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Thermal Analysis Series
Joule Heat Rapid-Firing Furnace
High-Temperature Water-Oxygen Corrosion Testing Series
Box-Type Electric Furnace Series
Tubular Electric Furnace Series
Vacuum Brazing Furnace
Degreasing furnace
Automatic Feeding Rotary Sintering Furnace
Industrial Furnace Series
Non-standard customization
Paper Award – Contact Angle
Paper Award – Deformation Instrument
Paper Award – PECVD
Paper Award – Water-Oxygen Corrosion
What should be considered when purchasing a box-type muffle furnace?
When purchasing a box-type muffle furnace, the following aspects should be considered: Performance Parameters - Temperature Range: Select a muffle furnace that can meet the maximum temperature requirement based on the application. For example, material sintering may require temperatures above 1000°C, whereas typical heat-treatment experiments can be conducted at 500–800°C. - Temperature Control Accuracy: For precise experiments or production processes, choose a model with high temperature-control accuracy, such as ±1°C or better. - Chamber Size: Determine the chamber size according to the actual size and quantity of samples to be processed, taking into account the space available for sample placement and the arrangement of heating elements to ensure uniform heating.
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Precautions for Using the 1800 Tube Furnace, 220V
Read the product manual before use. The user’s power distribution system must be compatible with the electric furnace’s operating requirements. The furnace requires a single-phase 220 V power supply; copper conductors shall be used in the workplace, with a cross-sectional area of no less than 6 mm², and the circuit breaker on the distribution panel shall have a rating of no less than 60 A. The furnace enclosure must be provided with reliable protective grounding or protective earthing.
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Precautions for Using a 1600 Tube Furnace: Three-Phase 380V
Read the product manual before use. The user’s power distribution system must be compatible with the electric furnace’s operating requirements. The furnace requires a three-phase 380 V power supply; copper conductors shall be used in the workplace, with a cross-sectional area of no less than 6 mm², and the circuit breaker on the distribution panel shall have a rating of no less than 60 A. The furnace enclosure must be provided with reliable protective grounding or protective earthing.
Precautions for Operating a 1600 Tube Furnace at 380V
Read the product manual before use. The user’s power distribution system must be compatible with the electric furnace’s operating requirements. The furnace requires a single-phase 380 V power supply; copper conductors shall be used in the workplace, with a cross-sectional area of no less than 10 mm², and the circuit breaker on the distribution panel shall have a rating of no less than 60 A. The furnace enclosure must be provided with reliable protective grounding or protective earthing.
Precautions for Using a 1600 Tube-Type Electric Furnace, 220V
Precautions for Using a 1400 Tube-Type Electric Furnace at 380V
Precautions for Using the 1400 Tube-Type Electric Furnace, 220V
Precautions for Using a 1200 Tube-Type Electric Furnace
Read the product manual before use; The user’s power distribution equipment shall be compatible with the electric furnace’s operating requirements. Verify that the gas pipeline assembly is installed correctly. (See the user manual.)
Precautions for Operating a 1200 Tube-Type Electric Furnace: Three-Phase 380V
Read the product manual before use. The user’s power distribution system must be compatible with the operating requirements of the electric furnace. The furnace requires a three-phase 380 V power supply; copper conductors shall be used for the distribution wiring, with a cross-sectional area of no less than 2.5 mm², and the circuit breaker on the distribution panel shall have a rating of no less than 32 A. The furnace enclosure must be equipped with reliable protective earthing or protective bonding.
Precautions for Operating a 1200 Tube-Type Electric Furnace, Single-Phase 380V
Read the product manual before use. The user’s power distribution system must be compatible with the electric furnace’s operating requirements. The furnace requires a single-phase 380 V power supply; copper conductors shall be used for the distribution wiring, with a cross-sectional area of no less than 4 mm², and the circuit breaker on the distribution panel shall have a rating of no less than 32 A. The furnace enclosure must be equipped with reliable protective earthing or protective bonding.