WO2021042399A1 - 一种冰箱 - Google Patents

一种冰箱 Download PDF

Info

Publication number
WO2021042399A1
WO2021042399A1 PCT/CN2019/104808 CN2019104808W WO2021042399A1 WO 2021042399 A1 WO2021042399 A1 WO 2021042399A1 CN 2019104808 W CN2019104808 W CN 2019104808W WO 2021042399 A1 WO2021042399 A1 WO 2021042399A1
Authority
WO
WIPO (PCT)
Prior art keywords
ice
side wall
making chamber
ice making
refrigerator
Prior art date
Application number
PCT/CN2019/104808
Other languages
English (en)
French (fr)
Inventor
刘小锋
姚惠民
干锦波
翁浩
赵子璇
Original Assignee
海信容声(广东)冰箱有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Priority claimed from CN201910829074.9A external-priority patent/CN110440504B/zh
Priority claimed from CN201921454625.XU external-priority patent/CN210772966U/zh
Priority claimed from CN201910829072.XA external-priority patent/CN110440503A/zh
Priority claimed from CN201910829087.6A external-priority patent/CN110440513B/zh
Priority claimed from CN201921455414.8U external-priority patent/CN211739629U/zh
Priority claimed from CN201921454615.6U external-priority patent/CN211739628U/zh
Application filed by 海信容声(广东)冰箱有限公司 filed Critical 海信容声(广东)冰箱有限公司
Priority to EP20861557.5A priority Critical patent/EP3964773A4/en
Priority to PCT/CN2020/091852 priority patent/WO2021042769A1/zh
Priority to CN202080000814.9A priority patent/CN112136013A/zh
Priority to AU2020341603A priority patent/AU2020341603B2/en
Priority to CN202080000881.0A priority patent/CN112771339A/zh
Priority to PCT/CN2020/093363 priority patent/WO2021042776A1/zh
Publication of WO2021042399A1 publication Critical patent/WO2021042399A1/zh
Priority to US17/565,926 priority patent/US20220154990A1/en
Priority to AU2023203620A priority patent/AU2023203620A1/en

Links

Images

Classifications

    • 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
    • F25CPRODUCING, WORKING OR HANDLING ICE
    • F25C5/00Working or handling ice
    • F25C5/02Apparatus for disintegrating, removing or harvesting ice
    • 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
    • F25D21/00Defrosting; Preventing frosting; Removing condensed or defrost water
    • F25D21/14Collecting or removing condensed and defrost water; Drip trays
    • 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

