WO2022062083A1 - 出水装置及出水设备 - Google Patents

出水装置及出水设备 Download PDF

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Publication number
WO2022062083A1
WO2022062083A1 PCT/CN2020/126388 CN2020126388W WO2022062083A1 WO 2022062083 A1 WO2022062083 A1 WO 2022062083A1 CN 2020126388 W CN2020126388 W CN 2020126388W WO 2022062083 A1 WO2022062083 A1 WO 2022062083A1
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WO
WIPO (PCT)
Prior art keywords
container
channel
water
water flow
introduction
Prior art date
Application number
PCT/CN2020/126388
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English (en)
French (fr)
Inventor
曹斌
吴石龙
陈东海
林逢德
Original Assignee
厦门松霖科技股份有限公司
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Application filed by 厦门松霖科技股份有限公司 filed Critical 厦门松霖科技股份有限公司
Publication of WO2022062083A1 publication Critical patent/WO2022062083A1/zh

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05BSPRAYING APPARATUS; ATOMISING APPARATUS; NOZZLES
    • B05B1/00Nozzles, spray heads or other outlets, with or without auxiliary devices such as valves, heating means
    • B05B1/14Nozzles, spray heads or other outlets, with or without auxiliary devices such as valves, heating means with multiple outlet openings; with strainers in or outside the outlet opening
    • B05B1/18Roses; Shower heads
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05BSPRAYING APPARATUS; ATOMISING APPARATUS; NOZZLES
    • B05B1/00Nozzles, spray heads or other outlets, with or without auxiliary devices such as valves, heating means
    • B05B1/14Nozzles, spray heads or other outlets, with or without auxiliary devices such as valves, heating means with multiple outlet openings; with strainers in or outside the outlet opening
    • B05B1/16Nozzles, spray heads or other outlets, with or without auxiliary devices such as valves, heating means with multiple outlet openings; with strainers in or outside the outlet opening having selectively- effective outlets

Definitions

  • the present disclosure relates to a water outlet device and water outlet equipment.
  • the spray head When using the spray head for rinsing and showering operations, it is often necessary to add some functional substances to have additional functions while spraying water. Effect.
  • the spray head in the related art does not well solve the problem of being connected to the container to export the essential oil in the container.
  • the present disclosure proposes a water outlet device, which well solves the problem of exporting functional substances in a container.
  • the water outlet device can be connected to a container in which functional substances are stored, and the water outlet device includes a first water flow channel for conducting water flow, a spray portion, and a spray portion for introducing the function into the spray portion.
  • the introduction part of the substance; the spraying part can spray the water flow conducted through the first water flow channel;
  • the introduction part includes an introduction channel and a discharge channel, and the introduction channel can communicate with the first water flow channel; wherein, when the first water flow channel is When the container is connected to the water outlet device, at least part of the introduction member extends into the container, and the introduction channel is respectively connected with the container and the first water flow channel, and the outlet channel is connected with the container,
  • the functional substance is flushed from the container into the spray part so that the water flow conducted from the first water flow channel can flow through the introduction channel, the interior of the container and the outlet channel in sequence.
  • the introduction channel can selectively communicate with the first water flow channel.
  • the water outlet device includes:
  • a water dividing body which is arranged in the casing, and the water dividing body is provided with at least part of the first water flow channel;
  • valve core arranged in the water dividing body, the valve core can move between a first position and a second position, and when the valve core is located at the first position, can block the first water flow a channel and the introduction channel, when the valve core is in the second position, the first water flow channel is communicated with the introduction channel;
  • a switch assembly connected to the valve core, can drive the valve core to move between the first position and the second position.
  • the water outlet device further includes a positioning assembly capable of selectively positioning the valve core at the first position or the second position.
  • the switching assembly is provided with a first recess and a second recess; the positioning assembly includes:
  • the positioning pin when the valve core is at the first position, the positioning pin is positioned at the first recess; when the valve core is at the second position, the positioning pin is positioned at the second recess.
  • the introduction member is movable between a first position and a second position, and when the introduction member is in the first position, the first water flow channel is connected to the introduction channel When the introduction member is located at the second position, the introduction member blocks the first water flow channel and the introduction channel.
  • the water outlet device includes a housing and a water dividing body, and the water dividing body is provided in the housing;
  • the water outlet device further includes a second elastic element and a fixing piece, one end of the second elastic element abuts against the water dividing body, and the other end of the second elastic element abuts against the introduction piece, and makes all the the introduction has a tendency to move to the second position;
  • the fixing member is connected to the water separation body, and the container is detachably connected to the fixing member; when the container is installed on the fixing member, the container is pressed against the introduction member, and the container is The introduction member is located at the first position, and when the container is not mounted on the fixing member, the introduction member is driven to be at the second position by the second elastic element.
  • the fixing member is in the shape of a ring, and the fixing member is provided with a slot;
  • the container includes a cavity part and an interface part, the cavity part stores the functional substance, the interface part is connected to the cavity part, and the outside of the interface part is provided with bumps, the bumps can be engaged with the card slot.
  • an opening is provided on an end face of the interface portion away from the cavity portion, and the functional substance can flow out of the container through the opening;
  • the container further comprises a sealing film closed on the edge of the opening, when the container is not connected to the water outlet device, the sealing film can seal the functional substance in the container;
  • One end of the introduction member is provided with a pointed portion, and when the container is connected to the water outlet device, the pointed portion can pierce the sealing membrane and protrude into the interface portion.
  • the water outlet device further includes a second water flow channel for conducting water flow, the second water flow channel and the first water flow channel are provided independently, and the spray part can spray out water from the first water flow channel.
  • Two water flow channels conduct water flow.
  • a water outlet device comprising a body and a container detachably connected to the body, the body is the water outlet device according to any one of the above, and the container stores functional substances, The functional substance can be introduced into the body through the introduction of the body.
  • a water outlet device capable of being connected to a container in which functional substances are stored, the water outlet device comprising a first water flow channel for conducting water flow, a spray portion, a handle portion, and a The introduction member for introducing the functional substance into the spray part, the spray part can spray the water flow conducted through the first water flow channel; the handle part is connected to the spray part; the container can be connected to the handle part.
  • the introduction part is arranged at one end part of the handle part, and the introduction part includes an introduction channel and an export channel, and the introduction channel can communicate with all the the first water flow channel; when the container is connected to the handle part, at least part of the introduction member extends into the container, and the introduction channel is respectively connected to the container and the first water flow channel, so The lead-out channel is communicated with the container, so that the water flow conducted from the first water flow channel can flow through the lead-in channel, the interior of the container and the lead-out channel in sequence, and the functional substance is removed from the container. Flush into the spray section.
  • the water outlet device of the embodiment of the present disclosure includes an introduction member and a first water flow channel
  • the introduction member includes an introduction channel and an outlet channel
  • the introduction channel can communicate with the first water flow channel
  • the water flow conducted from the first water flow channel can pass through the introduction channel and the outlet channel.
  • the outlet channel enters and exits the container, and the functional substance is flushed from the container into the spray part.
  • the water outlet device of the embodiment of the present disclosure adopts the technical means that at least part of the introduction member can extend into the container, so that the water flows in and out of the container and the functional substance is exported, so that the container can be connected to the water outlet device in an external manner, which is a good solution to the problem.
  • the problem of functional substance derivation is a good solution to the problem.
  • FIG. 1 is a schematic structural diagram of a water outlet device from a perspective according to an embodiment of the present disclosure.
  • FIG. 2 is a schematic structural diagram of a water outlet device from another perspective according to an embodiment of the present disclosure.
  • FIG. 3 shows an exploded view of a water outlet device according to an embodiment of the present disclosure.
  • FIG. 4 is a cross-sectional view along section line A-A of FIG. 1 with the spool in a second position.
  • FIG. 5 is a cross-sectional view along section line B-B of FIG. 2 with the spool in a second position.
  • FIG. 6 is a cross-sectional view taken along section line C-C in FIG. 4 .
  • FIG. 7 is a schematic structural diagram of a container according to an embodiment of the present disclosure.
  • FIG. 8 is a schematic structural diagram of a fixing member according to an embodiment of the present disclosure.
  • FIG. 9 is a schematic structural diagram of an introduction tube according to an embodiment of the present disclosure.
  • FIG. 10 shows a cross-sectional view of the introduction tube along its axial direction according to an embodiment of the present disclosure.
  • FIG. 11 is a partial enlarged view of J in FIG. 4 .
  • FIG. 12 is a partial enlarged view of K in FIG. 4 .
  • FIG. 13 is a cross-sectional view along section line A-A of FIG. 1 with the spool in a first position.
  • FIG. 14 is a cross-sectional view along section line B-B of FIG. 1 with the spool in a first position.
  • FIG. 15 is a partial enlarged view of L in FIG. 13 .
  • FIG. 16 is a schematic view of the structure of the removal container in FIG. 4 .
  • FIG. 17 is a schematic view of the structure of the removal container in FIG. 5 .
  • FIG. 18 is a partial enlarged view of M in FIG. 16 .
  • FIG. 19 shows a schematic diagram of a water outlet device according to the second embodiment of the present disclosure.
  • FIG. 20 shows a schematic diagram of a water outlet device according to a third embodiment of the present disclosure.
  • FIG. 21 shows a schematic diagram of a water outlet device according to a fourth embodiment of the present disclosure.
  • FIG. 22 is a schematic structural diagram of a microbubble generator according to an embodiment of the present disclosure.
  • FIG. 23 shows a cross-sectional view along section line D-D of FIG. 22 .
  • FIG. 24 is a cross-sectional view of a water outlet device of an embodiment of the present disclosure in which the first water flow direction is perpendicular to the second water flow direction.
  • 25 is a cross-sectional view showing an acute angle between the first water flow direction and the second water flow direction of the water outlet device according to an embodiment of the present disclosure.
