WO2024040620A1 - 雾化结构、双头雾化器和雾化器 - Google Patents

雾化结构、双头雾化器和雾化器 Download PDF

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Publication number
WO2024040620A1
WO2024040620A1 PCT/CN2022/115448 CN2022115448W WO2024040620A1 WO 2024040620 A1 WO2024040620 A1 WO 2024040620A1 CN 2022115448 W CN2022115448 W CN 2022115448W WO 2024040620 A1 WO2024040620 A1 WO 2024040620A1
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WO
WIPO (PCT)
Prior art keywords
atomization
water tank
mist
sliding cover
piece
Prior art date
Application number
PCT/CN2022/115448
Other languages
English (en)
French (fr)
Inventor
翟凌
Original Assignee
翟凌
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 翟凌 filed Critical 翟凌
Publication of WO2024040620A1 publication Critical patent/WO2024040620A1/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
    • 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
    • A61M35/00Devices for applying media, e.g. remedies, on the human body
    • A61M35/20Non-portable devices, e.g. spraying booths

Definitions

  • the present application relates to the technical field of atomizers, and in particular to an atomization structure, a double-head atomizer and an atomizer.
  • this application provides an atomization structure, a double-head atomizer and an atomizer to solve the problem of mist caused by the atomizer in the prior art when it is filled with solutions such as skin-beautifying solution or functional solution. Carburetor leakage problem.
  • an atomization structure including: a water tank, a sealing component, an atomizing sheet and a driving component; wherein,
  • the water tank is provided with a water inlet and a water outlet, and the water inlet is used to connect the water tank;
  • the atomization piece is connected to and seals the water outlet.
  • the atomization piece is provided with a plurality of atomization holes, and the plurality of atomization holes form a mist discharge area on the atomization piece;
  • the sealing component is arranged in the water tank and corresponds to the mist discharge area
  • the driving component is used to control the displacement of the atomizing sheet or the sealing component so that the sealing component contacts the mist emitting area, which is impermeable to water.
  • the atomization structure further includes a spring.
  • a spring groove is provided on the outer periphery of the side wall of the water tank. The spring is disposed in the spring groove and one end of the spring is in contact with the top side wall of the spring groove, and the other end is in contact with the top side wall of the spring groove. The bottom side walls of the spring groove are in contact.
  • the driving assembly includes a pressure plate, the pressure plate is provided with a connection portion for rotationally connecting the atomizer housing, the pressure plate is provided with a first mist outlet hole, and one side of the pressure plate is in contact with the atomizer sheet. Connected, and the first mist outlet hole corresponds to the mist outlet area.
  • the driving assembly further includes a rocker plate, the rocker plate is connected to the connecting part, the connecting part is located between the first mist outlet and the rocker plate, and the top and side walls of the rocker plate are provided with There are pressure grooves.
  • the driving assembly includes a pressure ring and a ring gear.
  • the pressure ring is provided with external threads
  • the ring gear is provided with internal threads
  • the pressure ring is provided with a second mist outlet hole
  • the pressure ring is provided with an internal thread.
  • the side is in contact with the atomization piece, and the second mist outlet hole corresponds to the mist outlet area.
  • the pressure ring and the ring gear are connected through internal threads and external threads.
  • the pressure ring is also provided with a pressure rib, the pressure rib is connected to the external thread, and the bottom of the pressure rib is in contact with the top side wall of the water tank.
  • the driving assembly includes an active magnet
  • the sealing assembly has a telescopic end
  • a passive magnet is provided inside the telescopic end; when the active magnet is controlled to move to the mist area, the active magnet and the The passive magnet generates magnetic attraction so that the telescopic end seals the mist emitting area.
  • the sink includes a base and a splicing part, and the splicing part is made of elastic material;
  • a limiting ring is provided on the splicing part, a limiting wall is provided on the outer circumference of the limiting ring, and the limiting wall is provided with a gap.
  • the atomizing piece is installed on the limiting ring. The atomizing piece The terminals protrude from the notch.
  • this application also proposes a double-head atomizer, including a housing, a mounting base, a first water tank, a second water tank, a first switch, a second switch and a Two of the above atomization structures; among them,
  • the first water tank, the second water tank and the mounting base are all arranged in the housing; the two atomization structures are arranged on the mounting base; the first switch and the second switch are respectively Slidingly connected to the housing;
  • a water inlet of the atomization structure is connected to the first water tank, and its driving component is connected to the first switch;
  • the water inlet of the other atomization structure is connected to the second water tank, and its driving component is connected to the second switch.
  • the two atomization structures are a first atomization structure and a second atomization structure respectively
  • the housing includes a bottom shell and an upper cover
  • the first switch is a first sliding cover
  • the third atomization structure is a first atomization structure.
  • the second switch is the second sliding cover; among them,
  • the first atomization structure includes a first water tank, a first sealing component, a first atomization piece and a first pressure plate;
  • the first water tank is provided with a first water inlet and a first water outlet;
  • the first atomization piece is connected to and seals the first water outlet.
  • the first atomization piece is provided with a plurality of first atomization holes.
  • the plurality of first atomization holes are on the first atomization piece. Form the first fogging area;
  • the first sealing component is arranged in the first water tank and corresponds to the first mist discharge area
  • the first pressure plate is provided with a first connecting portion, the first pressure plate is provided with a third mist outlet, one side of the first pressure plate is in contact with the first atomization piece, and the third outlet is The fog hole corresponds to the first fogging area;
  • the second atomization structure includes a second water tank, a second sealing component, a second atomization sheet and a second pressure plate;
  • the second water tank is provided with a second water inlet and a second water outlet;
  • the second atomization piece is connected to and seals the second water outlet.
  • the second atomization piece is provided with a plurality of second atomization holes.
  • the plurality of second atomization holes are on the second atomization piece.
  • the second sealing component is arranged in the second water tank and corresponds to the second mist discharge area
  • the second pressure plate is provided with a second connection portion, the second pressure plate is provided with a fourth mist outlet, one side of the second pressure plate is in contact with the second atomization piece, and the fourth outlet is The mist hole corresponds to the second mist emitting area;
  • the upper cover covers the bottom shell, and the mounting base is connected between the bottom shell and the upper cover, forming a first water tank located on one side of the mounting base and a second water tank located on the mounting base.
  • the first water tank and the second water tank are both connected to the mounting base, and the first water inlet is connected to the first water tank, and the second water inlet is connected to the second water tank;
  • the upper cover is provided with a first sliding cover connection structure and a second sliding cover connection structure.
  • the first sliding cover connection structure is provided with a first through hole, a first clamping portion, a first guide groove, and a first slide groove. and a second slide groove, the first through hole corresponding to the first atomization piece;
  • the second sliding cover connection structure is provided with a second through hole, a second clamping portion, a second guide groove, a third
  • the chute and the fourth chute, the second through hole corresponds to the second atomization piece;
  • the bottom of the first sliding cover is provided with a first slide block, a second slide block and a first rib;
  • the The bottom of the second sliding cover is provided with a third slider, a fourth slider and a second rib;
  • the first slider is slidably connected to the first chute, the second slider is slidably connected to the second chute, and the first connection part is rotationally connected to the first snap-in part;
  • the third The slider is slidably connected to the third chute, the fourth slider is slidably connected to the fourth chute, and the second connection part is rotationally connected to the second snap-in part;
  • the first sliding cover squeezes the first pressure plate through the first convex rib to control the displacement of the first atomization piece so that the first sealing component contacts the first mist emitting area.
  • a mist-out area is impermeable to water;
  • the second sliding cover squeezes the second pressure plate through the second convex rib to control the displacement of the second atomization piece, so that the second sealing component abuts the second
  • the second fogging area is impermeable to water.
  • the two atomization structures are a first atomization structure and a second atomization structure respectively
  • the housing includes a bottom shell and an upper cover
  • the first switch is a first sliding cover
  • the second switch is the second sliding cover; among them,
  • the first atomization structure includes a first water tank, a first sealing component, a first atomization piece, a first pressure plate and a first rocker plate;
  • the first water tank is provided with a first water inlet and a first water outlet;
  • the first atomization piece is connected to and seals the first water outlet.
  • the first atomization piece is provided with a plurality of first atomization holes.
  • the plurality of first atomization holes are on the first atomization piece. Form the first fogging area;
  • the first sealing component is arranged in the first water tank and corresponds to the first mist discharge area
  • the first pressure plate is provided with a first connecting portion, the first pressure plate is provided with a third mist outlet, one side of the first pressure plate is in contact with the first atomization piece, and the third outlet is The mist hole corresponds to the first mist outlet area; the first rocker plate is connected to the first connection part, and the first connection part is located between the third mist outlet hole and the first rocker plate, The top side wall of the first rocker plate is provided with a first pressing groove;
  • the second atomization structure includes a second water tank, a second sealing component, a second atomization sheet, a second pressure plate and a second rocker plate;
  • the second water tank is provided with a second water inlet and a second water outlet;
  • the second atomization piece is connected to and seals the second water outlet.
  • the second atomization piece is provided with a plurality of second atomization holes.
  • the plurality of second atomization holes are on the second atomization piece.
  • the second sealing component is arranged in the second water tank and corresponds to the second mist discharge area
  • the second pressure plate is provided with a second connection portion, the second pressure plate is provided with a fourth mist outlet, one side of the second pressure plate is in contact with the second atomization piece, and the fourth outlet is The mist hole corresponds to the second mist outlet area; the second rocker plate is connected to the second connection part, and the second connection part is located between the fourth mist outlet hole and the second rocker plate, The second rocker top side wall is provided with a second pressure groove;
  • the upper cover covers the bottom shell, and the mounting base is connected between the bottom shell and the upper cover, forming a first water tank located on one side of the mounting base and a second water tank located on the mounting base.
  • the first water tank and the second water tank are both connected to the mounting base, and the first water inlet is connected to the first water tank, and the second water inlet is connected to the second water tank;
  • the upper cover is provided with a first sliding cover connection structure and a second sliding cover connection structure.
  • the first sliding cover connection structure is provided with a first through hole, a first snap-in groove, a first accommodation groove, and a first slide groove. and a second slide groove, the first through hole corresponds to the first atomization piece, the first receiving groove has an opening leading to the first through hole, and the first engaging groove is provided at the The opening position of the first through hole;
  • the second sliding cover connection structure is provided with a second through hole, a second clamping groove, a second receiving groove, a third slide groove and a fourth slide groove.
  • the hole corresponds to the second atomization sheet, the second receiving groove has an opening leading to the second through hole, and the second snap-in groove is provided at the opening position of the second through hole;
  • the bottom of the first sliding cover is provided with a first sliding block, a second sliding block and a first pressing block;
  • the bottom of the second sliding cover is provided with a third sliding block, a fourth sliding block and a second pressing block;
  • the first slider is slidingly connected to the first chute
  • the second slider is slidingly connected to the second chute
  • the first connecting part is rotatably connected to the first snap-in groove
  • the first The rocker is located in the first receiving groove
  • the third slider is slidingly connected to the third chute
  • the fourth slider is slidingly connected to the fourth chute
  • the second connecting part is rotationally connected to the A second locking groove
  • the second rocker is located in the second receiving groove.
  • the two atomization structures are a first atomization structure and a second atomization structure respectively
  • the housing includes a bottom shell and an upper cover
  • the first switch is a first sliding cover
  • the second switch is the second sliding cover; among them,
  • the first atomization structure includes a first water tank, a first sealing component, a first atomization piece, a first pressure ring and a first ring gear;
  • the first water tank is provided with a first water inlet and a first water outlet;
  • the first atomization piece is connected to and seals the first water outlet.
  • the first atomization piece is provided with a plurality of first atomization holes.
  • the plurality of first atomization holes are on the first atomization piece. Form the first fogging area;
  • the first sealing component is arranged in the first water tank and corresponds to the first mist discharge area
  • the first pressure ring is provided with a first external thread
  • the first ring gear is provided with a first internal thread
  • the first pressure ring is provided with a fifth mist outlet
  • one side of the first pressure ring is connected to
  • the first atomization piece is in contact with each other, and the fifth mist outlet hole corresponds to the first mist outlet area.
  • the first pressure ring and the first ring gear pass through the first internal thread and the second external thread. Threaded connection;
  • the second atomization structure includes a second water tank, a second sealing component, a second atomization piece, a second pressure ring and a second ring gear;
  • the second water tank is provided with a second water inlet and a second water outlet;
  • the second atomization piece is connected to and seals the second water outlet.
  • the second atomization piece is provided with a plurality of second atomization holes.
  • the plurality of second atomization holes are on the second atomization piece.
  • the second sealing component is arranged in the second water tank and corresponds to the second mist discharge area
  • the second pressure ring is provided with a second external thread
  • the second ring gear is provided with a second internal thread
  • the second pressure ring is provided with a sixth mist outlet
  • one side of the second pressure ring is connected to
  • the second atomization piece is in contact with each other, and the sixth mist outlet hole corresponds to the second mist outlet area.
  • the second pressure ring and the second ring gear pass through the second internal thread and the second external thread. Threaded connection;
  • the upper cover covers the bottom shell, and the mounting base is connected between the bottom shell and the upper cover, forming a first water tank located on one side of the mounting base and a second water tank located on the mounting base.
  • the first water tank and the second water tank are both connected to the mounting base, and the first water inlet is connected to the first water tank, and the second water inlet is connected to the second water tank;
  • the upper cover is provided with a first sliding cover connection structure and a second sliding cover connection structure.
  • the first sliding cover connection structure is provided with a first through hole, a first slide groove and a second slide groove.
  • the first through hole is provided with a first slide groove and a second slide groove.
  • the hole corresponds to the first atomization piece, and the side wall of the first through hole has an opening connected to the first chute;
  • the second sliding cover connection structure is provided with a second through hole and a third chute.
  • the second through hole corresponds to the second atomizer sheet, and the side wall of the second through hole has an opening communicating with the second chute;
  • the bottom of the first sliding cover is provided with There are a first slide block and a second slide block, and the first slide block is provided with a first rack;
  • the bottom of the second slide cover is provided with a third slide block and a fourth slide block, and the third slide block There is a second rack on the top;
  • the first slider is slidably connected to the first chute
  • the second slider is slidably connected to the second chute
  • the first rack is engaged with the first ring gear
  • the third slider is slidably connected to the second chute.
