WO2019196876A1 - 分离式雾化装置及其容器 - Google Patents

分离式雾化装置及其容器 Download PDF

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Publication number
WO2019196876A1
WO2019196876A1 PCT/CN2019/082094 CN2019082094W WO2019196876A1 WO 2019196876 A1 WO2019196876 A1 WO 2019196876A1 CN 2019082094 W CN2019082094 W CN 2019082094W WO 2019196876 A1 WO2019196876 A1 WO 2019196876A1
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WO
WIPO (PCT)
Prior art keywords
atomization
tension
container
separate
seat
Prior art date
Application number
PCT/CN2019/082094
Other languages
English (en)
French (fr)
Inventor
吕志维
桑振翔
龚亮仁
蔡玮哲
吴若羚
谢淑品
Original Assignee
微邦科技股份有限公司
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 微邦科技股份有限公司 filed Critical 微邦科技股份有限公司
Priority to EP19785214.8A priority Critical patent/EP3778037A4/en
Priority to US16/981,755 priority patent/US11882871B2/en
Publication of WO2019196876A1 publication Critical patent/WO2019196876A1/zh

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Classifications

    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61MDEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
    • A61M11/00Sprayers or atomisers specially adapted for therapeutic purposes
    • A61M11/001Particle size control
    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/05Devices without heating means
    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24BMANUFACTURE OR PREPARATION OF TOBACCO FOR SMOKING OR CHEWING; TOBACCO; SNUFF
    • A24B15/00Chemical features or treatment of tobacco; Tobacco substitutes, e.g. in liquid form
    • A24B15/10Chemical features of tobacco products or tobacco substitutes
    • A24B15/16Chemical features of tobacco products or tobacco substitutes of tobacco substitutes
    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/40Constructional details, e.g. connection of cartridges and battery parts
    • A24F40/42Cartridges or containers for inhalable precursors
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61MDEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
    • A61M11/00Sprayers or atomisers specially adapted for therapeutic purposes
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05BSPRAYING APPARATUS; ATOMISING APPARATUS; NOZZLES
    • B05B17/00Apparatus for spraying or atomising liquids or other fluent materials, not covered by the preceding groups
    • B05B17/04Apparatus for spraying or atomising liquids or other fluent materials, not covered by the preceding groups operating with special methods
    • B05B17/06Apparatus for spraying or atomising liquids or other fluent materials, not covered by the preceding groups operating with special methods using ultrasonic or other kinds of vibrations
    • B05B17/0607Apparatus for spraying or atomising liquids or other fluent materials, not covered by the preceding groups operating with special methods using ultrasonic or other kinds of vibrations generated by electrical means, e.g. piezoelectric transducers
    • B05B17/0638Apparatus for spraying or atomising liquids or other fluent materials, not covered by the preceding groups operating with special methods using ultrasonic or other kinds of vibrations generated by electrical means, e.g. piezoelectric transducers spray being produced by discharging the liquid or other fluent material through a plate comprising a plurality of orifices
    • B05B17/0646Vibrating plates, i.e. plates being directly subjected to the vibrations, e.g. having a piezoelectric transducer attached thereto
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05BSPRAYING APPARATUS; ATOMISING APPARATUS; NOZZLES
    • B05B17/00Apparatus for spraying or atomising liquids or other fluent materials, not covered by the preceding groups
    • B05B17/04Apparatus for spraying or atomising liquids or other fluent materials, not covered by the preceding groups operating with special methods
    • B05B17/06Apparatus for spraying or atomising liquids or other fluent materials, not covered by the preceding groups operating with special methods using ultrasonic or other kinds of vibrations
    • B05B17/0607Apparatus for spraying or atomising liquids or other fluent materials, not covered by the preceding groups operating with special methods using ultrasonic or other kinds of vibrations generated by electrical means, e.g. piezoelectric transducers
    • B05B17/0653Details
    • B05B17/0676Feeding means
    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/10Devices using liquid inhalable precursors

