WO2017201716A1 - 一种储液瓶以及储液瓶组件 - Google Patents
一种储液瓶以及储液瓶组件 Download PDFInfo
- Publication number
- WO2017201716A1 WO2017201716A1 PCT/CN2016/083494 CN2016083494W WO2017201716A1 WO 2017201716 A1 WO2017201716 A1 WO 2017201716A1 CN 2016083494 W CN2016083494 W CN 2016083494W WO 2017201716 A1 WO2017201716 A1 WO 2017201716A1
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- atomizing
- assembly
- liquid storage
- liquid
- electrode
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Ceased
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Classifications
-
- A—HUMAN NECESSITIES
- A24—TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
- A24F—SMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
- A24F40/00—Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
- A24F40/05—Devices without heating means
-
- A—HUMAN NECESSITIES
- A24—TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
- A24F—SMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
- A24F40/00—Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
- A24F40/40—Constructional details, e.g. connection of cartridges and battery parts
- A24F40/42—Cartridges or containers for inhalable precursors
-
- A—HUMAN NECESSITIES
- A24—TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
- A24F—SMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
- A24F40/00—Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
- A24F40/10—Devices using liquid inhalable precursors
Definitions
- the present invention relates to the field of household electronic products, and more particularly to a liquid storage bottle and a liquid storage bottle assembly for electronic liquid spray.
- the liquid atomizer can be repeatedly used for liquid re-use.
- the liquid atomizer includes an atomizer housing la, a mist discharge tube 4a, and a nasal mask 6a connected to the mist discharge tube 4a.
- the atomizer housing la is fixedly mounted with an oscillator 3a and a reservoir chamber 5a, and the reservoir chamber 5a includes a spray tube 2a connected to the mist discharge tube 4a.
- the liquid oscillates through the oscillator 3a in the reservoir chamber 5a, and then flows through the spray tube 2a and the mist discharge tube 4a to the nasal mask 6a for use by the user.
- the liquid storage chamber 5a fixed in the atomizer housing la is not detachable, it is inconvenient to clean the liquid storage chamber 5a before replacing the new liquid. After cleaning, the liquid storage chamber 5a will be exposed to the external environment, and will introduce dust and other pollutants in the external environment, resulting in a decrease in atomization effect. On the other hand, after the cleaning, the residual liquid of the original liquid and the cleaning liquid is likely to remain in the liquid chamber 5a. Since the structure of the liquid atomizer is fixed, it cannot be disassembled or changed, so when the concentration of the residual liquid and the newly added liquid are different, it may result in The fogging effect is inconsistent. That is to say, the prior art cannot replace the new liquid conveniently and quickly, and the liquid is easy to enter the process of replacing the liquid. After the liquid is replaced, the best atomization effect cannot be achieved for the liquid of different concentrations, thereby affecting the customer experience.
- the technical solution adopted by the present invention to solve the technical problem thereof is to provide a liquid storage bottle for loading a liquid and cooperating with the power supply component to atomize the liquid.
- the disposable liquid storage bottle includes an atomizing assembly, a liquid storage assembly, an electrode assembly, and a connection assembly, the liquid storage assembly is provided with a liquid storage chamber, and the atomization assembly includes An ultrasonic atomizer and a liquid adsorbing member made of a porous material, the liquid adsorbing member being inserted into the liquid storage chamber and extending to a bottom of the liquid storage chamber, a surface of the liquid adsorbing member being attached to the ultrasonic wave a surface of the atomizer to enable liquid in the liquid storage chamber to be delivered to the ultrasonic atomizer for atomization, the electrode assembly being sleeved in the connection assembly and atomized with the ultrasonic wave Electrically connected, one end of the connecting component is connected to the liquid storage component, and the other end of the connecting component is connected to the power component
- the liquid storage bottle further includes a nozzle connected to the atomization assembly, the nozzle has an atomization passage communicating with the outside;
- the liquid storage assembly further includes an atomization sleeve, the atomization The atomizing component is inserted into one end of the sleeve, the other end of the atomizing sleeve is fixedly connected with the connecting component, and the liquid storage chamber is formed in the atomizing sleeve;
- the ultrasonic atomizer includes Transmitting the atomized liquid to the atomizing sheet in the atomizing passage and the fixing member for fixing the atomizing sheet, the atomizing sheet is sleeved in the fixing member, and the liquid is adsorbed a member is attached to the surface of the atomizing sheet, and is used for adsorbing liquid in the liquid storage chamber to the atomizing sheet, and one side of the atomizing sheet is fixedly provided with an electron line for connecting the electrode assembly.
- the fixing member is inserted at an end of the atom
- the fixing member has an inner annular annular structure, and an inner side wall of the fixing member is provided with an annular mounting groove for inserting the atomizing sheet, and the annular mounting groove extends to the fixing member.
- An end surface of the annular mounting groove is provided with a slot for the electronic wire to pass through, the slot is communicated with the annular mounting groove;
- the electrode assembly includes a mutually insulated inner wall
- An electrode and an outer electrode are disposed in the connection assembly and electrically connected to the atomization sheet through respective electron lines.
- the atomization assembly further includes an atomization ring disposed between the atomization sleeve and the nozzle, the atomization ring includes an annular body portion and a reduced diameter along the body portion An annular connecting portion, the main body portion is provided with an annular connecting groove for forming a fixed connection with one end of the atomizing sleeve, and the connecting groove is sleeved at an outer circumference of one end of the atomizing sleeve The inner side wall of the connecting portion abuts the peripheral edge of the fixing member, and the outer side wall of the connecting portion is used for an interference fit with the nozzle;
- the atomization assembly further includes an atomization tube for accommodating the liquid adsorption member, the outer circumference of the atomization tube has a plurality of liquid inlet holes for transporting liquid, and the atomization tube is coaxially sleeved on the mist a gap between the atomization sleeve and the atomization tube, the
- the liquid storage bottle further includes an atomization seat disposed in the connection assembly, one end of the atomization tube is inserted in the atomization ring, and is passed through the atomization ring The other end of the atomizing tube is sleeved on the atomizing seat; the inner electrode and the outer electrode are sequentially disposed in the atomizing seat; the electronic wire includes a first electron line and a second electron line, one end of the first electron line is connected to the atomizing sheet, and the other end of the first electron line extends along the inside of the atomizing tube to the atomizing seat and clamped Holding between the atomization seat and the inner electrode, one end of the second electron wire is connected to the atomization piece, and the other end of the second electron wire is extended along the inside of the atomization tube To the atomization seat and between the atomization seat and the outer electrode.
- the electronic wire includes a first electron line and a second electron line, one end of the first electron line is connected to the atomizing sheet, and the
- the atomization sleeve is cylindrical, and one end of the atomization sleeve is provided with a bent portion formed by a reduced diameter, and the bent portion is engaged in the annular connecting groove of the main body portion.
- the other end of the atomization sleeve is an atomization sleeve protrusion formed by reducing the diameter, and the bending portion and the atomization sleeve protrusion are respectively connected with the atomization ring and the connection component to form One-piece overall.
- the liquid adsorbing member has a columnar shape, and an outer peripheral surface of the columnar liquid adsorbing member is closely attached to the inner peripheral surface of the atomizing tube and is disposed on each of the liquid inlet holes, and the liquid is adsorbed The end faces of the pieces are held against the atomizing sheet.
- one end of the nozzle adjacent to the atomizing sleeve extends circumferentially in the form of a circular flange;
- the atomizing sleeve is a cylindrical structure with one end opening, and the atomizing sleeve is circumferentially provided with the first a mounting hole, the circular flange is for abutting on a circumference of the first mounting hole fixed to the atomizing sleeve; an angle between a central axis of the nozzle and a central axis of the atomizing tube;
- the atomization sleeve further includes a liquid barrier plate perpendicular to the closed end surface of the atomization sleeve and integrally formed with the atomization sleeve; a socket disposed on the liquid barrier plate for inserting the a fixing member; the atomizing sleeve protrusion of the atomizing sleeve is a reduced diameter, and is used for connecting with the connecting component to form an integral
- the liquid adsorbing member is a sheet-like liquid adsorbing member attached to the atomizing sheet.
- the nozzle is further provided with an annular boss abutting the fixing member, and the nozzle is further included
- a fixing plate is provided with a second mounting hole; the fixing plate is mounted on the annular boss of the nozzle, and the annular boss is fixed with a fan device.
- the fan device comprises a motor and a blade; the motor is connected to the fan blade at one end of the nozzle; the other end of the motor extends into the atomization assembly,
- the electronic wires form an electrical connection.
- the fixing member is made of an elastic material.
- the atomization sleeve is made of a transparent material.
- the present invention also provides a liquid storage bottle assembly comprising the liquid storage bottle of any of the above, and a power supply assembly detachably coupled to the liquid storage bottle.
- the power supply component includes a battery cover, and one end of the battery cover is connected with a battery cover for sealing the battery in the battery cover; and the other end of the battery cover is provided with a connection component
- the outer electrode is elastically coupled to provide power to the reservoir.
- the power component further includes a button on the battery cover, a PCB board connected to the button, and a bracket for fixing the PCB board; the other end of the PCB board is connected to the battery;
- the outer connector of the power component is externally threaded, and the inner connector is internally threaded to achieve a detachable connection of the power component and the reservoir in a threaded manner.
- the outer connecting member of the power supply assembly has an engaging bump; the inner side wall of the inner connecting member is provided with an engaging groove extending along a circumferential surface of the inner wall and an axial direction along the inner wall An extended snap groove, the snap groove extends to an end surface of the inner connector; the outer connector is rotated and engaged by inserting a snap projection into the snap groove A bump is detachably connected to the inner connecting member to achieve a detachable connection between the power supply assembly and the liquid storage bottle.
- the liquid storage bottle is connected by the atomizing component, the liquid storage component, the electrode component and the connecting component into a non-detachable overall structure, and is convenient to replace after use, preventing the repeated use in the prior art, requiring cleaning, cleaning and cleaning. Dry Net sputum affects the effect of drugs;
- the atomizing assembly comprises an atomizing sheet, a liquid adsorbing member and an atomizing tube.
- the atomizing sheet breaks up the liquid water molecular structure by high-frequency resonance (oscillation frequency of 107 MHz or 2.4 MHz) to generate a natural floating mist. No need to heat or add any chemical reagents, compared with the prior art heating atomization method, it can save energy by 90% and the atomization effect is better;
- the liquid adsorption component adopts porous water absorbing material, which includes cotton and glass fiber materials,
- the medical absorbent cotton is made of raw cotton by removing inclusions, degreasing, drifting, washing, drying, and finishing.
- the atomizing tube is provided with a plurality of liquid inlet holes, and the size of the liquid inlet holes can be selected according to different liquid concentrations, and different medicine bottles are used, and different bottles correspond to different liquids, so that the atomization effect is best.
