WO2021027430A1 - 气溶胶生成装置 - Google Patents

气溶胶生成装置 Download PDF

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Publication number
WO2021027430A1
WO2021027430A1 PCT/CN2020/100162 CN2020100162W WO2021027430A1 WO 2021027430 A1 WO2021027430 A1 WO 2021027430A1 CN 2020100162 W CN2020100162 W CN 2020100162W WO 2021027430 A1 WO2021027430 A1 WO 2021027430A1
Authority
WO
WIPO (PCT)
Prior art keywords
aerosol generating
cover
generating device
aerosol
assembly
Prior art date
Application number
PCT/CN2020/100162
Other languages
English (en)
French (fr)
Inventor
陈斌
何铭利
陈巍
Original Assignee
深圳御烟实业有限公司
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 深圳御烟实业有限公司 filed Critical 深圳御烟实业有限公司
Publication of WO2021027430A1 publication Critical patent/WO2021027430A1/zh

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Classifications

    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F47/00Smokers' requisites not otherwise provided for

Definitions

  • the invention relates to the technical field of electronic cigarettes, and more specifically to an aerosol generating device.
  • Electronic cigarettes are sometimes called electronic atomizers, personal atomizers, or electronic nicotine delivery systems.
  • the electronic cigarette includes a battery, a heating element, e-liquid, and a cigarette holder.
  • the battery is used to supply power to the heating element, the heating element is used to atomize the e-liquid, and the cigarette holder is used to facilitate smokers to smoke smoke.
  • the electronic cigarette when the electronic cigarette is not in use, its cigarette holder is always exposed. The surrounding environment and air may pollute the cigarette holders of electronic cigarettes to varying degrees, and the pollutants affect people's health.
  • the present invention provides an aerosol generating device to solve the above-mentioned technical problem that the surrounding environment and air may cause different degrees of pollution to the cigarette holder of the electronic cigarette.
  • a technical solution adopted by the present invention is to provide an aerosol generating device, which includes:
  • the aerosol generating component has an air outlet for placing and atomizing the aerosol generating substance to generate an aerosol that is discharged to the air outlet;
  • the cover is movably connected with the aerosol generating component; among them,
  • the air outlet is moved from the opened state to the covered state or from the covered state to the opened state.
  • the aerosol generating component includes:
  • the shell has a receiving cavity
  • the aerosol generating body is arranged in the receiving cavity and movably connected to the casing, and the air outlet is opened at one end of the aerosol generating body;
  • the traction assembly connects the housing and the cover, and is used for pulling the cover so that the air outlet is closed or opened when the aerosol generating body moves between the first position and the second position.
  • the cover includes:
  • Cover plate used to cover or open the air outlet
  • the hinge part is connected to one end of the cover plate, wherein a part of the traction assembly is clamped on the housing, and the other part is elastically clamped on both ends of the hinge part.
  • the cover body further includes a buckle part, the buckle part is connected to the cover plate, and the housing has a buckle position for inserting and connecting with the buckle part.
  • the traction assembly includes an elastic member, and the elastic member includes a first hook portion, a second hook portion, and a first elastic portion and a second elastic portion that are clamped on the housing and sequentially connected to form a sliding gap.
  • the third elastic part, the first hook is connected with the first elastic part, the second hook is connected with the third elastic part, and the first hook and the second hook are respectively elastically clamped on both ends of the hinge part.
  • the first elastic portion has a first bending section
  • the third elastic portion has a second bending section
  • the aerosol generating body is provided with a first guiding protrusion and a second guiding protrusion; wherein, the first A guide protrusion and a second guide protrusion respectively slide against the first bending section and the second bending section to make the distance between the first bending section and the second bending section elastically larger.
  • the aerosol generating assembly further includes a pressing plate, which is pressed on the elastic member, and the first guiding protrusion and the second guiding protrusion penetrate the pressing plate.
  • the hinge part is formed by bending one end of the cover plate toward the cover plate, wherein one end of the hinge part is connected to one end surface of the cover plate, and the other end forms a gap with the cover plate.
  • the end surface of the hinge portion has a high point and a low point, and an arc-shaped depression is formed between the high point and the low point.
  • the traction assembly further includes an elastic contraction member elastically connected between the first elastic part and the third elastic part.
  • the traction assembly includes:
  • One end of the traction member is fixed to the cover body, and the other end is fixed to the aerosol generating body.
  • the aerosol generating body includes:
  • the aerosol generating body is used to place and atomize the aerosol generating substance to generate aerosol;
  • the cigarette holder is fluidly connected with the aerosol generating body, and the air outlet is opened in the cigarette holder.
  • the cigarette holder when the aerosol generating body is in the second position, the cigarette holder is stored in the receiving cavity, and when the aerosol generating body is in the first position, the cigarette holder is away from the cover.
  • the aerosol generating assembly further includes a protective cover that is slidably sleeved with the aerosol generating body, wherein when the aerosol generating body is in the first position, the protective cover at least partially presses the cover and extends out of the receiving cavity .
  • the protective cover has a sliding hole
  • the aerosol generating body has a protrusion
  • the protrusion is slidably connected to the sliding hole.
  • the housing has a first positioning recess and a second positioning recess
  • the aerosol generating assembly further includes a sliding positioning member, one end of the sliding positioning member is inserted into the aerosol generating body, and One end is matched with the first positioning recess and the second positioning recess; wherein the first position and the second position are respectively the first positioning recess and the second positioning recess.
  • the aerosol generating body has a sliding rail, and the casing has a sliding groove slidably connected to the sliding rail; or, the aerosol generating body has a sliding groove, and the casing has a sliding rail slidingly connected to the sliding groove; wherein , The first position and the second position are the two ends of the chute respectively.
  • the aerosol generating body includes:
  • Atomizing component used to place and atomize aerosol generating substance to generate aerosol
  • the battery assembly is electrically connected to the atomization assembly
  • the containing shell contains the battery assembly and is detachably connected with the atomization assembly.
  • the conductive element is inserted into the receiving shell and electrically connected with the atomizing assembly.
  • the aerosol generating body includes:
  • the electronic cigarette includes an atomizing component, a battery component, and a conductive component.
  • the atomizing component is used to place and atomize the aerosol generating substance to generate aerosol, and the atomizing component is electrically connected to the battery component through the conductive component;
  • the containing shell contains the electronic cigarette and is detachably connected with the cigarette holder.
  • the aerosol generating assembly further includes a pushing mechanism connected to the aerosol generating body to push the aerosol generating body to move between the first position and the second position.
  • the housing has a sliding window
  • the pushing mechanism includes a push button, which is movably connected to the sliding window.
  • the pushing mechanism includes:
  • the starter is located in the shell;
  • the connecting piece is connected to the aerosol generating body or is movably connected;
  • the power mechanism is electrically connected with the starting part and connected with the connecting part.
  • the pushing mechanism includes any one of a motor, a pneumatic pump, a hydraulic pump, and an electromagnet.
  • the aerosol generating component includes a conductive member and an atomizing component.
  • the conductive member penetrates the cover.
  • the atomizing component is used to place and atomize the aerosol generating substance to generate aerosol.
  • the aerosol generating device also include:
  • the battery assembly is electrically connected to the atomization assembly through a conductive member
  • the accommodating shell accommodates the battery assembly, the cover is arranged at one end of the accommodating shell, and the atomization assembly and the cover are rotatably connected.
  • the cover and the receiving shell are integrally formed or detachably connected.
  • the cover body includes a first hinge frame, a cover plate, and a second hinge frame that are sequentially connected to form a storage slot, and both sides of the atomization assembly are rotatably connected to the first hinge frame and the second hinge frame, respectively.
  • the atomization component includes:
  • Storage unit for storing aerosol generating substances
  • the atomization unit is electrically connected to the battery assembly at one end, and connected to the storage unit at the other end, and is used to atomize the aerosol-generating substance to generate aerosol.
  • the aerosol generating device provided by the present invention is provided with a cover, and when the cover and the aerosol generating assembly move relative to each other, the cover moves the air outlet from the opened state To the covered state or move from the covered state to the opened state, in order to prevent pollutants from entering the air outlet when the smoker does not use the aerosol generating assembly, and to ensure the cleanliness of the device and the health of the smoker.
  • Figure 1a is a perspective view of an aerosol generating device in an open state according to an embodiment of the present invention
  • Figure 1b is a perspective view of an aerosol generating device in a closed state according to an embodiment of the present invention
  • Figure 2 is an exploded view of the aerosol generating device shown in Figure 1;
  • Fig. 3 is a schematic structural view showing changes of an elastic member in the aerosol generating device shown in Fig. 2;
  • FIG. 4 is a perspective view of another side of the aerosol generating device shown in FIG. 1a;
  • FIG. 5 is a schematic diagram of the structure of the main part of aerosol generation in the aerosol generation device shown in FIG. 2;
  • FIG. 6 is a partial enlarged schematic view of A of the cover in the aerosol generating device shown in FIG. 2;
  • Figure 7 is a cross-sectional view of the aerosol generating device shown in Figure 1b;
  • Figure 8 is a perspective view of another embodiment of the aerosol generating body in the aerosol generating device shown in Figure 2;
  • FIG. 9 is a perspective view of another embodiment of the push button in the aerosol generating device shown in FIG. 2;
  • Fig. 10 is a cross-sectional view of an aerosol generating device according to another embodiment of the present invention.
  • the "aerosol generating substance" referred to in the embodiments of the present invention refers to a smoking substance, which is a substance that can produce odor and/or nicotine and/or smoke upon heating or burning, that is, a substance that can be atomized, that is, smoke material.
  • the smoke material can be solid, semi-solid and liquid. Because of the consideration of air permeability, assembly and production, the solid smoke material is often processed into flakes, so it is also commonly called flakes, and silk flakes are also called flakes.
  • the tobacco material discussed in the embodiments of the present invention may be natural or synthetic smoke liquid, smoke oil, smoke glue, tobacco paste, cut tobacco, tobacco leaves, etc., for example, synthetic smoke material contains glycerin, propylene glycol and nicotine.
  • the e-liquid is liquid
  • the e-liquid is in the form of oil
  • the glue is in the form of gel
  • the ointment is in the form of paste
  • the cut tobacco includes natural or artificial or extracted and processed cut tobacco
  • the tobacco leaves Including natural or man-made or extracted and processed tobacco leaves.
  • the smoke material can be heated in the form of being sealed by other substances, such as stored in a package that can be degraded by heat, such as a microcapsule. After heating, the required volatile substances are derived from the degraded or porous sealed package.
