Aerospace series. Non-metallic materials. Glass transparencies. Test methods. Determination of modulus of rupture

Aerospace series. Non-metallic materials. Glass transparencies. Test methods. Determination of modulus of rupture

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What is BS EN 3864 - Modulus of rupture of glass in aerospace about?

Product and component quality is paramount for aerospace vessels. The delivery of high-quality components contributes to the safety of those on board.

Soda-lime glass, also called soda-lime-silica glass, is the most prevalent type of glass, used for windowpanes, and glass containers (bottles and jars) for beverages, food, and some commodity items. Soda-lime glass can be chemically strengthened to increase mechanical strength or heat strengthened/tempered to increase thermal shock resistance and mechanical strength. The substrates can be machined, optically coated, chemically etched, sandblasted, colored, or laminated.

BS EN 3864 defines the requirements for the determination of the modulus of rupture of glass

transparencies for aircraft applications, whether in the annealed or chemically or thermally tempered condition.

Who is BS EN 3864 - Modulus of rupture of glass in aerospace for?

BS EN 3864  on Modulus of rupture of glass in aerospace is useful for:

  • The aerospace and defence industry
  • Manufacturers of aerospace equipment and components
  • Vendors / Manufacturers and suppliers of tempered float glass for aerospace
  • Purchase divisions / component sourcing personnel
  • Product design engineers
  • Aeronautical engineers

Why should you use BS EN 3864 - Modulus of rupture of glass in aerospace?

Anecdotal and empirical evidence suggests that heat strengthening treatments compromise the wear and scratch-resistance of soda lime silicate glass. By using tempered float glass in both primary and secondary structures, it is possible to save weight and at the same time achieve mechanical peak values in terms of strength and stiffness of the components.

BS EN 3864 provides you with the requirements for the determination of the modulus of rupture of glass transparencies for aerospace so that the products are suitable for the required purpose.

The guidelines in BS EN 3864 contribute towards including high-quality components for aerospace that are responsible for the smooth and safe functioning of vessels.