The 1600 degree open door high-temperature atmosphere furnace is an internal heating single chamber structure with high-quality silicon molybdenum rods as heating elements. The use of ceramic fiber insulation material has good insulation and energy-saving effects. Belongs to a type of atmosphere furnace.
Actual photo of 1600 degree upward opening atmosphere furnace
The 1600 degree open door high-temperature atmosphere furnace is a heat treatment process that can be applied to electronic components, new materials, and powder materials under vacuum or atmosphere conditions. It is also used for pre firing, sintering, brazing and other processes of electronic ceramic products in metallurgy, machinery, light industry, commodity inspection, higher education institutions, scientific research departments, and industrial and mining enterprises.
Model | PT-A1500-36LS |
Furnace shell | Double layer steel casing with dual cooling fan, temperature of furnace shell below 60deg.C. |
Furnace liner | Two layers of ceramic fiber insulation materials First layer: 1800deg.C ceramic fiber board Second layer: 1600deg.C ceramic fiber board |
Door | Top |
Display | LED |
Max. Temp. | 1600°C |
Working Temperature | ≤1500°C |
Heating Rate | Suggestion 0~10°C/min |
Temp. Control Accuracy | ±1°C |
Temp. Uniformity | ±5°C |
Inside Chamber Size | 300x300x400mm |
Temp. control | PID automatic control via SCR (Silicon controlled rectifier) Power control with phase angle fired, current limiting resistor 30 programmable segments for precise control Bulit-in PID auto-tuned function with overheating & broken thermocouple broken protection. |
Heating Element | MOSI2 |
Thermocouple | B Type |
Max. Power | 12 KW |
Working Voltage | 380V,3 PHASE, 50Hz 3 Live wires and 1 neutral wire |
Chamber material | Alumina Fiber |
Warranty | One year limited warranty (Consumable parts such as heating elements are not covered by the warranty) |
Actual photo of 1600 degree upward opening atmosphere furnace
Actual photo of 1600 degree upward opening atmosphere furnace
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