  • the smoke material described in the embodiments of the present invention may or may not contain nicotine.
  • the tobacco material containing nicotine may include at least one of natural tobacco leaf products, smoke liquid made from nicotine as a raw material, smoke oil, smoke glue, smoke paste, tobacco shreds, tobacco leaves, and the like.
  • the smoke liquid is water-like
  • the smoke oil is oil-like
  • the smoke glue is gel-like
  • the smoke cream is paste-like
  • tobacco shreds include natural or artificial or extracted and processed tobacco
  • tobacco leaves include natural or artificial or extracted and processed tobacco tobacco leaf.
  • the tobacco material that does not contain nicotine mainly contains aroma substances, such as spices, which can be atomized to simulate the smoking process and to quit smoking.
  • the fragrance includes peppermint oil.
  • the smoking material may also include other additives, such as glycerin and/or propylene glycol.
  • Figure 1a is a perspective view of an aerosol generating device in an open state according to an embodiment of the present invention
  • Figure 1b is a perspective view of an aerosol generating device in a closed state according to an embodiment of the present invention
  • Figure 2 is shown in Figure 1
  • the aerosol generating device 10 of the present invention includes an aerosol generating assembly 100 and a cover 200.
  • the aerosol generating assembly 100 has an air outlet 101, and the aerosol generating assembly 100 is used to hold the aerosol generating material, and is also used to atomize the aerosol generating material to generate aerosols that exit the air outlet 101; the cover 200 and the aerosol generating
  • the assembly 100 can be movably connected. When the cover 200 and the aerosol generating assembly 100 move relative to each other, the cover 200 moves the air outlet 101 from the opened state to the covered state (see Figure 1b), and from the covered state to the opened state ( As shown in Figure 1a) or partly covered partly open state.
  • a force can be applied to the cover 200 and/or the aerosol generating assembly 100, and when the cover 200 and/or the aerosol generating assembly 100 is forced, the cover 200 and the aerosol generating assembly 100 Relative movement occurs.
  • the aerosol generating device 10 provided by the present invention is provided with a cover 200.
  • the cover 200 and the aerosol generating assembly 100 move relatively, the cover 200 moves the air outlet 101 from the opened state to the covered The closed state or the movement from the covered state to the opened state, so as to prevent pollutants from entering the air outlet 101 when the smoker does not use the aerosol generating assembly 100, which ensures the cleanliness of the device and the health of the smoker.
  • the aerosol generating assembly 100 includes a housing 110, an aerosol generating body 120, and a traction assembly.
  • the housing 110 has a receiving cavity 102 and an outlet 103.
  • the receiving cavity 102 is used for receiving the aerosol generating body 120, and the cover
  • the body 200 and the housing 110 are pulled by a traction assembly to cover or open the outlet 103, the air outlet 101 is opened at the end of the aerosol generating body 120, the aerosol generating body 120 is used to place and atomize the aerosol generating substance to An aerosol that exits the air outlet 101 is generated.
  • the aerosol generating body 120 when the aerosol generating body 120 is moved from the first position to the second position under a force, the aerosol generating body 120 is completely retracted into the receiving cavity 102, and the cover The body 200 moves the air outlet 101 from the opened state to the covered state due to the force of the traction assembly.
  • the lid 200 can be pushed to open and extend the outlet 103 at the same time to move the air outlet 101 from the closed state to the opened state.
  • the air outlet 101 is located adjacent to the outlet 103 or is on the same plane as the outlet 103, so the cover 200 covering or opening the outlet 103 is equivalent to covering or opening the air outlet 101.
  • the present invention defines the movement direction of the aerosol generating body 120 back to the receiving cavity 102 as the first direction 11, and the movement direction of the aerosol generating body 120 to push the cover 200 out of the receiving cavity 102 is defined as the second direction.
  • Direction 12 The direction in which the aerosol generating body 120 moves from the first position to the second position is parallel to the first direction 11, and the direction in which the aerosol generating body 120 moves from the second position to the first position is parallel to the second direction 12.
  • the aerosol generating body 120 has a sliding groove 122
  • the housing 110 has a sliding rail 121 slidably connected to the sliding groove 122
  • the aerosol generating body 120 has a sliding rail 121
  • the housing 110 has a sliding groove
  • the rail 121 is slidably connected to the sliding groove 122.
  • the sliding groove 122 may be a T-shaped sliding groove 122, and correspondingly, the sliding rail 121 may be a T-shaped sliding rail 121; or, the sliding groove 122 may be a straight groove 122, and correspondingly, the sliding rail 121 may be
  • the in-line slide rail 121 of course, the slide rail 121 can also be a slide rail 121 formed by more than one protrusion.
  • the following embodiments are described by taking the aerosol generating body 120 having a sliding groove 122, the casing 110 having a sliding rail 121 slidably connected to the sliding groove 122, and the sliding rail 121 being two protrusions as an example.
  • the housing 110 has a first positioning recess 104 and a second positioning recess 105.
  • the aerosol generating assembly 100 further includes a sliding positioning member 140, one end of which is inserted into the aerosol generating body 120, and the other end is matched with the first positioning recess 104 and the second positioning recess 105.
  • the sliding positioning member 140 may be a positioning bead, and the first positioning recess 104 is provided above or below the sliding rail 121 or between two protrusions.
  • the first position and the second position are the positions where the positioning beads slide to the first positioning recess 104 and the second positioning recess 105 after the aerosol generating body 120 slides.
  • the aerosol generating body 120 in a normal state, when the aerosol generating body 120 is not in use In the second position, that is, the sliding positioning member 140 is in the second positioning recess 105, the aerosol generating body 120 is completely contained in the receiving cavity 102, the cover 200 covers the outlet 103, and the air outlet 101 is in a covered state.
  • the sliding positioning member 140 elastically detaches from the second positioning recess 105 and slides along the inner wall of the housing 110 toward the first positioning recess 104, and the end of the aerosol generating body 120 will first abut
  • the cover body 200 is topped, and the cover body 200 is pushed to open.
  • the sliding positioning member 140 elastically slides into the first positioning recess 104, it reaches the first position.
  • the cover body 200 is completely opened, and the end of the aerosol generating body 120 The part extends out of the opening 103, so that the air outlet 101 is exposed to the air and enters a fully opened state.
  • the aerosol generating body 120 can be pushed back in the first direction 11, and the sliding positioning member 140 is elastically separated from the first positioning recess 104 and sliding along the inner wall of the housing 110 toward the second positioning recess 105.
  • the sliding positioning member 140 elastically slides into the second positioning recess 105 to reach the second position.
  • the aerosol generating body 120 retreats to the receiving cavity 102, and the cover 200 is pulled to cover the outlet 103 by the traction force of the traction assembly , The air outlet 101 enters the closed state.
  • the sliding positioning member 140, the first positioning recess 104 and the second positioning recess 105 may not be provided, and the first position and the second position may be the two ends of the sliding groove 122 respectively.
  • the cover 200 includes a cover 210 and a hinge 220.
  • the cover 210 is used to cover or open the air outlet 101; the hinge 220 is connected to one end of the cover 210, a part of the traction assembly is clamped on the housing 110, and the other part is elastically clamped on both ends of the hinge 220.
  • the cover 200 further includes a buckle part 230 connected to the cover plate 210.
  • the end of the housing 110 has a buckle 107.
  • the buckle part 230 is inserted in the buckle 107.
  • the parts 230 are respectively perpendicularly connected to the three sides of the cover plate 210.
  • the buckle 107 may have a hole shape or a groove shape.
  • FIG. 3 is a schematic structural view of the change of the elastic member in the aerosol generating device shown in FIG. 2, and FIG. 4 is a perspective view of the other side of the aerosol generating device shown in FIG. 1a.
  • the traction assembly includes an elastic member 131 and an elastic contraction member 132.
  • the elastic member 131 includes a first hook portion 1311, a second hook portion 1312, and a housing 110 that are vertically connected to form a U-shape.
  • the elastic contraction member 132 is elastically connected between the first elastic portion 1313 and the third elastic portion 1315, and the elastic contraction member 132 may be a spring, a rubber band, or the like.
  • the elastic member 131 is not installed before the hinge part 220, and when the elastic member 131 is not stressed, the distance D1 between the first elastic part 1313 and the third elastic part 1315 is smaller than the distance between the two ends of the hinge part 220 D2.
  • the distance between the first elastic portion 1313 and the third elastic portion 1315 needs to be increased before they are installed on both ends of the hinge portion 220.
  • the first elastic portion 1313 and the third elastic portion 1313 The distance D between the elastic parts 1315 becomes larger than the distance D2 between the two ends of the hinge part 220, the distance D1 between the first elastic part 1313 and the third elastic part 1315 is elastically increased, and the first elastic part 1313 and the third elastic part 1313
  • the resilient force between the elastic parts 1315 makes the first hook part 1311 and the second hook part 1312 elastically clamped on both ends of the hinge part 220 (when the cover 210 is not exposed to the pressure of the exposed end of the aerosol generating body 120) )
  • the cover plate 210 is pulled in the direction of the resilient member 131 to rotate, so that the cover plate 210 covers the outlet 103.
  • the resilient force between the first elastic portion 1313 and the third elastic portion 1315 makes the cover plate 210 elastically rotate and abut against the outer surface of the aerosol generating body 120, and the cover plate 210 is The sol generating body 120 forms a certain angle.
  • the elastic contraction member 132 is arranged close to the first hook portion 1311 and the second hook portion 1312, and the distance D3 between the two ends of the elastic contraction member 132 is less than the distance D1 between the first elastic portion 1313 and the third elastic portion 1315.
  • Increase the elastic force between the first elastic portion 1313 and the third elastic portion thereby increasing the elastic clamping force of the first hook portion 1311 and the second hook portion 1312 acting on both ends of the hinge portion 220, so that the cover plate 210 moves toward the elastic member 131
  • the extension length L1 of the extension outlet 103 is greater than the length L2 of the cover 200 in the first direction 11 to avoid excessive elastic force of the elastic member 131, so that the cover 200 Cannot open stably.
  • FIG. 5 is a structural diagram of the aerosol generating body part of the aerosol generating device shown in FIG. 2.
  • the first elastic portion 1313 has a first fold formed by bending inward.
  • the bending section 1316, the third elastic portion 1315 have a second bending section 1317 formed by bending inward, the first bending section 1316 and the second bending section 1317 are U-shaped, arc-shaped or trapezoidal, the first bending section 1316 and the second bending section 1317 make the sliding gap in the elastic member 131 form a first gap 1301, a second gap 1302, and a third gap 1303.
