WO2022148133A1 - 水路集成装置及具有其的冰箱 - Google Patents

水路集成装置及具有其的冰箱 Download PDF

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Publication number
WO2022148133A1
WO2022148133A1 PCT/CN2021/130695 CN2021130695W WO2022148133A1 WO 2022148133 A1 WO2022148133 A1 WO 2022148133A1 CN 2021130695 W CN2021130695 W CN 2021130695W WO 2022148133 A1 WO2022148133 A1 WO 2022148133A1
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WO
WIPO (PCT)
Prior art keywords
water
water inlet
kettle
filter
integration device
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Application number
PCT/CN2021/130695
Other languages
English (en)
French (fr)
Inventor
阳军
牟国梁
张方友
Original Assignee
青岛海尔电冰箱有限公司
海尔智家股份有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
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Application filed by 青岛海尔电冰箱有限公司, 海尔智家股份有限公司 filed Critical 青岛海尔电冰箱有限公司
Priority to AU2021417343A priority Critical patent/AU2021417343A1/en
Priority to EP21917174.1A priority patent/EP4257897A1/en
Publication of WO2022148133A1 publication Critical patent/WO2022148133A1/zh

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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25DREFRIGERATORS; COLD ROOMS; ICE-BOXES; COOLING OR FREEZING APPARATUS NOT OTHERWISE PROVIDED FOR
    • F25D11/00Self-contained movable devices, e.g. domestic refrigerators
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25DREFRIGERATORS; COLD ROOMS; ICE-BOXES; COOLING OR FREEZING APPARATUS NOT OTHERWISE PROVIDED FOR
    • F25D23/00General constructional features
    • F25D23/12Arrangements of compartments additional to cooling compartments; Combinations of refrigerators with other equipment, e.g. stove
    • F25D23/126Water cooler
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25DREFRIGERATORS; COLD ROOMS; ICE-BOXES; COOLING OR FREEZING APPARATUS NOT OTHERWISE PROVIDED FOR
    • F25D2323/00General constructional features not provided for in other groups of this subclass
    • F25D2323/121General constructional features not provided for in other groups of this subclass the refrigerator is characterised by a water filter for the water/ice dispenser
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25DREFRIGERATORS; COLD ROOMS; ICE-BOXES; COOLING OR FREEZING APPARATUS NOT OTHERWISE PROVIDED FOR
    • F25D25/00Charging, supporting, and discharging the articles to be cooled
    • F25D25/02Charging, supporting, and discharging the articles to be cooled by shelves
    • F25D25/024Slidable shelves
    • F25D25/025Drawers
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02BCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
    • Y02B40/00Technologies aiming at improving the efficiency of home appliances, e.g. induction cooking or efficient technologies for refrigerators, freezers or dish washers

Definitions

  • the invention relates to the field of refrigerator water supply, in particular to a waterway integrated device and a refrigerator having the same.
  • a water supply system is generally installed in the refrigerator.
  • the water supply system includes a filter, a water valve and a kettle to purify the water supplied from an external water source, and is installed in the water valve. Controlled supply of purified water to a dispenser or ice maker.
  • the filter, the water valve and the kettle are usually arranged separately.
  • the filter and the kettle are arranged in the refrigerating room or on the door body, and the water valve is arranged in the press compartment. Therefore, it is necessary to place the water pipe back and forth in the refrigerator, to perform the reversal of the water path, and to insert and connect, and the length of the water supply pipe is increased and the structure is complicated.
  • the purpose of the present invention is to provide a water circuit integrated device and a refrigerator having the same.
  • an embodiment of the present invention provides a water circuit integration device, which is installed in the box of the refrigerator, the water circuit integration device includes an integrated bracket and a filter, a water valve and a kettle connected in sequence, and the integrated bracket includes an interconnected filter housing, a water valve housing, and a fixing portion, the filter housing housing the filter, the water valve housing housing the water valve, and the kettle connected to the fixing portion;
  • the box is provided with a plurality of drawers, and the water circuit integration device is arranged between two of the drawers arranged side by side, or between one of the drawers and the side wall of the box. The part is fixedly connected with the side wall of the drawer or the side wall of the box body.
  • the filter includes a joint and a filter element detachably connected to the joint, the filter housing is provided with an opening, and the filter element is inserted into the filter housing through the opening.
  • the rear wall of the box body is provided with a through hole, a water inlet pipe is connected to the filter, and the water inlet pipe passes through the through hole and is connected to an external water source.
  • the water valve further includes a wiring terminal, an electrical signal connector is provided on the rear wall of the box at a position corresponding to the wiring terminal, and the wiring terminal is electrically connected to the electrical signal connector.
  • one side of the drawer is provided with a sliding rail side plate
  • the side of the sliding rail side plate close to the drawer is provided with a fixed sliding rail
  • the side wall of the drawer is provided with a fixed sliding rail.
  • the sliding rail is matched with the movable sliding rail
  • the integrated bracket is fixedly connected to the side of the side plate of the sliding rail which is away from the drawer.
  • the water valve and the kettle are selectively communicated through the kettle water inlet assembly;
  • the kettle water inlet assembly includes: a water inlet sleeve and a rotatable insert into the water inlet sleeve.
  • the water inlet connector is provided with a water inlet channel which can communicate with each other in the water inlet connector and the water inlet sleeve.
  • the water inlet sleeve extends outward from the water inlet of the kettle and is integrally formed with the kettle; the water inlet connector extends outward from the water outlet of the water valve and is integrally formed with the kettle. It is integrally formed with the water valve.
  • the filter housing, the water valve housing and the fixing part are integrally formed
  • the filter, the water valve and the kettle are adjacent to each other, and the filter and the kettle are arranged at an angle
  • FIG. 1 Another aspect of the present invention further discloses a refrigerator, which includes a box body, and the box body includes a refrigerating chamber, and the above-mentioned waterway integration device is installed in the refrigerating chamber.
  • the waterway integrated device disclosed in the present invention is fixedly connected to the integrated bracket by respectively fixing the filter, the water valve and the kettle, and the fixed part of the integrated bracket is fixedly connected to the side wall of the drawer or the side wall of the box body. , so that the filter, the water valve and the kettle are integrated together, the length of the water pipe is reduced, and the direction of the water circuit is convenient.
  • FIG. 1 is a schematic structural diagram of a waterway integrated device in an embodiment of the present invention.
  • FIG. 2 is a schematic structural diagram of a waterway integrated device in an embodiment of the present invention.
  • FIG. 3 is a schematic structural diagram of a waterway integrated device in an embodiment of the present invention.
