CN218544959U - Refrigerator - Google Patents

Refrigerator Download PDF

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Publication number
CN218544959U
CN218544959U CN202222795354.2U CN202222795354U CN218544959U CN 218544959 U CN218544959 U CN 218544959U CN 202222795354 U CN202222795354 U CN 202222795354U CN 218544959 U CN218544959 U CN 218544959U
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China
Prior art keywords
drawer
partition plate
partition
plate
refrigerator
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CN202222795354.2U
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Chinese (zh)
Inventor
张照杰
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Hisense Ronshen Guangdong Freezer Co Ltd
Qingdao Hisense Commercial Cold Chain Co Ltd
Original Assignee
Hisense Ronshen Guangdong Freezer Co Ltd
Qingdao Hisense Commercial Cold Chain Co Ltd
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Application filed by Hisense Ronshen Guangdong Freezer Co Ltd, Qingdao Hisense Commercial Cold Chain Co Ltd filed Critical Hisense Ronshen Guangdong Freezer Co Ltd
Priority to CN202222795354.2U priority Critical patent/CN218544959U/en
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Publication of CN218544959U publication Critical patent/CN218544959U/en
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Abstract

The utility model provides a refrigerator. The refrigerator comprises a refrigerator body and a door body; the inner container is arranged in the box body and is provided with a mounting seat protruding towards the interior of the box body; the air duct is connected to the rear side wall of the storage space; the temperature changing area is formed by a first partition plate, a second partition plate, a mounting seat and an air duct; the first partition board is connected with the storage space, the first partition board comprises a first clamping part positioned at the corner of the front end part of the first partition board, a first limiting groove is formed in the front end of the top of the mounting seat, and the first clamping part is connected in the first limiting groove; the first partition plate also comprises a second limiting groove positioned at the rear end of the first partition plate, the air duct is provided with a second clamping part extending towards the front side, and the second clamping part is connected in the second limiting groove; the second partition board is arranged at the lower side of the first partition board and is connected with the storage space, and the inner container is attached to the outer contour of the second partition board. Be equipped with first joint portion and second spacing groove on this refrigerator's the first baffle, make the front end and the rear end of first baffle all fixed, reduce the probability that the rear end of first baffle takes place the deformation.

