WO2022105131A1 - 气雾发生装置 - Google Patents

气雾发生装置 Download PDF

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Publication number
WO2022105131A1
WO2022105131A1 PCT/CN2021/091151 CN2021091151W WO2022105131A1 WO 2022105131 A1 WO2022105131 A1 WO 2022105131A1 CN 2021091151 W CN2021091151 W CN 2021091151W WO 2022105131 A1 WO2022105131 A1 WO 2022105131A1
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WO
WIPO (PCT)
Prior art keywords
heating
generating device
main body
aerosol generating
sliding
Prior art date
Application number
PCT/CN2021/091151
Other languages
English (en)
French (fr)
Inventor
梁峰
方日明
蒋路生
Original Assignee
深圳麦时科技有限公司
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 深圳麦时科技有限公司 filed Critical 深圳麦时科技有限公司
Publication of WO2022105131A1 publication Critical patent/WO2022105131A1/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
    • A24F40/46Shape or structure of electric heating means
    • 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

Definitions

  • the present application relates to the technical field of atomization, and in particular, to an aerosol generating device.
  • the aerosol substrate In the existing aerosol generating device for low-temperature baking, the aerosol substrate needs to be separated from the heating body and discarded after being heated by the heating body, and the separation may easily cause the aerosol substrate to partially or completely adhere to the heating body or the aerosol substrate. Crack, and then make the debris generated by the crack enter or adhere to the aerosol generating device, so it is not easy to clean, and the aerosol substrate adhered to the heating element will also affect the next heating of the new aerosol substrate. Mist taste.
  • the present application mainly provides an aerosol generating device to solve the problem that the aerosol substrate is easily broken when the aerosol substrate is replaced by the aerosol generating device.
  • the aerosol generating device includes: a receiver for accommodating an aerosol substrate; a heating element, including a heating seat body and a heating body, the heating body is arranged on the heating seat body, and the heating body is used for inserting an aerosol base is inserted into the receptacle to heat the aerosol base; an upper cover is slidably arranged with the receptacle; a transmission assembly is connected with the heating base and the upper cover; wherein, the The upper cover slides relative to the receiver, so as to drive the heating element to perform relative movement on the receiver through the transmission assembly.
  • the transmission assembly includes:
  • a traction member connected with the transmission member and the upper cover;
  • the traction member is driven by the traction force of the upper cover, so as to drive the heating base to move through the transmission member, so as to make the heating body move relative to the receiver.
  • the aerosol generating device further includes a locking member, and the locking member is configured to cooperate with the heating base to lock or unlock the heating member.
  • the locking member when the pulling member is in the first position, locks the heating base; when the pulling member is at the second position, the locking member unlocks the heating base .
  • the locking member further cooperates with the transmission member, and the traction member drives the locking member to change from a locked state to an unlocked state through the transmission member.
  • the aerosol generating device includes a main body, the main body is provided with a sliding cavity, the heating base body is slidably arranged in the sliding cavity, and both the transmission member and the locking member rotate. It is arranged on the main body, and the traction member drives the transmission member to rotate, thereby driving the heating seat to slide in the sliding cavity, and driving the locking member to lock or unlock the heating seat.
  • the transmission member includes a turntable portion, a toggle portion and a sliding portion connected to the turntable portion, the turntable portion is rotatably disposed on the main body, and the sliding portion slides with the traction member connected, and the toggle portion is used to drive the heating seat to slide in the sliding cavity.
  • the turntable portion is provided with a sliding slot
  • the locking member includes a connected swing arm and a sliding column, the swing arm is rotatably arranged on the main body, and the sliding column is connected to the sliding slot. sliding fit;
  • the heating seat body is provided with a locking part, and when the sliding column is located at the first relative position of the sliding groove, the swing arm is embedded in the locking part; the sliding column is located at the first relative position of the sliding groove; In two relative positions, the swing arm slides out of the locking portion.
  • the aerosol generating device further includes an elastic member disposed in the sliding cavity and elastically compressed between the heating base and the support wall of the sliding cavity.
  • the heating seat body is further provided with a push column; when the traction member is in the first position, the sliding column is located at a first relative position of the sliding groove, and the dial the moving part is spaced apart from the pushing column; when the traction member is in the second position, the sliding column is located at a second relative position of the sliding groove, and the toggle part abuts the pushing column; When the pulling member is in the third position, the toggle portion pushes against the pushing post, so that the heating seat body compresses the elastic member.
  • the main body is further provided with a limit notch
  • the heat generating base is provided with a limit slider
  • the limit slider is slidably matched with the limit notch
  • the pushing The column is arranged on the limit slider
  • the limit slider also protrudes from the limit slot
  • the locking portion is a locking notch on the limit slider.
  • the pulling member includes a pulling portion and a matching portion, the matching portion is provided on one side of the pulling portion, the pulling portion is connected to the upper cover, and the matching portion is connected to the upper cover.
  • the sliding part is slidably connected.
  • the main body is provided with a sink
  • the main body includes a first main body part and a second main body part
  • the second main body part is disposed at one end of the first main body part
  • the first main body part is A stop step is formed between the two main body parts and the first main body part
  • the sinking groove is arranged across the first main body part and the second main body part
  • the traction member is slidably arranged on the sinking slot Inside, the upper cover covers the receptacle and the second main body, and can be stopped by the stop step.
  • the receiver is connected to the main body, the receiver is provided with a receiving cavity, the bottom wall of the receiving cavity is provided with a perforation, and the heating body is perforated through the perforation; the The upper cover is provided with an avoidance hole for avoiding the receiving cavity.
  • the present application discloses an aerosol generating device.
  • the upper cover is used to pull the transmission assembly to drive the heating element to move relative to the receiver, so that the heating element can move relative to the aerosol substrate, thereby destroying the adhesion state between the aerosol substrate and the heating element caused by heating.
  • the situation that the aerosol substrate is broken by replacing the aerosol substrate from the aerosol generating device is avoided, thereby improving the service life of the aerosol generating device.
  • FIG. 1 is a schematic structural diagram of an embodiment of an aerosol generating device provided by the present application.
  • Fig. 2 is the explosion structure schematic diagram of the aerosol generating device shown in Fig. 1;
  • Fig. 3 is a schematic diagram of the explosion structure of the aerosol generating device shown in Fig. 2 except for the outer casing and the upper cover;
  • Fig. 4 is the top-view structure schematic diagram of the receiver in the aerosol generating device shown in Fig. 3;
  • FIG. 5 is a schematic structural diagram of the aerosol generating device shown in FIG. 2 after disassembling the casing, the upper cover and the receiver;
  • Fig. 6 is the state schematic diagram of the traction member in the first position in the area A shown in Fig. 5;
  • FIG. 7 is a schematic view of the state of the traction member in the second position in the area A shown in FIG. 5;
  • FIG. 8 is a schematic view of the state of the traction member in the third position in the area A shown in FIG. 5;
  • Fig. 9 is the structural representation of the heating element in the aerosol generating device shown in Fig. 3;
  • Figure 10 is a schematic structural diagram of a transmission member in the aerosol generating device shown in Figure 3;
  • FIG. 11 is a schematic structural diagram of a locking member in the aerosol generating device shown in FIG. 3 .
  • first”, “second” and “third” in the embodiments of the present application are only used for description purposes, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of indicated technical features. Thus, a feature defined as “first”, “second”, “third” may expressly or implicitly include at least one of that feature.
  • "a plurality of” means at least two, such as two, three, etc., unless otherwise expressly and specifically defined.
  • the terms “comprising” and “having”, and any variations thereof, are intended to cover a non-exclusive inclusion.
  • a process, method, system, product or device comprising a series of steps or units is not limited to the listed steps or units, but optionally also includes unlisted steps or units, or optionally also includes For other steps or units inherent to these processes, methods, products or devices.
  • FIG. 1 is a schematic structural diagram of an embodiment of the aerosol generating device provided by the present application
  • FIG. 2 is an explosion of the aerosol generating device shown in FIG. 1.
