WO2022142556A1 - 冰箱 - Google Patents

冰箱 Download PDF

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Publication number
WO2022142556A1
WO2022142556A1 PCT/CN2021/121794 CN2021121794W WO2022142556A1 WO 2022142556 A1 WO2022142556 A1 WO 2022142556A1 CN 2021121794 W CN2021121794 W CN 2021121794W WO 2022142556 A1 WO2022142556 A1 WO 2022142556A1
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WO
WIPO (PCT)
Prior art keywords
ice
installation box
hook
mounting plate
refrigerator according
Prior art date
Application number
PCT/CN2021/121794
Other languages
English (en)
French (fr)
Inventor
范艳武
冯家明
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
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
Publication of WO2022142556A1 publication Critical patent/WO2022142556A1/zh

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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
    • F25DREFRIGERATORS; COLD ROOMS; ICE-BOXES; COOLING OR FREEZING APPARATUS NOT OTHERWISE PROVIDED FOR
    • F25D11/00Self-contained movable devices, e.g. domestic refrigerators
    • F25D11/02Self-contained movable devices, e.g. domestic refrigerators with cooling compartments at different temperatures
    • 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
    • F25C5/20Distributing 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
    • F25D23/00General constructional features
    • F25D23/12Arrangements of compartments additional to cooling compartments; Combinations of refrigerators with other equipment, e.g. stove
    • 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
    • F25D27/00Lighting arrangements

Definitions

  • the present disclosure relates to the technical field of household appliances, and in particular, to a refrigerator.
  • a refrigerator is a household appliance that can store food at a low temperature in an internal storage space.
  • the refrigerator uses cold air to cool the inside of the storage space, so that the stored food can be stored in a refrigerated or frozen state.
  • an ice maker can be installed in the refrigerator to facilitate the user to take ice cubes or ice water.
  • a refrigerator includes a box body, a door body, an ice maker and an ice ejecting structure.
  • the box includes a storage compartment.
  • the door body is pivotally connected to the box body, and the door body includes an ice outlet.
  • the ice maker is located in the box and connected to the ice outlet.
  • the ice ejecting structure includes a casing, an ice ejecting container and a light source.
  • the housing is detachably connected to the door body.
  • the ice extraction container is detachably connected to the housing, and the ice extraction container is configured to at least partially transmit or guide light.
  • the light source is configured to emit an illuminating beam to the ice extraction container for viewing items within the ice extraction container.
  • FIG. 1 is a structural diagram of a door of a refrigerator in some embodiments in an open state
  • FIG. 2 is a schematic diagram of a cold air supply device of a refrigerator according to some embodiments.
  • FIG. 3 is a structural diagram of the door of the refrigerator in some embodiments in a closed state
  • FIG. 4 is a structural diagram of an ice ejecting structure on a door body of a refrigerator according to some embodiments
  • FIG. 5 is a structural diagram of an ice ejecting structure of a refrigerator according to some embodiments.
  • Fig. 6 is the partial enlarged view of A place in Fig. 5;
  • Fig. 7 is a partial enlarged view at B in Fig. 5;
  • Fig. 8 is a partial enlarged view at C in Fig. 5;
  • FIG. 9 is an exploded view of an ice ejecting structure of a refrigerator according to some embodiments.
  • FIG. 10 is a structural diagram of a mounting plate of a refrigerator according to some embodiments.
  • FIG. 11 is a structural diagram of an ice outlet container of a refrigerator according to some embodiments.
  • first and second are only used for descriptive purposes, and should not be construed as indicating or implying relative importance or implicitly indicating the number of indicated technical features. Thus, a feature defined as “first” or “second” may expressly or implicitly include one or more of that feature.
  • plural means two or more.
  • the expressions “coupled” and “connected” and their derivatives may be used.
  • the term “connected” may be used in describing some embodiments to indicate that two or more components are in direct physical or electrical contact with each other.
  • the term “coupled” may be used in describing some embodiments to indicate that two or more components are in direct physical or electrical contact.
  • the terms “coupled” or “communicatively coupled” may also mean that two or more components are not in direct contact with each other, yet still co-operate or interact with each other.
  • the embodiments disclosed herein are not necessarily limited by the content herein.
  • At least one of A, B, and C has the same meaning as “at least one of A, B, or C”, and both include the following combinations of A, B, and C: A only, B only, C only, A and B , A and C, B and C, and A, B, and C.
  • a and/or B includes the following three combinations: A only, B only, and a combination of A and B.
  • parallel includes absolutely parallel and approximately parallel, wherein the acceptable deviation range of approximately parallel can be, for example, a deviation within 5°;
  • perpendicular includes absolutely perpendicular and approximately perpendicular, wherein the acceptable deviation range of approximately perpendicular can also be, for example, Deviation within 5°.
  • Equal includes both absolute equality and approximate equality, where the difference between the two being equal within acceptable deviations of approximate equality, for example, is less than or equal to 5% of either.
  • the refrigerator 1 is configured to refrigerate and freeze items, and the side of the refrigerator 1 facing the user during use is defined as the front side, and the opposite side is defined as the rear side.
  • the refrigerator 1 includes a box body 10 , a cold air supply device 20 and a door body 30 .
  • the box body 10 includes a storage compartment, and the cool air supply device 20 is configured to cool the storage compartment; the door body 30 is configured to open and close the storage compartment.
  • the cool air supply device 20 cools the storage compartment by exchanging heat with the outside of the case 10 .
  • the cold air supply device 20 includes a compressor 21 , a condenser 22 , an expansion device 23 and an evaporator 24 , and makes the refrigerant pass through the compressor 21 , condenser 22 , expansion device 23 , evaporator 24 , and The sequential cycle of the machine 21 cools the storage compartment.
  • the evaporator 24 may be disposed in contact with the outer wall of the storage compartment to directly cool the storage compartment.
  • the cold air supply device 20 may further include a circulation fan to circulate the air in the storage compartment through the evaporator 24 and the circulation fan.
  • the box body 10 includes a lateral partition plate 11 provided at a central position of the box body 10 in the height direction, and the lateral partition plate 11 extends in the left-right direction in FIG. 1 .
  • the approximate position of the horizontal partition plate 11 is shown with reference to the broken-line frame in FIG. 1
  • the height direction is shown with reference to the vertical direction in FIG. 1 .
  • the storage compartment is partitioned into an upper storage compartment 12 and a lower storage compartment 13 by a lateral partition plate 11 .
  • the upper storage compartment 12 serves as a freezing compartment for storing food in a freezing mode
  • the lower storage compartment 13 serves as a refrigerating compartment for storing food in a refrigerating mode.
  • the door body 30 is pivotally connected to the box body 10 to rotate to open or close the storage compartment.
  • the door body 30 may be hinged at the front end of the box body 10 .