  • the block is slidingly connected to the third chute
  • the fourth slider is slidingly connected to the fourth chute
  • the second rack is engaged with the second ring gear;
  • the first sliding cover drives the first ring gear to rotate through the first rack, and then drives the first pressure ring to rotate, controlling the displacement of the first atomization piece, so that the first sealing component resists Connected to the first fogging area, which is impermeable to water;
  • the second sliding cover drives the second ring gear to rotate through the second rack, and then drives the second pressure ring to rotate,
  • the displacement of the second atomizing sheet is controlled so that the second sealing component contacts the second mist-emitting area, and the second mist-emitting area is impermeable to water.
  • the two atomization structures are a first atomization structure and a second atomization structure respectively
  • the housing includes a bottom shell and an upper cover
  • the first switch is a first sliding cover
  • the second switch is the second sliding cover; among them,
  • the first atomization structure includes a first water tank, a first sealing component, a first atomization sheet and a first active magnet;
  • the first water tank is provided with a first water inlet and a first water outlet;
  • the first atomization piece is connected to and seals the first water outlet.
  • the first atomization piece is provided with a plurality of first atomization holes.
  • the plurality of first atomization holes are on the first atomization piece. Form the first fogging area;
  • the first sealing component is arranged in the first water tank and corresponds to the first mist discharge area
  • the first sealing component has a first telescopic end, and a first passive magnet is provided inside the first telescopic end;
  • the second atomization structure includes a second water tank, a second sealing component, a second atomization sheet and a third Two active magnets;
  • the second water tank is provided with a second water inlet and a second water outlet;
  • the second atomization piece is connected to and seals the second water outlet.
  • the second atomization piece is provided with a plurality of second atomization holes.
  • the plurality of second atomization holes are on the second atomization piece.
  • the second sealing component is arranged in the second water tank and corresponds to the second mist discharge area
  • the second sealing component has a second telescopic end, and a second passive magnet is provided inside the second telescopic end;
  • the upper cover covers the bottom shell, and the mounting base is connected between the bottom shell and the upper cover, forming a first water tank located on one side of the mounting base and a second water tank located on the mounting base.
  • the first water tank and the second water tank are both connected to the mounting base, and the first water inlet is connected to the first water tank, and the second water inlet is connected to the second water tank;
  • the upper cover is provided with a first sliding cover connection structure and a second sliding cover connection structure.
  • the first sliding cover connection structure is provided with a first through hole and is connected to a first slide rail.
  • the first through hole is connected to the first sliding cover connection structure.
  • the first atomization piece corresponds to the second sliding cover connection structure and is provided with a second through hole and is connected to a second slide rail, and the second through hole corresponds to the second atomization piece;
  • the first A fifth slider is connected to the bottom of the sliding cover, and the first active magnet is connected to the fifth slider;
  • a sixth slider is connected to the bottom of the second sliding cover, and the second active magnet is connected to the On the sixth slide block;
  • the first slide rail is slidably connected to the fifth slide block, and the second slide rail is slidably connected to the sixth slide block;
  • the first active magnet moves to the mist emitting area in a controlled manner
  • the first active magnet and the second passive magnet generate magnetic attraction so that the first telescopic end seals the mist emitting area
  • the second active magnet and the second passive magnet generate magnetic attraction so that the second telescopic end seals the mist emitting area.
  • this application also proposes an atomizer, which includes the above atomization structure.
  • the atomization structure, double-head atomizer and atomizer proposed by this application wherein the atomization structure includes: a water tank, a sealing assembly, an atomization sheet and a driving assembly, the sealing assembly is arranged at the position of the water tank; the atomization structure can be used in the mist
  • the driving component controls the displacement of one of the atomizing sheet or the sealing component toward the other, that is, driving the atomizing sheet to move toward the sealing component or driving the sealing component to move toward the atomizing sheet so that the sealing component contacts the mist.
  • the fogging area on the tablet is made so that the fogging area is impermeable to water, thereby achieving the effect that the sprayer will not leak even when it is filled with solutions with strong tension and shrinkage capabilities such as skin beautifying solutions or moisturizing solutions.
  • Figure 1 is an exploded view of the structure of the atomization structure in one embodiment of the present application
  • Figure 2 is a schematic structural diagram of the pressure plate in one embodiment of the present application.
  • Figure 3 is a schematic structural diagram of the connection between the pressure plate and the rocker plate in one embodiment of the present application
  • Figure 4 is an exploded view of the structure of the pressure ring and ring gear in one embodiment of the present application
  • Figure 5 is an exploded view of the structure of the active magnet and sealing assembly in one embodiment of the present application.
  • Figure 6 is a schematic structural diagram of a sink in one embodiment of the present application.
  • Figure 7 is a schematic structural diagram of a double-head atomizer in one embodiment of the present application.
  • Figure 8 is an exploded view of the structure of a double-head atomizer in one embodiment of the present application.
  • Figure 9 is a schematic structural diagram of the upper cover in one embodiment of the present application.
  • Figure 10 is a schematic structural diagram of the first sliding cover and the second sliding cover in one embodiment of the present application.
  • Figure 11 is a structural assembly diagram of the double-head atomizer in Figure 8.
  • Figure 12 is an exploded view of the structure of a double-head atomizer in another embodiment of the present application.
  • Figure 13 is a schematic structural diagram of the upper cover in another embodiment of the present application.
  • Figure 14 is a schematic structural diagram of the upper cover in another embodiment of the present application.
  • Figure 15 is an exploded view of the structure of a double-head atomizer in another embodiment of the present application.
  • Figure 16 is a schematic structural diagram of the upper cover in another embodiment of the present application.
  • Figure 17 is a schematic structural diagram of the upper cover in another embodiment of the present application.
  • Figure 18 is a partial structural assembly diagram of the double-head atomizer in Figure 15;
  • Figure 19 is a schematic diagram of the assembly structure of the first sliding cover, the second sliding cover and the upper cover in Figure 15;
  • Figure 20 is an exploded view of the first atomization structure and the second atomization structure in an embodiment of the present application.
  • Driving component 41. Pressure plate; 411. Connection part; 412. First mist outlet; 42. Rocker plate; 421. Pressure groove; 43. Pressure ring; 431. External thread; 432. Second mist outlet; 433. Pressure rib; 44. Ring gear; 441. Internal thread; 45. Active magnet;
  • 1a the first water tank; 11a, the first base; 12a, the first splicing part; 2a, the first sealing component; 3a, the first atomization piece; 41a, the first pressure plate; 42a, the first rocker plate; 43a, the first rocker plate; A pressure ring; 44a, the first ring gear; 40a, the first sliding cover; 401a, the first slider; 4011a, the first rack; 402a, the second slider; 403a, the first rib; 404a, the first Pressing block; 405a, first active magnet;
  • 1b second water tank; 11b, second base; 12b, second splicing part; 2b, second sealing component; 3b, second atomization piece; 41b, second pressure plate; 42b, second rocker plate; 43b, second Second pressure ring; 44b, second ring gear; 40b, second sliding cover; 401b, third slider; 4011b, second rack; 402b, fourth slider; 403b, second rib; 404b, second Pressing block; 405b, second active magnet.
  • an embodiment means that a particular feature, structure or characteristic described in connection with the embodiment can be included in at least one embodiment of the present application.
  • the appearances of this phrase in various places in the specification are not necessarily all referring to the same embodiment, nor are separate or alternative embodiments mutually exclusive of other embodiments. Those skilled in the art understand, both explicitly and implicitly, that the embodiments described herein may be combined with other embodiments.
  • the first embodiment of the present application proposes an atomization structure, including: a water tank 1, a sealing assembly 2, an atomization sheet 3 and a driving assembly 4; the water tank 1 is provided with a water inlet 111 and a water outlet 126 , the water inlet 111 is used to connect the water tank; the connection method can be a direct connection (as shown in Figure 14) or an indirect connection, such as through some adapters; the water outlet 126 is usually set to be the same size as the atomizer piece 3 The same or slightly larger, so that the atomizing piece 3 can well seal the connection between the water outlet 126 and the atomizing piece 3 after connecting to the water outlet 126.
  • the connection between the atomizing piece 3 and the water outlet 126 can be through glue.
  • the multiple atomization holes form a mist area 31 on the atomization piece 3.
  • the mist area 31 is generally located at the water outlet. 126 Central.
  • the above-mentioned sealing component 2 is arranged in the water tank 1 and corresponds to the above-mentioned mist discharge area 31 , that is, directly above the sealing component 2 faces the mist discharge area 31 .
  • the driving component 4 is used to control the displacement of the atomizing sheet 3 or the sealing component 2.
  • the mist emitting area 31 on the atomizing sheet 3 corresponds to the sealing component 2, after the relative displacement between the atomizing sheet 3 and the sealing component 2, the sealing component 2 will resist.
  • the mist-out area 31 is connected, that is, the sealing component 2 seals the mist-out area 31, so that the mist-out area 31 is impermeable to water. This further ensures that the sprayer will not be able to hold water when it is filled with solutions with strong tension and shrinkage capabilities such as skin-beautifying solutions or moisturizing solutions. No leakage effect.
  • the above-mentioned driving component 4 can be a part or a combination of parts that is directly or indirectly controlled manually, or it can be a part or a combination of parts that is electrically controlled.
  • the driving component 4 can be a combination of a sliding cover and convex ribs. Some convex ribs or structures similar to the convex ribs are provided so that the convex ribs can directly press the atomizer piece 3 when the slide cover slides.
  • the above-mentioned sealing component 2 may be a structure such as a silica gel column.
  • the atomization structure may also include a spring 5.
  • the water tank 1 may be made of silicone or TPE material (thermoplastic elastomer).
  • a circle of spring grooves 124 is provided on the outer periphery of the side wall of the water tank 1, and then the spring 5 is disposed in the spring groove 124, and one end of the spring 5 is in contact with the top side wall of the spring groove 124, and the other end is in contact with the bottom side wall of the spring groove 124.
  • the water tank 1 deforms at the spring groove 124 or mainly deforms at the spring groove 124.
  • the water tank 1 After the external force of the atomizing piece 3 is removed, the water tank 1 After the external force is removed, the spring 5 returns to its original shape due to its elasticity, causing the water tank 1 to quickly return to its original shape.
  • the atomizing piece 3 and the driving assembly 4 are out of contact, and the atomizing piece 3 can work normally for spraying.
  • the water tank 1 is made of silica gel or TPE material, it itself has elastic deformation.
  • the spring 5 When the spring 5 is not provided, after the external force of the water tank 1 is removed, the water tank 1 can also return to its original shape through its own elastic deformation to make the atomization structure Spraying can be carried out normally.
  • spring 5 reduces the mechanical fatigue of water tank 1 itself, increases the service life of water tank 1, and at the same time increases the speed of water tank 1 returning to its original state.
  • the present application also proposes a second embodiment, in which the driving assembly 4 includes a pressure plate 41, and the pressure plate 41 is provided with a connection portion 411.
  • the connection portion 411 can be a connection portion provided on the pressure plate 41.
  • the pair of connecting ears are used to rotate with the atomizer shell 6.
  • the shape of the pressure plate 41 can match the atomizer piece 3.
  • the pressure plate 41 is provided with a first mist outlet hole 412. When installed, one side is connected to the atomizer shell 6.
  • the atomizing piece 3 is in contact with each other, and the first mist outlet hole 412 corresponds to the mist outlet area.
  • the atomization piece 3 is in contact with the pressure plate 41, and the atomization piece 3 will move towards the seal.
  • the component 2 is displaced to seal the mist outlet area 31.
  • the mist outlet area 31 emits mist through the first mist outlet hole 412.
  • the present application also proposes a third embodiment, in which the driving assembly 4 not only includes the pressure plate 41, but also includes a rocker 42.
  • the rocker 42 is connected to the connecting portion 411, and the connecting portion 411 is located at Between the first mist outlet 412 and the rocker plate 42, a pressure groove 421 is provided on the top side wall of the rocker plate 42.
  • the function and working principle of the pressure plate 41 are the same as those in the previous example, and will not be described again.
  • the arrangement of the rocker plate 42 forms a lever structure between the pressure plate 41 and the rocker plate 42.
  • the fulcrum of the lever structure is the above-mentioned connecting portion 411.
  • the pressure plate 41 will tilt up. At this time, the atomizer sheet 3 and sealing assembly 2 can be disengaged faster.
  • the pressing groove 421 on the rocker plate 42 provides a force point for pressing the rocker plate 42 .
  • this application also proposes a fourth embodiment, in which the driving assembly 4 includes a pressure ring 43 and a ring gear 44.
  • the pressure ring 43 is provided with external threads 431, and the ring gear 44 is provided with internal threads 441, and the pressure ring 43 is also provided with a second mist outlet 432.
  • the second mist outlet 432 is similar in structure and function to the aforementioned first mist outlet 412.
  • one side of the pressure ring 43 is in contact with the atomization piece 3 so that the second mist outlet hole 432 corresponds to the mist outlet area.
  • the pressure ring 43 and the ring gear 44 are connected through the internal thread 441 and the external thread 431.
  • the ring gear 44 It can be movably connected to the outer wall of the water tank 1, and the shell 6 of the atomizer can also limit the top of the ring gear 44, so that when the ring gear 44 rotates, the ring gear 44 will not be displaced, and the top of the ring gear 44 A circle of inwardly extending limiting wall 122 may be provided to limit the highest point of upward movement of the pressure ring 43 .
  • the outer periphery of the ring gear 44 When in use, the outer periphery of the ring gear 44 is connected through a gear or rack, for example, the gear is directly connected to the output shaft of a small drive motor, and then the outer periphery of the ring gear 44 is connected through the socketed gear to control the rotation of the ring gear 44; another example is The outer periphery of the ring gear 44 is connected through a rack to control the rotation of the ring gear 44. Since the pressure ring 43 and the ring gear 44 are connected through the internal thread 441 and the external thread 431, when the ring gear 44 rotates, the pressure ring 43 can move up and down, thus driving the mist The atomizing piece 3 moves up and down to achieve the effect of controlling the relative displacement of the atomizing piece 3 and the sealing component 2.
  • pressure ribs 433 can also be provided on the pressure ring 43, and the pressure ribs 433 are connected to the external threads 431.
  • the pressure ribs 433 can be formed by extending from the external threads 431 to the outside of the pressure ring 43, as shown in Figures 4 and 18. The bottom of the pressure rib 433 structure is in contact with the top side wall of the water tank 1. When the pressure ring 43 moves downward, the pressure rib 433 drives the water tank 1 to move downward, thereby driving the atomization piece 3 fixed on the water tank 1 to move downward.
