Aircraft And Space Vehicle Engineering Official British Standard

BS EN 2617:2001

Discover BS EN 2617:2001 for titanium plates in aerospace. Ensure compliance, enhance safety, and improve performance in aircraft engineering.

Overview

BS EN 2617:2001 is a crucial standard within the aerospace sector, specifically addressing the requirements for plates made from titanium and titanium alloys. This standard applies to plates with thicknesses ranging from greater than 6 mm to 100 mm, ensuring that materials used in aircraft and space vehicle engineering meet stringent performance and safety criteria.

Key Requirements

The standard outlines essential specifications for the manufacturing and testing of titanium plates, which are vital for structural integrity in aerospace applications. Key requirements include:

  • Material Composition: Plates must be manufactured from titanium or titanium alloys that conform to specified chemical and mechanical properties.
  • Dimensional Tolerances: The standard provides detailed guidance on acceptable tolerances for thickness, width, and length to ensure uniformity and reliability.
  • Mechanical Properties: Specifications for tensile strength, yield strength, and elongation are defined to ensure that the materials can withstand operational stresses.
  • Quality Assurance: Requirements for testing and inspection processes are included to verify compliance with the standard.

Implementation Benefits

Adopting BS EN 2617:2001 offers several practical benefits for manufacturers and compliance professionals in the aerospace industry:

  • Enhanced Safety: By adhering to this standard, manufacturers can ensure that the titanium plates used in aircraft and spacecraft meet rigorous safety standards, reducing the risk of structural failures.
  • Improved Performance: The mechanical properties specified in the standard contribute to the overall performance of aerospace components, ensuring they can withstand extreme conditions.
  • Streamlined Production: Clear guidelines for material specifications and tolerances facilitate smoother production processes and reduce the likelihood of costly rework.
  • Market Competitiveness: Compliance with BS EN 2617:2001 can enhance a company's reputation and competitiveness in the aerospace market by demonstrating a commitment to quality and safety.

Compliance Value

Compliance with BS EN 2617:2001 is not only a regulatory requirement but also a strategic advantage. It ensures that aerospace manufacturers can:

  • Meet Regulatory Standards: Compliance with this standard is often a prerequisite for meeting national and international aviation regulations.
  • Facilitate Certification Processes: Adhering to recognised standards simplifies the certification process for aircraft and space vehicles, expediting time-to-market.
  • Enhance Customer Trust: Demonstrating compliance can build trust with clients and stakeholders, reinforcing the credibility of the manufacturer.

In conclusion, BS EN 2617:2001 plays a vital role in ensuring the quality and safety of titanium plates used in aerospace applications. By following this standard, manufacturers can enhance safety, improve performance, and maintain compliance with regulatory requirements, ultimately contributing to the success of their aerospace projects.

Technical Information

Aircraft And Space Vehicle Engineering
BSI Group
0 580 37992 2
Specification Details
  • Aerospace Series
  • Plates in titanium and titanium alloys
  • Thickness 6 mm < a ≤ 100 mm
  • Dimensions
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