WO2019154243A1 - 饮水设备 - Google Patents

饮水设备 Download PDF

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Publication number
WO2019154243A1
WO2019154243A1 PCT/CN2019/074076 CN2019074076W WO2019154243A1 WO 2019154243 A1 WO2019154243 A1 WO 2019154243A1 CN 2019074076 W CN2019074076 W CN 2019074076W WO 2019154243 A1 WO2019154243 A1 WO 2019154243A1
Authority
WO
WIPO (PCT)
Prior art keywords
water
interface
positioning
drinking device
inlet
Prior art date
Application number
PCT/CN2019/074076
Other languages
English (en)
French (fr)
Inventor
俞国强
甘植盛
高勇
荒川真吾
Original Assignee
佛山市顺德区美的饮水机制造有限公司
株式会社宇宙生命
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 CN201820250092.2U external-priority patent/CN209421728U/zh
Priority claimed from CN201820250940.XU external-priority patent/CN208692982U/zh
Priority claimed from CN201820250634.6U external-priority patent/CN208625391U/zh
Priority claimed from CN201820250639.9U external-priority patent/CN208625387U/zh
Priority claimed from CN201820249342.0U external-priority patent/CN208692981U/zh
Priority claimed from CN201820251292.XU external-priority patent/CN209121902U/zh
Priority claimed from CN201820250636.5U external-priority patent/CN208973453U/zh
Priority claimed from CN201810141589.5A external-priority patent/CN110150990A/zh
Priority claimed from CN201820250782.8U external-priority patent/CN208625377U/zh
Priority claimed from CN201820249929.1U external-priority patent/CN208941822U/zh
Priority claimed from CN201810141572.XA external-priority patent/CN110141121A/zh
Priority claimed from CN201820250131.9U external-priority patent/CN208625359U/zh
Priority claimed from CN201810141246.9A external-priority patent/CN110141120A/zh
Priority claimed from CN201810140205.8A external-priority patent/CN110141113A/zh
Priority claimed from CN201820249341.6U external-priority patent/CN208625358U/zh
Application filed by 佛山市顺德区美的饮水机制造有限公司, 株式会社宇宙生命 filed Critical 佛山市顺德区美的饮水机制造有限公司
Publication of WO2019154243A1 publication Critical patent/WO2019154243A1/zh

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Classifications

    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47JKITCHEN EQUIPMENT; COFFEE MILLS; SPICE MILLS; APPARATUS FOR MAKING BEVERAGES
    • A47J31/00Apparatus for making beverages

Definitions

  • the present disclosure is based on the application numbers of 201120250131.9, 201120250092.2, 201810140205.8, 201120249342.0, 201820250634.6, 201110141246.9, 201820250639.9, 201120249341.6, 201810141589.5, 201820249929.11, 201810141572.X, 201820251292.X, 201820250940.X, 201120250782.8 and 201820250636.5, the application date is February 2018 Japanese Patent Application No.
  • the present disclosure belongs to the technical field of household appliances, and in particular, designs a drinking water device.
  • the present disclosure is intended to address at least one of the technical problems existing in the prior art.
  • the present disclosure proposes a drinking water device, which has a relatively simple disassembly and assembly process and is convenient for cleaning.
  • a drinking water apparatus includes: a body and a smart seat, the inside of the body defining a water inlet tank having an upper side, the inner peripheral wall of the water inlet tank is provided with a guiding groove, and the guiding groove is along the circumference of the water inlet tank And extending and winding around a central axis of the water inlet tank, the body is provided with a dismounting port communicating with the guiding groove, the smart seat is disposed in the water inlet, and the smart seat corresponds to the guiding
  • the groove is provided with a guiding rib, and the guiding rib is slidably fitted in the guiding groove and enters and exits the guiding groove through the dismounting opening.
  • the cooperation of the guiding groove and the guiding rib can facilitate the disassembly of the smart seat, not only simplifying the disassembly and assembly difficulty of the smart seat, but also cleaning the smart seat for the user. It is convenient to provide environmental sanitation for drinking water equipment.
  • the detachable opening is located at a top end of the guiding groove and penetrates an upper surface of the body.
  • a portion of the upper wall of the guide groove is open to form the disassembly port.
  • the guiding groove includes: a sliding section and a limiting section, the upper wall of the sliding section is open to form the disassembling opening, and the upper end of the limiting section is opposite to the sliding section The lower end is connected.
  • the upper wall of the limiting segment is arranged in parallel with the lower wall, and the distance between the upper wall and the lower wall of the limiting segment is greater than or equal to the thickness of the guiding rib.
  • the body is provided with a locking identifier and an unlocking identifier
  • the smart seat assembly is provided with an indication mark
  • the guiding rib is located at the bottom of the guiding slot.
  • the locking indicator is directed to the unlocking indicator when the guiding rib is at the top of the guiding slot.
  • the outer peripheral surface of the smart seat assembly is provided with a bump, and the guide rib is disposed on the bump.
  • the guiding groove includes a first guiding groove and a second guiding groove, and the first guiding groove and the second guiding groove are symmetrically distributed centrally with respect to a central axis of the water inlet.
  • the detachable port includes a first detaching port communicating with the first guiding groove and a second detaching port communicating with the second guiding groove;
  • the guiding rib includes a first guiding rib and a second guiding rib
  • the first guiding rib and the second guiding rib are symmetrically distributed with respect to a central axis of the smart seat assembly, and the first guiding rib is slidably fitted in the first guiding groove and passes through the The first disassembly port enters and exits the first guiding slot, and the second guiding rib is slidably fitted in the second guiding slot and enters and exits the second guiding slot through the second dismounting port.
  • the first guide rib, the second guide rib, and the smart seat assembly are integrally formed.
  • the smart seat assembly includes: a smart seat, a conduit, and a smart column, the smart seat defining an upwardly open inlet water chamber, the conduit being connected to the water inlet a first through hole and a second through hole communicating with the water inlet chamber, the lower end of the conductive tube is open, and the side wall of the conductive tube is provided with a card slot
  • the smart column is inserted into the conductive tube and defines a water flow channel between the smart column and the conductive tube, the smart column defines a fluid channel therein, and the first through hole communicates with the a fluid passage, the second through hole communicates with the water flow passage, and a side of the smart column is provided with a fixing buckle adapted to be engaged in the card slot.
  • the smart column includes: a column body and at least one fixing buckle, the column body defines the fluid passage, and one end of the fixing buckle is disposed on an outer peripheral wall of the column body, The other end of the fixing buckle is away from the column body in the radial direction of the column body under the elastic force of the fixing buckle.
  • the fixing buckle includes: a connecting section and one engaging section, one end of the connecting section is connected to an outer peripheral wall of the column body, and the other end of the connecting section is along an axial direction of the column body Tilting downwardly and radially outwardly of the column body, the snap-on section is coupled to the other end of the connecting section and extends radially outwardly of the post body.
  • the method further includes: at least one positioning rib disposed on an outer peripheral wall of the column body, the positioning rib cooperating with the outer peripheral wall of the column body to define a water flow passage.
  • the positioning rib extends in an axial direction of the column body.
  • the positioning rib is plural, and the plurality of positioning ribs are spaced apart along a circumferential direction of the column body, the fixing buckle is a plurality, and each of the fixing buckles and one The positioning ribs are connected.
  • the positioning ribs are four, and the four positioning ribs are equally spaced along the circumferential direction of the column body, the fixing buckles are two and in the radial direction of the column body Relative settings.
  • a distance between an upper end of the positioning rib and an upper end of the column body is greater than a distance between a lower end of the positioning rib and a lower end of the column body, the fixing buckle and the fixing The lower ends of the positioning ribs are connected.
  • one end of the column body is provided with a connection seat on which a fluid passage hole communicating with the fluid passage is formed.
  • the connecting base includes: a top cover and a side flap, the top cover is capped at an upper end of the post body, the side flap extends downward from the top cover and is configured to
  • the outer peripheral wall of the column body is shaped to be curved, and the fluid passage is provided in the side panel.
  • the conduction tube includes: a conduction body and a connection ear, the conduction body is connected to the smart seat and penetrates a bottom wall of the water inlet cavity, and the conduction body The lower end is open, and the connecting ear is connected at a lower end of the conducting body and protrudes downward along an axial direction of the conducting body, and the card slot is disposed on the connecting ear.
  • the card slot extends through the connecting ear in a thickness direction of the connecting ear.
  • one end of the column body is provided with a connection seat on which a fluid passage hole communicating with the fluid passage is formed.
  • the connector is located at the top of the column body and the fluid via is located at a side of the column body.
  • the method further includes: a first water tank having a first inlet and outlet and a first water inlet, the first inlet and outlet communicating with the fluid passage, and the first water inlet communicating with a water flow passage, the first water tank and the smart seat are spaced apart in a horizontal direction, the first water tank has a second inlet and outlet communicating with the fluid passage and a second water inlet communicating with the water flow passage The second inlet and outlet are located above the second water inlet.
  • the first inlet and outlet are located in the same horizontal plane as the second inlet and outlet, or the first inlet and outlet are located below the second inlet and outlet.
  • the second inlet and outlet are located at the top of the water tank and the second water inlet is located at the bottom of the water tank.
  • a top end of the conducting tube is provided with a stop edge extending radially outward along the conducting tube, and an inner wall surface of the smart head is provided with a stop, The stop is stopped at the stop.
  • the outer circumferential surface of the conduction tube is provided with a sealing edge that is in close contact with the inner wall surface of the smart head and has a communication between the second opening and the inlet and outlet passages. Connected holes.
  • the bottom end of the conduit is provided with a stop hook
  • the inner wall surface of the smart head is provided with a stop groove, and the stop hook is hooked in the stop groove.
  • the outer circumferential surface of the conductive tube is provided with a plurality of positioning guide ribs disposed along a circumferential direction thereof, the positioning guiding rib being located in the water flow channel and being electrically connected
  • the outer peripheral surface of the tube extends to the inner wall surface of the smart head.
  • an intake valve core and an intake air ball the intake valve core is disposed in the water tank and movable in the second inlet and outlet, the intake air float
  • the air inlet valve is floatably disposed in the water tank and connected to the air intake valve core, and the air intake floating ball floats to move the air intake valve core to open and close the second inlet and outlet.
  • the method further includes: an inlet valve core and a water inlet float, the inlet valve core is disposed in the water tank and movable in the second water inlet, the water inlet float The water inlet valve is floatably disposed in the water tank and connected to the water inlet valve core, and the water inlet floating ball floats to move the water inlet valve core to open and close the second inlet and outlet.
  • the water tank is provided with a vent communicating with the outside
  • the drinking water device further includes: an overflow prevention valve core and an overflow prevention floating ball, wherein the overflow prevention valve core is disposed in the water tank and Movable in the vent, the anti-overflow float can be floatingly disposed in the water tank and connected to the anti-overflow valve core, and the anti-overflow float floats to drive the anti-overfill valve core Move to open and close the vent.
  • a second water tank the second water tank is disposed in the body, the second water tank has a first interface, a second interface, a third interface, and a water outlet,
  • the first interface and the second interface are both disposed at an upper portion of the second water tank, the first interface is adapted to communicate with an external space, the top of the smart seat assembly is open, and the top circumference of the smart seat assembly
  • the inner peripheral edge of the water tank is sealingly fitted
  • the smart seat assembly has a fourth interface and a fifth interface, the fifth interface is disposed at a bottom of the smart seat assembly and not lower than the third interface,
  • the fourth interface is connected to the second interface through an intake pipe, and the fifth interface is connected to the third interface through an outlet pipe, and a communication pipe is disposed between the intake pipe and the outlet pipe.
  • a switch assembly including a water level detecting member and a switch member, the water level detecting member being disposed in the second water tank to detect a water level in the second water tank, The switch member is coupled to the second interface and the third interface to close the second interface and the third interface when a water level in the second water tank is not lower than a predetermined value.
  • a height of the third interface in a vertical direction is lower than a height of each of the second interface and the first interface in a vertical direction.
  • the first interface and the second interface are both disposed on a top wall of the second water tank, and the third interface is disposed at a lower portion of the second water tank.
  • the water level detecting member is a floating ball that is floatably disposed in the second water tank
  • the switch member includes: a rotating shaft and a valve core, and one end of the rotating shaft is rotatable Grounded to the second water tank, and the other end of the rotating shaft is connected to the floating ball, the valve core is connected to the rotating shaft and is offset from the center of rotation of the rotating shaft, and the valve core is adapted The second interface and the third interface are opened and closed.
  • the switch member is two-to-one corresponding to the second interface and the third interface, and the two switch members are connected to the same water level detecting member; or the switch assembly
  • each of the switch assemblies includes the water level detecting member and the switching member.
  • the inner wall surface of the second water tank is provided with two accommodating grooves respectively communicating with the second interface and the third interface, and the valve core is movably disposed at the corresponding one. The description is placed in the slot.
  • a spool seal is disposed on the spool.
  • an overflow-proof float ball assembly further comprising: an overflow-proof float ball assembly, the overflow-proof float ball assembly is disposed in the second water tank, and the overflow-proof float ball assembly is The water level in the second tank floats to open and close the first interface.
  • the lower end of the anti-overflow float assembly is higher than the water level detection when the second interface and the third interface are in a closed state when the first interface is in a closed state.
  • the lower end of the piece is higher than the water level detection when the second interface and the third interface are in a closed state when the first interface is in a closed state.
  • the body is provided with a venting groove
  • the first interface is disposed in the venting groove
  • the lower edge of the venting groove forms an annular flange
  • the anti-overflow floating ball assembly comprises: An overflow-proof floating ball, an anti-overflow valve core and an annular sealing ring, the anti-overflow floating spherical shape being a closed hollow structure, the anti-overflow valve spool being connected to a top end of the anti-overflow floating ball
  • the sealing ring is sleeved on the outer circumference of the anti-overflow floating ball, and the sealing ring floats under the anti-overflow floating ball to cooperate with the annular flange.
  • the top end of the anti-overflow valve spool is provided with a conical boss, and the anti-overflow valve core has a through groove extending along a length direction of the anti-overflow valve spool.
  • the side wall surface of the first interface is provided with a detachment preventing edge suitable for forming the tapered boss.
  • the water tank includes: a housing, a water inlet float assembly, an air intake float assembly, and an overflow relief float assembly, the housing defining a receiving cavity, the housing being provided a second interface, a third interface, and a first interface connected to the atmosphere, the heights of the second interface and the first interface in the vertical direction are higher than the height of the third interface in the vertical direction,
  • the water inlet float assembly is disposed in the accommodating chamber, and the water inlet float assembly opens and closes the third interface as the water level in the accommodating chamber floats, and the air intake float assembly is disposed on the Accommodating a cavity, the air intake float assembly floats with a water level in the receiving cavity to open and close the second interface, the anti-overflow floating ball assembly is disposed in the receiving cavity, the anti-overflow floating ball
  • the assembly floats with the water level in the receiving chamber to open and close the first interface, wherein when the first interface is in a closed state, the lower end of the
  • the lower end of the water inlet float assembly is flush with the lower end of the intake float assembly when the second interface is in a closed state when the third interface is in a closed state.
  • the water inlet float assembly includes: a water inlet float ball, a first connecting rod and a water inlet valve core, the water inlet float spherical shape to form a closed hollow structure, the first connecting rod One end of the connecting rod is connected to the water inlet float, the other end of the first connecting rod is hinged with the housing, and the water inlet valve core is connected to the first connecting rod and is connected to the first connecting rod The center of rotation is staggered, and the inlet spool is interlocked with the inlet float to open and close the third interface.
  • the housing has a water outlet
  • the third interface is formed in the water outlet
  • the water inlet valve core is shaped to fit the water outlet.
  • the water inlet float assembly further includes: an inlet gasket, the inlet gasket being disposed at a top end of the inlet valve plug.
  • the intake air ball assembly includes: an intake air ball, a second connecting rod, and an intake valve core, the air intake floats into a closed hollow structure, and the second connecting rod One end of the second connecting rod is connected to the housing, the other end of the second connecting rod is hinged to the housing, and the inlet valve core is connected to the second connecting rod and is connected to the second connecting rod The center of rotation is staggered, and the intake spool is interlocked with the intake float to open and close the second interface.
  • the method further includes: a door body assembly including: an upper door body and a locking member, the door body being disposed on the body to open and close the body, the body setting a sliding groove, the locking member is slidably fitted to the sliding groove to switch between a locked state and an unlocked state, and the locking member locks the door body when in the locked state
  • the body is configured to close the body, and the locking member is allowed to open the body when the locking member is in an unlocked state, wherein the door body is provided with a positioning groove that communicates with the sliding slot, the lock The stopper is held in the unlocked state by sliding into the positioning groove.
  • the length direction of the chute is perpendicular to the longitudinal direction of the positioning groove.
  • the locking member includes: a lock seat, a lock head, a lever and an elastic member
  • the lock seat is disposed on the door body and has a guide groove, and the length direction of the guide groove is The sliding slot is parallel to the longitudinal direction
  • the lock head is movably disposed in the guiding slot
  • the locking member is hooked on the body when the locking member is in the locking state
  • the locking head is disengaged from the body
  • the locking head is provided with a lever slot
  • the longitudinal direction of the lever slot is parallel to the longitudinal direction of the positioning slot
  • the lever is movable
  • the elastic member is disposed between the lock head and the lock seat and often pushes the lock head to fix the lock member
  • the locked state is maintained, wherein the lever moves the locking groove against the elastic force of the elastic member to slide the lock member in the unlocked state by sliding into the positioning groove.
  • the lock head is provided with a lock hook
  • the body is provided with a card board
  • the lock hook is hooked on the card board when the lock member is in the locked state.
  • the lock hook is disengaged from the card when the locking member is in the unlocked state.
  • the lever includes: a slider and a lever head, the slider is movably disposed in the lever slot and protrudes from the sliding slot, the lever head is provided Extending from one end of the slider to the chute.
  • the lock seat is provided with a first support portion and a second support portion, the guide groove is formed between the first support portion and the second support portion, the elastic member Both ends of the first support portion and the lock head are respectively stopped.
  • the first support portion has a first cavity and the first cavity is provided with a first bolt sleeve
  • the second support portion has a second cavity and the first a second bolt sleeve is disposed in the second cavity
  • the lock seat is mounted on the door body by a first bolt fitted to the first bolt sleeve and a second bolt fitted to the second bolt sleeve .
  • the lever groove is formed as a T-shaped groove, and one end of the slider is provided with a boss that cooperates with the lever groove.
  • the sliding groove and the positioning groove are formed in an overall cross section of an L shape or a T shape.
  • a lower door body the body defining spaced upper and lower chambers, the upper door body being mounted on the body for opening or closing the upper chamber;
  • the door body is mounted on the body for opening or closing the lower cavity, the upper door body is disposed opposite to the lower door body, and the lower door body is provided with a first locking mechanism, the first door a locking mechanism is movable between the first position and the second position, the lower door body being locked to the body when the first locking mechanism is in the first position, at the first The first locking mechanism is unlocked when the locking mechanism is in the second position, and the lower door allows opening of the lower chamber.
  • the first locking mechanism has a hook
  • the body is formed with a positioning slot corresponding to the position of the hook, and the hook cooperates with the positioning slot.
  • the positioning groove extends in an up and down direction of the body, and the first locking mechanism is provided at a top of the lower door.
  • the first lock mechanism in a case where the first lock mechanism is in a locked state, the first lock mechanism is covered by the upper door body.
  • the upper door body is provided with a second locking mechanism, and the second locking mechanism is in a locked state to lock the upper door body to the body to close the upper door a cavity in which the second locking mechanism is in an unlocked state, the upper door body allowing opening of the upper cavity.
  • the second locking mechanism is located at the top of the upper door body.
  • the first locking mechanism includes: a bracket, a button assembly, and a return spring
  • the bracket is mounted on the lower door body, the bracket defines a guiding slot
  • the button assembly includes The bottom of the body is provided with a guiding rod that cooperates with the guiding groove, the return spring is sleeved on the outer circumferential surface of the guiding rod, and one end of the return spring stops against the bottom surface of the button, The other end of the return spring terminates against the top surface of the bracket.
  • the rear side of the body is provided with a fixing plate extending from the front to the rear, and the hook is disposed on the fixing plate and extends upward beyond the upper surface of the button.
  • the upper surface of the hook extends obliquely upward and rearward.
  • the lower door body includes: a front plate, a left side plate, a right side plate, a top plate, and a bottom plate, and a front side edge of the left side plate is coupled to a right side edge of the front plate, a front side edge of the right side plate is connected to a left side of the front plate, and a front side edge of the top plate is connected to an upper side edge of the front plate, and a front side edge of the bottom plate and the front plate The lower side is connected.
  • the first locking mechanism is located below the top plate, the top plate is provided with a first mating hole and a second mating hole, the body penetrating the first mating hole, A hook passes through the second mating hole.
  • the left and right sides of the bracket are respectively provided with lugs, and the lugs are fixed to the front plate by screws.
  • a cover body that is openably covered on the body, and the cover body covers the water inlet when the cover is covered on the body, wherein a first positioning structure is disposed on one of the body and the cover body and a second positioning structure is disposed on the other, the first positioning structure and the second positioning structure are configured to be locked by the lock The cover is locked to the body.
  • the first positioning structure includes a positioning hook
  • the second positioning structure includes a positioning hole
  • the positioning hook is opposite to the positioning hole when the cover is covered on the body,
  • the positioning hook is adapted to connect the lock and lock the cover by the lock.
  • the first positioning structure is disposed on the body
  • the second positioning structure is disposed on the cover
  • the first positioning structure further includes: a screw, the screw a first nut and a second nut are provided, the first nut and the second nut cooperate to lock a wall of the body, wherein the positioning hook is connected to the screw, and the positioning hook Extending the outer surface of the body to face the positioning hole when the cover is over the body.
  • the first positioning structure is disposed on the body, and the second positioning structure is disposed on the cover body, and an axis of the positioning hook is perpendicular to an axis of the positioning hole.
  • the opening end edge of the cover body is provided with a matching hole, and the matching hole communicates with the positioning hole, and the positioning hook protrudes into the body when the cover body is covered on the body
  • the matching hole is opposite to the positioning hole.
  • the open end of the cover has opposite first and second open sides, and the first open side of the cover is rotatably coupled to the body, and the cover The second opening structure is provided on the second opening side of the body.
  • the first open side of the cover is detachably coupled to the body.
  • the first opening side of the cover body is provided with a first hook extending outwardly of the cover, and the body is provided with a second hook extending toward the water inlet.
  • the first hook is adapted to extend into the inner side of the second hook and engage with the second hook and the first card
  • the hook portion of the hook is opposite to the hook portion of the second hook.
  • the water inlet tank is formed on a top surface of the body, and a top surface of the body is provided with a notch groove surrounding the water inlet, and the cover body is covered on the body.
  • the opening circumference of the cover is located in the notch groove.
  • the top of the body is provided with a smart seat, the upper end of the smart seat is open to form the water inlet, and the cover is openably covered on the top surface of the body.
  • the fourth interface is higher than the fifth interface.
  • the method further includes: an air purifying member connected to the first interface.
  • the air purifying member includes an air filtering structure and a sterilization structure, and the air filtering structure is connected in series with the sterilization structure.
  • FIG. 1 is a partial structural schematic view of a water drinking device according to an embodiment of the present disclosure
  • FIG. 2 is a partial structural schematic view of a body of a water drinking device according to an embodiment of the present disclosure
  • FIG. 3 is a schematic structural view of a smart seat assembly according to an embodiment of the present disclosure.
  • FIG. 4 is a schematic view showing an assembled state of a smart seat assembly according to an embodiment of the present disclosure
  • FIG. 5 is a schematic view showing a disassembled state of a smart seat assembly according to an embodiment of the present disclosure
  • FIG. 6 is a cross-sectional view of a smart seat assembly in accordance with an embodiment of the present disclosure
  • FIG. 7 is an exploded view of a smart seat assembly in accordance with an embodiment of the present disclosure.
  • FIG. 8 is a schematic structural view of a smart column according to an embodiment of the present disclosure.
  • FIG. 9 is a cross-sectional view of a smart column in accordance with an embodiment of the present disclosure.
  • Figure 10 is a partial perspective structural view of a water drinking device in accordance with one embodiment of the present disclosure.
  • FIG. 11 is a schematic structural view of a water drinking device according to an embodiment of the present disclosure.
  • FIG. 12 is a schematic view showing an assembly relationship of a water drinking device according to an embodiment of the present disclosure
  • Figure 13 is a perspective view of a water drinking device in accordance with one embodiment of the present disclosure.
  • Figure 14 is a cross-sectional perspective view of a water drinking device in accordance with one embodiment of the present disclosure.
  • Figure 15 is a cross-sectional view of a water drinking device in accordance with one embodiment of the present disclosure.
  • FIG. 16 is a partial cross-sectional view of a water drinking device in accordance with an embodiment of the present disclosure
  • FIG. 17 is an internal structural view of a water drinking device according to an embodiment of the present disclosure.
  • FIG. 18 is a schematic diagram of a fifth interface water discharge of a water drinking device according to an embodiment of the present disclosure.
  • FIG. 19 is a schematic diagram of water intake of a water drinking device in a T1 state according to an embodiment of the present disclosure
  • FIG. 20 is a schematic diagram of water intake of a drinking water apparatus in a T2 state according to an embodiment of the present disclosure
  • 21 is a schematic diagram of water inlet and intake of a water drinking device in a T3 state according to an embodiment of the present disclosure
  • FIG. 22 is a schematic structural view of a water drinking device in a T3 state according to an embodiment of the present disclosure
  • FIG. 23 is a schematic structural view of a water drinking device in a T1 state according to an embodiment of the present disclosure.
  • FIG. 24 is an exploded view of an angle of a water drinking device in accordance with an embodiment of the present disclosure.
  • 25 is an exploded view of another angle of a water drinking device in accordance with an embodiment of the present disclosure.
  • 26 is a cross-sectional view of a water drinking device in accordance with an embodiment of the present disclosure.
  • FIG. 27 is another cross-sectional view of a water drinking device in accordance with an embodiment of the present disclosure.
  • FIG. 28 is a schematic illustration of a water tank assembly of a water drinking device in accordance with an embodiment of the present disclosure
  • 29 is a top plan view of a water tank assembly of a water drinking device in accordance with an embodiment of the present disclosure
  • Figure 30 is a cross-sectional view of a water tank assembly of a water drinking device in accordance with an embodiment of the present disclosure
  • FIG. 31 is still another cross-sectional view of a water tank assembly of a water drinking device in accordance with an embodiment of the present disclosure
  • FIG. 32 is a schematic illustration of a water inlet float assembly of a water tank assembly of a water drinking device in accordance with an embodiment of the present disclosure.
  • FIG. 33 is a partial structural schematic view of a door body assembly of a water drinking device according to an embodiment of the present disclosure
  • Figure 34 is a schematic structural view of a lock member of a door body assembly of a water drinking device according to an embodiment of the present disclosure
  • Figure 35 is a top plan view of a locking member of a door body assembly of a water drinking device in accordance with an embodiment of the present disclosure
  • 36 is a top plan view of the door body assembly of the water drinking device in a locked state in accordance with an embodiment of the present disclosure
  • FIG. 37 is a top plan view of the door body assembly of the water drinking device in an unlocked state in accordance with an embodiment of the present disclosure
  • FIG. 38 is a top plan view of a door body assembly of a water drinking device in a state of being kept unlocked according to an embodiment of the present disclosure
  • Figure 39 is an enlarged view of a portion A in Figure 36;
  • Figure 40 is an enlarged view of a portion B of Figure 37;
  • Figure 41 is an enlarged view of a portion C of Figure 38;
  • FIG. 42 is a schematic structural view of a door body assembly of a water drinking device in a locked state according to an embodiment of the present disclosure
  • FIG. 43 is a schematic structural view of a door body assembly of a water drinking device in an unlocked state according to an embodiment of the present disclosure
  • 44 is a schematic structural view of a door body assembly of a water drinking device according to an embodiment of the present disclosure in a state of being kept unlocked;
  • Figure 45 is a partial structural schematic view showing the door body assembly of the water drinking device in a locked state according to an embodiment of the present disclosure
  • Figure 46 is a partial structural schematic view showing the door body assembly of the water drinking device in an unlocked state according to an embodiment of the present disclosure
  • 47 is a partial structural schematic view of the door body assembly of the water drinking device in a state of being kept unlocked according to an embodiment of the present disclosure.
  • FIG. 48 is a schematic structural view of a door body assembly according to an embodiment of the present disclosure.
  • Figure 49 is an enlarged view of a portion D in Figure 46;
  • FIG. 50 is a partial structural schematic view of a lower door body according to an embodiment of the present disclosure.
  • 51 is a top plan view of a lower door body in accordance with an embodiment of the present disclosure.
  • FIG. 52 is a schematic structural view of a first locking mechanism according to an embodiment of the present disclosure.
  • Figure 53 is a cross-sectional view taken along line E-E of Figure 5;
  • Figure 54 is an enlarged view of a portion F in Figure 53.
  • Figure 55 is a partial perspective structural view of a lock and a water drinking device in accordance with an embodiment of the present disclosure
  • Figure 56 is an enlarged view of a portion G in Figure 55;
  • Figure 57 is an enlarged view of a portion H in Figure 55;
  • 58 is a top plan view of a portion of a structure of a water drinking device in accordance with an embodiment of the present disclosure
  • 59 is a front elevational view of a portion of a structure of a water drinking device in accordance with an embodiment of the present disclosure.
  • 60 is a schematic diagram of the operation of the water drinking device in the T1 state according to an embodiment of the present disclosure
  • 61 is a schematic diagram of the operation of the water drinking device in the T2 state according to an embodiment of the present disclosure
  • Figure 62 is a schematic illustration of the operation of the water drinking device in the T3 state in accordance with an embodiment of the present disclosure.
  • 100 body; 101: water inlet; 102: guiding groove: sliding section; 104: limiting section; 105: first guiding groove; 106: second guiding groove; 107: disassembly port; 108: limiting block; : lock mark; 110: unlock mark; 111: mounting port; 112: upper cover; 114: first inlet and outlet; 115: first water inlet; 116: card board; 117: positioning groove; 118: limit block; : first positioning structure; 120: positioning hook; 121: screw; 122: first nut; 123: second nut; 124: second hook;
  • 200 smart seat assembly; 201: guide rib; 202: first guide rib; 203: second guide rib; 204: indication mark; 205: bump; 206: smart seat; 207: conduction pipe; 208: conduction Body; 209: connecting ear; 210: card slot; 211: clever column; 212: column body; 213: fixed buckle; 214: connecting section; 215: snapping section; 216: positioning rib; 217: connecting seat; Fluid via; 219: top cover; 220: side wing; 221: inner core; 222 (225): fourth interface; 223: body seat; 224 (226): fifth interface; 227: smart head; 228: a port; 229: second port; 230: water passage; 231: stop; 232: access passage; 233: stop edge; 234: sealing edge; 235: communication hole; 236: stop hook; 237: positioning the guide rib;
  • 300 water tank; 301 (306): first interface; 302 (310): second interface; 303 (311): third interface; 304 (312): water outlet; 307: annular flange; 308: anti-detachment ; 311: third interface; 313: second inlet and outlet; 314: second water inlet; 315: vent; 316: intake float assembly; 317: intake float; 318: second connecting rod; Intake spool; 320: inlet float assembly; 321: inlet float; 322: first connecting rod; 323: inlet spool; 324: inlet seal; 325: overflow trap; : anti-overflow valve core; 327: tapered boss; 328: through groove; 329: sealing ring; 330: housing;
  • 400 switch assembly; 401: water level detecting member; 402: switch member; 403: rotating shaft; 404: spool; 405: spool seal;
  • 500 air purifying member; 502: outlet valve; 503: faucet; 504: heating device; 505: inlet and outlet pipe; 506: inlet pipe; 507: anti-overflow valve core; 508: switching valve; 509: heating container;
  • 600 door body assembly; 601: upper door body; 602: chute; 603: positioning groove; 604: locking member; 605: lock seat; 606: guide groove; 607: lock head; 608: lever groove; 609: Locking hook; 610: lever; 611: lever head; 612: slider; 613: elastic member; 614: first support portion; 615: first bolt sleeve; 616: second support portion; 617: second Bolt sleeve; 618: second locking mechanism; 619: lower door body; 620: first locking mechanism; 621: hook; 622: bracket; 623: lug; 624: button assembly; 625: body; : guide rod; 627: return spring; 628: front plate; 629: left side plate; 630: right side plate; 631: top plate; 632: first mating hole; 633: second mating hole;
  • 700 cover body; 701: second positioning structure; 702: positioning hole; 703: matching hole; 704: first hook; 705: lock;
  • first and second may include one or more of the features, either explicitly or implicitly.
  • a plurality of means two or more unless otherwise stated.
  • connection In the description of the present disclosure, it should be noted that the terms “installation”, “connected”, and “connected” are to be understood broadly, and may be fixed or detachable, for example, unless otherwise explicitly defined and defined. Connected, or integrally connected; can be mechanical or electrical; can be directly connected, or indirectly connected through an intermediate medium, can be the internal communication of the two components.
  • Connected, or integrally connected can be mechanical or electrical; can be directly connected, or indirectly connected through an intermediate medium, can be the internal communication of the two components.
  • the specific meanings of the above terms in the present disclosure can be understood in the specific circumstances by those skilled in the art.
  • a watering device S according to an embodiment of the present disclosure is described below with reference to FIGS. 1-62.
  • the water drinking apparatus S includes: a body 100, a smart seat assembly 200, and a soft water bag 800.
  • the body 100 defines a water inlet 101 that is open on the upper side, and the smart seat assembly 200 is disposed in the water inlet 101.
  • the inner peripheral wall of the water inlet tank 101 is provided with a guide groove 102 which extends in the circumferential direction of the water inlet tank 101 and spirally rises around the central axis of the water tank 101, that is, the inner peripheral wall of the water inlet tank 101 is formed with a spiral shape. Guide groove 102.
  • the smart seat assembly 200 is provided with a guiding rib 201 at a position corresponding to the guiding groove 102, and the guiding rib 201 is slidably fitted in the guiding groove 102.
  • the body 100 is provided with a dismounting port 107, and the dismounting port 107 communicates with the guiding groove 102.
  • the guide rib 201 slides into or slides out of the guide groove 102 through the detaching port 107.
  • the smart seat assembly 200 is rotated relative to the body 100 and the guide ribs 201 slide within the guide slots 102. While the smart seat assembly 200 is rotating, the guiding rib 201 is spirally ascending with the guiding groove 102, and the guiding rib 201 drives the smart seat assembly 200 to move in the axial direction. At this time, the smart seat assembly 200 is separated from the water inlet 101, which is greatly reduced. The difficulty of disassembling and assembling the smart seat assembly 200 facilitates the user to clean the smart seat assembly 200.
  • the guide groove 102 in the water inlet tank 101, the cooperation of the guide groove 102 and the guide rib 201 can facilitate the disassembly of the smart seat assembly 200, and the smart seat assembly 200 can be simplified.
