Bottle holder assembly, door body and refrigerator
By setting up an elastic connection part in the refrigerator bottle holder assembly, the seat body is inclined and easy to place when the bottle is not placed, and automatically straightened and supported when placing the bottle body, the problem of low pick-up and placement efficiency and dumping risks of bottled beverages is solved, and efficient and stable beverage storage is achieved.
Patent Information
- Application Number
- CN202410067054.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2024-01-17
- Publication Date
- 2025-07-25
AI Technical Summary
The existing refrigerator bottle holder design is inefficient when picking and placing bottled beverages and has the risk of dumping, especially bottled beverages with higher heights are easily dumped during the refrigerator door switch.
A bottle holder assembly is designed, by setting an elastic connection between the main body and the seat body, the seat body is inclined to facilitate placement when the bottle body is not placed, and automatically tilted when the bottle body is placed, and the front side wall of the main body is limited to prevent tilting.
It improves the pick-up and placement efficiency of bottled beverages, reduces the risk of dumping bottled beverages during the refrigerator door switch, and enhances storage and placement stability.
Smart Images

Figure CN120368665A_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of refrigerators, for example, to a bottle holder assembly, a door body and a refrigerator. Background Art
[0002] Currently, most refrigerator door bodies are provided with bottle holders for placing items such as bottled beverages. In order to improve the stability of placing items such as bottled beverages, the shape of the bottle holder is usually set to fit the shape of the bottled beverage. However, it is inconvenient to take and place bottled beverages with a relatively high height such as beer and red wine. Especially when the distance between the upper and lower bottle holders is relatively small, when placing, the user first needs to obliquely place the bottled beverage into the bottle holder and then manually straighten the beverage. The same is true when taking it out, which is time-consuming and troublesome.
[0003] A tiltable refrigerator bottle holder is disclosed in the related art, which is arranged on the frame of the inner wall of the refrigerator door body. Its characteristics are as follows: the bottle holder includes a base and a storage box. The base is a shelf with two sides, fixed on the frame of the inner wall of the refrigerator door body. The storage box is a trough-shaped structure, including a bottom of the bottle holder and two side walls, a front wall and a rear wall extending upward from the periphery of the bottom. The storage box is pivotally arranged on the base; a rotating shaft is provided at the front part of both sides of the base, and front parts of the lower edges of both side walls of the storage box have shaft holes matching with the rotating shafts on the base. The rotating shafts are inserted into the shaft holes, and the storage box can rotate around the rotating shafts.
[0004] In the process of implementing the embodiments of the present disclosure, it is found that there are at least the following problems in the related art:
[0005] During the process of taking and placing bottled beverages, the user needs to hold the storage box for flipping operations, which reduces the efficiency of taking and placing bottled beverages. Moreover, during the process of opening and closing the refrigerator door body, the bottled beverages contained in the storage box are likely to fall due to inertia, and the stability of the bottled beverages is relatively low.
[0006] It should be noted that the information disclosed in the above background art section is only used to enhance the understanding of the background of the present application. Therefore, it may include information that does not constitute the prior art known to those of ordinary skill in the art. Summary of the Invention
[0007] To have a basic understanding of some aspects of the disclosed embodiments, a simple summary is given below. The summary is not a general review, nor is it intended to identify key / important constituent elements or delineate the protection scope of these embodiments. Instead, it serves as a preface to the following detailed description.
[0008] The embodiments of the present disclosure provide a bottle holder assembly, a door body and a refrigerator to improve the efficiency of taking and placing bottled beverages, reduce the risk of the bottled beverages falling, and improve the storage stability of the bottled beverages.
[0009] In some embodiments, the bottle seat assembly includes: a main body, a seat body, and an elastic connection part. The main body has a front side wall and a bottom side wall; the seat body is movably arranged inside the main body, and the seat body has a bottom side plate and a front side plate; the elastic connection part is arranged on the bottom side wall of the main body, and the connection position of the front side plate and the bottom side plate of the seat body is rotatably connected to the elastic connection part; wherein, when no bottle is placed in the seat body, the elastic connection part drives the seat body to rotate and incline towards the front side wall of the main body, and the front side plate abuts against the front side wall of the main body; when a bottle is placed in the seat body, the seat body rotates towards the bottom side wall of the main body under the gravity of the bottle, and the bottom side plate adheres to the bottom side wall of the main body.
[0010] Optionally, the seat body further has a rear side plate, the lower end of the front side plate is connected to the front end of the bottom side plate, and the front side plate is inclined towards the rear side plate, and the included angle between the front side plate and the bottom side plate is an acute angle.
[0011] Optionally, the elastic connection part is arranged in the area where the front side wall and the bottom side wall of the main body are connected. When the elastic connection part drives the seat body to rotate and incline towards the front side wall of the main body, the front side plate abuts against and adheres to the front side wall of the main body.
[0012] Optionally, a guiding part is provided at the upper end of the front side plate. The guiding part and the rear side plate are both perpendicular to the bottom side plate. A receiving space is jointly defined among the guiding part, the rear side plate, the front side plate, and the bottom side plate. The bottle is placed into the receiving space through the upper end area of the guiding part and the rear side plate.
[0013] Optionally, the elastic connection part includes: a fixed seat, a connecting pin, and a torsion spring structure. The fixed seat is fixedly connected to the bottom side wall of the main body; the connecting pin is inserted into the fixed seat, and the connection position of the front side plate and the bottom side plate is rotatably connected to the connecting pin; the torsion spring structure is sleeved on the connecting pin, and the first end of the torsion spring structure is connected to the fixed seat, and the second end of the torsion spring structure is connected to the bottom side plate.
