Refrigerator

By installing multi-color light-emitting components on the rear side of the refrigerator shelves and placing the power supply unit on the side of the inner liner away from the shelves, the problems of single lighting and complex power supply in existing refrigerators are solved, achieving higher light brightness and preservation effect, while simplifying electrical connections and improving space utilization.

CN223795561UActive Publication Date: 2026-01-13HISENSE(SHANDONG)REFRIGERATOR CO LTD
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Patent Information

Application Number
CN202520097483.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-15
Publication Date
2026-01-13
Estimated Expiration
2035-01-15

AI Technical Summary

Technical Problem

The lighting in existing refrigerators is usually installed on the top or side, with a single color of light and a complex power supply structure.

Method used

A multi-color light-emitting component is installed on the back of the refrigerator shelf assembly, and the power supply is located on the side of the inner liner away from the shelf assembly. The light-emitting component emits light from the back of the shelf assembly to the front. The power supply is electrically connected to the light-emitting component. The shelf assembly can be disassembled to match different heights.

Benefits of technology

It improves the light brightness at the back of the refrigerator compartment, enhances the ability to identify items, enables multi-color illumination to improve preservation, simplifies electrical connections, reduces the risk of failure, and improves space utilization.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of household appliances, in particular to a refrigerator. The utility model provides a refrigerator which comprises a refrigerator body provided with a refrigerator inner container, and the refrigerator inner container is provided with a refrigerating chamber; the door body is movably connected to the refrigerator body and is constructed to open and close the refrigerating chamber; the shelf piece is arranged in the refrigerator inner container and located in the refrigerating chamber; the light-emitting assembly comprises a light-emitting piece which is arranged on the rear side of the shelf piece and located on the rear side of the box body, and the light-emitting piece is provided with at least two light-emitting parts with different light-emitting colors; the power supply part is arranged in the refrigerator inner container and electrically connected with the light-emitting part. According to the refrigerator, the light brightness of the rear side of the refrigerating chamber can be improved, a user can identify articles conveniently, in addition, the light brightness of the rear side of the refrigerating chamber can be improved, the user can identify the articles conveniently, in addition, the multiple light-emitting parts can achieve multi-color light emitting, and the fresh-keeping effect is improved.
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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] As an indispensable home appliance in modern families, refrigerators have become increasingly sophisticated and functional with technological advancements, meeting users' needs for food preservation, storage, and other aspects.

[0003] In conceiving and implementing this application, the applicant discovered at least the following problems: existing refrigerator lighting usually uses top or side-mounted lights, and the light emission colors on the market are limited, and the power supply structure is complex.

[0004] The preceding description is intended to provide general background information and does not necessarily constitute prior art. Utility Model Content

[0005] The main objective of this application is to provide a refrigerator that can increase the light brightness at the rear of the refrigerator compartment, making it easier for users to identify items. In addition, multiple light-emitting parts can achieve multi-color light emission, thereby improving the preservation effect.

[0006] To achieve the above objectives, in a first aspect, this application provides a refrigerator, comprising:

[0007] The box body has an inner liner, and the inner liner has:

[0008] Refrigeration compartment;

[0009] The door is movably connected to the cabinet and is configured to open and close the refrigerator compartment;

[0010] Shelves are located inside the refrigerator compartment;

[0011] Light-emitting components, including:

[0012] The light-emitting element is located on the rear side of the shelf component and on the rear side of the cabinet. The light-emitting element has at least two light-emitting parts with different light-emitting colors.

[0013] The power supply component is located inside the box and is electrically connected to the light-emitting component.

[0014] The beneficial effects of this application are as follows: Through the arrangement between the shelf component and the light-emitting component, wherein the light-emitting element in the light-emitting component is installed on the rear side of the shelf component, and the power supply component is electrically connected to the light-emitting element, the light-emitting element can emit light. Since the light-emitting element emits light from the rear side of the shelf component to the front, it can improve the light brightness at the rear of the refrigerator compartment, making it easier for users to identify items; at the same time, the light-emitting element has at least two light-emitting parts that can emit different colors, which not only improves the brightness but can also be used as a preservation light to improve the preservation effect of food; in addition, the shelf component can be disassembled and installed relative to the inner liner of the refrigerator to match different heights, the structure is reliable, the practicality is strong, and the user experience is good.

[0015] Based on the above technical solution, the following improvements can be made to this application.

[0016] In some embodiments, the power supply unit is located on the side of the inner liner away from the shelf unit;

[0017] The light-emitting element is located at the end of the shelf and extends in the direction facing the power supply element.

[0018] The above technical solution has the following advantages or beneficial effects: placing the power supply component on the side of the inner liner away from the shelf components effectively utilizes the internal space of the enclosure, avoiding the power supply component occupying the usable space of the shelf components, thereby improving the overall design's compactness and space utilization. Extending the light-emitting components towards the power supply component simplifies electrical connections and wiring design. This arrangement may reduce the length and complexity of wires, thereby lowering manufacturing costs and potential points of failure.

[0019] In some embodiments, the light-emitting component further includes:

[0020] A controller is electrically connected to a power supply unit and is used to control the power supply unit to supply power to at least one of the light-emitting parts in the light-emitting components.

[0021] The above technical solution has the following advantages or beneficial effects: by selectively controlling the power supply to the light-emitting element through the controller, the light-emitting element can be turned off when lighting is not needed, thereby saving energy. This intelligent power management can significantly reduce energy consumption and improve the overall energy efficiency of the equipment.

[0022] In some embodiments, the shelf component includes a shelf panel that is pulled out and disposed inside the box liner;

[0023] There are at least two power supply units, and the at least two power supply units are located on opposite sides of the shelf along the width direction of the enclosure;

[0024] At least two light-emitting parts are arranged on the shelf along the height direction of the box.

[0025] The above-mentioned technical solution has the following advantages or beneficial effects: By setting power supply components on opposite sides of the shelf and arranging multiple light-emitting parts along the height direction on the shelf, a uniform lighting effect can be achieved. This design helps eliminate shadows and dark areas, ensuring that the entire shelf area receives sufficient illumination. By rationally arranging the power supply components and light-emitting parts, the internal space of the cabinet can be maximized. This design ensures the functionality of the shelf without affecting the overall spatial layout of the cabinet.