  • Schematic diagram of the structure Fig. 3 is a schematic view of the explosion structure of the aerosol generating device shown in Fig. 2 after removing the casing and the upper cover
  • Fig. 4 is a schematic top view structure of the receiver in the aerosol generating device shown in Fig. 3
  • Fig. 5 is Fig. 2
  • the aerosol generating device 100 includes a main body 10 , a heating element 20 , a transmission assembly 31 , a locking element 50 , an elastic element 60 , a receiver 70 and an upper cover 80 .
  • the transmission assembly 31 is connected to the heating element 20 and the upper cover 80 , and is used to transmit the traction force of the upper cover 80 to drive the heating element 20 to move relative to the receiver 70 .
  • the inside of the main body 10 is used to install components such as a battery and a circuit board, so as to supply power to the heating element 20 .
  • the main body 10 is also provided with a sliding cavity 12, and the heating element 20 is slidably arranged in the sliding cavity 12;
  • the transmission assembly 31 includes a transmission element 30 and a traction element 40, the traction element 40 is driven by the traction force, and the heating element 20 is driven by the transmission element 30 along the sliding cavity.
  • the locking member 50 is used to lock the heating element 20 and keep the position of the heating element 20 unchanged, and to unlock the heating element 20 so that the transmission element 30 can drive the heating element 20 to move;
  • the sliding cavity 12 is also provided with an elastic element 60 , the elastic member 60 is used to reset the initial position of the heating element 20;
  • the receiver 70 is connected to the main body 10 and used to accommodate the aerosol base 2, and the heating element 20 is also inserted into the receiver 70 to contact the aerosol base 2 and supply gas
  • the mist base 2 is heated;
  • the upper cover 80 is covered on the receiver 70 and slidably arranged with the receiver 70 , and is movably connected with the main body 10 .
  • the traction force may be provided by the user, or the traction force may also be provided by a power device such as a motor and a cylinder, which is not limited in this application.
  • the traction force is provided by the user, so the overall cost of the aerosol generating device 100 is relatively low.
  • FIG. 9 is a schematic structural diagram of the heating element in the aerosol generating device shown in FIG. 3 .
  • the heating element 20 includes a heating seat body 22 and a heating body 24, the heating body 24 is arranged on the heating seat body 22, the heating body 24 is used to be inserted into the aerosol base 2 and heat the aerosol base 2, and the heating seat 22 is slidably arranged in the sliding cavity 12 and can slide under the definition of the sliding cavity 12 .
  • the aerosol substrate 2 can be a product such as tobacco leaves or paper cigarettes, which can be heated to form smoke for the user to inhale.
  • the transmission member 30 is used to drive the heating base 22 to move, and the traction member 40 is connected with the transmission member 30 . Wherein, the traction member 40 is driven by the traction force, so as to drive the heating base 22 to move through the transmission member 30 , so as to make the heating body 24 move relative to the aerosol base 2 .
  • the heating body 24 moves relative to the aerosol base 2, so that the length of the heating body 24 inserted in the aerosol base 2 increases; or the heating body 24 moves relative to the aerosol base 2, so that the heating body 24 is inserted in the The length in the mist base 2 is shortened. Further, the heating element 24 moves relative to the aerosol base 2, so that the heating element 24 changes from a state of not contacting the aerosol base 2 to a state of mutual contact; or, the heating element 24 moves relative to the aerosol base 2, so that the heating element 24 is changed from the state of being in contact with the aerosol substrate 2 to the state of not being in contact with each other.
  • the traction member 40 can drive the heating element 20 to move toward the aerosol substrate 2 through the transmission member 30 ;
  • the receiver 70 is connected to the main body 10 , the receiver 70 can be fixedly connected to the main body 10 , or the receiver 70 can move relative to the main body 10 , which is not specifically limited in this application.
  • the insertable length between the heating element 24 and the aerosol base 2 can be increased.
  • the receiver 70 is provided with a receiving cavity 72, the bottom wall of the receiving cavity 72 is provided with a perforation 74, the receiving cavity 72 is used for receiving the aerosol substrate 2, the upper cover 80 is provided with an avoidance hole 82 for avoiding the receiving cavity 72, and the heating body 24 passes through it.
  • the heating element 24 is arranged in the through hole 74 , and the heating element 24 can perform telescopic motion relative to the receiver 70 , thereby changing the insertion length of the heating element 24 and the aerosol substrate 2 in the receiving cavity 72 .
  • the aerosol substrate 2 When the user uses the aerosol generating device 100 , once the aerosol substrate 2 is heated by the heating body 24 , the aerosol substrate 2 often adheres to the heating body 24 , which will cause the aerosol substrate 2 to escape from the receiving cavity 72 when When removing, it is easy to cause the aerosol substrate 2 to adhere to the heating element in part or in whole, or to break and fall off debris in the receiver 70 .
  • the aerosol base 2 When the aerosol base 2 is located in the receiving cavity 72 and adheres to the heating element 24, since the receiver 70 keeps the shape of the peripheral side of the aerosol base 2, and the bottom wall of the receiving cavity 72 shapes the bottom surface of the aerosol base 2, therefore When driving the heating element 24 to move relative to the aerosol base 2, the adhesion state between the aerosol base 2 and the heating element 24 can be destroyed, and at the same time, the shape of the receiver 70 to the aerosol base 2 can prevent the aerosol base 2 from breaking, and After the adhesion state is released, the aerosol substrate 2 can be completely removed from the receiver 70 , which avoids the occurrence of debris falling into the aerosol generating device 100 due to the rupture of the aerosol substrate 2 .
  • the shape of the through hole 74 corresponds to the shape of the heating element 24.
  • the heating element 24 is a resistance heating element, and its cross section is rectangular.
  • the through hole 74 is also rectangular, and the cross-sectional area of the through hole 74 is slightly larger than that of the heating element. 24, when the heating element 24 moves, the inner side of the edge of the perforation 74 can scrape the soot adhered to the surface of the heating element 74.
  • a transmission assembly 31 including a traction member 40 and a transmission member 30 is provided to drive the heating base 22 to move, thereby causing the heating body 24 to move relative to the aerosol base 2, thereby destroying the space between the aerosol base 2 and the heating body 24 due to heating
  • the resulting sticking state can avoid the occurrence of a situation in which the aerosol substrate 2 is broken due to replacement of the aerosol substrate 2 by the aerosol generating device 100 .
  • the transmission member 30 , the traction member 40 and the locking member 50 are all disposed on the main body 10 , and the aerosol generating device 100 further includes a casing 90 , which is covered on the outer side of the main body 10 .
  • the transmission member 30 , the traction member 40 and the locking member 50 are hidden and shielded.
  • the transmission member 30 , the traction member 40 and the locking member 50 may all be disposed on the outer casing 90 , and when the outer casing 90 is covered on the outer side of the base body 20 , the transmission member 30 and the locking member 50 are also arranged. Both form a matching relationship with the heating element 10; alternatively, the transmission element 30 and the traction element 40 are arranged on the main body 10, and the locking element 50 is additionally arranged on the outer casing 90, and when the outer casing 90 is covered on the main body 10, the locking element 50 forms a matching relationship with the heating element 20 . This application does not specifically limit this.
  • the locking member 50 is used to cooperate with the heating base 22 to lock or unlock the heating member 20 . Specifically, after the locking member 50 locks the heating element 20, the heating element 20 will be relatively fixed on the main body 10 and cannot slide along the sliding cavity 12.
  • the adjustable locking member 50 unlocks the heating element 20 so as to facilitate the traction element 40 and the transmission element 30 to drive the heating element 20 is stretched and retracted, thereby destroying the adhesion state of the aerosol base 2 and the heating body 24, but then removing the heating body, so as to ensure that the aerosol base 2 is not broken when it is removed from the receiving cavity 72; after removing the used aerosol base After 2, the locking element 50 locks the heating element 20 again, so that the receiver 70 can be loaded with a new aerosol substrate 2.
  • the locking member 50 can independently lock and unlock the heating element 20 under the control of the user, and the locking member 50 is not powered with the transmission member 30 and the traction member 40 .
