introduction pipe 1 is divided into an upper duct IF and a
lower duct 1J, and at least one heat insulation pad is disposed between the upper
duct IF and the lower duct 1J.
[0009] Preferably, the upper duct IF and the lower duct 1J are detachably connected or fixed
by an adhesive.
[0010] Preferably, the lower end of the upper duct IF and the upper end of the lower duct
1J have/form a positioning and matching platform 1H fitting up and down to realize
the positioning and matching of the two ducts, the positioning and matching platform
1H is conical or cylindrical.
[0011] Preferably, the groove or gap between the lower end of the upper duct IF and the
lower duct 1J is provided with a heat insulation pad, and the heat insulation pad
itself is not filled with the groove or gap.
[0012] In order to make the upper duct IF and the lower duct 1J tightly connected, an inorganic
high-temperature resistant adhesive with poor heat conductivity and large heat resistance
is preferably used for connecting cylindrical table, of course, they can also be connected
with traditional screws; the cone-shaped can be fixed by the self-locking and positioning
function of the cone.
[0013] The lower end of the upper duct IF and the upper end of the lower duct 1J realize
positioning and matching of each other through the positioning and matching platform
1H that fits up and down, or a part of the lower end of the upper duct IF and a part
of the upper end of the lower duct 1J together form a positioning and matching platform
1H.
[0014] Preferably, in case the positioning and matching platform 1H is a cylindrical, the
lower end of the upper duct IF includes a stepped round platform, the upper end of
the lower duct 1J includes a matching stepped round platform, together forming a positioning
and matching platform 1H.
[0015] The contact surfaces of the upper duct IF and the lower duct 1J are the upper and
lower horizontal planes and the vertical plane in the middle of the horizontal planes,
an upper heat insulation pad 1G is disposed between two upper horizontal planes, and
a lower heat insulation pad 1I is disposed between the two lower horizontal planes.
[0016] Preferably, in case the positioning and matching platform 1H is cone-shaped, the
lower end of the upper duct IF includes a cone-shaped platform, the upper end of the
lower duct 1J includes a cone-shaped that fits it, the contact surfaces of the upper
duct IF and the lower duct 1J are two horizontal planes at the upper and lower part
and a slope surface in the middle of the two horizontal planes, an upper heat insulation
pad 1G is disposed between two upper horizontal planes, and a lower heat insulation
pad 1I is disposed between the two lower horizontal planes.
[0017] Purposes of using heat insulation pad: performing relative heat insulation treatment
on the upper duct IF and the lower duct 1J, so that the heat of induction heating
from the lower duct 1J is more concentrated on the lower duct 1J, only a relatively
small part can be transferred to the upper duct IF through the positioning and matching
platform 1H and the heat insulation pad with relatively large heat resistance; thus,
the temperature at which the upper duct IF is slightly lower than that of the lower
duct 1J. Whereas the first introduction hole 1B on the upper duct IF is only a part
of the circular ring, and the circumference of the contact part of the upper duct
IF with the cigarette does not include the arc length corresponding to the multiple
air-guiding groove 1C for air inlet, thus, there are fewer arcs in direct contact
with the supporting section of the cigarette filter rod, which can reduce the heat
transmitting from the lower part of the smoking utensil, thereby obviously improving
heat shrinkage of the supporting section of the filter rod.
[0018] Preferably, the air-mixing cavity 1D of the cigarette introduction pipe 1 is further
provided with a first air-guiding duct 1M and a second air-guiding duct 1N;
[0019] Wherein, the heights of the first air-guiding duct 1M and the second air-guiding
duct IN are smaller than the minimum height of the air-mixing cavity 1D, the inner
diameters of the first air-guiding duct 1M and the second air-guiding duct IN are
smaller than the minimum diameter of the air-mixing cavity 1D, the axes of the two
ducts are coincident with or in parallel with the axe of the air-mixing cavity 1D,
the upper end of the first air-guiding duct 1M abuts against the inner wall of the
upper end of the cigarette introduction pipe 1, the lower end of the second air-guiding
duct IN abuts against the inner wall of the lower end of the cigarette introduction
pipe 1;
[0020] The second air-guiding duct IN is disposed inside the air inlet channel 1A and surrounds
the periphery of the first air-guiding duct 1M, and the gap between the first air-guiding
duct 1M and the second air-guiding duct IN serves as an airflow channel.