[0014] Optionally, a connecting sleeve is formed at the connection position of the front side plate and the bottom side plate. The connecting sleeve is sleeved on the outer periphery of the connecting pin and is rotatably connected to the connecting pin.
[0015] Optionally, a buffer spring is arranged between the bottom side plate and the bottom side wall of the main body.
[0016] Optionally, a receiving groove is arranged at the position of the bottom side wall of the main body corresponding to the buffer spring. When the bottom side plate adheres to the bottom side wall of the main body, the buffer spring is completely retracted into the receiving groove.
[0017] In some embodiments, a door body includes the bottle seat assembly of the above embodiments.
[0018] In some embodiments, a refrigerator includes the door body of the above embodiments.
[0019] The bottle seat assembly, door body, and refrigerator provided by the embodiments of the present disclosure can achieve the following technical effects:
[0020] The seat is rotatably connected to the main body by setting an elastic connection part, and the position where the seat is connected to the elastic connection part is located in the connection area between the front side plate and the bottom side plate of the seat, so that the seat has space to tilt forward. Under the action of the elastic connection part, the seat can be rotated and tilted forward when no bottle body is placed, leaving enough space for the bottle body to be placed, and even relatively high bottles can be placed smoothly. When the bottle body is placed in the seat, the seat is rotated downward and aligned under the action of the gravity of the bottle body, and the user does not need to perform manual operation, thereby improving the efficiency of taking and placing bottled beverages. Moreover, when the seat body is tilted forward, the front side plate of the seat body abuts against the front side wall of the main body, and the front side wall of the main body is used to form a limiting support for the seat body to prevent the seat body from tilting excessively, thereby reducing the risk of bottled beverages tipping over and improving the stability of bottled beverage storage.
[0021] The above general description and the following description are exemplary and explanatory only and are not intended to limit the present application. BRIEF DESCRIPTION OF THE DRAWINGS
[0022] One or more embodiments are exemplarily described by corresponding drawings, which do not limit the embodiments. Elements with the same reference numerals in the drawings are shown as similar elements, and the drawings do not constitute a scale limitation, and wherein:
[0023] Figure 1 is a structural schematic diagram of a bottle holder assembly provided by an embodiment of the present disclosure;
[0024] Figure 2 is a structural schematic diagram of another bottle holder assembly provided by an embodiment of the present disclosure;
[0025] Figure 3 is a structural schematic diagram of a seat body provided by an embodiment of the present disclosure;
[0026] Figure 4 is a schematic structural diagram of an elastic connection portion provided by an embodiment of the present disclosure;
[0027] Figure 5 is a structural schematic diagram of a fixing seat and a connecting sleeve provided in an embodiment of the present disclosure;
[0028] Figure 6 is a schematic structural diagram of another fixing base provided by an embodiment of the present disclosure;
[0029] Figure 7 is a structural schematic diagram of another bottle holder assembly provided by an embodiment of the present disclosure;
[0030] Figure 8 is a schematic structural diagram of another seat provided by an embodiment of the present disclosure;
[0031] Figure 9 It is a schematic structural diagram of another seat body provided by an embodiment of the present disclosure;
[0032] Figure 10 It is a schematic diagram of the setting positions of the limiting knob and the adjusting handle provided by an embodiment of the present disclosure;
[0033] Figure 11 It is a schematic structural diagram of a door body provided by an embodiment of the present disclosure.
[0034] Reference numerals:
[0035] 100, main body; 110, accommodating groove; 200, seat body; 210, bottom side plate; 211, bottle bottom groove; 212, first plate portion; 213, second plate portion; 214, telescopic rod; 220, front side plate; 221, stop surface; 230, rear side plate; 240, guiding portion; 241, inclined plate; 250, connecting sleeve; 251, first cylinder portion; 252, second cylinder portion; 260, arc-shaped sleeve; 300, elastic connection portion; 310, fixed seat; 311, mounting seat; 312, sleeve portion; 313, stop baffle; 314, limiting knob; 320, connecting pin; 321, adjusting handle; 330, torsion spring structure; 331, first end; 332, second end; 400, bottle body; 500, buffer spring; 600, door lining. Detailed implementation manners
[0036] In order to be able to understand the features and technical content of the embodiments of the present disclosure in more detail, the implementation of the embodiments of the present disclosure will be described in detail below with reference to the accompanying drawings. The accompanying drawings are only for reference and illustration purposes and are not intended to limit the embodiments of the present disclosure. In the following technical description, for the sake of explanation, numerous details are provided to give a full understanding of the disclosed embodiments. However, one or more embodiments may still be implemented without these details. In other cases, well-known structures and devices may be shown in a simplified manner to simplify the drawings.
[0037] The terms "first", "second", etc. in the description and claims of the embodiments of the present disclosure and the above accompanying drawings are used to distinguish similar objects and do not necessarily need to describe a specific order or sequence. It should be understood that such data may be interchanged under appropriate circumstances so as to implement the embodiments of the present disclosure described herein. In addition, the terms "comprising" and "having" and any variations thereof are intended to cover non-exclusive inclusion.
