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ASTM C1517

Standard Test Method for Determination of Metallic Impurities in Uranium Metal or Compounds by DC-Arc Emission Spectroscopy

Standard by ASTM, 2024-11-20

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ASTM C1517

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ASTM C1517 is the ASTM standard for determining metallic impurities in uranium metal or compounds by DC-Arc emission spectroscopy. It provides a structured laboratory approach for measuring trace metallic content in uranium-related materials, helping support material evaluation and quality control. Because impurity levels can influence product performance and acceptance decisions, this test method is useful for organizations that need consistent, defensible analytical results for uranium metal or compound samples.

ASTM C1517 standard overview

The standard addresses a test method for identifying metallic impurities using DC-Arc emission spectroscopy, a technique suited to chemical analysis of uranium metal or uranium compounds. As an ASTM standard, ASTM C1517 helps define a repeatable framework for preparing and testing samples so results can be compared more reliably across laboratories or production lots. Its focus is analytical rather than design-based, making it a technical document used to support measurement, verification, and compliance workflows.

Where is ASTM C1517 used?

This standard is commonly used in laboratory and quality control settings where uranium metal or uranium compounds must be checked for metallic impurity content. It may support incoming material inspection, production monitoring, or final evaluation of analytical results. ASTM C1517 is relevant anywhere a controlled spectroscopy-based method is needed to assess trace metallic contamination in uranium-related materials, especially when documented test results are part of procurement or acceptance requirements.

Practical importance of ASTM C1517

In practice, ASTM C1517 helps reduce uncertainty when evaluating metallic impurities in uranium metal or compounds. A standardized test method supports consistency between measurements, which can be important for compliance, product acceptance, and internal quality control. It also gives buyers, suppliers, and laboratories a common technical reference for reporting results, helping limit disputes and improving confidence in the testing process. For organizations working with uranium materials, that consistency can be especially valuable.

  • DC-arc emission spectroscopy method
  • Metallic impurity determination
  • Uranium metal and compounds
  • Laboratory quality control support
  • Consistent analytical reporting
SKU: dbb82feae3cb

  • Publication Date: 2024-11-20
  • Publisher: ASTM

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