  • FIG. 26 is a cross-sectional view showing an obtuse angle between the first water flow direction and the second water flow direction of the water outlet device according to an embodiment of the present disclosure.
  • FIG. 27 is a schematic structural diagram of a fixed valve according to an embodiment of the present disclosure.
  • FIG. 28 shows a cross-sectional view of a stationary valve according to an embodiment of the present disclosure.
  • Example embodiments will now be described more fully with reference to the accompanying drawings.
  • Example embodiments can be embodied in various forms and should not be construed as limited to the embodiments set forth herein; rather, these embodiments are provided so that this disclosure will be thorough and complete, and will fully convey the concept of example embodiments to those skilled in the art.
  • the same reference numerals in the drawings denote the same or similar structures, and thus their detailed descriptions will be omitted.
  • FIG. 1 shows a schematic structural diagram of a water outlet device according to an embodiment of the present disclosure from one perspective
  • FIG. 2 shows a structure of the water outlet device according to an embodiment of the present disclosure from another perspective
  • FIG. 3 shows an exploded view of a water outlet device according to an embodiment of the present disclosure.
  • the water outlet device of the embodiment of the present disclosure includes a housing 1100 , a fixing member 200 , an introduction pipe 300 , a water separating body 400 , a valve core 500 , a mandrel 600 , a switching assembly 700 , a microbubble generator 1300 and a face cover 1500 .
  • the water outlet device can be connected to a container 100 .
  • the water outlet device of the embodiment of the present disclosure may include a handle portion 1140 and a spray portion 1160, the handle portion 1140 is used for holding by a user, and the spray portion 1160 is connected to the handle portion 1140 for spraying water flow.
  • the spray part 1160 can be connected to the side surface of one end of the handle part 1140 , the container 100 can be connected to the end surface of one end part of the handle part 1140 , and the other end of the handle part 1140 is used for connecting a water supply pipe.
  • the structure of the water outlet device of the embodiment of the present disclosure can be made more compact and the volume is smaller.
  • the water flow can flow into the container 100 in a substantially straight line, and the In the case of substantially no loss of water pressure, the water flow can more easily flush the functional substance out of the container.
  • case 1100 in the embodiment of the present disclosure may include an upper case and a lower case, and the upper case and the lower case may be connected to each other by snap connections.
  • the housing 1100 By designing the housing 1100 as a detachable split structure, the assembly of various components in the housing 1100 is facilitated.
  • the water separation body 400 is provided in the housing 1100 and has a water flow channel, and the water flow channel can guide the water flow to the spray part 1160 .
  • the valve core 500 is arranged in the water separation body 400 and can be moved between the first position and the second position for switching the conduction of different water flow channels.
  • the switch assembly 700 is connected to the valve core 500, and the user can operate the switch assembly 700 to drive the valve core 500 to move between the first position and the second position.
  • the mandrel 600 includes a base portion 620 and a connecting portion 610. The base portion 620 is disposed in the casing 1100, and the connecting portion 610 is exposed outside the casing 1100 for connecting with a water supply pipe.
  • the micro-bubble generator 1300 is connected to the spray part 1160, and can generate micro-bubble water when the water flows through the micro-bubble generator 1300.
  • the face cover 1500 is connected to the spraying part 1160 for spraying the generated micro-bubble water.
  • the water outlet device in the embodiment of the present disclosure may not include a micro-bubble generator, so that the spraying part sprays a general water flow.
  • the introduction pipe 300 is provided in the water separation body 400 .
  • a functional substance is stored in the container 100 , and the functional substance can enter the housing 1100 through the introduction tube 300 and combine with the microbubble water in the housing 1100 .
  • the functional substance in the embodiment of the present disclosure may be a hydrophobic substance, and preferably, the functional substance may further be an essential oil or a mixture of essential oils.
  • the combination of essential oils and micro-bubble water can make the beauty effect more prominent.
  • the functional substances of the present disclosure are not limited to essential oils, for example, other functional substances such as soapy water, perfume, detergent, and disinfectant.
  • the state of the functional substance is not limited to liquid, and the functional substance may be solid, paste, or the like according to the different storage states of different substances.
  • FIG. 4 is a cross-sectional view along section line A-A of FIG. 1 , with the valve core 500 in the second position.
  • FIG. 5 is a cross-sectional view along section line B-B of FIG. 2 with the spool 500 in a second position.
  • FIG. 6 is a cross-sectional view taken along section line C-C in FIG. 4 .
  • the water outlet device of the embodiment of the present disclosure includes a first water flow channel 2100 for conducting water flow.
  • the first water flow channel 2100 includes a first water inlet end and a first water outlet end.
  • the first water inlet end can be communicated with a water supply pipe.
  • a water outlet can spray the liquid supplied from the water supply pipe.
  • the first water flow channel 2100 may be formed in the water separation body 400 .
  • the first water flow channel 2100 communicates with the inlet channel 310 of the inlet pipe 300 and communicates with the outlet channel 320 .
  • the liquid supplied from the water supply pipe can flow through the introduction channel 310, the interior of the container 100, and the outlet channel 320 in sequence, so as to flush the essential oil stored in the container 100 into the first water flow channel 2100, and finally combine with the micro-bubble water to form Tiny essential oil bubbles.
  • the tiny essential oil bubbles can enter the skin for deep maintenance, which greatly improves the beauty effect.
  • the water outlet device further includes a second water flow channel 2200 for conducting water flow, and the second water flow channel 2200 and the first water flow channel 2100 may be provided independently of each other.
  • the first water flow channel 2100 can be blocked.
  • the second water flow channel 2200 remains open, and the liquid supplied from the water supply pipe can flow to the spray part 1160 through the second water flow channel 2200 .
  • the second water flow channel 2200 may be formed in the water separation body 400.
  • FIG. 27 shows a schematic structural diagram of a fixed valve according to an embodiment of the present disclosure
  • FIG. 28 shows a cross-sectional view of the fixed valve according to an embodiment of the present disclosure
  • the water outlet device of the embodiment of the present disclosure further includes a one-way valve 420 and a fixed valve 1000 , and the fixed valve 1000 is connected to the water separation body 400 .
  • the one-way valve 420 is provided between the water separation body 400 and the fixed valve 1000, and can prevent the reverse flow of the water flow. Specifically, after the water flow of the first water flow channel enters the container to flush out the functional substance, it can flow to the spraying part through the one-way valve 420 .
  • the one-way valve 420 can prevent the reverse flow of the water flow.
  • the fixed valve 1000 includes an installation part 1010 and a pipe part 1020 , the installation part 1010 is connected to the water separation body 400 , and a through hole 1021 is provided on the pipe wall of the pipe part 1020 .
  • the number of the through holes 1021 may be two, and the two through holes 1021 are disposed opposite to each other.
  • the low pressure area 1030 between the outer wall of the pipe part 1020 and the water separation body, and the low pressure area 1030 is connected to the second water flow channel and the through hole 1021 respectively.
  • the pressure loss is small, so the flow rate of the second water flow channel is faster than that of the first water flow channel, so a negative pressure can be generated in the low pressure area 1030, and the generated negative pressure can suck the functional substances out of the container and combine with the second water flow channel.
  • the water flow in the flow channel is mixed, and the final mixed water flow passes through the action of the micro-bubble generator, and the functional substance is fully refined into tiny particles, which improves the utilization rate and efficacy of the functional substance.
  • the functional substance is an essential oil
  • the cleansing and cosmetic effects of the essential oil can be enhanced.
  • FIG. 7 shows a schematic structural diagram of a container 100 according to an embodiment of the present disclosure.
  • the container 100 of the embodiment of the present disclosure includes a cavity part 110 and an interface part 120 .
  • Functional substances such as essential oils, are stored in the cavity part 110 .
  • the interface part 120 is connected to the cavity part 110 , and one end surface of the interface part 120 away from the cavity part 110 is provided with an opening 121 , so that the functional substances in the cavity part 110 can flow out of the container through the opening 121 .
  • the container also includes a sealing film, which is closed at the opening 121 of the container 100.
  • the sealing film can be aluminum foil to prevent the functional substances in the container 100 from flowing out when the container 100 is not installed on the water outlet.
  • a bump 122 is provided on the outside of the interface portion 120 , and the bump 122 is used for connecting with the slot 210 of the fixing member 200 , so that the container 100 can be detachably connected to the fixing member 200 .
  • FIG. 8 shows a schematic structural diagram of a fixing member 200 according to an embodiment of the present disclosure.
  • the fixing member 200 in the embodiment of the present disclosure is generally in the shape of a ring, and the fixing member 200 can be connected to the water separation body 400 through a snap connection structure.
  • the fixing member 200 is provided with a clamping groove 210 , and the clamping groove 210 can cooperate with the protrusion 122 of the container 100 to realize the clamping of the container 100 to the fixing member 200 .
  • the card slot 210 may include a first slot 211 and a second slot 212 that communicate with each other, and the first slot 211 and the second slot 212 are perpendicular to each other.
  • the outer wall of the fixing member 200 is further provided with an annular groove 220, and the annular groove 220 is used for accommodating a sealing ring therein.
  • the sealing ring can be used to achieve sealing between the outer wall of the fixing member 200 and the inner wall of the water separation body 400 to prevent water from flowing out between the two.
  • a sealing ring is also provided between the outer wall of the interface portion 120 and the inner wall of the fixing member 200 to prevent water from flowing out between the two.
  • FIG. 9 shows a schematic structural diagram of the introduction tube 300 of an embodiment of the present disclosure
  • FIG. 10 shows a cross-sectional view of the introduction tube 300 of an embodiment of the present disclosure along its axial direction.
