

Specially designed high-temperature and high-pressure circulating axial-flow fan significantly improves the circulating efficiency of hot air, shortening heating time and enhancing the uniformity of furnace temperature.
This advanced fan system ensures rapid heat distribution throughout the furnace, promoting consistent heating and reducing overall cycle times for increased production efficiency.
Adopting the hidden patent technology of track and tray support, the deformation phenomenon of track and tray support is completely eliminated, the invalid volume in the furnace is reduced, and the hot air circulation effect in the furnace is improved.
The new adjustable diversion system is designed to ensure the optimal air circulation within the furnace, effectively maintaining the furnace's internal temperature.
This system allows for precise temperature control of both furnace gas and charge temperature, with an impressive accuracy of ±3°C, which is critical for achieving uniform material homogenization.
The specially designed plate heat exchangers are engineered for maximum heat recovery, resulting in significant energy savings.
With energy consumption as low as 25Nm³/t-AL, the furnace is highly efficient, helping to reduce operating costs while maintaining high levels of performance.
The furnace achieves an impressive temperature control accuracy of ±3°C for both the furnace gas and charge temperature, ensuring uniform material homogenization.
It utilizes a specially designed high-temperature and high-pressure circulating axial-flow fan. This system speeds up hot air circulation, shortens heating times, and distributes heat rapidly and evenly throughout the furnace.
By using hidden patent-pending technology, it completely eliminates support deformation, minimizes invalid volume inside the furnace, and significantly enhances the hot air circulation effect.
The furnace is highly energy-efficient, featuring specially designed plate heat exchangers for maximum heat recovery, which reduces energy consumption to as low as 25Nm³/t-AL.
Yes. The combination of low energy consumption and an optimized airflow design helps lower the overall carbon footprint, making it an environmentally friendly option for processing.