Description

Refrigerator with a door
Technical Field
The utility model relates to the technical field of household appliances, especially, relate to a refrigerator.
Background
With the rapid development of refrigerators, the refrigerators can be used not only as household appliances, but also as a hall bar or a refrigerator for refrigerating or keeping food or beverage warm, and the application range of the refrigerators is more and more extensive.
The refrigerator usually provides only freezing, refrigerating and fresh-keeping functions, the temperature of a single area is usually maintained at a certain temperature according to the setting of a user, and if the user wants to store at variable temperature, the user needs to change the temperature of the storage area by himself, so that the requirements of the user on variable-temperature stored articles cannot be met, and various different requirements of the user on the storage temperature cannot be met.
In the related art, the refrigerator is provided with the temperature-variable region to provide different temperatures, the temperature of the temperature-variable region is sometimes higher than that of the lower region of the temperature-variable region, and a gap exists between the partition plate and the inner container, so that cold air flows into the temperature-variable region from the lower part, and temperature fluctuation of the temperature-variable region is caused. The rear side of the temperature-changing area is provided with an air duct, the upper side partition plate of the temperature-changing area and the air duct are fixed unstably in the prior art, the rear end of the upper side partition plate is tilted upwards after the temperature-changing area is used for a long time, and the heat preservation effect of the temperature-changing area is affected.
SUMMERY OF THE UTILITY MODEL
The utility model discloses solve one of the technical problem in the correlation technique at least to a certain extent.
Therefore, the refrigerator is provided with the temperature-changing area, the upper side and the lower side of the temperature-changing area are respectively provided with the first partition plate and the second partition plate, the first partition plate is provided with the first clamping portion and the second limiting groove, the front end and the rear end of the first partition plate are fixed, the probability of deformation of the rear end of the first partition plate is reduced, the inner container is attached to the outer contour of the second partition plate, and the probability of exposing cold air to the temperature-changing area from the gap between the second partition plate and the inner container in the area below the second partition plate is reduced.
The refrigerator comprises a refrigerator body, a storage space and a control device, wherein the refrigerator body is internally provided with the storage space; the door body is rotationally connected with the box body. The inner container is arranged in the box body, and a mounting seat protruding towards the inside of the box body is arranged on the inner container. The air duct is connected to the rear side wall of the storage space and used for supplying air to the temperature changing area. The temperature changing area is formed by the first partition plate, the second partition plate, the mounting seat and the air duct. The first partition board is connected with the storage space and comprises a first clamping part positioned at the corner of the front end part of the first partition board, the front end of the top of the mounting seat is provided with a first limiting groove, and the first clamping part is connected in the first limiting groove; the first baffle still includes the second spacing groove that is located its rear end, and the wind channel is equipped with the second joint portion that extends towards the front side, and second joint portion connects in the second spacing inslot to make the rear end portion of first baffle fixed.
The second partition board is arranged at the lower side of the first partition board and connected with the storage space, and the inner container is attached to the outer contour of the second partition board so as to block the cold air flowing between the temperature-changing area and the lower side area of the second partition board.
In some embodiments of the present application, the first partition plate further includes sealing strips, the sealing strips have two layers arranged up and down, the two layers of sealing strips are respectively connected to the rear side, the left side and the right side of the first partition plate, and when the first partition plate is installed in the storage space, the sealing strips are clamped between the air duct and the first partition plate and between the storage space and the first partition plate.
In some embodiments of the present application, a foaming layer is filled between the box body and the inner container, and the foaming layer provides a pressing force to the inner container toward the inside of the storage space, so that the inner container is pressed to closely adhere to the outer contour of the second partition plate.
In some embodiments of the present application, the first clamping portions have two, and the two first clamping portions are symmetrically disposed; the first limiting grooves are at least two and are symmetrically arranged, and the positions of the first clamping parts are matched with the positions of the first limiting grooves.
In some embodiments of the present application, the number of the second limiting grooves is at least two, and the two second limiting grooves are symmetrically arranged; the second clamping parts are at least provided with two parts which are symmetrically arranged, and the positions of the second clamping parts are matched with the positions of the second limiting grooves.
In some embodiments of the present application, the refrigerator further includes a fixing assembly for connecting the inner container and the first partition, the fixing assembly including: the inserting part penetrates through the first partition plate and the first limiting groove at the same time; the barrier part, the barrier part is located between inner bag and the box, and fixed subassembly has two and symmetry setting, and both ends about the preceding tip of two fixed subassemblies fixed first baffle jointly.
In some embodiments of the present application, the refrigerator further comprises a drawer, the drawer being disposed in the temperature-variable region; the drawer is provided with a first buckle and a turnover buckle on the left side and the right side, a connecting rail is arranged on the storage space, and the first buckle and the turnover buckle are connected with the connecting rail.
In some embodiments of the present application, the drawer includes a front plate including an aluminum alloy connection strip connected to an upper end of the front plate, and a receiving part connected to a rear side of the front plate.
In some embodiments of the present application, the shape and size of the aluminum alloy connecting strip are matched with the shape and size of the front end of the first partition plate, so that when the drawer moves into the temperature changing zone, the aluminum alloy decorative strip is attached to the first partition plate, and the overflow of cold air is reduced.
The application has at least the following positive effects:
the utility model provides a refrigerator. The refrigerator comprises a refrigerator body and a door body; the inner container is arranged in the box body and is provided with a mounting seat protruding towards the interior of the box body; the air duct is connected to the rear side wall of the storage space; the temperature changing area is formed by a first partition plate, a second partition plate, a mounting seat and an air duct; the first partition board is connected with the storage space, the first partition board comprises a first clamping part positioned at the corner of the front end part of the first partition board, a first limiting groove is formed in the front end of the top of the mounting seat, and the first clamping part is connected in the first limiting groove; the first partition plate further comprises a second limiting groove positioned at the rear end of the first partition plate, the air duct is provided with a second clamping portion extending towards the front side, and the second clamping portion is connected in the second limiting groove; the second partition board is arranged at the lower side of the first partition board and is connected with the storage space, and the inner container is attached to the outer contour of the second partition board. The first partition plate of the refrigerator is provided with the first clamping portion and the second limiting groove, so that the front end and the rear end of the first partition plate are fixed, the probability of deformation of the rear end of the first partition plate is reduced, the liner is attached to the outer contour of the second partition plate, and the probability of exposing cold air to a temperature changing area from a gap between the second partition plate and the liner in the area below the second partition plate is reduced.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below, it is obvious that the drawings in the following description are only some embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to these drawings without creative efforts.
Fig. 1 is a view of an external appearance of a refrigerator according to an embodiment of the present application;
FIG. 2 is a mating view of a drawer and a connecting rail according to an embodiment of the present application;
FIG. 3 is a mating view of a drawer and a connecting rail according to an embodiment of the present application;
FIG. 4 is a mating view of a drawer and a first rail according to an embodiment of the present application;
FIG. 5 is an external view of a drawer according to an embodiment of the present application;
FIG. 6 is an enlarged view A of FIG. 5;
FIG. 7 is an external view of a first rail according to an embodiment of the present application;
FIG. 8 is an external view of a first rail according to an embodiment of the present application;
FIG. 9 is a mating view of the liner, first divider, second divider, and drawer according to an embodiment of the present application;
FIG. 10 is a mating view of a wind tunnel and a second partition according to an embodiment of the present application;
FIG. 11 is an enlarged view B according to an embodiment of the present application;
FIG. 12 is a schematic view of a first separator plate according to an embodiment of the present application;
