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Homepage>BS Standards>77 METALLURGY>77.160 Powder metallurgy>BS EN ISO 4491-2:2023 Metallic powders. Determination of oxygen content by reduction methods Loss of mass on hydrogen reduction (hydrogen loss)
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immediate downloadReleased: 2023-04-28
BS EN ISO 4491-2:2023 Metallic powders. Determination of oxygen content by reduction methods Loss of mass on hydrogen reduction (hydrogen loss)

BS EN ISO 4491-2:2023

Metallic powders. Determination of oxygen content by reduction methods Loss of mass on hydrogen reduction (hydrogen loss)

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Standard number:BS EN ISO 4491-2:2023
Pages:16
Released:2023-04-28
ISBN:978 0 539 20280 9
Status:Standard

BS EN ISO 4491-2:2023 Metallic Powders - A Comprehensive Guide to Oxygen Content Determination by Reduction Methods

Introducing the BS EN ISO 4491-2:2023 Metallic Powders, a comprehensive guide that provides a detailed methodology for the determination of oxygen content in metallic powders by reduction methods. This standard is a must-have for professionals in the metallurgy and materials science fields, offering a reliable and accurate method for assessing the oxygen content in metallic powders, a critical factor in determining the quality and performance of the final product.

Key Features

The BS EN ISO 4491-2:2023 standard is a 16-page document, released on 28th April 2023, with the ISBN number 978 0 539 20280 9. It is a current and active standard, ensuring that you are working with the most up-to-date and relevant information in the field.

This standard focuses on the loss of mass on hydrogen reduction, also known as hydrogen loss, a key method in determining the oxygen content in metallic powders. The standard provides a step-by-step guide on how to accurately perform this method, ensuring that you can confidently and accurately determine the oxygen content in your metallic powders.

Why Choose BS EN ISO 4491-2:2023?

The BS EN ISO 4491-2:2023 standard is a trusted and reliable source of information for professionals in the metallurgy and materials science fields. The standard is designed to provide clear, concise, and accurate information, ensuring that you can confidently perform the necessary tests to determine the oxygen content in your metallic powders.

By following the methods outlined in this standard, you can ensure that your metallic powders meet the necessary quality standards, improving the performance and reliability of your final product. Whether you are a researcher, a manufacturer, or a quality control professional, the BS EN ISO 4491-2:2023 standard is an essential tool in your work.

Conclusion

In conclusion, the BS EN ISO 4491-2:2023 Metallic Powders standard is a comprehensive and reliable guide for the determination of oxygen content in metallic powders by reduction methods. With its detailed methodology and clear instructions, it is an essential tool for professionals in the metallurgy and materials science fields.

Don't compromise on the quality and reliability of your metallic powders. Invest in the BS EN ISO 4491-2:2023 standard today and ensure that your metallic powders meet the highest standards of quality and performance.

Order your copy of the BS EN ISO 4491-2:2023 standard today and take the first step towards improving the quality and performance of your metallic powders.

DESCRIPTION

BS EN ISO 4491-2:2023


This standard BS EN ISO 4491-2:2023 Metallic powders. Determination of oxygen content by reduction methods is classified in these ICS categories:
  • 77.160 Powder metallurgy
This document specifies a method for the determination of the relative loss of mass which a metallic powder undergoes when heated in a stream of pure dry hydrogen under specified conditions. The purpose of this test is to evaluate a chemical powder characteristic which is of importance to the powder metallurgical industry. The test is not intended as a means for the determination of the content of specific elements (see Annex A and ISO 4491-1). The test method is applicable to unalloyed, partially alloyed and completely alloyed powders of the metals listed in Table 1 (see 7.2.1). It is not applicable to lubricated powders or to mixtures of metal powders.