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FE10670 Iron Boron Alloy Powder

Catalogue Number FE10670
Composition Fe, B
Particle Size -60 to 80 mesh, or customized
Form Powder

Iron Boron Alloy Powder is a technical-grade material produced by Stanford Advanced Materials (SAM) using a controlled high-temperature alloying process. The powder blends iron and boron in a specific ratio to achieve consistent material properties. SAM employs atomic absorption spectroscopy and X-ray diffraction for quality verification, ensuring the powder meets strict compositional tolerances. This rigorous quality control supports accuracy in research and industrial evaluations.

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FAQ

How does the particle size distribution affect the sintering process?

A narrow particle size distribution improves packing density and sintering efficiency. Uniform particle sizes reduce local temperature variations during processing, which minimises defects and enhances the final microstructure. This leads to components with improved mechanical integrity in high-temperature applications.

What storage conditions are recommended to maintain powder stability?

Iron Boron Alloy Powder should be stored in a cool, dry, and low-humidity environment to prevent oxidation and moisture-induced agglomeration. It is advisable to use sealed, anti-static packaging and maintain stable ambient temperatures to preserve the powder's physical properties over time.

How is the consistency of the powder’s chemical composition verified during production?

Consistency is confirmed through routine chemical analysis techniques, including atomic absorption spectroscopy and energy-dispersive X-ray analysis. These methods provide real-time monitoring of alloy composition, ensuring that each production batch adheres to rigorous compositional standards.

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