Refrigerator

CN224838068UActive Publication Date: 2026-10-09HISENSE(SHANDONG)REFRIGERATOR CO LTD
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Patent Information

Application Number
CN202521770473.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-08-19
Publication Date
2026-10-09
Estimated Expiration
2035-08-19

AI Technical Summary

Technical Problem

[0003]然而,由于能够发光的层板机构涉及需从冰箱内取电、以对层板机构供电的问题,因此,层板机构沿冰箱宽度方向的两端通常具有凸出层板机构、用于取电的伸缩触头,然而,当层板机构的两端具有伸缩触头时,在将层板机构安装至冰箱储藏间室的过程中伸缩触头与内胆之间容易出现干涉的情况、安装不够方便快捷,另一方面,层板机构安装到位之后层板机构与内胆之间沿冰箱宽度方向的间隙也较大

Benefits of technology

[0058]本申请中,由于第一接触件沿箱体的宽度方向抵接于第一伸缩触头,第二接触件沿上述宽度方向抵接于第二伸缩触头,又由于第一伸缩触头及第二伸缩触头均连接于电源、第一接触件及第二接触件分别连接于灯板沿上述宽度方向的两端,因此,可以使得灯板接入电源,这么一来,电源可以为灯板供电,从而可以使得灯板上的灯珠发出照明、杀菌或者保鲜光等,进而可以实现照明、杀菌或者保鲜等功能。

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Abstract

The application relates to the technical field of household appliances, in particular to a refrigerator. The refrigerator comprises a cabinet, the cabinet comprises an outer shell, an inner container, a refrigeration mechanism and a layer plate mechanism, the layer plate mechanism is located in a storage compartment and comprises a layer plate and a lamp plate assembly, the lamp plate assembly comprises a lamp plate arranged on the layer plate and extending along a width direction, a first contact piece connected to the lamp plate and located at one end of the lamp plate along the width direction, and a second contact piece connected to the lamp plate and located at the other end of the lamp plate along the width direction, and the refrigerator further comprises a power supply mechanism, the power supply mechanism comprises a power supply arranged between the outer shell and the inner container, and the first contact piece abuts against a first telescopic contact piece along the width direction and the second contact piece abuts against a second telescopic contact piece along the width direction. The refrigerator provided by the application is convenient to install and has a small gap between the layer plate mechanism and the inner container along the width direction of the refrigerator.
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Description

Technical Field

[0001] This application relates to the field of home appliance technology, and more particularly to a refrigerator. Background Technology

[0002] In recent years, as refrigerators have become increasingly common in households, users have higher and higher demands for their functionality. As a result, refrigerators with illuminated shelves are becoming more and more popular. Because illuminated shelves emit light that preserves food and sterilizes it, they can sterilize food while keeping it fresh, thus improving the user experience.

[0003] However, since the light-emitting shelf mechanism involves drawing power from inside the refrigerator to power the shelf mechanism, the shelf mechanism usually has telescopic contacts protruding from both ends along the width of the refrigerator for drawing power. However, when the shelf mechanism has telescopic contacts at both ends, interference can easily occur between the telescopic contacts and the inner liner during the installation of the shelf mechanism into the refrigerator storage compartment, making the installation inconvenient and not quick. On the other hand, after the shelf mechanism is installed, the gap between the shelf mechanism and the inner liner along the width of the refrigerator is also relatively large. Utility Model Content

[0004] This application discloses a refrigerator with a shelf mechanism that is easy to install and has a small gap between the shelf mechanism and the inner liner along the width of the refrigerator.

[0005] To achieve the above objectives, this application discloses a refrigerator, comprising:

[0006] The enclosure includes:

[0007] shell;

[0008] The inner liner is disposed inside the outer shell and forms a storage compartment. The inner liner includes a first inner liner wall and a second inner liner wall that are opposite each other along the width direction of the box body.

[0009] A refrigeration mechanism is disposed between the outer shell and the inner liner, and is used to provide cooling to the storage compartment;

[0010] Shelf mechanism, located within the storage room, includes:

[0011] Shelves;

[0012] The light panel assembly includes:

[0013] A light panel, which is disposed on the shelf and extends along the width direction;

[0014] A first contact element is connected to the lamp panel and located at one end of the lamp panel along the width direction;

[0015] The second contact member is connected to the lamp panel and is located at the other end of the lamp panel along the width direction;

[0016] The power supply mechanism includes:

[0017] A power source, wherein the power source is disposed between the outer shell and the inner liner;

[0018] A first power supply component, the first power supply component comprising:

[0019] A first telescopic contact is provided on the first inner wall in a telescopic manner along the width direction;

[0020] The second power supply component includes:

[0021] The second telescopic contact is telescopically disposed on the second inner wall along the width direction, and both the second telescopic contact and the first telescopic contact are connected to the power source.

[0022] The first contact abuts against the first telescopic contact along the width direction, and the second contact abuts against the second telescopic contact along the width direction.

[0023] Since the first contact abuts against the first telescopic contact along the width direction of the housing, and the second contact abuts against the second telescopic contact along the same width direction, and since both the first and second telescopic contacts are connected to the power supply, and the first and second contactes are respectively connected to both ends of the lamp board along the same width direction, the lamp board can be connected to the power supply. In this way, the power supply can supply power to the lamp board, thereby enabling the lamp beads on the lamp board to emit lighting, sterilization, or preservation light, thus achieving functions such as lighting, sterilization, or preservation.

[0024] Since the first telescopic contact is telescopically mounted on the first inner wall along the aforementioned width direction, and the second telescopic contact is telescopically mounted on the second inner wall along the same width direction, meaning both the first and second telescopic contacts are mounted on the inner wall, it eliminates the need to separately mount the first and second telescopic contacts at both ends of the light panel along the aforementioned width direction. Mounting the first and second telescopic contacts on the inner wall, compared to mounting them separately at both ends of the light panel, simplifies the overall structure of the shelf mechanism and reduces its cost. Furthermore, it reduces the possibility of interference between the shelf mechanism and the inner wall during installation in the storage compartment, making installation easier and faster. Additionally, the gap between the shelf and the inner wall along the aforementioned width direction can be designed to be smaller, thus preventing food from falling into the gap.

[0025] On the other hand, it can also improve the versatility of the shelf mechanism to a certain extent. For example, the shelf mechanism can be supported on the ribs on the inner liner or on the cantilever bracket on the inner liner, making it more versatile.