Definitions

  • the present disclosure relates to an atomizing device, and more particularly to a separate atomizing device and a container therefor.
  • Existing atomizing devices are used to convert liquid into mist for absorption by the user. Among them, the existing atomizing device often needs to be replaced and replaced when some components are damaged, so that undamaged and expensive components (such as vibrators) will be discarded. Therefore, existing atomizing devices need to be developed in a replaceable manner to facilitate extended service life of expensive components in the atomizing device.
  • the present inventors believe that the above-mentioned defects can be improved, and that the present invention has been painstakingly studied and in conjunction with the application of scientific principles, and finally proposes a present invention that is reasonably designed and effective in improving the above-mentioned drawbacks.
  • Embodiments of the present disclosure provide a separate atomizing device and a container thereof, which can effectively improve defects that may be generated by an existing atomizing device.
  • the embodiment of the present disclosure discloses a separate atomization device, comprising: an atomization seat and a container, the atomizer comprises: a base and a vibrator, the installation base has a mounting chamber, an atomization chamber and a connection a connecting hole of the mounting chamber and the atomizing chamber; a vibrator disposed in the mounting chamber, the vibrator including a top abutting portion corresponding to the communicating hole, and the The inner edge of the abutting portion is formed with a through hole communicating with the communication hole; a container is detachably mounted to the atomization seat, and the container comprises: a cup body and a flexible film, and one end of the cup body is formed An opening; a flexible film covering the opening, and comprising a tension zone and an outer ring region surrounding the tension zone, the tension zone being formed with a plurality of atomizing holes, and the outer The ring region is fixed to the cup body; wherein the cup body is detachably disposed on the atomization seat, and the flexible film
  • the vibrator includes: a carrier sheet and a vibration piece, the carrier sheet includes a first surface and a second surface on opposite sides, and the carrier sheet is formed with a protrusion The top abutting portion of the first surface; the vibrating piece is fixed to the second surface of the carrier sheet, and the vibrating piece is spaced apart from an inner surface of the mounting chamber.
  • the atomization seat includes a top seat mounted to the base, and the top seat and the base clamp and fix an outer edge portion of the carrier sheet.
  • the base is formed with a plurality of positioning posts
  • the top seat is formed with a plurality of fixed tubes
  • the outer edge portion of the carrier sheet is embedded in the plurality of positioning posts
  • the positioning posts are respectively inserted into the plurality of fixed tubes to press a plurality of the fixed tubes to the outer edge portion of the carrier sheet.
  • the vibrating piece includes two electrodes
  • the separate atomizing device further includes a cable connector
  • the cable connector includes a cable end and a connector end. The cable end is clamped to the base and the top seat, and is electrically coupled to the two electrodes of the vibration piece.
  • the container when the container is disposed on the top seat, the container can be made of the flexible film by the top abutting portion by a moving distance relative to the top seat Pressed.
  • the cup body is formed with at least one positioning protrusion on an outer surface thereof, and the top seat is recessed on the inner surface thereof to form at least one receiving groove and communicate with at least one of the receiving grooves.
  • At least one limiting slot, and the top seat defines a stopping point in the at least one of the limiting slots; wherein at least one of the positioning protrusions of the cup can pass along at least one of the receiving slots And positioning across at least one of the limiting slots across the stop point.
  • the vibrator includes: a carrier sheet and a vibration piece, the carrier sheet includes a first surface and a second surface on opposite sides, and the carrier sheet is formed with a protrusion The top abutting portion of the first surface; the vibration piece is annular and fixed to the first surface of the carrier sheet, and the vibration piece surrounds an outer side of the top abutting portion.
  • an inner diameter of the opening is not smaller than an outer diameter of the abutting portion, and at least a portion of the abutting portion is located in the opening.
  • the plurality of atomizing holes have an average pore diameter of 2.5 ⁇ m to 5 ⁇ m, the initial tension value is 0, and the atomization tension value is per unit area of the tension zone.
  • a force between 1.5 Newtons (N) and 26.5 Newtons.
  • the flexible film is pressed by the abutting portion in a height direction, and the tension region is pressed in the height direction to be displaced by an interference distance to make the tension
  • the zone is raised from the initial tension value to the atomization tension value.
  • the interference distance is not less than 100 micrometers.
  • the initial tension value is 0; and the atomization tension value is a force of not less than 1.5 Newtons per unit area of the tension zone.
  • the initial tension value is 0; the interference distance is between 100 micrometers and 500 micrometers, and when the interference distance is 100 micrometers, the atomization tension value is each of the tension regions.
  • the unit area is subjected to a force of not less than 1.5 Newtons; when the interference distance is 500 ⁇ m, the atomization tension value is a force per unit area of the tension zone that is not more than 26.5 Newtons.
  • the embodiment of the present disclosure also discloses a container for a separate atomization device for detachably mounting on an atomization seat, the container comprising: a cup body and a flexible film, and an opening is formed at one end of the cup body; a flexible film covering the opening and comprising a tension zone and an outer ring region surrounding the tension zone, the tension zone being formed with a plurality of average pore diameters ranging from 1 micrometer ( ⁇ m) to 20 micrometers An atomizing hole, wherein the outer ring region is fixed to the cup body; wherein, when the cup body is used for mounting to the atomizing seat, the outer ring region of the flexible film can be protected Compressing the atomizing seat, increasing the tension zone from an initial tension value to an atomization tension value for averaging the atomized particles atomized through the plurality of atomizing holes of the tension zone The diameter can be less than a predetermined value.
  • the predetermined value is 5 microns.
  • the average pore diameter of the plurality of atomization holes is between 2.5 micrometers and 5 micrometers, the initial tension value is 0, and the atomization tension value is per unit of the tension zone.
  • the area is subjected to forces ranging from 1.5 Newtons to 26.5 Newtons.
  • the tension zone of the flexible film when the cup is used for mounting on the atomization seat, can be displaced by a pressure of the atomization seat along a height direction.
  • the interference distance is such that the tension zone is increased from the initial tension value to the atomization tension value.
  • the interference distance is not less than 100 ⁇ m; the initial tension value is 0, and the atomization tension value is a force of not less than 1.5 Newtons per unit area of the tension zone.
  • the interference distance is between 100 micrometers and 500 micrometers; the initial tension value is 0; and when the interference distance is 100 micrometers, the atomization tension value is each of the tension regions.
  • the unit area is subjected to a force of not less than 1.5 Newtons; when the interference distance is 500 ⁇ m, the atomization tension value is a force per unit area of the tension zone that is not more than 26.5 Newtons.
  • the separate atomizing device and the container thereof disclosed in the embodiments of the present disclosure can independently separate the cup body and the flexible film from the atomizing seat, and set the expensive vibrator.
  • the container and the atomizing seat are matched with each other (for example, the flexible film is pressed against the abutting portion), so that the tension region can be pressed and raised to the atomization tension value, thereby enabling A precise atomization effect is achieved; that is, the average atomized particle size that is atomized through the plurality of atomization holes in the tension zone can be less than a predetermined value (eg, 5 microns).
  • FIG. 1 is a schematic perspective view of a separate atomization device according to a first embodiment of the present disclosure.
  • Figure 2 is an exploded perspective view of Figure 1.
  • FIG. 3 is another exploded perspective view of FIG. 1.
  • FIG. 3 is another exploded perspective view of FIG. 1.
  • Fig. 4 is an exploded perspective view of Fig. 2 with the container omitted.
  • Fig. 5 is an exploded perspective view of Fig. 3 with the container omitted.
  • Figure 6 is a cross-sectional view taken along line VI-VI of Figure 1.
  • Fig. 7 is a partially enlarged schematic view showing the VII region of Fig. 6.
  • Figure 8 is a perspective, cross-sectional view showing the container of the first embodiment of the present disclosure.
  • Fig. 9 is a partially enlarged schematic view showing the area IX of Fig. 8.
  • Figure 10 is a cross-sectional view taken along line X-X of Figure 1.
  • FIG. 11 is a schematic diagram of testing of a separate atomizing device according to Embodiment 1 of the present disclosure.
  • FIG. 12 is an exploded perspective view of a separate atomization device according to Embodiment 2 of the present disclosure.
  • FIG. 1 to FIG. 12 are embodiments of the present disclosure. It should be noted that the related embodiments refer to the related quantities and appearances of the drawings, and only specifically describe the implementation of the present disclosure. The manner in which the present disclosure is disclosed is not intended to limit the scope of the disclosure.
  • the present embodiment discloses a separate atomization device 100 , especially a separate atomization device 100 suitable for medical or cosmetic use, but the present disclosure does not. Limited by this.
  • the separate atomizing device 100 includes an atomizing base 1, a cable connector 2 fixed to the atomizing base 1, and a detachably mounted to the atomizing base 1
  • the container 3, and the above-mentioned atomization base 1 and the container 3 are structurally connected, not electrically connected.
  • the container 3 of the present embodiment is described in combination with the atomizing base 1 and the cable connector 2, but the disclosure is not limited thereto.
  • the container 3 may be used alone or in combination with other components.
  • the atomization base 1 includes a base 11 , a vibrator 12 on the base 11 , and a top seat 13 mounted on the base 11 .
  • the mounting portion 111 is internally formed with a mounting chamber 111, an atomizing chamber 112, and a communication hole 113 connecting the mounting chamber 111 and the atomizing chamber 112, and the inner diameter and atomization of the mounting chamber 111.
  • the inner diameter of the chamber 112 is larger than the diameter of the communication hole 113.
  • the position of the mounting chamber 111 corresponds to the container 3 described above, and the position of the atomizing chamber 112 is away from the container 3.
  • the base 11 includes a tubular structure 11a and a plate-like structure 11b integrally connected to the tubular structure 11a.
  • the inner edge of the tubular structure 11a is formed with the mounting chamber 111 and the mist.
  • the plate chamber 11 and the communication hole 113 are formed, and the plate-like structure 11b is formed to extend in a position corresponding to the tubular structure 11a of the mounting chamber 111.
  • the plate-like structure 11b is recessed to form a wire groove 114, and the wire groove 114 communicates with the mounting cavity 111 of the tubular structure 11a.
  • the vibrator 12 is disposed in the mounting chamber 111 of the base 11, and the vibrator 12 is annular (eg, annular) and includes a carrier in this embodiment.
  • the sheet 121 and a vibration piece 122 fixed to the carrier sheet 121 and having an annular shape, but in other embodiments not shown in the present disclosure, the shape of the vibration piece 122 can be adjusted according to design requirements (eg, a circle) Shape or square).
  • the vibrator 12 is illustrated in the present embodiment by a two-piece carrier sheet 121 and a vibrating sheet 122, but the disclosure is not limited thereto.
  • the vibrator 12 can also be a one-piece member.
  • the carrier sheet 121 includes a first surface 1211 and a second surface 1212 on opposite sides, and the carrier sheet 121 is formed to protrude.
  • a top abutting portion 1213 of the first surface 1211, and the second surface 1212 of the carrier sheet 121 is a communication hole 113 facing the base 11.
  • the position of the abutting portion 1213 corresponds to the communication hole 113 of the base 11, and the inner edge of the abutting portion 1213 is formed with a through hole 1214 communicating with the communication hole 113.
