HCT600X (DP600) is a high-strength dual-phase steel grade that offers exceptional strength and versatility for a wide range of engineering applications. This steel grade is characterized by its unique mechanical and chemical composition, which provides superior performance in demanding environments. Mechanical Composition: – Yield strength: 600 MPa – Tensile strength: 650-800 MPa – Elongation at break: 15-25% – Hardness: 200-300 HV Chemical Composition: – C: 0.20% – Mn: 2.00% – P: 0.025% – S: 0.010% – Si: 0.50% – Al: 2.00% The high strength and excellent formability of HCT600X (DP600) make it suitable for various engineering applications, including automotive components, structural parts, and other high-stress applications. Its dual-phase structure also […]
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The HCT500X(DP500) steel grade is a high-strength, dual-phase steel that has become a game-changer in the manufacturing industry due to its superior mechanical and chemical composition. Mechanical Composition: – Tensile Strength: 500-650 MPa – Yield Strength: 450-550 MPa – Elongation: 15-25% – Hardness: 170-220 HB – Impact Energy: 40-60 J Chemical Composition: – Carbon (C): 0.15% – Manganese (Mn): 1.5% – Phosphorus (P): 0.05% – Sulfur (S): 0.025% – Silicon (Si): 0.5% – Aluminum (Al): 0.015% – Titanium (Ti): 0.15% – Boron (B): 0.005% The combination of high tensile and yield strength, good elongation, and excellent impact energy make HCT500X(DP500) steel grade an ideal choice for manufacturing applications that require […]
HCT500X (DP500) steel grade, also known as Dual-Phase 500, is a high-strength steel grade that offers several advantages when used in structural engineering applications. One of the key advantages of using HCT500X (DP500) steel grade is its high mechanical strength. This steel grade has a minimum yield strength of 500 MPa, which makes it suitable for applications where a high level of structural strength is required. This high strength-to-weight ratio allows for lighter and more efficient structural designs, reducing material and construction costs. Additionally, HCT500X (DP500) steel grade offers excellent formability and workability. This allows for the fabrication of complex shapes and structures, making it a versatile option for a […]
Mechanical Composition: – Tensile Strength: 500-700 MPa – Yield Strength: 500 MPa – Elongation: 22% min – Hardness: HRB 60-90 Chemical Composition: – C: 0.10% max – Mn: 1.70% max – P: 0.025% max – S: 0.010% max – Si: 0.50% max – Al: 0.015% min
HCT500X(DP500) is a high-strength steel grade with excellent mechanical and chemical properties, making it an ideal choice for use in manufacturing applications. Mechanical composition: – Tensile strength: 500-650 MPa – Yield strength: 500-550 MPa – Elongation: 18-23% – Hardness: 170-210 HB Chemical composition: – Carbon (C): 0.12% – Manganese (Mn): 1.6% – Phosphorus (P): 0.06% – Silicon (Si): 0.5% – Sulfur (S): 0.03% – Aluminum (Al): 0.4% – Titanium (Ti): 0.22% These properties make HCT500X(DP500) steel grade an attractive option for various manufacturing processes, such as automotive components, structural parts, and high-strength applications where lightweight and durable materials are required.
introduction Unveiling the Strength of HCT500X(DP500) Steel Grade: A Breakthrough in Construction Technology The HCT500X(DP500) steel grade is rapidly gaining popularity in the construction industry due to its exceptional strength and durability. This breakthrough in construction technology is revolutionizing the way buildings and infrastructure are designed and constructed. With its unique mechanical and chemical composition, HCT500X(DP500) steel grade offers superior performance and reliability, making it an ideal choice for a wide range of construction applications. Mechanical Composition: The HCT500X(DP500) steel grade exhibits high tensile strength, excellent elongation, and superior formability, making it suitable for various construction projects. It has a minimum yield strength of 500 MPa and a minimum tensile […]
Mechanical Composition: – Yield Strength (R p0.2): ≥ 450 MPa – Tensile Strength (R m): 470-600 MPa – Elongation (A 80): ≥ 17% – Minimum Bend Radius (measured at 90°): 0-2.0t Chemical Composition: – Carbon (C): ≤ 0.18% – Manganese (Mn): ≤ 2.00% – Phosphorus (P): ≤ 0.025% – Sulfur (S): ≤ 0.010% – Silicon (Si): ≤ 1.00% – Aluminum (Al): ≤ 0.015% – Titanium (Ti): ≤ 0.22% – Boron (B): ≤ 0.005% – Nitrogen (N): ≤ 0.010% Note: The mechanical and chemical composition may vary depending on the manufacturer and specific product form. It is important to refer to the product datasheet for accurate information.
physical properties The Environmental Benefits of HCT450X+Z(DP450+Z) Steel Grade in Sustainable Engineering – High strength and lightweight, reducing material usage and transportation energy – Excellent formability, allowing for complex shapes and parts to be produced with minimal waste – Good weldability, enabling easy repair and recycling of components – Corrosion resistance, extending the lifespan of structures and reducing the need for maintenance – Recyclability, promoting circular economy and reducing the demand for virgin materials
Specification: – Grade: HCT450X+Z(DP450+Z) – Material Type: Steel – Standard: Industry Standards – Mechanical Properties: High strength, ductility, and formability – Chemical Composition: Advanced alloying elements for improved performance – Coating: Zinc coating for corrosion resistance – Application: Automotive and construction industry Mechanical Composition: – Tensile Strength: 450 MPa – Yield Strength: 350 MPa – Elongation: 23% – Hardness: HB 140-170 – Formability: Excellent Chemical Composition: – Carbon: 0.12% – Manganese: 1.2% – Phosphorus: 0.03% – Sulfur: 0.015% – Silicon: 0.2% – Aluminum: 1.5% – Zinc Coating: 50 g/m2
Steel Grade: HCT450X+Z(DP450+Z) Mechanical Composition: – Yield strength: 450 MPa – Tensile strength: 470-590 MPa – Elongation: 23% – Hardness: HRc 20-30 – Bendability: 0T-2T Chemical Composition: – Carbon (C): ≤0.20% – Manganese (Mn): ≤1.00% – Phosphorus (P): ≤0.025% – Sulfur (S): ≤0.015% – Silicon (Si): ≤0.50% – Aluminum (Al): ≥2.00% Application: – Construction and structural engineering – Automotive industry – Appliance manufacturing – General engineering Benefits: – High strength and excellent formability – Good weldability and bendability – Enhanced corrosion resistance – Lightweight design potential – Cost-effective solution for high-performance applications