[0026] Optionally, the first power supply component further includes:

[0027] The first conductive element is located between the first inner wall and the outer shell and extends along the height direction of the box. The first telescopic contact includes a plurality of first telescopic contacts, which are arranged in an array at intervals along the height direction of the box on the first conductive element. The first conductive element is connected to the power source.

[0028] Since the first conductive element is connected to the power supply, when multiple first telescopic contacts are arranged in an array at intervals along the height direction of the housing on the first conductive element, multiple first telescopic contacts can be connected to the power supply simultaneously through the first conductive element. In this way, it is not necessary to connect multiple first telescopic contacts to the power supply independently, thereby simplifying the wiring difficulty of the first power supply component.

[0029] When there are multiple first telescopic contacts, since the multiple first telescopic contacts are arranged in an array at intervals along the height direction of the cabinet, when each first telescopic contact is provided with a shelf mechanism, the multiple shelf mechanisms can be arranged in an array at intervals along the height direction of the cabinet, so that the number of shelf mechanisms of the refrigerator is more, and thus the number of shelves is more, so that more food can be placed through multiple shelves.

[0030] Optionally, the first power supply component further includes:

[0031] A plurality of first conductive elastic elements are provided, each of which corresponds to a plurality of first telescopic contacts, and the first conductive elastic elements are connected between the first conductive elements and the first telescopic contacts.

[0032] Since the first conductive elastic element is connected between the first conductive element and the first telescopic contact, when the first telescopic contact is subjected to an external force from the first contact element along the width direction, the first conductive elastic element can be compressed and deformed, thereby achieving the purpose of making the first telescopic contact extendable and retractable in the first inner wall along the width direction.

[0033] In addition, since the first conductive elastic element is conductive, in addition to enabling the first telescopic contact to be telescopically disposed on the first inner wall along the aforementioned width direction, the first conductive elastic element can also serve the purpose of electrically connecting the first telescopic contact to the first conductive element. The first conductive elastic element has multiple uses and its structural design is very ingenious.

[0034] In addition, the first conductive elastic element can automatically drive the first telescopic contact to return to its initial position after the external force on the first telescopic contact disappears, without the need for manual intervention by the user, thus achieving a higher degree of automation.

[0035] Optionally, the first power supply component further includes:

[0036] A first box body is disposed between the first inner wall and the outer shell, and the first conductive component is located inside the first box body.

[0037] A first through hole is provided on the side of the first box body near the first inner liner wall, and a second through hole is provided on the first inner liner wall corresponding to the first through hole. The first telescopic contact passes through the first through hole and the second through hole and protrudes from the first inner liner wall.

[0038] Since the first telescopic contact passes through the first through hole and the second through hole and protrudes from the first inner wall, the first through hole and the second through hole can guide the telescopic movement of the first telescopic contact along the width of the box, making the movement of the first telescopic contact along the width of the box smoother and more stable.

[0039] Furthermore, since the first conductive component is located inside the first housing, on the one hand, the first housing can protect the first conductive component and the first telescopic contact, making the environment in which the first conductive component and the first telescopic contact are located safer. On the other hand, the first housing can house the first conductive component and the first telescopic contact, allowing the first housing, the first conductive component, and the first telescopic contact to form a relatively independent structure with a higher degree of modularity.

[0040] Optionally, the second power supply component further includes:

[0041] The second conductive element is located between the second inner wall and the outer shell and extends along the height direction of the box. The second telescopic contact includes multiple second telescopic contacts, which are arranged in an array at intervals along the height direction of the box on the second conductive element. The second conductive element is connected to the power supply, and the multiple second telescopic contacts correspond one-to-one with the multiple first telescopic contacts.

[0042] Optionally, the first contact element is detachably snapped onto one end of the lamp panel along the width direction.

[0043] Since the first contact is detachably snapped onto one end of the lamp panel along the aforementioned width direction, the purpose of quickly snapping the first contact onto or removing it from the lamp panel can be achieved, thereby improving the assembly and disassembly efficiency of the entire lamp panel assembly to a certain extent.

[0044] Optionally, the first contact includes:

[0045] A snap-fit ​​portion, wherein the snap-fit ​​portion surrounds and forms a snap-fit ​​hole, and one end of the lamp panel along the width direction is inserted into the snap-fit ​​hole; and...

[0046] The contact portion is connected to the snap-fit ​​portion and is located on the side of the lamp panel opposite to the second contact member along the width direction, and the contact portion abuts against the first telescopic contact.

[0047] Because the locking part has locking holes, when it is necessary to lock one end of the lamp board along the width direction to the locking part, simply insert one end of the lamp board along the width direction into the locking hole to achieve the purpose of locking one end of the lamp board along the width direction to the locking part, which is very convenient and quick.

[0048] In addition, since the contact part is connected to the snap-fit ​​part and is located on the side of the lamp panel away from the second contact member along the width direction, and the contact part abuts against the first telescopic contact, the contact part can separate the first telescopic contact from the lamp panel, thereby avoiding the situation where the lamp panel is damaged due to collision or friction between the first telescopic contact and the lamp panel.

[0049] Optionally, the lamp panel is provided with a slot, and the wall of the slot is provided with an elastic buckle, which engages with the slot.

[0050] Because the elastic buckle engages in the slot, the cooperation between the elastic buckle and the slot can prevent the first contact element from falling abnormally off the light panel.

[0051] When it is necessary to remove the first contact from the lamp board, the elastic clip can be moved and disengaged from the slot, thus removing the first contact from the lamp board. This is very convenient.

[0052] Optionally, the light panel assembly further includes:

[0053] The decorative strip, the inner liner also includes a third inner liner wall connected between the first inner liner wall and the second inner liner wall, the decorative strip is sleeved on the end of the shelf opposite to the third inner liner wall, and the light panel is wrapped inside the decorative strip.

[0054] Because the light panel is encased within the decorative strip, the strip serves two purposes: firstly, it protects the light panel, making its environment safer and more durable; secondly, it decorates the shelf, enhancing its appearance to some extent.

[0055] Optionally, the orientation of the LED beads on the lamp panel is perpendicular to the surface of the shelf.

[0056] By aligning the LED beads on the light panel perpendicular to the shelf surface, the light emitted by the LED beads can be diffused when it hits the shelf, making the shelf look cooler under the lighting. On the other hand, it also makes it difficult for users to see the LED beads, thus enhancing the refrigerator's premium feel while avoiding dizziness.