  • Fig. 4 is the enlarged schematic diagram of part A in Fig. 3;
  • FIG. 5 is a schematic cross-sectional view of a kettle water inlet assembly in an embodiment of the present invention.
  • FIG. 6 is a schematic structural diagram of a box body in an embodiment of the present invention.
  • FIG. 7 is a schematic structural diagram of a box body in an embodiment of the present invention.
  • FIG. 8 is a schematic structural diagram of a waterway integrated device in an embodiment of the present invention.
  • an embodiment of the present invention discloses a water circuit integration device and a refrigerator having the same.
  • the water circuit integration device includes a filter 100, a water valve 200 and a kettle 300 that are communicated in sequence.
  • the water valves 200 are detachably connected through the kettle water inlet assembly 400
  • the distal end 310 of the kettle 300 and the filter 100 are detachably connected through the distal clip assembly 500 .
  • the kettle water inlet assembly 400 includes a rotating shaft perpendicular to the length direction of the kettle 300 .
  • the distal snap connection assembly 500 is snap connected, the kettle water inlet assembly 400 is locked and connected in the axial direction of the rotating shaft.
  • the distal snap connection assembly 500 is released from the snap connection.
  • one end of the kettle 300 is detachably connected to the water valve 200 through the kettle water inlet assembly 400, and the other end is detachably connected to the filter 100 through the remote clamping assembly 500.
  • the snap-fit assembly 500 is snap-connected, the kettle water inlet assembly 400 is also locked and connected at the same time, so that the kettle 300 can be connected to the water valve 200 and the filter 100 together.
  • the distal snap connection assembly 500 just releases the snap connection, so that the kettle 300 can be detached from the water valve 200 and the filter 100 smoothly. Therefore, the kettle 300 can be easily connected or disassembled with the water valve 200 and the filter 100 through the cooperation of the kettle water inlet assembly 400 and the remote clamping assembly 500 , which facilitates subsequent replacement or maintenance of the kettle 300 .
  • the kettle water inlet assembly 400 is disengaged in the axial direction of the rotating shaft. That is to say, when the distal snap connection assembly 500 is released from the snap connection, the kettle water inlet assembly 400 is also in a disengaged state in the axial direction of the rotating shaft. At this time, the kettle 300 can be connected to the water valve 200 and the filter 100. Take it apart. In this way, the state transitions of the kettle water inlet assembly 400 and the remote clamping assembly 500 are completely consistent, so that the stroke of the rotation operation can be shortened, and the operation of installing or removing the kettle 300 is simpler and more convenient.
  • the locking connection direction of the kettle water inlet assembly 400 is different from the snap connection direction of the distal snap connection assembly 500 . That is to say, the kettle water inlet assembly 400 and the remote clamping assembly 500 are connected to the kettle in different directions, thereby further strengthening the connection between the kettle 300 and the water valve 200 and the filter 100, and the two Connections in different directions will not interfere with each other, so that even if the components in one direction fail, the kettle 300 will not be easily loosened and dropped.
  • the locking connection direction of the kettle water inlet assembly 400 is the axial direction of the rotating shaft
  • the snap-on connection of the distal snap-on assembly 500 The direction is perpendicular to the axial direction of the rotating shaft. That is to say, the connection directions of the kettle water inlet assembly 400 and the remote clamping assembly 500 to the kettle are perpendicular to each other. In this way, the mutual interference of the connections in the two directions can be minimized, so that the connection of the kettle is more firm.
  • the distal clamping assembly 500 includes a distal clamping portion and a distal matching portion that can be engaged with or disengaged from the distal clamping portion, and the distal clamping portion is provided on the On one of the kettle 300 or the filter 100 , the distal matching portion is provided on the other of the kettle 300 or the filter 100 .
  • the distal clamping portion is provided on the filter 100
  • the distal matching portion is provided on the kettle 300 .
  • the distal locking portion is a distal hook 510 provided on the filter 100
  • the distal matching portion is a distal hook provided on the kettle 300 .
  • a hole 520 is formed.
  • the distal hook 510 is inserted into the distal hook hole 520 .
  • the connection structure of the hanging buckle and the hanging hole is relatively simple, the cost is low, and the operation is easy.
  • the distal hook assembly 500 can be snap-connected.
  • a thread can be provided in the distal hook 510.
  • the distal hanger and the distal hanger can also be made to have an interference fit. In this way, during the transportation/assembly process of the waterway integrated device or the refrigerator, even if there is a collision or shaking, the kettle will not be easily disconnected at the far end.
  • distal hook 510 may extend outward from the housing of the filter 100 and be integrally formed with the housing of the filter 100
  • distal hanging hole 520 may extend outward from the kettle 300 and be integrally formed with the kettle 300 .
  • distal snap portion and the distal matching portion may also be other structures of snap connection.
  • the proximal end 310 of the kettle 300 is also detachably connected to the filter 100 through the proximal end snap-fit assembly 600 .
  • the proximal snap connection assembly 600 is snap connected.
  • the kettle water inlet assembly 500 is disengaged in the axial direction of the rotating shaft, the proximal snap connection assembly 600 is released from the snap connection.
  • the proximal end 310 of the kettle 300 is further provided with a proximal end snap-fit assembly 600 , so as to further strengthen the connection of the kettle 300 at the proximal end 310 .
  • the proximal snap-on assembly 600 can also cooperate with the kettle water inlet assembly 400 and the distal snap-on assembly 500 to be connected or disassembled synchronously.
  • the proximal snap-fit assembly 600 also includes a proximal snap portion 610 and a proximal fitting portion 620 that can snap or disengage from the proximal snap portion 610 .
  • the engaging portion is the proximal hanging buckle 610
  • the proximal matching portion is the proximal hanging hole 620 .
  • the kettle 300 and the water valve 200 are also selectively communicated through the kettle water inlet assembly 400.
  • the kettle water inlet assembly 400 includes: a water inlet sleeve 410 and a rotatable water inlet assembly 400. Insert the water inlet connector 420 of the water inlet sleeve 410 .
  • the water inlet connector 420 and the water inlet sleeve 410 are provided with water inlet channels which can communicate with each other.
  • the water inlet sleeve 410 is arranged on one of the kettle 300 or the water 200
  • the water inlet connector 420 is arranged on the other of the kettle 300 or the water valve 200 .
  • the water inlet connector 420 is provided with a water inlet limit protrusion 421, the water inlet sleeve 410 includes a water inlet cylinder 411, a water inlet port 412 opened on the water inlet cylinder 411 and a water inlet port 412 on the water inlet cylinder 411.
