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Homepage>BS Standards>77 METALLURGY>77.040 Testing of metals>77.040.10 Mechanical testing of metals>BS EN ISO 16808:2022 Metallic materials. Sheet and strip. Determination of biaxial stress-strain curve by means of bulge test with optical measuring systems
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BS EN ISO 16808:2022 Metallic materials. Sheet and strip. Determination of biaxial stress-strain curve by means of bulge test with optical measuring systems

BS EN ISO 16808:2022

Metallic materials. Sheet and strip. Determination of biaxial stress-strain curve by means of bulge test with optical measuring systems

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Standard number:BS EN ISO 16808:2022
Pages:32
Released:2022-07-08
ISBN:978 0 539 16180 9
Status:Standard
BS EN ISO 16808:2022 - Metallic materials. Sheet and strip. Determination of biaxial stress-strain curve by means of bulge test with optical measuring systems

BS EN ISO 16808:2022 - Metallic materials. Sheet and strip. Determination of biaxial stress-strain curve by means of bulge test with optical measuring systems

Standard Number: BS EN ISO 16808:2022

Pages: 32

Released: 2022-07-08

ISBN: 978 0 539 16180 9

Status: Standard

Overview

Introducing the BS EN ISO 16808:2022, a comprehensive standard that provides detailed guidelines for the determination of the biaxial stress-strain curve of metallic materials, specifically sheets and strips, using the bulge test method with optical measuring systems. This standard is essential for professionals in the field of materials science, engineering, and quality control, offering a robust framework for accurate and reliable testing.

Key Features

  • Comprehensive Coverage: Spanning 32 pages, this standard offers an in-depth exploration of the bulge test method, ensuring that all aspects of the procedure are thoroughly covered.
  • Latest Release: Released on 2022-07-08, this standard reflects the most current practices and technological advancements in the field.
  • ISBN: 978 0 539 16180 9, ensuring easy reference and cataloging.
  • Optical Measuring Systems: Emphasizes the use of advanced optical measuring systems for precise and accurate determination of the biaxial stress-strain curve.

Why Choose BS EN ISO 16808:2022?

The BS EN ISO 16808:2022 standard is a critical resource for anyone involved in the testing and analysis of metallic materials. Here are some reasons why this standard is indispensable:

  • Accuracy and Precision: The use of optical measuring systems in the bulge test method ensures high accuracy and precision in determining the biaxial stress-strain curve.
  • Industry Compliance: Adhering to this standard ensures compliance with international testing protocols, enhancing the credibility and reliability of your results.
  • Enhanced Understanding: Provides a detailed methodology that enhances the understanding of material behavior under biaxial stress conditions.
  • Quality Assurance: Essential for quality control processes, ensuring that materials meet the required standards and specifications.

Applications

The BS EN ISO 16808:2022 standard is applicable in various industries and sectors, including:

  • Automotive Industry: For testing and analyzing the materials used in vehicle manufacturing.
  • Aerospace Industry: Ensuring the materials used in aircraft construction meet stringent safety and performance standards.
  • Construction Industry: For the evaluation of materials used in building and infrastructure projects.
  • Manufacturing: In the production of metallic components and products, ensuring they meet the required specifications.

Detailed Methodology

The BS EN ISO 16808:2022 standard provides a detailed methodology for conducting the bulge test, including:

  • Preparation of Test Specimens: Guidelines for the preparation and conditioning of test specimens to ensure consistent and reliable results.
  • Test Setup: Detailed instructions on the setup of the bulge test apparatus, including the use of optical measuring systems.
  • Conducting the Test: Step-by-step procedures for conducting the bulge test, ensuring accurate and repeatable results.
  • Data Analysis: Methods for analyzing the data obtained from the test, including the determination of the biaxial stress-strain curve.

Benefits of Optical Measuring Systems

The use of optical measuring systems in the bulge test method offers several advantages, including:

  • Non-Contact Measurement: Optical systems provide non-contact measurement, reducing the risk of damage to the test specimen and ensuring more accurate results.
  • High Precision: Optical systems offer high precision and accuracy, essential for determining the biaxial stress-strain curve.
  • Real-Time Data: Optical systems provide real-time data, allowing for immediate analysis and interpretation of results.
  • Versatility: Optical systems can be used with a wide range of materials and test conditions, making them highly versatile.

Conclusion

The BS EN ISO 16808:2022 standard is an essential resource for professionals involved in the testing and analysis of metallic materials. With its comprehensive coverage, detailed methodology, and emphasis on the use of advanced optical measuring systems, this standard ensures accurate and reliable determination of the biaxial stress-strain curve. Whether you are in the automotive, aerospace, construction, or manufacturing industry, this standard provides the guidelines and best practices needed to ensure the quality and performance of your materials.

DESCRIPTION

BS EN ISO 16808:2022


This standard BS EN ISO 16808:2022 Metallic materials. Sheet and strip. Determination of biaxial stress-strain curve by means of bulge test with optical measuring systems is classified in these ICS categories:
  • 77.040.10 Mechanical testing of metals
This document specifies a method for determination of the biaxial stress-strain curve of metallic sheets having a thickness below 3 mm in pure stretch forming without significant friction influence. In comparison with tensile test results, higher strain values can be achieved. NOTE      In this document, the term "biaxial stress-strain curve" is used for simplification. In principle, in the test the "biaxial true stress-true strain curve" is determined.