[0057] Compared with the prior art, the beneficial effects of this application are as follows:

[0058] In this application, since the first contact abuts against the first telescopic contact along the width direction of the housing, and the second contact abuts against the second telescopic contact along the same width direction, and since both the first and second telescopic contacts are connected to the power supply, and the first and second contactes are respectively connected to both ends of the lamp board along the same width direction, the lamp board can be connected to the power supply. In this way, the power supply can supply power to the lamp board, thereby enabling the lamp beads on the lamp board to emit lighting, sterilization, or preservation light, and thus realize functions such as lighting, sterilization, or preservation.

[0059] Since the first telescopic contact is telescopically mounted on the first inner wall along the aforementioned width direction, and the second telescopic contact is telescopically mounted on the second inner wall along the same width direction, meaning both the first and second telescopic contacts are mounted on the inner wall, it eliminates the need to separately mount the first and second telescopic contacts at both ends of the light panel along the aforementioned width direction. Mounting the first and second telescopic contacts on the inner wall, compared to mounting them separately at both ends of the light panel, simplifies the overall structure of the shelf mechanism and reduces its cost. Furthermore, it reduces the possibility of interference between the shelf mechanism and the inner wall during installation in the storage compartment, making installation easier and faster. Additionally, the gap between the shelf and the inner wall along the aforementioned width direction can be designed to be smaller, thus preventing food from falling into the gap.

[0060] On the other hand, it can also improve the versatility of the shelf mechanism to a certain extent. For example, the shelf mechanism can be supported on the ribs on the inner liner or on the cantilever bracket on the inner liner, making it more versatile. Attached Figure Description

[0061] To more clearly illustrate the technical solutions in the embodiments of this application, the drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0062] Figure 1 This is a schematic diagram of the structure of a refrigerator provided in one embodiment of this application;

[0063] Figure 2 yes Figure 1 A structural diagram of a refrigerator with some parts omitted;

[0064] Figure 3 yes Figure 2 A structural diagram of a refrigerator from another perspective;

[0065] Figure 4 yes Figure 3 A cross-sectional view of the refrigerator at position AA;

[0066] Figure 5 yes Figure 3 Schematic diagram of the middle layer plate mechanism;

[0067] Figure 6 yes Figure 5 An exploded view of the middle layer plate mechanism;

[0068] Figure 7 yes Figure 2 A structural diagram of a refrigerator with some parts omitted;

[0069] Figure 8 yes Figure 4 A magnified view of the refrigerator at position B in the image;

[0070] Figure 9 yes Figure 7 A structural diagram of a refrigerator from another perspective;

[0071] Figure 10 yes Figure 4 A magnified view of the refrigerator at position C in the image;

[0072] Figure 11 yes Figure 2 Structural diagram of the power supply mechanism and the shelf mechanism;

[0073] Figure 12 yes Figure 11 A magnified view of a section at position D in the middle;

[0074] Figure 13 yes Figure 11 A magnified view of a section at position E in the middle;

[0075] Figure 14 yes Figure 7 A schematic diagram of the structure of the first power supply component;

[0076] Figure 15 yes Figure 14 An exploded view of the first power supply component in the middle;

[0077] Figure 16 yes Figure 2 A schematic diagram of the refrigerator without the shelf mechanism;

[0078] Figure 17 yes Figure 9 An exploded view of the second power supply component in the middle;

[0079] Figure 18 yes Figure 6 Schematic diagram of the central light panel;

[0080] Figure 19 yes Figure 18 An exploded view of the center light panel;

[0081] Figure 20 yes Figure 5 A cross-sectional view of the middle layer plate mechanism.

[0082] Explanation of reference numerals in the attached figures:

[0083] 1-Box body; 11-Outer shell; 12-Inner liner; 120-Storage compartment; 121-First inner liner wall; 1211-Second through hole; 122-Second inner liner wall; 123-Third inner liner wall; 13-Opening; 14-Door;

[0084] 2-Refrigeration mechanism;

[0085] 3-Layer plate mechanism; 31-Layer plate; 32-Lamp panel assembly; 321-Lamp panel; 3211-Slot; 3212-Lamp bead; 322-First contact element; 3221-Snap-fit ​​part; 3221a-Snap-fit ​​hole; 3221b-Elastic buckle; 3222-Contact part; 323-Second contact element; 324-Decorative strip; 3241-Main body; 3242-Bottom cover; 3243-First end cover; 3244-Second end cover;

[0086] 4-Power supply mechanism; 41-Power supply; 42-First power supply component; 421-First telescopic contact; 422-First conductive element; 423-First conductive elastic element; 424-First housing; 4241-First through hole; 43-Second power supply component; 431-Second telescopic contact; 432-Second conductive element; 433-Second conductive elastic element; 434-Second housing;

[0087] 100 - Refrigerator. Detailed Implementation

[0088] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.

[0089] In this application, the terms "upper," "lower," "left," "right," "front," "rear," "top," "bottom," "inner," "outer," "middle," "vertical," "horizontal," "lateral," and "longitudinal" indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. These terms are primarily for the purpose of better describing this application and its embodiments, and are not intended to limit the indicated device, element, or component to having a specific orientation, or to be constructed and operated in a specific orientation.

[0090] Furthermore, in addition to indicating location or positional relationship, some of the aforementioned terms may also have other meanings. For example, the term "above" may also be used in some cases to indicate a certain dependency or connection relationship. Those skilled in the art can understand the specific meaning of these terms in this application based on the specific circumstances.

[0091] Furthermore, the terms "installation," "setup," "equipped with," "connection," and "linked" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral structure; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium, or an internal connection between two devices, components, or parts. Those skilled in the art can understand the specific meaning of these terms in this application based on the specific circumstances.

[0092] Furthermore, the terms "first," "second," etc., are primarily used to distinguish different devices, elements, or components (which may be the same or different in specific type and construction), and are not intended to indicate or imply the relative importance or quantity of the indicated devices, elements, or components. Unless otherwise stated, "a plurality of" means two or more.

[0093] Before explaining the technical solution of this application, the background technology of this application shall be explained first.

[0094] In recent years, as refrigerators have become increasingly common in households, users have higher and higher demands for their functionality. As a result, refrigerators with illuminated shelves are becoming more and more popular. Because illuminated shelves emit light that preserves food and sterilizes it, they can sterilize food while keeping it fresh, thus improving the user experience.

