Bogie Hearth Ceramic Furnace up to 1200C
- 2026-03-13 03:10
- Brother Furnace
The Bogie Hearth Ceramic Furnace is an advanced industrial heating solution engineered for a wide range of heat treatment processes, including quenching, annealing, aging, and general thermal processing of metal components.
Available in two temperature configurations — medium temperature (up to 950°C) and high temperature (up to 1200°C) — these furnaces are purpose-built to handle some of the most demanding materials in industry, such as high chromium and high manganese steel castings, gray and ductile iron parts, rolls, steel balls, crusher hammers, and wear-resistant linings.

Advanced Ceramic Lining for Superior Performance
At the heart of the furnace is an all-fiber ceramic lining that delivers exceptional thermal efficiency. This design minimizes heat loss, reduces energy consumption, and extends the overall service life of the furnace — making it a cost-effective long-term investment for heavy industrial operations.
Uniform Heating and Structural Reliability
The furnace features a four-side heating arrangement that ensures outstanding temperature uniformity throughout the chamber, critical for consistent and repeatable heat treatment results. Japanese ceramic nails are used to secure the heating elements, providing a stable and durable installation that stands up to continuous high-temperature cycles.
The trolley (bogie) is built with a horizontal silicon carbide plate or high-temperature cast steel plate, offering a robust and reliable load-bearing surface capable of withstanding intense thermal stress.
Intelligent Temperature Control
A programmable intelligent temperature controller allows operators to create, edit, and store multi-segment heating programs, giving precise control over complex heat treatment cycles and improving process repeatability across production runs.
In summary, the Bogie Hearth Ceramic Furnace combines advanced materials, intelligent controls, and thoughtful engineering to deliver reliable, energy-efficient performance for modern heat treatment applications.