  • the present application also proposes a fifth embodiment, in which the driving component 4 includes an active magnet 45, the sealing component 2 has a telescopic end 21, and a passive magnet 211 is provided inside the telescopic end 21.
  • the sealing component 2 can be arranged into a ring-shaped structure through elastic material, and the telescopic end 21 is connected to the middle position of the ring-shaped structure, and there are still some through holes in the middle position for water penetration.
  • the specific structure can be shown in Figure 5.
  • the magnetic force generated by the active magnet 45 and the passive magnet 211 will push the telescopic end 21. 21 is attracted to the mist emitting area 31, and causes the telescopic end 21 to seal the mist emitting area 31; when the active magnet 45 is removed, the telescopic end 21 is reset due to elastic deformation, the mist emitting area 31 is unsealed, and the atomization structure can spray normally. It is worth mentioning that the active magnet 45 will also attract the atomizer piece 3. When selecting the active magnet 45, ensure that the magnetic force between the active magnet 45 and the passive magnet 211 can cause the passive magnet 211 to displace. The magnet 45 exerts an attraction force on the atomizing piece 3 so as to prevent the atomizing piece 3 from being detached from the water tank 1 .
  • the water tank 1 includes a base 11 and a splicing part 12.
  • the splicing part 12 is made of elastic material; a limiting ring 121 is provided on the splicing part 12.
  • a limiting wall 122 is provided on the outer periphery of the limiting ring 121, and the limiting wall 122 is provided with a notch 123.
  • the atomizing piece 3 is installed on the limiting ring 121, and the terminal of the atomizing piece 3 protrudes from the notch 123.
  • the splicing part 12 can also be provided with a guide blind structure 125 to facilitate the installation of the splicing part 12. When positioning the direction of the notch 123, the assembly efficiency during product production can be improved.
  • the seventh embodiment of the present application proposes a double-head atomizer, including a housing 6, a mounting base 7, a first water tank 8, a second water tank 9, a first sliding cover 40a, and a second sliding cover. 40b and two of the above-mentioned atomization structures.
  • the first water tank 8 , the second water tank 9 and the mounting base 7 are all arranged in the housing 6 ; the two atomization structures are both arranged on the mounting base 7 .
  • the first sliding cover 40a and the second sliding cover 40b are slidingly connected to the housing 6 respectively.
  • the water inlet 111 of one of the two atomization structures is connected to the first water tank 8, and its driving assembly 4 is connected to the first sliding cover 40a.
  • the water inlet 111 of the other atomization structure is connected to the second water tank 9, and its driving assembly 4 is connected to the second sliding cover 40b.
  • the above-mentioned first water tank 8 and second water tank 9 may be independent components; they may also be formed by the outer shell 6 or the outer shell 6 and other structures.
  • the above-mentioned mounting seat 7 can be arranged on the same side of the first water tank 8 and the second water tank 9.
  • the two atomizing sheets 3 can be arranged on the top or bottom of the double-head atomizer.
  • the above-mentioned mounting seat 7 can also be It is arranged between the first water tank 8 and the second water tank 9.
  • two atomization sheets 3 can be arranged in the middle of the double-head atomizer.
  • two mounting seats 7 can be arranged, one is arranged in the double-head atomizer. The other one is arranged at the bottom of the double-headed atomizer, so that the two atomizing sheets 3 can be respectively arranged at both ends of the double-headed atomizer.
  • the mounting base 7 is used to install PCB circuit board 72, indicator light, sink 1 and other structures or components.
  • both the first switch and the second switch can be configured as a sliding switch structure such as a slider, a sliding plate or a sliding cover, and the driving assembly 4 is controlled by sliding; when the driving assembly 4 is controlled by an electric
  • the first switch and the second switch can be any conventional switches that control circuit on and off, and are used to control the driving motor circuit on and off to achieve the purpose of controlling the driving assembly 4 .
  • the present application also proposes an eighth embodiment, wherein this example is a specific description of the application of the atomization structure in the second embodiment to the double-head atomizer.
  • the double-head atomizer is provided with two atomization structures that are exactly the same as those in the previous example, namely a first atomization structure and a second atomization structure.
  • the first atomization structure includes the first water tank 1a, the first sealing component 2a, the first atomization sheet 3a and the first pressure plate 41a; the first water tank 1a has the same structure as the water tank 1 in the previous embodiment.
  • the component 2a has the same structure as the sealing component 2 in the previous embodiment
  • the first atomization piece 3a has the same structure as the atomization piece 3 in the previous embodiment
  • the first pressure plate 41a has the same structure as the pressure plate 41 in the previous embodiment.
  • the situation of the second atomization structure is similar and can be deduced by analogy, so no further details will be given.
  • the housing 6 includes a bottom case 61 and an upper cover 62.
  • the first switch is a first sliding cover 40a
  • the second switch is a second sliding cover 40b.
  • the upper cover 62 covers the bottom shell 61
  • the mounting base 7 is connected between the bottom shell 61 and the upper cover 62 , forming a shell in which the first water tank 8 is located on one side of the mounting base 7 and the second water tank 9 is located on the other side of the mounting base 7 structure, that is, the mounting seat 7 is arranged between the first water tank 8 and the second water tank 9 in the shell structure.
  • the first water tank 1a and the second water tank 1b are both connected to the mounting base 7, and the first water inlet is connected to the first water tank 8, and the second water inlet is connected to the second water tank 9.
  • the first water tank 1a may be formed by splicing the first base 11a and the first splicing part 12a
  • the second water tank 1b may be spliced and formed by the second base 11b and the second splicing part 12b.
  • the upper cover 62 is provided with a first sliding cover connection structure 621 and a second sliding cover connection structure 622.
  • the first sliding cover connection structure 621 is provided with a first through hole 6211, a first engaging portion 6212, a first guide groove 6213, and a first sliding cover connection structure 6212.
  • a slide groove 6214 and a second slide groove 6215, the first through hole 6211 corresponds to the first atomization piece 3a;
  • the second sliding cover connection structure 622 is provided with a second through hole 6221, a second clamping part 6222, a second guide
  • the groove 6223, the third slide groove 6224, the fourth slide groove 6225, and the second through hole 6221 correspond to the second atomization sheet 3b.
  • the bottom of the first sliding cover 40a is provided with a first slider 401a, a second slider 402a and a first convex rib 403a;
  • the bottom of the second sliding cover 40b is provided with a third slider 401b, a fourth slider 402b and a second convex rib. 403b;
  • the above-mentioned first guide groove 6213 is a groove provided next to the first through hole 6211, and an opening is provided on the side of the first guide groove 6213 close to the first through hole 6211.
  • the first sliding cover 40a is formed by the first through hole 6211. When the position slides toward the first guide groove 6213, the first rib 403a can slide into the first guide groove 6213 from the opening.
  • the connecting portion 411 of the first pressing plate 41a can be a pair of connecting ears, and the first engaging portion 6212 can be a pair of slots. The first pressing plate 41a is inserted into the corresponding slots through the pair of connecting ears to connect with the first sliding cover.
  • the structure 621 forms a structure in which the first pressure plate can rotate around the connecting lug.
  • the above-mentioned second guide groove 6223 is similar in structure to the first guide groove 6213 and will not be described again.
  • the first slide groove 6214 and the second slide groove 6215 are a set of mutually parallel slide grooves.
  • the first slide block 401a and the second slide block 402a at the bottom of the first slide cover 40a are both provided with buckles 66.
  • the block 401a passes through the buckle 66 from above the first slide groove 6214 to limit the lower part of the first slide block 401a to prevent the first slide block 401a from leaving the first slide groove 6214.
  • the second slide block 402a passes from above the second slide groove 6215.
  • the buckle 66 limits the lower part of the second slider 402a to prevent the second slider 402a from being separated from the second slide groove 6215, thereby achieving a sliding connection between the first slide cover 40a and the upper cover 62, thereby realizing the first slide cover 40a.
  • the connection relationship between the second sliding cover 40b and the second sliding cover connection structure 622 is similar to the connection relationship between the first sliding cover 40a and the first sliding cover connection structure 621, and can be deduced by analogy, and will not be described again.
  • the first rib 403a is located on the first pressure plate 41a, and the first pressure plate 41a is pressed to cause the first atomizing piece 3a to displace.
  • the first sliding cover When 40a is opened the first convex rib 403a slides from the first pressure plate 41a into the first guide groove 6213, the external force on the first water tank 1a is removed, and the first water tank 1a elastically deforms to reset the first atomization piece 3a;
  • the second sliding cover 40b is closed, the second convex rib 403b is located on the second pressure plate 41b, and the second pressure plate 41b is pressed to cause the second atomization piece 3b to displace.
  • the second convex rib 403b moves from The second pressure plate 41b slides up into the second guide groove 6223, the external force on the second water tank 1b is removed, and the second water tank 1b elastically deforms to reset the second atomizing piece 3b.
  • the front ends of the first convex rib 403a and the second convex rib 403b can also be provided with arc-shaped transition structures, so that the opening and closing movements of the first sliding cover 40a and the second sliding cover 40b are smoother.
  • the present application also proposes a ninth embodiment, wherein this example is a specific application of the atomization structure in the third embodiment to the double-head atomizer.
  • the double-head atomizer is provided with two atomization structures that are exactly the same as the atomization structure in the aforementioned third embodiment, that is, a first atomization structure and a second atomization structure.
  • the first atomization structure includes the first water tank 1a, the first sealing component 2a, the first atomization sheet 3a, the first pressure plate 41a and the first rocker 42a; the first water tank 1a and the water tank 1 in the previous embodiment The structure is the same.
  • the first sealing component 2a has the same structure as the sealing component 2 in the previous embodiment.
  • the first atomization sheet 3a has the same structure as the atomization sheet 3 in the previous embodiment.
  • the first pressure plate 41a has the same structure as the pressure plate 41 in the previous embodiment.
  • the first rocker plate 42a has the same structure as the rocker plate 42 in the previous embodiment.
  • the situation of the second atomization structure is similar and can be deduced by analogy, so no further details will be given.
  • the housing 6 includes a bottom case 61 and an upper cover 62.
  • the first switch is a first sliding cover 40a
  • the second switch is a second sliding cover 40b.
  • the upper cover 62 covers the bottom shell 61
  • the mounting base 7 is connected between the bottom shell 61 and the upper cover 62 , forming a shell in which the first water tank 8 is located on one side of the mounting base 7 and the second water tank 9 is located on the other side of the mounting base 7 structure, that is, the mounting seat 7 is arranged between the first water tank 8 and the second water tank 9 in the shell structure.
  • the first water tank 1a and the second water tank 1b are both connected to the mounting base 7, and the first water inlet is connected to the first water tank 8, and the second water inlet is connected to the second water tank 9.
  • the upper cover 62 is provided with a first sliding cover connection structure 621 and a second sliding cover connection structure 622.
  • the first sliding cover connection structure 621 is provided with a first through hole 6211, a first engaging groove 6216, a first receiving groove 6217, A slide groove 6214 and a second slide groove 6215, the first through hole 6211 corresponds to the first atomization piece 3a;
  • the second sliding cover connection structure 622 is provided with a second through hole 6221, a second clamping groove 6226, a second accommodation
  • the groove 6227, the third chute 6224, the fourth chute 6225, and the second through hole 6221 correspond to the second atomization sheet 3b.
  • the bottom of the first sliding cover 40a is provided with a first sliding block 401a, a second sliding block 402a and a first pressing block 404a; the bottom of the second sliding cover 40b is provided with a third sliding block 401b, a fourth sliding block 402b and a second pressing block. 404b;
  • the above-mentioned first receiving groove 6217 is a groove provided next to the first through hole 6211, and has an opening on a side close to the first through hole 6211.
  • the first engaging groove 6216 is provided at the opening position of the first receiving groove 6217.
  • the connecting portion 411 of the first pressing plate 41a is a pair of connecting ears.
  • the first clamping groove 6216 is provided with openings at both ends.
  • the first pressing plate 41a is respectively engaged with the openings and openings at both ends of the first clamping groove 6216 through the pair of connecting ears.
  • the first sliding cover connection structure 621 is rotationally connected.
  • the first rocker plate 42a is located in the first receiving groove 6217.
  • a lever structure is formed between the first pressure plate 41a and the first rocker plate 42a.
  • the fulcrum of the lever structure is the connection of the first pressure plate 41a. part 411, and the supporting structure is the first engaging groove 6216.
  • the above-mentioned second receiving groove 6227 is similar in structure to the first guide groove 6213 and will not be described again.
  • the first slide groove 6214 and the second slide groove 6215 are a set of mutually parallel slide grooves.
  • the first slide block 401a and the second slide block 402a at the bottom of the first slide cover 40a are both provided with buckles 66.
  • the block 401a passes through the buckle 66 from above the first slide groove 6214 to limit the lower part of the first slide block 401a to prevent the first slide block 401a from leaving the first slide groove 6214.
  • the second slide block 402a passes from above the second slide groove 6215. Passing through, the buckle 66 limits the lower part of the second slider 402a to prevent the second slider 402a from being separated from the second slide groove 6215, thereby achieving a sliding connection between the first slide cover 40a and the upper cover 62, thereby realizing the first slide cover 40a.
  • the connection relationship between the second sliding cover 40b and the second sliding cover connection structure 622 is similar to the connection relationship between the first sliding cover 40a and the first sliding cover connection structure 621, and can be deduced by analogy, and will not be described again.
  • the first pressure block 404a is located on the first pressure plate 41a, and the first pressure plate 41a is pressed so that the first atomization piece 3a is displaced, and the first atomization piece 3a is displaced.
  • the mist area 31 of 3a is sealed by the first sealing component 2a.
  • the first pressure block 404a When the first sliding cover 40a is opened, the first pressure block 404a is located in the pressure groove of the first rocker plate 42a, the first rocker plate 42a is pressed down and the first pressure plate 41a is tilted, the first water tank 1a elastically deforms to reset the first atomization piece 3a, and the mist discharge area 31 of the first atomization piece 3a separates from the first sealing component 2a, releasing the seal; in the closed state of the second sliding cover 40b, The second pressure block 404b is located on the second pressure plate 41b. The second pressure plate 41b is pressed so that the second atomization piece 3b is displaced. The mist outlet area 31 of the second atomization piece 3b is sealed by the second sealing component 2b.
