WO2023005347A1 - 用于嵌入式制冷设备的压缩机仓及嵌入式制冷设备 - Google Patents

用于嵌入式制冷设备的压缩机仓及嵌入式制冷设备 Download PDF

Info

Publication number
WO2023005347A1
WO2023005347A1 PCT/CN2022/092484 CN2022092484W WO2023005347A1 WO 2023005347 A1 WO2023005347 A1 WO 2023005347A1 CN 2022092484 W CN2022092484 W CN 2022092484W WO 2023005347 A1 WO2023005347 A1 WO 2023005347A1
Authority
WO
WIPO (PCT)
Prior art keywords
air
air outlet
refrigeration equipment
compressor
embedded refrigeration
Prior art date
Application number
PCT/CN2022/092484
Other languages
English (en)
French (fr)
Inventor
刘建如
戚斐斐
薛文超
Original Assignee
青岛海尔电冰箱有限公司
海尔智家股份有限公司
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 青岛海尔电冰箱有限公司, 海尔智家股份有限公司 filed Critical 青岛海尔电冰箱有限公司
Publication of WO2023005347A1 publication Critical patent/WO2023005347A1/zh

Links

Images

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
    • F25BREFRIGERATION MACHINES, PLANTS OR SYSTEMS; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS
    • F25B31/00Compressor arrangements
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F04POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
    • F04DNON-POSITIVE-DISPLACEMENT PUMPS
    • F04D29/00Details, component parts, or accessories
    • F04D29/66Combating cavitation, whirls, noise, vibration or the like; Balancing
    • F04D29/661Combating cavitation, whirls, noise, vibration or the like; Balancing especially adapted for elastic fluid pumps
    • F04D29/663Sound attenuation
    • F04D29/664Sound attenuation by means of sound absorbing material
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F04POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
    • F04DNON-POSITIVE-DISPLACEMENT PUMPS
    • F04D29/00Details, component parts, or accessories
    • F04D29/70Suction grids; Strainers; Dust separation; Cleaning
    • 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