  • the difficulty of disassembly and assembly can also provide convenience for the user to clean the smart seat assembly 200, and is beneficial to maintaining the environmental sanitation of the drinking water device S.
  • the detachable opening 107 is located at the top end of the guide groove 102 and penetrates the upper surface of the body 100. That is, the top end of the partial guide groove 102 is open, and the guide groove 102 is slid into or out of the guide groove 102 through the detachable opening 107 at the top end of the guide groove 102.
  • the disassembly port 107 is disposed at the top end of the guiding slot 102, and the production process is simple, which not only can reduce the production cost of the body 100 of the drinking water device S, but also can facilitate the cooperation of the smart seat assembly 200 and the body 100, and the user directly loads from the top. Or take out the smart seat assembly 200, the structure is simple, and the operation is simple.
  • a portion of the upper wall of the guide groove 102 is opened to form the detachable port 107.
  • the guide groove 102 is in the circumferential direction of the water inlet tank 101, and a part of the guide groove 102 is open at the top to form the disassembly port 107; the other part of the guide groove 102 is closed at the top, wherein the guide groove 102 is open and
  • the lengths of the closed sections are substantially equal, and the length of the open section of the guide groove 102 (that is, the length of the detachable opening 107) is greater than the length of the guide rib 201 (the length of the guide rib 201 is the extension length of the guide rib 201 in the circumferential direction of the smart seat assembly 200. ).
  • the guiding groove 102 includes: a sliding section 103 and a limiting section 104.
  • the upper wall of the sliding section 103 is open to form a dismounting port 107, and the upper end of the limiting section 104 is slid The lower end of the segment 103 is connected.
  • the bottom wall of the sliding section 103 is connected to the bottom wall of the limiting section 104, the top wall of the sliding section 103 is open, and the top of the limiting section 104 is provided with a limiting block 118108.
  • the bottom wall of the limiting block 118108 forms a limiting section 104.
  • the top wall when the guiding rib 201 slides into the limiting section 104, the bottom wall of the limiting block 118108 stops against the top of the guiding rib 201 and defines the guiding rib 201 in the limiting section 104, preventing the guiding rib 201 from entering the water tank 101. The displacement occurs in the axial direction.
  • the guiding groove 102 is disposed as the sliding section 103 and the limiting section 104, which not only facilitates the sliding of the guiding rib 201 into or out of the guiding groove 102, but also improves the stability of the guiding rib 201 in the limiting section 104.
  • the upper wall of the limiting section 104 is arranged in parallel with the lower wall, that is, the bottom wall of the limiting block 118108 and the bottom wall of the guiding groove 102 are arranged in parallel.
  • the distance between the upper wall and the lower wall of the limiting segment 104 is greater than or equal to the thickness of the guiding rib 201, that is, the distance between the bottom wall of the limiting block 118108 and the bottom wall of the guiding groove 102 is greater than or equal to the guiding rib 201. thickness of.
  • the guiding rib 201 can slide into or out of the limiting section 104 to cooperate with the limiting block 118108, thereby preventing the rotation resistance of the smart seat assembly 200 from being too small due to the small distance between the upper wall and the lower wall of the limiting section 104, thereby The user disassembles the smart seat assembly 200 to provide convenience.
  • the body 100 is provided with a lock indicator and an unlock mark 110
  • the smart stand assembly 200 is provided with an indication mark 204, and the lock mark and the unlock mark 110 are in the water inlet 101.
  • the circumferentially spaced apart setting when the smart seat assembly 200 is rotated relative to the water inlet 101, indicates that the indicator 204 slides from the locked identification to the unlocked identification 110 or from the unlocked identification 110 to the locked identification.
  • the indicator mark 204 points to the locking mark. That is, when the guiding rib 201 slides to the limiting section 104 of the guiding groove 102, the indicator mark 204 points to the locking mark, indicating that the smart seat assembly 200 has It is stably installed in the water inlet 101.
  • the indicator mark 204 points to the unlocking mark 110. That is to say, when the guiding rib 201 slides to the sliding section 103 of the guiding groove 102, the indicator mark 204 points to the unlocking mark 110, and the user can
  • the smart seat assembly 200 is taken out of the water inlet 101.
  • the user can understand the position of the guide bar 201 in the guide groove 102 by locking the mark, the unlock mark 110 and the indication mark 204, thereby learning smart. Whether the seat assembly 200 is assembled or whether the smart seat assembly 200 is disengaged from the guide slot 102.
  • the smart seat assembly 200 can be instructed to be installed or removed by the user to prevent the user from continuously damaging the smart seat assembly 200 or the body 100.
  • the outer peripheral surface of the smart seat assembly 200 is provided with a protrusion 205.
  • the protrusion 205 protrudes outward in the radial direction of the smart seat assembly 200, and the guide rib 201 is disposed on the protrusion 205.
  • the cross section of the guide rib 201 is formed into a ring structure.
  • the extending length of the guiding ribs 201 in the radial direction of the smart seat assembly 200 can be reduced, not only ensuring stable cooperation between the guiding ribs 201 and the guiding grooves 102, but also lifting the guiding ribs 201 and the smart seat assembly. 200 connection stability.
  • the guiding groove 102 includes a first guiding groove 105 and a second guiding groove 106, and the first guiding groove 105 and the second guiding groove 106 are opposite to the central axis of the water inlet 101.
  • the center of the symmetrical distribution port 107 includes a first detaching port 107 communicating with the first guiding groove 105 and a second detaching port 107 communicating with the second guiding groove 106.
  • the guiding rib 201 includes a first guiding rib 202 and a The second guiding rib 203, the first guiding rib 202 and the second guiding rib 203 are symmetrically distributed with respect to the central axis of the smart seat assembly 200, and the first guiding rib 202 is slidably fitted in the first guiding groove 105 and passes through the first The dismounting port 107 enters and exits the first guiding groove 105, and the second guiding rib 203 is slidably fitted in the second guiding groove 106 and enters and exits the second guiding groove 106 through the second dismounting port 107.
  • the assembly stability of the smart seat assembly 200 and the water inlet tank 101 can be improved, and not only the smart seat assembly 200 can be balanced, but also prevented.
  • the smart seat assembly 200 is disengaged from the body 100 due to damage to the single guide rib 201 or damage to the single guide slot 102.
  • the first guiding rib 202, the second guiding rib 203 and the smart seat assembly 200 are integrally formed, the integrated structure and performance stability are strong, the damage is not easy, the service life is long, and the first guiding rib 202 is eliminated.
  • the connection structure of the second guiding rib 203 and the smart seat assembly 200 is advantageous for improving the assembly efficiency of the smart seat assembly 200.
  • the drinking water device S further includes a soft water bag 800.
  • the smart seat assembly 200 defines a water inlet cavity with an open upper end, the soft water bag 800 is inserted into the water inlet cavity, and the soft water bag 800 is a flexible material, that is, As the amount of water in the soft water bag 800 decreases, the volume of the soft water bag 800 decreases, thereby facilitating the transportation of the soft water bag 800.
  • a watering device S according to an embodiment of the present disclosure will be described below with reference to FIGS. 6-9.
  • the water drinking apparatus S includes a body 100, a smart seat assembly 200, and a soft water bag 800.
  • the body 100 defines a water inlet 101 that is open at the top, and the smart seat assembly 200 is disposed in the water inlet 101.
  • the smart seat assembly 200 defines an inlet cavity with an open upper end, the soft water bag 800 is inserted into the water inlet cavity, and the soft water bag 800 is a flexible material, that is, as the amount of water in the soft water bag 800 decreases, the soft water bag 800 The volume is reduced, thereby facilitating the transportation of the soft water bag 800.
  • the smart seat assembly 200 includes a smart seat 206, a conductive tube 207, and a smart column 211.
  • the smart seat 206 defines an upwardly open inlet water chamber, and the conduction tube 207 is connected in the water inlet chamber.
  • the conduction tube 207 is provided with a first through hole and a second through hole communicating with the water inlet chamber, and the conduction tube 207 The lower end is open, and the smart column 211 is inserted into the conduction tube 207.
  • a smart column 211 includes a column body 212 and at least one fixing buckle 213.
  • the column body 212 is formed as a tubular shape with one end open, and the column body 212 defines a fluid passage therein.
  • the outer peripheral wall of the column body 212 and the inner peripheral wall of the conductive tube 207 define a water flow passage, the first through hole communicates with the fluid passage, and the second through hole Connect the water flow channel.
  • One end of the fixing buckle 213 is disposed on the outer peripheral wall of the column body 212, and the other end of the fixing buckle 213 is away from the column body 212 in the radial direction of the column body 212 under the elastic force of the fixing buckle 213.
  • the other end of the fixing buckle 213 can be brought closer to the column body 212 when subjected to a force, and is ejected outward along the radial direction of the column body 212 under the action of its own elastic force without external force.
  • the side wall of the air guiding tube is provided with a card slot 210.
  • the fixing buckle 213 is adapted to be engaged in the card slot 210. Specifically, during the assembly process of the smart column 211, the fixing buckle 213 is pressed by the external force, and the fixing buckle 213 is moved to the card slot 210. After the external force is removed, the fixing buckle 213 is ejected outward along the radial direction of the column body 212. The card is connected in the card slot 210.
  • the external pressure is applied to the fixing buckle 213, the fixing buckle 213 is brought closer to the column body 212 and detached from the card slot 210, and then the smart column 211 is taken out.
  • the smart column 211 of the drinking water device S of the present disclosure by providing the fixing buckle 213 on the smart column 211, the cooperation of the smart column 211 and the smart seat 206 is facilitated, and the smart column 211 is removed by using the fixing buckle 213. Conveniently, it is convenient for the user to remove the smart column 211 for cleaning, preventing the accumulation of dirt on the smart column 211, and ensuring that the drinking water device S is clean and hygienic.
  • the fixing buckle 213 includes a connecting section 214 and a snapping section 215.
  • One end of the connecting section 214 is connected to the outer peripheral wall of the column body 212, and the other end of the connecting section 214 is inclined downward along the axial direction of the column body 212 and outward in the radial direction of the column body 212. That is, one end of the connecting section 214 (the upper end as shown in FIG. 9) is attached to the column body 212, and the other end (the lower end as shown in FIG. 9) is separated from the column body 212.
  • the snap segment 215 is coupled to the lower end of the connecting segment 214 and extends radially outwardly of the post body 212.
  • fastening portion 215 By providing the fastening portion 215 on the fastening buckle 213, it is convenient to fix the fastening slot 213 to the card slot 210, and the locking stability of the fastening buckle 213 and the card slot 210 can be improved.
  • the connection of the fastening portion 213 and the card slot 210 can be facilitated by the connection of the fastening portion 214 to the card slot 210 and the cartridge body 210.
  • a smart column 211 includes a column body 212 and at least one positioning rib 216.
  • the positioning rib 216 is disposed on the outer peripheral wall of the column body 212, and the positioning rib 216 cooperates with the outer peripheral wall of the column body 212 and the inner peripheral wall of the conductive tube 207 to define a water flow passage.
  • the positioning rib 216 abuts against the inner wall of the conductive tube 207, the first through hole communicates with the fluid passage, and the second through hole communicates with the water flow passage.
  • the positioning rib 216 on the smart column 211, on the one hand, the structural strength and stability of the column body 212 can be improved, and the water flow channel defined by the positioning rib 216 It can improve the water flow stability of the drinking water device S and prevent the water flow of the drinking water device S from being interrupted.
  • the positioning rib 216 can improve the stability of the smart column 211 assembled in the smart seat 206, preventing the smart column 211 from shaking relative to the smart seat 206.
  • the water flow stability and structural stability of the smart seat assembly 200 and the drinking fountain device S can be improved by providing the smart seat 206 described above in the smart seat assembly 200 and the drinking fountain device S. To prevent the drinking water equipment S from working properly due to the shaking of the smart column 211.
  • the positioning rib 216 extends in the axial direction of the column body 212. That is, the positioning rib 216 extends along the length direction of the column body 212, thereby ensuring that the water flow passage is guided along the axis of the column body 212. The positioning rib 216 is prevented from increasing the resistance of the water flow in the water flow passage to ensure that the drinking water device S is normally turned on.
  • the positioning ribs 216 are plural, and the plurality of positioning ribs 216 are spaced apart along the circumferential direction of the column body 212 , and the adjacent positioning ribs 216 and the outer peripheral wall of the column body 212 and the conduction tube The inner peripheral wall of the 207 cooperates to define a water flow passage.
  • the smart column 211 is provided with four positioning ribs 216, and the four positioning ribs 216 are equally spaced along the circumferential direction of the column body 212. That is to say, the column body 212 has a positioning rib 216 on the front, rear, left and right sides, so that the column body 212 can be defined in four directions, thereby further preventing the column body 212 from shaking in the conduction tube 207.
  • the distance between the upper end of the positioning rib 216 and the upper end of the post body 212 is greater than the distance between the lower end of the positioning rib 216 and the lower end of the post body 212. That is, the positioning rib 216 is biased toward the lower end of the column body 212, thereby preventing the positioning rib 216 from blocking the first through hole or the second through hole on the conduction tube 207.
  • the length of the positioning rib 216 in the radial direction of the column body 212 is referred to as the width of the positioning rib 216, and the width of the upper end of the positioning rib 216 is gradually increased from the top to the bottom, and the lower end of the positioning rib 216 is The width gradually decreases in the direction from top to bottom. It is convenient for the positioning rib 216 of the above structure to enter the conduction tube 207, and the upper end of the positioning rib 216 is prevented from colliding with the lower end of the conduction tube 207, which is advantageous for improving the assembly efficiency of the smart column 211 and the smart seat 206.
  • the fixing buckle 213 is connected to the lower end of the positioning rib 216 , so that the structural integrity of the fixing buckle 213 and the positioning rib 216 can be improved, and the fixing buckle 213 and the positioning rib 216 can be improved. Strength and stability are beneficial to extend the life of the smart column 211.
  • one end of the column body 212 is provided with a connecting seat 217, and when the smart column 211 is assembled in the conducting pipe 207, the connecting seat 217 is sandwiched on the outer periphery of the column body 212.
  • the wall is between the inner peripheral wall of the conductive tube 207, and the connecting seat 217 is in sealing engagement with the inner peripheral wall of the conducting tube 207.
  • a fluid passage 218 is formed in the connector 217, and the fluid passage 218 communicates with the first through hole and the fluid passage.
  • connecting seat 217 on the column body 212 By providing the connecting seat 217 on the column body 212, it is possible to provide convenience for the first through hole to communicate with the fluid passage, and it is possible to prevent the first through hole from colliding with the water flow passage to affect the normal use of the smart seat 206.
  • the connector block 217 is located at the top of the column body 212 and the fluid via 218 is located at the side of the column body 212.
  • the fluid via 218 extends through the sidewall of the post body 212 in the thickness direction of the sidewall of the post body 212, and the fluid via 218 is disposed adjacent the top end of the post body 212.
  • the connector 217 includes a top cover 219 and a side flap 220.
  • the top cover 219 is formed in a disk shape covering the top of the column body 212, and the outer diameter of the top cover 219 is equal to the inner diameter of the upper end of the conduction tube 207.
  • the side panels 220 are coupled to the top cover 219 and extend downwardly along the axial direction of the pillar body 212, and the side panels 220 are configured to be curved in a shape that fits the outer peripheral wall shape of the pillar body 212. That is, the side panels 220 cover the outer peripheral wall of the column body 212, and the fluid passage holes 218 are provided in the side panels 220.
  • the connecting seat 217 of the above structure has a simple structure and strong stability, and the top cover 219 and the inner peripheral wall of the conducting pipe 207 cooperate with the upper end of the fixing column body 212 to prevent the upper end of the column body 212 from shaking in the conducting pipe 207, thereby further enhancing the smart seat.
  • the stability of the 206, the side panel 220 cooperates with the column body 212 and the conductive tube 207 to prevent the first through hole from colluding with the water flow passage, and ensuring the stability of conduction between the first through hole and the fluid passage.
  • the via 207 includes a conductive body 625208 and a connecting ear 209.
  • the conducting body 625208 is connected to the smart seat 206 and penetrates the bottom wall of the water inlet chamber, and the lower end of the conducting body 625208 is open, that is, the conducting body 625208 is connected to the bottom wall of the water inlet chamber and along the bottom wall. The thickness runs through the bottom wall.
  • the connecting ear 209 is connected to the lower end of the conducting body 625208 and protrudes downward along the axial direction of the conducting body 625208.
  • the connecting ear 209 can be traveled to be a semi-circular structure connected to the lower end of the conducting body 625208, and the card slot 210 is disposed at the connection. Ear 209.
  • the difficulty of making the card slot 210 can be reduced, and the fixing buckle 213 can be conveniently combined with the card slot 210. Further, the difficulty of removing the smart column 211 by the user can be reduced. It is convenient for the user to clean up the smart column 211.
  • the card slot 210 penetrates the connecting ear 209 along the thickness direction of the connecting ear 209, and the fixing buckle 213 is inserted into the card slot 210 from the inner wall of the conducting tube 207.
  • the user removes the smart column 211, the user can remove the smart tube 211 from the conducting tube 207.
  • the outer side applies pressure to the fixing buckle 213 in the card slot 210, thereby providing convenience for the user to drive the fixing buckle 213, and further reducing the difficulty of the disassembly process of the smart column 211.
  • the drinking water apparatus may generally include a body 100, a water tank 300, a smart seat assembly 200, and a switch assembly 400.
  • the top wall of the body 100 has a mounting opening 111.
  • the water tank 300 is disposed in the body 100.
  • the water tank 300 has a first interface 301, a second interface 302, a third interface 303, and a water outlet 304.
  • the first interface 301 and the second interface 302 are both disposed at the upper portion of the water tank 300, and the first interface 301 Suitable for connecting to external spaces.
  • the smart seat assembly 200 is disposed on the body 100, and the top of the smart seat assembly 200 is open, and the top circumference of the smart seat assembly 200 is sealingly engaged with the inner circumference of the mounting opening 111.
  • the smart seat assembly 200 has a fourth interface 222 and a The fifth interface 224, the fourth interface 222 is connected to the second interface 302, the fifth interface 224 is connected to the third interface 303, and the fifth interface 224 is disposed at the bottom of the smart seat assembly 200 and not lower than the third interface 303.
  • the switch assembly 400 includes a water level detecting member 401 and a switch member 402. The water level detecting member 401 is disposed in the water tank 300 to detect a water level in the water tank 300, and the switch member 402 and the second interface 302 and the The third interface 303 is connected to close the second interface 302 and the third interface 303 when the water level in the water tank 300 is not lower than a predetermined value.
  • the smart seat assembly 200 is mounted on the mounting opening 111, and the smart seat assembly 200 and the mounting opening 111 have a sealing structure to prevent water from flowing into the interior of the drinking water device and is safer.
  • the smart seat assembly 200 can be connected to a water source.
  • the water source can be a hard water tank or a soft water bag 800.
  • the soft water bag 800 is connected to the smart seat assembly 200 as an example.
  • the pressure difference between the water pressure in the soft water bag 800 and the air pressure in the water tank 300 also constantly changes, according to the water pressure in the soft water bag 800 and the inside of the water tank 300.
  • the changing pressure difference of the air pressure, the working process of the drinking water device in the present application can be roughly divided into three stages:
  • the water in the water bag passes through the fourth interface 222 of the smart seat assembly 200 and then flows through the second interface 302 of the water tank 300 to the water tank 300.
  • Water is added, and the water in the water bag passes through the fifth interface 224 of the smart seat assembly 200 and then flows through the third port 303 of the water tank 300 to add water to the water tank 300.
  • the water level in the water tank 300 rises and the air is squeezed out.
  • the air in 300 is exhausted through the first interface 301 of the connected atmosphere, and the switch assembly 400 closes the second interface 302 and the third interface 303 until the water level detecting member 401 detects that the liquid level is at the predetermined position.
  • the water level in the water tank 300 rises, the air is exhausted, and the air in the water tank 300 is exhausted through the first interface 301 of the connected atmosphere, until the water level detecting member 401 detects that the liquid level is at the predetermined position, the switch assembly 400 closes the second interface 302 and The third interface 303.
  • the water level in the water tank 300 rises, the air is exhausted, and the air in the water tank 300 is exhausted through the first interface 301 of the connected atmosphere, until the water level detecting member 401 detects that the liquid level is at the predetermined position, the switch assembly 400 closes the second interface 302 and The third interface 303.
  • the liquid level in the water tank 300 has not yet reached the predetermined position, and the water in the water bag has been drained.
  • the switch assembly 400 does not need to close the second interface 302 and the third interface 303. In this way, the inside of the water bag can be drained.
  • the first interface 301 is always in an open state, that is, the water tank 300 is always in communication with the atmosphere.
  • the second interface 302 and the fourth interface 222 can both ventilate and pass water, and the third interface 303 and the fifth interface 224 can only pass water.
  • the water outlet 304 has a water outlet valve 502, and the water outlet 304 can be connected to the drinking water tap 503 or to the heating device 504 or the refrigeration device.
  • the fourth interface 222 and the fifth interface 224 are disposed on the smart seat assembly 200, and the fourth interface 222 is connected to the second interface 302 of the water tank 300,
  • the fifth interface 224 is connected to the third interface 303 of the water tank 300, and the water in the water bag can be drained by the pressure difference between the water tank 300 and the water bag to avoid waste of resources.
  • the top wall of the water tank 300 is no higher than the upper edge of the smart seat assembly 200 and not lower than the lower edge of the smart seat assembly 200.
  • the top wall of the water tank 300 is not higher than the upper edge of the smart seat assembly 200, so that the water in the water bag has sufficient pressure to replenish the water in the water tank 300 to the reserved liquid level without the water pressure being insufficient, resulting in the water tank 300.
  • the top wall of the water tank 300 is not lower than the lower edge of the smart seat assembly 200, that is, the lower edge of the smart seat assembly 200 is higher than the top wall of the water tank 300 or the top wall of the water tank 300, such that the water tank
  • the smart seat assembly 200 and the smart seat assembly 200 are not necessarily arranged to be vertically opposed to each other, or may be arranged at a predetermined distance in the horizontal direction, and the smart seat assembly 200 does not need to protrude into the water tank 300 to make the smart seat assembly 200 Various arrangements.
  • the first interface 301 and the second interface 302 are both disposed on the top wall of the water tank 300, and the third interface 303 is disposed on The lower portion of the water tank 300.
  • the first interface 301 communicates with the outside for plenuming the inside of the water tank 300 or discharging the gas in the water tank 300, so the first interface 301 is disposed on the top wall of the water tank 300.
  • the second interface 302 replenishes the water in the water tank 300.
  • the second interface 302 needs to inflate the water bag, and the second interface 302 is disposed on the top wall of the water tank 300 instead of the bottom wall.
  • the second interface 302 cannot be inflated into the water bag when the water pressure in the water bag is insufficient.
  • the second interface 302 when the second interface 302 is located on the side wall or the bottom wall of the water tank 300, there may be a case where the water level in the water tank 300 is higher than the second interface 302 when the water pressure in the water tank is insufficient, that is, the liquid The height of the surface is higher than the height of the second interface 302. At this time, the inside of the water bag cannot be inflated through the second interface 302, and the internal space of the water tank 300 is also wasted.
  • the third interface 303 is located at a lower portion of the water tank 300, and the third interface 303 is only responsible for introducing water into the water tank 300.
  • the third interface 303 is located at the bottom of the bottom wall or the side wall of the water tank 300, of course, the third interface.
  • the 303 may also be located at an intermediate position, a lower middle position, or the like of the side wall of the water tank 300.
  • the predetermined value is higher than the fifth interface 224.
  • the predetermined value of the liquid level of the water tank 300 is generally lower than the position of the water outlet 304 of the smart seat assembly 200, that is, the fifth interface 224, so that the structure of the whole machine is large, and it is not easy. Drain the water.
  • the structure sets the height of the bottom of the fifth interface 224 to the water tank 300 to H, and sets the liquid level of the water tank 300 to the bottom of the water tank 300 to H.
  • the water level detecting member 401 is a floating ball that is floatably disposed in the water tank 300.
  • the switch member 402 includes a rotating shaft 403 and a spool 404. One end of the rotating shaft 403 is rotatably connected to the water tank 300, and the other end of the rotating shaft 403 is connected to the floating ball.
  • the spool 404 is coupled to the rotating shaft 403 and offset from the center of rotation of the rotating shaft 403, and the spool 404 is adapted to open and close the second interface 302 and the third interface 303.
  • the float floats up and down as the liquid level in the water tank 300 rises and falls, and the float floats on the water surface.
  • the floating ball is connected to the other end of the rotating shaft 403, and the one end of the rotating shaft 403 is rotatably connected to the water tank 300.
  • the rotating shaft 403 is rotated by the floating ball. Since the spool 404 is offset from the center of rotation of the rotating shaft 403, the rotating shaft 403 drives the spool 404 to move during the rotation.
  • the switch member 402 includes two one-to-one correspondences with the second interface 302 and the third interface 303, and the two switch members 402 are connected to the same water level detecting member 401. That is to say, two rotating shafts 403 can be connected at the same time by only one floating ball, and the rotating shaft 403 connects the two spools 404, and the two rotating shafts 403 rotate synchronously with the floating ball to simultaneously drive the spool 404 to open or close the second interface. 302 and a third interface 303.
  • the above embodiments are merely illustrative and are not to be construed as limiting the scope of the disclosure.
  • the switch member 402 and the water level detecting member 401 are both one. At this time, the spool 404 is large enough to be opened and closed at the same time.
  • the switch assembly 400 includes two one-to-one correspondences with the second interface 302 and the third interface 303.
  • Each switch assembly 400 includes a water level detecting member 401 and a switch member 402.
  • the switch member 402 and the water level detecting member 401 are both Two, the second interface 302 and the third interface 303 can be opened and closed independently of each other.
  • the inner wall surface of the water tank 300 is provided with two second inlets and outlets 313 respectively communicating with the second interface 302 and the third interface 303 (not shown) Shown), the spool 404 is movably disposed in the corresponding second inlet and outlet 313.
  • the receiving slots are arranged vertically in the up and down direction. In other words, the rotation of the rotating shaft 403 drives the spool 404 to move up and down, and the movement of the spool 404 in the receiving groove can open and close the second interface 302 and the third interface 303.
  • a spool seal 405 is disposed on the spool 404.
  • the spool seal 405 is disposed on the top of the spool 404, and the spool seal 405 moves up and down as the spool 404 moves up and down.
  • the spool seal 405 is adapted to seal the second interface 302 and the third interface 303.
  • the valve core gasket 405 can be made of rubber material to make the sealing more strict.
  • the smart seat assembly 200 includes a body base 223 and an inner core 221, and the body base 223 has a shape of a housing 330 that is open at the top.
  • the fifth interface 224 is disposed on the bottom wall of the body base 223.
  • the inner core 221 has a hollow structure and extends in the up and down direction, and at least a portion of the inner core 221 extends into the body base 223, and the fourth interface 222 is disposed on the inner core 221.
  • the body seat 223 further includes an annular peripheral wall that closes the lower edge of the annular peripheral wall.
  • the fifth interface 224 is disposed on the bottom wall, that is, the fifth interface 224 is located below the water bag to ensure that the water in the water bag can completely flow out.
  • a part of the inner core 221 extends into the housing, and the protruding portion of the inner core 221 can be used to pierce the joint portion of the water bag, so that the water bag is connected to the smart seat assembly 200, and the protruding portion of the inner core 221 is extended.
  • the fourth interface 222 is disposed on the inner core 221, the inner core 221 is a hollow structure, and the inner core 221 of the hollow structure can be used for water or ventilation. Specifically, water in the water bag can enter from the fourth interface 222.
  • the core 221 enters the second interface 302 along the hollow pipe, or the air in the water tank 300 enters the second interface 302 and enters the hollow pipe of the inner core 221, and then enters the water bag from the fourth interface 222, thereby increasing the inside of the water bag. pressure.
  • the inner core 221 is provided with an intake column, the upper end of the intake column extends to the fourth interface 222, and the lower end of the intake column protrudes from the inner core 221 And connected to the second interface 302.
  • the intake column is connected to the second interface 302 and the fourth interface 222. It should be noted that the intake column can not only be ingested, but also can enter the water, the intake column is a fragile component, and the intake column is disposed on the inner core 221 Inside the hollow structure, the intake column can be protected.
  • the fourth interface 222 is higher than the fifth interface 224. It can be understood that the fourth interface 222 also has the function of injecting air into the water bag, and the fourth interface 222 is disposed higher than the fifth interface 224. When the water pressure is insufficient, the fourth interface 222 precedes the fifth interface 224. The critical value of insufficient pressure is reached, and the intake air is preferentially. Preferably, when the water bag is connected to the smart seat assembly 200, the fourth interface 222 is located in the water bag to facilitate intake. Certainly, the heights of the fourth interface 222 and the fifth interface 224 are not limited. For example, the fourth interface 222 and the fifth interface 224 may also be equal.
  • the fourth interface 222 and the fifth interface 224 are both disposed in the smart seat assembly.
  • the fourth interface 222 is lower than the fifth interface 224, for example, the fifth interface 224 is upwardly convex, and the fourth interface 222 is disposed on the bottom wall.
  • the air channel is disposed between the second interface 302 and the fourth interface 222, and the third interface 303 and the fifth interface 224 are only configured as water pipelines, and the water tank 300 is connected to the smart seat assembly 200.
  • the height between the low point of the air duct and the fourth interface 222 of the inner core 221 is H
  • the height between the third interface 303 of the water tank 300 and the third interface 303 of the inner core 221 is H.
  • the drinking water apparatus further includes an air purifying member 500, and the air purifying member 500 is connected to the first interface 301.
  • the first interface 301 is always open and connected to the atmosphere, and there are more dust and bacteria in the atmosphere, and an air purifying member 500 is disposed between the atmosphere and the first interface 301, whether in the water tank 300 or not.
  • the air is discharged to the atmosphere or the air in the atmosphere enters the water tank 300 and enters the water bag, which is purified and safer.
  • the air cleaning component 500 includes an air filtration structure and a sterilization structure, the air filtration structure being coupled in series with the sterilization structure. It is well known that there is a large amount of dust and bacteria in the air. By providing an air filtering structure, dust in the air can be filtered, and the sterilization structure can kill bacteria in the air, so that the air entering the water tank 300 is clean and hygienic, and the user drinks You can also rest assured.
  • the sterilization structure may be high temperature sterilization or ultraviolet sterilization.
  • the first interface 301 is disposed on the top wall of the water tank 300
  • the drinking water device further includes an anti-overflow floating ball 325 disposed on the first interface 301 .
  • the anti-overflow float 325 is a switch for controlling communication with the outside air from the water tank 300; in normal use, it is drooped by the anti-overflow float 325 itself, keeping the water tank 300 communicating with the outside air; if the water level detecting member 401 fails When the water level of the water tank 300 rises, the anti-overflow floating ball 325 will rise correspondingly.
  • the anti-overflow floating ball 325 and the first interface 301 of the sealing top are arranged to prevent the water from overflowing to the outside.
  • the purpose is to protect and therefore be safer.
  • the anti-overflow float 325 is a failure protection measure that will not be activated during normal use.
  • the drinking water apparatus may generally include a body 100, a water tank 300, a smart seat assembly 200, and a switch assembly 400.
  • the top wall of the body 100 has a mounting opening 111.
  • the water tank 300 is disposed in the body 100.
  • the water tank 300 has a first interface 301, a second interface 302, a third interface 303, and a water outlet 304.
  • the first interface 301 and the second interface 302 are both disposed at the upper portion of the water tank 300, and the first interface 301 Suitable for connecting to external spaces.
  • the smart seat assembly 200 is disposed on the body 100, and the top of the smart seat assembly 200 is open, and the top circumference of the smart seat assembly 200 is sealingly engaged with the inner circumference of the mounting opening 111.
  • the smart seat assembly 200 has a fourth interface 222 and a The fifth interface 224, the fourth interface 222 is connected to the second interface 302, the fifth interface 224 is connected to the third interface 303, and the fifth interface 224 is disposed at the bottom of the smart seat assembly 200 and not lower than the third interface 303.
  • the switch assembly 400 includes a water level detecting member 401 and a switch member 402.
  • the water level detecting member 401 is disposed in the water tank 300 to detect a water level in the water tank 300, and the switch member 402 and the second interface 302 and the The third interface 303 is connected to close the second interface 302 and the third interface 303 when the water level in the water tank 300 is not lower than a predetermined value.
  • the smart seat assembly 200 is mounted on the mounting opening 111, and the smart seat assembly 200 and the mounting opening 111 have a sealing structure to prevent water from flowing into the interior of the drinking water device and is safer.
  • the smart seat assembly 200 can be connected to a water source.
  • the water source can be a hard water tank or a soft water bag 800.
  • the soft water bag 800 is connected to the smart seat assembly 200 as an example.
  • the smart seat assembly 200 has a fourth interface 225 and a fifth interface 226, which may be provided at the bottom of the smart seat assembly 200, for example, as exemplified in FIG. 10, the fifth interface 226 is in the vertical direction The upper height is not lower than the third interface 303.
  • the fourth interface 225 and the second interface 302 are connected by an air inlet pipe
  • the fifth interface 226 and the third interface 303 are connected by an outlet pipe.
  • the outlet pipes are connected by a connecting pipe.
  • the pressure difference between the water pressure in the soft water bag 800 and the air pressure in the water tank 300 also constantly changes, according to the water pressure in the soft water bag 800 and the inside of the water tank 300.
  • the changing pressure difference of the air pressure, the working process of the drinking water device in the present application can be roughly divided into three stages:
  • the water in the water bag passes through the fourth interface 222 of the smart seat assembly 200 and then flows through the second interface 302 of the water tank 300.
  • Water is added to the water tank 300, and the water in the water bag also passes through the fifth interface 224 of the smart seat assembly 200 and then flows through the third port 303 of the water tank 300 to add water to the water tank 300.
  • the water level in the water tank 300 rises and the air is squeezed out.
  • the air in the water tank 300 is exhausted through the first interface 301 of the connected atmosphere, and the switch assembly 400 closes the second interface 302 and the third interface 303 until the water level detecting member 401 detects that the liquid level is at the predetermined position.
  • the T2 phase when the drinking water device is normally used, the water in the soft water bag 800 will gradually decrease.
  • the pressure difference between the soft water bag 800 and the water tank 300 gradually becomes smaller. There is no more water flowing between the fourth interface 222 of the smart seat assembly 200 and the second interface 302 of the water tank 300, and the water replenishes the water tank 300 mainly through the fifth interface 224 and the third interface 303.
  • the water level in the water tank 300 rises, the air is exhausted, and the air in the water tank 300 is exhausted through the first interface 301 of the connected atmosphere, until the water level detecting member 401 detects that the liquid level is at the predetermined position, the switch assembly 400 closes the second interface 302 and The third interface 303.
  • the water level in the water tank 300 rises, the air is exhausted, and the air in the water tank 300 is exhausted through the first interface 301 of the connected atmosphere, until the water level detecting member 401 detects that the liquid level is at the predetermined position, the switch assembly 400 closes the second interface 302 and The third interface 303.
