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Fiber Reinforced Concrete for Power & Energy Infrastructure

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A Faster Path to Power Infrastructure

Fast Efficient Proven

Power demand can’t wait. Think fiber reinforced concrete.

Talk to an Engineer

The grid is being rebuilt on a deadline.

  • $41.1B

    US private data center construction spend in 2025, up from $31.1B in 2024

    The Conference Board
  • ~86 GW

    Record new utility-scale generating capacity planned for 2026

    EIA
  • 50–60%

    The share of announced data center capacity actually expected online on schedule

    Goldman Sachs

REBAR vs FIBER

REBAR

Yesterday’s reinforcement

  • Slow to install
  • Injury risks
  • Corrosive

FIBER

Today’s reinforcement

  • Faster pours
  • Safer
  • Simpler

Rebar has to be delivered, staged, cut, bent, tied and inspected before the first pour. Fiber arrives in the mix. Reinforcement is distributed through the pour in three dimensions — and it doesn’t corrode.

See the full fiber vs. rebar breakdown

  • Accelerated Schedules

    Accelerate concrete placement and construction schedules.

  • Reduced Labor

    Reduce rebar-related labor, logistics and jobsite complexity.

  • Power Up Sooner

    Bring substations, utility projects, and critical energy infrastructure online faster.

  • Simplify Construction

    Reduce rebar handling and tying. Streamline concrete placements.

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Not every element is a candidate for fiber-only design. Our engineers will tell you which ones are — and where rebar should stay.

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Substations & Switchyards

equipment pads, control house slabs, containment

 

Transmission-Distribution

Transmission & Distribution

 foundations, access roads, duct banks

 

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Data Centers

slab-on-grade, generator and chiller pads, yard paving

Industrial-Energy-Plants

Industrial & energy plants

heavy-load floors, process areas

 

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Secondary Containment

crack control where tightness matters

 

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Site & logistics paving

laydown yards, hardstand, heavy haul routes

See what fiber saves on your project.

Free engineering review from the team that’s been designing synthetic fiber reinforcement since 1978.

Choose the path that matches where your project is today.

Get My Design & Conversion

Free service. No obligation.

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FAQs

 

In some cases, yes. Fiber excels at crack control and distributed reinforcement; structural rebar is still required in some cases. The right answer is per-element, which is what our design review determines.

 

 

Different jobs. Fiber is three-dimensional and non-corroding; rebar carries primary tensile load in specific locations. For slabs, pads and paving, engineered fiber frequently replaces steel entirely.

Faster placement, fewer trades staged before a pour, less rebar handling and tying, no corrosion, reduced embodied carbon.

 

 

Performance depends on fiber type and dosage; specs are available. 

 

 

Standard practices apply and FORTA is happy to offer field support.

Power demand can’t wait.

Engineered reinforcement solutions trusted to support power, utility, industrial and data center infrastructure — helping project teams accelerate schedules and reduce cost, labor and embodied carbon.

Talk to an Engineer

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