Definitions

  • the invention relates to the technical field of refrigeration equipment, in particular to a compressor compartment for embedded refrigeration equipment and the embedded refrigeration equipment.
  • the embedded refrigeration equipment in the prior art can be better integrated into the decoration style of the cabinet and the whole house, it can give users a noble experience in use.
  • the embedded refrigeration equipment is integrally embedded in cabinets or holes in the wall, it is more difficult to dissipate heat.
  • the air inlet and outlet are generally provided on the front side of the compressor compartment of the embedded refrigeration equipment, and the condenser is placed at the bottom and the compressor is front-mounted, thereby improving the heat dissipation effect of the compressor compartment of the embedded refrigeration equipment.
  • this heat dissipation solution needs to install an air deflector for air flow organization on the front side of the compressor compartment, and the air deflector in the prior art is not only unsightly in structure, but also not suitable for the air deflector scheme of the air entering and exiting the front side , which is not conducive to the smooth flow of airflow, thereby reducing the heat dissipation efficiency of the compressor chamber.
  • this heat dissipation solution also causes a lot of noise from the compressor, which seriously affects the user experience.
  • An object of the present invention is to provide a compressor compartment for embedded refrigeration equipment and an embedded refrigeration equipment which overcome the above problems or at least partly solve the above problems.
  • a further object of the present invention is to guide the air in and out of the front side of the compressor compartment of the embedded refrigeration equipment, thereby improving the smoothness of the air flow, and further improving the heat dissipation efficiency of the embedded refrigeration equipment.
  • Another further object of the present invention is to improve the aesthetics of built-in refrigeration equipment.
  • Another further object of the present invention is to improve the noise of the compressor chamber of the embedded refrigeration equipment, thereby improving user experience.
  • the present invention provides a compressor compartment for embedded refrigeration equipment, comprising:
  • the bin body includes a front cover located on the front side of the embedded refrigeration device, and the front cover is provided with air outlets and first air inlets arranged side by side along the transverse direction;
  • the air guide mechanism is arranged at the air outlet, and includes a plurality of first air guide blades and a plurality of second air guide blades respectively located on the lateral sides of the air outlet, and the plurality of first air guide blades and the plurality of second air guide blades
  • the wind blades are all arranged to gather gradually toward the transverse middle of the air outlet from the back to the front.
  • the air outlet and the first air inlet are also provided with a plurality of guiding grille bars spaced along the longitudinal direction, and the plurality of guiding grille bars include:
  • connection section is extended along the transverse direction
  • the inclined section is connected to the upper edge of the connecting section, and extends obliquely upward from the upper edge of the connecting section toward the interior of the bin body.
  • the shapes of the front ends of the plurality of first wind guide vanes and the plurality of second wind guide vanes are adapted to the shape of the plurality of air guide grille bars.
  • the side of the front cover facing the inside of the bin body is also provided with a first partition plate, the first partition plate is arranged longitudinally, and the first partition plate is arranged between the air outlet and the first air inlet, so as to avoid The airflows flowing through the air outlet and the first air inlet interfere with each other.
  • a second partition board is arranged in the bin body, and the second partition board is docked with the first partition board to divide the inner space of the bin body into a first accommodating chamber opposite to the air outlet and a first accommodating chamber opposite to the first air inlet.
  • the opposite second housing chamber where
  • the rear part of the first accommodation chamber communicates with the rear part of the second accommodation chamber.
  • a compressor and a condenser are also arranged in the first accommodation chamber, the compressor is arranged at the front of the first accommodation chamber, and the condenser is arranged at the rear of the first accommodation chamber, and
  • a fan is also arranged between the compressor and the condenser, and the fan is configured so that the airflow flowing into the chamber body flows through the condenser and the compressor in sequence, and then flows out from the air outlet.
  • the bin body also includes a rear cover located on the rear side of the embedded refrigeration device, and the rear cover is provided with a second air inlet.
  • the bin body also includes two side panels for connecting the front cover and the rear cover, wherein a third air inlet is provided on the side panel away from the first accommodating chamber.
  • the side of the front cover facing the interior of the bin body is also provided with sound-absorbing cotton, and the sound-absorbing cotton is located below the air outlet.
  • the present invention also provides an embedded refrigeration device, comprising:
  • the front cover of the compressor chamber is provided with a side-by-side air outlet and a first air inlet, and an air guiding mechanism is arranged at the air outlet, thereby Guide the air in and out of the front cover, so that the air flow out of the air outlet is blown to the lateral middle of the air outlet, so as to avoid the air flow at the air outlet and the air inlet at the air inlet from interfering with each other, and avoid the air flow out of the air outlet from directly returning to the air inlet.
  • the air outlet ensures the cooling effect of the compressor chamber.
  • the compressor compartment and embedded refrigeration equipment used in the embedded refrigeration equipment of the present invention by arranging a plurality of guiding grille strips arranged at intervals along the longitudinal direction at the air outlet and the first air inlet, on the one hand improve the The aesthetics of the embedded refrigeration equipment, on the other hand, prevents children from putting their hands into the compressor compartment out of curiosity, thus ensuring the safety of users.
  • the setting of the inclined section in the guide grille also guides the flow direction of the airflow, so that when the external cold air enters the interior of the warehouse, it flows to the top of the warehouse, and then the cold air flows towards the warehouse under its own gravity.
  • the bottom sinks so as to realize the sufficient cooling of the inner space of the bin body, and then improve the heat dissipation efficiency of the compressor bin.
  • a first partition plate and a second partition plate are respectively arranged on the front cover and the compartment body to separate the internal space of the compartment body
  • the first accommodation chamber opposite to the air outlet and the second accommodation chamber opposite to the first air inlet respectively prevent the cold air flowing into the compartment from directly flowing back to the air outlet, thereby ensuring the cooling effect of the compressor compartment.
  • the compressor, the condenser and the fan are arranged in the first accommodation cavity, and the fan is located between the compressor and the condenser , so that the air flow flows through the condenser and the compressor in sequence under the action of the fan, and then flows out smoothly from the air outlet, thereby improving the heat dissipation efficiency of the compressor compartment.
  • the second air inlet is provided on the rear cover, and the third air inlet is provided on the side plate, thereby increasing the compressor compartment.
  • the air intake path improves the heat dissipation efficiency of the compressor compartment.
  • the compressor compartment for embedded refrigeration equipment and the embedded refrigeration equipment of the present invention improve the noise of the compressor compartment of the embedded refrigeration equipment by arranging sound-absorbing cotton on the front cover, thereby improving user's use experience.