  • the gap is the second gap 1302.
  • the width d2 of the second gap 1302 is greater than the width d1 of the first gap 1301 and the width d3 of the third gap 1303, and the width d1 of the first gap 1301 is greater than or equal to the width d3 of the third gap 1303.
  • the aerosol generating body 120 is provided with a first guide protrusion 123 and a second guide protrusion 124.
  • the first guide protrusion 123 and the second guide protrusion 124 are arranged axisymmetrically, and both sides of the first bending section 1316 and the second bending section 1317 have first slope surfaces 131a that are sequentially bent to form a trapezoidal shape.
  • Guide plane 132b, second slope 132c, both sides of the first guide protrusion 123, second guide protrusion 124 have a first guide slope 120a, a sliding platform 120b, and a second guide slope 120c that are connected in sequence to form a trapezoid .
  • the width d2 of the second gap 1302 refers to the distance between the guiding plane 132b of the first bending section 1316 and the guiding plane 132b of the second bending section 1317, the sliding platform 120b of the first guiding protrusion 123 and the sliding platform of the second guiding protrusion 124
  • the distance between 120b is greater than the distance between the guiding plane 132b of the first bending section 1316 and the guiding plane 132b of the second bending section 1317.
  • the first guiding slope 120a slides into the second gap 1302 along the first slope 131a, the first guiding slope 120a slides out of the first slope 131a, and the sliding platform 120b fits and guides The plane 132b slides toward the third gap 1303; when the aerosol generating body 120 moves in the second direction 12, the second guide slope 120c slides into the second gap 1302 along the second slope 132c, and the second guide slope 120c slides out of the second gap.
  • the sliding platform 120b behind the slope surface 132c slides in the direction of the first gap 1301 against the guide plane 132b.
  • the first guiding protrusions 123 and the second guiding protrusions 124 are in the third gap 1303, and when the aerosol generating body 120 is pushed to make the ends abut and push
  • the first guide protrusion 123 and the second guide protrusion 124 move to the second gap 1302 and slide against the first bending section 1316 and the second bending section 1317, respectively, so as to make the first bending
  • the distance between the bending section 1316 and the second bending section 1317 becomes elastically larger (that is, the width of the second gap 1302 changes from d2 to d), thereby driving the first hook portion 1311 and the second hook portion 1312 to elastically open and Retreat from both ends of the hinge 220 respectively (as shown in the dotted line in FIG.
  • the cover plate 210 is pulled to rotate elastically in the direction of the elastic member 131, so that the cover plate 210 is covered with the outlet 103.
  • the aerosol generating assembly 100 further includes a pressing plate 150 sandwiched between the aerosol generating body 120 and the traction assembly for pressing the elastic member 131 on the bottom plate 113 of the housing 110.
  • the pressing plate 150 has a limiting sliding hole 151, and the first guiding protrusion 123 and the second guiding protrusion 124 pass through the limiting sliding hole 151 to slide in the first gap 1301, the second gap 1302, and the third gap 1303.
  • the elastic contraction member 132 is partially clamped on the housing and partially penetrated by the pressure plate 150.
  • the first elastic portion 1313 further has a third bending section 1318 formed by bending inward
  • the third elastic portion 1315 has a fourth bending section formed by bending inward. 1319.
  • the third bending section 1318 and the fourth bending section 1319 are U-shaped, arc-shaped or trapezoidal.
  • One end of the elastic contraction member 132 is connected to the third bending section 1318, and the other end is connected to the fourth bending section 1319.
  • FIG. 6 is a partial enlarged schematic diagram of A of the cover in the aerosol generating device shown in FIG. 2.
  • the hinge 220 is formed by bending one end of the cover 210 toward the cover 210, wherein one end of the hinge 220 is connected to one end of the cover 210, and the other end forms a gap with the cover 210 225.
  • the two ends of the hinge 220 have a high limit point 221 and a low limit point 222, and an arc-shaped recess 223 is formed between the high limit point 221 and the low limit point 222, wherein the aerosol is generated
  • the elastic clamping action of the elastic element 131 causes the end of the elastic element 131 to depart from the high limit point 221 and slide along the arc-shaped recess 223 to abut against the low limit point 222.
  • the distance between the two high limit points 221 on the two ends of the hinge 220 in this embodiment is greater than the distance between the two low limit points 222.
  • the cover 210 when the cover 210 is in the closed state, that is, when the sol generating body is in the second position, the bending section 130a of the first hook portion 1311 and the second hook portion 1312 abuts against the lower limit of the hinge portion 220
  • the bending section 130a is separated from the lower position.
  • the limit point 222 slides against the high limit point 221, the distance between the first elastic portion 1313 and the third elastic portion 1315 is elastically expanded, and the distance between the first hook portion 1311 and the second hook portion 1312 is elastically expanded.
  • the elastic contraction member 132 is further elastically elongated, which causes the elastic contraction force of the elastic contraction member 132 on the first hook portion 1311 and the second hook portion 1312 to increase; when the aerosol generating body 120 moves from the first position Move to the second position and push back into the housing 110.
  • the contraction force of the elastic contraction member 132 elastically tightens the first elastic portion 1313 and the third elastic portion 1315 to drive the first hook
  • the portion 1311 and the second hook portion 1312 are elastically tightened, thereby increasing the clamping force of the first hook portion 1311 and the second hook portion 1312 on both ends of the hinge portion 220, forcing the first hook portion 1311 and the second hook portion 1311
  • the bending section 130a of the hook portion 1312 detaches from the high limit point 221 and slides against the low limit point 222.
  • the distance between the first hook portion 1311 and the second hook portion 1312 is elastically reduced, and the distance between the hinge portion 220
  • the clamping force at both ends is excessively large to small, forcing the cover plate 210 to close the outlet 103 instantaneously.
  • the aerosol generating device 10 is substantially the same as any one of the above embodiments. The difference is that the components and connection modes of the traction assembly are different from the traction assembly in any one of the above embodiments.
  • the traction component of the example includes a hinge and a traction component.
  • the cover 200 and the housing 110 are hinged through a hinge, which may be a rotating shaft; one end of the traction member is fixed to the cover 200, and the other end is fixed to the aerosol generating body 120.
  • the traction member may be a rubber band or a rope.
  • the traction member When the aerosol generating body 120 is in the first position, the traction member has the smallest or no traction force and is in a natural bending state; when the aerosol generating body 120 is in the second position, the traction force is the largest and is in a stretched and tightened state.
  • the aerosol generating body 120 includes an aerosol generating body 125 and a cigarette holder 126.
  • the aerosol generating body 125 is used to place and atomize the aerosol generating substance to generate aerosol; the cigarette holder 126 is fluidly connected with the aerosol generating body 125, and the air outlet 101 is opened in the cigarette holder 126.
  • the cigarette holder 126 when the aerosol generating body 125 is in the second position, the cigarette holder 126 is received in the receiving cavity 102, and when the aerosol generating body 120 is in the first position, the cigarette holder 126 is away from the cover 200, that is, the aerosol generating body The end of 120 presses the cover body 200, and the cigarette holder 126 is separated from the cover body 200 (not in contact) to prevent the smoker's mouth from contacting the contaminants on the cover body.
  • the aerosol generating assembly 100 further includes a protective cover 160, which is slidably sleeved with the aerosol generating body 125.
  • a protective cover 160 which is slidably sleeved with the aerosol generating body 125.
  • the protective cover 160 When the aerosol generating body 120 is in the second position, the protective cover 160 When the aerosol generating body 120 is in the first position, the protective cover 160 at least partially presses the cover 200 and extends out of the receiving cavity 102 when the aerosol generating body 120 is stored in the receiving cavity 102.
  • the protective sleeve 160 has a sliding guide hole 161
  • the aerosol generating body 125 has a protrusion 152 that is slidably connected to the guide sliding hole 161 to push the protective sleeve 160 to slide out of the outlet 103 and return to the receiving cavity 102 .
  • the housing 110 includes a back cover 111 and a left side plate 112, a bottom plate 113, and a right side plate 114 that are sequentially connected to form a U shape.
  • the back cover 111 and the cover plate 210 are respectively disposed on the left side plate 112/bottom plate.
  • 113/The two ends of the right side plate 114 form the receiving cavity 102.
  • the left side plate 112 is formed with a first positioning recess 104, a second positioning recess 105, and a sliding rail 121.
  • the right side plate 114 is also formed with a first positioning The recess 104, the second positioning recess 105, and the sliding rail 121.
  • FIG. 7 is a cross-sectional view of the aerosol generating device shown in FIG. 1b.
  • the aerosol generating body 125 includes an atomizing component 1251, a battery component 1252, a receiving shell 1253, and a conductive member 1254 .
  • the atomization component 1251 is used to place and atomize the aerosol generating substance to generate aerosol.
  • the cigarette holder 126 is connected to the atomization component 1251.
  • the atomization component 1251 and the cigarette holder 126 are integrally formed or detachably connected; the battery component 1252 is connected to The atomization component 1251 is electrically connected; the accommodating shell 1253 accommodates the battery component 1252, one end of the accommodating shell 1253 is detachably connected to the atomization component 1251, and the accommodating shell 1253 is provided with a circuit board (not shown) of the control circuit component; The member 1254 is inserted into the receiving shell 1253 and is electrically connected to the atomization assembly 1251.
  • FIG. 8 is a perspective view of another embodiment of the aerosol generating body in the aerosol generating device shown in FIG. 2.
  • the aerosol generating device 10 is substantially the same as any of the foregoing embodiments, except that the gas
  • the components of the sol generating body 125' and their connection methods are different.
  • the aerosol generating body 125' of this embodiment includes an electronic cigarette 1255 and a receiving shell 1253'.
  • the electronic cigarette 1255 is in the shape of a strip and is a relatively common electronic product that simulates cigarettes. It includes an atomizing component, a battery component, and a conductive element (not shown).
  • the atomizing component is used to place and atomize aerosol-generating substances to produce
  • the aerosol and atomization components are electrically connected to the battery components through the conductive parts.
  • the receiving shell 1253' contains the electronic cigarette 1255' and is detachably connected with the cigarette holder 126.
  • the receiving case 1253' has no circuit board or battery.
  • the aerosol generating assembly 100 further includes a pushing mechanism movably connected to the aerosol generating body 120 to push the aerosol generating body 120 to slide between the first position and the second position.
