WO2022037382A1 - 嵌入式冰箱 - Google Patents

嵌入式冰箱 Download PDF

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Publication number
WO2022037382A1
WO2022037382A1 PCT/CN2021/109163 CN2021109163W WO2022037382A1 WO 2022037382 A1 WO2022037382 A1 WO 2022037382A1 CN 2021109163 W CN2021109163 W CN 2021109163W WO 2022037382 A1 WO2022037382 A1 WO 2022037382A1
Authority
WO
WIPO (PCT)
Prior art keywords
compressor
refrigerator
air
plate
condenser
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Ceased
Application number
PCT/CN2021/109163
Other languages
English (en)
French (fr)
Inventor
马坚
朱小兵
李伟杰
刘磊
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Qingdao Haier Refrigerator Co Ltd
Haier Smart Home Co Ltd
Original Assignee
Qingdao Haier Refrigerator Co Ltd
Haier Smart Home Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Qingdao Haier Refrigerator Co Ltd, Haier Smart Home Co Ltd filed Critical Qingdao Haier Refrigerator Co Ltd
Priority to EP21857477.0A priority Critical patent/EP4174414B1/en
Publication of WO2022037382A1 publication Critical patent/WO2022037382A1/zh
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25DREFRIGERATORS; COLD ROOMS; ICE-BOXES; COOLING OR FREEZING APPARATUS NOT OTHERWISE PROVIDED FOR
    • F25D11/00Self-contained movable devices, e.g. domestic refrigerators
    • F25D11/02Self-contained movable devices, e.g. domestic refrigerators with cooling compartments at different temperatures
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25DREFRIGERATORS; COLD ROOMS; ICE-BOXES; COOLING OR FREEZING APPARATUS NOT OTHERWISE PROVIDED FOR
    • F25D23/00General constructional features
    • F25D23/003General constructional features for cooling refrigerating machinery
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25DREFRIGERATORS; COLD ROOMS; ICE-BOXES; COOLING OR FREEZING APPARATUS NOT OTHERWISE PROVIDED FOR
    • F25D23/00General constructional features
    • F25D23/006General constructional features for mounting refrigerating machinery components
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25DREFRIGERATORS; COLD ROOMS; ICE-BOXES; COOLING OR FREEZING APPARATUS NOT OTHERWISE PROVIDED FOR
    • F25D23/00General constructional features
    • F25D23/10Arrangements for mounting in particular locations, e.g. for built-in type, for corner type

Definitions

  • the invention relates to the field of household appliances, in particular to a built-in refrigerator.
  • the air outlet and air inlet in the existing solution are generally arranged on the front surface of the refrigerator, while the compressor compartment is arranged at the rear of the box, which greatly extends the length of the cooling airflow and reduces the cooling efficiency. And because the air outlet and the air inlet are located on the front surface of the box, the appearance of the refrigerator will also be affected.
  • An object of the present invention is to provide a built-in refrigerator that solves at least any aspect of the above-mentioned problems.
  • a further object of the present invention is to improve the heat dissipation efficiency of the built-in refrigerator.
  • Another further object of the present invention is to avoid damage to the weather strip during transportation.
  • the present invention provides a built-in refrigerator, which includes: a refrigeration system including a compressor and a condenser connected to the compressor; a box body with a compressor cabin, a compressor and a condenser behind the bottom of the box They are arranged in the compressor cabin at intervals along the transverse direction of the box body; the bottom wall of the compressor cabin is provided with an airflow suction port at the front of the condenser, and an airflow outlet is provided at the front of the compressor; the cooling fan is arranged in the compressor Between it and the condenser, it is used to promote the formation of heat-dissipating airflow that enters from the airflow suction port and flows through the condenser for heat exchange, and then is discharged to the airflow discharge port through the compressor; the windshield is arranged on the lower surface of the box to block the air flow.
  • a refrigeration system including a compressor and a condenser connected to the compressor
  • a box body with a compressor cabin, a compressor and a condens
  • the middle part of the wind bar is a flexible section that can be bent under force, so that the wind bar can be in a wind-blocking state by bending the flexible section.
  • the space between the floors is divided into an air intake area communicated with the airflow intake port and an air exhaust area communicated with the airflow exhaust port.
  • the bottom wall of the press cabin includes: a press support plate, which is arranged at the rear of the bottom wall; an air inlet plate, which extends forward from the front end of the area where the condenser is located in the press support plate, and is provided with an airflow suction port.
  • the air outlet plate extends forward from the front end of the area where the compressor is located in the support plate of the press, and is provided with an air discharge port, and when the flexible section is not bent, the air baffle extends along the front end of the support plate of the press. Extend in a straight line.
  • the wind shielding strip includes: a first shielding section, fixed between the front end of the press support plate and the air inlet plate; a flexible section, one end of which is connected with an end of the first shielding section located in the middle of the box body; Two shielding sections are connected with the other end of the flexible section, are arranged in the front area of the compressor, and change the extension direction according to the bending degree of the flexible section.
  • the flexible section is bent into an arc shape, so that the second shielding section extends diagonally forward from between the wind inlet plate and the wind outlet plate, and the inclination direction is from the rear to the front. towards the compressor side.
  • the refrigerator also includes a partition, which is arranged between the air inlet plate and the air outlet plate for separating the front area of the compressor and the condenser in the compressor compartment, and includes: a bottom plate, located between the air inlet plate and the air outlet plate between the plates; the first side plate, extending upward from the end of the bottom plate close to the air outlet plate to isolate the front area of the compressor; the second side plate, extending upward from the end of the bottom plate close to the air inlet plate to isolate the condenser
  • the lower surface of the bottom plate is provided with a claw for fixing the second shielding section, so as to limit the position of the second shielding section when the wind-shielding bar is in a wind-shielding state.
  • the rear end wall of the first side plate forms a limit groove adapted to the shape of the front end of the cooling fan to accommodate the front part of the cooling fan, and the cooling fan extends from the rear of the first side plate to the compressor and the condenser. between the devices.
  • the refrigerator further includes: an air baffle plate extending from the first side plate to the front of the compressor, so that the cooling air flowing through the compressor flows from the side away from the first side plate to the air discharge port, and the air baffle plate is protected from the wind.
  • the projection of the end of the plate in the depth direction of the box is aligned with the middle of the compressor.
