How to improve the use effect of flake ice machine? What are the categories
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The classification of flake ice machine:
Classification from the daily output of products:
1. Large flake ice machine (more than 20 tons)
2. Medium-sized flake ice machine (3 tons to 20 tons)
3. Small flake ice machine (0.5 tons to 3 tons)
Classified from the nature of water sources:
1. Fresh water flake ice machine: fresh water chip name and instant use of fresh water as water source to produce flake ice
2. Seawater flake ice machine: The flake ice machine that uses seawater as the water source is mostly used for navigation purposes. The marine flake ice machine is designed for marine ice-making operations. It adopts a semi-closed piston compressor with deepened oil tank and a marine seawater condenser, which can not be affected by the sway of the ship and is not corroded by seawater.
From whether it can be moved or not
1. Containerized flake ice machine:
2. Non-container flake ice:
How to improve the use effect of flake ice machine?
It can enter the gap between objects to be cooled, reduce heat exchange, maintain ice temperature, and have a good moisturizing effect. The flake ice machine has excellent cooling effect, and has the characteristics of large cooling capacity and fast speed. Therefore, it is mainly used in various large-scale refrigeration equipment, food freezing, concrete cooling, etc.
The principle of ice water in the flake ice machine is to enter the water collection tray from the water inlet of the evaporator of the flake ice machine, and sprinkle water evenly on the inner wall of the evaporator by watering to form a water film. The water film communicates with the refrigerant in the evaporator flow path. Heating, the temperature drops rapidly. A thin ice layer is formed on the inner wall of the evaporator, and is crushed into ice cubes under the extrusion of the ice blade, and falls into the ice storage device from the ice drop port. Part of the unfrozen water passes through the water collecting pan, and returns to the cold water tank from the return port through the cold water circulation pump.
The ice-making cycle is made up by the water valve, the water automatically enters the water collector, and then the water is pumped to the splitter through the flow control valve, and the water is evenly distributed at the splitter. Spray on the exterior of the ice maker, the water curtain passes through the wall of the ice maker, the water is cooled to the freezing point, the non-evaporating and frozen water will flow into the storage tank through the porous water tank, and the circulation will resume.
When the ice reaches the desired thickness (under normal conditions, the thickness of the ice is 1.5-2.2MM), the hot air discharged from the compressor will be directed into the ice from the head in the manufacturer's clamp. Replace the cryogenic liquid refrigerant on the walls. This forms a water film between the ice and the walls of the transpiration tubes. This layer of water acts as a slippery agent as the ice falls freely by gravity into the grooves below. The water that occurs during the ice mining cycle will return to the water storage tank through the porous water tank, which also avoids the wet ice being discharged by the machine.