  • the heating seat body 22 is provided with a locking groove, the locking member 50 is slidably arranged on the main body 10 or the housing 90, and when the locking member 50 is slidably inserted in the locking groove, the heating member 20 can be locked; the locking member 50 When sliding out of the lock slot, the heating element 20 can be unlocked.
  • the locking member 50 is movably connected with the pulling member 40 , in other words, the pulling member 40 also drives the locking member 50 to lock or unlock the heating element 20 at the same time.
  • the middle of the locking member 50 is rotatably connected to the main body 10, one end of the locking member 50 is slidably connected to the pulling member 40, and the other end is used to lock the heating member 20; when the pulling member 40 is in the first position, the pulling member 40 is locked to the One end of the locking member 50 is limited, so that the other end of the locking member 50 can keep the heating base 22 locked; when the pulling member 40 moves from the first position to the second position, the pulling member 40 drives the locking member 50 to rotate At a certain angle, the locking member 50 changes from the locked state of the heating base 22 to the unlocked state. At this time, the locking member 50 avoids a certain space, so that the traction member 40 can drive the transmission member 30 so that the heating member 20 is opposite to each other. Aerosol matrix 2 moves.
  • the locking member 50 also cooperates with the transmission member 30 , and the traction member 40 drives the locking member 50 through the transmission member 30 to change from the locked state of the heating seat 22 to the heating The unlocked state of the seat body 22 .
  • FIG. 6 is a schematic diagram of the state of the traction member in the first position in the area A shown in FIG. 5, and FIG. 7 is a schematic diagram of the state of the traction member in the second position in the area A shown in FIG. 5.
  • Fig. 8 is a schematic diagram of the state of the traction member in the third position in the area A shown in FIG. 5 , wherein the dashed line part covered by the transmission member 30 is a schematic outline diagram of each component after the transmission member is seen through.
  • the locking member 50 locks the heating base 22; when the pulling member 40 moves from the first position to the second position, the locking member 50 unlocks the heating base 22; During the movement from the second position to the third position, the transmission element 30 drives the heating element to move.
  • the heating seat body 22 is slidably arranged in the sliding cavity 12
  • the transmission member 30 and the locking member 50 are both rotatably arranged on the main body 10
  • the traction member 40 can drive the transmission member 30 to rotate, thereby driving the heating seat body 22 to rotate.
  • the sliding cavity 12 slides inside, and the locking member 50 can also be driven to lock or unlock the heating seat body 22 .
  • the transmission member 30 changes from the state of being isolated from the heat generating base 22 to the state of abutting with the heat generating base 22; as shown in FIG. 7
  • the transmission member 30 drives the heating seat body 22 to move.
  • FIG. 10 is a schematic structural diagram of the transmission member in the aerosol generating device shown in FIG. 3 .
  • the transmission member 30 includes a substantially circular turntable portion 32 , a toggle portion 34 and a sliding portion 36 that protrude and extend from the side of the turntable portion 32 .
  • the turntable portion 32 is rotatably arranged on the main body 10
  • the sliding portion 36 is slidably connected with the traction member 40
  • the toggle portion 34 is used to drive the heating seat 22 to slide in the sliding cavity 12 .
  • the main body 10 is further provided with a sinker 14 , and the traction member 40 is arranged in the sinker 14 and moves under the limit of the sinker 14 .
  • the pulling member 40 includes a pulling portion 44 and a matching portion 42.
  • the matching portion 42 is provided on one side of the pulling portion 44, the pulling portion 44 is connected to the upper cover 80, and the sliding portion 36 is slidingly engaged with the matching portion 42; wherein, the pulling member 40 is subjected to a pulling force.
  • the sliding part 36 slides along the matching part 42 by moving in the sink groove 14 , thereby driving the turntable part 32 to rotate, and the toggle part 34 can push the heating base 22 to slide in the sliding cavity 12 .
  • the traction member 40 reciprocates once under the limit of the sink 14
  • the sliding portion 36 reciprocates along one side of the matching portion 42
  • the transmission member 30 swings back and forth once and drives the heating element 20 to move once.
  • the sliding part 36 is a sliding column, and the matching part 44 is a limiting groove; or, the sliding part 36 is a limiting groove, and the matching part 44 is a sliding column; wherein, the sliding column and the limiting groove are slidably matched.
  • the transmission member 30 is an integrally formed structure, or the transmission member 30 may also be a combined structure, which is not specifically limited in this application.
  • the transmission member 30 is a combined structure, and the sliding portion 36 is detachably connected to the turntable portion 32 .
  • the sliding part 36 can be a structure such as a cylinder or a protrusion, and the matching part 42 can be an open groove or a strip groove; or, the sliding part 36 is a cylinder, and there are also components such as bearings on it to reduce sliding friction between the part 36 and the mating part 42 .
  • the turntable portion 32 may be a disc-shaped structure or an elliptical-disk-like structure, and may also be a rod-shaped structure, which is not specifically limited in this application.
  • the toggle portion 34 may be a protrusion protruding from the peripheral side of the turntable portion 32 , which pushes the heating element 20 to move by pressing against the heating seat body 22 .
  • the toggle portion 34 can also be a groove provided on the turntable portion 32.
  • the heating seat body 22 is provided with a protruding post, and the protruding post is also matched with the groove, and the side wall of the recess can push against the protruding post to push The heating element 20 moves.
  • the turntable portion 32 is a disc
  • the toggle portion 34 is an extension block connected to one side of the turntable portion 32
  • the sliding portion 32 is a cylinder disposed on one side of the turntable portion 32 ; wherein , the middle of the turntable portion 32 is also provided with a rotating shaft, the rotating shaft is rotatably arranged on the main body 10, and the transmission member 30 rotates around the axis of the rotating shaft.
  • the heating element 20 can be driven to move more efficiently by the traction element 40 .
  • the transmission member 30 may also be a connecting rod, one end of the connecting rod is connected to the heating base 22 , and the other end of the connecting rod is connected to the pulling member 40 , and the connecting rod can transmit the power of the pulling member 40 .
  • the traction force drives the heating seat body 22 to move in the sliding cavity 12 .
  • the main body 10 includes a first main body portion 11 and a second main body portion 13 , the second main body portion 13 is disposed at one end of the first main body portion 11 , and a space between the second main body portion 13 and the first main body portion 11 is formed.
  • the stop step 15 and the sink groove 14 are arranged across the first main body part 11 and the second main body part 13 , the upper cover 80 covers the receiver 70 and the second main body part 13 , and the upper cover 80 can be opposite to the receiver 70 and the second main body The portion 13 slides and can be stopped by the stop step 15 .
  • the receiver 70 is disposed on one side of the second main body portion 13, and forms a column with the second main body portion 13 that can be slidably assembled with the upper cover 80, and the upper cover 80 is slidably disposed on the receiver 70 and the second main body.
  • the stop step 15 is used to stop and limit one end of the upper cover 80 .
  • FIG. 11 is a schematic structural diagram of the locking member in the aerosol generating device shown in FIG. 3 .
  • the turntable portion 32 is provided with a sliding slot 320 .
  • the locking member 50 includes a connected swing arm 52 and a sliding column 54 .
  • the turntable portion 32 is stacked and covered on the locking member 50 , one end of the swing arm 52 is rotatably arranged on the main body 10 , and the other end of the swing arm 52 is connected to the side of the turntable portion 32 with a sliding column 54 , and the swing arm 52 is connected to the sliding column 54 .
  • the other end of the arm 52 is also used for locking or unlocking the heating base 22 .
  • the sliding column 54 is also disposed in the sliding slot 320 .
  • the side wall of the sliding slot 320 also exerts a force on the sliding column 54 , so that the swing arm 52 swings to lock or unlock the heating base 22 .
  • the heating seat body 22 is provided with a locking portion 220 , the locking portion 220 is a notch matching the other end of the swing arm 52 , and the other end of the swing arm 52 is embedded
  • the heating seat body 22 can be locked; when the other end of the swing arm 52 moves out of the gap, the heating seat body 22 can be unlocked.
  • the locking portion 220 can also be a chute, and the other end of the swing arm 52 is provided with a protruding post that matches the chute; when the protruding post is slid into the chute, the locking member 50 can lock the heating seat body 22 ; When the protruding column slides out of the chute, the locking member 50 can unlock the heating seat body 22 .
