CN211372868U - Refrigerator and article placing device thereof - Google Patents

Refrigerator and article placing device thereof Download PDF

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Publication number
CN211372868U
CN211372868U CN201922148155.0U CN201922148155U CN211372868U CN 211372868 U CN211372868 U CN 211372868U CN 201922148155 U CN201922148155 U CN 201922148155U CN 211372868 U CN211372868 U CN 211372868U
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China
Prior art keywords
connecting parts
rack
flexible
length direction
refrigerator
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CN201922148155.0U
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Chinese (zh)
Inventor
陈鹏飞
陈忠峻
王朋朋
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Qingdao Haier Refrigerator Co Ltd
Haier Smart Home Co Ltd
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Qingdao Haier Refrigerator Co Ltd
Haier Smart Home Co Ltd
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Priority to CN201922148155.0U priority Critical patent/CN211372868U/en
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Abstract

The utility model provides a refrigerator and a storage device thereof. The article placing device comprises an article placing rack which is arranged in an article storing chamber of the refrigerator to bear articles to be stored; the flexible supporting body is positioned below the rack and comprises a flexible main body part and a plurality of connecting parts, the connecting parts are arranged at intervals along the length direction of the flexible main body part, and the mounting positions of the connecting parts are adjustably mounted on the rack, so that the section of the flexible main body part positioned between any two adjacent connecting parts is expanded into a plane shape by increasing the distance between the two connecting parts; or the section of the flexible body part between the two connecting parts is made to sag due to gravity deformation by reducing the distance between the two adjacent connecting parts so as to bear the stored objects. The utility model discloses be convenient for place bottle jar class storage thing in the box, and it is less to occupy space.