  • FIG. 1 is an exploded view of a compressor compartment for embedded refrigeration equipment according to an embodiment of the present invention
  • Fig. 2 is a schematic structural view of a front cover of a compressor chamber used in an embedded refrigeration device according to an embodiment of the present invention
  • Fig. 3 is a structural schematic diagram of another angle of the front cover of the compressor chamber used for embedded refrigeration equipment according to an embodiment of the present invention
  • Fig. 4 is a schematic sectional view taken along line A-A in Fig. 3;
  • Fig. 5 is a schematic structural diagram of an embedded refrigeration device according to an embodiment of the present invention.
  • Fig. 6 is a structural breakdown structure of an embedded refrigeration device according to an embodiment of the present invention.
  • orientations or positional relationships indicated by the terms “top”, “bottom”, “left”, “right”, “front”, “rear” are based on the The orientation of 20 under normal use is used as a reference, and can be determined by referring to the orientation or positional relationship shown in the drawings.
  • the "front” indicating the orientation refers to the side of the embedded refrigeration device 20 facing the user during normal use. . This is only for the convenience of describing the present invention and simplifying the description, but does not indicate or imply that the referred device or element must have a specific orientation, be constructed and operated in a specific orientation, and thus should not be construed as limiting the present invention.
  • Fig. 1 is an exploded view of a compressor chamber 10 for an embedded refrigeration device 20 according to an embodiment of the present invention.
  • Fig. 2 is a structural schematic diagram of the front cover 110 of the compressor chamber 10 used in the embedded refrigeration device 20 according to an embodiment of the present invention.
  • this embodiment firstly provides a compressor compartment 10 for an embedded refrigeration device 20, the compressor compartment 10 includes: a compartment body 100, including a The front cover 110, and the front cover 110 is provided with the air outlet 111 and the first air inlet 112 distributed side by side along the lateral direction; A plurality of first wind guide vanes 210 and a plurality of second wind guide vanes 220, and the plurality of first wind guide vanes 210 and the plurality of second wind guide vanes 220 are arranged to gradually move toward the transverse direction of the air outlet 111 from the rear to the front. Gather in the middle.
  • the air outlet 111 and the first air inlet 112 distributed side by side are arranged on the front cover 110 on the front side of the warehouse body 100, and the air guide mechanism 200 is arranged on the air outlet 111, so as to realize embedded cooling While the air enters and exits from one side (front side) of the device 20, the airflow discharged from the air outlet 111 is guided to ensure the normal circulation of the airflow, thereby ensuring the heat dissipation effect of the compressor compartment 10.
  • the air guide mechanism 200 located at the air outlet 111 includes a plurality of first air guide vanes 210 and a plurality of second air guide vanes 220 respectively located on the left and right sides of the air outlet 111 .
  • a plurality of first wind guide vanes 210 and a plurality of second wind guide vanes 220 are arranged to gradually gather toward the lateral middle of the air outlet 111 from the rear to the front, so that the airflow discharged from the air outlet 111 is in the direction of the plurality of first wind guide vanes 210 Guided by a plurality of second guide vanes 220, it flows out toward the lateral middle of the air outlet 111, thereby avoiding mutual interference between the airflow at the air outlet 111 and the airflow at the air inlet, and avoiding the direct return of the airflow discharged from the air outlet 111 A short circuit between the air inlet and the air return is formed at the air inlet, thereby ensuring the heat exchange effect of the compressor chamber 10 .
  • first wind guide vane 210 and the second wind guide vane 220 are arranged vertically and distributed symmetrically along the symmetrical plane of the air outlet 111, so as to better guide the airflow to the air outlet 111 in the lateral middle.
  • Fig. 3 is a structural schematic diagram of another angle of the front cover 110 of the compressor chamber 10 used in the embedded refrigeration device 20 according to an embodiment of the present invention.
  • Fig. 4 is a schematic sectional view taken along line A-A in Fig. 3 .
  • a plurality of guiding grille bars 300 arranged at intervals along the longitudinal direction are also provided at the air outlet 111 and the first air inlet 112 , and the plurality of guiding grille bars 300 include: a connecting section 310 and sloped section 320 .
  • the connecting section 310 extends along the transverse direction; the inclined section 320 is connected to the upper edge of the connecting section 310 and extends obliquely upward from the upper edge of the connecting section 310 toward the interior of the bin body 100 .
  • the space in the compressor compartment 10 is shielded by arranging guide grille strips 300 arranged at intervals along the longitudinal direction at the air outlet 111 and the first air inlet 112, so as to avoid the direct sight of the user.
  • the interior of the compressor compartment 10 improves the aesthetics of the compressor compartment 10 of the embedded refrigeration device 20 .
  • the guide grille bar 300 includes connecting sections 310 extending in the transverse direction, and the connecting sections 310 are arranged at intervals in the longitudinal direction, which not only play a shielding role, but also play a blocking role, preventing children from putting their hands into it out of curiosity. Inside the compressor compartment 10, thus ensuring the user's safety in use. In addition, the setting of the conduction grille also prevents some foreign objects from entering the compressor chamber 10 , thus ensuring the normal operation of the embedded refrigeration equipment 20 .
  • the conduction grille bar 300 also includes an inclined section 320 extending upwardly from the upper edge of the connecting section 310 towards the interior of the bin body 100 .
  • the setting of the inclined section 320 at the first air inlet 112 enables the outside cold air to flow to the top of the compressor compartment 10 under the guidance of the inclined section 320 when it enters the interior of the bin body 100 from the first air inlet 112 .
  • After the cold air flows to the top of the bin body 100 it sinks to the bottom of the bin body 100 under its own gravity, so as to fully cool down the space inside the bin body 100 and improve the heat dissipation efficiency of the compressor bin 10 .
  • the setting of the inclined section 320 at the air outlet 111 enables the hot air inside the warehouse body 100 to flow out of the warehouse body 100 through the air outlet 111 and flow to the bottom of the external space under the guidance of the inclined section 320 . After the hot air flows to the bottom of the external space, it fully exchanges heat with the external cold air, thereby further improving the heat dissipation efficiency of the compressor chamber 10 .
  • the shapes of the front ends of the plurality of first wind guide vanes 210 and the plurality of second wind guide vanes 220 are adapted to the shape of the plurality of air guide grille bars 300 .
  • the shapes of the front ends of the first wind guide vane and the second wind guide vane located on the left and right sides of the air outlet 111 are all set to match the shape of the air guide grill bar 300, so as to ensure its In addition to the wind guiding effect, the aesthetics of the compressor compartment 10 of the embedded refrigeration device 20 is improved.
  • the side of the front cover 110 facing the inside of the bin body 100 is also provided with a first partition plate 113 , the first partition plate 113 is arranged longitudinally, and the first partition plate 113 is arranged between the air outlet 111 and the first air inlet 112 space, so as to avoid mutual interference of the airflows flowing through the air outlet 111 and the first air inlet 112.