[0021] Preferably, the first air-guiding duct 1M or the second air-guiding duct IN are integrally
or detachably connected to the cigarette introduction pipe 1.
[0022] Preferably, the cigarette introduction pipe 1 is also provided with a fixing part
for fixing the first air-guiding duct 1M and the second air-guiding duct 1N.
[0023] Preferably, the fixing part that fixes the first air-guiding duct 1M and the second
air-guiding duct IN is at least one upper inner protrusion 1Q and at least one lower
inner protrusion 1P provided on the inner wall of the cigarette introduction pipe
1;
[0024] Wherein, the upper inner protrusion 1Q is integrally connected to the inner wall
of the upper end of the cigarette introduction pipe 1, and protrudes downward into
the air-mixing cavity 1D relative to the inner wall;
[0025] The lower inner protrusion 1P is disposed on the inner side of the air inlet channel
1A, which is integrally connected to the inner wall of the lower end of the cigarette
introduction pipe 1, and protrudes upward into the air-mixing cavity 1D relative to
the inner wall; the first air-guiding duct 1M abuts against the side wall of the upper
inner protrusion 1Q and is restricted to its inner side; the second air-guiding duct
1N abuts against the side wall of the lower inner protrusion 1P and is restricted
to its outer side.
[0026] The "periphery" and "outer side" in the present disclosure refers to the direction
away from the central axis of the heating cup 5 of the smoke generating device.
[0027] The "inner" of "inner side" in the present disclosure refers to the direction close
to the central axis of the heating cup 5 of the smoke generating device.
[0028] Preferably, the upper inner protrusion 1Q and the lower inner protrusion 1P are point-shaped
or ring-shaped.
[0029] The gap between the lower end of the first air-guiding duct 1M and the inner wall
of the lower end of the cigarette introduction pipe 1 serves as an airflow channel.
The gap between the upper end of the second air-guiding duct 1N and the inner wall
of the upper end of the cigarette introduction pipe 1 serves as an airflow channel.
The gap between the outer wall of the second air-guiding duct 1N and the inner side
wall of the cigarette introduction pipe 1 serves as an airflow channel.
[0030] Preferably, the inner diameter of the first air-guiding duct 1M is equal to or greater
than the outer diameter of the cigarette.
[0031] The cigarette introduction pipe 1 is made of a high-temperature resistant synthetic
material, e.g., PEEK plastic cement, etc.
[0032] The first air-guiding duct 1M is made of aluminum, copper or zinc alloy, which is
easy to process and conduct heat, or it can be a high-temperature resistant synthetic
material, e.g., PEEK plastic cement, etc.
[0033] The second air-guiding duct 1M is made of aluminum, copper or zinc alloy, which is
easy to process and conduct heat, or it can be a high-temperature resistant synthetic
material, e.g., PEEK plastic cement, etc.
[0034] The circulation path and heat-exchange process of outside air in the air-mixing cavity
1D are as follows:
In case the cigarette is inserted into the smoke generating device for smoking, the
outside air enters the gap between the outer wall of the cigarette and the air-guiding
groove 1C distributed in the circumferential direction of the first introduction hole
1B, while entering the bottom of the air-mixing cavity 1D, the outside air at room-temperature
relatively cools down the outer wall of the heated and sucked cigarette filter rod
of the smoke generating device. The air enters the gap between the first air-guiding
duct 1M and the second air-guiding duct 1N through the airflow channel between the
lower end of the first air-guiding duct 1M and the air-mixing cavity 1D, flowing upward
to the airflow channel between the upper end of the second air-guiding duct 1N and
the air-mixing cavity 1D, and entering the air inlet channel 1A downwards through
the airflow channel between the outer wall of the second air-guiding duct 1N and the
inner wall of the air-mixing cavity 1D.
[0035] During this process, the airflow is folded back in the air-mixing cavity 1D many
times, and the heat conducted from the inside of the smoke generating device exchanges
with the air at room-temperature flowing through the air-mixing cavity 1D through
the upper duct 1F and the lower duct 1J, until the passing air, under the negative
pressure of smokers' suction, finally sends the preliminarily heated air (through
the airflow channel where the heating element 6 is located) into the cigarette accommodating
cavity through the air inlet channel 1A.
[0036] Meanwhile, the first air-guiding duct 1M and the second air-guiding duct 1N may also
obtain maximum heat through radiation of the cigarette introduction pipe 1 and the
heating element 6 in contact with them, when the circulated air passes around the
first air-guiding duct 1M and the second air-guiding duct 1N, the air is also heated.
