Durable and versatile chemical fibers for textiles, composites, and more. Excellent quality, competitive rates, and reliable delivery.
PRODUCT PARAMETERS
Description
Overview of Fiber
Fiber, or dietary fiber, refers to the parts of plant-based foods that the body can’t digest or absorb. It’s crucial for digestive health, regulating blood sugar levels, and maintaining bowel health. There are two types: soluble and insoluble fiber.
Features of Fiber
Solubility: Soluble fiber dissolves in water forming a gel-like substance, aiding in lowering cholesterol and glucose levels.
Insolubility: Insoluble fiber promotes the movement of material through your digestive system and increases stool bulk, benefiting those who struggle with constipation.
Nutritional Benefits: High-fiber foods tend to be more filling, which can help control weight. They also lower the risk of developing various conditions, including heart disease, diabetes, and diverticular disease.
Natural Sources: Found in fruits, vegetables, whole grains, and legumes.

(FiberGLASS Composite FRP Rebar For Construction On Glass Fiber Reinforced Rod Fiberglass Products)
Specifications of FiberGLASS Composite FRP Rebar For Construction On Glass Fiber Reinforced Rod Fiberglass Products
Fiberglass Composite FRP (Fiber-Reinforced Polymer) Rebar is a high-performance construction product designed to change typical steel reinforcement in concrete structures. Made from glass fibers installed in a polymer resin matrix, FRP rebar supplies exceptional rust resistance, lightweight properties, and phenomenal longevity, making it excellent for rough environments.
** Material Structure **: FRP rebar includes continual glass fibers (E-glass or AR-glass) bound with thermosetting materials like vinyl ester or epoxy. This combination makes sure high tensile strength, chemical resistance, and durability.
** Diameter and Sizes **: Offered in diameters varying from 3mm to 40mm, with basic sizes of 6m or 12m. Personalized lengths and diameters can be made to fulfill job needs.
** Mechanical Characteristics **:.
– ** Tensile Stamina **: 800– 1200 MPa (higher than steel).
– ** Modulus of Flexibility **: 40– 50 Grade point average (less than steel, needing particular design factors to consider).
– ** Weight **: Approximately 25% the weight of steel, lowering transport and labor costs.
** Rust Resistance **: Unsusceptible to rust, chlorides, acids, and alkalis, making it ideal for marine frameworks, bridges, wastewater therapy plants, and roads subjected to de-icing salts.
** Thermal Characteristics **: Low thermal conductivity (0.35– 0.5 W/m · K) and a coefficient of thermal expansion similar to concrete, minimizing breaking under temperature changes.
** Electric Insulation **: Non-conductive and non-magnetic, suitable for MRI facilities, nuclear power plant, and locations requiring electromagnetic neutrality.
** Surface area Profile **: Features a ribbed or sand-coated surface area to improve bonding with concrete.
** Specifications Compliance **: Meets ASTM D7957, ACI 440, and ISO 10406-1 for top quality and performance.
** Installation **: Cuttable with basic tools (e.g., ruby blades) and safeguarded making use of plastic ties. No welding or special equipment required.
** Environmental Advantages **: Reduces carbon footprint due to reduced energy usage during manufacturing and extended service life.
** Applications **: Enhanced concrete in seawalls, parking lot, tunnels, bridges, and precast elements.
** Life span **: Surpasses 100 years in harsh settings, substantially surpassing steel.
** Packaging **: Provided in UV-resistant bundles to prevent resin degradation throughout storage.
Fiberglass FRP rebar is an affordable, long-lasting service for contemporary building and construction challenges, integrating advancement with sustainability.