  • the second pressure block 404b is located in the pressure groove of the second rocker plate 42b.
  • the second rocker plate 42b is pressed down and the second pressure plate 41b is tilted.
  • the second water tank 1b elastically deforms to reset the second atomization piece 3b.
  • the mist discharge area 31 of the second atomization sheet 3b is separated from the second sealing component 2b, and the sealing is released.
  • this application also proposes a tenth embodiment for the above-mentioned double-head atomizer.
  • This example is a specific description of the application of the atomization structure in the fourth embodiment to the double-head atomizer.
  • the double-head atomizer is provided with two atomization structures that are exactly the same as the atomization structure in the fourth embodiment, namely a first atomization structure and a second atomization structure.
  • the first atomization structure includes the first water tank 1a, the first sealing component 2a, the first atomization piece 3a, the first pressure ring 43a and the first ring gear 44a; the first water tank 1a and the water tank in the previous embodiment 1
  • the structure is the same.
  • the first sealing component 2a has the same structure as the sealing component 2 in the previous embodiment.
  • the first atomization piece 3a has the same structure as the atomization piece 3 in the previous embodiment.
  • the first pressure ring 43a is the same as the pressure ring in the previous embodiment. 43 has the same structure, and the first ring gear 44a has the same structure as the ring gear 44 in the previous embodiment.
  • the situation of the second atomization structure is similar and can be deduced by analogy, so no further details will be given.
  • the housing 6 includes a bottom case 61 and an upper cover 62.
  • the first switch is a first sliding cover 40a
  • the second switch is a second sliding cover 40b.
  • the upper cover 62 covers the bottom shell 61
  • the mounting base 7 is connected between the bottom shell 61 and the upper cover 62 , forming a shell in which the first water tank 8 is located on one side of the mounting base 7 and the second water tank 9 is located on the other side of the mounting base 7 structure, that is, the mounting seat 7 is arranged between the first water tank 8 and the second water tank 9 in the shell structure.
  • the first water tank 1a and the second water tank 1b are both connected to the mounting base 7, and the first water inlet is connected to the first water tank 8, and the second water inlet is connected to the second water tank 9.
  • the upper cover 62 is provided with a first sliding cover connection structure 621 and a second sliding cover connection structure 622.
  • the first sliding cover connection structure 621 is provided with a first through hole 6211, a first slide groove 6214 and a second slide groove 6215.
  • the through hole 6211 corresponds to the first atomizing sheet 3a;
  • the second sliding cover connection structure 622 is provided with a second through hole 6221, a third chute 6224 and a fourth chute 6225.
  • the second through hole 6221 is connected to the second atomizing sheet. 3b corresponds.
  • the first slider 40a is provided with a first slider 401a and a second slider 402a at the bottom.
  • the first slider 401a is provided with a first rack 4011a;
  • the second slider 40b is provided with a third slider 401b and a fourth slider at the bottom.
  • the sliding block 402b and the third sliding block 401b are provided with a second rack 4011b.
  • the first slide groove 6214 and the second slide groove 6215 are a set of mutually parallel slide grooves.
  • the first through hole 6211 is disposed between the first slide groove 6214 and the second slide groove 6215, and the first through hole 6211
  • the side wall has an opening communicating with the first chute 6214.
  • the first slider 401a and the second slider 402a at the bottom of the first slide cover 40a are both provided with buckles 66. The first slider 401a passes through the buckle 66 from above the first slide groove 6214 to the bottom of the first slider 401a.
  • the first slider 401a is limited to prevent the first slider 401a from escaping from the first slider 6214, the second slider 402a passes through the second slider 6215, and the buckle 66 limits the lower part of the second slider 402a to prevent the second slider 402a from being separated from the first slider 401a.
  • 402a is disengaged from the second slide groove 6215 to achieve a sliding connection between the first sliding cover 40a and the upper cover 62, thereby allowing the first sliding cover 40a to slide on the first sliding cover connection structure 621, and the first rack 4011a is in the first through hole 6211
  • the side wall position of is meshed with the first ring gear 44a.
  • connection relationship between the second sliding cover 40b and the second sliding cover connection structure 622 is similar to the connection relationship between the first sliding cover 40a and the first sliding cover connection structure 621, and can be deduced by analogy, and will not be described again.
  • the working principle of the first sliding cover 40a controlling the first pressure ring 43a and the first ring gear 44a through the first rack 4011a can be referred to the introduction in the fourth embodiment, and will not be described again.
  • this application also proposes an eleventh embodiment, wherein this example is a specific description of the application of the atomization structure in the fifth embodiment to the double-head atomizer,
  • the double-head atomizer is provided with two atomization structures that are exactly the same as the atomization structure in the aforementioned fifth embodiment, namely a first atomization structure and a second atomization structure.
  • the first atomization structure includes the first water tank 1a, the first sealing component 2a, the first atomization sheet 3a and the first active magnet 405a; the first water tank 1a has the same structure as the water tank 1 in the previous embodiment.
  • the sealing component 2a has the same structure as the sealing component 2 in the previous embodiment
  • the first atomization piece 3a has the same structure as the atomization piece 3 in the previous embodiment
  • the first active magnet 405a has the same structure as the active magnet 45 in the previous embodiment.
  • the situation of the second atomization structure is similar and can be deduced by analogy, so no further details will be given.
  • the housing 6 includes a bottom case 61 and an upper cover 62.
  • the first switch is a first sliding cover 40a
  • the second switch is a second sliding cover 40b.
  • the upper cover 62 covers the bottom shell 61
  • the mounting base 7 is connected between the bottom shell 61 and the upper cover 62 , forming a shell in which the first water tank 8 is located on one side of the mounting base 7 and the second water tank 9 is located on the other side of the mounting base 7 structure, that is, the mounting seat 7 is arranged between the first water tank 8 and the second water tank 9 in the shell structure.