[0037] Another solution of the present disclosure is: the second air-guiding duct 1N is
replaced with a plurality of annularly distributed air inlet needles 1L inserted into
the air inlet channel 1A in an interference fit manner.
[0038] The gap between the air inlet hole at the upper end of the air inlet needle 1L and
the inner wall of the cigarette introduction pipe 1 serves as an airflow channel.
[0039] The air passes through the small hole inside the air inlet needle 1L and sends the
preliminarily heated air into the heating cavity, meanwhile, the air inlet needle
1L inserted from the end of the air inlet channel 1A may also obtain maximum heat
through radiation of the heating element of the lower duct 1J below it and the lower
duct 1J, when the circulating air passes through it, the air is also heated.
[0040] The diameter of the inner hole of the air inlet needle 1L is 0.1-0.9mm.
[0041] Preferably, the upper end hole of the air inlet needle 1L is an inclined end surface,
which can speed up air inlet rate and prevent accidental blockage during installation.
[0042] The above technical solutions can be freely combined under the premise of no contradiction.
[0043] The present disclosure has the following beneficial effects:
- 1. The present disclosure designs a smoke generating device with enhanced heat exchange
effect, and the cigarette introduction pipe is designed as two separable parts
- the upper and lower duct, the heat insulation pad performs relative heat insulation
on the upper duct and the lower duct, further playing the role of reducing the heat
transmitting from the lower heating cup and heating element to the upper part. Thus,
the temperature of the upper duct in contact with the cigarette filter rod is lower,
which greatly reduces heat shrinkage or collapse caused by the material of the supporting
section of the cigarette filter rod in contact with the cigarette introduction pipe
of the smoke generating device that cannot withstand high temperature of the heating
body.
- 2. In the preferred technical solutions, the present disclosure designs the first
air-guiding duct 1M and the second air-guiding duct 1N that guide air circulation
inside the cigarette introduction pipe, the air can go back and forth many times in
the air-mixing chamber 1D to fully exchange heat. The outside air cools down the cigarette
introduction pipe, while the cigarette introduction pipe and the heating element preheat
the air.
BRIEF DESCRIPTION OF THE DRAWINGS
[0044]
FIG.1 is a schematic longitudinal cross-sectional view of the cigarette introduction
pipe 1 of Embodiment 1. FIG.1a shows the condition in which cigarettes are not inserted,
while FIG.1b shows the part of the inserted cigarette with a dotted line.
FIG.2 is a schematic longitudinal cross-sectional view of the smoke generating device
of Embodiment 1 after inserting a cigarette.
FIG.3 is a schematic longitudinal cross-sectional view of the cigarette introduction
pipe 1 of Embodiment 2. FIG.3a shows the condition in which cigarettes are not inserted,
while FIG.3b shows the part of the inserted cigarette with a dotted line.
FIG.4 is a schematic longitudinal cross-sectional view of the cigarette introduction
pipe 1 of Embodiment 3.
[0045] List of signs in the drawings:
- 1. Cigarette introduction pipe, 1A. Air inlet channel, 1B. First introduction hole,
1C. Air-guiding groove, 1D.Air-mixing cavity, 1E. Second introduction hole, IF. Upper
duct, 1G. Upper heat insulation pad, 1H. Positioning and matching platform, 1I. Lower
heat insulation pad, 1J. Lower duct, 1K. Integrated duct, 1L. Air inlet needle, 1M.
First air-guiding duct, 1N. Second air-guiding duct, 1P. Lower inner protrusion, 1Q,
Upper inner protrusion,
DETAILED DESCRIPTION OF THE EMBODIMENTS
[0046] The present disclosure will be further explained below through specific embodiments.
Embodiment 1
[0047] As shown in FIG.1, a smoke generating device with enhanced heat exchange effect,
the smoke generating device includes: a cigarette introduction pipe 1; other parts
of the smoking utensil are the same as those in the patent (Application
No.2020110443853);
[0048] Wherein, the cigarette introduction pipe 1 is disposed at the upper end of the smoke
generating device, with a hollow tubular structure, its internal cavity is an air-mixing
cavity 1D, the center of the upper end of the cigarette introduction pipe 1 is the
first introduction hole 1B, and the center of its lower end is the second introduction
hole IE, the outer ring of the first introduction hole 1B is provided with a plurality
of air-guiding grooves 1C, the diameter of the air-mixing cavity 1D is greater than
that of the first introduction hole 1B, the second introduction hole 1E and the first
introduction hole 1B have the same diameter and are co-axial, the lower end of the
cigarette introduction pipe 1 has at least one air inlet channel 1A;
[0049] Wherein, the cigarette introduction pipe 1 is divided into an upper duct IF and a
lower duct 1J, and at least one heat insulation pad is disposed between the upper
duct 1F and the lower duct 1J.