fig. 13 is an enlarged view C in fig. 12;
FIG. 14 is a schematic view of a first separator plate according to an embodiment of the present application;
FIG. 15 is an external view of a securing assembly according to an embodiment of the present application;
FIG. 16 is a schematic view of a refrigerator removal door according to an embodiment of the present application;
fig. 17 is a schematic view of a drawer of a refrigerator according to an embodiment of the present application;
FIG. 18 is a front view of FIG. 17;
FIG. 19 is a sectional view taken along line D-D of FIG. 18;
fig. 20 is an enlarged view E in fig. 19;
FIG. 21 is an exploded view according to an embodiment of the present application;
FIG. 22 is a disassembled view of a connecting strip and a front panel according to an embodiment of the present application;
fig. 23 is an enlarged view F in fig. 22;
FIG. 24 is a fragmentary, exploded view of two attachment straps and a front panel of an embodiment of the present application;
FIG. 25 is a schematic view of a liner according to an embodiment of the present application;
FIG. 26 is an enlarged view G according to an embodiment of the present application;
in the above figures: 100. a refrigerator; 1. a box body; 11. a storage space; 111. a variable temperature zone; 112. connecting the rails; 1121. a first opening; 1122. a second opening; 1123. a first track; 1124. a second track; 1125. a third track; 1126. a first annular limiting plate; 1127. a first side opening; 1128. a second annular limiting plate; 1129. a second side opening; 2. a door body; 3. an inner container; 31, a mounting seat; 311. a first limit groove; 32. a fixed part; 33. A fixed seat; 41. a first separator; 411. a first clamping part; 412. a second limit groove; 413. a sealing strip; 42. A second separator; 5. an air duct; 51. a second clamping part; 6. a drawer; 61. a first buckle; 611. a first projecting portion; 612. a strip rib plate; 62. turning over the buckle; 621. a curved cantilever; 6211. a first arcuate edge; 6212. a second arcuate edge; 622. a baffle plate; 63. a front side plate; (ii) a 631. A front end plate; 632. a projection; 6321. a first card slot; 6322. a second card slot; 6323. a first inclined plane; 64. an accommodating portion; 641. a convex surface; 65. air holes are formed; 66. A connecting strip; 661. a first bevel panel; 6621. a first connecting plate clamping part; 663. a second connecting plate; 6631. a second connecting plate clamping part; 664. an aluminum alloy connecting strip; 67. a first gap; 68. a drawer trim; 681. an extension plate; 682. a connecting plate; 7. a foamed layer; 8. a fixing component; 81. a plug-in part; 82. a blocking portion.
Detailed Description
The present invention is specifically described below by way of exemplary embodiments. It should be understood, however, that elements, structures, and features of one embodiment may be beneficially incorporated in other embodiments without further recitation.
In the description of the present invention, it should be understood that the terms "center", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. indicate orientations or positional relationships based on those shown in the drawings, and are only for convenience of description and simplicity of description, but do not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore, are not to be construed as limiting the present invention.
The terms "first", "second" and "first" are used for descriptive purposes only and are not to be construed as indicating or implying relative importance or implicitly indicating the number of technical features indicated. Thus, a feature defined as "first", "second", may explicitly or implicitly include one or more of that feature.
In the description of the present invention, it is to be noted that, unless otherwise explicitly specified or limited, the terms "mounted", "connected" and "connected" are to be interpreted broadly, e.g. as a fixed connection, a detachable connection or an integral connection; they may be connected directly or indirectly through intervening media, or they may be interconnected between two elements. The specific meaning of the above terms in the present invention can be understood as a specific case by those skilled in the art.
Hereinafter, embodiments of the present application will be described in detail with reference to fig. 1 to 26. In the drawings, a side of the refrigerator facing a user when in use is defined as a front side, and an opposite side is defined as a rear side. When the user uses the refrigerator, upper, lower, left, and right sides are defined in directions felt by the user.
The application provides a refrigerator with four accuse temperature regions, four accuse temperature regions are arranged and independent accuse temperature from top to bottom, can satisfy the temperature requirement of user to storing different article, and four accuse temperature regions include freezing zone, alternating temperature zone 111, cold storage district and fresh-keeping zone, and fresh-keeping zone's temperature maintains more than 0 degree centigrade, and fresh-keeping zone is including being located the wine district on fresh-keeping zone upper portion, and the wine district is used for preserving red wine.
The refrigerator includes a storage space 11 provided in the cabinet 1, the storage space 11 being used to store articles requiring low-temperature storage or variable-temperature storage, and shelves and drawers 6 are generally provided in the storage space 11. The multiple layer frames are arranged from top to bottom, layered storage of food materials is achieved, fruits and vegetables or beverages can be stored in the drawer 6, the drawer 6 forms closed storage relative to the layer frames, and the phenomenon that the fruits and vegetables are air-dried can be reduced.
The front side of the box body 1 is provided with an opening of the box body 1 for storing and taking articles. The door body 2 is rotatably connected to the opening of the box body 1 and is used for opening or closing the opening of the box body 1. The box body 1 is generally rectangular, the opening of the box body 1 is generally rectangular, and the shape and the size of the door body 2 are matched with those of the opening of the box body 1. The door body 2 is connected with the box body 1 through a hinge, so that one vertical side edge of the door body 2 is rotatably connected with one vertical side edge of the opening of the box body 1. The door bodies 2 can be arranged in a plurality of numbers, the door bodies 2 correspond to different temperature control areas respectively, a user can only open the door body 2 of the temperature control area to be opened to take out articles, other temperature control areas are not needed, leakage of cold air can be reduced, and the refrigerator is more energy-saving.
The refrigerator also comprises an inner container 3, the inner container 3 is arranged in the box body 1, a foaming material is filled between the inner container 3 and the box body 1, and the foaming material can reduce the efficiency of the cold energy inside the inner container 3 diffusing to the outside so as to ensure that the refrigerator is more heat-insulating.
Referring to fig. 1 to 8, the refrigerator according to the present application includes a cabinet 1 and a door 2 rotatably coupled to a front side of the cabinet 1, and the door 2 and the cabinet 1 define a storage space 11.
The refrigerator further comprises a drawer 6 and a connecting rail 112. The left side wall and the right side wall of the inner container 3 are provided with mounting seats 31, the mounting seats 31 are connected with the connecting rails 112, and the connecting rails 112 are connected to the left side wall or the right side wall of the inner container 3. The drawer 6 is connected to the connecting rail 112 by the first latch 61 and the reverse latch 62, so that the drawer 6 can be connected to the inner container 3.
The drawer 6 is connected in the storage space 11 for storing objects to be stored separately, so that it is possible to reduce smell mutual communication between the objects in the drawer 6 and the objects in the external storage space 11, and when the drawer 6 is pushed to the rearmost side of the storage space 11, there is a closed space in the drawer 6 for storing the objects.
The drawer 6 comprises at least two buckle groups connected to the left side and the right side of the drawer, the two buckle groups are respectively connected to the left side of the drawer 6 and the left side of the drawer 6, and the buckle groups are connected to the connecting rail 112. The two connecting rails 112 are respectively disposed on the left side wall and the right side wall of the inner container 3, and the single fastening set is connected to the nearest connecting rail 112, so that the drawer 6 can be drawn through the connecting rails 112. The two buckle sets are connected with the two connecting rails 112, so that the left side and the right side of the drawer 6 are balanced in stress, and the drawer 6 is more stable to pull.
The clip set includes a first clip 61 and a second clip. The first buckle 61 includes a first protruding portion 611 extending in a direction away from the center of the drawer 6, and the first protruding portion 611 is disposed at a middle position of the first buckle 61, so that the first buckle 61 can be stressed more uniformly when the first protruding portion 611 is limited by the first opening 1121.
The flip-over clip 62 is disposed at the rear side of the first clip 61, and the flip-over clip 62 includes a curved cantilever 621. The curved cantilever 621 is connected in the second opening 1122, can rotate relative to the second opening 1122, and can move upward along with the drawer 6 to disengage from the second opening 1122.
The connection rail 112 is connected to the left and right side walls of the storage space 11, the connection rail 112 includes a first opening 1121 and a second opening 1122, the first opening 1121 is used to limit the first catch 61, the second opening 1122 is used to limit the flip catch 62, and the curved cantilever 621 is connected in the second opening 1122 when the drawer 6 is not detached from the connection rail 112.
The drawer 6 has two states, namely a sliding state and a turning state, in this embodiment, when the drawer 6 is in the turning state, the user can further detach the drawer 6 from the connecting rail 112, and can move the drawer 6 upwards to drive the turning buckle 62 to detach from the second opening 1122, so as to take out the drawer 6, thereby facilitating the user to take out the articles in the drawer 6.
