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Build sustainably with Dramix®

Most of the embodied carbon in buildings, which refers to the emissions during the construction of a building rather than when it is in use, comes from materials. At Bekaert, it is our priority to help our customers lower the embodied carbon of their projects by offering sustainable, concrete reinforcement solutions. Unlike mesh/rebar, steel fibers are an inherently sustainable technology and reduce the total amount of steel needed, without sacrificing performance or adding to the build cost. As such, we help contractors, developers, and builders to reach their sustainability targets, and are on the road to Carbon Neutrality.


Innovative concrete reinforcement

Less concrete + less steel = less CO2 

Steel fibers for concrete reinforcement are inherently more sustainable than traditional solutions (mesh/rebar) and reduce CO2 by up to 19% in every project. Steel fibers realize this by reinforcing concrete homogeneously, hence less reinforcement material is needed for the same performance. Further, through advanced steel fiber design optimization,  which require significantly less concrete, steel and water than conventional reinforcement solutions.


Cradle-to-Gate Environmental Impact

Cradle-to-Gate Environmental Impact

Reducing the carbon footprint is progressively pushing precasters in the direction of using steel fiber reinforcement. This is mainly because steel fiber reinforcement, compared to traditional methods, saves on both concrete and steel usage.

For instance, when we compared a standard double mesh reinforcement with a Dramix® steel fibers reinforced precast element, adopting the Dramix® led to a 19% reduction in Global Warming Potential (GWP) emissions*.

This is mainly because Dramix® steel fibers enable building with thinner concrete elements while maintaining the same technical capabilities with less amount of reinforcement materials.


EPD certified

EPD certified

Transparent communication of the environmental impact of our products over their lifetime is key. Hence, our Dramix® steel fiber solutions all have a cradle-to-gate, third party verified Environmental Product Declaration (EPD). These EPDs allow builders to compare sustainable building materials and make an informed decision.

Dramix® steel fiber for low-carbon concrete reinforcement is the first Bekaert solution to receive the Solar Impulse Foundation Label.
The Solar Impulse Foundation Label is granted to the solutions that show excellence in both business and sustainable benchmarks.


Build sustainably with Dramix®

Green building certifications

Green building certification systems, such as LEED or BREEAM, include various credits where Dramix® EPDs and its Life Cycle Assessments (LCA) could support reaching targets. For example, LCAs can demonstrate the CO2 savings to earn building life cycle credits. Further, Bekaert offers support in tracing raw material sourcing with transparency to contribute to responsible sourcing credits.  Using steel fiber allows reducing material, construction and maintenance cost which improves the life cycle cost analysis. Steel fiber also contributes to material efficiency by reducing the amount of reinforcement material needed. Moreover, by demonstrating increase in lifespan and more durable structures steel fibers contribute to durability analysis.


recycled reinforced concrete construction

End of life circularity

Steel is the second most recycled product on earth. In this context, the reinforced concrete is first crushed. Then, the most efficient method of recovering the steel is through magnetic separators. Most of that steel can be remelted and reused as steel fibers (or other applications) without any quality loss. Together with some partners, we are currently doing research on how the recuperation of steel fibers can be further optimized. The aim is to extract the maximum amount of steel, with the minimum amount of energy.


Green transportation

Green transportation

Greenhouse gases are not only reduced in the way your floor is designed and built.  Dramix® steel fibers enable densely packed reinforcement material. This allows us to use the container space to maximum. The fuel consumption for transport per unit weight is therefore substantially lower. Less mechanical handling with lifting material, adds to the reduction of greenhouse gasses.


Talk to an expert

Talk to an expert

Let’s talk about your project and discover what Dramix® fibers can do for you.