A control method for maintaining fluidity of beverages within the temperature range of ice crystals, an ice crystal beverage cabinet and a control method thereof
A control method and temperature range technology, applied in the control of ice crystal beverage cabinets, in the field of ice crystal beverage cabinets, can solve the problems of unstable supercooled liquid state, equipment that cannot be regarded as ice crystal effect and store ice crystal beverages, and is not targeted.
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Embodiment 1
[0065] combine figure 2 and image 3 As shown in the ice crystal beverage cabinet, its main body 1 includes a box body 11, a door body 12 and a back cover 13, one side of the door body 12 is connected to the box body 11 through a door hinge 14, and the recess 15 on the back of the box body 11 is connected to the back cover 13 A space is formed between them for installing the main components of the refrigeration assembly 2 and the control assembly 3 . The front of the door body 12 is provided with a glass window 121, and the upper part is provided with a control panel 122 for display operation. The control panel 122 is electrically connected to the control assembly 3, and the control panel 122 is divided into 10 stalls according to the ice crystal temperature range of the beverage (in other embodiments can not be limited to 10 stalls). The specific internal structure is as image 3 As shown, the box body 11 includes an inner tank 111, an outer shell 112 and a heat insulatin...
Embodiment 2
[0088] The structure and principle of the ice crystal beverage cabinet of this embodiment are basically the same as those of Embodiment 1, the difference lies in the different gear settings, and the gear settings are shown in the following table:
[0089]
[0090] As shown in the above table, the temperature is divided into 6 levels from -4.5°C, and each interval is 0.3°C. Each gear corresponds to a total cooling time. Starting from 210 minutes, the lower the temperature, the longer the cooling time. The cooling time corresponding to each gear is 40 minutes higher than the cooling time corresponding to the higher temperature gear. The ice crystal beverage cabinet is suitable for two different types of beverages, and each beverage corresponds to three continuous intervals. For each drink, the user can adjust between three gears, the lower the temperature, the stronger the ice crystal effect, and the higher the temperature, the weaker the ice crystal effect.
Embodiment 3
[0092] The structure and principle of the ice crystal beverage cabinet of this embodiment are basically the same as those of Embodiment 1, the difference lies in the different gear settings, and the gear settings are shown in the following table:
[0093]
[0094] As shown in the above table, the temperature is divided into 7 levels from -4.2°C, between No.1~3, each interval is 0.4°C, between No.3~7, each interval The interval is 0.5°C. Each gear corresponds to a total cooling time. Starting from 500 minutes, the lower the temperature, the longer the cooling time. The cooling time corresponding to each gear is 20 minutes higher than the cooling time corresponding to the higher temperature gear. The ice crystal beverage cabinet is suitable for three different types of beverages, each corresponding to three consecutive beverages, and has overlapping intervals.
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