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TM10787 Titanium Alloy Strip Ti-15Mo Grade 21 UNS R58210

Catalogue Number TM10787
Material Ti-15Mo
Grade Grade 21 UNS R58210
Standard ASTM B265
Form Strip

Titanium Alloy Strip Ti-15Mo Grade 21 UNS R58210 is produced through controlled thermal processing to achieve a uniform microstructure and optimal mechanical performance. Stanford Advanced Materials (SAM) employs methods such as vacuum arc remelting and annealing, accompanied by X-ray diffraction and SEM analysis, to monitor alloy composition and phase distribution. This ensures that the strip meets stringent ASTM B265 standards for applications in aerospace, biomedical, and industrial sectors.

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FAQ

How does the Ti-15Mo composition improve performance in high-temperature applications?

The addition of 15% molybdenum enhances phase stability and creep resistance at elevated temperatures. This leads to improved structural integrity in components operating under high thermal stresses. The controlled processing results in a fine-grained structure, offering consistency for demanding aerospace and industrial applications.

What impact does the annealing process have on the titanium strip’s mechanical properties?

The annealing process relieves internal stresses and refines grain structure, which contributes to improved ductility and fracture toughness. This makes the titanium strip suitable for forming operations and ensures predictable performance in critical load-bearing applications.

Which quality control measures are implemented during production?

SAM implements a sequence of inspections including X-ray diffraction to verify phase uniformity and scanning electron microscopy to assess microstructural features. These tangible quality control processes help maintain tight chemical composition tolerances and mechanical property consistency throughout production.

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