[0026] In some embodiments, the power supply component includes:

[0027] At least one power supply terminal is configured to be connected to a power supply.

[0028] At least one first conductive element, a first end of which is electrically connected to a power supply terminal, and a second end of which is electrically connected to a light-emitting element.

[0029] The above technical solution has the following advantages or beneficial effects: by directly connecting the power supply to the power source through the power supply terminal and connecting it to the light-emitting element through the first conductive component, the circuit design becomes simpler and clearer. This direct connection method reduces intermediate links and lowers circuit complexity.

[0030] In some embodiments, the power supply component further includes:

[0031] The power supply box, located inside the enclosure, has the following features:

[0032] At least two receiving cavities, one receiving cavity for receiving a power supply terminal and at least a portion of a first conductive element;

[0033] The first end of the first conductive element is located inside the receiving cavity, and the second end of the first conductive element is located outside the receiving cavity.

[0034] The above technical solution has the following advantages or beneficial effects: the power supply box provides a closed environment to accommodate the connection parts of the power supply terminals and conductive components, reducing the impact of the external environment on the electrical connection, such as dust and moisture. This design improves the safety of the electrical connection and reduces the risk of short circuits and electric shock.

[0035] In some embodiments, the light-emitting element includes:

[0036] A light panel is provided on a shelf, and the light-emitting part is the light panel. There are at least two light panels, and at least two light panels form a light panel group.

[0037] The second conductive element has its first end electrically connected to one of the lamp panels in the lamp panel assembly, and its second end electrically connected to the second end of the first conductive element.

[0038] The above technical solution has the following advantages or beneficial effects: By combining multiple lamp panels into a lamp panel group, modular design can be achieved. The combination of multiple lamp panels allows for flexible configuration of lighting schemes. Users can adjust the number and arrangement of lamp panels as needed to achieve different lighting effects and coverage areas. Through reasonable design of the connection of the second conductive component, it can be ensured that electrical energy is evenly distributed in the lamp panel group, avoiding damage to some lamp panels due to overload, and improving the overall system energy efficiency.

[0039] In some embodiments, there are multiple second conductive elements;

[0040] The lamp panel assembly has multiple first electrical connection points, each of which is electrically connected to the same second conductive element; or,

[0041] The lamp panel assembly has multiple second electrical connection points, each of which is electrically connected to the same second conductive element.

[0042] The above technical solution has the following advantages or beneficial effects: by reasonably allocating multiple conductive parts and connection positions, the uniform distribution of electrical energy in the lamp panel group can be ensured, a more flexible electrical connection configuration can be achieved, local overload or voltage drop can be avoided, and the energy efficiency and stability of the system can be improved.

[0043] In some embodiments, the light-emitting element includes:

[0044] Decorative strips are located at the ends of the shelves and accommodate the light panel assembly;

[0045] A power generation box is located on the decorative strip. The power generation box is used to house the second conductive component. There is an angle between the extension direction of the power generation box and the extension direction of the decorative strip.

[0046] The above technical solution has the following advantages or beneficial effects: the decorative strip not only provides an aesthetically pleasing design but also effectively accommodates the lamp panel assembly, combining the functionality and aesthetics of the light-emitting components. The angle between the extension direction of the power generation box and the extension direction of the decorative strip optimizes the electrical layout, resulting in a more rational arrangement of conductive components. This angled design may help reduce wire bending and crossing, improving the reliability of electrical connections.

[0047] In some embodiments, the first conductive element is a conductive spring; and / or,

[0048] The second conductive component is a conductive block.

[0049] The above technical solution has the following advantages or beneficial effects: the design of the conductive spring and conductive block simplifies the installation process. The conductive spring can be quickly connected by simple pressing or snap-fit, while the conductive block can be installed by fixing screws or insertion.

[0050] The conductive spring is elastic and can provide stable contact pressure, ensuring a reliable electrical connection.

[0051] The refrigerator provided in this application includes a cabinet with an inner liner, the inner liner having: a refrigerator compartment; a door movably connected to the cabinet and configured to open and close the refrigerator compartment; a shelf assembly disposed in the inner liner and located within the refrigerator compartment; and a light-emitting assembly including: a light-emitting element disposed on the rear side of the shelf assembly and located on the rear side of the cabinet, the light-emitting element having at least two light-emitting parts with different light-emitting colors; and a power supply assembly disposed in the inner liner and electrically connected to the light-emitting element.

[0052] The arrangement between the shelf unit and the light-emitting component is such that the light-emitting element is installed at the rear of the shelf unit, and the power supply unit is electrically connected to the light-emitting element, enabling it to emit light. Since the light-emitting element emits light from the rear of the shelf unit towards the front, it can increase the brightness of the rear of the refrigerator compartment, making it easier for users to identify items. At the same time, the light-emitting element has at least two light-emitting parts that can emit different colors, which not only increases the brightness but can also be used as a preservation light to improve the preservation effect of food. In addition, the shelf unit can be disassembled relative to the inner liner of the refrigerator to match different heights. The structure is reliable, practical, and provides a good user experience. Attached Figure Description

[0053] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0054] Figure 1 This is a schematic diagram of the structure of a refrigerator provided in an embodiment of this application;

[0055] Figure 2 A partial structural schematic diagram of a refrigerator provided in an embodiment of this application;

[0056] Figure 3 A first-view structural schematic diagram of the inner liner of a refrigerator provided in an embodiment of this application;

[0057] Figure 4 A second-view structural schematic diagram of the inner liner portion of the refrigerator provided in an embodiment of this application;

[0058] Figure 5 for Figure 4 A magnified view of a portion of point I in the middle;

[0059] Figure 6 A third-view structural schematic diagram of the inner liner of a refrigerator provided in an embodiment of this application;

[0060] Figure 7 for Figure 6 A magnified view of a section at point II;

[0061] Figure 8 This is a schematic diagram of the assembly of the refrigerator middle shelf and the light-emitting component provided in an embodiment of this application;

[0062] Figure 9 for Figure 8 A magnified view of a portion of point III;

[0063] Figure 10 for Figure 8 A magnified view of a portion of point IV in the middle;

[0064] Figure 11 An exploded view of the assembly of a side shelf and a light-emitting component in a refrigerator provided in an embodiment of this application;

[0065] Figure 12 A schematic diagram of the assembly of a side shelf and a light-emitting component in a refrigerator provided in an embodiment of this application;

[0066] Figure 13 An exploded view of the assembly of a light-emitting component with a shelf on the other side of a refrigerator provided in an embodiment of this application;

[0067] Figure 14 This is a first-view structural schematic diagram of the power supply component in a refrigerator provided in an embodiment of this application;

[0068] Figure 15 An exploded view of the power supply component in a refrigerator, provided as an embodiment of this application;

[0069] Figure 16 This is a structural schematic diagram of the power supply component in a refrigerator from a second perspective, provided in an embodiment of this application.

