WO2021128735A1 - 一种泵水装置及美发器 - Google Patents

一种泵水装置及美发器 Download PDF

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Publication number
WO2021128735A1
WO2021128735A1 PCT/CN2020/094036 CN2020094036W WO2021128735A1 WO 2021128735 A1 WO2021128735 A1 WO 2021128735A1 CN 2020094036 W CN2020094036 W CN 2020094036W WO 2021128735 A1 WO2021128735 A1 WO 2021128735A1
Authority
WO
WIPO (PCT)
Prior art keywords
water
pipe
delivery channel
water delivery
liquid
Prior art date
Application number
PCT/CN2020/094036
Other languages
English (en)
French (fr)
Inventor
段德锦
Original Assignee
深圳市洋沃电子有限公司
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
Priority claimed from CN201911371472.7A external-priority patent/CN111140477B/zh
Priority claimed from CN202020066611.7U external-priority patent/CN211932975U/zh
Application filed by 深圳市洋沃电子有限公司 filed Critical 深圳市洋沃电子有限公司
Priority to KR2020227000044U priority Critical patent/KR20220002153U/ko
Priority to JP2022600101U priority patent/JP3240096U/ja
Publication of WO2021128735A1 publication Critical patent/WO2021128735A1/zh
Priority to US18/049,636 priority patent/US20230078299A1/en

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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F04POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
    • F04BPOSITIVE-DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS
    • F04B43/00Machines, pumps, or pumping installations having flexible working members
    • F04B43/12Machines, pumps, or pumping installations having flexible working members having peristaltic action
    • F04B43/123Machines, pumps, or pumping installations having flexible working members having peristaltic action using an excenter as the squeezing element
    • AHUMAN NECESSITIES
    • A45HAND OR TRAVELLING ARTICLES
    • A45DHAIRDRESSING OR SHAVING EQUIPMENT; EQUIPMENT FOR COSMETICS OR COSMETIC TREATMENTS, e.g. FOR MANICURING OR PEDICURING
    • A45D1/00Curling-tongs, i.e. tongs for use when hot; Curling-irons, i.e. irons for use when hot; Accessories therefor
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05BSPRAYING APPARATUS; ATOMISING APPARATUS; NOZZLES
    • B05B15/00Details of spraying plant or spraying apparatus not otherwise provided for; Accessories
    • B05B15/30Dip tubes
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05BSPRAYING APPARATUS; ATOMISING APPARATUS; NOZZLES
    • B05B9/00Spraying apparatus for discharge of liquids or other fluent material, without essentially mixing with gas or vapour
    • B05B9/03Spraying apparatus for discharge of liquids or other fluent material, without essentially mixing with gas or vapour characterised by means for supplying liquid or other fluent material
    • B05B9/04Spraying apparatus for discharge of liquids or other fluent material, without essentially mixing with gas or vapour characterised by means for supplying liquid or other fluent material with pressurised or compressible container; with pump
    • B05B9/0403Spraying apparatus for discharge of liquids or other fluent material, without essentially mixing with gas or vapour characterised by means for supplying liquid or other fluent material with pressurised or compressible container; with pump with pumps for liquids or other fluent material
    • B05B9/042Spraying apparatus for discharge of liquids or other fluent material, without essentially mixing with gas or vapour characterised by means for supplying liquid or other fluent material with pressurised or compressible container; with pump with pumps for liquids or other fluent material with peristaltic pumps
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05BSPRAYING APPARATUS; ATOMISING APPARATUS; NOZZLES
    • B05B9/00Spraying apparatus for discharge of liquids or other fluent material, without essentially mixing with gas or vapour
    • B05B9/03Spraying apparatus for discharge of liquids or other fluent material, without essentially mixing with gas or vapour characterised by means for supplying liquid or other fluent material
    • B05B9/04Spraying apparatus for discharge of liquids or other fluent material, without essentially mixing with gas or vapour characterised by means for supplying liquid or other fluent material with pressurised or compressible container; with pump
    • B05B9/08Apparatus to be carried on or by a person, e.g. of knapsack type
    • B05B9/085Apparatus to be carried on or by a person, e.g. of knapsack type with a liquid pump
    • B05B9/0855Apparatus to be carried on or by a person, e.g. of knapsack type with a liquid pump the pump being motor-driven
    • B05B9/0861Apparatus to be carried on or by a person, e.g. of knapsack type with a liquid pump the pump being motor-driven the motor being electric
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F04POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
    • F04BPOSITIVE-DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS
    • F04B23/00Pumping installations or systems
    • F04B23/02Pumping installations or systems having reservoirs
    • F04B23/025Pumping installations or systems having reservoirs the pump being located directly adjacent the reservoir
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F04POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
    • F04BPOSITIVE-DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS
    • F04B43/00Machines, pumps, or pumping installations having flexible working members
    • F04B43/12Machines, pumps, or pumping installations having flexible working members having peristaltic action
    • F04B43/1238Machines, pumps, or pumping installations having flexible working members having peristaltic action using only one roller as the squeezing element, the roller moving on an arc of a circle during squeezing
    • AHUMAN NECESSITIES
    • A45HAND OR TRAVELLING ARTICLES
    • A45DHAIRDRESSING OR SHAVING EQUIPMENT; EQUIPMENT FOR COSMETICS OR COSMETIC TREATMENTS, e.g. FOR MANICURING OR PEDICURING
    • A45D2/00Hair-curling or hair-waving appliances ; Appliances for hair dressing treatment not otherwise provided for
    • A45D2/001Hair straightening appliances
    • AHUMAN NECESSITIES
    • A45HAND OR TRAVELLING ARTICLES
    • A45DHAIRDRESSING OR SHAVING EQUIPMENT; EQUIPMENT FOR COSMETICS OR COSMETIC TREATMENTS, e.g. FOR MANICURING OR PEDICURING
    • A45D2/00Hair-curling or hair-waving appliances ; Appliances for hair dressing treatment not otherwise provided for
    • A45D2/36Hair curlers or hair winders with incorporated heating or drying means, e.g. electric, using chemical reaction
    • AHUMAN NECESSITIES
    • A45HAND OR TRAVELLING ARTICLES
    • A45DHAIRDRESSING OR SHAVING EQUIPMENT; EQUIPMENT FOR COSMETICS OR COSMETIC TREATMENTS, e.g. FOR MANICURING OR PEDICURING
    • A45D1/00Curling-tongs, i.e. tongs for use when hot; Curling-irons, i.e. irons for use when hot; Accessories therefor
    • A45D2001/008Curling-tongs, i.e. tongs for use when hot; Curling-irons, i.e. irons for use when hot; Accessories therefor with vapor generation, e.g. steam
    • AHUMAN NECESSITIES
    • A45HAND OR TRAVELLING ARTICLES
    • A45DHAIRDRESSING OR SHAVING EQUIPMENT; EQUIPMENT FOR COSMETICS OR COSMETIC TREATMENTS, e.g. FOR MANICURING OR PEDICURING
    • A45D2200/00Details not otherwise provided for in A45D
    • A45D2200/05Details of containers
    • A45D2200/054Means for supplying liquid to the outlet of the container
    • A45D2200/056Reciprocating pumps, i.e. with variable volume chamber wherein pressure and vacuum are alternately generated

Definitions

  • the invention relates to the technical field of hairdressing appliances, and in particular to a water pumping device and hairdressing appliances.
  • hairdressing appliances are increasingly widely used.
  • a hair straightener As an example.
  • a steam hair straightener appears on the market. It is connected with a water delivery mechanism to evaporate water to form water vapor during the straightening process. Moisturize the hair.
  • the existing water delivery mechanism requires an additional hose as a water delivery pipe to deliver water, which has many components and is not sufficiently simplified in structure.
  • the present invention provides a water pumping device and a hairdressing device.
  • a pumping device for connecting with a liquid storage device to transport the liquid in the liquid storage device, which includes a cavity containing the liquid and an squeezing device, The opposite ends of the cavity are respectively connected to the first water delivery channel and the second water delivery channel, the first water delivery channel is used to connect with the liquid storage device, the wall surface of the cavity is at least partially made of deformable material, so The squeezing device periodically squeezes the deformable material from one end of the cavity to the other end to make the first water delivery channel pump water and the second water delivery channel send water.
  • the present invention also provides a hairdressing appliance.
  • the hairdressing appliance includes a water pumping device and a liquid storage device, the liquid storage device is connected with the pumping device; the pumping device includes a cavity containing a liquid and a squeezing device The opposite ends of the cavity are respectively connected to the first water delivery channel and the second water delivery channel, the first water delivery channel is used to connect with the liquid storage device, and the wall surface of the cavity is at least partially made of deformable material, The squeezing device periodically squeezes the deformable material from one end of the cavity to the other end to make the first water delivery channel pump water and the second water delivery channel send water.
  • the liquid storage device includes a box, a water pipe, and a first water absorbing member.
  • One end of the water pipe passes through the water tank to communicate with the outside, and the opposite end of the water pipe is connected to the first water absorbing member;
  • One end of a water absorbing member is arranged on the water pipe, and the opposite end of the first water absorbing member extends in the box body.
  • the water pumping device and hairdressing device provided by the present invention have the following beneficial effects:
  • the pumping device provided by the present invention can be connected with a liquid storage device to transport the liquid in the liquid storage device, and includes a cavity containing the liquid and an squeezing device, wherein the opposite ends of the cavity are respectively connected to the first The water delivery channel and the second water delivery channel.
  • the first water delivery channel is used to connect with the liquid storage device.