- the oil storage assembly includes an atomization sleeve, the atomization sleeve and the atomization assembly and the connection assembly form a closed space for storing the liquid, and the transparent atomization sleeve can directly observe the remaining amount of the liquid medicine in the bottle.
- the detachable connection between the connection assembly and the power supply unit provides a quicker way for the user to change.
- FIG. 1 is a cross-sectional view of a prior art liquid atomizing device
- FIG. 2 is a cross-sectional view of a liquid storage bottle assembly according to a preferred embodiment of the present invention
- FIG. 3 is a cross-sectional view of a liquid storage bottle according to a second embodiment of the present invention.
- FIG. 4 is an exploded view of an atomizing assembly according to a second embodiment of the present invention.
- FIG. 5 is an exploded view of a liquid storage assembly according to a second embodiment of the present invention.
- FIG. 6 is an exploded view of an electrode assembly according to a second embodiment of the present invention.
- Figure 7 is a schematic illustration of a power supply assembly of the present invention.
- FIG. 8 is a cross-sectional view of a liquid storage bottle according to a third embodiment of the present invention.
- FIG. 9 is a cross-sectional view of a liquid storage bottle assembly according to a fourth embodiment of the present invention.
- FIG. 10 is a schematic structural view of a nozzle according to a fourth embodiment of the present invention.
- 11 is a schematic structural view of an atomization sleeve according to a fourth embodiment of the present invention
- 12 is an exploded perspective view of a liquid storage bottle assembly according to a fifth embodiment of the present invention.
- the embodiment of the present invention provides an electronic liquid spray bottle device, that is, a liquid storage bottle, which is used for solving the problems of inconvenient cleaning, easy introduction of pollutants, and reduction of atomization effect in the prior art liquid atomizer.
- the problem is that a disposable liquid bottle and its corresponding power component are provided, which realizes no-cleaning, quick replacement, convenient use, no introduction of pollutants, and the technical effect of achieving the best atomization effect for different concentrations of the syrup.
- the liquid is replaced by providing a detachable disposable liquid bottle; the liquid bottle is composed of an atomizing component, a liquid storage component, an electrode assembly, and a connecting component, and is a non-detachable whole body, and the liquid bottle is directly replaced after use. Just fine.
- the atomizing assembly comprises an ultrasonic atomizer and a liquid adsorbing member made of a porous material, the liquid adsorbing member is inserted into the liquid storage chamber and extends to the bottom of the liquid storage chamber, and a surface of the liquid adsorbing member is attached On the surface of the ultrasonic atomizer, to enable liquid in the liquid storage chamber to be delivered to the ultrasonic atomizer, the ultrasonic atomizer dispersing the liquid water molecular structure by high frequency resonance Produces a natural and elegant mist to atomize the liquid, which saves energy by 90% and produces better atomization effect.
- the disposable liquid storage bottle can effectively avoid the inconvenience of repeated cleaning, and introduce pollutants and cleaning. Not clean, causing problems such as reduced atomization.
- the components in the liquid bottle can be optimized for different liquids to ensure the best atomization for different concentrations of liquid.
- Embodiment 1 is a diagrammatic representation of Embodiment 1:
- Embodiments of the present invention provide a liquid storage bottle.
- a disposable liquid storage bottle 100 with an ultrasonic vibration plate is used for loading a liquid and cooperating with the power supply assembly 200 to atomize the liquid.
- the disposable liquid storage bottle 100 includes an atomizing assembly 1, a liquid storage assembly 2, an electrode assembly 3, and a connection assembly 4.
- the liquid storage bottle 100 is detachably connected with the power supply assembly 200. When the liquid in the liquid storage bottle 100 is used up, the replacement is convenient, and the liquid storage is not required. The bottle 100 is cleaned.
- connection assembly 4 detachably connected to the power supply assembly 200, the electrode assembly 3 disposed in the connection assembly, the liquid storage assembly 2 and the atomization assembly 1 disposed on one side of the connection assembly, and a nozzle 6 connected to one side of the atomizing assembly
- the liquid storage assembly 2 includes a liquid storage chamber 21
- the atomizing assembly 1 includes a liquid adsorbing member 12 inserted into the liquid storage chamber 21 and disposed on the liquid adsorbing member 12.
- the liquid adsorbing member 12 comprises cotton, glass fiber material or the like, preferably medical absorbent cotton.
- the medical absorbent cotton is a cotton which is chemically treated to remove fat, which absorbs liquid more easily than ordinary cotton, removes inclusions from raw cotton, degreases, wanders, washes, Dry and finished.
- the absorbent cotton is odorless, tasteless, and has no stains. It has good water absorption, soft and slender fibers, white and elastic, easy to layer, no harmful impurities such as acid and alkali, and the quality meets the technical standards set by the Ministry of Health.
- the liquid adsorbing member 12 is inserted into the liquid storage chamber 21 and extends to the bottom of the liquid storage chamber 21, and a surface of the liquid adsorbing member 12 is attached to the ultrasonic atomizer 11 a surface to enable the liquid in the liquid storage chamber 21 to be delivered to the ultrasonic atomizer 11 for atomization;
- the electrode assembly 3 is sleeved in the connection assembly 4 and is connected to the ultrasonic mist
- the connector 11 is electrically connected, one end of the connecting component 4 is connected to the liquid storage component 2, and the other end of the connecting component 4 is connected to the power component 200, so that the power component 200 and the connection are After the components 4 are connected, the electrode assembly 3 is electrically connected to the power supply assembly 200;
- the atomization assembly 1, the liquid storage assembly 2, the electrode assembly 3, and the connection assembly 4 are combined to form a closed whole body, and the whole sealing the liquid storage chamber 21 To prevent external liquid from being injected into the reservoir chamber 21.
- the embodiment of the present invention provides a liquid storage bottle
- FIG. 3 is a detailed description of the internal structure of the liquid storage bottle based on the embodiment 1.
- the atomization assembly 1 includes an ultrasonic atomizer 11 further comprising an atomizing sheet 111 for transferring the atomized liquid into the atomizing passage and a fixing member 112 for fixing the atomizing sheet 111, the atomizing sheet
- the sleeve 111 is disposed in the fixing member 112, and one side of the atomizing sheet 111 is connected with an electron beam 113.
- the electron beam 113 includes a first electron beam 113a and a second electron beam 113b.
- the liquid storage assembly 2 includes an atomizing sleeve 22, and the atomizing sleeve 22 is connected to a nozzle 6 at one end thereof away from the power source assembly 200, and an annular boss 61 is disposed in the nozzle 6.
- the atomizing ring is further disposed between the nozzle 6 and the atomizing sleeve 22.
- the atomization tube 14 is axially sleeved in the atomization sleeve 22;
- the electrode assembly 3 includes an inner electrode 31 and an outer electrode 32.
- the inner electrode 31 is sleeved in the atomization seat 15, and the outer electrode 32 is sleeved in the atomization. Outside the seat 15; specifically, the connection of the various components
- the system is described in detail as follows:
- one end of the atomizing assembly 1 is fixedly connected to the nozzle 6 by adhesive or interference fit, and the nozzle 6 has an atomizing passage communicating with the outside ( Not numbered).
- the nozzle 6 is provided with an annular boss 61 that abuts against the fixing member 112.
- the atomizing sheet 111 is made of a porous material, and an electron beam 113 electrically connected to the electrode assembly 3 is fixed to one side thereof.
- the fixing member 112 for fixing the atomizing sheet 111 has an inner hollow annular structure, and the inner side wall of the fixing member 112 is provided with an annular mounting groove 114 for inserting the atomizing sheet 111, and the annular mounting groove 114 extends.
- the groove wall of the annular mounting groove 114 is provided with a mouth groove 1121 for fixing and passing the electron beam 113.
- the mouth groove 1121 is in communication with the annular inlay groove 114 for receiving an electron beam 113 fixed to one side of the atomizing sheet 111.
- the fixing member 112 is made of an elastic material such as silica gel or the like.
- One end of the liquid adsorbing member 12 is inserted into the reservoir chamber 21 and extends to the bottom of the reservoir chamber.
- the liquid adsorbing member 12 has a columnar shape, and an end surface of the liquid adsorbing member 12 is abutted on the atomizing sheet 1 11 for adsorbing the liquid in the liquid storage chamber 21 to atomization.
- Slice 111 Specifically, the atomizing sheet 111 breaks up the liquid water molecular structure by high frequency resonance to produce a naturally flowing water mist without heating or adding any chemical agent. Compared with the heating atomization method, it is more energy efficient.
- the atomizing assembly 1 further includes an atomizing ring 13 disposed between the atomizing sleeve 22 and the nozzle 6.
- the atomizing ring 13 includes an annular main body portion 131 and a connecting portion 132 that is reduced in diameter along the main body portion 131 to form an annular shape.
- the main body portion 131 is provided with an annular connecting groove 133 toward the atomizing sleeve 22 for forming a fixed connection with one end of the atomizing sleeve 22 in an adhesive or interference fit manner.
- the annular connecting groove 133 is sleeved on the outer peripheral surface of one end of the atomizing sleeve 22 to achieve a sealed connection between the atomizing assembly 1 and the liquid storage assembly 2.
- the inner side wall of the connecting portion 1 32 abuts against the outer peripheral edge of the fixing member 112 for fixing the fixing member 112; the outer wall of the connecting portion 132 is used for fixing connection with the nozzle 6 in a pasting or interference fit manner.
- the atomizing assembly 1 further includes an atomizing tube 14 for accommodating and fixing the liquid adsorbing member 12, and the atomizing tube 14 is coaxially sleeved on the mist.
- one end of the atomizing tube 14 is inserted into the atomizing ring 13 and abuts against the inner side wall of the through hole (not labeled) in the middle of the atomizing ring 13 by adhesion or interference fit;
- the other end of the tube 14 extends into the connecting component 4, and the outer side wall is fixedly connected with the connecting boss 42 in an adhesive or interference fit manner, and the inner side wall and the outer electrode 32 are bonded or interference fit.
- the electron line 113 extends along the inside of the atomizing tube 1 into the electrode assembly 3.
- the tube wall of the atomizing tube 14 is provided with a plurality of liquid inlet holes 141 for transporting liquid, and the outer peripheral surface of the columnar liquid adsorbing member 12 is closely attached to the inner peripheral surface of the atomizing tube 14 and is attached thereto.
- One of the inlet holes 141 is provided.
- the liquid sputum is produced in a liquid state, and the liquid storage bottle 100 having a large concentration of the liquid inlet hole 141 can be used, and the liquid storage bottle 100 having a small concentration can be used, so that different liquid storage bottles 100 correspond to different medicinal waters, The best atomization effect can be achieved.