When the drawer 6 is in a sliding state, the first buckle 61 is connected in the first opening 1121, the first protrusion 611 is limited in the first opening 1121, the upper end of the first protrusion 611 is clamped in the first opening 1121, so that the first buckle 61 is clamped with the first opening 1121, the drawer 6 cannot rotate relative to the connecting rail 112, the drawer 6 and the connecting rail 112 are kept in a fixed connection state, and a user pulls the drawer 6 to enable the drawer 6 to slide relative to the connecting rail 112, so that the drawer 6 slides relative to the inner container 3 in the front-back direction.
When the drawer 6 is in the turned state, a user presses the first protrusion 611, so that the first protrusion 611 moves toward a direction close to the center of the drawer 6, the first protrusion 611 pops out of the first opening 1121, the first opening 1121 is not engaged with the first catch 61, so as to release the position limitation of the first opening 1121 on the first catch 61, and the first catch 61 and the first opening 1121 are not in a fixed connection state, so that the drawer 6 and the connection rail 112 are not in a fixed connection state. When the user turns the drawer 6 upward or downward, the curved cantilever 621 rotates within the second opening 1122, so that the drawer 6 rotates about the contact point between the curved cantilever 621 and the second opening 1122, so that the drawer 6 can rotate within the storage space 11. The user can directly make the space in the drawer 6 exposed in the visual field of the user to a greater extent through the rotation of the drawer 6, and the user can conveniently take out the articles in the drawer 6 in the overturning state.
In some embodiments of the present application, the curved cantilever 621 includes a first curved edge 6211 adjacent to the first catch 61 and a second curved edge 6212 away from the first catch 61, and when the drawer 6 is in the flipped state, the first curved edge 6211 and/or the second curved edge 6212 makes a point contact with the second opening 1122 to rotate the curved cantilever 621 about the contact point. The length of the curved cantilever 621 in the front-rear direction is not greater than the length of the second opening 1122 in the front-rear direction, so that a gap exists between the front and rear sides of the curved cantilever 621 and the second opening 1122, enabling the curved cantilever 621 to rotate at the second opening 1122, and enabling the drawer 6 to be inverted.
In some embodiments of the present application, the connection track 112 includes a first track 1123, a second track 1124, and a third track 1125. The second rail 1124 is connected between the first rail 1123 and the third rail 1125.
A first rail 1123 connected to the left and right sides of the drawer 6, connected to the second rail 1124 on the side near the drawer 6, and slidable with respect to the second rail 1124; a second rail 1124, the second rail 1124 is connected to a side of the third rail 1125 near the drawer 6, and the second rail 1124 can slide relative to the third rail 1125; the third rail 1125, the third rail 1125 connects left and/or right side walls of the storage space 11.
When the drawer 6 is pushed inward, the first rail 1123 moves to the side of the second rail 1124 near the drawer 6 and overlaps the second rail 1124, and the second rail 1124 moves to the side of the third rail 1125 near the drawer 6 and overlaps the third rail 1125, so that the length of the entire connecting rail 112 in the front-rear direction is shortened. When the drawer 6 is pulled toward the outside of the refrigerator, the rear end of the first rail 1123 is connected to the second rail 1124, the first rail 1123 is outwardly moved from one end of the second rail 1124 adjacent to the drawer 6, the rear end of the second rail 1124 is connected to the third rail 1125, and the second rail 1124 is outwardly moved from one end of the third rail 1125 adjacent to the drawer 6, so that the length of the entire connecting rail 112 in the front-rear direction is extended. Due to the telescopic length of the connecting rail 112, the drawer 6 slides out of the storage space 11 at different distances when sliding.
In some embodiments of the present application, the first track 1123 is provided with a first opening 1121 and a second opening 1122, the first track 1123 further comprises a first annular limiting plate 1126 and a first side opening 1127, and the first opening 1121 is formed between the first annular limiting plate and the first side opening 1127; the first track 1123 further comprises a second annular retainer plate 1128 and a second side opening 1129, a second opening 1122 being formed between the second annular retainer plate 1128 and the second side opening 1129.
Note that the first side opening 1127 and the second side opening 1129 are through openings of the first rail 1123 in the left-right direction. When the drawer 6 is in the sliding state, the upper side edge of the first side opening 1127 is engaged with the first protrusion 611, and the first protrusion 611 is limited in the first side opening 1127, so that the first buckle 61 is fixedly connected with the first opening 1121, and the drawer 6 can slide in the storage space 11 under the action of the connecting rail 112.
In some embodiments of the present application, the first buckle 61 includes a plurality of rib plates extending downward, and the first protrusion 611 is disposed on the rib plates, in this embodiment, the first buckle 61 has three rib plates, and the first protrusion 611 is disposed at the middle rib plate, so that when the first protrusion 611 is buckled with the first side opening 1127, the first buckle 61 is stressed in a balanced manner.
When the drawer 6 is in a sliding state, the bar-shaped rib plate is inserted into the first opening 1121; when the drawer 6 is in the turning state, the rib bars move upward along with the drawer 6 to move out of the first openings 1121, so that the first openings 1121 do not limit the rib bars in the left-right direction, and the drawer 6 can be freely turned.
In some embodiments of the present application, the first annular limiting plate 1126 has two ends connected to the first opening 1121 and protrudes toward the drawer 6; the two ends of the second annular limiting plate 1128 are connected to the second opening 1122 and protrude toward the drawer 6, so that the first opening 1121 is located at one side of the first side opening 1127 close to the drawer 6, so that the second opening 1122 is located at one side of the first side opening 1127 close to the drawer 6, which facilitates the connection between the first opening 1121 and also facilitates the connection between the flip buckle 62 and the second opening 1122.
In some embodiments of the present application, the flip latch 62 includes a blocking plate 622, the blocking plate 622 is connected to the upper end of the first arc-shaped side 6211 and the upper end of the second arc-shaped side 6212, and the length of the blocking plate 622 in the front-back direction is greater than the length of the second opening 1122 in the front-back direction, so as to avoid the situation that the drawer 6 cannot be flipped due to the flip latch 62 being completely latched in the second opening 1122, and avoid the flip latch 62 being completely sunk into the second opening 1122, so that the flip latch 62 can rotate in the second opening 1122.
In some embodiments of the present application, the drawer 6 includes a receiving portion 64 and a front side plate 63 connected to a front side of the receiving portion 64, an upper portion of the receiving portion 64 is provided with a protruding surface 641 protruding to an outside of the drawer 6, a first tab 61 and a second tab are respectively connected to a lower end of the protruding surface 641, and a gap exists between a lower end portion of the first tab 61 and a lower end portion of the flip tab 62 and a left/right side surface of the drawer 6 to facilitate connection of the first tab 61 and the flip tab 62 into the first opening 1121 and the second opening 1122.
In some embodiments of the present application, the drawer 6 is provided with a hollow vent hole 65 below the connecting rail 112, and when the drawer 6 slides to the innermost side of the storage space 11, the rail connecting portion does not block the vent hole 65, so that the space inside the drawer 6 can communicate with the external storage space 11.
In some embodiments of the present application, the refrigerator includes a first partition plate 41 and a second partition plate 42 arranged in parallel, a temperature varying region 111 is disposed between the first partition plate 41 and the second partition plate 42, the drawer 6 is disposed in the temperature varying region 111, and the temperature varying region 111 can provide a varying temperature for the drawer 6 and can be maintained at a higher temperature, so that the articles in the drawer 6 can be stored at a set temperature.
Referring to fig. 9 to 15, the refrigerator according to the present application includes a refrigerator body 1 and a door body 2, wherein a storage space 11 is provided in the refrigerator body 1; the door body 2 is rotatably connected with the box body 1.
The refrigerator also comprises an inner container 3, the inner container 3 is arranged in the box body 1, a foaming layer 7 is filled between the inner container 3 and the box body 1, and the inner container 3 is provided with a mounting seat 31 protruding towards the inside of the box body 1. The mount 31 is connected to a connecting rail 112, and the connecting rail 112 is connected to the drawer 6 so that the drawer 6 can slide in the front-rear direction with respect to the inner container 3.
The refrigerator also comprises an air duct 5, the air which absorbs heat through the evaporator is blown out from the air duct 5 into the storage space 11, and the air with higher relative temperature after heat exchange with the articles in the storage space 11 flows to the evaporator through the air duct 5. The air duct 5 is connected to a rear side wall of the storage space 11 and is used for supplying air to the temperature control area such as the temperature change area 111. The air duct 5 extends in the up-down direction, and has a front side surface of the air duct 5 extending in the up-down direction.