  • the liquid level in the water tank 300 has not yet reached the predetermined position, and the water in the water bag has been drained.
  • the switch assembly 400 does not need to close the second interface 302 and the third interface 303. In this way, the inside of the water bag can be drained.
  • the first interface 301 is always in an open state, that is, the water tank 300 is always in communication with the atmosphere.
  • the second interface 302 and the fourth interface 222 can both ventilate and pass water, and the third interface 303 and the fifth interface 224 can only pass water.
  • the water outlet 304 has a water outlet valve 502, and the water outlet 304 can be connected to the drinking water tap 503 or to the heating device 504 or the refrigeration device.
  • the fourth interface 222 and the fifth interface 224 are disposed on the smart seat assembly 200, and the fourth interface 222 is connected to the second interface 302 of the water tank 300,
  • the fifth interface 224 is connected to the third interface 303 of the water tank 300, and the water in the water bag can be drained by the pressure difference between the water tank 300 and the water bag to avoid waste of resources.
  • the top wall of the water tank 300 is no higher than the upper edge of the smart seat assembly 200 and not lower than the lower edge of the smart seat assembly 200.
  • the top wall of the water tank 300 is not higher than the upper edge of the smart seat assembly 200, so that the water in the water bag has sufficient pressure to replenish the water in the water tank 300 to the reserved liquid level without the water pressure being insufficient, resulting in the water tank 300.
  • the top wall of the water tank 300 is not lower than the lower edge of the smart seat assembly 200, that is, the lower edge of the smart seat assembly 200 is higher than the top wall of the water tank 300 or the top wall of the water tank 300, such that the water tank
  • the smart seat assembly 200 and the smart seat assembly 200 are not necessarily arranged to be vertically opposed to each other, or may be arranged at a predetermined distance in the horizontal direction, and the smart seat assembly 200 does not need to protrude into the water tank 300 to make the smart seat assembly 200 Various arrangements.
  • the first interface 301 and the second interface 302 are both disposed on the top wall of the water tank 300, and the third interface 303 is disposed on The lower portion of the water tank 300.
  • the first interface 301 communicates with the outside for plenuming the inside of the water tank 300 or discharging the gas in the water tank 300, so the first interface 301 is disposed on the top wall of the water tank 300.
  • the second interface 302 replenishes the water in the water tank 300.
  • the second interface 302 needs to inflate the water bag, and the second interface 302 is disposed on the top wall of the water tank 300 instead of the bottom wall.
  • the second interface 302 cannot be inflated into the water bag when the water pressure in the water bag is insufficient.
  • the second interface 302 when the second interface 302 is located on the side wall or the bottom wall of the water tank 300, there may be a case where the water level in the water tank 300 is higher than the second interface 302 when the water pressure in the water tank is insufficient, that is, the liquid The height of the surface is higher than the height of the second interface 302. At this time, the inside of the water bag cannot be inflated through the second interface 302, and the internal space of the water tank 300 is also wasted.
  • the third interface 303 is located at a lower portion of the water tank 300, and the third interface 303 is only responsible for introducing water into the water tank 300.
  • the third interface 303 is located at the bottom of the bottom wall or the side wall of the water tank 300, of course, the third interface.
  • the 303 may also be located at an intermediate position, a lower middle position, or the like of the side wall of the water tank 300.
  • the predetermined value is higher than the fifth interface 224.
  • the predetermined value of the liquid level of the water tank 300 is generally lower than the position of the water outlet 304 of the smart seat assembly 200, that is, the fifth interface 224, so that the structure of the whole machine is large, and it is not easy. Drain the water.
  • the structure sets the height of the bottom of the fifth interface 224 to the water tank 300 to H, and sets the liquid level of the water tank 300 to the bottom of the water tank 300 to H.
  • the water level detecting member 401 is a floating ball that is floatably disposed in the water tank 300.
  • the switch member 402 includes a rotating shaft 403 and a spool 404. One end of the rotating shaft 403 is rotatably connected to the water tank 300, and the other end of the rotating shaft 403 is connected to the floating ball.
  • the spool 404 is coupled to the rotating shaft 403 and offset from the center of rotation of the rotating shaft 403, and the spool 404 is adapted to open and close the second interface 302 and the third interface 303.
  • the float floats up and down as the liquid level in the water tank 300 rises and falls, and the float floats on the water surface.
  • the floating ball is connected to the other end of the rotating shaft 403, and the one end of the rotating shaft 403 is rotatably connected to the water tank 300.
  • the rotating shaft 403 is rotated by the floating ball. Since the spool 404 is offset from the center of rotation of the rotating shaft 403, the rotating shaft 403 drives the spool 404 to move during the rotation.
  • the switch member 402 includes two one-to-one correspondences with the second interface 302 and the third interface 303, and the two switch members 402 are connected to the same water level detecting member 401. That is to say, two rotating shafts 403 can be connected at the same time by only one floating ball, and the rotating shaft 403 connects the two spools 404, and the two rotating shafts 403 rotate synchronously with the floating ball to simultaneously drive the spool 404 to open or close the second interface. 302 and a third interface 303.
  • the above embodiments are merely illustrative and are not to be construed as limiting the scope of the disclosure.
  • the switch member 402 and the water level detecting member 401 are both one. At this time, the spool 404 is large enough to be opened and closed at the same time.
  • the switch assembly 400 includes two one-to-one correspondences with the second interface 302 and the third interface 303.
  • Each switch assembly 400 includes a water level detecting member 401 and a switch member 402.
  • the switch member 402 and the water level detecting member 401 are both Two, the second interface 302 and the third interface 303 can be opened and closed independently of each other.
  • the inner wall surface of the water tank 300 is provided with two second inlets and outlets 313 respectively communicating with the second interface 302 and the third interface 303 (not shown) Shown), the spool 404 is movably disposed in the corresponding second inlet and outlet 313.
  • the receiving slots are arranged vertically in the up and down direction. In other words, the rotation of the rotating shaft 403 drives the spool 404 to move up and down, and the movement of the spool 404 in the receiving groove can open and close the second interface 302 and the third interface 303.
  • a spool seal 405 is disposed on the spool 404.
  • the spool seal 405 is disposed on the top of the spool 404, and the spool seal 405 moves up and down as the spool 404 moves up and down.
  • the spool seal 405 is adapted to seal the second interface 302 and the third interface 303.
  • the valve core gasket 405 can be made of rubber material to make the sealing more strict.
  • the smart seat assembly 200 includes a body base 223 and an inner core 221, and the body base 223 has a shape of a housing 330 that is open at the top.
  • the fifth interface 224 is disposed on the bottom wall of the body base 223.
  • the inner core 221 has a hollow structure and extends in the up and down direction, and at least a portion of the inner core 221 extends into the body base 223, and the fourth interface 222 is disposed on the inner core 221.
  • the body seat 223 further includes an annular peripheral wall that closes the lower edge of the annular peripheral wall.
  • the fifth interface 224 is disposed on the bottom wall, that is, the fifth interface 224 is located below the water bag to ensure that the water in the water bag can completely flow out.
  • a part of the inner core 221 extends into the housing, and the protruding portion of the inner core 221 can be used to pierce the joint portion of the water bag, so that the water bag is connected to the smart seat assembly 200, and the protruding portion of the inner core 221 is extended.
  • the fourth interface 222 is disposed on the inner core 221, the inner core 221 is a hollow structure, and the inner core 221 of the hollow structure can be used for water or ventilation. Specifically, water in the water bag can enter from the fourth interface 222.
  • the core 221 enters the second interface 302 along the hollow pipe, or the air in the water tank 300 enters the second interface 302 and enters the hollow pipe of the inner core 221, and then enters the water bag from the fourth interface 222, thereby increasing the inside of the water bag. pressure.
  • the inner core 221 is provided with an intake column, the upper end of the intake column extends to the fourth interface 222, and the lower end of the intake column protrudes from the inner core 221 And connected to the second interface 302.
  • the intake column is connected to the second interface 302 and the fourth interface 222. It should be noted that the intake column can not only be ingested, but also can enter the water, the intake column is a fragile component, and the intake column is disposed on the inner core 221 Inside the hollow structure, the intake column can be protected.
  • the fourth interface 222 is higher than the fifth interface 224. It can be understood that the fourth interface 222 also has the function of injecting air into the water bag, and the fourth interface 222 is disposed higher than the fifth interface 224. When the water pressure is insufficient, the fourth interface 222 precedes the fifth interface 224. The critical value of insufficient pressure is reached, and the intake air is preferentially. Preferably, when the water bag is connected to the smart seat assembly 200, the fourth interface 222 is located in the water bag to facilitate intake. Certainly, the heights of the fourth interface 222 and the fifth interface 224 are not limited. For example, the fourth interface 222 and the fifth interface 224 may also be equal.
  • the fourth interface 222 and the fifth interface 224 are both disposed in the smart seat assembly.
  • the fourth interface 222 is lower than the fifth interface 224, for example, the fifth interface 224 is upwardly convex, and the fourth interface 222 is disposed on the bottom wall.
  • the air channel is disposed between the second interface 302 and the fourth interface 222, and the third interface 303 and the fifth interface 224 are only configured as water pipelines, and the water tank 300 is connected to the smart seat assembly 200.
  • the height between the low point of the air duct and the fourth interface 222 of the inner core 221 is H
  • the height between the third interface 303 of the water tank 300 and the third interface 303 of the inner core 221 is H.
  • the drinking water apparatus further includes an air purifying member 500, and the air purifying member 500 is connected to the first interface 301.
  • the first interface 301 is always open and connected to the atmosphere, and there are more dust and bacteria in the atmosphere, and an air purifying member 500 is disposed between the atmosphere and the first interface 301, whether in the water tank 300 or not.
  • the air is discharged to the atmosphere or the air in the atmosphere enters the water tank 300 and enters the water bag, which is purified and safer.
  • the air cleaning component 500 includes an air filtration structure and a sterilization structure, the air filtration structure being coupled in series with the sterilization structure. It is well known that there is a large amount of dust and bacteria in the air. By providing an air filtering structure, dust in the air can be filtered, and the sterilization structure can kill bacteria in the air, so that the air entering the water tank 300 is clean and hygienic, and the user drinks You can also rest assured.
  • the sterilization structure may be high temperature sterilization or ultraviolet sterilization.
  • the first interface 301 is disposed on the top wall of the water tank 300
  • the drinking water device further includes an anti-overflow floating ball 325 disposed on the first interface 301 .
  • the anti-overflow float 325 is a switch for controlling communication with the outside air from the water tank 300; in normal use, it is drooped by the anti-overflow float 325 itself, keeping the water tank 300 communicating with the outside air; if the water level detecting member 401 fails When the water level of the water tank 300 rises, the anti-overflow floating ball 325 will rise correspondingly.
  • the anti-overflow floating ball 325 and the first interface 301 of the sealing top are arranged to prevent the water from overflowing to the outside.
  • the purpose is to protect and therefore be safer.
  • the anti-overflow float 325 is a failure protection measure that will not be activated during normal use.
  • the switch member 402 and the water level detecting member The 401 generates a linkage, and the second interface 302 and the third interface 303 are closed by the water level detecting member 401, thereby preventing the water in the water tank 300 from overflowing and overflowing, thereby generating a safety hazard, and when the water level detecting member 401 detects the water level is not
  • the predetermined value ie, the water level in the water tank 300 does not reach the preset height
  • the water level detecting member 401 floats downwardly under the water level to open the second interface 302 and the third interface 303.
  • the soft water bag 800 can be opened. The water in the water can continue to flow into the water tank 300.
  • the height of the third interface 303 in the vertical direction is lower than the height of the second interface 302 in the vertical direction, and the third interface 303 is vertical.
  • the height in the direction is lower than the height of the first interface 301 in the vertical direction.
  • the first interface 301 and the second interface 302 are both disposed on the top wall of the water tank 300, and the third interface 303 is disposed at the lower portion of the water tank 300.
  • the first interface 301 communicates with the outside for plenuming the inside of the water tank 300 or discharging the gas in the water tank 300, so the first interface 301 is disposed on the top wall of the water tank 300.
  • the second interface 302 replenishes the water in the water tank 300.
  • the second interface 302 needs to inflate the water bag, and the second interface 302 is disposed on the top wall of the water tank 300 instead of the bottom wall.
  • the second interface 302 cannot be inflated into the water bag when the water pressure in the water bag is insufficient.
  • the second interface 302 when the second interface 302 is located on the side wall or the bottom wall of the water tank 300, there may be a case where the water level in the water tank 300 is higher than the second interface 302 when the water pressure in the water tank is insufficient, that is, the liquid The height of the surface is higher than the height of the second interface 302. At this time, the inside of the water bag cannot be inflated through the second interface 302, and the internal space of the water tank 300 is also wasted.
  • the third interface 303 is located at a lower portion of the water tank 300, and the third interface 303 is only responsible for introducing water into the water tank 300.
  • the third interface 303 is located at the bottom of the bottom wall or the side wall of the water tank 300, of course, the third interface.
  • the 303 may also be located at an intermediate position, a lower middle position, or the like of the side wall of the water tank 300.
  • the water level detecting member 401 is a floating ball that is floatably disposed in the water tank 300
  • the switch member 402 includes a rotating shaft 403 and a spool 404.
  • One end of the rotating shaft 403 is rotatably connected to the water tank 300, and the other end of the rotating shaft 403 is connected to the floating ball.
  • the spool 404 is coupled to the rotating shaft 403 and offset from the center of rotation of the rotating shaft 403, and the spool 404 is adapted to open and close the second interface 302 and the third interface 303.
  • the float floats up and down as the liquid level in the water tank 300 rises and falls, and the float floats on the water surface.
  • the floating ball is connected to the other end of the rotating shaft 403, and the one end of the rotating shaft 403 is rotatably connected to the water tank 300.
  • the rotating shaft 403 is rotated by the floating ball. Since the spool 404 is offset from the center of rotation of the rotating shaft 403, the rotating shaft 403 drives the spool 404 to move during the rotation.
  • the switch member 402 includes two one-to-one correspondences with the second interface 302 and the third interface 303, and the two switch members 402 are connected to the same water level detecting member 401. That is to say, two rotating shafts 403 can be connected at the same time by only one floating ball, and the rotating shaft 403 connects the two spools 404, and the two rotating shafts 403 rotate synchronously with the floating ball to simultaneously drive the spool 404 to open or close the second interface. 302 and a third interface 303.
  • the above embodiments are merely illustrative and are not to be construed as limiting the scope of the disclosure.
  • the switch member 402 and the water level detecting member 401 are both one. At this time, the spool 404 is large enough to be opened and closed at the same time.
  • the switch assembly 400 includes two one-to-one correspondences with the second interface 302 and the third interface 303.
  • Each switch assembly 400 includes a water level detecting member 401 and a switch member 402.
  • the switch member 402 and the water level detecting member 401 are both Two, the second interface 302 and the third interface 303 can be opened and closed independently of each other.
  • the inner wall surface of the water tank 300 is provided with two second inlets and outlets 3131 respectively communicating with the second interface 302 and the third interface 303, and the valve core 404 is movably disposed correspondingly.
  • the receiving slots are arranged vertically in the up and down direction. In other words, the rotation of the rotating shaft 403 drives the spool 404 to move up and down, and the movement of the spool 404 in the receiving groove can open and close the second interface 302 and the third interface 303.
  • a spool seal 405 is disposed on the spool 404.
  • the spool seal 405 is disposed on the top of the spool 404, and the spool seal 405 moves up and down as the spool 404 moves up and down.
  • the spool seal 405 is adapted to seal the second interface 302 and the third interface 303.
  • the valve core gasket 405 can be made of rubber material to make the sealing more strict.
  • the water drinking device further includes an anti-overflow floating ball 325 assembly, and the anti-overflow floating ball 325 assembly floats with the water level in the water tank 300.
  • the anti-overflow float 325 assembly floats to close the first interface 301.
  • the anti-overflow float 325 assembly sinks under gravity to open the first interface 301.
  • the lower end of the anti-overflow float 325 assembly is higher than the lower end of the water level detecting member 401 when the second interface 302 and the third interface 303 are in the closed state.
  • the preset water level in the water tank 300 is higher than the water level preset value when the water level detecting member 401 floats to close the third interface 303. In this way, it is possible to avoid that when the switch assembly 400 fails, the water level continues to rise and overflow, thereby causing damage to the drinking water equipment and achieving failure protection.
  • the housing 330 is provided with a vent 315, the first interface 301 is formed in the vent 315, and the lower edge of the vent 315 forms an annular flange 307, anti-overflow float
  • the 325 assembly includes an anti-overflow float 325, an anti-overflow spool 404326, and an annular seal 329.
  • the anti-overflow float 325 is formed as a closed hollow structure.
  • the anti-overflow float 325 is formed substantially as a hollow truncated cone, and the anti-overflow spool 404326 is connected to the top of the anti-overflow float 325.
  • the axis of the anti-overflow spool 404326 may coincide with the axis of the anti-overflow float 325.
  • the annular sealing ring 329 is sleeved on the outer circumference of the overflow-proof floating ball 325.
  • the sealing ring 329 floats upward with the anti-overflow floating ball 325 and the annular flange 307.
  • the anti-overflow floating ball 325 sinks under the self-weight to make the sealing ring 329 disengage from the annular flange 307, thereby opening the first An interface 301.
  • the top end of the anti-overflow valve body 404326 is provided with a conical boss 327, and the anti-overflow valve core 404326 has a through groove 328, and the through groove 328 is prevented.
  • the overflow valve core 404326 extends in the longitudinal direction, and the overflow prevention valve core 404326 is divided into the first valve core 404 arm and the second valve core 404 arm which are arranged at intervals by the through groove 328, so that the external air can be ensured to pass through the first The interface 301 and the through groove 328 communicate with the water tank 300.
  • the anti-overflow valve body 404326 can be easily installed in the vent 315 for easy assembly and disassembly.
  • the side wall surface of the first interface 301 is provided with a detachment preventing edge 308, and the detachment preventing edge 308 may extend circumferentially along the sidewall of the first interface 301 and be formed into a ring shape to prevent overflow.
  • the tapered boss 327 at the top end of the spool 404326 cooperates with the retaining edge 308 to prevent the overflow-relief float 325 assembly from escaping from the vent 315 under its own weight, thereby failing to ensure fail-safe action.
  • a water dispenser includes an upper cover 112, a smart seat assembly 200, a conductive tube 207, and a water tank 300.
  • the upper cover 112 has a water inlet 101 that is open on one side surface (ie, the upper surface), and the water inlet 101 has a first inlet and outlet 114 and a first water inlet 115.
  • the smart seat assembly 200 is disposed in the water inlet 101, and the smart seat assembly 200 has a smart head 227 having a first opening 228 and a second opening 229.
  • the conduction tube 207 is disposed in the smart head 227, and the water passage 230 is defined between the conduction tube 207 and the smart head 227.
  • the water passage 230 communicates with the first port 228 and the first water inlet 115, respectively.
  • the inlet 207 has an inlet and outlet passage 232 that communicate with the second port 229 and the first inlet and outlet port 114, respectively.
  • the water tank 300 is spaced apart from the smart seat assembly 200 in a horizontal direction.
  • the water tank 300 has a second inlet and outlet port 313 communicating with the first inlet and outlet port 114 and a second water inlet port 314 communicating with the first water inlet port 115.
  • the second inlet port 313 Located above the second water inlet 314.
  • the first inlet and outlet port 114 and the second inlet and outlet port 313 are in communication through the inlet and outlet pipe 505, and the first water inlet port 115 and the second water inlet port 314 are in communication through the inlet pipe 506.
  • the water in the soft water tank can enter the water passage 230 from the first port 228 and the inlet port 232 from the second port 229 under the action of its own gravity, and the water in the water passage 230 is sequentially
  • a water inlet 115 and a second water inlet 314 enter the water tank 300, and the water in the inlet and outlet passages 232 enters the water tank 300 from the first inlet and outlet 114 and the second inlet and outlet 313 in sequence.
  • the negative pressure in the soft water tank gradually increases.
  • the inlet and outlet pipe 505 is filled with water, the water in the inlet pipe 505 and the gas in the water tank 300. Temporarily not flowing; and since the position of the second inlet and outlet 313 is higher than the position of the second water inlet 314, the water in the inlet pipe 506 will still flow into the water tank 300, so that the negative pressure in the soft water tank is further increased.
  • the negative pressure will draw the gas from the water tank 300 through the inlet and outlet pipe 505 into the soft water tank (ie, the water in the inlet and outlet pipe 505 is sucked back into the soft water tank), so that the water continuously enters the water tank 300 from the water inlet pipe 506, the gas
  • the water inlet and outlet pipes 505 are continuously sucked into the soft water tank to realize the water inlet of the water dispenser.
  • the inside of the water tank 300 is always in communication with the outside atmosphere.
  • the water dispenser of the embodiment of the present disclosure by arranging the water tank 300 and the smart seat assembly 200 in the horizontal direction, a sufficient amount of intake air can be secured, so that the water inlet is smooth.
  • the inlet and outlet pipes 505 are in communication with the inlet pipe 506 such that water in the inlet and outlet pipe 505 can be directly pressed into the water tank 300 through the inlet pipe 506, thereby entering and exiting the water in the pipe 505.
  • the discharge speed is faster, and the inlet and outlet pipe 505 can intermittently exhaust the soft water tank.
  • the first inlet and outlet 114 are located in the same horizontal plane as the second inlet and outlet 313, or the first inlet and outlet 114 are located below the second inlet and outlet 313. In this way, the intake air volume is more sufficient and the water intake is smoother.
  • the second inlet and outlet port 313 is located at the top of the water tank 300, and the second water inlet port 314 is located at the bottom of the water tank 300 to increase the water inlet speed and is also convenient.
  • Pipe connection As shown in FIG. 24, FIG. 26 and FIG. 27, the second inlet and outlet port 313 is disposed on the top wall of the water tank 300, and the second water inlet port 314 is disposed on the side wall of the water tank 300, so that the pipeline connection is more convenient. .
  • the top end of the conducting tube 207 is provided with a stop edge 233 extending radially outward of the conducting tube 207, and the inner wall surface of the smart head 227 is provided
  • the stopper 231 stops at the stopper 231 along the stopper 233 to position the conduction tube 207 in the axial direction (i.e., the up and down direction) of the smart head 227.
  • the stop edge 233 extends in the circumferential direction of the conduction tube 207.
  • the outer circumferential surface of the conduction tube 207 is provided with a sealing edge 234, and the sealing edge 234 is in close contact with the inner wall surface of the smart head 227, and the sealing edge 234 has a communication first.
  • the second port 229 and the communication hole 235 of the inlet and outlet passage 232 are provided.
  • the sealing edge 234 is further extended downward from a portion of the stop edge 233, that is, the sealing edge 234 is integral with the stop edge 233, so that the structure is simple and easy to manufacture. forming.
  • the bottom end of the conductive tube 207 is provided with a stop hook 236, and the inner wall surface of the smart head 227 is provided with a stop groove, and the stop hook 236 is hooked on In the stop groove, the movement of the conduction tube 207 in the smart head 227 can be restricted, and the assembly is more secure.
  • the stopper hooks 236 are plural, and the plurality of stopper hooks 236 are opposed to each other in the radial direction of the conduction tube 207.
  • the outer circumferential surface of the conducting tube 207 is provided with a plurality of positioning guiding ribs 237, and the plurality of positioning guiding ribs 237 are spaced along the circumferential direction of the conducting tube 207. It is provided that the positioning guide ribs 237 are located in the water passage 230, and each of the positioning guide ribs 237 extends from the outer circumferential surface of the conduction tube 207 to the inner wall surface of the smart head 227, so that not only the conduction tube 207 can be positioned but also It can guide the flow of water.
  • the upper and lower end faces of each of the positioning guide ribs 237 are configured as curved faces to reduce flow resistance.
  • the first inlet and outlet 114 and the first water inlet 115 are respectively disposed on the bottom wall of the water inlet tank 101, so that the piping arrangement can be simplified and the outflow of water can be facilitated.
  • the central axis of the first inlet and outlet 114, the central axis of the smart head 227, and the central axis of the conductive tube 207 coincide to facilitate smooth fluid in and out, and facilitate manufacturing and assembly. .
  • the water dispenser further includes an intake spool 404319 and an intake float 317.
  • the intake valve spool 404319 is disposed in the water tank 300, and the intake valve spool 404319 is movable within the second inlet and outlet 313 to open and close the second inlet and outlet 313.
  • the intake air ball 317 can be floatingly disposed in the water tank 300.
  • the intake air ball 317 is connected to the intake valve core 404319. When the air intake float 317 floats, the intake valve core 404319 is moved to open and close the second inlet and outlet 313. .
  • the air intake float 317 when the water level of the water tank 300 does not reach the intake air ball 317, the air intake float 317 will sag and open the second inlet and outlet 313; when the water level of the water tank 300 reaches the intake air ball 317, the air intake float ball The 317 floats up and drives the intake valve core 404319 to close the second inlet and outlet 313, and the air cannot enter the soft water bucket. That is to say, the intake air ball 317 interlocks the intake valve core 404319 to dynamically change with the water inlet state of the water tank 300.
  • the water dispenser further includes: a water inlet spool 404323 and a water inlet float 321 .
  • the inlet valve spool 404323 is disposed in the water tank 300, and the inlet valve spool 404323 is movable in the second water inlet 314.
  • the water inlet float 321 is floatingly disposed in the water tank 300, and the water inlet float 321 is connected to the water inlet valve core 404323. When the water inlet float 321 floats, the water inlet valve core 404323 is moved to open and close the second inlet and outlet 313. .
  • the water inlet float 321 when the water level of the water tank 300 does not reach the water inlet float 321 , the water inlet float 321 will sag and open the second water inlet 314; when the water level of the water tank 300 reaches the water inlet float 321 , the water inlet float The 321 floats up and drives the inlet valve spool 404323 to close the second water inlet 314, and the water cannot enter the water tank 300. That is to say, the water inlet float 321 is linked to the inlet valve spool 404323 to dynamically change with the water inlet state of the water tank 300.
  • the water tank 300 is provided with a vent 305 that communicates with the outside, and the water dispenser further includes an anti-overflow valve core 507404 and an anti-overflow float 325.
  • the spill-proof spool 507404 is disposed in the water tank 300, and the spill-proof spool 507404 is movable within the vent 305.
  • the anti-overflow floating ball 325 can be floatingly disposed in the water tank 300, and the anti-overflow floating ball 325 is connected to the anti-overflow valve core 507404. When the anti-overflow floating ball 325 floats, the anti-overflow valve core 507404 is moved to open and close the vent opening. 305.
  • the anti-overflow float 325 hangs under its own gravity to keep the water tank 300 communicating with the outside air; if both the inlet float 321 and the intake float 317 fail, the water level of the water tank 300 rises. The anti-overflow float 325 will rise accordingly until the anti-overflow float 325 drives the anti-overflow spool 507404 to close the vent 305 to prevent water from overflowing to the outside.
  • the anti-overflow float 325 and the anti-overflow valve core 507404 belong to a fail-safe device, and the water dispenser does not activate the device during normal use.
  • a water tank 300 assembly of a watering device in accordance with an embodiment of the present disclosure includes a housing 330, an influent float 321 assembly 320, an intake float 317 assembly 316, and an anti-overflow float 325 assembly.
  • the housing 330 defines a receiving cavity, and the housing 330 is provided with a second interface 302, a third interface 303 and a first interface 301.
  • the second interface 302 and the third interface 303 are respectively in communication with the receiving cavity, and the receiving cavity passes through the first interface 301.
  • the intake passage of the smart seat assembly 200 of the drinking water device communicates with the second interface 302
  • the water outlet passage of the smart seat assembly 200 of the drinking water device communicates with the third interface 303, such that the smart seat assembly 200 Water can flow into the accommodating chamber through the water outlet passage, and the air accommodating the chamber can enter the smart seat assembly 200 through the intake passage.
  • the inlet float 321 assembly 320 is disposed in the accommodating chamber, and the inlet float 321 assembly 320 floats with the water level in the accommodating chamber. When the water level in the accommodating chamber reaches a preset value, the inlet float 321 assembly 320 floats to close the third.
  • the interface 303 when the water level in the accommodating chamber is lower than a preset value, the water inlet float 321 assembly 320 sinks under the force of gravity to open the third interface 303.
  • the intake air ball 317 assembly 316 is disposed in the accommodating cavity, and the intake air ball 317 assembly 316 floats with the water level in the accommodating cavity. When the water level in the accommodating cavity reaches a preset value, the intake air ball 317 assembly 316 floats upward to close the second.
  • the interface 302 when the water level in the accommodating chamber is lower than a preset value, the intake float 317 assembly 316 sinks under the force of gravity to open the second interface 302.
  • the anti-overflow floating ball 325 component is disposed in the accommodating cavity, and the anti-overflow floating ball 325 component floats with the water level in the accommodating cavity.
  • the anti-overflow floating ball 325 component floats to close the first The interface 301, when the water level in the accommodating chamber is lower than a preset value, the anti-overflow float 325 assembly sinks under the force of gravity to open the first interface 301.
  • the lower end of the anti-overflow float 325 assembly is higher than the lower end of the influent float 321 assembly 320 when the third interface 303 is in the closed state, and when the first interface 301 is at In the closed state, the lower end of the anti-overflow float 325 assembly is higher than the lower end of the intake float 317 assembly 316 when the second interface 302 is in the closed state.
  • the preset water level in the accommodating cavity is higher than the water level in the accommodating cavity when the influent float 321 assembly 320 floats to close the third interface 303.
  • the value is set, and the water level preset in the accommodating chamber when the anti-overflow float 325 assembly floats to close the first interface 301 is higher than the water level in the accommodating chamber when the air-floating float 317 assembly 316 floats to close the second interface 302.
  • the preset value is such that when the water inlet float 321 assembly 320 and the intake float 317 assembly 316 fail simultaneously, the water level continues to rise and overflow, thereby causing damage to the drinking water equipment and achieving failure protection.
  • the water tank 300 assembly of the water drinking apparatus is provided with an overflow-proof float ball 325 assembly in the housing chamber of the water tank 300, and when the first interface 301 is in the closed state, the overflow-proof float ball 325
  • the lower end of the assembly is higher than the lower end of the inlet float 321 assembly 320 when the third interface 303 is in the closed state, and is higher than the lower end of the intake float 317 assembly 316 when the second interface 302 is in the closed state, thereby allowing the water to float
  • both the 321 component 320 and the intake air ball 317 component 316 fail, as the water level in the accommodating cavity continues to rise, the overflow-proof float ball assembly will float upward, and the first time when the water level reaches the overflow-proof float 325 level
  • the interface 301 prevents the water from overflowing to the outside of the casing 330, avoids damage caused by overflow, and achieves fail-safe protection, effectively reduces safety hazards and improve
  • the lower surface of the influent float 321 assembly 320 when the third interface 303 is in the closed state and the intake float 317 assembly 316 when the second interface 302 is in the closed state The lower surface is flush.
  • the water level preset value in the accommodating chamber is equal to the water level preset in the accommodating chamber when the intake float 317 assembly 316 floats to close the second interface 302. value.
  • the influent float 321 assembly 320 includes a water inlet float 321 , a first connecting rod 322 and a water inlet spool 404323, and a water inlet float 321 is formed as a closed hollow structure.
  • the water inlet float 321 may be formed substantially in a rectangular parallelepiped shape, and one end of the first connecting rod 322 is connected to the water inlet float 321 and the other end is hinged to the housing 330. That is, the first connecting rod 322 can be pivoted about the first connecting rod 322 and the housing 330.
  • the inlet valve spool 404323 is connected to the first connecting rod 322, and the connection between the inlet valve spool 404323 and the first connecting rod 322 is offset from the rotation center (hinging point) of the first connecting rod 322, and the water inlet float 321 is at The water level in the accommodating chamber is floated and sunk to close and open the third interface 303.
  • the housing 330 has a water outlet
  • the third interface 303 is disposed in the water outlet
  • the inlet valve core 404323 is adapted to the shape of the water outlet, such that when the water inlet valve When the core 404323 is interlocked with the water inlet float 321 , the cooperation between the inlet valve core 404323 and the water outlet tank can be ensured, and the reliability of the cooperation can be improved.
  • the inlet float 321 assembly 320 further includes an inlet gasket 324 that is disposed at the top of the inlet spool 404323, for example, the inlet gasket 324 can have
  • the plug is provided with a socket at the top of the inlet valve core 404323, and the inlet gasket 324 and the inlet valve core 404323 are connected by plug-in connection between the plug and the socket, thereby ensuring that the inlet valve core 404323 is closed.
  • the airtightness of the interface 303 is provided with a socket at the top of the inlet valve core 404323, and the inlet gasket 324 and the inlet valve core 404323 are connected by plug-in connection between the plug and the socket, thereby ensuring that the inlet valve core 404323 is closed.
  • the housing 330 is provided with a vent 315, the first interface 301 is formed in the vent 315, and the lower edge of the vent 315 forms an annular flange 307, anti-overflow float
  • the 325 assembly includes an anti-overflow float 325, an anti-overflow spool 404326, and an annular seal 329.
  • the anti-overflow float 325 is formed as a closed hollow structure.
  • the anti-overflow float 325 is formed substantially as a hollow truncated cone, and the anti-overflow spool 404326 is connected to the top of the anti-overflow float 325.
  • the axis of the anti-overflow spool 404326 may coincide with the axis of the anti-overflow float 325.
  • the annular sealing ring 329 is sleeved on the outer periphery of the overflow-proof floating ball 325.
  • the sealing ring 329 floats upward with the anti-overflow floating ball 325 and the annular flange 307.
  • the anti-overflow floating ball 325 sinks under the self-weight to make the sealing ring 329 disengage from the annular flange 307, thereby opening the first An interface 301.
  • the top end of the anti-overflow valve body 404326 is provided with a conical boss 327, and the anti-overflow valve core 404326 has a through slot 328 along the anti-overflow valve
  • the core 404326 extends in the longitudinal direction, and the anti-overflow valve core 404326 is divided into the first valve core 404 arm and the second valve core 404 arm which are arranged at intervals by the through groove 328, so that external air can be ensured to pass through the first interface 301,
  • the through groove 328 is in communication with the accommodating cavity, and at the same time, the anti-overflow valve body 404326 can be easily installed in the vent 315 for easy assembly and disassembly.
  • the side wall surface of the first interface 301 is provided with a detachment preventing edge 308, and the detachment preventing edge 308 may extend circumferentially along the sidewall of the first interface 301 and be formed into a ring shape to prevent overflow.
  • the tapered boss 327 at the top end of the spool 404326 cooperates with the retaining edge 308 to prevent the overflow-relief float 325 assembly from escaping from the vent 315 under its own weight, thereby failing to ensure fail-safe action.
  • the intake float 317 assembly 316 includes an intake float 317, a second connecting rod 318, and an intake spool 404319, and the intake float 317 is formed as The closed hollow structure, for example, as shown in FIG. 28, the intake air ball 317 may be formed substantially in a rectangular parallelepiped shape, and the second connecting rod 318 has one end connected to the air intake float 317 and the other end hinged to the housing 330, that is, The second connecting rod 318 can be pivoted about the second connecting rod 318 and the housing 330.