Definitions

  • This application relates to a refrigerator, and more specifically, to a refrigerator with an ice making chamber.
  • the refrigerator is a home appliance that can supply cold air generated from the evaporator to the freezer and refrigerator to keep various foods fresh for a long time.
  • Foods such as meat, fish, ice cream, etc. that should be kept below the freezing temperature are stored in the freezer, and foods such as vegetables, fruits, beverages, etc. that should be kept above the freezing temperature are stored in the freezer.
  • the refrigerator may include an ice making device that generates and stores ice.
  • the ice making compartment may be provided at a corner inside the refrigerating compartment or at the rear surface of the refrigerating compartment door.
  • the ice making chamber may include an ice maker for generating ice, and an ice bucket for storing ice generated in the ice maker and transferring the ice to the dispenser.
  • some embodiments of the present application provide a refrigerator including a refrigerating chamber, and the refrigerating chamber is provided with an ice making chamber; the ice making chamber includes The rear side wall of the ice making room; an ice maker is installed in the ice making room; a water receiving tray is installed in the ice making room, and the water receiving tray is set below the ice maker; the rear of the water receiving tray is inclined downward; the rear of the water receiving tray is set below There is a water funnel.
  • Some embodiments of the present application provide a refrigerator.
  • the rear of the water receiving tray is provided with a diversion port, and the water receiving funnel is located below the backflow port.
  • the diversion port facilitates the flow of water into the water receiving funnel.
  • Some embodiments of the present application provide a refrigerator, and the water receiving funnel is arranged on the rear side wall of the ice making chamber. Thereby, the water collecting funnel can be fixed.
  • Some embodiments of the present application provide a refrigerator, and the water receiving funnel includes a funnel drain pipe; the funnel drain pipe passes through the rear side wall of the ice making compartment and the inner container of the refrigerating compartment. The drainage of the water receiving funnel to the outside of the ice making chamber is realized.
  • Some embodiments of the present application provide a refrigerator, which further includes a water pipe, at least part of the water pipe is arranged in the heat insulating material between the inner liner and the refrigerator outer shell, and the funnel drain pipe is in communication with the water pipe. The drainage of the water receiving funnel to the outside of the ice making chamber is realized.
  • Some embodiments of the present application provide a refrigerator, and the back side wall of the ice making chamber and the inner liner of the refrigerating chamber are provided with heat insulation pads.
  • Some embodiments of the present application provide a refrigerator, in which an ice-making chamber refrigerant pipeline is arranged in an ice-making chamber, and a water receiving funnel is located below the ice-making chamber refrigerant pipeline.
  • Some embodiments of the present application provide a refrigerator, an ice storage box is arranged in the ice making chamber, and the water receiving funnel is located behind the ice storage box. Make full use of the space in the ice making room.
  • Some embodiments of the present application provide a refrigerator, at least part of the refrigerant pipeline is located between the water receiving tray and the ice maker.
  • Some embodiments of the present application provide a refrigerator, which further includes an ice-making chamber fan, and the ice-making chamber fan is arranged on the front side of the ice maker.
  • the refrigerator provided by some embodiments of the present application includes a refrigerating chamber, and an ice making chamber is arranged in the refrigerating chamber; the ice making chamber includes a rear side wall of the ice making chamber; an ice maker is arranged in the ice making chamber; and a water receiving tray is arranged in the ice making chamber ,
  • the water receiving tray is arranged under the ice maker; the rear of the water receiving tray is inclined downward; the water receiving funnel is arranged below the rear of the water receiving tray.
  • Fig. 1 is a schematic front view of a refrigerator door in a closed state in an embodiment of the application
  • Fig. 2 is a schematic front view of the refrigerator freezer compartment door in an open state in an embodiment of the application
  • Figure 3 is a perspective schematic view of the refrigerator freezer compartment door removed in an embodiment of the application.
  • Fig. 4A is an exploded schematic diagram of the wall of the ice making chamber of the refrigerator in an embodiment of the application;
  • Fig. 4B is a partial exploded schematic view of the wall of the ice making chamber of the refrigerator in an embodiment of the application;
  • Fig. 4C is an exploded schematic diagram of a part of the installation structure of the rear side wall of the refrigerator ice making chamber in an embodiment of the application;
  • Fig. 4D is a schematic diagram of an integral part of the right side wall and the lower side wall of the ice making chamber of the refrigerator in an embodiment of the application;
  • Figure 4E is a schematic cross-sectional view of the refrigerator door in a state where the ice compartment wall of the refrigerator is installed parallel to the closed state of the door in an embodiment of the application;
  • FIG. 5 is a schematic diagram of the internal structure of the ice making chamber of the refrigerator in an embodiment of the application;
  • Fig. 6 is a schematic diagram of the external mechanism of the ice making chamber of the refrigerator in an embodiment of the application
  • FIG. 7 is a schematic diagram of the fixed state of the refrigerant pipeline of the ice-making compartment of the refrigerator ice-making compartment in an embodiment of the application;
  • FIG. 8 is an exploded schematic diagram of the fixing structure of the refrigerant pipeline of the ice making compartment of the refrigerator ice making compartment in an embodiment of the application;
  • FIG. 9 is a schematic diagram of the installation structure of the refrigerant pipe in the ice making chamber of the ice making chamber of the refrigerator in an embodiment of the application;
  • FIG. 10 is a schematic side view of the installation structure of the refrigerant pipe in the ice making chamber of the ice making chamber of the refrigerator in an embodiment of the application;
  • FIG. 11 is a schematic side view of the installation structure of the water tray in the ice making chamber of the refrigerator ice making chamber in an embodiment of the application;
  • FIG. 12 is a schematic side view of the installation structure of the fan in the ice making compartment of the refrigerator in an embodiment of the application;
  • FIG. 13 is an exploded schematic diagram of the ice making chamber structure of the refrigerator ice making chamber in an embodiment of the application.
  • first and second are only used for descriptive purposes, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of indicated technical features. Therefore, the features defined with “first” and “second” may explicitly or implicitly include one or more of these features. In the description of this application, unless otherwise specified, “plurality” means two or more.
  • connection should be understood in a broad sense, unless otherwise clearly specified and limited. For example, it can be a fixed connection or a detachable connection. Connected, or integrally connected; for those of ordinary skill in the art, the specific meanings of the above terms in this application can be understood under specific circumstances.
  • the "front” and “rear” mentioned in the embodiments of the present application refer to the “front” as the side of the refrigerator box with the opening and the door, and the “rear” as the side of the refrigerator back leaving the opening.
  • Some embodiments of the present application provide a refrigerator including a refrigerating chamber, an ice-making chamber is arranged in the refrigerating chamber, the ice-making chamber includes an ice-making chamber wall, and the ice-making chamber wall includes a lower side wall, a right side wall, an upper side wall, The left side wall; the upper side wall is arranged close to the upper wall of the refrigerating chamber; the upper side wall and the refrigerating chamber are directly provided with heat insulation pads.
  • the refrigerator provided by some embodiments of the present application is a refrigerator in which the refrigerating compartment is arranged above the refrigerator box, for example, a refrigerator with upper refrigeration and lower freezing.
  • Some embodiments of the present application provide a refrigerator, the ice making chamber is arranged at the upper left corner of the refrigerating chamber, the left side wall of the ice making chamber is arranged close to the left wall of the refrigerating chamber; the left side wall of the ice making chamber and the refrigerating chamber
  • the inner liner is directly provided with a heat insulation pad.
  • the ice making chamber is arranged at the upper left corner of the refrigerating chamber, and the upper side wall and the left side wall of the ice making chamber are integrated.
  • the right side wall and the lower side wall of the ice making chamber of the ice making chamber are an integral piece.
  • the ice making chamber includes a first connecting rail, and the first connecting rail is fixedly connected with the lower side wall.
  • the second connecting rail is included, and the second connecting rail is fixedly connected with the right side wall.
  • the first connecting rail fixes the left side wall to the inner container of the refrigerating compartment.
  • the second connecting rail fixes the upper side wall to the inner container of the refrigerating compartment.
  • the right side wall and the lower side wall are an integral piece.
  • the first connecting rail connects the lower side wall with the inner container of the refrigerating compartment.
  • the first connecting rail connects the right side wall with the inner container of the refrigerating compartment.
  • the first connecting rail connects the lower side wall with the left side wall.
  • the first connecting rail connects the right side wall with the upper side wall.
  • the thickness of the right side wall and the lower side wall is greater than the thickness of the upper side wall and the left side wall.
  • Some embodiments of the present application provide a refrigerator.
  • the ice making chamber is arranged at the upper right corner of the refrigerating chamber, and the right side wall is arranged close to the right wall of the refrigerating chamber; the right wall and the refrigerating chamber are directly provided with heat insulation pads .
  • the upper side wall and the right side wall are an integral piece.
  • the lower side wall and the left side wall of the ice making chamber are an integral piece. It includes a third connecting rail, and the third connecting rail is fixedly connected with the lower side wall.
  • the fourth connecting rail is included, and the fourth connecting rail is fixedly connected with the left side wall.
  • the third connecting rail fixes the right side wall to the inner container of the refrigerating compartment.
  • the fourth connecting rail fixes the upper side wall to the inner container of the refrigerating compartment.
  • the left side wall and the lower side wall are an integral piece.
  • the third connecting rail connects the lower side wall with the inner container of the refrigerating compartment.
  • the fourth connecting rail connects the left side wall with the inner container of the refrigerating compartment.
  • the third connecting rail connects the lower side wall with the right side wall.
  • the fourth connecting rail connects the left side wall with the upper side wall.
  • the thickness of the left side wall and the lower side wall is greater than the thickness of the upper side wall and the right side wall.
  • the ice making chamber wall includes a rear side wall, the rear side wall is arranged close to the rear wall of the refrigerating chamber, and an insulation pad is arranged between the rear side wall and the refrigerating chamber.
  • some embodiments of the present application provide a refrigerator 1 including a main body 10.
  • the main body 10 is provided with a plurality of storage compartments for storing items, such as a refrigerating compartment 10a for refrigerating food, a freezing compartment 10b for freezing food, and an adjustable temperature control compartment 10c.
  • the ice making compartment 100 is arranged inside the refrigerating compartment 10a and used for making ice.
  • the main body 10 may include an inner liner 15 forming storage compartments 10 a, 10 b, 10 c, an outer shell 14 coupled to the inner liner 1 to form an appearance, and an insulating material 16 foamed between the inner liner 15 and the outer shell 14.
  • the storage compartments 10a and 10b may have open front surfaces, and may be partitioned into a refrigerating compartment 10a at an upper part and a freezing compartment 10b and a temperature changing chamber 10c at a lower part by a partition 19a and a partition 19b.
  • the partition 19a and the partition 19b may include an insulating material 16 for blocking heat exchange between the refrigerating compartment 10a and the freezing compartment 10b.
  • the refrigerator 10 includes a pair of rotatable refrigerating compartment doors 11 for opening or closing the open front surface of the refrigerating compartment 10 a.
  • the refrigerating compartment and the door 11 may be hingedly coupled to the main body 10.
  • the refrigerating chamber door 11 may include a first refrigerating chamber door 11a provided on the left side and a second refrigerating chamber door 11b provided on the right side. The first door 11a and the second door 11b are opened by rotating in directions opposite to each other.
  • the refrigerating compartment door 11 may be provided with an ice dispenser 20, which enables the user to extract ice from the ice making compartment 100 without opening the refrigerating compartment door 11.
  • the ice dispenser 20 may include an ice inlet 22 through which ice cubes may be introduced.
  • the ice dispenser 20 may include a lever 21 for controlling the selection of whether to extract ice.
  • the dispenser 20 may further include an ice discharge channel 23 for guiding the ice entering from the ice inlet 22 to be discharged to the outside of the door.
  • the refrigerator includes a freezer door 12, the freezer door 12 is used to open or close the open front surface of the freezer 10b, the freezer door 12 is hinged to the main body 10.
  • the refrigerator includes a variable temperature house door 13, the freezer compartment door 13 is used to open or close the open front surface of the variable temperature house 10 c, and the change house door 13 is hingedly coupled to the main body 10.