[0070] Figure 17 An exploded view of the power supply component in a refrigerator provided in an embodiment of this application;

[0071] Figure 18 This is a schematic diagram of the assembly of another shelf and another light-emitting component in a refrigerator provided in an embodiment of this application.

[0072] Explanation of reference numerals in the attached figures:

[0073] 100 - Refrigerator; 110 - Cabinet; 111 - Inner liner; 1111 - Refrigerator compartment;

[0074] 120-Gate Body;

[0075] 130 - Shelf component; 131 - Shelf board; 132 - Seam rib;

[0076] 140 - Light-emitting component; 141 - Light-emitting element; 1411 - Lamp board; 1412 - Second conductive element; 1413 - Decorative strip; 1414 - Power generation box; 14141 - Box body; 14142 - Box cover; 142 - Power supply component; 1421 - First conductive element; 1422 - Power supply terminal; 1423 - Power supply box; 14231 - Upper cover; 14232 - Lower cover. Detailed Implementation

[0077] To make the objectives, technical solutions, and advantages of the embodiments of this application clearer, 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, 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. All other obtained embodiments are within the scope of protection of this application. In the absence of conflict, the following embodiments and features can be combined with each other.

[0078] In this application, unless otherwise expressly specified and limited, the terms "installation," "connection," "joining," and "fixing," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; 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; they can refer to the internal communication of two components or the interaction between two components, unless otherwise expressly limited. Those skilled in the art can understand the specific meaning of the above terms in this application according to the specific circumstances.

[0079] In this application, unless otherwise expressly specified and limited, "above" or "below" the second feature can mean that the first feature is in direct contact with the second feature, or that the first feature is in indirect contact with the second feature through an intermediate medium. Furthermore, "above," "on top of," and "over" the second feature can mean that the first feature is directly above or diagonally above the second feature, or simply that the first feature is at a higher horizontal level than the second feature. "Below," "below," and "under" the second feature can mean that the first feature is directly below or diagonally below the second feature, or simply that the first feature is at a lower horizontal level than the second feature.

[0080] In the description of this specification, the references to terms such as "one embodiment," "some embodiments," "example," "specific example," or "some examples," etc., refer to specific features, structures, materials, or characteristics described in connection with that embodiment or example, which are included in at least one embodiment or example of this application. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples. Moreover, without contradiction, those skilled in the art can combine and integrate the different embodiments or examples described in this specification, as well as the features of different embodiments or examples.

[0081] Currently, in the process of conceiving and implementing this application, the applicant has discovered at least the following problems: the lighting inside existing refrigerators usually adopts the method of installing lights on the top or side, and the light emission color on the market is uniform, and the power supply structure is complicated.

[0082] To overcome the shortcomings of existing technologies, the refrigerator provided in this application, through the arrangement between the shelf components and the light-emitting component, wherein the light-emitting element in the light-emitting component is installed on the rear side of the shelf component, and the power supply component is electrically connected to the light-emitting element, enabling the light-emitting element to emit light. Since the light-emitting element emits light from the rear side of the shelf component to the front, it can increase the brightness of the light on the rear side of the refrigerator compartment, making it easier for users to identify items; at the same time, the light-emitting element has at least two light-emitting parts that can emit different colors, which not only increases the brightness but can also be used as a preservation light to improve the preservation effect of food; in addition, the shelf components can be disassembled relative to the inner liner of the refrigerator to match different heights, with a reliable structure, strong practicality, and good user experience.

[0083] The contents of this application will now be described in detail with reference to the accompanying drawings, so that those skilled in the art can have a clearer and more detailed understanding of the contents of this application.

[0084] Figure 1 This is a schematic diagram of the structure of a refrigerator provided in an embodiment of this application. Figure 2 This is a partial structural diagram of a refrigerator provided in an embodiment of this application. Figure 3 This is a first-view structural schematic diagram of the inner liner of a refrigerator provided in an embodiment of this application. Figure 4 This is a second-view structural schematic diagram of the inner liner of a refrigerator provided in an embodiment of this application. Figure 5 for Figure 4 A magnified view of a portion of point I in the middle. Figure 6 This is a third-view structural diagram of the inner liner of a refrigerator provided in an embodiment of this application. Figure 7 for Figure 6 A magnified view of a portion of point II in the middle.

[0085] like Figures 1 to 7 As shown, this application embodiment provides a refrigerator 100, including:

[0086] The box body 110 has an inner liner 111, and the inner liner 111 has:

[0087] Refrigerator compartment 1111;

[0088] The door 120 is movably connected to the cabinet 110 and is configured to open and close the refrigerator compartment 1111;

[0089] Shelf 130 is installed in the inner liner 111 of the box and located inside the refrigerator compartment 1111;

[0090] Light-emitting component 140 includes:

[0091] The light-emitting element 141 is disposed on the rear side of the shelf member 130 and located on the rear side of the box 110. The light-emitting element 141 has at least two light-emitting parts with different light-emitting colors.

[0092] The power supply component 142 is located inside the box liner 111 and is electrically connected to the light-emitting component 141.

[0093] With the above-described configuration, namely the refrigerator 100 of this embodiment, the arrangement between the shelf component 130 and the light-emitting component 140, wherein the light-emitting element 141 in the light-emitting component 140 is installed on the rear side of the shelf component 130, and the power supply component 142 is electrically connected to the light-emitting element 141, so that the light-emitting element 141 can emit light. Since the light-emitting element 141 emits light from the rear side of the shelf component 130 to the front, it can improve the light brightness on the rear side of the refrigerator compartment 1111, which is beneficial for users to identify items. At the same time, the light-emitting element 141 has at least two light-emitting parts, which can emit different colors, not only improving the brightness but also serving as a preservation light to improve the preservation effect of food. In addition, the shelf component 130 can be disassembled and installed relative to the inner liner 111 to match different heights, with a reliable structure, strong practicality, and good user experience.