  • the intake valve core 404319 is connected to the second connecting rod 318, and the connection between the intake valve core 404319 and the second connecting rod 318 is offset from the rotation center (hinging point) of the second connecting rod 318, and the intake floating ball 317 is at The water level in the accommodating chamber is floated and sunk to close and open the second interface 302.
  • the water drinking apparatus has advantages such as simple structure, safety, and the like by utilizing the water tank 300 assembly of the water drinking apparatus according to the embodiment of the first aspect of the present disclosure.
  • the fourth interface 222 refers to the air inlet interface or the water outlet interface where the inner core 221 is in contact with the water bag, and does not refer to the connection interface between the inner core 221 and the second interface 302 .
  • the fourth interface 222 is higher than the fifth interface 224. It can be understood that the fourth interface 222 also has the function of injecting air into the water bag, and the fourth interface 222 is disposed higher than the fifth interface 224. When the water pressure is insufficient, the fourth interface 222 precedes the fifth interface 224. The critical value of insufficient pressure is reached, and the intake air is preferentially. Preferably, when the water bag is connected to the smart seat assembly 200, the fourth interface 222 is located in the water bag to facilitate intake. Certainly, the heights of the fourth interface 222 and the fifth interface 224 are not limited. For example, the fourth interface 222 and the fifth interface 224 may also be equal.
  • the fourth interface 222 and the fifth interface 224 are both disposed in the smart seat assembly.
  • the fourth interface 222 is lower than the fifth interface 224, for example, the fifth interface 224 is upwardly convex, and the fourth interface 222 is disposed on the bottom wall.
  • the water outlet 304 in the present application is adapted to be connected to a switch structure and can be configured to open only when water is needed. Therefore, under normal circumstances, the water tank 300 has only the first interface 301 to communicate with the outside air, while the other interfaces are not in communication with the atmosphere.
  • the water outlet 304 is opened, if the water level in the water tank 300 does not submerge the water outlet 304, the water outlet 304 is also connected to the outside air. Therefore, in the present disclosure, the water tank 300 only has the first interface 301 communicating with the outside air, and it should be generally that the water tank 300 has only the first interface 301 to communicate with the outside air.
  • the general case of the present disclosure does not include that the water storage container is not placed on the smart seat assembly 200; the water tank 300 is empty and the water outlet 304 is opened.
  • the watering device further includes a faucet 503 that is coupled to the water outlet 304 of the water tank 300.
  • a faucet 503 that is coupled to the water outlet 304 of the water tank 300.
  • the faucet 503 is tightened, the water outlet 304 does not drain outward, and the faucet 503 is unscrewed, and the water in the water tank 300 is discharged out through the water outlet 304.
  • the user can use the water container (such as a water cup, a kettle, etc.) to drink and drink directly. Normal temperature water or for other purposes.
  • the watering device further includes an on-off valve 508 that is coupled to the water outlet 304 of the water tank 300.
  • the on-off valve 508 is opened, the water outlet 304 is out of the water, the on-off valve 508 is closed, and the water outlet 304 is unable to discharge water.
  • the switch valve 508 can be connected to other devices, such as the heating container 509, the refrigerating container, the soda water making container, and the like.
  • the on-off valve 508 can also be the faucet 503, and the opening and closing valve 508 can be opened (that is, the faucet 503 is opened). Outgoing water.
  • the drinking water apparatus further includes a heating container 509 connected to the on-off valve 508.
  • the opening and closing valve 508 is opened, and the water in the water tank 300 flows from the water outlet 304 to the heating container 509, and the water is heated by the heating container 509, so that the user can drink the hot water.
  • the upper door body 601 assembly 600 of the water drinking apparatus includes a housing 330, an upper door body 601, and a lock member 604.
  • the upper door body 601 is pivotally connected to the housing 330.
  • the housing 330 is formed with a water receiving tank.
  • the water outlet valve 502 can be connected to the water outlet of the drinking water device.
  • the user can open or close the upper door body 601 as needed.
  • the water cup or the kettle can be placed under the water outlet valve 502 of the water receiving tank to access drinking water, such as hot water or cold water.
  • the upper door body 601 is provided with a sliding slot 602.
  • the locking member 604 is slidably disposed in the sliding slot 602 and cooperates with the sliding slot 602 to be in a locked state (as shown in FIG. 39 and FIG. 45) and an unlocked state (as shown in FIG. Switching between 40 and 46), for example, when the locking member 604 is in the position shown in FIG.
  • the upper door body 601 is locked on the housing 330, thereby The upper door body 601 is used to close the water receiving tank in the housing 330, thereby improving the safety of the user using the drinking water device, for example, avoiding accidental opening of the hot water outlet valve 502 by a child or the like, thereby posing a safety hazard;
  • the locking member 604 When the locking member 604 is in the position shown in FIG. 40, the locking member 604 is in the unlocked state, so that the user can open the upper door body 601 to facilitate water collection.
  • the upper door body 601 is provided with a card slot 210, and the card slot 210 is in communication with the sliding slot 602.
  • the card slot 210 and the sliding slot 602 can be integrally formed when the locking member 604 slides into the card slot 210 (as shown in FIG. 41 and 47, the locking member 604 is maintained in the unlocked state, in other words, the locking member 604 is in the unlocked state at this time, whereby the user can select the locked state, the unlocked state, and the unlocked state according to actual needs, thereby Improve user convenience.
  • the lock member 604 can be switched between the locked state and the unlocked state.
  • the safety of the drinking water device is improved.
  • the upper door body 601 can be kept in the unlocked state, so that the user can select the locked state, the unlocked state, and the unlocked state according to actual needs, thereby improving The convenience of the user when using the drinking device.
  • the length direction of the chute 602 is perpendicular to the length direction of the card slot 210, such that when the locking member 604 is in the chute 602. When the card slot 210 slides, the smoothness of the locking member 604 with the sliding slot 602 and the card slot 210 can be ensured.
  • the locking member 604 includes a locking seat 605, a locking head 607, a lever 610, and an elastic member 613.
  • the locking seat 605 is disposed on the upper door body 601, for example, In the example shown in FIG. 33, the lock seat 605 may be disposed at an upper portion of the upper door body 601, the lock base 605 is provided with a guide groove 606, the lock head 607 is movably disposed in the guide groove 606, and the lock head 607 is provided with a shift lever The slot 608, the lever 610 is movably disposed within the lever slot 608 and slidably engages the slot 602.
  • the longitudinal direction of the guiding groove 606 is parallel to the longitudinal direction of the sliding slot 602, and the longitudinal direction of the lever groove 608 is parallel to the longitudinal direction of the slot 210. That is, the guiding slot 606 is arranged in parallel with the sliding slot 602, and the lever slot is arranged. 608 is arranged in parallel with the card slot 210.
  • the guide groove 606 may extend in the width direction of the upper door body 601, and the lever groove 608 extends in the thickness direction of the upper door body 601 when the lock member 604 is in the lock. In the stop state (as shown in FIGS.
  • the lock head 607 is hooked on the housing 330 such that the lock between the upper door body 601 and the housing 330 is locked, such as when the lock member 604 is in the unlocked state (eg, 40 and 46), the lock head 607 is disengaged from the housing 330 so that the upper door body 601 can be opened.
  • the elastic member 613 is disposed between the lock 607 and the lock seat 605, so that the lock head 607 is engaged with the housing 330 under the elastic force of the elastic member 613, so that the lock member 604 is held in the locked state.
  • the lever 610 slides into the card slot 210 (as shown in FIG. 41 and FIG. 46)
  • the lever 610 is restricted by the edge of the card slot 210, so that the service member elastic member 613
  • the elastic force causes the locking member 604 to be maintained in the unlocked state, that is, at this time, the locking member 604 is in the unlocked state, thereby facilitating the user to open the upper door body 601 at any time.
  • the lock head 607 is provided with a lock hook 609
  • the housing 330 is provided with a card board 116 when the lock member 604 is in the locked state (eg, As shown in FIG. 45, the locking hook 609 is hooked and engaged with the card board 116, so that the upper door body 601 is locked on the housing 330, thereby reducing the safety hazard, and when the locking member 604 is in the unlocked state (as shown in FIG. 46).
  • the lock hook 609 is disengaged from the card board 116. At this time, the user can open the upper door body 601 to realize water receiving operation and the like.
  • the lever 610 includes a slider 612 and a lever head 611 that is disposed within the lever slot 608 and that moves within the lever slot 608.
  • the upper end of the slider 612 sequentially protrudes from the lever groove 608 and the sliding slot 602.
  • the end of the protruding sliding slot 602 of the slider 612 is provided with a shifting head 611, so that the assembly of the locking member 604 can be facilitated and the user is convenient.
  • the lever 610 is operated to switch the locked state and the unlocked state.
  • the lock base 605 is provided with a first support portion 614 and a second support portion 616, which are respectively located on both sides of the guide groove 606, that is, The guiding groove 606 is formed between the first supporting portion 614 and the second supporting portion 616.
  • One end of the elastic member 613 stops against the inner side wall of the first supporting portion 614, and the other end stops against the side wall of the locking head 607.
  • the first support portion 614 has a first cavity and the second support portion 616 has a second cavity to reduce the weight of the locking member 604, the first cavity A first bolt sleeve 615 is disposed therein, and a second bolt sleeve 617 is disposed in the second cavity.
  • the lock seat 605 is matched with the first bolt sleeve 615 and the second bolt and the second bolt sleeve 617 by the first bolt. Therefore, the locking member 604 can be installed on the upper door body 601, and the connection stability can be ensured.
  • the lever groove 608 is formed as a T-shaped groove, and the bottom end of the slider 612 is provided with a boss, and the boss and the lever groove 608 are shaped and sized, for example, as shown in FIG.
  • the lever groove 608 is formed as an inverted T-shaped groove, and the longitudinal section of the slider 612 is formed into a positive T shape.
  • the lever groove 608 can be used to cooperate with the slider 612 to ensure that the slider 612 can be set.
  • the slider 612 can be freely slid in the longitudinal direction of the lever groove 608, so that the lever 610 is engaged with the slot 210.
  • the chute 602 and the card slot 210 may be formed as an integral groove, and the cross section of the integral groove may be formed in an L shape (as exemplified in FIG. 33) or may be formed in a T shape.
  • a water drinking apparatus comprising an upper door body 601 assembly 600 of a water drinking apparatus according to an embodiment of the first aspect of the present disclosure.
  • the drinking water apparatus has advantages such as simple structure, convenient use, safety, and the like by utilizing the upper door body 601 assembly 600 of the water drinking apparatus according to the embodiment of the first aspect of the present disclosure.
  • the door body assembly 600 further includes a lower door body 619.
  • the water inlet tank 101 is disposed on the body 100, and the upper and lower chambers are disposed in the body 100 at intervals.
  • the upper upper door body 601 is mounted on the body 100, and the upper upper door body 601 may be pivotally mounted on the body 100, and the upper chamber is opened or closed with the pivoting of the upper upper door body 601.
  • the lower door body 619 is installed at a position corresponding to the lower door body 619 of the body 100.
  • the lower door body 619 may be pivotally mounted on the body 100 to open or close the lower chamber with the rotation of the lower door body 619.
  • the upper upper door body 601 and the lower door body 619 are disposed above and below, that is, the lower door body 619 may be disposed directly below the lower door body 619.
  • the first door locking mechanism 620 is provided with a first locking mechanism 620.
  • the first locking mechanism 620 can be moved between the first position and the second position.
  • the body 100 can be provided with a card slot 210 or a card hole.
  • the first locking mechanism 620 can be snapped into the card slot 210 or the card hole, and the lower door body 619 is locked and closes the lower cavity.
  • the first locking mechanism 620 is in the second position, the first locking mechanism 620 is disengaged from the card slot 210 or the card hole, the first locking mechanism 620 is unlocked, and the lower door body 619 is pivotable to open the lower cavity.
  • the door body assembly 600 for a drinking water apparatus of the present disclosure by providing the first lock mechanism 620 on the lower door body 619, the spare water tank 300 or the water bag of the water drinking device is prevented from being in the lower chamber, preventing the lower chamber from opening. It can not only prevent the lower chamber from opening automatically, causing the backup water to receive pollution, but also prevent the child from opening the lower chamber to the reserve water to inject or inject pollutants or unhygienic items, which is beneficial to improve the safety of the standby water and ensure the user's drinking water is clean. health.
  • the body 100 is provided with a positioning groove 603117, and the first locking mechanism 620 has a hook 621 engaged with the positioning groove 603117, specifically, the first locking The mechanism 620 has a hook 621.
  • the body 100 is formed with a positioning slot 603117 corresponding to the position of the hook 621.
  • the hook 621 cooperates with the positioning slot 603117.
  • the hook 621 and the positioning groove 603117 have a simple structure, are easy to operate, are easy to manufacture, and have low production cost.
  • the snap fit of the hook 621 and the positioning slot 603117, the process of the snapping process or the disengagement is convenient, not only can facilitate the locking or unlocking of the lower door body 619, but also the lower door body 619 can be
  • the card 100 is stable in connection.
  • the positioning groove 603117 extends in the up and down direction of the body 100, and the first locking mechanism 620 is provided with the top of the lower door body 619. That is, the front side of the positioning slot 603117 can be provided with a limiting block 118108.
  • the snap of the first locking mechanism 620 is engaged in the positioning slot 603117, at least a portion of the hook 621 is defined behind the limiting block 118108.
  • the first locking mechanism 620 is thereby snapped into the fixing groove.
  • the hook 621 is disengaged from the limiting function of the limiting block 118108.
  • the first locking mechanism 620 is disposed at the top of the lower door body 619, and the positioning slot 603117 can be disposed at a position corresponding to the first locking mechanism 620 of the body 100, and the first locking mechanism 620 can be engaged in the positioning slot 603117. It is convenient to provide the lifting stability of the first locking mechanism 620 and the positioning groove 603117.
  • the first lock mechanism 620 in a case where the first lock mechanism 620 is in the locked state, the first lock mechanism 620 is covered by the upper upper door body 601. Specifically, the upper upper door body 601 is located directly above the lower door body 619, the first locking mechanism 620 is located at the top of the lower door body 619, the lower door body 619 is closed on the upper cavity and the lower door body 619 is closed in the lower cavity. In the upper case, the bottom wall of the upper upper door body 601 coincides with the top of the lower door body 619, and the first locking mechanism 620 is covered at the bottom of the upper upper door body 601.
  • the position of the lower door body 619 is low, the child can easily touch or activate the first locking mechanism 620, and the upper locking body 601 covers the first locking mechanism 620, so that the child can be prevented from opening the lower door when the upper upper door body 601 is closed. 619.
  • the position of the upper upper door body 601 is relatively high, and it is generally difficult for a child to open the upper upper door body 601, thereby further preventing the child from opening the lower door body 619 to damage the spare water in the lower chamber.
  • the upper upper door body 601 is provided with a locking member 604, and the position of the body 100 corresponding to the locking member 604 can be disposed in the second positioning groove 603117, and the locking member 604 is locked.
  • the locking member 604 is locked in the second positioning groove 603117, and the upper upper door body 601 is locked on the body 100 to close the upper cavity.
  • the locking member 604 is in the unlocked state, the locking member 604 is disengaged from the defining function of the second positioning groove 603117, and the upper upper door body 601 is pivotable and allows the upper cavity to be opened.
  • the upper chamber is provided with a hot water outlet 304 and a cold water outlet 304.
  • a locking member 604 on the upper upper door 601 the child is prevented from opening the upper upper door 601 by hot water, thereby protecting the child from heat. Water damage.
  • the lock member 604 is located at the top of the upper upper door body 601.
  • the adult or younger child has a higher height
  • the locking member 604 is disposed at the top of the upper upper door body 601 to facilitate the user to control the locking member 604 to open or close the upper chamber.
  • the height of the child is generally low
  • the locking member 604 is disposed at the top of the upper upper door body 601 to prevent the child from opening the upper door body 601 privately, thereby preventing the child from being burnt by hot water.
  • the first locking mechanism 620 includes a bracket 622, a button assembly 624, and a return spring 627.
  • the bracket 622 is mounted on the lower door body 619.
  • the bracket 622 defines a guiding slot 102 therein.
  • the button assembly 624 slides in the guiding slot 102.
  • the return spring 627 is disposed between the mounting bracket 622 and the button assembly 624, and the user can press Button assembly 624, after the user's pressure is released, return spring 627 pushes button assembly 624 to reset.
  • the button assembly 624 includes a body 625 and a guide rod 626 disposed at the bottom of the body 625, and the guide rod 626 cooperates with the guide groove 102 to restrict movement of the button assembly 624 relative to the bracket 622.
  • One end of the return spring 627 abuts against the bottom surface of the button assembly 624, and the other end abuts against the top surface of the bracket 622.
  • the first locking mechanism 620 of the above structure has a simple structure and is easy to manufacture, and the button assembly 624 and the positioning groove 603117 are conveniently matched, thereby improving the stability of the first locking mechanism 620 and the positioning groove 603117, and reducing the stability.
  • the production cost of the first lock mechanism 620 has a simple structure and is easy to manufacture, and the button assembly 624 and the positioning groove 603117 are conveniently matched, thereby improving the stability of the first locking mechanism 620 and the positioning groove 603117, and reducing the stability. The production cost of the first lock mechanism 620.
  • the rear side of the body 625 is provided with a fixing plate extending from the front to the rear, and the hook 621 is disposed on the fixing plate and extends upward beyond the upper surface of the button. That is, the hook 621 is coupled to the body 625 by a fixing plate, and the hook 621 extends upward in the axial direction of the body 625, and the upper surface of the hook 621 is higher than the upper surface of the button body 625.
  • the height of the upper surface of the hook 621 is higher than the height of the upper surface of the body 625, so that the locking stability of the hook 621 and the fixing groove can be ensured, and the hook 621 can be prevented from being detached from the fixing groove due to the excessive length of the hook 621.
  • the upper surface of the hook 621 extends obliquely upward and rearward. That is, the front side of the upper surface of the hook 621 is higher, the rear side is lower, and the upper surface of the hook 621 is formed as a slope which is inclined downward toward the rear side.
  • the upper surface of the hook 621 is disposed as a beveled surface, and the inclined surface can be engaged with the bottom edge of the upper upper door body 601 to guide the hook 621 to slide into the fixing slot, which can facilitate the hooking of the hook 621 to the positioning slot 603117. Moreover, the front side of the upper surface of the hook 621 is higher, and the stability of the hook 621 and the fixed slot can be improved.
  • the lower door body 619 includes a front plate 628, a left side plate 629, a right side plate 630, a top plate 631, and a bottom plate 634, the front side of the left side plate 629
  • the right side of the plate 628 is connected
  • the front side of the right side plate 630 is connected to the left side of the front plate 628
  • the front side of the top plate 631 is connected to the upper side of the front plate 628
  • the front side of the bottom plate 634 is along the front side.
  • the lower side of the plate 628 is connected.
  • the first locking mechanism 620 can be disposed under the top plate 631.
  • the top plate 631 of the lower door body 619 can be provided with a first matching hole 703632 and a second matching hole 703633.
  • the body 625 of the button assembly 624 passes through the first matching.
  • the hole 703632, the hook 621 passes through the second matching hole 703633, and the user controls the hook 621 to move up and down by pressing the body 625, thereby achieving the engagement or disengagement of the first locking mechanism 620 and the positioning groove 603117.
  • the left and right sides of the bracket 622 are respectively provided with lugs 623, and the lugs 623 are provided with mounting holes, and the front plate 628 is provided with a threaded hole corresponding to the mounting hole, and the screw is worn.
  • the mounting hole is fixed in the threaded hole to mount the bracket 622 on the lower door body 619.
  • the provision of the lug 623 on the bracket 622 not only facilitates the mounting of the bracket 622, but also improves the mounting stability of the bracket 622 and prevents the bracket 622 from falling off the lower door body 619.
  • the water-repellent device in the related art uses a disposable soft water bag or a hard water bucket, especially a soft water bag which is exposed to the air, and is easy for both adults and children to be exposed. The child may be curious or otherwise psychologically Injecting or placing unidentified liquid into the water bag, it is easy to put unidentified liquid into the drinking water device when the adult is comfortable, which has certain safety hazards.
  • the present disclosure proposes a drinking water apparatus, and a water drinking apparatus according to an embodiment of the present disclosure will be described below with reference to the drawings to the drawings.
  • the drinking water apparatus further includes a cover body 700.
  • the body 100 is provided with a water inlet tank 101 for placing a water storage container.
  • the cover body 700 is openably covered on the body 100, and the cover body 700 covers the water inlet tank 101 when the cover body 100 is covered on the body 100.
  • the first positioning structure 119 is disposed on one of the body 100 and the cover body 700 and the other
  • a second positioning structure 701 is provided thereon, and the first positioning structure 119 and the second positioning structure 701 are configured to be locked by the lock 705 to lock the cover 700 to the body 100.
  • the soft water bag is soft and easy to be injected with an unidentified liquid
  • the soft water bag is taken as a soft water bag as an example, and the soft water bag has a connection structure with the water inlet 101, and the soft water bag passes through the connection structure.
  • the water tank 101 is fitted to the upper side of the body 100, and the soft water bag can replenish water into the body 100.
  • the cover body 700 covers the water inlet 101. In other words, the cover body 700 can cover the soft water bag and be separated from the outside air, so that the cover body 700 must be opened when it is required to contact the soft water bag, thereby increasing the user. The safety of drinking water.
  • the cover 700 is re-locked with the lock 705. It is locked on the body 100.
  • the cover body 700 may be provided with the first positioning structure 119, the second positioning structure 701 may be disposed on the body 100, or the first positioning structure 119 may be disposed on the body 100, and the second positioning structure may be disposed on the cover body 700. 701.
  • the second positioning structure 701 on the cover 700 cooperates with the first positioning structure 119 on the body 100, and the cover 700 can be used to lock the cover 700 on the body 100, and the cover 700 will store the water storage container and The outside is separated. In this way, neither the child nor the adult can easily access the water storage container, and it is impossible to put an unidentified liquid into the water storage container, thereby preventing the danger.
  • the water storage container is covered by the cover 700, and the cover 700 is locked to the body 100 using the lock 705, and the drinking water is not easily accessible to others, which is safer.
  • first positioning structure 119 or the second positioning structure 701 may be located on the side of the cover 700.
  • first positioning structure 119 or the second positioning structure 701 may also be located on the flange. .
  • the first positioning structure 119 includes a positioning hook 120
  • the second positioning structure 701 includes a positioning hole 702.
  • the positioning hook 120 is adapted to connect the lock 705 and lock the cover 700 by the lock 705.
  • the positioning hole 702 extends through the side wall of the cover body 700. That is, when the cover body 700 is covered on the body 100, the cover body 700 is locked by the positioning hook 120, the positioning hole 702 and the lock 705 to lock the cover body 700 to the body 100. on.
  • the positioning hook 120 can completely pass through the positioning hole 702.
  • the lock 705 passes through the positioning hook 120 but does not need to pass through the positioning hole 702 to lock the cover 700 to the body 100; the positioning hook 120 can also be partially worn.
  • the positioning hole 702 is taken out.
  • the lock 705 passes through the positioning hole 702 and passes through the positioning hook 120 to lock the cover 700 to the body 100.
  • the positioning hook 120 can also be completely located inside the cover 700.
  • the lock 705 After passing through the positioning hole 702 opposite to the positioning hook 120, it extends into the inside of the cover body 700, and then passes through the positioning hook 120 to lock the cover body 700 to the body 100.
  • the first positioning structure 119 includes a positioning hole 702
  • the second positioning structure 701 includes a positioning hook 120.
  • the positioning hole 702 can be completely closed or partially closed between the body 100.
  • the positioning hole 702 can be completely between the cover body 700. Closed or partially closed.
  • the second positioning structure 701 is not limited to the positioning hole 702.
  • the second positioning structure 701 may also include the positioning hook 120.
  • the lock 705 when the lock 705 locks the first positioning hook 120, the lock 705 is hooked by the second positioning hook 120; or the lock 705 locks the second positioning hook 120, the lock 705 is hooked by the first positioning hook 120; the lock 705 is also The lock 705 can be simultaneously hooked by the two positioning hooks 120 when the one of the first positioning hook 120 and the second positioning hook 120 is locked, and the lock 705 can simultaneously lock the first positioning hook 120 and the second positioning hook 120.
  • the lock 705 is hooked by one of the positioning hooks 120; or the lock 705 can simultaneously lock the first positioning hook 120 and the second positioning hook 120 when the lock 705 is simultaneously hooked by the two positioning hooks 120.
  • the first positioning structure 119 is disposed on the body 100, and the second positioning structure 701 is disposed on the cover body 700.
  • the first positioning structure 119 further includes a screw 121 and a screw 121.
  • the first nut 122 and the second nut 123 are spaced apart from each other.
  • the first nut 122 and the second nut 123 cooperate to lock the wall of the body 100.
  • the positioning hook 120 is connected to the screw 121, and the positioning hook 120 extends out of the body.
  • the outer surface of the 100 is such that the positioning hook 120 is opposed to the positioning hole 702 when the cover 700 is over the body 100.
  • the screw 121 extends through the top wall of the body 100, and the first nut 122 and the second nut 123 are used to fix the screw 121 to the top wall of the body 100, the positioning hook 120 is connected to the upper end of the screw 121, and the positioning hook 120 extends out of the body.
  • the outer surface of the top wall of the 100 is such that the positioning hook 120 can cooperate with the opposite positioning hole 702 on the cover 700 to facilitate the lock 705 to lock the cover 700.
  • the first positioning structure 119 is disposed on the body 100
  • the second positioning structure 701 is disposed on the cover body 700
  • the axis of the positioning hook 120 and the positioning hole 702 are The axis is vertical.
  • the axis of the positioning hook 120 extends in the left-right direction
  • the axis of the positioning hole 702 extends in the front-rear direction, so that the first positioning hook 120 can easily pass through the first positioning hole 702.
  • the opening end edge of the cover body 700 is provided with a matching hole 703, and the matching hole 703 is in communication with the positioning hole 702.
  • the positioning hook 120 extends into the matching hole 703 and The positioning holes 702 are opposite.
  • the matching hole 703 has an elongated shape in the up-and-down direction
  • the positioning hole 702 has an elongated shape in the left-right direction.
  • a part of the lock 705 can pass through the positioning hole 702, and the width of the matching hole 703 and the positioning hole 702 is not enough.
  • the body portion of the lock 705 passes through.
  • a portion of the positioning hook 120 projects into the vertical fitting hole 703
  • a portion of the lock 705 passes through the lateral positioning hole 702 and passes through the positioning hook 120, thereby locking the cover 700 to the body 100.
  • the open end of the cover 700 has opposite first and second open sides, the first open side of the cover 700 is rotatably coupled to the body 100, and the second open side of the cover 700 A second positioning structure 701 is provided.
  • the lock 705 on the second opening side is opened, and the second opening side is rotatable around the first opening side.
  • the user bypasses
  • the first opening side is rotated from the opposite direction, the second opening side is locked by the lock 705, and the entire cover body 700 does not need to be removed, which facilitates the replacement of the water storage container.
  • the first open side of the cover 700 is detachably coupled to the body 100. That is to say, the cover body 700 is integrally detachably connected to the body 100, and is relatively simple when it is necessary to clean the whole machine or separately clean the cover body 700.
  • the first opening side of the cover body 700 is provided with a first hook 704 extending outwardly of the cover body 700, and the body 100 is provided with an extension toward the water inlet 101.
  • the second hook 124 has a gap between the second hook 124 and the outer surface of the body 100.
  • the first hook 704 is adapted to extend into the inner side of the second hook 124 and engage with the second hook 124 and first
  • the hook portion of the hook 704 is disposed opposite to the hook portion of the second hook 124.
  • the first opening side is snap-connected to the body 100, so that it is convenient to disassemble.
  • the water inlet 101 is formed on the top surface of the body 100, and the top surface of the body 100 is provided with a notch groove surrounding the water inlet 101.
  • the cover 700 is covered on the body 100, the cover 700 is covered.
  • An opening circumference is located in the notch groove.
  • the notch groove is for accommodating the opening circumference of the cover body 700, and functions as a preliminary positioning, so that the cooperation between the first positioning portion and the second positioning portion is simplified.
  • the top of the body 100 is provided with a smart seat assembly 200, and the upper end of the smart seat assembly 200 is open to form a water inlet 101, and the cover 700 is openably covered on the top surface of the body 100.
  • the water storage container is installed in the water inlet 101 and supported by the smart seat assembly 200. When the cover 700 is covered on the top surface of the body 100, the water storage container is isolated from the outside, which improves the drinking water safety.