  • the section of the windshield is L-shaped, wherein the horizontal side of the windshield is fitted with the lower surface of the box body, the vertical side of the windshield is vertically arranged with the lower surface of the box, and the vertical side
  • the height of the side matches the height from the lower surface of the box to the supporting floor of the refrigerator.
  • grilles are formed at the airflow suction port and the airflow exhaust port to prevent foreign matter from entering the box.
  • the condenser as a whole is in the shape of a rectangular parallelepiped, and is installed so that its radiating fins extend along the depth direction of the casing, so that the air entering from the airflow suction port flows to the compressor through the passage between the radiating fins.
  • the built-in refrigerator of the present invention is provided with an airflow suction port and an airflow outlet port on the lower surface of the box body, and the air under the box body and the compressor chamber are used to achieve convection heat dissipation, the heat dissipation channel is short, and the heat dissipation effect is better.
  • the built-in refrigerator of the present invention is provided with a windshield, and the windshield has a flexible section, which can isolate the airflow suction port from the airflow exhaust port by bending, so as to prevent the heat dissipation airflow from circulating in a small area at the bottom of the box, and further. to improve heat dissipation efficiency.
  • the flexible section of the windshield when the flexible section of the windshield is not bent, it can extend linearly along the front end of the support plate of the press, which is convenient for matching with the packing box during transportation. Reduce the risk of bump damage.
  • the built-in refrigerator of the present invention improves the layout of components in the compressor compartment, which facilitates heat dissipation of the condenser and the compressor compartment.
  • the bottom of the partition is used to snap the windshield, the convenience of installation is also improved.
  • FIG. 1 is a schematic front view of a built-in refrigerator according to an embodiment of the present invention.
  • FIG. 2 is a schematic side sectional view of the built-in refrigerator shown in FIG. 1;
  • Fig. 3 is a schematic perspective view of the medium pressure engine compartment of the built-in refrigerator shown in Fig. 2, with the cover plate of the engine compartment hidden;
  • FIG. 4 is a schematic bottom view of the built-in refrigerator medium-pressure engine compartment shown in FIG. 3, wherein the wind-shielding state of the wind-shielding bar is shown;
  • Fig. 5 is a schematic bottom view of the built-in refrigerator medium pressure engine compartment shown in Fig. 3, wherein the storage state of the windshield is shown;
  • Figure 6 is a schematic exploded view of the built-in refrigerator medium pressure cabin shown in Figure 3;
  • FIG. 7 is a schematic perspective view of a partition in a built-in refrigerator according to an embodiment of the present invention.
  • FIG. 8 is a schematic bottom view of the divider in the built-in refrigerator shown in FIG. 7 .
  • lateral indicates the orientation or The positional relationship is based on the orientation of the refrigerator in normal use as a reference, and can be determined with reference to the orientation or positional relationship shown in the accompanying drawings.
  • front indicating the orientation refers to the side of the refrigerator facing the user
  • lateral refers to A direction parallel to the width of the refrigerator.
  • FIG. 1 is a schematic front view of a built-in refrigerator according to an embodiment of the present invention.
  • FIG. 2 is a schematic side sectional view of the built-in refrigerator shown in FIG. 1 .
  • the refrigerator may generally include a box body 10, and the box body 10 includes an outer shell, an inner tank and other accessories.
  • the outer shell is the outer structure of the refrigerator and protects the entire refrigerator.
  • a heat insulating layer is added between the outer shell and the inner tank of the box body 10 , and the heat insulating layer is generally formed by a foaming process.
  • the inner liner can be divided into one or more, and the inner liner can be divided into refrigerating inner liner, temperature-changing inner liner, and freezing inner liner according to the function.
  • the specific number of inner liner and function can be configured according to the use requirements of the refrigerator.
  • the inner container at least includes a bottom inner container 101, and the bottom inner container 101 can generally be a frozen inner container.
  • the bottom liner 101 is the inner liner at the bottom of the box body 10 , and defines a storage space 300 and a cooling chamber 100 located below the storage space 300 .
  • the evaporator 60 may be disposed in the middle front of the cooling chamber 100 slantingly upward from front to back along the depth direction of the case.
  • the bottom wall of the bottom inner container 101 has an inner container inclined part inclined upward from front to back at the rear of the cooling chamber 100, and the inclination angle range is set to 30° to 40°, for example, it can be set to 33°, 35°, 38° °, preferably 36.7°, so as to provide sufficient space for the press room 200 .
  • the storage space 300 can generally be used as a freezing space of a refrigerator.
  • This embodiment includes a refrigeration system.
  • the refrigeration system includes a throttling element (not shown in the figure), an evaporator 60 , a cooling fan 40 , a compressor 20 and a condenser 30 connected to the compressor 20 . Since the circulation structure and working principle of the refrigeration system itself are well known to those skilled in the art and are easy to implement, in order not to obscure and obscure the improvement points of the present application, the refrigeration system itself will not be described in detail below.
  • a press room 200 is formed behind the bottom of the box body 10 in this embodiment.
  • the compressor cabin 200 is surrounded by a bottom wall 220 , a back plate 240 disposed at the rear end of the bottom wall 220 , side plates 230 disposed at both ends of the bottom wall 220 , and a compressor cabin cover plate 210 disposed above the bottom wall 220 .
  • the compressor room 200 is provided with at least a compressor 20 , a condenser 30 and a cooling fan 50 .
  • the condenser 30 can be a finned condenser, and the fins of the condenser 30 are arranged from front to back along the depth direction of the box 10, so that the cooling airflow can directly pass through the gaps between the fins, increasing the difference between the fins.
  • the contact area of the cooling airflow can be a finned condenser, and the fins of the condenser 30 are arranged from front to back along the depth direction of the box 10, so that the cooling airflow can directly pass through the gaps between the fins, increasing the difference between the fins. The contact area of the cooling airflow.
  • the bottom wall 220 of the compressor compartment 200 is provided with an airflow intake port 2220 at the front of the condenser 30 , and an airflow outlet 2230 is provided at the front of the compressor 20 .
  • the airflow suction port 2220 and the airflow exhaust port 2230 are respectively formed in a grill shape, that is, the ventilation holes between the grilles are communicated with the outside of the box body 10 to prevent foreign objects (such as small animals, etc.) from passing through the airflow suction port 2220 or airflow outlet. 2230 enters the inside of the box 10.
