BS EN 3666:2020
Aerospace series. Heat resisting alloy NI-PH2601. Solution treated and cold worked. Bar for forged fasteners. D ≤ 50 mm. 1 550 MPa ≤ Rm ≤ 1 830 MPa
Standard number: | BS EN 3666:2020 |
Pages: | 12 |
Released: | 2020-01-23 |
ISBN: | 978 0 539 04763 9 |
Status: | Standard |
BS EN 3666:2020 Aerospace Series
Heat Resisting Alloy NI-PH2601
Welcome to the world of advanced aerospace materials with the BS EN 3666:2020 standard. This document is a crucial resource for professionals in the aerospace industry, providing comprehensive guidelines on the use of the heat resisting alloy NI-PH2601. This alloy is specifically designed for solution treated and cold worked bars used in forged fasteners, ensuring optimal performance in demanding environments.
Key Features of BS EN 3666:2020
- Standard Number: BS EN 3666:2020
- Pages: 12
- Release Date: January 23, 2020
- ISBN: 978 0 539 04763 9
- Status: Standard
Material Specifications
The BS EN 3666:2020 standard focuses on the heat resisting alloy NI-PH2601, which is renowned for its exceptional strength and durability. This alloy is solution treated and cold worked, making it ideal for use in high-stress aerospace applications. The standard specifies that the diameter of the bars should not exceed 50 mm, and the tensile strength (Rm) should range between 1,550 MPa and 1,830 MPa. These specifications ensure that the material can withstand the extreme conditions often encountered in aerospace environments.
Applications in Aerospace
The aerospace industry demands materials that can endure high temperatures and stress without compromising on performance. The NI-PH2601 alloy, as outlined in the BS EN 3666:2020 standard, is engineered to meet these requirements. It is commonly used in the manufacturing of forged fasteners, which are critical components in aircraft construction. These fasteners must maintain their integrity under extreme conditions, and the NI-PH2601 alloy provides the necessary resilience and reliability.
Why Choose BS EN 3666:2020?
Adopting the BS EN 3666:2020 standard ensures that your aerospace components are manufactured to the highest quality and safety standards. This standard is a testament to the rigorous testing and research that has gone into developing materials that can withstand the unique challenges of aerospace applications. By adhering to this standard, manufacturers can guarantee that their products meet the stringent requirements of the aerospace industry, providing peace of mind to both producers and end-users.
Comprehensive Guidance
With 12 pages of detailed information, the BS EN 3666:2020 standard offers comprehensive guidance on the properties and applications of the NI-PH2601 alloy. It serves as an invaluable resource for engineers, designers, and manufacturers who are involved in the production of aerospace components. The standard provides clear instructions on the treatment and working of the alloy, ensuring that it performs optimally in its intended applications.
Conclusion
In the fast-paced and demanding world of aerospace engineering, having access to reliable and high-performance materials is crucial. The BS EN 3666:2020 standard provides the necessary framework for utilizing the NI-PH2601 alloy in the production of forged fasteners, ensuring that these components can withstand the rigors of aerospace applications. By following this standard, you can be confident in the quality and durability of your aerospace products.
Embrace the future of aerospace engineering with the BS EN 3666:2020 standard, and ensure that your components are built to last in the most challenging environments.
BS EN 3666:2020
This standard BS EN 3666:2020 Aerospace series. Heat resisting alloy NI-PH2601. Solution treated and cold worked. Bar for forged fasteners. D ≤ 50 mm. 1 550 MPa ≤ Rm ≤ 1 830 MPa is classified in these ICS categories:
- 49.025.99 Other materials
This document specifies the requirements relating to:
Heat resisting alloy NI-PH2601
Solution treated and cold worked
Bar for forged fasteners
D ? 50 mm
1 550 MPa ? Rm ? 1 830 MPa
for aerospace applications.