  • Each of the refrigerating compartment door 11, the freezing compartment door 12, and the changing room door 13 may have a handle 11c so that the user can open and close the freezing compartment door 12.
  • the refrigerating compartment 10a is provided with an ice making compartment 100 for making ice.
  • the ice making compartment 100 may be separated from other spaces of the refrigerating compartment 10a.
  • the ice making compartment 100 may be disposed at an upper part of one side of the refrigerating compartment 10a, and may be separated from other spaces of the refrigerating compartment 10a by the ice making housing 110.
  • Some embodiments of the present application provide a refrigerator.
  • the ice making chamber in the refrigerating compartment is air-cooled to make ice, that is, the cold air near the evaporator outside the ice making compartment can be guided to the refrigerating compartment through the air duct. Ice to cool the water to make ice.
  • the ice making chamber 100 provided in some embodiments of the present application is cooled by a direct cooling method. That is, the ice-making chamber refrigerant pipe 130 is provided in the ice-making chamber 110.
  • the ice maker discharged by the compressor may flow through the ice making compartment refrigerant pipeline 130 in the ice making compartment 110 for cooling the ice making compartment.
  • the refrigerant discharged from the compressor of the refrigerator flows through the condenser to dissipate heat, and then flows through the refrigerant pipeline of the ice making chamber.
  • the refrigerant absorbs heat in the refrigerant pipeline of the ice making chamber, and then flows back to the compressor for compression. , And loop again.
  • the ice making chamber 100 in some embodiments of the present application may include an ice making chamber housing 110.
  • the ice making compartment 100 may be provided at an upper corner of one side of the refrigerating compartment 10a.
  • the ice making chamber housing 110 of the embodiment of the present application includes a right side wall 111, a lower side wall 112, an upper side wall 113, a left side wall 114, and a rear side wall 115.
  • the left side wall 111, the lower side wall 112, the upper side wall 113, the right side wall 114, and the rear side wall 115 enclose an ice making compartment 110 with a front opening in the refrigerating compartment.
  • the rear side wall 115 is arranged close to the rear wall of the refrigerator compartment.
  • the ice making chamber is arranged at the upper left corner of the refrigerating chamber 10a.
  • the upper side wall 113 may be disposed close to the upper wall of the refrigerator compartment, and the left side wall 114 may be disposed close to the left wall of the refrigerator compartment.
  • an insulating pad 113a is provided between the upper side wall 113 and the upper wall of the refrigerating compartment, and the left side wall 114 and the refrigerating compartment
  • An insulation pad 114a is provided between the left wall of the indoor tank
  • an insulation pad 115a is provided between the rear side wall 115 and the rear wall of the refrigerating chamber.
  • the insulation pads 113a, 114a and 115a may be insulation foam.
  • the lower side wall 112 and the right side wall 111 are opposite to the upper side wall 113, and the thickness of the left side wall 114 is greater than that of the lower side wall 112 and the right side wall 111.
  • the lower side wall 112 and the right side wall 111 are filled with a heat insulating material 16.
  • the right side wall 111 and the lower side wall 112 may be an integral structure.
  • the upper side wall 113 and the left side wall 114 may be an integral structure.
  • the specific installation process is to install the rear side wall 115 on the inner tank 15 first, and then install the integral structure of the left side wall 114 and the upper side wall 113 on the inner tank 15, and after the installation is completed, the box body is arranged and foamed.
  • the right side wall 111 and the lower side wall 112 are made of independent foaming. After the box body, the right side wall and the lower side wall are all foamed, the integral right side wall 111 and the lower side wall 112 are installed on the box body.
  • the rear side wall 115 is installed and fixed on the inner liner 15 with a self-tapping screw 115b. During the installation process, a heat insulation pad 115a is provided between the rear side wall and the inner liner.
  • the ice making chamber housing 110 further includes a first connecting rail 116 and a second connecting rail 117.
  • the heat insulation pad 113a is pasted on the upper side wall 113
  • the heat insulation pad 114a is pasted on the left side wall 114.
  • the left lower part of the integral structure formed by the upper side wall 113 and the left side wall 114 is clamped to the left wall of the inner tank by the first connecting rail 116; the upper side wall 113 and the left side wall 114 are connected by the second connecting rail 117
  • the upper part of the formed integral structure is clamped on the upper wall of the inner liner 15.
  • the integral part of the right side wall 111 and the lower side wall 112 is foamed, the integral part is clamped to the first connecting rail 116 and the second connecting rail 117.
  • the right side wall and the second connecting rail 117 are clamped.
  • the lower side wall is clamped to the first connecting rail 116.
  • the left side wall 111, the lower side wall 112, the upper side wall 113, the right side wall 114, and the rear side wall 115 enclose an ice-making compartment 110 with a front opening in the refrigerating compartment.
  • the ice making chamber 110 is further provided with a front side wall 118 for opening and closing the front opening of the ice making chamber 110.
  • the front side wall 118 and the ice bank 119 are connected.
  • the ice bank 119 is located in the ice making chamber and is used to store ice cubes made in the ice maker.
  • the ice bank 119 may be pulled out of the ice making compartment 100 as the front side wall 118 is opened together.
  • An ice maker 120 is provided inside the ice making chamber 100.
  • the ice maker 120 may be installed on the upper side wall 113 of the ice making chamber 100.
  • the ice maker 120 is located in the ice making compartment 100 above the position of the ice bank 119 in the ice making compartment 100.
  • the ice maker completes the ice maker and discharges ice into the ice storage bucket 119.
  • the ice making chamber is provided with an ice outlet 400 of the ice making chamber, and the ice outlet 400 of the ice making chamber is in communication with the ice storage bucket 119.
  • the ice outlet 400 of the ice making compartment can communicate with the dispenser ice inlet 22 of the dispenser 20 on the refrigerating compartment door.
  • the ice stored in the ice storage box 119 may enter the ice discharge channel 23 of the dispenser 20 on the door of the refrigerating chamber through the ice outlet 400 of the ice making chamber, and then be discharged outside the door through the dispenser 20. Therefore, it is realized that the ice in the ice making chamber can still be discharged through the dispenser located on the refrigerating chamber door when the refrigerating chamber door is closed.
  • the ice outlet 400 of the ice making chamber is located on the front side wall 118 of the ice making chamber housing 110.
  • the ice outlet 400 of the ice making chamber is located on the lower side wall 112 of the ice making chamber housing 110.
  • an ice-making chamber deicing port is opened on the lower side wall 112 of the ice-making chamber housing 110.
  • the front side wall 118 includes a front side wall front shell 1181 and a front side wall rear shell 1182, and the ice storage box 119 is fixedly connected to the front side wall and rear shell.
  • An ice crushing compartment is provided between the front side wall front shell 1181 and the front side wall rear shell 1182.
  • the crushed ice compartment 1180 is connected to the ice storage box 119.
  • the crushed ice compartment is provided with a crushed ice compartment ice discharge port 1180.
  • the side wall 118 currently closes the ice making compartment 100.
  • the crushed ice compartment ice discharge port 1180 is connected to the ice making compartment.
  • the ice outlet 400 is connected.
  • the front side wall 118 and the left side wall 111, the lower side wall 112, the upper side wall 113, the right side wall 114, and the rear side wall 115 are in the refrigerator compartment on the left side wall 111,
  • the lower side wall 112, the upper side wall 113, the right side wall 114, and the rear side wall 115 are provided with a sealing ring 1183 surrounding the front opening of the ice making compartment 110 in the refrigerating compartment.
  • the sealing ring 1183 is fixedly disposed on the inner side of the left side wall 111, the lower side wall 112, the upper side wall 113, the right side wall 114, and the rear side wall 115.
  • the sealing ring 1183 is fixedly arranged on the front side of the left side wall 111, the lower side wall 112, the upper side wall 113, the right side wall 114, and the rear side wall 115.
  • the sealing ring 1183 is fixedly disposed on the outer periphery of the front side of the rear housing 1182 of the front side wall 118.
  • the sealing ring 1183 is fixedly arranged at the rear of the front housing 1181 of the front side wall 118.
  • some embodiments of the present application provide a refrigerator including a refrigerating chamber, and the refrigerating chamber is provided with an ice making chamber; the ice making chamber includes a rear side wall of the ice making chamber; An ice maker is arranged in the ice making room; a water receiving tray is arranged in the ice making room, and the water receiving tray is arranged below the ice maker; the rear of the water receiving tray is inclined downward; and a water receiving funnel is arranged below the rear of the water receiving tray.
  • Some embodiments of the present application provide a refrigerator.
  • the rear of the water receiving tray is provided with a diversion port, and the water receiving funnel is located below the backflow port.
  • Some embodiments of the present application provide a refrigerator, and the water receiving funnel is arranged on the rear side wall of the ice making chamber.
  • Some embodiments of the present application provide a refrigerator, and the water receiving funnel includes a funnel drain pipe; the funnel drain pipe passes through the rear side wall of the ice making compartment and the inner container of the refrigerating compartment.
  • Some embodiments of the present application provide a refrigerator, which further includes a water pipe, at least part of the water pipe is arranged in the heat insulating material between the inner liner and the refrigerator outer shell, and the funnel drain pipe is in communication with the water pipe.
  • Some embodiments of the present application provide a refrigerator, and the back side wall of the ice making chamber and the inner liner of the refrigerating chamber are provided with heat insulation pads.
  • Some embodiments of the present application provide a refrigerator, in which an ice-making chamber refrigerant pipeline is arranged in an ice-making chamber, and a water receiving funnel is located below the ice-making chamber refrigerant pipeline.
  • Some embodiments of the present application provide a refrigerator, an ice storage box is arranged in the ice making chamber, and the water receiving funnel is located behind the ice storage box.
  • Some embodiments of the present application provide a refrigerator, at least part of the refrigerant pipeline is located between the water receiving tray and the ice maker.
  • Some embodiments of the present application provide a refrigerator, which further includes an ice-making chamber fan, and the ice-making chamber fan is arranged on the front side of the ice maker.
  • an ice maker 120 is provided in the ice making chamber, and a water receiving tray 160 is provided under the ice maker, and the water receiving tray is used for receiving ice making.
  • the water dripped by the machine 120 during the ice making and discharging process prevents the water dripped from the ice maker from directly entering the ice storage box 119, causing the ice in the ice storage box to freeze and stick or exchange heat with the water to partially melt. .
  • a water receiving tray 160 is provided under the ice maker 130.
  • the water receiving tray 160 is fixed to the ice maker 130, and the rear of the water receiving tray is inclined downward. The water falling into the drain pan 160 flows backward, and then flows into the water receiving funnel 170 through the orifice of the drain pan.
  • the water receiving funnel 170 is provided on the rear side wall 115 of the ice making chamber 100, and the water receiving funnel 170 includes a funnel drain pipe 171.
  • the funnel drain pipe 171 passes through the rear side wall 115 of the ice making compartment 100 and the refrigerator compartment 15 and is connected to a water pipe located outside the refrigerator compartment.
  • the water flowing into the water receiving funnel passes through the funnel drain pipe 171 and the water pipe, and finally flows back to the water storage tray of the refrigerator.
  • the water in the water storage tray can be heated and evaporated by a condenser or an electric heater.
  • the rear end of the ice maker of the refrigerator is provided with a clamping shaft 129, and the rear end of the water receiving tray 160 is provided with a corresponding hook 161.
  • Figure 11 shows the installation process of the drip tray.
  • the front end of the ice maker is fixed (such as the position and status of the water tray shown in 160").
  • the front end of the water tray 160 is higher than the rear end of the water tray 160.
  • the front end of the water tray can be screwed It is fixed on the front end of the ice maker.
  • the refrigerant pipe 131 is arranged at the lower part of the ice tray 121 of the ice maker 120 and is in thermal contact with the ice tray 121 of the ice maker 120.
  • the refrigerant pipe 131 may directly contact the bottom of the ice tray 121 of the ice maker.
  • the refrigerant pipe 131 may be in contact with the ice tray 121 of the ice maker through a thermally conductive material.
  • a refrigerant pipe bracket 136 for the ice making chamber is provided.
  • the ice-making compartment refrigerant pipe bracket 136 can be fixed to the ice maker by screws 137, so as to press the ice-making compartment refrigerant pipe 131 between the ice maker 120 and the ice-making compartment refrigerant pipe bracket 136. Close together. Specifically, in some embodiments, the ice-making compartment refrigerant pipe 131 is pressed between the ice-making compartment refrigerant pipe bracket 136 and the bottom of the ice tray 121, and the ice tray 121 is in direct contact or through heat conduction. Material contact.
  • an ice making fan compartment 150 with an ice making fan 151 is also provided at the front end of the ice making machine 120.
  • the refrigerant pipe bracket of the ice making chamber is a U-shaped frame, and an air guide pipe is formed between the inner surface of the refrigerant pipe bracket 136 of the ice making chamber and the ice maker 120.
  • the rear end of the air guide pipe is open to form an opening 1362.