  • the locking portion 220 can also be a protruding post, and the other end of the swing arm 52 is provided with a chute matching the protruding post.
  • the sliding groove 320 is a circular arc groove and is disposed along the circumferential direction of the turntable portion 32 .
  • the sliding slot 320 includes a first arc section 322 and a second arc section 324. As shown in FIG. 6, when the sliding column 54 is located in the first arc section 322, the locking member 50 locks the heating seat body 22; as shown in FIG. 7 and FIG. 8 As shown, when the sliding column 54 is located in the second arc section 324, the locking member 50 unlocks the heating seat body 22.
  • the end of the first arc segment 322 away from the second arc segment 324 is the first relative position
  • the junction of the first arc segment 322 away from the second arc segment 324 is the second relative position.
  • FIG. 6 when the sliding column 54 is located at the first relative position of the sliding groove 320 , the other end of the swing arm 52 is completely embedded in the locking portion 220 ; as shown in FIG. 7 , the sliding column 54 is located at the second relative position of the sliding groove 320 . , the other end of the swing arm 52 completely slides out of the locking portion 220 .
  • the side wall of the first arc segment 322 can provide a force to the sliding column 54 , so that the sliding column 54 moves from the first relative position to the second relative position. relative position, and the locking member 50 changes from the locking state to the heating seat body 22 to the unlocking state, so that the transmission member 30 drives the heating seat body 22 to slide along the sliding cavity 12 .
  • the swing arm 52 can freely swing from the second relative position to the first relative position under the action of its own weight, and the locking member 50 changes from the unlocked state to the locked state of the heating base 22 .
  • the locking member 50 can be driven to lock or unlock the heating member 20 through the traction member 40 and the transmission member 30, and the heating member 20 can also be driven to move, so that the aerosol generating device 100 is easy to operate and convenient for users to use.
  • the elastic member 60 is disposed in the sliding cavity 12 and is elastically compressed between the heating base 22 and the supporting wall of the sliding cavity 12 .
  • the supporting wall may be the bottom wall of the sliding cavity 12
  • the supporting wall may also be the top wall of the sliding cavity 12 .
  • the elastic member 60 may be a compression spring or an elastic support, which is not specifically limited in this application.
  • the support wall is the bottom wall of the sliding cavity 12
  • the elastic member 60 elastically presses against the bottom of the heating seat body 22 , and makes the top of the heating seat body 22 abut against the sliding cavity 12 at the opening, and the locking member 50 locks the heating seat body 22 at this time.
  • the transmission member 30 can drive the heating base 22 to compress the elastic member, so that the heating base 22 moves toward the bottom wall of the sliding cavity 12 .
  • the support wall may also be the top wall at the opening of the sliding cavity 12 , and the elastic member 60 elastically pushes against the top of the heating seat body 22 , and makes the bottom of the heating seat body 22 abut against the sliding cavity 12 . bottom wall.
  • the transmission member 30 can drive the heating base 22 to compress the elastic member, so that the heating base 22 moves toward the top opening of the sliding cavity 12 .
  • the main body 10 is further provided with a limit notch 16, the limit notch 16 communicates with the sliding cavity 12, a limit slider 224 is provided on the heating seat body 22, and the limit slider 224 is also connected with the limit notch 16 Sliding fit to limit the distance range and movement direction between the heating seat 22 and the movement, and prevent the heating seat 22 from rotating or circumferentially offset.
  • the heating seat body 22 is also provided with a push post 222 , and the push post 222 is arranged on the limit slider 224 for receiving the driving of the toggle portion 34 to make the heat generating element 20 under the limit of the limit slot 16 . slide.
  • the locking portion 220 is also disposed on the limiting slider 224, the locking portion 220 is a locking notch on the limiting slider 224, the limiting slider 224 protrudes from the limiting notch 16, and the locking member 50 can be connected with the limiting notch 16.
  • the locking portion 220 cooperates to lock or unlock the heating base 22 .
  • the sliding column 54 when the traction member 40 is in the first position, the sliding column 54 is located at the first relative position of the sliding groove 320 , the locking member 50 locks the heating base 22 , and the toggle portion 34 is connected to the push column.
  • FIG. 7 when the traction member 40 is in the second position, the sliding column 54 is located at the second relative position of the sliding groove 320, and the toggle portion 34 abuts against the pushing column 222, At the same time, there is a locking member 50 to unlock the heating seat body 22; as shown in FIG. 7 and FIG. 8 , during the movement of the traction member 40 from the second position to the third position, the toggle portion 34 abuts against the push post 222 so that the The heating seat body 22 compresses the elastic member 60 .
  • the upper cover 80 is covered on the receiver 70 , and the upper cover 80 is connected with the pulling member 40 , such as by clip connection or screw connection, and the upper cover 80 can move relative to the receiver 70 , and then the upper cover 80 can be moved relative to the receiver 70 through the upper cover 80
  • the cover 80 applies a pulling force to the pulling member 40 . Since the upper cover 80 has a larger volume, it is convenient for the user to apply force, which makes it more convenient to drive the heating element 20 to move through the traction element 40 and the transmission element 30 .
  • the pulling member 40 may also leak out from the notch on the upper cover 80 or the outer casing 90 , so as to directly apply a pulling force to the pulling member 40 , which is not specifically limited in this application.
  • the present application discloses an aerosol generating device.
  • the upper cover is used to pull the transmission assembly to drive the heating element to move relative to the receiver, so that the heating element can move relative to the aerosol substrate, thereby destroying the adhesion state between the aerosol substrate and the heating element caused by heating.
  • the situation that the aerosol substrate is broken by replacing the aerosol substrate from the aerosol generating device is avoided, thereby improving the service life of the aerosol generating device.

