Based in Delhi, India, Harshita Stainless is a reputable manufacturer and supplier of stainless steel 304L pipes that is renowned for providing premium, corrosion-resistant piping solutions. The business provides services to the food processing, water treatment, chemical, and pharmaceutical industries with a strong emphasis on accuracy, performance, and durability. Harshita Stainless manufactures SS 304L pipes with stringent quality controls and cutting-edge technology to guarantee uniformity and adherence to international standards. These pipes are perfect for critical applications that require corrosion resistance, long service life, and ease of fabrication because of their superior weldability and low carbon content.
Low-carbon stainless steel 304L pipes have a maximum carbon content of 0.03%, 18–20% chromium, and 8–12% nickel. 304L is perfect for welded structures because of its lower carbon content, which enhances resistance to intergranular corrosion after welding. The alloy has a yield strength of 170 MPa, a tensile strength of roughly 485 MPa, and an elongation of roughly 40%. SS 304L has high ductility, good formability, and outstanding corrosion resistance. These pipes are non-magnetic in the annealed condition and perform reliably in both oxidizing and mildly corrosive environments.
Dimensions | ASTM, ASME and API |
Specialized in | Large Diameter Size |
Schedule | SCH20, SCH30, SCH40, STD, SCH80, XS, SCH60, SCH80, SCH120, SCH140, SCH160, XXS |
Type | Seamless / ERW / Welded / Fabricated / LSAW Pipes |
Form | Round, Square, Rectangular, Hydraulic Etc |
Length | Single Random, Double Random & Cut Length. |
End | Plain End, Beveled End, Treaded |
Grade | C | Mn | Si | P | S | Cr | Mo | Ni | N |
SS 304L | 0.035 max | 2 max | 1.0 max | 0.045 max | 0.030 max | 18 – 20 | – | 8 – 12 | – |
Density | Melting Point | Tensile Strength | Yield Strength (0.2%Offset) | Elongation |
8.0 g/cm3 | 1400 °C (2550 °F) | Psi – 75000 , MPa – 515 | Psi – 30000 , MPa – 205 | 35 % |
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We ensures the highest quality for Stainless Steel 304L Pipes through rigorous testing, including chemical analysis, mechanical testing, and dimensional verification. We provide comprehensive certificates, including material test certificates (MTC) and compliance reports, guaranteeing the pipes meet international standards for performance, durability, and reliability in every application.
Stainless Steel 304L ERW (Electric Resistance Welded) pipes are produced by welding stainless steel strips, offering low-carbon content for excellent weldability and corrosion resistance in various applications.
Stainless Steel 304L EFW (Electric Fusion Welded) pipes are made by fusing stainless steel plates, providing strong, durable pipes with low carbon content, ideal for chemical and food processing industries.
Stainless Steel 304L LSAW (Longitudinally Submerged Arc Welded) pipes are created using a submerged arc welding process, offering high strength and corrosion resistance, suitable for large-diameter applications.
Stainless Steel 304L Seamless pipes are manufactured without welding, providing uniform strength and resistance to corrosion and high temperatures, ideal for critical applications in chemical, food, and pharmaceutical industries.
Stainless Steel 304L Welded pipes are produced by welding stainless steel sections, offering versatility and cost-effectiveness for structural and industrial uses, with low carbon content enhancing weldability.
Stainless Steel 304L Square pipes are precision-cut with a square cross-section, providing aesthetic appeal and structural support for architectural and construction projects, combining formability with excellent corrosion resistance.
Stainless steel 304L pipe has a vast range of application with excellent corrosion resistance and weldability. It is used mainly for corrosion management in the chemical and petrochemical industries. Food processing uses this material and pipes in the manufacture and dispensation of chemicals in the chemical industry. With low carbon yield, when it is precipitating carbide due to welding, the material becomes an ideal component in building materials which have applications on architecture and industrial use wherein strength and resistance against corrosion is critical.
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