  • the front end of the air guide duct is connected to the ice making fan compartment through the air inlet 152 of the ice making fan compartment.
  • the rear side of the ice making fan compartment 150 is provided with an air inlet 152 below the ice maker.
  • An air outlet 153 begins in front of the ice-making fan compartment 150. After the fan is running, the ice-making fan compartment continuously sucks in air from the air duct and blows the air forward. The air blown from the ice-making compartment blows to the front wall of the ice-making compartment and then spreads in all directions, mainly downward. In turn, heat exchange occurs with different parts of the ice making chamber, such as the ice storage box, the ice crushing chamber, and the like.
  • the temperature of the refrigerant pipeline of the ice-making chamber is relatively low, and the space sucked from the air guiding pipeline and the refrigerant pipeline of the ice-making chamber exchange heat, and the temperature is relatively low. After being blown out by the ice making fan, it spreads to different sections and promotes the cooling of the entire ice making room space.
  • a plurality of openings are opened at the bottom of the refrigerant pipe bracket 136 of the ice making chamber, and air can enter the diversion pipe through the opening 1361 at the bottom of the pipe bracket 136.
  • the refrigerant pipe bracket 136 of the ice making chamber is located between the water receiving tray 160 and the ice maker 120.
  • the bottom of the refrigerant pipe bracket 136 of the ice making chamber is provided with a plurality of openings facing the water receiving tray 160. Air can enter the diversion pipe through the opening 1361 at the bottom of the pipe bracket 136, which indirectly promotes the air flow near the water receiving tray 160, and reduces the possibility of frosting of the water receiving tray 160.
  • the ice-making compartment refrigerant pipe 131 is introduced into the ice-making compartment 100 from the outside of the inner container of the refrigerator.
  • the refrigerant pipe 131 of the ice making chamber is connected to the refrigeration cycle system of the refrigerator. It extends to the area near the ice making compartment in the foam layer of the inner and outer shell of the refrigerator. Then enter the ice-making chamber through the inner liner 15 and the ice-making chamber housing 110. Specifically, it enters into the ice-making chamber from the rear side wall 115 of the ice-making chamber.
  • Some embodiments of the present application provide a refrigerator, including a refrigerating chamber, in which an ice-making chamber is provided; and an ice maker, which is provided in the ice-making chamber.
  • Refrigerant pipeline of the ice making chamber deep into the ice making chamber from the outside of the refrigerating chamber; at least part of the refrigerant pipeline of the ice making chamber is arranged under the ice maker; the ice making chamber is provided with the rear side wall of the ice making chamber;
  • a protector duct is provided, and the protector duct extends toward the inside of the ice making chamber; the protector is surrounded on the refrigerant pipeline and inserted into the protector duct; the protector duct can be used to restrict the movement of the protector to the inside of the ice making chamber.
  • Some embodiments of the present application provide a refrigerator in which the minimum dimension of the cross section of the protective member duct in the extending direction of the vertical refrigerant pipeline is smaller than the maximum dimension of the cross section of the protective member perpendicular to the extending direction of the refrigerant pipeline.
  • the protector duct includes a first duct and a second duct; the first duct extends from the inner side of the base plate of the rear side wall to the front side of the ice making chamber; The bending limit surface at the center of the duct; the second duct extends from the bending limit surface to the front of the ice making chamber; the size of the cross section of the vertical refrigerant pipeline of the first duct in the extending direction is larger than the vertical refrigerant of the second duct The size of the cross-section in the direction of extension of the pipeline.
  • Some embodiments of the present application provide a refrigerator, and the protective member includes an upper protective member and a lower protective member.
  • the upper protective member includes a first upper protective member and a second upper protective member
  • the lower protective member includes a first lower protective member and a second lower protective member
  • the first upper protective member It is arranged opposite to the first lower protection piece
  • the second upper protection piece and the second lower protection piece are arranged oppositely
  • the first upper protection piece and the first lower protection piece are matched with the first pipe
  • the second upper protection piece and the second lower protection piece The protector is matched with the second duct.
  • the upper protective member includes a first upper protective member and a second upper protective member;
  • the lower protective member includes a first lower protective member and a second lower protective member;
  • the first upper protective member and The first lower protection piece is arranged oppositely;
  • the second upper protection piece and the second lower protection piece are arranged oppositely;
  • the first upper protection piece and the first lower protection piece are matched with the first pipe;
  • the second upper protection piece and the second lower protection piece The piece is matched with the second conduit.
  • the second upper protector and the second lower protector protrude from the second duct.
  • the upper protective member includes a first upper protective member and a second upper protective member;
  • the lower protective member includes a first lower protective member and a second lower protective member;
  • the first upper protective member and The first lower protection piece is arranged oppositely;
  • the second upper protection piece and the second lower protection piece are arranged oppositely;
  • the first upper protection piece and the first lower protection piece are matched with the first pipe;
  • the second upper protection piece and the second lower protection piece The piece is matched with the second conduit.
  • Some embodiments of the present application provide a refrigerator, which further includes a fixing member; the fixing member is fixed to the rear side wall of the ice making chamber.
  • Some embodiments of the present application provide a refrigerator.
  • the rear side wall of the ice-making chamber is provided with a limited inverted groove, and the fixing member can be inserted into the rear side wall of the ice-making chamber along the limited inverted groove.
  • Some embodiments of the present application provide a refrigerator, and the rear side wall of the ice making chamber is arranged in parallel with the fixing member.
  • Some embodiments of the present application provide a refrigerator, the fixing member is provided with a receiving groove opened on one side, and the ice making chamber refrigerant pipeline 130 is nested in the receiving groove.
  • Some embodiments of the present application provide a refrigerator, which is characterized in that the size of the protector duct and the size of the cross section perpendicular to the extension direction of the refrigerant pipeline gradually decrease from the back to the front.
  • the refrigerant pipeline 131 of the ice making chamber passes through the inner container 15 of the refrigerator, and enters the ice making chamber after passing through the rear side wall 115 of the ice making chamber.
  • the rear side wall of the ice making chamber is provided with a first duct 1151 and a second duct 1152 extending toward the front of the ice making chamber.
  • the first duct 1151 extends from the inner side of the base plate 1150 of the rear side wall 115 to the front side of the ice making chamber.
  • the front end of the first duct 1151 is formed with a bending limit surface 11511 facing the center of the duct.
  • the second duct 1152 extends from the bending limit surface 11511 formed at the front end of the first duct 1151 toward the center of the duct to the front of the ice making chamber.
  • the first duct 1151 and the second duct 1152 communicate with each other.
  • a protective member is provided at the rear of the portion where the refrigerant pipe 130 of the ice-making chamber is inserted into the inner container 15.
  • the specific protective member may include a lower protective member 133 and an upper protective member 134.
  • the upper protective member and the lower protective member may be integrally formed, and the refrigerant pipeline of the ice making chamber is nested in the protective member.
  • the lower protective member 133 includes a first lower protective member 1331 and a second lower protective member 1332, respectively.
  • the upper protective member 134 includes a first upper protective member 1341 and a second upper protective member 1432, respectively.
  • the first upper protective member 1341 and the first lower protective member 1331, and the second upper protective member 1342 and the second lower protective member 1332 are respectively arranged opposite to each other .
  • the fixed outer size of the first upper protective member 1341 and the first lower protective member 1331 matches the inner size of the first duct 1151, and the fixed outer size of the first upper protective member 1341 and the first lower protective member 1331 is larger than that of the second The inner size of the duct 1152.
  • the fixed outer dimensions of the second upper protective member 1342 and the second lower protective member 1332 match the inner dimensions of the second duct 1152.
  • the protector After fixing the protector on the refrigerant pipeline 130 of the ice making chamber, insert it into the first duct 1151 and the second duct 1152, and at least a part of the second upper protector 1342 and the second lower protector 1332 are located in the second duct At least a part of the first upper protector 1341 and the first lower protector 1331 are located in the first duct, and the bending limit surface 11511 formed at the front end of the first duct 1151 facing the center of the duct is opposed to the first upper protector 1341 and The first lower protective member 1331 forms a limit, so that the first upper protective member 1341 and the first lower protective member 1331 cannot enter the second conduit.
  • the protective member and the first duct and the second duct are used to carry out the fiber up, down, left, and right direction on the refrigerant pipeline of the ice making chamber to restrict the movement of the refrigerant pipeline in the ice making chamber, and on the one hand, the refrigerant pipeline of the ice making chamber is realized. Preliminary fixation, while protecting the refrigerant pipeline in the ice making chamber. It also enables the refrigerant pipeline of the ice making compartment to be in better thermal contact with the refrigerant.
  • At least a part of the second upper protective member 1342 and the second lower protective member 1332 protrudes from the front side of the second duct to further protect the refrigerant pipeline of the ice making chamber.
  • the size of the cross section of the first duct 1151 perpendicular to the extending direction of the refrigerant pipeline gradually becomes smaller.
  • the size of the cross section perpendicular to the extending direction of the refrigerant pipeline of the first upper protective member 1341 and the first lower protective member 1331 gradually becomes smaller, which matches the first duct 1151.
  • At least a part of the second upper protective member 1342 and the second lower protective member 1332 protrudes from the front side of the second duct to further protect the refrigerant pipeline of the ice making chamber.
  • the protective member and the first duct and the second duct are used to carry out the fiber up, down, left, and right direction on the refrigerant pipeline of the ice making chamber to restrict the movement of the refrigerant pipeline in the ice making chamber, and on the one hand, the refrigerant pipeline of the ice making chamber is realized. Preliminary fixation, while protecting the refrigerant pipeline in the ice making chamber. It also enables the refrigerant pipeline of the ice making compartment to be in better thermal contact with the refrigerant.
  • the refrigerant pipeline 131 passes through the inner liner 15 of the refrigerator, and enters the ice-making chamber after the rear side wall 115 of the ice-making chamber.
  • the rear side wall of the ice making chamber is provided with a first duct 1151 extending toward the front of the ice making chamber, and the first duct 1151 extends from the inner side of the base plate 1150 of the rear side wall 115 to the front side of the ice making chamber.
  • the size of the cross section of the first duct 1151 perpendicular to the extending direction of the refrigerant pipe gradually becomes smaller.
  • a protective member is provided at the rear of the portion where the refrigerant pipe 130 of the ice-making chamber is inserted into the inner container 15.
  • the specific protective member may include a lower protective member 133 and an upper protective member 134.
  • the upper protective member and the lower protective member may be integrally formed, and the refrigerant pipeline of the ice making chamber is nested in the protective member. After enclosing the protector on the refrigerant pipe 130 of the ice making chamber, it is inserted into the first duct 1151.
  • the size of the cross section perpendicular to the extending direction of the refrigerant pipeline of the lower protective member 133 and the upper protective member 134 gradually becomes smaller, which matches the first duct 1151.
  • the insertion depth of the protector is limited, thereby realizing the connection between the insert and the ice making chamber.
  • the second duct is no longer provided.
  • the upper protection piece and the lower protection piece are also only provided in one section, and the structure is simpler.
  • a fixing member 135 is provided, and the fixing member 135 is fixed to the rear side wall 115 of the ice making chamber, and the protective member is located at the front of the fixing member 135.
  • the fixing member 135 restricts the rearward movement of the protective member.
  • the rear side wall 115 of the ice making chamber is provided with a limited guide groove.
  • the fixing member 135 can be inserted into the rear side wall 115 of the ice making chamber along the limiting guide groove, and the fixing member 135 is parallel to the base plate of the rear side wall of the ice making chamber.
  • the fixing member 135 is located between the protective member and the limiting portion of the limiting guide slot.
  • the fixing member 135 is provided with a receiving groove opened on one side, and the ice making chamber refrigerant pipe 130 is nested in the receiving groove, so that the fixing member 135 is more convenient to install.
  • the extending direction of the refrigerant pipe refers to the extending direction of the refrigerant pipe at the cross-sectional position.

