Tank Body and Cover:
Constructed from high-quality stainless steel, ensuring durability and resistance to corrosion.
Mixing System:
Equipped with a motor-driven reducer and a variety of mixing options including paddle or propeller types, tailored to specific application needs.
Heating System:
Utilizes electric heating elements (such as heating wires or tubes) to elevate the temperature of the heat transfer oil, which then uniformly heats the materials within the tank.
Temperature Control:
Features a sophisticated control panel with a temperature regulator to maintain precise control over the heat transfer oil and material temperatures, facilitating automated operation.
Safety and Efficiency:
Designed with an overflow oil trough and supports grouped activation and control of heating elements to optimize energy consumption.
Features:
Versatile Heating Options: The jacket of the tank can be equipped with electric heating tubes for indirect heating, with options for different heating mediums like thermal oil or water.
Customizable Mixing Solutions: Offers flexibility in mixing mechanisms, including mechanical or magnetic stirrers, with various blade designs available.
Surface Finishes: Interior surfaces are polished to a mirror finish to prevent contamination, while exterior surfaces can be finished in matte or a combination of matte and mirror finishes.
Enhanced Heating Efficiency: The full-jacket design maximizes the heating area, ensuring rapid and uniform heat transfer.
Advanced Control Systems: Includes temperature display and PID adjustment for precise temperature management. Additional features like level indicators, flow meters, and pH control systems can be integrated. For higher automation, PLC and touchscreen controls are available, offering user-friendly interfaces and programmable memory functions.
Eco-friendly and Cost-effective: The stainless steel construction not only supports environmental sustainability but also offers safety, convenience, and cost efficiency. The tank can operate at temperatures up to 320°C, with options for higher temperatures using infrared heating technologies.