TZM Molybdenum is an alloy of 0.50% Titanium, 0.08% Zirconium and 0.02% Carbon with the balance Molybdenum. TZM Molybdenum is manufactured by either P/M or Arc Cast technologies and is of great utility due to its high strength/high temperature applications, especially above 2000'F.
TZM Molybdenum has a higher recrystallization temperature, higher strength, hardness and good ductility at room and elevated temperatures than unalloyed Molybdenum. TZM offers twice the strength of pure moly at temperatures over 1300'C. The recrystallization temperature of TZM is approximately 250'C higher than moly and it offers better weldability. In addition, TZM exhibits good thermal conductivity, low vapor pressure, and good corrosion resistance and is machinable.
TZM costs approximately 25% more than pure molybdenum and costs only about 5-10% more to machine. For high strength applications such as rocket nozzles, furnace structural components, and forging dies, it can be well worth the cost differential.
TZM is available in sheet and rod form in basically the same size range as moly with the exception of thin foil. SMC is experienced in the fabrication of TZM products.
Description: Molybdenum Lanthanum(Mo-La is a useful and important molybdenum alloy composed by adding lanthanum oxide in molybdenum. Molybdenum Lanthanum(Mo-La) has the properties of higher temperatu
Ion implantation is an important process in the manufacture of semiconductors. The most important part of an implanter system is the beam path. Here, the ions are generated, concentrated, accelerated
Composition Pure molybdenum Mo >99.95% Molybdenum alloy Mo-Nb (90at% Mo:10at% Nb) Mo-Cr (Mo 97 wt% Mo: 3 wt% Cr) Molybdenum compounds Molybdenum Telluride (MoTe2), 99.999% Molybdenum Selenide (MoS
Composition Pure molybdenum Mo >99.95% Molybdenum alloy Mo-Nb (90at% Mo:10at% Nb) Mo-Cr (Mo 97 wt% Mo: 3 wt% Cr) Molybdenum compounds Molybdenum Telluride (MoTe2), 99.999% Molybdenum Selenide (MoS
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