[0094] It should be noted that the following provides a detailed explanation of each structure.

[0095] [Box 110]

[0096] refer to Figure 1 and Figure 2 The refrigerator 100 in this embodiment may include a cabinet 110 and a door 120. The cabinet 110 may be configured with a refrigeration compartment. The refrigeration compartment has an opening for storing food and other items. There may be one or more refrigeration compartments. When there are multiple refrigeration compartments, they may be divided into a refrigerator compartment 1111, a freezer compartment, or a variable temperature compartment, etc.

[0097] For example, the refrigerator body 110 may include an outer shell and an inner liner 111, the outer shell defining the external boundary of the refrigerator 100. The inner liner 111 may be disposed inside the outer shell and connected to the outer shell. The inner liner 111 may be recessed inward to form a cooling compartment. An insulation layer may be filled between the outer shell and the inner liner 111, the insulation layer insulating the cooling compartment, thereby reducing the energy consumption of the refrigerator 100.

[0098] The box 110 adopts a hollow cuboid structure. It is understood that in other embodiments, the box 110 may also adopt a hollow shell structure of other shapes.

[0099] [Gate 120]

[0100] It should be noted that the door 120 can be connected to the cabinet 110 to open or close the refrigeration compartment.

[0101] A door 120 is disposed on the front surface of the enclosure 110 to enclose the refrigeration compartment. The door 120 is configured to open and close the refrigeration compartment, meaning it can open and close the front opening of the enclosure 110. Doors 120 can be correspondingly assigned to refrigeration compartments; that is, each refrigeration compartment can have one or more doors 120. The number of refrigeration compartments and doors 120, as well as the function of the refrigeration compartments, can be selected based on specific circumstances. One door 120 can be assigned to the same refrigeration compartment. Alternatively, two doors 120 can be assigned to the same refrigeration compartment.

[0102] In some possible implementations of this application, the door 120 can be rotatably connected to the housing 110 about the height of the housing 110. The door 120 can be pulled or pushed to rotate relative to the housing 110, thereby opening or closing the refrigeration compartment.

[0103] It should be noted that the height direction of the cabinet 110 refers to the height direction of the cabinet 110 when the refrigerator 100 is in normal use, for example... Figure 1 The vertical direction Y is shown in the diagram. For example, the door 120 can be rotatably connected to the housing 110 via a hinge.

[0104] In some embodiments, the door 120 is a rotating door structure. The door 120 is rotatably disposed on the front side of the cabinet 110, and in this case, the door 120 can be used as a general door structure, such as a refrigerator door, a freezer door, etc.

[0105] Specifically, the door 120 and the cabinet 110 can be connected by a hinge so that the door 120 of the refrigerator 100 can rotate around the axis of the hinge, thereby opening and closing the door 120 of the refrigerator 100 and opening and closing the corresponding refrigeration compartment.

[0106] In some embodiments, the door 120 can also be a sliding door structure. The door 120 is slidably disposed on the front side of the cabinet 110, and in this case, the door 120 can be used as a drawer door. Specifically, guide rails (not shown in the figure) are respectively provided on the left and right inner side walls of the cabinet liner, and the door 120 is connected to the guide rails on both sides, thereby realizing the sliding function of the door 120 and realizing the opening and closing of the refrigeration compartment by extending and retracting the guide rails.

[0107] In some embodiments, a refrigeration assembly (not shown) is provided inside the cabinet 110 to provide cooling for the interior of the refrigerator 100 in order to maintain a low-temperature environment in each refrigeration compartment.

[0108] Refrigeration components include compressors, condensers, evaporators, and throttling devices. The specific structure and connections of these components can be found in relevant technical documentation on refrigeration components, and will not be elaborated upon here. The evaporator provides different amounts of cooling capacity to different types of storage spaces, resulting in varying temperatures within these spaces. For example, the temperature in a refrigerator compartment (1111) is generally between 2°C and 10°C, preferably between 4°C and 7°C. The temperature range in a freezer compartment is generally between -22°C and -14°C. Different types of items have different optimal storage temperatures, and consequently, different suitable storage spaces. For example, fruits and vegetables are suitable for storage in the refrigerator compartment (1111) or the crisper compartment, while meat is suitable for storage in the freezer.

[0109] [Shelf Component 130]

[0110] like Figures 4 to 7 As shown, it should be noted that the shelf component 130 provided in this application embodiment is installed in the inner liner 111 of the box. The purpose of the shelf component 130 is to carry food that needs to be refrigerated.

[0111] In actual use, the height of the food that needs to be refrigerated varies. In most cases, the distance between the two shelf pieces 130 is fixed, which means that taller food cannot be placed on the shelf piece 130 for refrigeration in the refrigerator compartment 1111.

[0112] Specifically, the shelf unit 130 is used to carry food. It should be noted that the shelf unit 130 can be movably connected to the inner liner 111 at a certain height, so that the height of the shelf unit 130 inside the inner liner 111 can be adjusted to match food of different heights, thereby allowing more food to be accommodated in the refrigerator compartment 1111 and making higher space utilization.

[0113] [Light-emitting component 140]

[0114] Figure 8 This is a schematic diagram of the assembly of the refrigerator middle shelf and the light-emitting component provided in an embodiment of this application. Figure 9 for Figure 8A magnified view of a portion of point III. Figure 10 for Figure 8 A magnified view of a portion of point IV in the middle.

[0115] like Figures 1 to 10 As shown, it should be noted that the purpose of the light-emitting component 140 provided in this application embodiment is to increase the light brightness in the refrigerator compartment 1111 and improve the convenience for users to pick up and put down items.

[0116] It should be noted that the light-emitting component 140 may include a light-emitting element 141, which is disposed on the shelf component 130 and provides light into the refrigerator compartment 1111.

[0117] In some embodiments, the light-emitting element 141 can be an LED (light-emitting diode), which is a high-efficiency, long-life light-emitting device.

[0118] In other embodiments, the light-emitting element 141 can be an OLED (organic light-emitting diode). OLEDs use organic materials as the light-emitting layer and have advantages such as flexibility, thinness, and high contrast.

[0119] In other embodiments, the light-emitting element 141 can be a fluorescent lamp, which generates ultraviolet light by exciting mercury vapor with an electric current, and then converts it into visible light by phosphor.

