Embedded refrigerator
By separating the housing chamber of the embedded refrigerator into two parts and installing condensers on the mounting rack, the complex assembly and maintenance process is solved, and by using elastic seal strips instead of back plate sealing, the maintenance process is simplified and operation difficulty is reduced.
Patent Information
- Application Number
- CN202422068053.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-23
- Publication Date
- 2025-06-03
- Estimated Expiration
- 2034-08-23
AI Technical Summary
The assembly and maintenance process of embedded refrigerators are complicated and troublesome, and difficult to effectively solve.
By separating the accommodation chamber into two parts and installing a condenser on the mounting frame, the layout of the compressor and condenser is more reasonable, making it easier to assembly and maintenance; at the same time, an elastic seal strip is used instead of the back plate to seal the accommodation chamber, simplifying the maintenance and assembly process.
It improves the rationality of the layout of the compressor and condenser, and facilitates assembly and maintenance; through the use of elastic seal strips, the maintenance and assembly process is simplified, the operation difficulty is reduced, and the cost of backplane components is saved.
Smart Images

Figure CN222938102U_ABST
Abstract
Description
Technical Field
[0001] The embodiments of the present application relate to the technical field of household appliances, and in particular to a built-in refrigerator. Background Art
[0002] A built-in refrigerator is a refrigerator designed to be embedded in a kitchen cabinet or other furniture. The side walls and rear side of the built-in refrigerator usually need to be close to the inner wall of the cabinet to save the installation space of the built-in refrigerator. The rear side of the built-in refrigerator is provided with a closed accommodating cavity, which can be used to accommodate structures such as a compressor and a condenser. However, the structure of the rear side of the built-in refrigerator is complicated, and the assembly process and maintenance process of the built-in refrigerator are troublesome. Utility Model Content
[0003] The embodiment of the present application provides a built-in refrigerator, which can solve the technical problem of complicated assembly and maintenance processes of the built-in refrigerator.
[0004] In a first aspect, an embodiment of the present application provides a built-in refrigerator, comprising a box body, a rear side of which is provided with a receiving cavity; the box body is further provided with a mounting frame, and the mounting frame separates the receiving cavity into a first part and a second part;
[0005] A compressor, disposed in the first portion of the accommodating chamber;
[0006] A condenser, arranged on the mounting frame, wherein a first surface of the condenser faces a first portion of the accommodating cavity, the condenser is communicated with the compressor, and a second surface of the condenser faces a second portion of the accommodating cavity;
[0007] An elastic sealing strip is arranged on the rear side of the box body; at least a part of the elastic sealing strip is connected to the mounting frame, and a surface of the elastic sealing strip facing away from the box body is at least used to fit with the cabinet.
[0008] The built-in refrigerator of the embodiment of the present application divides the accommodating cavity into two parts and installs the condenser on the mounting frame, so that the layout of the compressor and the condenser is more reasonable and convenient for assembly and maintenance; the first surface of the condenser is a side with heat dissipation fins, and the second surface of the condenser is a side away from the heat dissipation fins. By facing the first surface of the condenser to the first part where the compressor is located and the second surface to the second part, the heat dissipation efficiency of the condenser is improved;
[0009] The elastic sealing strip is arranged at the rear side of the box body and connected to the mounting rack, which can effectively fit with the cabinet, enhance the sealing performance at the bottom of the refrigerator's accommodation cavity, thus isolating the cold air outside the box from the hot air generated inside the accommodation cavity and improving the heat dissipation efficiency. At the same time, using the elastic sealing strip to seal the cabinet and the accommodation cavity replaces the way of using the back panel to seal the accommodation cavity in the prior art, avoiding the inconvenience of disassembling the back panel during maintenance and assembly, simplifying the maintenance and assembly process, reducing the operation difficulty. Only by moving the refrigerator out of the cabinet can the inside of the accommodation cavity be maintained, and the cost of the back panel component is saved. The elastic sealing strip supports the cabinet and can also reduce the noise and vibration of the refrigerator.
[0010] In some embodiments of the present application, the mounting rack is provided with a ventilation opening, and a first part of the accommodation cavity communicates with a second part of the accommodation cavity through the ventilation opening;
[0011] A first part of the accommodation cavity is provided with an air outlet, a second part of the accommodation cavity is provided with an air inlet, and the orientation of the air inlet is opposite to the orientation of the air outlet.
[0012] By providing a ventilation opening on the mounting rack, the first part and the second part of the accommodation cavity can communicate, ensuring smoother air circulation inside the accommodation cavity. During the operation of the compressor and the condenser, heat is generated. Through a reasonable air circulation design, the heat can be effectively dissipated, avoiding overheating of the equipment caused by heat accumulation, thereby improving the working efficiency and service life of the refrigerator.
[0013] The first part of the accommodation cavity is provided with an air outlet, the second part is provided with an air inlet, and the air inlet and the air outlet are opposite in orientation. Such a design can form an effective air circulation path. The cold air enters from the air inlet, passes through the condenser and the compressor, and the hot air is discharged from the air outlet. This convection design can ensure better heat dissipation effect of the condenser and the compressor, thereby improving the refrigeration efficiency of the refrigerator.
