WO2020043043A1 - 冰箱 - Google Patents

冰箱 Download PDF

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Publication number
WO2020043043A1
WO2020043043A1 PCT/CN2019/102492 CN2019102492W WO2020043043A1 WO 2020043043 A1 WO2020043043 A1 WO 2020043043A1 CN 2019102492 W CN2019102492 W CN 2019102492W WO 2020043043 A1 WO2020043043 A1 WO 2020043043A1
Authority
WO
WIPO (PCT)
Prior art keywords
storage container
drawer
absorbing material
sound absorbing
support portion
Prior art date
Legal status (The legal status 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 status listed.)
Ceased
Application number
PCT/CN2019/102492
Other languages
English (en)
French (fr)
Inventor
茂木秀文
石田贵志
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Qingdao Haier Refrigerator Co Ltd
Haier Smart Home Co Ltd
Aqua Co Ltd
Original Assignee
Qingdao Haier Refrigerator Co Ltd
Haier Smart Home Co Ltd
Aqua Co Ltd
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 Qingdao Haier Refrigerator Co Ltd, Haier Smart Home Co Ltd, Aqua Co Ltd filed Critical Qingdao Haier Refrigerator Co Ltd
Publication of WO2020043043A1 publication Critical patent/WO2020043043A1/zh
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

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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
    • F25D23/00General constructional features
    • F25D23/06Walls
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25DREFRIGERATORS; COLD ROOMS; ICE-BOXES; COOLING OR FREEZING APPARATUS NOT OTHERWISE PROVIDED FOR
    • F25D25/00Charging, supporting, and discharging the articles to be cooled
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25DREFRIGERATORS; COLD ROOMS; ICE-BOXES; COOLING OR FREEZING APPARATUS NOT OTHERWISE PROVIDED FOR
    • F25D25/00Charging, supporting, and discharging the articles to be cooled
    • F25D25/02Charging, supporting, and discharging the articles to be cooled by shelves

Definitions

  • the present invention relates to a refrigerator, and more particularly, to a refrigerator provided with a drawer-type storage container.
  • a drawer-type storage container is provided inside a storage room such as a refrigerator.
  • a storage room is partitioned by a shelf such as glass.
  • a drawer-type storage container is arranged below the shelf.
  • Holding mechanisms are provided on both sides of the storage container, and the holding mechanism allows the storage container to be slidably held in the front-rear direction.
  • the front opening of the storage container is covered by a door rotatably mounted on the partition.
  • Patent Document 1 Japanese Patent Publication No. 2016-200319.
  • noise may be generated when the storage container is stored. Specifically, when the user pushes the storage container to the back side, the storage container comes into contact with the member on the back side of the inner box, so that the position of the storage container during storage is limited. At this time, there is a problem that a large contact sound is generated due to the contact between the member on the inner box side and the storage container. Further, if such abutment is repeatedly performed for a long time, the components of the inner box or the storage container may be damaged.
  • the present invention has been made in view of the above circumstances, and an object thereof is to provide a refrigerator capable of suppressing the occurrence of abutment sound when a storage container is stored on the back side.
  • the refrigerator of the present invention is characterized by comprising: a heat-insulating box in which a storage room is formed; a drawer-type storage container arranged inside the storage room and movable in the front-back direction; and a storage container support portion which The drawer type storage container can be pulled out to support the drawer type storage container; and a sound absorbing material composed of a soft material softer than the storage container support portion, and is disposed on the drawer type storage container A position where the drawer-type storage container contacts when stored in the storage room.
  • the refrigerator according to the present invention is characterized in that the sound absorbing material is disposed on a rear end side of the storage container support portion.
  • the refrigerator of the present invention is characterized in that the sound absorbing material includes a first face that is in contact with the drawer-type storage container, a second face that is continuous at a right angle to the first face, and A protruding portion protruding from the main surface of the second surface portion is formed with a fixing hole drilled in a direction orthogonal to a longitudinal direction of the storage container support portion at a rear end side of the storage container support portion. The protruding portion of the sound absorbing material is inserted into the fixing hole, thereby fixing the position of the sound absorbing material.
  • the refrigerator according to the present invention is characterized in that a plate-shaped support member is provided on the outer side in the width direction of the drawer-type storage container, and the storage container support portion and the sound absorbing material are provided on the plate-shaped support member.
  • the refrigerator of the present invention is characterized by comprising: a heat-insulating box in which a storage room is formed; a drawer-type storage container arranged inside the storage room and movable in the front-back direction; and a storage container support portion which The drawer-type storage container can be pulled out to support the drawer-type storage container; and a sound absorbing material composed of a soft material softer than the storage-container support portion and arranged in the drawer-type storage container to be stored The position where the drawer-type storage container contacts while in the storage room.
  • the drawer-type storage container when the drawer-type storage container is pushed into the rear side, the drawer-type storage container is in contact with a sound-absorbing material made of a soft material, thereby suppressing a large abutment when the drawer-type storage container is stored Problems with sound.
  • the refrigerator according to the present invention is characterized in that the sound absorbing material is disposed on a rear end side of the storage container support portion. According to the refrigerator of the present invention, since the sound absorbing material is disposed on the back side, it is possible to prevent a user from removing the sound absorbing material by mistake.
  • the refrigerator of the present invention is characterized in that the sound absorbing material includes a first face that is in contact with the drawer-type storage container, a second face that is continuous at a right angle to the first face, and A protruding portion protruding from the main surface of the second surface portion is formed with a fixing hole drilled in a direction orthogonal to a longitudinal direction of the storage container support portion at a rear end side of the storage container support portion.
  • the protruding portion of the sound absorbing material is inserted into the fixing hole, thereby fixing the position of the sound absorbing material.
  • the sound absorbing material can be firmly fixed by a simple structure in which the protruding portion is inserted into the insertion hole.
  • the fixing hole is orthogonal to the longitudinal direction of the storage container support portion, an insertion hole can be easily formed in the storage container support portion using an injection molding die.
  • the refrigerator according to the present invention is characterized in that a plate-shaped support member is provided on the outer side in the width direction of the drawer-type storage container, and the storage container support portion and the sound absorbing material are provided on the plate-shaped support member. According to the refrigerator of the present invention, by providing the storage container support portion and the sound absorbing material on the plate-shaped support member, the shape and position accuracy of the storage container support portion and the sound absorbing material can be improved, and the drawer-type storage container can be stably supported.
  • FIG. 1 is a side sectional view showing a refrigerator according to an embodiment of the present invention.