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Abstract

一种气雾发生装置(100),包括:接受器(70),用于收容气雾基体(2);发热件(20),包括发热座体(22)和发热体(24),发热体(24)设置于发热座体(22)上,发热体(24)用于插设于接受器(70)内并插入气雾基体(2)以加热气雾基体(2);上盖(80),与接受器(70)滑动设置;传动组件(31),与发热座体(22)及上盖(80)连接;其中,上盖(80)相对接受器(70)进行滑动,以通过传动组件(31)驱动发热件(20)对接受器(70)进行相对运动。通过设置上盖(80)牵引传动组件(31),以驱动发热件(20)对接受器(70)进行相对运动,能够避免气雾发生装置(100)更换气雾基体(2)时使得气雾基体(2)破裂的状况发生。

Description

气雾发生装置 【技术领域】
本申请涉及雾化技术领域,特别是涉及一种气雾发生装置。
【背景技术】
随着科技进步和人们对健康生活的追求,市面上出现了低温烘烤烟具,其通过对烟草制品等固体发烟物质进行烘烤以产生烟雾。由于烟具对于烟草制品的加热过程控制在较低温度范围内,故而烟草制品不需要燃烧,有效地减少了有害物质的产生。
现有用于低温烘烤的气雾发生装置中,气雾基体被发热体加热后需要与发热体分离并丢弃,而分离时易导致气雾基体部分或全部粘附于发热体上或者气雾基体破裂,进而使得破裂产生的碎屑进入或粘附于气雾发生装置内,如此,不易清洁,并且粘附于发热体上的气雾基体还会影响下一次加热新的气雾基体时的气雾口感。
【发明内容】
本申请主要提供一种气雾发生装置,以解决自气雾发生装置更换气雾基体易导致气雾基体破裂的问题。
为解决上述技术问题,本申请采用的一个技术方案是:提供一种气雾发生装置。所述气雾发生装置包括:接受器,用于收容气雾基体;发热件,包括发热座体和发热体,所述发热体设置于所述发热座体上,所述发热体用于插设于所述接受器内并插入气雾基体以加热所述气雾基体;上盖,与所述接受器滑动设置;传动组件,与所述发热座体及所述上盖连接;其中,所述上盖相对所述接收器进行滑动,以通过所述传动组件驱动所述发热件对所述接收器进行相对运动。
在一些具体实施例中,所述传动组件包括:
传动件,与所述发热座体连接;
牵引件,与所述传动件和所述上盖连接;
其中,所述牵引件受所述上盖的牵引力驱动,以通过所述传动件驱动所述发热座体运动,进而使得所述发热体相对所述接收器运动。
在一些具体实施例中,所述气雾发生装置还包括锁紧件,所述锁紧件用于与所述发热座体配合以锁定或解锁所述发热件。
在一些具体实施例中,所述牵引件在第一位置时,所述锁紧件锁定所述发热座体;所述牵引件位于第二位置时,所述锁紧件解锁所述发热座体。
在一些具体实施例中,所述锁紧件还与所述传动件配合,所述牵引件通过所述传动件驱动所述锁紧件由锁定状态转变为解锁状态。
在一些具体实施例中,所述气雾发生装置包括主体,所述主体设有滑动腔,所述发热座体滑动设置于所述滑动腔内,所述传动件和所述锁紧件均转动设置于所述主体,所述牵引件驱动所述传动件转动,进而驱动所述发热座体在所述滑动腔内滑动,以及驱动所述锁紧件锁定或解锁所述发热座体。
在一些具体实施例中,所述传动件包括转盘部和连接于所述转盘部的拨动部和滑动部,所述转盘部转动设置于所述主体,所述滑动部与所述牵引件滑动连接,所述拨动部用于驱动所述发热座体在所述滑动腔内滑动。
在一些具体实施例中,所述转盘部设有滑动槽,所述锁紧件包括连接的摆动臂和滑动柱,所述摆动臂转动设置于所述主体,所述滑动柱与所述滑动槽滑动配合;
其中,所述发热座体上设有锁定部,所述滑动柱位于所述滑动槽的第一相对位置时,所述摆动臂嵌入所述锁定部;所述滑动柱位于所述滑动槽的第二相对位置时,所述摆动臂滑出所述锁定部。
在一些具体实施例中,所述气雾发生装置还包括弹性件,所述弹性件设置于所述滑动腔内,且弹性压缩于所述发热座体与所述滑动腔的支撑壁之间。
在一些具体实施例中,所述发热座体上还设有抵推柱;所述牵引件在所述 第一位置时,所述滑动柱位于所述滑动槽的第一相对位置,所述拨动部与所述抵推柱间隔;所述牵引件在所述第二位置时,所述滑动柱位于所述滑动槽的第二相对位置,所述拨动部抵接所述抵推柱;所述牵引件在所述第三位置时,所述拨动部顶抵所述抵推柱而使得所述发热座体压缩所述弹性件。
在一些具体实施例中,所述主体上还设有限位槽口,所述发热座体上设有限位滑块,所述限位滑块与所述限位槽口滑动配合,所述抵推柱设置于所述限位滑块上,所述限位滑块还凸出于所述限位槽口,所述锁定部为所述限位滑块上的锁定缺口。
在一些具体实施例中,所述牵引件包括牵引部和配合部,所述配合部设置于所述牵引部的一侧,所述牵引部与所述上盖连接,所述配合部与所述滑动部滑动连接。
在一些具体实施例中,所述主体上设有沉槽,所述主体包括第一主体部和第二主体部,所述第二主体部设置于所述第一主体部的一端,所述第二主体部和所述第一主体部之间形成有止挡台阶,所述沉槽跨设于所述第一主体部和所述第二主体部,所述牵引件滑动设置于所述沉槽内,所述上盖盖设所述接受器和所述第二主体部,并可被所述止挡台阶止挡。
在一些具体实施例中,所述接收器连接于所述主体,所述接收器设有收容腔,所述接收腔的底壁设有穿孔,所述发热体穿设于所述穿孔;所述上盖设有避让所述收容腔的避让孔。
本申请的有益效果是:区别于现有技术的情况,本申请公开了一种气雾发生装置。本申请通过上盖牵引传动组件,以驱动发热件对接收器进行相对运动,即可使得发热体相对气雾基体运动,从而破坏气雾基体与发热体之间由于加热而导致的粘附状态,避免自气雾发生装置更换气雾基体使得气雾基体破裂的状况发生,从而提高气雾发生装置的使用寿命。
【附图说明】
为了更清楚地说明本申请实施例或现有技术中的技术方案,下面将对实施例或现有技术描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本申请的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图,其中:
图1是本申请提供的气雾发生装置一实施例的结构示意图;
图2是图1所示的气雾发生装置的爆炸结构示意图;
图3是图2所示气雾发生装置除外壳和上盖后的爆炸结构示意图;
图4是图3所示的气雾发生装置中接收器的俯视结构示意图;
图5是图2所示的气雾发生装置拆卸外壳、上盖和接受器后的结构示意图;
图6是图5所示A区域中牵引件在第一位置时的状态示意图;
图7是图5所示A区域中牵引件在第二位置时的状态示意图;
图8是图5所示A区域中牵引件在第三位置时的状态示意图;
图9是图3所示气雾发生装置中发热件的结构示意图;
图10是图3所示气雾发生装置中传动件的结构示意图;
图11是图3所示气雾发生装置中锁紧件的结构示意图。
【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,所描述的实施例仅是本申请的一部分实施例,而不是全部的实施例。基于本申请中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本申请保护的范围。
本申请实施例中的术语“第一”、“第二”、“第三”仅用于描述目的,而不能理解为指示或暗示相对重要性或者隐含指明所指示的技术特征的数量。由此,限定有“第一”、“第二”、“第三”的特征可以明示或者隐含地包括至少一个该特征。本申请的描述中,“多个”的含义是至少两个,例如两个,三个等,除非另有明确具体的限定。此外,术语“包括”和“具有”以及它们任何变形,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、产品或设备没有限定于已列出的步骤或单元,而是可选地还包括没有列出的步骤或单元,或可选地还包括对于这些过程、方法、产品或设备固有的其他步骤或单元。