  • a first partition plate 113 arranged longitudinally is arranged on the side of the front cover 110 facing the interior of the warehouse body 100, and the first partition plate 113 is arranged at the air outlet 111 and the first air inlet 112 between the air outlet 111 and the first air inlet 112, so as to prevent the airflow at the air outlet 111 and the first air inlet 112 from interfering with each other, and to prevent the airflow flowing from the first air inlet 112 into the interior of the warehouse body 100 from returning directly To the air outlet 111 causes a short circuit of the incoming and outgoing air, thereby ensuring the heat dissipation effect of the compressor compartment 10 .
  • the first partition board 113 may be made of foam material.
  • a second partition plate 114 is arranged inside the warehouse body 100, and the second partition board 114 is docked with the first partition board 113 to divide the inner space of the warehouse body 100 into a first accommodation chamber 115 opposite to the air outlet 111 and The second accommodating cavity 116 opposite to the first air inlet 112 ; wherein the rear of the first accommodating cavity 115 communicates with the rear of the second accommodating cavity 116 .
  • the second partition plate 114 abutting with the first partition plate 113 is provided in the warehouse body 100, so that the internal space of the warehouse body 100 is respectively divided into a first accommodation chamber 115 and a second accommodation chamber 116, This further prevents the airflow from forming a short circuit between the incoming and outgoing air inside the bin body 100 .
  • the first receiving chamber 115 communicates with the rear of the second receiving chamber 116 , so that the air flows into the first receiving chamber from the rear after entering the interior of the bin body 100 through the first air inlet 112 , and then flows through the second receiving chamber 116 cavity 115 , and then flows through the first receiving cavity 115 and is discharged from the air outlet 111 , which fully realizes the flow of air in the compartment body 100 , thereby improving the heat dissipation efficiency of the compressor compartment 10 .
  • a compressor 400 and a condenser 500 are also arranged in the first housing chamber 115, the compressor 400 is arranged at the front of the first housing chamber 115, the condenser 500 is arranged at the rear of the first housing chamber 115, and the compressor 400 and A fan 600 is also provided between the condensers 500 , and the fan 600 is configured to make the airflow flowing into the chamber body 100 flow through the condenser 500 and the compressor 400 sequentially and then flow out from the air outlet 111 .
  • the compressor 400 and the condenser 500 are arranged in the first accommodation chamber 115 in sequence from front to back, and a fan 600 is arranged between the compressor 400 and the condenser 500, so that the air flow is under the action of the fan 600 , flows through the condenser 500 and the compressor 400 in turn, and then is discharged from the air outlet 111 , thereby realizing the heat dissipation of the compressor compartment 10 .
  • the compressor 400 and the condenser 500 are centrally arranged in the first accommodating chamber 115 , which reduces the resistance encountered by the airflow when it flows through the second accommodating chamber 116 , thus speeding up the flow rate of the airflow.
  • some other devices such as a water supply pipe 800 and the like, may also be arranged in the second accommodation chamber 116 .
  • the embedded refrigeration equipment 20 can be better integrated into the decoration style of the cabinet and the whole house, it can give people a noble experience in use, but compared with the traditional refrigeration equipment, the function and volume of the embedded refrigeration equipment 20 And maintenance methods are greatly restricted by cabinet/wall holes. If the embedded refrigeration equipment 20 adopts the method of taking water from the rear, it is necessary to connect the waterway and fix it at the rear, and then push the embedded refrigeration equipment 20 into the cabinet/wall hole, which will not only easily cause the water pipe to bend Extrusion, and when there is a problem with the water supply pipe 800, the embedded refrigeration device 20 needs to be pulled out from the cabinet/wall hole as a whole, which will not only increase the workload of the maintenance personnel, but also easily cause damage to the cabinet/wall hole. Secondary damage.
  • the water supply pipe 800 is arranged in the second accommodating chamber 116, and the water inlet section 810 of the water supply pipe 800 is arranged at the front part of the warehouse body 100, which facilitates the repair and maintenance of the water supply pipe 800 on the one hand (before opening Cover 110 can be maintained), on the other hand, it is not easy to cause bending and extrusion of the pipeline.
  • the water inlet section 810 of the water supply pipe 800 can be installed on the bottom wall of the compressor chamber 10 through the clip 820, the clip 820 can be a block installed on the bottom wall, and the block is provided with a slot for further The water section 810 is installed in the slot.
  • the pipeline is hidden inside the compressor chamber 10, so it does not affect the appearance.
  • the bin body 100 also includes a rear cover 120 located on the rear side of the embedded refrigeration device 20 , and a second air inlet 121 is disposed on the rear cover 120 .
  • the second air inlet 121 is provided on the rear cover 120 at the rear side of the embedded refrigeration device 20, thereby increasing the airflow path for the cold air from the outside to enter the compressor 400, thereby improving the heat exchange of the compressor compartment 10 efficiency.
  • the bin body 100 also includes two side panels 130 for connecting the front cover 110 and the rear cover 120 , wherein a third air inlet 131 is provided on the side panel 130 away from the first receiving cavity 115 .
  • a third air inlet 131 is also provided on the side plate 130 away from the first accommodating chamber 115, thereby further increasing the air flow path for the cold air from the outside to enter the compressor 400, thereby improving the airflow of the compressor compartment 10. heat transfer efficiency.
  • the front cover 110 is further provided with a sound-absorbing cotton 700 on a side facing the interior of the bin body 100 , and the sound-absorbing cotton 700 is located below the air outlet 111 .
  • the sound-absorbing cotton 700 is arranged on the side of the front cover 110 facing the interior of the warehouse body 100, and the sound-absorbing cotton 700 is located below the air outlet 111, so that the sound-absorbing cotton 700 and the compressor in the first accommodation chamber 115 400, so that the noise reduction performance of the noise reduction cotton 700 is used to reduce the noise of the compressor 400, thereby improving the user experience.
  • FIG. 5 is a schematic structural diagram of an embedded refrigeration device 20 according to an embodiment of the present invention.
  • FIG. 6 is a structural exploded structure of the embedded refrigeration device 20 according to one embodiment of the present invention.
  • This embodiment also provides an embedded refrigeration device 20 , which includes: any one of the above-mentioned compressor chambers 10 for the embedded refrigeration device 20 .
  • the compressor chamber 10 for any of the above-mentioned embedded refrigeration equipment 20 is arranged at the bottom of the embedded refrigeration equipment 20, and the front cover 110 with the air outlet 111 and the first air inlet 112 is located on the bottom of the embedded refrigeration equipment 20.
  • the front side of the embedded cooling device 20 enables the embedded cooling device 20 to realize air inflow and outflow from one side (front side), thereby improving the heat dissipation effect of the embedded cooling device 20 .
  • the flow direction of the air entering and leaving the front side of the embedded refrigeration equipment 20 is guided, thereby improving the efficiency of the embedded refrigeration equipment. While being aesthetically pleasing, the heat dissipation requirements of the embedded refrigeration equipment 20 are met, and the heat dissipation efficiency is improved.
  • the solution of this embodiment also improves the noise of the compressor chamber 10 of the embedded refrigeration device 20, thereby further improving the user experience.