  • FIG. 2 is a view showing a refrigerator according to an embodiment of the present invention, wherein FIGS. (A) and (B) are perspective views showing a lower portion of a refrigerator compartment.
  • FIG. 3 is a view showing a refrigerator according to an embodiment of the present invention, wherein FIG. (A) is a perspective view showing a drawer-type storage container, and FIG. (B) is an enlarged perspective view showing a rear end portion of a rail portion.
  • FIG. 4 is a view showing a refrigerator according to an embodiment of the present invention, wherein FIG. (A) is a perspective view showing a plate-shaped support member, and FIG. (B) is an enlarged perspective view showing a mounting portion of the plate-shaped support member, (C) is a perspective view showing a sound absorbing material.
  • FIG. 5 is a view showing a refrigerator according to an embodiment of the present invention, and is a perspective view showing a drawer-type storage container and a left-side plate-shaped support member.
  • FIG. 6 is a view showing a refrigerator according to an embodiment of the present invention, wherein FIG. (A) is a perspective view showing a plate-shaped support member, FIG. (B) is an enlarged perspective view showing a mounting portion, and FIG. (C) is a sound absorbing material Perspective view.
  • FIG. 7 is a view showing a refrigerator according to an embodiment of the present invention, and is a perspective view showing a drawer-type storage container and a right-side plate-shaped supporting member.
  • the refrigerator 10 which concerns on the Example of this invention is demonstrated in detail based on drawing.
  • the up-down direction indicates the height direction of the refrigerator 10
  • the left-right direction indicates the width direction of the refrigerator 10
  • the front-rear direction indicates the depth direction of the refrigerator 10.
  • FIG. 1 is a side sectional view showing a schematic configuration of a refrigerator 10.
  • the refrigerator 10 includes a heat insulation box 11 as a main body, and a storage room for storing food and the like is formed inside the heat insulation box 11.
  • the heat-insulating box 11 includes: a steel sheet outer box 12 having an opening on the front surface; an inner box 13 made of synthetic resin, which is provided with a gap in the outer box 12 and has an opening on the front surface; Thermal material 14 made of a polyurethane foam that fills the gap between the outer box 12 and the inner box 13 and is foamed.
  • the interior of the storage room is divided into a plurality of storage rooms according to the cooling temperature and use.
  • a refrigerator compartment 15, an upper freezer compartment 16, a lower freezer compartment 17, and a vegetable compartment 18 are formed from the upper floor.
  • the front surface of each storage room of the heat insulation box 11 is opened, and the heat insulation doors 19 to 22 which can be opened and closed freely are provided in the openings, respectively.
  • the heat insulation door 19 closes the front opening of the refrigerator compartment 15, the heat insulation door 20 closes the front opening of the upper freezer compartment 16, the heat insulation door 21 closes the front opening of the lower freezer compartment 17, and the heat insulation door 22 closes the front opening of the vegetable compartment 18.
  • a widthwise end portion of the heat insulation door 19 is rotatably attached to the heat insulation box 11.
  • the heat insulation door 20, the heat insulation door 21, and the heat insulation door 22 are detachably arrange
  • the heat insulation doors 19 to 22 have the same heat insulation structure as the heat insulation box 11.
  • the refrigerating compartment 15 and the upper freezing compartment 16 are separated by a heat-insulating partition wall 32, and the lower freezing compartment 17 and the vegetable compartment 18 are separated by a heat-insulating partition wall 33.
  • the heat insulation partition wall 32 and the heat insulation partition wall 33 have the same heat insulation structure as the heat insulation box 11.
  • a cooling chamber 23 is formed behind the upper freezing chamber 16 and the lower freezing chamber 17, and a cooler 24 is arranged inside the cooling chamber 23.
  • the cooler 24, the compressor 29, a radiator (not shown), and a decompression device (not shown) are connected in this order through a refrigerant pipe to constitute a vapor compression refrigeration cycle as a cooling device.
  • a blower passage 26 is formed at the rear of the refrigerator compartment 15, and a blowout port 27 is formed by opening a part of the blower passage 26.
  • a blower 25 is arranged on the upper part of the cooler 24, and the cool air inside the cooling chamber 23 cooled by the cooler 24 is blown to the storage rooms 15 to 18 by the blower 25. Specifically, a part of the cold air blown by the blower 25 is supplied to the refrigerating compartment 15 through the blower passage 26 and the blowout port 27. A part of the cold air blown by the blower 25 is also supplied to the upper freezing compartment 16 and the lower freezing compartment 17. A part of the cold air blown in the refrigerating compartment 15 is also supplied to the vegetable compartment 18.
  • the refrigerating compartment 15, the upper freezing compartment 16, the lower freezing compartment 17, and the vegetable compartment 18 are cooled to a predetermined temperature range.
  • the cold air blown to the refrigerating compartment 15, the upper freezing compartment 16, the lower freezing compartment 17, and the vegetable compartment 18 is returned to the cooling compartment 23 via a return air passage (not shown).
  • a defrosting heater 28 is disposed below the cooler 24 to remove frost adhering to the cooler 24.
  • a plurality of partitions 30 are arranged to partition the internal space in the vertical direction.
  • a drawer-type storage container 31 is arranged below the lowermost shelf 30.
  • the drawer-type storage container 31 is freely arranged in the front-rear direction.
  • a swing door 34 is disposed above the front portion of the drawer-type storage container 31.
  • the swing door 34 is rotatably assembled with respect to the partition 30, and the swing door 34 is closed in a storage state in which the drawer-type storage container 31 is pushed into the back side. On the other hand, in a pulled-out state in which the drawer-type storage container 31 is pulled forward, the swing door 34 is opened.
  • FIG. 2 (A) is a perspective view of the lower part of the refrigerating compartment 15 as viewed from the upper right side
  • FIG. 2 (B) is a perspective view of the lower part of the refrigerating chamber 15 as viewed from the upper left side.
  • a water supply container 35 and a plate-shaped support member 43 are arranged on the lower left side of the partition frame 30.
  • the water supply container 35 is a container for storing water supplied to an ice maker (not shown).
  • the plate-like support member 43 is a plate-like member arranged on the right nearest to the water supply container 35.
  • the plate-shaped support member 43 is injection-molded from a synthetic resin.
  • a storage container support portion 45 is formed on the right-side surface of the plate-shaped support member 43.
  • the storage container support portion 45 is a member that slidably supports the drawer-type storage container 31 in the front-rear direction from the left side.