- the atomizing assembly 1 further includes an atomizing seat 15 disposed in the atomizing tube 14 and connected to the atomizing tube by adhesive or interference fit, and the atomizing seat is used for the atomizing seat.
- the liquid adsorbing member 12 in the atomizing tube 15 is fixed, and the electrode assembly 3 is connected to facilitate assembly of the electrode assembly 3.
- the atomizing seat 15 includes a base 15a and a connecting body 15b. The shape and size of the base 15a are matched with the shape and size of the cross section of the atomizing tube 14, and are fixedly connected to the atomizing tube 14 by adhesion or interference fit, thereby fixing the liquid adsorption in the atomizing tube 14.
- the function of the member 12; the connecting body 15b is formed by reducing the diameter of the base 15a, and has a cylindrical shape, and the inner side wall of the center through hole is used for bonding or interference with the outer peripheral edge of the inner electrode 31 near the end of the atomizing assembly 1.
- the joint is fixedly connected, and is mainly used for receiving and connecting the electrode assembly 3, facilitating assembly of the atomizing assembly 1 and the electrode assembly 3.
- an upper electronic wire through hole F is provided in the direction of the periphery of the outer periphery for accommodating and fixing the electron beam 113.
- the electron beam through holes F are two.
- the electron beam 113 includes a first electron beam 113a and a second electron beam 113b.
- One end of the first electron beam 113a is connected to the atomizing sheet 111, and the other end is extended to the atomizing seat 15.
- One end is sandwiched between the atomizing seat 15 and the inner electrode 31; one end of the second electron beam 113b is connected to the atomizing sheet 111, and the other end is extended to one end of the atomizing seat 15 to be clamped to the atomizing seat.
- the electron beam 113 is fixed, and electrical connection between the electrode assembly 3 and the atomizing sheet 111 is achieved.
- the electrode assembly 3 is turned on, the atomizing sheet 111 can operate normally.
- the liquid storage assembly 2 includes an atomizing sleeve 22.
- the atomizing sleeve 22 is cylindrical and made of a transparent material. The transparent material can directly observe the remaining amount of the liquid in the bottle, thereby providing a more intuitive viewing angle for the user.
- One end of the atomizing sleeve 22 is provided with an atomizing assembly 1 and the other end is inserted with a connecting assembly 4.
- One end of the atomizing sleeve 22 is provided with a bent portion 221 formed by a diameter reduction, and the outer peripheral edge of the bent portion 221 has a smaller diameter than the atomizing sleeve 22, and the shape and size thereof are matched with the shape and size of the annular connecting groove 133, and are used for Engaged or stuck in the annular connecting groove 13 In 3, a closed connection between the atomizing assembly 1 and the liquid storage assembly 2 is achieved.
- the other end of the atomizing sleeve 22 is reduced in diameter to form an atomizing sleeve protrusion 222.
- the shape and size of the atomizing sleeve protrusion 222 are matched with the connecting groove 43 and fixedly connected with the connecting groove 43 by means of bonding or interference fit, thereby achieving closed connection of the liquid storage assembly 2 and the connecting assembly 4. .
- the atomization sleeve 22 and the atomization assembly 1 and the connection assembly 4 form a closed liquid storage chamber for storing liquid.
- a gasket is disposed between the atomization sleeve 22 and the annular connection groove 133 for preventing liquid leakage in the liquid storage chamber.
- the electrode assembly 3 includes an inner electrode 31 and an outer electrode 32 which are insulated from each other, and the inner electrode 31 and the outer electrode 32 are each made of a conductive material such as metal.
- the inner electrode 31 and the outer electrode 32 are sequentially fitted in the connection unit 4 from the inside to the outside, and are electrically connected to the atomization piece 111 through an electron beam 113.
- the inner electrode 31 is cylindrical in shape.
- a cylindrical insulating ring 33 is fixedly disposed on the outer side of one end of the inner electrode 31.
- the outer peripheral surface of one end of the inner electrode 31 protrudes outward to form a first electrode ring 31a.
- the first electrode ring is formed.
- the outer diameter of 31a is larger than the outer diameter of the remaining portion of the inner electrode 31, that is, the cross-sectional area or the bottom surface area of the first electrode ring 31a is larger than the cross-sectional area of the remaining portion of the inner electrode 31.
- An insulating ring boss 33a protruding toward the inside of the insulating ring 33 is disposed at one end of the insulating ring 33 adjacent to the first electrode ring 31a for fixing and abutting and engaging the first electrode ring 31a, thereby arranging the insulating ring 33 Outside the first electrode ring 31a, it is advantageous to fix the inner electrode 31 more firmly.
- a first electron beam 113a-terminal is sandwiched between the insulating ring 33 and the inner electrode 31, and one end of the second electron beam 113b is sandwiched between the insulating ring 33 and the outer electrode 32.
- the other ends of the electron beams 113a and 113b are fixed to the atomizing sheet 113 to electrically connect the electrode assembly 3 and the atomizing sheet 113.
- the electrode assembly 3 is powered on, the atomizing sheet 111 can operate normally.
- the insulating ring 33 is sleeved at one end of the inner electrode 31 near the inner connecting member 41, and the atomizing seat 15 is sleeved at one end of the inner electrode 31 close to the atomizing tube 14.
- the insulating ring 33 is not in contact with the atomizing seat 15, leaving a use.
- the outer side of the insulating ring 33 and the atomizing seat 15 are fixedly nested inside the cylindrical outer electrode 32 by a bonding or interference fit.
- the outer side of the outer electrode 32 is fixedly connected to the connecting member 4 by bonding or interference fit.
- the inside of the outer electrode 32 is provided with an outer electrode boss 32a that cooperates with the insulating ring boss 33a for more firmly fixing the insulating ring 33.
- a seal ring may be fixed between the outer side of the outer electrode 32 and the inner connecting member 41 for preventing liquid from escaping in the liquid storage chamber.
- the connecting component 4 is cylindrical, one end thereof and the atomizing sleeve 22 Connected by bonding or interference fit.
- the other end of the connecting component is provided with an inner connecting member 41 for detachably connecting with the power component 200, so that after the power component 200 and the connecting component 4 are connected, the electrode component 3 and the power component 200 are realized. Electrical connection.
- the connecting assembly 4 is disposed away from the inner connecting member 41 at one end thereof with a connecting boss 42 for fixedly connecting with the electrode assembly 3 in an adhesive or interference fit manner.
- a sealing ring is disposed between the connecting component 4 and the electrode assembly 3 to prevent liquid leakage in the liquid storage chamber.
- a circular connecting groove 43 is provided on the side of the connecting boss 42 adjacent to the outer circumference of the connecting member 4, for fixing connection with the liquid storage assembly 2 in an adhesive or interference fit manner.
- the power supply assembly 100 includes a battery cover 57.
- One end of the battery cover 57 is connected with a battery cover 58 for sealing the battery 56 in the battery case; the other end of the battery cover 57 is provided with an external connector 51 for connecting with the inner connector 41 on the connection assembly 4.
- An electrode holder 59 and a spring electrode 52 fixed to the electrode holder 59 are fixedly disposed in the outer connector 51.
- the spring electrode 52 is elastically connected to the inner electrode 31 and the outer electrode 32 of the electrode assembly 3,
- the liquid storage bottle 100 provides a power source.
- a button 54 mounted on the side wall of the battery case 57 is connected to a PCB 53 for controlling the power on and off.
- the PCB board 53 is mounted on a bracket 55; the PCB board 53 is connected to the battery 56 at one end away from the outer connector.
- the outer connector 51 is externally threaded and the inner connector 41 is internally threaded to provide a detachable connection of the power pack 200 and the reservoir 100 in a threaded manner.
- a third preferred embodiment of the present invention provides an ultrasonic vibration plate disposable liquid storage bottle 100 with a fan device in a suction nozzle 6 based on the first or second embodiment.
- the liquid is combined with a power supply component to atomize the liquid.
- the disposable reservoir 100 includes an atomizing assembly 1, a reservoir assembly 2, an electrode assembly 3, and a connection assembly 4.
- the atomizing assembly 1, the liquid storage assembly 2, the electrode assembly 3, and the connecting assembly 4 are identical to the first and second preferred embodiments of the present invention, so that the shape features and assembly methods of these components need not be described herein.
- This embodiment differs from the first or second embodiment in the configuration of the nozzle 6 and the increase in the fan unit 7, so as to increase the ejection distance of the liquid.
- the nozzle 6 further includes a fixing plate 63 provided with a second mounting hole 63. The fixing plate 63 is mounted on the annular boss 61 of the nozzle 6, and a fan is fixed on the annular boss 61.
- the fan unit 7 includes a motor 71 and a fan blade 72.
- the motor 71 is connected to the blade 72 toward one end of the nozzle 6; The other end of the motor 71 extends into the atomizing assembly 1 to form an electrical connection with the electron beam 113.
- the motor can also be energized.
- the fan device is added to speed up the circulation of the airflow during the operation of the system, has better atomization effect and better mouthfeel, and improves the user experience.
- a fourth preferred embodiment of the present invention provides a disposable reservoir 100 with an ultrasonic diaphragm for containing a liquid and cooperating with the power supply assembly 200 for atomizing the liquid.
- the disposable reservoir 100 includes an atomizing assembly 1, a reservoir assembly 2, an electrode assembly 3, and a connection assembly 4.
- the ultrasonic atomizer 11 in the atomizing assembly 1, the inner electrode 31 and the insulating ring 33 in the electrode assembly 3, and the connecting assembly 4 are identical to those in the first preferred embodiment, so that the structure of these components need not be described here.
- the first difference between this embodiment and the first embodiment is the configuration of the nozzle 6 and its position of connection with the atomizing sleeve 22.
- the nozzle 6 is adjacent to one end of the atomizing sleeve 22 and extends in a circumferential direction with a circular flange 62.
- the atomizing sleeve 22 is a cylindrical structure with one end opening, and a first mounting hole 223 is provided in the circumferential direction.
- the flange 62 is for abutting against the circumference of the first mounting hole 223 of the atomizing sleeve 22.
- the central axis of the nozzle 6 has an angle with the central axis of the atomizing tube 22.
- the nozzle is disposed on the side of the liquid storage bottle 100, and the liquid storage bottle 100 cancels the liquid adsorption from the liquid electrode in the direction of the nozzle from the direction of the electrode assembly, and the structure is simpler.
- the atomizing sleeve 22 further includes a liquid barrier 224 that is perpendicular to the closed end surface of the atomizing sleeve 22 and integrally formed with the atomizing sleeve 22.
- the jack on the liquid barrier 224 is provided with a jack for inserting the ultrasonic atomizer 11 .
