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(Discontinued) NC1984 Incoloy 825 identifies Alloy 825 (UNS N08825). Researchers and industry utilise this material. The product meets established technical standards. Rod and bar forms are supplied. Our team supplies technical documentation.

Catalogue Number NC1984
Standard ASTM B425
Form Bar/Rod
Grade UNS N08825
M.O.Q 200 kg

Alloy 825 Bar/Rod UNS N08825 is a nickel-based alloy processed into a bar/rod form for specialised industrial applications. Stanford Advanced Materials (SAM) employs advanced melt purification and dimensional inspection techniques, including systematic metallographic verification. These measures control alloy composition and mechanical tolerances. SAM uses calibrated testing equipment to document the alloy's chemical uniformity and structure, ensuring the product meets stringent industrial standards.
Other shapes of Incoloy 825: Incoloy 825 Plate/SheetIncoloy 825 FlangeIncoloy 825 WireIncoloy 825 Tube/Pipe
Related products: Inconel 601Inconel 625Inconel 718Inconel 600

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FAQ

What are the key considerations when integrating Alloy 825 Bar/Rod UNS N08825 into industrial equipment?

It is important to evaluate the alloy’s chemical composition and dimensional tolerances. The material’s nickel-based structure supports corrosion resistance, and its engineering verifies consistency. Consider mechanical processing and joining methods to achieve optimal performance in high-stress applications. Contact us for detailed technical guidance.

How does the composition of Alloy 825 Bar/Rod UNS N08825 influence its performance under elevated temperatures?

The composition of the alloy, which includes a balance of nickel, chromium, molybdenum, and copper, ensures stability at elevated temperatures. This balance minimises phase changes and maintains strength. Its controlled microstructure contributes to sustained performance under thermal cycling, making it suitable for high-temperature industrial components.

What quality control measures are implemented during the production of Alloy 825 Bar/Rod UNS N08825?

The production process involves systematic chemical analysis and metallographic inspection. Dimensional verification is conducted using calibrated equipment, and samples are routinely tested to ensure compliance with ASTM B425. These measures ensure the alloy maintains controlled composition and meets prescribed industrial tolerances.

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