  • the wall surface of the cavity is at least partially made of deformable material.
  • the squeezing device periodically squeezes the deformable material from one end of the cavity to the other end to For the first water delivery channel to pump water and the second water delivery channel to send water, because the cavity does not need to be provided with additional hoses to contain the liquid, the components are reduced, the overall structure is simplified, and the simplicity of the pumping device structure is improved.
  • the present invention also provides a hairdressing appliance, which includes the above-mentioned water pumping device and a liquid storage device.
  • the liquid storage device is connected to the above-mentioned water pumping device.
  • the hairdressing appliance has the same beneficial effects as the above-mentioned water pumping device. Go into details.
  • the liquid storage device can absorb the liquid in the box through the first water absorbing member, and the first water absorbing member extends to the end away from the water outlet in the box.
  • the liquid in the box can be kept away from the water outlet.
  • the end of the first water absorbing member away from the water outlet can move in the end of the box away from the water outlet.
  • the first water absorbing member can absorb the liquid when the box is inclined, and output the liquid to the outside to improve the liquid.
  • the utilization rate of this device can prevent the first water absorbing member from being unable to absorb liquid when the tank is in an inclined state.
  • Fig. 1 is a first structural diagram of a water pumping device provided by the first embodiment of the present invention.
  • Fig. 2 is a partial structural diagram of the water pumping device provided by the first embodiment of the present invention.
  • Fig. 3 is a schematic cross-sectional view of the cavity of the pumping device provided by the first embodiment of the present invention.
  • Fig. 4 is a schematic diagram of the structure of the outer bracket of the pumping device provided by the first embodiment of the present invention.
  • Fig. 5 is a schematic diagram of the structure of the flexible pump core of the pumping device provided by the first embodiment of the present invention.
  • Fig. 6 is the movement state diagram 1 of the squeezing device of the water pumping device provided by the first embodiment of the present invention.
  • FIG. 7 is the second movement state diagram of the squeezing device of the water pumping device provided by the first embodiment of the present invention.
  • Fig. 8 is a structural schematic diagram of the inner bracket of the water pumping device provided by the first embodiment of the present invention.
  • Fig. 9 is a first example of the connection between the outer bracket and the upper cover of the pumping device provided by the first embodiment of the present invention.
  • Fig. 10 is a first example of the connection between the outer bracket and the lower cover of the pumping device provided by the first embodiment of the present invention.
  • Fig. 11 is a second example of the connection between the outer bracket and the upper cover of the pumping device provided by the first embodiment of the present invention.
  • Fig. 12 is a second example of the connection between the outer bracket and the lower cover of the pumping device provided by the first embodiment of the present invention.
  • FIG. 13 is a schematic diagram of the structure of the squeezing device of the water pumping device provided by the first embodiment of the present invention.
  • Fig. 14 is a diagram showing an example of accommodating a motor under the cover of the pumping device according to the first embodiment of the present invention.
  • 15 is a schematic diagram of the overall structure of a liquid storage device provided by the second embodiment of the present invention.
  • Fig. 16 is a schematic diagram of an exploded structure of a liquid storage device provided by the second embodiment of the present invention.
  • 17 is a schematic diagram of the connection structure of the second housing, the water pipe and the first water absorbing member of a liquid storage device according to the second embodiment of the present invention.
  • FIG. 18 is a schematic diagram of the connection structure of the second housing, the water pipe, and the first water absorbing member of a liquid storage device according to the third embodiment of the present invention.
  • 19 is a schematic diagram of the explosive structure of the water conduit of a liquid storage device provided by the third embodiment of the present invention.
  • FIG. 20 is a schematic diagram of the connection structure of the second housing, the water pipe and the first water absorbing member of a liquid storage device according to the fourth embodiment of the present invention.
  • 21 is a schematic diagram of the structure of a water conduit of a liquid storage device provided by the fourth embodiment of the present invention.
  • Fig. 22 is a schematic structural diagram of a hairdressing device provided by a fifth embodiment of the present invention.
  • Fig. 23 is a schematic structural diagram of a steam hair straightener with a deformed hairdressing device provided by the fifth embodiment of the present invention.
  • the first embodiment of the present invention provides a water pumping device 10, which is used to connect with a liquid storage device to transport the liquid in the liquid storage device, which includes a cavity p containing liquid and a squeezing device 14.
  • the cavity p is defined by a hard wall surface and a deformable wall surface. In some embodiments, the cavity p may be completely bounded by deformable walls.
  • the pumping device 10 includes a flexible pump core 11, an outer support 12 and a baffle 13, the outer support 12 is sleeved on the outer peripheral side of the flexible pump core 11, and the baffle 13 is provided on the flexible pump core 11 and outside Between the brackets 12, and extend from one of the flexible pump core 11 and the outer bracket 12, and are positioned at the other.
  • the cross-sectional schematic diagram of the cavity p is shown in FIG. 3, and the flexible pump core 11 is a deformable material.
  • the flexible pump core 11 is a circular ring (as shown in Figure 5)
  • the outer bracket 12 is a circular ring with a gap 120 (as shown in Figure 4)
  • the stop The plate 13 is fixed on the flexible pump core 11, and the end of the baffle 13 away from the flexible pump core 13 is clamped in the notch 120 of the outer bracket 12.
  • the baffle 13 can be fixed on the outer support 12, and the end of the baffle 13 away from the outer support 12 is tightly attached to the flexible pump core 11, as long as the baffle 13 is installed on the flexible pump core 11 and the outer support 12, and the baffle 13 separates the first water delivery channel 121 and the second water delivery channel 122.
  • the baffle 13 is a deformable material.
  • the thickness of the baffle 13 on the side close to the flexible pump core 11 is smaller than that of the side far from the flexible pump core 11, and is squeezed by the squeezing device 14 to the position of the flexible pump core 11 corresponding to the baffle 13 At this time, the baffle 13 moves from the side close to the flexible pump core 11 to the side away from the flexible pump core 11 to give way to the squeezing device 14 so that the squeezing device 14 continues to move.
  • the cavity p is an annular ring with an opening
  • the baffle 13 is located at the opening of the cavity p
  • the pressing device 14 is an eccentric wheel 141.
  • the squeezing device 14 may be a circular roller or other shapes, and the cavity p may have other shapes, such as a fan shape or an elliptical shape with openings, a straight shape, etc., as long as the opposite ends of the cavity p are satisfied respectively.
  • the squeezing device 13 Connecting the first water delivery channel 121 and the second water delivery channel 122, the squeezing device 13 periodically squeezes the deformable material from one end of the cavity p to the other end so that the first water delivery channel 121 can pump water and the second water delivery channel 122 can send water. .
  • the flexible pump core 11 may be entirely made of deformable material. By changing the thickness of the deformable material, the flexible pump core 11 can be partially supported.
  • the upper and lower surfaces of the flexible pump core 11 are thicker and can support
  • the flexible pump core 11 has a certain shape, and the middle part of the flexible pump core 11 is relatively thin, can be squeezed to produce a certain deformation, and can basically return to its original shape when the squeezing force is removed.
  • the flexible pump core 11 is made of rubber, which can not only produce a certain deformation when being squeezed, but also make the cavity p have good sealing properties and prevent water leakage.
  • the flexible pump core 11 can also be made of other materials, such as other deformable materials such as silica gel, as long as the flexible pump core 11 can be squeezed and deformed to a certain extent, and the cavity p has good sealing properties. That's it.
  • the interior of the flexible pump core 11 can be partially deformed by a deformable material when squeezed, or all deformable materials can be deformed by squeezing. It only needs to meet the requirement that the part in contact with the squeezing device 14 is The deformable material can be deformed by being squeezed.
  • the outer bracket 12 may be composed entirely of hard materials, partly composed of hard materials, partly composed of deformable materials, or entirely composed of deformable materials with a relatively small degree of deformation, as long as the outer bracket 12 meets the requirements.
  • the outer bracket 12 When it is sleeved on the outer peripheral side of the flexible pump core 11, it can play a supporting role and define a cavity p with the flexible pump core 11.
  • the first water delivery channel 121 and the second water delivery channel 122 are arranged on the outer support 12, and the opposite ends of the cavity p are connected to the first water delivery channel 121 and the second water delivery channel 122 respectively.
  • the water channel 121 is used to connect with the liquid storage device.
  • the wall surface of the cavity p is at least partially made of deformable material.
  • the squeezing device 14 periodically squeezes the deformable material from one end of the cavity p to the other end to make the first water delivery channel 121 pump water.
  • the second water delivery channel 122 delivers water.
  • the pumping device 10 further includes an inner bracket 15 (shown in Figure 6), the inner bracket 15 is fixed inside the flexible pump core 11 (shown in Figure 5), the inner bracket 15 is For hard materials, the squeezing device 14 drives the inner bracket 15 to periodically squeeze the flexible pump core 11 from one end of the cavity p to the other end to make the first water delivery channel 121 pump water and the second water delivery channel 122 send water, and the squeezing device 14 moves Do not directly contact the flexible pump core 11, but by driving the inner bracket 15 to squeeze the flexible pump core 11, the wear of the flexible pump core 11 can be reduced. At the same time, the flexible pump core 11 will be squeezed by the inner bracket 15 to increase the squeeze contact The surface can improve the efficiency of the squeezing device 14 to squeeze the flexible pump core, reduce the load, and make the liquid delivery more uniform.
  • the arrow shows the direction of movement of the squeezing device 14.