Description

Refrigerator and article placing device thereof
Technical Field
The utility model relates to a cold-stored refrigeration device especially relates to a refrigerator and put thing device thereof.
Background
When a user uses the refrigerator, a cylindrical storage such as a bottle or a can is generally placed upright in a bottle holder inside the door body. However, there is a risk of falling off during the process of opening the door because too many bottles or cans are placed on the inner side of the door body. Moreover, even if the bottle seat protection measures are careful, the user still opens the door with great care due to worry about falling of the article, and the user experience is not optimal.
Some prior art designs have corrugated metal support shelves within the storage compartment of the case to hold bottles in the concave corrugations. However, the metal support frame is wavy, occupies too large volume, and wastes the space of the box body when no bottle can be placed.
SUMMERY OF THE UTILITY MODEL
The utility model discloses an aim at overcome at least one defect that prior art exists, provide one kind and be convenient for place bottle jar class storage in the box, and take up less rest device in space and have its refrigerator.
The utility model discloses a further purpose realizes putting the optimization utilization of thing device self storage space.
The utility model discloses a further purpose makes connecting portion more in the same direction as smooth, laborsaving in the slip of spout, improves user experience.
In one aspect, the present invention provides a shelf device for a refrigerator, comprising:
the rack is arranged in the storage compartment of the refrigerator to bear stored objects; and
the flexible supporting body is positioned below the rack and comprises a flexible main body part and a plurality of connecting parts, the connecting parts are arranged at intervals along the length direction of the flexible main body part, and the mounting positions of the connecting parts are adjustably mounted on the rack;
so that the section of the flexible body part between the two connecting parts is expanded into a plane shape by enlarging the distance between any two adjacent connecting parts; or the section of the flexible body part between the two connecting parts is made to sag due to gravity deformation by reducing the distance between the two adjacent connecting parts so as to bear the stored objects.
Optionally, each connecting portion is a rod shape extending in a width direction of the flexible body portion; two sliding grooves which extend along the length direction parallel to the flexible main body part and have opposite openings are formed on the rack; both ends of each connecting part can be arranged in the sliding groove in a sliding way along the length direction of the sliding groove.
Optionally, both ends of each connecting part are respectively provided with a spherical head, and the diameter of each spherical head is larger than the distance between the top wall and the bottom wall of the sliding chute; and the top wall and the bottom wall of each sliding groove are respectively provided with an arc-shaped inner concave part to accommodate the spherical head.
Optionally, each sliding groove is provided with a plurality of positioning portions arranged along the length direction of the sliding groove, so that when the end portion of the connecting portion moves to the position of the positioning portion, the connecting portion is restrained by the positioning portions, and the connecting portion cannot move along the length direction of the sliding groove.
Optionally, the number of the connecting portions and the number of the positioning portions are m and n respectively, and the following conditions are satisfied: n is 2 m-1.
Optionally, the positioning parts are uniformly distributed along the length direction of the sliding chute; when the flexible body part is unfolded to be in a plane state, the connecting parts are uniformly distributed along the length direction of the flexible body part, and the distance between two adjacent connecting parts is equal to twice of the distance between two adjacent positioning parts.
Optionally, each positioning portion is a recessed portion opened downward from a bottom wall of the chute.
Optionally, the rack comprises: a shelf for carrying storage; each decorative strip is provided with a clamping groove, and the two clamping grooves respectively clamp and fix two opposite edges of the shelf; and the two chutes are respectively arranged on the two decorative strips.
Optionally, the number of the plurality of connecting portions is at least three.
On the other hand, the utility model provides a refrigerator, which comprises a refrigerator body, a refrigerator door and a refrigerator door, wherein a storage chamber is limited; and at least one shelving device according to any one of the above, disposed within the storage compartment.
The utility model discloses a put thing device for refrigerator places in the box of refrigerator, and the function is deposited to integrated rack function and bottle jar class article, need not to place bottle jar class stock in the bottle seat, has avoided the door body to place the bottle jar and has leaded to falling and the not good problem of experience of opening the door.
Furthermore, when the storage articles such as bottles and cans do not need to be placed, the distance between the adjacent connecting parts can be increased, so that the flexible body part between the adjacent connecting parts is stretched in a flat shape, the occupied space is small, and the normal storage of other articles below the rack is not influenced.
Furthermore, in the storage device of the present invention, the flexible supporting body has at least three connecting portions to at least place two bottles or cans. By arranging more connecting parts, the storage space of the storage device is optimally utilized.
Further, in the article holding device of the present invention, the two ends of the rod-like connecting portion are provided with spherical heads, and the sliding groove is provided with a corresponding arc-shaped concave portion for accommodating the spherical heads. Therefore, the vertex of the spherical head (the intersection point of the axis of the connecting part and the spherical surface) can not contact with the inner wall of the sliding groove, the connection between the spherical surface and the arc surface is smoother, and the friction resistance is very small. When the user removes connecting portion from the one end of connecting portion, the other end of connecting portion also can slide in the spout more smoothly, makes the user operation more laborsaving, has avoided because the staff can't reach the connecting portion other end (close on the one end of box back wall) and only can operate the connecting portion front end, makes connecting portion front end atress, rear end unstressed, makes connecting portion buckle. So for a long time, make the cooperation relation of connecting portion and spout more abominable.