  • the hole wall of the communication hole 113 is projected toward the projection surface 121 in a height direction H, which is formed on the top abutting portion 1213 and surrounds the outer side of the through hole 1214.
  • the vibration piece 122 is fixed to the second surface 1212 of the carrier sheet 121, and the vibration piece 122 is spaced apart from the inner surface of the mounting chamber 111.
  • the inner diameter of the vibrating piece 122 is larger than the outer diameter of the top abutting portion 1213, and the outer diameter of the vibrating piece 122 is smaller than the outer diameter of the supporting piece 121, and the portion of the supporting piece 121 fixed by the vibrating piece 122 is surrounded by the top.
  • the vibrating piece 122 includes two electrodes 1221, and the two electrodes 1221 are located on the surface of the vibrating piece 122 away from the carrier sheet 121 (eg, the bottom surface of the vibrating piece 122 in FIG. 5), but the present disclosure is not Limited to this.
  • the two electrodes 1221 may also be located on opposite surfaces of the vibration plate 122, respectively.
  • the vibrator 12 is sandwiched between the base 11 and the top seat 13 by its outer edge portion.
  • the top seat 13 is detachably mountable to the base 11 in the height direction H, and the top seat 13 includes a tubular housing 13a and a pressing housing 13b integrally connected to the tubular housing 13a.
  • the tubular housing 13a of the above-mentioned top seat 13 is assembled to the tubular structure 11a of the above-mentioned base 11, and the tubular housing 13a and the tubular structure 11a are respectively formed with mutually corresponding configurations for jointly clamping the vibrator 12 .
  • the specific configuration of the base 11 and the top seat 13 of the present embodiment for clamping the vibrator 12 will be described below, but the disclosure is not limited thereto.
  • the base 11 (on the top of the tubular structure 11a) is formed with a plurality of positioning posts 115, and the top seat 13 (at the bottom of the tubular housing 13a) is formed with a plurality of fixed tubes 131,
  • the outer edge portion of the carrier sheet 121 is embedded in the plurality of positioning posts 115, and the plurality of positioning posts 115 are respectively inserted into the plurality of fixing tubes 131, so that the plurality of fixing tubes 131 are pressed against the outer edge of the carrier sheet 121.
  • the base 11 and the top seat 13 of the present disclosure are not limited to the above configuration; for example, in other embodiments not shown in the present disclosure, the plurality of positioning posts 115 may also be formed on the base 11.
  • a plurality of fixed tubes 131 are formed on the top seat 13.
  • the plate-like structure 11b of the base 11 houses a part of the cable connector 2 (such as the cable end 21 described below) in its slot 114, and the press housing of the top seat 13
  • the 13b group is connected to the plate-like structure 11b of the base 11, so that a part of the cable connector 2 can be clamped together.
  • the cable connector 2 includes a cable end 21 and a connector end 22 .
  • the cable end 21 is clamped to the base 11 and the top seat 13 , and is electrically coupled to the vibration piece 122 .
  • the two electrodes 1221, and the connector end 22 are used to be detachably connected to a power supply unit (not shown).
  • the top seat 13 can assemble the container 3 with its tubular casing 13a so that the container 3 can pass a moving distance relative to the top seat 13 when the container 3 is disposed in the top seat 13.
  • interference or compression occurs with the abutting portion 1213 (for example, the flexible film 32 of the container 3 described below is pressed against the abutting portion 1213), and the fitting structure between the top seat 13 and the container 3 can be designed according to the design requirements. Adjustments are not limited to the drawings of the embodiment.
  • the top seat 13 is recessed on the inner surface thereof (for example, the inner surface of the tubular casing 13a), and is formed with two accommodating grooves 132 each having a semi-annular shape and two communicating with the two accommodating grooves 132 respectively.
  • the limiting slots 133 (each limiting slot 133 only communicates with one receiving slot 132), and the top seat 13 defines a blocking point 134 in each limiting slot 133.
  • Each of the limiting slots 133 is located between the two receiving slots 132 , and any of the blocking points 134 is located substantially at the slot of the corresponding limiting slot 133 .
  • any one of the receiving slots 132 and the communicating limiting slot 133 thereof is 180 with respect to the central axis of the tubular housing 13a compared to the other receiving slot 132 and the limiting slot 133 communicated therewith. 2-fold rotational symmetry.
  • the container 3 includes a cup body 31, a flexible film 32 fixed to the cup body 31, and a lid body 33 detachably covering the cup body 31.
  • the inner surface of the cup body 31 is formed with an opening 311, and the other end of the cup body 31 is formed with a liquid inlet 312, and the inner diameter of the liquid inlet 312 is larger than the inner diameter of the opening 311 in this embodiment.
  • the inner diameter of the opening 311 is not smaller than the outer diameter of the abutting portion 1213 of the carrier sheet 121.
  • the cover 33 is bendably connected to the portion of the cup 31 adjacent to the liquid inlet 312 so that the cover 33 can be engaged with the cup 31 to cover the liquid inlet 312.
  • the cup body 31 is formed on its outer surface with two positioning projections 313 on the opposite sides, and in the process of mounting the cup body 31 to the top seat 13, the cup
  • the two positioning protrusions 313 of the body 31 can be respectively positioned in the two limiting slots 133 along the two receiving slots 132 and respectively spanning the two blocking points 134. That is to say, one positioning protrusion 313 is positioned between each limiting slot 133 and the corresponding blocking point 134, thereby maintaining the relative position of the cup body 31 and the top seat 13.
  • the number of the positioning protrusions 313, the accommodating groove 132, and the limiting groove 133 may be at least one, and the shape of the accommodating groove 132 is not limited to a semi-annular shape.
  • the flexible film 32 includes a tension zone 321 and an outer ring region 322 surrounding the tension zone 321, and the outer ring region 322 of the flexible film 32 is fixed to the above.
  • the cup 31 is such that the flexible film 32 covers the opening 311.
  • the tension zone 321 is circular in this embodiment and has a radius of approximately 1.5 millimeters (mm).
  • the tension zone 321 is formed with a plurality of atomizing holes 3211, and the average pore diameter of the plurality of atomizing holes 3211 may be an average pore diameter of 1 micrometer ( ⁇ m) to 10 micrometers (preferably 2.5 Micron to 5 microns), but the disclosure is not limited thereto.
  • the tension region 321 of the flexible film 32 may also be formed with a plurality of atomizing holes 3211 having an average pore diameter of 1 ⁇ m to 20 ⁇ m. It should be noted that the shape and arrangement of the plurality of atomizing holes 3211 can be adjusted according to design requirements, for example, the plurality of atomizing holes 3211 are arranged irregularly or the tension region 321 is covered. Further, the flexible film 32 of the present embodiment is described by forming a plurality of atomizing holes 3211 in the tension region 321, but it is not excluded that the outer ring region 322 other than the tension region 321 is formed with an atomizing hole.
  • the tension zone 321 of the flexible film 32 has an initial tension value of 0 in the present embodiment before the container 3 is not mounted on the atomization base 1, but the disclosure is not limited thereto.
  • the initial tension value of the tension zone 321 may also be greater than zero.
  • the outer ring region 322 of the flexible film 32 can be pressed by the atomizing seat 1, and the tension The zone 321 is increased from the initial tension value to an atomization tension value for enabling the average atomized particle size atomized through the plurality of atomizing holes 3211 of the tension zone 321 to be less than a predetermined value.
  • the atomization tension value is a force per unit area of the tension zone 321 of between 1.5 Newtons (N) and 26.5 Newtons, and each unit area refers to the area of the tension zone 321 in this embodiment (eg: 2.25 ⁇ mm 2 ); the above predetermined value may be 5 micrometers ( ⁇ m), but the present disclosure is not limited thereto.
  • the abutting portion 1213 is located in the opening 311 of the container 3, and the flexible film 32 of the container 3 is located in the mounting cavity.
  • the chamber 111 is pressed by the abutting portion 1213 to press the tension region 321 to be raised from the initial tension value to the atomization tension value for the plurality of atomizing holes passing through the tension region 321
  • the atomized average atomized particle size of 3211 can be less than 5 micrometers ( ⁇ m).
  • the flexible film 32 is pressed by the abutting portion 1213 in the height direction H, and the tension region 321 is pressed in the height direction H to be displaced by an interference distance D to
  • the tension zone 321 is raised from the initial tension value to the atomization tension value. That is, the change in the tension value of the tension zone 321 can be adjusted by the interference distance D in the present embodiment, but the present disclosure is not limited thereto.
  • the atomization tension value is a force of not less than 1.5 Newtons per unit area of the tension zone 321 Let the value be maintained at 5 microns.
  • the interference distance D is preferably between 100 micrometers and 500 micrometers, and when the interference distance D is 100 micrometers, the atomization tension is The value is a force of not less than 1.5 Newtons per unit area of the tension zone 321; when the interference distance D is 500 ⁇ m, the atomization tension value is not more than 26.5 per unit area of the tension zone 321 Newton's power.
  • the interference distance D of the present embodiment is realized by moving the container 3 such that the flexible film 32 is pressed against the top abutting portion 1213 of the atomizing seat 1, but the combination between the above-described atomizing base 1 and the container 3
  • the method can also be adjusted according to the design requirements, and is not limited to the embodiment.
  • the top abutting portion 1213 may be moved by manipulating the atomization seat 1 to be pressed against
  • the tension zone 321 of the flexible film 32 is such that the displacement of the tension zone 321 reaches the above-described interference distance D.
  • FIG. 12 is the second embodiment of the present disclosure, and the embodiment is similar to the first embodiment, so the same is true of the two embodiments (eg, the base 11 and the top seat 13 of the atomizing base 1 , The container 3 and the cable connector 2) will not be described again, and the difference between the embodiment and the first embodiment is mainly the vibrator 12.
  • the vibration piece 122 is fixed to the first surface 1211 of the carrier sheet 121 in the embodiment, and the vibration piece 122 surrounds the outer side of the top abutting portion 1213, and the second piece of the carrier piece 121
  • the surface 1212 faces the communication hole 113 of the base 11.
  • the distance of the abutting portion 1213 of the present embodiment is greater than the distance between the first surface 1211 of the carrier sheet 121 and the top abutting portion 1213 of the first embodiment compared to the carrier sheet 121.
  • the separate atomizing device and the container thereof disclosed in the embodiments of the present disclosure can independently separate the cup body and the flexible film from the atomizing seat, and set the expensive vibrator.
  • the container and the atomizing seat are matched with each other (for example, the flexible film is pressed against the abutting portion), so that the tension region can be pressed to be raised to the atomization tension value, and further A precise atomization effect can be achieved; that is, the average atomized particle size that is atomized through the plurality of atomization holes in the tension zone can be less than a predetermined value (eg, 5 micrometers).
  • the separate atomizing device disclosed in the embodiment of the present disclosure can be structurally matched between the container and the atomizing seat (for example, the positioning protrusion of the cup body can pass through the receiving groove and cross the blocking point. And positioning in the limiting slot), and stably controlling the atomization tension value of the tension zone; the vibrator can also be structurally matched with the base and the top seat (eg, the top seat and the base clamp the fixed load) The outer edge of the sheet) achieves a stable setting.
  • the flexible film of the container can further control the atomization tension value by the interference distance in the height direction (for example, when the interference distance is 100 ⁇ m, The atomization tension value is a force of not less than 1.5 Newtons per unit area of the tension zone; when the interference distance is 500 micrometers, the atomization tension value is a force of not more than 26.5 Newtons per unit area of the tension zone).