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • Thermal Sciences (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Other Air-Conditioning Systems (AREA)

Abstract

一种用于嵌入式制冷设备的压缩机仓,包括:仓体,包括位于嵌入式制冷设备前侧的前盖,并且前盖上设置有沿横向方向并列分布的出风口和第一进风口;导风机构,设置于出风口处,包括分别位于出风口的横向两侧的多个第一导风叶片和多个第二导风叶片,并且多个第一导风叶片和多个第二导风叶片均设置为从后向前逐渐向出风口的横向中部聚拢。还公开一种嵌入式制冷设备。通过在压缩机仓的前盖处设置并列的出风口和第一进风口,并在出风口处设置导风机构,使得出风口流出的气流向出风口的横向中部吹出,从而避免出风口流出的气流直接回流至进风口,进而保证了压缩机仓的散热效果。

Description

用于嵌入式制冷设备的压缩机仓及嵌入式制冷设备 技术领域
本发明涉及制冷设备技术领域,特别是涉及一种用于嵌入式制冷设备的压缩机仓及嵌入式制冷设备。
背景技术
现有技术中的嵌入式制冷设备由于能够更好地融入橱柜以及整屋的装修风格之中,因此在使用中可以给用户以尊贵的体验。但由于嵌入式制冷设备要整体嵌入橱柜或墙体孔洞之中,导致其散热更加困难。现有技术一般是在嵌入式制冷设备的压缩机仓前侧设置进出风口,并将冷凝器底置、压缩机前置,从而提高嵌入式制冷设备的压缩机仓的散热效果。然而,这种散热方案需要在压缩机仓的前侧设置气流组织用的导风板,而现有技术中的导风板不仅结构不够美观,而且并不适用于前侧进出风的导风方案,不利于气流的顺畅流动,从而降低了压缩机仓的散热效率。同时,这种散热方案还导致压缩机的噪音很大,严重影响了用户的使用体验。
发明内容
本发明的一个目的是要提供一种克服上述问题或者至少部分地解决上述问题的用于嵌入式制冷设备的压缩机仓及嵌入式制冷设备。
本发明一个进一步的目的是要对嵌入式制冷设备的压缩机仓的前侧的进出风进行引导,从而提高气流的流动顺畅度,进而提高嵌入式制冷设备的散热效率。
本发明另一个进一步的目的是要提高嵌入式制冷设备的美观性。
本发明另一个进一步的目的是要改善嵌入式制冷设备的压缩机仓的噪音,从而提高用户的使用体验。
特别地,本发明提供了一种用于嵌入式制冷设备的压缩机仓,包括:
仓体,包括位于嵌入式制冷设备前侧的前盖,并且前盖上设置有沿横向方向并列分布的出风口和第一进风口;
导风机构,设置于出风口处,包括分别位于出风口的横向两侧的多个第一导风叶片和多个第二导风叶片,并且多个第一导风叶片和多个第二导风叶片均设置为从后向前逐渐向出风口的横向中部聚拢。
进一步地,出风口和第一进风口处还设置有多个沿纵向方向间隔设置的导风格栅条,并且多个导风格栅条包括:
连接段,沿横向方向延伸设置;
倾斜段,连接于连接段的上边缘,并且自连接段的上边缘起向仓体的内部方向向上倾斜延伸。
进一步地,多个第一导风叶片和多个第二导风叶片的前端的形状与多个导风格栅条的形状相适配。
进一步地,前盖朝向仓体内部的一侧还设置有第一分隔板,第一分隔板沿纵向设置,并且第一分隔板设置于出风口与第一进风口之间,以避免流经出风口和第一进风口的气流相互干扰。
进一步地,仓体内设置有第二分隔板,第二分隔板与第一分隔板对接,以将仓体的内部空间分隔为与出风口相对的第一容纳腔以及与第一进风口相对的第二容纳腔;其中
第一容纳腔的后部与第二容纳腔的后部连通。
进一步地,第一容纳腔内还设置有压缩机和冷凝器,压缩机设置于第一容纳腔的前部,冷凝器设置于第一容纳腔的后部,并且
压缩机和冷凝器之间还设置有风机,风机被配置为使流入仓体内部的气流依次流经冷凝器和压缩机后从出风口流出。
进一步地,仓体还包括位于嵌入式制冷设备后侧的后盖,并且后盖上设置有第二进风口。
进一步地,仓体还包括用于连接前盖和后盖的两个侧板,其中,远离第一容纳腔的侧板上设置有第三进风口。
进一步地,前盖朝向仓体内部的一侧还设置有消音棉,并且消音棉位于出风口的下方。
本发明还提供了一种嵌入式制冷设备,包括:
上述任一种的用于嵌入式制冷设备的压缩机仓。
本发明的用于嵌入式制冷设备的压缩机仓及嵌入式制冷设备,通过在压缩机仓的前盖处设置并列的出风口和第一进风口,并在出风口处设置导风机构,从而对前盖处的进出风进行引导,使得出风口流出的气流向出风口的横向中部吹出,从而避免出风口处的气流与进风口处的气流互相干扰,避免出风口流出的气流直接回流至进风口,进而保证了压缩机仓的散热效果。
进一步地,本发明的用于嵌入式制冷设备的压缩机仓及嵌入式制冷设备,通过在出风口和第一进风口处设置多个沿纵向间隔设置的导风格栅条,一方面提高了嵌入式制冷设备的美观性,另一方面避免了儿童出于好奇将手伸入压缩机仓内,从而保证了用户的使用安全。此外,导风格栅条中的倾斜段的设置还对气流的流动方向进行引导,使得外部的冷空气在进入仓体内部时流向仓体的顶部,然后冷空气在自身重力作用下向仓体底部下沉,从而实现对仓体内部空间的充分降温,进而提高压缩机仓的散热效率。
进一步地,本发明的用于嵌入式制冷设备的压缩机仓及嵌入式制冷设备,通过在前盖和仓体内分别设置第一分隔板和第二分隔板,将仓体的内部空间分隔为分别与出风口相对的第一容纳腔以及与第一进风口相对的第二容纳腔,从而避免了流入仓体内的冷空气直接回流至出风口,进而保证了压缩机仓的散热效果。
进一步地,本发明的用于嵌入式制冷设备的压缩机仓及嵌入式制冷设备,通过将压缩机、冷凝器和风机设置在第一容纳腔中,并设置风机位于压缩机和冷凝器之间,使得气流在风机的作用下,依次流经冷凝器和压缩机后从出风口顺利流出,从而提高了压缩机仓的散热效率。
进一步地,本发明的用于嵌入式制冷设备的压缩机仓及嵌入式制冷设备,通过在后盖上设置了第二进风口,在侧板上设置了第三进风口,增加了压缩机仓的进风途径,从而提高了压缩机仓的散热效率。
进一步地,本发明的用于嵌入式制冷设备的压缩机仓及嵌入式制冷设备,通过在前盖上设置消音棉,改善了嵌入式制冷设备的压缩机仓的噪音,进而提高了用户的使用体验。
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用于嵌入式制冷设备的压缩机仓的结构分解图;
图2是根据本发明一个实施例的用于嵌入式制冷设备的压缩机仓的前盖的结构示意图;
图3是根据本发明一个实施例的用于嵌入式制冷设备的压缩机仓的前盖的另一角度的结构示意图;
图4是沿图3中剖切线A-A截取的示意性剖视图;
图5是根据本发明一个实施例的嵌入式制冷设备的结构示意图;
图6是根据本发明一个实施例的嵌入式制冷设备的结构分解结构。
具体实施方式
以下将结合附图1-6所示的具体实施方式对本发明进行详细描述。但这些实施方式并不限制本发明,本领域的普通技术人员根据这些实施方式所做出的结构、方法、或功能上的变换均包含在本发明的保护范围内。
