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AR200 Abrasion Resistant Steel Plate

AR200 Abrasion Resistant Steel Plate is a high-strength, wear-resistant steel designed to withstand moderate abrasive environments. Known for its durability, hardness, and toughness, AR200 steel plates are widely used in applications where abrasion and surface wear are common.

These plates offer excellent resistance to sliding wear, impact, and surface damage while maintaining good machinability and weldability. AR200 plates are commonly used in mining equipment, material handling systems, agricultural machinery, and structural components exposed to abrasive materials.

At Emirerri Steel, AR200 Abrasion Resistant Steel Plates are supplied with consistent hardness and reliable mechanical properties, ensuring long service life and dependable performance in demanding industrial environments.

AR200 Steel Plate

Key Features

  • Excellent resistance to abrasion and wear
  • High strength with moderate hardness
  • Good weldability and machinability
  • Long service life in abrasive environments
  • Suitable for structural and wear applications
  • Reliable performance under impact loads

AR200 Abrasion Resistant Steel Plate Specifications

Specification Details
Grade AR200 Abrasion Resistant Steel
Standard ASTM / ASME
Hardness Approx. 200 BHN
Thickness 3 mm – 100 mm
Width 1000 mm – 3000 mm
Length 2000 mm – 12000 mm
Form Plate, Sheet
Supply Condition Hot Rolled

AR200 Equivalent Grades

Standard Equivalent Grade
ASTM AR200
EN S235JR / S275JR (Comparable)
DIN St37
JIS SS400

Available Sizes

AR200 Abrasion Resistant Steel Plates are available in a wide range of sizes to meet various industrial requirements.

  • Thickness: 3 mm to 100 mm
  • Width: 1000 mm to 3000 mm
  • Length: 2000 mm to 12000 mm

Custom sizes and cut-to-length plates can also be supplied based on project requirements.

AR200 Chemical Composition

Element Percentage (%)
Carbon (C) 0.15 – 0.25
Manganese (Mn) 0.70 – 1.20
Silicon (Si) 0.10 – 0.40
Phosphorus (P) ≤ 0.035
Sulfur (S) ≤ 0.040

AR200 Mechanical Properties

Property Value
Hardness ~200 BHN
Yield Strength 250 – 350 MPa
Tensile Strength 400 – 550 MPa
Elongation ≥ 20%

AR200 Physical Properties

Property Value
Density 7.85 g/cm³
Melting Point 1420 – 1460 °C
Thermal Conductivity 50 W/m·K
Modulus of Elasticity 200 GPa

Types of AR200 Steel Plates

AR200 wear plates are available in several forms depending on industrial requirements.

  • AR200 Standard Plates
  • AR200 Cut-to-Size Plates
  • AR200 Fabricated Components

Corrosion Resistance

AR200 Abrasion Resistant Steel Plates offer moderate resistance to corrosion in normal atmospheric conditions. However, they are not specifically designed as corrosion-resistant materials. For applications exposed to moisture or chemicals, protective coatings, painting, or galvanizing may be recommended to improve corrosion resistance.

Heat Resistance

AR200 plates can withstand moderate temperature conditions without significant loss of mechanical properties. However, prolonged exposure to very high temperatures may reduce hardness and wear resistance.

These plates are generally suitable for applications involving moderate heat and mechanical stress.

Heat Treatment

AR200 steel plates are typically supplied in the as-rolled condition and do not require extensive heat treatment. In some cases, processes such as normalizing or stress relieving may be performed to improve structural stability and mechanical performance.

Proper heat treatment helps maintain the hardness and wear resistance of the steel plate.

Welding

AR200 Abrasion Resistant Steel Plates have good weldability when proper welding procedures are followed.

Common welding methods include:

  • Shielded Metal Arc Welding (SMAW)
  • Gas Metal Arc Welding (GMAW / MIG)
  • Flux-Cored Arc Welding (FCAW)
  • Submerged Arc Welding (SAW)

Preheating may be recommended for thicker plates to prevent cracking and ensure strong weld joints.

Fabrication

AR200 plates can be fabricated using conventional steel fabrication techniques. These include:

  • Cutting
  • Drilling
  • Bending
  • Machining
  • Forming

Due to their hardness, appropriate tooling and cutting techniques should be used to achieve accurate fabrication results.

Applications

  • Mining and quarry equipment
  • Dump truck bodies
  • Conveyor systems
  • Agricultural machinery
  • Material handling equipment
  • Structural components
  • Industrial chutes and hoppers
  • Wear liners and protective plates

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