Landscapes

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

Abstract

一种冰箱(1),包括冷藏室(10a),冷藏室(10a)内设置有制冰室(100);制冰室(100)包括制冰室后侧壁(115);制冰室(100)内设置有制冰机(120);制冰室(100)内设置有接水盘(160),接水盘(160)设置在制冰机(120)下方;接水盘(160)后部向下倾斜;接水盘(160)后下方设置有接水漏斗(170)。

Description

一种冰箱 技术领域
本申请涉及冰箱,更具体地,涉及一种带有制冰室的冰箱。
背景技术
冰箱是能够将产生自蒸发器的冷气供应到冷冻室和冷藏室以长时间保持各种食物的新鲜的家用电器。诸如肉、鱼、冰淇淋等的应在冰点温度以下保存的食物被储存在冷冻室中,诸如蔬菜、水果、饮料等的应保存在冰点温度以上的食物被储存在冷藏室中。
冰箱可以包括产生产生和储存冰的制冰装置。在底部安装冰柜冷冻室型冰箱的情况下,制冰室可以设置在冷藏室内部的一个角落处或者在冷藏室门的后表面处。制冰室可以包括用于产生冰的制冰机、以及用于储存制冰机中产生的冰并将冰转移到分配器的冰桶。
发明内容
为了提供一种对制冰机制冰过程中的滴落的水的良好排除的方案,本申请某些实施例提供了一种冰箱,包括冷藏室,冷藏室内设置有制冰室;制冰室包括制冰室后侧壁;制冰室内设置有制冰机;制冰室内设置有接水盘,接水盘设置在制冰机下方;接水盘后部向下倾斜;接水盘后下方设置有接水漏斗。
本申请某些实施例提供了一种冰箱,接水盘后部设置由导流口,接水漏斗位于倒流口下方。导流口便于水流入接水漏斗。
本申请某些实施例提供了一种冰箱,接水漏斗设置在制冰室的后侧壁上。从而可以固定接水漏斗。
本申请某些实施例提供了一种冰箱,接水漏斗包括一漏斗排水管;漏斗排水管穿过制冰室的后侧壁和冷藏室的内胆。实现了接水漏斗向制冰室外部的排水。
本申请某些实施例提供了一种冰箱,还包括导水管,至少部分导水管设置在内胆和冰箱外壳之间的隔热材料中,漏斗排水管与导水管连通。实现了接水漏斗向制冰室外部的排水。
本申请某些实施例提供了一种冰箱,制冰室的后侧壁和冷藏室的内胆设置有隔热垫。
本申请某些实施例提供了一种冰箱,制冰室内设置有制冰室制冷剂管路,接水漏斗位于制冰室制冷剂管路下方。
本申请某些实施例提供了一种冰箱,制冰室内设置有储冰盒,接水漏斗位于储冰盒后方。充分利用制冰室的空间。
本申请某些实施例提供了一种冰箱,至少部分制冷剂管路位于接水盘和制冰机之间。
本申请某些实施例提供了一种冰箱,还包括制冰室风扇,制冰室风扇设置在制冰机前侧。
本申请某些实施例提供的冰箱,包括冷藏室,冷藏室内设置有制冰室;制冰室包括制冰室后侧壁;制冰室内设置有制冰机;制冰室内设置有接水盘,接水盘设置在制冰机下方;接水盘后部向下倾斜;接水盘后下方设置有接水漏斗。通过接水盘后部向下倾斜和接水盘后下方设置有接水漏斗,通过两者的配合,可以较好的排出化霜水。
附图说明
为了对本申请及其优点的更全面的理解,现在参照以下结合附图的描述,在附图中相同的附图标记表示相同的部分,附图中:
图1为本申请的一个实施例中冰箱门关闭状态下的前视示意图;
图2为本申请的一个实施例中冰箱冷藏室门打开状态下的前视示意图;
图3为本申请的一个实施例中冰箱冷藏室门移除后的立体示意图;
图4A为本申请的一个实施例中冰箱制冰室壁的爆炸示意图;
图4B为本申请的一个实施例中冰箱制冰室壁的部分爆炸示意图;
图4C为本申请的一个实施例中冰箱制冰室后侧壁的部分安装结构的爆炸示意图;
图4D为本申请的一个实施例中冰箱制冰室右侧壁和下侧壁一体件的示意图;
图4E为本申请的一个实施例中冰箱制冰室壁安装状态下的平行 于门体关闭状态时的冰箱门体的剖面示意图;
图5为本申请的一个实施例中冰箱制冰室的内部结构的示意图;
图6为本申请的一个实施例中冰箱制冰室的外部机构的示意图;
图7为本申请的一个实施例中冰箱制冰室的制冰室制冷剂管路的固定状态的示意图;
图8为本申请的一个实施例中冰箱制冰室的制冰室制冷剂管路的固定结构的爆炸示意图;
图9为本申请的一个实施例中冰箱制冰室的制冰室内制冷剂管于制冰机的的安装结构的示意图;
图10为本申请的一个实施例中冰箱制冰室的制冰室内制冷剂管于制冰机的的安装结构的侧视示意图;
图11为本申请的一个实施例中冰箱制冰室的制冰室内接水盘的安装结构的侧视示意图;
图12为本申请的一个实施例中冰箱制冰室的制冰室内风扇的安装结构的侧视示意图;
图13为本申请的一个实施例中冰箱制冰室的制冰室结构的爆炸示意图。
为了更清楚地说明本申请实施例或现有技术中的技术方案,下面将对实施例或现有技术描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本申请的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
具体实施方式
下面将结合本申请实施例中的附图,对本申请实施例中的技术方案进行示例性的清楚、完整地描述。显然,本部分所描述的实施例仅是本申请的一部分实施例,而不是全部的实施例。基于本申请中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本申请保护的范围。述本申请的原理的各种各样的实施方式仅仅是当作例示,并且不应以任何方式被解释为限制本 申请的范围。本领域技术人员将理解,本申请的原理可以以任何适当布置的系统或设备被实现。
在本申请的描述中,需要理解的是,术语“中心”、“上”、“下”、“前”、“后”、“左”、“右”、“竖直”、“水平”、“顶”、“底”、“内”、“外”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申请和简化描述,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申请的限制。
术语“第一”、“第二”仅用于描述目的,而不能理解为指示或暗示相对重要性或者隐含指明所指示的技术特征的数量。由此,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。在本申请的描述中,除非另有说明,“多个”的含义是两个或两个以上。
在本申请的描述中,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;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申请中的具体含义。
本申请实施例中提及的“前”“后”,均是以冰箱箱体设置开口和门体的一侧为“前”,以冰箱背离开口的一侧为“后”。
本申请某些实施例提供了一种冰箱,包括冷藏室,冷藏室内设置有制冰室,制冰室包括制冰室壁,制冰室壁包括下侧壁、右侧壁、上侧壁、左侧壁;上侧壁靠近冷藏室内胆的上壁设置;上侧壁与冷藏室内胆直接设置有隔热垫。
本申请某些实施例提供的冰箱为冷藏室设置在冰箱箱体上方的冰箱,例如上冷藏下冷冻的冰箱。
本申请某些实施例提供了一种冰箱,制冰室设置在冷藏室的左上角,制冰室的左侧壁靠近冷藏室内胆的左壁设置;制冰室的左侧壁与冷藏室内胆直接设置有隔热垫。制冰室设置在冷藏室的左上角,制冰室的上侧壁和左侧壁为一体件。制冰室的制冰室右侧壁和下侧壁为一体件。制冰室的包括第一连接轨,第一连接轨与下侧壁固定连接。包括第二连接轨,第二连 接轨与右侧壁固定连接。第一连接轨将左侧壁固定冷藏室的内胆上。第二连接轨将上侧壁固定冷藏室的内胆上。右侧壁与下侧壁为一体件。第一连接轨将下侧壁与冷藏室的内胆连接。,第一连接轨将右侧壁与冷藏室的内胆连接。第一连接轨将下侧壁与左侧壁连接。第一连接轨将右侧壁与上侧壁连接。右侧壁和下侧壁的厚度大于上侧壁和左侧壁的厚度。
本申请某些实施例提供了一种冰箱,制冰室设置在冷藏室的右上角,右侧壁靠近冷藏室内胆的右壁设置;右侧壁与冷藏室内胆直接设置有隔热垫。上侧壁和右侧壁为一体件。制冰室下侧壁和左侧壁为一体件。包括第三连接轨,第三连接轨与下侧壁固定连接。包括第四连接轨,第四连接轨与左侧壁固定连接。第三连接轨将右侧壁固定冷藏室的内胆上。第四连接轨将上侧壁固定冷藏室的内胆上。左侧壁与下侧壁为一体件。第三连接轨将下侧壁与冷藏室的内胆连接。第四连接轨将左侧壁与冷藏室的内胆连接。第三连接轨将下侧壁与右侧壁连接。第四连接轨将左侧壁与上侧壁连接。左侧壁和下侧壁的厚度大于上侧壁和右侧壁的厚度。
本申请某些实施例提供了一种冰箱,制冰室壁包括后侧壁,后侧壁靠近冷藏室内胆的后壁设置,后侧壁与冷藏室内胆之间设置有隔热垫。
以制冰室设置在冰箱的冷藏室左上角为例,在本申请某些实施例中,如图1-3中所示,本申请某些实施例提供了一种冰箱1,包括主体10。主体10中设置有用于存储物品的多个储藏室,例如冷藏食物的冷藏室10a和用于冷冻食物的冷冻室10b和可调温度控制间室10c。
制冰室100被配置在冷藏室10a内部,用于制冰。
主体10可以包括形成储藏室10a、10b、10c的内胆15、联接到内胆1以形成外观的外壳14、以及在内胆15与外壳14之间发泡的隔热材料16。
储藏室10a和10b可以具有敞开的前表面,并且可以通过分隔件19a和分隔件19b被分隔成上部处的冷藏室10a和下部处的冷冻室10b和变温室10c。分隔件19a和分隔件19b可以包括用于阻挡冷藏室10a与冷冻室10b之间的热交换的隔热材料16。
冰箱10包括一对可旋转的冷藏室门11,用于打开或关闭冷藏室10a敞开的前表面,冷藏室,门11可以铰链联接到主体10。冷藏室门11可以包括设置在左侧的第一冷藏室门11a和设置在右侧的第二冷藏室门11b。第一门11a和第二门11b通过在彼此相反的方向上旋转而被打开。
冷藏室门11可以设置有冰分配器20,分配器20能够使用户可以不打开冷藏室门11,从外部提取制冰室100的冰。冰分配器20可以包括冰入口22,冰块可以通过冰入口22被引入的分配器。冰分配器20可以包括杠杆21,用于控制选择是否提取冰。分配器20还可以包括排冰通道23,用于引导从冰入口22进入的冰从排向门体外侧。