  • the plate-shaped support member 43 is also a dividing member that partitions the space below the partition 30 into a portion where the water supply container 35 is arranged and a portion where the drawer-type storage container 31 is arranged.
  • a plate-shaped support member 44 is attached to the inner wall on the right side of the refrigerator compartment 15.
  • a storage container support portion 46 is formed on the plate-shaped support member 44.
  • the plate-shaped support member 44 is injection-molded from a synthetic resin.
  • the plate-shaped support member 44 is a member which slidably supports the drawer-type storage container 31 in the front-rear direction.
  • FIG. 3 (A) is a perspective view of the drawer-type storage container 31 as viewed from the upper right side
  • FIG. 3 (B) is an enlarged perspective view showing the rail portion 42 in a partially enlarged manner.
  • the drawer-type storage container 31 is a container injection-molded from a synthetic resin.
  • a front opening portion 37 is formed by opening an upper portion of a front side wall of the drawer-type storage container 31.
  • a rear opening 38 is formed on the rear side of the drawer-type storage container 31 to introduce cool air into the interior of the drawer-type storage container 31.
  • the rail portion 42 is formed by partially projecting the lower portion of the right side surface of the drawer-type storage container 31 to the right.
  • the rail portion 42 is formed substantially linearly from the front end to the rear end of the drawer-type storage container 31 in the front-rear direction.
  • a rail portion 41 is also formed on the left side surface of the drawer-type storage container 31.
  • a sliding member 69 is fitted into the rear end of the rail portion 42.
  • the sliding member 69 is made of POM (polyacetal) having high abrasion resistance.
  • the length in the vertical direction of the slide member 69 is longer than the length in the vertical direction of the rail portion 42. Therefore, when the drawer-type storage container 31 slides in the front-rear direction, the sliding member 69 slides relative to the storage container support portion 46 shown in FIG. 2 (B).
  • FIG. 4 (A) is a perspective view of the plate-shaped support member 43 as viewed from the front right side
  • FIG. 4 (B) is an enlarged perspective view showing the mounting portion 52 in an enlarged manner
  • FIG. 4 (A) is a perspective view of the plate-shaped support member 43 as viewed from the front right side
  • FIG. 4 (B) is an enlarged perspective view showing the mounting portion 52 in an enlarged manner
  • FIG. 4 (A) is a perspective view of the plate-shaped support member 43 as viewed from the front right side
  • FIG. 4 (B) is an enlarged perspective view showing the mounting portion 52 in an enlarged manner
  • the plate-shaped support member 43 is injection-molded from a synthetic resin such as PP (Polypropylene, polypropylene), and a storage container support portion 45 is formed on a right side surface thereof.
  • the storage container support portion 45 is a portion where the plate-shaped support member 43 partially protrudes to the right, and is formed in a substantially linear shape from the vicinity of the front end to the vicinity of the rear end of the plate-shaped support member 43.
  • the storage container support portion 45 includes an upper support portion 45 a formed in a substantially linear shape in the front-rear direction and a lower support portion 45 b formed in a substantially linear shape in the front-rear direction below the upper support portion 45 a.
  • the upper support portion 45a and the lower support portion 45b are formed parallel to each other.
  • a rail portion 41 of the drawer-type storage container 31 shown in FIG. 3 (A) is disposed between the upper support portion 45a and the lower support portion 45b.
  • a mounting portion 74 that opens upward is formed at the front end of the lower support portion 45b, and a sliding member 73 is fitted in the mounting portion 74.
  • the sliding member 73 is made of a wear-resistant POM, and the lower surface of the rail portion 41 shown in FIG. 3 (A) slides relative to the upper surface of the sliding member 73.
  • a mounting portion 52 is formed at the rear end of the storage container support portion 45, and a sound absorbing material 47 is mounted on the mounting portion 52.
  • the mounting portion 52 is formed on the rear end side of the storage container support portion 45 in the front-rear direction.
  • the mounting portion 52 is formed between the upper support portion 45 a and the lower support holding portion 45 b in the vertical direction.
  • the mounting portion 52 includes a first mounting surface 53 and a second mounting surface 54.
  • the first mounting surface 53 is a front-facing surface
  • the second mounting surface 54 is a right-facing surface.
  • the second mounting surface 54 is formed with a fixing hole 55 penetrating through the vicinity of the central portion of the second mounting surface 54 toward the left.
  • the shape of the fixing hole 55 viewed from the right is substantially circular.
  • the attachment portion 52 is a portion that comes into contact with the rear end of the rail portion 41 of the drawer-type storage container 31 via the sound-absorbing material 47 when the drawer-type storage container 31 shown in FIG. 3 is in the storage state.
  • the mounting portion 52 is a stopper that defines the position of the drawer-type storage container 31 in the storage state.
  • the sound absorbing material 47 has a first face 48, a second face 49 continuous at a right angle from the first face 48, and a protruding portion 50 protruding from the second face 49 to the left.
  • the first surface portion 48 and the second surface portion 49 are formed flat.
  • an engaging portion 51 is formed in a middle portion of the protruding portion 50.
  • the engaging portion 51 has a substantially conical shape whose diameter increases toward the right. The diameter of the right end of the engaging portion 51 is larger than the inner diameter of the fixing hole 55 shown in FIG. 4 (B).
  • the sound absorbing material 47 is made of a material having better flexibility than the plate-shaped support member 43, and is made of, for example, rubber injection molding.
  • the first surface portion 48 of the sound absorbing material 47 is in contact with the first mounting surface 53 of the mounting portion 52.
  • the second surface portion 49 of the sound absorbing material 47 is in contact with the second mounting surface 54 of the mounting portion 52.
  • the protruding portion 50 of the sound absorbing material 47 is inserted into the fixing hole 55 of the mounting portion 52. By engaging the engaging portion 51 of the protruding portion 50 with the fixing hole 55, the sound absorbing material 47 is firmly mounted on the mounting portion 52.
  • FIG. 5 is a perspective view of the left portion of the drawer-type storage container 31 and the plate-shaped support member 43 as viewed from the upper right side. In this figure, the drawer-type storage container 31 and the plate-shaped support member 43 are shown separately in the left-right direction.
  • the rail portion 41 of the drawer-type storage container 31 is disposed between the upper support portion 45 a and the lower support portion 45 b of the plate-shaped support member 43.
  • the slide member 70 attached to the rear end of the rail portion 41 is in contact with the storage container support portion 45.
  • the rear end of the rail portion 41 comes into contact with the sound-absorbing material 47. Specifically, the rear end of the rail portion 41 is in contact with the first surface portion 48 of the sound absorbing material 47 shown in FIG. 4 (C).