[0120] It should be noted that at least two light-emitting parts of different colors can emit red, blue, and purple light.

[0121] Each color-emitting part can be controlled individually or simultaneously, controlled by the main control board program. The structure is reliable, and the types of lights are selectable, improving the user experience and preservation effect.

[0122] It should be noted that different colors of light can be used for preservation, and different colors of light can better preserve food.

[0123] It should be noted that the light-emitting component 140 may also include a power supply component 142, which supplies power to the light-emitting component 141.

[0124] When the light-emitting element 141 and the power supply element 142 are connected in this embodiment, the light-emitting element 141 and the power supply element 142 are electrically connected, thereby supplying power to the light-emitting element 141. The light-emitting element 141 emits light from the rear side of the shelf member 130, which not only improves the brightness of the light at the rear of the refrigerator compartment 1111, making it easier for users to identify items, but also makes the light more uniform after refraction and reflection by the shelf member 130, avoiding the problems of blind spots and direct light shining into the user's eyes.

[0125] In some embodiments, the power supply component 142 is located on the side of the inner liner 111 away from the shelf component 130.

[0126] The light-emitting element 141 is located at the end of the shelf element 130 and extends toward the power supply element 142.

[0127] The above technical solution has the following advantages or beneficial effects: placing the power supply component 142 on the side of the inner liner 111 away from the shelf component 130 effectively utilizes the internal space of the liner 110, avoiding the power supply component 142 occupying the usable space of the shelf component 130, thereby improving the overall design compactness and space utilization. The light-emitting component 141 extending towards the power supply component 142 simplifies electrical connections and wiring design. This arrangement may reduce the length and complexity of wires, thereby reducing manufacturing costs and potential points of failure.

[0128] It should be noted that the light-emitting element 141 is located at the end of the shelf member 130, which may help to distribute the light evenly and improve the lighting effect. This design can ensure that the light covers the entire area of ​​the shelf member 130, reducing shadows and dark areas.

[0129] Furthermore, separating the power supply component 142 and the light-emitting component 141 may make the maintenance and replacement of each component more convenient. Users can individually inspect or replace the power supply component 142 or the light-emitting component 141 without interfering with other components. A reasonable layout can reduce mutual interference between electrical components, lower the risk of short circuits or other electrical faults, and thus improve equipment safety.

[0130] In some embodiments, at least part of the power supply component 142 is flush with the end of the inner liner 111. That is, the power supply component 142 can be hidden in the rear side wall of the inner liner 111. If the user looks from the front of the door 120 to the rear of the box 110, the power supply component 142 cannot be seen, which improves the aesthetics.

[0131] In order to satisfy the electrical connection between the light-emitting element 141 and the power supply element 142, the light-emitting element 141 extends towards the rear side of the refrigerator 100, and its appearance structure is simple and easy to process and manufacture.

[0132] In some embodiments, the power supply component 142 can be installed in the inner liner 111 in a detachable manner, such as by means of clips, bolts, etc., without further restrictions.

[0133] For example, the power supply component 142 extends two connecting ends in two opposite directions toward the upper side and the lower side of the refrigerator 100, respectively. The two connecting ends are threaded. One of the bolts passes through the threaded hole on the connecting end and the threaded hole in the inner liner 111 to install the power supply component 142 on the inner liner 111. The same applies to the other side.

[0134] In some embodiments, the light-emitting component 140 further includes a controller electrically connected to the power supply component 142 and configured to control the power supply component 142 to supply power to at least one light-emitting portion of the light-emitting component 141.

[0135] The above technical solution has the following advantages or beneficial effects: by selectively controlling the power supply to the light-emitting element 141 through the controller, the light-emitting element 141 can be turned off when lighting is not needed, thereby saving energy. This intelligent power management can significantly reduce energy consumption and improve the overall energy efficiency of the equipment.

[0136] It should be noted that by reducing unnecessary power supply time, the controller can help extend the lifespan of the light-emitting element 141. This selective power supply reduces the operating time of the light-emitting element 141, thereby reducing the aging rate and failure rate.

[0137] In some embodiments, the controller can be integrated with sensors or other intelligent systems to achieve automated control. For example, an ambient light intensity can be detected by a light sensor to automatically adjust the brightness or on / off state of the light-emitting element 141, thereby achieving intelligent lighting.

[0138] In some embodiments, users can manage the status of the light-emitting element 141 through a simple interface or remote control device, providing greater convenience and ease of operation.

[0139] In some embodiments, the controller can selectively control the light-emitting element 141 to emit light, that is, the controller can control one of at least two light-emitting elements to emit light.

[0140] For example, the controller can control the light-emitting parts individually, wherein the light-emitting parts may include a red light-emitting part that emits red light, a blue light-emitting part that emits blue light, and a purple light-emitting part that emits purple light, and each light does not interfere with the others; it can also control two or three of them to turn on to increase the brightness of the refrigerator compartment 1111, thereby meeting the user's needs for lighting and multiple colored lights, and further improving the preservation effect.

[0141] In other embodiments, the light-emitting part may include a red light-emitting part that emits red light and a blue light-emitting part that emits blue light. If the light-emitting part needs to emit purple light, the controller only needs to control the blue light-emitting part and the red light-emitting part to emit light at the same time. When the blue and red light emit light at the same time, purple light can be formed. This setting can reduce the number of light-emitting parts while satisfying the requirement of emitting purple light, and further reduce the wiring layout, resulting in lower cost.

[0142] like Figures 1 to 10 As shown, in some embodiments, the shelf component 130 includes a shelf 131, which is pulled out and disposed in the inner liner 111 of the box.

[0143] Among them, there are at least two power supply components 142, and the at least two power supply components 142 are located on opposite sides of the shelf 131 along the width direction of the housing 110;

[0144] At least two light-emitting parts are arranged on the shelf 131 along the height direction of the housing 110.

[0145] The above-described technical solution has the following advantages or beneficial effects: By arranging power supply components 142 on opposite sides of the shelf 131 and multiple light-emitting parts along the height direction on the shelf 131, a uniform lighting effect can be achieved. This design helps eliminate shadows and dark areas, ensuring that the entire shelf 131 area receives sufficient illumination. By rationally arranging the power supply components 142 and light-emitting parts, the internal space of the cabinet 110 can be maximized. This design ensures the functionality of the shelf 131 without affecting the overall spatial layout of the cabinet 110.