  • the housing 110 further includes a panel 115, the cover box is in the receiving cavity 102, the panel 115 has a sliding window, and the pushing mechanism includes a push button 171 which is movably connected to the sliding window 172.
  • FIG. 9 is a perspective view of another embodiment of the push button in the aerosol generating device shown in FIG. 2.
  • the pushing mechanism is different from the aforementioned pushing mechanism component parts and connection relationship.
  • the pushing mechanism in this embodiment includes an actuating member (not shown), a connecting member 174, and a power mechanism.
  • the actuating member is located at The housing 110 is used to activate the power mechanism 175; the connecting member 174 is connected to the aerosol generating body 120 or movably connected; the power mechanism is electrically connected to the starting member and connected to the connecting member 174.
  • the connecting member 174 includes a connecting plate 1741 and a connecting buckle 1742.
  • the power mechanism in this embodiment includes a power source 1751, a fixed plate 1752, a driving shaft 1753, a driven shaft 1754, a turbine 1755, a worm 1756, a guide plate 1757, a guide column 1758, and a support column 1759.
  • the fixing plate 1752 and the connecting plate 1741 are detachably connected, specifically, can be connected by screws.
  • the driving shaft 1753 is fixedly connected to the power source 1751; the driven shaft 1754 is meshed with the main shaft.
  • the turbine 1755 and the driven shaft 1754 are fixedly connected by a rotating shaft.
  • the worm 1756 meshes with the turbine 1755.
  • the guide plate 1757 includes a first guide plate 175a, a second guide plate 175b, and a third guide plate 175c.
  • the first guide plate 175a is fixedly connected to the power source 1751
  • the first guide plate 175a, the second guide plate 175b, and the third guide plate 175c are respectively connected by a support column 1759.
  • the driving shaft 1753 and the driven shaft 1754 are provided on the first guide plate 175a and the second guide plate 175b
  • the turbine 1755 is provided between the second guide plate 175b and the third guide plate 175c.
  • the first guide plate 175a, the second guide plate 175b and the third guide plate 175c are all provided with a first Guide holes and second guide holes.
  • One end of the worm 1756 is fixed to the fixing plate 1752, and the other end is driven by the power source 1751 in the first guide hole 1701 of the first guide plate 175a, the second guide plate 175b, and the third guide plate 175c
  • One end of the guide post 1758 is fixed to the fixed plate 1752, and the other end is driven by the power source 1751 to slide between the first guide plate 175a, the second guide plate 175b, and the second guide hole 1702 of the third guide plate 175c.
  • the components and connection relationships of the power mechanism are not completely the same as those of the power mechanism of the above embodiment.
  • the power mechanism includes a power source (not shown) and a screw rod (not shown).
  • the power source 1751 The screw rod (not shown in the figure) is movably connected with the connecting plate 1741.
  • the screw rod is provided with an external thread
  • the connecting piece is provided with an internal thread.
  • the threaded rod penetrates the connecting plate 1741 and makes the threads of the two engage.
  • the rotation of the power source 1751 drives the screw rod to rotate, and the screw rod pushes the aerosol generating body 120 to slide between the first position and the second position.
  • the power source 1751 is a motor, and may also be any one of a pneumatic pump, a hydraulic pump, or an electromagnet.
  • pneumatic pumps and hydraulic pumps are directly used instead of motors, and a transmission rod is used instead of a screw rod to connect with the connecting member 174, thereby pushing the aerosol generating body 120;
  • an electromagnet is used instead of a motor, a magnetic element is used instead of the connecting piece 174. When the electromagnet and the magnetic element are attracted, the aerosol generating body 120 is pushed to move in the first direction 11.
  • the main body 120 faces the second direction 12, and the electromagnet can preferably change the direction of the magnetic field.
  • the direction of the magnetic field can be changed by changing the current flow direction, which facilitates the control of the movement direction of the aerosol generating main body 120.
  • FIG. 10 is a cross-sectional view of an aerosol generating device according to another embodiment of the present invention.
  • the aerosol generating device 20 includes an aerosol generating assembly 100 and a cover 200.
  • the aerosol generating assembly 100' of this embodiment includes a conductive member 1254, an atomizing assembly 1251, and a cigarette holder 126.
  • the conductive member 1254 passes through the cover 200, and the atomizing assembly 1251 is connected to the cigarette holder 126 for placing and atomizing aerosol generating
  • the cigarette holder 126 is provided with an air outlet 101, and the atomizing assembly 1251 and the cigarette holder 126 can be integrally formed or detachably connected; the aerosol generating device 20 also includes a battery assembly 1252 and a receiving shell 1253.
  • the battery assembly 1252 is electrically connected to the atomization assembly 1251 through the conductive member 1254; the accommodating shell 1253 accommodates the battery assembly 1252, the cover 200 is arranged at one end of the accommodating shell 1253, and the atomization assembly 1251 and the cover 200 are rotatably connected.
  • the cover 200 and the receiving shell 1253 are integrally formed or detachably connected.
  • the cover 200 in this embodiment includes a first hinge frame 230, a cover plate 210, and a second hinge frame 240 that are sequentially connected to form a U-shaped storage slot 250.
  • the first hinge frame 230 and the second hinge frame 240 are connected to On the opposite side of the cover plate 210, the cover plate is disposed on the end surface of the receiving shell 1253.
  • the first hinge frame 230, the second hinge frame 240, and the cover plate 210 are integrally formed, and the cover is integrally formed with the receiving shell 1253; or, the first hinge frame 230, the second hinge frame 240 and the receiving shell 1253 are integrally formed After being formed, the cover 210 and the receiving shell 1253 are detachably connected.
  • Two sides of the atomization assembly 1251 are rotatably connected to the first hinge frame 230 and the second hinge frame 240 respectively, and the conductive member 1254 is inserted into the cover 210.
  • the first hinge frame 230 and the second hinge frame 240 have a sliding hole 241
  • the atomization assembly 1251 has a rotating protrusion 242
  • the rotating protrusion 242 is slidably connected to the sliding hole 241 and rotatably connected.
  • the rotating protrusion 242 is at the bottom end of the sliding hole 241, the atomization assembly 1251 is in contact with the conductive member 1254 to be electrically connected, the cigarette holder 126 is away from the receiving groove 250 of the cover 200, and the air outlet 101 is in an open state; after use, the atomization assembly 1251 moves to the top of the sliding hole 241 through the rotating protrusion 242, and rotates the atomization assembly 1251 so that the cigarette holder 126 is opposite to the receiving slot 250, and the atomization assembly 1251 is disconnected from the conductive member 1254, and the atomizing assembly 1251 is further pushed to store the cigarette holder 126 in the receiving groove 250 of the cover 200, so that the air outlet 101 moves from the opened state to the covered state.
  • the conductive member 1254 in any of the foregoing embodiments may be a metal thimble.
  • the atomization assembly includes a storage unit 410, an atomization unit 420 and an air flow passage 430.
  • the storage unit 410 is used to store the aerosol generating substance; one end of the atomization unit 420 is electrically connected to the battery assembly 1252, and the other end is connected to the storage unit 410.
  • the battery assembly 1252 supplies power to the atomization unit 420 to make the atomization core in the atomization unit 420 heat and atomize the aerosol-generating substance to produce aerosol (ie smoke) to achieve the effect of a simulated cigarette, thereby satisfying the smoking of smokers
  • the air flow passage 430 is used to make the aerosol flow out in the direction of the air outlet 101 and be sucked by the smoker along with the air flow.