The above and other objects, advantages and features of the present invention will become more apparent to those skilled in the art from the following detailed description of specific embodiments thereof, taken in conjunction with the accompanying drawings.
Drawings
Some specific embodiments of the present invention will be described in detail hereinafter, by way of illustration and not by way of limitation, with reference to the accompanying drawings. The same reference numbers in the drawings identify the same or similar elements or components. Those skilled in the art will appreciate that the drawings are not necessarily drawn to scale. In the drawings:
fig. 1 is a schematic structural diagram of a refrigerator according to an embodiment of the present invention;
fig. 2 is a schematic structural view of the shelving device according to an embodiment of the present invention when the flexible supporting body is in an expanded state;
FIG. 3 is an exploded view of the shelving unit shown in FIG. 2;
FIG. 4 is an enlarged view of the shelving device shown in FIG. 3 at A;
FIG. 5 is an enlarged view of the shelving device shown in FIG. 3 at B;
fig. 6 is a schematic view of the shelving device shown in fig. 2 in a state that the flexible carrier is in a sagging state.
Detailed Description
The embodiment of the utility model provides a refrigerator, it includes box and at least one puts thing device.
Fig. 1 is a schematic structural diagram of a refrigerator according to an embodiment of the present invention. As shown in fig. 1, the refrigerator includes a cabinet 20 and a shelving unit 10. The case 20 defines a storage compartment 201, and the article holding device 10 is disposed in the storage compartment 201. Convex ribs 21 are arranged on two lateral side walls (the lateral direction refers to the direction parallel to the x axis) of the storage compartment 201, and the article placing device 10 is lapped on the convex ribs 21. In addition, the refrigerator may be further provided with a door 30 for closing the storage compartment 201. Each storage compartment 201 can be provided with a plurality of vertically arranged storage devices 10.
Fig. 2 is a schematic structural view of the shelving device 10 according to an embodiment of the invention when the flexible supporting body 200 is in the unfolded state; FIG. 3 is an exploded view of the shelving device 10 shown in FIG. 2; FIG. 4 is an enlarged view of the shelving device 10 shown in FIG. 3 at A; FIG. 5 is an enlarged view of the shelving device 10 shown in FIG. 3 at B; fig. 6 is a schematic view of the shelving device 10 shown in fig. 2 with the flexible carrier 200 in a sagging state.
As shown in fig. 2 to 6, the rack device 10 according to the embodiment of the present invention includes a rack 100 and a flexible supporting body 200. The rack 100 is arranged in the storage compartment 201 of the refrigerator, that is, directly connected to the inner wall of the storage compartment 201 of the refrigerator, so as to be supported by the inner wall of the storage compartment 201 and carry stored objects. The flexible carrier 200 is located below the rack 100 and includes a flexible body portion 210 and a plurality of connections 220. The flexible body portion 210 is made of a planar material with high flexibility, such as textile like cloth, mesh fabric, leather like article, flexible plastic product, etc. The plurality of connecting portions 220 are spaced along the length direction of the flexible body portion 210 (i.e., the direction parallel to the x-axis), and are adjustably mounted to the rack 100. The mounting position is adjustable, which means that the position of the connection part 220 in the x-axis direction is adjustable.
In this way, the section of the flexible body 210 between two connecting portions 220 can be expanded into a planar shape by increasing the distance between any two adjacent connecting portions 220, so that the flexible body hardly occupies space, and the normal storage of the space below the rack 100 is not affected. Figure 2 illustrates the flexible body portion 210 when all sections are deployed, the flexible body portion 210 not being visible from the perspective of figure 2 due to the proximity of the rack 100 beneath.
In addition, the section of the flexible body portion 210 between two adjacent connecting portions 220 can be deformed and sagged by gravity by reducing the distance between the two adjacent connecting portions 220, so as to carry the storage. For example, in fig. 6, the flexible body portion 210 has three sections each depending to form a "U" shaped configuration with the opening facing upwardly, just to wrap around the bottle or can item 60.
Specifically, as shown in fig. 3 and 6, the length direction of the flexible body portion 210 may be parallel to the transverse direction of the refrigerator (i.e., the x-axis parallel direction), so that after the flexible body portion 210 is sagged, the opening is directed forward for inserting the bottle. Of course, the length direction of the flexible body portion 210 may be in the front-rear direction.
The embodiment of the utility model provides an in, put thing device 10 has integrateed rack function and bottle and jar class article and has deposited the function, need not to place bottle and jar class storage object in the bottle seat, has avoided the door body to place the bottle and jar and has leaded to falling, and the user is because worry article fall, opens the door excessively carefully, leads to opening the door and experiences not good problem. Moreover, when the storage articles such as bottles and cans are not needed to be placed, the distance between the adjacent connecting portions 220 can be increased, so that the flexible main body portion 210 section therebetween is stretched in a flat shape, and the occupied space is small, and the normal storage of other articles below the rack 100 is not affected.