在本实施例的描述中,需要理解的是,术语“顶”、“底”、“左”、“右”、“前”、“后”等指示的方位或位置关系为基于嵌入式制冷设备20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”指的是嵌入式制冷设备20在正常的使用过程中朝向用户的一侧。这仅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用于嵌入式制冷设备20的压缩机仓10的结构分解图。图2是根据本发明一个实施例的用于嵌入式制冷设备20的压缩机仓10的前盖110的结构示意图。
如图1-2所示,本实施例首先提供了一种用于嵌入式制冷设备20的压缩机仓10,该压缩机仓10包括:仓体100,包括位于嵌入式制冷设备20前侧的前盖110,并且前盖110上设置有沿横向方向并列分布的出风口111和第一进风口112;导风机构200,设置于出风口111处,包括分别位于出风口111的横向两侧的多个第一导风叶片210和多个第二导风叶片220,并且多个第一导风叶片210和多个第二导风叶片220均设置为从后向前逐渐向出风口111的横向中部聚拢。
本实施例的方案,通过在仓体100前侧的前盖110上设置并列分布的出风口111和第一进风口112,并在出风口111上设置导风机构200,从而在实现嵌入式制冷设备20一侧(前侧)进出风的同时,对出风口111排出的 气流进行引导,从而保证气流的正常循环,进而保障压缩机仓10的散热效果。
进一步地,本实施例的方案中,位于出风口111处的导风机构200包括分别位于出风口111左右两侧的多个第一导风叶片210和多个第二导风叶片220。多个第一导风叶片210和多个第二导风叶片220均设置为从后向前逐渐向出风口111的横向中部聚拢,使得出风口111排出的气流在多个第一导风叶片210和多个第二导风叶片220的引导下,朝向出风口111的横向中部流出,从而避免了出风口111处的气流与进风口处的气流互相干扰,避免了出风口111排出的气流直接回流至进风口形成进回风短路,进而保障了压缩机仓10的换热效果。此外,第一导风叶片210和第二导风叶片220的设置,还增加了出风口111处排出的气流的出速和射程,从而提高了压缩机仓10的散热速率。
在一些优选的实施例中,第一导风叶片210和第二导风叶片220被设置为竖直设置,并沿出风口111的对称面对称分布,从而更好地将气流引导流向出风口111的横向中部。
图3是根据本发明一个实施例的用于嵌入式制冷设备20的压缩机仓10的前盖110的另一角度的结构示意图。图4是沿图3中剖切线A-A截取的示意性剖视图。
如图3-4所示,出风口111和第一进风口112处还设置有多个沿纵向方向间隔设置的导风格栅条300,并且多个导风格栅条300包括:连接段310和倾斜段320。
其中,连接段310沿横向方向延伸设置;倾斜段320,连接于连接段310的上边缘,并且自连接段310的上边缘起向仓体100的内部方向向上倾斜延伸。
本实施例的方案,通过在出风口111和第一进风口112处设置沿纵向方向间隔设置的导风格栅条300,对压缩机仓10内的空间进行遮蔽,避免了用户的视线直视压缩机仓10的内部,从而提高了嵌入式制冷设备20的压缩机仓10的美观性。
进一步地,导风格栅条300包括沿横向方向延伸的连接段310,连接段310在纵向方向上间隔设置,在起遮蔽作用的同时,还起阻挡作用,避免儿童出于好奇将手伸入压缩机仓10内,从而保证了用户的使用安全。此外, 导风格栅的设置,也避免了一些异物进入压缩机仓10内,从而保证了嵌入式制冷设备20的正常运行。
进一步地,导风格栅条300还包括自连接段310的上边缘起向仓体100的内部方向向上倾斜延伸设置的倾斜段320。第一进风口112处的倾斜段320的设置,使得外部的冷空气从第一进风口112进入仓体100内部时,能够在倾斜段320的引导作用下,流向压缩机仓10的顶部。冷空气在流至仓体100顶部后,在自身重力作用下向仓体100的底部下沉,从而对仓体100内部的空间进行充分降温,进而提高压缩机仓10的散热效率。出风口111处的倾斜段320的设置,使得仓体100内部的热空气通过出风口111流出仓体100时,能够在倾斜段320的引导作用下,流向外部空间的底部。热空气在流至外部空间的底部后,与外部的冷空气进行充分换热,从而进一步提高压缩机仓10的散热效率。
如图4所示,多个第一导风叶片210和多个第二导风叶片220的前端的形状与多个导风格栅条300的形状相适配。
本实施例的方案,将位于出风口111左右两侧的第一导风叶和第二导风叶的前端的形状均设置为与导风格栅条300的形状相适配,从而在保证其导风效果的同时,提高了嵌入式制冷设备20的压缩机仓10的美观性。
前盖110朝向仓体100内部的一侧还设置有第一分隔板113,第一分隔板113沿纵向设置,并且第一分隔板113设置于出风口111与第一进风口112之间,以避免流经出风口111和第一进风口112的气流相互干扰。
本实施例的方案,通过在前盖110朝向仓体100内部的一侧设置沿纵向设置的第一分隔板113,并将第一分隔板113设置于出风口111和第一进风口112之间,从而将出风口111和第一进风口112隔绝开来,避免出风口111和第一进风口112处的气流相互干扰,避免从第一进风口112流入仓体100内部的气流直接回流至出风口111造成进回风短路,从而保证了压缩机仓10的散热效果。
在一些优选的实施例中,第一分隔板113可以采用泡棉材料。
仓体100内设置有第二分隔板114,第二分隔板114与第一分隔板113对接,以将仓体100的内部空间分隔为与出风口111相对的第一容纳腔115以及与第一进风口112相对的第二容纳腔116;其中第一容纳腔115的后部与第二容纳腔116的后部连通。
本实施例的方案,通过在仓体100内设置与第一分隔板113对接的第二分隔板114,从而将仓体100的内部空间分别第一容纳腔115和第二容纳腔116,进一步避免了气流在仓体100内部形成进回风短路。此外,第一容纳腔115和第二容纳腔116的后部连通,使得气流经过第一进风口112进入仓体100内部后,在流过第二容纳腔116后,从后部流入第一容纳腔115,再流经第一容纳腔115从出风口111排出,充分实现了气流在仓体100内部的流动,进而提高了压缩机仓10的散热效率。
第一容纳腔115内还设置有压缩机400和冷凝器500,压缩机400设置于第一容纳腔115的前部,冷凝器500设置于第一容纳腔115的后部,并且压缩机400和冷凝器500之间还设置有风机600,风机600被配置为使流入仓体100内部的气流依次流经冷凝器500和压缩机400后从出风口111流出。
本实施例的方案,将压缩机400和冷凝器500从前至后依次设置在第一容纳腔115中,并在压缩机400和冷凝器500之间设置风机600,使得气流在风机600的作用下,依次流经冷凝器500和压缩机400后从出风口111排出,从而实现了对压缩机仓10的散热。