- the liquid barrier 224, the cavity formed by the portion of the ultrasonic atomizer 11 and the atomizing sleeve 22 away from the first mounting hole 223 is the liquid storage chamber 21.
- the ultrasonic atomizer 11 is placed in the liquid storage chamber 21, and is directly in contact with the liquid, and the liquid adsorption member is used to guide the liquid from the direction of the electrode assembly toward the nozzle, and the structure is simpler.
- the liquid adsorbing member 12 in this embodiment is a sheet-like liquid adsorbing member attached to the atomizing sheet 111.
- the central axis of the nozzle 6 has an angle with the central axis of the atomizing tube 22; the angle of the embodiment of the present invention is 90 degrees, and the angle is set, the atomization effect is optimal, but in actual production,
- the angle can be adjusted within a range of 90 degrees, and the deviation is 20 degrees or less. The advantage of the deviation is that the user has a better taste after the airflow has a bend.
- Embodiment 5 [0069]
- a fifth preferred embodiment of the present invention provides a disposable reservoir 100 with an ultrasonic diaphragm for holding a liquid and cooperating with the power supply assembly to atomize the liquid.
- the difference between this embodiment and the above power supply assembly is that the outer connecting member 51 directly serves as the outer electrode 32, and the component parts are reduced, so that the structure is simpler.
- the outer connecting member 51 of the power supply assembly has engaging bumps 511 thereon.
- the inner side wall of the inner connecting member 41 is provided with an engaging groove 411 extending along a circumferential surface of the inner wall and an engaging groove 412 extending along an axial direction of the inner wall, and the engaging pocket groove 412 extends to The end surface of the inner connecting member 41; after the outer connecting member 51 is inserted into the engaging pocket 412, the engaging protrusion 511 is rotated into the engaging recess 411 to realize The plug connector of the inner connector 41 is detachably connected to realize a detachable connection of the power source assembly 200 and the liquid storage bottle 100.
- the present invention provides a liquid storage bottle and a liquid storage assembly. Since the atomization assembly, the liquid storage assembly, the electrode assembly and the connection assembly are connected as a non-detachable overall structure, it is convenient to replace after use. Preventing repeated use in the prior art, and cleaning and cleaning are not clean, affecting the effect of the drug; and the whole seals the liquid storage chamber to prevent external liquid from being injected into the liquid storage chamber, and the sealing effect is better, and the liquid is also ensured. Pure, to ensure that the liquid is not contaminated.
- the atomizing component disperses the liquid water molecular structure by high-frequency resonance to generate a natural floating mist, without heating or adding any chemical reagent, which can save energy and atomize compared with the prior art heating atomization method. better result. Therefore, the present invention provides a more convenient and quicker replacement method, and the liquid is cleaner and the atomization effect is better.
Landscapes
- Electrostatic Spraying Apparatus (AREA)
Abstract
一种储液瓶包括具有超声波雾化器(11)及液体吸附件(12)的雾化组件(1)、具有储液腔(21)的储液组件(2)、电极组件(3)及连接组件(4)。其中所述液体吸附件插入储液腔内并延伸至所述储液腔的底部,所述液体吸附件的一表面贴附在所述超声波雾化器的表面上,通过超声波雾化器对液体进行雾化,所述雾化组件、储液组件、电极组件、连接组件组成一个密闭的整体,以防外部液体注入所述储液腔内。本发明实现了免清洗,更换快捷,同时保证对不同浓度的液体均可达到最优的雾化效果。
Description
一种储液瓶以及储液瓶组件
技术领域
[0001] 本发明涉及日用电子产品领域, 更具体地说, 涉及一种用于电子液体喷雾的储 液瓶以及储液瓶组件。
背景技术
[0002] 现有技术中, 液体雾化器可多次放入液体重复使用。
[0003] 如图 1所示的现有技术中, 液体雾化器包括雾化器壳体 la、 排雾管 4a和与排雾 管 4a相连接的鼻罩 6a。 雾化器壳体 la固定安装有振荡器 3a和储液腔 5a, 储液腔 5a 内包含与排雾管 4a相连接的喷雾管 2a。 液体经储液腔 5a中的振荡器 3a振荡后, 通 过喷雾管 2a和排雾管 4a流通至鼻罩 6a, 以供用户使用。
技术问题
[0004] 由于固定在雾化器壳体 la内的储液腔 5a不可拆卸, 因此, 更换新的液体前, 需 要对储液腔 5a进行清洗, 较不方便。 清洗吋, 储液腔 5a将暴露在外界环境中, 会 引入外界环境中的粉尘等污染物, 导致雾化效果的降低。 另一方面, 清洗后液 体腔 5a内易残留有原液体和清洗液的残留液, 由于液体雾化器的结构固定, 不可 拆卸或更改, 故当残留液与新加入液体的浓度不同, 会导致雾化效果的不一致 。 即现有技术无法方便快捷地更换新的液体, 更换液体的过程中易进入污染物 , 更换液体后无法针对不同浓度的液体达到最好的雾化效果, 从而影响客户的 使用体验。
问题的解决方案
技术解决方案
[0005] 鉴于上述情况, 有必要提供一种可以免清洗且易于更换液体, 雾化效果好的储 液瓶以及储液瓶组件。
[0006] 本发明解决其技术问题所采用的技术方案是: 提供一种储液瓶, 用于装液体 并与电源组件配合进行雾化所述液体。 所述一次性储液瓶包括雾化组件、 储液 组件、 电极组件及连接组件, 所述储液组件设置有储液腔, 所述雾化组件包括
超声波雾化器及由多孔材料制成的液体吸附件, 所述液体吸附件插入储液腔内 并延伸至所述储液腔的底部, 所述液体吸附件的一表面贴附在所述超声波雾化 器的表面上, 以使能够将所述储液腔内的液体输送给所述超声波雾化器进行雾 化, 所述电极组件套设在所述连接组件内并与所述超声波雾化器电连接, 所述 连接组件的一端与所述储液组件相连, 所述连接组件的另一端用于与所述电源 组件相连, 以使在电源组件和所述连接组件相连后, 所述电极组件与所述电源 组件实现电连接; 所述雾化组件、 储液组件、 电极组件及连接组件组合形成一 封闭的整体, 且该整体密封住所述储液腔, 以阻碍外部液体注入所述储液腔内
[0007] 优选地, 所述储液瓶还包括与所述雾化组件连接的喷嘴, 所述喷嘴具有与外界 连通的雾化通道; 所述储液组件还包括雾化套, 所述雾化套的一端插设有所述 雾化组件, 所述雾化套的另一端与所述连接组件固定连接, 所述储液腔形成在 所述雾化套内; 所述超声波雾化器包括用于将雾化后的液体传输至所述雾化通 道内的雾化片和用于固定所述雾化片的固定件, 所述雾化片套设在所述固定件 内, 所述液体吸附件贴附于所述雾化片表面, 并用于吸附所述储液腔内的液体 至所述雾化片, 所述雾化片的一侧固定设置有用于连接所述电极组件的电子线 , 所述固定件插设在所述喷嘴靠近所述雾化套的一端。