[0038] In the embodiments of the present disclosure, the orientation or positional relationships indicated by terms such as "upper", "lower", "inner", "middle", "outer", "front", and "rear" are based on the orientation or positional relationships shown in the drawings. These terms are mainly used to better describe the embodiments of the present disclosure and their embodiments, and are not used to limit that the indicated devices, elements, or components must have a specific orientation or be constructed and operated in a specific orientation. Moreover, in addition to being able to represent orientation or positional relationships, some of the above terms may also be used to represent other meanings. For example, the term "upper" may also be used to represent a certain attachment relationship or connection relationship in some cases. For those of ordinary skill in the art, the specific meanings of these terms in the embodiments of the present disclosure can be understood according to specific circumstances.
[0039] In addition, the terms "arrangement", "connection", and "fixation" should be understood in a broad sense. For example, "connection" can be a fixed connection, a detachable connection, or an integral structure; it can be a mechanical connection or an electrical connection; it can be directly connected, or indirectly connected through an intermediate medium, or there can be internal communication between two devices, elements, or components. For those of ordinary skill in the art, the specific meanings of the above terms in the embodiments of the present disclosure can be understood according to specific circumstances.
[0040] Unless otherwise specified, the term "plurality" means two or more.
[0041] It should be noted that, without conflict, the embodiments in the embodiments of the present disclosure and the features in the embodiments can be combined with each other.
[0042] Combined Figures 1-10 As shown, in some embodiments, the bottled component includes: a main body 100, a seat body 200, and an elastic connection portion 300. The main body 100 has a front side wall and a bottom side wall; the seat body 200 is movably arranged inside the main body 100, and the seat body 200 has a bottom side plate 210 and a front side plate 220; the elastic connection portion 300 is arranged on the bottom side wall of the main body 100, and the position where the front side plate 220 and the bottom side plate 210 of the seat body 200 are connected is rotationally connected to the elastic connection portion 300; wherein, when no bottle body 400 is placed in the seat body 200, the elastic connection portion 300 drives the seat body 200 to rotate and tilt towards the front side wall of the main body 100, and the front side plate 220 abuts against the front side wall of the main body 100; when a bottle body 400 is placed in the seat body 200, the seat body 200 rotates towards the bottom side wall of the main body 100 under the gravity of the bottle body 400, and the bottom side plate 210 adheres to the bottom side wall of the main body 100.
[0043] The bottle holder assembly provided by the embodiment of the present disclosure is used to rotatably connect the holder 200 to the main body 100 by setting an elastic connection part 300. The position where the holder 200 is connected to the elastic connection part 300 is located in the connection area between the front side plate 220 and the bottom side plate 210 of the holder 200, so that the holder 200 has space to tilt forward. Under the action of the elastic connection part 300, the holder 200 can be rotated and tilted forward when the bottle 400 is not placed, leaving enough space for the bottle 400 to be placed, even a bottle 400 with a relatively high height can be placed smoothly. When the bottle 400 is placed in the holder 200, the holder 200 is rotated downward and aligned under the action of the gravity of the bottle 400, without the need for manual operation by the user, thereby improving the efficiency of taking and placing bottled beverages. Moreover, when the seat body 200 tilts forward, the front side plate 220 of the seat body 200 abuts against the front side wall of the main body 100, and the front side wall of the main body 100 is used to form a limiting support for the seat body 200 to prevent the seat body 200 from tilting excessively, thereby reducing the risk of bottled beverages tipping over and improving the stability of bottled beverage storage.
[0044] Optionally, the main body 100 is a rectangular box-shaped structure, the upper side wall of the main body 100 is open, and the seat 200 is arranged inside the main body 100 along the opening of the upper side wall of the main body 100. In this way, the main body 100 of the rectangular box-shaped structure is easy to assemble and use, and the seat 200 is placed in the main body 100 along the opening, which improves the stability of the seat 200 and facilitates the taking and placing of the bottle 400 of the bottled beverage.
[0045] Optionally, a bottle bottom groove 211 is provided on the upper side wall of the bottom side plate 210. In this way, the bottom of the bottle body 400 placed in the seat body 200 can be embedded in the bottle bottom groove 211, and the bottle bottom groove 211 forms a limit on the bottom of the bottle body 400, thereby improving the stability of the bottle body 400 and further reducing the risk of the bottle body 400 tipping over.
[0046] like Figure 2 As shown, optionally, a plurality of seats 200 are movably arranged inside the main body 100. In this way, a plurality of seats 200 can be used to place a plurality of bottles 400 at the same time, thereby increasing the storage capacity of the bottle seat assembly.
[0047] Optionally, the seat body 200 further has a rear side plate 230. The lower end of the front side plate 220 is connected to the front end of the bottom side plate 210, and the front side plate 220 is inclined towards the rear side plate 230. The included angle between the front side plate 220 and the bottom side plate 210 is an acute angle. In this way, through the cooperation of the front side plate 220, the rear side plate 230 and the bottom side plate 210, a clamping effect is formed on the placed bottle body 400, improving the stability of the bottle body 400. The front side plate 220 is inclined towards the rear side plate 230. When the seat body 200 rotates forward and inclines, when the seat body 200 rotates to the position where the front side plate 220 abuts against the front side wall of the main body 100, the inclination angle of the seat body 200 is larger. When there is an obstruction above the seat body 200, the bottle body 400 can be taken and placed more smoothly, improving the taking and placing efficiency of the bottle body 400.
[0048] Optionally, the rear side plate 230 is connected to the rear end of the bottom side plate 210. A storage space is defined among the front side plate 220, the rear side plate 230 and the bottom side plate 210, and the bottle body 400 is placed in the storage space.
[0049] Optionally, the rear side plate 230 is in an arc-shaped plate structure, and the radian of the rear side plate 230 is adapted to the radian of the bottle body 400. In this way, the outer peripheral wall of the bottle body 400 is supported by the rear side plate 230, further improving the stability of the bottle body 400.