[0014] In some embodiments of the present application, the built-in refrigerator is further provided with a fan, and the fan is arranged in the first part of the accommodation cavity; the air inlet end of the fan faces the ventilation opening, and the air outlet end of the fan faces the air outlet.
[0015] The setting of the fan can significantly enhance the air flow in the accommodation cavity, accelerate the discharge of heat, and improve the heat dissipation efficiency;
[0016] The air inlet end of the fan faces the ventilation opening, which can effectively suck in cold air; the air outlet end of the fan faces the air outlet, which can quickly discharge hot air, ensuring the directionality and effectiveness of air flow, improving the heat dissipation efficiency, helping to keep the temperature inside the accommodation cavity within a reasonable range, preventing the compressor and the condenser from overheating, and improving the overall heat dissipation efficiency of the refrigerator.
[0017] In some embodiments of the present application, at least a portion of the air outlet is arranged upward, and at least a portion of the air inlet is arranged downward;
[0018] and / or, at least a portion of the air outlet faces away from the second part of the accommodation cavity, and at least a portion of the air inlet faces away from the first part of the accommodation cavity.
[0019] The fact that at least a portion of the air outlet is arranged upward means that the hot air generated by the compressor and the condenser can be discharged upward through the air outlet. This design can utilize the physical property of hot air rising naturally, and can more effectively dissipate the heat to the space above the refrigerator, thus avoiding the accumulation of hot air around the refrigerator and affecting the heat dissipation effect of the refrigerator; the fact that at least a portion of the air inlet is arranged downward means that cold air can enter from below the refrigerator, utilizing the physical property of cold air sinking naturally, and can more effectively and accurately suck in the air at a lower temperature, thereby improving the heat dissipation efficiency of the condenser.
[0020] The fact that at least a portion of the air outlet faces away from the second part of the accommodation cavity means that the air outlet is arranged at a position far from the second part of the accommodation cavity. In this way, the direct return of hot air to the accommodation cavity can be avoided, thereby improving the heat dissipation efficiency; the fact that at least a portion of the air inlet faces away from the first part of the accommodation cavity means that the air inlet is arranged at a position far from the first part of the accommodation cavity. In this way, it can be ensured that the cold air enters from a position far from the heat source, thereby improving the heat dissipation efficiency of the condenser.
[0021] The reasonable layout of the air outlet and the air inlet can reduce the accumulation of heat inside the refrigerator, thereby reducing the equipment failure rate and simplifying the maintenance process.
[0022] In some embodiments of the present application, the first part of the accommodation cavity and the second part of the accommodation cavity are arranged horizontally;
[0023] The first part of the air outlet faces upward and the side away from the second part of the accommodation cavity, and the second part of the air outlet faces downward and the side away from the first part of the accommodation cavity.
[0024] Since the accommodation cavity is divided into two parts and arranged horizontally, the components of each part can be processed separately during assembly and maintenance, which can reduce the workload of disassembly and reassembly and improve work efficiency; the first part of the air outlet faces upward and the second part faces downward. Such a design helps to form natural convection, enabling the hot air to be discharged more quickly, effectively reducing the temperature inside the accommodation cavity, improving the working efficiency of the compressor and the condenser, and extending the service life of the equipment; the two parts of the accommodation cavity are arranged horizontally, making the overall design of the refrigerator more compact and enabling it to be better embedded in kitchen cabinets or other furniture.
[0025] In some embodiments of the present application, the elastic sealing strip includes a first sealing portion, a second sealing portion, and a third sealing portion arranged in sequence;
[0026] The first sealing portion is arranged on the lower side of the first part of the accommodating cavity, the second sealing portion is arranged on the mounting bracket, and the third sealing portion is located on the upper side of the second part of the accommodating cavity.
[0027] The first sealing portion is arranged on the lower side of the first part of the accommodating cavity, which can be used to seal the bottom of the accommodating cavity to prevent dust and sundries from entering; the setting of the second sealing portion can ensure the sealing performance between the mounting bracket and the cabinet, further improving the overall sealing effect; the third sealing portion is mainly used to seal the top of the accommodating cavity, which can prevent condensed water and other liquids from entering; the settings of the first sealing portion, the second sealing portion, and the third sealing portion ensure the isolation between the first part and the second part of the accommodating cavity, avoiding the hot air generated by the compressor and the condenser from mixing with the external cold air, improving the heat dissipation efficiency, thereby protecting the normal operation of the internal equipment and prolonging its service life.
[0028] In some embodiments of the present application, a connecting member is further included;
[0029] The first surface of the connecting member is fixedly connected to the rear side of the box body and the mounting bracket, and the second surface of the connecting member is fixedly connected to the elastic sealing strip.
[0030] By providing the connecting member, the elastic sealing strip can be installed on the back of the refrigerator accommodating cavity, providing a fixed support for the elastic sealing strip, enabling the elastic sealing strip to play a role in sealing the bottom of the accommodating cavity; at the same time, fixing the elastic sealing strip through the connecting member enables the elastic sealing strip to be more firmly installed on the refrigerator box body, avoiding falling off during use; the elastic sealing strip can be directly installed through the connecting member, simplifying the installation and replacement process, and the structure of the connecting member is simple, and the installation and disassembly process is simple and fast.