  • the air outside the box body 10 can enter into the compressor room 200 through the airflow suction port 2220, remove the heat of the condenser 30 by exchanging the heat with the condenser 30, and then enter the compressor 20 side of the compressor room 200 through the cooling fan 50 to take away the compressed air.
  • the heat generated by the operation of the compressor 20 is then discharged from the airflow outlet 2230 to achieve the purpose of dissipating heat to the equipment in the compressor cabin 200 .
  • the press room cover 210 of the present embodiment includes a tilted front cover 211 and a top cover 212 .
  • the inclined front cover 211 is inclined upward from front to back along the depth direction of the box body 10 from the front sides of the airflow suction port 2220 and the airflow discharge port 2230 .
  • the top cover 212 extends horizontally rearward from the rear end of the inclined front cover 211 to be in contact with the back panel 240 . That is, the cover plate 210 of the compressor cabin is inclined, so as to save the internal space of the box body 10 as much as possible, and increase the volume of the storage space 300 above the compressor cabin 200 to improve the overall space utilization rate.
  • the projection of the compressor cabin 200 on the horizontal plane is located behind the projection of the evaporator 60 on the horizontal plane, that is, the compressor cabin 200 and the evaporator 60 are staggered in the horizontal direction, the setting height of the evaporator 60 is lowered, and the volume of the storage space 300 is increased. .
  • the refrigerator of this embodiment includes a cooling fan 50 .
  • the cooling fan 50 is arranged between the compressor 20 and the condenser 30, and is used to promote the formation of heat dissipation from the airflow suction port 2220 and then flowing through the condenser 30 for heat exchange, and then to the airflow discharge port 2230 through the compressor 20. airflow.
  • the cooling fan 50 may be an axial flow fan, and its rotation axis is parallel to the lateral direction of the box body 10 .
  • the air inlet side of the cooling fan 50 faces the condenser 30, and its air outlet side faces the compressor 20, and is used to promote the formation of the air flow suction port 2220 and flow through the condenser 30 for heat exchange, and then pass through the compressor 20 to the air flow discharge port.
  • the bracket and the fan blade of the cooling fan 50 can be assembled into an integral structure, and the outer periphery of the fan bracket is provided with an assembly structure to be directly fixed with the bulkhead of the compressor compartment 200 , and no other arrangement is required in the compressor compartment 200 .
  • the bracket for fixing the fan makes the structure of the compressor cabin 200 simpler, the fixing effect is better, and the operation of the cooling fan 50 is more stable.
  • a windshield 280 is provided on the lower surface of the box body 10 .
  • the windshield 280 is arranged on the lower surface of the box body 10 , and the middle of the windshield 280 is a flexible section 283 that can be bent under force.
  • the space between the lower part of the 10 and the supporting floor of the refrigerator is divided into an air intake area communicated with the airflow intake port 2220 and an air exhaust area communicated with the airflow exhaust port 2230 in a wind blocking state.
  • the flexible section 283 of the windshield 280 can isolate the airflow inlet 2220 from the airflow outlet 2230 by bending, so as to prevent the cooling airflow from circulating in a small area at the bottom of the box 10 and improve the cooling efficiency.
  • the bottom wall 220 includes a press support plate 221 , an air inlet plate 222 and an air outlet plate 223 .
  • the press support plate 221 is disposed at the rear of the bottom wall 220 .
  • the air inlet plate 222 extends forward from the front end of the area where the condenser 30 is located in the support plate 221 of the press, and is provided with an air intake port 2220 thereon.
  • the air outlet plate 223 extends forward from the front end of the area where the compressor 20 is located in the compressor support plate 221 , and an air discharge port 2230 is opened on the air outlet plate 223 .
  • the windshield 280 extends linearly along the front end of the press support plate 221 when the flexible section 283 is not bent.
  • the windshield 280 has two states. In the actual use process, the windshield 280 is in the windshield state (as shown in FIG. 4 ), and the windshield 280 is bent to isolate the airflow suction port 2220 from the airflow outlet 2230 , to prevent the heat dissipation airflow from circulating in a small area at the bottom of the box body 10, and improve the heat dissipation efficiency; during transportation, the windshield 280 is in the storage state (as shown in FIG. 5), and the windshield 280 is along the front end of the press support plate 221. Extending in a straight line, it is convenient to cooperate with the packaging box during transportation and avoid bump damage.
  • the windshield 280 includes a first shielding section 281 , a flexible section 283 and a second shielding section 282 .
  • the first shielding section 281 is fixed between the front end of the press support plate 221 and the air inlet plate 222 .
  • One end of the flexible section 283 is connected to one end of the first shielding section 281 located in the middle of the box body 10 .
  • the second shielding section 282 is connected to the other end of the flexible section 283 , is arranged in the front area of the compressor 20 , and changes the extension direction according to the bending degree of the flexible section 283 .
  • the first shielding section 281 is always fixed on the lower surface of the box body 10 , and the second shielding section 282 can rotate on the lower surface with the bending of the flexible section 283 to separate the airflow suction port 2220 from the airflow exhaust port 2230 , to prevent the heat dissipation airflow from circulating in a small range at the bottom of the box body 10 and improve the heat dissipation efficiency.
  • the second shielding section 282 is fixed between the front end of the press support plate 221 and the air outlet plate 223, and cooperates with the packing box during transportation to avoid bump damage.
  • the flexible section 283 When the windshield bar 280 is in the windshield state, the flexible section 283 is bent into an arc shape, so that the second shielding section 282 extends obliquely forward from between the wind inlet plate 222 and the wind outlet plate 223, and the inclination direction is It is deflected toward the compressor 20 side from the rear to the front.
  • the second shielding section 282 cooperates with the lower surface of the box body 10 to limit the exhaust area to the front side of the box body 10, so that the heat dissipation airflow can quickly leave the surrounding environment of the refrigerator, so as to prevent the hotter heat dissipation air flow after the heat exchange is completed.
  • the environment in which the refrigerator is located is hot, and the energy consumption of the refrigerator is increased.
  • the air inlet area is limited by the first shielding section 281 to the area around the box 10 except for the air exhaust area.
  • the gas enters the compressor room 200 through the airflow suction port 2220 connected to the air inlet area, and is fully exchanged with the condenser 30.
