The main function of the YUDA Counterflow Pellet Cooler is to cool high-temperature and high-humidity pellets from a pelletizing machine to ambient temperature and reduce moisture for safe storage.
The counterflow cooling principle allows for the pellet feed to be cooled fully and evenly, with cold air moving in the opposite direction to the pellets, ensuring efficient heat exchange.
The YUDA Counterflow Pellet Cooler is widely used for cooling various kinds of pellet feed, making it versatile for different applications in the industry.
After being cooled, the pellet temperature is typically about 3-5 degrees higher than the room temperature, ensuring they reach a safe storage condition.
The cooler is designed for simple maintenance, allowing for convenient installation and arrangement, making upkeep straightforward for users.
The stainless steel construction provides durability, resistance to corrosion, and ensures a hygienic environment for the pellets.
The unique sliding-valve discharging unit ensures stable operation and smooth discharging of pellets, promoting uniform distribution.
The power range for the various models of the YUDA Counterflow Pellet Cooler ranges from 1.5 KW to 12.5 KW, accommodating different capacities.
The capacity of the cooler models ranges from 1.5 T/H to 12.5 T/H, allowing it to cater to different production scales.
Yes, the counterflow cooler is designed with low air consumption and minimal temperature differences between pellets and cold air, enhancing energy efficiency.
Yes, the YUDA Counterflow Pellet Cooler features easy adjustment capabilities, making it suitable for cooling different types of pellets.
The eight angular structures of the cooler ensure even cooling without dead corners, promoting uniform temperature regulation across all pellets.
The pendulum counterflow cooler utilizes a pneumatic system to control the layout, ensuring precise operation during the cooling process.
The weight of the models varies, with options ranging from 980 KG to 3600 KG, depending on the specific model chosen.
Key benefits include efficient cooling, low maintenance, uniform pellet distribution, and suitability for various pellet types, ensuring high automation and operational reliability.
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