  • the squeezing device 14 drives the inner bracket 15 to squeeze the flexible pump from one end of the cavity p to the other end
  • the core 11 divides the cavity p into a water inlet cavity p1 and a water outlet cavity p2.
  • the water inlet cavity p1 is located on the opposite side of the movement direction of the squeezing device 14 and the water outlet cavity p2 is located on the same side of the movement direction of the squeezing device 14. It can be understood that when the squeezing device 14 continues to move from the state shown in FIG.
  • the pumping device 10 further includes an upper cover 16 provided with a first protrusion 163 (as shown in FIG. 9) and a lower cover 17 (as shown in FIG. 9) with a second protrusion 173 10),
  • the flexible pump core 11 is provided with a first concave piece 112 and a second concave piece 113 (as shown in FIG. 5)
  • the first convex piece 163 is structurally matched with the first concave piece 112
  • the second convex piece 173 matches the structure of the second concave member 113.
  • the first convex member 163 squeezes the first concave member 112 to make the first concave member 112 abut the outer bracket 12, and the lower cover 17 and
  • the second convex member 173 squeezes the second concave member 113 so that the second concave member 113 is close to the outer bracket 12, which can make the cavity p have good sealing properties and prevent liquid from seeping out.
  • the upper cover 16 is provided with a first water delivery pipe 161
  • the lower cover 17 is provided with a second water delivery pipe 171
  • the flexible pump core 11 is provided at positions corresponding to the first water delivery channel 121 and the second water delivery channel 122 Water delivery hole 111.
  • the opposite surface of the outer bracket 12 and the upper cover 16 is provided with a first groove 123 and a first boss 162 that match each other (as shown in FIG. 11), and the first groove 123 and the first boss 162 are inserted into each other. At this time, the first water delivery pipe 161 and the first water delivery channel 121 are correspondingly communicated through the water delivery hole 111.
  • the opposite surface of the outer bracket 12 and the lower cover 17 is provided with a second groove 124 and a second boss 172 that match each other (as shown in FIG. 12). When the second groove 124 and the second boss 172 are inserted into each other , The second water delivery pipe 171 and the second water delivery channel 122 are correspondingly communicated through the water delivery hole 111.
  • one of the first groove 123 and the first boss 162 is provided on the outer support 12, and the other is provided on the upper cover 16; one of the second groove 124 and the second boss 172 is provided on the outer support 12 On the upper side, the other is provided on the lower cover 17.
  • first water delivery pipe 161 is connected to the first water delivery channel 121
  • second water delivery pipe 171 is connected to the second water delivery channel 122, exposing the outlet and inlet of the liquid directly in the first water delivery pipe 161 and the second water delivery pipe 171.
  • It can be used by plugging in a water pipe, which is convenient for pumping liquid from the liquid storage device into the pumping device 10 and for introducing other devices when the liquid is sent out of the pumping device 10.
  • first groove 123 and the first boss 162, the second groove 124 and the second boss 172 are provided to facilitate the connection of the first water pipe 161 with the first water pipe when the outer bracket 12 is connected to the upper cover 16 and the lower cover 17.
  • the water channel 121, the second water delivery pipe 171 and the second water delivery channel 122 are accurately docked to prevent water leakage caused by inaccurate docking.
  • the rigidity of the outer support 12 can be limited, and the extrusion device 14 and the outer support 12 can avoid mutual extrusion during operation.
  • the force and shaking improves the stability of conveying liquid, and the outer bracket 12 is fixed to ensure the formation of the flexible pump core 11 and improve the conveying effect of the liquid.
  • the extrusion device 14 includes an eccentric wheel 141, a swing bearing 142, a motor 143, and a reduction gear assembly 144.
  • the motor 143 and the eccentric wheel 141 are connected through a reduction gear assembly 144, and the motor 143 rotates through the reduction gear assembly 144 decelerates, so that the movement speed of the eccentric wheel 141 matches the best water frequency.
  • the swing bearing 142 is arranged on the eccentric wheel 141.
  • the swing bearing 142 is close to the deformable material.
  • the motor 143 rotates and drives the eccentricity through the reduction gear assembly 144.
  • the wheel 141 moves, which in turn drives the swing bearing 142 to periodically squeeze the deformable material from one end of the cavity p to the other end so that the first water delivery channel 121 pumps water and the second water delivery channel 122 delivers water. Because the swing bearing 142 is tightly connected to the deformable material When squeezing, the swing bearing 142 is driven by the eccentric wheel 141. There is less friction between the swing bearing 142 and the deformable material, which can reduce the wear of the deformable material and increase the service life of the pumping device 10.
  • the extrusion device 14 further includes a driving shaft 145, a driven shaft 146 and a sealing member 147, the driving shaft 145 is connected with the reduction gear assembly 144, the driven shaft 146 is connected with the driving shaft 145 and the eccentric wheel 141, sealing
  • the piece 147 is arranged between the driving shaft 145 and the driven shaft 146, which can separate the eccentric wheel 141 and the reduction gear assembly 144 without affecting the movement of the eccentric wheel 141, so as to achieve the effect of water and electricity separation, and improve the performance of the pumping device 10 Use safety.
  • the lower cover 17 is provided with a receiving groove q, and the motor 143 is accommodated in the receiving groove q, which can play a fixed role when the motor 143 rotates, so as to prevent the shaking of the motor 143 from causing liquid backflow.
  • the first water delivery channel 121 and the second water delivery channel 122 can also be provided on the flexible pump core 11, or one of the first water delivery channel 121 and the second water delivery channel 122 can be provided on the flexible pump core 11 ,
  • the other is arranged on the outer support 12, as long as the first water delivery channel 121 is connected to the liquid storage device, and the opposite ends of the cavity p are respectively connected to the first water delivery channel 121 and the second water delivery channel 122.
  • the flexible pump core 11 may not have a water delivery hole 111, and the first water delivery pipe 161 directly corresponds to the first water delivery channel 121, and the second water delivery pipe 171 directly corresponds to the second water delivery channel 122, as long as When the first groove 123 and the first boss 162 are inserted into each other, the first water pipe 161 is connected to the first water passage 121 correspondingly, and when the second groove 124 and the second boss 172 are inserted into each other, the second water pipe 161 is inserted into each other. It suffices that the water pipe 171 is correspondingly communicated with the second water delivery channel 122.
  • the first boss 162 may also be provided on the surface edge of the upper cover 16 relative to the outer bracket 12, and at the same time, a first groove 123 is provided at a corresponding position of the outer bracket 12 relative to the surface of the upper cover 16, so that the upper cover When 16 is connected to the outer bracket 12, the first boss 162 is just inserted into the first groove 123; or a first groove 123 is provided at a corresponding position on the outer peripheral side of the outer bracket 12, so that when the upper cover 16 is connected to the outer bracket 12, The first boss 162 just engages with the first groove 123.
  • the second boss 172 can also be provided on the edge of the surface of the lower cover 17 relative to the outer bracket 12, and at the same time, a second groove 124 is provided at the corresponding position of the outer bracket 12 relative to the surface of the lower cover 17, so that the lower cover 17 and the outer bracket 12 When connecting, the second boss 172 is just inserted into the second groove 124; or the second groove 124 is provided at a corresponding position on the outer periphery of the outer bracket 12, so that when the lower cover 17 is connected to the outer bracket 12, the second boss 172 It just snaps to the second groove 124.
  • the outer bracket 12 is connected with the upper cover 16 and the lower cover 17 in any manner of magnetic attraction, snap connection, and threaded connection.
  • the connection method of the outer bracket 12 with the upper cover 16 and the lower cover 17 is not discussed.
  • the specific limitation is as long as it is satisfied that the outer bracket 12 can be tightly connected with the upper cover 16 and the lower cover 17, and is also easy to disassemble, so as to facilitate the cleaning and maintenance of the internal structure of the pumping device 10.
  • the second embodiment of the present invention provides a liquid storage device 30, which is used to provide liquid for external devices (such as hairdressers, humidifiers, facial cleansers, etc.).
  • the liquid storage device 30 includes a box. 31.
  • the water pipe 32 and the first water absorbing member 33, a part of the water pipe 32 and the first water absorbing member 33 are built in the box 31, and the first water absorbing member 33 is connected with the water pipe 32.
  • the two are connected
  • the specific method is that one end of the first water absorbing member 33 is placed in the water pipe 32, and the opposite end of the first water absorbing member 33 extends to the wall surface of the box body 31 away from the water pipe 32; the water pipe 32 penetrates the box body 31 and is partially exposed outside the box body 31.
  • the water pipe 32 is used to output liquid to an external device
  • the tank body 31 is used to store liquid
  • the first water absorbing member 33 is used to suck the liquid in the tank body 31 and output it to the outside through the water pipe 32.
  • the water conduit 32 can be used to connect a water pump to discharge the liquid in the tank 31 through the water pump.
  • a water pump for example, in a steam hair straightening device, the liquid in the tank 31 is pumped by a peristaltic pump.
  • the water guiding pipe 32 and the first water absorbing member 33 have an interference fit, so that the water guiding pipe 32 and the first water absorbing member 33 are sealed at the connection point, avoiding the problem of pumping failure caused by improper connection, and improving the stability of pumping.
  • the box body 31 includes a first housing 311 and a second housing 312.
  • the first housing 311 is buckled on the second housing 312, and there is a space between the first housing 311 and the second housing 312.
  • the first water absorbing member 33 and the part of the water pipe 32 are placed in the accommodating space, and the accommodating space is used to store liquid.