Abstract

一种气溶胶生成装置(10),包括气溶胶生成组件(100)和盖体(200),气溶胶生成组件(100)具有出气口(101),气溶胶生成组件(100)用于安放且雾化气溶胶生成物质以产生往出气口(101)出气的气溶胶;盖体(200)与气溶胶生成组件(100)可运动连接;盖体(200)与气溶胶生成组件(100)之间相对发生运动时,盖体(200)至少使出气口(101)从被敞开状态运动到被盖合状态或从被盖合状态运动至被敞开状态,以便在吸烟者不使用气溶胶生成组件(100)时,避免污染物进入出气口(101),保障了装置(10)的清洁和吸烟者的健康。

Description

气溶胶生成装置 技术领域
本发明涉及电子烟技术领域,更具体地说,涉及一种气溶胶生成装置。
背景技术
电子烟有时被称作电子雾化装置、个人雾化器或电子尼古丁输送系统。所述电子烟是包括电池、加热元件、烟油、烟嘴,电池用于为加热元件供电,加热元件用于对烟油进行雾化件,烟嘴用于方便吸烟者进行吸食烟雾。现有技术中电子烟不在使用的时候,其烟嘴总是暴露在外。周围的环境和空气有可能对电子烟的烟嘴产生不同程度的污染,污染物影响人们的健康。
技术问题
本发明提供一种气溶胶生成装置,以解决上述周围的环境和空气有可能对电子烟的烟嘴产生不同程度的污染的技术问题。
技术解决方案
本发明采用的一技术方案为:提供一种气溶胶生成装置,其包括:
气溶胶生成组件,具有出气口,用于安放且雾化气溶胶生成物质以产生往出气口出气的气溶胶;
盖体,与气溶胶生成组件可运动连接;其中,
盖体与气溶胶生成组件之间相对发生运动时,使出气口从被敞开状态运动到被盖合状态或从被盖合状态运动至被敞开状态。
在某些实施方式中,气溶胶生成组件包括:
壳体,具有收容腔;
气溶胶生成主体,设于所述收容腔,并与所述壳体可运动连接,所述出气口开设于所述气溶胶生成主体一端;
牵引组件,连接所述壳体与所述盖体,用于在气溶胶生成主体在第一位置与第二位置之间运动时,牵引盖体以使出气口被盖合或被敞开。
在某些实施方式中,盖体包括:
盖板,用于盖合或敞开出气口;
铰接部,连接于盖板一端,其中,牵引组件一部分卡设于壳体,另一部分弹性夹设于铰接部的两端。
在某些实施方式中,盖体还包括扣接部,扣接部连接于盖板,壳体具有与扣接部插接扣位。
在某些实施方式中,牵引组件包括弹性件,弹性件包括第一挂勾部、第二挂勾部以及卡设于壳体并依次连接形成一滑动间隙的第一弹性部、第二弹性部、第三弹性部,第一挂勾与第一弹性部连接,第二挂勾部与第三弹性部连接,第一挂勾和第二挂勾分别弹性夹设于铰接部的两端。
在某些实施方式中,第一弹性部具有第一折弯段,第三弹性部具有第二折弯段,气溶胶生成主体设有第一导向凸起和第二导向凸起;其中,第一导向凸起、第二导向凸起分别滑动抵顶至第一折弯段、第二折弯段可使第一折弯段、第二折弯段之间的距离弹性变大。
气溶胶生成组件还包括压板,压设于弹性件压,所述第一导向凸起、第二导向凸穿设于所述压板。
在某些实施方式中,铰接部由盖板的一端往盖板方向弯卷形成,其中,铰接部的一端连接于盖板的一端面,另一端与盖板形成一空隙。
在某些实施方式中,铰接部的端面具有高位点和低位点,高位点与低位点间形成有弧形凹陷,其中,气溶胶生成主体由第二发位置滑至第一位置时,牵引组件的端部脱离高位点并沿弧形凹陷滑动抵接低位点。
在某些实施方式中,牵引组件还包括弹性收缩件,弹性连接于第一弹性部与第三弹性部之间。
在某些实施方式中,牵引组件包括:
铰接件,盖体与壳体通铰接件铰接;
牵引件,一端固定于所述盖体,另一端固定于所述气溶胶生成主体。
未在某些实施方式中,气溶胶生成主体包括:
气溶胶生成本体,用于安放且雾化气溶胶生成物质以生成气溶胶;
烟嘴,与气溶胶生成本体流体连接,出气口开设于烟嘴。
在某些实施方式中,气溶胶生成本体处于第二位置时,烟嘴收纳于收容腔内,气溶胶生成主体处于第一位置时,烟嘴远离盖体。
在某些实施方式中,气溶胶生成组件还包括保护套,与气溶胶生成本体滑动套接,其中,气溶胶生成主体处于第一位置时,保护套至少部分压紧盖体并伸出收容腔。
在某些实施方式中,保护套具有滑动孔,气溶胶生成本体具有凸起部,凸起部滑接于滑动孔。
在某些实施方式中,所述壳体具有第一定位凹陷和第二定位凹陷,所述气溶胶生成组件还包括滑动定位件,滑动定位件的一端插设于所述气溶胶生成主体,另一端与所述第一定位凹陷和第二定位凹陷匹配;其中,第一位置、第二位置分别为第一定位凹陷、第二定位凹陷。
在某些实施方式中,气溶胶生成主体具有滑轨,壳体具有与滑轨滑动连接的滑槽;或者,气溶胶生成主体具有滑槽,壳体具有与滑槽滑动连接的滑轨;其中,第一位置、第二位置分别为滑槽的两端。
在某些实施方式中,气溶胶生成本体包括:
雾化组件,用于安放并雾化气溶胶生成物质以产生气溶胶;
电池组件,与雾化组件电连接;
收容壳,收容电池组件并与雾化组件可拆卸连接。
导电件,插设于所述收容壳并与所述雾化组件电连接。
在某些实施方式中,气溶胶生成本体包括:
电子烟,包括雾化组件、电池组件、导电件,雾化组件用于安放并雾化气溶胶生成物质以产生气溶胶,雾化组件通过导电件与电池组件电连接;
收容壳,收容电子烟,且与烟嘴可拆卸连接。
在某些实施方式中,气溶胶生成组件还包括推动机构,推动机构与气溶胶生成主体连接,以推动气溶胶生成主体在第一位置滑与第二位置之间运动。
在某些实施方式中,壳体具有滑动窗口,推动机构包括推动按键,推动按键可运动连接于滑动窗口。
在某些实施方式中,推动机构包括:
启动件,设于壳体;
连接件,与气溶胶生成主体连接或者可运动的连接;
动力机构,与启动件电连接,并与连接件连接。
在某些实施方式中,推动机构包括电机、气压泵、液压泵、电磁铁任意一种。
在某些实施方式中,气溶胶生成组件包括导电件和雾化组件,导电件穿设于盖体,雾化组件用于安放并雾化气溶胶生成物质以产生气溶胶,气溶胶生成装置还包括:
电池组件,通过导电件与雾化组件电连接;
收容壳,收容电池组件,盖体设于收容壳一端,雾化组件与盖体可旋转连接。
在某些实施方式中,盖体与收容壳一体成型或可拆卸连接。
在某些实施方式中,盖体包括依次连接形成收纳槽的第一铰接架、盖板、第二铰接架,雾化组件的两侧分别可旋转连接于第一铰接架、第二铰接架。
在某些实施方式中,雾化组件包括:
存储单元,用于安放气溶胶生成物质;
雾化单元,一端与电池组件电连接,另一端与存储单元连接,用于雾化气溶胶生成物质以产生气溶胶。
有益效果
本发明有益效果:区别于现有技术,本发明提供的一种气溶胶生成装置设有盖体,盖体与气溶胶生成组件之间相对发生运动时,盖体使出气口从被敞开状态运动至被盖合状态或从被盖合状态运动至被敞开状态,以便在吸烟者不使用气溶胶生成组件时,避免污染物进入出气口,保障了装置的清洁和吸烟者的健康。
附图说明
图1a为本发明一实施例的气溶胶生成装置敞开状态的立体图;
图1b为本发明一实施例的气溶胶生成装置盖合状态的立体图
图2为图1所示的气溶胶生成装置的爆炸图;
图3是图2所示的气溶胶生成装置中的弹性件变化的结构示意图;
图4是图1a所示的气溶胶生成装置另一侧面的立体图;
图5是图2所示的气溶胶生成装置中气溶胶生成主体部分结构示意图;
图6是图2所示的气溶胶生成装置中盖体的A局部放大示意图;
图7是图1b所示的气溶胶生成装置的剖视图;
图8是图2所示的气溶胶生成装置中的气溶胶生成本体另一实施例立体图;
图9是图2所示的气溶胶生成装置中的推动按键另一实施例立体图;
图10是本发明另一实施例气溶胶生成装置的剖面图。
本发明的实施方式
为了使本发明的目的、技术方案及优点更加清楚明白,以下结合附图及实施例对本发明进行进一步详细说明。应当理解,此处所描述的具体实施例仅用以解释本发明,并不用于限定本发明。
在发明中,当元件被称为“固定于”另一个元件,它可以直接在另一个元件上或者也可以存在居中的元件。当一个元件被认为是“连接”另一个元件,它可以是直接连接到另一个元件或者可能同时存在居中元件。相反,当元件被称作“直接在”另一元件“上”时,不存在中间元件。当一个元件被认为是“联接”另一个元件,是各元件相互衔接来实现机器的职能,包括动联接和静联接两类。本文所使用的术语“垂直的”、“水平的”、“左”、“右”以及类似的表述只是为了说明的目的。实施例附图中各种不同对象按便于列举说明的比例绘制,而非按实际组件的比例绘制。
本发明实施例所称“气溶胶生成物质”指发烟物质,是经加热或燃烧可以产生气味和/或尼古丁和/或烟气的物质,即可被雾化的物质,即烟料。烟料可以是固态、半固态和液态。固态烟料因为透气性、组装和制作等方面的考虑,经常加工成薄片状,因此又俗称为薄片,丝状薄片也称为薄片丝。本发明实施例所讨论的烟料可为天然的或人工合成的烟液、烟油、烟胶、烟膏、烟丝、烟叶等,例如,人工合成的烟料含有甘油、丙二醇和烟碱等。所述烟液为液体,所述烟油为油状,所述烟胶为凝胶状,所述烟膏为膏状,所述烟丝包括天然的或人造的或萃取加工过的烟丝,所述烟叶包括天然的或人造的或萃取加工过的烟叶。烟料可以在被其它物质封存的形式下被加热,如保存在可遇热降解的包装中,例如微胶囊中,加热后所需挥发性物质从降解或有孔隙的封存包装中导出。
本发明实施例所述的烟料可以含有烟碱,也可以不含有烟碱。含有烟碱的烟料可以包括天然烟叶制品,以烟碱为原料制成的烟液、烟油、烟胶、烟膏、烟丝、烟叶等中的至少一种。烟液为水状,烟油为油状,烟胶为凝胶状,烟膏为膏状,烟丝包括天然的或人造的或萃取加工过的烟丝,烟叶包括天然的或人造的或萃取加工过的烟叶。不含有烟碱的烟料主要含有香味物质,例如香料,即可被雾化以起到模拟吸烟过程又起到戒烟等目的。在另一实施例中,所述香料包括薄荷油。所述烟料还可包括其他添加剂,例如甘油和/或丙二醇。
参见图1a-图2,图1a为本发明一实施例的气溶胶生成装置敞开状态的立体图;图1b为本发明一实施例的气溶胶生成装置盖合状态的立体图;图2为图1所示的气溶胶生成装置的爆炸图,本发明的气溶胶生成装置10包括气溶胶生成组件100和盖体200。
气溶胶生成组件100具有出气口101,气溶胶生成组件100用于安放气溶胶生成物质,还用于雾化气溶胶生成物质以产生往出气口101出气的气溶胶;盖体200与气溶胶生成组件100可运动连接。盖体200与气溶胶生成组件100之间相对发生运动时,盖体200使出气口101从被敞开状态运动到被盖合状态(如图1b)、从被盖合状态运动至被敞开状态(如图1a)或部分盖合部分敞开状态。可选地,可对盖体200和/或气溶胶生成组件100施力,在盖体200和/或气溶胶生成组件100受力时,均可使盖体200与气溶胶生成组件100之间发生相对运动。