Abstract

本公开涉及一种饮水设备(S)。包括:机体(100)和聪明座(200),所述机体(100)内限定有上侧敞开的进水槽(101),所述进水槽(101)的内周壁设有导向槽(102),所述聪明座(200)设在所述进水槽(101)内,所述聪明座(200)对应所述导向槽(102)的位置设有导向筋(201)。

Description

饮水设备
相关申请的交叉引用
本公开基于申请号为201820250131.9、201820250092.2、201810140205.8、201820249342.0、201820250634.6、201810141246.9、201820250639.9、201820249341.6、201810141589.5、201820249929.1、201810141572.X、201820251292.X、201820250940.X、201820250782.8和201820250636.5,申请日为2018年2月11日的中国专利申请提出,并要求该中国专利申请的优先权,该中国专利申请的全部内容在此引入本公开作为参考。
技术领域
本公开属于家用电器技术领域,具体地,设计一种饮水设备。
背景技术
相关技术中的饮水设备,聪明座与机体的拆卸过程较为复杂,且难度较大,不利于饮水设备的清洗和维护。
发明内容
本公开旨在至少解决现有技术中存在的技术问题之一。
为此,本公开提出一种饮水设备,所述饮水设备的聪明座拆装过程较为简单,方便清洗。
根据本公开的饮水设备,包括:机体和聪明座,所述机体内限定有上侧敞开的进水槽,所述进水槽的内周壁设有导向槽,所述导向槽沿所述进水槽的周向延伸并绕所述进水槽的中心轴线螺旋上升,所述机体设有与所述导向槽连通的拆装口,所述聪明座设在所述进水槽内,所述聪明座对应所述导向槽的位置设有导向筋,所述导向筋可滑动地配合在所述导向槽内且通过所述拆装口进出所述导向槽。
根据本公开的饮水设备,通过在进水槽内设置导向槽,利用导向槽和导向筋的配合可以为聪明座的拆卸提供方便,不仅可以简化聪明座的拆装难度,还能为用户清理聪明座提供方便,有利于保持饮水设备的环境卫生。
根据本公开的一个实施例,所述拆装口位于所述导向槽的顶端且贯通所述机体的上表面。
根据本公开的一个实施例,所述导向槽的上壁的一部分敞开以形成所述拆装口。
根据本公开的一个实施例,所述导向槽包括:滑动段和限位段,所述滑动段的上壁敞开以形成所述拆装口,所述限位段的上端与所述滑动段的下端连通。
根据本公开的一个实施例,所述限位段的上壁与下壁平行布置,所述限位段的上壁与下壁之间的距离大于或等于所述导向筋的厚度。
根据本公开的一个实施例,所述机体上设有锁定标识和解锁标识,所述聪明座组件上设有指示标识,所述导向筋位于所述导向槽的最底部时所述指示标识指向所述锁定标识,所述导向筋位于所述导向槽的最顶部时所述指示标识指向所述解锁标识。
根据本公开的一个实施例,所述聪明座组件的外周面设有凸块,所述导向筋设于所述凸块。
根据本公开的一个实施例,所述导向槽包括第一导向槽和第二导向槽,所述第一导向槽和所述第二导向槽相对于所述进水槽的中心轴线呈中心对称分布,所述拆装口包括与所述第一导向槽连通的第一拆装口和与所述第二导向槽连通的第二拆装口;所述导向筋包括第一导向筋和第二导向筋,所述第一导向筋和所述第二导向筋相对于所述聪明座组件的中心轴线呈中心对称分布,所述第一导向筋可滑动地配合在所述第一导向槽内且通过所述第一拆装口进出所述第一导向槽,所述第二导向筋可滑动地配合在所述第二导向槽内且通过所述第二拆装口进出所述第二导向槽。
根据本公开的一个实施例,所述第一导向筋、所述第二导向筋和所述聪明座组件一体成型。
根据本公开的一个实施例,所述聪明座组件包括:聪明座、导通管和聪明柱,所述聪明座内限定有向上敞开的进水腔,所述导通管连接在所述进水腔内,所述导通管上设有连通所述进水腔的第一通孔和第二通孔,所述导通管的下端敞开,所述导通管的侧壁上设有卡槽,所述聪明柱插接在所述导通管内且所述聪明柱与所述导通管之间限定出水流通道,所述聪明柱内限定有流体通道,所述第一通孔连通所述流体通道,所述第二通孔连通所述水流通道,所述聪明柱的侧壁上设有适于卡合在所述卡槽内的固定扣。
根据本公开的一个实施例,聪明柱包括:柱本体和至少一个固定扣,所述柱本体内限定出所述流体通道,所述固定扣的一端设于所述柱本体的外周壁,所述固定扣的另一端在所述固定扣的弹力下沿所述柱本体的径向远离所述柱本体。
根据本公开的一个实施例,所述固定扣包括:连接段和卡接段,所述连接段的一端连接于柱本体的外周壁,所述连接段的另一端沿所述柱本体的轴向向下并沿所述柱本体的径 向向外倾斜,所述卡接段与所述连接段的所述另一端相连并沿所述柱本体的径向向外延伸。
根据本公开的一个实施例,还包括:至少一个定位筋,所述定位筋设在所述柱本体的外周壁上,所述定位筋与所述柱本体的外周壁配合限定出水流通道。
根据本公开的一个实施例,所述定位筋沿所述柱本体的轴向延伸。
根据本公开的一个实施例,所述定位筋为多个,多个所述定位筋沿所述柱本体的周向间隔开设置,所述固定扣为多个,每个所述固定扣与一个所述定位筋相连。
根据本公开的一个实施例,所述定位筋为四个,四个所述定位筋沿所述柱本体的周向等间隔布置,所述固定扣为两个且在所述柱本体的径向上相对设置。
根据本公开的一个实施例,所述定位筋的上端与所述柱本体的上端之间的距离大于所述定位筋的下端与所述柱本体的下端之间的距离,所述固定扣与所述定位筋的下端相连。
根据本公开的一个实施例,所述柱本体的一端设有连接座,所述连接座上形成有连通所述流体通道的流体过孔。
根据本公开的一个实施例,所述连接座包括:顶盖和侧翼板,所述顶盖封盖在所述柱本体的上端,所述侧翼板从所述顶盖向下延伸且构造成与所述柱本体的外周壁形状适配的弧形,所述流体过孔设于所述侧翼板。
根据本公开的一个实施例,所述导通管包括:导通本体和连接耳,所述导通本体与所述聪明座相连并贯穿所述进水腔的底壁,且所述导通本体的下端敞开,所述连接耳连接在所述导通本体的下端并沿所述导通本体的轴向向下凸出,所述卡槽设在所述连接耳上。
根据本公开的一个实施例,所述卡槽沿所述连接耳的厚度方向贯穿所述连接耳。
根据本公开的一个实施例,所述柱本体的一端设有连接座,所述连接座上形成有连通所述流体通道的流体过孔。
根据本公开的一个实施例,所述连接座位于柱本体的顶部且所述流体过孔位于所述柱本体的侧部。
根据本公开的一个实施例,还包括:第一水箱,所述进水槽具有第一进出口和第一进水口,所述第一进出口连通所述流体通道,所述第一进水口连通所述水流通道,所述第一水箱与所述聪明座在水平方向上间隔设置,所述第一水箱具有与所述流体通道连通的第二进出口和与所述水流通道连通的第二进水口,所述第二进出口位于所述第二进水口上方。
根据本公开的一个实施例,所述第一进出口与所述第二进出口位于同一水平面内,或,所述第一进出口位于所述第二进出口下方。
根据本公开的一个实施例,所述第二进出口位于所述水箱的顶部且所述第二进水口位于所述水箱的底部。
根据本公开的一个实施例,所述导通管的顶端设有沿所述导通管的径向向外延伸的止 挡沿,所述聪明头的内壁面设有止挡台,所述止挡沿止挡于所述止挡台。
根据本公开的一个实施例,所述导通管的外周面设有密封沿,所述密封沿紧贴于所述聪明头的内壁面且具有连通所述第二通口和所述进出通道的连通孔。
根据本公开的一个实施例,所述导通管的底端设有止挡钩,所述聪明头的内壁面设有止挡槽,所述止挡钩钩挂在所述止挡槽内。
根据本公开的一个实施例,所述导通管的外周面设有沿其周向间隔设置的多个定位导流筋,所述定位导流筋位于所述水流通道内且由所述导通管的外周面延伸至所述聪明头的内壁面。
根据本公开的一个实施例,还包括:进气阀芯和进气浮球,所述进气阀芯设于所述水箱且在所述第二进出口内可移动,所述进气浮球可浮动地设在所述水箱内且与所述进气阀芯相连,所述进气浮球浮动时带动所述进气阀芯移动以打开和关闭所述第二进出口。
根据本公开的一个实施例,还包括:进水阀芯和进水浮球,所述进水阀芯设于所述水箱且在所述第二进水口内可移动,所述进水浮球可浮动地设在所述水箱内且与所述进水阀芯相连,所述进水浮球浮动时带动所述进水阀芯移动以打开和关闭所述第二进出口。
根据本公开的一个实施例,所述水箱设有与外界连通的通气口,所述饮水设备还包括:防溢阀芯和防溢流浮球,所述防溢阀芯设于所述水箱且在所述通气口内可移动,所述防溢流浮球可浮动地设在所述水箱内且与所述防溢阀芯相连,所述防溢流浮球浮动时带动所述防溢阀芯移动以打开和关闭所述通气口。
根据本公开的一个实施例,还包括:第二水箱,所述第二水箱设在所述机体内,所述第二水箱具有第一接口、第二接口、第三接口和出水口,所述第一接口和所述第二接口均设在所述第二水箱上部,所述第一接口适于连通外部空间,所述聪明座组件的顶部敞开,所述聪明座组件的顶部周沿与所述进水槽的内周沿密封配合,所述聪明座组件具有第四接口和第五接口,所述第五接口设于所述聪明座组件的底部并且不低于所述第三接口,所述第四接口与所述第二接口之间通过进气管相连,所述第五接口与所述第三接口之间通过出水管相连,所述进气管与所述出水管之间设有连通管。
根据本公开的一个实施例,还包括:开关组件,所述开关组件包括水位检测件和开关件,所述水位检测件设于所述第二水箱内以检测所述第二水箱内的水位,所述开关件与所述第二接口和所述第三接口相连以在所述第二水箱内的水位不低于预定值时关闭所述第二接口和所述第三接口。
根据本公开的一个实施例,所述第三接口在竖直方向上的高度低于所述第二接口和所述第一接口中每一个在竖直方向上的高度。
根据本公开的一个实施例,所述第一接口和所述第二接口均设于所述第二水箱的顶 壁,且所述第三接口设于所述第二水箱的下部。
根据本公开的一个实施例,所述水位检测件为可上下浮动地设于所述第二水箱内的浮球,所述开关件包括:转动轴和阀芯,所述转动轴的一端可转动地与所述第二水箱相连,且所述转动轴的另一端与所述浮球相连,所述阀芯与所述转动轴相连并与所述转动轴的旋转中心错开,所述阀芯适于打开和关闭所述第二接口和所述第三接口。
根据本公开的一个实施例,所述开关件为与所述第二接口和所述第三接口一一对应的两个,两个所述开关件连接同一个水位检测件;或所述开关组件为与所述第二接口和所述第三接口一一对应的两个,每个所述开关组件均包括所述水位检测件和所述开关件。
根据本公开的一个实施例,所述第二水箱的内壁面上设有分别与所述第二接口和第三接口连通的两个容置槽,所述阀芯可移动地设于对应的所述容置槽内。
根据本公开的一个实施例,所述阀芯上设有阀芯密封垫。
根据本公开的一个实施例,其特征在于,还包括:防溢流浮球组件,所述防溢流浮球组件设于所述第二水箱内,所述防溢流浮球组件随所述第二水箱内水位浮动以打开和封闭所述第一接口。
根据本公开的一个实施例,当所述第一接口处于封闭状态时所述防溢流浮球组件的下端高于当所述第二接口、所述第三接口处于封闭状态时所述水位检测件的下端。
根据本公开的一个实施例,所述机体设有通气槽,所述第一接口设于所述通气槽内,所述通气槽下边缘形成环形凸缘,所述防溢流浮球组件包括:防溢流浮球、防溢流阀芯和环状密封圈,所述防溢流浮球形成为密闭的中空结构,所述防溢流阀芯连接于所述防溢流浮球的顶端,所述密封圈套设于所述防溢流浮球的外周缘,且所述密封圈在所述防溢流浮球带动下浮动以与所述环形凸缘配合。
根据本公开的一个实施例,所述防溢流阀芯顶端设有锥形凸台,且所述防溢流阀芯具有沿防溢流阀芯长度方向延伸的贯通槽。
根据本公开的一个实施例,所述第一接口的侧壁面设有适于制成所述锥形凸台的防脱沿。
根据本公开的一个实施例,所述水箱包括:壳体、进水浮球组件、进气浮球组件和防溢流浮球组件,所述壳体限定出容纳腔,所述壳体设有第二接口、第三接口以及与大气连通的第一接口,所述第二接口和所述第一接口在竖直方向上的高度均高于所述第三接口在竖直方向上的高度,所述进水浮球组件设于所述容纳腔,所述进水浮球组件随所述容纳腔内水位浮动而打开和封闭所述第三接口,所述进气浮球组件设于所述容纳腔,所述进气浮球组件随所述容纳腔内水位浮动以打开和封闭所述第二接口,所述防溢流浮球组件设于所述容纳腔,所述防溢流浮球组件随所述容纳腔内水位浮动以打开和封闭所述第一接口,其 中,当所述第一接口处于封闭状态时所述防溢流浮球组件的下端高于当所述第三接口处于封闭状态时所述进水浮球组件的下端,且当所述第一接口处于封闭状态时所述防溢流浮球组件的下端高于当所述第二接口处于封闭状态时所述进气浮球组件的下端。
根据本公开的一个实施例,当所述第三接口处于封闭状态时所述进水浮球组件的下端与当所述第二接口处于封闭状态时所述进气浮球组件的下端齐平。
根据本公开的一个实施例,所述进水浮球组件包括:进水浮球、第一连接杆和进水阀芯,所述进水浮球形成为密闭的中空结构,所述第一连接杆的一端与所述进水浮球相连,所述第一连接杆的另一端与所述壳体铰接,所述进水阀芯与所述第一连接杆相连并且与所述第一连接杆的旋转中心错开,所述进水阀芯与所述进水浮球产生联动以打开和封闭所述第三接口。
根据本公开的一个实施例,所述壳体具有出水槽,所述第三接口形成于所述出水槽内,所述进水阀芯与所述出水槽形状适配。
根据本公开的一个实施例,所述进水浮球组件还包括:进水密封垫,所述进水密封垫设于所述进水阀芯顶端。
根据本公开的一个实施例,所述进气浮球组件包括:进气浮球、第二连接杆和进气阀芯,所述进气浮球形成为密闭的中空结构,所述第二连接杆的一端与所述进气浮球相连,所述第二连接杆的另一端与所述壳体铰接,所述进气阀芯与所述第二连接杆相连并且与所述第二连接杆的旋转中心错开,所述进气阀芯与所述进气浮球产生联动以打开和封闭所述第二接口。
根据本公开的一个实施例,还包括:门体组件,所述门体组件包括:上门体和锁止件,所述门体设于所述机体以打开和关闭所述机体,所述机体设有滑槽,所述锁止件可滑动地配合于所述滑槽以在锁止状态和解锁状态之间切换,所述锁止件处于所述锁止状态时将所述门体锁止在所述机体上以关闭所述机体,所述锁止件处于解锁状态时允许所述门体打开所述机体,其中,所述门体设有与所述滑槽连通的定位槽,所述锁止件通过滑入所述定位槽而被保持在所述解锁状态。
根据本公开的一个实施例,所述滑槽的长度方向与所述定位槽的长度方向垂直。
根据本公开的一个实施例,所述锁止件包括:锁座、锁头、拨杆和弹性件,所述锁座设于所述门体且具有导槽,所述导槽的长度方向与所述滑槽的长度方向平行,所述锁头可移动地设于所述导槽内,所述锁止件处于所述锁止状态时所述锁头钩挂在所述机体上,所述锁止件处于解锁状态时所述锁头脱离所述机体,所述锁头设有拨杆槽,所述拨杆槽的长度方向与所述定位槽的长度方向平行,所述拨杆可移动地设于所述拨杆槽内且可滑动地配合于所述滑槽,所述弹性件设于所述锁头与锁座之间且常推动所述锁头以将所述锁止件被 保持在所述锁止状态,其中,所述拨杆通过滑入所述定位槽而使所述锁头克服所述弹性件的弹力以将所述锁止件被保持在所述解锁状态。
根据本公开的一个实施例,所述锁头上设有锁钩,所述机体上设有卡板,所述锁止件处于所述锁止状态时所述锁钩钩挂在所述卡板上,所述锁止件处于解锁状态时所述锁钩脱离所述卡板。
根据本公开的一个实施例,所述拨杆包括:滑块和拨杆头,所述滑块可移动地设于所述拨杆槽内且伸出所述滑槽,所述拨杆头设于所述滑块的伸出所述滑槽的一端。
根据本公开的一个实施例,所述锁座设有第一支撑部和第二支撑部,所述导槽形成于所述第一支撑部和所述第二支撑部之间,所述弹性件的两端分别止抵所述第一支撑部和所述锁头。
根据本公开的一个实施例,所述第一支撑部具有第一空腔且所述第一空腔内设有第一螺栓轴套,所述第二支撑部具有第二空腔且所述第二空腔内设有第二螺栓轴套,所述锁座通过配合于所述第一螺栓轴套的第一螺栓和配合于所述第二螺栓轴套的第二螺栓安装于所述门体。
根据本公开的一个实施例,所述拨杆槽形成为T形槽,所述滑块的一端设有与所述拨杆槽配合的凸台。
根据本公开的一个实施例,所述滑槽和所述定位槽整体横截面形成为L型或T型。
根据本公开的一个实施例,还包括:下门体,所述机体限定出隔开的上腔和下腔,所述上门体安装于所述机体上用于打开或关闭所述上腔;所述下门体安装于所述机体用于打开或关闭所述下腔,所述上门体与所述下门体上下相对设置,所述下门体上设有第一锁止机构,所述第一锁止机构在第一位置和第二位置之间可运动,在所述第一锁止机构位于第一位置时,所述下门体被锁止于所述机体上,在所述第一锁止机构位于第二位置时,所述第一锁止机构解锁,所述下门体允许打开所述下腔室。
根据本公开的一个实施例,所述第一锁止机构具有卡勾,所述机体对应所述卡勾的位置形成有定位槽,所述卡勾与所述定位槽配合。
根据本公开的一个实施例,所述定位槽沿所述机体的上下方向延伸,所述第一锁止机构设有所述下门体的顶部。
根据本公开的一个实施例,在所述第一锁止机构处于锁止状态的情况,所述第一锁止机构被所述上门体遮盖。
根据本公开的一个实施例,所述上门体设有第二锁止机构,所述第二锁止机构处于锁止状态的情况将所述上门体锁止于所述机体上以关闭所述上腔,所述第二锁止机构处于解锁状态的情况,所述上门体允许打开所述上腔。
根据本公开的一个实施例,所述第二锁止机构位于所述上门体的顶部。
根据本公开的一个实施例,所述第一锁止机构包括:支架、按钮组件和复位弹簧,所述支架安装于所述下门体上,所述支架限定出导向槽,所述按钮组件包括本体,所述本体的底部设有与所述导向槽配合的导杆,所述复位弹簧套设于所述导杆的外周面,所述复位弹簧的一端止抵于所述按钮的底面,所述复位弹簧的另一端止抵于所述支架的顶面。
根据本公开的一个实施例,所述本体的后侧面设有自前向后延伸的固定板,所述卡勾设于所述固定板上向上延伸且超出所述按钮的上表面。
根据本公开的一个实施例,所述卡勾的上表面向上向后倾斜延伸。
根据本公开的一个实施例,所述下门体包括:前板、左侧板、右侧板、顶板和底板,所述左侧板的前侧沿与所述前板的右侧沿连接,所述右侧板的前侧沿与所述前板的左侧沿连,所述顶板的前侧沿与所述前板的上侧沿连接,所述底板的前侧沿与所述前板的下侧沿连接。
根据本公开的一个实施例,所述第一锁止机构位于所述顶板的下方,所述顶板设有第一配合孔和第二配合孔,所述本体贯穿所述第一配合孔,所述卡勾贯穿所述第二配合孔。
根据本公开的一个实施例,所述支架的左右侧分别设有凸耳,所述凸耳通过螺钉固定于所述前板上。
根据本公开的一个实施例,还包括:罩体,所述罩体可打开地罩在所述机体上,且所述罩体罩在所述机体上时罩住所述进水槽,其中,所述机体和所述罩体中的一个上设有第一定位结构且另一个上设有第二定位结构,所述第一定位结构和所述第二定位结构被构造成适于被锁具锁住以将所述罩体锁在所述机体上。
根据本公开的一个实施例,所述第一定位结构包括定位钩,所述第二定位结构包括定位孔,所述罩体罩在所述机体上时所述定位钩和所述定位孔相对,所述定位钩适于连接所述锁具,并由所述锁具将所述罩体锁住。
根据本公开的一个实施例,所述第一定位结构设于所述机体上,所述第二定位结构设于所述罩体上,所述第一定位结构还包括:螺杆,所述螺杆上设有间隔开的第一螺母和第二螺母,所述第一螺母和所述第二螺母配合锁住所述机体的壁,其中,所述定位钩与所述螺杆相连,且所述定位钩伸出所述机体的外表面以在所述罩体罩在所述机体上时所述定位钩与所述定位孔相对。
根据本公开的一个实施例,所述第一定位结构设于所述机体上,所述第二定位结构设于所述罩体上,所述定位钩的轴线和所述定位孔的轴线垂直。
根据本公开的一个实施例,所述罩体的开口端边沿设有配合孔,所述配合孔与所述定位孔连通,所述罩体罩在所述机体上时所述定位钩伸入所述配合孔并与所述定位孔相对。
根据本公开的一个实施例,所述罩体的开口端具有相对的第一开口侧和第二开口侧,所述罩体的第一开口侧与所述机体可转动地连接,且所述罩体的第二开口侧设有所述第二定位结构。
根据本公开的一个实施例,所述罩体的所述第一开口侧与所述机体可拆卸地连接。
根据本公开的一个实施例,所述罩体的所述第一开口侧设有向罩体外延伸的第一卡勾,所述机体上设有朝所述进水槽延伸的第二卡勾,所述第二卡勾与所述机体的外表面之间具有间隙,所述第一卡勾适于伸入所述第二卡勾内侧并与所述第二卡勾卡合且所述第一卡勾的勾部与所述第二卡勾的勾部相对设置。
根据本公开的一个实施例,所述进水槽形成于所述机体顶面,所述机体顶面周沿设有环绕所述进水槽的缺口槽,所述罩体罩在所述机体上时所述罩体的开口周沿位于所述缺口槽内。
根据本公开的一个实施例,所述机体的顶部设有聪明座,所述聪明座的上端敞开以形成所述进水槽,所述罩体可打开地罩在所述机体的顶面上。
根据本公开的一个实施例,所述第四接口高于所述第五接口。
根据本公开的一个实施例,还包括:空气净化件,所述空气净化件与所述第一接口相连。
根据本公开的一个实施例,述空气净化件包括空气过滤结构和杀菌结构,所述空气过滤结构与所述杀菌结构串接连接。
本公开的附加方面和优点将在下面的描述中部分给出,部分将从下面的描述中变得明显,或通过本公开的实践了解到。
附图说明
附图是用来提供对本公开的进一步理解,并且构成说明书的一部分,与下面的具体实施方式一起用于解释本公开,但并不构成对本公开的限制。在附图中:
图1是根据本公开实施例的饮水设备的局部结构示意图;
图2是根据本公开实施例的饮水设备的机体的局部结构示意图;
图3是根据本公开实施例的聪明座组件的结构示意图;
图4是根据本公开实施例的聪明座组件的装配状态示意图;
图5是根据本公开实施例的聪明座组件的拆卸状态示意图;
图6是根据本公开实施例的聪明座组件的剖视图;
图7是根据本公开实施例的聪明座组件的爆炸图;
图8是根据本公开实施例的聪明柱的结构示意图;
图9是根据本公开实施例的聪明柱的剖视图。
图10是根据本公开一个实施例的饮水设备的部分立体结构图;
图11是根据本公开一个实施例的饮水设备的结构示意图;
图12是根据本公开一个实施例的饮水设备的装配关系示意图;
图13是根据本公开一个实施例的饮水设备的立体图;
图14是根据本公开一个实施例的饮水设备的剖视立体图;
图15是根据本公开一个实施例的饮水设备的剖视图;
图16是根据本公开一个实施例的饮水设备的部分剖视图;
图17是根据本公开一个实施例的饮水设备的内部结构图;
图18是根据本公开一个实施例饮水设备的第五接口出水示意图;
图19是根据本公开一个实施例饮水设备在T1状态下的进水示意图;
图20是根据本公开一个实施例饮水设备在T2状态下的进水示意图;
图21是根据本公开一个实施例饮水设备在T3状态下的进水、进气示意图;
图22是根据本公开一个实施例饮水设备在T3状态下的结构示意图;
图23是根据本公开一个实施例饮水设备在T1状态下的结构示意图。
图24是根据本公开实施例的饮水设备的一个角度的爆炸图;
图25是根据本公开实施例的饮水设备的另一个角度的爆炸图;
图26是根据本公开实施例的饮水设备的一个剖视图;
图27是根据本公开实施例的饮水设备的另一个剖视图。
图28根据本公开实施例的饮水设备的水箱组件的示意图;
图29根据本公开实施例的饮水设备的水箱组件的俯视图;
图30根据本公开实施例的饮水设备的水箱组件的剖视图;
图31根据本公开实施例的饮水设备的水箱组件的又一剖视图;
图32根据本公开实施例的饮水设备的水箱组件的进水浮球组件的示意图。
图33根据本公开实施例的饮水设备的门体组件的局部结构示意图;
图34根据本公开实施例的饮水设备的门体组件的锁止件的结构示意图;
图35根据本公开实施例的饮水设备的门体组件的锁止件的俯视图;
图36根据本公开实施例的饮水设备的门体组件处于锁止状态的俯视图;
图37根据本公开实施例的饮水设备的门体组件处于解锁状态的俯视图;
图38根据本公开实施例的饮水设备的门体组件处于保持解锁状态的俯视图;
图39是图36中A部的放大图;
图40是图37中B部的放大图;
图41是图38中C部的放大图;
图42根据本公开实施例的饮水设备的门体组件处于锁止状态的结构示意图;
图43根据本公开实施例的饮水设备的门体组件处于解锁状态的结构示意图;
图44根据本公开实施例的饮水设备的门体组件处于保持解锁状态的结构示意图;
图45根据本公开实施例的饮水设备的门体组件处于锁止状态的局部结构示意图;
图46根据本公开实施例的饮水设备的门体组件处于解锁状态的局部结构示意图;
图47根据本公开实施例的饮水设备的门体组件处于保持解锁状态的局部结构示意图。
图48是根据本公开实施例的门体组件的结构示意图;
图49是图46中D处放大图;
图50是根据本公开实施例的下门体的局部结构示意图;
图51是根据本公开实施例的下门体的俯视图;
图52是根据本公开实施例的第一锁止机构的结构示意图;
图53是沿图5中E-E线的剖视图;
图54是图53中F处放大图。
图55是根据本公开实施例的锁具与饮水设备的部分立体结构图;
图56是图55中G处放大图;
图57是图55中H处放大图;
图58是根据本公开实施例的饮水设备部分结构的俯视图;
图59是根据本公开实施例的饮水设备部分结构的正视图。
图60是根据本公开实施例的饮水设备在T1状态时的工作示意图;
图61是根据本公开实施例的饮水设备在T2状态时的工作示意图;
图62是根据本公开实施例的饮水设备在T3状态时的工作示意图。
附图标记:
S:饮水设备;
100:机体;101:进水槽;102:导向槽:滑动段;104:限位段;105:第一导向槽;106:第二导向槽;107:拆装口;108:限位块;109:锁定标记;110:解锁标识;111:安装口;112:上盖;114:第一进出口;115:第一进水口;116:卡板;117:定位槽;118:限位块;119:第一定位结构;120:定位钩;121:螺杆;122:第一螺母;123:第二螺母;124:第二卡勾;
200:聪明座组件;201:导向筋;202:第一导向筋;203:第二导向筋;204:指示标识;205:凸块;206:聪明座;207:导通管;208:导通本体;209:连接耳;210:卡 槽;211:聪明柱;212:柱本体;213:固定扣;214:连接段;215:卡接段;216:定位筋;217:连接座;218:流体过孔;219:顶盖;220:侧翼板;221:内芯;222(225):第四接口;223:机体座;224(226):第五接口;227:聪明头;228:第一通口;229:第二通口;230:过水通道;231:止挡台;232:进出通道;233:止挡沿;234:密封沿;235:连通孔;236:止挡钩;237:定位导流筋;
300:水箱;301(306):第一接口;302(310):第二接口;303(311):第三接口;304(312):出水口;307:环形凸缘;308:防脱沿;311:第三接口;313:第二进出口;314:第二进水口;315:通气口;316:进气浮球组件;317:进气浮球;318:第二连接杆;319:进气阀芯;320:进水浮球组件;321:进水浮球;322:第一连接杆;323:进水阀芯;324:进水密封垫;325:防溢流浮球;326:防溢流阀芯;327:锥形凸台;328:贯通槽;329:密封圈;330:壳体;
400:开关组件;401:水位检测件;402:开关件;403:转动轴;404:阀芯;405:阀芯密封垫;
500:空气净化件;502:出水阀;503:水龙头;504:加热装置;505:进出管;506:进水管;507:防溢阀芯;508:开关阀;509:加热容器;
600:门体组件;601:上门体;602:滑槽;603:定位槽;604:锁止件;605:锁座;606:导槽;607:锁头;608:拨杆槽;609:锁钩;610:拨杆;611:拨杆头;612:滑块;613:弹性件;614:第一支撑部;615:第一螺栓轴套;616:第二支撑部;617:第二螺栓轴套;618:第二锁止机构;619:下门体;620:第一锁止机构;621:卡勾;622:支架;623:凸耳;624:按钮组件;625:本体;626:导杆;627:复位弹簧;628:前板;629:左侧板;630:右侧板;631:顶板;632:第一配合孔;633:第二配合孔;634:底板;
700:罩体;701:第二定位结构;702:定位孔;703:配合孔;704:第一卡勾;705:锁具;
800:软水袋。
具体实施方式
下面详细描述本公开的实施例,所述实施例的示例在附图中示出,其中自始至终相同或类似的标号表示相同或类似的元件或具有相同或类似功能的元件。下面通过参考附图描述的实施例是示例性的,仅用于解释本公开,而不能理解为对本公开的限制。
在本公开的描述中,需要理解的是,术语“中心”、“纵向”、“横向”、“长度”、“宽度”、“厚度”、“上”、“下”、“前”、“后”、“左”、“右”、“竖直”、“水平”、“顶”、“底”“内”、“外”、“顺时针”、“逆时针”、“轴向”、“径向”、“周向”等指示的方位或位置关系为基于 附图所示的方位或位置关系,仅是为了便于描述本公开和简化描述,而不是指示或暗示所指的装置或元件必须具有特定的方位、以特定的方位构造和操作,因此不能理解为对本公开的限制。此外,限定有“第一”、“第二”的特征可以明示或者隐含地包括一个或者更多个该特征。在本公开的描述中,除非另有说明,“多个”的含义是两个或两个以上。
在本公开的描述中,需要说明的是,除非另有明确的规定和限定,术语“安装”、“相连”、“连接”应做广义理解,例如,可以是固定连接,也可以是可拆卸连接,或一体地连接;可以是机械连接,也可以是电连接;可以是直接相连,也可以通过中间媒介间接相连,可以是两个元件内部的连通。对于本领域的普通技术人员而言,可以具体情况理解上述术语在本公开中的具体含义。
下面参考图1-62图描述根据本公开实施例的饮水设备S。
如图1-5所示,根据本公开的一个实施例,饮水设备S包括:机体100、聪明座组件200和软水袋800。
具体而言,机体100内限定有上侧敞开的进水槽101,聪明座组件200设在进水槽101内。进水槽101的内周壁设有导向槽102,导向槽102沿进水槽101的周向延伸并绕进水槽101的中心轴线螺旋上升,也就是说,进水槽101的内周壁上形成有螺旋形的导向槽102。
聪明座组件200对应导向槽102的位置设有导向筋201,导向筋201可滑动地配合在导向槽102内。机体100上设有拆装口107,拆装口107连通导向槽102。导向筋201通过拆装口107滑入或滑出导向槽102。
相关技术中,饮水设备S的聪明座组件200装配在进水槽101时,聪明座组件200相对于机体100转动时,聪明座组件200不会发生竖直方向上的运动,即使聪明座组件200通过转动接触了机体100对其的限定作用,用户将聪明座组件200从进水槽101中取出的过程难度仍较大。
在本申请中,聪明座组件200相对于机体100转动,导向筋201在导向槽102内滑动。聪明座组件200转动的同时,导向筋201随导向槽102螺旋上升,导向筋201带动聪明座组件200发生轴向方向的运动,此时聪明座组件200与进水槽101分离,极大程度的降低了聪明座组件200的拆装难度,方便用户清洗聪明座组件200。
由此,根据本公开的饮水设备S,通过在进水槽101内设置导向槽102,利用导向槽102和导向筋201的配合可以为聪明座组件200的拆卸提供方便,不仅可以简化聪明座组件200的拆装难度,还能为用户清理聪明座组件200提供方便,有利于保持饮水设备S的环境卫生。
如图2所示,在本实施例中,拆装口107位于导向槽102的顶端且贯通机体100的上表面。也就是说,部分导向槽102的顶端是敞开的,导向槽102通过导向槽102顶端敞开 的拆装口107滑入或滑出导向槽102。
将拆装口107设在导向槽102的顶端,生产工艺简单,不仅可以降低饮水设备S的机体100的生产成本,而且可以为聪明座组件200与机体100配合提供方便,用户直接从顶部装入或取出聪明座组件200,结构简单,操作简单。
如图2所示,根据本公开的一个具体实施例,导向槽102的上壁的一部分敞开以形成拆装口107。具体而言,导向槽102在进水槽101的周向上,一部分导向槽102的顶部是敞开的,形成拆装口107;另一部分导向槽102的顶部是封闭的,其中,导向槽102敞开段和封闭段的长度大致相等,导向槽102敞开段的长度(也就是拆装口107的长度)大于导向筋201的长度(导向筋201的长度值导向筋201在聪明座组件200周向上的延伸长度)。
由此可以为导向筋201滑入或滑出导向槽102提供方便,防止因拆装口107的长度过小影响导向筋201的滑入或滑出。
如图2所示,根据本公开的一个实施例,导向槽102包括:滑动段103和限位段104,滑动段103的上壁敞开以形成拆装口107,限位段104的上端与滑动段103的下端连通。
换言之,滑动段103的底壁和限位段104的底壁相连,滑动段103的顶壁敞开,限位段104的顶部设有限位块118108,限位块118108的底壁形成限位段104的顶壁,导向筋201滑入限位段104时,限位块118108的底壁止抵导向筋201的顶部并将导向筋201限定在限位段104内,防止导向筋201在进水槽101的轴向上发生位移。
将导向槽102设置成滑动段103和限位段104,不仅可以为导向筋201滑入或滑出导向槽102提供方便,还能提升导向筋201在限位段104的稳定性。
进一步地,如图2所示,限位段104的上壁与下壁平行布置,也就是限位块118108的底壁和导向槽102的底壁平行布置。其中,限位段104的上壁与下壁之间的距离大于或等于导向筋201的厚度,也就是限位块118108的底壁与导向槽102的底壁之间的距离大于等于导向筋201的厚度。保证导向筋201可以滑入或滑出限位段104与限位块118108配合,防止因限位段104的上壁与下壁之间的距离过小增加聪明座组件200的转动阻力,进而为用户拆装聪明座组件200通提供了方便。
如图4和5所示,根据本公开的一个实施例,机体100上设有锁定标识和解锁标识110,聪明座组件200上设有指示标识204,锁定标识和解锁标识110在进水槽101的周向上间隔开设置,聪明座组件200相对于进水槽101转动时,指示标识204从锁定标识滑动至解锁标识110或从解锁标识110滑动至锁定标识。
导向筋201位于导向槽102的最底部时指示标识204指向锁定标识,也就是说,导向筋201滑动到导向槽102的限位段104时,指示标识204指向锁定标识,表示聪明座组件200已经稳定地安装在进水槽101内。
导向筋201位于导向槽102的最顶部时指示标识204指向解锁标识110,也就是说,导向筋201滑动到导向槽102的滑动段103时,指示标识204指向解锁标识110,用户此时可将聪明座组件200从进水槽101取出。
通过在机体100和聪明座组件200上设置锁定标识、解锁标识110和指示标识204,用户可以通过锁定标识、解锁标识110和指示标识204了解导向筋201在导向槽102内的位置,进而了解聪明座组件200是否装配完成,或是了解聪明座组件200是否与导向槽102脱离。可以指导用户安装或拆卸聪明座组件200,防止用户持续用力导致聪明座组件200或机体100损坏。
如图3所示,在本实施例中,聪明座组件200的外周面设有凸块205,凸块205沿聪明座组件200的径向向外凸出,导向筋201设在凸块205上,其中导向筋201的横截面形成为环形结构。
通过在聪敏座上设置凸块205,可以降低导向筋201沿聪明座组件200径向方向的延伸长度,不仅可以保证导向筋201与导向槽102稳定配合,还能提升导向筋201与聪明座组件200的连接稳定性。
如图1所示,根据本公开的一个实施例,导向槽102包括第一导向槽105和第二导向槽106,第一导向槽105和第二导向槽106相对于进水槽101的中心轴线呈中心对称分布,拆装口107包括与第一导向槽105连通的第一拆装口107和与第二导向槽106连通的第二拆装口107,导向筋201包括第一导向筋202和第二导向筋203,第一导向筋202和第二导向筋203相对于聪明座组件200的中心轴线呈中心对称分布,第一导向筋202可滑动地配合在第一导向槽105内且通过第一拆装口107进出第一导向槽105,第二导向筋203可滑动地配合在第二导向槽106内且通过第二拆装口107进出第二导向槽106。