The temperature-changing area 111 is defined by a first partition plate 41 located on the upper side of the temperature-changing area 111, a second partition plate 42 located on the lower side of the temperature-changing area 111, the mounting seats 31 located on the left side and the right side of the temperature-changing area 111, and the air duct 5 located on the rear side of the temperature-changing area 111, the lower side of the temperature-changing area 111 is a freezing area, the upper side of the temperature-changing area 111 is a refrigerating area, and the temperature-changing area 111 can provide a space for temperature change so as to meet the requirement of storage of articles for temperature change. A heating wire is provided in the first partition plate 41 or the second partition plate 42, and a user can raise the temperature of the variable temperature zone 111 by the heating wire, so that different temperatures are maintained between the variable temperature zone 111 and the freezing zone and the refrigerating zone. When the temperature of the variable temperature zone 111 needs to be lowered, the volume of the cool air blown into the variable temperature zone 111 from the air duct 5 can be increased. The temperature of the variable temperature section 111 can be maintained in a largely different state from the freezing section and the refrigerating section to satisfy various demands of people for the storage temperature of the refrigerator.
The first partition board 41 is connected to the storage space 11, the first partition board 41 includes a first engaging portion 411 located at a corner of a front end thereof, a first limiting groove 311 is disposed at a front end of a top portion of the mounting base 31, and the first engaging portion 411 is connected to the first limiting groove 311. The first limiting groove 311 is open upward, and the first engaging portion 411 is engaged with the first limiting groove 311, so that the front end of the first partition 41 is connected to the inner container 3.
The first partition plate 41 further includes a second limiting groove 412 located at the rear end thereof, the air duct 5 is provided with a second clamping portion 51 extending toward the front side, and the second clamping portion 51 is connected in the second limiting groove 412, so that the rear end portion of the first partition plate 41 is fixed. The front end and the rear end of the first partition plate 41 are fixedly connected with the inner container 3, so that the first partition plate 41 is stressed uniformly, the rear end of the first partition plate 41 is prevented from being separated from the air duct 5, and the rear end of the first partition plate 41 is prevented from being tilted upwards to deform.
The second partition plate 42 is provided under the first partition plate 41 and connected to the storage space 11, the second partition plate 42 extends in a horizontal direction, the drawer 6 is provided above the second partition plate 42, and the second partition plate 42 can provide an upward supporting force to the drawer 6 when the drawer 6 is separated from the connection rail 112. The inner container 3 is attached to the outer contour of the second partition plate 42 to block the flow of cold air between the temperature-variable region 111 and the lower region of the second partition plate 42.
The second partition plate 42 is integrally foamed with the box body 1, the foaming material is filled between the box body 1 and the inner container 3, and the foaming material presses the inner container 3 in the foaming process to fit the outer contours of the inner container 3 and the second partition plate 42, so that the gap between the second partition plate 42 and the inner container 3 is reduced, the probability that the cold air in the freezing zone flows into the temperature change zone 111 through the gap between the second partition plate 42 and the inner container 3 is reduced, and the temperature of the temperature change zone 111 is maintained at a set temperature.
In some embodiments of the present application, the first partition plate 41 further includes a sealing strip 413, the sealing strip 413 has two layers arranged up and down, the two layers of sealing strips 413 are respectively connected to the rear side, the left side and the right side of the first partition plate 41, and when the first partition plate 41 is installed in the storage space 11, the sealing strip 413 is sandwiched between the air duct 5 and the first partition plate 41 and between the storage space 11 and the first partition plate 41. The sealing strips 413 can fill the gaps between the first partition plate 41 and the inner container 3 and between the first partition plate 41 and the air duct 5 to reduce the flowing amount of the air flow between the first partition plate 41 and the inner container 3 and between the first partition plate 41 and the air duct 5, and the sealing strips 413 have the function of heat preservation, so that the temperature of the variable temperature zone 111 can be separated from the temperature of the cold storage zone at the upper part of the variable temperature zone 111, and the temperature of the variable temperature zone 111 can be accurately controlled.
In some embodiments of the present application, the foaming layer 7 is filled between the box body 1 and the inner container 3, and the foaming layer 7 provides the inner container 3 with a pressing force toward the inside of the storage space 11, so that the inner container 3 is pressed to closely adhere to the outer contour of the second partition plate 42.
It should be noted that the second partition plate 42 is first foamed alone, so that the second partition plate 42 is filled with the foaming material, and the second partition plate 42 has a heat preservation function. And then the second partition plate 42 and the box body 1 are foamed integrally, and in the foaming process, the inner container 3 is deformed by extrusion force caused by expansion of the foaming material so as to be tightly attached to the contours of the left side, the right side and the rear side of the second partition plate 42, so that a gap between the second partition plate 42 and the inner container 3 is reduced.
In some embodiments of the present application, there are two first clamping portions 411, and the two first clamping portions 411 are symmetrically disposed; the first limiting grooves 311 are at least two, the two first limiting grooves 311 are symmetrically arranged, and the position of the first clamping portion 411 is matched with the position of the first limiting groove 311, so that the two sides of the front end of the first partition plate 41 are supported by the supporting force of the first limiting groove 311, the stress of the front end portion of the first partition plate 41 is balanced, and stable connection between the first partition plate 41 and the inner container 3 is maintained.
In some embodiments of the present application, there are at least two second limiting grooves 412, and the two second limiting grooves 412 are symmetrically disposed; the number of the second clamping portions 51 is at least two, the two second clamping portions 51 are symmetrically arranged, and the positions of the second clamping portions 51 are matched with the positions of the second limiting grooves 412. The second engaging portion 51 receives the upward supporting force provided by the second limiting groove 412, so that the rear end of the first partition plate 41 can be balanced in stress, and the probability of breakage of the second engaging portion 51 due to unbalanced stress is reduced.
In some embodiments of the present application, the refrigerator further includes a fixing assembly 8 for connecting the inner container 3 and the first partition plate 41, and the fixing assembly 8 includes an insertion part 81 and a blocking part 82. The insertion portion 81 simultaneously penetrates through the first partition plate 41 and the first limiting groove 311, so that the first partition plate 41 and the first limiting groove 311 are fixedly connected. A hole is formed in the first limiting groove 311, the inserting portion 81 penetrates through the hole, the first clamping portion 411 comprises an arc-shaped side edge facing the inside of the refrigerator, and the inserting portion 81 is inserted in the rear side of the arc-shaped side edge.
The blocking portion 82 is arranged between the inner container 3 and the box body 1, the fixing assemblies 8 are symmetrically arranged, the two fixing assemblies 8 are used for fixing the left end and the right end of the front end portion of the first partition plate 41 together, and the blocking portion 82 is used for positioning the fixing assemblies 8, so that the fixing assemblies 8 are not separated from the inner container 3, and the fixing assemblies 8 are prevented from falling into the storage space 11.
In some embodiments of the present application, the refrigerator further includes a drawer 6, and the drawer 6 is disposed at the variable temperature region 111. The drawer 6 is provided with a first buckle 61 and a turnover buckle 62 on the left side and the right side, a connecting rail 112 is arranged on the storage space 11, the first buckle 61 and the turnover buckle 62 are connected with the connecting rail 112, and the drawer 6 has two states of sliding and turnover.
In some embodiments of the present application, the drawer 6 includes a front side plate 63 and a receiving portion 64 connected to a rear side of the front side plate 63, the front side plate 63 includes an aluminum alloy connecting bar 664, and the aluminum alloy connecting bar 664 is connected to an upper end of the front side plate 63. The user can hold the aluminum alloy connecting strip 664 of the front side plate 63 to move the drawer 6, no additional door handle is needed, the number of parts is reduced, and the aluminum alloy connecting strip 664 has certain aesthetic property.
In some embodiments of the present application, the shape and size of the aluminum alloy connecting strip 664 match the shape and size of the front end of the first partition plate 41, so that when the drawer 6 moves into the temperature changing zone 111, the aluminum alloy decorative strip and the first partition plate 41 are attached to each other, thereby reducing the overflow of cold air and enabling the temperature changing zone 111 to maintain precise temperature control.
In some embodiments of the present application, the sealing strip 413 is made of rubber, the sealing strip 413 has flexibility, the cost of the sealing strip 413 made of rubber is low, and the rubber has good sealing effect and elasticity, and can fill the gap between the first partition plate 41 and the inner container 3 and the gap between the first partition plate 41 and the air duct 5.
Referring to fig. 16 to 26, a refrigerator 100 according to the present application includes a cabinet 1, a storage space 11 in the cabinet 1 for storing articles, the cabinet 1 being formed with an opening of the cabinet 1 at a front side thereof, and a user can access the articles through the opening of the cabinet 1.
