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FRP Bars For Construction & Infrastructure

Unlocking Next-Generation Durability, Electromagnetic Neutrality, and Corrosive Resistance with Advanced Basalt Fiber Reinforcement.

Basalt reinforcing bars for building and bridge reinforcement
Basalt reinforcing bars for building and bridge reinforcement

High-tensile basalt composite rebars engineered specifically to withstand heavy structural loads in bridge decks, marine barriers, and high-durability building foundations.

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Non-Conductive & Non-Magnetic Basalt FRP Rebar | Electromagnetic Transparent Reinforcement
Non-Conductive & Non-Magnetic Basalt FRP Rebar | Electromagnetic Transparent Reinforcement

Electromagnetically neutral rebar designed for specialized concrete applications like MRI rooms, electrical substations, toll gantries, and high-speed rail tracks.

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Hot Products & Composite Components

Explore our key basalt fiber products designed to complement FRP bars in building structural integrity, corrosion protection, and thermal insulation.

Basalt Fiber Tissue Mat for Corrosion Protection and Composite Enhancement

Basalt Fiber Tissue Mat

Engineered to provide a smooth, resin-rich surface layer for fiber reinforced plastics, ensuring superior corrosion resistance and surface finish.

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Alkali Resistant Basalt Fiber Mesh for Construction Reinforcement and Wall Strengthening

Alkali Resistant Mesh

Ideal reinforcement for concrete and plaster applications where high alkali resistance and crack mitigation are vital for exterior wall systems.

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High Temperature Resistant Basalt Fiber Needled Mat for Thermal

Needled Mat Insulation

High-density thermal insulation manufactured by mechanically bonding continuous basalt fibers without chemical binders.

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High Strength Basalt Fiber Twisted Yarn for Industrial Weaving and High Temperature Sewing

High Strength Twisted Yarn

Engineered by twisting multiple continuous filaments to enhance mechanical strength and processing stability for industrial weaving.

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The Industrial & Commercial Evolution of FRP Bars

The global construction and infrastructure sector is undergoing a massive material science shift. For over a century, steel-reinforced concrete has served as the backbone of civil engineering. However, structural degradation caused by steel corrosion costs global economies billions of dollars annually. To combat this, Fiber Reinforced Polymer (FRP) bars—specifically Basalt Fiber Reinforced Polymer (BFRP) rebars—have emerged as a high-performance, sustainable alternative.

BFRP bars are manufactured using continuous basalt fibers extracted from volcanic rock, combined with a polymer matrix. This composite material possesses a tensile strength up to three times that of structural steel, while weighing only a quarter of the mass. More importantly, FRP bars are naturally impervious to moisture, chlorides, and electrochemical corrosion, making them the ultimate material solution for harsh environmental exposures.

Key Market Drivers for FRP Bars in Infrastructure

1. Life-Cycle Cost Optimization (LCCA): While the initial material cost of FRP bars can be higher than black steel, the elimination of maintenance, repairs, and cathodic protection systems yields a significantly lower life-cycle cost over a 100-year design life.

2. Rapid Urbanization and Sustainability: Governments worldwide are enforcing stricter carbon reduction mandates. Basalt FRP bars feature a significantly lower carbon footprint during extraction and production compared to structural steel, aligning perfectly with green building certifications like LEED and BREEAM.

Deep-Dive Application Scenarios of FRP Rebars

1. Marine and Coastal Structures

Seawalls, breakwaters, docks, and coastal foundations are constantly exposed to saline water and tidal action. In traditional concrete structures, salt water penetrates the concrete pores, corroding the internal steel rebar, causing it to expand and spall the concrete. FRP bars completely eliminate this degradation mechanism. By using non-corrosive basalt rebars, marine infrastructure can easily achieve a design life exceeding 100 years without structural deterioration.

2. Transportation and Bridge Decks

Bridges are subjected to heavy dynamic loads, temperature fluctuations, and chemical de-icing salts. De-icing agents containing chlorides penetrate concrete bridge decks rapidly, leading to internal steel corrosion. Applying FRP bars in bridge decks, barriers, and approach slabs protects the structural integrity of transportation links and minimizes costly lane closures for maintenance.

3. Electromagnetic Sensitive & Non-Conductive Environments

Modern medical, industrial, and transportation facilities require electromagnetic neutrality. Steel rebars disrupt magnetic fields and conduct electrical currents. Non-conductive and non-magnetic basalt FRP rebars provide structural reinforcement without interfering with sensitive equipment in MRI rooms, high-voltage power substations, toll plazas, and high-speed rail tracks.

4. Tunnelling and Underground Geotechnical Engineering

In tunnel construction using Tunnel Boring Machines (TBMs), segments of the tunnel wall must be temporarily reinforced before excavation. Using steel rebar in these "soft-eye" zones damages the TBM cutter head. FRP bars, with their unique anisotropic properties, can be easily cut through by TBM machinery, facilitating rapid, safe, and cost-effective underground excavations.