[0031] In some embodiments of the present application, in the width direction of the connecting member, the elastic sealing strip is arranged in the middle of the connecting member, and the width of the elastic sealing strip is smaller than the width of the connecting member;
[0032] And / or, the surface of the elastic sealing strip facing away from the connecting member protrudes relative to the second surface of the connecting member.
[0033] The width of the elastic sealing strip is smaller than that of the connecting member, which can ensure the firm installation of the elastic sealing strip on the connecting member, reduce the alignment difficulty during the assembly process, and improve the assembly efficiency; one surface of the elastic sealing strip contacts the connecting member, and its surface facing away from the connecting member protrudes relative to the second surface of the connecting member, which means that the elastic sealing strip forms a raised portion on the connecting member. The elastic sealing strip has enough space to compress and expand between the refrigerator body and the cabinet, so as to provide a good sealing effect.
[0034] In some embodiments of the present application, the connecting member is provided with a plurality of fixing parts, and the connecting member is fixedly connected to the rear side of the box body through the plurality of fixing parts;
[0035] Alternatively, the connecting member and the mounting bracket are integrally provided.
[0036] Through the design of a plurality of fixing parts, the connecting member is fixedly connected to the rear side of the box body through these fixing parts, thereby forming a stable structure, which can ensure a more stable connection between the connecting member and the rear side of the box body, and avoid loosening or falling off of the connecting member due to vibration or other external forces; at the same time, a plurality of fixing parts are provided on the connecting member, which can conveniently fix the connecting member on the rear side of the box body, simplify the assembly process, and reduce the difficulty and time cost of maintenance.
[0037] The design of integrally providing the connecting member and the mounting bracket can improve the overall strength and stability of the structure, ensure the stable operation of the device, reduce the number of parts, simplify the assembly process, improve the assembly efficiency, and reduce the manufacturing cost and maintenance cost.
[0038] In a second aspect, an embodiment of the present application provides an embedded refrigerator, including: a box body, a compressor, a condenser and an elastic sealing strip;
[0039] A receiving cavity is provided at the rear side of the box body; the box body is further provided with a mounting bracket for mounting the condenser; the mounting bracket divides the receiving cavity into a first part and a second part, and the first part of the receiving cavity houses the compressor;
[0040] The embedded refrigerator is configured such that when the embedded refrigerator is located in the cabinet, the elastic sealing strip is located between the box body and the rear wall of the cabinet, and the elastic sealing strip is at least used to separate the first part and the second part of the receiving cavity. Description of the Drawings
[0041] In order to more clearly illustrate the embodiments of the present application or the implementation manners in the related art, the following will briefly introduce the drawings required for use in the description of the embodiments or the related art. Obviously, the drawings in the following description are some embodiments of the present application. For those of ordinary skill in the art, other drawings can also be obtained according to these drawings.
[0042] Figure 1 Schematic diagram of the back structure of the built-in refrigerator according to the embodiment of the present application;
[0043] Figure 2 is Figure 1 the enlarged view of part A in
[0044] Figure 3 Schematic diagram of the overall structure of the built-in refrigerator according to the embodiment of the application;
[0045] Figure 4 Schematic diagram of the internal structure of the accommodation cavity in the built-in refrigerator according to the embodiment of the present application;
[0046] Figure 5 Schematic diagram of another angle of the internal structure of the accommodation cavity in the built-in refrigerator according to the embodiment of the present application;
[0047] Figure 6 Schematic diagram of the connection between the mounting bracket and the condenser and the fan in the built-in refrigerator according to the embodiment of the present application;
[0048] Figure 7 Schematic diagram of the connection between the mounting bracket and the connecting piece in the built-in refrigerator according to the embodiment of the present application;
[0049] Figure 8 Schematic diagram of the structure of the connecting piece in the built-in refrigerator according to the embodiment of the present application;
[0050] Figure 9 is Figure 8 the enlarged view of part A in
[0051] Figure 10 Exploded view of the connecting piece and the elastic sealing strip in the built-in refrigerator according to the embodiment of the present application.
[0052] Description of reference numerals:
[0053] 100, box body;
[0054] 110, accommodation cavity;
[0055] 120, mounting bracket;
[0056] 200, compressor;
[0057] 300, condenser;
[0058] 400, elastic sealing strip;
[0059] 410, first sealing part;
[0060] 420, second sealing part;
[0061] 430, third sealing part;
[0062] 500, Blower;
[0063] 600, Connecting member;
[0064] 610, Fixing part. Specific embodiments
[0065] As described in the background art, in the related art, the side wall and the rear side of an embedded refrigerator usually need to be close to the inner wall of the cabinet to save the installation space of the embedded refrigerator. A closed receiving cavity is provided at the rear side of the embedded refrigerator, and the receiving cavity can be used to accommodate structures such as a compressor and a condenser. However, the structure at the rear side of the embedded refrigerator is complex, and the assembly process and the maintenance process of the embedded refrigerator are troublesome. It is necessary to disassemble the back panel to open the receiving cavity to maintain the equipment inside.
