What is BS EN 2135-Aerospace series: Steel FE-PL61 bars about?
BS EN 2135 is a metallic material standard covering the Aerospace series: Steel FE-PL61 bars, ensuring structural reliability, operability and corrosion resistance of parts and components in aerospace applications.
BS EN 2135 specifies the requirements relating to Steel FE-PL61 bars. BS EN 2135 sets use conditions as carburized, hardened and tempered for aerospace applications.
BS EN 2135 sets the limit dimension range of De ≤ 40 mm for aerospace applications.
Who is BS EN 2135-Aerospace series: Steel FE-PL61 bars for?
BS EN 2135 on Aerospace series: Steel FE-PL61 bars applies to:
- Steel suppliers to aerospace component manufacturers
- Manufacturers of steel bars for machining for aerospace applications
- Safety and quality assurance services
- Testing houses for the aerospace industry
- Regulatory bodies and inspection services in the aerospace industry
Why should you use BS EN 2135-Aerospace series: Steel FE-PL61 bars?
Stainless steel is one of the most commonly used metals in aerospace equipment. Steel has mechanical properties such as corrosion resistance, strength, and toughness, making it a reliable option for use in the aerospace industry.
BS EN 2135 provides you guidance on chemical composition, method of melting, form, method of production, limit dimension and technical specifications allowing you to ensure corrosion resistance and heat resistance in aircraft applications.
BS EN 2135 provides you guidance on delivery condition, heat treatment, delivery condition code, use condition and heat treatment that facilitates transportation condition, storage, and usability for steel bars.
BS EN 2135 also provides you guidance on testing, including heat treatment, dimensions, cladding thickness, temperature, proof stress, strength, elongation, hardness, shear strength, and bending that ensures mechanical strength, operability and longevity of the components and systems.
The adoption of BS EN 2135 allows users to develop and assess Steel FE-PL61 bars that ensure operational stability and structural integrity in aerospace applications.