Product Introduction
This series of equipment is suitable for research institutions, universities, and industrial and mining enterprises for experiments and production.
Primarily used for high-temperature precision annealing, crystallization, ceramic glaze preparation, mold annealing, powder metallurgy, plastic powder experimentation, sintering of nanomaterials, quenching of metal parts, and heat treatment with high-temperature process requirements.
Product Features
Shell made of superior_Double-layered design of cold-rolled steel plate, with the shell color paint baked at high temperature for durability and long-lasting use.
Equipped with a forced-air cooling system, this furnace boasts advantages such as balanced temperature field, low surface temperature, and rapid temperature rise and fall rates.
The vacuum system features specially designed operation, high vacuum levels, and minimal vacuum leakage (ultimate vacuum: 10-5 Pa).
The sealing system utilizes stainless steel flanges and furnace tubes with high-temperature-resistant O-ring seals. The gas passes through a flowmeter and is controlled by a needle valve. The valve control is equipped with an inlet valve, an exhaust valve, and a vacuum pump valve, allowing for the filling of inert gases such as nitrogen and argon.
The furnace chamber is constructed using imported composite alumina fiber material, crafted through CNC technology, offering a 30% energy saving compared to traditional electric furnaces.
The control system utilizes microcomputer artificial intelligence adjustment technology, featuring 50-stage program programming, and is capable of setting various heating, constant temperature, and cooling programs with high temperature control accuracy.
Crystal modular silicon-controlled rectifier control, phase shift triggering; utilize_Quality Heating Element
Control Panel: Equipped with digital control featuring (over-temperature, over-pressure, over-flow, disconnection, power failure, etc. protection functions)


































