Brief: From concept to demonstration, this video highlights the evolution and practical outcomes of the 1000KG Gas Fired Tilting Crucible Melting Furnace. You will see a detailed walkthrough of its operation, showcasing how it efficiently melts aluminum scrap, its tilting mechanism for safe metal pouring, and the key technical parameters that ensure high performance in industrial settings.
Related Product Features:
Designed for melting 1000kg of aluminum scrap per cycle with a melting rate of approximately 500kg per hour under continuous operation.
Utilizes a graphite crucible for containing and heating metal charges via conduction from gas-fired heating.
Operates at a rated working temperature of 850°C, suitable for ferrous metals and low-melting-point alloys.
Fueled by natural gas with a consumption of about 80 cubic meters per ton of aluminum melted.
Features a hydraulic tilting system for safe and controlled pouring of molten metal.
Includes an automatic temperature controller and thermal coupling for precise heat management.
Equipped with a furnace body that maintains an outer wall temperature less than room temperature plus 50 degrees Celsius.
Supplied complete with control box, natural gas burner, and essential accessories for immediate operation.
Faqs:
What types of metals can this crucible melting furnace process?
This furnace is applicable for melting ferrous metals and low-melting-point alloys, with aluminum scrap being a primary material, operating at a rated temperature of 850°C.
What is the fuel consumption rate for melting aluminum with this furnace?
The furnace consumes approximately 80 cubic meters of natural gas per ton of aluminum melted, based on fuel with a heat value of 8400 Kcal per cubic meter under continuous working conditions.
What safety features are included in the furnace design?
Safety features include a hydraulic tilting system for controlled pouring, a furnace outer wall that stays below ambient temperature plus 50°C, and an automatic temperature controller to maintain safe operating conditions.