[0008] 优选地, 所述固定件呈内中空的环形结构, 且所述固定件的内侧壁设有用于嵌 入所述雾化片的环形镶嵌槽, 所述环形镶嵌槽延伸至所述固定件一端端面, 所 述环形镶嵌槽的槽壁上设置有用于供所述电子线穿出的幵口槽, 所述幵口槽与 所述环形镶嵌槽相连通; 所述电极组件包括相互绝缘的内电极和外电极, 所述 内电极和外电极套装在所述连接组件内, 且分别通过各自的电子线与所述雾化 片电连接。
[0009] 优选地, 所述雾化组件还包括设置在所述雾化套和所述喷嘴之间的雾化环, 所 述雾化环包括环形的主体部和沿所述主体部缩径形成环形的连接部, 所述主体 部朝向所述电极组件的方向设有用于与所述雾化套的一端形成固定连接的环形 连接槽, 所述连接槽套设在所述雾化套的一端外周面上; 所述连接部内侧壁与 所述固定件的周缘相抵接, 所述连接部外侧壁用于与所述喷嘴过盈配合; 所述
雾化组件还包括用于容置所述液体吸附件的雾化管, 所述雾化管外周具有多个 用于传输液体的进液孔, 所述雾化管同轴套设于所述雾化套内, 且所述雾化套 与所述雾化管之间具有间隙, 所述间隙形成所述储液腔;
[0010] 优选地,所述储液瓶还包括设置在所述连接组件内的雾化座, 所述雾化管的一端 插设在所述雾化环中, 并与所述雾化环过盈配合相抵接, 所述雾化管的另一端 套设在所述雾化座上; 所述雾化座内依次设置有所述内电极和外电极; 所述电 子线包含第一电子线和第二电子线, 所述第一电子线的一端与所述所述雾化片 相连, 所述第一电子线的另一端沿着所述雾化管的内部延伸至所述雾化座并夹 持于所述雾化座与所述内电极之间, 所述第二电子线的一端与所述雾化片相连 , 所述第二电子线的另一端沿着所述雾化管的内部延伸至所述雾化座并夹持与 所述雾化座与所述外电极之间。
[0011] 优选地, 所述雾化套为圆筒形, 所述雾化套的一端设有缩径形成的弯折部, 所 述弯折部卡合于所述主体部的环形连接槽内, 所述雾化套的另一端为缩径形成 的雾化套凸起, 所述弯折部、 所述雾化套凸起分别对应与所述雾化环和所述连 接组件连接, 以形成一体成型的整体。
[0012] 优选地, 所述液体吸附件呈柱状, 所述柱状液体吸附件的外周面与所述雾化管 内周面紧密贴合并盖设在每一所述进液孔上, 所述液体吸附件的端面抵持在所 述雾化片上。
[0013] 优选地, 所述喷嘴的靠近雾化套的一端沿周向延伸形式一圆形凸缘; 所述雾化 套为一端幵口的圆筒结构, 所述雾化套周向设有第一安装孔, 所述圆形凸缘用 于抵持固定于所述雾化套的第一安装孔的周缘上; 所述喷嘴的中轴线与所述雾 化管的中轴线之间具有夹角; 所述雾化套还包括一垂直于所述雾化套封闭端面 且与所述雾化套一体成型的隔液板; 所述隔液板上幵设有的插孔, 用于插设所 述固定件; 所述雾化套的幵口端为缩径而成的雾化套凸起, 用于与所述连接组 件连接, 形成一体成型的整体; 所述隔液板与所述雾化套远离第一安装孔的部 分形成的空腔为储液腔。
[0014] 优选地, 所述液体吸附件为紧贴附于雾化片上的片状液体吸附件。
[0015] 优选地, 所述喷嘴上还设有与所述固定件相抵接的环形凸台, 所述喷嘴内还包
括一个设有第二安装孔的固定板; 所述固定板安装在所述喷嘴的环形凸台上, 所述环形凸台上固定有风扇装置。
[0016] 优选地, 所述风扇装置包括马达和扇叶; 所述马达朝向所述喷嘴的一端与所述 扇叶相连接; 所述马达的另一端延伸至所述雾化组件内, 与所述电子线形成电 连接。
[0017] 优选地, 所述固定件由弹性材料制成。
[0018] 优选地, 所述雾化套由透明材料制成。
[0019] 本发明还提供一种储液瓶组件, 包括上述任一项所述的储液瓶, 和与所述储液 瓶可拆卸连接的电源组件。
[0020] 优选地, 所述电源组件包括一电池套, 所述电池套的一端连接有电池盖, 用于 密封所述电池套内的电池; 所述电池套的另一端设有用于与连接组件上的内连 接件相连接的外连接件; 所述外连接件内设置有电极支架和固定于所述电极支 架上的弹簧电极, 所述弹簧电极用于与所述电极组件中的内电极和外电极弹性 连接, 向所述储液瓶提供电源。
[0021] 优选地, 所述电源组件还包括位于电池套上的按键, 与所述按键相连接的 PCB 板和用于固定所述 PCB板的支架; 所述 PCB板的另一端与电池相连; 所述电源组 件的外连接件为外螺纹, 所述内连接件为内螺纹, 从而实现电源组件和所述储 液瓶以螺纹方式形成的可拆卸连接。
[0022] 优选地, 所述电源组件的外连接件上有卡合凸点; 所述内连接件的内侧壁设置 有沿该内壁的周面延伸的卡合凹槽及沿该内壁的轴向延伸的卡合幵口槽, 所述 卡合幵口槽延伸至所述内连接件的端面; 所述外连接件通过将卡合凸点插入所 述卡合幵口槽内后, 旋转卡合凸点至所述卡合凹槽中, 实现与所述内连接件的 插旋式可拆卸连接, 从而实现电源组件和所述储液瓶的可拆卸连接。
发明的有益效果
有益效果
[0023] 本发明提供的一个或多个技术方案, 至少具有如下技术效果或优点:
[0024] 储液瓶由雾化组件、 储液组件、 电极组件及连接组件连接为一不可拆卸的整体 结构, 使用完后更换方便, 防止现有技术中重复使用需费吋, 清洗且清洗不干
净吋影响药物效果;
[0025] 雾化组件包括雾化片, 液体吸附件和雾化管, 雾化片通过高频谐振 (振荡频率 为 107MHz或者 2.4MHz) 将液态水分子结构打散而产生自然飘逸的水雾, 不需要 加热或添加任何化学试剂, 与现有技术的加热雾化方式比较, 可节省能源 90%且 雾化效果更好; 液体吸附件采用多孔吸水材料, 其包括了棉、 玻纤材料, 可优 选医用脱脂棉, 医用脱脂棉由原棉经除去夹杂物, 脱脂、 漂泊、 洗涤、 干燥、 整理加工制成。 雾化管上设置有多个进液孔, 进液孔大小可根据液体浓度的不 同进行选择使用不同的药瓶, 不同瓶体对应不同液体, 使雾化效果达到最好。
[0026] 储油组件包括雾化套, 雾化套与雾化组件和连接组件组成密闭空间用于存放液 体, 并且使用透明雾化套可直接观察瓶内的药液剩余量。 连接组件与电源组件 可拆卸的连接, 给使用者带来更快捷的更换方式。
对附图的简要说明
附图说明
[0027] 为了更清楚地说明本发明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 附图仅仅是本发明的实施例, 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, 还可以根据提供的附图获得其他的附图。
[0028] 图 1是现有技术中的液体雾化装置的剖视图;
[0029] 图 2是本发明一优选实施例提供的储液瓶组件的剖视图;
[0030] 图 3是本发明第二实施例提供的储液瓶的剖视图;
[0031] 图 4是本发明第二实施例提供的雾化组件的爆炸图;
[0032] 图 5是本发明第二实施例提供的储液组件的爆炸图;
[0033] 图 6是本发明第二实施例提供的电极组件的爆炸图;
[0034] 图 7是本发明电源组件的示意图;
[0035] 图 8是本发明第三实施例提供的储液瓶的剖视图;
[0036] 图 9是本发明第四实施例提供的储液瓶组件的剖视图;
[0037] 图 10是本发明第四实施例提供的喷嘴的结构示意图;
[0038] 图 11是本发明第四实施例提供的雾化套的结构示意图;
[0039] 图 12是本发明第五实施例提供的储液瓶组件的分解示意图。
实施该发明的最佳实施例
本发明的最佳实施方式
[0040] 本发明实施例通过提供一种电子液体喷雾瓶装置, 即储液瓶, 用于解决现有技 术中液体雾化器存在的清洗不方便、 易引入污染物及雾化效果降低等技术问题 , 提供一种一次性液体瓶和其相应的电源组件, 实现了免清洗, 更换快捷, 使 用方便, 无污染物引入, 对于不同浓度的药水均可达到最好的雾化效果的技术 效果。
[0041] 本发明实施例的技术方案为解决上述技术问题, 总体思路如下:
[0042] 通过提供一种可拆卸的一次性液体瓶实现液体的更换; 该液体瓶由雾化组件、 储液组件、 电极组件、 连接组件组成一个不可拆卸的整体, 使用完后直接更换 液体瓶即可。 并且雾化组件包括超声波雾化器及由多孔材料制成的液体吸附件 , 该液体吸附件插入储液腔内并延伸至所述储液腔的底部, 所述液体吸附件的 一表面贴附在所述超声波雾化器的表面上, 以使能够将所述储液腔内的液体输 送给所述超声波雾化器, 所述超声波雾化器通过高频谐振将液态水分子结构打 散而产生自然飘逸的水雾对液体进行雾化, 其节省能源 90%且产生更好的雾化效 果; 使用一次性的储液瓶可以有效避免重复使用吋的清洗不方便, 以及引入污 染物和清洗不干净吋导致雾化效果的降低等问题。 同吋, 液体瓶中的组件可以 根据不同液体进行优化, 保证对不同浓度的液体均可达到最好的雾化效果。
[0043] 为了更好的理解上述技术方案, 下面将结合说明书附图以及具体的实施方式对 上述技术方案进行详细的说明, 应当理解本发明实施例以及实施例中的具体特 征是对本申请技术方案的详细的说明, 而不是对本申请技术方案的限定, 在不 冲突的情况下, 本发明实施例以及实施例中的技术特征可以相互组合。
[0044] 实施例一:
[0045] 本发明实施例提供了一种储液瓶, 请参阅图 2, 带有超声波振片的一次性储液 瓶 100, 用于装液体并与电源组件 200配合进行雾化所述液体。 该一次性储液瓶 1 00包括雾化组件 1、 储液组件 2、 电极组件 3及连接组件 4。 储液瓶 100与电源组件 200之间可拆卸连接, 当储液瓶 100内液体使用完后, 更换方便, 不需要对储液
瓶 100进行清洗。
[0046] 在本实施例中, 包括与电源组件 200可拆卸连接的连接组件 4, 设置在连接组件 内的电极组件 3, 设置在连接组件一侧的储液组件 2和雾化组件 1, 以及连接在雾 化组件一侧的喷嘴 6, 储液组件 2内包括了储液腔 21, 雾化组件 1包括插设至所述 储液腔 21内的液体吸附件 12以及设置在液体吸附件 12—侧的超声波雾化器 11。 优选地, 液体吸附件 12包括棉、 玻纤材料等, 优选医用脱脂棉, 医用脱脂棉是 经化学处理去掉脂肪的棉花, 比普通棉花容易吸收液体, 由原棉经除去夹杂物 , 脱脂、 漂泊、 洗涤、 干燥、 整理加工制成。 脱脂棉无臭、 无味、 无色斑, 具 有很好的吸水性, 纤维柔软细长, 洁白富有弹性, 易于分层, 没有酸、 碱等有 害杂质, 质量符合卫生部制定的技术标准。
[0047] 在本实施例中, 液体吸附件 12插入储液腔 21内并延伸至所述储液腔 21的底部, 所述液体吸附件 12的一表面贴附在所述超声波雾化器 11的表面上, 以使能够将 所述储液腔 21内的液体输送给所述超声波雾化器 11进行雾化; 所述电极组件 3套 设在所述连接组件 4内并与所述超声波雾化器 11电连接, 所述连接组件 4的一端 与所述储液组件 2相连, 所述连接组件 4的另一端用于与所述电源组件 200相连, 以使在电源组件 200和所述连接组件 4相连后, 电极组件 3与电源组件 200实现电 连接; 雾化组件 1、 储液组件 2、 电极组件 3及连接组件 4组合形成一封闭的整体 , 且该整体密封住所述储液腔 21, 以阻碍外部液体注入储液腔 21内。
[0048] 实施例二:
[0049] 在实施例 1基础上, 本发明实施例提供了一种储液瓶, 参见图 3是基于实施例 1 基础上储液瓶内部结构的细节描述, 在本实施例中, 雾化组件 1包括超声波雾化 器 11, 超声波雾化器 11进一步包括用于将雾化后的液体传输至雾化通道内的雾 化片 111和用于固定雾化片 111的固定件 112, 雾化片 111套设在固定件 112内, 雾 化片 111的一侧连接有电子线 113, 该电子线 113包括第一电子线 113a和第二电子 线 113b。 储液组件 2包括雾化套 22, 雾化套 22远离电源组件 200的一端连接有喷 嘴 6, 喷嘴 6内设置有环形凸台 61 ; 喷嘴 6和雾化套 22之间还设置有雾化环 13, 雾 化套 22内沿轴向套设有雾化管 14; 电极组件 3包括内电极 31和外电极 32, 内电极 31套设在雾化座 15内, 外电极 32套设在雾化座 15外; 具体地, 各部件的连接关