[0095] However, since the light-emitting shelf mechanism involves drawing power from inside the refrigerator to power the shelf mechanism, the two ends of the shelf mechanism along the width of the refrigerator usually have telescopic contacts protruding from the shelf mechanism for drawing power. However, when the shelf mechanism has telescopic contacts at both ends, interference can easily occur between the telescopic contacts and the inner liner during the installation of the shelf mechanism into the refrigerator compartment, making installation inconvenient and inefficient. On the other hand, after the shelf mechanism is installed, the gap between the shelf mechanism and the inner liner along the width of the refrigerator is also relatively large. Based on this, this application provides a new refrigerator to solve the above problems.

[0096] The technical solution of this application will be described below with reference to specific embodiments and accompanying drawings.

[0097] Figure 1 This is a schematic diagram of the structure of a refrigerator 100 provided in one embodiment of this application. Figure 2 yes Figure 1 The structural diagram of refrigerator 100 with some parts omitted.

[0098] See Figure 1 and Figure 2 The refrigerator 100 includes the cabinet 1.

[0099] The material of the aforementioned box 1 can be metal or plastic, etc., and this embodiment does not limit this. The shape of the box 1 can be a cuboid or a cube, etc., and this embodiment does not limit this.

[0100] Understandably, to facilitate the placement and removal of food, the box body 1 may have an opening 13, and a door 14 may be provided at the opening 13. The opening 13 can be opened or closed by rotating the door 14. In this way, when it is necessary to place food into the box body 1 or take food out of the box body 1, the opening 13 can be opened by rotating the door 14.

[0101] The number of the aforementioned door bodies 14 can be as follows: Figure 1 The two shown are examples of this embodiment. Of course, the number of doors 14 can also be one or other possible numbers, and this embodiment does not limit this.

[0102] When there are two doors 14, the refrigerator 100 can be called a double-door refrigerator; when there is only one door 14, the refrigerator 100 can be called a single-door refrigerator.

[0103] For ease of description, let's take the cabinet 1 as a cuboid as an example. When the refrigerator 100 is placed on the ground, the vertical direction of the cabinet 1 ( Figure 1 The Z-axis direction can be understood as the height direction of box 1, and the direction perpendicular to the side where opening 13 is located. Figure 1 The Y-axis direction can be understood as the depth direction of box 1. When the user faces the side where opening 13 is located, the left and right directions of box 1 ( Figure 1 The X-axis direction can be understood as the width direction of box 1.

[0104] In some embodiments, see Figure 2 , Figure 3 and Figure 4 , Figure 3 yes Figure 2 A structural schematic diagram of refrigerator 100 from another perspective. Figure 4 yes Figure 3 Cross-sectional view of refrigerator 100 at position AA.

[0105] The box 1 includes an outer shell 11 and an inner liner 12, wherein the inner liner 12 is disposed inside the outer shell 11, and the inner liner 12 encloses to form a storage compartment 120. The inner liner 12 includes a storage compartment 120 along the width direction of the box 1. Figure 4 The first inner wall 121 and the second inner wall 122 are opposite each other in the X-axis direction.

[0106] The outer shell 11 can be made of metal or plastic, etc., and this embodiment does not limit the material. The inner liner 12 can also be made of metal or plastic, etc., and this embodiment does not limit the material.

[0107] The storage chamber 120 formed by the inner liner 12 can be used as a space for storing food. Specifically, the storage chamber 120 can be rectangular or the like, and it can also be divided into multiple spaces to store different kinds of food in different categories.

[0108] In some embodiments, see Figure 2 The refrigerator 100 also includes a refrigeration mechanism 2, which is located between the outer shell 11 and the inner liner 12 and is used to provide cooling capacity to the storage compartment 120.

[0109] Since the refrigeration mechanism 2 can provide cooling capacity to the storage compartment 120, when the refrigeration mechanism 2 is installed between the outer shell 11 and the inner liner 12, the refrigeration mechanism 2 can cool down the food in the storage compartment 120, so that the food is in a low-temperature environment, thereby achieving the purpose of preserving the food.

[0110] The aforementioned refrigeration mechanism 2 may include a compressor, a condenser, and an evaporator, etc. The cooperation between the compressor, condenser, and evaporator can achieve the purpose of providing cooling capacity to the storage room 120.

[0111] In some embodiments, see Figure 3 and Figure 5 , Figure 5 yes Figure 3 The middle shelf mechanism 3 is shown in the schematic diagram. The refrigerator 100 also includes a shelf mechanism 3, which is located in the storage compartment 120. The shelf mechanism 3 includes a shelf 31.

[0112] The material of the shelf 31 can be glass or acrylic, etc., and this embodiment does not limit it.

[0113] When the shelf 31 is made of glass or acrylic, it can be transparent, which can enhance its appearance.

[0114] In some embodiments, see Figure 5 and Figure 6 , Figure 6 yes Figure 5 An exploded view of the middle layer plate mechanism 3, the layer plate mechanism 3 further includes a lamp plate assembly 32, the lamp plate assembly 32 includes a lamp plate 321, the lamp plate 321 is disposed on the layer plate 31 and along the width direction ( Figure 6 Extending along the X-axis.

[0115] By setting a light panel 321 on the shelf 31, on the one hand, the light panel 321 can provide lighting for the storage room 120, and on the other hand, the light emitted by the light panel 321 can also decorate the shelf 31, making the shelf 31 more beautiful and cool.

[0116] See Figure 6 The lamp beads 3212 on the lamp panel 321 can be lamp beads that can emit illumination light, lamp beads that can emit germicidal light, or lamp beads that can emit preservative light, etc. This embodiment does not limit this.

[0117] The number of the aforementioned LED beads 3212 can be multiple, and the multiple LED beads 3212 are arranged in an array along the extension direction of the lamp panel 321. In this way, the lighting, sterilization and preservation functions of the lamp panel 321 can be better.

[0118] In some embodiments, see Figure 6 The lamp panel assembly 32 also includes a first contact member 322, which is connected to the lamp panel 321 and extends along the aforementioned width direction. Figure 6 The X-axis direction is located at one end of the lamp panel 321.

[0119] The first contact 322 can be a conductor, serving as the negative electrode of the lamp panel 321. Specifically, the first contact 322 can be a metal spring or the like, but this embodiment does not limit this.

[0120] In some embodiments, see Figure 6 The lamp panel assembly 32 also includes a second contact 323, which is connected to the lamp panel 321 and extends along the aforementioned width direction. Figure 6 The X-axis direction is located at the other end of the lamp panel 321.