  • the heat then enters the compressor 20 side through the cooling fan 50 , takes away the heat generated by the operation of the compressor 20 , enters the exhaust area from the airflow outlet 2230 , and then leaves the bottom of the box 10 .
  • the cross section of the windshield 280 is L-shaped, wherein the horizontal side of the windshield 280 is in contact with the lower surface of the box body 10, and the vertical side of the windshield 280 is perpendicular to the lower surface of the box 10, and is vertically
  • the height of the straight side is matched with the height from the lower surface of the box body 10 to the supporting ground of the refrigerator, so as to sufficiently separate the airflow suction port 2220 from the airflow exhaust port 2230, and reduce the heat dissipation airflow from the airflow exhaust port 2230 directly from the windshield 280.
  • the possibility of returning to the air inlet area in the gap with the supporting ground prevents the heat dissipation airflow from circulating in a small area at the bottom of the box body 10 and improves the heat dissipation efficiency.
  • the refrigerator of this embodiment further includes a partition 270 .
  • the partition 270 is disposed between the air inlet plate 222 and the air outlet plate 223 and is disposed upward to separate the front area of the compressor 20 and the condenser 30 in the compressor compartment 200 .
  • the partition 270 includes a bottom plate 276 , a first side plate 271 and a second side plate 272 .
  • the bottom plate 276 is located between the air inlet plate 222 and the air outlet plate 223 .
  • the first side plate 271 extends upward from one end of the bottom plate 276 close to the air outlet plate 223 to isolate the front area of the compressor 20 .
  • the second side plate 272 extends upward from the end of the bottom plate 276 near the air inlet plate 222 to isolate the front area of the condenser 30 .
  • the separator 270 isolates the airflow inlet 2220 from the airflow outlet 2230, so that the cooling airflow must pass through the airflow inlet 2220, the condenser 30, the cooling fan 50, and the compressor 20 before being discharged from the airflow outlet 2230, so that the heat dissipation is more sufficient .
  • the lower surface of the bottom plate 276 is provided with a claw 275 for fixing the second shielding section 282, so as to limit the second shielding section 282 when the wind shielding bar 280 is in the wind shielding state.
  • the rear end wall of the first side plate 271 forms a limiting groove 274 that matches the shape of the front end of the cooling fan 50 , so as to accommodate the front portion of the cooling fan 50 .
  • the cooling fan 50 extends from the rear of the first side plate 271 to between the compressor 20 and the condenser 30 .
  • the compressor compartment 200 is divided into the compressor side and the condenser side by the cooling fan 50 and the partition 270. After the cooling airflow and the condenser 30 are fully heat exchanged, the cooling fan 50 can enter the compressor 20 side, and the compressor 20 can be taken away.
  • the case 10 can be discharged from the air discharge port 2230 only after the operation heat.
  • the drain pipe 110 of the built-in refrigerator in this embodiment extends from the drain port at the bottom of the inner tank above the compressor compartment cover 210 through the area between the first side panel 271 and the second side panel 272 to the evaporating dish 250 .
  • the provision of the reserved opening between the first side plate 271 and the second side plate 272 can effectively save the space in the compressor compartment 200, further make the internal structure of the box 10 more compact, and thus make the overall space utilization of the refrigerator higher.
  • the built-in refrigerator in this embodiment is provided with a wind shield 273 .
  • the wind deflector 273 extends from the first side plate 271 to the front of the compressor 20, so that the cooling air flowing through the compressor 20 flows from the side away from the first side plate 271 to the air discharge port 2230, and the The projection of the end in the depth direction of the casing 10 is aligned with the middle of the compressor 20 .
  • the compressor compartment 200 is provided with the wind deflector 273
  • the heat dissipation space in the compressor compartment 200 will be further compressed for a fully embedded refrigerator, so the end point of the wind deflector 273 is not likely to be too long.
  • the starting point of the air baffle 273 is located at the position of the cooling fan 50 to prevent heat dissipation from spreading, and the end point is aligned in the middle of the compressor 20, which can guide the cooling airflow to the entire surface of the compressor 20, so that the compressor 20 can dissipate heat to the greatest extent and prevent the cooling airflow.
  • the loss of air volume from the initial point to the commanding height can effectively reduce the temperature of the compressor 20 .
  • the setting of the wind baffle plate 273 can reduce the swirl of the air volume, lower the temperature of the condenser 30, and realize effective energy saving.
  • the condenser 30 of the present embodiment is in the shape of a rectangular parallelepiped as a whole, and is installed so that its radiating fins extend along the depth direction of the box body 10 , so that the air entering from the airflow suction port 2220 flows along the channels between the radiating fins for exchange. The heat then flows to the cooling fan 50 from the space between the condenser 30 and the back plate 240 .
  • the cooling fins are arranged in parallel along the depth direction. When the air enters from the airflow suction port 2220, it can smoothly pass through the gap between the cooling fins and fully contact and exchange heat with each fin, which greatly enhances the cooling effect.
  • the condenser 30 can be inclined upward from front to back along the depth direction of the box 10, which can effectively utilize the air sucked in the airflow suction port 2220, so that the contact area between the air and the condenser 30 is increased, and the heat radiation.
  • the condenser 30 may also use a microchannel heat exchanger.
  • an air guide assembly 290 may also be provided in the compressor compartment 200 .
  • the air guide assembly 290 is arranged on the outer periphery of the condenser 30, and is configured to guide the air sucked in from the airflow suction port 2220 to pass through the condenser 30 completely, so as to prevent the airflow from escaping from the outer periphery of the condenser 30, and only from the condenser 30 and the back plate 240.
  • the space therebetween flows toward the cooling fan 50 .
  • the heat dissipation airflow can be fully contacted with the condenser 30 to enhance the heat dissipation performance.
  • the built-in refrigerator of this embodiment is provided with a windshield 280 on the lower surface of the box body 10.
  • the windshield 280 has a flexible section 283, which can be bent to isolate the airflow suction port 2220 from the airflow discharge port 2230 to avoid
  • the heat dissipation airflow circulates in a small range at the bottom of the box body 10 to improve the heat dissipation efficiency.
  • the flexible section 283 of the windshield 280 when the flexible section 283 of the windshield 280 is not bent, it extends linearly along the front end of the press support plate 221, which is convenient for matching with the packing box during transportation and reduces the risk of being damaged by bumping.