Abstract

一种分离式雾化装置及其容器,容器用以可分离地安装于一雾化座。容器包含一杯体及一可挠性薄膜。杯体的一端形成有一开孔,可挠性薄膜覆盖于杯体的开孔。可挠性薄膜包含有一张力区及围绕于张力区的一外环区,并且张力区形成有平均孔径介于1微米~20微米的多个雾化孔,而外环区固定于杯体。当杯体安装于雾化座时,可挠性薄膜的张力区能受雾化座的压迫而由一初始张力值增加到一雾化张力值,用以令穿过张力区的多个雾化孔而雾化的平均雾化粒径能够小于一预定数值。据此,常需更换的杯体与可挠性薄膜独立在雾化座外,并且价格昂贵的震动器设置于雾化座,以利于延长分离式雾化装置使用寿命。

Description

分离式雾化装置及其容器
交叉引用
本公开要求于2018年4月11日提交的申请号为62/656,343的美国临时专利申请的优先权,该美国临时专利申请的全部内容通过引用全部并入本文。
技术领域
本公开涉及一种雾化装置,尤其涉及一种分离式雾化装置及其容器。
背景技术
现有的雾化装置是用来将液体转变成雾气,以供使用者吸收。其中,现有的雾化装置常在部分组件损坏时,需要更换整个进行更换,因而将会丢弃未损坏且昂贵的组件(如:震动器)。因此,现有雾化装置需朝向组件可更换的方式研发,以利于延长雾化装置中的昂贵组件使用寿命。
然而,在现有雾化装置在朝向组件可更换方式研发的过程中,需要克服的最大难题在于:可更换的组件如何精准地搭配于上述震动器,以使雾化装置能够精准地对液体产生雾化。
于是,本公开人认为上述缺陷可改善,乃特潜心研究并配合科学原理的运用,终于提出一种设计合理且有效改善上述缺陷的本公开。
公开内容
本公开实施例在于提供一种分离式雾化装置及其容器,能有效地改善现有雾化装置所可能产生的缺陷。
本公开实施例公开一种分离式雾化装置,包括:一雾化座以及一容器,雾化器包含:一底座以及一振动器,底座内部形成有一安装腔室、一雾化腔室及连通所述安装腔室与所述雾化腔室的一连通孔;一震动器设置于所述安装腔室内,所述震动器包含有位置对应于所述连通孔的一顶抵部,并且所述顶抵部的内缘形成有连通于所述连通孔的一穿孔;一容器可分离地安装于所述雾化座,并且所述容器包含:一杯体及一可挠性薄膜,杯体一端形成有一开孔;一可挠性薄膜覆盖于所述开孔,并包含有一张力区及围绕于所 述张力区的一外环区,所述张力区形成有多个雾化孔,而所述外环区固定于所述杯体;其中,所述杯体可分离地设置于所述雾化座,并且所述可挠性薄膜位于所述安装腔室内而被所述顶抵部所压抵,以使所述张力区受压迫而由一初始张力值提升至一雾化张力值,用以令穿过所述张力区的多个所述雾化孔而雾化的平均雾化粒径能够小于5微米。
根据本公开一实施方式,所述震动器包含有:一承载片及一震动片,承载片包含有位于相反两侧的一第一表面与一第二表面,并且所述承载片形成有突伸出所述第一表面的所述顶抵部;震动片固定于所述承载片的所述第二表面,并且所述震动片与所述安装腔室的内表面呈间隔设置。
根据本公开一实施方式,所述雾化座包含有安装于所述底座的一顶座,并且所述顶座与所述底座夹持固定所述承载片的外缘部位。
根据本公开一实施方式,所述底座形成有多个定位柱,所述顶座形成有多个固定管,所述承载片的所述外缘部位嵌设于多个所述定位柱,并且多个所述定位柱分别插设于多个所述固定管,以使多个所述固定管压迫于所述承载片的所述外缘部位。
根据本公开一实施方式,所述震动片包含有两个电极,所述分离式雾化装置进一步包括有一线缆连接器,并且所述线缆连接器包含有一线缆端与一连接器端,所述线缆端夹持于所述底座与所述顶座、并电性耦接于所述震动片的两个所述电极。
根据本公开一实施方式,当所述容器设置于所述顶座时,所述容器能通过其相对于所述顶座的一移动距离而使所述可挠性薄膜被所述顶抵部所压抵。
根据本公开一实施方式,所述杯体于其外表面形成有至少一个定位凸块,所述顶座于其内表面凹设形成有至少一个容置槽以及连通于至少一个所述容置槽的至少一个限位槽,并且所述顶座于至少一个所述限位槽内形成有一挡点;其中,所述杯体的至少一个所述定位凸块能沿经至少一个所述容置槽并跨过所述挡点、而定位于至少一个所述限位槽内。
根据本公开一实施方式,所述震动器包含有:一承载片及一震动片,承载片包含有位于相反两侧的一第一表面与一第二表面,并且所述承载片形成有突伸出所述第一表面的所述顶抵部;震动片呈环状且固定于所述承载片的所述第一表面,并且所述震动片围绕于所述顶抵部的外侧。
根据本公开一实施方式,所述开孔的内径不小于所述顶抵部的外径,并且所述顶抵部的至少部分位于所述开孔内。
根据本公开一实施方式,多个所述雾化孔的平均孔径介于2.5微米~5微米,所述 初始张力值为0,而所述雾化张力值为所述张力区的每单位区域承受介于1.5牛顿(N)~26.5牛顿的力。
根据本公开一实施方式,所述可挠性薄膜沿一高度方向被所述顶抵部所压抵,并且所述张力区沿所述高度方向受压迫而位移一干涉距离,以使所述张力区由所述初始张力值提升至所述雾化张力值。
根据本公开一实施方式,所述干涉距离不小于100微米。
根据本公开一实施方式,所述初始张力值为0;并且所述雾化张力值为所述张力区的每单位区域承受不小于1.5牛顿的力。
根据本公开一实施方式,所述初始张力值为0;所述干涉距离介于100微米~500微米,当所述干涉距离为100微米时,所述雾化张力值为所述张力区的每单位区域承受不小于1.5牛顿的力;当所述干涉距离为500微米时,所述雾化张力值为所述张力区的每单位区域承受不大于26.5牛顿的力。
本公开实施例也公开一种分离式雾化装置的容器,用以可分离地安装于一雾化座,所述容器包括:一杯体及一可挠性薄膜,杯体一端形成有一开孔;可挠性薄膜覆盖于所述开孔,并包含有一张力区及围绕于所述张力区的一外环区,所述张力区形成有平均孔径介于1微米(μm)~20微米的多个雾化孔,而所述外环区固定于所述杯体;其中,当所述杯体用来安装于所述雾化座时,所述可挠性薄膜的所述外环区能受所述雾化座的压迫,使所述张力区由一初始张力值增加到一雾化张力值,用以令穿过所述张力区的多个所述雾化孔而雾化的平均雾化粒径能够小于一预定数值。
根据本公开一实施方式,所述预定数值为5微米。
根据本公开一实施方式,多个所述雾化孔的所述平均孔径介于2.5微米~5微米,所述初始张力值为0,而所述雾化张力值为所述张力区的每单位区域承受介于1.5牛顿~26.5牛顿的力。
根据本公开一实施方式,当所述杯体用来安装于所述雾化座时,所述可挠性薄膜的所述张力区能沿一高度方向受所述雾化座的压迫而位移一干涉距离,以使所述张力区自所述初始张力值增加到所述雾化张力值。
根据本公开一实施方式,所述干涉距离不小于100微米;所述初始张力值为0,所述雾化张力值为所述张力区的每单位区域承受不小于1.5牛顿的力。
根据本公开一实施方式,所述干涉距离介于100微米~500微米;所述初始张力值为0;当所述干涉距离为100微米时,所述雾化张力值为所述张力区的每单位区域承受 不小于1.5牛顿的力;当所述干涉距离为500微米时,所述雾化张力值为所述张力区的每单位区域承受不大于26.5牛顿的力。