[0050] Optionally, the front side plate 220 is in a rectangular flat plate structure. In this way, when the seat body 200 rotates to the position where the front side plate 220 abuts against the front side wall of the main body 100, the abutting area between the front side plate 220 and the front side wall of the main body 100 is larger, and a more stable support for the seat body 200 is formed by the front side wall of the main body 100.
[0051] Optionally, the bottom side plate 210 is also in a flat plate structure. The included angle between the front side plate 220 and the bottom side plate 210 refers to the included angle between the plane where the front side plate 220 is located and the plane where the bottom side plate 210 is located.
[0052] Optionally, the included angle between the front side plate 220 and the bottom side plate 210 is greater than or equal to 60° and less than 90°. In this way, when the included angle between the front side plate 220 and the bottom side plate 210 is less than 60°, at this time, the inclination angle of the front side plate 220 towards the rear side plate 230 is too large, and the front side plate 220 will occupy too much space inside the seat body 200, resulting in a smaller storage space inside the seat body 200 and affecting the placement of the bottle body 400. Therefore, the included angle between the front side plate 220 and the bottom side plate 210 is set to be greater than or equal to 60° and less than 90°, which can not only ensure the inclination angle of the seat body 200 when the seat body 200 rotates forward to the position where the front side plate 220 abuts against the front side wall of the main body 100, but also reduce the occupation of the space inside the seat body 200 by the inclination of the front side plate 220.
[0053] Optionally, the angle between the front side plate 220 and the bottom side plate 210 is 75°.
[0054] Optionally, the elastic connection part 300 is arranged in the area where the front side wall and the bottom side wall of the main body 100 are connected. When the elastic connection part 300 drives the seat body 200 to rotate and tilt towards the front side wall of the main body 100, the front side plate 220 abuts against the front side wall of the main body 100. In this way, when the seat body 200 rotates forward and tilts, the front side plate 220 can abut against the front side wall of the main body 100 after the seat body 200 rotates a relatively short stroke, reducing the space occupied by the seat body 200 inside the main body 100 and shrinking the volume of the main body 100. Attaching the front side plate 220 to abut against the front side wall of the main body 100 increases the contact area between the front side plate 220 and the main body 100, thereby improving the support stability of the main body 100 for the seat body 200 and reducing the risk of the seat body 200 tipping over.
[0055] Optionally, when the seat body 200 rotates forward to the position where the front side plate 220 abuts against the front side wall of the main body 100, the front side plate 220 is parallel to the front side wall of the main body 100. In this way, the entire side wall of the front side plate 220 can be attached to the front side wall of the main body 100, increasing the contact area between the front side plate 220 and the front side wall of the main body 100 and improving the support stability of the front side plate 220.
[0056] As Figure 3 shown, optionally, a guiding part 240 is provided at the upper end of the front side plate 220. The guiding part 240 and the rear side plate 230 are both perpendicular to the bottom side plate 210. A receiving space is defined jointly by the guiding part 240, the rear side plate 230, the front side plate 220 and the bottom side plate 210. The bottle body 400 is placed into the receiving space through the upper end area of the guiding part 240 and the rear side plate 230. In this way, since the front side plate 220 is inclined towards the rear side plate 230, when the bottle body 400 is placed, the upper end of the front side plate 220 may block the bottle body 400. Therefore, the guiding part 240 is provided at the upper end of the front side plate 220. The guiding part 240 and the rear side plate 230 are both perpendicular to the bottom side plate 210, enabling the bottle body 400 to be smoothly placed into the seat body 200 under the action of the guiding part 240 and improving the placing efficiency of the bottle body 400. Placing the bottle body 400 into the storage space defined jointly by the guiding part 240, the rear side plate 230, the front side plate 220 and the bottom side plate 210 and using the guiding part 240 and the rear side plate 230 to support the outer peripheral wall of the bottle body 400 can further improve the stability of the bottle body 400.
[0057] Optionally, the guiding portion 240 is a rectangular plate-like structure, and flanges protruding towards the rear side plate 230 are provided on two vertical sides of the guiding portion 240. In this way, the rectangular plate-like guiding portion 240 is adapted to the shape of the front side plate 220, and a guiding space is formed by using the flanges, so as to guide the bottle body 400 more stably. While the bottle body 400 is more smoothly placed into the seat body 200, the bottle body 400 is not easily offset in the horizontal direction.
[0058] Optionally, the lower side of the guiding portion 240 is connected to the upper side of the front side plate 220 through an inclined plate 241. The lower side of the inclined plate 241 is connected to the upper side of the front side plate 220, and the upper side of the inclined plate 241 is connected to the lower side of the guiding portion 240. The inclined plate 241 is inclined away from the rear side plate 230. The angle between the inclined plate 241 and the front side plate 220 is an obtuse angle, and the angle between the inclined plate 241 and the guiding portion 240 is also an obtuse angle. In this way, the arrangement of the inclined plate 241 forms a buffer area between the guiding portion 240 and the front side plate 220. While guiding the bottle body 400, it is avoided that the angle between the guiding portion 240 and the front side plate 220 is too large, resulting in the bottle body 400 falling rapidly, and the stability of guiding the bottle body 400 is improved. Moreover, the guiding portion 240 is connected to the front side plate 220 through the inclined plate 241, so that the front-back distance between the guiding portion 240 and the rear side plate 230 is increased, and it can be adapted to the placement of the bottle body 400 with a relatively large volume.