在本文中提及“实施例”意味着,结合实施例描述的特定特征、结构或特性可以包含在本申请的至少一个实施例中。在说明书中的各个位置出现该短语并不一定均是指相同的实施例,也不是与其他实施例互斥的独立的或备选的实施例。本领域技术人员显式地和隐式地理解的是,本文所描述的实施例可以与其他实施例相结合。
本申请提供一种气雾发生装置100,参阅图1至图5,图1是本申请提供的气雾发生装置一实施例的结构示意图,图2是图1所示的气雾发生装置的爆炸结构示意图,图3是图2所示气雾发生装置除外壳和上盖后的爆炸结构示意图,图4是图3所示的气雾发生装置中接收器的俯视结构示意图,图5是图2所示的气雾发生装置拆卸外壳、上盖和接受器后的结构示意图。
该气雾发生装置100包括主体10、发热件20、传动组件31、锁紧件50、弹性件60、接收器70和上盖80。其中,传动组件31连接发热件20和上盖80,用于传递上盖80的牵引力带动发热件20相对接收器70进行运动。
具体地,主体10内部用于安装电池及电路板等部件,以给发热件20供电。主体10内还设有滑动腔12,发热件20滑动设置于滑动腔12;传动组件31包括传动件30和牵引件40,牵引件40受牵引力驱动,通过传动件30驱动发热件20沿滑动腔12滑动;锁紧件50用于锁定发热件20而保持发热件20的位置不变,以及解锁发热件20而使得传动件30可驱动发热件20运动;滑动腔12内还设有弹性件60,弹性件60用于复位发热件20的初始位置;接收器70连接于主体10上,用于收容气雾基体2,发热件20还穿插于接收器70以与气雾基体2接触并给气雾基体2加热;上盖80盖设于接收器70并与接收器70滑动设置,且与主体10活动连接。
其中,该牵引力可由用户提供,或者该牵引力还可以由电机、气缸等动力装置提供,本申请对此不作限制。本实施例中,该牵引力由用户提供,因而该气雾发生装置100的整体成本相对较低。
结合参阅图2、图3和图9,其中图9是图3所示气雾发生装置中发热件的结构示意图。发热件20包括发热座体22和发热体24,发热体24设置于发热座体22上,发热体24用于插设于气雾基体2内并加热气雾基体2,发热座体22滑动设置于滑动腔12并可在滑动腔12的限定下滑动。其中,气雾基体2可以是烟叶或纸烟等制品,其被加热后可形成供用户吸食的烟雾。
传动件30用于驱动发热座体22运动,牵引件40与传动件30连接。其中,牵引件40受牵引力驱动,以通过传动件30驱动发热座体22运动,进而使得发热体24相对气雾基体2运动。
可选地,发热体24相对气雾基体2运动,可使得发热体24插设于气雾基体2内的长度增长;或者发热体24相对气雾基体2运动,使得发热体24插设于气雾基体2内的长度缩短。更进一步地,发热体24相对气雾基体2运动,使得发热体24由与气雾基体2不接触的状态转变为相互接触的状态;或者,发热体24相对气雾基体2运动,使得发热体24由与气雾基体2接触的状态转变为相互不接触的状态。
可选地,牵引件40可通过传动件30驱动发热件20朝向气雾基体2运动;或者,牵引件40也可通过传动件30驱动发热件20向远离气雾基体2的方向运动。
参阅图2中至图4,接收器70连接于主体10,接收器70可固定连接于主体10上,或者接受器70还可以相对主体10进行运动,本申请对此不作具体限定。当接受器70可相对主体10进行运动时,可增加发热体24与气雾基体2之间的可插设长度。
接收器70设有接收腔72,接收腔72的底壁设有穿孔74,该接收腔72用于接收气雾基体2,上盖80设有避让收容腔72的避让孔82,发热体24穿设于 穿孔74,且发热体24可相对接收器70进行伸缩运动,进而改变发热体24与接收腔72内气雾基体2的插设长度。
在用户使用该气雾发生装置100时,一旦气雾基体2由加热体24加热,就常有气雾基体2粘附到发热体24上,这将导致当气雾基体2从接收腔72内移除时,易使得气雾基体2部分或全部粘附于发热体上,或者破裂而脱落碎屑于接收器70内。
在气雾基体2位于接收腔72且粘附于发热体24时,由于接收器70对气雾基体2的周侧保持定型,且接收腔72的底壁对气雾基体2的底面定型,因而在驱动发热体24相对气雾基体2运动时,可破坏气雾基体2与发热体24的粘附状态,同时由于接收器70对气雾基体2的定型可避免气雾基体2破裂,而在该粘附状态解除后,气雾基体2可完整地从接收器70移除,避免了因气雾基体2破裂导致的碎屑脱落于气雾发生装置100内的情况发生。
穿孔74的形状与发热体24的形状相对应,本实施方式中,发热体24为电阻发热体,其截面为矩形,对应的,穿孔74也为矩形,穿孔74的横截面积略大于发热体24的横截面积,发热体24运动时,穿孔74边缘内侧面可以刮擦发热体74表面粘结的烟垢。
本申请通过设置包括牵引件40和传动件30的传动组件31以驱动发热座体22运动,进而使得发热体24相对气雾基体2运动,从而破坏气雾基体2与发热体24之间由于加热而导致的粘附状态,避免自气雾发生装置100更换气雾基体2使得气雾基体2破裂的状况发生。
本实施例中,参阅图2和图3,传动件30、牵引件40及锁紧件50均设置于主体10上,气雾发生装置100还包括外壳90,外壳90罩设于主体10的外侧以隐藏遮挡传动件30、牵引件40及锁紧件50。
在其他实施例中,传动件30、牵引件40及锁紧件50还可均设置于外壳90上,进而在外壳90罩设于基体20的外侧时,还使得传动件30和锁紧件50均与发热件10形成配合关系;或者,传动件30和牵引件40设置于主体10上, 而锁紧件50另外设置于外壳90,并在外壳90罩设于主体10上时,锁紧件50与发热件20形成配合关系。本申请对此不作具体限定。
锁紧件50用于与发热座体22配合以锁定或解锁发热件20。具体地,锁紧件50锁定发热件20后,发热件20将相对固定于主体10上而且不可沿滑动腔12滑动,在气雾基体2装配于接收腔72内时,可便于使得发热体24稳定地插入气雾基体2内部;在气雾基体2加热使用后,在移除气雾基体2前,可调节锁紧件50解锁发热件20,以便于牵引件40及传动件30驱动发热件20伸缩,进而破坏气雾基体2与发热体24的粘附状态,然而再移除发热体,从而可确保气雾基体2在移出接收腔72时不破碎;在移除使用后的气雾基体2后,锁紧件50再锁定发热件20,以备接收器70装载新的气雾基体2。
可选地,锁紧件50可在用户的控制下而独立地锁定和解锁发热件20,且锁紧件50不与传动件30和牵引件40之间发生动力上的关联。例如,发热座体22上设有锁槽,锁紧件50滑动设置于主体10或外壳90上,且锁紧件50滑动插设于锁槽内时,可锁定发热件20;锁紧件50滑出锁槽时,可解锁发热件20。
可选地,锁紧件50与牵引件40活动连接,换言之,牵引件40还同时驱动锁紧件50锁定或解锁发热件20。例如,锁紧件50的中部转动连接于主体10上,其一端与牵引件40滑动连接,其另一端用于锁定发热件20;当牵引件40在第一位置时,牵引件40对锁紧件50的一端限位,进而可使得锁紧件50的另一端保持锁定发热座体22;当牵引件40由第一位置移动到第二位置的过程中,牵引件40驱动锁紧件50转动一定角度,而使得锁紧件50由对发热座体22的锁定状态转变为解锁状态,此时锁紧件50避让一定的空间,以便于牵引件40通过驱动传动件30以使得发热件20相对气雾基体2运动。
本实施例中,如图2和图5所示,锁紧件50还与传动件30配合,牵引件40通过传动件30驱动锁紧件50由对发热座体22的锁定状态转变为对发热座体22的解锁状态。
参阅图6至图8,图6是图5所示A区域中牵引件在第一位置时的状态示 意图,图7是图5所示A区域中牵引件在第二位置时的状态示意图,图8是图5所示A区域中牵引件在第三位置时的状态示意图,其中传动件30内所涵盖的虚线部分为透视传动件后的各部件的轮廓示意图。
具体地,牵引件40在第一位置时,锁紧件50锁定发热座体22;牵引件40由第一位置运动到第二位置时,锁紧件50解锁发热座体22;牵引件40由第二位置运动到第三位置的过程中,传动件30驱动发热件运动。
本实施例中,发热座体22滑动设置于滑动腔12内,传动件30和锁紧件50均转动设置于主体10上,牵引件40可驱动传动件30转动,进而驱动发热座体22在滑动腔12内滑动,以及还可驱动锁紧件50锁定或解锁发热座体22。