通过设置两个导向槽102、两个拆装口107和两个导向筋201,可以提升聪明座组件200与进水槽101的装配稳定性,不仅可以保证聪明座组件200受力平衡,还能防止因单个导向筋201损坏或单个导向槽102损坏造成聪明座组件200与机体100脱离。
可选地,第一导向筋202、第二导向筋203和聪明座组件200一体成型,一体成型的结构和性能稳定性较强,不易损坏,使用寿命较长,而且消除了第一导向筋202和第二导向筋203与聪明座组件200的连接结构,有利于提升聪明座组件200的装配效率。
在本实施例中,饮水设备S还包括软水袋800,聪明座组件200限定有上端敞开的进水腔,软水袋800插接在进水腔内,且软水袋800为柔性材料,也就是说,随着软水袋800中水量的减少,软水袋800的体积减小,由此可以为软水袋800的运输提供方便。
下面参考图6-图9描述根据本公开实施例的饮水设备S。
如图1所示,根据本公开的一个实施例,饮水设备S包括:机体100、聪明座组件200和软水袋800。机体100上限定有顶部敞开的进水槽101,聪明座组件200设在进水槽101内。聪明座组件200限定有上端敞开的进水腔,软水袋800插接在进水腔内,且软水袋800为柔性材料,也就是说,随着软水袋800中水量的减少,软水袋800的体积减小,由此可以为软水袋800的运输提供方便。
如图6-8所示,聪明座组件200包括:聪明座206、导通管207和聪明柱211。聪明座206内限定有向上敞开的进水腔,导通管207连接在进水腔内,导通管207上设有连通进水腔的第一通孔和第二通孔,导通管207的下端敞开,聪明柱211插接在导通管207内。
如图8所示,根据本公开一个实施例的聪明柱211,包括:柱本体212和至少一个固定扣213。柱本体212形成为一端敞开的管状,柱本体212内限定有流体通道,柱本体212的外周壁与导通管207的内周壁限定出水流通道,第一通孔连通流体通道,第二通孔连通水流通道。固定扣213的一端设于柱本体212的外周壁,固定扣213的另一端在固定扣213的弹力下沿柱本体212的径向远离柱本体212。也就是说,固定扣213的另一端在受力时可以朝向柱本体212靠拢,不受外力时在自身弹力的作用下,沿柱本体212的径向向外弹出。
其中,导气管的侧壁上设有卡槽210,聪明柱211插接在导通管207时,固定扣213适配卡接在卡槽210内。具体而言,在聪明柱211的装配过程中,利用外力挤压固定扣213,将固定扣213移动至卡槽210处,外力撤销后,固定扣213沿柱本体212的径向向外弹出并卡接在卡槽210内。需要拆除聪明柱211时,外部对固定扣213施加压力,固定扣213向柱本体212靠拢并从卡槽210内脱离,然后取出聪明柱211。
由此,根据本公开的饮水设备S的聪明柱211,通过在聪明柱211上设置固定扣213,为聪明柱211与聪明座206的配合提供了方便,而且利用固定扣213拆卸聪明柱211比较方便,进而为用户拆除聪明柱211进行清洗提供了方便,防止聪明柱211上积聚污垢,有利于保证饮水设备S干净卫生。
如图8和9所示,根据本公开一个实施例的饮水设备S的聪明柱211,固定扣213包括:连接段214和卡接段215。连接段214的一端连接于柱本体212的外周壁,连接段214的另一端沿柱本体212的轴向向下并沿柱本体212的径向向外倾斜。也就是说,连接段214的一端(如图9所示的上端)连接在柱本体212上,另一端(如图9所示的下端)与柱本体212分离。卡接段215连接在连接段214的下端并沿柱本体212的径向向外延伸。
通过在固定扣213上设置卡接段215,可以为固定扣213卡接卡槽210提供方便,而且可以提升固定扣213与卡槽210的卡接稳定性。利用连接段214连接卡接段215与柱本体212,可以为卡接段215从卡槽210脱离或卡入卡槽210提供方便,从而实现固定扣213 与卡槽210的可拆卸卡接。
如图8所示,根据本公开一个实施例的聪明柱211,包括:柱本体212和至少一个定位筋216。定位筋216设在柱本体212的外周壁上,定位筋216与柱本体212的外周壁以及导通管207的内周壁配合限定出水流通道。定位筋216止抵导通管207的内壁,第一通孔连通流体通道,第二通孔连通水流通道。
由此,根据本公开的饮水设备S的聪明柱211,通过在聪明柱211上设置定位筋216,一方面,可以提升柱本体212的结构强度和稳定性,而且定位筋216限定出的水流通道,可以提升饮水设备S的水流稳定性,防止饮水设备S水流中断。另一方面,定位筋216可以提升聪明柱211装配在聪明座206内的稳定性,防止聪明柱211相对于聪明座206发生晃动。
根据本公开实施例的聪明座组件200和饮水设备S,通过在聪明座组件200和饮水设备S内设置上述聪明座206,可以提升聪明座组件200和饮水设备S的水流稳定性和结构稳定性,防止因聪明柱211晃动影响饮水设备S正常工作。
定位筋216沿柱本体212的轴向延伸。也就是说,定位筋216沿柱本体212的长度方向延伸,由此可以保证水流通道沿柱本体212的轴向导通。防止定位筋216增加水流通道内水流的阻力,保证饮水设备S正常导通。
如图8所示,在一些实施中,定位筋216为多个,多个定位筋216沿柱本体212的周向间隔开设置,相邻定位筋216与柱本体212的外周壁和导通管207的内周壁配合限定出水流通道,通过设置多个定位筋216,不仅可以进一步提升聪明柱211在导通管207内的稳定性,还能增加水流通道的数量,保证水流通畅。
进一步地,根据本公开的一个具体实施例,聪明柱211上设有四个定位筋216,四个定位筋216沿柱本体212的周向等间隔布置。也就是说柱本体212的前后左右各有一个定位筋216,从而可以在四个方向上对柱本体212进行限定,进一步防止柱本体212在导通管207内发生晃动。
如图8所示,根据本公开的一个实施例,定位筋216的上端与柱本体212的上端之间的距离大于定位筋216的下端与柱本体212的下端之间的距离。也就是说,定位筋216偏向柱本体212的下端设置,由此可以防止定位筋216阻塞导通管207上的第一通孔或第二通孔。
进一步地,定位筋216在柱本体212的径向方向上的长度称为定位筋216的宽度,定位筋216的上端的宽度在从上到下的方向上逐渐增大,定位筋216的下端的宽度在从上到下的方向上逐渐减小。上述结构的定位筋216进入导通管207较为方便,防止定位筋216的上端与导通管207的下端碰撞,有利于提升聪明柱211与聪明座206的装配效率。
如图8所示,在本实施例中,固定扣213与定位筋216的下端相连,由此可以提升固定扣213与定位筋216的结构整体性,进而可以提升固定扣213和定位筋216的强度和稳定性,有利于延长聪明柱211是使用寿命。
如图8和9所示,根据本公开的一个实施例,柱本体212的一端设有连接座217,聪明柱211装配在导通管207内时,连接座217夹设在柱本体212的外周壁与导通管207的内周壁之间,且连接座217与导通管207的内周壁密封配合。连接座217上形成有流体过孔218,流体过孔218连通第一通孔和流体通道。
通过在柱本体212上设置连接座217,可以为第一通孔连通流体通道提供方便,而且可以防止第一通孔与水流通道串通影响聪明座206的正常使用。
如图9所示,根据本公开的一个实施例,连接座217位于柱本体212的顶部且流体过孔218位于柱本体212的侧部。流体过孔218沿柱本体212的侧壁的厚度方向贯穿柱本体212的侧壁,且流体过孔218邻近柱本体212的顶端设置。
如图9所示,根据本公开的一个具体实施例,连接座217包括:顶盖219和侧翼板220。顶盖219形成为封盖在柱本体212顶部的圆饼状,顶盖219的外直径等于导通管207上端的内直径。侧翼板220与顶盖219相连并沿柱本体212的轴向向下延伸,侧翼板220被构造成与柱本体212的外周壁形状适配的弧形。也就是说,侧翼板220覆盖在柱本体212外周壁上,且流体过孔218设于侧翼板220。
上述结构的连接座217结构简单,稳定性强,顶盖219与导通管207的内周壁配合固定柱本体212的上端,防止柱本体212的上端在导通管207内晃动,进一步提升聪明座206的稳定性,侧翼板220与柱本体212和导通管207配合,防止第一通孔与水流通道串通,保证第一通孔与流体通道之间导通的稳定性。
如图6所示,根据本公开的一个实施例,导通管207包括:导通本体625208和连接耳209。导通本体625208与聪明座206相连并贯穿进水腔的底壁,且导通本体625208的下端敞开,也就是说,导通本体625208连接在进水腔的底壁上,并沿底壁的厚度贯穿底壁。连接耳209连接在导通本体625208的下端并沿导通本体625208的轴向向下凸出,连接耳209可以行程为连接在导通本体625208下端的半圆形结构,卡槽210设在连接耳209上。
通过在导通管207的下端设置连接耳209,不仅可以降低卡槽210制作难度,而且可以为固定扣213与卡槽210配合提供方便,再者,还可以降低用户拆除聪明柱211的难度,为用户清理聪明柱211提供方便。
进一步地,卡槽210沿连接耳209的厚度方向贯穿连接耳209,固定扣213从导通管207的内壁卡入卡槽210内,用户在拆除聪明柱211时,可以从导通管207的外侧对卡槽210内固定扣213施加压力,由此可以为用户驱动固定扣213提供方便,而且可以进一步 降低聪明柱211拆卸工艺的难度。
如图10和图11、图13和图17所示,该饮水设备大体可以包括:机体100、水箱300、聪明座组件200和开关组件400。
具体而言,如图11所示,机体100顶壁具有安装口111。水箱300设在机体100内,水箱300具有第一接口301、第二接口302、第三接口303和出水口304,第一接口301和第二接口302均设在水箱300上部,第一接口301适于连通外部空间。聪明座组件200设在机体100上,且聪明座组件200的顶部敞开,且聪明座组件200的顶部周沿与安装口111的内周沿密封配合,聪明座组件200具有第四接口222和第五接口224,第四接口222与第二接口302相连,第五接口224与第三接口303相连,且第五接口224设于聪明座组件200的底部并不低于第三接口303。开关组件400包括水位检测件401和开关件402,所述水位检测件401设于所述水箱300内以检测所述水箱300内的水位,所述开关件402与所述第二接口302和所述第三接口303相连以在所述水箱300内的水位不低于预定值时关闭所述第二接口302和所述第三接口303。
也就是说,聪明座组件200安装于安装口111,且聪明座组件200与安装口111之间具有密封结构,可以防止水流进饮水设备内部,更加安全。其中,聪明座组件200上可以连接水源,水源可以为硬质水桶、软水袋800等,本实施例中以聪明座组件200上连接软水袋800为例。
可以理解的是,随着软水袋800内的水不断减少,软水袋800内的水压与水箱300内的气压的压强差也不断发生变化,根据软水袋800内的水压与水箱300内的气压的不断变化的压强差,本申请中的饮水设备的工作过程大体可以分为三个阶段:
如图19所示,T1阶段:由于软水袋800与水箱300内水位压差高,水袋中的水经过聪明座组件200的第四接口222后流经水箱300的第二接口302向水箱300内加水,并且,水袋中的水还会经过聪明座组件200的第五接口224后流经水箱300的第三接口303向水箱300内加水,水箱300内水位上升,空气被挤出,水箱300内的空气都通过联通大气的第一接口301排出,直到水位检测件401检测到液面处于预定位置时,开关组件400关闭第二接口302和第三接口303。
如图20所示,T2阶段:当饮水设备正常使用时,软水袋800里的水会慢慢变少,接近T2阶段时,软水袋800与水箱300内的压差也渐渐变小,聪明座组件200的第四接口222和水箱300的第二接口302之间就不再会有水流过,水主要通过第五接口224和第三接口303向水箱300内补水。水箱300内水位上升,空气被挤出,水箱300内的空气都通过联通大气的第一接口301排出,直到水位检测件401检测到液面处于预定位置时,开关组件 400关闭第二接口302和第三接口303。
如图21所示,T3阶段:当软水袋800里的水还剩下接近T2阶段时,水袋和水箱300内的压强出现负压,第五接口224的出水量会因负压现象慢慢减少,当达到时临界时,外部空气通过第一接口301进入水箱300内,进入水箱300内的空气经过第二接口302通向第四接口222后被软水袋800内的负压所吸入,从而空气可进入软水袋800内。因软水袋800内的压强恢复,剩余的水通过第五接口224和第三接口303可补入水箱300内。水箱300内水位上升,空气被挤出,水箱300内的空气都通过联通大气的第一接口301排出,直到水位检测件401检测到液面处于预定位置时,开关组件400关闭第二接口302和第三接口303。或者,水箱300内的液面还未到达预定位置,水袋中的水已经排净,此时,开关组件400无需关闭第二接口302和第三接口303。这样,水袋内的可以排净。
可以看出,饮水设备在工作过程中,第一接口301一直处于打开状态,也就是说,水箱300一直与大气连通。并且,第二接口302和第四接口222既可以通气又可以通水,第三接口303和第五接口224只通水。
另外,出水口304处具有出水阀502,出水口304可以与饮水龙头503连接也可与加热装置504或制冷装置连接等。
由此,根据本公开实施例的饮水设备,通过设置聪明座组件200,聪明座组件200上设置第四接口222和第五接口224,并且第四接口222与水箱300的第二接口302相连,第五接口224与水箱300的第三接口303相连,可以利用水箱300与水袋内的压力差将水袋中的水排净,避免资源浪费。
一些实施例中,水箱300的顶壁不高于聪明座组件200的上边沿且不低于聪明座组件200的下边沿。水箱300的顶壁不高于聪明座组件200的上边沿可以让水袋中的水有足够的压强将水箱300中的水补充到预订液面,而不至于水压不够,导致水箱300中的水不足的情况出现;水箱300的顶壁不低于聪明座组件200的下边沿,也即聪明座组件200的下边沿高于水箱300的顶壁或与水箱300的顶壁等高,这样,水箱300和聪明座组件200之间并非一定要设置为上下正对的形式,也可以是在水平方向上间隔预定距离布置,聪明座组件200也无需伸进水箱300内部,使聪明座组件200的布置方式多样。
一些具体实施例中,如图11、图12、图14、图15、和图19所示,第一接口301和第二接口302均设于水箱300的顶壁,且第三接口303设于水箱300的下部。第一接口301与外界连通用于向水箱300内补气或将水箱300内的气体排出,因此将第一接口301设置于水箱300的顶壁。在水压充足时,第二接口302向水箱300内补水,第二接口302在水压不足时,需要向水袋内充气,将第二接口302设置于水箱300的顶壁而不是底壁,可以避免水袋内的水压不够时第二接口302无法向水袋内充气的情况出现。而且,可以理解的 是,当第二接口302位于水箱300侧壁或底壁时,可能会出现水袋内的水压不足时水箱300内液面高于第二接口302的情况,也即液面高度高于第二接口302的高度,此时,也无法通过第二接口302向水袋内充气,还浪费了水箱300的内部空间。此外,第三接口303位于水箱300的下部,第三接口303只负责向水箱300内部进水,最优选地,第三接口303位于水箱300的底壁或侧壁的底部,当然,第三接口303也可位于水箱300侧壁的中间位置、中下位置等。
一个具体实施例中,如图23所示,所述预定值高于第五接口224。常规的上置水袋的饮水产品设计中,水箱300的液面预定值一般都比聪明座组件200出水口304位置也即第五接口224低,这样,整机结构空间较大,而且也不易将水排净。本结构将第五接口224至水箱300底部高度设置为H,将水箱300液面至水箱300底部高度设置为H。本装置正常情况下,也即H>H的状态下,在重力、水压的驱使下,其出水口304的出水流量较大,随着水箱300内水量的减少,可能会出现H<H的情况,此时,水压不够,出水口304的出水流量会逐渐减小。
一些实施例中,如图10结合图11所示,水位检测件401为上下可浮动地设于水箱300内的浮球,开关件402包括转动轴403和阀芯404。转动轴403的一端可转动地与水箱300相连,且转动轴403的另一端与所述浮球相连。阀芯404与转动轴403相连并与转动轴403的旋转中心错开,阀芯404适于打开和关闭第二接口302和第三接口303。
其中,参照图18和图19,浮球随着水箱300内液面的升降而上下浮动,浮球漂浮于水面上。浮球与转动轴403的所述另一端相连,转动轴403的所述一端与水箱300可转动地相连,浮球跟随液面上下浮动时,转动轴403在浮球的带动下发生转动。由于阀芯404与转动轴403的旋转中心错开,转动轴403在旋转的过程中带动阀芯404运动。可以理解的是,随着液面的上升,浮球上升带动转动轴403、转动轴403带动阀芯404逐渐封闭第二接口302和第三接口303。随着液面的下降,浮球下降带动转动轴403、转动轴403带动阀芯404逐渐打开第二接口302和第三接口303。这样,可以不依靠电子设备即可自动完成水箱300内的补水。
可选地,如图10和图11所示,开关件402包括与第二接口302和第三接口303一一对应的两个,两个开关件402连接同一个水位检测件401。也就是说,可以仅依靠一个浮球同时连接两个转动轴403,转动轴403连接两个阀芯404,两转动轴403随着浮球同步转动以同时驱动阀芯404打开或关闭第二接口302和第三接口303。当然,上述实施例仅是示意性的,并不能理解为对本公开保护范围的限制,例如,开关件402和水位检测件401都为一个,此时,阀芯404足够大,可以同时打开和关闭第二接口302和第三接口303。优选地,开关组件400包括与第二接口302和第三接口303一一对应的两个,每个开关组 件400均包括水位检测件401和开关件402,开关件402和水位检测件401都为两个,可以相互独立的打开和关闭第二接口302和第三接口303。
一些具体实施例中,如图14、图15和图18所示,水箱300的内壁面上设有分别与第二接口302和第三接口303连通的两个第二进出口313(图中未示出),阀芯404可移动地设于对应的所述第二进出口313内。有利地,容纳槽是在上下方向上沿竖向布置的。换言之,转动轴403的转动带动阀芯404上下移动,阀芯404在容纳槽内的移动可以打开和封闭第二接口302和第三接口303。
进一步地,如图10、图14、图15和图18所示,阀芯404上设有阀芯密封垫405。阀芯密封垫405设于阀芯404的顶部,阀芯密封垫405随着阀芯404的上下移动而上下移动,阀芯密封垫405适于密封第二接口302和第三接口303。其中,阀芯密封垫405可以是橡胶材质,使密封更加严密。
一些实施例中,如图10、图14、图16、图18和图19所示,所示,聪明座组件200包括机体座223和内芯221,机体座223呈顶部敞开的壳体330形状,第五接口224设于机体座223的底壁上。内芯221为中空结构并沿上下方向延伸,且内芯221的至少一部分伸入机体座223内,第四接口222设于内芯221上。其中,机体座223还包括环形周壁,所述底壁封闭环形周壁的下边沿。第五接口224设于所述底壁上,也就是说第五接口224位于水袋的下方,可以保证水袋中的水能完全流出。内芯221的一部分伸入壳座内,内芯221的伸出部分可以用于刺穿水袋的接头部位,使水袋连接于聪明座组件200上,内芯221的伸出部分便伸进水袋内。由于第四接口222设于内芯221上,内芯221为中空结构,中空结构的内芯221可以用来通水或通气,具体来说,水袋内的水可以从第四接口222进入内芯221,顺着中空管道进入第二接口302,或者,水箱300内的空气进入第二接口302后进入内芯221的中空管道后从第四接口222进入水袋内,增大水袋内的压强。
进一步地,如图10、图14、图16和图18所示,内芯221内设有进气柱,进气柱的上端延伸至第四接口222,进气柱的下端伸出内芯221并连接第二接口302。进气柱连通第二接口302和第四接口222,需要说明的是,进气柱不仅可以进气,还可以进水,进气柱为脆弱的部件,将进气柱设置于内芯221的中空结构内,可以保护进气柱。
有利地,第四接口222高于第五接口224。可以理解的是,第四接口222还具有向水袋内进气的功能,将第四接口222设置成高于第五接口224,在水压不够时,第四接口222先于第五接口224达到压力不足的临界值,优先进气,优选地,当水袋与聪明座组件200连接时,第四接口222位于水袋内,方便进气。当然,第四接口222与第五接口224的高低并不受限制,例如第四接口222与第五接口224也可以等高,换言之,第四接口222与第五接口224都设于聪明座组件200的底壁上;或者第四接口222低于第五接口224,例 如第五接口224向上凸起,第四接口222设于底壁上。
具体而言,如图22所示,第二接口302和第四接口222之间设为气路管道,第三接口303与第五接口224只件设为水路管道,水箱300连接聪明座组件200气路管道的低点与内芯221第四接口222之间的高度为H,而水箱300第三接口303与内芯221的第三接口303之间的高度为H。在相对位置H>H时,且软质水袋处于T1阶段时,外部空气会通过气路管道进入软质水袋内,软质水袋内空气压力与外部大气压力相等,水袋内的水通过其自身重力结过水路管道流入水箱300内,以达到软质水袋水放干净的目的,避免出现残余水。
一些实施例中,如图11所示,饮水设备还包括空气净化件500,空气净化件500与第一接口301相连。从上述工作状态可以看出,第一接口301始终打开并与大气相连,大气中具有较多的灰尘和细菌等,在大气和第一接口301之间设置空气净化件500,无论是水箱300中的空气排向大气或是大气中的空气进入水箱300后进入水袋,都会被净化,更加安全卫生。
一个具体实施例中,空气净化件500包括空气过滤结构和杀菌结构,所述空气过滤结构与所述杀菌结构串接连接。众所周知,空气中具有大量的灰尘和细菌等,通过设置空气过滤结构,可以将空气中的灰尘过滤,杀菌结构可以将空气中的细菌等杀灭,从而进入水箱300内的空气干净卫生,用户饮用时也可以放心。其中,杀菌结构可以是高温杀菌也可以是紫外杀菌等。
一些实施例中,结合图10和图11所示,第一接口301设于水箱300的顶壁上,饮水设备还包括防溢流浮球325,防溢流浮球325设于第一接口301的正下方并适于关闭和打开第一接口301。防溢流浮球325是控制从水箱300与外部空气联通的开关;正常使用时,其是由防溢流浮球325自身重力下垂,保持水箱300与外部空气相通;若水位检测件401失效时,水箱300水位上升,防溢流浮球325相应会上升,当达到防溢流浮球325液面时,防溢流浮球325与密封顶部第一接口301,以达到防止水溢流至外部的目的,起到保护的作用,因此更加安全。需要说明的是,防溢流浮球325为一种失效保护措施,正常使用中不会启动此装置。
如图10和图11、图13和图17所示,该饮水设备大体可以包括:机体100、水箱300、聪明座组件200和开关组件400。
具体而言,如图11所示,机体100顶壁具有安装口111。水箱300设在机体100内,水箱300具有第一接口301、第二接口302、第三接口303和出水口304,第一接口301和第二接口302均设在水箱300上部,第一接口301适于连通外部空间。聪明座组件200设 在机体100上,且聪明座组件200的顶部敞开,且聪明座组件200的顶部周沿与安装口111的内周沿密封配合,聪明座组件200具有第四接口222和第五接口224,第四接口222与第二接口302相连,第五接口224与第三接口303相连,且第五接口224设于聪明座组件200的底部并不低于第三接口303。
开关组件400包括水位检测件401和开关件402,所述水位检测件401设于所述水箱300内以检测所述水箱300内的水位,所述开关件402与所述第二接口302和所述第三接口303相连以在所述水箱300内的水位不低于预定值时关闭所述第二接口302和所述第三接口303。
也就是说,聪明座组件200安装于安装口111,且聪明座组件200与安装口111之间具有密封结构,可以防止水流进饮水设备内部,更加安全。其中,聪明座组件200上可以连接水源,水源可以为硬质水桶、软水袋800等,本实施例中以聪明座组件200上连接软水袋800为例。
进一步地,聪明座组件200具有第四接口225和第五接口226,第五接口226可以设在聪明座组件200的底部,例如,如图10中所示示例,第五接口226在竖直方向上的高度不低于第三接口303,此外,第四接口225与第二接口302之间通过进气管相连,第五接口226与第三接口303之间通过出水管相连,同时,进气管与出水管之间通过连接管连通。
可以理解的是,随着软水袋800内的水不断减少,软水袋800内的水压与水箱300内的气压的压强差也不断发生变化,根据软水袋800内的水压与水箱300内的气压的不断变化的压强差,本申请中的饮水设备的工作过程大体可以分为三个阶段:
如图19和60所示,T1阶段:由于软水袋800与水箱300内水位压差高,水袋中的水经过聪明座组件200的第四接口222后流经水箱300的第二接口302向水箱300内加水,并且,水袋中的水还会经过聪明座组件200的第五接口224后流经水箱300的第三接口303向水箱300内加水,水箱300内水位上升,空气被挤出,水箱300内的空气都通过联通大气的第一接口301排出,直到水位检测件401检测到液面处于预定位置时,开关组件400关闭第二接口302和第三接口303。
如图20和61所示,T2阶段:当饮水设备正常使用时,软水袋800里的水会慢慢变少,接近T2阶段时,软水袋800与水箱300内的压差也渐渐变小,聪明座组件200的第四接口222和水箱300的第二接口302之间就不再会有水流过,水主要通过第五接口224和第三接口303向水箱300内补水。水箱300内水位上升,空气被挤出,水箱300内的空气都通过联通大气的第一接口301排出,直到水位检测件401检测到液面处于预定位置时,开关组件400关闭第二接口302和第三接口303。
如图21和62所示,T3阶段:当软水袋800里的水还剩下接近T2阶段时,水袋和水 箱300内的压强出现负压,第五接口224的出水量会因负压现象慢慢减少,当达到时临界时,外部空气通过第一接口301进入水箱300内,进入水箱300内的空气经过第二接口302通向第四接口222后被软水袋800内的负压所吸入,从而空气可进入软水袋800内。因软水袋800内的压强恢复,剩余的水通过第五接口224和第三接口303可补入水箱300内。水箱300内水位上升,空气被挤出,水箱300内的空气都通过联通大气的第一接口301排出,直到水位检测件401检测到液面处于预定位置时,开关组件400关闭第二接口302和第三接口303。或者,水箱300内的液面还未到达预定位置,水袋中的水已经排净,此时,开关组件400无需关闭第二接口302和第三接口303。这样,水袋内的可以排净。
可以看出,饮水设备在工作过程中,第一接口301一直处于打开状态,也就是说,水箱300一直与大气连通。并且,第二接口302和第四接口222既可以通气又可以通水,第三接口303和第五接口224只通水。
另外,出水口304处具有出水阀502,出水口304可以与饮水龙头503连接也可与加热装置504或制冷装置连接等。
由此,根据本公开实施例的饮水设备,通过设置聪明座组件200,聪明座组件200上设置第四接口222和第五接口224,并且第四接口222与水箱300的第二接口302相连,第五接口224与水箱300的第三接口303相连,可以利用水箱300与水袋内的压力差将水袋中的水排净,避免资源浪费。
一些实施例中,水箱300的顶壁不高于聪明座组件200的上边沿且不低于聪明座组件200的下边沿。水箱300的顶壁不高于聪明座组件200的上边沿可以让水袋中的水有足够的压强将水箱300中的水补充到预订液面,而不至于水压不够,导致水箱300中的水不足的情况出现;水箱300的顶壁不低于聪明座组件200的下边沿,也即聪明座组件200的下边沿高于水箱300的顶壁或与水箱300的顶壁等高,这样,水箱300和聪明座组件200之间并非一定要设置为上下正对的形式,也可以是在水平方向上间隔预定距离布置,聪明座组件200也无需伸进水箱300内部,使聪明座组件200的布置方式多样。
一些具体实施例中,如图11、图12、图14、图15、和图19所示,第一接口301和第二接口302均设于水箱300的顶壁,且第三接口303设于水箱300的下部。第一接口301与外界连通用于向水箱300内补气或将水箱300内的气体排出,因此将第一接口301设置于水箱300的顶壁。在水压充足时,第二接口302向水箱300内补水,第二接口302在水压不足时,需要向水袋内充气,将第二接口302设置于水箱300的顶壁而不是底壁,可以避免水袋内的水压不够时第二接口302无法向水袋内充气的情况出现。而且,可以理解的是,当第二接口302位于水箱300侧壁或底壁时,可能会出现水袋内的水压不足时水箱300内液面高于第二接口302的情况,也即液面高度高于第二接口302的高度,此时,也无法 通过第二接口302向水袋内充气,还浪费了水箱300的内部空间。此外,第三接口303位于水箱300的下部,第三接口303只负责向水箱300内部进水,最优选地,第三接口303位于水箱300的底壁或侧壁的底部,当然,第三接口303也可位于水箱300侧壁的中间位置、中下位置等。
一个具体实施例中,如图23所示,预定值高于第五接口224。常规的上置水袋的饮水产品设计中,水箱300的液面预定值一般都比聪明座组件200出水口304位置也即第五接口224低,这样,整机结构空间较大,而且也不易将水排净。本结构将第五接口224至水箱300底部高度设置为H,将水箱300液面至水箱300底部高度设置为H。本装置正常情况下,也即H>H的状态下,在重力、水压的驱使下,其出水口304的出水流量较大,随着水箱300内水量的减少,可能会出现H<H的情况,此时,水压不够,出水口304的出水流量会逐渐减小。
一些实施例中,如图10结合图11所示,水位检测件401为上下可浮动地设于水箱300内的浮球,开关件402包括转动轴403和阀芯404。转动轴403的一端可转动地与水箱300相连,且转动轴403的另一端与所述浮球相连。阀芯404与转动轴403相连并与转动轴403的旋转中心错开,阀芯404适于打开和关闭第二接口302和第三接口303。
其中,参照图18和图19,浮球随着水箱300内液面的升降而上下浮动,浮球漂浮于水面上。浮球与转动轴403的所述另一端相连,转动轴403的所述一端与水箱300可转动地相连,浮球跟随液面上下浮动时,转动轴403在浮球的带动下发生转动。由于阀芯404与转动轴403的旋转中心错开,转动轴403在旋转的过程中带动阀芯404运动。可以理解的是,随着液面的上升,浮球上升带动转动轴403、转动轴403带动阀芯404逐渐封闭第二接口302和第三接口303。随着液面的下降,浮球下降带动转动轴403、转动轴403带动阀芯404逐渐打开第二接口302和第三接口303。这样,可以不依靠电子设备即可自动完成水箱300内的补水。
可选地,如图10和图11所示,开关件402包括与第二接口302和第三接口303一一对应的两个,两个开关件402连接同一个水位检测件401。也就是说,可以仅依靠一个浮球同时连接两个转动轴403,转动轴403连接两个阀芯404,两转动轴403随着浮球同步转动以同时驱动阀芯404打开或关闭第二接口302和第三接口303。当然,上述实施例仅是示意性的,并不能理解为对本公开保护范围的限制,例如,开关件402和水位检测件401都为一个,此时,阀芯404足够大,可以同时打开和关闭第二接口302和第三接口303。优选地,开关组件400包括与第二接口302和第三接口303一一对应的两个,每个开关组件400均包括水位检测件401和开关件402,开关件402和水位检测件401都为两个,可以相互独立的打开和关闭第二接口302和第三接口303。
一些具体实施例中,如图14、图15和图18所示,水箱300的内壁面上设有分别与第二接口302和第三接口303连通的两个第二进出口313(图中未示出),阀芯404可移动地设于对应的所述第二进出口313内。有利地,容纳槽是在上下方向上沿竖向布置的。换言之,转动轴403的转动带动阀芯404上下移动,阀芯404在容纳槽内的移动可以打开和封闭第二接口302和第三接口303。
进一步地,如图10、图14、图15和图18所示,阀芯404上设有阀芯密封垫405。阀芯密封垫405设于阀芯404的顶部,阀芯密封垫405随着阀芯404的上下移动而上下移动,阀芯密封垫405适于密封第二接口302和第三接口303。其中,阀芯密封垫405可以是橡胶材质,使密封更加严密。
一些实施例中,如图10、图14、图16、图18和图19所示,所示,聪明座组件200包括机体座223和内芯221,机体座223呈顶部敞开的壳体330形状,第五接口224设于机体座223的底壁上。内芯221为中空结构并沿上下方向延伸,且内芯221的至少一部分伸入机体座223内,第四接口222设于内芯221上。其中,机体座223还包括环形周壁,所述底壁封闭环形周壁的下边沿。第五接口224设于所述底壁上,也就是说第五接口224位于水袋的下方,可以保证水袋中的水能完全流出。内芯221的一部分伸入壳座内,内芯221的伸出部分可以用于刺穿水袋的接头部位,使水袋连接于聪明座组件200上,内芯221的伸出部分便伸进水袋内。由于第四接口222设于内芯221上,内芯221为中空结构,中空结构的内芯221可以用来通水或通气,具体来说,水袋内的水可以从第四接口222进入内芯221,顺着中空管道进入第二接口302,或者,水箱300内的空气进入第二接口302后进入内芯221的中空管道后从第四接口222进入水袋内,增大水袋内的压强。
进一步地,如图10、图14、图16和图18所示,内芯221内设有进气柱,进气柱的上端延伸至第四接口222,进气柱的下端伸出内芯221并连接第二接口302。进气柱连通第二接口302和第四接口222,需要说明的是,进气柱不仅可以进气,还可以进水,进气柱为脆弱的部件,将进气柱设置于内芯221的中空结构内,可以保护进气柱。
有利地,第四接口222高于第五接口224。可以理解的是,第四接口222还具有向水袋内进气的功能,将第四接口222设置成高于第五接口224,在水压不够时,第四接口222先于第五接口224达到压力不足的临界值,优先进气,优选地,当水袋与聪明座组件200连接时,第四接口222位于水袋内,方便进气。当然,第四接口222与第五接口224的高低并不受限制,例如第四接口222与第五接口224也可以等高,换言之,第四接口222与第五接口224都设于聪明座组件200的底壁上;或者第四接口222低于第五接口224,例如第五接口224向上凸起,第四接口222设于底壁上。
具体而言,如图22所示,第二接口302和第四接口222之间设为气路管道,第三接口 303与第五接口224只件设为水路管道,水箱300连接聪明座组件200气路管道的低点与内芯221第四接口222之间的高度为H,而水箱300第三接口303与内芯221的第三接口303之间的高度为H。在相对位置H>H时,且软质水袋处于T1阶段时,外部空气会通过气路管道进入软质水袋内,软质水袋内空气压力与外部大气压力相等,水袋内的水通过其自身重力结过水路管道流入水箱300内,以达到软质水袋水放干净的目的,避免出现残余水。