  • the first water tank 1a and the second water tank 1b are both connected to the mounting base 7, and the first water inlet is connected to the first water tank 8, and the second water inlet is connected to the second water tank 9.
  • the upper cover 62 is provided with a first sliding cover connection structure 621 and a second sliding cover connection structure 622.
  • the first sliding cover connection structure 621 is provided with a first through hole 6211 and is connected to a first slide rail 6218.
  • the first through hole 6211 is connected to a first slide rail 6218.
  • the first atomizing piece 3a corresponds; the second sliding cover connection structure 622 is provided with a second through hole 6221 and is connected to a second slide rail 6228; the second through hole 6221 corresponds to the second atomizing piece 3b; the first sliding cover 40a A fifth slider 6219 is connected to the bottom, and the first active magnet 405a is connected to the fifth slider 6219; a sixth slider 6229 is connected to the bottom of the second sliding cover 40b, and the second active magnet 405b is connected to the sixth slider 6229. ; The first slide rail 6218 is slidingly connected to the fifth slide block 6219, and the second slide rail 6228 is slidingly connected to the sixth slide block 6229.
  • the telescopic end 21 of the first sealing component 2a Since the telescopic end 21 of the first sealing component 2a is connected through an elastic material, the magnetic force generated by the first active magnet 405a and the passive magnet 211 of the first sealing component 2a attracts the telescopic end 21 to the mist discharge area 31, and The telescopic end 21 seals the mist emitting area 31 of the first atomizing piece 3a; when the first active magnet 405a is removed, the telescopic end 21 of the first sealing component 2a resets due to elastic deformation, and the mist emitting area of the first atomizing piece 3a The sealing of area 31 is released, and the first atomization structure can spray normally. The working principle of the first atomization structure is similar and will not be described again.
  • the mounting base 7 can be made of silica gel.
  • a reinforcing plate 71 can be provided at the bottom, and the reinforcing plate 71 and the mounting base 7 can be integrally formed.
  • the silicone material is integrated into one, so that the mounting base 7 produced in this way is not easy to deform, and the sink 1 has good stability.
  • the base 11 of the sink 1 can be set on the two opposite corners of the mounting base 7, and the PCB circuit board 72 is set on the mounting base 7.
  • two magnetic switches 721 can be provided on the PCB circuit board 72, corresponding to the first atomization structure and the second atomization structure respectively.
  • the sliding cover can be provided with a strong magnet 722 that cooperates with the magnetic switch 721.
  • the strong magnet 722 is above the magnetic switch 721, and the magnetic switch 721 is attracted by the strong magnet 722.
  • the double-headed atomizer can also be equipped with anti-wear pillars 64, that is, several anti-wear pillars 64 are connected below the sliding cover.
  • the anti-wear pillars 64 are generally made of soft silicone, so that the upper cover 62 is not easily scratched when the sliding cover is slid. .
  • the upper cover 62 can also be provided with a reset buckle 63 at the position of the sliding cover connection structure. Two reset slots are provided at the bottom of each sliding cover, one corresponding to the closed position of the sliding cover, and the other corresponding to the open position of the sliding cover. When the sliding cover is closed in place, , the reset buckle 63 snaps into the reset groove, producing a "click" sound and a feedback feel at the same time. The user can know that the slide cover is closed in place according to the sound or feedback feel. The opening process is the same and will not be described again.
  • the liquid inlet of the water tank can be arranged on the side wall of the bottom shell 61 and sealed by a detachable soft plug 65. The soft plug 65 can be easily removed to add solution.

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Abstract

一种雾化结构、双头雾化器和雾化器,雾化结构包括水槽(1)、密封组件(2)、雾化片(3)以及驱动组件(4);水槽(1)设有进水口(111)和出水口(126),进水口(111)用于连接水箱;雾化片(3)连接并密封出水口(126),雾化片(3)设有多个雾化孔,多个雾化孔在雾化片(3)上形成出雾区域(31);密封组件(2)设置在水槽(1)内,并与出雾区域(31)对应;驱动组件(4)用于控制雾化片(3)或密封组件(2)位移,使得密封组件(2)抵接出雾区域(31),出雾区域(31)无法透水。雾化器不使用时密封雾化片上(3)的出雾区域(31),使喷雾器在装一些美肤溶液或者护眼、口腔溶液等张力弱的溶液时,也不会漏水。

Description

雾化结构、双头雾化器和雾化器
本申请要求于2022年8月25日提交中国专利局、申请号为202211027367.3,发明名称为“雾化结构、双头雾化器和雾化器”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
技术领域
本申请涉及雾化器技术领域,尤其涉及一种雾化结构、双头雾化器和雾化器。
背景技术
一般的雾化器大多会在其水箱中添加纯水或者天然水等使用,此时使用并无问题,但是当这些雾化器中添加的是一些美肤溶液或者功能性溶液等溶液时,由于美肤或功能性溶液中具有较多的化学元素,降低了溶液的张力,导致没有启动雾化器时,美肤溶液或者功能性溶液中会有水从雾化片上的雾化孔溢出,导致雾化器漏水,使得雾化器的使用受到局限。因此,亟需一种新的技术解决此行业痛点,以扩大雾化器的使用场景。
技术问题
有鉴于此,本申请提供了一种雾化结构、双头雾化器和雾化器,用于解决现有技术中的雾化器中装美肤溶液或者功能性溶液等溶液时,导致雾化器漏水的问题。
技术解决方案
为达上述之一或部分或全部目的或是其他目的,本申请提出一种雾化结构,包括:水槽、密封组件、雾化片以及驱动组件;其中,
所述水槽设有进水口和出水口,所述进水口用于连接水箱;
所述雾化片连接并密封所述出水口,该雾化片设有多个雾化孔,所述多个雾化孔在所述雾化片上形成出雾区域;
所述密封组件设置在所述水槽内,并与所述出雾区域对应;
所述驱动组件用于控制所述雾化片或所述密封组件位移,使得所述密封组件抵接所述出雾区域,该出雾区域无法透水。
优选的,所述雾化结构还包括弹簧,所述水槽侧壁的外周设有一圈弹簧槽,所述弹簧设置于所述弹簧槽且该弹簧一端与弹簧槽顶侧壁抵接,另一端与弹簧槽底侧壁抵接。
优选的,所述驱动组件包括压板,所述压板设有用于旋转连接雾化器外壳的连接部,所述压板上设有第一出雾孔,所述压板一侧与所述雾化片抵接,且所述第一出雾孔与所述出雾区域对应。
优选的,所述驱动组件还包括翘板,所述翘板连接所述连接部,所述连接部位于所述第一出雾孔和所述翘板之间,所述翘板顶侧壁设有压槽。
优选的,所述驱动组件包括压环和齿圈,所述压环设有外螺纹,所述齿圈设有内螺纹,所述压环上设有第二出雾孔,所述压环一侧与所述雾化片抵接,且所述第二出雾孔与所述出雾区域对应,所述压环和所述齿圈通过内螺纹和外螺纹连接。
优选的,所述压环上还设有压筋,所述压筋连接所述外螺纹,且所述压筋底部与所述水槽顶侧壁抵接。
优选的,所述驱动组件包括主动磁体,所述密封组件具有伸缩端,所述伸缩端内部设有被动磁体;所述主动磁体受控移动至所述出雾区域时,所述主动磁体和所述被动磁体产生磁吸使得所述伸缩端密封所述出雾区域。
优选的,所述水槽包括底座和拼接部,所述拼接部由弹性材料制成;
所述拼接部上设有限位环,所述限位环外周设有限位壁,且所述限位壁设有一缺口,所述雾化片安装在所述限位环上,所述雾化片的接线端由所述缺口伸出。
为达上述之一或部分或全部目的或是其他目的,本申请提出还提出一种双头雾化器,包括外壳、安装座、第一水箱、第二水箱、第一开关、第二开关和两个上述的雾化结构;其中,
所述第一水箱、所述第二水箱和所述安装座均设于所述外壳内;两个所述雾化结构均设置于所述安装座上;所述第一开关和第二开关分别与所述外壳滑动连接;
一个所述雾化结构的进水口连接所述第一水箱,其驱动组件连接第一开关;
另一所述雾化结构的进水口连接所述第二水箱,其驱动组件连接第二开关。
10.优选的,两个所述雾化结构分别为第一雾化结构和第二雾化结构,所述外壳包括底壳和上盖,所述第一开关为第一滑盖,所述第二开关为第二滑盖;其中,
所述第一雾化结构包括第一水槽、第一密封组件、第一雾化片和第一压板;
所述第一水槽设有第一进水口和第一出水口;
所述第一雾化片连接并密封所述第一出水口,该第一雾化片设有多个第一雾化孔,所述多个第一雾化孔在所述第一雾化片上形成第一出雾区域;
所述第一密封组件设置在所述第一水槽内,并与所述第一出雾区域对应;
所述第一压板设有第一连接部,所述第一压板上设有第三出雾孔,所述第一压板一侧与所述第一雾化片抵接,且所述第三出雾孔与所述第一出雾区域对应;
所述第二雾化结构包括第二水槽、第二密封组件、第二雾化片和第二压板;
所述第二水槽设有第二进水口和第二出水口;
所述第二雾化片连接并密封所述第二出水口,该第二雾化片设有多个第二雾化孔,所述多个第二雾化孔在所述第二雾化片上形成第二出雾区域;
所述第二密封组件设置在所述第二水槽内,并与所述第二出雾区域对应;
所述第二压板设有第二连接部,所述第二压板上设有第四出雾孔,所述第二压板一侧与所述第二雾化片抵接,且所述第四出雾孔与所述第二出雾区域对应;
所述上盖盖合所述底壳,所述安装座连接在所述底壳和所述上盖之间,形成第一水箱位于所述安装座一侧、且第二水箱位于所述安装座另一侧的外壳结构;
所述第一水槽和所述第二水槽均连接在所述安装座上,且所述第一进水口连接所述第一水箱,所述第二进水口连接所述第二水箱;
所述上盖设有第一滑盖连接结构和第二滑盖连接结构,所述第一滑盖连接结构设有第一通孔、第一卡接部、第一导向槽、第一滑槽和第二滑槽,所述第一通孔与所述第一雾化片对应;所述第二滑盖连接结构设有第二通孔、第二卡接部、第二导向槽、第三滑槽和第四滑槽,所述第二通孔与所述第二雾化片对应;所述第一滑盖底部设有第一滑块、第二滑块和第一凸筋;所述第二滑盖底部设有第三滑块、第四滑块和第二凸筋;
所述第一滑块滑动连接所述第一滑槽,所述第二滑块滑动连接所述第二滑槽,所述第一连接部转动连接所述第一卡接部;所述第三滑块滑动连接所述第三滑槽,所述第四滑块滑动连接所述第四滑槽,所述第二连接部转动连接所述第二卡接部;