综上所述,本公开实施例所公开的分离式雾化装置及其容器,能将常需更换的杯体与可挠性薄膜独立在雾化座之外,并且将价格昂贵的震动器设置于雾化座,据以利于延长分离式雾化装置的使用寿命。再者,所述容器与雾化座通过彼此之间的结构搭配(如:可挠性薄膜被顶抵部所压抵),以使张力区能受压迫而提升至雾化张力值,进而能达到精确的雾化效果;也就是说,使穿过张力区的多个雾化孔而雾化的平均雾化粒径能够小于预定数值(如:5微米)。
为能更进一步了解本公开的特征及技术内容,请参阅以下有关本公开的详细说明与附图,但是此等说明与附图仅用来说明本公开,而非对本公开的保护范围作任何的限制。
附图说明
图1为本公开实施例一的分离式雾化装置的立体示意图。
图2为图1的分解示意图。
图3为图1的另一视角分解示意图。
图4为图2省略容器后的分解示意图。
图5为图3省略容器后的分解示意图。
图6为图1沿剖线VI-VI的剖视示意图。
图7为图6的VII区域的局部放大示意图。
图8为本公开实施例一的容器的立体剖视示意图。
图9为图8的IX区域的局部放大示意图。
图10为图1沿剖线X-X的剖视示意图。
图11为本公开实施例一的分离式雾化装置的测试示意图。
图12为本公开实施例二的分离式雾化装置的分解示意图。
具体实施方式
请参阅图1至图12所示,其为本公开的实施例,需先说明的是,本实施例对应附图所提及的相关数量与外型,仅用来具体地说明本公开的实施方式,以便于了解本公开的内容,而非用来局限本公开的保护范围。
[实施例一]
如图1至图11所示,其为本公开的实施例一,本实施例公开一种分离式雾化装置100,尤指适用于医疗或美容的分离式雾化装置100,但本公开不受限于此。如图1至图3所示,所述分离式雾化装置100包含有一雾化座1、固定于雾化座1的一线缆连接器2及可分离地安装于上述雾化座1的一容器3,并且上述雾化座1与容器3之间为结构地连接,而非电性地连接。需额外说明的是,本实施例的容器3是以搭配于上述雾化座1与线缆连接器2来说明,但本公开不受限于此。举例来说,于本公开未绘示的其他实施例中,所述容器3也可以是单独地被运用或是搭配其他构件使用。
如图4至图6所示,所述雾化座1包含一底座11、位于所述底座11上的一震动器12及安装于上述底座11的一顶座13。其中,所述底座11内部形成有一安装腔室111、一雾化腔室112及连通上述安装腔室111与雾化腔室112的一连通孔113,并且上述安装腔室111的内径与雾化腔室112的内径皆大于所述连通孔113的孔径。所述安装腔室111的位置是对应于上述容器3,而所述雾化腔室112的位置则是远离上述容器3。
进一步地说,所述底座11于本实施例中包含有一管状结构11a及一体相连于上述管状结构11a的一板状结构11b,所述管状结构11a的内缘形成有上述安装腔室111、雾化腔室112及连通孔113,并且位置对应于上述安装腔室111的管状结构11a部位延伸形成有所述板状结构11b。其中,所述板状结构11b凹设形成有一线槽114,并且上述线槽114连通于所述管状结构11a的安装腔室111。
如图4至图6所示,所述震动器12设置于上述底座11的安装腔室111内,并且上述震动器12于本实施例中呈环状(如:圆环状)且包含有一承载片121及固定于上述承载片121且呈环状的一震动片122,但于本公开未绘示的其他实施例中,所述震动片122的形状可以依设计需求而加以调整(如:圆形或方形)。其中,所述震动器12于本实施例是以两件式的承载片121和震动片122来说明,但本公开不受限于此。举例来说,于本公开未绘示的其他实施例中,所述震动器12也可以式单件式构件。
如图4至图7所示,于本实施例中,所述承载片121包含有位于相反两侧的一第一表面1211与一第二表面1212,并且所述承载片121形成有突伸出第一表面1211的一顶抵部1213,而所述承载片121的第二表面1212是面向底座11的连通孔113。其中,所述顶抵部1213的位置对应于上述底座11的连通孔113,并且所述顶抵部1213的内缘形成有连通于上述连通孔113的一穿孔1214。换个角度来看,上述连通孔113 的孔壁朝向承载片121沿一高度方向H正投影所形成的一投影区域,其位于顶抵部1213上并围绕于穿孔1214的外侧。
再者,所述震动片122固定于上述承载片121的第二表面1212,并且震动片122与安装腔室111的内表面呈间隔设置。其中,所述震动片122的内径大于上述顶抵部1213的外径,而震动片122的外径小于承载片121的外径,并且震动片122所固定的承载片121部位是围绕于顶抵部1213的外侧。再者,所述震动片122包含有两个电极1221,并且上述两个电极1221位在远离承载片121的震动片122表面(如:图5中的震动片122底面),但本公开不受限于此。举例来说,于本公开未绘示的其他实施例中,所述两个电极1221也可以是分别位于震动片122的相反两个表面上。
进一步地说,所述震动器12于本实施例中是以其外缘部位夹持于上述底座11与顶座13之间。其中,所述顶座13能够沿所述高度方向H可分离地安装于底座11,并且顶座13包含有一管状壳体13a及一体相连于上述管状壳体13a的一压制壳体13b。上述顶座13的管状壳体13a组接于上述底座11的管状结构11a,并且所述管状壳体13a与管状结构11a分别形成有彼此相对应的构造,据以共同夹持所述震动器12。以下接着说明本实施例的底座11与顶座13用来夹持震动器12的具体构造,但本公开并不以此为限。
于本实施例中,所述底座11(于管状结构11a的顶部)形成有多个定位柱115,所述顶座13(于管状壳体13a的底部)形成有多个固定管131,所述承载片121的外缘部位嵌设于上述多个定位柱115,并且多个定位柱115分别插设于多个固定管131,以使多个固定管131压迫于所述承载片121的外缘部位。然而,本公开的底座11与顶座13并不以上述构造为限;举例来说,于本公开未绘示的其他实施例中,所述多个定位柱115也可以是形成于底座11,而多个固定管131则是形成于顶座13。
再者,所述底座11的板状结构11b于其线槽114内收容有所述线缆连接器2的局部(如:下述的线缆端21),并且上述顶座13的压制壳体13b组接于底座11的板状结构11b,据以能够共同夹持上述线缆连接器2的局部。其中,所述线缆连接器2包含有一线缆端21与一连接器端22,所述线缆端21夹持于上述底座11与顶座13,并电性耦接于所述震动片122的两个电极1221,而所述连接器端22则是用来可分离地连接于一供电单元(图未示)。
另,所述顶座13能以其管状壳体13a来组接容器3,以使所述容器3设置于顶座13内时,容器3能通过其相对于所述顶座13的一移动距离而与顶抵部1213产生干涉 或压迫(如:下述容器3的可挠性薄膜32被顶抵部1213所压抵),而上述顶座13与容器3间的配合构造能够依设计需求而加以调整变化,并不局限于本实施例的图式。于本实施例中。所述顶座13于其内表面(如:管状壳体13a的内表面)凹设形成有各呈半圆环状的两个容置槽132以及分别连通于上述两个容置槽132的两个限位槽133(每个限位槽133仅连通一个容置槽132),并且所述顶座13于每个限位槽133内形成有一挡点134。其中,每个限位槽133位于两个容置槽132之间,并且任一个挡点134大致位在相对应限位槽133的槽口处。换个角度来看,任一个容置槽132及其所连通的限位槽133相较于另一个容置槽132及其所连通的限位槽133是相对于管状壳体13a的中心轴呈180度旋转对称(2-fold rotational symmetry)。