如图6和图7所示,牵引件40由第一位置运动到第二位置时,传动件30由与发热座体22隔离的状态转变为与发热座体22抵接的状态;如图7和图8所示,牵引件40由第二位置运动到第三位置时,传动件30驱动发热座体22运动。
具体地,参阅图6和图10,其中图10是图3所示气雾发生装置中传动件的结构示意图。传动件30包括大致为圆形的转盘部32和突出延伸连接于该转盘部32侧边的拨动部34和滑动部36,拨动部34和滑动部36相对设置于转盘部32的两侧,转盘部32转动设置于主体10,滑动部36与牵引件40滑动连接,拨动部34用于驱动发热座体22在滑动腔12内滑动。
如图3和图6至图8所示,主体10上还设有沉槽14,牵引件40设于沉槽14内,并在沉槽14的限位下运动。牵引件40包括牵引部44和配合部42,配合部42设置于牵引部44的一侧,牵引部44与上盖80连接,滑动部36与配合部42滑动配合;其中,牵引件40受牵引力在沉槽14内运动,使得滑动部36沿配合部42滑动,进而带动转盘部32转动,并可使得拨动部34抵推发热座体22在滑动腔12内滑动。其中,牵引件40在沉槽14限位下往复运动一次,则滑动部36沿配合部42往复运动一侧,而传动件30往复摆动一次,并驱动发热件20运动一次。
可选地,滑动部36为滑动柱,配合部44为限位槽;或者,滑动部36为限位槽,配合部44为滑动柱;其中,滑动柱与限位槽滑动配合。
可选地,传动件30为一体成型结构,或者传动件30也可以是组合式结构,本申请对此不作具体限定。例如,传动件30为组合式结构,滑动部36以可拆卸的方式连接于转盘部32。
可选地,滑动部36可以是圆柱或凸起等结构,配合部42可以是开口槽或条形槽;或者,滑动部36为圆柱,且其上还设有轴承等部件,以减小滑动部36与配合部42之间的摩擦。
可选地,转盘部32可以是圆盘状结构或类椭圆盘结构,其也可以是杆状结构,本申请对此不作具体限制。
可选地,拨动部34可以是凸出于转盘部32周侧的凸起,其通过顶抵发热座体22以推动发热件20运动。拨动部34还可以是设置于转盘部32上的凹槽,例如发热座体22上设有凸柱,该凸柱还与该凹槽配合,凹槽的侧壁可顶抵凸柱以推动发热件20运动。
本实施例中,如图10所示,转盘部32为一圆盘,拨动部34为连接于转盘部32一侧的延伸块,滑动部32为设置于转盘部32一侧面的圆柱;其中,转盘部32的中部还设有一转轴,该转轴转动设置于主体10,传动件30绕该转轴的轴线转动。
本实施例通过设置转盘部32、拨动部34和滑动部36,并可通过调整滑动部36到转盘部32的转动中心的距离和调整拨动部34到转盘部32的转动中心的距离,而达到省力的效果,以及还可以优化传动效率,使得通过牵引件40能够更加高效地驱动发热件20运动。
在其他实施例中,传动件30还可以是一连杆,该连杆一端连接于发热座体22上,该连杆的另一端连接于牵引件40上,该连杆可传递牵引件40的牵引力,进而驱动发热座体22在滑动腔12内运动。
本实施例中,主体10包括第一主体部11和第二主体部13,第二主体部13 设置于第一主体部11的一端,第二主体部13和第一主体部11之间形成有止挡台阶15,沉槽14跨设于第一主体部11和第二主体部13,上盖80盖设接受器70和第二主体部13,上盖80可相对接受器70和第二主体部13滑动,并可被止挡台阶15所止挡。
具体地,接收器70设置于第二主体部13的一侧,并与第二主体部13构成可与上盖80滑动装配的柱体,上盖80滑动盖设于接收器70和第二主体部13上,止挡台阶15用于止挡限位上盖80的一端。通过将沉槽14跨设于第一主体部11和第二主体部13,可将牵引件40隐藏于上盖80和外壳90内,使得该气雾发生装置100外观整洁,更具美感,且也可对传动组件31进行防护,有利于降低传动组件31发生卡涩的风险。
本实施例中,进一步地,如图6和图11所示,其中图11是图3所示气雾发生装置中锁紧件的结构示意图。转盘部32设有滑动槽320,锁紧件50包括连接的摆动臂52和滑动柱54,摆动臂52转动设置于主体10,滑动柱54与滑动槽320滑动配合。
具体地,转盘部32层叠覆盖于锁紧件50之上,摆动臂52的一端转动设置于主体10上,摆动臂52的另一端朝向转盘部32的一侧连接有滑动柱54,且该摆动臂52的另一端还用于锁定或解锁发热座体22。
滑动柱54还设置于滑动槽320中,在传动件30转动时,滑动槽320的侧壁还对滑动柱54具有作用力,以使得摆动臂52摆动,以锁定或解锁发热座体22。
本实施例中,参阅图6、图9和图11,发热座体22上设有锁定部220,该锁定部220为与摆动臂52的另一端相匹配的缺口,摆动臂52的另一端嵌入该缺口时,可锁定发热座体22;摆动臂52的另一端移出该缺口时,可解锁发热座体22。
可选地,锁定部220还可以是滑槽,摆动臂52的另一端设有与滑槽相匹配的凸柱;凸柱滑入该滑槽内时,锁紧件50可锁定发热座体22;凸柱滑出该滑槽 时,锁紧件50可解锁发热座体22。或者,锁定部220也可以是凸柱,而摆动臂52的另一端设有与凸柱相匹配的滑槽。
参阅图6和图10,滑动槽320呈圆弧槽,并沿转盘部32的周向设置。滑动槽320包括第一弧段322和第二弧段324,如图6所示,滑动柱54位于第一弧段322时,锁紧件50锁定发热座体22;如图7和图8所示,滑动柱54位于第二弧段324时,锁紧件50解除锁定发热座体22。
其中,第一弧段322远离第二弧段324的一端为第一相对位置,第一弧段322远离第二弧段324的交界处为第二相对位置。如图6所示,滑动柱54位于滑动槽320的第一相对位置时,摆动臂52的另一端完全嵌入锁定部220;如图7所示,滑动柱54位于滑动槽320的第二相对位置时,摆动臂52的另一端完全滑出锁定部220。
本实施例中,参阅图6和图7,传动件30逆时针转动时,第一弧段322的侧壁可给滑动柱54提供作用力,使得滑动柱54由第一相对位置运动至第二相对位置,进而锁紧件50由对发热座体22的锁定状态转为解除锁定状态,以便于传动件30驱动发热座体22沿滑动腔12滑动。传动件30顺时针转动时,摆动臂52在自重的作用下,可由第二相对位置自由摆动至第一相对位置,锁紧件50由对发热座体22的解除锁定状态转为锁定状态。
因而,本申请通过牵引件40和传动件30即可驱动锁紧件50锁定或解锁发热件20,还可驱动发热件20运动,使得该气雾发生装置100易于操作,便于用户使用。
参阅图3,弹性件60设置于滑动腔12内,且弹性压缩于发热座体22与滑动腔12的支撑壁之间。其中,该支撑壁可以是滑动腔12的底壁,该支撑壁也可以是滑动腔12的顶壁。
弹性件60可以是压簧或弹性支架等,本申请对此不作具体限定。
参阅图3至图9,本实施例中,该支撑壁为滑动腔12的底壁,弹性件60弹性顶抵发热座体22的底部,并使得发热座体22的顶部抵靠于滑动腔12的开 口处,且此时锁紧件50锁定发热座体22。传动件30可驱动发热座体22压缩弹性件,使得发热座体22向滑动腔12的底壁运动。
在其他实施例中,该支撑壁还可以为滑动腔12的开口处的顶壁,弹性件60弹性顶抵发热座体22的顶部,并使得发热座体22的底部抵靠于滑动腔12的底壁。传动件30可驱动发热座体22压缩弹性件,使得发热座体22向滑动腔12的顶部开口处运动。
本实施例中,主体10上还设有限位槽口16,限位槽口16连通滑动腔12,发热座体22上设有限位滑块224,且限位滑块224还与限位槽口16滑动配合,以限定发热座体22与运动距离范围和运动方向,避免发热座体22转动或周向偏移。发热座体22上还设有抵推柱222,抵推柱222设置于限位滑块224上,用于接收拨动部34的驱动而使得发热件20在限位槽口16的限位下滑动。其中,锁定部220也设置于限位滑块224上,锁定部220为限位滑块224上的锁定缺口,限位滑块224凸出于限位槽口16,进而锁紧件50可与锁定部220配合以锁定或解锁发热座体22。