[0146] It should be noted that the multiple light-emitting elements allow for adjustment of the lighting intensity and range as needed. Users can selectively turn certain light-emitting elements on or off to suit different usage scenarios and lighting requirements.

[0147] In some embodiments, two power supply units 142 are located on opposite sides of the shelf 131, which helps to balance the structure of the shelf 131, especially during the pull-out operation. This design can improve the stability and durability of the shelf 131 and reduce deformation or damage caused by uneven stress.

[0148] Furthermore, since the shelf 131 is a pull-out design, users can easily maintain and replace the light-emitting part or the power supply component 142. This design improves the maintainability of the equipment and reduces downtime and maintenance costs.

[0149] In some embodiments, the shelf member 130 further includes a rib 132, and the shelf 131 is retractable and disposed on the rib 132.

[0150] In some embodiments, at least two power supply components 142 can be installed onto the shelf 131 by means of detachable installation methods such as clips or bolts, which facilitates later maintenance.

[0151] Figure 11 This is an exploded view of the assembly of a side shelf and a light-emitting component in a refrigerator provided in an embodiment of this application. Figure 12 This is a schematic diagram illustrating the assembly of a side shelf and a light-emitting component in a refrigerator according to an embodiment of this application. Figure 13 This is an exploded view of the assembly of a light-emitting component with another shelf in a refrigerator provided in an embodiment of this application. Figure 14 This is a first-view structural schematic diagram of the power supply component in a refrigerator provided in an embodiment of this application. Figure 15 This is a first-view exploded view of the power supply component in a refrigerator provided in an embodiment of this application. Figure 16 This is a second-view structural schematic diagram of the power supply component in a refrigerator provided in an embodiment of this application. Figure 17 An exploded view of the power supply component in a refrigerator, provided as an embodiment of this application.

[0152] like Figures 4 to 17 As shown, in some embodiments, the power supply component 142 includes at least one power supply terminal 1422 configured to be connected to a power supply.

[0153] The power supply component 142 also includes at least one first conductive component 1421, the first end of the first conductive component 1421 being electrically connected to the power supply terminal 1422, and the second end of the first conductive component 1421 being electrically connected to the light-emitting component 141.

[0154] The above technical solution has the following advantages or beneficial effects: by directly connecting the power supply to the power source through the power supply terminal 1422 and connecting it to the light-emitting element 141 through the first conductive element 1421, the circuit design becomes simpler and clearer. This direct connection method reduces intermediate links and lowers circuit complexity.

[0155] It should be noted that by reducing unnecessary connections and conversion steps, electrical energy can be transferred more efficiently from the power supply to the light-emitting element 141. This efficient power transfer helps improve the brightness and performance of the light-emitting element 141. The simplified circuit path reduces potential points of failure and lowers the risk of electrical malfunctions. Reliable electrical connections contribute to improved stability and durability of the entire system.

[0156] like Figures 4 to 17 As shown, in some embodiments, the power supply component 142 further includes a power supply box 1423 disposed in the inner liner 111. The power supply box 1423 has at least two receiving cavities, one of which is used to receive at least a portion of a power supply terminal 1422 and a first conductive element 1421.

[0157] The first end of the first conductive element 1421 is located inside the receiving cavity, and the second end of the first conductive element 1421 is located outside the receiving cavity.

[0158] The above technical solution has the following advantages or beneficial effects: the power supply box 1423 provides a closed environment to accommodate the connection parts of the power supply terminal 1422 and the conductive parts, reducing the impact of the external environment on the electrical connection, such as dust and moisture. This design improves the safety of the electrical connection and reduces the risk of short circuits and electric shock.

[0159] It should be noted that by concentrating the power supply terminal 1422 and part of the first conductive element 1421 within the power supply box 1423, installation and maintenance become much simpler. Users can complete electrical connections or replacements with simple operations, without having to deal with complex circuit wiring.

[0160] It should be noted that the power supply box 1423 design with multiple accommodating cavities can support various configurations and expansions, allowing the power supply terminals 1422 and the first conductive element 1421 to be added or removed according to different needs.

[0161] like Figures 14 to 17 As shown, in some embodiments, the power supply box 1423 includes an upper cover 14231 and a lower cover 14232 that are interlocked, and the upper cover 14231 and the lower cover 14232 form a receiving cavity.

[0162] like Figures 11 to 17 As shown, in some embodiments, the light-emitting element 141 includes a lamp board 1411 disposed on the shelf 131, the light-emitting part is the lamp board 1411, there are at least two lamp boards 1411, and at least two lamp boards 1411 form a lamp board group.

[0163] The second conductive element 1412 has its first end electrically connected to one of the lamp panels 1411 in the lamp panel assembly, and its second end electrically connected to the second end of the first conductive element 1421.

[0164] The above technical solution has the following advantages or beneficial effects: By combining multiple lamp panels into a lamp panel group, modular design can be achieved. The combination of multiple lamp panels 1411 allows for flexible configuration of lighting schemes. Users can adjust the number and arrangement of lamp panels 1411 as needed to achieve different lighting effects and coverage. By rationally designing the connection of the second conductive element 1412, it can be ensured that electrical energy is evenly distributed in the lamp panel group, avoiding damage to some lamp panels 1411 due to overload, and improving the overall system energy efficiency.

[0165] It should be noted that, since the lamp board 1411 is an independent module, a single lamp board 1411 can be quickly replaced in case of failure, without having to replace the entire lamp board assembly or the light-emitting element 141. This design reduces maintenance costs and downtime.

[0166] In some examples, the power supply unit 142 located on the left side of the shelf 131 includes a power supply box 1423, wherein the power supply box 1423 has two receiving cavities. One receiving cavity accommodates a power supply terminal 1422 and a first conductive element 1421, which means that the power supply box 1423 is provided with two power supply terminals 1422 and two first conductive elements 1421. The first conductive element 1421 is electrically connected to the second conductive element 1412, which means that there are also two second conductive elements 1412 on the left side.

[0167] The power supply component 142 located on the right side of the shelf 131 is the same as above.

[0168] In some embodiments, the light panel assembly includes three light panels 1411, namely a red light panel 1411 that emits red light, a blue light panel 1411 that emits blue light, and a purple light panel 1411 that emits purple light. The three different colored light panels 1411 can be powered on and turned on separately without interfering with each other. Of course, the controller can control the two to be turned on.