  • the introduction pipe 300 in the embodiment of the present disclosure is provided with an introduction channel 310 , and the introduction channel 310 can communicate with the first water flow channel 2100 .
  • the outer wall of the introduction tube 300 is provided with a lead-out channel 320 , and the lead-out channel 320 can lead out the essential oil in the container 100 to the spray part 1160 .
  • One end of the introduction tube 300 is provided with a tip 330.
  • the tip 330 can pierce the aluminum foil on the opening 121 of the container 100, so that the water can flow into the container 100 through the introduction channel 310, and pass through The outlet channel 320 flows to the spray part 1160 .
  • the other end of the introduction pipe 300 can be matched with the valve core 500 to selectively block the first water flow channel 2100 and the introduction channel 310, and finally realize whether to add functional substances such as essential oils when the water is discharged.
  • a first annular groove 351 , a second annular groove 352 , a third annular groove 353 and a fourth annular groove 354 are provided on the outer wall of the introduction tube 300 , and the above-mentioned four annular grooves can accommodate four sealing rings respectively.
  • the side portion of the introduction pipe 300 is further provided with an opening 360 , and the opening 360 penetrates the inner and outer walls of the introduction pipe 300 and communicates with the introduction channel 310 .
  • the water flow may flow into the introduction channel 310 through the opening 360 .
  • the outer wall of the introduction tube 300 is further provided with a resisting portion 340 , and the resisting portion 340 is used for abutting with a second elastic element 410 .
  • FIG. 11 is a partial enlarged view of J in FIG. 4 .
  • the introduction pipe 300 is provided in the water separation body 400 and is movable between the first position and the second position. When the introduction pipe 300 is located at the first position, the first water flow channel 2100 communicates with the introduction channel 310 , and when the introduction pipe 300 is located at the second position, the first water flow channel 2100 and the introduction channel 310 are not connected.
  • the first sealing ring 355 is arranged in the first ring groove 351, the second sealing ring 356 is arranged in the second ring groove 352, the third sealing ring 357 is arranged in the third ring groove 353, and the fourth sealing ring 358 is arranged in the second ring groove 352.
  • Inside the four-ring groove 354 When the introduction pipe 300 is in the first position, the second sealing ring 356 is not sealed between the water separation body 400 and the introduction pipe 300, and the third sealing ring 357 is sealed between the water separation body 400 and the introduction pipe 300, so that the water flow can only pass through
  • the opening 360 enters the introduction channel 310 and does not flow out of the casing 1100 along the gap between the water separation body 400 and the introduction pipe 300 .
  • the fixing member 200 is connected to the water separation body 400 , and the interface portion 120 of the container 100 is detachably connected to the fixing member 200 through the matching of the protrusion 122 and the slot 210 .
  • the water outlet device further includes a second elastic element 410, the second elastic element 410 is sleeved on the outside of the introduction pipe 300, one end of the second elastic element 410 abuts against the water separating body 400, and the other end of the second elastic element 410 abuts against the water separating body 400.
  • the resisting portion 340 of the introduction tube 300 causes the introduction tube 300 to have a tendency to move to the second position.
  • the second elastic element 410 may be a compression spring.
  • the tip portion 330 of the introduction tube 300 pierces the aluminum foil on the interface portion 120 and protrudes into the interface portion 120 .
  • the introduction tube 300 is pressed by the interface portion 120 to move to the first position.
  • the introduction tube 300 When the interface portion 120 is connected to the fixing member 200 through the matching of the protrusion 122 and the slot 210, the introduction tube 300 is in the first position, and at the same time, the introduction tube 300 is also subjected to the force of the second elastic element 410, so that The introduction pipe 300 has a tendency to move to the second position, and due to the pressure of the interface portion 120, the introduction pipe 300 is positioned at the first position, and finally the water flow can flow through the introduction channel 310, the inside of the container 100, and the outlet channel 320 in sequence. , so that the essential oil is flushed out by the water flow.
  • the direction of water flow through the introduction channel 310 is opposite to the direction of water flow through the outlet channel 320, and the essential oil can be flushed out of the container 100 by the reversed water flow direction.
  • FIG. 12 is a partial enlarged view of K in FIG. 4 .
  • the valve core 500 in the embodiment of the present disclosure is disposed in the water separation body 400 , the valve core 500 can move between the first position and the second position, and when the valve core 500 is located at the first position, the first water flow channel 2100 can be blocked and the introduction channel 310 , when the valve core 500 is in the second position, the first water flow channel 2100 communicates with the introduction channel 310 .
  • the switch assembly 700 includes a push button 710 and a push plate 720 .
  • the push plate 720 includes a snap portion 723 , a first recess 721 and a second recess 722 .
  • the snap portion 723 can be snapped into the snap slot 510 of the valve core 500 .
  • the push button 710 is connected to the push plate 720. When the user pushes the push button 710, the push plate 720 can drive the valve core 500 to move between the first position and the second position.
  • the water outlet device further includes a positioning assembly 800, and the positioning assembly 800 can selectively position the valve core 500 at the first position or the second position.
  • the positioning assembly 800 includes a first elastic element 820 and a positioning pin 810 . One end of the first elastic element 820 abuts against the water separation body 400 .
  • the positioning pin 810 is connected to the other end of the first elastic element 820 .
  • the first elastic element 820 may be a compression spring.
  • the positioning pin 810 When the valve core 500 is in the first position, the positioning pin 810 is positioned at the first recess 721 . When the valve core 500 is in the second position, the positioning pin 810 is positioned in the second recess 722 .
  • the valve core 500 can be selectively positioned at the first position or the second position, preventing the valve core 500 from accidentally moving and causing the first water flow channel 2100 and the introduction Unintentional conduction or blockage between channels 310 .
  • FIG. 13 is a cross-sectional view along section line A-A of FIG. 1 , with the spool 500 in the first position.
  • FIG. 14 is a cross-sectional view along section line B-B of FIG. 1 with the spool 500 in the first position.
  • the user can operate the push button 710 to drive the valve core 500 to move to the first position.
  • the positioning pin 810 is positioned at the first recess 721 .
  • valve core 500 When the valve core 500 is in the first position, the valve core 500 can block the first water flow channel 2100 and the introduction channel 310 , so that the water flow can no longer pass through the first water flow channel 2100 , but can flow out of the housing through the second water flow channel 2200 .
  • FIG. 15 is a partial enlarged view of L in FIG. 13 . 12 and FIG. 15 , in FIG. 12 , the valve core 500 is in the second position. At this time, the valve core 500 is at a distance from the inlet pipe 300 , so the first water flow channel 2100 communicates with the inlet channel 310 . As shown in FIG. 15 , the valve core 500 is in the first position. At this time, a first sealing ring 355 is provided between the valve core 500 and the introduction pipe 300 , so the first water flow channel 2100 is not connected to the introduction channel 310 .
  • FIG. 16 is a schematic structural diagram of the removal container 100 in FIG. 4 .
  • FIG. 17 is a schematic structural diagram of the removal container 100 in FIG. 5 .
  • FIG. 18 is a partial enlarged view of M in FIG. 16 .
  • the water outlet device of the embodiment of the present disclosure is not installed with the container 100 .
  • the introduction pipe 300 is not pressed by the container 100 , but is pressed by the second elastic element 410 to move to the second position.
  • the second sealing ring 356 and the third sealing ring 357 are both sealed between the introduction pipe 300 and the water separation body 400, so that the first water flow channel 2100 and the introduction channel 310 are not communicated with each other, and the water flow The introduction channel 310 cannot be entered through the opening 360 of the introduction tube 300 .
  • the fourth annular groove 354 of the introduction pipe 300 is further provided with a fourth sealing ring 358, and the fourth sealing ring 358 is sealed between the fixing member 200 and the introduction pipe 300 to prevent the water flow along the second water flow channel 2200 from flowing backwards.
  • the airtightness of the water outlet device in the embodiment of the present disclosure is further ensured.
  • the water outlet device of the embodiment of the present disclosure can be used as a general spray head.
  • the water outlet device of the embodiment of the present disclosure can realize the combination of the functional substance and the microbubble water, and further enhance the effect of the functional substance.
  • the introduction pipe 300 when the introduction pipe 300 is located at the second position, the first water flow channel 2100 and the introduction channel 310 are not communicated with each other. At this time, no matter whether the valve core 500 is in the first position or the second position, it does not affect the design that the first water flow channel 2100 and the introduction channel 310 are not communicated with each other.
  • the above-mentioned water outlet device is further provided with a one-way valve 420 downstream of the lead-out channel 320 , and the one-way valve 420 is used to prevent the reverse flow of the water flow.
  • the container 100 is detachably arranged in the water outlet device.
  • the container 100 can be tubular and is arranged in the handle portion 1140 of the water outlet device. It is connected to the spray part 1160 to facilitate the disassembly and assembly of the container 100 .
  • the container 100 has two openings 101, and the liquid supplied from the water supply pipe can pass through the two openings 101 in sequence, so as to bring out the functional substances such as essential oils stored in the container 100, and continue to flow into the micro-bubble generator 1300 in the spray part 1160. , resulting in micro-bubble water with essential oils.
  • the introduction structure is a suction channel 910 , and the suction channel 910 is respectively connected to the interior of the container 100 and the microbubble generating tube 1341 .
  • the suction channel 910 is respectively connected to the interior of the container 100 and the microbubble generating tube 1341 .
  • the functional substance can be sucked into the first water flow channel 2100 .
  • the microbubble generating tube 1341 may be a flow channel with a flow channel cross-sectional area gradually increasing along the flow direction of the water flow, and of course, a flow channel with a stepped flow channel cross-sectional area along the flow direction of the water flow.
  • the microbubble water is generated due to the difference in air solubility caused by the pressure difference.