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  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Physics & Mathematics (AREA)
  • Mechanical Engineering (AREA)
  • Thermal Sciences (AREA)
  • General Engineering & Computer Science (AREA)
  • Devices That Are Associated With Refrigeration Equipment (AREA)

Abstract

一种嵌入式冰箱。该嵌入式冰箱包括:制冷系统,包括压缩机以及冷凝器;箱体,其底部后方具有压机舱,压缩机以及冷凝器沿箱体的横向方向间隔布置于压机舱内;压机舱的底壁在冷凝器的前部设有气流吸入口,并在压缩机的前部设有气流排出口;散热风机,设置于压缩机与冷凝器之间;挡风条,设置于箱体的下表面,挡风条的中部为可受力弯折的柔性区段,从而可通过弯折柔性区段,使挡风条处于将箱体下方与冰箱的支撑地面之间的空间分割为与气流吸入口连通的进风区域以及与气流排出口连通的排风区域的挡风状态。本发明的方案,利用箱体下方的空气与压机舱实现对流散热,散热通道短,并且挡风条的柔性区段可以有效避免运输过程中的损害。

Description

嵌入式冰箱 技术领域
本发明涉及家电领域,特别是涉及一种嵌入式冰箱。
背景技术
现有技术嵌入式冰箱,为了解决散热问题多数会选择在箱体底部设置出风口和进风口,通过散热风机形成散热气流对冷凝器进行散热。
现有方案中的出风口和进风口一般设置于冰箱的前表面,而压机舱设置于箱体的后部,导致散热气流的长度大大延长,降低了散风效率。并且由于出风口和进风口位于箱体前表面,也会导致冰箱外观受到影响。
发明内容
本发明的一个目的是要提供一种至少解决上述问题任一方面的嵌入式冰箱。
本发明一个进一步的目的是要提高嵌入式冰箱的散热效率。
本发明另一个进一步的目的是要避免运输过程中对挡风条造成的损坏。
特别地,本发明提供了一种嵌入式冰箱,该嵌入式冰箱包括:制冷系统,其包括压缩机以及与压缩机连接的冷凝器;箱体,其底部后方具有压机舱,压缩机以及冷凝器沿箱体的横向方向间隔布置于压机舱内;压机舱的底壁在冷凝器的前部设有气流吸入口,并在压缩机的前部设有气流排出口;散热风机,设置于压缩机与冷凝器之间,用于促使形成从气流吸入口进入后流经冷凝器进行换热,然后通过压缩机向气流排出口排出的散热气流;挡风条,设置于箱体的下表面,挡风条的中部为可受力弯折的柔性区段,从而可通过弯折柔性区段,使挡风条处于挡风状态,在挡风状态下,挡风条将箱体下方与冰箱的支撑地面之间的空间分割为与气流吸入口连通的进风区域以及与气流排出口连通的排风区域。
进一步地,压机舱的底壁包括:压机支撑板,设置于底壁的后部;进风板,从压机支撑板中冷凝器所在区域的前端向前延伸,其上开设有气流吸入口;出风板,从压机支撑板中压缩机所在区域的前端向前延伸,其上开设有气流排出口,并且挡风条在柔性区段未被弯折时,沿压机支撑板的前端呈直线状延伸。
进一步地,挡风条包括:第一遮挡区段,固定于压机支撑板的前端与进风板之间;柔性区段,其一端与第一遮挡区段位于箱体中部的一端相连;第二遮挡区段,与柔性区段的另一端相连,并布置于压缩机的前部区域,并随柔性区段的弯折程度改变延伸方向。
进一步地,挡风条处于挡风状态下,柔性区段弯折为弧形,并使得第二遮挡区段从进风板与出风板之间向斜前方延伸,倾斜方向为从后向前偏向压缩机一侧。
进一步地,该冰箱还包括分隔件,设置于进风板和出风板之间,用于分隔压机舱内压缩机和冷凝器的前部区域,并包括:底板,位于进风板和出风板之间;第一侧板,从底板靠近出风板的一端向上延伸,以隔离压缩机的前部区域;第二侧板,从底板靠近进风板的一端向上延伸,以隔离冷凝器的前部区域,其中底板的下表面上设置有用于固定第二遮挡区段的卡爪,以在挡风条处于挡风状态下,对第二遮挡区段进行限位。
进一步地,第一侧板的后端壁形成与散热风机前端形状适配的限位槽,以共容纳散热风机的前部,并且散热风机从第一侧板的后部延伸至压缩机和冷凝器的之间。
进一步地,该冰箱还包括:挡风板,从第一侧板向压缩机的前方延伸,以使得流经压缩机的散热气流从远离第一侧板的一侧流向气流排出口,并且挡风板的末端在箱体纵深方向的投影与压缩机的中部对齐。
进一步地,挡风条的截面为L形,其中挡风条的水平侧边与箱体的下表面贴合,挡风条的竖直侧边与箱体的下表面垂直设置,并且竖直侧边的高度与箱体下表面至冰箱的支撑地面的高度相匹配。
进一步地,气流吸入口和气流排出口处分别形成格栅,以避免异物进入箱体。
进一步地,冷凝器整体呈长方体状,并被安装为使其散热片沿箱体的进深方向延伸,以使得从气流吸入口进入的空气经由散热片之间通道后流向压缩机。
本发明的嵌入式冰箱,在箱体的下表面开设气流吸入口和气流排出口,利用箱体下方的空气与压机舱实现对流散热,散热通道短,散热效果更好。并且本发明的嵌入式冰箱设置有挡风条,该挡风条具有柔性区段,可通过弯折可以将气流吸入口与气流排出口隔离,避免散热气流在箱体底部小范围内 循环,进一步地提高散热效率。
进一步地,本发明的嵌入式冰箱在运输过程中,可使挡风条的柔性区段不被弯折时,沿压机支撑板的前端呈直线状延伸,便于在运输时与包装箱配合,减小受到磕碰损害的风险。
更进一步地,本发明的嵌入式冰箱,改进了压机舱内的部件布局,便于对冷凝器以及压机舱进行散热。并且由于利用分隔件底部对挡风条进行卡接,也提高安装的便利性。
根据下文结合附图对本发明具体实施例的详细描述,本领域技术人员将会更加明了本发明的上述以及其他目的、优点和特征。