  • the water inlet limiting hole 413 is provided in the circumferential direction of the water inlet cylinder 411 .
  • the water inlet sleeve 410 is further provided with a water inlet guide groove 414 matching the water inlet limit protrusion 421 , and the water inlet guide groove 414 is formed by the water inlet socket 412 along the water inlet sleeve 410 .
  • the kettle water inlet assembly 400 not only functions to connect the kettle 300 and the water valve 200 , but also functions to allow water to pass through after the connection, that is, to allow the water in the water valve 200 to flow into the kettle 300 . middle.
  • the external water source first flows into the filter 100, and then flows into the water valve 200 from the filter 100.
  • the water valve 200 is provided with two water outlets, one of which extends outward to form a water inlet connector 420, the inlet of the kettle 300 extends outward to form a water inlet sleeve 410, so that after the two are connected, water can also flow through the two.
  • the size H of the water inlet limit hole 413 is set larger than the size L of the water inlet guide groove 414, then, when the water inlet connector 420 is inserted into the water inlet sleeve 410 , the water inlet limit protrusion 421 on the water inlet connector 420 can enter the water inlet guide groove 414 from the water inlet port 412 on the water inlet sleeve 410, and then rotate the kettle 300 along the rotation axis toward the first direction, Then the water inlet limit protrusion 421 can enter the water inlet limit hole 413, and because the size H of the water inlet limit hole 413 is relatively large, and the water inlet limit hole 413 is not communicated with the water inlet port 412, then at this time, The water inlet limit protrusion 421 forms a snap fit with the water inlet limit hole 413, so that even if the force is reversed in the insertion direction, the water inlet connector
  • the rotating shaft is configured as the central axis X of the water inlet sleeve 410 . That is to say, rotating the kettle 300 around the central axis X of the water inlet sleeve 410 can lock or disengage the kettle water inlet assembly 400, and the remote snap connection assembly 500 can be snap-connected or disengaged. In this way, the actions of connecting and disassembling the kettle 300 are simple, and the operation of the user is convenient.
  • the water inlet sleeve 410 extends outward from the water inlet of the kettle 300 and is integrally formed with the kettle 300 .
  • the water inlet connector 420 extends outward from the water outlet of the water valve 200 and is integrally formed with the water valve 200 . That is to say, there is no water pipe between the kettle 300 and the water valve 200, but is directly connected through the kettle water inlet assembly 400 extending from the respective components of the kettle 300 and the water valve 200, so that the connection is more stable, and there is no longer a water pipe Bending damage, difficult to repair problems, and the risk of water leakage.
  • the water inlet plug 420 includes a first plug part 422 and a second plug part 423 disposed at the front end of the first plug part 422, and the outer diameter of the second plug part 423 is smaller than The outer diameter of the first plug-in portion 422 .
  • the second plug portion 423 with a smaller inner diameter is first inserted into the water inlet sleeve 410, so that the insertion action can be guided, so that the kettle water inlet assembly 400 is easier to connect.
  • a sealing member 4231 is sleeved on the second plug portion 423 .
  • the sealing member 4231 is used to fill the gap between the outer wall of the second plug portion 423 and the inner wall of the water inlet sleeve 410, so as to prevent water leakage.
  • the inner diameter of the water inlet sleeve 410 corresponding to the position of the seal 4231 on the second plug portion 423 becomes smaller, so that the seal 4231 is pressed between the inner wall of the water inlet sleeve 410 and the second plug portion 423 , to further enhance the sealing effect.
  • the water inlet connector 420 further includes a stopper portion 424 connected to the first insertion portion 421 , and an end surface of the stopper portion 424 abuts against an end surface of the water inlet sleeve 410 .
  • the stopper portion 424 is the end point where the water inlet connector 420 is inserted into the water inlet sleeve 410 , that is to say, when the water inlet connector is inserted into the water inlet sleeve 410 , the end face of the stopper portion 424 is seen to be in contact with the water inlet sleeve 410 .
  • the end face of the water inlet sleeve 410 can confirm that the plug-in action is in place.
  • the water inlet connector 420 is provided with two water inlet limit protrusions 421 , and the two water inlet limit protrusions 421 are relative to the axis of the water inlet connector 420 .
  • the water inlet sleeve is provided with two water inlet guide grooves 413 at positions corresponding to the two water inlet limit protrusions 421 .
  • the provision of two symmetrical water inlet limiting protrusions 421 and two corresponding water inlet guiding grooves 413 can make the locking of the water inlet connector 420 and the water inlet sleeve 410 more firm and stable.
  • the filter 100 and the water valve 200 are selectively communicated through the filter water outlet assembly 700 .
  • the filter water outlet assembly 700 includes a water outlet sleeve 710 and a water outlet connector 720 rotatably inserted into the water outlet sleeve 710 .
  • the structure of the filter water outlet assembly 700 , the water outlet sleeve 710 and the water outlet connector 720 is exactly the same as that of the kettle water inlet assembly 400 , the water inlet sleeve 410 and the water inlet connector 420 , but the positions are different. Therefore, the specific structure of the filter water outlet assembly 700 will not be repeated.
  • the filter 100 , the water valve 200 and the kettle 300 are arranged adjacent to each other, and the kettle water inlet assembly 400 and the filter water outlet assembly 700 are perpendicular to each other. That is to say, the central axis X of the water outlet sleeve 710 is perpendicular to the central axis of the water inlet sleeve 410 .
  • the water circuit integrated device further includes an integrated bracket 800 , and the integrated bracket 800 wraps the filter 100 and the water valve 200 .
  • the integrated bracket 800 also plays the role of connecting the water circuit integrated device to the refrigerator.
  • the distal hook 510 is also arranged on the integrated bracket 800, so that the connection of the kettle 300 is more stable.
  • the water circuit integration device in the embodiment of the present invention is installed in the box body 900 of the refrigerator, and specifically may be installed in the refrigerator compartment of the refrigerator.
  • the integrated bracket 800 includes a filter housing 810, a water valve housing 820 and a fixing portion 830 that are connected to each other, the filter housing 810 accommodates the filter 100, and the water valve housing 820 accommodates the water The valve 200 , the kettle 300 is connected to the fixing part 830 .
  • a plurality of drawers 970 are arranged in the box, and the water circuit integration device is arranged between two of the drawers 970 arranged side by side, or between one of the drawers 970 and the side wall of the box 900 , the fixing part 830 is fixedly connected with the side wall of the drawer 970 or the side wall of the box body 900 .