  • the hot water supplied from the water supply pipe passes through the microbubble generating pipe 1341, it can be known from the Venturi principle that the pressure at the small diameter of the microbubble generating pipe decreases, and the essential oil stored in the container 100 will be sucked into the microbubble generating pipe, and finally Forms micro-bubbly water with essential oils.
  • the introduction structure is a suction channel 910
  • the water outlet device further includes a suction channel 920.
  • the suction channel 910 is respectively connected to the interior of the container 100 and the microbubble generating tube 1341, and the suction channel 910
  • the air flow channel 920 is communicated with the microbubble generating tube 1341 , and the outside air can enter the microbubble generating tube 1341 through the suction flow channel 920 .
  • the water flow will be accelerated.
  • a certain negative pressure will be generated in the small-diameter part, so that the essential oil in the container 100 is inhaled through the suction channel 910 , and the outside air is inhaled through the inhalation channel 920, so that the air, the water flow and the essential oil are fully mixed in the micro-bubble generating tube, and finally micro-bubble water with essential oil is formed.
  • FIG. 22 shows a schematic structural diagram of a microbubble generator according to an embodiment of the present disclosure.
  • FIG. 23 shows a cross-sectional view along section line D-D of FIG. 22 .
  • the micro-bubble generator 1300 of the embodiment of the present disclosure includes a base portion 1320, a protruding portion 1340, and a side blocking portion 1360.
  • the base portion 1320 may be approximately a disk shape, and the protruding portion 1340 is provided on one side of the base portion 1320.
  • the bubble generating tube 1341 is provided in the protruding portion 1340 .
  • the side blocking part 1360 may be provided on the outer periphery of the base part 1320 .
  • the above-mentioned base portion 1320 may not be a complete disk shape.
  • the base portion 1320 of this embodiment also has a notch 1321, and the notch 1321 is used for other components of the water supply device to be arranged therein. The interference of the base portion 1320 with other components is avoided.
  • the shape of the base portion 1320 of the present disclosure is not limited to a disk shape, and can also be other shapes that can be adapted to the shape of the spray portion 1160 , which will not be listed here.
  • the base portion 1320 When the base portion 1320 is disc-shaped, the base portion 1320 defines an axial direction Q, a radial direction S, and a radial plane P perpendicular to the axial direction Q. As shown in FIG. The axial direction Q and the radial direction S are perpendicular to each other.
  • the face cover 1500 includes a cover portion 1520 and a side portion 1540.
  • the side portion 1540 is disposed on the outer periphery of the cover portion 1520.
  • the cover portion 1520 is provided with a plurality of water outlet holes 1521, and the water outlet holes 1521 can be along the second water flow direction. D2 sprays microbubble water.
  • the plurality of water outlet holes 1521 may be uniformly arranged on the cover portion 1520 in a radial shape. Since the diameter of the outer periphery of the cover portion 1520 is larger than that of the inner periphery, the number of water outlet holes 1521 on the outer periphery of the cover portion 1520 is larger than that of the inner periphery.
  • the side part 1540 can be connected to the spraying part 1160, and is adjacent to a water outlet end of the microbubble generating tube 1341, and the side part 1540 can buffer the microbubble water flowing out from the water outlet end, so that the The microbubble generating tube 1341 can stably generate microbubbles.
  • the arrangement of the first water flow direction and the second water flow direction is the same, and a baffle plate is often required near the water outlet end of the microbubble generating tube, and the baffle plate plays the role of buffering the microbubble water.
  • the microbubble water directly collides with the side portion 1540 of the face cover 1500 after being ejected from the water outlet, so as to buffer the microbubble water, and there is no need to provide an additional baffle.
  • the side blocking portion 1360 of the micro-bubble generator 1300 can also play a role of buffering the water flow.
  • the side blocking portion 1360 and the side portion 1540 of the face cover 1500 may play a role of buffering the micro-bubble water together, and the side blocking portion 1360 may also play a role of buffering the micro-bubble water alone.
  • the second water flow direction D2 may be parallel to the axial direction Q.
  • each protrusion 1340 is provided with four micro-bubble generating tubes 1341, and along the first water flow direction D1, each micro-bubble generating tube 1341 sequentially includes a first flow channel 13411 and a second flow channel 13412, wherein the first flow channel 13411
  • the cross-sectional area of the flow channel is smaller than that of the second flow channel 13412, so that the inner wall of the micro-bubble generating tube 1341 forms a stepped shape.
  • the base portion 1320 is substantially in the shape of a disk, and defines an axial direction Q, a radial direction S, and a radial plane P perpendicular to the axial direction Q.
  • the first water flow direction D1 is parallel to the radial plane P, and there is an included angle ⁇ between the first water flow direction D1 and the radial direction S.
  • the extension direction of the microbubble generating tube 1341 (the first water flow direction D1 ) is not along the radial direction S, but is inclined with respect to the radial direction S, the length of the microbubble generating tube 1341 is constant. In this case, the size of the base portion 1320 along the radial direction S can be reduced as much as possible.
  • the micro-bubble generation tube is guaranteed.
  • the dimensions of the spraying portion 1160 along the axial direction Q and the radial direction S can be reduced as much as possible, and finally a spraying portion 1160 with a smaller overall size is designed.
  • micro-bubble generating tube 1341 can also be trumpet-shaped.
  • the microbubble generating tube 1341 has a water inlet end and a water outlet end, and extends along the water inlet end toward the water outlet end, and the flow path cross-sectional area of the microbubble generating tube 1341 gradually increases.
  • the present disclosure does not specifically limit the number of the micro-bubble generating tubes 1341, and those skilled in the art can increase or decrease the number of the micro-bubble generating tubes 1341 according to the water output.
  • FIG. 24 shows a cross-sectional view of the water outlet device of an embodiment of the present disclosure when the first water flow direction D1 is perpendicular to the second water flow direction D2.
  • the first water flow direction D1 is substantially perpendicular to the second water flow direction D2
  • the first water flow direction D1 in the microbubble generating tube 1341 flows from the inner periphery of the microbubble generator 1300 to the outer periphery until the flow reaches
  • the surface cover 1500 is near the outer peripheral edge, it is blocked and buffered by the side portion 1540 .
  • a part of the microbubble water is ejected from the water outlet hole 1521 provided near the outer periphery of the face cover 1500 , and another part of the microbubble water flows toward the inner periphery of the face cover 1500 along the gap 1600 between the microbubble generator 1300 and the face cover 1500 , in the process of inward flow, it is also gradually ejected from the water outlet hole 1521.
  • the outer periphery of the face cover 1500 has a larger diameter than the inner periphery, so that the number of water outlet holes 1521 near the outer periphery of the face cover 1500 is compared with that near the inner periphery.
  • the number of water outlet holes 1521 is large. Therefore, most of the generated microbubble water can be ejected from the outer periphery of the face cover 1500 with a larger number of water outlet holes 1521 , and a small part of the microbubble water can be ejected from the inner periphery of a smaller number of water outlet holes 1521 .
  • the water outlet method of the embodiment of the present disclosure makes the water outlet from the inner and outer periphery of the face cover 1500 more uniform.
  • first water flow direction D1 and second water flow direction D2 may also be set in the manner of the embodiment shown in FIG. 25 .
  • 25 is a cross-sectional view showing an acute angle between the first water flow direction D1 and the second water flow direction D2 of the water outlet device according to an embodiment of the present disclosure. As shown in FIG.
  • the acute angle may be greater than or equal to 45 degrees and less than 90 degrees, and further, the acute angle may be greater than or equal to 80 degrees and less than 90 degrees, for example, 81 degrees, 82 degrees, 83 degrees, 84 degrees, 85 degrees, 86 degrees, 87 degrees, 88 degrees, 89 degrees.
  • FIG. 26 shows a cross-sectional view at an obtuse angle between the first water flow direction D1 and the second water flow direction D2 of the water outlet device according to an embodiment of the present disclosure.
  • the obtuse angle may be greater than 90 degrees and less than or equal to 120 degrees, and further, the obtuse angle may be greater than 90 degrees and less than or equal to 100 degrees, such as 91 degrees, 92 degrees, 93 degrees, 94 degrees, 95 degrees, 96 degrees, 97 degrees, 98 degrees, 99 degrees.
  • a water outlet device comprising a body and a container detachably connected to the body, the body is the water outlet device of any of the above embodiments, the container stores functional substances, and the functional substances can be introduced through the body The structure is introduced into the body.
  • the water outlet device of the embodiment of the present disclosure includes an introduction member and a first water flow channel
  • the introduction member includes an introduction channel and an outlet channel
  • the introduction channel can communicate with the first water flow channel
  • the water flow conducted from the first water flow channel can pass through the introduction channel and the outlet channel.
  • the outlet channel enters and exits the container, and the functional substance is flushed from the container into the spray part.
  • the water outlet device of the embodiment of the present disclosure adopts the technical means that at least part of the introduction member can extend into the container, so that the water flows in and out of the container to export functional substances, so that the container can be connected to the water outlet device in an external manner, which is a good solution to the problem.
  • the problem of functional substance derivation is a good solution to the problem.