进一步地,将压缩机400和冷凝器500集中设置在第一容纳腔115中,降低了气流流过第二容纳腔116时所受到的阻力,从而加快了气流流动的速率。
在一些优选的实施例中,在第二容纳腔116中还可以设置一些其它装置,例如给水管800等。
嵌入式制冷设备20由于能够更好的融入橱柜以及整屋的装修风格之中,因此在使用中可以给人以尊贵的体验,但相较于传统制冷设备,嵌入式制冷设备20的功能、容积及维修方式又极大地受到橱柜/墙体孔洞的制约。嵌入式制冷设备20如果采用后部取水的方式,需要现将水路连接好,并固定在后部,然后再将嵌入式制冷设备20推入橱柜/墙体孔洞,这样不但容易造成水管的弯折挤压,而且当给水管800路出现问题时还需要将嵌入式制冷设备20整体从橱柜/墙体孔洞拉出,这样不仅会增加维修人员的工作量,而且很容易对橱柜/墙体孔洞造成二次损伤。
在一些优选的实施例中,给水管800设置在第二容纳腔116内,并且给水管800的进水段810设置于仓体100的前部,一方面便于给水管800的修理维护(打开前盖110即可维修),另一方面不易造成管路的弯折挤压。
进一步地,给水管800的进水段810可通过卡件820安装于压缩机仓10的底壁上,卡件820可为安装于底壁上的卡块,卡块上设置有卡槽,进水段810安装于卡槽内。管路隐藏在压缩机仓10内部,因此也不影响美观。
仓体100还包括位于嵌入式制冷设备20后侧的后盖120,并且后盖120上设置有第二进风口121。
本实施例的方案,在嵌入式制冷设备20后侧的后盖120上设置第二进风口121,从而增加了外界冷空气进入压缩机400的气流途径,从而提高了压缩机仓10的换热效率。
仓体100还包括用于连接前盖110和后盖120的两个侧板130,其中,远离第一容纳腔115的侧板130上设置有第三进风口131。
本实施例的方案,还在远离第一容纳腔115的侧板130上设置了第三进风口131,从而进一步增加了外界冷空气进入压缩机400的气流途径,进而提高了压缩机仓10的换热效率。
前盖110朝向仓体100内部的一侧还设置有消音棉700,并且消音棉700位于出风口111的下方。
本实施例的方案,通过在前盖110朝向仓体100内部的一侧设置消音棉700,并设置消音棉700位于出风口111的下方,使得消音棉700与第一容纳腔115内的压缩机400相对,从而利用消音棉700的消音性能,降低压缩机400的噪音,从而提高用户的使用体验。
图5是根据本发明一个实施例的嵌入式制冷设备20的结构示意图。图6是根据本发明一个实施例的嵌入式制冷设备20的结构分解结构。
本实施例还提供了一种嵌入式制冷设备20,该嵌入式制冷设备20包括:上述任一种的用于嵌入式制冷设备20的压缩机仓10。
如图5-6所示,上述任一种的用于嵌入式制冷设备20的压缩机仓10设置于嵌入式制冷设备20的底部,具有出风口111和第一进风口112的前盖110位于嵌入式制冷设备20的前侧,从而使得嵌入式制冷设备20实现一侧(前侧)进出风,进而提高嵌入式制冷设备20的散热效果。
进一步地,本实施例的方案,通过在嵌入式制冷设备20中设置上述的压缩机仓10,对嵌入式制冷设备20前侧的进出风的流动方向进行引导,从而在提高了嵌入式制冷设备20的美观性的同时,满足了嵌入式制冷设备20的散热需求,提高了散热效率。
进一步地,本实施例的方案,还改善了嵌入式制冷设备20的压缩机仓10的噪音,从而进一步提高了用户的使用体验。
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. 一种用于嵌入式制冷设备的压缩机仓,包括:
    仓体,包括位于所述嵌入式制冷设备前侧的前盖,并且所述前盖上设置有沿横向方向并列分布的出风口和第一进风口;
    导风机构,设置于所述出风口处,包括分别位于所述出风口的横向两侧的多个第一导风叶片和多个第二导风叶片,并且多个所述第一导风叶片和多个所述第二导风叶片均设置为从后向前逐渐向所述出风口的横向中部聚拢。
  2. 根据权利要求1所述的用于嵌入式制冷设备的压缩机仓,其中,
    所述出风口和所述第一进风口处还设置有多个沿纵向方向间隔设置的导风格栅条,并且多个所述导风格栅条包括:
    连接段,沿横向方向延伸设置;
    倾斜段,连接于所述连接段的上边缘,并且自所述连接段的上边缘起向所述仓体的内部方向向上倾斜延伸。
  3. 根据权利要求2所述的用于嵌入式制冷设备的压缩机仓,其中,
    多个所述第一导风叶片和多个所述第二导风叶片的前端的形状与多个所述导风格栅条的形状相适配。
  4. 根据权利要求1所述的用于嵌入式制冷设备的压缩机仓,其中,
    所述前盖朝向所述仓体内部的一侧还设置有第一分隔板,所述第一分隔板沿纵向设置,并且所述第一分隔板设置于所述出风口与所述第一进风口之间,以避免流经所述出风口和所述第一进风口的气流相互干扰。
  5. 根据权利要求4所述的用于嵌入式制冷设备的压缩机仓,其中,
    所述仓体内设置有第二分隔板,所述第二分隔板与所述第一分隔板对接,以将所述仓体的内部空间分隔为与所述出风口相对的第一容纳腔以及与所述第一进风口相对的第二容纳腔;其中
    所述第一容纳腔的后部与所述第二容纳腔的后部连通。
  6. 根据权利要求5所述的用于嵌入式制冷设备的压缩机仓,其中,
    所述第一容纳腔内还设置有压缩机和冷凝器,所述压缩机设置于所述第一容纳腔的前部,所述冷凝器设置于所述第一容纳腔的后部,并且
    所述压缩机和所述冷凝器之间还设置有风机,所述风机被配置为使流入所述仓体内部的气流依次流经所述冷凝器和所述压缩机后从所述出风口流出。
  7. 根据权利要求5所述的用于嵌入式制冷设备的压缩机仓,其中,
    所述仓体还包括位于所述嵌入式制冷设备后侧的后盖,并且所述后盖上设置有第二进风口。
  8. 根据权利要求7所述的用于嵌入式制冷设备的压缩机仓,其中,
    所述仓体还包括用于连接所述前盖和所述后盖的两个侧板,其中,远离所述第一容纳腔的所述侧板上设置有第三进风口。
  9. 根据权利要求1所述的用于嵌入式制冷设备的压缩机仓,其中,
    所述前盖朝向所述仓体内部的一侧还设置有消音棉,并且所述消音棉位于所述出风口的下方。
  10. 一种嵌入式制冷设备,包括:
    根据权利要求1至9中任一项所述的用于嵌入式制冷设备的压缩机仓。
PCT/CN2022/092484 2021-07-27 2022-05-12 用于嵌入式制冷设备的压缩机仓及嵌入式制冷设备 WO2023005347A1 (zh)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN202110852112.X 2021-07-27
CN202110852112.XA CN113531954A (zh) 2021-07-27 2021-07-27 用于嵌入式制冷设备的压缩机仓及嵌入式制冷设备