如图8和图9所示,所述容器3包含一杯体31、固定于杯体31的一可挠性薄膜32及可分离地盖合于杯体31的一盖体33。其中,所述杯体31的一端形成有一开孔311,并且杯体31的另一端形成有一入液口312,而上述入液口312的内径于本实施例中大于开孔311的内径,所述开孔311的内径不小于上述承载片121的顶抵部1213外径。所述盖体33可弯折地连接于邻近入液口312的杯体31部位,以使盖体33能够扣合于杯体31而覆盖上述入液口312。
再者,如图2和图10所示,所述杯体31于其外表面形成有位于相反侧的两个定位凸块313,并且在上述杯体31安装于顶座13的过程中,杯体31的两个定位凸块313能分别沿经两个容置槽132并分别跨过两个挡点134、而分别定位于两个限位槽133内。也就是说,每个限位槽133与相对应的挡点134之间定位有一个所述定位凸块313,据以维持所述杯体31与顶座13的相对位置。此外,上述定位凸块313、容置槽132及限位槽133的数量也可以各为至少一个,并且所述容置槽132的形状不受限于半圆环状。
如图8和图9所示,所述可挠性薄膜32包含有一张力区321及围绕于所述张力区321的一外环区322,并且可挠性薄膜32的外环区322固定于上述杯体31,以使可挠性薄膜32覆盖于所述开孔311。其中,所述张力区321于本实施例中呈圆形且其半径大致为1.5毫米(mm)。再者,所述张力区321形成有多个雾化孔3211,并且上述多个雾化孔3211的平均孔径可以是平均孔径介于1微米(μm)~10微米的(较佳是介于2.5微米~5微米),但本公开不受限于此。举例来说,所述可挠性薄膜32的张力区321也可以是形成有平均孔径介于1微米~20微米的多个雾化孔3211。需额外说明的是,上述多个雾化孔3211的形状与排列方式可以依据设计需求而调整, 如:多个雾化孔3211呈不规则排列、或是布满张力区321。此外,本实施例的可挠性薄膜32是以张力区321形成有多个雾化孔3211来说明,但并不排除张力区321以外的外环区322形成有雾化孔。
在所述容器3尚未安装于雾化座1之前,所述可挠性薄膜32的张力区321于本实施例中具有数值为0的一初始张力值,但本公开不以此为限。举例来说,在本公开未绘示的其他实施例中,所述张力区321的初始张力值也可以大于0。再者,如图6和图7所示,当所述容器3安装于雾化座1之后,所述可挠性薄膜32的外环区322能受所述雾化座1的压迫,而张力区321由上述初始张力值增加到一雾化张力值,用以令穿过所述张力区321的多个雾化孔3211而雾化的平均雾化粒径能够小于一预定数值。
其中,上述雾化张力值为所述张力区321的每单位区域承受介于1.5牛顿(N)~26.5牛顿的力,并且每单位区域于本实施例中是指张力区321的面积(如:2.25πmm 2);上述预定数值可以是5微米(μm),但本公开不受限于此。
更详细地说,当所述容器3安装于雾化座1之后,所述顶抵部1213的至少部分位于容器3的开孔311内,并且上述容器3的可挠性薄膜32位于上述安装腔室111内而被顶抵部1213所压抵,以使所述张力区321受压迫而由初始张力值提升至雾化张力值,用以令穿过所述张力区321的多个雾化孔3211而雾化的平均雾化粒径能够小于5微米(μm)。
其中,所述可挠性薄膜32于本实施例中是沿高度方向H被所述顶抵部1213所压抵,并且所述张力区321沿高度方向H受压迫而位移一干涉距离D,以使所述张力区321由上述初始张力值提升至雾化张力值。也就是说,所述张力区321的张力值变化于本实施例中可以通过干涉距离D来调整,但本公开不受限于此。
于本实施例中,所述干涉距离D在被控制于不小于100微米时,所述雾化张力值为所述张力区321的每单位区域承受不小于1.5牛顿的力,据以使上述预设数值能够维持在5微米。
更进一步地说,依据实际测试的结果(如:图11),所述干涉距离D较佳是介于100微米~500微米,并且当所述干涉距离D为100微米时,所述雾化张力值为所述张力区321的每单位区域承受不小于1.5牛顿的力;当所述干涉距离D为500微米时,所述雾化张力值为所述张力区321的每单位区域承受不大于26.5牛顿的力。
此外,本实施例的干涉距离D是通过移动上述容器3,使其可挠性薄膜32压迫 于雾化座1的顶抵部1213来实现,但上述雾化座1与容器3之间的组合方式也可以视设计需求而加以调整变化,并不受限于本实施例所载。举例来说,在本公开未绘示的其他实施例中,当所述容器3安装于雾化座1之后,可以是通过操控上述雾化座1而移动顶抵部1213,使其压迫于可挠性薄膜32的张力区321,以使张力区321的位移达到上述干涉距离D。
[实施例二]
请参阅图12所示,其为本公开的实施例二,并且本实施例与上述实施例一类似,所以两个实施例的相同处(如:雾化座1的底座11与顶座13、容器3及线缆连接器2)则不再加以赘述,而本实施例与上述实施例一的差异主要在于:震动器12。
具体来说,所述震动片122于本实施例中是固定于所述承载片121的第一表面1211,并且震动片122围绕于顶抵部1213的外侧,而所述承载片121的第二表面1212面向底座11的连通孔113。换个角度来说,在相同干涉距离D的条件下,本实施例的顶抵部1213相较于承载片121第一表面1211的距离会大于实施例一的顶抵部1213相较于承载片121第一表面1211的距离。
[本公开实施例的技术效果]
综上所述,本公开实施例所公开的分离式雾化装置及其容器,能将常需更换的杯体与可挠性薄膜独立在雾化座之外,并且将价格昂贵的震动器设置于雾化座,据以利于延长分离式雾化装置的使用寿命。进一步地说,所述容器与雾化座通过彼此之间的结构搭配(如:可挠性薄膜被顶抵部所压抵),以使张力区能受压迫而提升至雾化张力值,进而能达到精确的雾化效果;也就是说,使穿过张力区的多个雾化孔而雾化的平均雾化粒径能够小于预定数值(如:5微米)。
再者,本公开实施例所公开的分离式雾化装置,其容器与雾化座之间能通过结构上的搭配(如:杯体的定位凸块能沿经容置槽并跨过挡点,而定位于限位槽内),而稳定地控制上述张力区的雾化张力值;所述震动器也能与底座、顶座通过结构上的搭配(如:顶座与底座夹持固定承载片的外缘部位)而达到稳固设置的效果。
另,本公开实施例所公开的分离式雾化装置,其容器的可挠性薄膜也可进一步通过高度方向上的干涉距离来控制其雾化张力值(如:当干涉距离为100微米时,雾化张力值为张力区的每单位区域承受不小于1.5牛顿的力;当干涉距离为500微米时,雾化张力值为张力区的每单位区域承受不大于26.5牛顿的力)。
以上所公开的内容仅为本公开的优选可行实施例,并非因此局限本公开的专利范 围,所以凡是运用本公开说明书及图式内容所做的等效技术变化,均包含于本公开的专利范围内。