[0059] Optionally, flanges protruding towards the rear side plate 230 are also provided on two non-connected sides of the inclined plate 241, and the flanges provided on the two non-connected sides of the inclined plate 241 are connected to the flanges provided on the two vertical sides of the guiding portion 240 to form an integral structure. In this way, an integral structure is formed by connecting the flanges of the guiding portion 240 and the flanges of the inclined plate 241 to form a larger guiding space for guiding the bottle body 400, and the risk of the bottle body 400 being offset in the horizontal direction during the placement process is reduced.
[0060] Combined Figure 4 、 Figure 5 and Figure 6As shown, in some embodiments, the elastic connection part 300 includes: a fixing seat 310, a connecting pin 320 and a torsion spring structure 330. The fixing seat 310 is fixedly connected to the bottom side wall of the main body 100; the connecting pin 320 is inserted into the fixing seat 310, and the connecting position of the front side plate 220 and the bottom side plate 210 is rotatably connected to the connecting pin 320; the torsion spring structure 330 is sleeved on the connecting pin 320, and the first end 331 of the torsion spring structure 330 is connected to the fixing seat 310, and the second end 332 of the torsion spring structure 330 is connected to the bottom side plate 210. In this way, the elastic connection part 300 is divided into a fixed seat 310, a connecting pin 320 and a torsion spring structure 330. The fixed seat 310 and the bottom side wall of the main body 100 are connected to form a support. The connection position of the front side plate 220 and the bottom side plate 210 of the seat body 200 is rotatably connected with the connecting pin 320 inserted in the fixed seat 310. The torsion spring structure 330 sleeved on the connecting pin 320 provides a torsion force, which acts on the bottom side plate 210 of the seat body 200 through the second end 332 of the torsion spring, so that the seat body 200 has the potential energy to rotate and tilt forward. When the seat body 200 does not place the bottle body 400, the seat body 200 is rotated and tilted forward under the action of the torsion spring structure 330, which is convenient for the bottle body 400 to be placed. When the bottle 400 is placed in the seat 200, the torque provided by the torsion spring structure 330 is much smaller than the gravity generated by the bottle 400. Under the action of the bottle 400's own gravity, the seat 200 is pressed down, causing the seat 200 to rotate downward and automatically straighten.
[0061] For example, under the torsion force of the torsion spring structure 330, the seat 200 always has the potential energy to rotate forward and tilt. When taking out the bottle 400 placed in the seat 200, it is only necessary to apply a forward thrust to the seat 200. With the assistance of the torsion spring structure 330, the seat 200 can be easily rotated forward to a tilted position, and the front side plate 220 abuts against the front side wall of the main body 100, and the bottle 400 placed in the seat 200 can be taken out, and the efficiency of taking out the bottle 400 is also improved. Moreover, when the bottle 400 is placed in the seat 200 so that the seat 200 rotates downward and is aligned, the torsion force of the torsion spring structure 330 provides a buffer for the seat 200 that rotates downward, so that the seat 200 buffers the downward rotation and is aligned, thereby improving the stability of the seat 200 rotation, avoiding the vibration caused by the rapid rotation of the seat 200 and causing the bottle 400 to tilt, and improving the stability of the bottle 400.
[0062] Optionally, a connection sleeve 250 is formed at the connection position between the front side plate 220 and the bottom side plate 210. The connection sleeve 250 is sleeved on the outer periphery of the connection pin 320 and is rotatably connected to the connection pin 320. In this way, by sleeving the connection sleeve 250 on the outer periphery of the connection pin 320, the connection position between the front side plate 220 and the bottom side plate 210 is rotatably connected to the connection pin 320, which can improve the stability of the rotational connection between the connection position of the front side plate 220 and the bottom side plate 210 and the connection pin 320, thereby improving the stability of the rotational connection between the seat body 200 and the connection pin 320. The seat body 200 has higher stability when rotating forward or backward, so that the stability of the bottle body 400 in the seat body 200 is higher.
[0063] Optionally, the lower side edge of the front side plate 220 and the front side edge of the bottom side plate 210 are connected by an arc-shaped sleeve 260. The connection sleeve 250 is formed inside the arc-shaped sleeve 260. Part of the fixed seat 310 is located inside the arc-shaped sleeve 260, and part of the connection pin 320 is also located inside the arc-shaped sleeve 260. In this way, the front side plate 220 and the bottom side plate 210 are connected by the arc-shaped sleeve 260, and the connection sleeve 250 formed at the connection position between the front side plate 220 and the bottom side plate 210 is also located inside the arc-shaped sleeve 260. When rotatably connected to the elastic connection part 300, both the connection pin 320 and the fixed seat 310 are partially sleeved inside the arc-shaped sleeve 260. When the seat body 200 rotates, the arc-shaped sleeve 260 drives the connection sleeve 250 to rotate relative to the connection pin 320 and the fixed seat 310, further improving the stability of the rotational connection between the seat body 200 and the elastic connection part 300.
[0064] Optionally, the connection sleeve 250 is divided into a first cylinder part 251 and a second cylinder part 252. The torsion spring structure 330 is located between the first cylinder part 251 and the second cylinder part 252. The connection pin 320 sequentially passes through the fixed seat 310, the first cylinder part 251, the torsion spring structure 330, and the second cylinder part 252. In this way, the area of the rotational connection between the connection sleeve 250 and the connection pin 320 can be increased, and the stability of the rotational connection between the connection sleeve 250 and the connection pin 320 can be improved. The torsion spring structure 330 is arranged between the first cylinder part 251 and the second cylinder part 252, so that the torsion force provided by the torsion spring structure 330 can act evenly on the bottom side plate 210 and the fixed seat 310, reducing the risk of the seat body 200 rotating and shifting.