  • the filter 100 , the water valve 200 and the kettle 300 are fixedly connected to the integrated bracket 100 respectively, and the fixing part 830 of the integrated bracket 100 is fixed to the side wall of the drawer 970 or the side wall of the box body 900
  • the filter 100, the water valve 200 and the kettle 300 are integrated together, the length of the water pipe is reduced, and the direction of the water circuit is convenient.
  • the water channel integration device is provided between the two drawers 970 , and the fixing portion 830 of the integration bracket 100 is fixedly connected to the side wall of the drawer 970 .
  • the filter 100 includes a joint 110 and a filter element 120 detachably connected to the joint 110 , the filter housing 810 is provided with an opening 811 , and the filter element 120 passes through the opening 811 The filter housing 810 is inserted. As the use time increases, the filtering effect of the filter medium in the filter element 120 will gradually decrease, so the filter element 120 needs to be replaced regularly. If the filter element 120 is detachably connected to the street, the filter element 120 can be easily replaced. In addition, the filter housing 810 can support the filter element 120, so that the connection between the filter element 120 and the joint 110 is more stable.
  • the rear wall of the box body 900 is provided with a through hole 910
  • the filter 100 is connected with a water inlet pipe 920
  • the water inlet pipe 920 passes through the through hole 910 and is connected to an external water source.
  • the external water source is connected to one end of the water inlet pipe 920, and penetrates into the box body 900 from the through hole 910 of the box body 900, and is then connected to the waterway integrated device, so the connection method is simple, there are fewer water pipes outside the box body, and there will be no outside the refrigerator. Messy water pipes, so the appearance is more beautiful.
  • the water valve 200 further includes a wiring terminal 210 , an electrical signal connector is provided on the rear wall of the box 900 at a position corresponding to the wiring terminal 210 , and the wiring terminal 210 is electrically connected to the electrical signal connector.
  • the water valve 200 is a solenoid valve, so it needs to be connected to a power source.
  • a groove is provided on the rear wall of the box body 900 corresponding to the connection terminal 210 of the water valve 200, and an electrical signal connector is arranged in the groove, so that after the waterway integrated device is installed in the box body 900, the connection terminal 210 can be aligned. Electrical signal connector and connect the two. The electrical signal connector is connected to the wire and the power supply to power the solenoid water valve.
  • a slide rail side plate 940 is provided on one side of the drawer 970, a fixed slide rail 941 is provided on the side of the slide rail side plate 940 close to the drawer, and a side wall of the drawer is provided with a
  • the integrated bracket is fixedly connected to the side of the slide rail side plate 940 away from the drawer.
  • the sides of the two drawers 970 away from the side wall of the box 900 are respectively provided with slide rail side plates 940
  • the slide rail side plates 940 are provided with fixed slide rails 941
  • the side walls of the drawers 970 are provided with movable sliding rails, so that the movable sliding rails of the drawer 970 can cooperate with the fixed sliding rails 941 to slide, so that the drawer 970 can be pulled or pushed into the box body 900 .
  • the fixing part 830 is connected to one of the side plates 940 of the slide rail, so that the position of the entire waterway integrated device is fixed, and the stability is better without shaking from side to side.
  • the fixing portion 830 is connected to the slide rail side plate 940 by screws.
  • the fixing portion 830 may also be connected to the side plate of the slide rail by other means such as snaps.
  • the filter housing 810 , the water valve housing 820 and the fixing portion 830 are integrally formed.
  • the filter housing 810, the water valve housing 820 and the fixing part 830 are integrally formed to form an integrated bracket, the structure of the integrated bracket is more stable, and when assembling the waterway integrated device, the filter 100 and the water valve are respectively 200 and the kettle 300 can be connected with the integrated bracket 100, and the connection method is simple.
  • the filter 100 , the water valve 200 and the kettle 300 are adjacent to each other, and the filter 100 and the kettle 300 are arranged at an angle. Because air bubbles may be generated in the kettle 300, and the air bubbles may be large or small, the bursting may corrode or damage the metal parts of the kettle 300, and may produce a water hammer effect.
  • the kettle 300 and the filter 100 are arranged at 5 degrees, which can ensure that the air bubbles in the kettle 300 flow out of the water storage space in the kettle 300, slow down the water hammer effect, and reduce the probability of the kettle 300 being corroded or damaged.
  • An embodiment of the present invention also discloses a refrigerator, the refrigerator includes a box body, and the box body includes a refrigerating chamber, and the refrigerating chamber is provided with the above-mentioned waterway integration device.
  • the refrigerator includes a dispenser and an ice maker
  • the ice maker is connected to an ice maker water supply pipe 950
  • the dispenser is connected to a dispenser water supply pipe 960
  • the joint 110 is connected to the water supply pipe 960 .
  • a filter water inlet 112 and a filter water outlet 113 are provided.
  • the kettle 300 includes a kettle water inlet 141 and a kettle water outlet 142.
  • the water valve 200 includes a water valve inlet 210, a first water outlet 220 and a second outlet. Nozzle 230.
  • the filter water inlet 112 is connected with a water inlet pipe 920 for providing a water source, and the filter water outlet 113 is connected with the water valve inlet 210, and the water valve selectively supplies water to the first water outlet 220 or the second water outlet. Two water outlets 230.
  • the first water outlet 220 is connected to the ice maker water supply pipe 950
  • the second water outlet 230 is connected to the kettle water inlet 141
  • the kettle water outlet 142 is connected to the dispenser water supply pipe 960 . Therefore, the external water source can be supplied to the ice maker and the dispenser respectively through the water circuit integration device.
  • the waterway integrated device disclosed in the present invention connects the filter, the water valve and the kettle respectively to the integrated bracket, and the fixed part of the integrated bracket is fixedly connected to the side wall of the drawer or the side wall of the box, so as to connect the filter, the water valve and the water bottle.
  • the valve and the kettle are integrated together, which reduces the length of the water pipe and facilitates the reversal of the water circuit.
  • the fixed part of the waterway integrated bracket is connected to one of the side plates of the slide rails matched with the drawer, so that the position of the whole waterway integrated device is fixed, and the stability is better without shaking left and right.
  • the filter housing, the water valve housing and the fixing part are integrally formed to form an integrated bracket, and the structure of the integrated bracket is more stable.
  • the kettle and the filter are arranged at 5 degrees, which can ensure that the bubbles in the kettle flow out of the water storage space in the kettle, slow down the water hammer effect, and reduce the probability of the kettle being corroded or damaged.