[0066] In view of this, the embedded refrigerator according to the embodiment of the present application divides the receiving cavity into two parts and installs a condenser on the mounting rack, so that the layout of the compressor and the condenser is more reasonable, facilitating assembly and maintenance;
[0067] An elastic sealing strip is provided at the rear side of the box body and is connected to the mounting rack, which can effectively fit with the cabinet, enhancing the sealing performance at the bottom of the receiving cavity of the refrigerator, thereby isolating the cold air outside the box from the hot air generated inside the receiving cavity and improving the heat dissipation efficiency; at the same time, using the elastic sealing strip to seal the cabinet and the receiving cavity replaces the way of using the back panel to seal the receiving cavity in the prior art, avoiding the inconvenience of disassembling the back panel during maintenance and assembly, simplifying the maintenance and assembly process, reducing the operation difficulty, and only need to move the refrigerator out of the cabinet to maintain the inside of the receiving cavity, and the cost of the back panel component is saved.
[0068] To make the purpose, implementation manner and advantages of the present application clearer, the following will clearly and completely describe the exemplary implementation manner of the present application with reference to the drawings in the exemplary embodiments of the present application. Obviously, the described exemplary embodiments are only a part of the embodiments of the present application, rather than all of the embodiments.
[0069] It should be noted that the brief description of the terms in the present application is only for the convenience of understanding the following described implementation manner, rather than intending to limit the implementation manner of the present application. Unless otherwise specified, these terms should be understood in their ordinary and common meanings.
[0070] In addition, the terms "comprising" and "having" and any variations thereof are intended to cover but not exclude inclusion. For example, a product or device comprising a series of components does not necessarily have to be limited to those components clearly listed, but may include other components not clearly listed or inherent to these products or devices.
[0071] In the description of the present application, it should be understood that the orientation or positional relationship indicated by terms such as "center", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. is based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing the present application and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation to the present application.
[0072] Terms such as "first", "second", etc. are only used for descriptive purposes and should not be construed as indicating or implying relative importance or implicitly specifying the quantity of the indicated technical features. Thus, features defined with "first", "second" may explicitly or implicitly include one or more of such features. In the description of the present application, unless otherwise stated, the meaning of "a plurality" is two or more.
[0073] In the description of the present application, it should be noted that unless otherwise clearly specified and limited, the terms "installed", "connected", "coupled" should be understood in a broad sense. For example, it may be a fixed connection, a detachable connection, or an integral connection; it may be a mechanical connection or an electrical connection; it may be directly connected or indirectly connected through an intermediate medium, and it may be the communication inside two elements. For those of ordinary skill in the art, the specific meanings of the above terms in the present application can be understood according to specific circumstances.
[0074] Next, the technical solutions in the embodiments of the present application will be clearly and completely described in conjunction with the drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present application without creative efforts shall fall within the protection scope of the present application.
[0075] Refer to Figures 1-5 , an embedded refrigerator is provided in an embodiment of the present application, including:
[0076] A cabinet 100, a receiving cavity 110 may be provided at the rear side of the cabinet 100.
[0077] By providing the receiving cavity 110, key components can be concentrated in the receiving cavity 110, thereby making the maintenance process more concentrated and orderly.
[0078] The cabinet 100 is the main structure of the refrigerator for storing food and other items. The receiving cavity 110 can be used to hold relevant refrigeration working components of the refrigerator and also provide a hot air discharge space for the heat dissipation of the relevant refrigeration working components.
[0079] The cabinet 100 may also be provided with a mounting bracket 120, and the mounting bracket 120 can divide the accommodation cavity 110 into a first part and a second part.
[0080] The built-in refrigerator further includes a compressor 200, which is disposed in the first part of the accommodation cavity 110.
[0081] It should be understood that the compressor 200 is the core component of the refrigerator refrigeration system, and its main function is to compress the refrigerant so that it circulates and flows, thereby achieving the refrigeration effect.
[0082] The built-in refrigerator further includes a condenser 300, which is disposed on the mounting bracket 120. The first surface of the condenser 300 faces the first part of the accommodation cavity 110, the condenser 300 is communicated with the compressor 200, and the second surface of the condenser 300 faces the second part of the accommodation cavity 110.
[0083] It should be understood that the condenser 300 is an important component in the refrigerator refrigeration system, and its main function is to cool and condense the high-temperature and high-pressure gaseous refrigerant discharged from the compressor 200 into a liquid refrigerant. The condenser 300 receives the high-temperature and high-pressure gaseous refrigerant from the compressor 200. These gaseous refrigerants are compressed in the compressor 200, and the temperature and pressure both increase significantly; when the high-temperature and high-pressure gaseous refrigerant flows in the pipes of the condenser 300, it exchanges heat with the surrounding air. The condenser 300 transfers the heat of the refrigerant to the surrounding air through the heat dissipation fins, so that the refrigerant is gradually cooled; as the temperature of the refrigerant decreases, the gaseous refrigerant gradually condenses into a liquid refrigerant, and this process is called condensation.
[0084] The accommodation cavity 110 can isolate the heat-generating components such as the compressor 200 and the condenser 300 from the inside of the refrigerator, reduce the influence of heat on the internal temperature of the refrigerator, and improve the refrigeration efficiency of the refrigerator.
[0085] By dividing the accommodation cavity 110 into two parts and installing the condenser 300 on the mounting bracket 120, the layout of the compressor 200 and the condenser 300 is more reasonable, which is convenient for assembly and maintenance.