[0065] Optionally, the fixing base 310 includes: a mounting base 311 and a sleeve portion 312. The mounting base 311 is fixedly connected to the bottom side wall of the main body 100, and the first end 331 of the torsion spring structure 330 is connected to the mounting base 311. There are two sleeve portions 312, and the two sleeve portions 312 are respectively located in the two end regions of the mounting base 311. The first sleeve and the second sleeve are both located between the two sleeve portions 312. The connecting pin 320 sequentially penetrates through one of the two sleeve portions 312, the first barrel portion 251, the torsion spring structure 330, the second barrel portion 252, and the other of the two sleeve portions 312. In this way, the fixing base 310 is divided into the mounting base 311 and the sleeve portion 312, and the two sleeve portions 312 are arranged at intervals. The first barrel portion 251 and the second barrel portion 252 are arranged between the two sleeve portions 312, which further improves the stability of the rotational connection between the connecting sleeve 250 and the fixing base, makes the force on the connecting sleeve 250 more uniform, and the rotational stability of the seat body 200 is higher.
[0066] It can be understood that the mounting base 311 is fixedly connected to the bottom side wall of the main body 100 through structures such as screws, which will not be elaborated here.
[0067] Optionally, the fixing base 310 further includes a stop plate 313. The stop plate 313 is arranged on the front side of the mounting base 311 and is connected to the mounting base 311. A stop surface 221 is arranged at the lower side position of the front side plate 220. When the seat body 200 rotates forward to the position where the front side plate 220 abuts against the front side wall of the main body 100, the stop surface 221 abuts against the side wall of the stop plate 313. In this way, the arrangement of the stop plate 313 can cooperate with the stop surface 221 at the lower side position of the front side plate 220 to further limit the rotational position of the front side plate 220. Even when the front side plate 220 is damaged and cannot abut against the front side wall of the main body 100 for limiting, the cooperation between the stop plate 313 and the stop surface 221 can also limit the front side plate 220, preventing the seat body 200 from tilting excessively and causing the bottle body 400 in the seat body 200 to tip over, and further reducing the risk of the bottle body 400 tipping over.
[0068] Optionally, the stop surface 221 is a rectangular plane, the length of the stop surface 221 is adapted to the length of the lower side of the front side plate 220, and the shape of the stop plate 313 is adapted to the stop surface 221. In this way, the area of the stop plate 313 and the stop surface 221 can be increased, and when the stop surface 221 abuts against the stop plate 313, the supporting strength of the stop plate 313 for the front side plate 220 can be improved.
[0069] Combined with Figure 7As shown, in some embodiments, a buffer spring 500 is disposed between the bottom side plate 210 and the bottom side wall of the main body 100. In this way, when the seat body 200 is in a forward tilted position, a bottle body 400 is placed in the seat body 200, and the seat body 200 will rotate downward and be aligned under the gravity of the bottle body 400. The buffer spring 500 located between the bottom side plate 210 of the seat body 200 and the bottom side wall of the main body 100 can provide elastic support for the bottom side plate 210, and under the action of the buffer spring 500, the seat body 200 is slowly rotated downward and aligned, further reducing the vibration of the seat body 200 during the rotation and alignment process, and improving the stability of the bottle body 400 placed in the seat body 200.
[0070] Optionally, a holder is provided on the lower side wall of the bottom side plate 210, the upper end of the buffer spring 500 is clamped in the holder, and the lower end of the buffer spring 500 is movably connected to the bottom side wall of the main body 100. In this way, the upper end of the buffer spring 500 is clamped to the bottom side plate 210, and the bottom side plate 210 is used to provide support for the buffer spring 500. The lower end of the buffer spring 500 is movably arranged to prevent the buffer spring 500 from pulling the seat body 200 when the seat body 200 rotates forward, so that the seat body 200 rotates forward more smoothly.
[0071] Specifically, the lower end of the buffer spring 500 is movably in contact with the bottom side wall of the main body 100 and can be separated from the bottom side wall of the main body 100 .
[0072] Optionally, a receiving groove 110 is provided on the bottom side wall of the main body 100 corresponding to the position of the buffer spring 500, and when the bottom side plate 210 is attached to the bottom side wall of the main body 100, the buffer spring 500 is completely retracted into the receiving groove 110. In this way, when the bottle body 400 is placed on the seat 200, the seat 200 will rotate downward and be aligned. In order to avoid the influence of the buffer spring 500 on the alignment of the seat 200, the receiving groove 110 is provided on the bottom side wall of the main body 100, and when the seat 200 rotates and the bottom side plate 210 is attached to the bottom side wall of the main body 100, the buffer spring 500 can be retracted into the receiving groove 110, thereby preventing the buffer spring 500 from protruding so that the bottom side plate 210 of the seat 200 cannot be attached to the bottom side wall of the main body 100, so that the seat 200 can be aligned, so that the bottle body 400 placed in the seat 200 can be aligned, and the risk of the bottle body 400 tipping over is reduced.
[0073] Specifically, the lower end of the buffer spring 500 is movably in contact with the bottom side wall of the accommodating groove 110 and can be separated from the bottom side wall of the accommodating groove 110 .
[0074] It can be understood that when the seat body 200 rotates and tilts forward, the buffer spring 500 can escape from the accommodating groove 110 along with the movement.
