Castle Composites Ped Pavers
A collection page of Roofing Outlet
About
Castle Composites Ped Pavers have been designed and manufactured utilising 30 years of experience producing paving for the flat roof and balcony market in the UK. Ped Pavers are manufactured from a unique blend of high strength concrete containing silica sand, granite, high strength cement, high tech alkali resistant glass fibres and special additives. This blend of high quality materials (GRC) creates a very hard wearing and strong paver that is suitable for use on adjustable pedestals and supports without the need for any central support. Load tests while on pedestals give a breaking load of 410kg per slab. Ped Pavers are available in one size of 500x500x25mm. This gives an easy to calculate quantity of 4 pavers per m2. The side wall of the pavers are squared, which is a more favourable option when used with pedestals. Some products on the market have what is called a draw on the side wall which means the slab is wider at the base than it is as the surface. This creates larger gaps when used with pedestals which can be unsightly and a hazard to people walking with heels. Ped Pavers are available in one size of 500x500x25mm. This gives an easy to calculate quantity of 4 pavers per m2. The side wall of the pavers are squared, which is a more favourable option when used with pedestals. Some products on the market have what is called a draw on the side wall which means the slab is wider at the base than it is as the surface. This creates larger gaps when used with pedestals which can be unsightly and a hazard to people walking with heels. Ped Pavers are 11kg each giving a per m2 weight of 44kg. Considering the high strength of our pavers they have a very low imposed load in comparison to other products that achieve similar load results. At 11kg each they are also well within the HSE guidance for manual handling. Ped Pavers have a textured finish which offers both practical and aesthetic benefits. The added surface grip achieved improves safety by reducing the risk of