  • the second housing 312 is provided with a water outlet 3121, and the water pipe 32 passes through the water outlet 3121 penetrates through the second housing 312 to output the liquid in the tank 31 to an external device.
  • the end away from the water pipe 32 increases due to the weight of the first water absorbing member 33.
  • the end of 33 away from the water pipe 32 can move in the box 31.
  • the end of the first water absorbing member 33 away from the water pipe 32 can move to a position to absorb the liquid.
  • the water pipe 32 and the first water absorbing member 33 are arranged in the accommodating space in the box body 31, and the first water absorbing member 33 is in contact with the liquid in the box body 31 to allow the liquid in the box body 31 to pass through the water pipe 32 enters the external device, the first water absorbing member 33 sucks the liquid in the tank 31, and the external device extracts the liquid from the liquid storage device 30.
  • the air pressure outside the tank 31 is lower than the internal air pressure.
  • the first water absorbing member 33 wicks the tank through the wicking effect.
  • the liquid in 31 is transferred to the external device through the water pipe 32.
  • the end of the first water absorbing member 33 away from the water pipe 32 is provided with a weight block 3248, so that the box body 31 can be held, and the end of the first water absorbing member 33 with the weight block 3248 is on the box body 31.
  • the inner movement can be moved to the position of the liquid in the tank 31 to ensure that the first water absorbing member 33 can output liquid.
  • the water pipe 32 is provided with at least one first through hole 321 at a position corresponding to the first water absorbing member 33, and the position of the first water absorbing member 33 corresponding to the first through hole 321 is exposed from the first through hole 321 .
  • the first through hole 321 is provided on the water pipe 32, so that the liquid in the tank 31 at the position where the water pipe 32 is located can contact the first water absorbing member 33.
  • the liquid in the tank 31 When the liquid in the tank 31 is less At this time, the liquid can be accumulated at the water pipe 32 by inverting the box body 31, and the liquid at the position of the water pipe 32 is sucked by the first water absorbing member 33 at the position of the through hole 321, which improves the liquid utilization rate of the liquid storage device 30. Further, the first water absorbing member 33 is exposed to contact with the liquid corresponding to the position of the first through hole 321, the contact surface of the first water absorbing member 33 with the liquid is increased, the area of the first water absorbing member 33 to absorb water is increased, and the liquid storage device 30 is more exposed to liquid. The absorption utilization rate.
  • the water pipe 32 is made of a flexible material, so that the water pipe 32 can be elastically deformed at the position of the first through hole 321, that is, the first through hole 321 can be deformed to increase the movement range of the first water absorbing member 33.
  • the end of the first water absorbing member 33 away from the water pipe 32 can be moved to more positions in the box body 31 to absorb liquid, which improves the utilization rate of the liquid in the box body 31.
  • the first through hole 321 is in an interference fit with the first water absorbing member 33 to maintain the seal between the two and prevent the problem of inability to absorb water caused by the leakage of the first through hole 321.
  • the first housing 311 includes a water injection hole 3111, a cover 3112, a barrier 3113, and a vent 3114.
  • the water injection hole 3111 and the vent 3114 penetrate the first housing 311.
  • the cover 3112 matches the water injection hole 3111, and the cover 3112 is covered on the water injection hole 3111, the blocking member 3113 penetrates the first housing 311, the cover 3112 is used to block the water injection hole 3111 when in use, the water injection hole 3111 is used to inject liquid into the box 31, and the vent hole 3114 is used to keep The air pressure in the box 31 is balanced, and the barrier 3113 is used to block the vent 3114.
  • the user can inject liquid into the box body 31 through the water injection hole 3111, and the cover 3112 can seal the water injection hole 3111 to keep the box 31 filled with liquid in a sealed state.
  • the vent hole 3114 can keep the air pressure inside the box 31 consistent with the outside air pressure, and the barrier 3113 can block the vent hole 3114 to prevent liquid from leaking from the position of the vent hole 3114.
  • a water suction auxiliary assembly 324 is provided on the side of the water guiding pipe 32 near the water outlet 3121.
  • the water suction auxiliary assembly 324 extends away from the water guiding pipe 32.
  • the water suction auxiliary assembly 324 is used to suck the box 31 close to the water outlet. Liquid at position 3121.
  • the water absorption auxiliary assembly 324 is arranged at a position of the tank 31 close to the water outlet 3121 to suck the liquid of the tank 31 at the water outlet 3121. It can be understood that when there is less liquid in the tank 31, the liquid storage device can be used. 30 While the first water absorbing member 33 provides less liquid, the water absorption auxiliary assembly 324 can normally provide liquid, which improves the liquid utilization rate of the liquid storage device 30.
  • the water suction auxiliary assembly 324 includes a water suction auxiliary pipe 3241 and a second water suction member 3242.
  • the water suction auxiliary pipe 3241 is arranged on the side of the water guiding pipe 32 close to the water outlet 3121, and the water suction auxiliary pipe 3241 is facing away from the water guiding pipe 32.
  • the auxiliary suction pipe 3241 is in communication with the water guiding pipe 32, and at least one second through hole 3243 is provided on the auxiliary suction pipe 3241.
  • the auxiliary suction pipe 3241 is used for the second suction member 3242 to absorb liquid for transmission, and the second suction member 3242 It is used to suck the liquid in the position of the tank 31 close to the water outlet 3121, and the second through hole 3243 is used to increase the contact surface between the second water absorbing member 3242 and the liquid.
  • the second water absorbing member 3242 is built in the auxiliary water suction pipe 3241, and the length of the second water absorbing member 3242 is greater than the length of the auxiliary water suction pipe 3241, so that one end of the second water absorbing member 3242 is exposed to the auxiliary water suction pipe 3241, and one end of the auxiliary water suction pipe 3241 It is connected to the pipe body of the water pipe 32, and the opposite end extends toward the inner surface of the box body 31.
  • the end of the second water absorbing member 3242 away from the water pipe 32 sucks the liquid and transmits it to the water pipe 32 to make the second water absorbing member in the box body 31
  • the liquid at the position of 3242 far away from the water outlet 3121 is used.
  • the second through hole 3243 is provided on the auxiliary suction pipe 3241, which can increase the contact area of the second suction member 3242 with the liquid, so that the liquid in the tank 31 at the position of the auxiliary suction pipe 3241 Absorbed by the second water absorbing member 3242, the utilization rate of the liquid in the tank 31 is increased.
  • the length of the second water absorbing member 3242 is less than or equal to the length of the auxiliary water suction pipe 3241, as long as the second water absorbing member 3242 can be placed in the auxiliary water suction pipe 3241 and absorb water.
  • the first water absorbing member 33 and the second water absorbing member 3242 may be cotton swabs or other materials with a wicking effect.
  • the number of the second through holes 3243 can be one, two, three, or more than three, as long as the second water absorbing member 3242 can pass through the second through hole 3243 to contact the liquid.
  • the auxiliary suction pipe 3241 extends to the inner surface of the tank 31 to increase the utilization rate of the liquid in the tank 31.
  • the water guiding pipe 32 has a T-shaped three-way pipe structure, and it can be understood that the water suction auxiliary pipe 3241 is arranged perpendicular to the water guiding pipe 32.
  • the water suction sub-pipe 3241 and the wall surface of the tank 31 near the end of the water outlet 3121 maintain the same size, which can improve the utilization rate of the liquid at a lower water level.
  • the third embodiment of the present invention provides a liquid storage device 30', which is different from the second embodiment in that: the water absorption auxiliary assembly 324' includes a water absorption block 3244' and a drainage member 3245', which absorbs water
  • the block 3244' is arranged on the side of the drain piece 3245' close to the inner surface of the box body 31'.
  • the drain piece 3245' is in communication with the water pipe 32'.
  • the drain piece 3245' includes at least one drain port 3249', and the drain port 3249' and the guide
  • the water pipe 32' is in communication, and the water absorption block 3244' is arranged on the drain port 3249'.
  • the water absorption block 3244' is used to suck the liquid in the box 31' and discharge it through the drain 3245', and the drain 3245' is used to close the box 31'. Discharge of liquid at the position of the water outlet 3121'.
  • a drainage port 3249' is opened on the side of the drainage piece 3245' close to the surface of the box body 31', the water absorbing block 3244' is in contact with the inner surface of the box body 31', and the water absorbing block 3244' is in interference connection with the drain port 3249' to absorb water.
  • the block 3244' sucks the liquid near the water outlet 3121' of the box body 31' and discharges it through the drain 3245', so that the liquid in the box body 31' close to the water outlet 3121' is sucked by the water absorption block 3244', which improves the tank Utilization rate of the liquid in the body 31'.
  • the absorbent block 3244' can be any absorbent material of cotton swabs or sponges.
  • the water conduit 32' includes a compression portion 122' and a connection portion 123', the connection portion 123' is connected to one end of the first water absorbing member 33', the compression portion 122' is compressible, and the first water absorbing member 33' is compressed
  • the compression part 122' is close to the water pipe 32', so that the liquid in the position of the tank body 31' close to the water pipe 32' is sucked by the first water absorbing member 33' and transferred to the external device. Further, the first water absorbing member 33' compresses the compression portion 122' to move in the box 31', thereby increasing the moving range of the first water absorbing member 33'.
  • the number of the drainage ports 3249' can be 1, 2, 3, or more than 3, as long as the water absorbing block 3244' can be exposed to liquid through the drainage ports 3249'.
  • the interference fit of the water absorbing block 3244' and the draining piece 3245' makes the water absorbing block 3244' and the draining piece 3245' sealed at the connection, avoiding the problem of pumping failure caused by the improper connection, and improving the pumping stability.