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Abstract

出水装置包括用于传导水流的第一水流通道(2100)、喷洒部(1160)和用于向喷洒部(1160)引入功能物质的导入件;喷洒部(1160)能喷洒出经第一水流通道(2100)传导的水流;导入件包括导入通道(310)和导出通道(320),导入通道(310)能连通第一水流通道(2100);当容器(100)连接于出水装置时,至少部分导入件伸入容器(100),且导入通道(310)分别连通于容器(100)和第一水流通道(2100),导出通道(320)连通于容器(100),以使从第一水流通道(2100)传导的水流能够依次流经导入通道(310)、容器(100)的内部和导出通道(320),将功能物质从容器(100)冲入喷洒部(1160)。至少部分导入件能够伸入容器(100)内,以使水流进出容器(100)而导出功能物质的技术手段,使容器(100)能以外置的方式连接于出水装置,很好地解决了功能物质导出的问题。

Description

出水装置及出水设备 技术领域
本公开涉及一种出水装置和出水设备。
背景技术
在使用喷头进行冲洗、淋浴操作时,时常需要增加一些功能物质,以在喷水的同时,还具有附加功能,例如在淋浴时,通过增加精油等功能物质,可以在淋浴的时候,同时达到美容的效果。然而,相关技术中的喷头并未很好地解决与容器连接而将容器内的精油导出的问题。
公开内容
本公开提出一种出水装置,很好地解决了将容器内的功能物质导出的问题。
本公开提供的出水装置,能够连接一容器,所述容器内存储有功能物质,所述出水装置包括用于传导水流的第一水流通道、喷洒部和用于向所述喷洒部引入所述功能物质的导入件;喷洒部能够喷洒出经所述第一水流通道传导的水流;所述导入件包括导入通道和导出通道,所述导入通道能够连通所述第一水流通道;其中,当所述容器连接于所述出水装置时,至少部分所述导入件伸入所述容器,且所述导入通道分别连通于所述容器和所述第一水流通道,所述导出通道连通于所述容器,以使从所述第一水流通道传导的水流能够依次流经所述导入通道、所述容器的内部和所述导出通道,将所述功能物质从所述容器冲入所述喷洒部。
在其中一个实施例中,所述导入通道可选择性地连通于所述第一水流通道。
在其中一个实施例中,所述出水装置包括:
壳体;
分水体,设于所述壳体内,所述分水体设有至少部分所述第一水流通道;
阀芯,设于所述分水体内,所述阀芯能够在第一位置和第二位置之间移动,且当所述阀芯位于所述第一位置时,能够封堵所述第一水流通道和所述导入通道,当所述阀芯位于所述第二位置时,所述第一水流通道和所述导入通道相连通;以及
切换组件,连接于所述阀芯,能够带动所述阀芯在所述第一位置和所述第二位置之间移动。
在其中一个实施例中,所述出水装置还包括定位组件,所述定位组件能够将所述阀芯选择性地定位在所述第一位置或所述第二位置。
在其中一个实施例中,所述切换组件设有第一凹部和第二凹部;所述定位组件包括:
第一弹性元件,所述第一弹性元件的一端抵接于所述分水体;以及
定位销,连接于所述第一弹性元件的另一端;
其中,当所述阀芯位于第一位置时,所述定位销定位于所述第一凹部;当所述阀芯位于第二位置时,所述定位销定位于所述第二凹部。
在其中一个实施例中,所述导入件能够在第一位置和第二位置之间移动,且当所述导入件位于所述第一位置时,所述第一水流通道与所述导入通道相连通,当所述导入件位于所述第二位置时,所述导入件封堵于所述第一水流通道和所述导入通道。
在其中一个实施例中,所述出水装置包括壳体和分水体,所述分水体设于所述壳体内;
所述出水装置还包括第二弹性元件和固定件,所述第二弹性元件的一端抵接于所述分水体,所述第二弹性元件的另一端抵接于所述导入件,并使所述导入件具有向第二位置移动的趋势;
所述固定件连接于所述分水体,所述容器可拆卸地连接于所述固定件;当所述容器安装于所述固定件上时,所述容器抵顶于所述导入件,且使所述导入件位于所述第一位置,当所述容器未安装在所述固定件上时,所述导入件受所述第二弹性元件驱动处于所述第二位置。
在其中一个实施例中,所述固定件呈一环形,所述固定件上设有卡槽;
所述容器包括腔体部和接口部,所述腔体部内存储有所述功能物质,所述接口部连接于所述腔体部,所述接口部的外部设有凸块,所述凸块能够卡合于所述卡槽。
在其中一个实施例中,所述接口部远离所述腔体部的一端面设有开口,所述功能物质能够从所述开口流出所述容器;
所述容器还包括一封闭膜,封闭于所述开口的边缘,当所述容器未连接在所述出水装置上时,所述封闭膜能够将所述功能物质封闭在所述容器内;
所述导入件的一端设有尖部,当所述容器连接于所述出水装置上时,所述尖部能够刺破所述封闭膜而伸入所述接口部。
在其中一个实施例中,所述出水装置还包括用于传导水流的第二水流通道,所述第二水流通道与所述第一水流通道独立设置,所述喷洒部能够喷洒出从所述第二水流通道传导的水流。
本公开的另一方面,提供一种出水设备,包括本体和可拆卸地连接于所述本体的容器,所述本体如上述任一项所述的出水装置,所述容器内存储有功能物质,所述功能物质能够通过所述本体的导入件引入所述本体内。
本公开的再一方面,提供一种出水装置,能够连接一容器,所述容器内存储有功能物质,所述出水装置包括用于传导水流的第一水流通道、喷洒部、把手部及用于向所述喷洒部引入所述功能物质的导入件,喷洒部能够喷洒出经所述第一水流通道传导的水流;把手部连接于所述喷洒部;所述容器能够连接于所述把手部的一端部,所述把手部的另一端部用于连接一供水管;所述导入件设于所述把手部的一端部,所述导入件包括导入通道和导出通道,所述导入通道能够连通所述第一水流通道;当所述容器连接于所述把手部时,至少部分所述导入件伸入所述容器,且所述导入通道分别连通于所述容器和所述第一水流通道,所述导出通道连通于所述容器,以使从所述第一水流通道传导的水流能够依次流经所述导入通道、所述容器的内部和所述导出通道,将所述功能物质从所述容器冲入所述喷洒部。
本公开的一个实施例具有如下优点或有益效果:
本公开实施例的出水装置,包括导入件和第一水流通道,导入件包括导入通道和导出通道,导入通道能够与第一水流通道相连通,从第一水流通道传导的水流能够通过导入通道和导出通道进出容器,将功能物质从容器内冲入喷洒部。本公开实施例的出水装置由于采用了至少部分导入件能够伸入容器内,以使水流进出容器而导出功能物质的技术手段,使得容器能够以外置的方式连接于出水装置,很好地解决了功能物质导出的问题。
附图说明
通过参照附图详细描述其示例实施方式,本公开的上述和其它特征及优点将变得更加明显。
图1示出的是本公开一实施例的出水装置的一个视角的结构示意图。
图2示出的是本公开一实施例的出水装置的另一个视角的结构示意图。
图3示出的是本公开一实施例的出水装置的爆炸图。
图4是图1中沿截面线A-A的剖视图,其中阀芯处于第二位置。
图5是图2中沿截面线B-B的剖视图,其中阀芯处于第二位置。
图6是图4中沿截面线C-C的剖视图。
图7示出的是本公开一实施例的容器的结构示意图。
图8示出的是本公开一实施例的固定件的结构示意图。
图9示出的是本公开一实施例的导入管的结构示意图。
图10示出的是本公开一实施例的导入管沿其轴向的剖视图。
图11是图4中J处的局部放大图。
图12是图4中K处的局部放大图。
图13是图1中沿截面线A-A的剖视图,其中阀芯处于第一位置。
图14是图1中沿截面线B-B的剖视图,其中阀芯处于第一位置。
图15是图13中L处的局部放大图。
图16是图4中除去容器的结构示意图。
图17是图5中除去容器的结构示意图。
图18是图16中M处的局部放大图。
图19示出的是本公开第二实施例的出水装置的示意图。
图20示出的是本公开第三实施例的出水装置的示意图。
图21示出的是本公开第四实施例的出水装置的示意图。
图22示出的是本公开一实施例的微气泡发生器的结构示意图。
图23示出的是图22中沿截面线D-D的剖视图。
图24示出的是本公开一实施例的出水装置的第一水流方向垂直于第二水流方向的剖视图。
图25示出的是本公开一实施例的出水装置的第一水流方向与第二水流方向之间呈一锐角的剖视图。
图26示出的是本公开一实施例的出水装置的第一水流方向与第二水流方向之间呈一钝角的剖视图。
图27示出的是本公开一实施例的固定阀的结构示意图。
图28示出的是本公开一实施例的固定阀的剖视图。
其中,附图标记说明如下:
100、容器;110、腔体部;120、接口部;121、开口;122、凸块;200、固定件;210、卡槽;211、第一槽;212、第二槽;220、环形槽;300、导入管;310、导入通道;320、导出通道;330、尖部;340、抵挡部;351、第一环槽;352、第二环槽;353、第三环槽;354、第四环槽;355、第一密封圈;356、第二密封圈;357、第三密封圈;358、第四密封圈;360、开口;400、分水体;410、第二弹性元件;420、单向阀;500、阀芯;510、 卡槽;600、芯轴;610、连接部;620、基体部;700、切换组件;710、推钮;720、推板;721、第一凹部;722、第二凹部;723、卡接部;800、定位组件;810、定位销;820、第一弹性元件;910、吸入通道;920、吸气流道;1000、固定阀;1010、安装部;1020、管部;1021、贯通孔;1030、低压区;1100、壳体;1140、把手部;1160、喷洒部;1300、微气泡发生器;1320、基体部;1321、缺口;1340、突出部;1341、微气泡发生管;13411、第一流道;13412、第二流道;1360、侧挡部;1500、面盖;1520、盖部;1521、出水孔;1540、侧部;1600、间隙;2100、第一水流通道;2200、第二水流通道;D1、第一水流方向;D2、第二水流方向;P、径向平面;S、径向方向;Q、轴向方向。