In the embodiment of the present invention, the number of the plurality of connecting portions 220 is at least three, so that at least two bottles or cans can be placed therein. Compared with the scheme that only two connecting parts are arranged and only one bottle can be placed, the storage space of the shelving device 10 is optimally utilized by arranging more connecting parts 220. For example, in the embodiment of fig. 1-6, four connections 220 are provided to enable three bottles to be placed.
In some embodiments, as shown in fig. 3 and 4, each connecting portion 220 is a rod shape extending in a width direction (i.e., a direction parallel to the y-axis) of the flexible body portion 210. Specifically, the connection part 220 may be made of a metal material or a hard non-metal material. The connecting portion 220 is fixedly connected to the flexible body portion 210. The rack 100 is formed with two sliding slots 113 extending in parallel with the length direction of the flexible main body 210 and having opposite openings. For example, two runners are made to extend in the transverse direction, with the opening of the front runner facing rearward and the opening of the rear runner facing forward. Both ends of each connecting portion 220 are slidably disposed therein in a length direction of the chute 113. Thus, the distance between two adjacent connecting parts 220 can be adjusted by sliding the connecting parts 220.
After the connecting portion 220 slides to a certain position, in order to make the position of the connecting portion more firm and not easily move, a plurality of positioning portions 115 arranged along the length direction of the sliding slot 113 may be provided in each sliding slot 113, so that when the end portion of the connecting portion 220 moves to the position of the positioning portion 115, the connecting portion 220 is restrained by the positioning portions 115, so that the connecting portion 220 cannot move along the length direction of the sliding slot 113. For example, each positioning portion 115 is a recessed portion opened downward from the bottom wall of the chute 113. When the user moves the connecting portion 220, the connecting portion 220 automatically falls into the recessed portion under the action of gravity when reaching the recessed portion, so as to be automatically clamped. But also reminds the user that the connection part 220 does not need to be moved any more. When the position of the connecting portion 220 needs to be adjusted, the connecting portion 220 needs to be lifted upwards to be separated from the recess.
The number of the connecting portions 220 and the positioning portions 115 is m and n, respectively, and the following relationship is satisfied: n is 2 m-1. For example, in fig. 3, if 4 connecting portions 220 are provided, 7 positioning portions 115 need to be provided. Thus, the number of the positioning portions 115 is reduced, the adjustment mode is fixed, and the use is simplified. A plurality of positioning portions 115 may be further uniformly distributed along the length direction of the chute 113. When the flexible main body 210 is unfolded into a planar state, the plurality of connecting portions 220 are uniformly distributed along the length direction of the flexible main body 210, and the distance between two adjacent connecting portions 220 is equal to twice the distance between two adjacent positioning portions 115. When the sections of the flexible body 210 are in a sagging state, the sections have the same shape, so that the appearance is more beautiful, as shown in fig. 3 and 6.
The inventor has recognized that when the rod-shaped connecting portion 220 receives an external force to slide the two ends of the rod-shaped connecting portion 220 in the two sliding slots 113, the external force applied to the connecting portion 220 is unbalanced, and the direction of the external force is not guaranteed to be completely parallel to the length direction of the sliding slots 113, so that the external force has a component force along the length direction of the connecting portion 220, and the connecting portion 220 tends to be pressed against the inner wall of the sliding slots 113, so that the inner wall of the sliding slots 113 provides a friction force for the sliding of the. This not only makes the user operation harder, experiences very poorly, but also can lead to connecting portion 220 to warp or even buckle, and is so for a long time, makes connecting portion 220 and spout 113's cooperation relation worse.
As shown in fig. 4 and 6, based on the above-mentioned recognition, the embodiment of the present invention particularly makes each of the two ends of the connecting portion 220 have a spherical head 221, which has a diameter larger than the distance between the top wall and the bottom wall of the sliding chute 113. And, the top and bottom walls of each chute 113 are respectively opened with arc-shaped concave parts 1131, 1133 to accommodate the spherical head 221.
In this way, the freedom of movement of the spherical head 221 in the forward-backward direction (the y-axis is forward and backward) is limited by the chute 113 so that it can slide only in the longitudinal direction of the chute 113, and the apex of the spherical head 221 (the intersection of the axis of the connecting portion 220 and the spherical surface) does not contact the inner wall of the chute (for a chute with a forward opening, this inner wall is referred to as the rear wall). And, because the connection of the spherical surface and the arc surface is smoother, the frictional resistance is small. When the connecting portion 220 is moved by one end of the handheld connecting portion 220 of the user, the other end of the connecting portion 220 can slide in the sliding groove 113 more smoothly, so that the user can operate more easily, and the experience is better.
As shown in fig. 3, the rack 100 may include a shelf 120 and two decorative strips 110. The shelf 120 is used to carry storage, and has a plate shape, and may be made of glass. Each of the decoration strips 110 is formed with a clamping groove 111, and the two clamping grooves 111 respectively clamp two opposite edges of the fixed shelf 120. The molding 110 functions to decorate the shelf 120. The two sliding grooves 113 are respectively formed on the two decorative strips 110.
Thus, it should be appreciated by those skilled in the art that while a number of exemplary embodiments of the invention have been shown and described in detail herein, many other variations and modifications can be made, consistent with the principles of the invention, which are directly determined or derived from the disclosure herein, without departing from the spirit and scope of the invention. Accordingly, the scope of the present invention should be understood and interpreted to cover all such other variations or modifications.

