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>BSI Standards >49 AIRCRAFT AND SPACE VEHICLE ENGINEERING>49.030 Fasteners for aerospace construction>49.030.30 Nuts>BS EN 3014:2025 Aerospace series — Shank nut, self-locking, serrated, in heat resisting steel FE-PA2601 (A286) — Classification: 1 100 MPa (at ambient temperature) / 650 °C
immediate downloadReleased: 2026-01-13
BS EN 3014:2025 Aerospace series — Shank nut, self-locking, serrated, in heat resisting steel FE-PA2601 (A286) — Classification: 1 100 MPa (at ambient temperature) / 650 °C

BS EN 3014:2025

Aerospace series — Shank nut, self-locking, serrated, in heat resisting steel FE-PA2601 (A286) — Classification: 1 100 MPa (at ambient temperature) / 650 °C

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Standard number:BS EN 3014:2025
Pages:12
Released:2026-01-13
ISBN:978 0 539 22177 0
Status:Standard
BS EN 3014:2025 Aerospace Series Shank Nut

BS EN 3014:2025 Aerospace Series Shank Nut

Introducing the BS EN 3014:2025 Aerospace Series Shank Nut, a pinnacle of engineering excellence designed to meet the rigorous demands of the aerospace industry. This standard defines the specifications for a self-locking, serrated shank nut made from heat-resisting steel FE-PA2601 (A286), ensuring unparalleled performance and reliability in high-stress environments.

Unmatched Performance and Reliability

The BS EN 3014:2025 standard is a testament to superior engineering, offering a classification of 1 100 MPa at ambient temperature and capable of withstanding temperatures up to 650 °C. This makes it an ideal choice for aerospace applications where both strength and heat resistance are critical.

Key Features

  • Material: Heat resisting steel FE-PA2601 (A286)
  • Classification: 1 100 MPa at ambient temperature / 650 °C
  • Self-locking: Ensures secure fastening even under extreme conditions
  • Serrated Design: Provides enhanced grip and stability

Comprehensive Standard Documentation

The BS EN 3014:2025 standard is meticulously documented over 12 pages, providing detailed specifications and guidelines to ensure optimal application and performance. Released on January 13, 2026, this standard is the latest in aerospace fastening technology, reflecting the most current advancements and industry requirements.

Why Choose BS EN 3014:2025?

Choosing the BS EN 3014:2025 standard means opting for a product that is at the forefront of aerospace technology. Its robust design and material composition make it suitable for the most demanding applications, ensuring safety and efficiency in critical aerospace operations.

Applications

This shank nut is specifically designed for use in the aerospace industry, where it can be applied in various components that require high strength and heat resistance. Its self-locking feature makes it particularly useful in environments subject to vibration and thermal cycling.

Quality Assurance

Adhering to the BS EN 3014:2025 standard guarantees that the product meets stringent quality and performance criteria. This standard is recognized internationally, providing assurance of its reliability and effectiveness in aerospace applications.

Technical Specifications

  • Standard Number: BS EN 3014:2025
  • ISBN: 978 0 539 22177 0
  • Status: Standard

Conclusion

The BS EN 3014:2025 Aerospace Series Shank Nut is an essential component for any aerospace application requiring high strength and heat resistance. Its innovative design and adherence to rigorous standards make it a reliable choice for engineers and manufacturers seeking to enhance the safety and performance of their aerospace systems.

Invest in the future of aerospace technology with the BS EN 3014:2025 standard, and ensure your projects are equipped with the best in class fastening solutions.

DESCRIPTION

BS EN 3014:2025


This standard BS EN 3014:2025 Aerospace series — Shank nut, self-locking, serrated, in heat resisting steel FE-PA2601 (A286) — Classification: 1 100 MPa (at ambient temperature) / 650 °C is classified in these ICS categories:
  • 49.030.30 Nuts
This document specifies the characteristics of self-locking serrated shank nuts in FE-PA2601, for aerospace applications. Classification: 1 100 MPa /650 °C .