[0121] Similar to the first contact 322, the second contact 323 can also be a conductor, serving as the positive electrode of the lamp plate 321. Specifically, the second contact 323 can also be a metal spring or the like, but this embodiment does not limit this.

[0122] In some embodiments, see Figure 2 The refrigerator 100 also includes a power supply mechanism 4, which includes a power supply 41 located between the outer shell 11 and the inner liner 12.

[0123] The power supply 41 can be a power connector connected to the municipal power supply. Of course, the power supply 41 can be a battery or the like, but this embodiment does not limit it.

[0124] In some embodiments, see Figure 7 and Figure 8 , Figure 7 yes Figure 2 The structural diagram of refrigerator 100 with some parts omitted. Figure 8 yes Figure 4The enlarged view of the refrigerator 100 at position B shows that the power supply mechanism 4 also includes a first power supply component 42, which includes a first telescopic contact 421. The first telescopic contact 421 extends along the aforementioned width direction ( Figure 7 The first telescopic contact 421 is telescopically disposed on the first inner wall 121 in the X-axis direction, and the first telescopic contact 421 is connected to the power supply 41.

[0125] The first telescopic contact 421 can be telescopically disposed on the first inner wall 121 by means of a spring. Of course, the first telescopic contact 421 can also be telescopically disposed on the first inner wall 121 in other possible ways. This embodiment does not limit this.

[0126] Since the first telescopic contact 421 is connected to the power supply 41, the first telescopic contact 421 can act as the positive terminal of the power supply 41.

[0127] In some embodiments, see Figure 9 and Figure 10 , Figure 9 yes Figure 7 A structural schematic diagram of refrigerator 100 from another perspective. Figure 10 yes Figure 4 The refrigerator 100 is shown in a partial enlarged view at position C. The power supply mechanism 4 also includes a second power supply component 43. The second power supply component 43 includes a second telescopic contact 431. The second telescopic contact 431 is telescopically disposed on the second inner wall 122 along the width direction and is connected to the power supply 41.

[0128] The second telescopic contact 431 can be telescopically disposed on the second inner wall 122 by means of a spring. Of course, the second telescopic contact 431 can also be telescopically disposed on the second inner wall 122 in other possible ways. This embodiment does not limit this.

[0129] Since the second telescopic contact 431 is connected to the power supply 41, the second telescopic contact 431 can act as the negative terminal of the power supply 41.

[0130] In some embodiments, see Figure 11 , Figure 12 and Figure 13 , Figure 11 yes Figure 2 A schematic diagram of the power supply mechanism 4 and the shelf mechanism 3. Figure 12 yes Figure 11 A magnified view of a portion of the area at position D. Figure 13 yes Figure 11 A partial enlarged view of position E, showing the first contact element 322 along the aforementioned width direction. Figure 11 The second contact 323 (in the X-axis direction) abuts against the first telescopic contact 421, and the second contact 323 is along the aforementioned width direction (in the X-axis direction) Figure 11 (in the X-axis direction) abuts against the second telescopic contact 431.

[0131] Since the first contact 322 abuts against the first telescopic contact 421 along the width direction of the housing 1, and since the first telescopic contact 421 is along the aforementioned width direction ( Figure 7 The first contact 322 is telescopically disposed on the first inner wall 121 in the X-axis direction, so that the contact between the first contact 322 and the first telescopic contact 421 is relatively tight, thereby ensuring the reliability of the electrical connection between the first contact 322 and the first telescopic contact 421.

[0132] Similarly, since the second contact 323 abuts against the second telescopic contact 431 along the aforementioned width direction, and since the second telescopic contact 431 abuts against the second telescopic contact 431 along the aforementioned width direction ( Figure 7 The second contact 323 is telescopically disposed on the first inner wall 121 in the X-axis direction, so that the contact between the second contact 323 and the second telescopic contact 431 is relatively tight, thereby ensuring the reliability of the electrical connection between the second contact 323 and the second telescopic contact 431.

[0133] With the first contact 322 abutting against the first telescopic contact 421 along the aforementioned width direction, and the second contact 323 abutting against the second telescopic contact 431 along the aforementioned width direction, and since both the first telescopic contact 421 and the second telescopic contact 431 are connected to the power supply 41, and the first contact 322 and the second contact 323 are respectively connected to both ends of the lamp board 321 along the aforementioned width direction, the lamp board 321 can be connected to the power supply 41. In this way, the power supply 41 can supply power to the lamp board 321, thereby enabling the lamp beads 3212 on the lamp board 321 to emit lighting, sterilization, or preservation light, and thus realize functions such as lighting, sterilization, or preservation.

[0134] Since the first telescopic contact 421 is telescopically disposed on the first inner wall 121 along the aforementioned width direction, and the second telescopic contact 431 is telescopically disposed on the second inner wall 122 along the aforementioned width direction, that is, both the first telescopic contact 421 and the second telescopic contact 431 are disposed on the inner wall 12. This eliminates the need to separately dispose of the first telescopic contact 421 and the second telescopic contact 431 at both ends of the light panel 321 along the aforementioned width direction. Compared to disposing of the first telescopic contact 421 and the second telescopic contact 431 at each end of the light panel 321, this simplifies the structure of the entire shelf mechanism 3 and reduces its cost. Furthermore, it reduces the possibility of interference between the shelf mechanism 3 and the inner wall 12 during installation in the storage compartment 120, making installation of the shelf mechanism 3 more convenient and quick. Additionally, the gap between the shelf 31 and the inner wall 12 along the aforementioned width direction can be designed to be smaller, thereby preventing food from falling into the gap.

[0135] On the other hand, it can also improve the versatility of the shelf mechanism 3 to a certain extent. For example, the shelf mechanism 3 can be supported on the ribs on the inner liner 12 or on the cantilever bracket on the inner liner 12, thus improving its versatility.

[0136] In some embodiments, see Figure 2 and Figure 4 The refrigerator 100 includes a cabinet 1, a refrigeration mechanism 2, a shelf mechanism 3, and a power supply mechanism 4. The cabinet 1 includes an outer shell 11 and an inner liner 12. The inner liner 12 is disposed inside the outer shell 11 and encloses a storage compartment 120. The inner liner 12 includes a first inner liner wall 121 and a second inner liner wall 122 that are opposite each other along the width direction of the cabinet 1. The refrigeration mechanism 2 is disposed between the outer shell 11 and the inner liner 12 and is used to provide cooling capacity to the storage compartment 120.