所述第一滑盖通过所述第一凸筋挤压所述第一压板,控制所述第一雾化片位移,使得所述第一密封组件抵接所述第一出雾区域,该第一出雾区域无法透水;所述第二滑盖通过所述第二凸筋挤压所述第二压板,控制所述第二雾化片位移,使得所述第二密封组件抵接所述第二出雾区域,该第二出雾区域无法透水。
优选的,两个所述雾化结构分别为第一雾化结构和第二雾化结构,所述外壳包括底壳和上盖,所述第一开关为第一滑盖,所述第二开关为第二滑盖;其中,
所述第一雾化结构包括第一水槽、第一密封组件、第一雾化片、第一压板和第一翘板;
所述第一水槽设有第一进水口和第一出水口;
所述第一雾化片连接并密封所述第一出水口,该第一雾化片设有多个第一雾化孔,所述多个第一雾化孔在所述第一雾化片上形成第一出雾区域;
所述第一密封组件设置在所述第一水槽内,并与所述第一出雾区域对应;
所述第一压板设有第一连接部,所述第一压板上设有第三出雾孔,所述第一压板一侧与所述第一雾化片抵接,且所述第三出雾孔与所述第一出雾区域对应;所述第一翘板连接所述第一连接部,所述第一连接部位于所述第三出雾孔和所述第一翘板之间,所述第一翘板顶侧壁设有第一压槽;
所述第二雾化结构包括第二水槽、第二密封组件、第二雾化片、第二压板和第二翘板;
所述第二水槽设有第二进水口和第二出水口;
所述第二雾化片连接并密封所述第二出水口,该第二雾化片设有多个第二雾化孔,所述多个第二雾化孔在所述第二雾化片上形成第二出雾区域;
所述第二密封组件设置在所述第二水槽内,并与所述第二出雾区域对应;
所述第二压板设有第二连接部,所述第二压板上设有第四出雾孔,所述第二压板一侧与所述第二雾化片抵接,且所述第四出雾孔与所述第二出雾区域对应;所述第二翘板连接所述第二连接部,所述第二连接部位于所述第四出雾孔和所述第二翘板之间,所述第二翘板顶侧壁设有第二压槽;
所述上盖盖合所述底壳,所述安装座连接在所述底壳和所述上盖之间,形成第一水箱位于所述安装座一侧、且第二水箱位于所述安装座另一侧的外壳结构;
所述第一水槽和所述第二水槽均连接在所述安装座上,且所述第一进水口连接所述第一水箱,所述第二进水口连接所述第二水箱;
所述上盖设有第一滑盖连接结构和第二滑盖连接结构,所述第一滑盖连接结构设有第一通孔、第一卡接槽、第一容纳槽、第一滑槽和第二滑槽,所述第一通孔与所述第一雾化片对应,所述第一容纳槽具有通向所述第一通孔的开口,所述第一卡接槽设置在所述第一通孔的开口位置;所述第二滑盖连接结构设有第二通孔、第二卡接槽、第二容纳槽、第三滑槽和第四滑槽,所述第二通孔与所述第二雾化片对应,所述第二容纳槽具有通向所述第二通孔的开口,所述第二卡接槽设置在所述第二通孔的开口位置;所述第一滑盖底部设有第一滑块、第二滑块和第一压块;所述第二滑盖底部设有第三滑块、第四滑块和第二压块;
所述第一滑块滑动连接所述第一滑槽,所述第二滑块滑动连接所述第二滑槽,所述第一连接部转动连接所述第一卡接槽,所述第一翘板位于所述第一容纳槽;所述第三滑块滑动连接所述第三滑槽,所述第四滑块滑动连接所述第四滑槽,所述第二连接部转动连接所述第二卡接槽,所述第二翘板位于所述第二容纳槽。
优选的,两个所述雾化结构分别为第一雾化结构和第二雾化结构,所述外壳包括底壳和上盖,所述第一开关为第一滑盖,所述第二开关为第二滑盖;其中,
所述第一雾化结构包括第一水槽、第一密封组件、第一雾化片、第一压环和第一齿圈;
所述第一水槽设有第一进水口和第一出水口;
所述第一雾化片连接并密封所述第一出水口,该第一雾化片设有多个第一雾化孔,所述多个第一雾化孔在所述第一雾化片上形成第一出雾区域;
所述第一密封组件设置在所述第一水槽内,并与所述第一出雾区域对应;
所述第一压环设有第一外螺纹,所述第一齿圈设有第一内螺纹,所述第一压环上设有第五出雾孔,所述第一压环一侧与所述第一雾化片抵接,且所述第五出雾孔与所述第一出雾区域对应,所述第一压环和所述第一齿圈通过第一内螺纹和第二外螺纹连接;
所述第二雾化结构包括第二水槽、第二密封组件、第二雾化片、第二压环和第二齿圈;
所述第二水槽设有第二进水口和第二出水口;
所述第二雾化片连接并密封所述第二出水口,该第二雾化片设有多个第二雾化孔,所述多个第二雾化孔在所述第二雾化片上形成第二出雾区域;
所述第二密封组件设置在所述第二水槽内,并与所述第二出雾区域对应;
所述第二压环设有第二外螺纹,所述第二齿圈设有第二内螺纹,所述第二压环上设有第六出雾孔,所述第二压环一侧与所述第二雾化片抵接,且所述第六出雾孔与所述第二出雾区域对应,所述第二压环和所述第二齿圈通过第二内螺纹和第二外螺纹连接;
所述上盖盖合所述底壳,所述安装座连接在所述底壳和所述上盖之间,形成第一水箱位于所述安装座一侧、且第二水箱位于所述安装座另一侧的外壳结构;
所述第一水槽和所述第二水槽均连接在所述安装座上,且所述第一进水口连接所述第一水箱,所述第二进水口连接所述第二水箱;
所述上盖设有第一滑盖连接结构和第二滑盖连接结构,所述第一滑盖连接结构设有第一通孔、第一滑槽和第二滑槽,所述第一通孔与所述第一雾化片对应,所述第一通孔的侧壁具有连通所述第一滑槽的开口;所述第二滑盖连接结构设有第二通孔、第三滑槽和第四滑槽,所述第二通孔与所述第二雾化片对应,所述第二通孔的侧壁具有连通所述第二滑槽的开口;所述第一滑盖底部设有第一滑块和第二滑块,所述第一滑块上设有第一齿条;所述第二滑盖底部设有第三滑块和第四滑块,所述第三滑块上设有第二齿条;
所述第一滑块滑动连接所述第一滑槽,所述第二滑块滑动连接所述第二滑槽,所述第一齿条与所述第一齿圈啮合;所述第三滑块滑动连接所述第三滑槽,所述第四滑块滑动连接所述第四滑槽,所述第二齿条与所述第二齿圈啮合;
所述第一滑盖通过所述第一齿条带动所述第一齿圈旋转,进而带动所述第一压环旋转,控制所述第一雾化片位移,使得所述第一密封组件抵接所述第一出雾区域,该第一出雾区域无法透水;所述第二滑盖通过所述第二齿条带动所述第二齿圈旋转,进而带动所述第二压环旋转,控制所述第二雾化片位移,使得所述第二密封组件抵接所述第二出雾区域,该第二出雾区域无法透水。
优选的,两个所述雾化结构分别为第一雾化结构和第二雾化结构,所述外壳包括底壳和上盖,所述第一开关为第一滑盖,所述第二开关为第二滑盖;其中,
所述第一雾化结构包括第一水槽、第一密封组件、第一雾化片和第一主动磁体;
所述第一水槽设有第一进水口和第一出水口;
所述第一雾化片连接并密封所述第一出水口,该第一雾化片设有多个第一雾化孔,所述多个第一雾化孔在所述第一雾化片上形成第一出雾区域;
所述第一密封组件设置在所述第一水槽内,并与所述第一出雾区域对应;
所述第一密封组件具有第一伸缩端,所述第一伸缩端内部设有第一被动磁体;所述第二雾化结构包括第二水槽、第二密封组件、第二雾化片和第二主动磁体;
所述第二水槽设有第二进水口和第二出水口;
所述第二雾化片连接并密封所述第二出水口,该第二雾化片设有多个第二雾化孔,所述多个第二雾化孔在所述第二雾化片上形成第二出雾区域;
所述第二密封组件设置在所述第二水槽内,并与所述第二出雾区域对应;
所述第二密封组件具有第二伸缩端,所述第二伸缩端内部设有第二被动磁体;
所述上盖盖合所述底壳,所述安装座连接在所述底壳和所述上盖之间,形成第一水箱位于所述安装座一侧、且第二水箱位于所述安装座另一侧的外壳结构;
所述第一水槽和所述第二水槽均连接在所述安装座上,且所述第一进水口连接所述第一水箱,所述第二进水口连接所述第二水箱;
所述上盖设有第一滑盖连接结构和第二滑盖连接结构,所述第一滑盖连接结构设有第一通孔且连接有第一滑轨,所述第一通孔与所述第一雾化片对应;所述第二滑盖连接结构设有第二通孔且连接有第二滑轨,所述第二通孔与所述第二雾化片对应;所述第一滑盖底部连接有第五滑块,所述第一主动磁体连接在所述第五滑块上;所述第二滑盖底部连接有第六滑块,所述第二主动磁体连接在所述第六滑块上;所述第一滑轨与所述第五滑块滑动连接,所述第二滑轨与所述第六滑块滑动连接;
所述第一主动磁体受控移动至所述出雾区域时,所述第一主动磁体和所述第二被动磁体产生磁吸使得所述第一伸缩端密封所述出雾区域;所述第二主动磁体受控移动至所述出雾区域时,所述第二主动磁体和所述第二被动磁体产生磁吸使得所述第二伸缩端密封所述出雾区域。
为达上述之一或部分或全部目的或是其他目的,本申请还提出一种雾化器,所述雾化器包括上述的雾化结构。
实施本申请实施例,将具有如下有益效果:
本申请提出的雾化结构、双头雾化器和雾化器,其中雾化结构包括:水槽、密封组件、雾化片以及驱动组件,密封组件设置在水槽位置;该雾化结构可以在雾化器不使用时,通过驱动组件控制雾化片或密封组件中的一者向另一者位移,即驱动雾化片向密封组件位移或驱动密封组件向雾化片位移使得密封组件抵接雾化片上的出雾区域,从而该出雾区域无法透水,进而达到喷雾器在装一些美肤溶液或者保湿溶液等张力和收缩能力较强的溶液时,也不会漏水的效果。
附图说明
为了更清楚地说明本申请实施例或现有技术中的技术方案,下面将对实施例或现有技术描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本申请的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
其中:
图1为本申请一个实施例中雾化结构的结构爆炸图;
图2为本申请一个实施例中压板的结构示意图。
图3为本申请一个实施例中压板和翘板连接的结构示意图;
图4为本申请一个实施例中压环和齿圈的结构爆炸图;
图5为本申请一个实施例中主动磁体和密封组件的结构爆炸图;
图6为本申请一个实施例中水槽的结构示意图;
图7为本申请一个实施例中双头雾化器的结构示意图;
图8为本申请一个实施例中双头雾化器的结构爆炸图;
图9为本申请一个实施例中上盖的结构示意图;
图10为本申请一个实施例中第一滑盖和第二滑盖的结构示意图;
图11为图8中双头雾化器的结构组装图;
图12为本申请另一个实施例中双头雾化器的结构爆炸图;
图13为本申请另一个实施例中上盖的结构示意图;
图14为本申请另一个实施例中上盖的结构示意图;
图15为本申请又一个实施例中双头雾化器的结构爆炸图;
图16为本申请又一个实施例中上盖的结构示意图;
图17为本申请又一个实施例中上盖的结构示意图;
图18为图15中双头雾化器的部分结构组装图;
图19为图15中第一滑盖、第二滑盖和上盖组装结构示意图;
图20为本申请一个实施例中第一雾化结构和第二雾化结构爆炸图。
附图标记:
1、水槽;11、底座;111、进水口;12、拼接部;121、限位环;122、限位壁;123、缺口;124、弹簧槽;125、导盲结构;126、出水口;
2、密封组件;21、伸缩端;211、被动磁体;
3、雾化片;31、出雾区域;
4、驱动组件;41、压板;411、连接部;412、第一出雾孔;42、翘板;421、压槽;43、压环;431、外螺纹;432、第二出雾孔;433、压筋;44、齿圈;441、内螺纹;45、主动磁体;
5、弹簧;
6、外壳;61、底壳;62、上盖;621、第一滑盖连接结构;6211、第一通孔;6212、第一卡接部;6213、第一导向槽;6214、第一滑槽;6215、第二滑槽;6216、第一卡接槽;6217、第一容纳槽;6218、第一滑轨;6219、第五滑块;622、第二滑盖连接结构;6221、第二通孔;6222、第二卡接部;6223、第二导向槽;6224、第三滑槽;6225、第四滑槽;6226、第二卡接槽;6227、第二容纳槽;6228、第二滑轨;6229、第六滑块;63、复位扣;64、防磨柱;65、软塞;66、卡扣;
7、安装座;71、加强板;72、PCB电路板;721、磁吸开关;722、强磁铁;
8、第一水箱;
9、第二水箱;
1a、第一水槽;11a、第一底座;12a、第一拼接部;2a、第一密封组件;3a、第一雾化片;41a、第一压板;42a、第一翘板;43a、第一压环;44a、第一齿圈;40a、第一滑盖;401a、第一滑块;4011a、第一齿条;402a、第二滑块;403a、第一凸筋;404a、第一压块;405a、第一主动磁体;
1b、第二水槽;11b、第二底座;12b、第二拼接部;2b、第二密封组件;3b、第二雾化片;41b、第二压板;42b、第二翘板;43b、第二压环;44b、第二齿圈;40b、第二滑盖;401b、第三滑块;4011b、第二齿条;402b、第四滑块;403b、第二凸筋;404b、第二压块;405b、第二主动磁体。
本发明的实施方式
除非另有定义,本文所使用的所有的技术和科学术语与属于本申请的技术领域的技术人员通常理解的含义相同;本文中在申请的说明书中所使用的术语只是为了描述具体的实施例的目的,不是旨在于限制本申请;本申请的说明书和权利要求书及上述附图说明中的术语“包括”和“具有”以及它们的任何变形,意图在于覆盖不排他的包含。本申请的说明书和权利要求书或上述附图中的术语“第一”、“第二”等是用于区别不同对象,而不是用于描述特定顺序。
在本文中提及“实施例”意味着,结合实施例描述的特定特征、结构或特性可以包含在本申请的至少一个实施例中。在说明书中的各个位置出现该短语并不一定均是指相同的实施例,也不是与其它实施例互斥的独立的或备选的实施例。本领域技术人员显式地和隐式地理解的是,本文所描述的实施例可以与其它实施例相结合。
为了使本技术领域的人员更好地理解本申请方案,下面将结合附图,对本申请实施例中的技术方案进行清楚、完整地描述。
参照图1至图19,本申请第一实施例提出一种雾化结构,包括:水槽1、密封组件2、雾化片3以及驱动组件4;上述水槽1设有进水口111和出水口126,进水口111用于连接水箱;其连接方式可以是直接连接(如图14等方式),也可以是间接连接,如通过一些转接头等形式;出水口126通常设置成与雾化片3大小相同或略大,这样雾化片3在连接出水口126之后可以很好的密封出水口126和雾化片3的连接处,雾化片3与出水口126的连接方式可以是通过胶水连接。上述雾化片3中部设有多个雾化孔,多个雾化孔在雾化片3上形成出雾区域31,雾化片3与出水口126连接后,出雾区域31一般位于出水口126中部。上述密封组件2设置在水槽1内,并与上述出雾区域31对应,即密封组件2的正上方就正对着出雾区域31。驱动组件4用于控制雾化片3或密封组件2位移,由于雾化片3上出雾区域31与密封组件2对应,雾化片3和密封组件2产生相对位移后,密封组件2会抵接出雾区域31,即密封组件2密封了出雾区域31,从而该出雾区域31无法透水,进而达到喷雾器在装一些美肤溶液或者保湿溶液等张力和收缩能力较强的溶液时,也不会漏水的效果。上述驱动组件4可以是通过手动直接或间接控制的零件或零件组合,也可以是通过电动控制的零件或零件组合,例如驱动组件4可以是滑盖和凸筋的组合形式,通过在滑盖底部设置一些凸筋或与凸筋类似结构,在滑盖滑动时凸筋可以直接压住雾化片3。上述密封组件2可以是硅胶柱等结构。
参照图1,雾化结构还可以包括弹簧5,该示例中,水槽1可以是硅胶或tpe材料(热塑性弹性体)制成,在水槽1侧壁的外周设置一圈弹簧槽124,再将弹簧5设置于弹簧槽124内,且该弹簧5一端与弹簧槽124顶侧壁抵接,另一端与弹簧槽124底侧壁抵接。这样,在雾化片3受到驱动组件4控制向密封组件2位移时,水槽1在弹簧槽124位置产生形变或主要在弹簧槽124位置产生形变,在雾化片3外力撤去之后,即水槽1外力撤去之后,弹簧5由于弹性恢复原状,使得水槽1迅速恢复原状,雾化片3和驱动组件4脱离接触,雾化片3可以正常工作进行喷雾。值得一提的是,水槽1由于是硅胶或tpe材料制成,本身也是具有弹性形变的,不设置弹簧5时,水槽1外力撤去之后,水槽1通过自身弹性形变也可以恢复原状使雾化结构可以正常进行喷雾,设置弹簧5后,弹簧5减少了水槽1自身的机械疲劳,提高了水槽1的使用寿命,同时提升了水槽1恢复原状的速度。
参照图1和图2,针对上述雾化结构,本申请还提出第二实施例,其中,驱动组件4包括压板41,压板41设有连接部411,连接部411可以是压板41上设置的一对连接耳,这对连接耳用于与雾化器外壳6旋转连接,压板41的形状可以与雾化片3匹配,该压板41上设有第一出雾孔412,安装时,一侧与雾化片3抵接,并使得第一出雾孔412与出雾区域对应,这样在压下压板41时雾化片3由于雾化片3与压板41抵接,雾化片3会向密封组件2位移从而密封出雾区域31,在喷雾时,出雾区域31透过第一出雾孔412出雾。
参照图1和图3,针对上述雾化结构,本申请还提出第三实施例,其中,驱动组件4除了包括压板41,还包括翘板42,翘板42连接连接部411,连接部411位于第一出雾孔412和翘板42之间,翘板42顶侧壁设有压槽421。本示例中,压板41的作用和工作原理与上一示例相同,不再赘述。翘板42的设置,使得压板41和翘板42之间形成杠杆结构,该杠杆结构的支点即为上述连接部411,即压下翘板42时,压板41会翘起来,此时雾化片3和密封组件2可以更快脱离接触。翘板42上的压槽421,提供了一个按压翘板42的着力点。