附图说明
后文将参照附图以示例性而非限制性的方式详细描述本发明的一些具体实施例。附图中相同的附图标记标示了相同或类似的部件或部分。本领域技术人员应该理解,这些附图未必是按比例绘制的。附图中:
图1是根据本发明一个实施例的嵌入式冰箱的示意性前视图;
图2是图1所示的嵌入式冰箱的示意性侧剖图;
图3是图2中所示的嵌入式冰箱中压机舱的示意性立体图,图中隐去了压机舱盖板;
图4是图3中所示的嵌入式冰箱中压机舱的示意性仰视图,其中显示了挡风条的挡风状态;
图5是仍图3中所示的嵌入式冰箱中压机舱的示意性仰视图,其中显示了挡风条的收纳状态;
图6是图3中所示的嵌入式冰箱中压机舱的示意性爆炸图;
图7是根据本发明一个实施例的嵌入式冰箱中分隔件的示意性立体图;
图8是图7中所示的嵌入式冰箱中分隔件的示意性仰视图。
具体实施方式
在本实施例的描述中,需要理解的是,术语“横向”、“上”、“下”、“前”、“后”、“顶”、“底”、“进深”等指示的方位或位置关系为基于冰箱正常使用状态下的方位作为参考,并参考附图所示的方位或位置关系可以确定,例如指示方位的“前”指的是冰箱朝向用户的一侧、“横向”是指与冰箱宽度方向平行的方向。这仅是为了便于描述本发明和简化描述,而 不是指示或暗示所指的装置或元件必须具有特定的方位、以特定的方位构造和操作,因此不能理解为对本发明的限制。
图1是根据本发明一个实施例的嵌入式冰箱的示意性前视图。图2是图1所示的嵌入式冰箱的示意性侧剖图。冰箱一般性的可包括箱体10,箱体10包括外壳、内胆以及其他附件构成。外壳是冰箱的外层结构,保护着整个冰箱。为了隔绝与外界的热传导,在箱体10的外壳和内胆之间加有隔热层,隔热层一般通过发泡工艺构成。内胆可以分为一个或多个,内胆根据功能可以被划分为冷藏内胆、变温内胆、冷冻内胆等,具体的内胆个数以及功能可以根据冰箱的使用需求进行配置。本实施例中内胆至少包括底部内胆101,底部内胆101一般可为冷冻内胆。
底部内胆101为处于箱体10最下方的内胆,限定出储物空间300以及位于储物空间300下方的冷却室100。蒸发器60可以沿箱体进深方向由前至后向上倾斜布置于冷却室100的中前部。底部内胆101的底壁在冷却室100的后部具有从前到后向上倾斜设置的内胆倾斜部,该倾斜角度范围设置为30°至40°,例如可以设置为33°、35°、38°,优选为36.7°,从而为压机舱200提供足够的空间。储物空间300一般可作为冰箱的冷冻空间。
本实施例包括制冷系统。制冷系统包括节流元件(图中未示出)、蒸发器60、制冷风机40、压缩机20以及与压缩机20连接的冷凝器30。由于制冷系统本身的循环构造以及工作原理,为本领域技术人员习知且易于实现的,为了不掩盖和模糊本申请的改进点,后文对制冷系统本身不做赘述。
如图3所示,本实施例的箱体10底部后方形成压机舱200。压机舱200由底壁220、设置于底壁220后端的背板240、设置于底壁220两端的侧板230、设置于底壁220上方的压机舱盖板210围成。压机舱200内至少设置有压缩机20、冷凝器30以及散热风机50,压缩机20以及冷凝器30沿箱体10的横向方向间隔布置于压机舱200内。在一些实施例中,冷凝器30可为翅片冷凝器,冷凝器30的翅片沿箱体10进深方向由前至后设置,以使得散热气流可直接从翅片间缝隙通过,增大与散热气流的接触面积。
压机舱200的底壁220在冷凝器30的前部设有气流吸入口2220,并在压缩机20的前部设有气流排出口2230。气流吸入口2220以及气流排出口2230处分别形成格栅状,也即通过格栅之间的通风孔与箱体10外部连通,避免异物(例如小动物等)通过气流吸入口2220或气流排出口2230进入箱 体10内部。箱体10外部的空气可由气流吸入口2220进入压机舱200内,通过与冷凝器30换热带走冷凝器30的热量,然后经散热风机50进入压机舱200的压缩机20侧,带走压缩机20运行产生的热量,而后从气流排出口2230排出,达到对压机舱200内设备散热的目的。
本实施例的压机舱盖板210包括倾斜前盖211和顶盖212。倾斜前盖211从气流吸入口2220和气流排出口2230的前侧沿箱体10的进深方向从前到后向上倾斜设置。顶盖212从倾斜前盖211的后端水平向后延伸至与背板240相接。即压机舱盖板210倾斜设置,尽可能的节省箱体10内部空间,加大压机舱200上方储物空间300的容积,以提高整体的空间利用率。压机舱200在水平面上的投影位于蒸发器60在水平面上投影的后方,即压机舱200与蒸发器60在水平方向上交错放置,降低蒸发器60的设置高度,增大储物空间300的容积。
本实施例的冰箱包括散热风机50。散热风机50设置于压缩机20和冷凝器30之间,用于促使形成从气流吸入口2220进入后流经冷凝器30进行换热,然后通过压缩机20向所述气流排出口2230排出的散热气流。散热风机50可以为轴流风机,其旋转轴线平行于箱体10的横向方向。散热风机50的进风侧朝向冷凝器30,其出风侧朝向压缩机20,并用于促使形成从气流吸入口2220进入后流经冷凝器30进行换热,然后通过压缩机20向气流排出口2230排出的散热气流。在一些实施例中,散热风机50的支架与扇叶可装配为一体结构,并且风机支架的外周设置有装配结构,以与压机舱200的舱壁直接固定,不需要在压机舱200内设置其他用于固定风机的支架,使压机舱200内结构更加简单,固定效果更好,散热风机50运行更加稳定。
本实施的冰箱在箱体10的下表面设置有挡风条280。挡风条280设置于箱体10的下表面,挡风条280的中部为可受力弯折的柔性区段283,从而可通过弯折柔性区段283,使挡风条280处于将箱体10下方与冰箱的支撑地面之间的空间分割为与气流吸入口2220连通的进风区域以及与气流排出口2230连通的排风区域的挡风状态。挡风条280具有的柔性区段283可通过弯折可以将气流吸入口2220与气流排出口2230隔离,避免散热气流在箱体10底部小范围内循环,提高散热效率。