[0086] Wherein, the first surface of the condenser 300 is the side with heat dissipation fins, and the second surface of the condenser 300 is the side away from the heat dissipation fins. By facing the first surface of the condenser 300 towards the first part where the compressor 200 is located and the second surface of the condenser 300 towards the second part, it helps to improve the heat dissipation efficiency of the condenser 300.
[0087] The built-in refrigerator further includes an elastic sealing strip 400, and the elastic sealing strip 400 is disposed on the rear side of the cabinet 100; at least part of the elastic sealing strip 400 is connected to the mounting bracket 120, and the surface of the elastic sealing strip 400 facing away from the cabinet 100 is at least used to fit with the cabinet.
[0088] The elastic sealing strip 400 on the rear side of the cabinet 100 can effectively fit the bottom edge of the accommodation cavity 110 with the cabinet, enhance the sealing performance of the bottom of the accommodation cavity 110, thereby isolating the cold air outside the cabinet 100 from the hot air generated inside the accommodation cavity 110, and improving the heat dissipation efficiency. At the same time, using the elastic sealing strip 400 to seal the cabinet and the accommodation cavity 110 replaces the traditional sealing method of using the back panel to seal the accommodation cavity 110, avoiding the inconvenience of disassembling the back panel during maintenance and assembly, simplifying the maintenance and assembly process, reducing the operation difficulty, and only need to move the refrigerator out of the cabinet to perform maintenance on the inside of the accommodation cavity 110, and also saving the cost of the back panel component. The elastic sealing strip 400 is in contact with the cabinet support, and can also reduce the noise and vibration of the refrigerator.
[0089] In some possible implementation manners, the mounting frame 120 may be provided with a ventilation opening.
[0090] The first part of the accommodation cavity 110 can communicate with the second part of the accommodation cavity 110 through the ventilation opening.
[0091] It should be understood that the ventilation opening can be formed on the mounting frame 120 through the natural opening of the condenser 300. Of course, the ventilation opening can also be opened at a position on the mounting frame 120 close to the condenser 300, as long as the ventilation opening can realize the communication between the first part and the second part of the accommodation cavity 110 and the air can circulate. The embodiments of the present application do not impose too many restrictions on the structure of the ventilation opening.
[0092] By providing the ventilation opening on the mounting frame, the first part and the second part of the accommodation cavity 110 can communicate, which can ensure that the air circulation inside the accommodation cavity 110 is smoother. During the operation of the compressor 200 and the condenser 300, heat will be generated. Through reasonable air circulation design, the heat can be effectively dissipated, avoiding equipment overheating caused by heat accumulation, thereby improving the working efficiency and service life of the refrigerator.
[0093] The first part of the accommodation cavity 110 may be provided with an air outlet, and the second part of the accommodation cavity 110 may be provided with an air inlet, and the orientation of the air inlet is opposite to the orientation of the air outlet.
[0094] By using the above technical solution, an effective air circulation path can be formed. The cold air enters from the air inlet, and after passing through the condenser 300 and the compressor 200, the hot air is discharged from the air outlet. This convection design can ensure the heat dissipation effect of the condenser 300 and the compressor 200, thereby improving the refrigeration efficiency of the refrigerator.
[0095] Refer to Figure 6 , in some possible implementation manners, the built-in refrigerator may also be provided with a fan 500.
[0096] The setting of the blower 500 can significantly enhance the air flow in the accommodation cavity 110, accelerate the discharge of the heat generated by the compressor 200 and the condenser 300 during operation, and improve the heat dissipation efficiency.
[0097] The blower 500 can be arranged in the first part of the accommodation cavity 110; the air inlet end of the blower 500 faces the ventilation opening, and the air outlet end of the blower 500 faces the air outlet opening.
[0098] The air inlet end of the blower 500 facing the ventilation opening can effectively inhale cold air; the air outlet end of the blower 500 facing the air outlet opening can quickly discharge hot air, ensuring the directionality and effectiveness of the air flow, improving the heat dissipation efficiency, helping to keep the temperature inside the accommodation cavity 110 within a reasonable range, preventing the compressor 200 and the condenser 300 from overheating, and improving the overall heat dissipation efficiency of the refrigerator.
[0099] In some possible implementation manners, at least part of the air outlet opening can be arranged upward, and at least part of the air inlet opening can be arranged downward.
[0100] It can be understood that the air outlet opening can be formed by the elastic seal 400 in the gap formed between the first part of the accommodation cavity 110 and the rear side of the box body 100.
[0101] At least part of the air outlet opening being arranged upward means that the hot air generated by the compressor 200 and the condenser 300 can be discharged upward through the air outlet opening. This design can utilize the physical property of hot air rising naturally, and can more effectively dissipate the heat to the space above the refrigerator, thus avoiding the accumulation of hot air around the refrigerator and affecting the heat dissipation effect of the refrigerator; at least part of the air inlet opening being arranged downward means that cold air can enter from below the refrigerator, utilizing the physical property of cold air sinking naturally, and can more effectively and accurately inhale the air with a lower temperature, thereby improving the heat dissipation efficiency of the condenser 300.
[0102] And / or, at least part of the air outlet opening can face away from the second part of the accommodation cavity 110, and at least part of the air inlet opening can face away from the first part of the accommodation cavity 110.