具体地,如图6所示,牵引件40在第一位置时,滑动柱54位于滑动槽320的第一相对位置,锁紧件50锁定发热座体22,且拨动部34与抵推柱222间隔而不与抵推柱222接触;如图7所示,牵引件40在第二位置时,滑动柱54位于滑动槽320的第二相对位置,拨动部34抵接抵推柱222,且同时有锁紧件50解锁发热座体22;如图7和图8所示,牵引件40由第二位置运动至第三位置的过程中,拨动部34顶靠抵推柱222而使得发热座体22压缩弹性件60。
本实施例中,参阅图2,上盖80盖设于接收器70,且上盖80与牵引件40连接,例如卡接或螺钉连接,上盖80可相对接收器70运动,进而可通过上盖80对牵引件40施加牵引力。由于上盖80的体积较大,可便于用户施力,使得通过牵引件40和传动件30驱动发热件20运动更加便捷。
在其他实施例中,牵引件40还可自上盖80或外壳90上的缺口外漏,进而可直接对牵引件40施加牵引力,本申请对此不作具体限定。
区别于现有技术的情况,本申请公开了一种气雾发生装置。本申请通过上盖牵引传动组件,以驱动发热件对接收器进行相对运动,即可使得发热体相对气雾基体运动,从而破坏气雾基体与发热体之间由于加热而导致的粘附状态,避免自气雾发生装置更换气雾基体使得气雾基体破裂的状况发生,从而提高气雾发生装置的使用寿命。
以上所述仅为本申请的实施例,并非因此限制本申请的专利范围,凡是利用本申请说明书及附图内容所作的等效结构或等效流程变换,或直接或间接运用在其他相关的技术领域,均同理包括在本申请的专利保护范围内。

Claims (20)

  1. 一种气雾发生装置,其特征在于,所述气雾发生装置包括:
    接受器,用于收容气雾基体;
    主体,所述接收器连接于所述主体;
    发热件,包括发热座体和发热体,所述发热体设置于所述发热座体上,所述发热体用于插设于所述接受器内并插入气雾基体以加热所述气雾基体;
    上盖,与所述接受器滑动设置;
    传动组件,与所述发热座体及所述上盖连接;
    其中,所述上盖相对所述接收器进行滑动,以通过所述传动组件驱动所述发热件对所述接收器进行相对运动。
  2. 根据权利要求1所述的气雾发生装置,其特征在于,所述主体设有滑动腔,所述发热座体滑动设置于所述滑动腔内;
    所述气雾发生装置还包括弹性件,所述弹性件设置于所述滑动腔内,且弹性压缩于所述发热座体与所述滑动腔的支撑壁之间。
  3. 根据权利要求2所述的气雾发生装置,其特征在于,所述气雾发生装置还包括锁紧件,所述锁紧件用于与所述发热座体配合以锁定或解锁所述发热件。
  4. 根据权利要求3所述的气雾发生装置,其特征在于,所述传动组件包括:
    传动件,转动设置于所述主体,且与所述发热座体连接;
    牵引件,与所述传动件和所述上盖连接;
    其中,所述锁紧件转动设置于所述主体,且所述锁紧件还与所述传动件配合;所述牵引件受所述上盖的牵引力驱动,以通过所述传动件驱动所述发热座体在所述滑动腔内滑动,以及通过所述传动件驱动所述锁紧件锁定或解锁所述发热座体。
  5. 根据权利要求4所述的气雾发生装置,其特征在于,所述传动件上设有滑动槽,所述锁紧件包括连接的摆动臂和滑动柱,所述摆动臂转动设置于所述 主体,所述滑动柱与所述滑动槽滑动配合;
    其中,所述发热座体上设有锁定部,所述滑动柱位于所述滑动槽的第一相对位置时,所述摆动臂嵌入所述锁定部;所述滑动柱位于所述滑动槽的第二相对位置时,所述摆动臂滑出所述锁定部。
  6. 根据权利要求1所述的气雾发生装置,其特征在于,所述接收器设有收容腔,所述接收腔的底壁设有穿孔,所述发热体穿设于所述穿孔;所述上盖设有避让所述收容腔的避让孔。
  7. 一种气雾发生装置,其特征在于,所述气雾发生装置包括:
    接受器,用于收容气雾基体;
    发热件,包括发热座体和发热体,所述发热体设置于所述发热座体上,所述发热体用于插设于所述接受器内并插入气雾基体以加热所述气雾基体;
    上盖,与所述接受器滑动设置;
    传动组件,与所述发热座体及所述上盖连接;
    其中,所述上盖相对所述接收器进行滑动,以通过所述传动组件驱动所述发热件对所述接收器进行相对运动。
  8. 根据权利要求7所述的气雾发生装置,其特征在于,所述传动组件包括:
    传动件,与所述发热座体连接;
    牵引件,与所述传动件和所述上盖连接;
    其中,所述牵引件受所述上盖的牵引力驱动,以通过所述传动件驱动所述发热座体运动,进而使得所述发热体相对所述接收器运动。
  9. 根据权利要求8所述的气雾发生装置,其特征在于,所述气雾发生装置还包括锁紧件,所述锁紧件用于与所述发热座体配合以锁定或解锁所述发热件。
  10. 根据权利要求9所述的气雾发生装置,其特征在于,所述牵引件在第一位置时,所述锁紧件锁定所述发热座体;所述牵引件位于第二位置时,所述锁紧件解锁所述发热座体。
  11. 根据权利要求10所述的气雾发生装置,其特征在于,所述锁紧件还与 所述传动件配合,所述牵引件通过所述传动件驱动所述锁紧件由锁定状态转变为解锁状态。
  12. 根据权利要求11所述的气雾发生装置,其特征在于,所述气雾发生装置包括主体,所述主体设有滑动腔,所述发热座体滑动设置于所述滑动腔内,所述传动件和所述锁紧件均转动设置于所述主体,所述牵引件驱动所述传动件转动,进而驱动所述发热座体在所述滑动腔内滑动,以及驱动所述锁紧件锁定或解锁所述发热座体。
  13. 根据权利要求12所述的气雾发生装置,其特征在于,所述传动件包括转盘部和连接于所述转盘部的拨动部和滑动部,所述转盘部转动设置于所述主体,所述滑动部与所述牵引件滑动连接,所述拨动部用于驱动所述发热座体在所述滑动腔内滑动。
  14. 根据权利要求13所述的气雾发生装置,其特征在于,所述转盘部设有滑动槽,所述锁紧件包括连接的摆动臂和滑动柱,所述摆动臂转动设置于所述主体,所述滑动柱与所述滑动槽滑动配合;
    其中,所述发热座体上设有锁定部,所述滑动柱位于所述滑动槽的第一相对位置时,所述摆动臂嵌入所述锁定部;所述滑动柱位于所述滑动槽的第二相对位置时,所述摆动臂滑出所述锁定部。
  15. 根据权利要求14所述的气雾发生装置,其特征在于,所述气雾发生装置还包括弹性件,所述弹性件设置于所述滑动腔内,且弹性压缩于所述发热座体与所述滑动腔的支撑壁之间。
  16. 根据权利要求15所述的气雾发生装置,其特征在于,所述发热座体上还设有抵推柱;所述牵引件在所述第一位置时,所述滑动柱位于所述滑动槽的第一相对位置,所述拨动部与所述抵推柱间隔;所述牵引件在所述第二位置时,所述滑动柱位于所述滑动槽的第二相对位置,所述拨动部抵接所述抵推柱;所述牵引件在第三位置时,所述拨动部顶抵所述抵推柱而使得所述发热座体压缩所述弹性件。
  17. 根据权利要求16所述的气雾发生装置,其特征在于,所述主体上还设有限位槽口,所述发热座体上设有限位滑块,所述限位滑块与所述限位槽口滑动配合,所述抵推柱设置于所述限位滑块上,所述限位滑块还凸出于所述限位槽口,所述锁定部为所述限位滑块上的锁定缺口。
  18. 根据权利要求13所述的气雾发生装置,其特征在于,所述牵引件包括牵引部和配合部,所述配合部设置于所述牵引部的一侧,所述牵引部与所述上盖连接,所述配合部与所述滑动部滑动连接。
  19. 根据权利要求13所述的气雾发生装置,其特征在于,所述主体上设有沉槽,所述主体包括第一主体部和第二主体部,所述第二主体部设置于所述第一主体部的一端,所述第二主体部和所述第一主体部之间形成有止挡台阶,所述沉槽跨设于所述第一主体部和所述第二主体部,所述牵引件滑动设置于所述沉槽内,所述上盖盖设所述接受器和所述第二主体部,并可被所述止挡台阶止挡。
  20. 根据权利要求13所述的气雾发生装置,其特征在于,所述接收器连接于所述主体,所述接收器设有收容腔,所述接收腔的底壁设有穿孔,所述发热体穿设于所述穿孔;所述上盖设有避让所述收容腔的避让孔。
PCT/CN2021/091151 2020-11-18 2021-04-29 气雾发生装置 WO2022105131A1 (zh)

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