  • the fourth embodiment of the present invention provides a liquid storage device 30", which differs from the second embodiment in that: the water absorption auxiliary assembly 324" includes a water pipe 3246", a fixed pipe 3247", and a second embodiment.
  • the two water absorbing parts 3242" and the water pipe 3246” are positioned on the pipe body of the fixed pipe 3247".
  • the water pipe 32", the water pipe 3246" and the fixed pipe 3247” are arranged and connected in sequence to form an H-shaped four-way pipe. structure.
  • the second water absorbing member 3242" is built into the fixed pipe 3247".
  • the fixed pipe 3247" has at least one second through hole 3243".
  • the second through hole 3243" is opened in the fixed pipe 3247" away from the water pipe 3246". side.
  • the two ends of the fixed pipe 3247" are open, and the second water absorbing member 3242" has a built-in fixed pipe 3247” that can be exposed to both ends of the fixed pipe 3247” to make contact with liquid.
  • the position of the fixed pipe 3247” The liquid can be further utilized.
  • the user can tilt the liquid in the tank 330" to this position, so that the second water absorbing member 3242” can absorb the liquid.
  • a second through hole 3243" is provided on the fixed pipe 3247". The contact area between the second water absorbing member 3242" and the liquid can be increased, and the utilization rate of the liquid can be improved.
  • the length of the second water absorbing member 3242" can be less than, greater than or equal to the length of the fixed pipe 3247", as long as the second water absorbing member 3242" is fixed in the fixed pipe 3247" and water is absorbed.
  • the number of the second through holes 3243" can be 1, 2, 3, or more than 3, as long as the second water absorbing member 3242" can contact the liquid through the second through holes 3243".
  • the fixed pipe 3247" and the second water absorbing member 3242" have an interference fit, so that the fixed pipe 3247” and the second water absorbing member 3242" are sealed at the connection point, avoiding the problem of pumping failure caused by improper connection, and improving the stability of pumping. Therefore, the second through hole 3243" and the second water absorbing member 3242" are in an interference fit to maintain the seal between the two and prevent the problem of inability to absorb water caused by the leakage of the second through hole 3243".
  • a fifth embodiment of the present invention provides a hairdressing device 20.
  • the hairdressing device 20 may include a water pumping device 21 and a liquid storage device 22 disclosed in the present invention.
  • the liquid storage device 22 is connected to the water pumping device 21,
  • the hairdressing device 20 can be used to straighten hair, curl hair, dye hair, maintain hair, etc., and the embodiment of the present invention does not specifically limit it.
  • the volume of the above-mentioned cavity p is 0.01ml-0.1ml
  • the speed of the squeezing device squeezing the cavity is 40r/min-90r/min
  • the water pumping device 21 works at this volume and the squeezing speed, and can The amount of liquid sent from the water pumping device 21 and the frequency of sending the liquid can be applied to the hairdresser 20 without causing too little or too much liquid to affect the hairdressing effect of the hairdresser 20.
  • the hairdresser 20 when the hairdresser 20 is in use, it usually needs to be held and used at multiple angles (for example, the portable steam hair straightener needs to be lifted to meet the requirements of straight hair at various angles), so that the liquid in the device is stored
  • the device 22 also needs to change the angle, and the liquid in the liquid storage device 22 will move to different positions.
  • the liquid storage device 22 can continue to absorb the liquid to increase the liquid usage rate and avoid the liquid. The problem of inability to absorb water caused by inversion.
  • the steam hair straightener 24 of the hairdresser 20 is deformed.
  • the steam hair straightener 24 includes an atomizing device 23 through which the liquid sent from the second water pipe of the water pumping device 21 passes The atomizing device 23 forms water vapor.

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Jet Pumps And Other Pumps (AREA)
  • Massaging Devices (AREA)
  • Cleaning And Drying Hair (AREA)
  • Reciprocating Pumps (AREA)
  • Coating Apparatus (AREA)

Abstract