The refrigerator 100 further includes a door 2, and the door 2 is rotatably connected to the cabinet 1 to open or close the storage space 11. At least one side edge of the door body 2 is connected with the side edge of the opening of the box body 1 through a hinge, so that the door body 2 can open or close the opening of the box body 1. The size of the door body 2 is matched with the opening.
In the storage space 11 was located to drawer 6, the user can deposit article through drawer 6 to prevent that the smell outside drawer 6 and the gas in the drawer 6 from bunching each other, and drawer 6 can conveniently drag to the outside of storage space 11, and convenience of customers accesses article in drawer 6.
The drawer 6 includes a front side plate 63 and an accommodating portion 64 connected to a rear side of the front side plate 63. The front plate 63 is located at the front of the drawer 6 to block the interior of the drawer 6 from the external space. The front plate 63 has a plate-like structure extending in the vertical direction, and the front plate 63 is rectangular when viewed from the front side so that the front plate 63 fits into an opening of a storage area where the drawer 6 is located, and the drawer 6 can be moved until the drawer 6 is closed, thereby blocking the flow of air from entering the drawer 6 from the front of the drawer 6.
The front side plate 63 includes a front end plate 631 and a projecting portion 632 connected to a rear side of the front end plate 631 and projecting upward. The front end plate 631 is a rectangular plate extending in the up-down direction, the protruding portion 632 is connected to the rear side of the upper portion of the front end plate 631, and the top end of the protruding portion 632 gradually rises in the front-to-rear direction, but the highest point of the top end of the protruding portion 632 is lower than the highest point of the front side plate 63, so that a certain gap is formed between the top end of the protruding portion 632 and the top end of the front end plate 631, and the installation of the connecting strip 66 at the top of the protruding portion 632 is facilitated.
The accommodating part 64 is fixedly connected to the rear side of the front side plate 63, so that the movement of the front side plate 63 can drive the accommodating part 64 to move, and the accommodating part 64 is used for accommodating articles. The accommodating portion 64 includes a lower side wall, a left side wall connected to the left end of the lower side wall, a right side wall connected to the right end of the lower side wall, and a rear side wall connected to the rear end of the lower side wall, and a space for storing articles is defined between the lower side wall, the left side wall, the right side wall, and the rear side wall.
The connection bar 66 is fixedly connected to the upper end of the protrusion portion 632, the shape of the protrusion portion 632 matches with the shape of the connection bar 66, the front side surface of the protrusion portion 632 is inclined rearward, and in this embodiment, the protrusion portion 632 is substantially triangular prism-shaped extending upward, so that the connection bar 66 is conveniently mounted on the upper end of the protrusion portion 632. The installer can move the connecting bar 66 from top to bottom to mount it to the upper end of the protrusion 632, facilitating the mounting of the mounting bar.
The connecting bar 66 includes a first inclined plane 661, a lower end of the first inclined plane 661 is closer to the front end plate 631 than an upper end thereof, that is, an upper end of the first inclined plane 6323 is inclined backward than a lower end of the first inclined plane 6323, and an angle formed between an upper side surface of the first inclined plane 661 and a rear side surface of the front end plate 631 is an acute angle, which is convenient for a user to hold the connecting bar 66.
A first gap 67 is formed between the first inclined surface 6323 and the upper portion of the front end plate 631 located right in front of the first inclined surface 6323, the first gap 67 has a substantially triangular prism shape, and the first gap 67 can provide a space for a user to hold the connection bar 66 so that the user can easily hold the connection bar 66 to move the front side plate 63.
The user's hand is inserted into the first gap 67, and the connecting bar 66 is held to move the front plate 63, so as to move the accommodating portion 64, thereby moving the drawer 6 in the storage space 11.
It should be noted that, there is a certain clearance between the front side plate 63 of the drawer 6 and the partition plate located above the drawer 6, and the user can insert the hand into the first clearance 67 to hold the connecting strip 66, because the connecting strip 66 is fixedly connected with the front side plate 63, when the user applies pulling force or pushing force to the connecting strip 66, the connecting strip 66 can transmit the received pulling force or pushing force to the front side plate 63, so that the front side plate 63 can be subjected to the pulling force or the enemy to generate displacement, because of the fixed connection between the accommodating part 64 and the front side plate 63, the movement of the front side plate 63 can drive the movement of the accommodating part 64, so that the accommodating part 64 is pulled out of the storage space 11 to facilitate the user to take out articles, or the accommodating part 64 is pushed into the storage space 11 to store articles. Compare the technical scheme who is equipped with the handle at the leading flank of drawer 6 among the prior art, this application need not additionally increase the handle, the manufacturing cost of handle has been reduced, and make the leading flank of drawer 6 more pleasing to the eye, simultaneously because connecting strip 66 has certain intensity, can reduce the probability that the upper end of preceding curb plate 63 warp, make the intensity of the upper end of preceding curb plate 63 increase, prevent drawer 6 because the deformation of preceding curb plate 63 leads to the condition that the air conditioning in drawer 6 leaks in long-time use, the seal of drawer 6 has been increased.
In some embodiments of the present application, the connection bar 66 further includes a first connection plate 662 connected to a lower end of the first bevel plate 661 and a second connection plate 663 connected to an upper end of the first bevel 6323. Referring to fig. 20 and 24, an upper end of the first slope 6323 is a rear end of the first slope 6323, and a lower end of the first slope 6323 is a front end of the first slope 6323.
The first connecting plate 662 is connected to the front end of the first inclined plate 661 and extends downward, and a first connecting plate fastening portion 6621411 is disposed at the lower end of the first connecting plate 662. The second connecting plate 663 is connected with the rear end of the first inclined plate 661 and extends downward, and a second connecting plate clamping portion 6631 is arranged at the lower end of the second connecting plate 663. The protruding portion 632 is provided with a first clamping groove 6321 on the front side surface thereof and a second clamping groove 6322 on the rear side surface thereof, the first clamping groove 6321 is connected with the first connecting plate clamping portion 6621411 in a matching manner, and the second clamping groove 6322 is connected with the second connecting plate clamping portion 6631 in a matching manner.
It should be noted that, since the first connecting plate fastening portion 6621411 of the first connecting plate 662 is connected to the first fastening groove 6321, and the second connecting plate fastening portion 6631 of the second connecting plate 663 is connected to the second fastening groove 6322, both front and rear ends of the connecting strip 66 are fastened to the protruding portion 632, so that the connection between the connecting strip 66 and the protruding portion 632 is more stable. When a user holds the connecting strip 66, the connecting strip 66 is clamped with the protruding portion 632, pushing force or pulling force given by the hand of the user can be transmitted to the protruding portion 632, the protruding portion 632 drives the front end plate 631 to move, the front end plate 631 drives the accommodating portion 64 to move, so that the drawer 6 can move in the storage space 11, and the user can take out the drawer 6 to take out articles conveniently.
In some embodiments, the lug 632 and the front end plate 631 are integrally formed, making the connection between the lug 632 and the front end plate 631 more secure. In other embodiments, the protrusion 632 and the front end plate 631 may be fixed by a screw or a snap.
In some embodiments of the present application, the first connecting plate fastening portion 6621411 and the second connecting plate fastening portion 6631 extend toward the inside of the connecting strip 66, the opening direction of the first fastening groove 6321 faces forward, and the opening direction of the second fastening groove 6322 faces backward, so that the front and rear ends of the connecting strip 66 are respectively fastened to the protruding portion 632 to reinforce the strength of the upper end of the front side plate 63.
First connecting plate joint portion 6621411 is provided on the rear side surface of first connecting plate 662, and second connecting plate joint portion 6631 is provided on the front side surface of second connecting plate 663 to make the front side surface and the rear side surface of connecting strip 66 all keep smooth, so that connecting strip 66 is more beautiful, and the front side surface and the rear side surface of user contact connecting strip 66 can be prevented from being scratched by first connecting plate joint portion 6621411 or second connecting plate joint portion 6631.
In some embodiments of the present application, the protruding portion 632 is connected to an upper position of the front plate 631, and the protruding portion 632 has a first inclined surface 6323 having the same inclination as that of the first inclined surface 661, and the first inclined surface 661 is connected above the first inclined surface 6323 to increase a contact area between the first inclined surface 6323 and an underside surface of the first inclined surface 661, so that the connection between the protruding portion 632 and the first inclined surface 661 is more stable. When the contact area between the protruding portion 632 and the first inclined plane plate 661 is large, when the user holds the first inclined plane plate 661 of the connecting bar 66, the first inclined plane plate 661 can stably transmit the received force to the first inclined plane 6323 of the protruding portion 632, reducing the probability of separation between the protruding portion 632 and the connecting bar 66.
