Water circulation system of energy-saving rapid ice maker
An ice maker and water circulation technology, applied in the field of water circulation system, can solve the problems of slow ice making speed and high energy consumption of ice making machines, and achieve the effect of increasing the ice making speed
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Embodiment 1
[0023]SeeFigure 1 to Figure 3, The figure shows a water circulation system of an energy-saving fast ice maker provided in the first embodiment of the present invention, including:
[0024]Ice making water box 1, evaporator 4 cools the water in ice making water box 1;
[0025]The first water storage device 2, the water in the ice making water box 1 is delivered to the first water storage device 2 through the first water delivery pipe 5, and the first water storage device 2 is connected to the ice making water box 1 through the return water pipe 21;
[0026]The second water storage device 3, the first water storage device 2 is connected to the second water storage device 3 through the overflow pipe 22, the second water storage device 3 is connected to the water tank through the water inlet pipe 31, and the second water storage device 3 is connected through the second water pipe The path 32 communicates with the ice water box 1.
[0027]The invention provides a water circulation system for an ener...
Embodiment 2
[0030]SeeFigure 1 to Figure 3, The figure shows a water circulation system for an energy-saving fast ice maker provided in the second embodiment of the present invention. On the basis of the foregoing embodiment, this embodiment further makes the following technical solutions as an improvement: The bottom of the box 1 is provided with a thermal insulation layer 11, the thermal insulation layer 11 is correspondingly provided with a thermal insulation cover 12, the thermal insulation layer 11 encloses the thermal insulation cover 12 to form a closed thermal insulation space, the ice water box 1 is set in the closed space; the thermal insulation layer 11 and the thermal insulation cover 12 is a polyurethane foam material.
[0031]A closed heat preservation space formed by the combination of the heat preservation layer and the heat preservation cover protects the cold energy produced by ice making from external transmission, reduces the energy consumption of the ice maker and increases the...
Embodiment 3
[0033]SeeFigure 1 to Figure 3, The figure shows the water circulation system of an energy-saving fast ice maker provided in the third embodiment of the present invention. On the basis of the above-mentioned embodiment, this embodiment further makes the following as an improved technical solution: The water device 2 is arranged in a confined space; the first water storage device 2 is located above the evaporator 4; the second water delivery pipeline 32 passes through the heat preservation cover 12 and the first water storage device 2.
[0034]The first water storage device is arranged in a closed heat preservation space formed by the combination of the heat preservation layer and the heat preservation cover, and is located above the evaporator. The cold energy generated by the ice making is efficiently used to ensure the cooling effect of the water in the first water storage device and improve The speed of the next ice making. A serpentine partition 23 is arranged in the first water sto...
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