参照图1、图4和图18,针对上述雾化结构,本申请还提出第四实施例,其中,驱动组件4包括压环43和齿圈44,压环43设有外螺纹431,齿圈44设有内螺纹441,压环43上还设有第二出雾孔432,该第二出雾孔432与前述第一出雾孔412结构和作用类似。安装时,压环43一侧与雾化片3抵接,并使得第二出雾孔432与出雾区域对应,压环43和齿圈44通过内螺纹441和外螺纹431连接,齿圈44可以活动套接到水槽1的外侧壁上,雾化器的外壳6还可以对齿圈44顶部限位,这样在齿圈44旋转时,该齿圈44不会发生位移,且齿圈44顶部可以设置一圈向内延伸的限位壁122,该限位壁122对压环43上移的最高点进行限位。使用时,通过齿轮或齿条来连接齿圈44外周,例如直接在小型驱动电机的输出轴上套接齿轮,再通这套接的齿轮连接齿圈44外周,控制齿圈44旋转;又如通过齿条来连接齿圈44外周,控制齿圈44旋转,由于压环43和齿圈44通过内螺纹441和外螺纹431连接,在齿圈44旋转,压环43可以上下移动,从而带动雾化片3上下移动,达到控制雾化片3和密封组件2相对位移的效果。另外,压环43上还可以设置压筋433,压筋433连接外螺纹431,例如压筋433可以是从外螺纹431向压环43外侧延伸形成,如图4和图18所示,这种压筋433结构底部与水槽1顶侧壁抵接,在压环43向下位移时,压筋433带动水槽1向下移动,从而带动固定在水槽1上的雾化片3向下移动。
参照图1和图5,针对上述雾化结构,本申请还提出第五实施例,其中,驱动组件4包括主动磁体45,密封组件2具有伸缩端21,伸缩端21内部设有被动磁体211,密封组件2可以通过弹性材料设置成环状结构,伸缩端21连接在该环状结构的中部位置,且中部位置还保留着一些通孔可以透水,具体结构可以如图5所示。使用时,主动磁体45受控移动至出雾区域31时,主动磁体45和被动磁体211产生磁吸,由于伸缩端21是通过弹性材料连接,主动磁体45和被动磁体211产生的磁力将伸缩端21向出雾区域31吸附,并使得伸缩端21密封出雾区域31;移开当主动磁体45时,伸缩端21由于弹性形变复位,出雾区域31解除密封,雾化结构可以正常进行喷雾。值得一提的是,主动磁体45也会对雾化片3产生吸引力,只需要在选择主动磁体45时,保证主动磁体45和被动磁体211间的磁力能够使得被动磁体211产生位移,同时主动磁体45对雾化片3产生吸引力不至于将雾化片3与水槽1脱离连接即可。
参照图6,针对上述雾化结构,本申请还提出第六实施例,其中,水槽1包括底座11和拼接部12,拼接部12由弹性材料制成;拼接部12上设有限位环121,限位环121外周设有限位壁122,且限位壁122设有一缺口123,雾化片3安装在限位环121上,雾化片3的接线端由缺口123伸出。另外,由于缺口123的朝向影响到雾化片3接线端的位置,该接线端的位置一般朝向PCB电路板72比较方便接线,拼接部12还可以设置一个导盲结构125,以方便在安装拼接部12时对其缺口123朝向进行定位,可以提升产品生产时的组装效率。
参照图7至图20,本申请第七实施例提出一种双头雾化器,包括外壳6、安装座7、第一水箱8、第二水箱9、第一滑盖40a、第二滑盖40b和两个上述的雾化结构。第一水箱8、第二水箱9和安装座7均设于外壳6内;两个雾化结构均设置于安装座7上。第一滑盖40a和第二滑盖40b分别与外壳6滑动连接。两个雾化结构其中一个的进水口111连接第一水箱8,其驱动组件4连接第一滑盖40a。另一个雾化结构的进水口111连接第二水箱9,其驱动组件4连接第二滑盖40b。上述第一水箱8和第二水箱9,可以是独立的零部件;也可以是由外壳6或外壳6与其他结构拼接形成。上述安装座7,可以是设置在第一水箱8和第二水箱9的同一侧,例如可以是将两个雾化片3设置于双头雾化器的顶部或底部,上述安装座7也可以设置在第一水箱8和第二水箱9之间,例如可以是将两个雾化片3设置于双头雾化器的中部,另外,安装座7可以设置两个,一个设置在双头雾化器的顶部,另一个设置在双头雾化器的底部,这样就可以将两个雾化片3分别设置于双头雾化器的两端。该安装座7用于安装PCB电路板72、指示灯、水槽1等结构或零部件。当驱动组件4由手动控制时,上述第一开关和第二开关均可以设置成滑块、滑片或滑盖等滑动式的开关结构,通过滑动来控制驱动组件4;当驱动组件4由电动控制时,例如前述的驱动电机,第一开关和第二开关可以是任何常规形式控制电路通断的开关,用于控制驱动电机电路通断达到控制驱动组件4的目的。
参照图7至图11,针对上述双头雾化器,本申请还提出第八实施例,其中,该示例是第二实施例中的雾化结构应用在双头雾化器的具体说明,本示例中,双头雾化器设有两个与前述示例中的雾化结构完全相同的雾化结构,即第一雾化结构和第二雾化结构。换句话说,第一雾化结构包括第一水槽1a、第一密封组件2a、第一雾化片3a和第一压板41a;第一水槽1a和前述实施例中水槽1结构相同,第一密封组件2a和前述实施例中密封组件2结构相同,第一雾化片3a和前述实施例中雾化片3结构相同,第一压板41a和前述实施例中压板41结构相同。第二雾化结构情况类似,可以类推,不再赘述。
具体的,本示例中,外壳6包括底壳61和上盖62,第一开关为第一滑盖40a,第二开关为第二滑盖40b。上盖62盖合底壳61,安装座7连接在底壳61和上盖62之间,形成第一水箱8位于安装座7一侧、且第二水箱9位于安装座7另一侧的外壳结构,即该外壳结构中安装座7设置在第一水箱8和第二水箱9之间。第一水槽1a和第二水槽1b均连接在安装座7上,且第一进水口连接第一水箱8,第二进水口连接第二水箱9。第一水槽1a可以是由第一底座11a和第一拼接部12a拼接形成,第二水槽1b可以是由第二底座11b和第二拼接部12b拼接形成。上盖62设有第一滑盖连接结构621和第二滑盖连接结构622,第一滑盖连接结构621设有第一通孔6211、第一卡接部6212、第一导向槽6213、第一滑槽6214和第二滑槽6215,第一通孔6211与第一雾化片3a对应;第二滑盖连接结构622设有第二通孔6221、第二卡接部6222、第二导向槽6223、第三滑槽6224和第四滑槽6225,第二通孔6221与第二雾化片3b对应。第一滑盖40a底部设有第一滑块401a、第二滑块402a和第一凸筋403a;第二滑盖40b底部设有第三滑块401b、第四滑块402b和第二凸筋403b;
上述第一导向槽6213是设置在第一通孔6211旁的凹槽,并且在第一导向槽6213靠近第一通孔6211的一侧设有开口,第一滑盖40a由第一通孔6211位置向第一导向槽6213位置滑动时,第一凸筋403a可从该开口滑入第一导向槽6213。上述第一压板41a的连接部411可以是一对连接耳,第一卡接部6212可以是一对卡槽,第一压板41a通过这一对连接耳卡入对应卡槽与第一滑盖连接结构621形成第一压板可绕连接耳旋转的结构。上述第二导向槽6223与第一导向槽6213结构类似,不再赘述。上述第一滑槽6214和第二滑槽6215则是一组相互平行的滑槽,第一滑盖40a底部的第一滑块401a和第二滑块402a均设有卡扣66,第一滑块401a从第一滑槽6214上方穿过卡扣66对第一滑块401a下方进行限位,防止第一滑块401a脱离第一滑槽6214,第二滑块402a从第二滑槽6215上方穿过,卡扣66对第二滑块402a下方进行限位,防止第二滑块402a脱离第二滑槽6215,实现第一滑盖40a和上盖62滑动连接,进而实现第一滑盖40a在第一滑盖连接结构621上滑动。第二滑盖40b和第二滑盖连接结构622的连接关系与上述第一滑盖40a和第一滑盖连接结构621的连接关系类似,可以从中类推,不再赘述。
本示例中双头雾化器在第一滑盖40a闭合状态下,第一凸筋403a位于第一压板41a上,第一压板41a受压力使得第一雾化片3a位移,当第一滑盖40a打开时,第一凸筋403a从第一压板41a上滑到第一导向槽6213内,第一水槽1a所受外力撤去,第一水槽1a弹性形变使第一雾化片3a复位;在第二滑盖40b闭合状态下,第二凸筋403b位于第二压板41b上,第二压板41b受压力使得第二雾化片3b位移,当第二滑盖40b打开时,第二凸筋403b从第二压板41b上滑到第二导向槽6223内,第二水槽1b所受外力撤去,第二水槽1b弹性形变使第二雾化片3b复位。另外,第一凸筋403a和第二凸筋403b的前端还可以设置弧形过度结构,使得第一滑盖40a和第二滑盖40b开合的动作更顺畅。
参照图7、图12至图14,针对上述双头雾化器,本申请还提出第九实施例,其中,该示例是第三实施例中的雾化结构应用在双头雾化器的具体说明,本示例中,双头雾化器设有两个与前述第三实施例中的雾化结构完全相同的雾化结构,即第一雾化结构和第二雾化结构。换句话说,第一雾化结构包括第一水槽1a、第一密封组件2a、第一雾化片3a、第一压板41a和第一翘板42a;第一水槽1a和前述实施例中水槽1结构相同,第一密封组件2a和前述实施例中密封组件2结构相同,第一雾化片3a和前述实施例中雾化片3结构相同,第一压板41a和前述实施例中压板41结构相同,第一翘板42a和前述实施例中的翘板42结构相同。第二雾化结构情况类似,可以类推,不再赘述。
具体的,本示例中,外壳6包括底壳61和上盖62,第一开关为第一滑盖40a,第二开关为第二滑盖40b。上盖62盖合底壳61,安装座7连接在底壳61和上盖62之间,形成第一水箱8位于安装座7一侧、且第二水箱9位于安装座7另一侧的外壳结构,即该外壳结构中安装座7设置在第一水箱8和第二水箱9之间。第一水槽1a和第二水槽1b均连接在安装座7上,且第一进水口连接第一水箱8,第二进水口连接第二水箱9。上盖62设有第一滑盖连接结构621和第二滑盖连接结构622,第一滑盖连接结构621设有第一通孔6211、第一卡接槽6216、第一容纳槽6217、第一滑槽6214和第二滑槽6215,第一通孔6211与第一雾化片3a对应;第二滑盖连接结构622设有第二通孔6221、第二卡接槽6226、第二容纳槽6227、第三滑槽6224和第四滑槽6225,第二通孔6221与第二雾化片3b对应。第一滑盖40a底部设有第一滑块401a、第二滑块402a和第一压块404a;第二滑盖40b底部设有第三滑块401b、第四滑块402b和第二压块404b;
上述第一容纳槽6217是设置在第一通孔6211旁的凹槽,并且靠近第一通孔6211一侧具有开口,第一卡接槽6216设置在第一容纳槽6217的开口位置。上述第一压板41a的连接部411是一对连接耳,第一卡接槽6216两端设有开口,第一压板41a通过这一对连接耳分别卡入第一卡接槽6216两端的开口与第一滑盖连接结构621转动连接,第一翘板42a位于第一容纳槽6217,第一压板41a和第一翘板42a之间形成杠杆结构,该杠杆结构的支点为第一压板41a的连接部411,支撑的结构是第一卡接槽6216。上述第二容纳槽6227与第一导向槽6213结构类似,不再赘述。上述第一滑槽6214和第二滑槽6215则是一组相互平行的滑槽,第一滑盖40a底部的第一滑块401a和第二滑块402a均设有卡扣66,第一滑块401a从第一滑槽6214上方穿过卡扣66对第一滑块401a下方进行限位,防止第一滑块401a脱离第一滑槽6214,第二滑块402a从第二滑槽6215上方穿过,卡扣66对第二滑块402a下方进行限位,防止第二滑块402a脱离第二滑槽6215,实现第一滑盖40a和上盖62滑动连接,进而实现第一滑盖40a在第一滑盖连接结构621上滑动。第二滑盖40b和第二滑盖连接结构622的连接关系与上述第一滑盖40a和第一滑盖连接结构621的连接关系类似,可以从中类推,不再赘述。
本示例中双头雾化器在第一滑盖40a闭合状态下,第一压块404a位于第一压板41a上,第一压板41a受压力使得第一雾化片3a位移,第一雾化片3a的出雾区域31被第一密封组件2a密封,当第一滑盖40a打开时,第一压块404a位于第一翘板42a的压槽,第一翘板42a被压下且第一压板41a翘起,第一水槽1a弹性形变使第一雾化片3a复位,第一雾化片3a的出雾区域31脱离第一密封组件2a,解除密封;在第二滑盖40b闭合状态下,第二压块404b位于第二压板41b上,第二压板41b受压力使得第二雾化片3b位移,第二雾化片3b的出雾区域31被第二密封组件2b密封,当第二滑盖40b打开时,第二压块404b位于第二翘板42b的压槽,第二翘板42b被压下且第二压板41b翘起,第二水槽1b弹性形变使第二雾化片3b复位,第二雾化片3b的出雾区域31脱离第二密封组件2b,解除密封。
参照图7、图16至19,针对上述双头雾化器,本申请还提出第十实施例,其中,该示例是第四实施例中的雾化结构应用在双头雾化器的具体说明,本示例中,双头雾化器设有两个与前述第四实施例例中的雾化结构完全相同的雾化结构,即第一雾化结构和第二雾化结构。换句话说,第一雾化结构包括第一水槽1a、第一密封组件2a、第一雾化片3a、第一压环43a和第一齿圈44a;第一水槽1a和前述实施例中水槽1结构相同,第一密封组件2a和前述实施例中密封组件2结构相同,第一雾化片3a和前述实施例中雾化片3结构相同,第一压环43a和前述实施例中压环43结构相同,第一齿圈44a和前述实施例中的齿圈44结构相同。第二雾化结构情况类似,可以类推,不再赘述。
具体的,本示例中,外壳6包括底壳61和上盖62,第一开关为第一滑盖40a,第二开关为第二滑盖40b。上盖62盖合底壳61,安装座7连接在底壳61和上盖62之间,形成第一水箱8位于安装座7一侧、且第二水箱9位于安装座7另一侧的外壳结构,即该外壳结构中安装座7设置在第一水箱8和第二水箱9之间。第一水槽1a和第二水槽1b均连接在安装座7上,且第一进水口连接第一水箱8,第二进水口连接第二水箱9。上盖62设有第一滑盖连接结构621和第二滑盖连接结构622,第一滑盖连接结构621设有第一通孔6211、第一滑槽6214和第二滑槽6215,第一通孔6211与第一雾化片3a对应;第二滑盖连接结构622设有第二通孔6221、第三滑槽6224和第四滑槽6225,第二通孔6221与第二雾化片3b对应。第一滑盖40a底部设有第一滑块401a和第二滑块402a,第一滑块401a上设有第一齿条4011a;第二滑盖40b底部设有第三滑块401b和第四滑块402b,第三滑块401b上设有第二齿条4011b。
上述第一滑槽6214和第二滑槽6215则是一组相互平行的滑槽,上述第一通孔6211设置在第一滑槽6214和第二滑槽6215之间,且第一通孔6211的侧壁具有连通第一滑槽6214的开口。第一滑盖40a底部的第一滑块401a和第二滑块402a均设有卡扣66,第一滑块401a从第一滑槽6214上方穿过卡扣66对第一滑块401a下方进行限位,防止第一滑块401a脱离第一滑槽6214,第二滑块402a从第二滑槽6215上方穿过,卡扣66对第二滑块402a下方进行限位,防止第二滑块402a脱离第二滑槽6215,实现第一滑盖40a和上盖62滑动连接,进而实现第一滑盖40a在第一滑盖连接结构621上滑动,第一齿条4011a在第一通孔6211的侧壁位置与第一齿圈44a啮合。第二滑盖40b和第二滑盖连接结构622的连接关系与上述第一滑盖40a和第一滑盖连接结构621的连接关系类似,可以从中类推,不再赘述。第一滑盖40a通过第一齿条4011a控制第一压环43a和第一齿圈44a的工作原理可以参考第四实施例中的介绍,不再赘述。
参照图7和图20,针对上述双头雾化器,本申请还提出第十一实施例,其中,该示例是第五实施例中的雾化结构应用在双头雾化器的具体说明,本示例中,双头雾化器设有两个与前述第五实施例中的雾化结构完全相同的雾化结构,即第一雾化结构和第二雾化结构。换句话说,第一雾化结构包括第一水槽1a、第一密封组件2a、第一雾化片3a和第一主动磁体405a;第一水槽1a和前述实施例中水槽1结构相同,第一密封组件2a和前述实施例中密封组件2结构相同,第一雾化片3a和前述实施例中雾化片3结构相同,第一主动磁体405a和前述实施例中的主动磁体45结构相同。第二雾化结构情况类似,可以类推,不再赘述。
