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Tungsten-Rhenium Thermocouple Wire
Tungsten-Rhenium thermocouple wires are produced through vacuum melting and precision wire drawing, followed by cleaning and surface treatments to ensure consistency and reliability. They are commonly used in paired form and insulated with ceramic or alumina tubes for high-temperature thermocouple assemblies.
Titanium-Nickel Shape Memory Alloy Wire
NiTi SMA wire is manufactured through precise melting, drawing, annealing, and training processes to tailor its mechanical properties and transformation behavior. Wires are available in various diameters (typically 0.05–1.0 mm), surface finishes (oxidized, polished, or etched), and transformation temperature ranges to meet specific application needs.
The production of tantalum anode foil involves powder classification, cold pressing, high-temperature vacuum sintering, and precise anodic oxidation to form the dielectric layer. Advanced techniques ensure uniform porosity, optimal formation factor, and consistent electrical performance across batches.
Molybdenum-Titanium-Zirconium Alloy High-Temperature Sintering Boat
Mo-Ti-Zr alloy sintering boats are produced through powder metallurgy, followed by precise forming, welding, and machining to meet tight dimensional tolerances. Their enhanced performance under extreme conditions makes them essential components in advanced materials manufacturing and thermal processing industries.
Niobium-Zirconium Alloy Superconducting Wire
Nb-Zr alloy wires are often produced as composite superconductors with a copper stabilizer and superconducting core, using techniques such as hot extrusion, wire drawing, and reactive heat treatment. These materials are vital for next-generation superconducting systems that demand both high performance and long-term operational reliability.
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