Publications (1)

Publication Number Publication Date
WO2023005347A1 true WO2023005347A1 (zh) 2023-02-02

Family

ID=78121037

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2022/092484 WO2023005347A1 (zh) 2021-07-27 2022-05-12 用于嵌入式制冷设备的压缩机仓及嵌入式制冷设备

Country Status (2)

Country Link
CN (1) CN113531954A (zh)
WO (1) WO2023005347A1 (zh)

Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113531954A (zh) * 2021-07-27 2021-10-22 青岛海尔电冰箱有限公司 用于嵌入式制冷设备的压缩机仓及嵌入式制冷设备
CN115164467A (zh) * 2022-06-15 2022-10-11 青岛海尔特种电冰柜有限公司 嵌入式制冷设备

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111595091A (zh) * 2020-04-10 2020-08-28 合肥华凌股份有限公司 压缩机仓和制冷设备
CN212205288U (zh) * 2020-04-10 2020-12-22 合肥华凌股份有限公司 冰箱的通风组件及冰箱
CN212720449U (zh) * 2020-06-17 2021-03-16 合肥华凌股份有限公司 压缩机仓及制冷设备
CN113531954A (zh) * 2021-07-27 2021-10-22 青岛海尔电冰箱有限公司 用于嵌入式制冷设备的压缩机仓及嵌入式制冷设备
CN215597870U (zh) * 2021-06-03 2022-01-21 青岛海尔电冰箱有限公司 冷藏冷冻装置
CN216114783U (zh) * 2021-07-27 2022-03-22 青岛海尔电冰箱有限公司 用于嵌入式制冷设备的压缩机仓及嵌入式制冷设备

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111595091A (zh) * 2020-04-10 2020-08-28 合肥华凌股份有限公司 压缩机仓和制冷设备
CN212205288U (zh) * 2020-04-10 2020-12-22 合肥华凌股份有限公司 冰箱的通风组件及冰箱
CN212720449U (zh) * 2020-06-17 2021-03-16 合肥华凌股份有限公司 压缩机仓及制冷设备
CN215597870U (zh) * 2021-06-03 2022-01-21 青岛海尔电冰箱有限公司 冷藏冷冻装置
CN113531954A (zh) * 2021-07-27 2021-10-22 青岛海尔电冰箱有限公司 用于嵌入式制冷设备的压缩机仓及嵌入式制冷设备
CN216114783U (zh) * 2021-07-27 2022-03-22 青岛海尔电冰箱有限公司 用于嵌入式制冷设备的压缩机仓及嵌入式制冷设备

Also Published As

Publication number Publication date
CN113531954A (zh) 2021-10-22

Similar Documents

Publication Publication Date Title
WO2023005347A1 (zh) 用于嵌入式制冷设备的压缩机仓及嵌入式制冷设备
CN205536760U (zh) 嵌入式冰箱
CN1316217C (zh) 内置冰箱的散热装置
JP4472439B2 (ja) ビルトイン冷蔵庫の放熱装置
CN201115064Y (zh) 一种机柜
WO2016086429A1 (zh) 一种具有防冻堵风道结构的冰箱
EP3699501B1 (en) Wall-mounted indoor air conditioning unit and air conditioner
US20130102238A1 (en) Indoor unit of air conditioner
US20220128289A1 (en) Refrigerator with divider
WO2020098082A1 (zh) 冰箱
KR20070078259A (ko) 공기조화기의 실내기
AU2021326859B2 (en) Refrigerator having evaporator disposed at bottom of refrigerator body
WO2021190237A1 (zh) 空调室内机
WO2021115106A1 (zh) 抽屉式微波炉
CN109890181A (zh) 一种微模块数据中心的顶置式制冷系统
WO2021115107A1 (zh) 抽屉式微波炉
CN216114783U (zh) 用于嵌入式制冷设备的压缩机仓及嵌入式制冷设备
CN210141650U (zh) 一种空调器室内机
CN209358419U (zh) 变频器
CN101587363B (zh) 笔记本式计算机及其主机盒与主板
JPH1096550A (ja) 電子機器のハウジング
CN209358442U (zh) 用于变频器的电阻安装组件和变频器
CN220108125U (zh) 一种侧装散热的交换机
CN220506961U (zh) 一种空调室内机
CN217285156U (zh) 一种可调节浴室环境温度的浴室柜

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 22847960

Country of ref document: EP

Kind code of ref document: A1

NENP Non-entry into the national phase

Ref country code: DE