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q345

Product Description

The chemical composition range of Q345 steel is shown in the following table:

 

Element Q345A Q345B Q345C Q345D Q345E
Carbon (C) ≤0.20% ≤0.20% ≤0.20% ≤0.18% ≤0.18%
Silicon (Si) ≤0.50% ≤0.50% ≤0.50% ≤0.50% ≤0.50%
Manganese (Mn) ≤1.70% ≤1.70% ≤1.70% ≤1.70% ≤1.70%
Phosphorus (P) ≤0.035% ≤0.035% ≤0.030% ≤0.030% ≤0.025%
Sulfur (S) ≤0.035% ≤0.035% ≤0.030% ≤0.025% ≤0.020%
Vanadium (V) ≤0.15% ≤0.15% ≤0.15% ≤0.15% ≤0.15%
Niobium (Nb) ≤0.07% ≤0.07% ≤0.07% ≤0.07% ≤0.07%
Aluminum (Al) ≥0.015% ≥0.015% ≥0.015%
Titanium (Ti) ≤0.20% ≤0.20% ≤0.20% ≤0.20% ≤0.20%
Chromium (Cr) ≤0.30% ≤0.30% ≤0.30% ≤0.30% ≤0.30%
Nickel (Ni) ≤0.50% ≤0.50% ≤0.50% ≤0.50% ≤0.50%
Copper (Cu) ≤0.30% ≤0.30% ≤0.30% ≤0.30% ≤0.3

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Grade Classification

 

Q345 steel can be divided into Q345A, Q345B, Q345C, Q345D and Q345E according to the quality grade. The main difference between them is the impact temperature and the control of harmful elements such as phosphorus and sulfur. For example, the content of phosphorus and sulfur in Q345E is stricter than that in Q345A.
Welding Characteristics

 

  • Carbon Equivalent: The carbon equivalent of Q345 steel is relatively high, generally greater than 0.45%, so its welding performance is not very good. During welding, it is easy to form a quenched structure in the heat-affected zone, resulting in an increase in hardness and a decrease in plasticity, which may lead to cracks after welding.
  • Preheating and Post-weld Heat Treatment: In order to improve the welding quality, appropriate preheating measures are often required before welding, and post-weld heat treatment may also be needed in some cases to eliminate welding residual stress and improve the comprehensive performance of the welded joint.
Applications

 

  • Construction Industry: It is used to make building structures, such as beams, columns, and frameworks, which can improve the load-bearing capacity and seismic performance of buildings.
  • Bridge Engineering: It is an important material for manufacturing bridge components, such as bridge decks, girders, and piers, and can withstand the load and impact of vehicles and ensure the safety and durability of the bridge.
  • Vehicle Manufacturing: It is used to manufacture vehicle chassis, frames, and other components, which can improve the strength and rigidity of the vehicle and ensure the safety and reliability of the vehicle.
  • Shipbuilding Industry: It is used to manufacture ship hulls, decks, and other components, which can improve the strength and corrosion resistance of the ship and ensure the safety and durability of the ship.

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