Claims (20)

  1. 一种分离式雾化装置,其特征在于,所述分离式雾化装置包括:
    一雾化座,包含:
    一底座,内部形成有一安装腔室、一雾化腔室及连通所述安装腔室与所述雾化腔室的一连通孔;及
    一震动器,设置于所述安装腔室内,所述震动器包含有位置对应于所述连通孔的一顶抵部,并且所述顶抵部的内缘形成有连通于所述连通孔的一穿孔;以及
    一容器,可分离地安装于所述雾化座,并且所述容器包含:
    一杯体,一端形成有一开孔;及
    一可挠性薄膜,覆盖于所述开孔,并包含有一张力区及围绕于所述张力区的一外环区,所述张力区形成有多个雾化孔,而所述外环区固定于所述杯体;
    其中,所述杯体可分离地设置于所述雾化座,并且所述可挠性薄膜位于所述安装腔室内而被所述顶抵部所压抵,以使所述张力区受压迫而由一初始张力值提升至一雾化张力值,用以令穿过所述张力区的多个所述雾化孔而雾化的平均雾化粒径能够小于5微米。
  2. 依据权利要求1所述的分离式雾化装置,其特征在于,所述震动器包含有:
    一承载片,包含有位于相反两侧的一第一表面与一第二表面,并且所述承载片形成有突伸出所述第一表面的所述顶抵部;及
    一震动片,固定于所述承载片的所述第二表面,并且所述震动片与所述安装腔室的内表面呈间隔设置。
  3. 依据权利要求2所述的分离式雾化装置,其特征在于,所述雾化座包含有安装于所述底座的一顶座,并且所述顶座与所述底座夹持固定所述承载片的外缘部位。
  4. 依据权利要求3所述的分离式雾化装置,其特征在于,所述底座形成有多个定位柱,所述顶座形成有多个固定管,所述承载片的所述外缘部位嵌设于多个所述定位柱,并且多个所述定位柱分别插设于多个所述固定管,以使多个所述固定管压迫于所述承载片的所述外缘部位。
  5. 依据权利要求3所述的分离式雾化装置,其特征在于,所述震动片包含有两个电极,所述分离式雾化装置进一步包括有一线缆连接器,并且所述线缆连接器包含有一线缆端与一连接器端,所述线缆端夹持于所述底座与所述顶座,并电性耦接于所 述震动片的两个所述电极。
  6. 依据权利要求3所述的分离式雾化装置,其特征在于,当所述容器设置于所述顶座时,所述容器能通过其相对于所述顶座的一移动距离而使所述可挠性薄膜被所述顶抵部所压抵。
  7. 依据权利要求3所述的分离式雾化装置,其特征在于,所述杯体于其外表面形成有至少一个定位凸块,所述顶座于其内表面凹设形成有至少一个容置槽以及连通于至少一个所述容置槽的至少一个限位槽,并且所述顶座于至少一个所述限位槽内形成有一挡点;其中,所述杯体的至少一个所述定位凸块能沿经至少一个所述容置槽并跨过所述挡点,而定位于至少一个所述限位槽内。
  8. 依据权利要求1所述的分离式雾化装置,其特征在于,所述震动器包含有:
    一承载片,包含有位于相反两侧的一第一表面与一第二表面,并且所述承载片形成有突伸出所述第一表面的所述顶抵部;及
    一震动片,呈环状且固定于所述承载片的所述第一表面,并且所述震动片围绕于所述顶抵部的外侧。
  9. 依据权利要求1所述的分离式雾化装置,其特征在于,所述开孔的内径不小于所述顶抵部的外径,并且所述顶抵部的至少部分位于所述开孔内。
  10. 依据权利要求1所述的分离式雾化装置,其特征在于,多个所述雾化孔的平均孔径介于2.5微米~5微米,所述初始张力值为0,而所述雾化张力值为所述张力区的每单位区域承受介于1.5牛顿~26.5牛顿的力。
  11. 依据权利要求1所述的分离式雾化装置,其特征在于,所述可挠性薄膜沿一高度方向被所述顶抵部所压抵,并且所述张力区沿所述高度方向受压迫而位移一干涉距离,以使所述张力区由所述初始张力值提升至所述雾化张力值。
  12. 依据权利要求11所述的分离式雾化装置,其特征在于,所述干涉距离不小于100微米。
  13. 依据权利要求12所述的分离式雾化装置,其特征在于,所述初始张力值为0;并且所述雾化张力值为所述张力区的每单位区域承受不小于1.5牛顿的力。
  14. 依据权利要求11所述的分离式雾化装置,其特征在于,所述初始张力值为0;所述干涉距离介于100微米~500微米,当所述干涉距离为100微米时,所述雾化张力值为所述张力区的每单位区域承受不小于1.5牛顿的力;当所述干涉距离为500微米时,所述雾化张力值为所述张力区的每单位区域承受不大于26.5牛顿的力。
  15. 一种分离式雾化装置的容器,其特征在于,所述容器用以可分离地安装于一雾化座,所述容器包括:
    一杯体,一端形成有一开孔;以及
    一可挠性薄膜,覆盖于所述开孔,并包含有一张力区及围绕于所述张力区的一外环区,所述张力区形成有平均孔径介于1微米~20微米的多个雾化孔,而所述外环区固定于所述杯体;
    其中,当所述杯体用来安装于所述雾化座时,所述可挠性薄膜的所述外环区能受所述雾化座的压迫,使所述张力区而由一初始张力值增加到一雾化张力值,用以令穿过所述张力区的多个所述雾化孔而雾化的平均雾化粒径能够小于一预定数值。
  16. 依据权利要求15所述的分离式雾化装置的容器,其特征在于,所述预定数值为5微米。
  17. 依据权利要求15所述的分离式雾化装置的容器,其特征在于,多个所述雾化孔的所述平均孔径介于2.5微米~5微米,所述初始张力值为0,而所述雾化张力值为所述张力区的每单位区域承受介于1.5牛顿~26.5牛顿的力。
  18. 依据权利要求15所述的分离式雾化装置的容器,其特征在于,当所述杯体用来安装于所述雾化座时,所述可挠性薄膜的所述张力区能沿一高度方向受所述雾化座的压迫而位移一干涉距离,以使所述张力区自所述初始张力值增加到所述雾化张力值。
  19. 依据权利要求18所述的分离式雾化装置的容器,其特征在于,所述干涉距离不小于100微米;所述初始张力值为0,所述雾化张力值为所述张力区的每单位区域承受不小于1.5牛顿的力。
  20. 依据权利要求18所述的分离式雾化装置的容器,其特征在于,所述干涉距离介于100微米~500微米;所述初始张力值为0;当所述干涉距离为100微米时,所述雾化张力值为所述张力区的每单位区域承受不小于1.5牛顿的力;当所述干涉距离为500微米时,所述雾化张力值为所述张力区的每单位区域承受不大于26.5牛顿的力。
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2021191163A1 (en) * 2020-03-24 2021-09-30 Stamford Devices Limited A vibrating aperture plate nebulizer

