Tag Archives: Treatment

Understanding the Composition and Heat Treatment of 420S45 Stainless Steel

[ad_1] 420S45 stainless steel is a martensitic stainless steel with a chemical composition of: – Carbon (C): 0.36-0.42% – Silicon (Si): max. 1% – Manganese (Mn): max. 1% – Phosphorus (P): max. 0.04% – Sulfur (S): max. 0.03% – Chromium (Cr): 12.0-14.0% The high carbon content in 420S45 stainless steel makes it a hardenable steel […]

Examining the Heat Treatment and Machinability of 41CrMo4 Steel Grade

[ad_1] The chemical composition of 41CrMo4 steel typically includes the following elements: – Carbon (C): 0.38-0.45% – Silicon (Si): 0.15-0.35% – Manganese (Mn): 0.60-0.90% – Phosphorus (P): ≤0.025% – Sulfur (S): ≤0.035% – Chromium (Cr): 0.90-1.20% – Molybdenum (Mo): 0.15-0.30% These elements contribute to the steel’s overall properties and performance, including its heat treatment characteristics […]

Examining the Heat Treatment Process for 41CrMo4 Steel Grade

[ad_1] Mechanical Properties: – Tensile strength: 1000-1200 MPa – Yield strength: 850-1000 MPa – Elongation: 13-17% – Hardness: 30-36 HRC – Impact strength: 27-35 J Technical Properties: – Density: 7.85 g/cm3 – Young’s Modulus: 210 GPa – Poisson’s Ratio: 0.3 – Thermal Conductivity: 42 W/mK – Specific Heat Capacity: 460 J/kgK Chemical Composition: – Carbon […]

The Heat Treatment Process of 41CrMo4 Steel Grade: Enhancing its Mechanical Properties

[ad_1] The 41CrMo4 steel grade is a medium carbon and low alloy steel that is commonly used in the automotive and machinery industries due to its high strength and toughness. In order to further enhance its mechanical properties, the steel undergoes a heat treatment process that involves several stages. The chemical composition of 41CrMo4 steel […]

The Advantages of Heat Treatment in Enhancing the Properties of 41CrAlMo7 Steel Grade

[ad_1] The 41CrAlMo7 steel grade is a low alloy steel known for its high strength and excellent resistance to wear and corrosion. Heat treatment is a common process used to further enhance the properties of this steel grade, leading to several advantages: 1. Improved hardness and strength: Heat treatment can increase the hardness and strength […]

The Heat Treatment Process for Enhancing the Strength of 41Cr4 Steel Grade

[ad_1] Mechanical Properties: – Tensile strength: 780-1030 MPa – Yield strength: 650-900 MPa – Elongation: 14-18% – Hardness: 26-32 HRC Technical Properties: – Good hardenability – High strength and toughness – Excellent wear resistance – Good fatigue strength – Suitable for high-stress applications Chemical Composition: – Carbon (C): 0.38-0.45% – Silicon (Si): 0.40% max – […]

A Comprehensive Guide to the Heat Treatment Process for 41Cr4 Steel Grade

[ad_1] The 41Cr4 steel grade is a low alloy steel with a carbon content of 0.40% and chromium content of 1% – 1.4%. It also contains small amounts of other alloying elements such as manganese, silicon, and phosphorus. This composition gives the steel grade good hardenability, toughness, and wear resistance, making it suitable for use […]

A Closer Look at the Heat Treatment Process for 416S21 Steel

[ad_1] A Closer Look at the Heat Treatment Process for 416S21 Steel Mechanical Properties: – Tensile Strength: 655 MPa – Yield Strength: 275 MPa – Elongation: 20% – Hardness: 262 HB Technical Properties: – Density: 7.75 g/cm3 – Melting Point: 1450°C – Thermal Conductivity: 24 W/m·K – Specific Heat Capacity: 460 J/kg·K Chemical Composition: – […]

The Impact of Heat Treatment on the Performance of 40NiCrMo22 Steel

[ad_1] The 40NiCrMo22 steel is a low alloy steel with a chemical composition of 0.37-0.45% carbon, 0.50-0.80% manganese, 1.40-1.80% nickel, 0.40-0.60% chromium, 0.15-0.25% molybdenum, and trace amounts of other elements such as sulfur and phosphorus. The mechanical properties of 40NiCrMo22 steel are significantly impacted by the heat treatment process. Through heat treatment, the steel can […]

Exploring the Heat Treatment and Machinability of 40NiCrMo2 KB Steel Grade

[ad_1] The 40NiCrMo2 KB steel grade is a low alloy steel with a chemical composition of approximately 0.37-0.45% carbon, 1.60-1.90% nickel, 0.50-0.80% chromium, and 0.15-0.30% molybdenum. This composition provides the steel with a good combination of strength, toughness, and wear resistance. The mechanical properties of 40NiCrMo2 KB steel grade can be improved through heat treatment. […]