[0169] In other embodiments, considering cost, the light panel assembly includes two light panels 1411, namely a red light panel 1411 that emits red light and a blue light panel 1411 that emits blue light. When purple light is required, it is only necessary to turn on the red light panel 1411 and the blue light panel 1411 at the same time.

[0170] In some embodiments, there are multiple second conductive elements 1412; the lamp panel assembly has multiple first electrical connection positions, and the multiple first electrical connection positions are respectively electrically connected to the same second conductive element 1412; or...

[0171] The lamp panel assembly has multiple second electrical connection points, each of which is electrically connected to the same second conductive element 1412.

[0172] The above technical solution has the following advantages or beneficial effects: by reasonably allocating multiple conductive parts and connection positions, the uniform distribution of electrical energy in the lamp panel group can be ensured, a more flexible electrical connection configuration can be achieved, local overload or voltage drop can be avoided, and the energy efficiency and stability of the system can be improved.

[0173] like Figures 11 to 13 As shown, in some embodiments, when the lamp panel assembly includes three lamp panels 1411, the first electrical connection point can be the anode terminal, i.e., common anode. That is, the three lamp panels 1411 correspond to three anode terminals and three cathode terminals. The three first electrical connection points, i.e., the three anode terminals, are electrically connected to the same second conductive element 1412, and the other three cathode terminals can be electrically connected to different second conductive elements 1412 respectively. In this way, there are a total of four contacts, i.e., four second conductive elements 1412 are required, corresponding to the left and right sides of the lamp panel 1411, i.e., two second conductive elements 1412 on the left and two on the right. The two second conductive elements 1412 on one side are electrically connected to the two first conductive elements 1421 and the two power supply terminals 1422 in the power supply box 1423 respectively, so as to meet the power supply of the lamp panel 1411.

[0174] Accordingly, when the lamp assembly includes three lamp panels 1411, the second electrical connection can be the cathode terminal, i.e., common cathode. Other configurations are similar to the above, and also require four second conductive elements 1412.

[0175] Figure 18 This is a schematic diagram illustrating the assembly of another shelf and another light-emitting component in a refrigerator according to an embodiment of this application. Figure 11 , Figure 2 as well as Figure 18 As shown, in some other embodiments, when the lamp panel assembly includes two lamp panels 1411, the first electrical connection can be the anode terminal, i.e., common anode. In other words, the two lamp panels 1411 correspond to two anode terminals and two cathode terminals. Two of the first electrical connection points, i.e., the two anode terminals, are electrically connected to the same second conductive element 1412. The other two cathode terminals can be electrically connected to different second conductive elements 1412 respectively. Thus, there are a total of 3 contacts, which means that 3 second conductive elements 1412 are required, corresponding to the left and right sides of the lamp panel 1411. That is, one side has 2 second conductive elements 1412 and the other side has 1 second conductive element 1412. This means that the two first conductive elements 1421 and the two power supply terminals 1422 in the power supply box 1423 on one side are electrically connected to the two second conductive elements 1412 on that side. The one first conductive element 1421 and the one power supply terminal 1422 in the power supply box 1423 on the other side are electrically connected to the one second conductive element 1412 on that side, thereby satisfying the power supply of the lamp panel 1411.

[0176] Accordingly, when the lamp assembly includes two lamp panels 1411, the second electrical connection can be the cathode terminal, i.e., common cathode. Other configurations are similar to the above, and also require three second conductive elements 1412.

[0177] like Figures 11 to 18 As shown, in some embodiments, the light-emitting element 141 includes a decorative strip 1413 disposed at the end of the shelf 131 and accommodating the lamp panel assembly.

[0178] The power generation box 1414 is disposed on the decorative strip 1413. The power generation box 1414 is used to accommodate the second conductive element 1412. The extension direction of the power generation box 1414 has an angle with the extension direction of the decorative strip 1413.

[0179] The above technical solution has the following advantages or beneficial effects: the decorative strip 1413 not only provides an aesthetically pleasing design but also effectively accommodates the lamp panel assembly, combining the functionality and aesthetics of the light-emitting element 141. The extension direction of the power generation box 1414 forms an angle with the extension direction of the decorative strip 1413. This design optimizes the electrical layout, making the arrangement of conductive components more rational. This angled design may help reduce wire bending and crossing, improving the reliability of electrical connections.

[0180] It should be noted that the design of the generator box 1414 provides protection for the second conductive element 1412, preventing it from being affected by external environmental factors such as mechanical shock or vibration. This reduces the risk of short circuits and other electrical faults, improving system safety.

[0181] In some embodiments, a receiving groove for mounting a lamp panel assembly is formed within the decorative strip 1413, and the lamp panel assembly is mounted within the receiving groove. The lamp panel 1411 in the lamp panel assembly may include a circuit board and lamp beads disposed on the circuit board. The ambiance of the refrigerator 100 can be enhanced by setting the color of the light emitted by the lamp beads.

[0182] For example, the decorative strip 1413 has an opening through which the rear end of the shelf 131 passes, so that the decorative strip 1413 can be snapped into the rear end of the shelf 131, thereby fixing the light panel assembly to the shelf 131.

[0183] For example, along the direction from the front side to the rear side of the housing 110, the decorative strip 1413 is divided into three sections. The first section has an opening to engage with the side wall of the shelf 131. The third section has a larger cross-section than the first section to form a receiving groove to accommodate the lamp assembly. The third section is a sealing section that can enclose the lamp assembly within the decorative strip 1413, preventing the lamp assembly from being corroded by moisture and improving the safety of the lamp assembly. The second section is a transition section that connects the first and third sections.

[0184] In some embodiments, the power generation box 1414 is connected to the decorative strip 1413, wherein the second conductive element 1412 in the power generation box 1414 is electrically connected to the lamp panel 1411 in the decorative strip 1413.

[0185] The power generation box 1414 extends along the front side of the housing 110 toward the rear side of the housing 110. In some examples, the power generation box 1414 includes a housing 14141 and a cover 14142, wherein the cover 14142 can be placed on the housing 14141 to form the power generation box 1414.

