Home > Alloy Steel > Alloy Steel Gr 5 Coils
Alloy Steel Grade 5 Coils, borne from the fusion of advanced metallurgical principles and artisanal expertise, epitomize the pinnacle of material engineering. carefully custom-built through a synthesis of specialized alloys, these coils stand as a testament to human ingenuity and precision. Engineered with meticulous attention to detail, Alloy Steel Grade 5 Coils boast unparalleled strength, resilience, and longevity, catering to the demanding requirements of industries ranging from aerospace to manufacturing. Their creation involves a meticulous blend of scientific knowledge and hands-on craftsmanship, ensuring that each coil meets exacting standards for performance and reliability. As a cornerstone of modern engineering, Alloy Steel Grade 5 Coils exemplify the seamless harmony between human skill and metallurgical innovation, driving progress across diverse sectors.
Specification : ASTM A387 / ASME SA387
Thickness : 1mm To 300 mm
Width : 1000mm, 1219mm, 1500mm, 1800mm, 2000mm, 2500mm, 3000mm, 3500mm, 4050mm etc
Finish : Hot rolled plate (HR), Cold rolled sheet (CR), 2B, 2D, BA NO(8), SATIN (Met with Plastic Coated)
Form : Coils, Foils, Rolls, Plain Sheet, Shim Sheet, Perforated Sheet, Chequered Plate, Strip, Flats, Blank (Circle), Ring (Flange) etc.
Surface : 2B, 2D, BA, NO.1, NO.4, NO.8, 8K, mirror, checkered, embossed, hair line, sand blast, Brush, etching, etc
Origin : Indian Origin, European Origin, Japanese Origin
Testing and Documents : Mill Test Certificates, EN 10204 3.1, Chemical Reports, Mechanical Reports, Destructive Test Report, Non Destructive Test Reports, PMI Test Reports, Visual Inspection Reports, Third Party Inspection Reports, NABL Approved Lab Reports
Packing : Packed in Wooden Boxes, Bubble wraps, Steel Strips Bundled, or as per Customers Requests
Tensile (MPa) | Yield (MPa) | Elongation (50mm) | Elongation (200mm) | Reduction of Area |
415 – 585 | 205 min | 18% min | – | 40% min |
Grade | C | Mn | Si | P | S | Cr | Mo |
Alloy Steel Gr 5 | 0.15 max | 0.30-0.60 | 0.5 max | 0.035 max | 0.030 max | 4.0 – 6.0 | 0.45 – 0.65 |
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We offer These Alloy Steel Gr 5 Coils as per DIN, ISO, JIS or ANSI Standard.
Alloy Steel Gr 5 Coils 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.
Automotive Industry: Alloy steel grade 5 coils are used in the manufacture of automotive parts such as gears, shafts, axles and suspension parts due to their high strength, toughness and wear resistance
Power generation: Alloy steel grade 5 coils are used in turbines, generators, and other equipment because of their ability to withstand high temperatures and pressures during power generation.
Construction Industry: These coils are used in construction for building materials, beams, columns and reinforcing bars due to their high strength and durability
Oil and Gas Industry: Alloy steel grade 5 coils find applications in the oil and gas sector for the manufacture of pipeline valves and drilling machines due to their corrosion resistance, high pressure and high temperature
Aerospace Applications: Used in aircraft components such as landing gear, engine parts and interiors due to their high strength and weight and resistance to fatigue and corrosion
Define your requirements: Understand the application for which you need alloy steel coils. Consider factors such as environmental factors (temperature, corrosion conditions), technical requirements (strength, flexibility), and any specific industry standards or regulations that must be met.
Finishes and coatings: Consider whether any finishes or coatings are needed to increase the coils’ corrosion resistance, improve their aesthetics, or make them easier to service again. Common coatings include galvanized zinc-nickel or polymer coatings.
Mechanical properties: Determine the mechanical properties required for your application, such as tensile strength, power gain, extensibility, stiffness, and shock resistance. Make sure the quality of the Grade 5 alloy meets or exceeds your specifications.
Materials: Alloy Steel Grade 5 generally refers to ASTM A387 Grade 5, a chromium-molybdenum alloy steel. Check the product’s specific chemical composition to ensure it meets your application’s requirements. Check the percentage of chromium, molybdenum, carbon, and other alloys.
Yes, alloy steel coils can be welded. However, the welding process may vary depending on the specific alloy composition and properties of the coils. Generally, preheating and post-weld heat treatment may be required to prevent cracking and ensure proper weld strength. Additionally, selecting the appropriate welding technique, filler metal, and welding parameters is essential to achieve high-quality welds and maintain the integrity of the alloy steel coils. With proper preparation and execution, alloy steel coils can be successfully welded to fabricate various components and structures for diverse industrial applications.
Alloy Steel Grade 5 coils find applications in industries requiring high-temperature resistance and corrosion resistance, such as power generation (boilers, turbines), chemical processing (reactors, vessels), and oil and gas (pipelines, refineries). They are also used in structural components requiring strength and toughness in harsh environments.
Recommended welding techniques for joining Alloy Steel Grade 5 coils include gas tungsten arc welding (GTAW/TIG) and shielded metal arc welding (SMAW). Preheating and post-weld heat treatment may be necessary to avoid cracking and maintain desired mechanical properties. Consult welding procedure specifications (WPS) and qualified welders for best results.
Yes, Alloy Steel Grade 5 requires proper machining techniques due to its high hardenability. Use carbide tooling with adequate cutting speeds and feeds to minimize tool wear. Preheating may be necessary for heavy sections. Post-machining stress relief annealing can reduce residual stresses and improve dimensional stability.
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