如图4-图8所示。底壁220包括压机支撑板221、进风板222和出风板223。压机支撑板221设置于底壁220的后部。进风板222从压机支撑板221 中冷凝器30所在区域的前端向前延伸,其上开设有气流吸入口2220。出风板223从压机支撑板221中压缩机20所在区域的前端向前延伸,其上开设有气流排出口2230。挡风条280在柔性区段283未被弯折时,沿压机支撑板221的前端呈直线状延伸。即挡风条280具有两种状态,在实际使用该过程中,挡风条280为挡风状态(如图4所示),挡风条280弯折将气流吸入口2220与气流排出口2230隔离,避免散热气流在箱体10底部小范围内循环,提高散热效率;在运输过程中,挡风条280为收纳状态(如图5所示),挡风条280沿压机支撑板221的前端呈直线状延伸,便于在运输搬运时与包装箱配合,避免磕碰损坏。
挡风条280包括有第一遮挡区段281、柔性区段283以及第二遮挡区段282。第一遮挡区段281固定于压机支撑板221的前端与进风板222之间。柔性区段283的一端与第一遮挡区段281位于箱体10中部的一端相连。第二遮挡区段282与柔性区段283的另一端相连,并布置于压缩机20的前部区域,并随柔性区段283的弯折程度改变延伸方向。第一遮挡区段281始终固定在箱体10下表面上,第二遮挡区段282可随着柔性区段283的弯折在下表面上旋转以将气流吸入口2220与气流排出口2230分隔开,避免散热气流在箱体10底部小范围内循环,提高散热效率。在收纳状态下,第二遮挡区段282固定于压机支撑板221的前端与出风板223之间,在运输时与包装箱配合,避免磕碰损坏。
当挡风条280处于挡风状态下,柔性区段283弯折为弧形,并使得第二遮挡区段282从进风板222与出风板223之间,向斜前方延伸,倾斜方向为从后向前偏向压缩机20一侧。通过第二遮挡区段282与箱体10下表面配合,将排风区域限制在箱体10前侧,得散热气流可快速离开冰箱周围环境,避免换热结束后较热的散热气流散入嵌入式冰箱的容纳空间中,造成冰箱所处环境较热,增加冰箱能耗。进风区域则为由第一遮挡区段281限制为除排风区域的其他箱体10周围区域,气体经与进风区域连通的气流吸入口2220进入压机舱200内,与冷凝器30充分换热,而后经散热风机50进入压缩机20侧,带走压缩机20运行产生的热量,从气流排出口2230进入排风区域,进而离开箱体10底部。
挡风条280的截面为L形,其中挡风条280的水平侧边与箱体10的下表面贴合,挡风条280的竖直侧边与箱体10的下表面垂直设置,并且竖直 侧边的高度与箱体10下表面至冰箱的支撑地面的高度相匹配,以将气流吸入口2220与气流排出口2230充分分隔,降低从气流排出口2230的散热气流直接从挡风条280与支撑地面的缝隙中回到进风区域的可能性,避免散热气流在箱体10底部小范围内循环,提高散热效率。
本实施例的冰箱还包括分隔件270。分隔件270设置于进风板222和出风板223之间并向上设置,以分隔压机舱200内压缩机20和冷凝器30的前部区域。分隔件270包括底板276、第一侧板271以及第二侧板272。底板276位于进风板222和出风板223之间。第一侧板271从底板276靠近出风板223的一端向上延伸,以隔离压缩机20的前部区域。第二侧板272从底板276靠近进风板222的一端向上延伸,以隔离冷凝器30的前部区域。分隔件270将气流吸入口2220与气流排出口2230隔离,使得散热气流必须经气流吸入口2220、冷凝器30、散热风机50、压缩机20,才可从气流排出口2230排出,使得散热更加充分。底板276的下表面上设置有用于固定第二遮挡区段282的卡爪275,以在挡风条280处于挡风状态下,对第二遮挡区段282进行限位。
第一侧板271的后端壁形成与散热风机50前端形状适配的限位槽274,以共容纳散热风机50的前部。通过将分隔件270与散热风机50进行连接固定,使得压机舱200内各部件连接更加紧密,整体性更强。且上述利用限位槽274的安装方法方便快捷,简化了散热风机50的安装步骤。并且散热风机50从第一侧板271的后部延伸至压缩机20和冷凝器30的之间。通过散热风机50与分隔件270将压机舱200分为压缩机侧与冷凝器侧,散热气流与冷凝器30充分换热后经散热风机50才可进入压缩机20侧,带走压缩机20的运行热量后才可从气流排出口2230排出箱体10。
本实施例嵌入式冰箱的排水管110从压机舱盖板210上方的内胆底部的排水口经过第一侧板271与第二侧板272之间的区域延伸至蒸发皿250处。第一侧板271与第二侧板272之间预留口的设置可有效节省压机舱200内空间,进一步使得箱体10内结构更加紧凑,从而使得冰箱整体的空间利用率更高。
本实施例的嵌入式冰箱设置有挡风板273。挡风板273从第一侧板271向压缩机20的前方延伸,以使得流经压缩机20的散热气流从远离第一侧板271的一侧流向气流排出口2230,并且挡风板273的末端在箱体10纵深方 向的投影与压缩机20的中部对齐。压机舱200设置挡风板273以后,针对全嵌入冰箱,会进一步压缩压机舱200内的散热空间,所以挡风板273终点处不易过长。挡风板273起始点位于散热风机50位置,防止散热扩散,终点位于压缩机20中部对齐,可以将散热气流全部导向压缩机20的整个面上,使压缩机20最大程度的散热,防止散热气流在初始点运动至制高点处风量损失,可以有效降低压缩机20温度。另外挡风板273的设置,可以减少风量回旋,使冷凝器30温度下降,实现有效节能。