本发明提供的一种气溶胶生成装置10因设有盖体200,在盖体200与气溶胶生成组件100之间相对发生运动时,盖体200使出气口101从被敞开状态运动至被盖合状态或从被盖合状态运动至被敞开状态,以便在吸烟者不使用气溶胶生成组件100时,避免污染物进入出气口101,保障了装置的清洁和吸烟者的健康。
在另一实施例中,气溶胶生成组件100包括壳体110、气溶胶生成主体120以及牵引组件,壳体110具有收容腔102和出口103,收容腔102用于收容气溶胶生成主体120,盖体200与壳体110通过牵引组件牵引以盖合或敞开出口103,出气口101开设于所述气溶胶生成主体120的端部,气溶胶生成主体120用于安放且雾化气溶胶生成物质以产生往出气口101出气的气溶胶。可选地,气溶胶生成主体120为一个或为多个,多个一次性的气溶胶生成主体120在依次受力时可依次推动盖体200以使出气口101从被盖合状态运动至被敞开状态。
在另一实施例中,如图1a和图1b所示,在气溶胶生成主体120受力作用由第一位置运动至第二位置时,气溶胶生成主体120完全退回至收容腔102内,盖体200由于牵引组件的力作用以使出气口101由被敞开状态运动至被盖合状态。气溶胶生成主体120受力的作用由第二位置运动至第一位置时,可同时推动盖体200打开及伸出出口103以使出气口101由被盖合状态运动至被敞开状态。本实施例的出气口101临近出口103设置或与出口103处于一平面,故盖体200盖合或敞开出口103相当于盖合或敞开出气口101。
为方便理解,本发明将气溶胶生成主体120退回至收容腔102的运动方向定义为第一方向11,将气溶胶生成主体120往推动盖体200伸出收容腔102的运动方向定义为第二方向12。气溶胶生成主体120从第一位置往第二位置运动的方向与第一方向11平行,气溶胶生成主体120从第二位置往第一位置运动的方向与第二方向12平行。
在另一实施例中,气溶胶生成主体120具有滑槽122,壳体110具有与滑槽122滑动连接的滑轨121,或者,气溶胶生成主体120具有滑轨121,壳体110具有与滑轨121滑动连接的滑槽122。滑槽122可以为T字型滑槽122,对应地,滑轨121可以为一条T字型滑轨121;或者,滑槽122可以为一字型滑槽122,对应地,滑轨121可以为一字型滑轨121,当然,滑轨121还可以由1个以上凸起形成的滑轨121。为方便阐述,下面各实施例中以气溶胶生成主体120具有滑槽122,壳体110具有与滑槽122滑动连接的滑轨121,滑轨121为两个凸起为例进行阐述。
在另一实施例中,壳体110具有第一定位凹陷104和第二定位凹陷105。气溶胶生成组件100还包括滑动定位件140,其一端插设于气溶胶生成主体120,另一端与所述第一定位凹陷104和第二定位凹陷105匹配。滑动定位件140可以为定位珠,第一定位凹陷104设于滑轨121的上方或下方,或两个凸起之间。第一位置、第二位置分别为气溶胶生成主体120滑动后定位珠滑动抵达第一定位凹陷104、第二定位凹陷105的位置,具体地,正常状态下,气溶胶生成主体120在不使用时处于第二位置,即滑动定位件140处于第二定位凹陷105内,此时气溶胶生成主体120完全收容于收容腔102内,盖体200盖合出口103,出气口101处于被盖合状态。在沿第二方向12推动气溶胶生成主体120时,滑动定位件140弹性脱离第二定位凹陷105并沿着壳体110内壁往第一定位凹陷104滑动,气溶胶生成主体120的端部会先抵顶盖体200,再推动盖体200打开,最后滑动定位件140弹性滑入第一定位凹陷104时,即抵达了第一位置,此时盖体200完全敞开,而气溶胶生成主体120的端部伸出口103,使出气口101暴露于空气中,进入被完全敞开状态。在气溶胶生成主体120使用完毕,可沿第一方向11回推气溶胶生成主体120,滑动定位件140弹性脱离第一定位凹陷104并沿着壳体110内壁往第二定位凹陷105滑动,当滑动定位件140弹性滑入第二定位凹陷105,即抵达了第二位置,此时,气溶胶生成主体120回退至收容腔102,盖体200通过牵引组件的牵引力使其牵引盖合出口103,使出气口101进入被盖合状态。
在其它实施例中,也可以不设置滑动定位件140、第一定位凹陷104和第二定位凹陷105,而此时第一位置、第二位置可以分别为滑槽122的两端。
在另一实施例中,盖体200包括盖板210和铰接部220。盖板210用于盖合或敞开出气口101;铰接部220连接于盖板210一端,牵引组件一部分卡设于壳体110,另一部分弹性夹设于铰接部220的两端。
在另一实施例中,盖体200还包括扣接部230,扣接部230连接于盖板210,壳体110的端部具有扣位107,盖体200处于盖合位置时,扣接部230插设于扣位107。可选地,扣接部230可以为两个,分别垂直连接于盖板210的两端,对应地,扣位107为两个;当然,扣接部230也可以为三个,三个扣接部230分别垂直连接于盖板210的三个侧面。扣位107可以为孔状,也可以为槽状。
请一并参阅图3和图4,图3是图2所示的气溶胶生成装置中的弹性件变化的结构示意图,图4是图1a所示的气溶胶生成装置另一侧面的立体图,在另一实施例中,牵引组件包括弹性件131和弹性收缩件132,弹性件131包括第一挂勾部1311、第二挂勾部1312以及卡设于壳体110并依次垂直连接形成U型状滑动间隙的第一弹性部1313、第二弹性部1314、第三弹性部1315,第一挂勾部1311与第一弹性部1313连接,第二挂勾部1312与第三弹性部1315连接,第一挂勾和第二挂勾分别弹性夹插于铰接部220的两端。弹性收缩件132弹性连接于第一弹性部1313与第三弹性部1315之间,弹性收缩件132可以为弹簧、橡皮筋等。
优选地,弹性件131未安装至铰接部220前,弹性件131在不受力状态下,第一弹性部1313与第三弹性部1315之间距离D1小于铰接部220的两端之间的距离D2。弹性件131安装时,由于需要将第一弹性部1313与第三弹性部1315之间间距拉大才安装至铰接部220的两端,故弹性件131安装后,第一弹性部1313与第三弹性部1315之间距离D变大于铰接部220的两端之间的距离D2,第一弹性部1313与第三弹性部1315之间的距离D1被弹性拉大,第一弹性部1313与第三弹性部1315间的回弹力作用使第一挂勾部1311、第二挂勾部1312弹性夹紧于铰接部220两端,(在盖板210不受气溶胶生成主体120外露的端部的压力时)使盖板210往回弹性件131方向牵引其回转,从而使盖板210盖合于出口103。而在气溶胶生成主体120处于第一位置时,第一弹性部1313与第三弹性部1315间的回弹力使盖板210弹性回转抵接气溶胶生成主体120的外表面,盖板210与气溶胶生成主体120形成一定的夹角。
优选地,弹性收缩件132靠近第一挂勾部1311、第二挂勾部1312设置,且弹性收缩件132两端的距离D3 小于第一弹性部1313与第三弹性部1315之间的距离D1以提高第一弹性部1313与第三弹性间的弹力,进而提高第一挂勾部1311、第二挂勾部1312作用于铰接部220两端的弹性夹紧力,从而使盖板210往弹性件131方向弹性回位以盖合出口103。
优选地,气溶胶生成主体120抵达第一位置时,其伸出出口103的伸出长度L1大于盖体200在第一方向11上的长度L2以避免弹性件131弹力过大,使盖体200不能稳定地打开。
请一并参阅图5,图5是图2所示的气溶胶生成装置中气溶胶生成主体部分结构示意图,在另一实施例中,第一弹性部1313具有往内折弯形成的第一折弯段1316,第三弹性部1315具有往内折弯形成的第二折弯段1317,第一折弯段1316和第二折弯段1317呈U型、弧形或梯形,第一折弯段1316和第二折弯段1317使弹性件131内的滑动间隙形成有第一间隙1301、第二间隙1302、第三间隙1303,其中,第一折弯段1316和第二折弯段1317之间的间隙为第二间隙1302。第二间隙1302的宽度d2大于第一间隙1301的宽度d1及第三间隙1303的宽度d3,第一间隙1301的宽度d1大于或等于第三间隙1303的宽度d3 。气溶胶生成主体120设有第一导向凸起123和第二导向凸起124。优选地,第一导向凸起123和第二导向凸起124轴对称设置,第一折弯段1316、第二折弯段1317的两侧均具有依次折弯形成梯形状的第一坡面131a、导向平面132b、第二坡面132c,第一导向凸起123、第二导向凸起124的两侧均具有依次连接形成梯形状的第一导向斜面120a、滑动平台120b、第二导向斜面120c。第二间隙1302的宽度d2指第一折弯段1316的导向平面132b与第二折弯段1317导向平面132b的距离,第一导向凸起123的滑动平台120b与第二导向凸起124滑动平台120b之间的距离大于第一折弯段1316的导向平面132b与第二折弯段1317导向平面132b之间的距离。气溶胶生成主体120往第一方向11运动时,第一导向斜面120a沿第一坡面131a滑入第二间隙1302,第一导向斜面120a滑出第一坡面131a后滑动平台120b贴合导向平面132b往第三间隙1303方向滑动;气溶胶生成主体120往第二方向12运动时,第二导向斜面120c沿第二坡面132c滑入第二间隙1302,第二导向斜面120c滑出第二坡面132c后滑动平台120b贴合导向平面132b往第一间隙1301方向滑动。
本实施例中,气溶胶生成主体120处于第二位置时第一导向凸起123、第二导向凸起124处于第三间隙1303内,当推动气溶胶生成主体120使其端部抵接并推动盖板210那刻,第一导向凸起123、第二导向凸起124运动至第二间隙1302且分别滑动抵顶至第一折弯段1316、第二折弯段1317,以使第一折弯段1316、第二折弯段1317的距离弹性变大(即第二间隙1302的宽度由d2变为d变),从而带动第一挂勾部1311、第二挂勾部1312弹性张开且分别从铰接部220两端内往外退(如图3虚线部分),进而消除或减少铰接部220两端的夹紧力,以便盖板210灵活打开。当气溶胶生成主体120继续推动气溶胶生成主体120抵达第一位置使其端部伸出出口103时,第一导向凸起123、第二导向凸起124滑出第二间隙1302并进入第一间隙1301中。在气溶胶生成主体120滑动回退至第二位置时,第一导向凸起123、第二导向凸起124依次从第一间隙1301、第二间隙1302运动至第三间隙1303,盖板210因没有受气溶胶生成主体120的端部阻挡,且因第一弹性部1313与第三弹性部1315间的回弹力作用使第一挂勾部1311、第二挂勾部1312弹性夹紧于铰接部220两端,并牵引盖板210往弹性件131方向弹性回转,从而使盖板210盖合于出口103。
