BS EN 13286‑4 is the fourth part of the multi-series of documents that is applicable to unbound and hydraulically bound mixtures.
BS EN 13286‑4 specifies a method for the determination of the relationship between the dry density and water content of a mixture using vibrating hammer compaction.
BS EN 13286‑4 applies to mixtures that contain no more than 10 % by mass of the mixture retained on the 40 mm test sieve.
BS EN 13286‑4 on unbound and hydraulically bound mixtures is applicable to:
A hydraulically bound mixture is a mixture of aggregate, water and hydraulic binder and is one of the most commonly used materials in pavement sub-base layers where cement-treated bases or cement-bound materials have traditionally been used. For the optimum functioning of hydraulically bound mixtures, water content is a important factor as it decides on the hardness of the material that gains strength over time by creating interlocking bonds.
Through the testing methods described under BS EN 13286‑4, users will be able to determine the relationship between the dry density and water content of a mixture using vibrating hammer compaction. Also determine the procedure for calculating and plotting the curves corresponding to 0 %, 5 % and 10 % air voids.
This will help you in ensuring that loads are sampled at regular intervals for compliance determination of the maximum dry unit weight and water content range for successful compaction of granular soils using a vibrating hammer. This allows for higher maximum soil density at lower optimum moisture content.
These provisions given in BS EN 13286-1 will help you to ensure quality and performance by reducing the cost of material production by eliminating quarrying, crushing, and screening operations. For repaving projects, it reduces handling and transportation costs too. With all methods of compaction, the effect of increasing the compactive energy is to increase the maximum dry density and to decrease the optimum moisture content.
BS EN 13286‑4:2021 supersedes BS EN 13286‑4:2003, which is withdrawn. BS EN 13286‑4:2021 has been editorially revised along with the following changes:
EN 13286-4