[0075] Combination Figure 8As shown, in some embodiments, the bottom side plate 210 is divided into a first plate portion 212 and a second plate portion 213. The first plate portion 212 and the second plate portion 213 are arranged in the horizontal direction. The opposite side edges of the first plate portion 212 and the second plate portion 213 are movably connected. The second plate portion 213 can move towards or away from the first plate portion 212. The lower side edge of the front side plate 220 is connected to the front side edge of the first plate portion 212 through an arc-shaped sleeve 260. The lower end of the rear side plate 230 is connected to the side edge of the second plate portion 213. In this way, the bottom side plate 210 is divided into the first plate portion 212 and the second plate portion 213, and the first plate portion 212 and the second plate portion 213 are movably connected. By adjusting the position of the second plate portion 213 moving towards or away from the first plate portion 212, the bearing area of the bottom side plate 210 is adjusted, and further the distance between the front side plate 220 and the rear side plate 230 is adjusted, so that the size of the storage space jointly defined by the front side plate 220, the bottom side plate 210 and the rear side plate 230 is adjusted. Since the sizes of the bottle bodies 400 of bottled beverages are different, when placing bottle bodies 400 of different sizes through the seat body 200, by adjusting the moving position of the second plate portion 213, the storage space inside the seat body 200 is adjusted, so that the seat body 200 can place bottle bodies 400 of different sizes, improving the applicability of the seat body 200.
[0076] Optionally, a telescopic rod 214 is arranged inside the first plate portion 212. One end of the telescopic rod 214 extends from the first plate portion 212 towards the second plate portion 213. A receiving hole is arranged on the side edge of the second plate portion 213 facing the first plate portion 212. The end of the telescopic rod 214 extending out of the first plate portion 212 extends into the receiving hole and is fixedly connected to the inner wall of the receiving hole. In this way, by arranging the telescopic rod 214, the opposite side edges of the first plate portion 212 and the second plate portion 213 are movably connected. By adjusting the telescopic length of the telescopic rod 214, the moving position of the second plate portion 213 relative to the first plate portion 212 can be adjusted, and further the size of the storage space inside the seat body 200 can be adjusted.
[0077] Optionally, the telescopic rod 214 includes: a first rod portion and a second rod portion. The first rod portion is embedded inside the first plate portion 212. One end of the second rod portion is movably embedded inside the first rod portion. The other end of the second rod portion extends into the second plate portion 213 along the receiving hole and is fixedly connected to the inner wall of the receiving hole. The second rod portion can telescopically move relative to the first rod portion. In this way, by adjusting the telescopic position of the second rod portion, the telescopic length of the telescopic rod 214 is adjusted, and thus the position of the second plate portion 213 relative to the first plate portion 212 is adjusted.
[0078] Combined Figure 9 and Figure 10As shown, in other embodiments, the connecting pin 320 is rotatably connected to the sleeve portion 312, the first end 331 of the torsion spring structure 330 is fixedly connected to the connecting pin 320, and a limit knob 314 is provided on one side of the sleeve portion 312, and the end of the limit knob 314 can pass through the outer wall of the sleeve portion 312 and abut against the outer peripheral wall of the connecting pin 320, so that the connecting pin 320 is limited. In this way, the first end 331 of the torsion spring structure 330 is fixedly connected to the connecting pin 320, so that the connecting pin 320 serves as a force support point of the torsion spring structure 330. The tightness of the torsion spring structure 330 can be adjusted by adjusting the connecting pin 320 to rotate clockwise or counterclockwise, thereby adjusting the torque applied by the torsion spring structure 330 to the bottom side plate 210. After the adjustment of the connecting pin 320 is completed, the end of the limit knob 314 is used to limit the connecting pin 320, so that the connecting pin 320 cannot rotate relative to the sleeve portion 312. At this time, the connecting pin 320 serves as the force support point of the torsion spring structure 330 to support the first end 331 of the torsion spring structure 330. Since bottles 400 of different sizes can apply different gravity to the bottom side plate 210, when the volume of the bottle body 400 is small and the gravity applied to the bottom side plate 210 is less than the torsion force of the torsion spring, the seat body 200 cannot be smoothly pressed down and rotated to be aligned by the bottle body 400. Therefore, the first end 331 of the torsion spring structure 330 is connected to the connecting pin 320, and the tightness of the torsion spring structure 330 is adjusted by adjusting the connecting pin 320 to rotate clockwise or counterclockwise, thereby adjusting the torsion force applied to the bottom side plate 210 by the torsion spring structure 330, so that the bottle body 400 can smoothly press down the bottom side plate 210 to rotate, and the seat body 200 can be smoothly rotated downward and aligned.
[0079] For example, when adjusting the bearing area of the bottom side plate 210, the torque of the bottom side plate 210 also changes due to the change in the overall length of the bottom side plate 210. Even if the size of the bottle body 400 placed in the seat body 200 does not change at this time, the torque required for the seat body 200 to rotate forward and backward also changes. At this time, the tightness of the torsion spring structure 330 can also be adjusted by rotating the adjustment connecting pin 320, thereby adjusting the torque applied by the torsion spring structure 330 on the bottom side plate 210, so that the seat body 200 can rotate forward or backward smoothly.
[0080] Optionally, an adjustment handle 321 is provided at the end of the connecting pin 320, which can drive the connecting pin 320 to rotate in the sleeve portion 312. In this way, the connecting pin 320 can be efficiently adjusted to rotate clockwise or counterclockwise by adjusting the handle 321, thereby efficiently adjusting the tightness of the torsion spring structure 330 and the torsion force applied to the bottom side plate 210.
