What is BS EN 3987 - Test methods for metallic materials used in aerospace applications about?
BS EN 3987 is an international standard used for metallic materials that specifies the test method for these materials. This helps in manufacturing good quality metallic materials used in aerospace applications.
BS EN 3987 applies to constant amplitude force-controlled high cycle fatigue (HCF) testing of metallic materials governed by EN Aerospace standards. It defines the mechanical properties that may need to be determined, the equipment, test pieces, methodology of test and presentation of results. BS EN 3987 applies to uniaxially loaded tests carried out on plain or notched test pieces at ambient and elevated temperatures. It is not intended to cover the testing of more complex test pieces, full scale components or structures, although the methodology could well be adopted to provide for such tests.
Who is BS EN 3987 - Test methods for metallic materials used in aerospace applications for?
BS EN 3987 on Test methods for metallic materials used in aerospace applications is useful for:
- The aerospace and defence industry
- Manufacturers of aerospace equipment and components
- Vendors / Manufacturers and suppliers of sheet and strip steel for aerospace
- Purchase divisions/component sourcing personnel
- Product design engineers
- Aeronautical engineers
Why should you use BS EN 3987 - Test methods for metallic materials used in aerospace applications?
BS EN 3987 specifies the test method and test procedure for metallic materials used in aerospace applications. This test method is useful in Constant amplitude force-controlled high cycle fatigue testing. With the help of these test methods, you can avoid the defects and failures in these metallic materials used in aerospace applications.
The symbols and definitions specified in BS EN 3987 are useful in identifying the mechanical properties of the materials used in aerospace applications. By applying BS EN 3987, you can ensure the compatibility and reproducibility of test results. This helps in standardize the manufacturing process that results in producing good quality metallic materials used in aerospace application.