  • the first surface portion 48 of the sound absorbing material 47 is made of a soft material such as rubber. Therefore, even if the rear end of the rail portion 41 is in contact with the first surface portion 48 of the sound absorbing material 47, the first surface portion 48 is deformed, so that no large contact sound is generated.
  • FIG. 6 (A) is a perspective view of the plate-shaped support member 44 viewed from the left front
  • FIG. 6 (B) is an enlarged perspective view showing the mounting portion 64 in an enlarged manner
  • FIG. 6 (C) is a perspective view showing the sound absorbing material 60.
  • the plate-shaped support member 44 is injection-molded from a synthetic resin, and a storage container support portion 46 is formed on a left side surface thereof.
  • the storage container support portion 46 is a portion where the plate-shaped support member 44 partially protrudes to the left, and is formed in a substantially linear shape from the vicinity of the front end to the vicinity of the rear end of the plate-shaped support member 44.
  • the storage container support portion 46 includes an upper support portion 46a formed in a substantially linear shape in the front-rear direction and a lower support portion 46b formed in a substantially linear shape in the front-rear direction below the upper support portion 44a.
  • a rail portion 42 shown in FIG. 3 (A) is disposed between the upper support portion 46a and the lower support portion 46b.
  • a mounting portion 72 that opens upward is formed at the front end of the lower support portion 46 b, and the slide member 71 is fitted into the mounting portion 72.
  • a mounting portion 64 is formed at the rear end of the storage container support portion 46, and a sound absorbing material 60 is mounted on the mounting portion 64.
  • the mounting portion 64 is formed on the rear end side of the storage container support portion 46 in the front-rear direction.
  • the mounting portion 64 is formed between the upper support portion 46 a and the lower support holding portion 46 b in the vertical direction.
  • the mounting portion 52 includes a first mounting surface 65 and a second mounting surface 66.
  • the first mounting surface 65 is a surface facing forward
  • the second mounting surface 66 is a surface facing leftward.
  • a fixing hole 67 is formed that penetrates the vicinity of the central portion of the second mounting surface 66 toward the right.
  • the shape of the fixing hole 67 viewed from the right is substantially circular.
  • the attachment portion 64 is a portion that abuts the rear end of the rail portion 41 of the drawer-type storage container 31 via the sound absorbing material 60.
  • the mounting portion 64 is a stopper that defines the position of the drawer-type storage container 31 in the storage state.
  • the sound absorbing material 60 has the same shape as the sound absorbing material 47 shown in FIG. 4 (C). Specifically, the sound absorbing material 60 includes a first face portion 61, a second face portion 62 continuous at a right angle from the first face portion 61, and a protruding portion 63 protruding from the second face portion 62 to the left. An engaging portion 68 is formed in a middle portion of the protruding portion 63.
  • the first surface portion 61 of the sound absorbing material 60 is in contact with the first mounting surface 65 of the mounting portion 64.
  • the second surface portion 62 of the sound absorbing material 60 is in contact with the second mounting surface 66 of the mounting portion 64.
  • the protruding portion 63 of the sound absorbing material 60 is inserted into the fixing hole 67 of the mounting portion 64. By engaging the engaging portion 68 of the 63 with the second mounting surface 66, the sound absorbing material 60 is firmly attached to the mounting portion 64.
  • FIG. 7 is a perspective view of the right portion of the drawer-type storage container 31 and the plate-shaped support member 44 as viewed from the upper left side. In this figure, the drawer-type storage container 31 and the plate-shaped support member 44 are shown separately in the left-right direction.
  • the rail portion 42 of the drawer-type storage container 31 is disposed between the upper support portion 46 a and the lower support portion 46 b of the plate-shaped support member 44.
  • the slide member 69 attached to the rear end of the rail portion 42 is in contact with the storage container support portion 46.
  • the sliding member 69 slides relative to the storage container support portion 46.
  • the rear end of the rail portion 42 comes into contact with the sound-absorbing material 60. Specifically, the rear end of the rail portion 42 is in contact with the first surface portion 61 of the sound absorbing material 60 shown in FIG. 6 (C).
  • the first surface portion 61 is made of a soft material such as rubber. Therefore, even if the rear end of the rail portion 42 is in contact with the first surface portion 61 of the sound absorbing material 60, the first surface portion 61 is deformed, so that no large contact sound is generated.
  • the sound absorbing material 47 and the sound absorbing material 60 made of rubber are arranged on the mounting portion 52 and the mounting portion 64. Therefore, when the user stores the drawer-type storage container 31 shown in FIG. 1 in the refrigerating compartment 15, even if the drawer-type storage container 31 is strongly pushed into the back side, no loud noise is generated. Specifically, when the drawer-type storage container 31 is pushed inward, the rear end of the rail portion 41 of the drawer-type storage container 31 shown in FIG. 5 comes into contact with the sound-absorbing material 47 made of rubber. The rear end of the rail portion 42 of the drawer-type storage container 31 shown in FIG. 7 is in contact with the sound-absorbing material 60 made of rubber. Accordingly, the rubber sound-absorbing material 47 and the sound-absorbing material 60 softly contact the rail portion 41 and the rail portion 42 of the drawer-type storage container 31, and it is possible to suppress the occurrence of a large contact sound.
  • the sound absorbing material 47 and the sound absorbing material 60 are arranged on the back side of the refrigerator compartment 15. Therefore, even when the heat-insulating door 19 shown in FIG. 1 is opened and the drawer-type storage container 31 is pulled forward, the sound absorbing material 47 and the sound absorbing material 60 are not noticed by the user. This can improve the appearance when the heat insulation door 19 is opened. Furthermore, when the user performs cleaning or the like, it is possible to prevent the user from accidentally removing the sound absorbing material 47 and the sound absorbing material 60.
  • the position of the sound absorbing material 47 is fixed by inserting the protruding portion 50 of the sound absorbing material 47 into the fixing hole 55 of the mounting portion 52.
  • the insertion direction of the protruding portion 50 is orthogonal to the direction in which the drawer-type storage container 31 slides. Therefore, it is possible to prevent the sound absorbing material 47 from falling off from the fixing hole 55 due to the sliding operation of the drawer-type storage container 31. This matter is also applicable to the sound absorbing material 60 shown in FIG. 6 (C).
  • the fixing hole 55 is drilled in the left-right direction, and its direction is orthogonal to the longitudinal direction of the storage container support portion 45.