[0081] Combination Figure 11 As shown, in some embodiments, the door body includes the bottle holder assembly of the above-mentioned embodiment.
[0082] Using the door body provided by the embodiments of the present disclosure and assembling the bottle seat assembly of the above embodiments on the door body for use can improve the efficiency of taking and placing bottled beverages and reduce the risk of the bottled beverages tipping over during the opening and closing of the door body.
[0083] Optionally, the door body includes a door liner 600. A hanging groove is provided on the inner side wall of the door liner 600. Hanging ears are provided on the side wall of the main body 100 of the bottle seat assembly of the above embodiments. The main body 100 of the bottle seat assembly is hung in the hanging groove through the hanging ears. In this way, the bottle seat assembly of the above embodiments is assembled on the door liner 600 for use by the cooperation of the hanging ears on the side wall of the main body 100 and the hanging groove on the inner side of the door liner 600.
[0084] It can be understood that in the above embodiments, the front side wall of the main body 100 refers to the side wall of the main body 100 facing away from the door liner 600, and the rear side wall of the main body 100 refers to the side wall of the main body 100 facing the door liner 600.
[0085] In some embodiments, a refrigerator includes the door body of the above embodiments.
[0086] Using the refrigerator provided by the embodiments of the present disclosure and assembling the door body of the above embodiments in the refrigerator for use can improve the efficiency of taking and placing bottled beverages and reduce the risk of the bottled beverages tipping over during the opening and closing of the refrigerator door.
[0087] The above description and the drawings fully illustrate the embodiments of the present disclosure so that those skilled in the art can practice them. Other embodiments may include structural and other changes. The embodiments only represent possible variations. Unless explicitly required, the individual components and functions are optional, and the order of operations can vary. Some parts and features of some embodiments can be included in or replaced by parts and features of other embodiments. The embodiments of the present disclosure are not limited to the structures described above and shown in the drawings, and various modifications and changes can be made without departing from its scope. The scope of the present disclosure is only limited by the appended claims.
Claims
1. A bottle base assembly, characterized in that, Comprising: A main body (100) having a front side wall and a bottom side wall; A seat body (200) movably disposed inside the main body (100), the seat body (200) having a bottom side plate (210) and a front side plate (220); An elastic connection part (300) disposed on the bottom side wall of the main body (100), and the connection position of the front side plate (220) and the bottom side plate (210) of the seat body (200) is rotatably connected to the elastic connection part (300); Wherein, when no bottle body (400) is placed in the seat body (200), the elastic connection part (300) drives the seat body (200) to rotate and tilt towards the front side wall of the main body (100), and the front side plate (220) abuts against the front side wall of the main body (100); when the bottle body (400) is placed in the seat body (200), the seat body (200) rotates towards the bottom side wall of the main body (100) under the gravity of the bottle body (400), and the bottom side plate (210) adheres to the bottom side wall of the main body (100).
2. The bottle seat assembly according to claim 1, wherein The seat body (200) further has a rear side plate (230), the lower end of the front side plate (220) is connected to the front end of the bottom side plate (210), and the front side plate (220) is inclined towards the rear side plate (230), and the angle between the front side plate (220) and the bottom side plate (210) is an acute angle.
3. The bottle seat assembly according to claim 2, wherein The elastic connection part (300) is disposed in the area where the front side wall and the bottom side wall of the main body (100) are connected. When the elastic connection part (300) drives the seat body (200) to rotate and tilt towards the front side wall of the main body (100), the front side plate (220) abuts against and adheres to the front side wall of the main body (100).
4. The bottle seat assembly according to claim 2, wherein A guiding part (240) is provided at the upper end of the front side plate (220), the guiding part (240) and the rear side plate (230) are both perpendicular to the bottom side plate (210), and a receiving space is jointly defined among the guiding part (240), the rear side plate (230), the front side plate (220) and the bottom side plate (210). The bottle body (400) is placed into the receiving space through the upper end area of the guiding part (240) and the rear side plate (230).
5. The bottle base assembly according to claim 1, characterized in that, The elastic connection part (300) includes: A fixed seat (310) fixedly connected to the bottom side wall of the main body (100); A connecting pin (320) passing through the fixed seat (310), and the connection position of the front side plate (220) and the bottom side plate (210) is rotatably connected to the connecting pin (320); A torsion spring structure (330) sleeved on the connecting pin (320), and the first end (331) of the torsion spring structure (330) is connected to the fixed seat (310), and the second end (332) of the torsion spring structure (330) is connected to the bottom side plate (210).
6. The bottle seat assembly according to claim 5, wherein A connecting sleeve (250) is formed at the connection position of the front side plate (220) and the bottom side plate (210), the connecting sleeve (250) is sleeved on the outer periphery of the connecting pin (320), and is rotatably connected to the connecting pin (320).
7. The bottle seat assembly according to any one of claims 1 to 6, characterized in that a buffer spring (500) is arranged between the bottom side plate (210) and the bottom side wall of the main body (100).
8. The bottle seat assembly according to claim 7, characterized in that a receiving groove (110) is arranged at the position of the bottom side wall of the main body (100) corresponding to the buffer spring (500). When the bottom side plate (210) is attached to the bottom side wall of the main body (100), the buffer spring (500) is completely retracted into the receiving groove (110).
9. A door body, characterized in that, It includes the bottle seat assembly according to any one of claims 1 to 8.
10. A refrigerator, characterized in that, It includes the door body according to claim 9.