系详细描述如下:
[0050] 请一并参阅图 3-4 (结合图 2) , 该雾化组件 1的一端与喷嘴 6通过粘合或过盈配 合的方式固定连接, 喷嘴 6具有与外界连通的雾化通道 (未标号) 。 喷嘴 6上设 有与所述固定件 112相抵接的环形凸台 61。
[0051] 雾化片 111采用多孔材料制成, 其一侧固定有与电极组件 3电连接的电子线 113 。 用于固定雾化片 111的固定件 112呈内中空的环形结构, 且所述固定件 112的内 侧壁设有用于嵌入所述雾化片 111的环形镶嵌槽 114, 所述环形镶嵌槽 114延伸至 所述固定件 112—端端面, 所述环形镶嵌槽 114的槽壁上设置有用于固定并供所 述电子线 113穿出的幵口槽 1121。 所述幵口槽 1121与所述环形镶嵌槽 114相连通 , 用于容纳固定于雾化片 111的一侧的电子线 113。 固定件 112由弹性材料制成, 如硅胶等。
[0052] 液体吸附件 12的一端插入储液腔 21内并延伸至所述储液腔的底部。 特别地, 在 本实施例中, 液体吸附件 12呈柱状, 该液体吸附件 12的端面抵持在所述雾化片 1 11上, 用于吸附所述储液腔 21内的液体至雾化片 111。 具体地, 雾化片 111通过 高频谐振将液态水分子结构打散而产生自然飘逸的水雾, 不需加热或添加任何 化学试剂。 与加热雾化方式比较, 较节省能源。
[0053] 进一步地, 雾化组件 1还包括设置在所述雾化套 22和所述喷嘴 6之间的一雾化环 13。 该雾化环 13包括环形的主体部 131和沿所述主体部 131缩径形成环形的连接 部 132。 主体部 131朝向雾化套 22的方向设有一环形连接槽 133, 用于以粘合或者 过盈配合的方式与雾化套 22的一端形成固定连接。 该环形连接槽 133套设在所述 雾化套 22的一端外周面上, 以实现雾化组件 1与储液组件 2的密封连接。 连接部 1 32内侧壁与固定件 112的外周缘相抵接, 用于固定该固定件 112; 连接部 132外侧 壁用于与所述喷嘴 6以粘贴或过盈配合的方式实现固定连接。
[0054] 进一步地, 在本实施例中, 雾化组件 1还包括用于容置并固定所述液体吸附件 1 2的雾化管 14, 该雾化管 14同轴套设于所述雾化套 22内, 雾化管 14的一端插设在 与所述雾化环 13中, 并与雾化环 13中间通孔 (未标号) 的内侧壁通过粘合或过 盈配合相抵接; 雾化管 14的另一端延伸至连接组件 4内, 其外侧壁与连接凸台 42 以粘合或者过盈配合的方式固定连接, 内侧壁与外电极 32以粘合或者过盈配合
的方式实现固定连接。 雾化套 22与雾化管 14之间具有空隙, 所述空隙形成储液 腔 21。 电子线 113沿着雾化管 1内部延伸至电极组件 3内。 该雾化管 14的管壁上设 置有多个用于传输液体的进液孔 141, 所述柱状液体吸附件 12的外周面与所述雾 化管 14内周面紧密贴合并盖设在每一所述进液孔 141上。 生产装液体吋, 浓度大 的可以使用进液孔 141较大的储液瓶 100, 浓度小的可以使用进液孔 141小的储液 瓶 100, 从而使得不同储液瓶 100对应不同药水, 均可达到最佳的雾化效果。
[0055] 进一步地, 在本实施例中, 该雾化组件 1还包括设置在雾化管 14内与雾化管以 粘合或过盈配合相连接的雾化座 15, 该雾化座用于固定雾化管 15内的液体吸附 件 12, 并连接电极组件 3, 方便电极组件 3的组装。 该雾化座 15包含底座 15a和连 接主体 15b。 底座 15a的形状和大小与雾化管 14横截面的形状和尺寸相配适, 用于 与雾化管 14通过粘合或者过盈配合的方式固定连接, 起到固定雾化管 14内的液 体吸附件 12的作用; 连接主体 15b为由底座 15a缩径形成, 呈圆筒形, 其中心通孔 的内侧壁用于与内电极 31靠近雾化组件 1的一端的外周缘以粘合或过盈配合的方 式固定连接, 主要用于承装和连接电极组件 3, 方便雾化组件 1和电极组件 3的组 装。 在雾化座 15的底座 15a和连接主体 15b上, 靠近外缘周的方向还幵设有一个以 上的电子线通孔 F, 用于容置和固定电子线 113。 在本实施中, 该电子线通孔 F为 两个。 该电子线 113包含第一电子线 113a和第二电子线 113b, 第一电子线 113a所 述第一电子线 113a的一端与所述所述雾化片 111相连, 另一端延长至雾化座 15的 一端夹持在雾化座 15与内电极 31之间; 第二电子线 113b的一端与所述雾化片 111 相连, 另一端延长至雾化座 15的一端夹持在所述雾化座 15与所述外电极 32之间 , 以固定电子线 113, 并实现电极组件 3与雾化片 111的电连接。 当电极组件 3接 通电源后, 雾化片 111即可正常工作。
[0056] 请一并参阅图 3和图 5 (结合图 2) 在本实施例中, 储液组件 2包括雾化套 22。 该 雾化套 22为圆筒形, 由透明材料制成, 采用透明材料可直接观察瓶内的药液剩 余量, 为使用者提供更加直观的观察角度。
[0057] 雾化套 22的一端插设有雾化组件 1, 另一端插设有连接组件 4。 雾化套 22的一端 设有缩径形成的弯折部 221, 该弯折部 221的外周缘直径小于雾化套 22, 其形状 和尺寸与环形连接槽 133的形状和尺寸相配适, 用于卡合或粘贴于环形连接槽 13
3内, 实现雾化组件 1和储液组件 2间的封闭连接。 雾化套 22的另一端为由其缩径 而成雾化套凸起 222。 该雾化套凸起 222的形状和尺寸与连接凹槽 43的相配适, 并通过粘合或者过盈配合等方法与连接凹槽 43固定连接, 实现储液组件 2与连接 组件 4的封闭连接。 该雾化套 22与雾化组件 1及连接组件 4组成的密闭储液腔用于 存放液体。 优选地, 在该雾化套 22与该环形连接槽 133之间还设置有一密封垫, 用于防止储液腔内的液体渗出。
[0058] 请一并参阅图 3和图 6 (结合图 2) , 电极组件 3包括相互绝缘的内电极 31和外电 极 32, 该内电极 31和外电极 32均采用导电材料例如金属制成。 内电极 31和外电 极 32从内到外依次套装在所述连接组件 4内, 且通过电子线 113与所述雾化片 111 电连接。 内电极 31形状为圆柱形。 内电极 31的一端的外侧固定地套设有圆筒形 的绝缘环 33, 本实施例中, 内电极 31的一端的外周面向外凸出而形成一第一电 极环 31a, 该第一电极环 31a的外径大于该内电极 31其余部分的外径, 也就是说, 该第一电极环 31a的横截面面积或者底面面积均大于该内电极 31其余部分的横截 面面积。 该绝缘环 33靠近第一电极环 31a的一端设置有一向绝缘环 33内部凸起的 绝缘环凸台 33a, 用于固定抵接和配合于第一电极环 31a, 从而将该绝缘环 33套设 在该第一电极环 31a之外, 有利于更加牢固地固定该内电极 31。 该绝缘环 33与内 电极 31之间夹持有第一电子线 113a—端, 该绝缘环 33与外电极 32之间夹持有第二 电子线 113b的一端。 电子线 113a和 113b的另一端固定在雾化片 113上, 实现电极 组件 3与雾化片 113的电连接。 当电极组件 3接通电源后, 雾化片 111即可正常工 作。 绝缘环 33套设在内电极 31靠近内连接件 41的一端, 雾化座 15套设在内电极 3 1靠近雾化管 14的一端, 绝缘环 33与雾化座 15不接触, 留有一用于让电子线 113 通过的空隙。 该绝缘环 33和雾化座 15的外侧通过粘合或过盈配合等方法固定地 嵌套在圆筒形的外电极 32内侧。 外电极 32的外侧与连接组件 4通过粘合或过盈配 合的方式固定连接。 优选地, 在本实施例中, 外电极 32的内部设有与绝缘环凸 台 33a相配合的外电极凸台 32a, 用于更加牢固地固定该绝缘环 33。 外电极 32的外 侧和内连接件 41之间还可以固定一密封圈, 用于防止储液腔中的液体渗出。
[0059] 请参阅图 3 (结合图 2) , 在本实施例中, 连接组件 4为圆筒形, 它的一端与雾 化套 22
通过粘合或过盈配合的方式相连。 该连接组件的另一端设置有内连接件 41, 用 于与电源组件 200可拆卸连接, 以使在电源组件 200和所述连接组件 4相连后, 所 述电极组件 3与所述电源组件 200实现电连接。
[0060] 在本实施例中, 该连接组件 4远离内连接件 41的一端设置有一连接凸台 42, 用 于以粘合或者过盈配合的方式与电极组件 3固定连接。 优选地, 该连接组件 4与 电极组件 3之间可设置一密封圈, 防止储液腔中的液体渗出。 在该连接凸台 42靠 近连接组件 4外圆周的一侧, 幵设有圆环形的连接凹槽 43, 用于与储液组件 2以 粘合或过盈配合的方式固定连接。
[0061] 请参阅图 3和图 7 (结合图 2) , 电源组件 100包括一电池套 57。 该电池套 57的一 端连接有一电池盖 58, 用于密封所述电池套内的电池 56; 电池套 57的另一端设 有用于与连接组件 4上的内连接件 41相连接的外连接件 51。 该外连接件 51内固定 设置有电极支架 59和固定于所述电极支架 59上的弹簧电极 52, 弹簧电极 52用于 与所述电极组件 3中的内电极 31和外电极 32弹性连接, 向所述储液瓶 100提供电 源。 电池套 57的侧壁上安装有的按键 54, 该按键 54与一 PCB板 53相连接, 用于控 制电源的接通和断幵。 该 PCB板 53安装在支架 55上; 所述 PCB板 53远离外连接件 的一端与电池 56相连。 在本实施例中, 外连接件 51为外螺纹, 内连接件 41为内 螺纹, 从而实现电源组件 200和储液瓶 100以螺纹方式形成的可拆卸连接。
[0062] 实施例三:
[0063] 请参阅图 8,本发明的第三较佳实施例在实施例一或二的基础上在吸嘴 6内提供 一带有风扇装置的超声波振片一次性储液瓶 100, 用于装液体并与电源组件配合 进行雾化所述液体。 该一次性储液瓶 100包括雾化组件 1、 储液组件 2、 电极组件 3及连接组件 4。 该雾化组件 1、 储液组件 2、 电极组件 3及连接组件 4与本发明第 一和第二较佳实施例完全相同, 因此在这里无需赘述这些部件的形状特征和组 装方式。 本实施例与第一或二实施例区别在于喷嘴 6的构造和风扇装置 7的增加 , 从而达到增加液体的喷射距离的目的。 在本实施例中, 喷嘴 6内还包括一个设 有第二安装孔 64的固定板 63, 该固定板 63安装在所述喷嘴 6的环形凸台 61上, 该 环形凸台 61上固定有一风扇装置 7。
[0064] 该风扇装置 7包括马达 71和扇叶 72。 马达 71朝向喷嘴 6的一端与扇叶 72相连接;
马达 71的另一端延伸至所述雾化组件 1内, 与所述电子线 113形成电连接。 当电 极组件 3接通电源吋, 马达也可通电工作。 在该实施例中增加风扇装置是为了在 系统工作吋, 加快气流的流通, 具有更好的雾化效果和更好的口感, 提高了用 户的体验。
[0065] 实施例四:
