Temperature controlled vacuum induction melting furnace 35KW

SKU: MND-134183

This vacuum induction melting furnace adopts vertical quartz cavity, and both ends are equipped with water-cooled flanges, which can ensure that the entire cavity will not be damaged by thermal shock during operation.

 Product Description

The design of this vacuum induction melting furnace centers around a vertical quartz cavity, fortified with water-cooled flanges at both ends to withstand thermal shock during operation. The strategic placement of a vacuum interface and a protective gas interface on the furnace body flange facilitates vacuum smelting and atmosphere protection smelting, ensuring a non-oxidized environment for the sample. Utilizing a high-frequency power supply for rapid and energy-efficient heating, this furnace is primarily employed for melting and processing diverse metal materials, including stainless steel, nickel base alloy, copper, alloy steel, nickel cobalt alloy, and rare earth neodymium iron oxide, all within a vacuum or protective atmosphere.

 

Equipped with specific technical parameters, the vacuum induction furnace operates on AC380/110V with a frequency of 50Hz, achieving a maximum power output of 35kw and an impressive maximum temperature of 2000℃. Its crucible, with a 2kg capacity, efficiently holds steel liquid during the melting process. To establish the requisite vacuum conditions, the furnace incorporates a bipolar rotary vane vacuum pump, capable of achieving a limit vacuum degree of ≤10Pa. For protective atmospheres, the furnace seamlessly accommodates nitrogen or argon at pressures up to 0.05Mpa.

 

In terms of physical specifications, the furnace measures 660mm in length, 1060mm in width, and 1060mm in height (L×W×H), weighing approximately 200kg. This design ensures both stability and ease of placement within laboratory or industrial settings. Collectively, these technical parameters define the furnace's versatile capabilities, positioning it as an indispensable tool for an array of high-temperature and vacuum-based processes.

 

 

 

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