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  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Physics & Mathematics (AREA)
  • Mechanical Engineering (AREA)
  • Thermal Sciences (AREA)
  • General Engineering & Computer Science (AREA)
  • Water Treatment By Sorption (AREA)
  • Devices That Are Associated With Refrigeration Equipment (AREA)

Abstract

一种水路集成装置,安装于冰箱的箱体(900)内,水路集成装置包括集成支架(800)及依次连通的过滤器(100),水阀(200)及水壶(300),集成支架(800)包括相互连接的过滤器壳体(810)、水阀壳体(820)及固定部(830),过滤器壳体(810)容纳过滤器(100),水阀壳体(820)容纳水阀(200),水壶(300)连接到所述固定部(830);箱体(900)内设有多个抽屉(970),水路集成装置设于其中两个并排设置的所述抽屉(970)之间,或设于其中一个所述抽屉(970)与箱体(900)的侧壁之间,固定部(830)与抽屉(970)的侧壁或箱体(900)的侧壁固定连接。该水路集成装置,通过将过滤器(100),水阀(200)及水壶(300)分别固定连接集成支架(800),并将集成支架(800)的固定部(830)与抽屉(970)的侧壁或箱体(900)的侧壁固定连接,从而将过滤器(100),水阀(200)及水壶(300)集成在一起,减少了水管的长度,并且方便水路换向。

Description

水路集成装置及具有其的冰箱 技术领域
本发明涉及冰箱供水领域,尤其涉及一种水路集成装置及具有其的冰箱。
背景技术
目前,为了方便用户的使用,很多冰箱产品都会在冰箱上设置分配器及制冰机等部件,并且分配器可以分配冷水及冰块。而为了向分配器及制冰机供水,一般会在冰箱里设置供水系统,通常供水系统会包括过滤器,水阀及水壶等装置,用于净化从外部水源供应的水,并在水阀的控制下将净化后的水供应至分配器或制冰机。
在传统的供水系统中,过滤器,水阀及水壶通常分开设置,例如将过滤器及水壶设于冷藏室内或门体上,而水阀设置在压机仓内。由此,需要在冰箱内进行来回放置水管、进行水路换向及插接,并且会导致供水管的长度增加且结构复杂。
发明内容
本发明的目的在于提供一种水路集成装置及具有其的冰箱。
为实现上述发明目的,本发明一实施方式提供一种水路集成装置,安装于冰箱的箱体内,所述水路集成装置包括集成支架及依次连通的过滤器,水阀及水壶,所述集成支架包括相互连接的过滤器壳体、水 阀壳体及固定部,所述过滤器壳体容纳所述过滤器,所述水阀壳体容纳所述水阀,所述水壶连接到所述固定部;所述箱体内设有多个抽屉,所述水路集成装置设于其中两个并排设置的所述抽屉之间,或设于其中一个所述抽屉与箱体的侧壁之间,所述固定部与所述抽屉的侧壁或箱体的侧壁固定连接。
作为本发明的进一步改进,所述过滤器包括接头及可拆卸连接于所述接头的滤芯,所述过滤器壳体上设有开口,所述滤芯通过所述开口插入所述过滤器壳体。
作为本发明的进一步改进,所述箱体的后壁设有通孔,所述过滤器上连接有进水管,所述进水管穿出所述通孔并与外部水源连接。
作为本发明的进一步改进,所述水阀还包括接线端子,所述箱体后壁上对应所述接线端子的位置设有电信号接头,所述接线端子与所述电信号接头电连接。
作为本发明的进一步改进,所述抽屉的一侧设有滑轨侧板,所述滑轨侧板靠近抽屉的一侧设有定滑轨,所述抽屉的侧壁上设有与所述定滑轨配合的动滑轨,所述集成支架固定连接至所述滑轨侧板上远离所述抽屉的一侧。
作为本发明的进一步改进,所述水阀与所述水壶之间通过水壶进水组件可选择地连通;所述水壶进水组件包括:进水套筒及可旋转插入所述进水套筒的进水插接件,所述进水插接件及进水套筒的内部设有可相互连通的进水流道。
作为本发明的进一步改进,所述进水套筒由所述水壶的进水口向 外延伸并与所述水壶一体成型;所述进水插接件由所述水阀的出水口向外延伸并与所述水阀一体成型。
作为本发明的进一步改进,所述过滤器壳体、水阀壳体与固定部一体成型
作为本发明的进一步改进,,所述过滤器、水阀及水壶两两相邻,所述过滤器与所述水壶成角度设置
本发明另一方面还公开了一种冰箱,包括箱体,所述箱体包括冷藏室,所述冷藏室内安装有如上所述的水路集成装置。
与现有技术相比,本发明公开的水路集成装置,通过将过滤器,水阀及水壶分别固定连接集成支架,并将集成支架的固定部与抽屉的侧壁或箱体的侧壁固定连接,从而将过滤器,水阀及水壶集成在一起,减少了水管的长度,并且方便水路换向。
附图说明
图1是本发明一实施方式中水路集成装置的结构示意图;
图2是本发明一实施方式中水路集成装置的结构示意图;
图3是本发明一实施方式中水路集成装置的结构示意图;
图4是图3中A部分的放大示意图;
图5是本发明一实施方式中水壶进水组件的剖面示意图;
图6是本发明一实施方式中箱体的结构示意图;
图7是本发明一实施方式中箱体的结构示意图;
图8是本发明一实施方式中水路集成装置的结构示意图。
具体实施方式
以下将结合附图所示的具体实施方式对本发明进行详细描述。但这些实施方式并不限制本发明,本领域的普通技术人员根据这些实施方式所做出的结构、方法、或功能上的变换均包含在本发明的保护范围内。
应该理解,本文使用的例如“上”、“上方”、“下”、“下方”等表示空间相对位置的术语是出于便于说明的目的来描述如附图中所示的一个单元或特征相对于另一个单元或特征的关系。空间相对位置的术语可以旨在包括设备在使用或工作中除了图中所示方位以外的不同方位。
如图1-8所示,本发明一实施方式公开了一种水路集成装置及具有其的冰箱。所述水路集成装置包括依次连通的过滤器100,水阀200及水壶300,所述水壶300包括长度方向上相对设置的近端310及远端320,所述水壶300的近端310与所述水阀200之间通过水壶进水组件400可拆卸连接,所述水壶300的远端310与所述过滤器100之间通过远端卡接组件500可拆卸连接。所述水壶进水组件400包括与所述水壶300的长度方向垂直的旋转轴。所述远端卡接组件500卡扣连接时,所述水壶进水组件400在所述旋转轴的轴向上锁定连接。所述水壶进水组件400在旋转轴的轴向上脱开时,所述远端卡接组件500解除卡扣连接。
