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HPB300/HRB335/HRB400/HRB500 Reinforcement
B1499.2-2007 is a European standard steel bar. Generally, GB1499.2-2007 standard deformed steel bars are made using the hot-rolled method, meaning that these are the most common types of deformed steel bars. These are available in different lengths and sizes, all the way from 6 mm in diameter to 50 mm in diameter. When it comes to length, 9 m and 12 m are the common sizes.
Epoxy Resin Coated Steel Bar
Our epoxy coated rebars are manufactured by first abrasively cleaning and heating standard deformed steel bars, then electrostatically applying a dry epoxy powder which melts and cures to form a uniform, tough, and adherent coating. This fusion-bonded process ensures the coating is integral to the bar, resistant to damage during handling, and compliant with the strictest international standards for coating thickness, continuity, and flexibility.
ASTM A615 Concrete Rebar Grade 40
ASTM A615 Grade 40 is a standard specification for deformed and plain carbon steel reinforcing bars used in concrete construction. With a minimum yield strength of 40,000 psi (275 MPa), Grade 40 rebar provides reliable structural reinforcement for a wide range of residential, commercial, and infrastructure projects where moderate strength and cost-effectiveness are prioritized.
Low Carbon Bright Alkaline Steel Wire
Low Carbon Bright Alkaline Steel Wire is a versatile, high-quality wire manufactured through alkaline cleaning and cold drawing processes. Characterized by its bright surface finish and consistent mechanical properties, it contains carbon content typically ranging from 0.06% to 0.20%, with SAE 1008 (0.08% C) and SAE 1018 (0.18% C) being the most commonly used grades. This product exhibits excellent bending and flattening performance, easy formability, and good weldability.
SAE-1006 Steel Wire Rod
Steel grade G10060 (SAE 1006) - low carbon material from which wire rod and round wire are produced in riots or cut rods. Standart: ASTM A510M. Standard specification for general requirements for carbon steel wire rod and round wire. Classification: Low-carbon steel.
Stainless Steel Channel
Stainless steel channel is a corrosion-resistant structural profile with a C-shaped cross-section. It combines the high strength and easy framing capabilities of the channel design with the durability, hygiene, and aesthetic appeal of stainless steel, making it the ideal choice for applications where longevity, cleanability, and resistance to harsh environments are paramount. Classification: Channel Steel
Carbon Steel Angle
The carbon steel angle, commonly known as angle iron, is the most fundamental and versatile L-shaped structural profile. Its 90-degree design provides excellent strength for bracing, framing, and supporting applications across countless industries. Valued for its exceptional strength-to-cost ratio, ease of fabrication (cutting, welding, bolting), and ready availability, it serves as an indispensable component in construction and manufacturing.
Stainless Steel H Steel
H-beam is a more optimized cross-sectional area distribution, more reasonable than the economic section of high-efficiency profiles, because of its section and the English letter "H" the same name. Since all parts of the H-beam are arranged at right angles, the H-beam has the advantages of strong bending resistance, simple construction, cost saving and light structure in all directions, and has been widely used.
Stainless Steel I-Beam
Stainless steel I-beams (also referred to as H-beams) are premium structural profiles engineered for applications where standard steel cannot perform. Combining the exceptional strength-to-weight ratio of the “I” cross-section with the inherent corrosion resistance of stainless steel, they offer a permanent solution for structures exposed to harsh environments, demanding hygiene standards, or requiring a lasting aesthetic finish. This eliminates the need for protective coatings and significantly reduces lifetime maintenance costs. Classification: Universal Beam (I-Beam / H-Beam)
Galvanized Angle Steel
Hot-dip galvanized angle steel is a standard structural angle that has been coated with a layer of zinc through immersion in molten zinc. This process creates a metallurgical bond, providing robust, long-lasting corrosion resistance. It combines the strength and versatility of the angle profile with superior protection against rust, making it an ideal, cost-effective choice for outdoor, marine, and industrial applications where durability with minimal maintenance is essential.
CHS Circular Steel Hollow Section
The Circular Hollow Section (CHS) is a versatile and efficient structural tube characterized by its continuous circular cross-section. This shape provides uniform strength in all directions, offering exceptional resistance to torsion and buckling. It is an ideal choice for applications ranging from high-performance structural columns and space frames to fluid-carrying members and architectural features, where its inherent symmetry and smooth profile deliver both engineering and aesthetic benefits. Our Circular Hollow Sections are manufactured to international standards including ASTM A500/A1085, EN 10219 (cold-formed), and EN 10210 (hot-finished), ensuring consistent quality and performance for global projects. Available in carbon steel grades such as S235JR, S355JR, and ASTM A500 Gr. B/C, they offer a superior strength-to-weight ratio that enables lighter, more material-efficient designs. The circular geometry is inherently efficient. It provides: Uniform Strength & Stiffness: Equal load-bearing capacity in every radial direction, perfect for columns and compressive members. High Torsional Resistance: The closed shape offers the best possible resistance to twisting forces. Excellent Fatigue Performance: The smooth, continuous surface minimizes stress concentrations. Optimal Fluid Dynamics: Ideal for structural members that also serve as conduits, pipes, or in fluid-exposed environments. Key Advantages: Structural Efficiency: Maximizes load capacity while minimizing weight and material usage. Design Flexibility: Suitable for both exposed architectural elements and hidden structural components. Fabrication Friendly: Easy to bend, roll, and form into arches and curves for complex geometries. Aesthetic Appeal: Offers a clean, modern, and continuous visual line. Typical Applications: Structural Systems: Building columns, arched roofs, truss chords, offshore platform braces. Mechanical & Fluid Systems: Machinery frames, hydraulic cylinder housings, conveyor rollers, process piping supports. Architectural & Infrastructure: Handrails, light poles, signage posts, sculptural installations, pedestrian bridges. Industrial: Storage rack uprights, guardrail systems, agricultural equipment frames.
Galvanized Unequal Angle Steel
Galvanized angle steel is divided into hot-dip galvanized angle steel and cold galvanized angle steel. Hot dip galvanized angle steel is also called hot dip galvanized angle steel or hot dip galvanized angle steel. The cold galvanized coating mainly ensures the full contact between zinc powder and steel through electrochemical principle, and generates electrode potential difference for anti-corrosion. Hot dip galvanized angle steel is also called hot dip galvanized angle steel or hot dip galvanized angle steel. It is to immerse the angle steel after derusting in molten zinc melted at about 500 ℃ to attach a zinc layer to the surface of the angle steel, thus achieving the purpose of anti-corrosion. It is suitable for strong corrosive environments such as various strong acids and alkali fogs. The cold galvanizing process is used to protect the metal from corrosion. For this purpose, a coating of zinc filler is used. It is applied to the protected surface by any coating method and dried to form a zinc filler coating with a content of zinc in the dried coating (up to 95%). Suitable for repair work (I. e., during repair work, only where the protected steel surface is damaged, the surface can be recoated as long as it is repaired). The cold galvanizing process is used for corrosion protection of various steel products and structures.