具体实施方式
现在将参考附图更全面地描述示例实施方式。然而,示例实施方式能够以多种形式实施,且不应被理解为限于在此阐述的实施方式;相反,提供这些实施方式使得本公开将全面和完整,并将示例实施方式的构思全面地传达给本领域的技术人员。图中相同的附图标记表示相同或类似的结构,因而将省略它们的详细描述。
如图1至图3所示,图1示出的是本公开一实施例的出水装置的一个视角的结构示意图,图2示出的是本公开一实施例的出水装置的另一个视角的结构示意图,图3示出的是本公开一实施例的出水装置的爆炸图。本公开实施例的出水装置包括壳体1100、固定件200、导入管300、分水体400、阀芯500、芯轴600、切换组件700、微气泡发生器1300和面盖1500。出水装置可以与一容器100相连接。
本公开实施例的出水装置可以包括把手部1140和喷洒部1160,把手部1140用于供使用者手持,喷洒部1160连接于把手部1140,用于喷洒出水流。
喷洒部1160可以连接于把手部1140的一端部的侧面,容器100可以连接于把手部1140的一端部的端面,把手部1140的另一端部用于连接一供水管。通过这样的设计,可使本公开实施例的出水装置的结构更加紧凑,体积更小。
另外,如图4所示,通过将容器100连接于把手部1140的一端部的端面,以及把手部1140的另一端部连接一供水管的设计,使得水流可基本沿直线流入容器100内,可达到在基本不损失水压的情况下,水流能够更容易地将功能物质从容器内冲出。
当然,可以理解的是,本公开实施例的壳体1100可以包括上壳体和下壳体,上壳体和下壳体可以通过卡接相互连接。通过将壳体1100设计为可拆装的分体结构,便于壳体1100内的各种零部件的装配。
分水体400设于壳体1100内,并具有水流通道,水流通道能够引导水流流向喷洒部1160。阀芯500设于分水体400内,并能够在第一位置和第二位置之间移动,用于切换不同水流通道的导通。切换组件700连接于阀芯500,使用者可操作切换组件700而驱使阀芯500在第一位置和第二位置之间移动。芯轴600包括基体部620和连接部610,基体部620设于壳体1100内,连接部610显露于壳体1100以外,用于与一供水管连接。
微气泡发生器1300连接于喷洒部1160,当水流通过微气泡发生器1300时能够产生微气泡水。面盖1500连接于喷洒部1160,用于喷洒出产生的微气泡水。
当然可以理解的是,本公开实施例的出水装置还可以不包括微气泡发生器,使得喷洒部喷洒出一般的水流。
导入管300设于分水体400内。容器100内存储有功能物质,功能物质通过导入管300可进入壳体1100内,并与壳体1100内的微气泡水结合。
本公开实施例的功能物质可以为疏水性物质,作为优选,功能物质进一步可以为精油或精油混合物。精油与微气泡水的结合,可使美容效果更突出。
当然,可以理解的是,本公开的功能物质并非限定于精油,例如还可以为肥皂水、香水、洗洁精、消毒水等其他功能物质。另外,功能物质的状态并非限定于液体,根据不同物质的不同保存状态,功能物质还可以为固态、膏状等。
如图4至图6所示,图4是图1中沿截面线A-A的剖视图,其中阀芯500处于第二位置。图5是图2中沿截面线B-B的剖视图,其中阀芯500处于第二位置。图6是图4中沿截面线C-C的剖视图。本公开实施例的出水装置包括用于传导水流的第一水流通道2100,第一水流通道2100包括第一进水端和第一出水端,第一进水端能够与一供水管相连通,第一出水端能够喷洒出从供水管供给来的液体。第一水流通道2100可以形成于分水体400。
如图4所示,第一水流通道2100与导入管300的导入通道310相连通,且与导出通道320相连通。从供水管供给来的液体能够依次流经导入通道310、容器100的内部、导出通道320,以将存储在容器100内的精油冲入第一水流通道2100,最终与微气泡水相结合,形成微小精油气泡。微小精油气泡能够进入皮肤进行深层保养,极大提升了美容效果。
如图5和图6所示,出水装置还包括用于传导水流的第二水流通道2200,第二水流通道2200可以与第一水流通道2100相互独立设置。当不需要精油与微气泡水相互结合时,即可封堵第一水流通道2100。此时,第二水流通道2200仍然保持开启状态,从供水管供给来的液体可通过第二水流通道2200流至喷洒部1160。第二水流通道2200可以形成于 分水体400。
如图6、图27和图28所示,图27示出的是本公开一实施例的固定阀的结构示意图,图28示出的是本公开一实施例的固定阀的剖视图。本公开实施例的出水装置还包括单向阀420和固定阀1000,固定阀1000连接于分水体400。单向阀420设于分水体400和固定阀1000之间,能够防止水流逆向流动。具体来说,第一水流通道的水流进入容器内将功能物质冲出后,能够通过单向阀420流至喷洒部。此处,单向阀420可防止水流逆向流动。
固定阀1000包括安装部1010和管部1020,安装部1010连接于分水体400上,管部1020的管壁上设有贯通孔1021。贯通孔1021的数量可以为两个,两个贯通孔1021相对设置。功能物质由容器引出后,依次流过单向阀420、管部1020的内部、贯通孔1021,最终流入喷洒部。
管部1020的外壁与分水体之间具有低压区1030,低压区1030分别连通于第二水流通道和贯通孔1021,当第二水流通道内的水流流经低压区1030时,由于第二水流通道压力损失较小,故第二水流通道的流速相比第一水流通道的流速较快,故在低压区1030能够产生负压,产生的负压能够将功能物质由容器内吸出并与第二水流通道内的水流混合,最终混合后的水流通过微气泡发生器的作用,功能物质被充分细化成微小颗粒,提升了功能物质的利用率和功效。通过设置低压区1030,可使功能物质与水的混合液更容易地流入喷洒部。
例如,当功能物质为精油时,可提升精油的清洁和美容效果。
下面结合图7至图10,对容器100、固定件200和导入管300的结构、连接关系及工作原理作详细说明。
如图7所示,图7示出的是本公开一实施例的容器100的结构示意图。本公开实施例的容器100包括腔体部110和接口部120。腔体部110内存储有功能物质,例如精油。接口部120连接于腔体部110,接口部120远离腔体部110的一端面设有开口121,使得腔体部110内的功能物质可通过该开口121流出容器以外。容器还包括一封闭膜,封闭膜封闭于容器100的开口121,例如封闭膜可以为铝箔,避免容器100未安装在出水装置上时,容器100内的功能物质流出。接口部120的外部设有凸块122,凸块122用于与固定件200的卡槽210相连接,以实现容器100能够可拆卸地连接于固定件200。
如图8所示,图8示出的是本公开一实施例的固定件200的结构示意图。本公开实施例固定件200大致呈一环型,固定件200可以通过卡接结构连接于分水体400。固定件200 上开设有卡槽210,卡槽210能够与容器100的凸块122相配合,以实现容器100卡接于固定件200。
卡槽210可以包括相连通的第一槽211和第二槽212,第一槽211与第二槽212相互垂直。在容器100装入固定件200的过程中,容器100的接口部120插入固定件200内,凸块122先插入第一槽211内,之后再将容器100转动一角度,使凸块122卡入第二槽212内。
固定件200的外壁还设有环形槽220,环形槽220用于供一密封圈容纳其中。当固定件200安装于分水体400时,固定件200的外壁与分水体400的内壁之间可通过该密封圈实现密封,防止水流从两者之间流出。
当然,接口部120的外壁与固定件200的内壁之间还设有密封圈,以防止水流从两者之间流出。
如图9和图10所示,图9示出的是本公开一实施例的导入管300的结构示意图,图10示出的是本公开一实施例的导入管300沿其轴向的剖视图。本公开实施例的导入管300的内部设有导入通道310,导入通道310能够与第一水流通道2100相连通。导入管300的外壁设有导出通道320,导出通道320能够将容器100内的精油导出至喷洒部1160。
导入管300的一端设有尖部330,当容器100安装于出水装置上时,尖部330能够刺破容器100的开口121上的铝箔,使得水流通过导入通道310能够流入容器100内,以及通过导出通道320流至喷洒部1160。
导入管300的另一端部可以与阀芯500相配合,以选择性地封堵第一水流通道2100和导入通道310,最终实现在出水的同时,可选择是否添加精油等功能物质。
导入管300的外壁上设有第一环槽351、第二环槽352、第三环槽353和第四环槽354,上述四个环槽可分别供四个密封圈容纳其中。
导入管300的侧部还设有开口360,开口360贯通导入管300的内外壁,且与导入通道310相连通。水流可通过开口360流入导入通道310内。
导入管300的外壁还设有抵挡部340,抵挡部340用于与一第二弹性元件410相抵接。
如图11所示,图11是图4中J处的局部放大图。导入管300设于分水体400内,且能够在第一位置和第二位置之间移动。当导入管300位于第一位置时,第一水流通道2100与导入通道310相连通,当导入管300位于第二位置时,第一水流通道2100和导入通道310不连通。
第一密封圈355设于第一环槽351内,第二密封圈356设于第二环槽352内,第三密 封圈357设于第三环槽353内,第四密封圈358设于第四环槽354内。当导入管300位于第一位置时,第二密封圈356未密封于分水体400和导入管300之间,第三密封圈357密封于分水体400和导入管300之间,使得水流仅能够通过开口360进入导入通道310内,而不会沿着分水体400和导入管300之间的缝隙流出壳体1100以外。
如图3、图4和图11所示,固定件200连接于分水体400,容器100的接口部120通过凸块122和卡槽210相配合的方式可拆卸地连接于固定件200。
