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Since 2002

Ultra-Fine Micro Synthetic Fiber with High Strength at Practical Cost

Rethink Concrete Fiber

Next-Generation Concrete Fiber

Without the Cost of Traditional High-End Fibers

Since 2002, we have specialized in concrete crack resistance, waterproofing, and anti-corrosion technologies.

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Rimix™ NanoRebar High-Performance Fiber

Next-Generation Micro Synthetic Fiber for High-Performance Concrete

What Is Rimix™ NanoRebar Concrete Fiber?

Rimix™ NanoRebar is a high-performance micro synthetic fiber made from refined polyacrylonitrile (PAN fiber), originally derived from carbon fiber precursor technology. It is designed for fiber reinforced concrete (FRC) applications, providing both early-stage crack control and long-term crack resistance.

Compared with traditional polypropylene fiber, NanoRebar offers significantly higher tensile strength and modulus, allowing it to work not only during the plastic stage, but also after concrete hardening.

By improving toughness and crack resistance, it helps reduce cracking, enhance durability, and improve overall performance in high-performance concrete (HPC) and ultra-high-performance concrete (UHPC).

Thanks to its ultra-fine diameter, NanoRebar delivers a higher fiber count at lower dosage, achieving more effective crack control with comparable overall cost to polypropylene fiber.

Rimix™ NanoRebar Concrete Reinforcement Fiber Packaging.avif

Next-Generation High-Performance Fiber

Looking to reduce cost while improving concrete performance?
Get a cost comparison and dosage recommendation for your project.
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How NanoRebar Reinforces Concrete

Crack control in fiber reinforced concrete is governed by fiber spacing theory, proposed by Romualdi and Batson and widely referenced in ACI guidance. The theory states that crack resistance depends on reinforcement spacing: the closer the spacing, the higher the probability that cracks will be intercepted and restrained.

Rimix™ NanoRebar is designed based on this principle. Its ultra-fine PAN-based fibers provide a much higher fiber count per unit volume, resulting in closer spacing between reinforcement elements. This increases the likelihood that micro-cracks are intercepted early, reducing crack development throughout the concrete.

In addition, NanoRebar fibers have significantly higher tensile strength and elastic modulus than conventional polypropylene fiber, enabling effective crack bridging and stress transfer in both plastic and hardened stages. This results in improved crack resistance, enhanced toughness, and more reliable performance in concrete.

NanoRebar Fiber Reinforcement Inside Concrete.avif

NanoRebar Fiber Reinforcement Inside Concrete

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NanoRebar vs Polypropylene Fiber

Compared with polypropylene fiber, NanoRebar features a finer fiber diameter and provides a significantly higher fiber count per unit volume, resulting in more effective crack control. Its higher tensile strength and elastic modulus further enhance crack resistance, contributing to improved durability and overall concrete performance.

Property

Polypropylene Fiber

Rimix™ NanoRebar

Typical Fiber Diameter

20–48 μm

≈ 11 μm

Tensile Strength

300–450 MPa

600–900 MPa

Elastic Modulus

3–3.5 GPa

7–10 GPa

Recommended Dosage

0.9 kg/m³

0.45 kg/m³

Fiber Count per m³

≈ 0.6–1.0 Billion

≈ 2.7 Billion

Optimize cost and dosage for your project

Why Choose Rimix™ NanoRebar for High-Performance Concrete?

High-performance concrete (HPC) requires effective crack control, durability, and long-term reliability. In modern fiber reinforced concrete (FRC) systems, fiber selection plays a critical role in achieving these properties.

Traditional high-performance fibers for concrete—such as PVA fiber, basalt fiber, AR glass fiber, aramid fiber, and carbon fiber—offer excellent mechanical performance, but are often limited by high cost and restricted use in UHPC or specialized applications.

Rimix™ NanoRebar, a next-generation micro synthetic fiber for concrete based on PAN fiber technology, is designed to bridge this gap.

It delivers effective crack control, improved toughness, and reliable durability in both standard concrete and high-performance concrete fiber reinforcement systems—without the cost limitations of traditional high-end fibers.

NanoRebar Works Without Increasing Cost.avif

Lower dosage, more fibers, superior performance

Looking for a high-performance, cost-effective concrete fiber?

Benefits of Rimix™ NanoRebar

Rimix™ NanoRebar enhances concrete performance through high fiber count and distributed micro-reinforcement, offering clear advantages over conventional polypropylene fibers.

1. More Effective Crack Control

At approximately half the dosage, Rimix™ NanoRebar provides several times more reinforcement elements. This increases the probability of intercepting micro-cracks early and reduces visible cracking in slabs and structural elements.

2. Full-Stage Crack Control

With higher tensile strength and modulus, Rimix™ NanoRebar remains effective in both the plastic and hardened stages of concrete. It helps control early shrinkage cracking as well as later-stage cracking caused by loading and drying shrinkage.