  • the fixing hole 55 can be formed at the same time in the process of injection-molding the storage container support portion 45 using an injection mold. The same applies to the fixing hole 67 shown in FIG. 6 (B).
  • the fixing hole 55 penetrates the storage container support portion 45.
  • the plate-shaped support member 43 is formed with a storage container support portion 45 for guiding the sliding movement of the drawer-type storage container 31 and a mounting portion 52 provided with a sound absorbing material 47.
  • the plate-shaped support member 43 is integrally formed by injection molding. Therefore, by forming the storage container support portion 45 and the mounting portion 52 on the plate-shaped support member 43, the relative position accuracy of the two can be improved, the sliding movement of the drawer storage container 31 can be made smooth, and the storage state can be accurately defined. Position of the drawer-type storage container 31.
  • cooler 46 support container storage part 69 sliding part

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  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Physics & Mathematics (AREA)
  • Mechanical Engineering (AREA)
  • Thermal Sciences (AREA)
  • General Engineering & Computer Science (AREA)
  • Refrigerator Housings (AREA)
  • Drawers Of Furniture (AREA)

Abstract

一种冰箱(10),包括隔热箱体(11),其中形成有储藏室(15);抽屉式收纳容器(31),其配设在储藏室(15)的内部并可沿前后方向移动;收纳容器支承部(45),其以可拉出抽屉式收纳容器(31)的方式对抽屉式收纳容器(31)进行支承;以及吸音材料(47),其配设在抽屉式收纳容器(31)与收纳容器支承部(45)之间。吸音材料(47)配设在抽屉式收纳容器(31)被收纳时抽屉式收纳容器(31)所抵接的位置。

Description

冰箱 技术领域
本发明涉及一种冰箱,特别是涉及一种具备抽屉式收纳容器的冰箱。
背景技术
在普通的冰箱中,为了提高收纳性,会在冷藏室等储藏室的内部设置抽屉式收纳容器。
在具有抽屉式收纳容器的冰箱中,通过玻璃等隔架分隔储藏室。而且,在隔架的下方配置有抽屉式的收纳容器。在收纳容器的两侧配设有保持机构,该保持机构使收纳容器可在前后方向上滑动地保持。收纳容器的前面开口被可转动地安装在隔架上的门覆盖。
这种收纳容器动作如下:当使用者向前方拉出收纳容器时,随之门以上边为支点转动,收纳容器的前面开口不会被门覆盖。因此,使用者能够经由前面开口对收纳在收纳容器中的食品等进行取放。然后,当使用者通过向里侧推压收纳容器而将收纳容器收纳在储藏室中时,随之门向相反方向转动,收纳容器的前面开口被门覆盖。
具有所述结构的收纳容器的冰箱例如记载在以下的专利文献1中。
专利文献1:日本专利文献特开2016-200319号公报。
发明内容
但是,在上述结构的冰箱中,在收纳收纳容器时可能会产生噪音。具体而言,若使用者将收纳容器向里侧推,则收纳容器与内箱的里侧的部件抵接,由此收纳时收纳容器的位置被限定。此时,存在由于内箱侧的部件与收纳容器抵接而产生较大抵接声音的问题。另外,如果长时间反复进行这样的抵接,则内箱的部件或收纳容器可能会破损。
本发明是鉴于上述情况而完成的,其目的在于提供一种冰箱,该冰箱能够抑制将收纳容器收纳在里侧时的抵接声音的产生。
本发明的冰箱的特征在于,包括:隔热箱体,其中形成有储藏室;抽屉式收纳容器,其配设在所述储藏室的内部并可沿前后方向移动;收纳容器支承部,其以可拉出所述抽屉式收纳容器的方式对所述抽屉式收纳容器进行支承;以及吸音材料,其由比所述收纳容器支承部软的软性材料构成,配设在 所述抽屉式收纳容器被收纳在所述储藏室中时所述抽屉式收纳容器所接触的位置。
另外,本发明的冰箱的特征在于,所述吸音材料配置在所述收纳容器支承部的后端侧。
另外,本发明的冰箱的特征在于,所述吸音材料包括:与所述抽屉式收纳容器接触的第一面部、相对于所述第一面部成直角地连续的第二面部、以及从所述第二面部的主面突出的突出部,在所述收纳容器支承部的后端侧形成有沿与所述收纳容器支承部的长度方向正交的方向钻出的固定孔,通过将所述吸音材料的所述突出部插入所述固定孔中,从而固定所述吸音材料的位置。
另外,本发明的冰箱的特征在于,板状支承部件设置在抽屉式收纳容器的宽度方向的外侧,并且所述收纳容器支承部和所述吸音材料设置在所述板状支承部件上。
本发明的冰箱的特征在于,包括:隔热箱体,其中形成有储藏室;抽屉式收纳容器,其配设在所述储藏室的内部并可沿前后方向移动;收纳容器支承部,其以可拉出所述抽屉式收纳容器的方式对所述抽屉式收纳容器进行支承;以及吸音材料,其由比所述收纳容器支承部软的软性材料构成,配置在所述抽屉式收纳容器被收纳在所述储藏室中时所述抽屉式收纳容器所接触的位置。根据本发明的冰箱,当抽屉式储存容器被推入后侧时,抽屉式储存容器与由软性材料制成的吸声材料接触,由此抑制对抽屉式收纳容器进行收纳时产生较大抵接声音的问题。