一些实施例中,如图11所示,饮水设备还包括空气净化件500,空气净化件500与第一接口301相连。从上述工作状态可以看出,第一接口301始终打开并与大气相连,大气中具有较多的灰尘和细菌等,在大气和第一接口301之间设置空气净化件500,无论是水箱300中的空气排向大气或是大气中的空气进入水箱300后进入水袋,都会被净化,更加安全卫生。
一个具体实施例中,空气净化件500包括空气过滤结构和杀菌结构,所述空气过滤结构与所述杀菌结构串接连接。众所周知,空气中具有大量的灰尘和细菌等,通过设置空气过滤结构,可以将空气中的灰尘过滤,杀菌结构可以将空气中的细菌等杀灭,从而进入水箱300内的空气干净卫生,用户饮用时也可以放心。其中,杀菌结构可以是高温杀菌也可以是紫外杀菌等。
一些实施例中,结合图10和图11所示,第一接口301设于水箱300的顶壁上,饮水设备还包括防溢流浮球325,防溢流浮球325设于第一接口301的正下方并适于关闭和打开第一接口301。防溢流浮球325是控制从水箱300与外部空气联通的开关;正常使用时,其是由防溢流浮球325自身重力下垂,保持水箱300与外部空气相通;若水位检测件401失效时,水箱300水位上升,防溢流浮球325相应会上升,当达到防溢流浮球325液面时,防溢流浮球325与密封顶部第一接口301,以达到防止水溢流至外部的目的,起到保护的作用,因此更加安全。需要说明的是,防溢流浮球325为一种失效保护措施,正常使用中不会启动此装置。
换言之,当水位检测件401可以在水箱300内水位作用下向上浮动,当水位检测件401检测到的水位达到预定值时(即水箱300内水位达到预设高度),开关件402与水位检测件401产生联动,并在水位检测件401带动下封闭第二接口302和第三接口303,从而,避免水箱300内继续进水而溢出,进而产生安全隐患,而当水位检测件401检测的水位未达到预定值时(即水箱300内水位未达到预设高度),此时,水位检测件401在水位带动下向下浮动以打开第二接口302和第三接口303,此时,可以软水袋800中的水可以继续向水箱300内流入。
如图10和图28,在本公开的一些实施例中,第三接口303在竖直方向上的高度低于 第二接口302在竖直方向上的高度,并且,第三接口303在竖直方向上的高度低于第一接口301在竖直方向上的高度。
进一步地,如图28所示,第一接口301和第二接口302均设于水箱300的顶壁,且第三接口303设于水箱300的下部。第一接口301与外界连通用于向水箱300内补气或将水箱300内的气体排出,因此将第一接口301设置于水箱300的顶壁。在水压充足时,第二接口302向水箱300内补水,第二接口302在水压不足时,需要向水袋内充气,将第二接口302设置于水箱300的顶壁而不是底壁,可以避免水袋内的水压不够时第二接口302无法向水袋内充气的情况出现。而且,可以理解的是,当第二接口302位于水箱300侧壁或底壁时,可能会出现水袋内的水压不足时水箱300内液面高于第二接口302的情况,也即液面高度高于第二接口302的高度,此时,也无法通过第二接口302向水袋内充气,还浪费了水箱300的内部空间。此外,第三接口303位于水箱300的下部,第三接口303只负责向水箱300内部进水,最优选地,第三接口303位于水箱300的底壁或侧壁的底部,当然,第三接口303也可位于水箱300侧壁的中间位置、中下位置等。
一些实施例中,如图10结合图28所示,水位检测件401为上下可浮动地设于水箱300内的浮球,开关件402包括转动轴403和阀芯404。转动轴403的一端可转动地与水箱300相连,且转动轴403的另一端与所述浮球相连。阀芯404与转动轴403相连并与转动轴403的旋转中心错开,阀芯404适于打开和关闭第二接口302和第三接口303。
其中,参照图28,浮球随着水箱300内液面的升降而上下浮动,浮球漂浮于水面上。浮球与转动轴403的所述另一端相连,转动轴403的所述一端与水箱300可转动地相连,浮球跟随液面上下浮动时,转动轴403在浮球的带动下发生转动。由于阀芯404与转动轴403的旋转中心错开,转动轴403在旋转的过程中带动阀芯404运动。可以理解的是,随着液面的上升,浮球上升带动转动轴403、转动轴403带动阀芯404逐渐封闭第二接口302和第三接口303。随着液面的下降,浮球下降带动转动轴403、转动轴403带动阀芯404逐渐打开第二接口302和第三接口303。这样,可以不依靠电子设备即可自动完成水箱300内的补水。
可选地,如图10所示,开关件402包括与第二接口302和第三接口303一一对应的两个,两个开关件402连接同一个水位检测件401。也就是说,可以仅依靠一个浮球同时连接两个转动轴403,转动轴403连接两个阀芯404,两转动轴403随着浮球同步转动以同时驱动阀芯404打开或关闭第二接口302和第三接口303。当然,上述实施例仅是示意性的,并不能理解为对本公开保护范围的限制,例如,开关件402和水位检测件401都为一个,此时,阀芯404足够大,可以同时打开和关闭第二接口302和第三接口303。优选地,开关组件400包括与第二接口302和第三接口303一一对应的两个,每个开关组件400均包 括水位检测件401和开关件402,开关件402和水位检测件401都为两个,可以相互独立的打开和关闭第二接口302和第三接口303。
一些具体实施例中,如图28所示,水箱300的内壁面上设有分别与第二接口302和第三接口303连通的两个第二进出口3131,阀芯404可移动地设于对应的所述第二进出口3131内。有利地,容纳槽是在上下方向上沿竖向布置的。换言之,转动轴403的转动带动阀芯404上下移动,阀芯404在容纳槽内的移动可以打开和封闭第二接口302和第三接口303。
进一步地,如图10所示,阀芯404上设有阀芯密封垫405。阀芯密封垫405设于阀芯404的顶部,阀芯密封垫405随着阀芯404的上下移动而上下移动,阀芯密封垫405适于密封第二接口302和第三接口303。其中,阀芯密封垫405可以是橡胶材质,使密封更加严密。
如图28,在本公开的一些实施例中,饮水设备还包括防溢流浮球325组件,防溢流浮球325组件随水箱300内水位浮动,当水箱300内水位达到预设值时,防溢流浮球325组件上浮以封闭第一接口301,当水箱300内水位低于预设值时,防溢流浮球325组件在重力作用下下沉以打开第一接口301。
进一步地,当第一接口301处于封闭状态时,防溢流浮球325组件的下端高于当第二接口302以及第三接口303处于封闭状态时水位检测件401的下端。
也就是说,防溢流浮球325组件上浮以封闭第一接口301时水箱300内的水位预设值高于水位检测件401上浮以封闭第三接口303时水箱300内的水位预设值,这样,可以避免在开关组件400失效时,水位继续升高而溢出,进而造成饮水设备损坏,达到失效保护作用。
如图10,在本公开的一些实施例中,壳体330设有通气口315,第一接口301形成于通气口315内,通气口315的下边缘形成环形凸缘307,防溢流浮球325组件包括防溢流浮球325、防溢流阀芯404326和环状密封圈329。
防溢流浮球325形成为密闭的中空结构,例如,如图28中,防溢流浮球325大致形成为中空的圆锥台,防溢流阀芯404326连接于防溢流浮球325的顶端,防溢流阀芯404326的轴线可以与防溢流浮球325的轴芯重合。
环状密封圈329套设在防溢流浮球325的外周缘,当水箱300内的水位达到预设值时,密封圈329在防溢流浮球325带动下向上浮动时与环形凸缘307配合以封闭第一接口301,而当水箱300内的水位未达到预设值时,防溢流浮球325在自重作用下下沉以使得密封圈329与环形凸缘307脱离配合,从而打开第一接口301。
如图10、图28所示,在本公开进一步的示例中,防溢流阀芯404326的顶端设有锥形 凸台327,并且防溢流阀芯404326具有贯通槽328,贯通槽328沿防溢流阀芯404326的长度方向延伸,防溢流阀芯404326由贯通槽328分为间隔开布置的第一阀芯404臂和第二阀芯404臂,这样,既可以保证外部空气通过第一接口301、贯通槽328与水箱300连通,同时,也可以便于将防溢流阀芯404326安装于通气口315内,方便装拆。
如图10,在本公开的一些示例中,第一接口301的侧壁面设有防脱沿308,防脱沿308可以沿第一接口301侧壁周向延伸且形成为环状,防溢流阀芯404326顶端的锥形凸台327与防脱沿308配合可以避免防溢流浮球325组件在自重作用下从通气口315内脱离,从而无法保证失效保护作用。
如图24-图27所示,根据本公开实施例的饮水机,包括:上盖112、聪明座组件200、导通管207和水箱300。
具体而言,上盖112具有一侧表面(即上表面)敞开的进水槽101,进水槽101具有第一进出口114和第一进水口115。聪明座组件200设于进水槽101,聪明座组件200具有聪明头227,聪明头227具有第一通口228和第二通口229。
导通管207设在聪明头227内,导通管207与聪明头227之间限定出过水通道230,过水通道230分别与第一通口228和第一进水口115连通,导通管207内具有分别与第二通口229和第一进出口114连通的进出通道232。
水箱300与聪明座组件200在水平方向上间隔设置,水箱300具有与第一进出口114连通的第二进出口313和与第一进水口115连通的第二进水口314,第二进出口313位于第二进水口314上方。例如,第一进出口114与第二进出口313通过进出管505连通,第一进水口115与第二进水口314通过进水管506连通。
下面参照附图描述根据本公开实施例的饮水机的工作过程。
进水初期,软质水桶内的水能够在自身重力作用下分别从第一通口228进入过水通道230、从第二通口229进入进出通道232,过水通道230中的水依次从第一进水口115、第二进水口314进入水箱300,进出通道232中的水依次从第一进出口114、第二进出口313进入水箱300。
随着软质水桶内的水不断流入水箱300,软质水桶内的负压逐渐增大,当该负压较小时,进出管505内充满水,进出管505内的水和水箱300中的气体暂时不流动;而由于第二进出口313的位置高于第二进水口314的位置,此时进水管506内的水仍会流入水箱300,这样,软质水桶内的负压进一步地增大到一定值后,负压会将气体从水箱300通过进出管505吸入软质水桶(即进出管505内的水被吸回软质水桶),如此,水不断从进水管506进入水箱300,气体不断从进出管505被吸入软质水桶内,实现饮水机的进水。其中,水箱 300内部始终与外界大气连通。
根据本公开实施例的饮水机,通过将水箱300与聪明座组件200沿水平方向间隔设置,可以保证充足的进气量,从而进水顺畅。
在本公开的一些实施例中,如图24所示,进出管505和进水管506连通,这样,进出管505内的水可以直接通过进水管506压入水箱300,从而进出管505内的水的排出速度更快,并且,进出管505可以间断性地向软质水桶内排气。
根据本公开的一些实施例,如图26和图27所示,第一进出口114与第二进出口313位于同一水平面内,或,第一进出口114位于第二进出口313下方。如此,进气量更加充足,进水更加顺畅。
根据本公开的一些实施例,如图24、图26和图27所示,第二进出口313位于水箱300的顶部,第二进水口314位于水箱300的底部,以便提高进水速度,也方便管路连接。进一步地,如图24、图26和图27所示,第二进出口313设在水箱300的顶壁上,第二进水口314设在水箱300的侧壁上,从而管路连接更为方便。
根据本公开的一些实施例,如图24-图26所示,导通管207的顶端设有沿导通管207的径向向外延伸的止挡沿233,聪明头227的内壁面设有止挡台231,止挡沿233止挡于止挡台231,以在聪明头227的轴向(即上下方向)上对导通管207进行定位。例如,止挡沿233沿导通管207的周向延伸。
根据本公开的一些实施例,如图24-图26所示,导通管207的外周面设有密封沿234,密封沿234紧贴于聪明头227的内壁面,且密封沿234具有连通第二通口229和进出通道232的连通孔235。如此,通过第二通口229的水只进出进出通道232,进出管505内的气体只从第二通口229排至软质水桶内。
优选地,如图24-图26所示,密封沿234由止挡沿233的一部分进一步地向下延伸而成,即,密封沿234与止挡沿233为一体件,从而结构简单,便于制造成型。
根据本公开的一些实施例,如图24-图26所示,导通管207的底端设有止挡钩236,聪明头227的内壁面设有止挡槽,止挡钩236钩挂在止挡槽内,从而可以限制导通管207在聪明头227内的移动,装配更加牢靠。例如,止挡钩236为多个,多个止挡钩236在导通管207的径向上相对设置。
根据本公开的一些实施例,如图24-图26所示,导通管207的外周面设有多个定位导流筋237,多个定位导流筋237沿导通管207的周向间隔设置,定位导流筋237位于过水通道230内,每个定位导流筋237由导通管207的外周面延伸至聪明头227的内壁面,从而不仅可以对导通管207进行定位,还可以引导水的流动。有利地,每个定位导流筋237的上端面和下端面被构造成弧形面,以减小流动阻力。
根据本公开的一些实施例,如图26所示,第一进出口114和第一进水口115分别设在进水槽101的底壁上,从而可以简化管路排布,且便于水的流出。
根据本公开的一些实施例,如图26所示,第一进出口114的中心轴线、聪明头227的中心轴线和导通管207的中心轴线重合,以便于流体顺利进出,且方便制造和装配。
根据本公开的一些实施例,如图24-图26所示,饮水机还包括:进气阀芯404319和进气浮球317。进气阀芯404319设于水箱300,进气阀芯404319在第二进出口313内可移动,以打开和关闭第二进出口313。进气浮球317可浮动地设在水箱300内,进气浮球317与进气阀芯404319相连,进气浮球317浮动时带动进气阀芯404319移动以打开和关闭第二进出口313。
具体地,当水箱300的水位未达到进气浮球317时,进气浮球317会下垂摆动并打开第二进出口313;当水箱300的水位达到进气浮球317时,进气浮球317上浮并带动进气阀芯404319封闭第二进出口313,空气无法进入软质水桶内。也就是说,进气浮球317联动进气阀芯404319随着水箱300的进水状态而动态变化。
根据本公开的一些实施例,如图24-图26所示,饮水机还包括:进水阀芯404323和进水浮球321。进水阀芯404323设于水箱300,进水阀芯404323在第二进水口314内可移动。进水浮球321可浮动地设在水箱300内,进水浮球321与进水阀芯404323相连,进水浮球321浮动时带动进水阀芯404323移动以打开和关闭第二进出口313。
具体地,当水箱300的水位未达到进水浮球321时,进水浮球321会下垂摆动并打开第二进水口314;当水箱300的水位达到进水浮球321时,进水浮球321上浮并带动进水阀芯404323封闭第二进水口314,水无法进入水箱300内。也就是说,进水浮球321联动进水阀芯404323随着水箱300的进水状态而动态变化。
根据本公开的一些实施例,如图24-图26所示,水箱300设有与外界连通的通气口305,饮水机还包括:防溢阀芯507404和防溢流浮球325。防溢阀芯507404设于水箱300,防溢阀芯507404在通气口305内可移动。防溢流浮球325可浮动地设在水箱300内,防溢流浮球325与防溢阀芯507404相连,防溢流浮球325浮动时带动防溢阀芯507404移动以打开和关闭通气口305。
饮水机正常使用时,防溢流浮球325在自身重力作用下下垂,以保持水箱300与外部空气相通;若进水浮球321与进气浮球317均失效时,水箱300的水位上升,防溢流浮球325相应会上升,直到防溢流浮球325带动防溢阀芯507404关闭通气口305,达到防止水溢流至外部的目的。
需要说明的是,防溢流浮球325和防溢阀芯507404属于失效保护装置,饮水机在正常使用中不会启动此装置。
如图28-图32所示,根据本公开实施例的饮水设备的水箱300组件包括壳体330、进水浮球321组件320、进气浮球317组件316和防溢流浮球325组件。
壳体330限定出容纳腔,壳体330设有第二接口302、第三接口303和第一接口301,第二接口302、第三接口303分别与容纳腔连通,容纳腔通过第一接口301与大气连通,并且,第二接口302在竖直方向上的高度高于第三接口303在竖直方向上的高度,且第一接口301在竖直方向上的高度高于第三接口303在竖直方向上的高度,饮水设备的聪明座组件200的进气通道与第二接口302连通,饮水设备的聪明座组件200的出水通道与第三接口303连通,这样,聪明座组件200内的水可以通过出水通道流入容纳腔内,容纳腔的空气可以通过进气通道进入聪明座组件200。
进水浮球321组件320设在容纳腔内,进水浮球321组件320随容纳腔内水位浮动,当容纳腔内水位达到预设值时,进水浮球321组件320上浮以封闭第三接口303,当容纳腔内水位低于预设值时,进水浮球321组件320在重力作用下下沉以打开第三接口303。
进气浮球317组件316设在容纳腔内,进气浮球317组件316随容纳腔内水位浮动,当容纳腔内水位达到预设值时,进气浮球317组件316上浮以封闭第二接口302,当容纳腔内水位低于预设值时,进气浮球317组件316在重力作用下下沉以打开第二接口302。
防溢流浮球325组件设在容纳腔内,防溢流浮球325组件随容纳腔内水位浮动,当容纳腔内水位达到预设值时,防溢流浮球325组件上浮以封闭第一接口301,当容纳腔内水位低于预设值时,防溢流浮球325组件在重力作用下下沉以打开第一接口301。
同时,当第一接口301处于封闭状态时,防溢流浮球325组件的下端高于当第三接口303处于封闭状态时进水浮球321组件320的下端,并且,当第一接口301处于封闭状态时,防溢流浮球325组件的下端高于当第二接口302处于封闭状态时进气浮球317组件316的下端。
也就是说,防溢流浮球325组件上浮以封闭第一接口301时容纳腔内的水位预设值高于进水浮球321组件320上浮以封闭第三接口303时容纳腔内的水位预设值,并且,防溢流浮球325组件上浮以封闭第一接口301时容纳腔内的水位预设值高于进气浮球317组件316上浮以封闭第二接口302时容纳腔内的水位预设值,这样,可以避免在进水浮球321组件320和进气浮球317组件316同时失效时,水位继续升高而溢出,进而造成饮水设备损坏,达到失效保护作用。
由此,根据本公开实施例的饮水设备的水箱300组件,通过在水箱300的容纳腔内设置防溢流浮球325组件,并且当第一接口301处于封闭状态时,防溢流浮球325组件的下 端高于第三接口303处于封闭状态时进水浮球321组件320下端,并且高于第二接口302处于封闭状态时进气浮球317组件316的下端,从而使得当进水浮球321组件320和进气浮球317组件316均失效时,随着容纳腔内水位继续升高,防溢水浮球组件会随之上浮,当水位达到防溢流浮球325液面时封闭第一接口301,进而阻止水流溢出至壳体330外,避免由于溢水而造成的损坏,达到失效保护作用,有效地降低安全隐患、提高饮水设备的可靠性。
如图28,在本公开的一些实施例中,当第三接口303处于封闭状态时进水浮球321组件320的下表面与当第二接口302处于封闭状态时进气浮球317组件316的下表面齐平。
也就是说,进水浮球321组件320上浮以封闭第三接口303时容纳腔内的水位预设值等于进气浮球317组件316上浮以封闭第二接口302时容纳腔内的水位预设值。
如图28、图30和图32所示,在本公开的一些示例中,进水浮球321组件320包括进水浮球321、第一连接杆322和进水阀芯404323,进水浮球321形成为密闭的中空结构,例如,如图28中,进水浮球321可以大致形成为长方体,第一连接杆322的一端与进水浮球321相连,另一端与壳体330铰接,也就是说,第一连接杆322可以绕第一连接杆322与壳体330铰接点转动。
进水阀芯404323与第一连接杆322相连,并且,进水阀芯404323和第一连接杆322的连接处与第一连接杆322的旋转中心(铰接点)错开,进水浮球321在容纳腔内水位的作用下上浮和下沉以封闭和打开第三接口303。
如图28,在本公开的进一步示例中,壳体330具有出水槽,第三接口303设于出水槽内,并且,进水阀芯404323与出水槽的形状适配,这样,当进水阀芯404323与进水浮球321产生联动时,可以保证进水阀芯404323与出水槽之间的配合,提高二者配合的可靠性。
如图28,在本公开进一步的示例中,进水浮球321组件320还包括进水密封垫324,进水密封垫324设于进水阀芯404323顶端,例如,进水密封垫324可以具有插头,进水阀芯404323顶端设有插座,进水密封垫324与进水阀芯404323之间通过插头与插座之间插接配合实现连接,由此,可以保证进水阀芯404323封闭第三接口303的密闭性。
如图28,在本公开的一些实施例中,壳体330设有通气口315,第一接口301形成于通气口315内,通气口315的下边缘形成环形凸缘307,防溢流浮球325组件包括防溢流浮球325、防溢流阀芯404326和环状密封圈329。
防溢流浮球325形成为密闭的中空结构,例如,如图28中,防溢流浮球325大致形成为中空的圆锥台,防溢流阀芯404326连接于防溢流浮球325的顶端,防溢流阀芯404326的轴线可以与防溢流浮球325的轴芯重合。
环状密封圈329套设在防溢流浮球325的外周缘,当容纳腔内的水位达到预设值时, 密封圈329在防溢流浮球325带动下向上浮动时与环形凸缘307配合以封闭第一接口301,而当容纳腔内的水位未达到预设值时,防溢流浮球325在自重作用下下沉以使得密封圈329与环形凸缘307脱离配合,从而打开第一接口301。
如图28所示,在本公开进一步的示例中,防溢流阀芯404326的顶端设有锥形凸台327,并且防溢流阀芯404326具有贯通槽328,贯通槽328沿防溢流阀芯404326的长度方向延伸,防溢流阀芯404326由贯通槽328分为间隔开布置的第一阀芯404臂和第二阀芯404臂,这样,既可以保证外部空气通过第一接口301、贯通槽328与容纳腔连通,同时,也可以便于将防溢流阀芯404326安装于通气口315内,方便装拆。
如图28,在本公开的一些示例中,第一接口301的侧壁面设有防脱沿308,防脱沿308可以沿第一接口301侧壁周向延伸且形成为环状,防溢流阀芯404326顶端的锥形凸台327与防脱沿308配合可以避免防溢流浮球325组件在自重作用下从通气口315内脱离,从而无法保证失效保护作用。
如图28、图31所示,在本公开的一些示例中,进气浮球317组件316包括进气浮球317、第二连接杆318和进气阀芯404319,进气浮球317形成为密闭的中空结构,例如,如图28中,进气浮球317可以大致形成为长方体,第二连接杆318的一端与进气浮球317相连,另一端与壳体330铰接,也就是说,第二连接杆318可以绕第二连接杆318与壳体330铰接点转动。
进气阀芯404319与第二连接杆318相连,并且,进气阀芯404319和第二连接杆318的连接处与第二连接杆318的旋转中心(铰接点)错开,进气浮球317在容纳腔内水位的作用下上浮和下沉以封闭和打开第二接口302。
根据本公开实施例的饮水设备,通过利用根据本公开的第一方面的实施例所述的饮水设备的水箱300组件,具有结构简单、安全可靠等优点。
需要说明的是,如图14所示,第四接口222指代内芯221与水袋接触的进气接口或者出水接口,并非指内芯221与第二接口302的连接接口。
有利地,第四接口222高于第五接口224。可以理解的是,第四接口222还具有向水袋内进气的功能,将第四接口222设置成高于第五接口224,在水压不够时,第四接口222先于第五接口224达到压力不足的临界值,优先进气,优选地,当水袋与聪明座组件200连接时,第四接口222位于水袋内,方便进气。当然,第四接口222与第五接口224的高低并不受限制,例如第四接口222与第五接口224也可以等高,换言之,第四接口222与第五接口224都设于聪明座组件200的底壁上;或者第四接口222低于第五接口224,例如第五接口224向上凸起,第四接口222设于底壁上。
另外,本申请中的出水口304适于连接开关结构,可以设置成仅在需要用水时才打开。 因此,在通常情况下,水箱300仅有第一接口301连通外界空气,而其它的接口并不与大气连通。当然,需要说明的是,在出水口304打开时,如果水箱300内的水位没有淹没出水口304,出水口304也是连通外界空气的。因此,本公开中水箱300仅有第一接口301连通外界空气,应当是通常情况下,水箱300仅有第一接口301连通外界空气。也就是说,将储水容器内存水注入水箱300时,将通过第一接口301平衡储水容器内外气压。其中,本公开的通常情况不包括:聪明座组件200上未放置储水容器;水箱300为空且出水口304打开。
因此,本公开中提供了一些具体的示例来实现出水口304的开闭。
一些实施例中,饮水设备还包括水龙头503,水龙头503与水箱300的出水口304相连。这样,水龙头503拧紧时,出水口304不向外排水,拧开水龙头503,水箱300中的水通过出水口304向外出水,用户可以用盛水容器(例如水杯、水壶等)盛装后直饮常温水或作其它用途。
一些可选实施例中,饮水设备还包括开关阀508,开关阀508与水箱300的出水口304相连。开关阀508打开,出水口304向外出水,开关阀508关闭,出水口304无法向外出水。其中,开关阀508可以连接其它装置,例如加热容器509、制冷容器、苏打水制作容器等,另外,开关阀508也可以是上述水龙头503,打开开关阀508(也即打开水龙头503)即可向外出水。
进一步地,饮水设备还包括加热容器509,加热容器509与开关阀508相连。这样,打开开关阀508,水箱300中的水从出水口304流向加热容器509,通过加热容器509加热水,可以使用户饮用到热水。
如图33-图47所示,根据本公开实施例的饮水设备的上门体601组件600包括壳体330、上门体601和锁止件604。
上门体601可枢转地与壳体330相连,壳体330内形成有接水槽,接水槽内可以设有与饮水设备的出水通道相连的出水阀502,用户可以根据需要打开或关闭上门体601,当用户打开上门体601时,可以将水杯或水壶放置在接水槽的出水阀502下接入饮用水,例如热水或冷水。
上门体601设有滑槽602,锁止件604可滑动地设于滑槽602中,并且与滑槽602配合以在锁止状态(如图39和图45所示)和解锁状态(如图40和图46所示)之间切换,例如,当锁止件604位于如图39中所示位置时,锁止件604处于锁止状态时,上门体601锁止在壳体330上,从而利用上门体601关闭壳体330内的接水槽,进而提高用户使用饮水设备的安全性,例如,避免儿童等意外打开热水出水阀502,产生安全隐患;
当锁止件604位于如图40中所示位置时,锁止件604处于解锁状态时,这样用户可以打开上门体601以便于接水。
进一步地,上门体601设有卡槽210,卡槽210与滑槽602连通,例如,卡槽210和滑槽602可以一体成型,当锁止件604滑入卡槽210时(如图41和图47所示),锁止件604被保持在解锁状态,换言之,锁止件604此时处于保持解锁状态,由此,用户可以根据实际需要选择锁止状态、解锁状态以及保持解锁状态,从而提高用户使用的便利性。
由此,根据本公开实施例的饮水设备的上门体601组件600,通过设置锁止件604、滑槽602以及卡槽210,使得锁止件604可以在锁止状态和解锁状态之间切换,从提高饮水设备的使用安全性,同时,通过设置卡槽210,使得上门体601可以被保持在解锁状态,这样,使得用户可以根据实际需要选择锁止状态、解锁状态和保持解锁状态,从而提高用户使用饮水设备时的便利性。
如图39-图41、图45-图47所示,在本公开的一些实施例中,滑槽602的长度方向与卡槽210的长度方向垂直,这样,当锁止件604在滑槽602以及卡槽210内滑动时,可以保证锁止件604与滑槽602、卡槽210配合的流畅性。
如图33-图35所示,在本公开的一些实施例中,锁止件604包括锁座605、锁头607、拨杆610和弹性件613,锁座605设于上门体601,例如,在图33中所示示例中,锁座605可以设于上门体601的上部,锁座605设有导槽606,锁头607可移动地设在导槽606内,锁头607设有拨杆槽608,拨杆610可移动地设在拨杆槽608内并且可滑动地与滑槽602配合。
其中,导槽606的长度方向与滑槽602的长度方向平行,拨杆槽608的长度方向与卡槽210的长度方向平行,也就是说,导槽606与滑槽602平行布置,拨杆槽608与卡槽210平行布置,例如,在图33所示示例中,导槽606可以沿上门体601宽度方向延伸,拨杆槽608沿上门体601的厚度方向延伸,当锁止件604处于锁止状态时(如图39和图45所示),锁头607钩挂在壳体330上以使得上门体601与壳体330之间被锁止,当锁止件604处于解锁状态时(如图40和图46所示),锁头607脱离壳体330,从而可以打开上门体601。
进一步地,弹性件613设在锁头607和锁座605之间,从而使得锁头607在弹性件613的弹力常推动作用下与壳体330配合,使得锁止件604被保持在锁止状态(如图39和图45所示),当拨杆610滑入卡槽210时(如图41和图46所示),拨杆610受到卡槽210边缘的限位作用,从而客服弹性件613的弹力,使得锁止件604被保持在解锁状态,也就是说,此时,锁止件604处于保持解锁状态,从而方便用户随时打开上门体601。
如图34、图46、图47所示,在本公开的一些示例中,锁头607设有锁钩609,壳体330设有卡板116,当锁止件604处于锁止状态时(如图45所示),锁钩609与卡板116钩 挂配合,从而使得上门体601被锁止在壳体330上,降低安全隐患,而当锁止件604处于解锁状态时(如图46所示),锁钩609与卡板116脱离配合,这时,用户可以打开上门体601,以实现接水等操作。
如图33-图34所示,在本公开的一些示例中,拨杆610包括滑块612和拨杆头611,滑块612设在拨杆槽608内,并且在拨杆槽608内移动,滑块612的上端依次伸出拨杆槽608和滑槽602,滑块612的伸出滑槽602的一端设有拨杆头611,这样,既可以方便锁止件604的装配,又便于用户操作拨杆610以切换锁止状态和解锁状态。
如图34,在本公开的一些示例中,锁座605设有第一支撑部614和第二支撑部616,第一支撑部614和第二支撑部616分别位于导槽606的两侧,即导槽606形成于第一支撑部614和第二支撑部616之间,弹性件613的一端止抵第一支撑部614的内侧壁,另一端止抵锁头607的侧壁。
如图34和图35,在本公开进一步的示例中,第一支撑部614具有第一空腔,第二支撑部616具有第二空腔,从而减少锁止件604的重量,第一空腔内设有第一螺栓轴套615,第二空腔内设有第二螺栓轴套617,锁座605通过第一螺栓与第一螺栓轴套615、第二螺栓与第二螺栓轴套617配合,从而既可以实现将锁止件604安装于上门体601,又可以保证连接的稳固性。
如图33,在本公开的一些示例中,拨杆槽608形成为T形槽,滑块612的底端设有凸台,凸台与拨杆槽608形状和尺寸适配,例如,如图33中所示,拨杆槽608形成为倒T形槽,滑块612的纵截面形成为正T形,这样,既可以利用拨杆槽608与滑块612配合以保证滑块612可以设置拨杆槽608内,同时,也可以保证滑块612在拨杆槽608内沿其长度方向自由滑动,从而实现拨杆610与卡槽210限位配合。
在本公开的一些实施例中,滑槽602和卡槽210可以形成为一体槽,一体槽的横截面可以形成为L型(如图33所示示例),也可以形成为T型。
根据本公开的第二方面的实施例提出一种饮水设备,所述饮水设备包括根据本公开的第一方面的实施例所述的饮水设备的上门体601组件600。
根据本公开实施例的饮水设备,通过利用根据本公开的第一方面的实施例所述的饮水设备的上门体601组件600,具有结构简单、使用便利、安全可靠等优点。
如图33和48所示,根据本公开实施例的门体组件600,还包括包括:下门体619。进水槽101设在机体100上,机体100内限定有间隔开设置的上腔和下腔。上上门体601安装在机体100上,上上门体601可以是可枢转地安装在机体100上,随着上上门体601的枢转打开或关闭上腔。下门体619安装在机体100对应下门体619的位置,例如,下门体 619可以是可枢转地安装在机体100上,随下门体619的转动打开或关闭下腔。上上门体601与下门体619上下相对设置,也就是说,下门体619可以设置在下门体619的正下方。
其中,下门体619上设有第一锁止机构620,第一锁止机构620可在第一位置和第二位置之间运动,机体100上可以设有卡槽210或卡孔,第一锁止机构620位于第一位置时,第一锁止机构620可以卡接在卡槽210或卡孔内,下门体619被锁止并关闭下腔。第一锁止机构620位于第二位置时,第一锁止机构620从卡槽210或卡孔内脱离,第一锁止机构620解锁,下门体619可枢转进而打开下腔。
由此,根据本公开的用于饮水设备的门体组件600,通过在下门体619上设置第一锁止机构620,将饮水设备的备用水箱300或水袋防止在下腔内,防止下腔打开,不仅可以防止下腔自动打开导致备用水收到污染,还能防止小孩打开下腔朝备用水内投放或注入污染物或不卫生物品,有利于提升备用水的安全性,保证用户饮用水干净卫生。
如图48和49所示,根据本公开的一个实施例,机体100上设有定位槽603117,第一锁止机构620具有与定位槽603117配合的卡勾621,具体而言,第一锁止机构620具有卡勾621,机体100对应卡勾621的位置形成有定位槽603117,卡勾621与定位槽603117配合。通过在第一锁止机构620上设置卡勾621,并利用卡勾621与定位槽603117配合锁定下门体619进而关闭下腔。
一方面,卡勾621与定位槽603117的结构简单,操作方便,容易制作,且生产成本较低。另一方面,卡勾621与定位槽603117的卡接配合,卡接过程或脱离卡接的过程方便,不仅可以为下门体619的锁止或解锁提供方便,还能提升下门体619与机体100的卡接稳定性。
进一步地,如图49所示,定位槽603117沿机体100的上下方向延伸,第一锁止机构620设有下门体619的顶部。也就是说,定位槽603117的前侧可以设置限位块118108,第一锁止机构620的卡扣卡接在定位槽603117内时,卡勾621的至少一部分被限定在限位块118108的后侧,由此将第一锁止机构620卡接在固定槽内。当第一锁止机构620位于第二位置时,卡勾621脱离限位块118108的限制作用。
其中,第一锁止机构620设在下门体619的顶部,定位槽603117可以设置在机体100对应第一锁止机构620的位置,不仅可以为第一锁止机构620卡接在定位槽603117内提供方便,还可以提升第一锁止机构620与定位槽603117的卡接稳定性。
如图49所示,根据本公开的一个实施例,在第一锁止机构620处于锁止状态的情况,第一锁止机构620被上上门体601遮盖。具体而言,上上门体601位于下门体619的正上方,第一锁止机构620位于下门体619的顶部,下门体619盖合在上腔上且下门体619盖合在下腔上时,上上门体601的底壁与下门体619的顶部重合,第一锁止机构620被遮盖 在上上门体601的底部。
由于下门体619的位置较低,小孩容易接触到或启动第一锁止机构620,利用上上门体601遮盖第一锁止机构620,可以在上上门体601关闭时防止小孩打开下门体619。而且上上门体601的位置较高,小孩子一般不易打开上上门体601,由此可以进一步防止小孩子打开下门体619破坏下腔中的备用水。