[0137] See Figure 2 and Figure 6 The shelf mechanism 3 is located in the storage room 120 and includes a shelf 31 and a light panel assembly 32. The light panel assembly 32 includes a light panel 321, a first contact 322 and a second contact 323. The light panel 321 is disposed on the shelf 31 and extends along the width direction. The first contact 322 is connected to the light panel 321 and is located at one end of the light panel 321 along the width direction. The second contact 323 is connected to the light panel 321 and is located at the other end of the light panel 321 along the width direction.

[0138] See Figure 11The power supply mechanism 4 includes a power supply 41, a first power supply component 42, and a second power supply component 43. The power supply 41 is disposed between the outer shell 11 and the inner liner 12. The first power supply component 42 includes a first telescopic contact 421, which is telescopically disposed on the first inner liner wall 121 along the width direction. The second power supply component 43 includes a second telescopic contact 431, which is telescopically disposed on the second inner liner wall 122 along the width direction. Both the second telescopic contact 431 and the first telescopic contact 421 are connected to the power supply 41.

[0139] The first contact 322 abuts against the first telescopic contact 421 along the aforementioned width direction, and the second contact 323 abuts against the second telescopic contact 431 along the aforementioned width direction.

[0140] In this embodiment, since the first contact 322 abuts against the first telescopic contact 421 along the width direction of the housing 1, and the second contact 323 abuts against the second telescopic contact 431 along the same width direction, and since both the first telescopic contact 421 and the second telescopic contact 431 are connected to the power supply 41, and the first contact 322 and the second contact 323 are respectively connected to both ends of the lamp board 321 along the same width direction, the lamp board 321 can be connected to the power supply 41. In this way, the power supply 41 can supply power to the lamp board 321, thereby enabling the lamp beads 3212 on the lamp board 321 to emit lighting, sterilization, or preservation light, and thus realize functions such as lighting, sterilization, or preservation.

[0141] Since the first telescopic contact 421 is telescopically disposed on the first inner wall 121 along the aforementioned width direction, and the second telescopic contact 431 is telescopically disposed on the second inner wall 122 along the aforementioned width direction, that is, both the first telescopic contact 421 and the second telescopic contact 431 are disposed on the inner wall 12. In this way, it is not necessary to separately dispose of the first telescopic contact 421 and the second telescopic contact 431 at both ends of the light panel 321 along the aforementioned width direction. Compared with disposing of the first telescopic contact 421 and the second telescopic contact 431 at both ends of the light panel 321, disposing of the first telescopic contact 421 and the second telescopic contact 431 on the inner wall 12 can simplify the structure of the entire shelf mechanism 3 and reduce the cost of the shelf mechanism 3. On the other hand, it can reduce the possibility of interference between the shelf mechanism 3 and the inner wall 12 during the installation of the shelf mechanism 3 in the storage compartment 120, making the installation of the shelf mechanism 3 convenient and quick. On the other hand, the gap between the shelf 31 and the inner liner 12 along the aforementioned width direction can be designed to be smaller, thereby preventing food from falling into the gap.

[0142] On the other hand, it can also improve the versatility of the shelf mechanism 3 to a certain extent. For example, the shelf mechanism 3 can be supported on the ribs on the inner liner 12 or on the cantilever bracket on the inner liner 12, thus improving its versatility.

[0143] In some embodiments, see Figure 7 , Figure 14 and Figure 15 , Figure 14 yes Figure 7 A schematic diagram of the structure of the first power supply component. Figure 15 yes Figure 14 An exploded view of the first power supply component 42 shows that the first power supply component 42 further includes a first conductive element 422, which is located between the first inner wall 121 and the outer shell 11 and extends along the height direction of the housing 1. Multiple first telescopic contacts 421 are included, and the multiple first telescopic contacts 421 extend along the height direction of the housing 1. Figure 7 The first conductive element 422 is arranged in a spaced array along the Z-axis, and the first conductive element 422 is connected to the power supply 41.

[0144] Since the first conductive element 422 is connected to the power supply 41, when multiple first telescopic contacts 421 are arranged in an array at intervals along the height direction of the housing 1 on the first conductive element 422, multiple first telescopic contacts 421 can be connected to the power supply 41 simultaneously through the first conductive element 422. In this way, it is not necessary to connect multiple first telescopic contacts 421 to the power supply 41 independently, thereby simplifying the wiring difficulty of the first power supply component 42.

[0145] The first conductive element 422 can be a conductive metal plate or other possible structures, and this embodiment does not limit it.

[0146] The number of the first telescopic contact 421 can be two, three, or four, etc., and this embodiment does not limit this.

[0147] When there are multiple first telescopic contacts 421, since the multiple first telescopic contacts 421 are along the height direction of the housing 1 ( Figure 7 The shelves are arranged in an array at intervals along the Z-axis direction. Therefore, when each first telescopic contact 421 is provided with a shelf mechanism 3, multiple shelf mechanisms 3 can be arranged along the height direction of the housing 1. Figure 7 The refrigerator 100 has a larger number of shelf mechanisms 3 by arranging them in a spaced array along the Z-axis, which in turn increases the number of shelves 31, allowing more food to be placed on multiple shelves 31.

[0148] In some embodiments, see Figure 15 The first power supply component 42 also includes a plurality of first conductive elastic elements 423, each of which corresponds to a plurality of first telescopic contacts 421. The first conductive elastic elements 423 are connected between the first conductive elements 422 and the first telescopic contacts 421.

[0149] Since the first conductive elastic element 423 is connected between the first conductive element 422 and the first telescopic contact 421, when the first telescopic contact 421 is subjected to an external force from the first contact element 322 along the width direction, the first conductive elastic element 423 can be compressed and deformed, thereby achieving the purpose of making the first telescopic contact 421 telescopically disposed on the first inner wall 121 along the width direction.

[0150] In addition, since the first conductive elastic element 423 is conductive, in addition to enabling the first telescopic contact 421 to be telescopically disposed on the first inner wall 121 along the aforementioned width direction, the first conductive elastic element 423 can also electrically connect the first telescopic contact 421 to the first conductive element 422. The first conductive elastic element 423 has multiple uses and its structural design is very ingenious.

[0151] In addition, the first conductive elastic element 423 can automatically drive the first telescopic contact 421 to return to its initial position after the external force on the first telescopic contact 421 disappears, without the need for manual operation by the user, thus achieving a higher degree of automation.