[0066] 请参阅图 9-11, 本发明的第四较佳实施例提供带有超声波振片的一次性储液瓶 100, 用于装液体并与电源组件 200配合进行雾化所述液体。 该一次性储液瓶 100 包括雾化组件 1、 储液组件 2、 电极组件 3及连接组件 4。 该雾化组件 1中的超声波 雾化器 11, 电极组件 3中的内电极 31和绝缘环 33以及连接组件 4与第一较佳实施 例中的完全相同, 因此在这里无需赘述这些部件的结构特征和组装方式。 本实 施例与第一实施例的第一个区别在于喷嘴 6的构造以及其与雾化套 22连接的位置 。 在本实施例中, 喷嘴 6靠近雾化套 22的一端沿周向延伸形式一圆形凸缘 62; 雾 化套 22为一端幵口的圆筒结构, 其周向设有第一安装孔 223, 圆形凸缘 62用于抵 持固定于所述雾化套 22的第一安装孔 223的周缘上。 喷嘴 6的中轴线与雾化管 22 的中轴线之间具有夹角。 喷嘴设置在储液瓶 100的侧边, 储液瓶 100取消用液体 吸附件将液体由靠近电极组件的方向向喷嘴的方向导液, 结构更简单。
[0067] 本实施例与第一实施例的第二个区别在于超声波雾化器 11的位置不同。 在本实 施例中, 雾化套 22还包括一垂直于所述雾化套 22封闭端面且与所述雾化套 22— 体成型的隔液板 224。 该隔液板 224上幵设有的插孔, 用于插设超声波雾化器 11 。 该隔液板 224, 超声波雾化器 11与雾化套 22远离第一安装孔 223的部分形成的 空腔为储液腔 21。 即超声波雾化器 11置于储液腔 21中, 直接与液体接触, 取消 用液体吸附件将液体由靠近电极组件的方向向喷嘴的方向导液, 结构更简单。 本实施例中的液体吸附件 12为紧贴附于雾化片 111上的片状液体吸附件。 其中: 喷嘴 6的中轴线与雾化管 22的中轴线之间具有夹角; 本发明实施例的夹角为 90度 , 设置该夹角, 雾化效果最佳, 但在实际生产中, 该夹角可在 90度范围内进行 调整, 偏离幅度为正负 20度, 偏离的好处在于气流具有一弯折后, 用户的口感 更好。
[0068] 实施例五:
[0069] 本发明的第五较佳实施例提供带有超声波振片的一次性储液瓶 100, 用于装液 体并与电源组件配合进行雾化所述液体。 本实施例与以上电源组件不同的地方 在于, 该外连接件 51直接作为外电极 32, 减少组成零件, 使得结构更简单。
[0070] 请参阅图 12, 在本实施例中, 电源组件的外连接件 51上有卡合凸点 511。 所述 内连接件 41的内侧壁设置有沿该内壁的周面延伸的卡合凹槽 411及沿该内壁的轴 向延伸的卡合幵口槽 412, 所述卡合幵口槽 412延伸至所述内连接件 41的端面; 外连接件 51通过将卡合凸点 511插入所述卡合幵口槽 412内后, 旋转卡合凸点 511 至所述卡合凹槽 411中, 实现与所述内连接件 41的插旋式可拆卸连接, 从而实现 电源组件 200和所述储液瓶 100的可拆卸连接。
[0071] 综上所述, 本发明提供储液瓶和储液组件, 由于将雾化组件、 储液组件、 电极 组件及连接组件连接设计为一不可拆卸的整体结构, 使用完后更换方便, 防止 现有技术中重复使用需费吋, 且清洗和清洗不干净吋影响药物效果; 并且该整 体密封住储液腔, 以阻碍外部液体注入储液腔内, 密闭效果更佳, 也保证了液 体的纯净, 保证液体不被污染。 另外雾化组件通过高频谐振将液态水分子结构 打散而产生自然飘逸的水雾, 不需要加热或添加任何化学试剂, 与现有技术的 加热雾化方式比较, 可节省能源, 且雾化效果更好。 所以本发明提供了更为方 便快捷的更换方式, 液体更清洁, 雾化效果更好。
[0072] 尽管已描述了本发明的优选实施例, 但本领域内的技术人员一旦得知了基本创 造性概念, 则可对这些实施例做出另外的变更和修改。 所以, 所附权利要求意 欲解释为包括优选实施例以及落入本发明范围的所有变更和修改。
[0073] 显然, 本领域的技术人员可以对本发明进行各种改动和变型而不脱离本发明的 精神和范围。 这样, 倘若本发明的这些修改和变型属于本发明权利要求及其等 同技术的范围之内, 则本发明也意图包含这些改动和变型在内。
Claims
权利要求书
[权利要求 1] 一种储液瓶, 用于装液体并与电源组件配合进行雾化所述液体, 其特 征在于: 包括雾化组件 (1) 、 储液组件 (2) 、 电极组件 (3) 及连 接组件 (4) , 所述储液组件 (2) 设置有储液腔 (21) , 所述雾化组 件 (1) 包括超声波雾化器 (11) 及由多孔材料制成的液体吸附件 (1 2) , 所述液体吸附件 (12) 插入储液腔 (21) 内并延伸至所述储液 腔 (21) 的底部, 所述液体吸附件 (12) 的一表面贴附在所述超声波 雾化器 (11) 的表面上, 以使能够将所述储液腔 (21) 内的液体输送 给所述超声波雾化器 (11) 进行雾化;
所述电极组件 (3) 套设在所述连接组件 (4) 内并与所述超声波雾化 器 (11) 电连接, 所述连接组件 (4) 的一端与所述储液组件 (2) 相 连, 所述连接组件 (4) 的另一端用于与所述电源组件 (5) 相连, 以 使在电源组件 (5) 和所述连接组件 (4) 相连后, 所述电极组件 (3 ) 与所述电源组件 (5) 实现电连接;
所述雾化组件 (1) 、 储液组件 (2) 、 电极组件 (3) 及连接组件 (4 ) 组合形成一封闭的整体, 且该整体密封住所述储液腔 (21) , 以阻 碍外部液体注入所述储液腔 (21) 内。
[权利要求 2] 根据权利要求 1所述的储液瓶, 其特征在于: 所述储液瓶还包括与所 述雾化组件 (1) 连接的喷嘴 (6) , 所述喷嘴 (6) 具有与外界连通 的雾化通道; 所述储液组件 (2) 还包括雾化套 (22) , 所述雾化套 (22) 的一端插设有所述雾化组件 (1) , 所述雾化套 (22) 的另一 端与所述连接组件 (4) 固定连接, 所述储液腔 (21) 形成在所述雾 化套 (22) 内;
所述超声波雾化器 (11) 包括用于通过高频谐振将雾化后的液体传输 至所述雾化通道内的雾化片 (111) 和用于固定所述雾化片 (111) 的 固定件 (112) , 所述雾化片 (111) 套设在所述固定件 (112) 内, 所述液体吸附件 (12) 贴附于所述雾化片 (111) 表面, 并用于吸附 所述储液腔 (21) 内的液体至所述雾化片 (111) , 所述雾化片 (111
) 的一侧固定设置有用于连接所述电极组件 (3) 的电子线 (113) , 所述固定件 (112) 插设在所述喷嘴 (6) 靠近所述雾化套 (22) 的一 山
[权利要求 3] 根据权利要求 2所述的储液瓶, 其特征在于: 所述固定件 (112) 呈内 中空的环形结构, 且所述固定件 (112) 的内侧壁设有用于嵌入所述 雾化片 (111) 的环形镶嵌槽 (114) , 所述环形镶嵌槽 (114) 延伸 至所述固定件 (112) —端端面, 所述环形镶嵌槽 (114) 的槽壁上设 置有用于供所述电子线 (113) 穿出的幵口槽 (1121) , 所述幵口槽
(1121) 与所述环形镶嵌槽 (114) 相连通;
所述电极组件包括相互绝缘的内电极 (31) 和外电极 (32) , 所述内 电极 (31) 和外电极 (32) 套装在所述连接组件 (4) 内, 且分别通 过各自的电子线 (113) 与所述雾化片 (111) 电连接。
[权利要求 4] 根据权利要求 3所述的储液瓶, 其特征在于: 所述雾化组件 (1) 还包 括设置在所述雾化套 (22) 和所述喷嘴 (6) 之间的雾化环 (13) , 所述雾化环 (13) 包括环形的主体部 (131) 和沿所述主体部 (131) 缩径形成环形的连接部 (132) , 所述主体部 (131) 朝向所述电极组 件 (4) 的方向设有用于与所述雾化套 (22) 的一端形成固定连接的 环形连接槽 (133) , 所述环形连接槽 (133) 套设在所述雾化套 (22 ) 的一端外周面上; 所述连接部 (132) 内侧壁与所述固定件 (112) 的周缘相抵接, 所述连接部 (132) 外侧壁用于与所述喷嘴 (6) 过盈 配合;
所述雾化组件 (1) 还包括用于容置所述液体吸附件 (12) 的雾化管
(14) , 所述雾化管 (14) 外周具有多个用于传输液体的进液孔 (14 1) , 所述雾化管 (14) 同轴套设于所述雾化套 (22) 内, 且所述雾 化套 (22) 与所述雾化管 (14) 之间具有空隙, 所述空隙形成所述储 液腔 (21) 。
[权利要求 5] 根据权利要求 4所述的储液瓶, 其特征在于: 所述储液瓶还包括设置 在所述连接组件 (4) 内的雾化座 (15) , 所述雾化管 (14) 的一端
插设在所述雾化环 (13) 中, 并与所述雾化环 (13) 过盈配合相抵接 , 所述雾化管 (14) 的另一端套设在所述雾化座 (15) 上; 所述雾化 座 (15) 内依次设置有所述内电极 (31) 和外电极 (32) ; 所述电子 线 (113) 包含第一电子线 (113a) 和第二电子线 (113b) , 所述第 一电子线 (113a) 的一端与所述所述雾化片 (111) 相连, 所述第一 电子线 (113a) 的另一端沿着所述雾化管 (14) 的内部延伸至所述雾 化座 (15) 并夹持于所述雾化座 (15) 与所述内电极 (31) 之间, 所 述第二电子线 (113b) 的一端与所述雾化片 (111) 相连, 所述第二 电子线 (113b) 的另一端沿着所述雾化管 (14) 的内部延伸至所述雾 化座 (15) 并夹持与所述雾化座 (15) 与所述外电极 (32) 之间。
[权利要求 6] 根据权利要求 4所述的储液瓶, 其特征在于: 所述雾化套 (22) 为圆 筒形, 所述雾化套 (22) 的一端设有缩径形成的弯折部 (221) , 所 述弯折部 (221) 卡合于所述主体部 (131) 的环形连接槽 (133) 内 , 所述雾化套 (22) 的另一端为缩径形成的雾化套凸起 (222) ; 所述弯折部 (221) 、 所述雾化套凸起 (222) 分别对应与所述雾化环 ( 13) 和所述连接组件 (4) 连接, 以形成密闭的整体。
[权利要求 7] 根据权利要求 4所述的储液瓶, 其特征在于: 所述液体吸附件 (12 呈柱状, 所述柱状液体吸附件的外周面与所述雾化管 (14) 内周面紧 密贴合并盖设在每一所述进液孔 (141) 上, 所述液体吸附件 (12) 的端面抵持在所述雾化片 (111) 上。
[权利要求 8] 根据权利要求 2所述的储液瓶, 其特征在于: 所述喷嘴 (6) 的靠近雾 化套 (22) 的一端沿周向延伸形成一圆形凸缘 (62) ;
所述雾化套 (22) 为一端幵口的圆筒结构, 所述雾化套 (22) 周向设 有第一安装孔 (223) , 所述圆形凸缘 (62) 用于抵持固定于所述雾 化套 (22) 的第一安装孔 (223) 的周缘上; 所述喷嘴 (6) 的中轴线 与所述雾化管 (22) 的中轴线之间具有夹角;
所述雾化套 (22) 还包括一垂直于所述雾化套 (22) 封闭端面且与所 述雾化套 (22) —体成型的隔液板 (224) ; 所述隔液板 (224) 上幵
设有插孔, 用于插设所述固定件 (112) ; 所述雾化套 (22) 的幵口 端为缩径而成的雾化套凸起 (222) , 用于与所述连接组件 (4) 连接
, 形成一体成型的整体; 所述隔液板 (224) 与所述雾化套 (22) 远 离第一安装孔 (223) 的部分形成的空腔为储液腔 (21) 。
根据权利要求 8所述的储液瓶, 其特征在于: 所述液体吸附件 (12) 为紧贴附于雾化片 (111) 上的片状液体吸附件。
根据权利要求 2所述的储液瓶, 其特征在于: 所述喷嘴 (6) 上还设有 与所述固定件 (112) 相抵接的环形凸台 (61) 。
根据权利要求 10所述的储液瓶, 其特征在于: 所述喷嘴 (6) 内还包 括一个设有第二安装孔 (64) 的固定板 (63) ; 所述固定板 (63) 安 装在所述喷嘴 (6) 的环形凸台 (61) 上, 所述环形凸台 (61) 上固 定有风扇装置 (7) 。
