Home > Alloy Steel > Alloy Steel Gr 9 Bars
Alloy Steel Gr 5 Bars are robust and versatile components known for their high tensile strength and excellent corrosion resistance. Ideal for applications requiring durability and reliability in challenging environments, these bars are widely used in industries such as aerospace, oil and gas, and automotive. Their superior mechanical properties make them essential for structural and machining applications where strength and resilience are paramount.
Specifications ASTM A182 / ASME SA182
Standard ASTM, ASME and API
Range 4 mm to 350 mm dia
Length 1000 mm Long To 6000 mm Long
Finish Bright, Polish & Black
Condition Cold Drawn & Polished Cold Drawn, Centreless Ground & Polished
Form Round, Square, Hex (A/F), Rectangle, Wire (Coil Form), Wire-mesh, Billet, Ingot, Forging Etc.
Grade Alloy Steel ASTM A182 F5 Round Bars UNS (K41545) )
Grade | Tensile Strength (ksi) min | Elongation (% in 50mm) min | Yield Strength 0.2% Proof (ksi) min | Hardness |
ASTM A182 F5 | 415 | 30 | 205 | – |
Grade | C | Cr | Si | S | Mn | P | Mo |
ASTM A182 F5 | 0.15 max | 4.0 – 6.0 | 0.50 max | 0.030 | 0.30 – 0.6 | 0.035 | 0.44 – 0.65 |
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We offer These Alloy Steel Gr 9 Bars as per DIN, ISO, JIS or ANSI Standard.
Alloy Steel Gr 9 Bars applications are as diverse as the industries they serve driven primarily by the aerospace, railway, construction and automotive industries with petrochemical, nuclear, medical, Oil & Gas, Chemical, Pharmaceutical, Food & Beverage, Nuclear, Thermal Power plants, Paper and Pulp, marine and mining, etc.
Alloy Steel Grade 9 Bars, despite their corrosion resistance, can be susceptible to galvanic corrosion under certain conditions. Galvanic corrosion occurs when two different metals or alloys are in electrical contact in the presence of an electrolyte (such as moisture). If Alloy Steel Grade 9 Bars come into direct contact with a more noble metal (such as aluminum or stainless steel) in a conductive environment, galvanic corrosion may occur. To mitigate this risk, proper insulation or the use of compatible materials in assemblies is recommended to prevent direct contact between dissimilar metals and minimize the potential for galvanic corrosion.
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