  • Four door bodies 30 are shown in FIG. 1 .
  • the refrigerator 1 may further include an ice maker 1001 , so that the refrigerator 1 has an ice making function, and ice cubes or ice water can be provided to a user through the ice maker 1001 .
  • the ice maker 1001 is directly installed in the freezer, and the freezer is the ice chamber.
  • FIG. 1 shows an example where the ice maker 1001 is installed in the upper storage compartment 12 (ie, the freezer). .
  • an independent ice making chamber is defined by a heat insulating plate in the refrigerating chamber or the freezing chamber, and the ice maker 1001 is installed in the ice making chamber.
  • the refrigerator 1 may further include an ice ejecting structure 200 .
  • the door body 30 includes an ice outlet connected to the ice maker 1001 , the ice outlet structure 200 is arranged at the ice outlet, and the ice outlet structure 200 is communicated with the ice maker 1001 so as to transport ice cubes to the outside through the ice outlet structure 200 or ice water.
  • the ice outlet is provided on the outer side of the door body 30.
  • FIG. 3 shows an example in which the ice outlet is provided on the outer side of the door body 30. The side facing the user when closed.
  • the ice ejecting structure 200 is disposed on the door body 30 and located outside the box body 10. When a user takes ice through the ice ejecting structure 200, the ice can be taken without opening the door body 30, which is convenient and energy-saving.
  • the ice outlet may also be disposed on the inner side of the door body 30, where the inner side refers to the side of the door body 30 that faces away from the user when the door body 30 is in a closed state. At this time, the ice ejecting structure 200 is located in the box body 10 .
  • the refrigerator 1 includes a groove portion 110 located on the outer side of the door body 30 , which refers to the side surface of the door body 30 facing the user when the door body 30 is in a closed state.
  • the ice ejecting structure 200 is detachably connected with the door body 30 .
  • the ice ejecting structure 200 may be provided in the groove portion 110 by means of snap connection.
  • the refrigerator 1 includes four door bodies 30 , and at least one of the four door bodies 30 includes a groove portion 110 .
  • the groove portion 110 may be provided on the outer side surface of one door body 30 , or the groove portion 110 may be provided on the outer side surface of two, three or four door bodies 30 respectively.
  • FIG. 3 shows an example in which the groove part 110 is provided on the outer side surface of one door body 30 of the refrigerator 1 .
  • the ice producing structure 200 includes a housing 260 and an ice producing container 230, the ice producing container 230 is connected with the housing 260, and the ice producing container 230 is configured to provide ice cubes or ice water to a user.
  • the ice ejecting container 230 is configured to at least partially transmit or guide light
  • the ice ejecting structure 200 further includes a light source 240.
  • the light source 240 is configured to emit an illumination beam to the ice ejecting container 230 to facilitate the user.
  • the height of ice cubes or ice water in the ice container 230 is observed.
  • the light source 240 can be arranged inside the casing 260, or the light source 240 can be arranged outside the casing 260.
  • the housing 260 includes an installation plate 210 and an installation box 220 , the installation plate 210 is arranged in the groove portion 110 , the installation box 220 is connected with the installation plate 210 , and the ice discharge container 230 Attached to the mounting box 220 .
  • the ice ejecting container 230 is connected to the lower wall of the installation box 220 and is located at least partially below the installation box 220 .
  • the light source 240 is disposed in the installation box 220 , for example, the light source 240 may be disposed on the upper surface of the lower wall of the installation box 220 .
  • the ice outlet container 230 is detachably connected to the installation box 220 to facilitate the installation and removal of the ice outlet container 230 .
  • the light source 240 is detachably arranged in the installation box 220 , so that the light source 240 can be quickly installed and removed in the installation box 220 , and the installation and maintenance of the light source 240 is convenient.
  • the housing 260 is detachably connected to the door body 30 .
  • the mounting plate 210 of the housing 260 is snap-connected to the door body 30 .
  • the mounting plate 210 includes a fixing hook 211 located on the upper surface of the mounting plate 210 , and the fixing hook 211 protrudes upward from the upper surface of the mounting plate 210 .
  • the door body 30 includes a matching hook that matches the fixing hook 211 , and the matching hook is configured to match with the fixing hook 211 .
  • the mounting plate 210 is clamped on the door body 30 to facilitate assembly and disassembly.
  • the mounting plate 210 in FIG. 10 includes four fixing hooks 211 .
  • the door body 30 includes four matching hooks, and the matching hooks and the fixing hooks 211 are provided in a one-to-one correspondence. Therefore, it is beneficial to ensure the assembly reliability of the mounting plate 210 and the door body 30 .
  • the fixing hook 211 is engaged with the upper wall of the groove portion 110 , so that the mounting plate 210 is connected to the door body 30 through the groove portion 110 .
  • the upper wall of the groove portion 110 refers to the E-side sidewall of the groove portion 110 in FIG. 4 .
  • the mounting plate 210 of the housing 260 may also be connected to the door body 30 by fasteners, and the fasteners include bolts or screws.
  • the mounting plate 210 further includes a conveying bucket 212, the upper end and the lower end of the conveying bucket 212 are open, the conveying bucket 212 includes an upper end opening 2121 and a lower end opening 2122, and the upper end opening 2121 communicates with the conveying pipe of the ice maker 1001,
  • the lower end opening 2122 at least partially extends into the ice outlet container 230 to deliver the ice water or ice cubes into the ice outlet container 230 . In this way, ice water or ice cubes can be prevented from entering the installation box 220 , which is beneficial to ensure the safety of the components in the installation box 220 in use.
  • the mounting plate 210 is detachably connected to the mounting box 220 .
  • the quick assembly of the mounting box 220 and the mounting plate 210 is facilitated.
  • the ice ejecting structure 200 includes a positioning assembly 270 and at least one of a snap assembly 280 or a fastening assembly 290 .
  • the mounting plate 210 and the mounting box 220 can be positioned by the positioning component 270 and further locked by the snap component 280 or the fastening component 290 .
  • the buckle assembly 280 includes a first sub-buckle assembly 281 and a second sub-buckle assembly 282 .
  • the first sub-buckle assembly 281 may be located on the side of the casing 260 adjacent to the box 10 (eg, the N side in FIG. 9 ), and the second sub-buckle assembly 282 may be located on the side of the casing 260 away from the box 10 side (eg side M in Figure 9).
  • the positioning assembly 270 includes a positioning hole 216 and a positioning protrusion 223 , one of the mounting plate 210 and the mounting box 220 is formed with a positioning hole 216 , and the mounting plate 210 and the mounting box 220 are formed with a positioning hole 216 .
  • the other is formed with positioning protrusions 223 .
  • the positioning protrusions 223 are matched with the positioning holes 216 , and the positioning protrusions 223 are penetrated in the positioning holes 216 .