本发明公开的水路集成装置,使得水壶300的一端通过水壶进水组件400与水阀200可拆卸连接,另一端通过远端卡接组件500与过 滤器100可拆卸连接,由此,在远端卡接组件500卡扣连接时,水壶进水组件400也同时锁定连接,从而可以将水壶300与水阀200及过滤器100连接到一起。而当水壶进水组件400脱开时,远端卡接组件500也刚好解除了卡扣连接,从而可以顺利地将水壶300从水阀200及过滤器100上拆卸下来。从而通过水壶进水组件400与远端卡接组件500的配合,使得水壶300可以方便地与水阀200及过滤器100连接或者拆卸,方便后续对水壶300的更换或维修。
进一步地,所述远端卡接组件500解除卡扣连接时,所述水壶进水组件400在所述旋转轴的轴向上脱开。也就是说,当远端卡接组件500解除卡扣连接的同时,水壶进水组件400在旋转轴的轴向上也处于脱开状态,此时可将水壶300与水阀200及过滤器100拆卸开来。这样,水壶进水组件400以及远端卡接组件500的状态转换是完全一致的,从而可以缩短旋转操作的行程,使得安装或拆卸水壶300的操作更简单方便。
在本发明实施方式中,所述远端卡接组件500卡扣连接时,所述水壶进水组件400的锁定连接方向不同于所述远端卡接组件500的卡扣连接方向。也就是说,水壶进水组件400与远端卡接组件500这两者是在不同的方向上对水壶进行连接,从而进一步加固了水壶300与水阀200及过滤器100的连接,并且两个不同方向的连接不会互相干扰,使得即使在一个方向上的组件失效了,水壶300也不会轻易松脱掉落。
更进一步来说,所述远端卡接组件500卡扣连接时,所述水壶进 水组件400的锁定连接方向为所述旋转轴的轴向,所述远端卡接组件500的卡扣连接方向垂直于所述旋转轴的轴向。也就是说,水壶进水组件400与远端卡接组件500对水壶的连接方向是相互垂直的。这样两个方向上的连接的互相干扰能够降到最低,使得水壶的连接更为牢固。
在本发明实施方式中,所述远端卡接组件500包括远端卡接部及可与所述远端卡接部卡扣或脱离的远端配合部,所述远端卡接部设于所述水壶300或所述过滤器100的二者之一上,所述远端配合部设于所述水壶300或过滤器100的二者另一上。通过远端卡接部以及远端配合部的相互配合,可以容易地实现卡扣或脱离的操作。在本实施方式中,远端卡接部设于过滤器100上,远端配合部设于水壶300上。
进一步地,如图2所示,所述远端卡接部为设于所述过滤器100上的远端挂扣510,所述远端配合部为设于所述水壶300上的远端挂孔520,所述远端卡接组件500卡扣连接时,所述远端挂扣510插入所述远端挂孔520内。挂扣与挂孔的连接结构较为简单,成本低,并且容易操作。具体来说,直接将远端挂扣510插入所述远端挂孔520内即可使得远端卡接组件500卡扣连接。若想加固远端卡接组件500的连接,可在远端挂扣510内设置螺纹,远端挂扣510插入所述远端挂孔520内时,将螺钉旋入远端挂扣510内并与其螺纹连接,并使得螺钉端面抵接挂孔520边缘。在另外的实施方式中,还可以使得远端挂扣与远端挂扣过盈配合。如此,在水路集成装置或者冰箱的运输/装配过程中,即使产生碰撞或晃动等情况,水壶在远端也不会轻易脱 离连接。并且,远端挂扣510可以由过滤器100的壳体向外延伸并与过滤器100的壳体一体成型,远端挂孔520可以由水壶300向外延伸并与水壶300一体成型。设置一体成型的结构使得水壶300与过滤器100之间的连接更为稳定,牢固。
在另外的实施方式中,远端卡接部及远端配合部也可以为卡扣连接的其他结构。
优选地,所述水壶300的近端310还通过近端卡接组件600与所述过滤器100之间可拆卸连接。所述远端卡接组件500卡扣连接时,所述近端卡接组件600卡扣连接。所述水壶进水组件500在旋转轴的轴向上脱开时,所述近端卡接组件600解除卡扣连接。在水壶300的近端310再设置一个近端卡接组件600,从而进一步加固了水壶300在近端310的连接。并且,近端卡接组件600也可以与水壶进水组件400及远端卡接组件500相配合,同步连接或拆卸。具体来说,近端卡接组件600也包括近端卡接部610及可与所述近端卡接部610卡扣或脱离的近端配合部620,而在本发明实施方式中,近端卡接部为近端挂扣610,近端配合部为近端挂孔620。
在本发明实施方式中,所述水壶300与所述水阀200之间还通过所述水壶进水组件400可选择地连通,所述水壶进水组件400包括:进水套筒410及可旋转插入所述进水套筒410的进水插接件420。所述进水插接件420及进水套筒410的内部设有可相互连通的进水流道。所述进水套筒410设于所述水壶300或水200的二者之一上,所述进水插接件420设于所述水壶300或水阀200的二者之另一上。所述进 水插接件420上设有进水限位突起421,所述进水套筒410包括进水筒体411,开设于所述进水筒体411上的进水插接口412及在所述进水筒体411圆周方向上设置的进水限位孔413。所述进水套筒410上还设有匹配所述进水限位突起421的进水引导槽414,所述进水引导槽414由所述进水插接口412沿所述进水套筒410轴向延伸,并与所述进水限位孔413的端部连通。如图5所示,在所述进水筒体411的圆周方向上,所述进水限位孔413的尺寸H大于所述进水引导槽414的尺寸L。也就是说,水壶进水组件400不仅起到了连接水壶300和水阀200的作用,同时,在连接之后,还可以起到让水通过的作用,也即让水阀200中的水流入水壶300中。在本发明实施方式中,外接水源首先流入过滤器100,再从过滤器100流入水阀200,水阀200设有两个出水口,其中一个出水口向外延伸即形成了进水插接件420,水壶300的入口向外延伸即形成了进水套筒410,从而二者连接之后也可以让水从二者之中流过。