本实施例的冷凝器30整体呈长方体状,并被安装为使其散热片沿箱体10的进深方向延伸,以使得从气流吸入口2220进入的空气沿散热片之间的通道流动以进行换热,然后从冷凝器30与背板240之间的间隔流向散热风机50。散热片设置为沿进深方向平行排列,当空气从气流吸入口2220进入后,可流畅地通过散热片间缝隙与每片翅片充分接触并换热,大大增强了散热效果。在一些实施例中,冷凝器30可沿箱体10的进深方向从前到后向上倾斜设置,可有效地利用气流吸入口2220中吸入的空气,使得空气充分与冷凝器30接触面积增大,增强散热效果。另一些实施例中,冷凝器30还可以使用微通道式换热器。
本实施例的嵌入式冰箱中,压机舱200内还可以设置有导风组件290。导风组件290设置于冷凝器30的外周,配置成导引从气流吸入口2220吸入的空气完全穿过冷凝器30,避免气流从冷凝器30外周散出,仅从冷凝器30与背板240之间的间隔流向散热风机50。能使散热气流与冷凝器30充分接触,增强散热性能。
本实施例的嵌入式冰箱在箱体10的下表面设置有挡风条280,该挡风条280具有柔性区段283,可通过弯折可以将气流吸入口2220与气流排出口2230隔离,避免散热气流在箱体10底部小范围内循环,提高散热效率。
进一步地,挡风条280的柔性区段283未被弯折时,沿压机支撑板221的前端呈直线状延伸,便于在运输时与包装箱配合,减小受到磕碰损害的风险。
至此,本领域技术人员应认识到,虽然本文已详尽示出和描述了本发明的多个示例性实施例,但是,在不脱离本发明精神和范围的情况下,仍可根据本发明公开的内容直接确定或推导出符合本发明原理的许多其他变型或修改。因此,本发明的范围应被理解和认定为覆盖了所有这些其他变型或修 改。

Claims (10)

  1. 一种嵌入式冰箱,包括:
    制冷系统,其包括压缩机以及与所述压缩机连接的冷凝器;
    箱体,其底部后方具有压机舱,所述压缩机以及所述冷凝器沿所述箱体的横向方向间隔布置于所述压机舱内;所述压机舱的底壁在所述冷凝器的前部设有气流吸入口,并在所述压缩机的前部设有气流排出口;
    散热风机,设置于所述压缩机与所述冷凝器之间,用于促使形成从所述气流吸入口进入后流经所述冷凝器进行换热,然后通过所述压缩机向所述气流排出口排出的散热气流;
    挡风条,设置于所述箱体的下表面,所述挡风条的中部为可受力弯折的柔性区段,从而可通过弯折所述柔性区段使所述挡风条处于挡风状态,在所述挡风状态下,所述挡风条将所述箱体下方与所述冰箱的支撑地面之间的空间分割为与所述气流吸入口连通的进风区域以及与所述气流排出口连通的排风区域。
  2. 根据权利要求1所述的嵌入式冰箱,其中所述压机舱的底壁包括:
    压机支撑板,设置于所述底壁的后部;
    进风板,从所述压机支撑板中所述冷凝器所在区域的前端向前延伸,其上开设有所述气流吸入口;
    出风板,从所述压机支撑板中所述压缩机所在区域的前端向前延伸,其上开设有所述气流排出口,并且
    所述挡风条在所述柔性区段未被弯折时,沿所述压机支撑板的前端呈直线状延伸。
  3. 根据权利要求2所述的嵌入式冰箱,其中所述挡风条包括:
    第一遮挡区段,固定于所述压机支撑板的前端与所述进风板之间;
    所述柔性区段,其一端与所述第一遮挡区段位于所述箱体中部的一端相连;
    第二遮挡区段,与所述柔性区段的另一端相连,并布置于所述压缩机的前部区域,并随所述柔性区段的弯折程度改变延伸方向。
  4. 根据权利要求3所述的嵌入式冰箱,其中
    所述挡风条处于挡风状态下,所述柔性区段弯折为弧形,并使得所述第二遮挡区段从所述进风板与所述出风板之间向斜前方延伸,倾斜方向为从后向前偏向压缩机一侧。
  5. 根据权利要求4所述的嵌入式冰箱,还包括:
    分隔件,设置于所述进风板和所述出风板之间,用于分隔所述压机舱内所述压缩机和所述冷凝器的前部区域,并包括:
    底板,位于所述进风板和所述出风板之间;
    第一侧板,从所述底板靠近所述出风板的一端向上延伸,以隔离所述压缩机的前部区域;
    第二侧板,从所述底板靠近所述进风板的一端向上延伸,以隔离所述冷凝器的前部区域,其中
    所述底板的下表面上设置有用于固定所述第二遮挡区段的卡爪,以在所述挡风条处于挡风状态下,对所述第二遮挡区段进行限位。
  6. 根据权利要求5所述的嵌入式冰箱,其中
    所述第一侧板的后端壁形成与所述散热风机前端形状适配的限位槽,以共容纳所述散热风机的前部,并且
    所述散热风机从所述第一侧板的后部延伸至所述压缩机和所述冷凝器的之间。
  7. 根据权利要求5所述的嵌入式冰箱,还包括:
    挡风板,从所述第一侧板向所述压缩机的前方延伸,以使得流经所述压缩机的散热气流从远离所述第一侧板的一侧流向所述气流排出口,并且所述挡风板的末端在所述箱体纵深方向的投影与所述压缩机的中部对齐。
  8. 根据权利要求1所述的嵌入式冰箱,其中
    所述挡风条的截面为L形,其中所述挡风条的水平侧边与所述箱体的下表面贴合,所述挡风条的竖直侧边与所述箱体的下表面垂直设置,并且所述竖直侧边的高度与所述箱体下表面至所述冰箱的支撑地面的高度相匹配。
  9. 根据权利要求1所述的嵌入式冰箱,其中
    所述气流吸入口和所述气流排出口处分别形成格栅,以避免异物进入所述箱体。
  10. 根据权利要求1所述的嵌入式冰箱,其中
    所述冷凝器整体呈长方体状,并被安装为使其散热片沿所述箱体的进深方向延伸,以使得从所述气流吸入口进入的空气经由所述散热片之间通道后流向所述压缩机。
PCT/CN2021/109163 2020-08-18 2021-07-29 嵌入式冰箱 Ceased WO2022037382A1 (zh)

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