  • the positioning hole 216 is formed as a through hole passing through the mounting plate 210 in the thickness direction, and the through hole may be a circular hole or a polygonal hole.
  • the positioning assembly 270 can perform assembly and positioning, which is beneficial to improve the assembly efficiency of the mounting plate 210 and the mounting box 220 .
  • the first sub-buckle assembly 281 includes a snap portion 213 and a limit hook 221 , one of the mounting plate 210 and the mounting box 220 is formed with a snap portion 213 , and the mounting plate 210 and the mounting box 220 are formed with a snap portion 213 .
  • the other one of them forms a limit hook 221, and the limit hook 221 is connected with the engaging portion 213 (refer to FIG. 6).
  • FIG. 9 shows an example in which the mounting plate 210 includes the engaging portion 213 and the mounting box 220 includes the limiting hook 221 .
  • the mounting plate 210 includes a clip portion 213 , and the clip portion 213 is located on the upper surface of the mounting plate 210 and protrudes upward.
  • the mounting plate 210 further includes an escape hole 214 disposed near the clamping portion 213 .
  • the limit hook 221 is located at the upper end of the installation box 220 and extends upward toward the mounting plate 210 , for example, the limit hook 221 extends toward the E direction in FIG. 9 .
  • the limiting hook 221 passes through the escape hole 214 and is connected to the engaging portion 213 (refer to FIG. 6). In this way, it is convenient to observe the connection between the limit hook 221 and the engaging portion 213 from the upper surface of the mounting plate 210 , facilitate the quick alignment of the limit hook 221 and the engaging portion 213 , and ensure that the limit hook 221 and the engaging portion 213 can be quickly aligned. Reliable connection of the connector 213.
  • the engaging portion 213 when the engaging portion 213 is located on the lower surface of the mounting plate 210 , the engaging portion 213 may extend downward toward the mounting box 220 , and at this time, the mounting plate 210 may not include the avoidance hole 214 .
  • the second sub-buckle assembly 282 includes an upper buckle 215 and a lower buckle 222 , one of the mounting plate 210 and the mounting box 220 is formed with an upper buckle 215 , and the mounting plate 210 A lower snap 222 is formed with the other of the mounting boxes 220 , and the lower snap 222 is matched with the upper snap 215 .
  • An example in which the mounting plate 210 includes the upper snap 215 and the mounting box 220 includes the lower snap 222 is shown in FIG. 9 .
  • the mounting plate 210 further includes an upper clip 215 which generally extends downward from the lower surface of the mounting plate 210 .
  • the installation box 220 further includes a lower buckle 222 , the lower buckle 222 extends upward toward the mounting plate 210 , and the lower buckle 222 matches the upper buckle 215 .
  • the upper clip 215 is located at the end of the mounting plate 210 away from the box body 10
  • the lower clip 222 is located at the end of the installation box 220 away from the box body 10 (for example, the M end in FIG. 5 and FIG. 9 ).
  • the side of the installation box 220 facing away from the box body 10 (eg, the M side in FIGS. 5 and 9 ) is open, and the installation box 220 includes a first opening 2201 , thereby facilitating passage through the first opening 2201 to observe the connection of the lower buckle 222 and the upper buckle 215, so as to facilitate the alignment of the lower buckle 222 and the upper buckle 215, so as to ensure the engagement of the lower buckle 222 and the upper buckle 215.
  • the ice ejecting structure 200 further includes a cover plate 250 (refer to FIG. 4 ).
  • the side of the installation box 220 facing away from the box body 10 includes a first opening 2201 (refer to FIG. 5 ), and the cover plate 250 is detachably connected to the installation box 220 .
  • the cover plate 250 is snap-connected to the first opening 2201 of the installation box 220 and closes the first opening 2201 of the installation box 220 .
  • the upper end of the installation box 220 is open, and the installation box 220 further includes a second opening 2202 , the second opening 2202 is located at the upper end of the installation box 220 in FIG. 9 , namely the E end. Installation of other components in the mounting box 220 is facilitated through the second opening 2202 , which is closed by the mounting plate 210 .
  • the fastening assembly 290 includes an attachment hole 218 , a support post 224 , and fasteners (eg, screws) that pass through the attachment hole 218 and are attached to the support post 224 to further connect the The mounting box 220 is locked with the mounting plate 210 .
  • the mounting plate 210 includes a connecting hole 218 formed as a through hole provided through the mounting plate 210 in the thickness direction.
  • the installation box 220 includes a support column 224 , one end of the support column 224 is connected with the lower wall of the installation box 220 and the other end is abutted against the lower surface of the installation plate 210 .
  • the lower end of the support column 224 is located on the lower wall of the installation box 220 .
  • the support column 224 is detachably connected to the mounting plate 210 .
  • at least a portion of the support post 224 includes internal threads.
  • the other end of the support column 224 includes internal threads, and the position of the mounting plate 210 corresponding to the support column 224 includes a connection hole 218 through which the fastener is threaded to connect with the support column 224 .
  • the support post 224 does not have a threaded hole, and the self-tapping screw passes through the connection hole 218 and is connected to the support post 224 .
  • the upper end of the positioning protrusions 223 refers to the EF direction in FIG. 9 in the thickness direction. (eg end E) is higher than the upper end of the limit hook 221 .
  • the positioning protrusion 223 and the positioning hole 216 can be used for positioning before the limit hook 221 is connected to the locking portion 213, so as to further realize the limit card
  • the quick alignment of the hook 221 and the clamping portion 213 can realize the alignment of the mounting plate 210 and the mounting box 220 , and improve the assembly efficiency of the ice ejecting structure 200 .
  • the ice ejecting structure 200 may also not be provided with positioning components and/or fastening components.
  • the first sub-buckle component 281 that is, the cooperation between the limit hook 221 and the snap portion 213
  • the second sub-buckle component 282 that is, the lower The cooperation of the buckle 222 and the upper buckle 215 ) facilitates the quick installation and removal of the mounting plate 210 and the mounting box 220 .
  • the ice outlet container 230 is detachably connected to the installation box 220 , which facilitates quick assembly and disassembly of the ice outlet container 230 .
  • the ice ejecting container 230 and the installation box 220 are snap-connected, or the ice ejecting container 230 and the installation box 220 are connected by fasteners.
  • the ice outlet container 230 and the installation box 220 may also be formed as a single piece.
  • the ice outlet container 230 is configured to gradually decrease in size (eg, radial size) from a direction closer to the housing 260 to a direction away from the housing 260 .
  • the ice extraction container 230 is substantially in the shape of a frustum, and the extension portion 231 is located at one end (eg, the upper end) of the ice extraction container 230 adjacent to the housing 260 .
  • the light source 240 is detachably connected to the installation box 220 .
  • the quick assembly and disassembly of the light source 240 is facilitated.