[0050] The diameter of the first introduction hole 1B is equal to that of the cigarette
accommodating cavity 8, both are slightly larger than the outer diameter of the inserted
cigarette.
[0051] In the embodiment, the lower end of the upper duct 1F and the upper end of the lower
duct 1J realize the positioning and matching of each other by forming a positioning
and matching platform 1H that fits up and down. The positioning and matching platform
1H is cone-shaped, which can be fixed by the self-locking and positioning function
of the cone. The positioning and matching platform 1H is formed by a conical part
at the lower end of the upper duct 1F and a conical part at the upper end of the lower
duct 1J. The contact surfaces of the upper duct 1F and the lower duct 1J are two horizontal
planes at the upper and lower part and a slope surface in the middle of the two horizontal
planes, an upper heat insulation pad 1G is disposed between the two upper horizontal
planes, and a lower heat insulation pad 1I is disposed between the two lower horizontal
planes. Both the upper heat insulation pad 1G and the lower heat insulation pad 1I
are made of silica gel with high-temperature resistance and good heat insulation performance.
[0052] Of course, in other embodiments, the contact surface between the upper air-guiding
duct 1F and the lower air-guiding duct 1J may also have other forms, as long as the
above functions can be realized.
[0053] The air-mixing cavity 1D of the cigarette introduction pipe 1 is further provided
with a first air-guiding duct 1M and a second air-guiding duct 1N;
[0054] Wherein, the heights of the first air-guiding duct 1M and the second air-guiding
duct 1N are smaller than the minimum height of the air-mixing cavity 1D, the inner
diameters of the first air-guiding duct 1M and the second air-guiding duct 1N are
smaller than the minimum diameter of the air-mixing cavity 1D, the axes of the two
ducts are in parallel with the axe of the air-mixing cavity 1D, the upper end of the
first air-guiding duct 1M abuts against the inner wall of the upper end of the cigarette
introduction pipe 1, the lower end of the second air-guiding duct 1N abuts against
the inner wall of the lower end of the cigarette introduction pipe 1; the second air-guiding
duct 1N is disposed inside the air inlet channel 1A and surrounds the periphery of
the first air-guiding duct 1M, the gap between the first air-guiding duct 1M and the
second air-guiding duct 1N serves as an airflow channel.
[0055] The first air-guiding duct 1M, the second air-guiding duct 1N are separate from the
cigarette introduction pipe 1.
[0056] The cigarette introduction pipe 1 is also provided with an upper inner protrusion
1Q and a lower inner protrusion 1P inside to fix the position of the first air-guiding
duct 1M and the second air-guiding duct 1N;
[0057] Wherein, the upper inner protrusion (1Q) is a ring-shaped boss, which is connected
to the inner wall of the upper end of the cigarette introduction pipe 1, and protrudes
downward into the air-mixing cavity 1D relative to the inner wall;
[0058] The lower inner protrusion 1P is a ring-shaped boss, which is disposed on the inner
side of the air inlet channel 1A and connected to the inner wall of the lower end
of the cigarette introduction pipe 1, it protrudes upward into the air-mixing cavity
1D relative to the inner wall; the first air-guiding duct 1M abuts against the side
wall of the upper inner protrusion 1Q and is restricted to its inner side; the second
air-guiding duct 1N abuts against the side wall of the lower inner protrusion 1P and
is restricted to its outer side.
[0059] The lower end of the first air-guiding duct 1M is opposite to the lower inner protrusion
1P, with the gap therebetween serves as an airflow channel. The upper end of the second
air-guiding duct 1N is opposite to the upper inner protrusion 1Q, with the gap therebetween
serves as an airflow channel. The gap between the outer wall of the second air-guiding
duct 1N and the inner side of the air-mixing cavity 1D serves as an airflow channel.