In some embodiments of the present application, the refrigerator 100 further includes an inner container 3, the inner container 3 is disposed inside the box 1, a foaming layer 7 is filled between the inner container 3 and the box 1, the inner container 3 includes a fixing portion 32 protruding toward the inside of the inner container 3, the fixing portion 32 is located on the left side wall and/or the right side wall of the inner container 3, and the fixing portion 32 is correspondingly disposed on the left side and/or the right side of the drawer 6, so as to reduce a gap between the left side surface and/or the right side surface of the drawer 6 and the inner container 3, and reduce leakage of cold air.
Specifically, the fixing portion 32 includes a protruding surface 641 protruding toward the inside of the inner bag 3. In the present embodiment, the inner container 3 includes at least two fixing portions 32, and the two fixing portions 32 are symmetrically disposed on the left and right side walls of the inner container 3. When the drawer 6 is pushed to the rearmost side of the storage space 11 and in the closed state, the two fixing portions 32 are respectively and correspondingly disposed between the left and right side surfaces of the drawer 6, so that a gap between the drawer 6 and the inner container 3 is reduced, leakage of cold air between the inner container 3 and the gap of the drawer 6 is reduced, and it is also convenient to provide the connection rail 112 between the fixing portions 32 and the drawer 6.
In some embodiments of the present application, the refrigerator 100 further includes a fixing base 33 and a connection rail 112.
Fixing base 33 passes through the buckle to be connected on fixed part 32, is equipped with a plurality of strengthening ribs on the fixing base 33, and the strengthening rib can strengthen fixing base 33's intensity to make it avoid taking place to break in long-term the use.
The connecting rail 112 is connected to the connecting rail 112 between the drawer 6 and the fixing base 33, and the connecting rail 112 and the fixing base 33 are connected by a screw. The connecting rail 112 can be contracted or extended, the connecting rail 112 provides upward supporting force for the drawer 6, the fixing seat 33 provides upward supporting force for the connecting rail 112, and the reinforcing rib can avoid the situation that the fixing seat 33 is broken or damaged due to excessive stress.
In some embodiments of the present application, the connecting rails 112 have at least two, and the two connecting rails 112 are respectively connected to the left side and the right side of the drawer 6, so that the drawer 6 can receive the upward symmetrical supporting force given by the two connecting rails 112, and the connection between the drawer 6 and the inner container 3 is more stable.
The connection rail 112 includes a third rail 1125, a second rail 1124, and a first rail 1123. The third rail 1125 is connected to a left sidewall and/or a right sidewall of the storage space 11. The second rail 1124 is connected to a side of the third rail 1125 near the drawer 6, and the second rail 1124 is slidable with respect to the third rail 1125. The first rail 1123 is connected to left and right sides of the drawer 6, is connected to a side of the second rail 1124 adjacent to the drawer 6, and is slidable with respect to the second rail 1124.
When the drawer 6 is pushed inward, the first rail 1123 moves to the side of the second rail 1124 near the drawer 6 and overlaps the second rail 1124, and the second rail 1124 moves to the side of the third rail 1125 near the drawer 6 and overlaps the third rail 1125, so that the length of the entire connecting rail 112 in the front-rear direction is shortened. When the drawer 6 is pulled toward the outside of the refrigerator, the rear end of the first rail 1123 is connected to the second rail 1124, the first rail 1123 is outwardly moved from one end of the second rail 1124 adjacent to the drawer 6, the rear end of the second rail 1124 is connected to the third rail 1125, and the second rail 1124 is outwardly moved from one end of the third rail 1125 adjacent to the drawer 6, so that the length of the entire connecting rail 112 in the front-rear direction is extended. Due to the telescopic length of the connecting rail 112, the drawer 6 slides out of the storage space 11 at different distances when sliding.
In some embodiments of the present application, the drawer 6 includes snap sets attached to the left and right sides thereof, the snap sets including a first snap 61 and a flip-over snap 62,
the first catch 61 includes a first protrusion 611 extending in a direction away from the center of the drawer 6, the flip catch 62 is provided at the rear side of the first catch 61, and the flip catch 62 includes a curved cantilever 621.
And a connection rail 112 connected to the left and right sidewalls of the storage space 11, the connection rail 112 including a first opening 1121 and a second opening 1122 arranged in the front-rear direction, the first catch 61 being connected in the first opening 1121, and the curved cantilever 621 being connected in the second opening 1122.
Specifically, the clip set includes a first clip 61 and a flip clip 62. The first buckle 61 includes a first protrusion 611 extending in a direction away from the center of the drawer 6, and the first protrusion 611 is disposed at a middle position of the first buckle 61, so that the first buckle 61 can be stressed more uniformly when the first protrusion 611 is limited by the first opening 1121.
The flip-over clip 62 is disposed at the rear side of the first clip 61, and the flip-over clip 62 includes a curved cantilever 621. The curved cantilever 621 is connected to the second opening 1122, and can rotate relative to the second opening 1122 or move upward with the drawer 6 to disengage the second opening 1122.
The connecting rail 112 is connected to the left and right side walls of the storage space 11, the connecting rail 112 includes a first opening 1121 and a second opening 1122, the first opening 1121 is used for limiting the first latch 61, the second opening 1122 is used for limiting the flip latch 62, and when the drawer 6 is not separated from the connecting rail 112, the curved cantilever 621 is connected in the second opening 1122.
The drawer 6 has two states, namely a sliding state and a turning state, in this embodiment, when the drawer 6 is in the turning state, the user can further detach the drawer 6 from the connecting rail 112, and can move the drawer 6 upwards to drive the turning buckle 62 to detach from the second opening 1122, so as to take out the drawer 6, thereby facilitating the user to take out the articles in the drawer 6.
When the drawer 6 is in a sliding state, the first buckle 61 is connected in the first opening 1121, the first protrusion 611 is limited in the first opening 1121, an upper end of the first protrusion 611 is clamped in the first opening 1121, so that the first buckle 61 is clamped in the first opening 1121, so that the drawer 6 cannot rotate relative to the connecting rail 112, the drawer 6 and the connecting rail 112 are kept in a fixed connection state, and a user pulls the drawer 6 to enable the drawer 6 to slide relative to the connecting rail 112, so that the drawer 6 slides in the front-back direction relative to the inner container 3.
When the drawer 6 is in the turned state, a user presses the first protrusion 611, so that the first protrusion 611 moves toward a direction close to the center of the drawer 6, the first protrusion 611 pops out of the first opening 1121, the first opening 1121 is not engaged with the first catch 61, so as to release the position limitation of the first opening 1121 on the first catch 61, and the first catch 61 and the first opening 1121 are not in a fixed connection state, so that the drawer 6 and the connection rail 112 are not in a fixed connection state. When the user turns the drawer 6 upward or downward, the curved cantilever 621 rotates in the second opening 1122, so that the drawer 6 rotates about the contact point between the curved cantilever 621 and the second opening 1122 as a fulcrum, so that the drawer 6 can rotate in the storage space 11. The user can directly make the space in the drawer 6 exposed in the visual field of the user to a greater extent through the rotation of the drawer 6, and the user can conveniently take out the articles in the drawer 6 in the overturning state.
In some embodiments of the present application, the refrigerator 100 includes a drawer molding 68 attached to an upper end of the front end plate 631, the drawer molding 68 including two layers of extension plates 681 extending in an up-down direction, and a connection plate 682 attached to an upper end of the two layers of extension plates 681, the two layers of extension plates 681 being respectively engaged to a front side and a rear side of an upper end of the front end plate 631, such that the drawer molding 68 covers the upper end of the front end plate 631, the strength of the front end plate 631 is increased, and the probability of cold air inside the drawer 6 due to deformation of the front end plate 631 during long-term use of the drawer 6 is reduced.
In some embodiments of the present application, connecting strip 66 is aluminum alloy connecting strip 664, and aluminum alloy connecting strip 664 is more aesthetically pleasing, and when a user holds aluminum alloy connecting strip 664, the aluminum alloy can give the user a better grip. Compare among the prior art, at the technical scheme of the front side connection handle of the preceding curb plate 63 of drawer 6, the effect of handle is replaced to this application use aluminum alloy connecting strip 664, does not need additionally to set up the part of handle, has reduced refrigerator 100's manufacturing cost.
The above description is only for the specific embodiments of the present invention, but the protection scope of the present invention is not limited thereto, and any person skilled in the art can easily think of the changes or substitutions within the technical scope of the present invention, and all should be covered within the protection scope of the present invention. Therefore, the protection scope of the present invention shall be subject to the protection scope of the claims.