另外,本发明的冰箱的特征在于,所述吸音材料配置在所述收纳容器支承部的后端侧。根据本发明的冰箱,吸音材料配置在里侧,因而能够防止使用者误拆下吸音材料。
另外,本发明的冰箱的特征在于,所述吸音材料包括:与所述抽屉式收纳容器接触的第一面部、相对于所述第一面部成直角地连续的第二面部、以及从所述第二面部的主面突出的突出部,在所述收纳容器支承部的后端侧形成有沿与所述收纳容器支承部的长度方向正交的方向钻出的固定孔,通过将所述吸音材料的所述突出部插入所述固定孔中,从而固定所述吸音材料的位置。根据本发明的冰箱,通过将突出部插入插入孔这样简单的结构,而能够牢固地固定吸音材料。另外,由于固定孔与收纳容器支承部的长度方向正交, 所以能够采用注射成型模具容易地在收纳容器支承部形成插入孔。
另外,本发明的冰箱的特征在于,板状支承部件设置在抽屉式收纳容器的宽度方向的外侧,并且所述收纳容器支承部和所述吸音材料设置在所述板状支承部件上。根据本发明的冰箱,通过在板状支承部件上设置收纳容器支承部和吸音材料,可以提高收纳容器支承部和吸音材料的形状以及位置的精度,并且稳定地支承抽屉式收纳储容器。
附图说明
图1是表示根据本发明一个实施例的冰箱的侧剖视图。
图2是表示根据本发明一个实施例的冰箱的图,其中,图(A)和图(B)是示出冷藏室的下部的立体图。
图3是表示根据本发明一个实施例的冰箱的图,其中,图(A)是示出抽屉式收纳容器的立体图,图(B)是示出轨道部的后端部的放大立体图。
图4是表示根据本发明一个实施例的冰箱的图,其中,图(A)是示出板状支承部件的立体图,图(B)是示出板状支承部件的安装部的放大立体图,图(C)是表示吸音材料的立体图。
图5是表示根据本发明一个实施例的冰箱的图,并且是示出抽屉式收纳容器和左侧板状支承部件的立体图。
图6是表示根据本发明一个实施例的冰箱的图,其中,图(A)是表示板状支承部件的立体图,图(B)是表示安装部的放大立体图,图(C)是表示吸音材料的立体图。
图7是表示根据本发明一个实施例的冰箱的图,并且是示出抽屉式收纳容器和右侧板状支承部件的立体图。
具体实施方式
以下,根据附图,对本发明的实施例所涉及的冰箱10进行详细地说明。在以下描述中,上下方向表示冰箱10的高度方向,左右方向表示冰箱10的宽度方向,并且前后方向表示冰箱10的进深方向。
图1是表示冰箱10的示意性构造的侧剖视图。如图1所示,冰箱10包括作为主体的隔热箱体11,并在隔热箱体11的内部形成用于储存食物等的储藏室。
隔热箱体11包括:钢板外箱12,其在前表面上具有开口;合成树脂材 质的内箱13,其在外箱12内留有间隙地配设,并在前表面上具有开口;以及隔热材料14,其由填充在外箱12和内箱13之间的间隙并发泡的聚氨酯泡沫制成。
储藏室的内部根据保冷温度和用途划分为多个收纳室。从上层形成有冷藏室15、上部冷冻室16、下部冷冻室17和蔬菜室18。
隔热箱体11的各收纳室的前表面开口,在上述开口各设置有可自由开闭的隔热门19~22。具体而言,隔热门19关闭冷藏室15的前面开口,隔热门20关闭上部冷冻室16的前面开口,隔热门21关闭下部冷冻室17的前方开口,隔热门22关闭蔬菜室18的前方开口。隔热门19的宽度方向端部转动自如地安装在隔热箱体11上。隔热门20、隔热门21及隔热门22在前后方向上拉出自如地配设在隔热箱体11上。隔热门19~22具有与隔热箱体11同样的隔热构造。
冷藏室15和上部冷冻室16由隔热隔壁32隔开,下部冷冻室17和蔬菜室18由隔热隔壁33隔开。隔热隔壁32及隔热隔壁33具有与绝热箱体11同样的隔热构造。
在上部冷冻室16及下部冷冻室17的后方形成有冷却室23,在冷却室23的内部配置有冷却器24。冷却器24、压缩机29、散热器(未示出)和减压装置(未示出)通过制冷剂配管依次连接,构成作为冷却装置的蒸气压缩式冷冻循环回路。
另外,在冷藏室15的后方形成有送风路26,通过将送风路26的一部分开口而形成有吹出口27。
在冷却器24的上部配设有送风机25,由冷却器24冷却后的冷却室23的内部的冷气由送风机25向各储藏室15~18送风。具体而言,由送风机25吹送的冷气的一部分经由送风路26及吹出口27被供给到冷藏室15。另外,由送风机25吹送的冷气的一部分也供给到上部冷冻室16及下部冷冻室17。此外,在冷藏室15吹送的冷气的一部分也供给到蔬菜室18。
由此,冷藏室15、上部冷冻室16、下部冷冻室17以及蔬菜室18被冷却到规定的温度范围。此外,吹送到冷藏室15、上部冷冻室16、下部冷冻室17及蔬菜室18的冷气之后经由返回风路(未示出)返回冷却室23。
在冷却室23的内部,冷却器24的下方配设有用于除去附着在冷却器24上的霜的除霜加热器28。
在冷藏室15的内部配设有多个将内部空间沿上下方向隔开的隔架30。在配置于最下部的隔架30的下方配置有抽屉式收纳容器31。抽屉式收纳容器31在前后方向上拉出自如地配置。在抽屉式收纳容器31的前部上方配置有转动门34。转动门34相对于隔架30转动自如地组装,在抽屉式收纳容器31被推入里侧的收纳状态下,转动门34关闭。另一方面,在抽屉式收纳容器31被向前方拉出的拉出状态下,转动门34打开。
参照图2,对冷藏室15的下部的结构进行说明。此处未图示上述抽屉式收纳容器31及转动门34。图2(A)是从右侧上方观察冷藏室15的下部的立体图,图2(B)是从左侧上方观察冷藏室15的下部的立体图。
参照图2(A),在隔架30的左方下侧配设有供水容器35和板状支承部件43。供水容器35是用于贮存向制冰机(未示出)供给的水的容器。板状支承部件43是配设在供水容器35的右方最近处的板状部件。板状支承部件43由合成树脂注射成型而成。在板状支承部件43的右方侧的面上形成有收纳容器支承部45。收纳容器支承部45是将上述抽屉式收纳容器31从左方侧沿前后方向可滑动地进行支承的部件。另外,板状支承部件43也是将隔架30下方的空间隔开为配置供水容器35的部分和配置上述抽屉式收纳容器31的部分的划分部件。
参照图2(B),在冷藏室15的右方侧的内壁上安装有板状支承部件44。在板状支承部件44上形成有收纳容器支承部46。板状支承部件44由合成树脂注射成型而成。板状支承部件44是将上述抽屉式收纳容器31沿前后方向可滑动地进行支承的部件。
参照图3,对抽屉式收纳容器31的结构进行详细说明。图3(A)是从右侧上方观察抽屉式收纳容器31的立体图,图3(B)是局部放大表示导轨部42的放大立体图。