[0152] In some embodiments, see Figure 14 , Figure 15 and Figure 16 , Figure 16 yes Figure 2 The schematic diagram of the refrigerator 100 without the shelf mechanism 3 is shown. The first power supply component 42 also includes a first box 424, which is disposed between the first inner wall 121 and the outer shell 11. The first conductive element 422 is located inside the first box 424.

[0153] A first through hole 4241 is provided on the side of the first box body 424 near the first inner wall 121. A second through hole 1211 is provided on the first inner wall 121 corresponding to the first through hole 4241. The first telescopic contact 421 passes through the first through hole 4241 and the second through hole 1211 and is exposed on the first inner wall 121.

[0154] Since the first telescopic contact 421 passes through the first through hole 4241 and the second through hole 1211 and is exposed on the first inner wall 121, the first through hole 4241 and the second through hole 1211 can guide the telescopic movement of the first telescopic contact 421 along the width direction of the housing 1, making the movement of the first telescopic contact 421 along the width direction of the housing 1 smoother and more stable.

[0155] Furthermore, since the first conductive element 422 is located inside the first housing 424, on the one hand, the first housing 424 can protect the first conductive element 422 and the first telescopic contact 421, making the environment in which the first conductive element 422 and the first telescopic contact 421 are located safer. On the other hand, the first housing 424 can house the first conductive element 422 and the first telescopic contact 421, so that the first housing 424, the first conductive element 422, and the first telescopic contact 421 can form a relatively independent structure with a higher degree of modularity.

[0156] In some embodiments, see Figure 9 and Figure 17 , Figure 17 yes Figure 9 An exploded view of the second power supply component 43 shows that the second power supply component 43 also includes a second conductive element 432, which is located between the second inner wall 122 and the outer shell 11 and extends along the height direction of the housing 1. A plurality of second telescopic contacts 431 are included, and the plurality of second telescopic contacts 431 are arranged in an array at intervals along the height direction of the housing 1 on the second conductive element 432. The second conductive element 432 is connected to the power supply 41, and the plurality of second telescopic contacts 431 correspond one-to-one with the plurality of first telescopic contacts 421.

[0157] The structure of the second conductive element 432 can be the same as or similar to that of the first conductive element 422 described above. For details, please refer to the description of the first conductive element 422 in the above embodiments. This embodiment will not repeat the description here.

[0158] Further, see Figure 17 The second power supply component 43 may also include a second housing 434 and a plurality of second conductive elastic elements 433. The second housing 434 may have the same or similar structure as the first housing 424 described above, and the structure of the second conductive elastic elements 433 may have the same or similar structure as the first conductive elastic element 423 described above. This embodiment will not be described in detail here.

[0159] In some embodiments, see Figure 18 and Figure 19 , Figure 18 yes Figure 6 A structural schematic diagram of the central lamp panel 321. Figure 19 yes Figure 18 An exploded view of the central lamp plate 321 shows that the first contact member 322 is detachably snapped onto one end of the lamp plate 321 along the aforementioned width direction.

[0160] Since the first contact 322 is detachably snapped onto one end of the lamp panel 321 along the aforementioned width direction, the purpose of quickly snapping the first contact 322 onto or removing it from the lamp panel 321 can be achieved, thereby improving the assembly and disassembly efficiency of the entire lamp panel assembly 32 to a certain extent.

[0161] Similarly, see Figure 18 The second contact 323 is detachably snapped onto the other end of the lamp panel 321 along the width direction.

[0162] There are multiple ways to detachably snap the first contact 322 onto one end of the lamp plate 321 along the width direction. In one possible implementation, see [link to relevant documentation]. Figure 19 The first contact 322 includes a snap-fit ​​portion 3221 and a contact portion 3222. The snap-fit ​​portion 3221 forms a snap-fit ​​hole 3221a. One end of the lamp plate 321 along the width direction is inserted into the snap-fit ​​hole 3221a. The contact portion 3222 is connected to the snap-fit ​​portion 3221 and is located on the side of the lamp plate 321 away from the second contact 323 along the width direction. The contact portion 3222 abuts against the first telescopic contact 421.

[0163] Since the latching part 3221 surrounds and forms a latching hole 3221a, when it is necessary to latch one end of the lamp board 321 along the width direction to the latching part 3221, it is only necessary to insert one end of the lamp board 321 along the width direction into the latching hole 3221a to achieve the purpose of latching one end of the lamp board 321 along the width direction to the latching part 3221, which is very convenient and quick.

[0164] In addition, since the contact portion 3222 is connected to the snap-fit ​​portion 3221 and is located on the side of the lamp panel 321 away from the second contact member 323 in the width direction, and the contact portion 3222 abuts against the first telescopic contact 421, the contact portion 3222 can separate the first telescopic contact 421 from the lamp panel 321, thereby avoiding the situation where the first telescopic contact 421 collides or rubs with the lamp panel 321, causing damage to the lamp panel 321.

[0165] In some embodiments, participate Figure 19 The lamp panel 321 is provided with a slot 3211, and the wall of the slot 3221a is provided with an elastic buckle 3221b, which is engaged with the slot 3211.

[0166] Since the elastic buckle 3221b is engaged in the slot 3211, the cooperation between the elastic buckle 3221b and the slot 3211 can prevent the first contact 322 from falling abnormally off the lamp board 321.

[0167] When it is necessary to remove the first contact 322 from the lamp board 321, the elastic buckle 3221b can be moved and disengaged from the slot 3211, thus achieving the purpose of removing the first contact 322 from the lamp board 321, which is very convenient.

[0168] It should be noted that the structure of the second contact 323 may be the same as or similar to the structure of the first contact 322 described above, and this embodiment does not limit this.

[0169] In some embodiments, see Figure 6 and Figure 20 , Figure 20 yes Figure 5 A cross-sectional view of the middle layer plate mechanism 3 shows that the light panel assembly 32 also includes a decorative strip 324, and the inner liner 12 also includes a third inner liner wall 123 connected between the first inner liner wall 121 and the second inner liner wall 122. The decorative strip 324 is sleeved on the end of the layer plate 31 opposite to the third inner liner wall 123. Figure 2 (The rear end of the middle layer plate 31), the light panel 321 is wrapped inside the decorative strip 324.

[0170] Since the light panel 321 is enclosed within the decorative strip 324, the decorative strip 324 serves two purposes: firstly, it protects the light panel 321, making its environment safer and more durable; secondly, it decorates the shelf 31, thereby enhancing its appearance to some extent.