[0103] At least part of the air outlet opening facing away from the second part of the accommodation cavity means that the air outlet opening is arranged at a position far from the second part of the accommodation cavity 110. In this way, the direct return of hot air to the accommodation cavity 110 can be avoided, thereby improving the heat dissipation efficiency; at least part of the air inlet opening facing away from the first part of the accommodation cavity 110 means that the air inlet opening is arranged at a position far from the first part of the accommodation cavity 110. In this way, it can be ensured that the cold air enters from a position far from the heat source, thereby improving the heat dissipation efficiency of the condenser 300.
[0104] The reasonable layout of the air outlet opening and the air inlet opening can reduce the accumulation of heat inside the refrigerator, thereby reducing the equipment failure rate and simplifying the maintenance process.
[0105] In some possible embodiments, the first part of the accommodation cavity 110 and the second part of the accommodation cavity 110 may be arranged horizontally.
[0106] By using the above technical solution, the components of each part can be processed separately during assembly and maintenance, which can reduce the workload of disassembly and reassembly and improve work efficiency; the two parts of the accommodation cavity 110 are arranged horizontally, making the overall design of the refrigerator more compact and enabling it to be better embedded in the kitchen cabinet.
[0107] The first part of the air outlet can face upward and the side away from the second part of the accommodation cavity 110, and the second part of the air outlet can face downward and the side away from the first part of the accommodation cavity 110.
[0108] By using the above technical solution, it helps to form natural convection in the accommodation cavity 110, enabling hot air to be discharged more quickly, effectively reducing the temperature in the accommodation cavity 110, improving the working efficiency of the compressor 200 and the condenser 300, and extending the service life of the equipment.
[0109] Reference Figure 10 In some possible embodiments, the elastic sealing strip 400 may include a first sealing portion 410, a second sealing portion 420, and a third sealing portion 430 arranged in sequence.
[0110] The first sealing portion 410 may be disposed on the lower side of the first part of the accommodation cavity 110.
[0111] At this time, it can be understood that the air outlet may be formed by the gap formed by the first sealing portion 410 between the first part of the accommodation cavity 110 and the back of the box body 100. Since the first sealing portion 410 is higher than the rear side of the box body 100, when the first sealing portion 410 fits the cabinet, a gap between the box body 100 and the cabinet is formed upward along the first sealing portion 410. This gap is used as the air outlet for hot air discharge. Due to the siphon effect, the hot air is lighter and with the action of wind pressure, the hot air accelerates upward and diffuses, strengthening the air circulation, reducing the condensation temperature, thereby reducing the working load of the compressor 200, and thus reducing energy consumption and achieving an energy-saving effect.
[0112] By using the above technical solution, the first sealing portion 410 can be used to seal the bottom of the accommodation cavity 110 to prevent dust and debris from entering.
[0113] Exemplarily, there are two first sealing portions 410, and the two first sealing portions 410 are arranged in sequence from top to bottom, further enhancing the sealing performance of the bottom of the accommodation cavity 110.
[0114] The second sealing portion 420 may be disposed on the mounting frame 120.
[0115] The setting of the second sealing part 420 can ensure the sealing performance between the mounting rack 120 and the cabinet, further improving the overall sealing and isolation effect.
[0116] The third sealing part 430 can be located on the upper side of the second part of the accommodating cavity 110.
[0117] The third sealing part 430 is mainly used to seal the top of the accommodating cavity 110, which can prevent condensed water and other liquids from entering; the settings of the first sealing part 410, the second sealing part 420, and the third sealing part 430 ensure the isolation of the first part and the second part of the accommodating cavity 110, avoiding the mixing of the hot air generated by the compressor and the condenser with the external cold air, improving the heat dissipation efficiency, thereby protecting the normal operation of the internal equipment and extending its service life. The hot air generated by the condenser 300 and the compressor 300 passes through the top of the first sealing part 410 and rises and is discharged along the gap between the refrigerator and the cabinet.
[0118] Reference Figures 7-9 In some possible implementation manners, the built-in refrigerator of the embodiment of the present application may further include a connecting member 600.
[0119] By setting the connecting member 600, the elastic sealing strip 400 can be installed on the back of the refrigerator accommodating cavity 110, providing a fixed support point for the elastic sealing strip 400, so that the elastic sealing strip 400 plays a role in sealing the bottom of the accommodating cavity 110; at the same time, by fixing the elastic sealing strip 400 through the connecting member 600, the elastic sealing strip 400 can be more firmly installed on the refrigerator body 100, avoiding falling off during use; the elastic sealing strip 400 can be directly installed through the connecting member 600, simplifying the installation and replacement process, and the structure of the connecting member 600 is simple, and the installation and disassembly process is simple and fast.
[0120] The first surface of the connecting member 600 can be fixedly connected to the rear side of the box body 100 and the mounting rack 120, and the second surface of the connecting member 600 can be fixedly connected to the elastic sealing strip 400.
[0121] In some possible implementation manners, the connecting member 600 and the elastic sealing strip 400 are integrally formed.
[0122] In some possible implementation manners, in the width direction of the connecting member 600, the elastic sealing strip 400 can be arranged in the middle of the connecting member 600.
[0123] The width of the elastic sealing strip 400 can be smaller than the width of the connecting member 600.