  • the installation box 220 further includes a through hole 225 , a first hook 227 and a second hook 226 .
  • the through hole 225 is located on the lower wall of the installation box 220, and at least a part of the ice outlet container 230 can pass through the through hole 225 from top to bottom.
  • the first hook 227 is located on the upper surface of the lower wall of the installation box 220 .
  • the first hook 227 is disposed close to the through hole 225 , and the first hook 227 includes an installation space for installing the light source 240 .
  • the light source 240 is close to the edge of the ice ejecting container 230, and the light beam emitted by the light source 240 can irradiate the ice ejecting container 230. , so that the user can easily observe the height of ice cubes or ice water in the ice container 230 .
  • the installation box 220 includes a plurality of first hooks 227 .
  • each of the first hooks 227 includes a plurality of daughter hooks, the plurality of sub hooks define the installation space for accommodating the light source 240, and the light source 240 is clamped in the installation space, thereby , so as to facilitate the installation of the light source 240 on the installation box 220 .
  • the ice ejecting structure 200 includes a plurality of light sources 240 , and correspondingly, the installation box 220 includes a plurality of first hooks 227 , and the plurality of first hooks 227 are arranged in a one-to-one correspondence with the plurality of light sources 240 .
  • a plurality of light sources 240 are disposed around the outer peripheral edge of the ice container 230 .
  • Each light source 240 includes at least one of a light panel or a light strip.
  • the light source 240 includes a light panel detachably connected within the mounting box 220 .
  • the light source 240 includes a light strip or the like mounted within the mounting box 220 by fasteners (screws, bolts, etc.).
  • the ice outlet container 230 is located at the bottom of the installation box 220, and at least a part of the ice outlet container 230 is protruded downward from the lower wall of the installation box 220.
  • the position of the lower wall of the installation box 220 corresponding to the light source 240 includes light transmission hole 228 (see FIG. 7 ), so that the light beam emitted by the light source 240 can be irradiated onto the ice outlet container 230 through the light-transmitting hole 228 .
  • the ice outlet container 230 can transmit light.
  • the light source 240 is arranged in the installation box 220 and is located at the outer peripheral edge of the ice outlet container 230. The light emitted by the light source 240 can illuminate the ice outlet container 230, so that the ice inside the ice container 230 can be observed.
  • the height position of the block or ice water is convenient for the user.
  • the ice outlet container 230 includes a light guide. At this time, the installation box 220 may not include a light-transmitting hole.
  • the ice outlet container 230 is located at the bottom of the installation box 220 , and at least a portion of the ice outlet container 230 is located in the installation box 220 .
  • the ice outlet container 230 includes a light guide. At this time, the light beam emitted by the light source 240 is transmitted to the ice outlet container 230 in the installation box 220 by means of the light guide member, so that the ice outlet container 230 is illuminated, so that the ice container 230 can be observed. location of ice cubes or ice water inside.