另外,在进水筒体411的圆周方向上,将进水限位孔413的尺寸H设置成大于进水引导槽414的尺寸L,那么,在进水插接件420插入进水套筒410时,进水插接件420上的进水限位突起421可以从进水套筒410上的进水插接口412进入进水引导槽414,之后,再沿旋转轴朝第一方向旋转水壶300,则进水限位突起421可以进入进水限位孔413,而因为进水限位孔413的尺寸H较大,并且进水限位孔413不与进水插接口412连通,那么此时,进水限位突起421与进水限位孔413形成卡嵌配合,从而即使沿插接方向的反向用力,也不能 使进水插接件420逆向退出进水套筒410,由此实现了水壶进水组件400的锁定。而再沿旋转轴朝第一方向的反向旋转水壶300,可以使进水限位突起421与进水引导槽414对齐,由此实现了水壶进水组件400在旋转轴的轴向上的脱开。此时沿插接方向的反向用力,即可使进水限位突起421沿着进水引导槽414向进水插接口412移动,并最终使进水插接件420逆向退出进水套筒410。
具体来说,如图3所示,所述旋转轴构造为所述进水套筒410的中心轴X。也就是说,将水壶300绕进水套筒410的中心轴X旋转,即可使得水壶进水组件400锁定或者脱开,以及远端卡接组件500卡扣连接或者脱离卡扣连接。这样,水壶300的连接与拆卸的动作简单,方便用户的操作。
进一步地,所述进水套筒410由所述水壶300的进水口向外延伸并与所述水壶300一体成型。所述进水插接件420由所述水阀200的出水口向外延伸并与所述水阀200一体成型。也就是说,水壶300与水阀200之间不设置水管,而直接通过水壶300与水阀200各自的部件延伸出来的水壶进水组件400来连接,从而连接更为稳固,并且不再存在水管弯折损坏难以维修的问题,以及漏水的风险。
优选地,所述进水插接件420包括第一插接部422及设于所述第一插接部422前端的第二插接部423,所述第二插接部423的外径小于所述第一插接部422的外径。在进水插接件420插入进水套筒410时,内径较小的第二插接部423首先插入进水套筒410内,从而可以给插接动作起到导向作用,使得水壶进水组件400的连接更为容易。
在本发明实施方式中,所述第二插接部423上套设有密封件4231。密封件4231用于填充第二插接部423的外壁与进水套筒410内壁之间的间隙,从而起到防漏水的作用。具体来说,进水套筒410对应第二插接部423上密封件4231所在的位置的内径变小,使密封件4231压紧在进水套筒410内壁与第二插接部423之间,以进一步加强密封效果。
进一步地,所述进水插接件420还包括与所述第一插接部421连接的止挡部424,所述止挡部424的端面抵接所述进水套筒410的端面。止挡部424为进水插接件420插入进水套筒410的终点,也就是说,在将进水插接件插入进水套筒410时,看到止挡部424的端面抵接了进水套筒410的端面,即可确定插接动作已到位。
如图4所示,所述进水插接件420上设有两个所述进水限位突起421,两个所述进水限位突起421相对于所述进水插接件420的轴线对称设置,所述进水套筒上对应两个所述进水限位突起421的位置设有两个所述进水引导槽413。设置对称的两个进水限位突起421以及对应的两个进水引导槽413,则可使得进水插接件420与进水套筒410的锁定更为牢固以及稳定。
优选地,所述过滤器100与所述水阀200之间通过过滤器出水组件700可选择地连通。所述过滤器出水组件700包括:出水套筒710及可旋转插入所述出水套筒710的出水插接件720。过滤器出水组件700、出水套筒710及出水插接件720的结构与水壶进水组件400、进水套筒410及进水插接件420的结构完全相同,只是位置不同。因 此,对于过滤器出水组件700的具体结构不再赘述。
进一步地,所述过滤器100、水阀200及水壶300两两相邻设置,所述水壶进水组件400与所述过滤器出水组件700相互垂直。也就是说,出水套筒710的中心轴X垂直于进水套筒410的中心轴。
如图1所示,所述水路集成装置还包括集成支架800,所述集成支架800包裹所述过滤器100及水阀200。具体来说,集成支架800还起到将水路集成装置连接到冰箱上的作用。另外,远端挂扣510也设置在集成支架800上,这样水壶300的连接更为稳固。
如图6-7所示,本发明实施方式中的水路集成装置,安装于冰箱的箱体900内,具体可以安装在冰箱的冷藏室内。所述集成支架800包括相互连接的过滤器壳体810、水阀壳体820及固定部830,所述过滤器壳体810容纳所述过滤器100,所述水阀壳体820容纳所述水阀200,所述水壶300连接到所述固定部830。所述箱体内设有多个抽屉970,所述水路集成装置设于其中两个并排设置的所述抽屉970之间,或设于其中一个所述抽屉970与箱体900的侧壁之间,所述固定部830与所述抽屉970的侧壁或箱体900的侧壁固定连接。
本发明公开的水路集成装置,通过将过滤器100,水阀200及水壶300分别固定连接集成支架100,并将集成支架100的固定部830与抽屉970的侧壁或箱体900的侧壁固定连接,从而将过滤器100,水阀200及水壶300集成在一起,减少了水管的长度,并且方便水路换向。
在发明实施方式中,水路集成装置设于两个抽屉970之间,集成 支架100的固定部830与抽屉970的侧壁固定连接。
在本发明实施方式中,所述过滤器100包括接头110及可拆卸连接于所述接头110的滤芯120,所述过滤器壳体810上设有开口811,所述滤芯120通过所述开口811插入所述过滤器壳体810。随着使用时间的增加,滤芯120内的过滤介质的过滤作用会逐渐下降,因此滤芯120需要定期更换。将滤芯120可拆卸连接于街头,则可方便的更换滤芯120。另外,过滤器壳体810可对滤芯120起到支撑作用,使得滤芯120与接头110的连接更加稳定。
进一步地,所述箱体900的后壁设有通孔910,所述过滤器100上连接有进水管920,所述进水管920穿出所述通孔910并与外部水源连接。外接水源连接进水管920的一端,并从箱体900的通孔910穿入箱体900,再与水路集成装置连接,从而连接方式简单,在箱体外部的水管较少,冰箱外部不会有杂乱的水管,因此外观较为美观。
优选地,所述水阀200还包括接线端子210,所述箱体900后壁上对应所述接线端子210的位置设有电信号接头,所述接线端子210与所述电信号接头电连接。在本发明实施方式中,水阀200为电磁阀,因此需要连接电源。在箱体900后壁对应水阀200的接线端子210处设置了凹槽,并在凹槽内设置电信号接头,从而水路集成装置安装到箱体900内后,即可将接线端子210对准电信号接头并使二者连接。电信号接头连接至电线及电源,以为电磁水阀供电。