具体的,本示例中,外壳6包括底壳61和上盖62,第一开关为第一滑盖40a,第二开关为第二滑盖40b。上盖62盖合底壳61,安装座7连接在底壳61和上盖62之间,形成第一水箱8位于安装座7一侧、且第二水箱9位于安装座7另一侧的外壳结构,即该外壳结构中安装座7设置在第一水箱8和第二水箱9之间。第一水槽1a和第二水槽1b均连接在安装座7上,且第一进水口连接第一水箱8,第二进水口连接第二水箱9。上盖62设有第一滑盖连接结构621和第二滑盖连接结构622,第一滑盖连接结构621设有第一通孔6211且连接有第一滑轨6218,第一通孔6211与第一雾化片3a对应;第二滑盖连接结构622设有第二通孔6221且连接有第二滑轨6228,第二通孔6221与第二雾化片3b对应;第一滑盖40a底部连接有第五滑块6219,第一主动磁体405a连接在第五滑块6219上;第二滑盖40b底部连接有第六滑块6229,第二主动磁体405b连接在第六滑块6229上;第一滑轨6218与第五滑块6219滑动连接,第二滑轨6228与第六滑块6229滑动连接。
使用时,在第一滑盖40a闭合状态下,第一主动磁体405a受控移动至第一雾化片3a的出雾区域31时,第一主动磁体405a和第一密封组件2a的被动磁体211产生磁吸,由于第一密封组件2a的伸缩端21是通过弹性材料连接,第一主动磁体405a和第一密封组件2a的被动磁体211产生的磁力将伸缩端21向出雾区域31吸附,并使得伸缩端21密封第一雾化片3a的出雾区域31;移开当第一主动磁体405a时,第一密封组件2a的伸缩端21由于弹性形变复位,第一雾化片3a的出雾区域31解除密封,第一雾化结构可以正常进行喷雾。第一雾化结构工作原理类似,不再赘述。
再次参照图1至图20,针对上述第八至第十一实施例,其中安装座7可以通过硅胶制成,制作时,底部可以设置一块加强板71,通过一体成型的方式将加强板71和硅胶材料融为一体,这样制作出来的安装座7不易变形,水槽1稳定性好,其中,水槽1的底座11可以设置在安装座7的两个对角上,PCB电路板72则设置在安装座7中部,该PCB电路板72上可以设置两个磁吸开关721,分别对应第一雾化结构和第二雾化结构,本实施例中以一个雾化结构为例,另外一个雾化结构与之相同。具体的,滑盖上可以设置和磁吸开关721配合的强磁铁722,使用时,当滑盖在闭合位置时,强磁铁722处于磁吸开关721上方,磁吸开关721由于强磁铁722的吸引断开,雾化片3不通电,当滑盖打开时,强磁铁722远离磁吸开关721,磁吸开关721闭合,雾化片3通电工作。双头雾化器还可以设置防磨柱64,即在滑盖下方连接若干个防磨柱64,防磨柱64一般选用软质硅胶制作,这样在滑动滑盖时,不易划伤上盖62。上盖62在滑盖连接结构的位置,还可以设置复位扣63,每个滑盖底部对应设置两个复位槽,一个对应滑盖关闭位置,一个对应滑盖开启位置,在滑盖关闭到位时,复位扣63卡入复位槽,产生“哒”声,并同时产生反馈手感,用户根据声音或反馈手感,均可获知滑盖关闭到位了,开启过程同理,不再赘述。水箱的进液口可以设置在底壳61的侧壁上,通过可拆卸软塞65封住,软塞65可以方便取下添加溶液。
显然,以上所描述的实施例仅仅是本申请一部分实施例,而不是全部的实施例,附图中给出了本申请的较佳实施例,但并不限制本申请的专利范围。本申请可以以许多不同的形式来实现,相反地,提供这些实施例的目的是使对本申请的公开内容的理解更加透彻全面。尽管参照前述实施例对本申请进行了详细的说明,对于本领域的技术人员来而言,其依然可以对前述各具体实施方式所记载的技术方案进行修改,或者对其中部分技术特征进行等效替换。凡是利用本申请说明书及附图内容所做的等效结构,直接或间接运用在其他相关的技术领域,均同理在本申请专利保护范围之内。

Claims (14)

  1. 一种雾化结构,其特征在于,包括:水槽、密封组件、雾化片以及驱动组件;其中,
    所述水槽设有进水口和出水口,所述进水口用于连接水箱;
    所述雾化片连接并密封所述出水口,该雾化片设有多个雾化孔,所述多个雾化孔在所述雾化片上形成出雾区域;
    所述密封组件设置在所述水槽内,并与所述出雾区域对应;
    所述驱动组件用于控制所述雾化片或所述密封组件位移,使得所述密封组件抵接所述出雾区域,该出雾区域无法透水。
  2. 根据权利要求1所述的雾化结构,其特征在于,所述雾化结构还包括弹簧,所述水槽侧壁的外周设有一圈弹簧槽,所述弹簧设置于所述弹簧槽且该弹簧一端与弹簧槽顶侧壁抵接,另一端与弹簧槽底侧壁抵接。
  3. 根据权利要求1或2所述的雾化结构,其特征在于,所述驱动组件包括压板,所述压板设有用于旋转连接雾化器外壳的连接部,所述压板上设有第一出雾孔,所述压板一侧与所述雾化片抵接,且所述第一出雾孔与所述出雾区域对应。
  4. 根据权利要求3所述的雾化结构,其特征在于,所述驱动组件还包括翘板,所述翘板连接所述连接部,所述连接部位于所述第一出雾孔和所述翘板之间,所述翘板顶侧壁设有压槽。
  5. 根据权利要求1或2所述的雾化结构,其特征在于,所述驱动组件包括压环和齿圈,所述压环设有外螺纹,所述齿圈设有内螺纹,所述压环上设有第二出雾孔,所述压环一侧与所述雾化片抵接,且所述第二出雾孔与所述出雾区域对应,所述压环和所述齿圈通过内螺纹和外螺纹连接。
  6. 根据权利要求5所述的雾化结构,其特征在于,所述压环上还设有压筋,所述压筋连接所述外螺纹,且所述压筋底部与所述水槽顶侧壁抵接。
  7. 根据权利要求1或2所述的雾化结构,其特征在于,所述驱动组件包括主动磁体,所述密封组件具有伸缩端,所述伸缩端内部设有被动磁体;所述主动磁体受控移动至所述出雾区域时,所述主动磁体和所述被动磁体产生磁吸使得所述伸缩端密封所述出雾区域。
  8. 根据权利要求1所述的雾化结构,其特征在于,所述水槽包括底座和拼接部,所述拼接部由弹性材料制成;
    所述拼接部上设有限位环,所述限位环外周设有限位壁,且所述限位壁设有一缺口,所述雾化片安装在所述限位环上,所述雾化片的接线端由所述缺口伸出。
  9. 一种双头雾化器,其特征在于,包括外壳、安装座、第一水箱、第二水箱、第一开关、第二开关和两个权利要求1至8任一项所述的雾化结构;其中,
    所述第一水箱、所述第二水箱和所述安装座均设于所述外壳内;两个所述雾化结构均设置于所述安装座上;所述第一开关和第二开关分别与所述外壳滑动连接;
    一个所述雾化结构的进水口连接所述第一水箱,其驱动组件连接第一开关;
    另一所述雾化结构的进水口连接所述第二水箱,其驱动组件连接第二开关。
  10. 根据权利要求9所述的双头雾化器,其特征在于,两个所述雾化结构分别为第一雾化结构和第二雾化结构,所述外壳包括底壳和上盖,所述第一开关为第一滑盖,所述第二开关为第二滑盖;其中,
    所述第一雾化结构包括第一水槽、第一密封组件、第一雾化片和第一压板;
    所述第一水槽设有第一进水口和第一出水口;
    所述第一雾化片连接并密封所述第一出水口,该第一雾化片设有多个第一雾化孔,所述多个第一雾化孔在所述第一雾化片上形成第一出雾区域;
    所述第一密封组件设置在所述第一水槽内,并与所述第一出雾区域对应;
    所述第一压板设有第一连接部,所述第一压板上设有第三出雾孔,所述第一压板一侧与所述第一雾化片抵接,且所述第三出雾孔与所述第一出雾区域对应;
    所述第二雾化结构包括第二水槽、第二密封组件、第二雾化片和第二压板;
    所述第二水槽设有第二进水口和第二出水口;
    所述第二雾化片连接并密封所述第二出水口,该第二雾化片设有多个第二雾化孔,所述多个第二雾化孔在所述第二雾化片上形成第二出雾区域;
    所述第二密封组件设置在所述第二水槽内,并与所述第二出雾区域对应;
    所述第二压板设有第二连接部,所述第二压板上设有第四出雾孔,所述第二压板一侧与所述第二雾化片抵接,且所述第四出雾孔与所述第二出雾区域对应;
    所述上盖盖合所述底壳,所述安装座连接在所述底壳和所述上盖之间,形成第一水箱位于所述安装座一侧、且第二水箱位于所述安装座另一侧的外壳结构;
    所述第一水槽和所述第二水槽均连接在所述安装座上,且所述第一进水口连接所述第一水箱,所述第二进水口连接所述第二水箱;
    所述上盖设有第一滑盖连接结构和第二滑盖连接结构,所述第一滑盖连接结构设有第一通孔、第一卡接部、第一导向槽、第一滑槽和第二滑槽,所述第一通孔与所述第一雾化片对应;所述第二滑盖连接结构设有第二通孔、第二卡接部、第二导向槽、第三滑槽和第四滑槽,所述第二通孔与所述第二雾化片对应;所述第一滑盖底部设有第一滑块、第二滑块和第一凸筋;所述第二滑盖底部设有第三滑块、第四滑块和第二凸筋;
    所述第一滑块滑动连接所述第一滑槽,所述第二滑块滑动连接所述第二滑槽,所述第一连接部转动连接所述第一卡接部;所述第三滑块滑动连接所述第三滑槽,所述第四滑块滑动连接所述第四滑槽,所述第二连接部转动连接所述第二卡接部。
  11. 根据权利要求9所述的双头雾化器,其特征在于,两个所述雾化结构分别为第一雾化结构和第二雾化结构,所述外壳包括底壳和上盖,所述第一开关为第一滑盖,所述第二开关为第二滑盖;其中,
    所述第一雾化结构包括第一水槽、第一密封组件、第一雾化片、第一压板和第一翘板;
    所述第一水槽设有第一进水口和第一出水口;
    所述第一雾化片连接并密封所述第一出水口,该第一雾化片设有多个第一雾化孔,所述多个第一雾化孔在所述第一雾化片上形成第一出雾区域;
    所述第一密封组件设置在所述第一水槽内,并与所述第一出雾区域对应;
    所述第一压板设有第一连接部,所述第一压板上设有第三出雾孔,所述第一压板一侧与所述第一雾化片抵接,且所述第三出雾孔与所述第一出雾区域对应;所述第一翘板连接所述第一连接部,所述第一连接部位于所述第三出雾孔和所述第一翘板之间,所述第一翘板顶侧壁设有第一压槽;
    所述第二雾化结构包括第二水槽、第二密封组件、第二雾化片、第二压板和第二翘板;
    所述第二水槽设有第二进水口和第二出水口;
    所述第二雾化片连接并密封所述第二出水口,该第二雾化片设有多个第二雾化孔,所述多个第二雾化孔在所述第二雾化片上形成第二出雾区域;
    所述第二密封组件设置在所述第二水槽内,并与所述第二出雾区域对应;
    所述第二压板设有第二连接部,所述第二压板上设有第四出雾孔,所述第二压板一侧与所述第二雾化片抵接,且所述第四出雾孔与所述第二出雾区域对应;所述第二翘板连接所述第二连接部,所述第二连接部位于所述第四出雾孔和所述第二翘板之间,所述第二翘板顶侧壁设有第二压槽;
    所述上盖盖合所述底壳,所述安装座连接在所述底壳和所述上盖之间,形成第一水箱位于所述安装座一侧、且第二水箱位于所述安装座另一侧的外壳结构;
    所述第一水槽和所述第二水槽均连接在所述安装座上,且所述第一进水口连接所述第一水箱,所述第二进水口连接所述第二水箱;
    所述上盖设有第一滑盖连接结构和第二滑盖连接结构,所述第一滑盖连接结构设有第一通孔、第一卡接槽、第一容纳槽、第一滑槽和第二滑槽,所述第一通孔与所述第一雾化片对应,所述第一容纳槽具有通向所述第一通孔的开口,所述第一卡接槽设置在所述第一通孔的开口位置;所述第二滑盖连接结构设有第二通孔、第二卡接槽、第二容纳槽、第三滑槽和第四滑槽,所述第二通孔与所述第二雾化片对应,所述第二容纳槽具有通向所述第二通孔的开口,所述第二卡接槽设置在所述第二通孔的开口位置;所述第一滑盖底部设有第一滑块、第二滑块和第一压块;所述第二滑盖底部设有第三滑块、第四滑块和第二压块;
    所述第一滑块滑动连接所述第一滑槽,所述第二滑块滑动连接所述第二滑槽,所述第一连接部转动连接所述第一卡接槽,所述第一翘板位于所述第一容纳槽;所述第三滑块滑动连接所述第三滑槽,所述第四滑块滑动连接所述第四滑槽,所述第二连接部转动连接所述第二卡接槽,所述第二翘板位于所述第二容纳槽。
  12. 根据权利要求9所述的双头雾化器,其特征在于,两个所述雾化结构分别为第一雾化结构和第二雾化结构,所述外壳包括底壳和上盖,所述第一开关为第一滑盖,所述第二开关为第二滑盖;其中,
    所述第一雾化结构包括第一水槽、第一密封组件、第一雾化片、第一压环和第一齿圈;
    所述第一水槽设有第一进水口和第一出水口;
    所述第一雾化片连接并密封所述第一出水口,该第一雾化片设有多个第一雾化孔,所述多个第一雾化孔在所述第一雾化片上形成第一出雾区域;
    所述第一密封组件设置在所述第一水槽内,并与所述第一出雾区域对应;
    所述第一压环设有第一外螺纹,所述第一齿圈设有第一内螺纹,所述第一压环上设有第五出雾孔,所述第一压环一侧与所述第一雾化片抵接,且所述第五出雾孔与所述第一出雾区域对应,所述第一压环和所述第一齿圈通过第一内螺纹和第二外螺纹连接;
    所述第二雾化结构包括第二水槽、第二密封组件、第二雾化片、第二压环和第二齿圈;
    所述第二水槽设有第二进水口和第二出水口;
    所述第二雾化片连接并密封所述第二出水口,该第二雾化片设有多个第二雾化孔,所述多个第二雾化孔在所述第二雾化片上形成第二出雾区域;
    所述第二密封组件设置在所述第二水槽内,并与所述第二出雾区域对应;
    所述第二压环设有第二外螺纹,所述第二齿圈设有第二内螺纹,所述第二压环上设有第六出雾孔,所述第二压环一侧与所述第二雾化片抵接,且所述第六出雾孔与所述第二出雾区域对应,所述第二压环和所述第二齿圈通过第二内螺纹和第二外螺纹连接;
    所述上盖盖合所述底壳,所述安装座连接在所述底壳和所述上盖之间,形成第一水箱位于所述安装座一侧、且第二水箱位于所述安装座另一侧的外壳结构;
    所述第一水槽和所述第二水槽均连接在所述安装座上,且所述第一进水口连接所述第一水箱,所述第二进水口连接所述第二水箱;
    所述上盖设有第一滑盖连接结构和第二滑盖连接结构,所述第一滑盖连接结构设有第一通孔、第一滑槽和第二滑槽,所述第一通孔与所述第一雾化片对应,所述第一通孔的侧壁具有连通所述第一滑槽的开口;所述第二滑盖连接结构设有第二通孔、第三滑槽和第四滑槽,所述第二通孔与所述第二雾化片对应,所述第二通孔的侧壁具有连通所述第二滑槽的开口;所述第一滑盖底部设有第一滑块和第二滑块,所述第一滑块上设有第一齿条;所述第二滑盖底部设有第三滑块和第四滑块,所述第三滑块上设有第二齿条;
    所述第一滑块滑动连接所述第一滑槽,所述第二滑块滑动连接所述第二滑槽,所述第一齿条与所述第一齿圈啮合;所述第三滑块滑动连接所述第三滑槽,所述第四滑块滑动连接所述第四滑槽,所述第二齿条与所述第二齿圈啮合。
  13. 根据权利要求9所述的双头雾化器,其特征在于,两个所述雾化结构分别为第一雾化结构和第二雾化结构,所述外壳包括底壳和上盖,所述第一开关为第一滑盖,所述第二开关为第二滑盖;其中,
    所述第一雾化结构包括第一水槽、第一密封组件、第一雾化片和第一主动磁体;
    所述第一水槽设有第一进水口和第一出水口;
    所述第一雾化片连接并密封所述第一出水口,该第一雾化片设有多个第一雾化孔,所述多个第一雾化孔在所述第一雾化片上形成第一出雾区域;
    所述第一密封组件设置在所述第一水槽内,并与所述第一出雾区域对应;
    所述第一密封组件具有第一伸缩端,所述第一伸缩端内部设有第一被动磁体;所述第二雾化结构包括第二水槽、第二密封组件、第二雾化片和第二主动磁体;
    所述第二水槽设有第二进水口和第二出水口;
    所述第二雾化片连接并密封所述第二出水口,该第二雾化片设有多个第二雾化孔,所述多个第二雾化孔在所述第二雾化片上形成第二出雾区域;
    所述第二密封组件设置在所述第二水槽内,并与所述第二出雾区域对应;
    所述第二密封组件具有第二伸缩端,所述第二伸缩端内部设有第二被动磁体;
    所述上盖盖合所述底壳,所述安装座连接在所述底壳和所述上盖之间,形成第一水箱位于所述安装座一侧、且第二水箱位于所述安装座另一侧的外壳结构;
    所述第一水槽和所述第二水槽均连接在所述安装座上,且所述第一进水口连接所述第一水箱,所述第二进水口连接所述第二水箱;
    所述上盖设有第一滑盖连接结构和第二滑盖连接结构,所述第一滑盖连接结构设有第一通孔且连接有第一滑轨,所述第一通孔与所述第一雾化片对应;所述第二滑盖连接结构设有第二通孔且连接有第二滑轨,所述第二通孔与所述第二雾化片对应;所述第一滑盖底部连接有第五滑块,所述第一主动磁体连接在所述第五滑块上;所述第二滑盖底部连接有第六滑块,所述第二主动磁体连接在所述第六滑块上;所述第一滑轨与所述第五滑块滑动连接,所述第二滑轨与所述第六滑块滑动连接;
    所述第一主动磁体受控移动至所述出雾区域时,所述第一主动磁体和所述第二被动磁体产生磁吸使得所述第一伸缩端密封所述出雾区域;所述第二主动磁体受控移动至所述出雾区域时,所述第二主动磁体和所述第二被动磁体产生磁吸使得所述第二伸缩端密封所述出雾区域。
  14. 一种雾化器,其特征在于,所述雾化器包括权利要求1至8任一项所述的雾化结构。
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