[0186] The box 14141 has an opening on the side facing the first conductive member 1421, which allows the second conductive member 1412 inside the power generation box 1414 to pass through the opening and be electrically connected to the first conductive member 1421, or allows the first conductive member 1421 to pass through the opening and be electrically connected to the second conductive member 1412.

[0187] In some embodiments, the first conductive element 1421 is a conductive spring; and / or,

[0188] The second conductive component 1412 is a conductive block.

[0189] The above technical solution has the following advantages or beneficial effects: the design of the conductive spring and conductive block simplifies the installation process. The conductive spring can be quickly connected by simple pressing or snap-fit, while the conductive block can be installed by fixing screws or insertion.

[0190] The conductive spring is elastic and can provide stable contact pressure, ensuring a reliable electrical connection.

[0191] In some embodiments, the conductive block is typically made of a highly conductive and corrosion-resistant material, exhibiting good mechanical strength and durability. Combined with the elastic properties of the conductive spring, this combination can provide a long-life electrical connection and reduce maintenance requirements.

[0192] The combination of conductive springs and conductive blocks allows for flexible design configurations that can adapt to different space constraints and connection requirements.

[0193] In some embodiments, the first conductive element 1421 is bent and the second end of the first conductive element 1421 is triangular to improve the electrical contact with the second conductive element 1412.

[0194] The refrigerator provided in this application includes a cabinet with an inner liner, the inner liner having: a refrigerator compartment; a door movably connected to the cabinet and configured to open and close the refrigerator compartment; a shelf assembly disposed in the inner liner and located inside the refrigerator compartment; and a light-emitting component including: a light-emitting element disposed on the rear side of the shelf assembly and located on the rear side of the cabinet, the light-emitting element having at least two light-emitting parts with different light-emitting colors; and a power supply component disposed in the inner liner and electrically connected to the light-emitting element.

[0195] The arrangement between the shelf unit and the light-emitting component is such that the light-emitting element is installed at the rear of the shelf unit, and the power supply unit is electrically connected to the light-emitting element, enabling it to emit light. Since the light-emitting element emits light from the rear of the shelf unit towards the front, it can increase the brightness of the rear of the refrigerator compartment, making it easier for users to identify items. At the same time, the light-emitting element has at least two light-emitting parts that can emit different colors, which not only increases the brightness but can also be used as a preservation light to improve the preservation effect of food. In addition, the shelf unit can be disassembled relative to the inner liner of the refrigerator to match different heights. The structure is reliable, practical, and provides a good user experience.

[0196] In the description of this application, it should be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential", etc., indicating the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this application.

[0197] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include at least one of that feature. In the description of this application, "multiple" means at least two, such as two, three, etc., unless otherwise explicitly specified.

[0198] 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, The refrigerator comprises: a cabinet (110) having a cabinet liner (111) with: a refrigeration chamber (1111); a door body (120) movably connected to the cabinet (110) and configured to open and close the refrigeration chamber (1111); a shelf member (130) provided in the cabinet liner (111) and located in the refrigeration chamber (1111); a light-emitting assembly (140) comprising: a light-emitting member (141) provided at the rear side of the shelf member (130) and located at the rear side of the cabinet (110), the light-emitting member (141) having at least two light-emitting portions with different light-emitting colors; a power supply member (142) provided in the cabinet liner (111) and electrically connected to the light-emitting member (141).

2. The refrigerator (100) according to claim 1, characterized in that, The power supply member (142) is provided on the side of the cabinet liner (111) away from the shelf member (130); The light-emitting member (141) is provided at the end of the shelf member (130) and extends towards the direction facing the power supply member (142).

3. The refrigerator (100) according to claim 2, characterized in that, The light-emitting assembly (140) further comprises: a controller electrically connected to the power supply member (142) and configured to control the power supply member (142) to supply power to at least one of the light-emitting portions in the light-emitting member (141).

4. The refrigerator (100) according to any one of claims 1-3, characterized in that, The shelf member (130) comprises a shelf plate (131) which is provided in the cabinet liner (111); The power supply member (142) is at least two, and the at least two power supply members (142) are respectively located on opposite sides of the shelf plate (131) along the width direction of the cabinet (110); The at least two light-emitting portions are arranged on the shelf plate (131) along the height direction of the cabinet (110).

5. The refrigerator (100) according to claim 4, characterized in that, The power supply member (142) comprises: at least one power supply terminal (1422) configured to be connected to a power supply; at least one first conductive member (1421), the first end of the first conductive member (1421) being electrically connected to the power supply terminal (1422), and the second end of the first conductive member (1421) being electrically connected to the light-emitting member (141).

6. The refrigerator (100) according to claim 5, characterized in that The power supply member (142) further comprises: a power supply box (1423) provided in the cabinet liner (111), the power supply box (1423) having: at least two accommodating cavities, one of the accommodating cavities being used for accommodating one of the power supply terminals (1422) and at least part of one of the first conductive members (1421); The first end of the first conductive member (1421) is located in the accommodating cavity, and the second end of the first conductive member (1421) is located outside the accommodating cavity.

7. The refrigerator (100) according to claim 5, characterized in that, The light-emitting member (141) comprises: a lamp plate (1411) provided on the shelf plate (131), the light-emitting portion being the lamp plate (1411), the lamp plate (1411) being at least two, and the at least two lamp plates (1411) forming a lamp plate group; A second conductive member (1412) has a first end electrically connected to one of the lamp panels (1411) in the lamp panel group and a second end electrically connected to the second end of the first conductive member (1421).

8. The refrigerator (100) according to claim 7, characterized in that, The second conductive member (1412) is in plurality. The lamp panel group has a plurality of first electrical connection positions, and each of the first electrical connection positions is electrically connected to the same second conductive member (1412); or The lamp panel group has a plurality of second electrical connection positions, and each of the second electrical connection positions is electrically connected to the same second conductive member (1412).

9. The refrigerator (100) according to claim 7, characterized in that, The light emitting member (141) comprises: A decorative strip (1413) is arranged at an end of the layer plate (131) and accommodates the lamp panel group; A power generation box (1414) is arranged at the decorative strip (1413), the power generation box (1414) is used for accommodating the second conductive member (1412), and an included angle is formed between an extension direction of the power generation box (1414) and an extension direction of the decorative strip (1413).

10. The refrigerator (100) of claim 7, wherein The first conductive member (1421) is a conductive spring; and / or The second conductive member (1412) is a conductive block.