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Technical Specifications
Product Overview
Steel Rebar (Reinforcing Bar) is manufactured from high-quality carbon steel designed specifically for concrete reinforcement applications. This deformed steel bar provides excellent bond strength with concrete and meets stringent construction industry standards for structural integrity.
Key Features:
- Superior bond strength with concrete due to deformed surface
- High tensile and yield strength for structural applications
- Excellent ductility and bendability
- Corrosion resistant coating options available
- Consistent mechanical properties throughout length
Manufacturing Process: Hot-rolled from quality billets using controlled rolling technology, followed by precision cutting and surface deformation to create optimal rib patterns for concrete bonding.
Applications: Reinforced concrete construction, building foundations, bridges, highways, tunnels, retaining walls, precast concrete elements, and general structural concrete reinforcement in residential and commercial projects.
🧪 Chemical Composition
Element | Min % | Max % | Typical % | ASTM A615 Requirement |
---|---|---|---|---|
Carbon (C) | - | 0.30 | 0.24 | ≤ 0.30 |
Manganese (Mn) | 0.30 | 1.50 | 0.85 | 0.30-1.50 |
Silicon (Si) | 0.15 | 0.35 | 0.25 | 0.15-0.35 |
Phosphorus (P) | - | 0.040 | 0.025 | ≤ 0.040 |
Sulfur (S) | - | 0.050 | 0.030 | ≤ 0.050 |
Chromium (Cr) | - | 0.30 | 0.15 | ≤ 0.30 |
Nickel (Ni) | - | 0.30 | 0.12 | ≤ 0.30 |
Copper (Cu) | - | 0.40 | 0.20 | ≤ 0.40 |
Iron (Fe) | Balance | Balance | 98.1 | Balance |
⚙️ Mechanical Properties
Property | ASTM Requirement | Typical Value | Test Method | Temperature |
---|---|---|---|---|
Tensile Strength | 620 MPa min | 690 MPa | ASTM A370 | Room Temp |
Yield Strength | 420 MPa min | 460 MPa | ASTM A370 | Room Temp |
Elongation | 9% min | 12% | ASTM A370 | Room Temp |
Bend Test | 180¡ã bend | Pass | ASTM A615 | Room Temp |
Hardness (Brinell) | - | 200-250 HB | ASTM E10 | Room Temp |
Modulus of Elasticity | - | 200 GPa | ASTM E111 | Room Temp |
Impact Energy (Charpy V) | - | 25+ J | ASTM E23 | Room Temp |
🔬 Physical Properties
Property | Value | Unit | Temperature | Test Standard |
---|---|---|---|---|
Density | 7.85 | g/cm3 | 20¡ãC | ASTM B311 |
Melting Point | 1510-1540 | ¡ãC | - | DSC Analysis |
Thermal Conductivity | 50.2 | W/m·K | 100¡ãC | ASTM E1461 |
Specific Heat | 460 | J/kg·K | 0-100¡ãC | ASTM C351 |
Linear Expansion | 11.7 | μm/m·K | 0-100¡ãC | ASTM E228 |
Electrical Resistivity | 170 | nΩ·m | 20¡ãC | ASTM B193 |
Magnetic Permeability | High | μ/μ₀ | Room Temp | ASTM A342 |
Curie Temperature | 770 | ¡ãC | - | Magnetic |
📏 Product Specifications
Specification | Available Range | Standard Length | Custom Available | Tolerance |
---|---|---|---|---|
Diameter | 6mm - 50mm | Various | Yes | ±0.5mm |
Length | 6m - 12m | 12m | Yes | +100mm/-0mm |
Grade | Grade 40, 60, 75 | Grade 60 | Yes | ASTM Standard |
Surface Pattern | Deformed, Plain | Deformed | Both | ASTM A615 |
Rib Pattern | Standard, Custom | Standard | Yes | ASTM A615 |
Coating | Black, Epoxy, Galvanized | Black | Yes | ASTM A775 |
Standards Compliance | ASTM A615, A706, BS4449 | A615 | Multiple | Full compliance |
Bend Test Diameter | 3d - 6d | 4d | Standard | ASTM A615 |
Test Certificate | Mill TC, EN 10204 3.1 | Mill TC | Yes | Standard |
Packaging | Bundles, Loose | Bundles | Custom | Export standard |
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Our Advantages in Processing Aço Armado

Advanced Steel Rolling Process
Utilizing state-of-the-art hot rolling technology to produce uniform rebar with precise dimensional accuracy and optimal mechanical properties. This process ensures consistent strength throughout the entire length while maintaining strict tolerance controls.
Controlled Carbon Steel Composition
Precise metallurgical control during manufacturing ensures the ideal carbon content and alloying elements, resulting in superior tensile strength and ductility. Each batch undergoes rigorous chemical composition testing for quality assurance.


Ribbed Surface Engineering
Specialized deformation pattern applied during the rolling process creates optimal surface geometry with precisely engineered ribs and deformations, maximizing bond strength between the rebar and concrete in structural applications.
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