冰箱包括一冷冻室门12,冷冻室门12用于打开或者关闭冷冻室10b的敞开的前表面,冷冻室门12铰链联接到主体10.
冰箱包括一变温室门13,冷冻室门13用于打开或者关闭变温室10c的敞开的前表面,变温室门13铰链联接到主体10。
冷藏室门11,冷冻室门12和变温室门13的每个可以具有把手11c,使得用户可以打开和关闭冷冻室门12。
冷藏室10a设置有用于制冰的制冰室100。制冰室100可以与冷藏室10a的其他空间隔开。
制冰室100可以设置在冷藏室10a的一侧的上部处,并且可以通过制冰壳体110与冷藏室10a的其他空间隔开。
本申请某些实施例提供了一种冰箱,冷藏室中的制冰室采用风冷方式制冰,即可以通过风道,将制冰室外部的蒸发器附近的冷空气引导到冷藏室中制冰,以对水进行冷却制冰。
本申请某些实施例提供了的制冰室100采用直冷方式制冷。即制冰室110中设置有制冰室制冷剂管路130。经过压缩机排除的制冰机可以流经制冰室110中的制冰室制冷剂管路130,用于给制冰室制冷。从冰箱压缩机排除的制冷剂,流经冷凝器进行散热后,流经制冰室制冷剂管路,制冷剂在制冰室制冷剂管路内进行吸热,然后回流到压缩机,进行压缩,再次循环。
本申请某些实施例中的制冰室100可以包括制冰室壳体110。制冰室100可以设置在冷藏室10a的一侧的上部角落处。
本申请某些实施例中,本申请实施例的制冰室壳体110包括右侧壁111,下侧壁112,上侧壁113,左侧壁114,后侧壁115。左侧壁111,下侧壁112,上侧壁113,右侧壁114,后侧壁115在冷藏室中围设成一个前方开口的制冰室110。后侧壁115靠近冷藏室内胆的后壁设置。
本申请某些实施例中,制冰室设置在冷藏室10a的左上角。上侧壁113可以靠近冷藏室内胆的上壁设置,左侧壁114可以靠近冷藏室内胆的左壁设置。
本申请某些实施例中,为了增加制冰室和冷藏室之间的隔热性能,上侧壁113和冷藏室内胆的上壁之间设置有隔热垫113a,左侧壁114和冷藏室内胆的左壁之间设置有隔热垫114a,后侧壁115和冷藏室内胆的后壁之间设置有隔热垫115a。隔热垫113a,114a和115a可以是隔热泡棉。
本申请某些实施例中,下侧壁112和右侧壁111相对上侧壁113,左侧壁114的厚度大于下侧壁112和右侧壁111。下侧壁112和右侧壁111内填充有隔热材料16。
在本申请某些实施例中,具体的,右侧壁111和下侧壁112可以一体结构件。上侧壁113和左侧壁114可以为一体结构件。具体的安装过程为先将后侧壁115安装在内胆15上,然后安装左侧壁114和上侧壁113的一体结构安装在内胆15上,安装完毕后对箱体进行整理发泡。
右侧壁111和下侧壁112采用独立发泡形式制成。箱体和右侧壁和下侧壁均发泡完成后,将一体右侧壁111和和下侧壁112安装在箱体上。
具体的,通过自攻螺钉115b将后侧壁115安装固定在内胆15上,在安装过程中,后侧壁和内胆之间设置有隔热垫115a。
本申请某些实施例中,制冰室壳体110还包括第一连接轨116,第二连接轨117。将隔热垫113a粘贴到上侧壁113上,将隔热垫114a粘贴到左侧壁114上。通过第一连接轨116将上侧壁113和左侧壁114形成的一体结构件的左下部卡固在内胆的左壁上;通过第二连接轨117将上侧壁113和左侧壁114形成的一体结构件的上部卡固在内胆15的上壁上。
右侧壁111和下侧壁112的一体件发泡完成后,将该一体件卡接到第一连接轨116和第二连接轨117上。右侧壁和第二连接轨117卡接。下侧壁和第一连接轨116卡接。
安装完毕后,左侧壁111,下侧壁112,上侧壁113,右侧壁114,后侧壁115在冷藏室中围设成一个前方开口的制冰室110。
在本申请某些实施例中,该制冰室110还设置有前侧壁118,用于开闭制冰室110的前方开口。
在本申请某些实施例中,前侧壁118和储冰盒119相连接。当前侧壁118关闭制冰室的前方开口时,储冰盒119位于制冰室内,用于存储制冰机中制成的冰块。当前侧壁118打开时,储冰盒119可以随着前侧壁118一起打开而被拉出制冰室100。
制冰室100内部设置有制冰机120。在本申请某些实施例中,制冰机120可以安装在制冰室100的上侧壁113上。制冰机120在制冰室100内位于储冰盒119在制冰室100内位置的上方。制冰机完成制冰机,会将冰排出到储冰桶119中。
制冰室设置有制冰室出冰口400,制冰室出冰口400与储冰桶中119连通。当冷藏室门体关闭时,制冰室出冰口400可以于位于冷藏室门体上的分配器20的分配器入冰口22连通。存储在储冰盒119中的冰可以通过制冰室出冰口400进入冷藏室门体上的分配器20的排冰通道23,进而通过分配器20在门外排除。从而实现了在冷藏室门体关闭的状态下,仍然可以通过位于冷藏室门体上的分配器排出位于制冰室内的冰。
在本申请某些实施例中,制冰室出冰口400位于可以形成在制冰室壳体110的前侧壁118上。
在本申请某些实施例中,制冰室出冰口400位于可以形成在制冰室壳体110的下侧壁112上。如图13所示,本申请某些实施例中,在制冰冰室壳体110的下侧壁112上开设有制冰室除冰口。前侧壁118包括前侧壁前壳1181和前侧壁后壳1182,储冰盒119与前侧壁后壳体固定连接。前侧壁前壳1181和前侧壁后壳1182之间设置有碎冰间室。碎冰间室1180与储冰盒119连通,碎冰间室设置有碎冰间室排冰口1180,当前侧壁118关闭制冰室100是,碎冰间室排冰口1180与制冰室出冰口400连通。为了更好的对制冰室进行密封,前侧壁118和左侧壁111,下侧壁112,上侧壁113,右侧壁114,后侧壁115在冷藏室中在左侧壁111,下侧壁112,上侧壁113,右侧壁114,后侧壁115在冷藏室中围设成制冰室110的前方开口的周围设置有密封圈1183。
在本申请某些实施例中,密封圈1183固定设置在左侧壁111,下侧壁112,上侧壁113,右侧壁114,后侧壁115的内侧。
在本申请某些实施例中,密封圈1183固定设置在左侧壁111,下侧壁112,上侧壁113,右侧壁114,后侧壁115的前侧。
在本申请某些实施例中,密封圈1183固定设置在前侧壁118的后壳体1182的前侧的外周。
在本申请某些实施例中,密封圈1183固定设置在前侧壁118的前壳体1181的后部。
为了更好的排除制冰机制冰过程中低落的水滴,本申请某些实施例提供了一种冰箱,包括冷藏室,冷藏室内设置有制冰室;制冰室包括制冰室后侧壁;制冰室内设置有制冰机;制冰室内设置有接水盘,接水盘设置在制冰机下方;接水盘后部向下倾斜;接水盘后下方设置有接水漏斗。
本申请某些实施例提供了一种冰箱,接水盘后部设置由导流口,接水漏斗位于倒流口下方。
本申请某些实施例提供了一种冰箱,接水漏斗设置在制冰室的后侧壁上。
本申请某些实施例提供了一种冰箱,接水漏斗包括一漏斗排水管;漏斗排水管穿过制冰室的后侧壁和冷藏室的内胆。
本申请某些实施例提供了一种冰箱,还包括导水管,至少部分导水管设置在内胆和冰箱外壳之间的隔热材料中,漏斗排水管与导水管连通。
本申请某些实施例提供了一种冰箱,制冰室的后侧壁和冷藏室的内胆设置有隔热垫。
本申请某些实施例提供了一种冰箱,制冰室内设置有制冰室制冷剂管路,接水漏斗位于制冰室制冷剂管路下方。
本申请某些实施例提供了一种冰箱,制冰室内设置有储冰盒,接水漏斗位于储冰盒后方。
本申请某些实施例提供了一种冰箱,至少部分制冷剂管路位于接水盘和制冰机之间。
本申请某些实施例提供了一种冰箱,还包括制冰室风扇,制冰室风扇设置在制冰机前侧。
在本申请某些实施例中,如图5、图6、图7所示,制冰室内设置有制冰机120,制冰机下方设置有接水盘160,接水盘用于承接制冰机120在制冰排冰过程中滴漏下来的水,避免制冰机滴漏下来的水直接进入储冰盒119中,导致储冰盒中的冰块冻结粘连或者和水进行换热而部分化开。
在本申请某些实施例中,制冰机130下方设置有接水盘160。接水盘160固定到制冰机130上,接水盘后部向下倾斜设置。落入接水盘160的 水会向后方流动,进而通过接水盘的导流口流入接水漏斗170。
接水漏斗170设置在制冰室100的后侧壁115上,并且,接水漏斗170包括一个漏斗排水管171。漏斗排水管171穿过制冰室100的后侧壁115以及冷藏室内胆15,于位于冷藏室内胆外的导水管连接。流入接水漏斗中的水通过漏斗排水管171和导水管,最终倒流至冰箱的储水盘。储水盘中的水可以通过冷凝器或者电加热器等加热蒸发。
在本申请某些实施例中,如图11所示,冰箱的制冰机的后端设置有卡轴129,接水盘160的后端设置有对应的卡钩161。图11展示了接水盘的安装过程。安装接水盘时,可以向将卡钩钩挂到卡轴129上(如160’展示的接水盘的位置和状态),然后向上抬起接水盘的前端,将接水盘的前端于制冰机前端固定(如160”展示的接水盘的位置和状态)。安装完毕后,接水盘160的前端高于接水盘160的后端。具体的,接水盘前端可以通过螺钉等固定在制冰机的前端。
为了实现制冰机120的快速制冰,制冷剂管131设置在制冰机120的冰格121的下部,并且于制冰机的冰格121热接触。
在本申请某些实施例中,制冷剂管131可以在制冰机的冰格121的底部直接接触。
在本申请某些实施例中,制冷剂管131可以在制冰机的冰格121通过导热材料接触。
为了制冷剂管131和冰格121的良好热接触。在本申请某些实施例中设置有制冰室制冷剂管路托架136。制冰室制冷剂管路托架136可以通过螺钉137固定在制冰机上,从而将位于制冰机120和制冰室制冷剂管路托架136之间的制冰室制冷剂管路131压合固定住。具体的,在某些实施例中,制冰室制冷剂管路131被压合在制冰室制冷剂管路托架136和冰格121的底部之间,于冰格121直接接触或者通过导热材料接触。
