How to choose the right non-ferrous metal?
How to choose the right non-ferrous metal?Depending on the ambient temperature, different metal materials are selected.
At temperatures ranging from 1000 to 1300 degrees Celsius, the utilization of pure molybdenum emerges as a reliable choice. With a remarkable melting point of 2623 degrees Celsius, pure molybdenum exhibits excellent thermal and mechanical properties, making it well-suited for applications within this temperature range. Its resilience at high temperatures makes it an ideal material for furnace components, aerospace applications, and other high-temperature systems.
As temperatures escalate to the range of 1300 to 1800 degrees Celsius, the use of molybdenum-lanthanum alloy is recommended. This alloy offers enhanced high-temperature strength and creep resistance compared to pure molybdenum, making it a valuable choice for applications requiring sustained performance in this temperature range. Its ability to maintain mechanical integrity at increased temperatures makes it particularly suitable for aerospace and industrial applications.
In the temperature range of 1800 to 2000 degrees Celsius, the molybdenum-titanium-zirconium alloy becomes essential. This alloy is specifically designed to withstand the higher thermal demands within this temperature range, exhibiting robust mechanical properties and oxidation resistance. Its suitability for high-temperature environments makes it an ideal choice for applications in the chemical and petrochemical industries, as well as in advanced material processing.
For temperatures exceeding 2000 degrees Celsius, tungsten emerges as the refractory metal of choice. With one of the highest melting points of all metals at 3422 degrees Celsius, tungsten demonstrates exceptional strength and resilience in ultra-high-temperature environments. Its widespread applications include aerospace components, high-temperature furnace elements, and electrical contacts in extreme high-voltage systems.






