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>BSI Standards >77 METALLURGY>77.080 Ferrous metals>77.080.20 Steels>BS 6200-3.16.2:1986 Sampling and analysis of iron, steel and other ferrous metals. Methods of analysis. Determination of lead Steel: spectrophotometric method
immediate downloadReleased: 1986-09-30
BS 6200-3.16.2:1986 Sampling and analysis of iron, steel and other ferrous metals. Methods of analysis. Determination of lead Steel: spectrophotometric method

BS 6200-3.16.2:1986

Sampling and analysis of iron, steel and other ferrous metals. Methods of analysis. Determination of lead Steel: spectrophotometric method

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Standard number:BS 6200-3.16.2:1986
Pages:10
Released:1986-09-30
ISBN:0 580 15283 9
Status:Standard
DESCRIPTION

BS 6200-3.16.2:1986


This standard BS 6200-3.16.2:1986 Sampling and analysis of iron, steel and other ferrous metals. Methods of analysis. Determination of lead is classified in these ICS categories:
  • 77.080.20 Steels

This Subsection of BS 6200 describes a spectrophotometric method for the determination of lead in steel.

The method is applicable to lead contents from 0.05 % m/m to 0.5 % m/m.

NOTE The titles of the publications referred to in this Subsection of BS 6200 are listed on the inside back cover.


BS 6200-3.16.2:1986 - Spectrophotometric Method for Lead Determination in Steel

BS 6200-3.16.2:1986 - Spectrophotometric Method for Lead Determination in Steel

Discover the precision and reliability of the BS 6200-3.16.2:1986 standard, a comprehensive guide dedicated to the sampling and analysis of iron, steel, and other ferrous metals. This standard focuses on the spectrophotometric method for determining lead content in steel, ensuring accurate and consistent results for your metallurgical analyses.

Overview

Released on September 30, 1986, this standard has been a cornerstone in the field of metallurgical analysis. With its detailed methodology, it provides a robust framework for laboratories and industries involved in the production and quality control of ferrous metals. The document spans 10 pages of in-depth procedures and guidelines, making it an essential resource for professionals seeking to maintain high standards of quality and safety in their operations.

Key Features

  • Standard Number: BS 6200-3.16.2:1986
  • ISBN: 0 580 15283 9
  • Status: Standard
  • Pages: 10
  • Release Date: 1986-09-30

Why Choose BS 6200-3.16.2:1986?

The BS 6200-3.16.2:1986 standard is designed to meet the rigorous demands of modern metallurgical analysis. Here are some reasons why this standard is indispensable:

  • Accuracy: The spectrophotometric method outlined in this standard ensures precise measurement of lead content, crucial for maintaining the integrity and safety of steel products.
  • Reliability: Developed by experts in the field, this standard provides a reliable framework that has stood the test of time, offering consistent results across various applications.
  • Comprehensive Guidance: With detailed instructions and guidelines, this standard is suitable for both seasoned professionals and those new to the field of metallurgical analysis.
  • Industry Compliance: Adhering to this standard helps ensure compliance with industry regulations and quality assurance protocols, safeguarding your operations against potential liabilities.

Applications

This standard is applicable across a wide range of industries where the analysis of ferrous metals is critical. Whether you are involved in manufacturing, quality control, or research and development, the BS 6200-3.16.2:1986 standard provides the necessary tools to achieve accurate and reliable results.

Conclusion

In the ever-evolving field of metallurgy, maintaining high standards of quality and safety is paramount. The BS 6200-3.16.2:1986 standard offers a tried-and-true method for the determination of lead in steel, ensuring that your analyses are both accurate and reliable. By incorporating this standard into your processes, you can enhance the quality of your products and maintain compliance with industry regulations.

Invest in the BS 6200-3.16.2:1986 standard today and take a significant step towards excellence in metallurgical analysis.