为了促进整个制冰室的热循环,在制冰机120的前端还设置有制冰风扇间室150有制冰风扇151。制冰室制冷剂管路托架为U型架,制冰室制冷剂管路托架136的内表面和和制冰机120之间形成了导风管路。该导风管路的后端敞开,形成开口1362。该导风管路的前端通过制冰风扇间室的进风口152于制冰风扇间室连通。制冰风扇间室150的后侧在制冰机的下方开设有进风口152。制冰风扇间室150的前方开始有出风口153。风扇 运行后,制冰风扇间室不断的从导风管路内吸入空气,并将空气向前方吹出。从制冰间室吹出的空气吹到制冰室前壁后向各个方向扩散,主要向下方扩撒。进而和整个制冰室内不同的部分如储冰盒,碎冰室等发生热交换。在制冰室制冷剂管路正常运行时,制冰室制冷剂管路的温度较低,从导风管路被吸入的空间和制冰室制冷剂管路发生热交换,温度相对较低。通过制冰风扇吹出后,扩散到各个不同的区间,促进了整个制冰室空间的冷却。
为了更好的促进空气的流通,在制冰室制冷剂管路托架136的底部开设有多个开口,空气可以通过管路托架136的底部的开口1361进入导流管路中。
接水盘160安装后,制冰室制冷剂管路托架136位于接水盘160和制冰机120之间。制冰室制冷剂管路托架136的底部开设有多个开口朝向接水盘160。空气可以通过管路托架136的底部的开口1361进入导流管路中也间接促进了接水盘160附近的空气流动,减轻了接水盘160的结霜的可能性。
制冰室制冷剂管路131是由冰箱内胆的外部引入到制冰室100中。具体的,制冰室制冷剂管路131于冰箱的制冷循环系统联通。在冰箱内胆和外壳的发泡层中延伸到制冰室附近的区域。然后穿过内胆15和制冰室壳体110进入制冰室。具体的,从制冰室的后侧壁115进入到制冰室。
由于在冰箱的制造过程总需要先安装制冰室制冷剂管路131,然后才能对冰箱内胆15和冰箱外壳之间进行发泡。故需要对制冰室制冷剂管路进行131进行预固定。本申请某些实施例提供了一种具体的固定结构。
本申请某些实施例提供了一种冰箱,包括冷藏室,冷藏室内设置有制冰室;制冰机,设置在制冰室中。制冰室制冷剂管路;从冷藏室内胆外侧深入制冰室;至少部分制冰室制冷剂管路设置在制冰机下方;制冰室设置有制冰室后侧壁;后侧壁设置有保护件导管,保护件导管朝向制冰室内部延伸;保护件,围设在制冷剂管路上,并插入保护件导管;保护件导管可以用于限制保护件向制冰室内部的移动。
本申请某些实施例提供了一种冰箱,保护件导管的垂直制冷剂管路的延伸方向的截面的最小尺寸小于保护件的垂直制冷剂管路的延伸方向的截面最大尺寸。
本申请某些实施例提供了一种冰箱,保护件导管包括第一导管和第二导管;第一导管从后侧壁的基板内侧向制冰室前侧延伸;第一导管的前端形成有朝向导管中心的弯折限位面;第二导管从弯折限位面向制冰室前部延伸;第一导管的的垂直制冷剂管路的延伸方向的截面的尺寸大于第二导管的垂直制冷剂管路的延伸方向的截面的尺寸。
本申请某些实施例提供了一种冰箱,保护件包括上保护件和下保护件。
本申请某些实施例提供了一种冰箱,,上保护件包括第一上保护件和第二上保护件;下保护件包括第一下保护件和第二下保护件;第一上保护件和第一下保护件相对设置;第二上保护件和第二下保护件相对设置;第一上保护件和第一下保护件与第一导管相匹配;第二上保护件和第二下保护件与第二导管相匹配。
本申请某些实施例提供了一种冰箱,上保护件包括第一上保护件和第二上保护件;下保护件包括第一下保护件和第二下保护件;第一上保护件和第一下保护件相对设置;第二上保护件和第二下保护件相对设置;第一上保护件和第一下保护件与第一导管相匹配;第二上保护件和第二下保护件与第二导管相匹配。第二上保护件和第二下保护件从第二导管伸出。
本申请某些实施例提供了一种冰箱,上保护件包括第一上保护件和第二上保护件;下保护件包括第一下保护件和第二下保护件;第一上保护件和第一下保护件相对设置;第二上保护件和第二下保护件相对设置;第一上保护件和第一下保护件与第一导管相匹配;第二上保护件和第二下保护件与第二导管相匹配。
本申请某些实施例提供了一种冰箱,还包括固定件;固定件与制冰室后侧壁固定。
本申请某些实施例提供了一种冰箱,制冰室后侧壁设置有限位倒槽,固定件可以沿限位倒槽插入制冰室后侧壁。
本申请某些实施例提供了一种冰箱,制冰室后侧壁设置与固定件平行设置。
本申请某些实施例提供了一种冰箱,固定件设置有一侧开口的容纳槽,制冰室制冷剂管路130嵌套在容纳槽中。
本申请某些实施例提供了一种冰箱,其特征在于保护件导管的的尺寸的垂直制冷剂管路的延伸方向的截面的尺寸从后向前逐渐变小。
如图7、图8、图9所示,制冰室制冷剂管路131穿过冰箱内胆15, 制冰室后侧壁115后,进入制冰室。制冰室后侧壁设置有向朝向制冰室前部延伸的第一导管1151和第二导管1152.第一导管1151从后侧壁115的基板1150内侧向制冰室前侧延伸。第一导管1151的前端形成有朝向导管中心的弯折限位面11511。第二导管1152从第一导管1151的前端形成的朝向导管中心的弯折限位面11511向制冰室前部延伸。第一导管1151和第二导管1152连通。
同时,制冰室制冷剂管路130插入内胆15的部分的后部设置有保护件,具体的保护件可以包括下保护件133和上保护件134。在某些实施例中,上保护件和下保护件可以一体成型,制冰室制冷剂管路嵌套在保护件中。下保护件133分别包括第一下保护件1331和第二下保护件1332。上保护件134分别包括第一上保护件1341和第二上保护件1432.第一上保护件1341和第一下保护件1331,第二上保护件1342和第二下保护件1332分别相对设置。第一上保护件1341和第一下保护件1331固定后的外部尺寸与第一导管1151的内部尺寸相匹配,第一上保护件1341和第一下保护件1331固定后的外部尺寸大于第二导管1152的内部尺寸.第二上保护件1342和第二下保护件1332固定后的外部尺寸与第二导管1152的内部尺寸相匹配。将保护件维设在制冰室制冷剂管路130上后,将其插入第一导管1151和第二导管1152,第二上保护件1342和第二下保护件1332的至少一部分位于第二导管中,第一上保护件1341和第一下保护件1331至少一部分位于第一导管中,且第一导管1151的前端形成的朝向导管中心的弯折限位面11511对第一上保护件1341和第一下保护件1331形成限位,使得第一上保护件1341和第一下保护件1331无法进入第二导管。利用保护件和第一导管和第二导管共同对制冰室制冷剂管路进行上下左右方向的纤维,限制制冰室制冷剂管路的移动,一方面实现了对制冰室制冷剂管路的初步固定,同时对制冰室制冷剂管路进行了保护。也使得制冰室制冷剂管路可以更好的与制冷剂热接触。
在本申请某些实施例中,第二上保护件1342和第二下保护件1332的至少一部分从第二导管中的前侧伸出,进一步对制冰室制冷剂管路起到保护作用。
在本申请某些实施例中,第一导管1151的的垂直制冷剂管路的延伸方向的截面的尺寸逐渐变小。第一上保护件1341和第一下保护件1331的的垂直制冷剂管路的延伸方向的截面的尺寸逐渐变小,与第一导管1151 相匹配。
在本申请某些实施例中,第二上保护件1342和第二下保护件1332的至少一部分从第二导管中的前侧伸出,进一步对制冰室制冷剂管路起到保护作用。
利用保护件和第一导管和第二导管共同对制冰室制冷剂管路进行上下左右方向的纤维,限制制冰室制冷剂管路的移动,一方面实现了对制冰室制冷剂管路的初步固定,同时对制冰室制冷剂管路进行了保护。也使得制冰室制冷剂管路可以更好的与制冷剂热接触。
在本申请某些实施例中,制冷剂管路131穿过冰箱内胆15,制冰室后侧壁115后,进入制冰室。制冰室后侧壁设置有向朝向制冰室前部延伸的第一导管1151,第一导管1151从后侧壁115的基板1150内侧向制冰室前侧延伸。第一导管1151的垂直制冷剂管路的延伸方向的截面的尺寸逐渐变小。同时,制冰室制冷剂管路130插入内胆15的部分的后部设置有保护件,具体的保护件可以包括下保护件133和上保护件134。在某些实施例中,上保护件和下保护件可以一体成型,制冰室制冷剂管路嵌套在保护件中。将保护件围设在制冰室制冷剂管路130上后,将其插入第一导管1151。下保护件133和上保护件134的的垂直制冷剂管路的延伸方向的截面的尺寸逐渐变小,与第一导管1151相匹配。由于第一导管1151的垂直制冷剂管路的延伸方向的截面的尺寸逐渐变小,当保护件插入第一导管时,就限制了保护件的插入深度,从而实现了对插入件和制冰室制冷剂管路的上、下、左、右以及前侧的限位。在这种实现方式中,不再设置第二导管。上保护件和下保护件也仅仅一段式设置,结构更为简单。
在申请某些实施例中,设置有固定件135,固定件135与制冰室后侧壁115固定,保护件位于固定件135的前部。固定件135对保护件向后方移动进行限位。从而与前侧的导管配合在前后方向上限制了制冷剂古管路的活动,对制冰室制冷剂管路进行了初步定位。
在本申请某些实施例中,制冰室后侧壁115设置有限位导槽。固定件135可以沿限位导槽插入制冰室后侧壁115,固定件135平行与所述制冰室后侧壁的基板。固定件135位于保护件和限位导槽的限位部之间。
在本申请某些实施例中,固定件135设置有一侧开口的容纳槽,同时将制冰室制冷剂管路130嵌套在容纳槽中,使得固定件135的安装更为便 捷。
上述实施例中提及的垂直制冷剂管路的延伸方向的截面时,制冷剂管路的延伸方向是指该制冷剂管路在截面位置的延伸方向。
以上已经说明和描述了本申请的具体实施方式。然而,本申请不限于前述具体的示例性实施方式,并且本领域技术人员可以在权利要求的范围内各种各样地修改本申请而不背离所附权利要求所主张的本申请的主旨。
虽然已经用示例性实施方式描述了本申请,但是本领域技术人员可以想到各种各样的改变和修改。本申请旨在涵盖落入所附权利要求的范围内的这样的改变和修改。
以上,仅为本申请的具体实施方式,但本申请的保护范围并不局限于此,任何熟悉本技术领域的技术人员在本申请揭露的技术范围内,可轻易想到变化或替换,都应涵盖在本申请的保护范围之内。因此,本申请的保护范围应以权利要求的保护范围为准。

