Vacuum atmosphere furnace

Vacuum atmosphere furnace


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Vacuum atmosphere furnace


A vacuum atmosphere furnace, also known as an oxygen free annealing furnace or a vacuum atmosphere sintering furnace, is a furnace where objects are sintered by introducing a certain amount of gas (such as nitrogen, argon, and other gases) into the furnace. It uses resistance wires, silicon carbon rods, and silicon molybdenum rods as heating elements, adopts a double-layer shell structure and a 31 segment program temperature control system, phase shift triggering, thyristor control, and uses intelligent temperature control instruments for new digital display. The temperature is set digitally and the output is intelligently controlled, which can reduce visual reading and human operation errors and improve work efficiency. Equipped with over temperature protection, trip protection, and overcurrent protection devices, it improves safety and reliability. The furnace is made of high-temperature resistant alumina ceramic fiber material and vacuum formed fiber lightweight board material. The dual furnace structure has uniform heating, low surface temperature, is not easily deformed, and has a fast temperature rise and fall rate. The exterior is made of galvanized and high-temperature baking paint, which is beautiful and not easy to peel off. Mainly used in laboratories of higher education institutions, research institutes, and industrial and mining enterprises for the development of ceramics, metallurgy, electronics, glass, chemical engineering, machinery, refractory materials, new materials, special materials, building materials, metals, non metals, etc.

Product Details

A vacuum atmosphere furnace, also known as an oxygen free annealing furnace or a vacuum atmosphere sintering furnace, is a furnace where objects are sintered by introducing a certain amount of gas (such as nitrogen, argon, and other gases) into the furnace. It uses resistance wires, silicon carbon rods, and silicon molybdenum rods as heating elements, adopts a double-layer shell structure and a 31 segment program temperature control system, phase shift triggering, thyristor control, and uses intelligent temperature control instruments for new digital display. The temperature is set digitally and the output is intelligently controlled, which can reduce visual reading and human operation errors and improve work efficiency. Equipped with over temperature protection, trip protection, and overcurrent protection devices, it improves safety and reliability. The furnace is made of high-temperature resistant alumina ceramic fiber material and vacuum formed fiber lightweight board material. The dual furnace structure has uniform heating, low surface temperature, is not easily deformed, and has a fast temperature rise and fall rate. The exterior is made of galvanized and high-temperature baking paint, which is beautiful and not easy to peel off. Mainly used in laboratories of higher education institutions, research institutes, and industrial and mining enterprises for the development of ceramics, metallurgy, electronics, glass, chemical engineering, machinery, refractory materials, new materials, special materials, building materials, metals, non metals, etc.

model Furnace size (mm) Maximum temperature (℃) Voltage Power (KW) vacuum degree Heating element heating rate 
RGQ1200-30 300*200*200   单相220V 3

 

Resistance wire  
RGQ1200-40 400*300*300 1200℃ 三相380V 9   Resistance wire

1-20℃/MIN

RGQ1200-50 500*400*400   三相380V 15   Resistance wire  
RGQ1400-30 300*200*200   单相220V 5   Silicon carbide
RGQ1400-40 400*300*300 1400℃ 三相380V 14 -0.1MPA Silicon carbide

1-20℃/MIN

RGQ1400-50 500*400*400   三相380V 18   Silicon carbide  

RGQ1700-30

RGQ1700-40

RGQ1700-50

300*200*200

400*300*300

500*400*400

1700℃

单相220V

三相380V

三相380V

7

16

20

 

Silicon molybdenum rod

Silicon molybdenum rod

Silicon molybdenum rod

1-15℃/MIN

 

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