出水装置还包括第二弹性元件410,第二弹性元件410套设于导入管300的外部,且第二弹性元件410的一端抵接于分水体400,第二弹性元件410的另一端抵接于导入管300的抵挡部340,以使导入管300具有向第二位置移动的趋势。第二弹性元件410可以为一压簧。
当容器100的接口部120刚刚伸入固定件200内时,导入管300的尖部330刺破接口部120上的铝箔,而伸入接口部120内。同时,导入管300被接口部120抵压向第一位置移动。当接口部120通过凸块122和卡槽210相配合的方式连接于固定件200时,导入管300处于第一位置,与此同时,导入管300还受到第二弹性元件410的作用力,使得导入管300具有向第二位置移动的趋势,又由于接口部120的抵压,故导入管300被定位在第一位置,最终使得水流能够依次流经导入通道310、容器100内部、导出通道320,实现精油被水流冲出。
另外,由图可知,水流流经导入通道310的方向与水流流经导出通道320的方向是相反的,反向的水流方向即可将精油从容器100内冲出。
如图3和图12所示,图12是图4中K处的局部放大图。本公开实施例的阀芯500设于分水体400内,阀芯500能够在第一位置和第二位置之间移动,且当阀芯500位于第一位置时,能够封堵第一水流通道2100和导入通道310,当阀芯500位于第二位置时,第一水流通道2100和导入通道310相连通。
切换组件700包括推钮710和推板720,推板720包括卡接部723、第一凹部721和第二凹部722,卡接部723能够卡接在阀芯500的卡槽510内。推钮710连接于推板720,当使用者推动推钮710时,推板720能够带动阀芯500在第一位置和第二位置之间移动。
出水装置还包括定位组件800,定位组件800能够将阀芯500可选择性地定位在第一位置或第二位置。定位组件800包括第一弹性元件820和定位销810,第一弹性元件820的一端抵接于分水体400。定位销810连接于第一弹性元件820的另一端。第一弹性元件820可以为一压簧。
当阀芯500位于第一位置时,定位销810定位于第一凹部721。当阀芯500位于第二位置时,定位销810定位于第二凹部722。通过第一凹部721、第二凹部722与定位销810的相互配合,可将阀芯500选择性地定位于第一位置或第二位置,防止阀芯500意外移动造成第一水流通道2100和导入通道310之间意外导通或封堵。
如图13和图14所示,图13是图1中沿截面线A-A的剖视图,其中阀芯500处于第一位置。图14是图1中沿截面线B-B的剖视图,其中阀芯500处于第一位置。在本实施例中,使用者可操作推钮710带动阀芯500向第一位置移动,当阀芯500处于第一位置时,定位销810定位于第一凹部721。当阀芯500处于第一位置,阀芯500能够封堵第一水流通道2100和导入通道310,使得水流不能再通过第一水流通道2100,而可通过第二水流通道2200流出壳体。
下面结合图15,详细说明阀芯500与导入管300的封堵方式。
如图15所示,图15是图13中L处的局部放大图。结合图12和图15所示,在图12中,阀芯500位于第二位置,此时,阀芯500与导入管300相距一段距离,故第一水流通道2100与导入通道310相连通。如图15所示,阀芯500位于第一位置,此时,阀芯500与导入管300之间设有第一密封圈355,故第一水流通道2100与导入通道310不连通。
如图16至图18所示,图16是图4中除去容器100的结构示意图。图17是图5中除去容器100的结构示意图。图18是图16中M处的局部放大图。本公开实施例的出水装置未安装容器100,此时,导入管300未受到容器100的抵压,而受到第二弹性元件410的抵顶移动至第二位置。当导入管300位于第二位置时,第二密封圈356和第三密封圈357均密封于导入管300和分水体400之间,以使第一水流通道2100和导入通道310互不连通,水流并不能通过导入管300的开口360进入导入通道310内。
另外,导入管300的第四环槽354还设有第四密封圈358,第四密封圈358密封于固定件200和导入管300之间,避免沿第二水流通道2200流动的水流出现倒流,而从固定件200和导入管300之间的间隙漏出出水装置以外,进一步确保了本公开实施例出水装置的密封性。
也就是说,当未安装容器100时,本公开实施例的出水装置可按照一般的喷头使用。当安装容器100时,本公开实施例的出水装置可实现功能物质与微气泡水的结合,进一步加强功能物质的效果。
当然,应当理解的是,当导入管300位于第二位置时,第一水流通道2100与导入通道310互不连通。此时,无论阀芯500处于第一位置还是第二位置,都不影响第一水流通 道2100与导入通道310互不连通的设计。
如图3和图11所示,上述的出水装置,在导出通道320的下游还设有单向阀420,单向阀420用于防止水流逆向流动。
如图19所示,在一变形实施例中,容器100可拆卸地设于出水装置内,例如容器100可以管状,设于出水装置的把手部1140内,把手部1140可通过螺纹结构可拆卸地连接于喷洒部1160,便于容器100的拆装。容器100具有两个开口101,从供水管供给来的液体能够依次穿过两个开口101,从而将存储在容器100内功能物质例如精油带出,继续流入喷洒部1160中的微气泡发生器1300内,从而产生带有精油的微气泡水。
如图20所示,在另一变形实施例中,导入结构为一吸入通道910,吸入通道910分别连通于容器100的内部和微气泡发生管1341。从供水管供给来的液体流经微气泡发生管1341时,功能物质能够被吸入第一水流通道2100。
具体来说,微气泡发生管1341可以是一种沿水流流动方向流路截面积逐渐变大的流道,当然,也可以是一种沿水流流动方向流路截面积呈阶梯状的流道。水流流过微气泡发生管1341时,通过压力差导致空气溶解度差而产生微气泡水。从供水管供给来的热水通过微气泡发生管1341时,由文丘里原理可知,微气泡发生管的小口径处的压强降低,会将存储在容器100内的精油吸入微气泡发生管内,最终形成带有精油的微气泡水。
如图21所示,再一变形实施例中,导入结构为一吸入通道910,出水装置还包括一吸气流道920,吸入通道910分别连通于容器100的内部和微气泡发生管1341,吸气流道920连通于微气泡发生管1341,外界空气能够通过吸气流道920进入微气泡发生管1341。
具体来说,水流流过微气泡发生管的小口径部分时,水流会被加速,根据文丘里原理,在小口径部分会产生一定的负压,从而通过吸入通道910将容器100内的精油吸入,以及通过吸气流道920将外界空气吸入,使得空气、水流和精油在微气泡发生管内充分混合,最终形成带有精油的微气泡水。
如图22和图23所示,图22示出的是本公开一实施例的微气泡发生器的结构示意图。图23示出的是图22中沿截面线D-D的剖视图。本公开实施例的微气泡发生器1300包括基体部1320、突出部1340和侧挡部1360,基体部1320可以大致为一圆盘状,突出部1340设于基体部1320的一侧,上述的微气泡发生管1341设于突出部1340。侧挡部1360可以设于基体部1320的外周缘。
当然,可以理解的是,上述的基体部1320可以并非一完整的圆盘状,例如本实施例的基体部1320还具有一缺口1321,该缺口1321用于供出水装置的其他零部件设置其中, 避免基体部1320与其他部件发生干涉。
另外,可以理解的是,本公开的基体部1320的形状并非限定于圆盘状,其还可以为其他形状,能够与喷洒部1160的形状相适配即可,此处不再一一列举。
当基体部1320为圆盘状时,基体部1320界定出轴向方向Q、径向方向S和垂直于轴向方向Q的径向平面P。其中,轴向方向Q与径向方向S相互垂直。
如图4所示,面盖1500包括盖部1520和侧部1540,侧部1540设于盖部1520的外周缘,盖部1520开设有多个出水孔1521,出水孔1521能够沿第二水流方向D2喷洒出微气泡水。多个出水孔1521可以呈辐射状均匀设置在盖部1520上。由于盖部1520的外周缘相比内周缘直径较大,故盖部1520的外周缘上的出水孔1521数量相比内周缘的出水孔1521数量较多。
当面盖1500连接于喷洒部1160时,侧部1540可以与喷洒部1160相连接,且邻设于微气泡发生管1341的一出水端,侧部1540能够缓冲从出水端流出的微气泡水,使得微气泡发生管1341能够稳定地产生微气泡。现有技术或相关技术中采用第一水流方向与第二水流方向相同的布置方式,常常需要在微气泡发生管的出水端附近设有一挡板,挡板起到缓冲微气泡水的作用。在本公开实施例中,微气泡水从出水端射出后直接与面盖1500的侧部1540碰撞,即可起到缓冲微气泡水的作用,而无需再多设置一挡板。
当然,可以理解的是,上述微气泡发生器1300的侧挡部1360也可以起到缓冲水流的作用。侧挡部1360可以与面盖1500的侧部1540共同起到缓冲微气泡水的作用,侧挡部1360也可以单独起到缓冲微气泡水的作用。
在一实施例中,第二水流方向D2可以平行于轴向方向Q。
如图22和图23所示,突出部1340的数量为两个,两个突出部1340设于基体部1320的同一侧,且以基体部1320的中心点呈中心对称设置。每个突出部1340设有四个微气泡发生管1341,沿着第一水流方向D1,每个微气泡发生管1341依次包括第一流道13411和第二流道13412,其中,第一流道13411的流路截面积小于第二流道13412的流路截面积,使得微气泡发生管1341的内壁形成台阶状。当水流通过流路截面积较小的第一流道13411时,水流流速增加;当水流通过流路截面积较大的第二流道13412时,水流流速降低。