(FiberGLASS Composite FRP Rebar For Construction On Glass Fiber Reinforced Rod Fiberglass Products)
Applications of FiberGLASS Composite FRP Rebar For Construction On Glass Fiber Reinforced Rod Fiberglass Products
Fiberglass Composite FRP (Fiber Reinforced Polymer) Rebar is a high-performance choice to conventional steel support, supplying exceptional durability, toughness, and rust resistance for contemporary construction tasks. Made from glass fibers embedded in a polymer material matrix, these light-weight, non-metallic poles are engineered to endure rough settings while offering long-term architectural integrity.
A main application of FRP rebar remains in concrete support for infrastructure subjected to destructive elements. Bridges, seaside frameworks, and parking garages gain from its resistance to corrosion, even when exposed to deep sea, de-icing salts, or chemical drainage. This eliminates the spalling and degradation typical with steel rebar, reducing upkeep expenses and expanding service life. Marine jobs like seawalls, piers, and offshore platforms additionally count on FRP rebar for its resistance to saltwater corrosion.
In transportation infrastructure, FRP rebar is utilized in streets, tunnels, and bridge decks. Its light-weight nature simplifies handling and installment, speeding up task timelines. Furthermore, its non-conductive homes make it optimal for electric substations, MRI centers, and research laboratories where electromagnetic disturbance need to be prevented.
Water and wastewater therapy plants use FRP rebar in containers, pipes, and containment structures due to its resistance to acidic and alkaline settings. Underground energies, such as drain systems and pipes, take advantage of its imperviousness to dirt rust and electrolytic responses.
Building applications consist of reinforced concrete for buildings in seismic zones, as FRP’s high tensile stamina and versatility improve earthquake resilience. It is additionally utilized in eco-friendly structure jobs, lining up with sustainability goals as a result of its long life and decreased carbon footprint over its lifecycle.
Unlike steel, FRP rebar does not conduct warm, making it suitable for thermal-sensitive settings. Adjustable in size, length, and bend setups, it adapts to varied project demands. While initial expenses may be more than steel, the long-lasting savings from minimal maintenance and substitute make FRP rebar an economical service for modern construction challenges.
By integrating advancement with usefulness, Fiberglass Composite FRP Rebar is changing construction requirements, using designers and architects a trusted, future-proof material for resistant and lasting framework.
Company Introduction
Welcome to DrChristiaBrown,a leading international supplier of high-quality dietary fiber products. Our mission is to enhance global health by providing premium, natural fibers sourced from the finest fruits, vegetables, and grains. We specialize in both soluble and insoluble fibers, catering to diverse health needs and preferences. With a commitment to excellence, we ensure our products are sustainably sourced and rigorously tested for quality. Partnering with us means gaining access to top-tier fibers that promote better nutrition and wellness. Explore our range and discover the benefits of incorporating natural fibers into your daily diet. Join us in making the world a healthier place, one fiber at a time.
If you have any questions, please feel free to contact us(nanotrun@yahoo.com).
Payment Methods
T/T, Western Union, Paypal, Credit Card etc.
Shipment Methods
By air, by sea, by express, as customers request.
5 FAQs of FiberGLASS Composite FRP Rebar For Construction On Glass Fiber Reinforced Rod Fiberglass Products
What is Fiberglass Composite FRP Rebar? Fiberglass Composite FRP (Fiber-Reinforced Polymer) Rebar is a high-strength, non-corrosive construction material made from glass fibers embedded in a polymer resin matrix. It serves as a durable alternative to traditional steel rebar, offering superior resistance to corrosion, chemicals, and environmental degradation. Its lightweight nature and non-conductive properties make it ideal for projects in harsh environments like marine structures, bridges, and chemical plants.
Why choose FRP rebar over steel? FRP rebar outperforms steel in corrosion resistance, eliminating rust-related structural failures and reducing maintenance costs. It is 75% lighter than steel, simplifying transportation and installation. Unlike steel, it does not conduct electricity or heat, making it safe for use in electrical substations or MRI facilities. Its high tensile strength (2-3 times that of steel) ensures structural integrity while extending the lifespan of concrete structures exposed to moisture or chemicals.
Is FRP rebar as strong as steel? FRP rebar has a higher tensile strength than steel but a lower modulus of elasticity, meaning it bends more under load. Engineers must adjust designs to account for this flexibility. While not suitable for high-load vertical structures like skyscrapers, it excels in horizontal applications (e.g., sidewalks, seawalls) where corrosion resistance and tensile strength are critical.
Are there special installation requirements? FRP rebar requires no specialized tools but demands careful handling to avoid surface damage. Use diamond-tipped blades for cutting and wear gloves to prevent splinters. Secure it with UV-resistant plastic ties instead of metal, and avoid bending on-site—pre-fabricate bends during manufacturing. Follow manufacturer guidelines for concrete coverage and spacing to ensure optimal performance.
Is FRP rebar more expensive than steel? Initial costs are higher (2-3 times that of steel), but lifecycle savings offset this. Reduced maintenance, elimination of corrosion repairs, and longer service life make it cost-effective for projects in corrosive environments. Additionally, lighter weight lowers shipping and labor expenses. Over time, FRP rebar often proves more economical than steel in applications where durability and longevity are priorities.

(FiberGLASS Composite FRP Rebar For Construction On Glass Fiber Reinforced Rod Fiberglass Products)
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