Claims (10)

  1. 一种冰箱,包括冷藏室,冷藏室内设置有制冰室;
    所述制冰室包括制冰室后侧壁;
    所述制冰室内设置有制冰机;
    所述制冰室内设置有接水盘,所述接水盘设置在所述制冰机下方;
    所述接水盘后部向下倾斜;
    所述接水盘后下方设置有接水漏斗。
  2. 根据权利要求1的冰箱,其特征在于接水盘后部设置由导流口,所述接水漏斗位于所述倒流口下方。
  3. 根据权利要求1的冰箱,其特征在于,所述接水漏斗设置在所述制冰室的后侧壁上。
  4. 根据权利要求3的所述的一种冰箱,其特征在于,接水漏斗包括一漏斗排水管;
    所述漏斗排水管穿过所述制冰室的后侧壁和所述冷藏室的内胆。
  5. 根据权利要求4的所述的一种冰箱,其特征在于,还包括导水管,至少部分所述导水管设置在所述内胆和冰箱外壳之间的隔热材料中,所述漏斗排水管与所述导水管连通。
  6. 根据权利要求3的所述的一种冰箱,其特征在于,所述制冰室的后侧壁和所述冷藏室的内胆设置有隔热垫。
  7. 根据权利要求1的所述的一种冰箱,其特征在于,所述制冰室内设置有制冰室制冷剂管路,所述接水漏斗位于所述制冰室制冷剂管路下方。
  8. 根据权利要求1的所述的一种冰箱,其特征在于,所述制冰室内设置有储冰盒,所述接水漏斗位于所述储冰盒后方。
  9. 根据权利要求7的所述的一种冰箱,其特征在于,至少部分所述制冷剂管路位于所述接水盘和所述制冰机之间。
  10. 如权利要求1所述的所述的一种冰箱,其特征在于,还包括制冰室风扇,所述制冰室风扇设置在所述制冰机前侧。
PCT/CN2019/104808 2019-09-03 2019-09-06 一种冰箱 WO2021042399A1 (zh)

Priority Applications (8)

Application Number Priority Date Filing Date Title
EP20861557.5A EP3964773A4 (en) 2019-09-03 2020-05-22 FRIDGE
PCT/CN2020/091852 WO2021042769A1 (zh) 2019-09-03 2020-05-22 一种冰箱
CN202080000814.9A CN112136013A (zh) 2019-09-03 2020-05-22 一种冰箱
AU2020341603A AU2020341603B2 (en) 2019-09-03 2020-05-29 Refrigerator
PCT/CN2020/093363 WO2021042776A1 (zh) 2019-09-03 2020-05-29 一种冰箱
CN202080000881.0A CN112771339A (zh) 2019-09-03 2020-05-29 一种冰箱
US17/565,926 US20220154990A1 (en) 2019-09-03 2021-12-30 Refrigerator
AU2023203620A AU2023203620A1 (en) 2019-09-03 2023-06-09 Refrigerator

Applications Claiming Priority (12)

Application Number Priority Date Filing Date Title
CN201910829074.9A CN110440504B (zh) 2019-09-03 2019-09-03 一种冰箱
CN201921454615.6U CN211739628U (zh) 2019-09-03 2019-09-03 一种冰箱
CN201921455414.8U CN211739629U (zh) 2019-09-03 2019-09-03 一种冰箱
CN201910829074.9 2019-09-03
CN201910829087.6A CN110440513B (zh) 2019-09-03 2019-09-03 一种冰箱
CN201910829072.XA CN110440503A (zh) 2019-09-03 2019-09-03 一种冰箱
CN201921454615.6 2019-09-03
CN201921454625.X 2019-09-03
CN201921455414.8 2019-09-03
CN201921454625.XU CN210772966U (zh) 2019-09-03 2019-09-03 一种冰箱
CN201910829072.X 2019-09-03
CN201910829087.6 2019-09-03

Publications (1)

Publication Number Publication Date
WO2021042399A1 true WO2021042399A1 (zh) 2021-03-11

Family

ID=74852553

Family Applications (2)

Application Number Title Priority Date Filing Date
PCT/CN2019/104808 WO2021042399A1 (zh) 2019-09-03 2019-09-06 一种冰箱
PCT/CN2020/091852 WO2021042769A1 (zh) 2019-09-03 2020-05-22 一种冰箱

Family Applications After (1)

Application Number Title Priority Date Filing Date
PCT/CN2020/091852 WO2021042769A1 (zh) 2019-09-03 2020-05-22 一种冰箱

Country Status (1)

Country Link
WO (2) WO2021042399A1 (zh)

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CA2618960A1 (en) * 2007-07-20 2009-01-20 General Electric Company Method and apparatus for a refrigerator
US20090277210A1 (en) * 2008-05-08 2009-11-12 Whirlpool Corporation Refrigerator with easy access drawer
CN102331126A (zh) * 2011-10-09 2012-01-25 姜祥环 一种制冰机的冰水分离装置
CN103185431A (zh) * 2011-12-30 2013-07-03 三星电子株式会社 冰箱
CN106257215A (zh) * 2015-06-17 2016-12-28 东部大宇电子株式会社 包括制冰机的冰箱及其除霜水的收集方法
CN205957546U (zh) * 2016-08-23 2017-02-15 浙江景祥空调设备有限公司 一种蒸发器组件

Family Cites Families (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR20050114109A (ko) * 2004-05-31 2005-12-05 삼성전자주식회사 얼음공급장치 및 이를 갖춘 냉장고
US7360377B2 (en) * 2004-09-30 2008-04-22 Samsung Electronics Co., Ltd. Refrigerator
KR101177463B1 (ko) * 2010-01-04 2012-08-24 엘지전자 주식회사 얼음보관장치 및 이를 포함하는 냉장고, 정수기
KR101775403B1 (ko) * 2011-01-10 2017-09-07 삼성전자주식회사 제빙장치 및 이를 갖는 냉장고
KR102573774B1 (ko) * 2016-07-13 2023-09-04 삼성전자주식회사 냉장고
CN106595172A (zh) * 2016-12-06 2017-04-26 海信容声(广东)冰箱有限公司 一种具有制冰室的风冷冰箱
KR102338471B1 (ko) * 2016-12-29 2021-12-14 삼성전자주식회사 냉장고

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CA2618960A1 (en) * 2007-07-20 2009-01-20 General Electric Company Method and apparatus for a refrigerator
US20090277210A1 (en) * 2008-05-08 2009-11-12 Whirlpool Corporation Refrigerator with easy access drawer
CN102331126A (zh) * 2011-10-09 2012-01-25 姜祥环 一种制冰机的冰水分离装置
CN103185431A (zh) * 2011-12-30 2013-07-03 三星电子株式会社 冰箱
CN106257215A (zh) * 2015-06-17 2016-12-28 东部大宇电子株式会社 包括制冰机的冰箱及其除霜水的收集方法
CN205957546U (zh) * 2016-08-23 2017-02-15 浙江景祥空调设备有限公司 一种蒸发器组件

Also Published As

Publication number Publication date
WO2021042769A1 (zh) 2021-03-11

Similar Documents

Publication Publication Date Title
US10514195B2 (en) Refrigerator
CN110440504B (zh) 一种冰箱
KR101560147B1 (ko) 냉장고
KR20130114850A (ko) 냉장고 및 그 제조 방법
EP2519793B1 (en) Refrigerator
KR20160105218A (ko) 냉장고
WO2019120104A1 (zh) 冰箱
KR20190013112A (ko) 냉장고
JP5254578B2 (ja) 冷蔵庫
KR101661618B1 (ko) 냉장고의 필터 일체형 제빙장치 및 그 제조 방법
AU2023203620A1 (en) Refrigerator
CN110440513B (zh) 一种冰箱
CN207778905U (zh) 冰箱
CN211739628U (zh) 一种冰箱
CN210772966U (zh) 一种冰箱
CN211739629U (zh) 一种冰箱
WO2021042399A1 (zh) 一种冰箱
KR101132548B1 (ko) 냉장고
WO2021042776A1 (zh) 一种冰箱
CN207778906U (zh) 冰箱
KR101132554B1 (ko) 냉장고
JP2018109501A (ja) 冷蔵庫
JP5617003B2 (ja) 冷蔵庫
KR20110078656A (ko) 냉장고
CN110440503A (zh) 一种冰箱

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 19944136

Country of ref document: EP

Kind code of ref document: A1

NENP Non-entry into the national phase

Ref country code: DE

32PN Ep: public notification in the ep bulletin as address of the adressee cannot be established

Free format text: NOTING OF LOSS OF RIGHTS PURSUANT TO RULE 112(1) EPC (EPO FORM 1205A DATED 11/08/2022)

122 Ep: pct application non-entry in european phase

Ref document number: 19944136

Country of ref document: EP

Kind code of ref document: A1