  • the installation box 220 further includes a second hook 226 .
  • the second hook 226 is located on the upper surface of the lower wall of the installation box 220 and is disposed on the edge of the through hole 225 . At least a part of the ice outlet container 230 is adapted to pass through the through hole 225 , and the ice outlet container 230 is connected with the second hook 226 .
  • the installation box 220 includes a plurality of second hooks 226 , and the plurality of second hooks 226 are arranged around the edge of the through hole 225 .
  • the peripheral edge of the ice outlet container 230 further includes an extension portion 231 .
  • the extension part 231 may be located at the upper part, the middle part or the lower part of the ice extraction container 230
  • FIG. 11 shows an example in which the extension part 231 is located at the upper part of the outer circumference of the ice extraction container 230 .
  • At least a part of the extension portion 231 is connected with the second hook 226 , thereby facilitating the assembly of the ice outlet container 230 and the installation box 220 .
  • the assembly process of the ice outlet container 230 and the installation box 220 includes: the ice outlet container 230 passes through the through hole 225 from top to bottom, the lower surface of the extension portion 231 abuts on the upper surface of the lower wall of the installation box 220 , and the extension portion 231 is connected to the upper surface of the lower wall of the installation box 220 .
  • the second hooks 226 are connected.
  • the extending portion 231 further includes a matching groove 232 , the matching groove 232 is located at the edge of the extending portion 231 , and the matching groove 232 is matched with the second hook 226 .
  • the number of the matching grooves 232 does not exceed the number of the second hooks 226 .
  • the extension portion 231 may include a plurality of matching grooves 232 , and the plurality of matching grooves 232 are provided in a one-to-one correspondence with the plurality of second hooks 226 .
  • the number of the matching grooves 232 may also be smaller than the number of the second hooks 226 , which is not specifically limited in the present disclosure.

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  • 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

提供一种冰箱。所述冰箱包括箱体、门体、制冰机和出冰结构。所述箱体包括储藏室。所述门体可枢转地与所述箱体相连,所述门体包括出冰口。所述制冰机位于所述箱体内,并与所述出冰口相连。所述出冰结构包括壳体、出冰容器和光源。所述壳体与所述门体可拆卸地连接。所述出冰容器与所述壳体可拆卸地连接,所述出冰容器被配置为至少部分透光或导光。所述光源被配置为向所述出冰容器发出照明光束,以便观察所述出冰容器内的物品。

Description

冰箱
本申请要求于2021年01月04日提交的、申请号为202110004568.0的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
技术领域
本公开涉及家用电器技术领域,尤其涉及一种冰箱。
背景技术
食物在冷藏或者冷冻的低温下可以较长时间的储存,冰箱是能够将食物低温储存在内部的储存空间内的家用电器。冰箱利用冷气来冷却储存空间的内部,从而可以将储存的食物以冷藏或冷冻状态储存。为了拓展冰箱的使用功能,可以在冰箱内安装制冰机以方便用户取冰块或者取冰水。
发明内容
提供一种冰箱。所述冰箱包括箱体、门体、制冰机和出冰结构。所述箱体包括储藏室。所述门体可枢转地与所述箱体相连,所述门体包括出冰口。所述制冰机位于所述箱体内,并与所述出冰口相连。所述出冰结构包括壳体、出冰容器和光源。所述壳体与所述门体可拆卸地连接。所述出冰容器与所述壳体可拆卸地连接,所述出冰容器被配置为至少部分透光或导光。所述光源被配置为向所述出冰容器发出照明光束,以便观察所述出冰容器内的物品。
附图说明
为了更清楚地说明本公开中的技术方案,下面将对本公开一些实施例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公开的一些实施例的附图,对于本领域普通技术人员来讲,还可以根据这些附图获得其他的附图。此外,以下描述中的附图可以视作示意图,并非对本公开实施例所涉及的产品的实际尺寸、方法的实际流程、信号的实际时序等的限制。
图1为一些实施例的冰箱的门体处于打开状态的结构图;
图2为一些实施例的冰箱的冷空气供应装置的示意图;
图3为一些实施例的冰箱的门体处于关闭状态的结构图;
图4为一些实施例的冰箱的出冰结构在门体上的结构图;
图5为一些实施例的冰箱的出冰结构的结构图;
图6为图5中A处的局部放大图;
图7为图5中B处的局部放大图;
图8为图5中C处的局部放大图;
图9为一些实施例的冰箱的出冰结构的爆炸图;
图10为一些实施例的冰箱的安装板的结构图;
图11为一些实施例的冰箱的出冰容器的结构图。
具体实施方式
下面将结合附图,对本公开一些实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本公开一部分实施例,而不是全部的实施例。基于本公开所提供的实施例,本领域普通技术人员所获得的所有其他实施例,都属于本公开保护的范围。