如图22所示,基体部1320大致为一圆盘状,并界定出轴向方向Q、径向方向S以及垂直于轴向方向Q的径向平面P。第一水流方向D1平行于径向平面P,且第一水流方向D1与径向方向S之间具有一夹角β。通过这样的设计,由于微气泡发生管1341的延伸方 向(第一水流方向D1)并非沿着径向方向S,而是相对于径向方向S倾斜设置,故在微气泡发生管1341的长度一定的情况下,能够尽可能减小基体部1320沿径向方向S的尺寸。
结合上述第一水流方向D1与第二水流方向D2相互垂直,以及第一水流方向D1平行于径向平面P,且与径向方向S之间具有一夹角的设计,在保证微气泡发生管1341的长度尺寸的前提下,能够尽可能减小喷洒部1160沿着轴向方向Q和径向方向S的尺寸,最终设计出整体尺寸较小的喷洒部1160。
当然,可以理解的是,上述的微气泡发生管1341还可以为喇叭状。具体来说,微气泡发生管1341具有进水端和出水端,沿着进水端向出水端方向延伸,微气泡发生管1341的流路截面积逐渐变大。
另外,可以理解的是,本公开对上述微气泡发生管1341的数量不作特别限定,本领域的技术人员可以根据出水量对微气泡发生管1341的数量作增减。
下面以图24所示实施例为例,对出水装置内的水流方向作详细说明。图24示出的是本公开一实施例的出水装置的第一水流方向D1垂直于第二水流方向D2的剖视图。如图24所示,第一水流方向D1大致垂直于第二水流方向D2,微气泡发生管1341内的第一水流方向D1是由微气泡发生器1300的内周缘向外周缘流动,直至流动至面盖1500的外周缘附近时,被侧部1540阻挡缓冲。之后,一部分微气泡水从设置在面盖1500外周缘附近的出水孔1521射出,另一部分微气泡水沿着微气泡发生器1300与面盖1500之间的间隙1600向面盖1500的内周缘流动,在向内流动的过程中,也逐渐从出水孔1521射出。
由于多个出水孔1521呈辐射状均匀设置在面盖1500上,面盖1500外周缘相较于内周缘直径大,使得面盖1500的外周缘附近的出水孔1521数量相较于内周缘附近的出水孔1521数量多。因此,产生的大部分微气泡水能够从设置较多数量出水孔1521的面盖1500外周缘射出,小部分微气泡水从较少数量出水孔1521的内周缘射出。相比现有技术或相关技术中微气泡水大多集中在面盖1500的内周缘的方案,本公开实施例的出水方式,使得面盖1500内外周缘出水更加均匀。
当然,可以理解的是,上述的第一水流方向D1与第二水流方向D2还可以采用如图25所示实施例的方式设置。图25示出的是本公开一实施例的出水装置的第一水流方向D1与第二水流方向D2之间呈一锐角的剖视图。如图25所示,第一水流方向D1与第二水流方向D2之间具有一锐角α1,锐角可以大于等于45度且小于90度,进一步地,锐角大于等于80度且小于90度,例如81度、82度、83度、84度、85度、86度、87度、88度、89度。
当然,可以理解的是,如图26所示,图26示出的是本公开一实施例的出水装置的第一水流方向D1与第二水流方向D2之间呈一钝角的剖视图。第一水流方向D1与第二水流方向D2之间具有一钝角α2,钝角可以大于90度且小于等于120度,进一步地,钝角可以大于90度且小于等于100度,例如91度、92度、93度、94度、95度、96度、97度、98度、99度。
本公开的另一方面,提供一种出水设备,包括本体和可拆卸地连接于本体的容器,本体如上述任一实施例的出水装置,容器内存储有功能物质,功能物质能够通过本体的导入结构引入本体内。
综上所述,本公开实施例的出水装置和出水设备的优点和有益效果在于:
本公开实施例的出水装置,包括导入件和第一水流通道,导入件包括导入通道和导出通道,导入通道能够与第一水流通道相连通,从第一水流通道传导的水流能够通过导入通道和导出通道进出容器,将功能物质从容器内冲入喷洒部。本公开实施例的出水装置由于采用了至少部分导入件能够伸入容器内,以使水流进出容器而导出功能物质的技术手段,使得容器能够以外置的方式连接于出水装置,很好地解决了功能物质导出的问题。
在此应注意,附图中示出而且在本说明书中描述的出水装置仅仅是采用本公开的原理的一个示例。本领域的普通技术人员应当清楚地理解,本公开的原理并非仅限于附图中示出或说明书中描述的装置的任何细节或任何部件。
应可理解的是,本公开不将其应用限制到本说明书提出的部件的详细结构和布置方式。本公开能够具有其他实施方式,并且能够以多种方式实现并且执行。前述变形形式和修改形式落在本公开的范围内。应可理解的是,本说明书公开和限定的本公开延伸到文中和/或附图中提到或明显的两个或两个以上单独特征的所有可替代组合。所有这些不同的组合构成本公开的多个可替代方面。本说明书所述的实施方式说明了已知用于实现本公开的最佳方式,并且将使本领域技术人员能够利用本公开。

Claims (12)

  1. 一种出水装置,能够连接一容器,所述容器内存储有功能物质,其特征在于,所述出水装置包括:
    用于传导水流的第一水流通道;
    喷洒部,能够喷洒出经所述第一水流通道传导的水流;以及
    用于向所述喷洒部引入所述功能物质的导入件,所述导入件包括导入通道和导出通道,所述导入通道能够连通所述第一水流通道;
    其中,当所述容器连接于所述出水装置时,至少部分所述导入件伸入所述容器,且所述导入通道分别连通于所述容器和所述第一水流通道,所述导出通道连通于所述容器,以使从所述第一水流通道传导的水流能够依次流经所述导入通道、所述容器的内部和所述导出通道,将所述功能物质从所述容器冲入所述喷洒部。
  2. 根据权利要求1所述的出水装置,其特征在于,所述导入通道可选择性地连通于所述第一水流通道。
  3. 根据权利要求2所述的出水装置,其特征在于,所述出水装置包括:
    壳体;
    分水体,设于所述壳体内,所述分水体设有至少部分所述第一水流通道;
    阀芯,设于所述分水体内,所述阀芯能够在第一位置和第二位置之间移动,且当所述阀芯位于所述第一位置时,能够封堵所述第一水流通道和所述导入通道,当所述阀芯位于所述第二位置时,所述第一水流通道和所述导入通道相连通;以及
    切换组件,连接于所述阀芯,能够带动所述阀芯在所述第一位置和所述第二位置之间移动。
  4. 根据权利要求3所述的出水装置,其特征在于,所述出水装置还包括定位组件,所述定位组件能够将所述阀芯选择性地定位在所述第一位置或所述第二位置。
  5. 根据权利要求4所述的出水装置,其特征在于,所述切换组件设有第一凹部和第二凹部;所述定位组件包括:
    第一弹性元件,所述第一弹性元件的一端抵接于所述分水体;以及
    定位销,连接于所述第一弹性元件的另一端;
    其中,当所述阀芯位于第一位置时,所述定位销定位于所述第一凹部;当所述阀芯位于第二位置时,所述定位销定位于所述第二凹部。
  6. 根据权利要求2所述的出水装置,其特征在于,所述导入件能够在第一位置和第二位置之间移动,且当所述导入件位于所述第一位置时,所述第一水流通道与所述导入通道相连通,当所述导入件位于所述第二位置时,所述导入件封堵于所述第一水流通道和所述导入通道。
  7. 根据权利要求6所述的出水装置,其特征在于,所述出水装置包括壳体和分水体,所述分水体设于所述壳体内;
    所述出水装置还包括第二弹性元件和固定件,所述第二弹性元件的一端抵接于所述分水体,所述第二弹性元件的另一端抵接于所述导入件,并使所述导入件具有向第二位置移动的趋势;
    所述固定件连接于所述分水体,所述容器可拆卸地连接于所述固定件;当所述容器安装于所述固定件上时,所述容器抵顶于所述导入件,且使所述导入件位于所述第一位置,当所述容器未安装在所述固定件上时,所述导入件受所述第二弹性元件驱动处于所述第二位置。
  8. 根据权利要求7所述的出水装置,其特征在于,所述固定件呈一环形,所述固定件上设有卡槽;
    所述容器包括腔体部和接口部,所述腔体部内存储有所述功能物质,所述接口部连接于所述腔体部,所述接口部的外部设有凸块,所述凸块能够卡合于所述卡槽。
  9. 根据权利要求8所述的出水装置,其特征在于,所述接口部远离所述腔体部的一端面设有开口,所述功能物质能够从所述开口流出所述容器;
    所述容器还包括一封闭膜,封闭于所述开口的边缘,当所述容器未连接在所述出水装置上时,所述封闭膜能够将所述功能物质封闭在所述容器内;
    所述导入件的一端设有尖部,当所述容器连接于所述出水装置上时,所述尖部能够刺破所述封闭膜而伸入所述接口部。
  10. 根据权利要求1至9任一项所述的出水装置,其特征在于,所述出水装置还包括用于传导水流的第二水流通道,所述第二水流通道与所述第一水流通道独立设置,所述喷洒部能够喷洒出从所述第二水流通道传导的水流。
  11. 一种出水设备,其特征在于,包括本体和可拆卸地连接于所述本体的容器,所述本体如权利要求1至10任一项所述的出水装置,所述容器内存储有功能物质,所述功能物质能够通过所述本体的导入件引入所述本体内。
  12. 一种出水装置,能够连接一容器,所述容器内存储有功能物质,其特征在于, 所述出水装置包括:
    用于传导水流的第一水流通道;
    喷洒部,能够喷洒出经所述第一水流通道传导的水流;
    把手部,连接于所述喷洒部;所述容器能够连接于所述把手部的一端部,所述把手部的另一端部用于连接一供水管;以及
    用于向所述喷洒部引入所述功能物质的导入件,所述导入件设于所述把手部的一端部,所述导入件包括导入通道和导出通道,所述导入通道能够连通所述第一水流通道;
    当所述容器连接于所述把手部时,至少部分所述导入件伸入所述容器,且所述导入通道分别连通于所述容器和所述第一水流通道,所述导出通道连通于所述容器,以使从所述第一水流通道传导的水流能够依次流经所述导入通道、所述容器的内部和所述导出通道,将所述功能物质从所述容器冲入所述喷洒部。
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