Wine cabinet
A wine cabinet and wine rack technology, applied in cocktail cabinets, cabinets, household refrigeration devices, etc., can solve the problems of poor user experience and poor drinking taste of red wine, and achieve the effect of improving drinking quality and improving user experience.
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Embodiment 1
[0043] Embodiment one, such as Figure 1-Figure 7 As shown, the wine cabinet in this embodiment includes: a cabinet body 1 , an air duct assembly 2 and a refrigeration system, wherein a refrigeration chamber 101 for storing items is formed in the cabinet body 1 . Normally, the cabinet body 1 includes an outer shell and an inner container, a foam layer is formed between the outer shell and the inner container, and a cooling cavity 101 is formed in the inner container. The refrigeration system usually includes a compressor, a condenser, a throttling device, and an evaporator 3 connected together, and the cooling energy released by the evaporator 3 is used to exchange heat with the air in the refrigeration cavity 101 to achieve refrigeration, wherein the evaporator 3 is set in the air duct assembly 2. The air channel assembly 2 has an air outlet 201 and an air return port 202. The air in the cooling cavity 101 enters the air channel assembly 2 and exchanges heat with the evapora...
Embodiment 2
[0050] Embodiment 2, due to the influence of the sinking effect of the cold air, in the actual cooling process, after the cold air formed by heat exchange enters the cooling cavity 101, the cold air will sink to the bottom of the cooling cavity 101, causing the cooling cavity The large temperature difference between the upper and lower parts of 101 results in uneven temperature distribution. In order to solve the above problems, a heat conduction component is provided in the refrigeration cavity 101 , the heat conduction component is arranged in the refrigeration cavity 101 along the height direction, and the heat conduction component is used for conducting cooling in the refrigeration cavity 101 .
[0051] After the heat conduction components are arranged in the cooling cavity 101 along the height direction, in the actual cooling process, after the cold air output from the air outlet 201 sinks to the bottom of the cooling cavity 101 due to gravity, the heat conduction of the h...
Embodiment 3
[0057] Embodiment 3, the air duct assembly 2 includes: an air duct cover plate 21, which is arranged in the cooling cavity 101 and close to the back of the cooling cavity 101, and a circulating air flow is formed between the air duct cover plate 21 and the back of the cooling cavity 101. Channel, the air channel cover plate 21 is provided with an air outlet 201 and an air return port 202; the fan 22 is arranged in the circulating air channel; wherein, the evaporator 3 is also arranged in the circulating air channel. Under the action of the fan 22 , the air in the cooling cavity 101 enters the circulating air passage through the air return port 202 , exchanges heat with the evaporator 3 to form cold air, and then outputs it to the cooling cavity 101 through the air outlet 201 .
[0058] Among them, in order to ensure the uniformity of cold air distribution in the process of outputting cold air, the air outlet 201 and the return air outlet 202 are arranged up and down and arrange...
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