High melting point, high thermal conductivity, and low coefficient of thermal expansion.
Molybdenum is a versatile material used for various applications. For instance, we utilize it to manufacture ribbons and wires for the lighting industry, semiconductor base plates for power electronics, glass melting electrodes, hot zones for high-temperature furnaces, and sputtering targets for coating solar cells and flat screens.
high melting point, low coefficient of thermal expansion, and excellent thermal conductivity.
We utilize this material to fabricate components for high-temperature furnaces, lamps, and medical and thin-film technology applications.
Tantalum possesses comparable chemical resistance to noble metals and can be easily worked at temperatures well below room temperature. Due to its excellent corrosion resistance, tantalum is a valuable material for a wide range of chemical applications.
Tantalum is highly resistant to chemical corrosion and is comparable to noble metals in this regard. Moreover, it is easy to work with even at low temperatures. These properties make it a valuable material for a wide range of chemical applications. We use tantalum to produce heat exchangers for the equipment construction sector, furnace charge carriers, medical implants, and capacitor components for the electronics industry, among other applications.
Like tantalum, niobium is highly resistant to many chemicals and can be easily formed even at low temperatures. However, niobium is unique in that this high level of resistance is achieved at a relatively low weight.
Niobium, like tantalum, has excellent resistance to many chemicals and can be easily formed even at low temperatures. However, it is unique in that this high level of resistance is achieved at a relatively low weight. We use niobium to manufacture coin inserts of various colors, corrosion-resistant evaporation boats for use in coating technology, and dimensionally stable crucibles for diamond growth. Its high biocompatibility also makes it a suitable material for implants. Moreover, thanks to its high transition temperature, niobium is an ideal material for superconducting cables and magnets.
 
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