除非上下文另有要求,否则,在整个说明书和权利要求书中,术语“包括(comprise)”及其其他形式例如第三人称单数形式“包括(comprises)”和现在分词形式“包括(comprising)”被解释为开放、包含的意思,即为“包含,但不限于”。在说明书的描述中,术语“一个实施例(one embodiment)”、“一些实施例(some embodiments)”、“示例性实施例(exemplary embodiments)”、“示例(example)”、“特定示例(specific example)”或“一些示例(some examples)”等旨在表明与该实施例或示例相关的特定特征、结构、材料或特性包括在本公开的至少一个实施例或示例中。上述术语的示意性表示不一定是指同一实施例或示例。此外,所述的特定特征、结构、材料或特点可以以任何适当方式包括在任何一个或多个实施例或示例中。
以下,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。在本公开实施例的描述中,除非另有说明,“多个”的含义是两个或两个以上。
在描述一些实施例时,可能使用了“耦接”和“连接”及其衍伸的表达。例如,描述一些实施例时可能使用了术语“连接”以表明两个或两个以上部件彼此间有直接物理接触或电接触。又如,描述一些实施例时可能使用了术语“耦接”以表明两个或两个以上部件有直接物理接触或电接触。然而,术语“耦接”或“通信耦合(communicatively coupled)”也可能指两个或两个以上部件彼此间并无直接接触,但仍彼此协作或相互作用。这里所公开的实施例并不必然限制于本文内容。
“A、B和C中的至少一个”与“A、B或C中的至少一个”具有相同含义,均包括以下A、B和C的组合:仅A,仅B,仅C,A和B的组合,A和C的组合,B和C的组合,及A、B和C的组合。
“A和/或B”,包括以下三种组合:仅A,仅B,及A和B的组合。
本文中“适用于”或“被配置为”的使用意味着开放和包容性的语言,其不排除适用于或被配置为执行额外任务或步骤的设备。
另外,“基于”的使用意味着开放和包容性,因为“基于”一个或多个所述条件或值的过程、步骤、计算或其他动作在实践中可以基于额外条件或超出所述的值。
如本文所使用的那样,“约”、“大致”或“近似”包括所阐述的值以及处于特定值的可接受偏差范围内的平均值,其中所述可接受偏差范围如由本领域普通技术人员考虑到正在讨论的测量以及与特定量的测量相关的误差(即,测量系统的局限性)所确定。
如本文所使用的那样,“平行”、“垂直”、“相等”包括所阐述的情况以及与所阐述的情况相近似的情况,该相近似的情况的范围处于可接受偏差范围内,其中所述可接受偏差范围如由本领域普通技术人员考虑到正在讨论的测量以及与特定量的测量相关的误差(即,测量系统的局限性)所确定。例如,“平行”包括绝对平行和近似平行,其中近似平行的可接受偏差范围例如可以是5°以内偏差;“垂直”包括绝对垂直和近似垂直,其中近似垂直的可接受偏差范围例如也可以是5°以内偏差。“相等”包括绝对相等和近似相等,其中近似相等的可接受偏差范围内例如可以是相等的两者之间的差值小于或等于其中任一者的5%。
冰箱1被配置为冷藏和冷冻物品,定义冰箱1使用时面向用户的一侧为前侧,与之相反的一侧为后侧。
在一些实施例中,参照图1和图2,冰箱1包括:箱体10,冷空气供应装置20以及门体30。箱体10包括储藏室,冷空气供应装置20被配置为冷却储藏室;门体30被配置为打开和关闭储藏室。
冷空气供应装置20通过与箱体10的外部进行热交换来冷却储藏室。如图2所示,冷空气供应装置20包括压缩机21、冷凝器22、膨胀装置23和蒸发器24,并使制冷剂以压缩机21、冷凝器22、膨胀装置23、蒸发器24、压缩机21的顺序循环来冷却储藏室。
例如,蒸发器24可以设置为与储藏室的外壁接触,以直接冷却储藏室。在一些实施例中,冷空气供应装置20还可以包括循环风扇,以通过蒸发器24和所述循环风扇来循环储藏室中的空气。
箱体10包括沿高度方向设在箱体10中部位置处的横向分隔板11,横向分隔板11沿图1中的左右方向延伸。横向分隔板11的大致位置参照图1中的虚线框所示,高度方向参照图1中的上下方向。储藏室被横向分隔板11分 隔成上部储藏室12和下部储藏室13。上部储藏室12用作以冷冻模式储藏食物的冷冻室,下部储藏室13用作以冷藏模式储藏食物的冷藏室。
门体30可枢转地与箱体10相连,以旋转打开或者关闭储藏室。例如,门体30可以被铰接在箱体10的前端。图1中示出了四个门体30。
此外,冰箱1还可以包括制冰机1001,使得该冰箱1具有制冰功能,通过制冰机1001可以为用户提供冰块或冰水。在一些实施例中,制冰机1001直接设于冷冻室内,此时冷冻室即为制冰腔室,图1中示出了制冰机1001设于上部储藏室12(即冷冻室)的示例。或者,在冷藏室或冷冻室内通过绝热板限定出独立的制冰腔室,将制冰机1001设于制冰腔室内。
此外,冰箱1还可以包括出冰结构200。门体30包括与制冰机1001相连的出冰口,出冰结构200设置于所述出冰口处,出冰结构200与制冰机1001连通,以通过出冰结构200向外界输送冰块或冰水。
在一些实施例中,所述出冰口设置于门体30的外侧,图3中示出了所述出冰口设于门体30的外侧的示例,这里的外侧指的是门体30处于关闭状态时朝向用户的一侧。此时,出冰结构200设置于门体30上,并位于箱体10外,当用户通过出冰结构200取冰时,无需打开门体30即可取冰,既方便又节能。
在一些实施例中,所述出冰口也可以设置于门体30的内侧,这里的内侧指的是门体30处于关闭状态时背离用户的一侧。此时,出冰结构200位于箱体10内。
参阅图3和图4,冰箱1包括凹槽部110,凹槽部110位于门体30的外侧面,所述外侧面指的是门体30处于关闭状态时朝向用户的一侧表面。出冰结构200可拆卸地与门体30相连。例如,出冰结构200可以通过卡扣连接的方式设于该凹槽部110。
冰箱1包括四个门体30,四个门体30中的至少一个门体30包括凹槽部110。在一些实施例中,可以是凹槽部110设于一个门体30的外侧面,也可以是凹槽部110分别设于两个、三个或四个门体30的外侧面。图3中示出了凹槽部110设于冰箱1的一个门体30的外侧面的示例。
出冰结构200包括壳体260和出冰容器230,出冰容器230与所述壳体260相连,出冰容器230被配置为向用户提供冰块或冰水。
如图5和图9所示,出冰容器230被配置为至少部分透光或导光,出冰结构200还包括光源240,光源240被配置为向出冰容器230发出照明光束,以方便用户观察出冰容器230内冰块或冰水的高度。光源240可以设于所述 壳体260内,或光源240设于所述壳体260外。
在一些实施例中,如图5所示,所述壳体260包括安装板210和安装盒220,安装板210设于凹槽部110中,安装盒220与安装板210相连,出冰容器230与安装盒220相连。例如,出冰容器230与安装盒220的下壁相连且至少部分位于安装盒220的下方。光源240设于安装盒220内,例如,光源240可以设于安装盒220的下壁的上表面。
在一些实施例中,出冰容器230可拆卸地与安装盒220相连,方便出冰容器230安装和拆卸。光源240可拆卸地设于安装盒220内,以便于在安装盒220内快速地安装和拆卸光源240,便于光源240的安装和维护。
在一些实施例中,所述壳体260与门体30可拆卸连接。
例如,所述壳体260的安装板210与门体30卡扣连接。如图9和图10所示,安装板210包括固定卡勾211,固定卡勾211位于安装板210的上表面,固定卡勾211由安装板210的上表面向上凸出。对应地,门体30包括与固定卡勾211相匹配的配合卡勾,所述配合卡勾被配置为与固定卡勾211相匹配,通过固定卡勾211与所述配合卡勾的配合,可以将安装板210卡接在门体30上,便于装配和拆卸。
图10中的安装板210包括四个固定卡勾211,对应地,门体30包括四个配合卡勾,所述配合卡勾与固定卡勾211一一对应设置。由此,利于保证安装板210与门体30的装配可靠性。
在一些实施例中,固定卡勾211卡合在凹槽部110的上壁,以使安装板210通过凹槽部110与门体30相连。例如,凹槽部110的上壁参照图4中凹槽部110的E侧侧壁。通过卡扣连接的方式,便于实现出冰结构200在门体30上的快速安装。
在一些实施例中,壳体260的安装板210也可以通过紧固件与门体30相连,所述紧固件包括螺栓或螺钉等。