一种泵水装置及美发器,该泵水装置(10)用于与液体储存装置连接以输送液体储存装置中的液体,包括容纳液体的腔体(p)及挤压装置(14),其中,腔体(p)相对的两端分别连通第一输水道(121)和第二输水道(122),第一输水道(121)用于与液体储存装置连接,腔体(p)的壁面至少部分为可变形材料,挤压装置(14)周期性从腔体(p)的一端向另一端挤压可变形材料以使第一输水道(121)抽水及第二输水道(122)送水。由于腔体无需额外设置软管来容纳液体,减少了零组件,简化了整体结构,提高了泵水装置结构的简洁性。

Description

一种泵水装置及美发器 【技术领域】
本发明涉及美发器技术领域,其特别涉及一种泵水装置及美发器。
【背景技术】
随着人们生活水平的提高和对美发艺术的追求,美发器日益得到广泛的应用。以直发器为例来说,为了减少直发过程中对头发的损伤,市场上出现了一种蒸汽直发器,通过与送水机构连接,在直发的过程中将水蒸发形成水蒸汽以便给头发补水。然而,现有的送水机构需要额外设置软管作为输水管输送水,其零组件较多,结构不够简化。
【发明内容】
为了克服现有送水机构零组件较多,结构不够简化的问题,本发明提供一种泵水装置及美发器。
本发明为解决上述技术问题,提供如下的技术方案:一种泵水装置,用于与液体储存装置连接以输送所述液体储存装置中的液体,其包括容纳液体的腔体及挤压装置,所述腔体相对的两端分别连通第一输水道和第二输水道,所述第一输水道用于与所述液体储存装置连接,所述腔体的壁面至少部分为可变形材料,所述挤压装置周期性从所述腔体的一端向另一端挤压所述可变形材料以使所述第一输水道抽水及所述第二输水道送水。
本发明还提供一种美发器,所述美发器包括泵水装置及液体储存装置,所述液体储存装置与所述泵水装置连接;所述泵水装置包括容纳液体的腔体及挤压装置,所述腔体相对 的两端分别连通第一输水道和第二输水道,所述第一输水道用于与所述液体储存装置连接,所述腔体的壁面至少部分为可变形材料,所述挤压装置周期性从所述腔体的一端向另一端挤压所述可变形材料以使所述第一输水道抽水及所述第二输水道送水。
优选地,所述液体储存装置包括箱体、导水管及第一吸水件,所述导水管一端穿过水箱与外部连通,所述导水管相对一端与所述第一吸水件连接;所述第一吸水件一端设置于所述导水管上,所述第一吸水件相对一端在箱体内延伸。
与现有技术相比,本发明所提供的一种泵水装置及美发器具有如下的有益效果:
1、本发明所提供的泵水装置可以与液体储存装置连接以输送所述液体储存装置中的液体,包括容纳液体的腔体及挤压装置,其中,腔体相对的两端分别连通第一输水道和第二输水道,第一输水道用于与液体储存装置连接,腔体的壁面至少部分为可变形材料,挤压装置周期性从腔体的一端向另一端挤压可变形材料以使第一输水道抽水及第二输水道送水,由于腔体无需额外设置软管来容纳液体,减少了零组件,简化了整体结构,提高了泵水装置结构的简洁性。
2、本发明还提供一种美发器,其包括上述泵水装置及液体储存装置,液体储存装置与上述泵水装置连接,该美发器具有与上述泵水装置相同的有益效果,在此不做赘述。
3、液体储存装置可通过第一吸水件吸取箱体内的液体,第一吸水件在箱体内向远离出水口一端延伸,可在箱体内液体余量较少时,将箱体内远离出水口的液体进行吸取,同时,第一吸水件远离出水口一端可在箱体内远离出水口的一端进行移动,第一吸水件在箱体处于倾斜状态下可吸取到液体,并将液体输出至外部,提高液体的使用率,避免箱体处于倾斜状态时导致第一吸水件无法吸取液体。
【附图说明】
图1是本发明第一实施例提供的泵水装置的结构示意图一。
图2是本发明第一实施例提供的泵水装置的部分结构示意图。
图3是本发明第一实施例提供的泵水装置之腔体的剖视示意图。
图4是本发明第一实施例提供的泵水装置之外支架的结构示意图。
图5是本发明第一实施例提供的泵水装置之柔性泵心的结构示意图。
图6是本发明第一实施例提供的泵水装置之挤压装置的运动状态图一。
图7是本发明第一实施例提供的泵水装置之挤压装置的运动状态图二。
图8是本发明第一实施例提供的泵水装置之内支架的结构示意图。
图9是本发明第一实施例提供的泵水装置之外支架和上盖连接的示例图一。
图10是本发明第一实施例提供的泵水装置之外支架和下盖连接的示例图一。
图11是本发明第一实施例提供的泵水装置之外支架和上盖连接的示例图二。
图12是本发明第一实施例提供的泵水装置之外支架和下盖连接的示例图二。
图13是本发明第一实施例提供的泵水装置之挤压装置的结构示意图。
图14是本发明第一实施例提供的泵水装置之下盖容置 电机的示例图。
图15是本实用新型第二实施例提供的一种液体储存装置的整体结构示意图。
图16是本实用新型第二实施例提供的一种液体储存装置的爆炸结构示意图。
图17是本实用新型第二实施例提供的一种液体储存装置的第二壳体、导水管及第一吸水件连接结构示意图。
图18是本实用新型第三实施例提供的一种液体储存装置的第二壳体、导水管及第一吸水件连接结构示意图。
图19是本实用新型第三实施例提供的一种液体储存装置的导水管的爆炸结构示意图。
图20是本实用新型第四实施例提供的一种液体储存装置的第二壳体、导水管及第一吸水件连接结构示意图。
图21是本实用新型第四实施例提供的一种液体储存装置的导水管的结构示意图。
图22是本发明第五实施例提供的美发器的结构示意图。
图23是本发明第五实施例提供的美发器变形之蒸汽直发器的结构示意图。
【具体实施方式】
为了使本发明的目的,技术方案及优点更加清楚明白,以下结合附图及实施实例,对本发明进行进一步详细说明。应当理解,此处所描述的具体实施例仅仅用以解释本发明,并不用于限定本发明。
请结合图1,本发明的第一实施例提供一种泵水装置10,用于与液体储存装置连接以输送所述液体储存装置中的液体,其包括容纳液体的腔体p及挤压装置14。
具体地,腔体p由硬质壁面和可变形壁面界定。在一些实施例中,腔体p可以全部由可变形壁面界定。
请结合图1-图3,泵水装置10包括柔性泵心11、外支架12和挡板13,外支架12套设在柔性泵心11外周侧,挡板13设于柔性泵心11和外支架12之间,并从柔性泵心11和外支架12之一延伸并定位于另一。其中,腔体p的剖视示意图如图3所示,柔性泵心11为可变形材料。
具体地,请结合图2、图4和图5,柔性泵心11为圆环状(如图5所示),外支架12为带缺口120的圆环状(如图4所示),挡板13固定于柔性泵心11上,且挡板13远离柔性泵心13的一端卡接在外支架12的缺口120中。在一些实施例中,挡板13可固定于外支架12上,且挡板13远离外支架12的一端与柔性泵心11紧密贴紧,只要满足挡板13设于柔性泵心11和外支架12之间,且挡板13将第一输水道121和第二输水道122分隔开即可。
具体地,挡板13为可变形材料,挡板13靠近柔性泵心11一侧的厚度小于远离柔性泵心11一侧,在挤压装置14挤压到柔性泵心11对应挡板13的位置时,挡板13靠近柔性泵心11一侧向远离柔性泵心11一侧移动,以给挤压装置14让位使得挤压装置14继续运动。
具体地,腔体p为带开口的圆环状,挡板13位于腔体p的开口处,挤压装置14为偏心轮141。在一些实施例中,挤压装置14可以为圆形滚轮或其他,腔体p可以为其他形状,如扇形或带开口的椭圆形,一字型等,只要满足腔体p相对的两端分别连通第一输水道121和第二输水道122,挤压装置13周期性从腔体p的一端向另一端挤压可变形材料以使第一输水道121抽水及第二输水道122送水即可。
可选地,柔性泵心11可以整体由可变形材料构成,通过改变可变形材料的厚度,使得柔性泵心11局部起支撑作用,比如说,柔性泵心11的上下表面较厚,可以支撑使得柔性泵心11具有一定形状,柔性泵心11中间部分较薄,可以被挤压 而产生一定形变,并在挤压力撤销时可以基本恢复原形。优选地,柔性泵心11为橡胶制成,既能在被挤压时产生一定形变,又能使腔体p具有良好的密封性,防止漏水。在一些实施例中,柔性泵心11也可以为其他材料构成,如硅胶等其他可变形材料,只要满足柔性泵心11能被挤压且产生一定形变,且使得腔体p具有良好的密封性即可。
可以理解,柔性泵心11的内部可以局部为可变形材料受挤压可发生形变,也可以全部为可变形材料而受挤压可发生形变,其仅需要满足与挤压装置14接触的部分为可变形材料而受挤压可发生形变即可。
可选地,外支架12可以整体由硬质材料构成,也可以部分由硬质材料构成、部分由可变形材料构成,还可以整体由形变程度较小的可变形材料构成,只要满足外支架12套设在柔性泵心11外周侧时起支撑作用,且与柔性泵心11界定形成腔体p即可。
请继续结合图2和图4,第一输水道121和第二输水道122设置在外支架12上,腔体p相对的两端分别连通第一输水道121和第二输水道122,第一输水道121用于与液体储存装置连接,腔体p的壁面至少部分为可变形材料,挤压装置14周期性从腔体p的一端向另一端挤压可变形材料以使第一输水道121抽水及第二输水道122送水。
请结合图2、图5和图6,泵水装置10进一步包括内支架15(如图6所示),内支架15固定于柔性泵心11内部(如图5所示),内支架15为硬质材料,挤压装置14带动内支架15周期性从腔体p的一端向另一端挤压柔性泵心11以使第一输水道121抽水及第二输水道122送水,挤压装置14运动时不直接接触柔性泵心11,而通过带动内支架15挤压柔性泵心11,能够减少柔性泵心11的磨损,同时,将由内支架15挤压柔性泵心11,增大了挤压接触面,能够提高挤压装置14挤压柔性泵 心的效率,降低负载,使得液体的输送更加均匀。
请参阅图7-图8,箭头所示为挤压装置14的运动方向,泵水装置10处于工作状态时,挤压装置14带动内支架15从腔体p的一端向另一端挤压柔性泵心11以将腔体p分成进水腔p1和出水腔p2,进水腔p1位于挤压装置14的运动方向的相背侧,出水腔p2位于挤压装置14的运动方向的相同侧。可以理解,挤压装置14从图7所示状态继续运动时,进水腔p1会产生负压,液体从第一输水道121抽入进水腔p1,同时,出水腔p2会产生正压,出水腔p2中的液体从第二输水道122送出,当挤压装置14运动至图8所示状态时,出水腔p2中的液体送出,第一输水道121和第二输水道122之间无软管结构,由于腔体无需额外设置软管来容纳液体,减少了零组件,简化了整体结构,提高了泵水装置10结构的简洁性。
请结合图5、图9和图10,泵水装置10进一步包括设有第一凸状件163的上盖16(如图9所示)和第二凸状件173的下盖17(如图10所示),柔性泵心11设有第一凹状件112和第二凹状件113(如图5所示),第一凸状件163与第一凹状件112结构匹配,第二凸状件173与第二凹状件113结构匹配,上盖16与外支架12连接时,第一凸状件163挤压第一凹状件112以使第一凹状件112贴紧外支架12,下盖17与外支架12连接时,第二凸状件173挤压第二凹状件113以使第二凹状件113贴紧外支架12,能够使得腔体p具有良好的密封性,防止液体渗出。