Families Citing this family (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
TWM565606U (zh) * 2018-04-11 2018-08-21 微邦科技股份有限公司 Atomizing liquid container and its inlet and exhaust parts
CN111701779B (zh) * 2020-06-19 2021-11-26 湖南云天雾化科技有限公司 自喷式雾化器及冷却雾化头
CN117677308A (zh) * 2021-07-21 2024-03-08 菲利普莫里斯生产公司 包括闭合构件的气溶胶生成装置

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101843944A (zh) * 2009-03-25 2010-09-29 德技股份有限公司 医用雾化装置
CN204769366U (zh) * 2015-05-15 2015-11-18 深圳市劲嘉科技有限公司 一种可更换储液组件且可智能化控制的超声波雾化装置
CN107626020A (zh) * 2016-07-19 2018-01-26 微邦科技股份有限公司 微雾化装置

Family Cites Families (28)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
AU5167000A (en) * 1999-05-27 2000-12-18 Thomas & Betts International, Inc. Compact high-efficient air heater
US6904908B2 (en) * 2002-05-21 2005-06-14 Trudell Medical International Visual indicator for an aerosol medication delivery apparatus and system
US8109266B2 (en) * 2004-02-20 2012-02-07 Pneumoflex Systems, Llc Nebulizer having flow meter function
CN101489612A (zh) * 2006-04-05 2009-07-22 微量技术有限公司 可变剂量吸入装置
AU2009286377A1 (en) * 2008-08-25 2010-03-04 Koninklijke Philips Electronics N.V. Respiratory drug delivery apparatus which provides audio instructions
US20110232636A1 (en) * 2008-12-18 2011-09-29 Koninklijke Philips Electronics, N.V. Valved holding chamber and mask therefor
WO2011083377A1 (en) * 2010-01-07 2011-07-14 Koninklijke Philips Electronics N.V. Respiratory drug delivery apparatus including a feedback and compliance device
BR112012016754B8 (pt) 2010-01-11 2021-06-22 Koninklijke Philips Electronics Nv inserto removível e aparelho para a distribuição em aerossol de uma substância
CH702769B1 (de) * 2010-02-22 2019-07-31 Reseachem Gmbh Dosiervorrichtung und Verfahren zur Dosierung eines Fluids in ein Reaktionsgefäss.
AU2011252026B2 (en) * 2010-05-13 2015-09-03 Nortev Limited Aerosol generator assembly
EP2618876B1 (en) * 2010-09-21 2018-11-14 Koninklijke Philips N.V. Valved holding chamber including valve retention system
JP5984359B2 (ja) * 2010-11-09 2016-09-06 住友化学株式会社 超音波霧化ユニット
CN201978650U (zh) * 2011-01-26 2011-09-21 杭州溢达机电制造有限公司 带限流板的吸干机分流装置
GB201108102D0 (en) 2011-05-16 2011-06-29 The Technology Partnership Plc Separable membrane improvements
CN202761854U (zh) * 2012-09-10 2013-03-06 佘文智 一种可控可调医用空气压缩式雾化器
JP6094208B2 (ja) * 2012-12-21 2017-03-15 オムロンヘルスケア株式会社 霧化装置
TWI548461B (zh) * 2014-02-21 2016-09-11 Double chamber full cover sealed piezoelectric atomization module
CN203724572U (zh) * 2014-03-03 2014-07-23 刘治学 一种新型婴幼儿医用储雾罐
CN104096301A (zh) * 2014-06-26 2014-10-15 张秀卿 一种小儿内科用雾化吸入装置
US10857313B2 (en) * 2014-07-01 2020-12-08 Aerami Therapeutics, Inc. Liquid nebulization systems and methods
CN109045425A (zh) * 2014-08-01 2018-12-21 心诚镁行动医电股份有限公司 便携式超声波雾化器及其保护结构
TWM499258U (zh) * 2014-11-25 2015-04-21 Microbase Technology Corp 可加大霧化量的霧化裝置
MX367454B (es) * 2015-02-16 2019-08-22 Microbase Technology Corp Aparato generador de aerosol con partes intercambiables.
CN205198620U (zh) * 2015-11-23 2016-05-04 心诚镁行动医电股份有限公司 便携式超声波雾化器
CN105388278B (zh) * 2015-12-04 2017-12-19 无锡市尚沃医疗电子股份有限公司 一种手持式呼吸过滤装置
TWM530186U (zh) * 2016-04-27 2016-10-11 Jing Si Pureland Co Ltd 霧化裝置
CN107096677B (zh) * 2017-04-18 2019-06-28 江苏大学 一种大雾化量的低频超声雾化装置
TWM565606U (zh) * 2018-04-11 2018-08-21 微邦科技股份有限公司 Atomizing liquid container and its inlet and exhaust parts

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101843944A (zh) * 2009-03-25 2010-09-29 德技股份有限公司 医用雾化装置
CN204769366U (zh) * 2015-05-15 2015-11-18 深圳市劲嘉科技有限公司 一种可更换储液组件且可智能化控制的超声波雾化装置
CN107626020A (zh) * 2016-07-19 2018-01-26 微邦科技股份有限公司 微雾化装置

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
See also references of EP3778037A4 *

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2021191163A1 (en) * 2020-03-24 2021-09-30 Stamford Devices Limited A vibrating aperture plate nebulizer

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