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TM10760 Titanium Alloy Strip Ti-3Al-2.5V Grade 9 UNS R56320

Catalogue Number TM10760
Material Ti-3Al-2.5V
Grade Grade 9, UNS R56320
Standard ASTM B265
Form Strip

Titanium Alloy Strip Ti-3Al-2.5V Grade 9 UNS R56320 is produced with a well-controlled composition of 3% aluminium and 2.5% vanadium. Stanford Advanced Materials (SAM) utilises in-process testing, including X-ray fluorescence and metallography, to verify alloy composition and microstructural uniformity. These practices support dimensional and compositional conformity, ensuring the material meets ASTM B265 standards for high-performance engineering applications.

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FAQ

What analytical methods confirm the alloy composition in these titanium strips?

SAM employs techniques such as X-ray fluorescence and spark emission spectrometry to analyse the alloy composition. These methods verify that the Ti-3Al-2.5V formulation conforms to ASTM B265 standards, ensuring the material's consistency and mechanical performance.

How does the manufacturing process affect the mechanical performance of the titanium strip?

Controlled rolling and thermal treatments during manufacturing contribute to a uniform microstructure. This process minimises variability, which is critical for maintaining predictable mechanical properties in structural applications.

What impact does the Ti-3Al-2.5V composition have on corrosion resistance and fatigue behaviour?

The alloy composition enhances resistance to corrosion and fatigue by promoting a stable microstructure. This characteristic is advantageous in environments with cyclic stresses, ensuring the material performs predictably under operational loads.

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