Why Basalt FRP Over Steel?


Ultra-Lightweight: 75% lighter than steel, significantly reducing transportation costs, reducing labor fatigue, and speeding up installation times on site.

Superior Tensile Strength: Offers up to 1100 MPa of tensile strength, surpassing standard grade 60 steel rebars.

Zero Corrosion: Impervious to acids, alkalis, and salts. Will not rust even when permanently submerged in salt water.

Thermal Compatibility: BFRP has a coefficient of thermal expansion similar to concrete, preventing internal stresses and cracking under extreme temperature fluctuations.

Eco-Friendly: Manufactured from natural volcanic basalt rock using a low-energy thermal process, releasing fewer greenhouse gases than steel manufacturing.

Construction and Infrastructure Reinforcement
China Beihai

Who We Are

Founded in 2015 and located in Jiujiang, Jiangxi Province, China Beihai is a premier high-tech enterprise focusing on the research, development, production, and sales of high-performance basalt continuous fiber and its production equipment manufacturing. As a leading enterprise in the domestic basalt fiber industry, we supply state-of-the-art materials to global infrastructure and industrial sectors.

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Our Structural Advantages

  • What we offer?

    What We Offer

    At China Beihai group, we specialize in the production of a wide range of products including basalt fiber mat (Basalt fiber chopped strand mat, Basalt fiber cloth), basalt fiber roving, basalt fiber yarn, basalt fiber chopped strands, and basalt fiber products (Basalt Fiber rebar, basalt fiber sleeves, and tape). Our products are designed to meet the diverse needs of various industries, providing high-quality solutions for our customers.

  • What do we do

    What Do We Do

    At China Beihai group, we are dedicated to the production of a wide array of basalt-based products, ranging from basalt fiber mat, fabric, and roving to chopped strand and specialized construction materials. Our focus is on delivering high-quality, sustainable solutions for industries such as construction, geotechnical engineering, and manufacturing. With a commitment to innovation and excellence, we strive to cater to the unique requirements of our clients by offering a comprehensive selection of basalt-derived products.

  • Why work with China Beihai?

    Why Work With China Beihai

    Choosing to work with China Beihai means working with a leading manufacturer of basalt products. Our commitment to quality, innovation, and sustainability sets us apart, ensuring our customers receive best-in-class solutions for their diverse needs. With reliability, customer satisfaction, and industry expertise, we offer a wide range of high-quality basalt materials and construction products, backed by our dedication to excellence. When you partner with China Beihai, you can trust that you are working with a reliable, forward-thinking partner and a top supplier for all your basalt product needs.

Our Certificates & Quality Compliance

China Beihai products are manufactured under strict global standards, ensuring exceptional mechanical performance and durability under severe environmental conditions.

ISO quality certificate 8
ISO quality certificate 4
ISO quality certificate 3
ISO quality certificate 5
ISO quality certificate 6
ISO quality certificate 7

Latest Industry News & Material Breakthroughs

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High-Temperature Resistance Characteristics of Basalt Fiber

Basalt fiber is an inorganic fibrous material produced by drawing strands from natural basalt ore after it has been melted at high temperatures. It demonstrates unique value in extreme temperature environments.

Industry Achieves High-End Breakthroughs Driven by Quality Standards

With successful applications in lunar exploration and deep-sea aquaculture platforms, basalt fiber is rapidly accelerating its transformation into a strategic new material with tangible industrial productivity.

Deep Integration Across Key Industries

Basalt fibers and composite FRP bars find crucial applications in structural reinforcement, lightweight engineering, and harsh environment protection.

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Building Construction

Our basalt products have diverse applications in the field of house construction, offering cracking mitigation and structural durability.

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Aviation

In the aerospace field, basalt fibers are ideal for manufacturing aircraft wings and engine components due to high strength-to-weight ratio.

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Aerospace

Research teams utilize basalt fibers in spacecraft shell materials, thermal protection systems, and high-temperature-resistant components.

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Concrete Reinforcement

Basalt-added concrete offers increased strength, crack mitigation, chemical resistance, and improved overall workability in heavy engineering.

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Automotive

Aligning with lightweight automotive trends, basalt fiber composites are widely used in structural car body panels and interior parts.

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Bridge Pier Protection

High strength and protective properties make basalt ideal for protecting bridge abutment structures from vehicle collisions, fire, and corrosion.

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Petrochemicals

Excellent chemical and corrosion resistance gives basalt fiber composites unique advantages in chemical storage tanks and piping networks.

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Ship & Marine Engineering

Offering lightweight, high-strength, acid, alkali, and seawater corrosion resistance, basalt is designed for marine platforms and hull plates.