[0171] In some embodiments, see Figure 6 and Figure 20 The decorative strip 324 includes a main body 3241, a bottom cover 3242, a first end cover 3243 and a second end cover 3244. The main body 3241 forms a receiving cavity with an installation opening. The lamp panel 321 is housed in the receiving cavity. The bottom cover 3242 is placed on the installation opening. The first end cover 3243 and the second end cover 3244 are respectively placed on both ends of the main body 3241 along the width direction of the housing 1.

[0172] When it is necessary to install the lamp panel 321 into the receiving cavity, firstly, the bottom cover 3242 can be removed from the mounting port, then the lamp panel 321 can be placed into the receiving cavity through the mounting port, and finally the bottom cover 3242 can be installed into the mounting port to achieve the purpose of installing the lamp panel 321 into the receiving cavity, which is very convenient and quick.

[0173] In some embodiments, see Figure 6 and Figure 20 The orientation of the LED beads 3212 on the light panel 321 is perpendicular to the surface of the shelf 31.

[0174] By aligning the LED beads 3212 on the light panel 321 perpendicular to the surface of the shelf 31, on the one hand, the light emitted by the LED beads 3212 can be diffused after shining on the shelf 31, making the shelf 31 look cooler under the lighting. On the other hand, it also makes it difficult for users to see the LED beads 3212, thereby enhancing the premium feel of the refrigerator 100 while avoiding dizziness.

[0175] The statement that the orientation of the LED bead 3212 is perpendicular to the surface of the shelf 31 can be interpreted broadly. That is, the orientation of the LED bead 3212 being approximately perpendicular to the surface of the shelf 31 can also be considered as the orientation of the LED bead 3212 being perpendicular to the surface of the shelf 31. This embodiment does not impose a narrow definition on this.

[0176] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this application, and are not intended to limit them. Although this application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some or all of the technical features therein. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of this application.

Claims

1. A refrigerator (100), characterized in that, include: Box (1), the box (1) comprising: Outer shell (11); Inner liner (12), the inner liner (12) is disposed inside the outer shell (11), the inner liner (12) encloses to form a storage chamber (120), the inner liner (12) includes a first inner liner wall (121) and a second inner liner wall (122) opposite to each other along the width direction of the box body (1); A refrigeration mechanism (2) is disposed between the outer shell (11) and the inner liner (12) for providing cooling capacity to the storage compartment (120); A shelf mechanism (3), located within the storage compartment (120), comprising: Sheet (31); A light panel assembly (32), the light panel assembly (32) comprising: A light panel (321) is disposed on the shelf (31) and extends along the width direction; A first contact (322) is connected to the lamp panel (321) and located at one end of the lamp panel (321) along the width direction; The second contact (323) is connected to the lamp panel (321) and is located at the other end of the lamp panel (321) along the width direction; Power supply mechanism (4), the power supply mechanism (4) includes: A power supply (41) is disposed between the outer shell (11) and the inner liner (12); A first power supply component (42), comprising: A first telescopic contact (421) is telescopically disposed on the first inner wall (121) along the width direction; The second power supply component (43) includes: The second telescopic contact (431) is telescopically disposed on the second inner wall (122) along the width direction, and both the second telescopic contact (431) and the first telescopic contact (421) are connected to the power supply (41). The first contact (322) abuts against the first telescopic contact (421) along the width direction, and the second contact (323) abuts against the second telescopic contact (431) along the width direction.

2. The refrigerator (100) according to claim 1, characterized in that, The first power supply component (42) further includes: The first conductive element (422) is located between the first inner wall (121) and the outer shell (11) and extends along the height direction of the box (1). The first telescopic contact (421) includes a plurality of first telescopic contacts (421), which are arranged in an array at intervals along the height direction of the box (1) on the first conductive element (422). The first conductive element (422) is connected to the power supply (41).

3. The refrigerator (100) according to claim 2, characterized in that, The first power supply component (42) further includes: Multiple first conductive elastic elements (423) are provided, and each of the multiple first conductive elastic elements (423) corresponds to a multiple of the first telescopic contacts (421). The first conductive elastic elements (423) are connected between the first conductive element (422) and the first telescopic contacts (421).

4. The refrigerator (100) according to claim 2, characterized in that, The first power supply component (42) further includes: The first box (424) is disposed between the first inner wall (121) and the outer shell (11), and the first conductive element (422) is located inside the first box (424). The first box body (424) has a first through hole (4241) on the side near the first inner wall (121), and the first inner wall (121) has a second through hole (1211) corresponding to the first through hole (4241). The first telescopic contact (421) passes through the first through hole (4241) and the second through hole (1211) and is exposed on the first inner wall (121).

5. The refrigerator (100) according to claim 2, characterized in that, The second power supply component (43) also includes: The second conductive element (432) is located between the second inner wall (122) and the outer shell (11) and extends along the height direction of the box (1). The second telescopic contact (431) includes a plurality of them. The plurality of second telescopic contacts (431) are arranged in an array at intervals along the height direction of the box (1) on the second conductive element (432). The second conductive element (432) is connected to the power supply (41). The plurality of second telescopic contacts (431) correspond one-to-one with the plurality of first telescopic contacts (421).

6. The refrigerator (100) according to any one of claims 1-5, characterized in that, The first contact (322) is detachably snapped onto one end of the lamp panel (321) along the width direction.

7. The refrigerator (100) according to claim 6, characterized in that, The first contact (322) includes: A latching portion (3221) is provided, wherein a latching hole (3221a) is formed therearound, and one end of the lamp plate (321) along the width direction is inserted into the latching hole (3221a); ​​and, The contact portion (3222) is connected to the snap-fit ​​portion (3221) and is located on the side of the lamp panel (321) away from the second contact member (323) along the width direction. The contact portion (3222) abuts against the first telescopic contact (421).

8. The refrigerator (100) according to claim 7, characterized in that, The lamp panel (321) is provided with a slot (3211), and the wall of the slot (3221a) is provided with an elastic buckle (3221b), which is engaged with the slot (3211).

9. The refrigerator (100) according to any one of claims 1-5, characterized in that, The lamp panel assembly (32) also includes: The decorative strip (324) and the inner liner (12) further include a third inner liner wall (123) connected between the first inner liner wall (121) and the second inner liner wall (122). The decorative strip (324) is sleeved on the end of the shelf (31) opposite to the third inner liner wall (123). The light panel (321) is wrapped inside the decorative strip (324).

10. The refrigerator (100) according to claim 9, characterized in that, The orientation of the lamp beads (3212) on the lamp panel (321) is perpendicular to the surface of the layer plate (31).