参照图3(A),抽屉式收纳容器31是由合成树脂注射成型的容器。另外,通过对抽屉式收纳容器31的前方侧壁的上部进行开口而形成前方开口部37。另外,在抽屉式收纳容器31的后方侧面形成有用于向抽屉式收纳容器31的内部导入冷气的后方开口部38。
通过使抽屉式收纳容器31的右方侧面的下部部分地向右方突出而形成轨道部42。轨道部42从抽屉式收纳容器31的前端到后端沿着前后方向形成为大致直线状。同样,在抽屉式收纳容器31的左方侧侧面也形成有轨道部 41。
参照图3(B),在轨道部42的后端嵌入有滑动部件69。滑动部件69由具有高耐磨性的POM(聚缩醛)构成。滑动部件69的上下方向上的长度大于轨道部42的上下方向上的长度。因此,在抽屉式收纳容器31沿前后方向滑动移动时,滑动部件69相对于图2(B)所示的收纳容器支承部46滑动。
参照图4,对板状支承部件43的结构进行说明。图4(A)是从右侧前方观察板状支承部件43的立体图,图4(B)是放大表示安装部52的放大立体图,图4(C)是表示吸音材料47的立体图。
参照图4(A),板状支承部件43由PP(Polypropylene,聚丙烯)等合成树脂注射成型而成,在其右方侧面形成有收纳容器支承部45。收纳容器支承部45是使板状支承部件43部分地向右方突出的部位,从板状支承部件43的前端附近到后端附近形成为大致直线状。
收纳容器支承部45包括在前后方向形成为大致直线状的上侧支承部分45a和在上侧支承部45a的下方在前后方向形成为大致直线状的下侧支承部分45b。上侧支承部分45a和下侧支承部分45b形成为相互平行。在上侧支承部分45a和下侧支承部分45b之间配设有图3(A)所示的抽屉式收纳容器31的轨道部41。在下侧支承部分45b的前端形成有向上方开口的安装部74,在安装部74中嵌入有滑动部件73。滑动部件73由耐磨损的POM构成,图3(A)所示的轨道部41的下表面相对于滑动部件73的上表面滑动。另外,在收纳容器支承部45的后端形成有安装部52,吸音材料47安装在安装部52上。
参照图4(B),安装部52在前后方向上形成于收纳容器支承部45的后端侧。另外,安装部52在上下方向上形成于上侧支承部分45a和下侧支承保持部分45b之间。安装部52具有第一安装面53和第二安装面54。第一安装面53是朝向前方的面,第二安装面54是朝向右方的面。在第二安装面54上形成有朝向左方贯通第二安装面54的中央部附近的固定孔55。从右方观察的固定孔55的形状为大致圆形。
安装部52是在将图3所示的抽屉式收纳容器31设为收纳状态时经由吸音材料47与抽屉式收纳容器31的轨道部41的后端所抵接的部位。换言之,安装部52是规定收纳状态下的抽屉式收纳容器31的位置的止挡件。
参照图4(C),吸音材料47具有第一面部48、从第一面部48成直角地 连续的第二面部49、从第二面部49向左方突出的突出部50。第一面部48及第二面部49平坦地形成。另外,在突出部50的中间部分形成有卡合部51。卡合部51呈朝向右方扩径的大致圆锥形状。卡合部51的右端的直径大于图4(B)所示的固定孔55的内径。吸音材料47由软性比板状支承部件43优异的材料构成,例如由橡胶注射成型而成。
参照图4(B)及图4(C),吸音材料47的第一面部48与安装部52的第一安装面53抵接。吸音材料47的第二面部49与安装部52的第二安装面54抵接。吸音材料47的突出部50插入安装部52的固定孔55中。通过突出部50的卡合部51与固定孔55的卡合,吸音材料47被牢固地安装在安装部52上。
参照图5,对抽屉式收纳容器31和板状支承部件43的关联结构进行说明。图5是从右侧上方观察抽屉式收纳容器31的左方部分和板状支承部件43的立体图。在该图中,将抽屉式收纳容器31和板状支承部件43在左右方向上分开表示。
抽屉式收纳容器31的轨道部41配置在板状支承部件43的上侧支承部分45a和下侧支承部分45b之间。另外,安装在轨道部41的后端的滑动部件70与收纳容器支承部45接触。当使抽屉式收纳容器31沿前后方向滑动时,滑动部件70相对于收纳容器支承部45滑动。
当为了收纳而将抽屉式收纳容器31向后方推入时,轨道部41的后端与吸音材料47抵接。具体而言,轨道部41的后端与图4(C)所示的吸音材料47的第一面部48抵接。如上所述,吸音材料47的第一面部48由橡胶等软性材料构成。因此,即使轨道部41的后端与吸音材料47的第一面部48相抵接,但由于第一面部48会变形,也不会产生较大的抵接声音。
参照图6,对板状支承部件44的结构进行说明。其中,图6(A)是从左侧前方观察板状支承部件44的立体图,图6(B)是放大表示安装部64的放大立体图,图6(C)是表示吸音材料60的立体图。
参照图6(A),板状支承部件44由合成树脂注射成型而成,在其左方侧面形成有收纳容器支承部46。收纳容器支承部46是使板状支承部件44部分地向左方突出的部位,从板状支承部件44的前端附近到后端附近形成为大致直线状。
收纳容器支承部46包括在前后方向形成为大致直线状的上侧支承部分 46a以及在上侧支承部44a的下方在前后方向形成为大致直线状的下侧支承部分46b。在上侧支承部分46a和下侧支承部分46b之间配设有图3(A)所示的轨道部42。在下侧支承部分46b的前端形成有向上方开口的安装部72,滑动部件71嵌入安装部72。在收纳容器支承部46的后端形成有安装部64,在安装部64上安装有吸音材料60。
参照图6(B),安装部64在前后方向上形成于收纳容器支承部46的后端侧。另外,安装部64在上下方向上形成在上侧支承部分46a和下侧支承保持部分46b之间。安装部52具有第一安装面65和第二安装面66。第一安装面65是朝向前方的面,第二安装面66是朝向左方的面。另外,形成有朝向右方贯通第二安装面66的中央部附近的固定孔67。从右方观察的固定孔67的形状为大致圆形。安装部64是在将图3所示的抽屉式收纳容器31设为收纳状态时,经由吸音材料60而抽屉式收纳容器31的导轨部41的后端所抵接的部位。换言之,安装部64是规定收纳状态下的抽屉式收纳容器31的位置的止挡件。
参照图6(C),吸音材料60具有与图4(C)所示的吸音材料47相同的形状。具体而言,吸音材料60具有第一面部61、从第一面部61成直角地连续的第二面部62以及从第二面部62向左方突出的突出部63。在突出部63的中间部分形成有卡合部68。
参照图6(B)及图6(C),吸音材料60的第一面部61与安装部64的第一安装面65抵接。吸音材料60的第二面部62与安装部64的第二安装面66抵接。吸音材料60的突出部63插入安装部64的固定孔67中。通过63的卡合部68与第二安装面66的卡合,吸音材料60牢固地安装到安装部64上。