[0124] The width of the elastic sealing strip 400 is smaller than the width of the connecting member 600, which can ensure that the elastic sealing strip 400 can be firmly installed in the connecting member 600, and also reduces the alignment difficulty during the assembly process, improving the assembly efficiency.
[0125] And / or, the surface of the elastic sealing strip 400 facing away from the connecting member 600 protrudes relative to the second surface of the connecting member 600.
[0126] By making one surface of the elastic sealing strip 400 contact the connecting member 600, while the surface of the elastic sealing strip 400 facing away from the connecting member 600 protrudes relative to the second surface of the connecting member, the elastic sealing strip 400 has sufficient space to compress and expand between the refrigerator cabinet 100 and the cabinet, thereby providing a good sealing effect.
[0127] Exemplarily, the elastic sealing strip 400 can be made of silica gel. Silica gel has excellent elasticity, which can ensure the firm installation of the sealing strip on the connecting member 600 and maintain good sealing performance during compression and stretching; silica gel has good anti-aging performance and can be used for a long time without easy deterioration.
[0128] The elastic sealing strip 400 can also be made of rubber. Rubber has excellent weather resistance and is suitable for long-term use. As long as the elastic sealing strip 400 can play a role in sealing the gap between the bottom of the accommodating cavity 110 and the cabinet, the material of the elastic sealing strip 400 is not overly limited in the embodiments of the present application.
[0129] Exemplarily, the connecting member 600 can be made of stainless steel. Stainless steel has high strength and rigidity, which can provide a stable support structure; stainless steel has excellent corrosion resistance and is suitable for use in the humid environment inside the refrigerator.
[0130] The connecting member 600 can also be made of aluminum alloy. Aluminum alloy is lightweight, which helps to reduce the overall weight of the refrigerator; aluminum alloy is easy to process into various shapes to meet the design requirements of the shape of the elastic sealing strip 400. As long as the connecting member 600 can stably install the elastic sealing strip 400 on the cabinet 100, the material of the connecting member 600 is not overly limited in the embodiments of the present application.
[0131] In some possible implementation manners, the connecting member 600 and the elastic sealing strip 400 are fixed by a card slot. A clamping groove corresponding to the bottom width of the elastic sealing strip 400 is formed on the connecting member 600, and the elastic sealing strip 400 is fixed in the clamping groove. In this way, the elastic sealing strip 400 is easy to replace on the connecting member 600, and the assembly process is simple and convenient.
[0132] In some possible implementation manners, the connecting member 600 and the elastic sealing strip 400 are fixed to each other by an adhesive method, and the assembly process is simple and convenient. It should be noted that as long as the connecting member 600 and the elastic sealing strip 400 can achieve a fixed connection, the connection manner between the connecting member 600 and the elastic sealing strip 400 is not overly limited in the embodiments of the present application.
[0133] In some possible embodiments, the connecting member 600 may be provided with a plurality of fixing portions 610, and the connecting member 600 may be fixedly connected to the rear side of the box body 100 through the plurality of fixing portions 610.
[0134] The connecting member 600 is fixedly connected to the rear side of the box body 100 through these fixing portions 610, thereby forming a stable structure, which can ensure that the connection between the connecting member 600 and the rear side of the box body 100 is more stable, and avoid the connecting member from loosening or falling off due to vibration or other external forces; at the same time, the plurality of fixing portions 610 are provided on the connecting member 600, which can conveniently fix the connecting member 600 on the rear side of the box body 100, simplify the assembly process, and reduce the difficulty and time cost of maintenance.
[0135] In some possible embodiments, the fixing portion 610 may be designed as a convex portion with a screw hole, and the connecting member 600 is fixed to the rear side of the box body 100 by screws. The screw fixing structure is simple and reliable, can provide strong fixing force, and ensure that the connecting member 600 is firmly connected to the box body. At the same time, using screws for fixing is convenient for disassembly and reinstallation, which is beneficial to the maintenance and repair of the refrigerator.
[0136] The fixing portion 610 may also be designed as a snap structure, and the connecting member 600 is snapped into a card slot reserved on the rear side of the box body 100 through the snap. The snap fixing structure is quick to install, does not require additional tools, and can significantly improve the assembly efficiency. At the same time, the snap structure is convenient for quick disassembly, which is convenient for maintenance and repair. As long as the fixing portion 610 can fix the connecting member 600 on the box body 100, the specific structure of the connecting member 600 is not overly limited in the embodiments of the present application.
[0137] Alternatively, the connecting member 600 may be integrally provided with the mounting bracket 120.
[0138] The design of integrally providing the connecting member 600 with the mounting bracket 120 can improve the overall strength and stability of the structure, ensure the stable operation of the equipment, reduce the number of components, simplify the assembly process, improve the assembly efficiency, and reduce the manufacturing cost and maintenance cost.
[0139] The embodiments of the present application provide an embedded refrigerator, including a box body 100, a compressor 200, a condenser 300, and an elastic sealing strip 400;
[0140] A receiving cavity 110 is provided on the rear side of the box body 100; the box body 100 is further provided with a mounting bracket 120 for mounting the condenser 300; the mounting bracket 120 divides the receiving cavity 110 into a first part and a second part, and the first part of the receiving cavity 110 houses the compressor 200;
[0141] The built-in refrigerator is configured such that when the built-in refrigerator is located within the cabinet, the elastic sealing strip 400 is located between the cabinet body 100 and the rear wall of the cabinet, and the elastic sealing strip 400 is at least used to separate the first part and the second part of the accommodation cavity 110.