请参阅图11-图12,上盖16设有第一输水管161,下盖17设有第二输水管171,柔性泵心11对应第一输水道121和第二输水道122的位置设有输水孔111。
外支架12与上盖16相对的表面上设有相互匹配的第一凹槽123和第一凸台162(如图11中所示),第一凹槽123和第一凸台162相互插合时,第一输水管161与第一输水道121通 过输水孔111对应连通。外支架12与下盖17相对的表面上设有相互匹配的第二凹槽124和第二凸台172(如图12所示),第二凹槽124和第二凸台172相互插合时,第二输水管171与第二输水道122通过输水孔111对应连通。
可选的,第一凹槽123和第一凸台162之一设在外支架12上,则另一设在上盖16上;第二凹槽124和第二凸台172之一设在外支架12上,则另一设在下盖17上。
可以理解,通过第一输水管161对接第一输水道121、第二输水管171对接第二输水道122,将液体的出口和入口外露出来,直接在第一输水管161和第二输水管171上插上水管即可使用,便于将液体从液体储存装置抽入泵水装置10以及液体送出泵水装置10时引入其他装置。此外,设置第一凹槽123和第一凸台162、第二凹槽124和第二凸台172,在外支架12连接上盖16和下盖17时便于将第一输水管161与第一输水道121、第二输水管171与第二输水道122准确对接,防止对接不准导致漏水,同时,能够限制外支架12的刚性,避免工作时挤压装置14与外支架12产生相互挤压的力而晃动,提高了输送液体的平稳性,以及固定外支架12,保证柔性泵心11成型,提高液体的输送效果。
请结合图2和图13,挤压装置14包括偏心轮141、摆动轴承142、电机143和减速齿轮组件144,电机143和偏心轮141通过减速齿轮组件144连接,电机143转动时通过减速齿轮组件144进行减速,从而使得偏心轮141的运动速度与最佳出水频率匹配,摆动轴承142设于偏心轮141上,摆动轴承142贴紧可变形材料,由电机143转动并通过减速齿轮组件144带动偏心轮141运动,进而带动摆动轴承142周期性从腔体p的一端向另一端挤压可变形材料以使第一输水道121抽水及第二输水道122送水,由于摆动轴承142与可变形材料紧贴,挤压时通过偏心轮141带动摆动轴承142,摆动轴承142与可变形 材料之间摩擦较少,能够减少可变形材料的磨损,提高泵水装置10的使用寿命。
请继续参阅图13,挤压装置14进一步包括主动轴145、从动轴146和密封件147,主动轴145与减速齿轮组件144连接,从动轴146与主动轴145和偏心轮141连接,密封件147设置在主动轴145与从动轴146之间,能够在不影响偏心轮141运动的情况下将偏心轮141和减速齿轮组件144隔开,达到水电分离的效果,提高泵水装置10的使用安全性。
请参阅图14,下盖17设有一容纳槽q,电机143容置与该容纳槽q,能够在电机143转动时起固定作用,避免电机143晃动导致液体回流。
作为一种变形实施例,第一输水道121和第二输水道122也可以设置在柔性泵心11上,或者,第一输水道121和第二输水道122之一设置在柔性泵心11上,另一设置在外支架12上,只要满足第一输水道121与液体储存装置连接,且腔体p相对的两端分别连通第一输水道121和第二输水道122即可。
在一些变形实施例中,柔性泵心11可以不设输水孔111,由第一输水管161与第一输水道121直接对应,以及第二输水管171与第二输水道122直接对应,只要满足第一凹槽123和第一凸台162相互插合时,第一输水管161与第一输水道121对应连通,第二凹槽124和第二凸台172相互插合时,第二输水管171与第二输水道122对应连通即可。
在一些变形实施例中,第一凸台162还可以设置在上盖16相对外支架12的表面边缘,同时在外支架12相对上盖16的表面的对应位置设置第一凹槽123,使得上盖16与外支架12连接时,第一凸台162刚好插在第一凹槽123中;或者在外支架12外周侧的对应位置设置第一凹槽123,使得上盖16与外支架12连接时,第一凸台162刚好与第一凹槽123卡接。同理,第二凸台172还可以设置在下盖17相对外支架12的表面边缘, 同时在外支架12相对下盖17的表面的对应位置设置第二凹槽124,使得下盖17与外支架12连接时,第二凸台172刚好插在第二凹槽124中;或者在外支架12外周侧的对应位置设置第二凹槽124,使得下盖17与外支架12连接时,第二凸台172刚好与第二凹槽124卡接。
可选的,外支架12与上盖16和下盖17之间采用磁吸、卡接、螺纹连接任一种方式进行连接,关于外支架12与上盖16和下盖17的连接方式不做具体限定,只要满足外支架12既能与上盖16和下盖17紧密连接,又便于拆卸,方便对泵水装置10内部结构的清洗及维护即可。
请结合图15和图16,本发明第二实施例提供了一种液体储存装置30,用于为外部装置(如美发器、加湿器、洁面器等)提供液体,液体储存装置30包括箱体31、导水管32及第一吸水件33,导水管32的局部及第一吸水件33内置于箱体31内,第一吸水件33与导水管32连通,作为一种实施例,两者连通的方式具体为第一吸水件33一端置于导水管32内,第一吸水件33相对一端延伸至箱体31内远离导水管32的壁面;导水管32贯穿箱体31并部分外露于箱体31,导水管32用于向外部装置输出液体,箱体31用于储存液体,第一吸水件33用于吸取箱体31内的液体并通过导水管32向外部输出。
可以理解,导水管32可用于连接水泵,通过水泵将箱体31内的液体排出,例如,在蒸汽直发装置中,通过蠕动泵抽取箱体31内的液体。
可以理解,导水管32与第一吸水件33过盈配合,使得导水管32与第一吸水件33在连接处密封,避免连接不紧密导致的抽水失败的问题,提高抽水的稳定性。
具体地,箱体31包括第一壳体311与第二壳体312,第一壳体311扣合于第二壳体312上,第一壳体311与第二壳体312之间有一可容置空间,第一吸水件33、导水管32的局部置于 该容置空间内,且该容置空间用于储存液体,第二壳体312上设有出水口3121,导水管32通过出水口3121贯穿第二壳体312,以将箱体31内的液体输出至外部装置,特别地,第一吸水件33在吸取液体后,远离导水管32的一端因吸取液体重量增加,第一吸水件33远离导水管32的一端可在箱体31内移动,在箱体31内的液体较少时,第一吸水件33远离导水管32的一端可移动至液体的位置吸取液体,向导水管32的位置输出液体。
可以理解,导水管32及第一吸水件33设置于箱体31内的可容置空间内,第一吸水件33与箱体31内的液体接触,可使箱体31内的液体通过导水管32进入外部装置,第一吸水件33在箱体31内吸取液体,外部装置抽取液体储存装置30的液体,箱体31外部气压比内部气压小,第一吸水件33通过芯吸效应将箱体31内的液体通过导水管32传递到外部装置上。
可选地,第一吸水件33远离导水管32的一端设有负重块3248,可使在箱体31处于被握持的状态,第一吸水件33带有负重块3248的一端在箱体31内移动,可移动到箱体31内的液体所处位置,确保第一吸水件33可输出液体。
请继续结合图15与图16,导水管32对应第一吸水件33的位置上设置至少一第一通孔321,第一吸水件33对应第一通孔321的位置外露于第一通孔321。可以理解,导水管32上开设第一通孔321,可使得箱体31在导水管32所处的位置上的液体可接触到第一吸水件33,则当箱体31内的液体存量较少时,可通过倒置箱体31,使得液体堆积于导水管32处,导水管32所处位置上的液体被通孔321位置的第一吸水件33吸取,提高液体储存装置30的液体利用率,进一步地,第一吸水件33对应第一通孔321位置外露与液体接触,第一吸水件33与液体的接触面增大,提高第一吸水件33吸水的面积,提高液体储存装置30对液体的吸收利用率。
可选地,导水管32为柔性材料,使得导水管32可在第一通孔321的位置上进行弹性形变,也即第一通孔321可进行形变,以使第一吸水件33移动幅度增大,第一吸水件33远离导水管32一端可移动至箱体31内更多的位置吸取液体,提高箱体31内液体的利用率。
可选地,第一通孔321与第一吸水件33过盈配合,保持二者的密封,防止第一通孔321漏气带来的无法吸水的问题。
请继续参阅图16,第一壳体311包括注水孔3111、盖子3112、阻隔件3113、通气孔3114,注水孔3111与通气孔3114贯穿第一壳体311,盖子3112与注水孔3111匹配,盖子3112盖合于注水孔3111上,阻隔件3113贯穿第一壳体311,盖子3112用于在使用时堵塞注水孔3111,注水孔3111用于使液体的注入箱体31,通气孔3114用于保持箱体31内气压平衡,阻隔件3113用于阻隔通气孔3114。
具体地,用户可通过注水孔3111向箱体31注入液体,盖子3112可将注水孔3111密封,以使注满液体的箱体31保持密闭状态。通气孔3114可将箱体31内与外部气压保持一致,阻隔件3113可将通气孔3114堵塞,避免液体自通气孔3114位置漏出。
请结合图16与图17,导水管32靠近出水口3121一侧设有一吸水辅助组件324,吸水辅助组件324向远离导水管32的方向延伸,吸水辅助组件324用于吸取箱体31靠近出水口3121位置的液体。
具体地,吸水辅助组件324设置在箱体31靠近出水口3121的位置,以吸取箱体31在出水口3121位置的液体,可以理解,在箱体31内液体较少时,可使液体储存装置30在第一吸水件33提供较少液体的同时,吸水辅助组件324可正常提供液体,提高液体储存装置30的液体利用率。
请继续结合图16与图17,吸水辅助组件324包括吸水副 管3241及第二吸水件3242,吸水副管3241设置于导水管32靠近出水口3121一侧,吸水副管3241向远离导水管32的方向延伸,吸水副管3241与导水管32导通,吸水副管3241上开设至少一第二通孔3243,吸水副管3241用于第二吸水件3242吸取液体的传输,第二吸水件3242用于吸取箱体31靠近出水口3121位置的液体,第二通孔3243用于增大第二吸水件3242与液体的接触面。
具体地,第二吸水件3242内置于吸水副管3241中,第二吸水件3242的长度大于吸水副管3241的长度,使得第二吸水件3242一端外露于吸水副管3241,吸水副管3241一端与导水管32管体连接,相对一端向箱体31内表面延伸,第二吸水件3242远离导水管32的一端吸取液体,并传输至导水管32处,可使箱体31内第二吸水件3242远离出水口3121位置的液体得到利用,吸水副管3241上设置第二通孔3243,可增加第二吸水件3242与液体接触的面积,使得箱体31内处于吸水副管3241位置上的液体被第二吸水件3242所吸取,增加箱体31内液体的利用率,当然,第二吸水件3242的长度小于或等于吸水副管3241的长度,只要第二吸水件3242可置于吸水副管3241内并进行吸水即可。