3. Improved Toughness and Structural Reliability

By enabling effective crack bridging, Rimix™ NanoRebar enhances concrete toughness and reduces brittle behavior. This improves performance under impact, repeated loading, and long-term service conditions.

4. Comparable Overall Cost

Despite improved reinforcement efficiency, Rimix™ NanoRebar achieves these benefits at a comparable cost per cubic meter.  Lower dosage combined with higher effectiveness makes it a practical upgrade without increasing overall project cost.

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High strength and high modulus fiber for concrete reinforcement

Not sure how to choose the right fiber or dosage?
Our team can recommend a solution based on your project requirements.
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Standards & Compliance

Rimix™ NanoRebar micro synthetic fiber meets major international standards for concrete reinforcing fiber applications:

  • ASTM C1116 – Fiber Reinforced Concrete

  • EN 14889-2 – Polymer Fibers for Concrete

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Applications of Rimix™ NanoRebar

Rimix™ NanoRebar is used in fiber reinforced concrete (FRC) applications requiring effective crack control and durability. 

It is suitable for both standard concrete and HPC / UHPC systems.

  • High-durability slabs, floors & pavements

  • Precast concrete elements

  • Industrial floors and heavy-traffic platforms

  • Waterproof structures: basements, tanks, pools, tunnels

  • Shotcrete for tunnels & underground work

  • Infrastructure & Marine

  • High-performance and ultra-high-performance concrete

Rimix NanoRebar concrete reinforcement system certified to ASTM standards and CE compliant for global construction projects

Trusted in Engineering Projects Worldwide

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How to Use Rimix™ NanoRebar

Rimix™ NanoRebar is available in multiple lengths and packaging options to suit different fiber reinforced concrete and shotcrete applications.

Lengths: 6 mm, 12 mm, 18 mm

Dosage:0.45–0.9 kg/m³

Packaging: Bulk loose fiber in ton bags or carton packaging (small packs in plastic or water-soluble bags)

Palletized Rimix NanoRebar concrete reinforcement fiber being loaded into shipping container for global delivery

Ready for Global Delivery

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PIONEER® engineers inspecting FRC construction at the construction site

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Application
What do you need?

An advanced micro synthetic fiber engineered for fiber-reinforced concrete (FRC), delivering optimized performance for modern high-performance concrete applications.

  • Upgrade Your Polypropylene Fiber Today

  • Contact Rimix™ NanoRebar Expert

  • Request a Sample

  • Get a Quote

  • Become a Distributor

  • Request Technical Data Sheet

Privacy Assurance: We respect your privacy and will never share your information. 

Why Choose Us?

Proven Expertise & Greater Savings

22 years of focus

on concrete protection solutions.

20+ patents & awards

In concrete durability technology

20+ countries served

with global product distribution.

1,000 projects proven

in diverse applications worldwide.

FAQ

  • A high-performance micro synthetic fiber made from PAN, designed to improve crack control and durability in concrete.

  • It has higher strength, finer diameter, and more fibers per m³—resulting in more effective crack control at similar cost.

  • Yes. It can directly replace PP fiber in most applications with lower dosage and better performance.

  • Suitable for standard concrete, HPC, and UHPC.

  • Typically 0.45–0.9 kg/m³, depending on application.

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Why Choose PIONEER® Technologies

Tested, Proven, and Engineered for Concrete Crack Control and Durability

Partner with a trusted leader in concrete crack control, fiber reinforcement, and crystalline waterproofing solutions for modern infrastructure and high-performance concrete systems.

1. Independently Tested and Certified

Validated through independent laboratory testing and compliant with ASTM standards and CE certification, PIONEER® technologies deliver reliable performance in fiber reinforced concrete and crystalline waterproofing applications.

2. Proven in Real Projects Worldwide

With applications in over 1,000 projects across 20+ countries, our systems have been used in major infrastructure such as the Hong Kong–Zhuhai–Macao Bridge, Bangladesh Subsea Tunnel, and metro systems, demonstrating consistent performance in demanding environments.

3. Integrated Reinforcement and Waterproofing Solutions

We provide advanced systems including macro synthetic fibers, micro fiber reinforcement, and crystalline waterproofing, supporting applications in industrial floors, precast concrete, ready-mix, and infrastructure projects.

4. Direct Manufacturer with Engineering Support

We offer dosage design, mix optimization, and on-site technical support, backed by over 24 years of experience, ensuring efficient implementation and consistent performance across large-scale construction projects.

Aerial view of PIONEER® production facility in Nanjing, showcasing the company's modern factory and large-scale concrete fiber manufacturing capabilities.

26,500m² production base

Synthetic fibers manufacturing production line for fiber reinforced concrete, producing concrete fibers and fiber mesh reinforcement to reduce cracks and improve durability.

Advanced fiber dispersibility

Concrete fibers production line manufacturing reinforcement fiber for concrete and improving fiber reinforced concrete performance.

Exceptional tensile strength

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