如图50所示,根据本公开的一个实施例,上上门体601设有锁止件604,机体100对应锁止件604的位置可以设在第二定位槽603117,锁止件604处于锁止状态时,锁止件604卡接在第二定位槽603117内,并将上上门体601锁止于机体100上以关闭上腔。锁止件604处于解锁状态时,锁止件604脱离第二定位槽603117的限定作用,上上门体601可枢转并允许打开上腔。
上腔内设有热水出水口304和冷水出水口304,通过在上上门体601设置锁止件604,防止小孩子随意打开上上门体601被热水烫伤,由此可以保护小孩不受热水伤害。
如图51所示,在本实施例中,锁止件604位于上上门体601的顶部。一般而言,成年或青年大孩子的身高较高,将锁止件604设在上上门体601的顶部,方便用户控制锁止件604打开或关闭上腔。而且,小孩子的身高一般较低,将锁止件604设在上上门体601的顶部,可以防止小孩子私自打开上上门体601,进而防止小孩子被热水烫伤。
如图53所示,根据本公开的一个实施例,第一锁止机构620包括:支架622、按钮组件624和复位弹簧627。
具体而言,支架622安装在下门体619上,支架622内限定有导向槽102,按钮组件624在导向槽102内滑动,复位弹簧627设在安装支架622与按钮组件624之间,用户可以按压按钮组件624,用户的压力解除后,复位弹簧627推动按钮组件624复位。
其中,按钮组件624包括:本体625和导杆626,导杆626设在本体625的底部,且导杆626与导向槽102配合限制按钮组件624相对于支架622的移动。复位弹簧627的一端止抵在按钮组件624的底面,另一端止抵在支架622的顶面上。上述结构的第一锁止机构620,结构简单,容易制作,而且按钮组件624与定位槽603117之间配合方便,提升了第一锁止机构620与定位槽603117卡接的稳定性,还能降低第一锁止机构620的生产成本。
进一步地,如图52-54所示,本体625的后侧面设有自前向后延伸的固定板,卡勾621设于固定板上向上延伸且超出按钮的上表面。也就是说,卡勾621通过固定板连接在本体625上,卡勾621沿本体625的轴向向上延伸,且卡勾621的上表面高于按钮本体625的上表面。
卡勾621上表面的高度高于本体625上表面的高度,可以保证卡勾621与固定槽的卡接稳定性,防止因卡勾621的长度过小导致卡勾621从固定槽中脱离。
根据本公开的一个具体实施例,卡勾621的上表面向上向后倾斜延伸。也就是说,卡勾621的上表面的前侧较高,后侧较低,卡勾621的上表面形成为一个后侧向下倾斜的斜面。
将卡勾621的上表面设置成斜面,斜面可以与上上门体601的底边配合引导卡勾621滑入固定槽内,可以为卡勾621卡接定位槽603117提供方便。而且卡勾621上表面的前侧较高,还可以提升卡勾621与固定槽卡接的稳定性。
如图50所示,根据本公开的一个实施例,下门体619包括:前板628、左侧板629、右侧板630、顶板631和底板634,左侧板629的前侧沿与前板628的右侧沿连接,右侧板630的前侧沿与前板628的左侧沿连,顶板631的前侧沿与前板628的上侧沿连接,底板634的前侧沿与前板628的下侧沿连接。
其中,第一锁止机构620可以设置在顶板631的下方,下门体619的顶板631上可以设有第一配合孔703632和第二配合孔703633,按钮组件624的本体625穿过第一配合孔703632,卡勾621穿过第二配合孔703633,用户通过按压本体625控制卡勾621上下移动,进而实现第一锁止机构620与定位槽603117的卡接或脱离。
如图52所示,根据本公开的一个实施例,支架622的左右侧分别设有凸耳623,凸耳623上设有安装孔,前板628对应安装孔的位置设有螺纹孔,螺钉穿过安装孔固定在螺纹孔内,从而将支架622安装在下门体619上。
通过在支架622上设置凸耳623不仅可以为支架622的安装提供方便,而且可以提升支架622的安装稳定性,防止支架622从下门体619上脱落。
相关技术中的饮水设备使用一次性软质水袋或硬质水桶,尤其是软质水袋暴露于空气中,无论是成人还是小孩子都很容易接触到,小孩子由于好奇或其它心理可能会向水袋内注射或投放不明液体,成人有歹意的情况下也很容易向饮水设备内投放不明液体,具有一定的安全隐患。
为了解决上述问题,本公开提出了一种饮水设备,下面参照图至图描述根据本公开实施例的饮水设备。
如图55-图59所示,该饮水设备还包括:罩体700。
具体而言,如图55和图59所示,机体100上设有用于放置储水容器的进水槽101。罩体700可打开地罩在机体100上,且罩体700罩在机体100上时罩住进水槽101,其中,机体100和罩体700中的一个上设有第一定位结构119且另一个上设有第二定位结构701,第一定位结构119和第二定位结构701被构造成适于被锁具705锁住以将罩体700锁在机体100上。
由于软质水袋质软尤其容易被注射不明液体,因此以储水容器为软质水袋为例,软质水袋具有与进水槽101配合的连接结构,软质水袋通过连接结构与进水槽101配合安装于机体100的上方,软质水袋可以向机体100内补水。罩体700将进水槽101罩住,换言之,罩体700可以将软质水袋罩住并与外界空气隔开,这样,在需要接触到软质水袋时必须打开罩体700,增加了用户饮水的安全性。
也就是说,当储水容器内的水用完后,用户在换储水容器时,需要用钥匙或输入解锁命令将锁具705打开,换好储水容器后,重新用锁具705将罩体700锁定在机体100上。具体而言,可以是罩体700上设有第一定位结构119、机体100上设置第二定位结构701,也可以是机体100上设置第一定位结构119、罩体700上设置第二定位结构701。以后者为例,罩体700上的第二定位结构701和机体100上的第一定位结构119配合,并使用锁具705可以将罩体700锁定在机体100上,罩体700将储水容器与外界隔开。这样,无论是小孩子还是成人都无法轻易接触到储水容器,也就无法向储水容器内投放不明液体,具有预防危险的作用。
由此,根据本公开实施例的饮水设备,通过罩体700将储水容器罩住,并使用锁具705将罩体700锁定在机体100上,旁人无法轻易接触到饮用水,更加安全。
另外,第一定位结构119或第二定位结构701可以位于罩体700的侧面,在罩体700开口的下端具有翻边时,第一定位结构119或第二定位结构701也可位于翻边上。
一些实施例中,如图55结合图56所示,第一定位结构119包括定位钩120,第二定位结构701包括定位孔702,罩体700罩在机体100上时定位钩120和定位孔702相对,定位钩120适于连接锁具705,并由锁具705将罩体700锁住。其中,定位孔702贯穿罩体700的侧壁,也就是说,罩体700罩在机体100上时,罩体700由定位钩120、定位孔702和锁具705配合将罩体700锁定在机体100上。
具体而言,定位钩120可以完全穿过定位孔702,此时,锁具705穿过定位钩120但无需穿过定位孔702从而将罩体700锁定于机体100上;定位钩120也可部分穿出定位孔702,此时,锁具705穿过定位孔702后穿过定位钩120从而将罩体700锁定于机体100上;定位钩120也可完全位于罩体700的内部,此时,锁具705穿过与定位钩120相对的定位孔702后伸进罩体700内部,之后穿过定位钩120从而将罩体700锁定于机体100上。
当然,上述实施例仅是示意性的,并不能理解为对本公开保护范围的限制,例如,第一定位结构119包括定位孔702,第二定位结构701包括定位钩120。其中,定位孔702位于罩体700上时,定位孔702到机体100之间可以是完全封闭或部分封闭的,定位孔702位于机体100上时,定位孔702到罩体700之间可以是完全封闭或部分封闭的。
此外,第二定位结构701并不限于为定位孔702,例如,第二定位结构701也可以包 括定位钩120。这样,锁具705锁住第一定位钩120时锁具705由第二定位钩120勾住;也可以是锁具705锁住第二定位钩120时锁具705由第一定位钩120勾住;锁具705也可在锁住第一定位钩120和第二定位钩120中的一个时锁具705由两个定位钩120同时勾住,还可以是锁具705同时锁住第一定位钩120和第二定位钩120时锁具705由其中的一个定位钩120勾住;也可以是锁具705同时锁住第一定位钩120和第二定位钩120时锁具705由两个定位钩120同时勾住。
一些具体实施例中,如图55结合图56所示,第一定位结构119设于机体100上,第二定位结构701设于罩体700上,第一定位结构119还包括螺杆121,螺杆121上设有间隔开的第一螺母122和第二螺母123,第一螺母122和第二螺母123配合锁住机体100的壁,其中,定位钩120与螺杆121相连,且定位钩120伸出机体100的外表面以在罩体700罩在机体100上时定位钩120与定位孔702相对。换言之,螺杆121贯穿机体100的顶壁,第一螺母122和第二螺母123用于将螺杆121固定在机体100的顶壁,定位钩120与螺杆121的上端相连,且定位钩120伸出机体100顶壁的外表面,这样,定位钩120可以跟位于罩体700上的相对的定位孔702配合,方便锁具705锁住罩体700。
一些实施例中,如图55、图58结合图59所示,第一定位结构119设于机体100上,第二定位结构701设于罩体700上,定位钩120的轴线和定位孔702的轴线垂直。其中,定位钩120的轴线沿左右方向延伸,定位孔702的轴线沿前后方向延伸,这样,第一定位钩120可以方便的穿过第一定位孔702。
进一步地,如图56所示,罩体700的开口端边沿设有配合孔703,配合孔703与定位孔702连通,罩体700罩在机体100上时定位钩120伸入配合孔703并与定位孔702相对。配合孔703大致呈沿上下方向的长条形,定位孔702大致呈沿左右方向的长条形,锁具705的一部分可以穿过定位孔702,配合孔703和定位孔702的宽度都不足以使锁具705的主体部位穿过。当定位钩120的一部分伸入竖向的配合孔703时,锁具705的一部分穿过横向的定位孔702并穿过定位钩120,从而将罩体700锁定在机体100上。
一些优选实施例中,罩体700的开口端具有相对的第一开口侧和第二开口侧,罩体700的第一开口侧与机体100可转动地连接,且罩体700的第二开口侧设有第二定位结构701。用户在更换储水容器时,打开第二开口侧的锁具705,第二开口侧可以绕着第一开口侧旋转,用户取下旧的储水容器并更换新的储水容器后,再绕着第一开口侧从相反方向旋转后用锁具705锁住第二开口侧,无需将罩体700整体拆下,方便了储水容器的更换。
有利地,罩体700的所述第一开口侧与机体100可拆卸地连接。也就是说,罩体700整体可拆卸地与机体100相连,在需要清洗整机或单独清洗罩体700时,都较为简单。
一个具体实施例中,如图55结合图57所示,罩体700的所述第一开口侧设有向罩体 700外延伸的第一卡勾704,机体100上设有朝进水槽101延伸的第二卡勾124,第二卡勾124与机体100的外表面之间具有间隙,第一卡勾704适于伸入第二卡勾124内侧并与第二卡勾124卡合且第一卡勾704的勾部与第二卡勾124的勾部相对设置。换言之,第一开口侧与机体100卡接相连,这样,拆装都比较方便。
一些实施例中,如图55所示,进水槽101形成于机体100顶面,机体100顶面周沿设有环绕进水槽101的缺口槽,罩体700罩在机体100上时罩体700的开口周沿位于所述缺口槽内。所述缺口槽用于容纳罩体700的开口周沿,起到初步定位的作用,使第一定位部与第二定位部之间的配合变得简单。
一些具体实施例中,机体100的顶部设有聪明座组件200,聪明座组件200的上端敞开以形成进水槽101,罩体700可打开地罩在机体100的顶面上。储水容器安装于进水槽101,并由所述聪明座组件200提供支撑,罩体700罩在机体100的顶面上时,也就把储水容器与外界隔离,提高了饮水安全性。
根据本公开实施例的饮水设备S的其他构成以及操作对于本领域普通技术人员而言都是已知的,这里不再详细描述。
在本说明书的描述中,参考术语“一个实施例”、“一些实施例”、“示意性实施例”、“示例”、“具体示例”、或“一些示例”等的描述意指结合该实施例或示例描述的具体特征、结构、材料或者特点包含于本公开的至少一个实施例或示例中。在本说明书中,对上述术语的示意性表述不一定指的是相同的实施例或示例。而且,描述的具体特征、结构、材料或者特点可以在任何的一个或多个实施例或示例中以合适的方式结合。
尽管已经示出和描述了本公开的实施例,本领域的普通技术人员可以理解:在不脱离本公开的原理和宗旨的情况下可以对这些实施例进行多种变化、修改、替换和变型,本公开的范围由权利要求及其等同物限定。

Claims (86)

  1. 一种饮水设备,其特征在于,包括:
    机体,所述机体内限定有上侧敞开的进水槽,所述进水槽的内周壁设有导向槽,所述导向槽沿所述进水槽的周向延伸并绕所述进水槽的中心轴线螺旋上升,所述机体设有与所述导向槽连通的拆装口;
    聪明座组件,所述聪明座组件设在所述进水槽内,所述聪明座组件对应所述导向槽的位置设有导向筋,所述导向筋可滑动地配合在所述导向槽内且通过所述拆装口进出所述导向槽。
  2. 根据权利要求1所述的饮水设备,其特征在于,所述拆装口位于所述导向槽的顶端且贯通所述机体的上表面。
  3. 根据权利要求2所述的饮水设备,其特征在于,所述导向槽的上壁的一部分敞开以形成所述拆装口。
  4. 根据权利要求3所述的饮水设备,其特征在于,所述导向槽包括:
    滑动段,所述滑动段的上壁敞开以形成所述拆装口;
    限位段,所述限位段的上端与所述滑动段的下端连通。
  5. 根据权利要求4所述的饮水设备,其特征在于,所述限位段的上壁与下壁平行布置,所述限位段的上壁与下壁之间的距离大于或等于所述导向筋的厚度。
  6. 根据权利要求1所述的饮水设备,其特征在于,所述机体上设有锁定标识和解锁标识,所述聪明座组件上设有指示标识,所述导向筋位于所述导向槽的最底部时所述指示标识指向所述锁定标识,所述导向筋位于所述导向槽的最顶部时所述指示标识指向所述解锁标识。
  7. 根据权利要求1所述的饮水设备,其特征在于,所述聪明座组件的外周面设有凸块,所述导向筋设于所述凸块。
  8. 根据权利要求1的饮水设备,其特征在于,所述导向槽包括第一导向槽和第二导向槽,所述第一导向槽和所述第二导向槽相对于所述进水槽的中心轴线呈中心对称分布,所述拆装口包括与所述第一导向槽连通的第一拆装口和与所述第二导向槽连通的第二拆装口;
    所述导向筋包括第一导向筋和第二导向筋,所述第一导向筋和所述第二导向筋相对于所述聪明座组件的中心轴线呈中心对称分布,所述第一导向筋可滑动地配合在所述第一导向槽内且通过所述第一拆装口进出所述第一导向槽,所述第二导向筋可滑动地配合在所述第二导向槽内且通过所述第二拆装口进出所述第二导向槽。
  9. 根据权利要求8所述的饮水设备,其特征在于,所述第一导向筋、所述第二导向筋和所述聪明座组件一体成型。
  10. 根据权利要求1所述的饮水设备,其特征在于,所述聪明座组件包括:
    聪明座,所述聪明座内限定有向上敞开的进水腔;
    导通管,所述导通管连接在所述进水腔内,所述导通管上设有连通所述进水腔的第一通孔和第二通孔,所述导通管的下端敞开,所述导通管的侧壁上设有卡槽;
    聪明柱,所述聪明柱插接在所述导通管内且所述聪明柱与所述导通管之间限定出水流通道,所述聪明柱内限定有流体通道,所述第一通孔连通所述流体通道,所述第二通孔连通所述水流通道,所述聪明柱的侧壁上设有适于卡合在所述卡槽内的固定扣。
  11. 根据权利要求10所述的饮水设备,其特征在于,聪明柱包括:
    柱本体,所述柱本体内限定出所述流体通道;
    至少一个固定扣,所述固定扣的一端设于所述柱本体的外周壁,所述固定扣的另一端在所述固定扣的弹力下沿所述柱本体的径向远离所述柱本体。
  12. 根据权利要求11所述的饮水设备,其特征在于,所述固定扣包括:
    连接段,所述连接段的一端连接于柱本体的外周壁,所述连接段的另一端沿所述柱本体的轴向向下并沿所述柱本体的径向向外倾斜;
    卡接段,所述卡接段与所述连接段的所述另一端相连并沿所述柱本体的径向向外延伸。
  13. 根据权利要求11所述的饮水设备,其特征在于,还包括:
    至少一个定位筋,所述定位筋设在所述柱本体的外周壁上,所述定位筋与所述柱本体的外周壁配合限定出水流通道。
  14. 根据权利要求13所述的饮水设备,其特征在于,所述定位筋沿所述柱本体的轴向延伸。
  15. 根据权利要求13所述的饮水设备,其特征在于,所述定位筋为多个,多个所述定位筋沿所述柱本体的周向间隔开设置,所述固定扣为多个,每个所述固定扣与一个所述定位筋相连。
  16. 根据权利要求15所述的饮水设备,其特征在于,所述定位筋为四个,四个所述定位筋沿所述柱本体的周向等间隔布置,所述固定扣为两个且在所述柱本体的径向上相对设置。
  17. 根据权利要求13所述的饮水设备,其特征在于,所述定位筋的上端与所述柱本体的上端之间的距离大于所述定位筋的下端与所述柱本体的下端之间的距离,所述固定扣与所述定位筋的下端相连。
  18. 根据权利要求11所述的饮水设备,其特征在于,所述柱本体的一端设有连接座, 所述连接座上形成有连通所述流体通道的流体过孔。
  19. 根据权利要求18所述的饮水设备,其特征在于,所述连接座包括:
    顶盖,所述顶盖封盖在所述柱本体的上端;
    侧翼板,所述侧翼板从所述顶盖向下延伸且构造成与所述柱本体的外周壁形状适配的弧形,所述流体过孔设于所述侧翼板。
  20. 根据权利要求11所述的饮水设备,其特征在于,所述导通管包括:
    导通本体,所述导通本体与所述聪明座相连并贯穿所述进水腔的底壁,且所述导通本体的下端敞开;
    连接耳,所述连接耳连接在所述导通本体的下端并沿所述导通本体的轴向向下凸出,所述卡槽设在所述连接耳上。
  21. 根据权利要求20所述的饮水设备,其特征在于,所述卡槽沿所述连接耳的厚度方向贯穿所述连接耳。
  22. 根据权利要求21述的饮水设备,其特征在于,所述柱本体的一端设有连接座,所述连接座上形成有连通所述流体通道的流体过孔。
  23. 根据权利要求22述的饮水设备,其特征在于,所述连接座位于柱本体的顶部且所述流体过孔位于所述柱本体的侧部。
  24. 根据权利要求10所述的饮水设备,其特征在于,还包括:
    第一水箱,所述进水槽具有第一进出口和第一进水口,所述第一进出口连通所述流体通道,所述第一进水口连通所述水流通道,所述第一水箱与所述聪明座在水平方向上间隔设置,所述第一水箱具有与所述流体通道连通的第二进出口和与所述水流通道连通的第二进水口,所述第二进出口位于所述第二进水口上方。
  25. 根据权利要求24所述的饮水设备,其特征在于,所述第一进出口与所述第二进出口位于同一水平面内,或,
    所述第一进出口位于所述第二进出口下方。
  26. 根据权利要求24所述的饮水设备,其特征在于,所述第二进出口位于所述水箱的顶部且所述第二进水口位于所述水箱的底部。
  27. 根据权利要求24所述的饮水设备,其特征在于,所述导通管的顶端设有沿所述导通管的径向向外延伸的止挡沿,所述聪明头的内壁面设有止挡台,所述止挡沿止挡于所述止挡台。
  28. 根据权利要求24所述的饮水设备,其特征在于,所述导通管的外周面设有密封沿,所述密封沿紧贴于所述聪明头的内壁面且具有连通所述第二通口和所述进出通道的连通孔。
  29. 根据权利要求24所述的饮水设备,其特征在于,所述导通管的底端设有止挡钩,所述聪明头的内壁面设有止挡槽,所述止挡钩钩挂在所述止挡槽内。
  30. 根据权利要求24所述的饮水设备,其特征在于,所述导通管的外周面设有沿其周向间隔设置的多个定位导流筋,所述定位导流筋位于所述水流通道内且由所述导通管的外周面延伸至所述聪明头的内壁面。
  31. 根据权利要求24所述的饮水设备,其特征在于,还包括:
    进气阀芯,所述进气阀芯设于所述水箱且在所述第二进出口内可移动;
    进气浮球,所述进气浮球可浮动地设在所述水箱内且与所述进气阀芯相连,所述进气浮球浮动时带动所述进气阀芯移动以打开和关闭所述第二进出口。
  32. 根据权利要求24所述的饮水设备,其特征在于,还包括:
    进水阀芯,所述进水阀芯设于所述水箱且在所述第二进水口内可移动;
    进水浮球,所述进水浮球可浮动地设在所述水箱内且与所述进水阀芯相连,所述进水浮球浮动时带动所述进水阀芯移动以打开和关闭所述第二进出口。
  33. 根据权利要求24所述的饮水设备,其特征在于,所述水箱设有与外界连通的通气口,所述饮水设备还包括:
    防溢阀芯,所述防溢阀芯设于所述水箱且在所述通气口内可移动;
    防溢流浮球,所述防溢流浮球可浮动地设在所述水箱内且与所述防溢阀芯相连,所述防溢流浮球浮动时带动所述防溢阀芯移动以打开和关闭所述通气口。
  34. 根据权利要求1所述的饮水设备,其特征在于,还包括:
    第二水箱,所述第二水箱设在所述机体内,所述第二水箱具有第一接口、第二接口、第三接口和出水口,所述第一接口和所述第二接口均设在所述第二水箱上部,所述第一接口适于连通外部空间,所述聪明座组件的顶部敞开,所述聪明座组件的顶部周沿与所述进水槽的内周沿密封配合,所述聪明座组件具有第四接口和第五接口,所述第五接口设于所述聪明座组件的底部并且不低于所述第三接口,所述第四接口与所述第二接口之间通过进气管相连,所述第五接口与所述第三接口之间通过出水管相连,所述进气管与所述出水管之间设有连通管。
  35. 根据权利要求34所述的饮水设备,其特征在于,还包括:
    开关组件,所述开关组件包括水位检测件和开关件,所述水位检测件设于所述第二水箱内以检测所述第二水箱内的水位,所述开关件与所述第二接口和所述第三接口相连以在所述第二水箱内的水位不低于预定值时关闭所述第二接口和所述第三接口。
  36. 根据权利要求34所述的饮水设备,其特征在于,所述第三接口在竖直方向上的高度低于所述第二接口和所述第一接口中每一个在竖直方向上的高度。
  37. 根据权利要求34所述的饮水设备,其特征在于,所述第一接口和所述第二接口均设于所述第二水箱的顶壁,且所述第三接口设于所述第二水箱的下部。
  38. 根据权利要求35所述的饮水设备,其特征在于,所述水位检测件为可上下浮动地设于所述第二水箱内的浮球,所述开关件包括:
    转动轴,所述转动轴的一端可转动地与所述第二水箱相连,且所述转动轴的另一端与所述浮球相连;
    阀芯,所述阀芯与所述转动轴相连并与所述转动轴的旋转中心错开,所述阀芯适于打开和关闭所述第二接口和所述第三接口。
  39. 根据权利要求38所述的饮水设备,其特征在于,
    所述开关件为与所述第二接口和所述第三接口一一对应的两个,两个所述开关件连接同一个水位检测件;或
    所述开关组件为与所述第二接口和所述第三接口一一对应的两个,每个所述开关组件均包括所述水位检测件和所述开关件。
  40. 根据权利要求39所述的饮水设备,其特征在于,所述第二水箱的内壁面上设有分别与所述第二接口和第三接口连通的两个容置槽,所述阀芯可移动地设于对应的所述容置槽内。
  41. 根据权利要求38所述的饮水设备,其特征在于,所述阀芯上设有阀芯密封垫。
  42. 根据权利要求38所述的饮水设备,其特征在于,还包括:
    防溢流浮球组件,所述防溢流浮球组件设于所述第二水箱内,所述防溢流浮球组件随所述第二水箱内水位浮动以打开和封闭所述第一接口。
  43. 根据权利要求42所述的饮水设备,其特征在于,当所述第一接口处于封闭状态时所述防溢流浮球组件的下端高于当所述第二接口、所述第三接口处于封闭状态时所述水位检测件的下端。
  44. 根据权利要求42所述的饮水设备,其特征在于,所述机体设有通气槽,所述第一接口设于所述通气槽内,所述通气槽下边缘形成环形凸缘,所述防溢流浮球组件包括:
    防溢流浮球,所述防溢流浮球形成为密闭的中空结构;
    防溢流阀芯,所述防溢流阀芯连接于所述防溢流浮球的顶端;
    环状密封圈,所述密封圈套设于所述防溢流浮球的外周缘,且所述密封圈在所述防溢流浮球带动下浮动以与所述环形凸缘配合。
  45. 根据权利要求44所述的饮水设备,其特征在于,所述防溢流阀芯顶端设有锥形凸台,且所述防溢流阀芯具有沿防溢流阀芯长度方向延伸的贯通槽。
  46. 根据权利要求45所述的饮水设备,其特征在于,所述第一接口的侧壁面设有适于 制成所述锥形凸台的防脱沿。
  47. 根据权利要求44所述的饮水设备,其特征在于,所述水箱包括:
    壳体,所述壳体限定出容纳腔,所述壳体设有第二接口、第三接口以及与大气连通的第一接口,所述第二接口和所述第一接口在竖直方向上的高度均高于所述第三接口在竖直方向上的高度;
    进水浮球组件,所述进水浮球组件设于所述容纳腔,所述进水浮球组件随所述容纳腔内水位浮动而打开和封闭所述第三接口;
    进气浮球组件,所述进气浮球组件设于所述容纳腔,所述进气浮球组件随所述容纳腔内水位浮动以打开和封闭所述第二接口;
    防溢流浮球组件,所述防溢流浮球组件设于所述容纳腔,所述防溢流浮球组件随所述容纳腔内水位浮动以打开和封闭所述第一接口;
    其中,当所述第一接口处于封闭状态时所述防溢流浮球组件的下端高于当所述第三接口处于封闭状态时所述进水浮球组件的下端,且当所述第一接口处于封闭状态时所述防溢流浮球组件的下端高于当所述第二接口处于封闭状态时所述进气浮球组件的下端。
  48. 根据权利要求47所述的饮水设备,其特征在于,当所述第三接口处于封闭状态时所述进水浮球组件的下端与当所述第二接口处于封闭状态时所述进气浮球组件的下端齐平。
  49. 根据权利要求47所述的饮水设备,其特征在于,所述进水浮球组件包括:
    进水浮球,所述进水浮球形成为密闭的中空结构;
    第一连接杆,所述第一连接杆的一端与所述进水浮球相连,所述第一连接杆的另一端与所述壳体铰接,
    进水阀芯,所述进水阀芯与所述第一连接杆相连并且与所述第一连接杆的旋转中心错开,所述进水阀芯与所述进水浮球产生联动以打开和封闭所述第三接口。
  50. 根据权利要求49所述的饮水设备,其特征在于,所述壳体具有出水槽,所述第三接口形成于所述出水槽内,所述进水阀芯与所述出水槽形状适配。
  51. 根据权利要求50所述的饮水设备,其特征在于,所述进水浮球组件还包括:
    进水密封垫,所述进水密封垫设于所述进水阀芯顶端。
  52. 根据权利要求47所述的饮水设备,其特征在于,所述进气浮球组件包括:
    进气浮球,所述进气浮球形成为密闭的中空结构;
    第二连接杆,所述第二连接杆的一端与所述进气浮球相连,所述第二连接杆的另一端与所述壳体铰接,
    进气阀芯,所述进气阀芯与所述第二连接杆相连并且与所述第二连接杆的旋转中心错 开,所述进气阀芯与所述进气浮球产生联动以打开和封闭所述第二接口。
  53. 根据权利要求1所述的饮水设备,其特征在于,还包括:门体组件,所述门体组件包括:
    上门体,所述门体设于所述机体以打开和关闭所述机体,所述机体设有滑槽;
    锁止件,所述锁止件可滑动地配合于所述滑槽以在锁止状态和解锁状态之间切换,所述锁止件处于所述锁止状态时将所述门体锁止在所述机体上以关闭所述机体,所述锁止件处于解锁状态时允许所述门体打开所述机体;
    其中,所述门体设有与所述滑槽连通的定位槽,所述锁止件通过滑入所述定位槽而被保持在所述解锁状态。
  54. 根据权利要求53所述的饮水设备,其特征在于,所述滑槽的长度方向与所述定位槽的长度方向垂直。
  55. 根据权利要求53所述的饮水设备,其特征在于,所述锁止件包括:
    锁座,所述锁座设于所述门体且具有导槽,所述导槽的长度方向与所述滑槽的长度方向平行;
    锁头,所述锁头可移动地设于所述导槽内,所述锁止件处于所述锁止状态时所述锁头钩挂在所述机体上,所述锁止件处于解锁状态时所述锁头脱离所述机体,所述锁头设有拨杆槽,所述拨杆槽的长度方向与所述定位槽的长度方向平行;
    拨杆,所述拨杆可移动地设于所述拨杆槽内且可滑动地配合于所述滑槽;
    弹性件,所述弹性件设于所述锁头与锁座之间且常推动所述锁头以将所述锁止件被保持在所述锁止状态;
    其中,所述拨杆通过滑入所述定位槽而使所述锁头克服所述弹性件的弹力以将所述锁止件被保持在所述解锁状态。
  56. 根据权利要求55所述的饮水设备,其特征在于,所述锁头上设有锁钩,所述机体上设有卡板,所述锁止件处于所述锁止状态时所述锁钩钩挂在所述卡板上,所述锁止件处于解锁状态时所述锁钩脱离所述卡板。
  57. 根据权利要求55所述的饮水设备,其特征在于,所述拨杆包括:
    滑块,所述滑块可移动地设于所述拨杆槽内且伸出所述滑槽;
    拨杆头,所述拨杆头设于所述滑块的伸出所述滑槽的一端。
  58. 根据权利要求55所述的饮水设备,其特征在于,所述锁座设有第一支撑部和第二支撑部,所述导槽形成于所述第一支撑部和所述第二支撑部之间,所述弹性件的两端分别止抵所述第一支撑部和所述锁头。
  59. 根据权利要求58所述的饮水设备,其特征在于,所述第一支撑部具有第一空腔且 所述第一空腔内设有第一螺栓轴套,所述第二支撑部具有第二空腔且所述第二空腔内设有第二螺栓轴套,所述锁座通过配合于所述第一螺栓轴套的第一螺栓和配合于所述第二螺栓轴套的第二螺栓安装于所述门体。
  60. 根据权利要求57所述的饮水设备,其特征在于,所述拨杆槽形成为T形槽,所述滑块的一端设有与所述拨杆槽配合的凸台。
  61. 根据权利要求53所述的饮水设备,其特征在于,所述滑槽和所述定位槽整体横截面形成为L型或T型。
  62. 根据权利要求53所述的饮水设备,其特征在于,还包括:
    下门体,所述机体限定出隔开的上腔和下腔,所述上门体安装于所述机体上用于打开或关闭所述上腔;所述下门体安装于所述机体用于打开或关闭所述下腔,所述上门体与所述下门体上下相对设置,所述下门体上设有第一锁止机构,所述第一锁止机构在第一位置和第二位置之间可运动,在所述第一锁止机构位于第一位置时,所述下门体被锁止于所述机体上,在所述第一锁止机构位于第二位置时,所述第一锁止机构解锁,所述下门体允许打开所述下腔室。
  63. 根据权利要求62所述的饮水设备,其特征在于,所述第一锁止机构具有卡勾,所述机体对应所述卡勾的位置形成有定位槽,所述卡勾与所述定位槽配合。
  64. 根据权利要求63所述的饮水设备,其特征在于,所述定位槽沿所述机体的上下方向延伸,所述第一锁止机构设有所述下门体的顶部。
  65. 根据权利要求62所述的饮水设备,其特征在于,在所述第一锁止机构处于锁止状态的情况,所述第一锁止机构被所述上门体遮盖。
  66. 根据权利要求65所述的饮水设备,其特征在于,所述上门体设有第二锁止机构,所述第二锁止机构处于锁止状态的情况将所述上门体锁止于所述机体上以关闭所述上腔,所述第二锁止机构处于解锁状态的情况,所述上门体允许打开所述上腔。
  67. 根据权利要求66所述的饮水设备,其特征在于,所述第二锁止机构位于所述上门体的顶部。
  68. 根据权利要求63所述的饮水设备,其特征在于,所述第一锁止机构包括:
    支架,所述支架安装于所述下门体上,所述支架限定出导向槽;
    按钮组件,所述按钮组件包括本体,所述本体的底部设有与所述导向槽配合的导杆;
    复位弹簧,所述复位弹簧套设于所述导杆的外周面,所述复位弹簧的一端止抵于所述按钮的底面,所述复位弹簧的另一端止抵于所述支架的顶面。
  69. 根据权利要求68所述的饮水设备,其特征在于,所述本体的后侧面设有自前向后延伸的固定板,所述卡勾设于所述固定板上向上延伸且超出所述按钮的上表面。
  70. 根据权利要求69所述的饮水设备,其特征在于,所述卡勾的上表面向上向后倾斜延伸。
  71. 根据权利要求68所述的饮水设备,其特征在于,所述下门体包括:
    前板;
    左侧板和右侧板,所述左侧板的前侧沿与所述前板的右侧沿连接,所述右侧板的前侧沿与所述前板的左侧沿连;
    顶板和底板,所述顶板的前侧沿与所述前板的上侧沿连接,所述底板的前侧沿与所述前板的下侧沿连接。
  72. 根据权利要求71所述的饮水设备,其特征在于,所述第一锁止机构位于所述顶板的下方,所述顶板设有第一配合孔和第二配合孔,所述本体贯穿所述第一配合孔,所述卡勾贯穿所述第二配合孔。
  73. 根据权利要求72所述的饮水设备,其特征在于,所述支架的左右侧分别设有凸耳,所述凸耳通过螺钉固定于所述前板上。
  74. 根据权利要求1所述的饮水设备,其特征在于,还包括:
    罩体,所述罩体可打开地罩在所述机体上,且所述罩体罩在所述机体上时罩住所述进水槽,
    其中,所述机体和所述罩体中的一个上设有第一定位结构且另一个上设有第二定位结构,所述第一定位结构和所述第二定位结构被构造成适于被锁具锁住以将所述罩体锁在所述机体上。
  75. 根据权利要求74所述的饮水设备,其特征在于,所述第一定位结构包括定位钩,所述第二定位结构包括定位孔,所述罩体罩在所述机体上时所述定位钩和所述定位孔相对,所述定位钩适于连接所述锁具,并由所述锁具将所述罩体锁住。
  76. 根据权利要求75所述的饮水设备,其特征在于,所述第一定位结构设于所述机体上,所述第二定位结构设于所述罩体上,所述第一定位结构还包括:
    螺杆,所述螺杆上设有间隔开的第一螺母和第二螺母,所述第一螺母和所述第二螺母配合锁住所述机体的壁,
    其中,所述定位钩与所述螺杆相连,且所述定位钩伸出所述机体的外表面以在所述罩体罩在所述机体上时所述定位钩与所述定位孔相对。
  77. 根据权利要求75所述的饮水设备,其特征在于,所述第一定位结构设于所述机体上,所述第二定位结构设于所述罩体上,所述定位钩的轴线和所述定位孔的轴线垂直。
  78. 根据权利要求77所述的饮水设备,其特征在于,所述罩体的开口端边沿设有配合孔,所述配合孔与所述定位孔连通,所述罩体罩在所述机体上时所述定位钩伸入所述配合 孔并与所述定位孔相对。
  79. 根据权利要求74所述的饮水设备,其特征在于,所述罩体的开口端具有相对的第一开口侧和第二开口侧,所述罩体的第一开口侧与所述机体可转动地连接,且所述罩体的第二开口侧设有所述第二定位结构。
  80. 根据权利要79所述的饮水设备,其特征在于,所述罩体的所述第一开口侧与所述机体可拆卸地连接。
  81. 根据权利要求80所述的饮水设备,其特征在于,所述罩体的所述第一开口侧设有向罩体外延伸的第一卡勾,所述机体上设有朝所述进水槽延伸的第二卡勾,所述第二卡勾与所述机体的外表面之间具有间隙,所述第一卡勾适于伸入所述第二卡勾内侧并与所述第二卡勾卡合且所述第一卡勾的勾部与所述第二卡勾的勾部相对设置。
  82. 根据权利要求74所述的饮水设备,其特征在于,所述进水槽形成于所述机体顶面,所述机体顶面周沿设有环绕所述进水槽的缺口槽,所述罩体罩在所述机体上时所述罩体的开口周沿位于所述缺口槽内。
  83. 根据权利要求82所述的饮水设备,其特征在于,所述机体的顶部设有聪明座,所述聪明座的上端敞开以形成所述进水槽,所述罩体可打开地罩在所述机体的顶面上。
  84. 根据权利要求34所述的饮水设备,其特征在于,所述第四接口高于所述第五接口。
  85. 根据权利要求34所述的饮水设备,其特征在于,还包括:
    空气净化件,所述空气净化件与所述第一接口相连。
  86. 根据权利要求85所述的饮水设备,其特征在于,所述空气净化件包括空气过滤结构和杀菌结构,所述空气过滤结构与所述杀菌结构串接连接。
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