可选地,第一吸水件33与第二吸水件3242可以为棉棒或其他具有芯吸效应的材料。
可选地,第二通孔3243的数量可为1个,2个,3个,或3个以上,只要可以使第二吸水件3242可透过第二通孔3243接触液体即可。本实施例中,第二通孔3243为1个,但不限于本实施例。
可选地,吸水副管3241延伸至箱体31内表面,以增加对箱体31内的液体的利用率。
可选地,导水管32为T字型三通管结构,可以理解,吸水副管3241与导水管32垂直设置。
可选地,吸水副管3241与箱体31靠近出水口3121一端的壁面保持同一尺寸,可提高更低水位时对液体的利用率。
请结合图18与图19,本发明第三实施例提供一种液体储存装置30’,其与第二实施例的区别在于:吸水辅助组件324’包括吸水块3244’及排水件3245’,吸水块3244’设置于排水件3245’靠近箱体31’内表面的一侧,排水件3245’与导水管32’导通,排水件3245’包括至少一排水口3249’,排水口3249’与导水管32’连通,吸水块3244’设置于排水口3249’上,吸水块3244’用于吸取箱体31’内的液体并通过排水件3245’排出,排水件3245’用于箱体31’靠近出水口3121’位置液体的排出。
具体地,排水件3245’靠近箱体31’表面的一侧开设一排水口3249’,吸水块3244’与箱体31’内表面接触,吸水块3244’与排水口3249’过盈连接,吸水块3244’通过吸取箱体31’靠近出水口3121’位置的液体,并通过排水件3245’进行排出,使得箱体31’内靠近出水口3121’的液体被吸水块3244’所吸取,提高箱体31’内液体的利用率。优选地,吸水块3244’可以为棉棒、海绵任一种吸水材质。
可选地,导水管32’包括压缩部122’及连接部123’,连接部123’与第一吸水件33’一端连接,压缩部122’为可压缩设置,第一吸水件33’通过压缩压缩部122’以靠近导水管32’,使得箱体31’靠近导水管32’位置的液体为第一吸水件33’所吸取并传输至外部装置。进一步地,第一吸水件33’压缩压缩部122’以在箱体31’内进行移动,增大第一吸水件33’的移动幅度。
可选地,排水口3249’的数量可为1个,2个,3个,或3个以上,只要可以使吸水块3244’可透过排水口3249’接触液体即可。本实施例中,排水口3249’为1个,但不限于本实施例。
可以理解,吸水块3244’及排水件3245’过盈配合,使得吸水块3244’及排水件3245’在连接处密封,避免连接不紧密 导致的抽水失败的问题,提高抽水的稳定性。
请结合图20与图21,本发明第四实施例提供一种液体储存装置30”,其与第二实施例的区别在于:吸水辅助组件324”包括通水管3246”、固定管3247”及第二吸水件3242”,通水管3246”定位于固定管3247”的管体上,导水管32”、通水管3246”及固定管3247”依次设置并导通,以形成H字型四通管的结构。第二吸水件3242”内置于固定管3247”内,固定管3247”上开设至少一第二通孔3243”,优选地,第二通孔3243”开设于固定管3247”背离通水管3246”一侧。
具体地,固定管3247”两端处为开放设置,第二吸水件3242”内置固定管3247”内,可通过外露于固定管3247”的两端进行与液体接触,固定管3247”所处位置的液体得到进一步的利用,同时,用户可将箱体330”内的液体倾向该位置,使得第二吸水件3242”可吸取液体,进一步地,固定管3247”上开设第二通孔3243”,可增加第二吸水件3242”与液体的接触面积,提升液体的利用率。
可以理解,第二吸水件3242”的长度可以小于、大于或等于固定管3247”的长度,只要使第二吸水件3242”固定于固定管3247”内,并进行吸水即可。
可选地,第二通孔3243”的数量可为1个,2个,3个,或3个以上,只要可以使第二吸水件3242”可透过第二通孔3243”接触液体即可。本实施例中,第二通孔3243”为1个,但不限于本实施例。
可以理解,固定管3247”与第二吸水件3242”过盈配合,使得固定管3247”与第二吸水件3242”在连接处密封,避免连接不紧密导致的抽水失败的问题,提高抽水的稳定性,第二通孔3243”与第二吸水件3242”过盈配合,保持二者的密封,防止第二通孔3243”漏气带来的无法吸水的问题。
请参阅图22,本发明的第五实施例提供一种美发器20, 该美发器20可以包括本发明公开的泵水装置21及液体储存装置22,液体储存装置22与泵水装置21连接,美发器20可以用于直发、卷发、染发和养护头发等,本发明实施例不作具体限定。具体地,上述腔体p的容积为0.01ml-0.1ml,挤压装置挤压腔体的速度为40r/min-90r/min,泵水装置21在此容积以及挤压速度下进行工作,能够使得从泵水装置21送出的液体的量以及送出液体的频率能够适用美发器20,不会导致送出的液体过少或过多影响美发器20美发的效果。
可以理解,美发器20在使用时,通常需要握持并在多种角度下使用(例如便携式蒸汽直发器使用时需要抬起以适应多种角度直发的要求),使得装置内的液体储存装置22也需要进行角度的变换,则液体储存装置22内的液体会移动至不同位置,当液体移动至靠近出水口的时候,可通过液体储存装置22继续吸取液体,提高液体使用率,避免液体倒置导致的无法吸水的问题。
作为一种实施例,请参阅图23,美发器20变形之蒸汽直发器24,该蒸汽直发器24包括一雾化装置23,从泵水装置21的第二输水管送出的液体经过该雾化装置23形成水蒸汽。
以上对本发明实施例公开的一种泵水装置及美发器进行了详细介绍,本文中应用了具体个例对本发明的原理及实施方式进行了阐述,以上实施例的说明只是用于帮助理解本发明的方法及其核心思想;同时,对于本领域的一般技术人员,依据本发明的思想,在具体实施方式及应用范围上均会有改变之处,综上所述,本说明书内容不应理解为对本发明的限制,凡在本发明的原则之内所作的任何修改,等同替换和改进等均应包含本发明的保护范围之内。

Claims (15)

  1. 一种泵水装置,用于与液体储存装置连接以输送所述液体储存装置中的液体,其特征在于:包括容纳液体的腔体及挤压装置,所述腔体相对的两端分别连通第一输水道和第二输水道,所述第一输水道用于与所述液体储存装置连接,所述腔体的壁面至少部分为可变形材料,所述挤压装置周期性从所述腔体的一端向另一端挤压所述可变形材料以使所述第一输水道抽水及所述第二输水道送水。
  2. 一种美发器,其特征在于:所述美发器包括泵水装置及液体储存装置,所述液体储存装置与所述泵水装置连接;所述泵水装置包括容纳液体的腔体及挤压装置,所述腔体相对的两端分别连通第一输水道和第二输水道,所述第一输水道用于与所述液体储存装置连接,所述腔体的壁面至少部分为可变形材料,所述挤压装置周期性从所述腔体的一端向另一端挤压所述可变形材料以使所述第一输水道抽水及所述第二输水道送水。
  3. 如权利要求2中所述的美发器,其特征在于:所述腔体由硬质壁面和可变形壁面界定,所述第一输水道和第二输水道之间无软管结构。
  4. 如权利要求3中所述的美发器,其特征在于:所述泵水装置包括柔性泵心、外支架和挡板,所述外支架套设在所述柔性泵心外周侧,所述挡板设于所述柔性泵心和所述外支架之间,并从所述柔性泵心和所述外支架之一延伸并定位于另一;所述柔性泵心为所述可变形材料。
  5. 如权利要求4中所述的美发器,其特征在于:所述泵水装置进一步包括设有第一凸状件的上盖和第二凸状件的下盖,所述柔性泵心设有第一凹状件和第二凹状件,所述第一凸状件与所述第一凹状件结构匹配,所述第二凸状件和所述第二凹状件结构匹配;
    所述上盖与所述外支架连接时,所述第一凸状件挤压所述第一凹状件以使所述第一凹状件贴紧所述外支架;所述下盖与所述外支架连接时,所述第二凸状件挤压所述第二凹状件以使所述第二凹状件贴紧所述外支架。
  6. 如权利要求4中所述的美发器,其特征在于:所述泵水装置进一步包括内支架,所述内支架固定于所述柔性泵心内部,所述挤压装置带动所述内支架周期性从所述腔体的一端向另一端挤压所述柔性泵心以使所述第一输水道抽水及所述第二输水道送水。
  7. 如权利要求2中所述的美发器,其特征在于:所述挤压装置包括偏心轮,所述腔体为带开口的圆环状。
  8. 如权利要求7中所述的美发器,其特征在于:所述挤压装置进一步包括摆动轴承,所述摆动轴承设于所述偏心轮上,所述摆动轴承贴紧所述可变形材料;所述偏心轮运动时带动所述摆动轴承周期性从所述腔体的一端向另一端挤压所述可变形材料以使所述第一输水道抽水及所述第二输水道送水。
  9. 如权利要求4中所述的美发器,其特征在于:所述柔性泵心为圆环状,所述外支架为带缺口的圆环状,所述挡板固定于所述柔性泵心上,且挡板远离所述柔性泵心的一端卡接在所述缺口中。
  10. 如权利要求4中所述的美发器,其特征在于:所述挡板为所述可变形材料,所述挡板靠近所述柔性泵心一侧的厚度小于远离所述柔性泵心一侧。
  11. 如权利要求5中所述的美发器,其特征在于:所述上盖设有第一输水管,所述下盖设有第二输水管,所述柔性泵心对应所述第一输水道和所述第二输水道的位置设有输水孔,所述外支架与所述上盖相对的表面上设有相互匹配的第一凹槽和第一凸台,所述外支架与所述下盖相对的表面上 设有相互匹配的第二凹槽和第二凸台,所述第一凹槽和所述第一凸台相互插合时,所述第一输水管与所述第一输水道通过输水孔对应连通,所述第二凹槽和所述第二凸台相互插合时,所述第二输水管与所述第二输水道通过输水孔对应连通。
  12. 如权利要求2中所述的美发器,其特征在于:所述液体储存装置包括箱体、导水管及第一吸水件,所述导水管一端穿过水箱与外部连通,所述导水管相对一端与所述第一吸水件连接;所述第一吸水件一端设置于所述导水管上,所述第一吸水件相对一端在箱体内延伸。
  13. 如权利要求12中所述的美发器,其特征在于:所述导水管对应所述第一吸水件的位置设置至少一第一通孔,所述第一吸水件对应所述第一通孔的位置外露于所述第一通孔。
  14. 如权利要求12中所述的美发器,其特征在于:所述箱体对应所述导水管一侧设有出水口,所述导水管穿过所述出水口;所述导水管在箱体内靠近所述出水口一侧设有一吸水辅助组件,所述吸水辅助组件连通所述导水管。
  15. 如权利要求14中所述的美发器,其特征在于:所述吸水辅助组件包括吸水副管及第二吸水件,所述吸水副管设置于所述导水管靠近所述出水口一侧,所述吸水副管与导水管导通;所述第二吸水件设置于吸水副管上。
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