如图10所示,安装板210还包括输送斗212,输送斗212的上端和下端均敞开,输送斗212包括上端开口2121和下端开口2122,上端开口2121与制冰机1001的输送管道连通,以接收由制冰机1001输送来的冰水或冰块,下端开口2122至少部分伸入出冰容器230内,以将冰水或冰块输送至出冰容器230内。由此,可以避免冰水或冰块进入安装盒220内,利于保证安装盒220内的部件的使用安全性。
在一些实施例中,安装板210与安装盒220可拆卸连接。便于安装盒220和安装板210的快速组装。
如图9所示,出冰结构200包括定位组件270、还包括卡扣组件280或紧固组件290中的至少一种。安装板210与安装盒220可以通过所述定位组件270进行定位,并通过所述卡扣组件280或紧固组件290进一步进行锁紧。在一些实施例中,所述卡扣组件280包括第一子卡扣组件281和第二子卡扣组件282。所述第一子卡扣组件281可以位于壳体260的邻近箱体10的一侧(例如图9中的N侧),所述第二子卡扣组件282可以位于壳体260的远离箱体10的一侧(例如图9中的M侧)。
如图6和图9所示,所述定位组件270包括定位孔216和定位凸起223,安装板210与安装盒220中的一个形成有定位孔216,且安装板210与安装盒220中的另一个形成有定位凸起223。定位凸起223与定位孔216相匹配,定位凸起223穿设在定位孔216内。定位孔216形成为沿厚度方向贯穿安装板210的贯通孔,所述贯通孔可以为圆孔或多边形孔。图9中示出了安装板210包括定位孔216,安装盒220包括定位凸起223的示例,定位凸起223朝向安装板210向上延伸。通过所述定位组件270可以进行装配定位,利于提高安装板210与安装盒220的装配效率。
参照图9,所述第一子卡扣组件281包括卡接部213和限位卡勾221,安装板210与安装盒220中的一个形成有卡接部213,且安装板210与安装盒220中的另一个形成有限位卡勾221,限位卡勾221与卡接部213相连(参照图6)。图9中示出了安装板210包括卡接部213,且安装盒220包括限位卡勾221的示例。
在一些实施例中,如图10所示,安装板210包括卡接部213,卡接部213位于安装板210的上表面且向上凸出。安装板210还包括靠近卡接部213设置的避让孔214。
在一些实施例中,如图9和图10所示,限位卡勾221位于安装盒220的上端且朝向安装板210向上延伸,例如限位卡勾221朝向图9中的E方向延伸。当将安装盒220与安装板210相连时,限位卡勾221穿过避让孔214并与卡接部213相连(参照图6)。由此,便于从安装板210的上表面观察限位卡勾221和卡接部213的连接情况,便于限位卡勾221和卡接部213的快速对位,保证限位卡勾221和卡接部213的可靠连接。
可以理解的是,当卡接部213位于安装板210的下表面时,卡接部213可以朝向安装盒220向下延伸,此时,安装板210也可以不包括避让孔214。
如图5和图9所示,所述第二子卡扣组件282包括上卡扣215和下卡扣222,安装板210与安装盒220中的一个形成有上卡扣215,且安装板210与 安装盒220中的另一个形成有下卡扣222,下卡扣222与上卡扣215相匹配。图9中示出了安装板210包括上卡扣215,且安装盒220包括下卡扣222的示例。
安装板210还包括上卡扣215,上卡扣215大致由安装板210的下表面向下延伸。安装盒220还包括下卡扣222,下卡扣222朝向安装板210向上延伸,下卡扣222与上卡扣215相匹配。上卡扣215位于安装板210背离箱体10的一端,下卡扣222位于安装盒220背离箱体10的一端(例如图5和图9中的M端)。
在一些实施例中,安装盒220的背离箱体10的一侧(例如图5和图9中的M侧)敞开,安装盒220包括第一开口2201,由此,便于通过所述第一开口2201观察下卡扣222和上卡扣215的连接情况,便于下卡扣222和上卡扣215的对位,以保证下卡扣222和上卡扣215的卡合。
此外,出冰结构200还包括盖板250(参照图4)。安装盒220的背离箱体10的一侧包括第一开口2201(参照图5),盖板250可拆卸地与安装盒220相连。例如,盖板250卡扣连接在安装盒220的所述第一开口2201处,并封闭安装盒220的所述第一开口2201。
如图9所示,安装盒220的上端敞开,安装盒220还包括第二开口2202,所述第二开口2202位于图9中安装盒220的上端即E端。通过第二开口2202便于在安装盒220内安装其它部件,安装板210封闭所述第二开口2202。
如图5和图9所示,紧固组件290包括连接孔218、支撑柱224以及紧固件(如螺钉),所述紧固件穿过连接孔218并与支撑柱224相连,以进一步将安装盒220与安装板210锁紧。
安装板210包括连接孔218,连接孔218形成为沿厚度方向贯穿安装板210设置的贯通孔。安装盒220包括支撑柱224,支撑柱224的一端与安装盒220的下壁相连且另一端止抵于安装板210的下表面。例如,支撑柱224的下端位于安装盒220的下壁,支撑柱224由安装盒220的下壁的上表面朝向安装板210向上延伸,支撑柱224的上端止抵于安装板210的下表面。支撑柱224与安装板210可拆卸连接。在一些实施例中,支撑柱224的至少部分包括内螺纹。例如,支撑柱224的所述另一端包括内螺纹,安装板210的对应支撑柱224的位置包括连接孔218,紧固件穿过连接孔218与支撑柱224螺纹连接。在一些实施例中,支撑柱224不具有螺纹孔,自攻螺钉穿过连接孔218并与支撑柱224连接。
在一些实施例中,当安装盒220包括定位凸起223和限位卡勾221时, 在安装盒220的厚度方向上,所述厚度方向参照图9中的EF方向,定位凸起223的上端(例如E端)高于限位卡勾221的上端。这样,在将安装盒220与安装板210相连时,可以在限位卡勾221和卡接部213连接之前,先利用定位凸起223和定位孔216的配合进行定位,便于进一步实现限位卡勾221和卡接部213的快速对位,以实现安装板210和安装盒220的对位,提高出冰结构200的组装效率。
可以理解的是,在一些实施例中,出冰结构200也可以不设置定位组件和/或紧固组件。当出冰结构200不包括定位组件和紧固组件时,通过第一子卡扣组件281(即限位卡勾221和卡接部213的配合)、以及第二子卡扣组件282(即下卡扣222和上卡扣215的配合),便于安装板210和安装盒220的快速安装和拆卸。
在一些实施例中,出冰容器230与安装盒220可拆卸连接,便于出冰容器230的快速组装和拆卸。例如,出冰容器230与安装盒220卡扣连接,或出冰容器230与安装盒220通过紧固件连接。
在一些实施例中,出冰容器230与安装盒220也可以形成为一体件。
在一些实施例中,出冰容器230被配置为在由靠近壳体260的方向至远离壳体260的方向上尺寸(如径向尺寸)逐渐减小。例如,出冰容器230大致呈锥台形,延伸部231位于出冰容器230的邻近壳体260的一端(例如上端)。
光源240与安装盒220可拆卸连接。便于光源240的快速组装和拆卸。
如图9所示,在一些实施例中,安装盒220还包括通孔225、第一卡勾227和第二卡勾226。通孔225位于安装盒220的下壁,出冰容器230的至少部分可以从上向下穿过通孔225。第一卡勾227位于安装盒220的下壁的上表面,第一卡勾227靠近通孔225设置,第一卡勾227包括安装空间以安装光源240。
当将出冰容器230安装在安装盒220上时,由于出冰容器230至少部分导光或透光,光源240靠近出冰容器230的边缘,光源240发出的光束能够照射到出冰容器230上,从而方便用户观察出冰容器230内冰块或冰水的高度。
如图5和图7所示,安装盒220包括多个第一卡勾227。在一些实施例中,每个第一卡勾227均包括多个子卡勾,所述多个子卡勾限定出容纳光源240的所述安装空间,光源240卡接在所述安装空间中,由此,便于实现光源240在安装盒220上的安装。
在一些实施例中,出冰结构200包括多个光源240,对应地,安装盒220包括多个第一卡勾227,多个第一卡勾227与多个光源240一一对应设置。多个光源240环绕出冰容器230的外周边缘设置。每个光源240均包括灯板或灯带中的至少一种。
参阅图7,在一些实施例中,光源240包括可拆卸地连接在安装盒220内的灯板。在一些实施例中,光源240包括通过紧固件(螺钉、螺栓等)安装于安装盒220内的灯带等。
