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Homepage>BS Standards>77 METALLURGY>77.080 Ferrous metals>77.080.01 Ferrous metals in general>BS EN ISO 9647:2022 Steel. Determination of vanadium content. Flame atomic absorption spectrometric method (FAAS)
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BS EN ISO 9647:2022 Steel. Determination of vanadium content. Flame atomic absorption spectrometric method (FAAS)

BS EN ISO 9647:2022

Steel. Determination of vanadium content. Flame atomic absorption spectrometric method (FAAS)

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Standard number:BS EN ISO 9647:2022
Pages:24
Released:2022-05-18
ISBN:978 0 539 19319 0
Status:Standard
BS EN ISO 9647:2022 - Steel. Determination of vanadium content. Flame atomic absorption spectrometric method (FAAS)

BS EN ISO 9647:2022 - Steel. Determination of vanadium content. Flame atomic absorption spectrometric method (FAAS)

Standard Number: BS EN ISO 9647:2022

Pages: 24

Released: 2022-05-18

ISBN: 978 0 539 19319 0

Status: Standard

Overview

The BS EN ISO 9647:2022 standard is an essential document for professionals in the steel industry, providing a comprehensive method for the determination of vanadium content using the Flame Atomic Absorption Spectrometric (FAAS) method. This standard ensures accuracy, reliability, and consistency in the analysis of vanadium content in steel, which is crucial for maintaining the quality and performance of steel products.

Key Features

  • Comprehensive Methodology: The standard outlines a detailed procedure for the determination of vanadium content in steel, ensuring precise and accurate results.
  • Flame Atomic Absorption Spectrometric Method (FAAS): Utilizes the FAAS method, known for its sensitivity and specificity in detecting vanadium content.
  • Industry Compliance: Adheres to international standards, making it a reliable reference for global steel manufacturers and laboratories.
  • Quality Assurance: Helps in maintaining the quality and performance of steel products by providing a standardized method for vanadium content determination.

Why Choose BS EN ISO 9647:2022?

Vanadium is a critical alloying element in steel, enhancing its strength, toughness, and wear resistance. Accurate determination of vanadium content is essential for ensuring the desired properties of steel products. The BS EN ISO 9647:2022 standard provides a reliable and validated method for this purpose, making it an indispensable tool for steel manufacturers, quality control laboratories, and research institutions.

Benefits of Using FAAS Method

The Flame Atomic Absorption Spectrometric (FAAS) method is widely recognized for its precision and accuracy in elemental analysis. Here are some of the benefits of using the FAAS method as outlined in the BS EN ISO 9647:2022 standard:

  • High Sensitivity: Capable of detecting low concentrations of vanadium, ensuring accurate analysis even in trace amounts.
  • Specificity: Provides specific detection of vanadium without interference from other elements present in the steel matrix.
  • Efficiency: Offers a quick and efficient analysis process, saving time and resources in the laboratory.
  • Reproducibility: Ensures consistent results across different samples and laboratories, enhancing the reliability of the analysis.

Application Areas

The BS EN ISO 9647:2022 standard is applicable in various sectors of the steel industry, including:

  • Steel Manufacturing: Ensures the quality and performance of steel products by providing accurate determination of vanadium content.
  • Quality Control Laboratories: Used for routine analysis and quality assurance of steel products.
  • Research and Development: Supports research activities aimed at developing new steel alloys and improving existing ones.
  • Regulatory Compliance: Helps manufacturers comply with industry standards and regulations regarding vanadium content in steel.

Structure of the Standard

The BS EN ISO 9647:2022 standard is structured to provide clear and concise guidance on the determination of vanadium content in steel. It includes the following sections:

  • Introduction: Provides an overview of the standard and its significance in the steel industry.
  • Scope: Defines the scope of the standard and the types of steel products it applies to.
  • Normative References: Lists the relevant standards and documents referenced in the standard.
  • Terms and Definitions: Clarifies the key terms and definitions used in the standard.
  • Principle: Describes the principle of the FAAS method for vanadium determination.
  • Reagents and Materials: Specifies the reagents and materials required for the analysis.
  • Apparatus: Details the equipment and apparatus needed for the FAAS method.
  • Sampling and Sample Preparation: Provides guidelines for sampling and preparing steel samples for analysis.
  • Procedure: Outlines the step-by-step procedure for determining vanadium content using the FAAS method.
  • Calculation: Explains the calculations required to determine the vanadium content from the FAAS measurements.
  • Precision and Accuracy: Discusses the precision and accuracy of the method, including repeatability and reproducibility.
  • Test Report: Specifies the information to be included in the test report.

Conclusion

The BS EN ISO 9647:2022 standard is a vital resource for anyone involved in the steel industry. By providing a reliable and standardized method for the determination of vanadium content using the Flame Atomic Absorption Spectrometric (FAAS) method, it ensures the quality and performance of steel products. Whether you are a steel manufacturer, quality control professional, or researcher, this standard will help you achieve accurate and consistent results in your vanadium analysis.

DESCRIPTION

BS EN ISO 9647:2022


This standard BS EN ISO 9647:2022 Steel. Determination of vanadium content. Flame atomic absorption spectrometric method (FAAS) is classified in these ICS categories:
  • 77.080.01 Ferrous metals in general
This document specifies a flame atomic absorption spectrometric method (FAAS) for the determination of the vanadium content in steel. The method is applicable to vanadium contents between 0,01 % (mass fraction) and 0,80 % (mass fraction), provided that the tungsten content in a 1,0 g test portion is not higher than 1,0 % and/or the titanium content is not higher than 0,5 %.