在另一实施例中,气溶胶生成组件100还包括压板150,其夹设于气溶胶生成主体120与牵引组件之间,用于将弹性件131压设于壳体110的底板113。压板150具有限位滑孔151,第一导向凸起123、第二导向凸起124穿过限位滑孔151以在第一间隙1301、第二间隙1302、第三间隙1303内滑动。弹性收缩件132部分卡设于壳体,部分穿设于压板150。
如图3所示,在另一实施例中,第一弹性部1313还具有往内折弯形成的第三折弯段1318,第三弹性部1315具有往内折弯形成的第四折弯段1319,第三折弯段1318和第四折弯段1319呈U型、弧形或梯形,弹性收缩件132一端连接于第三折弯段1318,另一端连接于第四折弯段1319。
请一并参阅图6,图6是图2所示的气溶胶生成装置中盖体的A局部放大示意图。在另一实施例中,铰接部220由盖板210的一端往盖板210方向弯卷形成,其中,铰接部220的一端连接于盖板210的一端面,另一端与盖板210形成一空隙225。
在另一实施例中,铰接部220的两端面具有高限位点221和低限位点222,高限位点221与低限位点222间形成有弧形凹陷223,其中,气溶胶生成主体120由第一位置运动至第二位置时,弹性件131的弹力夹紧作用使弹性件131的端部脱离高限位点221并沿弧形凹陷223滑动抵接低限位点222。
具体地,本实施例铰接部220两端面的两个高限位点221之间的距离大于两个低限位点222的距离。请参阅图6,盖板210处于盖合状态时,即溶胶生成主体处于第二位置时,第一挂勾部1311、第二挂勾部1312的折弯段130a抵接铰接部220的低限位点222,当气溶胶生成主体120由第二位置运动至第一位置,即在盖板210被气溶胶生成主体120的端部推动并被压紧至完全打开时,折弯段130a脱离低限位点222滑动抵接高限位点221,第一弹性部1313与第三弹性部1315之间距离弹性张大,带动第一挂勾部1311、第二挂勾部1312之间的距离弹性张大,同时使弹性收缩件132进一步弹性拉长,导致弹性收缩件132对第一挂勾部1311和第二挂勾部1312之间的弹性收缩力变大;在气溶胶生成主体120由第一位置运动至第二位置推回壳体110内,盖板210不受力时,弹性收缩件132的收缩力使第一弹性部1313与第三弹性部1315之间弹性收紧以带动第一挂勾部1311和第二挂勾部1312弹性收紧,进而增加了第一挂勾部1311和第二挂勾部1312对铰接部220的两端的夹持力,迫使第一挂勾部1311和第二挂勾部1312的折弯段130a脱离高限位点221滑动抵接低限位点222,第一挂勾部1311和第二挂勾部1312之间的距离弹性变小,对铰接部220的两端的夹持力由大到小过度,迫使盖板210瞬间盖合出口103。
在另一实施例中,气溶胶生成装置10与上述任意一实施例大体相同,不同之处为牵引组件的构成部件、连接方式与上述任意一实施例中的牵引组件不同,具体地,本实施例的牵引组件包括铰接件和牵引件。盖体200与壳体110通铰接件铰接,铰接件可以为转轴;牵引件一端固定于盖体200,另一端固定于气溶胶生成主体120,牵引件可以为橡皮筋或绳子。气溶胶生成主体120处于第一位置时,牵引件的牵引力最小或无牵引力,处自然弯曲状态;气溶胶生成主体120处于第二位置时牵引力最大,且处于被拉直、绷紧状态。
在另一实施例中,如图1所示,气溶胶生成主体120包括气溶胶生成本体125和烟嘴126。气溶胶生成本体125用于安放且雾化气溶胶生成物质以生成气溶胶;烟嘴126与气溶胶生成本体125流体连接,出气口101开设于烟嘴126。
在另一实施例中,气溶胶生成本体125处于第二位置时,烟嘴126收纳于收容腔102内,气溶胶生成主体120处于第一位置时,烟嘴126远离盖体200,即气溶胶生成主体120的端部压紧盖体200,而烟嘴126与盖体200分离(不接触),避免吸烟者的嘴巴接触到盖体上的污染物。
在另一实施例中,如图1所示,气溶胶生成组件100还包括保护套160,与气溶胶生成本体125滑动套接,其中,气溶胶生成主体120处于第二位置时,保护套160收纳于收容腔102内,气溶胶生成主体120处于第一位置时,保护套160至少部分压紧盖体200并伸出收容腔102。具体地,保护套160具有导滑孔161,气溶胶生成本体125具有凸起部152,凸起部152滑接于导滑孔161以推动保护套160滑出出口103及退回至收容腔102内。
在另一实施例中,壳体110包括后盖111和依次连接形成U型的左侧板112、底板113、右侧板114,后盖111和盖板210分别设于左侧板112/底板113/右侧板114的两端以形成收容腔102,左侧板112形成有第一定位凹陷104、第二定位凹陷105、滑轨121,对称地,右侧板114也形成有第一定位凹陷104、第二定位凹陷105、滑轨121。
请一并参阅图7,图7是图1b所示的气溶胶生成装置的剖视图,在另一实施例,气溶胶生成本体125包括雾化组件1251、电池组件1252、收容壳1253、导电件1254。雾化组件1251用于安放并雾化气溶胶生成物质以产生气溶胶,烟嘴126与雾化组件1251连接,可选地,雾化组件1251与烟嘴126一体成型或可拆卸连接;电池组件1252与雾化组件1251电连接;收容壳1253收容电池组件1252,收容壳1253的一端部与雾化组件1251可拆卸连接,且收容壳1253内设有控制电路组件的电路板(图未示);导电件1254插设于收容壳1253并与雾化组件1251电连接。
图8是图2所示的气溶胶生成装置中的气溶胶生成本体另一实施例立体图,在另一实施例中,气溶胶生成装置10与上述任意一实施例大体相同,不同之处为气溶胶生成本体125’构成部件及其连接方式不同,具体地,本实施例的气溶胶生成本体125’包括电子烟1255和收容壳1253’。电子烟1255呈条状,是一种较为常见的仿真香烟电子产品,其包括雾化组件、电池组件、导电件(图未示),雾化组件用于安放并雾化气溶胶生成物质以产生气溶胶,雾化组件通过导电件与电池组件电连接。收容壳1253’收容电子烟1255’,且与烟嘴126可拆卸连接。优选地,收容壳1253’无电路板或电池。
在另一实施例,气溶胶生成组件100还包括推动机构,推动机构与气溶胶生成主体120可运动连接,以推动气溶胶生成主体120在第一位置滑至第二位置之间滑动。
在另一实施例,如图1所示,壳体110还包括面板115,盖盒于收容腔102,面板115具有滑动窗口,推动机构包括推动按键171,推动按键可运动连接于滑动窗口172。
请一并参阅图9,图9是图2所示的气溶胶生成装置中的推动按键另一实施例立体图。在另一实施例,推动机构与上述的推动机构构成部件及连接关系不同,具体地,本实施例中的推动机构包括启动件(图未示)、连接件174以及动力机构,启动件设于壳体110,用于启动动力机构175工作;连接件174与气溶胶生成主体120连接或者可运动连接;动力机构与启动件电连接,并与连接件174连接。
连接件174包括连接板1741和连接扣1742。连接扣1742为两个,分别固定连接于连接板1741的两侧,并与气溶胶生成主体120两侧固定连接或卡扣连接。本实施例中的动力机构包括动力源1751、固定板1752、主动轴1753、从动轴1754、涡轮1755、蜗杆1756、导向板1757、导向柱1758、支撑柱1759。固定板1752与连接板1741可拆卸连接,具体地,可通过螺钉连接。主动轴1753固定连接于动力源1751;从动轴1754与主轴啮合。涡轮1755与从动轴1754通过旋转轴固定连接。蜗杆1756与涡轮1755啮合。导向板1757包括第一导向板175a、第二导向板175b以及第三导向板175c。第一导向板175a与动力源1751固定连接,第一导向板175a、第二导向板175b以及第三导向板175c分别通过支撑柱1759连接,主动轴1753、从动轴1754设于第一导向板175a与第二导向板175b之间,涡轮1755设于第二导向板175b与第三导向板175c之间,第一导向板175a、第二导向板175b以及第三导向板175c均设有第一导向孔和第二导向孔,蜗杆1756一端固定于固定板1752,另一端在动力源1751的带动下在第一导向板175a、第二导向板175b以及第三导向板175c的第一导向孔1701之间滑动,导向柱1758一端固定于固定板1752,另一端在动力源1751的带动下在第一导向板175a、第二导向板175b以及第三导向板175c的第二导向孔1702之间滑动。
在另一实施例,动力机构所构成的部件及连接关系与上述实施例动力机构不完全同,具体地,动力机构包括动力源(图未示)和丝杆(图未示),动力源1751通过丝杆(图未示)与连接板1741可运动的联接,丝杆上设置外螺纹,连接件上设置内螺纹,丝杆穿设连接板1741并使得两者的螺纹啮合。动力源1751的旋转带动丝杆旋转,丝杆进而推动气溶胶生成主体120沿第一位置和第二位置之间滑动。
上述任意一实施例中的动力源1751为电机,也可以为气压泵、液压泵、电磁铁任意一种。例如,直接使用气压泵、液压泵替代电机,使用传动杆替代丝杆与连接件174产生连接,进而推动气溶胶生成主体120;在使用电磁铁作为动力机构175的实施例中,使用可电磁铁替代电机,使用磁性元件替代连接件174,当电磁铁与该磁性元件产生吸引时,推动气溶胶生成主体120向第一方向11运动,当电磁铁与该磁性元件产生排斥时,推动气溶胶生成主体120向第二方向12,该电磁铁优选的可以变换磁场方向,通过变换电流的流向即可改变磁场方向,方便实现对气溶胶生成主体120运动方向的控制。
请参阅图10,图10是本发明另一实施例气溶胶生成装置的剖面图,在另一实施例中,气溶胶生成装置20包括气溶胶生成组件100和盖体200。
本实施例的气溶胶生成组件100’包括导电件1254、雾化组件1251以及烟嘴126,导电件1254穿设于盖体200,雾化组件1251与烟嘴126连接用于安放并雾化气溶胶生成物质以产生气溶胶,烟嘴126开设有出气口101,雾化组件1251与烟嘴126可以一体成型或可拆卸连接;气溶胶生成装置20还包括电池组件1252和收容壳1253。电池组件1252通过导电件1254与雾化组件1251电连接;收容壳1253收容电池组件1252,盖体200设于收容壳1253一端,雾化组件1251与盖体200可旋转连接。盖体200与收容壳1253一体成型或拆卸连接。