[0142] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present application, rather than to limit them; although the present application has been described in detail with reference to the foregoing embodiments, those of ordinary skill in the art should understand that they can still modify the technical solutions recorded in the foregoing embodiments, or perform equivalent replacements on some or all of the technical features; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the scope of the technical solutions of the embodiments of the present application.
[0143] For the sake of convenience of explanation, the above description has been made in conjunction with specific embodiments. However, the above exemplary discussion is not intended to be exhaustive or to limit the embodiments to the specific forms disclosed above. According to the above teachings, various modifications and variations can be obtained. The selection and description of the above embodiments are for the purpose of better explaining the principles and practical applications, so that those skilled in the art can better use the embodiments and various different modified embodiments suitable for specific use considerations.
Claims
1. A built-in refrigerator, characterized in that: include: A box body (100), wherein a accommodating cavity (110) is disposed at the rear side of the box body (100); the box body (100) is further provided with a mounting frame (120), wherein the mounting frame (120) separates the accommodating cavity (110) into a first part and a second part; A compressor (200) is disposed in a first portion of the accommodating chamber (110); a condenser (300) disposed on the mounting frame (120), a first surface of the condenser (300) facing a first portion of the accommodating cavity (110), the condenser (300) being in communication with the compressor (200), and a second surface of the condenser (300) facing a second portion of the accommodating cavity (110); An elastic sealing strip (400) is arranged on the rear side of the box body (100); at least a portion of the elastic sealing strip (400) is connected to the mounting frame (120), and a surface of the elastic sealing strip (400) facing away from the box body (100) is at least used to fit with a cabinet.
2. The built-in refrigerator according to claim 1, characterized in that: The mounting frame (120) is provided with a vent, and the first part of the accommodating cavity (110) is connected with the second part of the accommodating cavity (110) through the vent; The first portion of the accommodating cavity (110) is provided with an air outlet, and the second portion of the accommodating cavity (110) is provided with an air inlet, wherein the direction of the air inlet is opposite to the direction of the air outlet.
3. The built-in refrigerator according to claim 2, characterized in that: The refrigerator is also provided with a fan (500), and the fan (500) is arranged in the first part of the accommodating cavity (110); the air inlet end of the fan (500) faces the vent, and the air outlet end of the fan (500) faces the air outlet.
4. The built-in refrigerator according to claim 2, characterized in that: At least part of the air outlet is arranged upward, and at least part of the air inlet is arranged downward; And / or, at least a portion of the air outlet faces away from the second portion of the accommodating cavity (110), and at least a portion of the air inlet faces away from the first portion of the accommodating cavity (110).
5. The built-in refrigerator according to claim 4, characterized in that: The first part of the accommodating cavity (110) and the second part of the accommodating cavity (110) are arranged in a horizontal direction; The first part of the air outlet faces upward and away from one side of the second part of the accommodating cavity (110), and the second part of the air outlet faces downward and away from one side of the first part of the accommodating cavity (110).
6. The built-in refrigerator according to claim 5, characterized in that: The elastic sealing strip (400) comprises a first sealing portion (410), a second sealing portion (420) and a third sealing portion (430) which are arranged in sequence; The first sealing portion (410) is arranged on the lower side of the first part of the accommodating cavity (110), the second sealing portion (420) is arranged on the mounting frame (120), and the third sealing portion (430) is located on the upper side of the second part of the accommodating cavity (110).
7. The built-in refrigerator according to any one of claims 1 to 6, characterized in that: Also includes a connecting member (600); The first surface of the connecting member (600) is fixedly connected to the rear side of the box body (100) and the mounting frame (120), and the second surface of the connecting member (600) is fixedly connected to the elastic sealing strip (400).
8. The built-in refrigerator according to claim 7, characterized in that: In the width direction of the connecting piece (600), the elastic sealing strip (400) is arranged in the middle of the connecting piece (600), and the width of the elastic sealing strip (400) is smaller than the width of the connecting piece (600); And / or, the surface of the elastic sealing strip (400) facing away from the connecting member (600) is arranged to protrude relative to the second surface of the connecting member (600).
9. The built-in refrigerator according to claim 7, characterized in that: The connecting member (600) is provided with a plurality of fixing parts (610), and the connecting member (600) is fixedly connected to the rear side of the box body (100) via the plurality of fixing parts (610); or, the connecting member (600) is integrally provided with the mounting frame (120).
10. A built-in refrigerator, characterized in that: It comprises a box body (100), a compressor (200), a condenser (300) and an elastic sealing strip (400); The rear side of the housing (100) is provided with a receiving chamber (110); the housing (100) is also provided with a mounting frame (120) for mounting the condenser (300); the mounting frame (120) divides the receiving chamber (110) into a first part and a second part, and the first part of the receiving chamber (110) accommodates the compressor (200); The built-in refrigerator is configured as follows: when the built-in refrigerator is located in a cabinet, the elastic sealing strip (400) is located between the box body (100) and the rear wall of the cabinet, and the elastic sealing strip (400) is at least used to separate the first part and the second part of the accommodating cavity (110).