Claims (10)

1. A refrigerator, characterized by comprising:
a case in which a storage space is provided;
the door body is rotationally connected with the box body;
the inner container is arranged in the box body, and a mounting seat protruding towards the interior of the box body is arranged on the inner container;
an air duct connected to a rear sidewall of the storage space;
the temperature-changing area is formed by a first partition plate, a second partition plate, the mounting seat and the air duct together, and the air duct supplies air to the temperature-changing area;
the first partition board is connected with the storage space and comprises a first clamping part positioned at the corner of the front end part of the first partition board, a first limiting groove is formed in the front end of the top of the mounting seat, and the first clamping part is connected in the first limiting groove; the first partition plate further comprises a second limiting groove positioned at the rear end of the first partition plate, the air duct is provided with a second clamping portion extending towards the front side, and the second clamping portion is connected in the second limiting groove so that the rear end portion of the first partition plate is fixed;
the second partition board is arranged on the lower side of the first partition board and connected with the storage space, and the inner container is attached to the outer contour of the second partition board so as to block the flow of cold air between the variable temperature area and the lower side area of the second partition board.
2. The refrigerator according to claim 1, wherein the first partition further comprises a sealing strip, the sealing strip has two layers arranged up and down, the two layers of the sealing strip are respectively connected to the rear side, the left side and the right side of the first partition, and when the first partition is installed in the storage space, the sealing strip is clamped between the air duct and the first partition and between the storage space and the first partition.
3. The refrigerator as claimed in claim 1, wherein a foaming layer is filled between the cabinet and the inner container, and the foaming layer provides the inner container with a pressing force toward the inside of the storage space, so that the inner container is pressed against the outer contour of the second partition plate.
4. The refrigerator according to claim 1, wherein the first engaging portions are provided in two numbers, and the two first engaging portions are symmetrically disposed; the first limiting grooves are at least two, the two first limiting grooves are symmetrically arranged, and the positions of the first clamping parts are matched with the positions of the first limiting grooves.
5. The refrigerator according to claim 1, wherein the second stopper groove has at least two, and the two second stopper grooves are symmetrically disposed; the second clamping parts are at least two and symmetrically arranged, and the positions of the second clamping parts are matched with the positions of the second limiting grooves.
6. The refrigerator of claim 1, further comprising a fixing assembly for connecting the inner container and the first partition, the fixing assembly comprising:
the inserting part penetrates through the first partition plate and the first limiting groove simultaneously;
the blocking part is arranged between the inner container and the box body;
the two fixing assemblies are symmetrically arranged and are used for fixing the left end and the right end of the front end of the first partition plate together.
7. The refrigerator of claim 1, further comprising a drawer disposed in the temperature-variable region; the drawer is provided with a first buckle and a turnover buckle on the left side face and the right side face of the drawer, a connecting rail is arranged on the storage space, and the first buckle and the turnover buckle are connected with the connecting rail.
8. The refrigerator as claimed in claim 7, wherein the drawer includes a front side plate and a receiving part connected to a rear side of the front side plate, the front side plate including an aluminum alloy connection bar connected to an upper end of the front side plate.
9. The refrigerator as claimed in claim 8, wherein the aluminum alloy connecting bar has a shape and size matched with those of the front end of the first partition plate, so that when the drawer is moved to the inside of the temperature-variable region, the aluminum alloy connecting bar and the first partition plate are attached to each other, thereby reducing the overflow of the cool air.
10. The refrigerator of claim 2, wherein the sealing strip is made of rubber and has flexibility.
CN202222795354.2U 2022-10-21 2022-10-21 Refrigerator Active CN218544959U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202222795354.2U CN218544959U (en) 2022-10-21 2022-10-21 Refrigerator

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202222795354.2U CN218544959U (en) 2022-10-21 2022-10-21 Refrigerator

Publications (1)

Publication Number Publication Date
CN218544959U true CN218544959U (en) 2023-02-28

Family

ID=85279523

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202222795354.2U Active CN218544959U (en) 2022-10-21 2022-10-21 Refrigerator

Country Status (1)

Country Link
CN (1) CN218544959U (en)

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