在本发明实施方式中,在抽屉970的一侧设有滑轨侧板940,所述滑轨侧板940靠近抽屉的一侧设有定滑轨941,所述抽屉的侧壁上 设有与所述定滑轨941配合的动滑轨,所述集成支架固定连接至所述滑轨侧板940上远离所述抽屉的一侧。如图7所示,两个抽屉970远离箱体900侧壁的一侧分别设有滑轨侧板940,滑轨侧板940上设有定滑轨941,抽屉970的侧壁上设有动滑轨,从而抽屉970的动滑轨可与定滑轨941配合滑动,以将抽屉970抽拉或推入箱体900。固定部830连接至其中一个滑轨侧板940上,这样,整个水路集成装置的位置固定,不会左右晃动,稳定性较好。具体的,固定部830通过螺钉连接到滑轨侧板940上。在另外的实施方式中,固定部830还可以通过卡扣等其他方式连接至滑轨侧板上。
优选地,所述过滤器壳体810、水阀壳体820与固定部830一体成型。同样的,过滤器壳体810、水阀壳体820与固定部830一体成型从而形成集成支架,则集成支架的结构更加稳固,并且,在组装水路集成装置时,分别将过滤器100、水阀200及水壶300与集成支架100连接即可,连接方式简单。
如图1所示,所述过滤器100、水阀200及水壶300两两相邻,所述过滤器100与所述水壶300成角度设置。因为水壶300中可能会产生气泡,而气泡有大有小,炸裂会对水壶300的金属部件产生腐蚀或破坏,并且可能会产生水锤效应。在本发明实施方式中,水壶300与过滤器100成5度布置,这样可以保证水壶300中的气泡流出水壶300内的储水空间,减缓水锤效应,降低水壶300被腐蚀或破坏的几率。
本发明实施方式中还公开了一种冰箱,所述冰箱包括箱体,箱体 包括冷藏室,冷藏室内设有如上所述的水路集成装置。
具体来说,如图8所示,冰箱包括分配器及制冰机,所述制冰机连接有制冰机供水管950,所述分配器连接有分配器供水管960,所述接头110上设有过滤器入水口112及过滤器出水口113,所述水壶300包括水壶入水口141及水壶出水口142,所述水阀200包括水阀入水口210,第一出水口220及第二出水口230。所述过滤器入水口112连接有提供水源的进水管920,所述过滤器出水口113连接所述水阀入水口210,所述水阀选择性地将水供应至第一出水口220或第二出水口230。
所述第一出水口220连接所述制冰机供水管950,所述第二出水口230连接所述水壶入水口141,所述水壶出水口142连接所述分配器供水管960。从而,通过水路集成装置可以将外接水源分别供应至制冰机及分配器。
本发明公开的水路集成装置,通过将过滤器,水阀及水壶分别固定连接集成支架,并将集成支架的固定部与抽屉的侧壁或箱体的侧壁固定连接,从而将过滤器,水阀及水壶集成在一起,减少了水管的长度,并且方便水路换向。将水路集成支架的固定部连接至与抽屉配合的其中一个滑轨侧板上,这样,整个水路集成装置的位置固定,不会左右晃动,稳定性较好。并且,水壶与水阀之间不设置水管,而直接通过水壶与水阀各自的部件延伸出来的水壶进水组件来连接,从而连接更为稳固,并且不再存在水管弯折损坏难以维修的问题,以及漏水的风险。过滤器壳体、水阀壳体与固定部一体成型从而形成集成支架, 则集成支架的结构更加稳固。水壶与过滤器成5度布置,这样可以保证水壶中的气泡流出水壶内的储水空间,减缓水锤效应,降低水壶被腐蚀或破坏的几率。
应当理解,虽然本说明书按照实施方式加以描述,但并非每个实施方式仅包含一个独立的技术方案,说明书的这种叙述方式仅仅是为清楚起见,本领域技术人员应当将说明书作为一个整体,各实施方式中的技术方案也可以经适当组合,形成本领域技术人员可以理解的其他实施方式。
上文所列出的一系列的详细说明仅仅是针对本发明的可行性实施方式的具体说明,它们并非用以限制本发明的保护范围,凡未脱离本发明技艺精神所作的等效实施方式或变更均应包含在本发明的保护范围之内。

Claims (10)

  1. 一种水路集成装置,安装于冰箱的箱体内,其特征在于,
    所述水路集成装置包括集成支架及依次连通的过滤器,水阀及水壶,所述集成支架包括相互连接的过滤器壳体、水阀壳体及固定部,所述过滤器壳体容纳所述过滤器,所述水阀壳体容纳所述水阀,所述水壶连接到所述固定部;
    所述箱体内设有多个抽屉,所述水路集成装置设于其中两个并排设置的所述抽屉之间,或设于其中一个所述抽屉与箱体的侧壁之间,所述固定部与所述抽屉的侧壁或箱体的侧壁固定连接。
  2. 根据权利要求1所述的水路集成装置,其特征在于,所述过滤器包括接头及可拆卸连接于所述接头的滤芯,所述过滤器壳体上设有开口,所述滤芯通过所述开口插入所述过滤器壳体。
  3. 根据权利要求1所述的水路集成装置,其特征在于,所述箱体的后壁设有通孔,所述过滤器上连接有进水管,所述进水管穿出所述通孔并与外部水源连接。
  4. 根据权利要求1所述的水路集成装置,其特征在于,所述水阀还包括接线端子,所述箱体后壁上对应所述接线端子的位置设有电信号接头,所述接线端子与所述电信号接头电连接。
  5. 根据权利要求1所述的水路集成装置,其特征在于,所述抽屉的一侧设有滑轨侧板,所述滑轨侧板靠近抽屉的一侧设有定滑轨,所述抽屉的侧壁上设有与所述定滑轨配合的动滑轨,所述集成支架固定连接至所述滑轨侧板上远离所述抽屉的一侧。
  6. 根据权利要求1所述的水路集成装置,其特征在于,所述水阀与所述水壶之间通过水壶进水组件可选择地连通;所述水壶进水组件包括:进水套筒及可旋转插入所述进水套筒的进水插接件,所述进水 插接件及进水套筒的内部设有可相互连通的进水流道。
  7. 根据权利要求6所述的水路集成装置,其特征在于,所述进水套筒由所述水壶的进水口向外延伸并与所述水壶一体成型;所述进水插接件由所述水阀的出水口向外延伸并与所述水阀一体成型。
  8. 根据权利要求1所述的水路集成装置,其特征在于,所述过滤器壳体、水阀壳体与固定部一体成型。
  9. 根据权利要求1所述的水路集成装置,其特征在于,所述过滤器、水阀及水壶两两相邻,所述过滤器与所述水壶成角度设置。
  10. 一种冰箱,包括箱体,其特征在于,所述箱体包括冷藏室,所述冷藏室内安装有如权利要求1-9中任意一项所述的水路集成装置。
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