Claims (10)

1. A shelving unit for a refrigerator, comprising:
the rack is arranged in the storage compartment of the refrigerator to bear stored objects; and
a flexible supporting body located below the rack and including a flexible main body and a plurality of connecting portions arranged at intervals along a length direction of the flexible main body and adjustably mounted to the rack at mounting positions,
the section of the flexible body part between the two connecting parts is expanded into a plane shape by increasing the distance between any two adjacent connecting parts, and the section of the flexible body part between the two connecting parts is drooped by gravity by reducing the distance between the two adjacent connecting parts so as to carry stored objects.
2. The shelving device as defined in claim 1,
each of the connecting portions is a rod shape extending in a width direction of the flexible body portion;
two sliding grooves which extend along the length direction parallel to the flexible body part and have opposite openings are formed on the rack; and is
Both ends of each connecting part can be arranged in the sliding groove in a sliding mode along the length direction of the sliding groove.
3. The shelving device as defined in claim 2,
the two ends of each connecting part are respectively provided with a spherical head, and the diameter of each spherical head is larger than the distance between the top wall and the bottom wall of the sliding chute; and is
The top wall and the bottom wall of each sliding groove are respectively provided with an arc-shaped inner concave part to accommodate the spherical head.
4. The shelving device as defined in claim 2,
each sliding groove is internally provided with a plurality of positioning parts which are arranged along the length direction of the sliding groove, so that when the end part of the connecting part moves to the position of the positioning part, the connecting part is restrained by the positioning parts, and the connecting part cannot move along the length direction of the sliding groove.
5. The shelving device as defined in claim 4,
the number of the connecting parts and the number of the positioning parts are m and n respectively, and n is 2 m-1.
6. The shelving device as defined in claim 5,
the positioning parts are uniformly distributed along the length direction of the sliding chute; and is
When the flexible body part is unfolded to be in a plane state, the connecting parts are uniformly distributed along the length direction of the flexible body part, and the distance between every two adjacent connecting parts is equal to twice of the distance between every two adjacent positioning parts.
7. The shelving device as defined in claim 4,
each positioning part is a concave part which is downwards opened from the bottom wall of the sliding chute.
8. The rack device as claimed in claim 2, wherein the rack comprises:
a shelf for carrying storage; and
each decorative strip is provided with a clamping groove, and the two clamping grooves respectively clamp and fix two opposite edges of the shelf; and is
The two sliding grooves are respectively arranged on the two decorative strips.
9. The shelving device as defined in claim 1,
the number of the plurality of connecting parts is at least three.
10. A refrigerator characterized by comprising:
a case defining a storage compartment; and
at least one shelving unit according to any one of claims 1 to 9, disposed within the storage compartment.
CN201922148155.0U 2019-12-04 2019-12-04 Refrigerator and article placing device thereof Active CN211372868U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201922148155.0U CN211372868U (en) 2019-12-04 2019-12-04 Refrigerator and article placing device thereof

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201922148155.0U CN211372868U (en) 2019-12-04 2019-12-04 Refrigerator and article placing device thereof

Publications (1)

Publication Number Publication Date
CN211372868U true CN211372868U (en) 2020-08-28

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112902526A (en) * 2019-12-04 2021-06-04 青岛海尔电冰箱有限公司 Refrigerator and article placing device thereof

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112902526A (en) * 2019-12-04 2021-06-04 青岛海尔电冰箱有限公司 Refrigerator and article placing device thereof

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