What is BS EN 4500-004 – Rules for titanium and titanium alloys standards for aerospace application about?
BS EN 4500-004 is part of the series of EN metallic material standards for aerospace applications. The general organization of this series is described in EN 4258.
BS EN 4500-004 specifies the specific rules for the drafting and presentation of titanium and titanium alloy material standards for aerospace applications.
Note: BS EN 4500-004 should be used in conjunction with EN 4500-001.
Who is BS EN 4500-004 - Rules for titanium and titanium alloys standards for aerospace application for?
BS EN 4500-004 on Rules for titanium and titanium alloys standards for aerospace application is useful for:
- The aerospace and defence industry
- Manufacturers of aerospace equipment and components
- Vendors / Manufacturers and suppliers of titanium and titanium alloy for aerospace
- Purchase divisions/component sourcing personnel
- Product design engineers
- Aeronautical engineers
Why should you use BS EN 4500-004 – Rules for titanium and titanium alloys standards for aerospace application?
There are many considerations to make when creating parts for aerospace applications, such as the shape, weight, and durability of a part. These factors can all affect the aircraft’s flight worthiness. When designing the interiors or exterior of vessels such as airplanes, spaceships, submarines, etc., structural decisions are based on function. There are some specific applications where aerospace-grade titanium and titanium alloy may surpass aluminum in performance. For years, the go-to material for aerospace applications was aluminum. However, in recent years, aerospace manufacturers have started investigating alternatives to aluminum, one of them being aerospace grade titanium and titanium alloy.
BS EN 4500-004 provides you with requisites for drafting and presentation of titanium and titanium alloy material standards for aerospace applications so that the products are suitable for the required purpose.
The guidelines in BS EN 4500-004 contribute towards including high-quality components for aerospace that are responsible for the smooth and safe functioning of vessels.