[0060] The circulation path and heat-exchange process of outside air in the air-mixing cavity
1D are as follows:
In case the cigarette is inserted into the smoke generating device for smoking, the
outside air enters the gap between the outer wall of the cigarette and the air-guiding
groove 1C distributed in the circumferential direction of the first introduction hole
1B, while entering the bottom of the air-mixing cavity 1D, the outside air at room-temperature
relatively cools down the outer wall of the heated and sucked cigarette filter rod
of the smoke generating device. The air enters the gap between the first air-guiding
duct 1M and the second air-guiding duct 1N through the airflow channel between the
lower end of the first air-guiding duct 1M and the air-mixing cavity 1D, flowing upward
to the airflow channel between the upper end of the second air-guiding duct 1N and
the air-mixing cavity 1D, and entering the air inlet channel 1A downwards through
the airflow channel between the outer wall of the second air-guiding duct 1N and the
inner wall of the air-mixing cavity 1D.
[0061] During this process, the airflow is folded back in the air-mixing cavity 1D many
times, and the heat conducted from the inside of the smoke generating device exchanges
with the air at room-temperature flowing through the air-mixing cavity 1D through
the upper duct 1F and the lower duct 1J, until the passing air, under the negative
pressure of smokers' suction, finally sends the preliminarily heated air (through
the airflow channel where the heating element 6 is located) into the cigarette accommodating
cavity 8 through the air inlet channel 1A. Meanwhile, the first air-guiding duct 1M
and the second air-guiding duct 1N may also obtain maximum heat through radiation
of the cigarette introduction pipe 1 and the heating element 6 in contact with them,
when the circulated air passes around the first air-guiding duct 1M and the second
air-guiding duct 1N, the air is also heated.
FIG.1a is a schematic view of a cigarette introduction pipe 1. FIG.1b is a schematic
view of the cigarette introduction pipe 1 after inserting cigarettes.
FIG.2 is a schematic view after inserting cigarettes in the smoke generating device
in Embodiment 1.
FIG.2 shows the positions of each part of the cigarette, the suction of airflow, and
the direction of the airflow.
Embodiment 2
[0062] A smoke generating device with enhanced heat exchange effect. The smoke generating
device includes: a cigarette introduction pipe 1.
[0063] As shown in FIG.3, the difference between Embodiment 2 and Embodiment 1 is that:
the second air-guiding duct 1N is replaced with a plurality of annularly distributed
air inlet needle 1L inserted into the air inlet channel 1A in an interference fit
manner.
[0064] The diameter of the inner hole of the air inlet needle 1L is 0.1-0.9mm.
[0065] The first air-guiding duct 1M can be replaced with: an integrated duct 1K integrally
connected to the cigarette introduction pipe 1. The inner diameter of the integrated
duct 1K is equal to the diameter of the first introduction hole 1B. The integrated
duct 1K is thin-walled.
[0066] FIG3a is a schematic view of a cigarette introduction pipe 1. FIG3b is a schematic
view of the cigarette introduction pipe 1 after inserting cigarettes.
Embodiment 3
[0067] A smoke generating device with enhanced heat exchange effect. The smoke generating
device includes: a cigarette introduction pipe 1.
[0068] As shown in FIG.4, the difference from Embodiment 1 is that:
the lower end of the upper duct 1F and the upper end of the lower duct 1J realize
the positioning and matching of each other by forming a positioning and matching platform
1H that fits up and down.
[0069] In case the positioning and matching platform 1H is cylindrical, the lower end of
the upper duct 1F includes a stepped round platform, the upper end of the lower duct
1J includes a matching stepped round platform, together forming a positioning and
matching platform 1H.
[0070] The contact surfaces of the upper duct 1F and the lower duct 1J are two upper and
lower horizontal planes and the vertical plane in the middle of the horizontal planes,
an upper heat insulation pad 1G is disposed between two upper horizontal planes, and
a lower heat insulation pad 1I is disposed between the two lower horizontal planes.
[0071] The air-mixing cavity 1D of the cigarette introduction pipe 1 is not provided with
a first air-guiding duct 1M and a second air-guiding duct 1N.
[0072] The above are only specific embodiments of the present disclosure, the protection
scope of the present disclosure is not limited thereto, any person skilled in the
art can easily think of changes or substitutions within the technical scope disclosed
by the present disclosure, and they shall be covered by the protection scope of the
present disclosure. Thus, the protection scope of the present disclosure shall be
subject to the protection scope of the claims.