具体地,本实施例中盖体200包括依次连接形成U型状收纳槽250的第一铰接架230、盖板210、第二铰接架240,第一铰接架230、第二铰接架240连接于盖板210相对的相侧,盖板盖设于收容壳1253的端面。可选地,第一铰接架230、第二铰接架240、盖板210一体成型,且盖体与收容壳1253一体成型;或者,第一铰接架230、第二铰接架240与收容壳1253一体成型,盖板210与收容壳1253可拆卸连接。雾化组件1251的两侧分别可旋转连接于第一铰接架230、第二铰接架240,导电件1254插入于盖板210。第一铰接架230、第二铰接架240具有滑动孔241,雾化组件1251具有旋转凸起242,旋转凸起242与滑动孔241滑动且旋转连接。具体地,雾化组件1251使用状态下,旋转凸起242处于滑动孔241的最底端,雾化组件1251与导电件1254接触以电连接,烟嘴126远离盖体200的收纳槽250,出气口101处于被敞开状态;在使用完毕后,雾化组件1251通过旋转凸起242运动至滑动孔241的最顶端,并旋转雾化组件1251,使其烟嘴126与纳槽250相对,且雾化组件1251与导电件1254脱离连接,进一步推动雾化组件1251使烟嘴126收纳于盖体200的收纳槽250内,从而使出气口101从被敞开状态运动到被盖合状态。
上述任意一实施例中的导电件1254可以为金属顶针。雾化组件包括存储单元410、雾化单元420以及气流通路430。存储单元410用于安放气溶胶生成物质;雾化单元420一端与电池组件1252电连接,另一端与存储单元410连接。电池组件1252为雾化单元420供电使雾化单元420中的雾化芯发热进而雾化气溶胶生成物质以产生气溶胶(即烟雾),以达到仿真香烟的效果,从而满足了吸烟者的吸食习惯,气流通路430用于使气溶胶往出气口101方向流出并随着气流被吸烟者吸食。
以上所述实施例的各技术特征可以进行任意的组合,为使描述简洁,未对上述实施例中的各个技术特征所有可能的组合都进行描述,然而,只要这些技术特征的组合不存在矛盾,都应当认为是本说明书记载的范围。
以上所述实施例仅表达了本发明的几种实施方式,其描述较为具体和详细,但并不能因此而理解为对发明专利范围的限制。应当指出的是,对于本领域的普通技术人员来说,在不脱离本发明构思的前提下,还可以做出若干变形和改进,这些都属于本发明的保护范围。因此,本发明专利的保护范围应以所附权利要求为准。

Claims (27)

  1. 一种气溶胶生成装置,其特征在于,包括:
    气溶胶生成组件,具有出气口,用于安放且雾化气溶胶生成物质以产生往所述出气口出气的气溶胶;
    盖体,与所述气溶胶生成组件可运动连接;其中,
    所述盖体与所述气溶胶生成组件之间相对发生运动时,至少使所述出气口从被敞开状态运动至被盖合状态或从被盖合状态运动至被敞开状态。
  2. 根据权利要求1所述的气溶胶生成装置,其特征在于,所述气溶胶生成组件包括:
    壳体,具有收容腔;
    气溶胶生成主体,设于所述收容腔,并与所述壳体可运动连接,所述出气口开设于所述气溶胶生成主体一端;
    牵引组件,连接所述壳体与所述盖体,用于在所述气溶胶生成主体在第一位置与第二位置之间运动时,牵引所述盖体以使所述出气口被盖合或被敞开。
  3. 根据权利要求2所述的气溶胶生成装置,其特征在于,所述盖体包括:
    盖板,用于盖合或敞开所述出气口;
    铰接部,连接于所述盖板一端;其中,所述牵引组件一部分设于所述壳体,另一部分弹性夹设于所述铰接部的两端。
  4. 根据权利要求3所述的气溶胶生成装置,其特征在于,所述盖体还包括扣接部,所述扣接部连接于所述盖板,所述壳体具有与所述扣接部插接扣位。
  5. 根据权利要求3所述的气溶胶生成装置,其特征在于,所述牵引组件包括弹性件,所述弹性件包括第一挂勾部、第二挂勾部以及设于所述壳体并依次连接形成一滑动间隙的第一弹性部、第二弹性部、第三弹性部,所述第一挂勾部与第一弹性部连接,所述第二挂勾部与所述第三弹性部连接,所述第一挂勾和所述第二挂勾分别弹性夹设于所述铰接部的两端。
  6. 根据权利要求5所述的气溶胶生成装置,其特征在于,所述第一弹性部具有第一折弯段,所述第三弹性部具有第二折弯段,所述气溶胶生成主体设有第一导向凸起和第二导向凸起,所述第一导向凸起、第二导向凸起分别滑动抵顶至所述第一折弯段、所述第二折弯段时使所述第一折弯段、所述第二折弯段之间的距离弹性变大。
  7. 根据权利要求6所述的气溶胶生成装置,其特征在于,气溶胶生成组件还包括压板,压设于所述弹性件压;所述第一导向凸起、第二导向凸穿设于所述压板。
  8. 根据权利要求4所述的气溶胶生成装置,其特征在于,所述铰接部的一端连接于所述盖板的一端面,另一端往所述盖板方向弯卷并与所述盖板形成一间隙。
  9. 根据权利要求3所述的气溶胶生成装置,其特征在于,所述铰接部的端面具有高位点和低位点,所述高位点与所述低位点间形成有弧形凹陷,其中,所述气溶胶生成主体由第一位置运动至第二位置时,所述牵引组件的端部脱离所述高位点并沿所述弧形凹陷滑动抵接所述低位点。
  10. 根据权利要求5所述的气溶胶生成装置,其特征在于,所述牵引组件还包括弹性收缩件,弹性连接于所述第一弹性部与所述第三弹性部之间。
  11. 根据权利要求2所述的气溶胶生成装置,其特征在于,所述牵引组件包括:
    铰接件,所述盖体与所述壳体通过铰接件铰接;
    牵引件,一端固定于所述盖体,另一端固定于所述气溶胶生成主体。
  12. 根据权利要求2所述的气溶胶生成装置,其特征在于,所述气溶胶生成主体包括:
    气溶胶生成本体,用于安放且雾化所述气溶胶生成物质以生成所述气溶胶;
    烟嘴,与所述气溶胶生成本体流体连接,所述出气口开设于所述烟嘴。
  13. 根据权利要求12所述的气溶胶生成装置,其特征在于,所述气溶胶生成本体处于第二位置时,所述烟嘴收纳于所述收容腔内,所述气溶胶生成主体处于第一位置时,所述烟嘴远离所述盖体。
  14. 根据权利要求12所述的气溶胶生成装置,其特征在于,所述气溶胶生成组件还包括保护套,与所述气溶胶生成本体滑动套接,其中,所述气溶胶生成主体处于第一位置时,所述保护套至少部分压紧所述盖体并伸出所述收容腔。
  15. 根据权利要求14所述的气溶胶生成装置,其特征在于,所述保护套具有滑动孔,所述气溶胶生成本体具有凸起部,所述凸起部滑接于所述滑动孔。
  16. 根据权利要求2所述的气溶胶生成装置,其特征在于,所述壳体具有第一定位凹陷和第二定位凹陷,所述气溶胶生成组件还包括滑动定位件,所述滑动定位件的一端插设于所述气溶胶生成主体,另一端与所述第一定位凹陷和第二定位凹陷匹配;其中,所述第一位置、所述第二位置分别为所述第一定位凹陷、所述第二定位凹陷。
  17. 根据权利要求2所述的气溶胶生成装置,其特征在于,所述气溶胶生成主体具有滑轨,所述壳体具有与所述滑轨滑动连接的滑槽;或者,所述气溶胶生成主体具有滑槽,所述壳体具有与所述滑槽滑动连接的滑轨;其中,所述第一位置、所述第二位置分别为所述滑槽的两端。
  18. 根据权利要求12所述的气溶胶生成装置,其特征在于,所述气溶胶生成本体包括:
    雾化组件,用于安放并雾化所述气溶胶生成物质以产生所述气溶胶,并与所述烟嘴连接;
    电池组件,与所述雾化组件电连接;
    收容壳,收容所述电池组件并与所述雾化组件可拆卸连接;
    导电件,插设于所述收容壳并与所述雾化组件电连接。
  19. 根据权利要求12所述的气溶胶生成装置,其特征在于,所述气溶胶生成本体包括:
    电子烟,包括雾化组件、电池组件、导电件,所述雾化组件用于安放并雾化所述气溶胶生成物质以产生所述气溶胶,所述雾化组件通过所述导电件与所述电池组件电连接;
    收容壳,收容所述电子烟,且与所述烟嘴可拆卸连接。
  20. 根据权利要求2-19任意一项所述的气溶胶生成装置,其特征在于,所述气溶胶生成组件还包括推动机构,所述推动机构与所述气溶胶生成主体连接,以推动所述气溶胶生成主体在第一位置滑至第二位置之间运动。
  21. 根据权利要求20所述的气溶胶生成装置,其特征在于,所述壳体具有滑动窗口,所述推动机构包括推动按键,所述推动按键可运动连接于所述滑动窗口。
  22. 根据权利要求20所述的气溶胶生成装置,其特征在于,所述推动机构包括:
    启动件,设于所述壳体;
    连接件,与所述气溶胶生成主体连接或者可运动连接;
    动力机构,与所述启动件电连接,并与所述连接件连接。
  23. 根据权利要求22所述的气溶胶生成装置,其特征在于,所述动力机构包括电机、气压泵、液压泵、电磁铁任意一种。
  24. 根据权利要求1所述的气溶胶生成装置,其特征在于,
    所述气溶胶生成组件包括:
    导电件,设于所述盖体;
    雾化组件,用于安放并雾化所述气溶胶生成物质以产生所述气溶胶
    烟嘴,与所述雾化组件连接,所述出气口开设于所述烟嘴;
    所述气溶胶生成装置还包括:
    电池组件,通过所述导电件与所述雾化组件电连接;
    收容壳,收容所述电池组件,所述盖体设于所述收容壳一端,所述雾化组件与所述盖体可旋转连接。
  25. 根据权利要求24所述的气溶胶生成装置,其特征在于,所述盖体与所述收容壳一体成型或可拆卸连接。
  26. 根据权利要求24所述的气溶胶生成装置,其特征在于,所述盖体包括依次连接形成一收纳槽的第一铰接架、盖板、第二铰接架,所述雾化组件的两侧分别可旋转连接于所述第一铰接架、所述第二铰接架。
  27. 根据权利要求18、19或24所述的气溶胶生成装置,其特征在于,所述雾化组件包括:
    存储单元,用于安放气溶胶生成物质;
    雾化单元,一端与所述电池组件电连接,另一端与所述存储单元连接,用于雾化所述气溶胶生成物质以产生气溶胶。
     
PCT/CN2020/100162 2019-08-15 2020-07-03 气溶胶生成装置 WO2021027430A1 (zh)

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