在一些实施例中,出冰容器230位于安装盒220的底部,出冰容器230的至少部分由安装盒220的下壁向下凸出,安装盒220的下壁对应光源240的位置包括透光孔228(见图7),以使得光源240发出的光束能够通过所述透光孔228照射到出冰容器230上。
出冰容器230能够透光,光源240设置在安装盒220内并位于出冰容器230的外周边缘,光源240发出的光线能够照射到出冰容器230上,从而能够观察出冰容器230内部的冰块或冰水的高度位置,便于用户的使用。
在一些实施例中,出冰容器230包括导光件。此时,安装盒220也可以不包括透光孔。
例如,出冰容器230位于安装盒220的底部,出冰容器230的至少部分位于安装盒220内。出冰容器230包括导光件,此时,光源240发出的光束在安装盒220内借助导光件传导至出冰容器230上,使得出冰容器230被照亮,从而能够观察出冰容器230内的冰块或冰水的位置。
安装盒220还包括第二卡勾226,第二卡勾226位于安装盒220的下壁的上表面且设置在通孔225的边缘。出冰容器230的至少部分适于穿过通孔225,出冰容器230与第二卡勾226相连。安装盒220包括多个第二卡勾226,多个第二卡勾226环绕通孔225的边缘设置。
在一些实施例中,参照图8和图11,出冰容器230的外周边缘还包括延伸部231,延伸部231的外周的边缘位于通孔225的边缘外侧,以便与安装盒220配合。延伸部231可以位于出冰容器230的上部、中部或下部,图11中示出了延伸部231位于出冰容器230的外周的上部的示例。延伸部231的至少部分与第二卡勾226相连,由此,便于实现出冰容器230与安装盒220装配。
出冰容器230与安装盒220的装配过程包括:出冰容器230从上向下穿过通孔225,延伸部231的下表面抵接于安装盒220的下壁的上表面,延伸部231与第二卡勾226相连。由此,便于实现出冰容器230在安装盒220上的快 速组装。
如图8和图11所示,延伸部231还包括配合槽232,配合槽232位于延伸部231的边缘,配合槽232与第二卡勾226相匹配。配合槽232的数量不超过第二卡勾226的数量。例如,延伸部231可以包括多个配合槽232,多个配合槽232与多个第二卡勾226一一对应设置。通过配合槽232与第二卡勾226的配合,便于实现出冰容器230与安装盒220的装配。
当然,在一些实施例中,配合槽232的数量也可以小于第二卡勾226的数量,本公开对此不做具体限制。
以上所述,仅为本公开的具体实施方式,但本公开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公开揭露的技术范围内,想到变化或替换,都应涵盖在本公开的保护范围之内。因此,本公开的保护范围应以所述权利要求的保护范围为准。
本领域技术人员应当理解,本公开中所涉及的公开范围,并不限于上述技术特征的特定组合而成的技术方案,同时也应涵盖在不脱离公开构思的情况下,由上述技术特征或其等同特征进行任意组合而形成的其它技术方案。例如上述特征与一些实施例公开的(但不限于)具有类似功能的技术特征进行互相替换而形成的技术方案。

Claims (20)

  1. 一种冰箱,包括:
    箱体,包括储藏室;
    门体,可枢转地与所述箱体相连,所述门体包括出冰口;
    制冰机,位于所述箱体内,并与所述出冰口相连;和
    出冰结构,与所述制冰机连通,所述出冰结构包括:
    壳体,与所述门体可拆卸地连接;
    出冰容器,与所述壳体可拆卸地连接,所述出冰容器被配置为至少部分透光或导光;和
    光源,被配置为向所述出冰容器发出照明光束,以便观察所述出冰容器内的物品。
  2. 根据权利要求1所述的冰箱,其中,
    所述门体包括凹槽部,所述凹槽部与所述出冰口相对设置,所述出冰结构适于通过所述凹槽部与所述门体可拆卸地相连。
  3. 根据权利要求2所述的冰箱,其中,
    所述出冰结构位于所述门体的远离所述箱体的一侧;
    所述冰箱包括多个门体,所述多个门体中的至少一个门体包括所述凹槽部。
  4. 根据权利要求1-3任一项所述的冰箱,其中,所述壳体包括:
    安装板,与所述门体可拆卸地连接;和
    安装盒,所述安装盒与所述安装板可拆卸地连接,其中,
    所述出冰容器与所述安装盒相连且至少部分位于所述安装盒的下方,所述光源与所述安装盒相连。
  5. 根据权利要求4所述的冰箱,其中,
    所述安装板包括固定卡勾,所述固定卡勾位于所述安装板的上表面且向上凸出;
    所述门体包括与所述固定卡勾相匹配的配合卡勾。
  6. 根据权利要求4所述的冰箱,其中,
    所述安装板包括输送斗,所述输送斗包括上端开口和下端开口;
    所述上端开口与所述制冰机连通,所述下端开口的至少部分伸入所述出冰容器内,以将所述物品输送至所述出冰容器。
  7. 根据权利要求4-6任一项所述的冰箱,其中,
    所述安装盒的背离所述箱体的一侧包括第一开口,所述出冰结构还包括盖板,所述盖板可拆卸地设于所述第一开口处并封闭所述第一开口;
    所述安装盒的上端包括第二开口,所述安装板封闭所述第二开口。
  8. 根据权利要求4-6任一项所述的冰箱,其中,
    所述安装板包括卡接部;
    所述安装盒包括与所述卡接部相匹配的限位卡勾,所述限位卡勾位于所述安装盒的上表面且朝向所述安装板延伸;
    所述安装板还包括靠近所述卡接部设置的避让孔,所述限位卡勾穿过所述避让孔与所述卡接部相连。
  9. 根据权利要求4-6任一项所述的冰箱,其中,
    所述安装板包括上卡扣,所述上卡扣朝向所述安装盒延伸;
    所述安装盒包括与所述上卡扣相匹配的下卡扣,所述下卡扣朝向所述安装板延伸。
  10. 根据权利要求4-6任一项所述的冰箱,其中,
    所述安装板包括连接孔;
    所述安装盒包括支撑柱,所述支撑柱的一端与所述安装盒的下壁相连且另一端止抵于所述安装板的下表面;
    所述支撑柱的所述另一端包括内螺纹,紧固件穿过所述连接孔与所述支撑柱螺纹连接。
  11. 根据权利要求4-6任一项所述的冰箱,其中,
    所述安装板与所述安装盒中的一个包括定位孔;
    所述安装板与所述安装盒中的另一个包括与所述定位孔相匹配的定位凸起。
  12. 根据权利要求11所述的冰箱,其中,
    所述安装板包括所述定位孔,所述安装盒包括所述定位凸起;
    所述安装板还包括卡接部和靠近所述卡接部设置的避让孔,所述安装盒包括限位卡勾,所述限位卡勾穿过所述避让孔与所述卡接部相连;
    所述定位凸起的上端高于所述限位卡勾的上端,以在所述安装板与所述安装盒通过所述卡接部和所述限位卡勾锁紧前进行定位。
  13. 根据权利要求4-6任一项所述的冰箱,其中,
    所述安装盒包括位于所述安装盒的下壁的通孔,所述出冰容器被配置为穿过所述通孔与所述安装盒相连。
  14. 根据权利要求13所述的冰箱,其中,
    所述出冰容器包括延伸部;
    所述安装盒包括第二卡勾,所述第二卡勾位于所述安装盒的下壁的上表面;
    所述延伸部与所述第二卡勾相连,以使所述出冰容器与所述安装盒可拆卸地连接。
  15. 根据权利要求14所述的冰箱,其中,
    所述延伸部还包括位于所述延伸部的边缘的配合槽,所述配合槽与所述第二卡勾相匹配。
  16. 根据权利要求15所述的冰箱,其中,
    所述安装盒包括多个第二卡勾,所述多个第二卡勾环绕所述通孔设置,所述配合槽的数量不超过所述第二卡勾的数量。
  17. 根据权利要求14所述的冰箱,其中,所述安装盒包括第一卡勾,所述第一卡勾位于所述安装盒的下壁的上表面且靠近所述通孔设置,所述第一卡勾包括安装空间以安装所述光源。
  18. 根据权利要求17所述的冰箱,其中,所述第一卡勾包括多个子卡勾,所述多个子卡勾限定出所述安装空间。
  19. 根据权利要求17所述的冰箱,其中,所述安装盒的下壁对应所述光源的位置包括透光孔,以使所述光源发出的光束能够通过所述透光孔照射到所述出冰容器上。
  20. 根据权利要求17所述的冰箱,其中,
    所述安装盒包括多个第一卡勾,
    所述安装盒包括多个光源,所述多个光源与所述多个第一卡勾一一对应设置。
PCT/CN2021/121794 2021-01-04 2021-09-29 冰箱 WO2022142556A1 (zh)

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