1. A smoke generating device with enhanced heat exchange effect, comprising a cigarette
introduction pipe (1);
Wherein, the cigarette introduction pipe (1) is disposed at the upper end of the smoke
generating device, with a hollow tubular structure, the internal cavity is an air-mixing
cavity (1D), the center of the upper end of the cigarette introduction pipe (1) is
the first introduction hole (1B), and the center of its lower end is the second introduction
hole (1E), the outer ring of the first introduction hole (1B) is provided with a plurality
of air-guiding grooves (1C), the diameter of the air-mixing cavity (1D) is greater
than that of the first introduction hole (1B), the second introduction hole (1E) and
the first introduction hole (1B) have the same diameter and are co-axial, the lower
end of the cigarette introduction pipe (1) has at least one air inlet channel (1A);
Wherein, the cigarette introduction pipe (1) is divided into an upper duct (1F) and
a lower duct (1J), and at least one heat insulation pad is disposed between the upper
duct (1F) and the lower duct (1J).
2. The smoke generating device of claim 1, wherein the upper duct (1F) and the lower
duct (1J) are detachably connected or fixed by an adhesive.
3. The smoke generating device of claim 1, wherein the lower end of the upper duct (1F)
and the upper end of the lower duct (1J) have/form a positioning and matching platform
(1H) fitting up and down to realize the positioning and matching of the two ducts,
the positioning and matching platform (1H) is conical or cylindrical.
4. The smoke generating device of claim 1, wherein the groove or gap between the lower
end of the upper duct (1F) and the lower duct (1J) is provided with a heat insulation
pad, and the heat insulation pad itself is not filled with the groove or gap.
5. The smoke generating device of claim 1, wherein the air-mixing cavity (1D) of the
cigarette introduction pipe (1) is also provided with a first air-guiding duct (1M)
and a second air-guiding duct (1N);
Wherein, the heights of the first air-guiding duct (1M) and the second air-guiding
duct (1N) are smaller than the minimum height of the air-mixing cavity (1D), the inner
diameters of the first air-guiding duct (1M) and the second air-guiding duct (1N)
are smaller than the smallest diameter of the air-mixing cavity (1D), the axes of
the two air-guiding ducts coincide with the axe of the air-mixing cavity (1D) or are
disposed in parallel, the upper end of the first air-guiding duct (1M) abuts against
the inner wall of the upper end of the cigarette introduction pipe (1), and the lower
end of the second air-guiding duct (1N) abuts against the inner wall of the lower
end of the cigarette introduction pipe (1);
The second air-guiding duct (1N) is disposed inside the air inlet channel (1A) and
surrounds the periphery of the first air-guiding duct (1M), the gap between the first
air-guiding duct (1M) and the second air-guiding duct (1N) serves as the airflow channel.
6. The smoke generating device of claim 5, wherein the first air-guiding duct (1M) or
the second air-guiding duct (1N) are integrally or detachably connected to the cigarette
introduction pipe (1).
7. The smoke generating device of claim 5, wherein the cigarette introduction pipe (1)
is also provided with a fixing part for fixing the first air-guiding duct (1M) and
the second air-guiding duct (1N).
8. The smoke generating device of claim 7, wherein the fixing part that fixes the first
air-guiding duct (1M) and the second air-guiding duct (1N) is at least one upper inner
protrusion (1Q) and at least one lower inner protrusion (1P) provided on the inner
wall of the cigarette introduction pipe (1);
Wherein, the upper inner protrusion (1Q) is integrally connected with the inner wall
of the upper end of the cigarette introduction pipe (1), and protrudes downward into
the air-mixing cavity (1D) relative to the inner wall;
The lower inner protrusion (1P) is disposed on the inner side of the air inlet channel
(1A), which is integrally connected to the inner wall of the lower end of the cigarette
introduction pipe (1), and protrudes upward into the air-mixing cavity (1D) relative
to the inner wall; the first air-guiding duct (1M) abuts against the side wall of
the upper inner protrusion (1Q) and is restricted to its inner side; the second air-guiding
duct (1N) abuts against the side wall of the lower inner protrusion (1P) and is restricted
to its outer side.
9. The smoke generating device of claim 5, wherein the second air-guiding duct (1N) is
replaced with a plurality of annularly distributed air inlet needles (1L) inserted
into the air inlet channel (1A) in an interference fit manner.
10. The smoke generating device of claim 8, wherein the upper inner protrusion (1Q) and
the lower inner protrusion (1P) are point-shaped or ring-shaped.