参照图7,对抽屉式收纳容器31和板状支承部件44的关联结构进行说明。图7是从左侧上方观察抽屉式收纳容器31的右方部分和板状支承部件44的立体图。在该图中,将抽屉式收纳容器31和板状支承部件44在左右方向上分开地表示。
抽屉式收纳容器31的轨道部42配置在板状支承部件44的上侧支承部分46a和下侧支承部分46b之间。另外,安装在轨道部42的后端的滑动部件69与收纳容器支承部46接触。当使抽屉式收纳容器31沿前后方向滑动时,滑动部件69相对于收纳容器支承部46滑动。
当为了收纳将抽屉式收纳容器31向后方推入时,轨道部42的后端与吸 音材料60抵接。具体而言,轨道部42的后端与图6(C)所示的吸音材料60的第一面部61抵接。第一面部61由橡胶等软性材料构成。因此,即使轨道部42的后端与吸音材料60的第一面部61抵接,由于第一面部61会变形,也不会产生较大的抵接声音。
根据本实施方式的冰箱10,如图4及图6所示,在安装部52及安装部64上配置有由橡胶构成的吸音材料47及吸音材料60。因此,当使用者将图1所示的抽屉式收纳容器31收纳于冷藏室15时,即使存在将抽屉式收纳容器31强力推入里侧的情况,也不会产生大的噪音。具体而言,当抽屉式收纳容器31被向里侧推入时,图5所示的抽屉式收纳容器31的轨道部41的后端与由橡胶构成的吸音材料47抵接。另外,图7所示的抽屉式收纳容器31的轨道部42的后端与由橡胶构成的吸音材料60抵接。由此,橡胶的吸音材料47及吸音材料60软接触于抽屉式收纳容器31的轨道部41及轨道部42,从而能够抑制产生大的抵接音。
另外,吸音材料47及吸音材料60配置在冷藏室15的里侧。因此,即使在打开如图1所示的隔热门19、将抽屉式收纳容器31向近前拉出的情况下,吸音材料47及吸音材料60也不会被使用者注意到。由此,能够提高打开隔热门19时的外观性。进而,在使用者进行清扫等时,能够抑制使用者误拆下吸音材料47及吸音材料60情况的发生。
另外,参照图4(B)及图4(C),通过将吸音材料47的突出部50插入安装部52的固定孔55中,而将吸音材料47的位置固定。在此,突出部50的插入方向与上述抽屉式收纳容器31滑动的方向正交。因此,能够防止随着抽屉式收纳容器31的滑动动作,吸音材料47从固定孔55脱落的情况发生。该事项对于图6(C)所示的吸音材料60也同样适用。
此外,参照图4(B),固定孔55朝向左右方向钻出,其方向与收纳容器支承部45的长度方向正交。通过使固定孔55在这样的方向钻出,能够在使用注射模具对收纳容器支承部45进行注射成型的工序中,同时也形成固定孔55。该事项对于图6(B)所示的固定孔67也同样适用。在一些实施例中,固定孔55贯穿收纳容器支承部45。
进而,参照图4(A),在板状支承部件43上,形成有引导抽屉式收纳容器31的滑动动作的收纳容器支承部45与设置吸音材料47的安装部52。另外,板状支承部件43通过注射成型一体地形成。因此,通过将收纳容器支 承部45和安装部52形成在板状支承部件43上,能够提高两者的相对位置精度,使抽屉式收纳容器31的滑动动作顺畅,进而能够正确地规定收纳状态下的抽屉式收纳容器31的位置。
以上,示出了本发明实施方式,但本发明并不限于所述实施方式。
符号说明
10 冰箱          31  抽屉式收纳容器   51 卡合部
11 隔热箱体      32  隔热分隔壁       52 安装部
12 外箱          33  隔热分隔壁       53 第一安装部
13 内箱          34  转动门           54 第二安装部
14 隔热材料      35  供水容器         55 固定孔
15 冷藏室        37  前方开口部       60 吸音材料
16 上部冷冻室    38  后方开口部       61 第一面部
17 下部冷冻室    41  轨道部           62 第二面部
18 蔬菜室        42  轨道部           63 突出部
19 隔热门        43  板状支承部件     64 安装部
20 隔热门        44  板状支承部件     65 第一安装部
21 隔热门        45  收纳容器支承部   66 第二安装部
22 隔热门        45a 上侧支承部分     67 固定孔
23 冷却室        45B 下侧支承部分     68 卡合部
24 冷却器        46  收纳容器支承部   69 滑动部件
25 送风机        46a 上侧支承部分     70 滑动部件
26 送风路        46b 下侧支承部分     71 滑动部件
27 吹出口        47  吸音材料         72 安装部
28 除霜加热器    48  第一面部         73 滑动部件
29 压缩机        49  第二面部         74 安装部
30 隔架          50  突出部

Claims (4)

  1. 一种冰箱,其特征在于,包括:
    隔热箱体,其中形成有储藏室;
    抽屉式收纳容器,其配设在所述储藏室的内部并可沿前后方向移动;
    收纳容器支承部,其以使所述抽屉式收纳容器可拉出的方式对所述抽屉式收纳容器进行支承;以及
    吸音材料,其由比所述收纳容器支承部软的软性材料构成,配设在所述抽屉式收纳容器被收纳在所述储藏室中时所述抽屉式收纳容器所接触的位置。
  2. 根据权利要求1所述的冰箱,其特征在于,
    所述吸音材料配设在所述收纳容器支承部的后端侧。
  3. 根据权利要求1或2所述的冰箱,其特征在于,
    所述吸音材料包括:与所述抽屉式收纳容器接触的第一面部、相对于所述第一面部成直角地连续的第二面部、以及从所述第二面部的主面突出的突出部,
    在所述收纳容器支承部的后端侧形成有固定孔,所述固定孔沿与所述收纳容器支承部的长度方向正交的方向钻出,
    通过将所述吸音材料的所述突出部插入所述固定孔中而固定所述吸音材料的位置。
  4. 根据权利要求1~3中任一项所述的冰箱,其特征在于,
    板状支承部件设置在抽屉式收纳容器的宽度方向的外侧,
    并且所述收纳容器支承部和所述吸音材料设置在所述板状支承部件上。
PCT/CN2019/102492 2018-08-27 2019-08-26 冰箱 Ceased WO2020043043A1 (zh)

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