根据权利要求 11所述的储液瓶, 其特征在于: 所述风扇装置 (7) 包 括马达 (71) 和扇叶 (72) ; 所述马达 (71) 朝向所述喷嘴 (6) 的 一端与所述扇叶 (72) 相连接; 所述马达 (71) 的另一端延伸至所述 雾化组件 (1) 内, 与所述电子线 (113) 形成电连接。
根据权利要求 2所述的储液瓶, 其特征在于: 所述固定件 (112) 由弹 性材料制成。
根据权利要求 2所述的储液瓶, 其特征在于: 所述雾化套 (22) 由透 明材料制成。
一种储液瓶组件, 其特征在于, 包括如权利要求 1至 15任一项所述的 储液瓶, 和与所述储液瓶可拆卸连接的电源组件。
根据权利要求 15所述的储液瓶组件, 其特征在于: 所述电源组件包括 一电池套 (57) , 所述电池套 (57) 的一端连接有电池盖 (58) , 用 于密封所述电池套内的电池 (56) ; 所述电池套 (57) 的另一端设有 用于与连接组件 (4) 上的内连接件 (41) 相连接的外连接件 (51) ; 所述外连接件 (51) 内设置有电极支架 (59) 和固定于所述电极支 架 (59) 上的弹簧电极 (52) , 所述弹簧电极 (52) 用于与所述电极
组件 (3) 中的内电极 (31) 和外电极 (32) 弹性连接, 向所述储液 瓶提供电源。
[权利要求 17] 根据权利要求 16所述的电源组件, 其特征在于: 所述电源组件还包括 位于电池套 (57) 上的按键 (54) , 与所述按键 (54) 相连接的 PCB 板 (53) 和用于固定所述 PCB板的支架 (55) ; 所述 PCB板 (53) 的 另一端与电池 (56) 相连; 所述电源组件的外连接件 (51) 为外螺纹 , 所述内连接件 (41) 为内螺纹, 从而实现电源组件和所述储液瓶以 螺纹方式形成的可拆卸连接。
[权利要求 18] 根据权利要求 15所述的电源组件, 其特征在于: 所述电源组件的外连 接件 (51) 上有卡合凸点 (511) ; 所述内连接件 (41) 的内侧壁设 置有沿该内壁的周面延伸的卡合凹槽 (411) 及沿该内壁的轴向延伸 的卡合幵口槽 (412) , 所述卡合幵口槽 (412) 延伸至所述内连接件
(41) 的端面; 所述外连接件 (51) 通过将卡合凸点 (511) 插入所 述卡合幵口槽 (412)内后, 旋转卡合凸点 (511) 至所述卡合凹槽 (4 11) 中, 实现与所述内连接件 (41) 的插旋式可拆卸连接, 从而实现 电源组件和所述储液瓶的可拆卸连接。
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| Publication number | Priority date | Publication date | Assignee | Title |
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| CN110026316A (zh) * | 2019-04-29 | 2019-07-19 | 佛山市南海科日超声电子有限公司 | 一种带单向阀的微孔雾化装置 |
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| CN113304389A (zh) * | 2021-07-06 | 2021-08-27 | 舒倍登(杭州)科技有限公司 | 可更换式电子口腔喷雾器 |
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| US12276097B2 (en) | 2017-06-27 | 2025-04-15 | Kohler Mira Limited | Additive dispenser |
| US11230833B2 (en) | 2017-06-27 | 2022-01-25 | Kohler Mira Limited | Additive dispenser |
| US11773577B2 (en) | 2017-06-27 | 2023-10-03 | Kohler Mira Limited | Additive dispenser |
| US11883579B2 (en) | 2017-07-17 | 2024-01-30 | Rai Strategic Holdings, Inc. | No-heat, no-burn smoking article |
| US10548349B2 (en) | 2017-07-17 | 2020-02-04 | Rai Strategic Holdings, Inc. | No heat, no-burn smoking article |
| US10856572B2 (en) | 2017-07-17 | 2020-12-08 | Rai Strategic Holdings, Inc. | No-heat, no-burn smoking article |
| US11096419B2 (en) | 2019-01-29 | 2021-08-24 | Rai Strategic Holdings, Inc. | Air pressure sensor for an aerosol delivery device |
| CN110026316A (zh) * | 2019-04-29 | 2019-07-19 | 佛山市南海科日超声电子有限公司 | 一种带单向阀的微孔雾化装置 |
| US12031306B2 (en) | 2019-05-14 | 2024-07-09 | Kohler Co. | Inline dispensing device |
| US11666931B2 (en) | 2019-05-14 | 2023-06-06 | Kohler Co. | Inline shower device |
| US12396480B2 (en) | 2019-05-22 | 2025-08-26 | Rai Strategic Holdings, Inc. | Reservoir configuration for aerosol delivery device |
| US11207711B2 (en) | 2019-08-19 | 2021-12-28 | Rai Strategic Holdings, Inc. | Detachable atomization assembly for aerosol delivery device |
| US11964301B2 (en) | 2019-08-19 | 2024-04-23 | Rai Strategic Holdings, Inc. | Detachable atomization assembly for aerosol delivery device |
| US12447503B2 (en) | 2019-08-19 | 2025-10-21 | Rai Strategic Holdings, Inc. | Detachable atomization assembly for aerosol delivery device |
| CN110384816B (zh) * | 2019-08-21 | 2024-04-05 | 杭州赤松光电科技有限公司 | 一种便于更换香氛液容器的低噪音液体分子雾化扩散器 |
| CN110384816A (zh) * | 2019-08-21 | 2019-10-29 | 杭州赤松光电科技有限公司 | 一种便于更换香氛液容器的低噪音液体分子雾化扩散器 |
| US11889861B2 (en) | 2019-09-23 | 2024-02-06 | Rai Strategic Holdings, Inc. | Arrangement of atomization assemblies for aerosol delivery device |
| US12550935B2 (en) | 2019-09-23 | 2026-02-17 | Rai Strategic Holdings, Inc. | Arrangement of atomization assemblies for aerosol delivery device |
| US11785991B2 (en) | 2019-10-04 | 2023-10-17 | Rai Strategic Holdings, Inc. | Use of infrared temperature detection in an aerosol delivery device |
| US12114710B2 (en) | 2019-10-04 | 2024-10-15 | Rai Strategic Holdings, Inc. | Use of infrared temperature detection in an aerosol delivery device |
| US11304451B2 (en) | 2019-10-18 | 2022-04-19 | Rai Strategic Holdings, Inc. | Aerosol delivery device with dual reservoir |
| US12389948B2 (en) | 2019-10-18 | 2025-08-19 | Rai Strategic Holdings, Inc. | Aerosol delivery device with dual reservoir |
| US12011042B2 (en) | 2019-10-18 | 2024-06-18 | Rai Strategic Holdings, Inc. | Aerosol delivery device with dual reservoir |
| US12414586B2 (en) | 2019-10-18 | 2025-09-16 | Rai Strategic Holdings, Inc. | Surface acoustic wave atomizer for aerosol delivery device |
| USD1090783S1 (en) | 2020-04-24 | 2025-08-26 | Kohler Co. | Shower system |
| US11969545B2 (en) | 2020-12-01 | 2024-04-30 | Rai Strategic Holdings, Inc. | Liquid feed systems for an aerosol delivery device |
| USD1104210S1 (en) | 2021-07-01 | 2025-12-02 | Kohler Co. | Shower device |
| USD1104211S1 (en) | 2021-07-01 | 2025-12-02 | Kohler Co. | Shower system |
| US12550948B2 (en) | 2022-08-19 | 2026-02-17 | Rai Strategic Holdings, Inc. | Pressurized aerosol delivery device |
| CN116196513A (zh) * | 2023-03-21 | 2023-06-02 | 深圳水木生物科技有限公司 | 一种小型眼部雾化给药仪器 |
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