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304L

Stainless Steel 304L PN 25 Flanges are composed of an alloy of iron and chromium, which also includes other additives such as nickel and manganese. This unique combination creates a solid and flexible metal resistant to corrosion. It is widely used in industries where high performance in water-rich environments is essential, like petrochemical processing and wastewater treatment. Due to its robustness and corrosion resistance, Stainless Steel 304L PN 25 Flange is widely used in pipe systems related to drinking water storage tanks, seawater coolers, condensers, heat exchangers, medical equipment housings, desalinators constructions and in many industrial applications making it indispensable in modern living.

304L Stainless Steel PN 25 Flanges are versatile, corrosion-resistant components for connecting tubes, pipes, and other equipment. This flange can be applied in chemical processing, oil refineries, water supply systems, gas pipelines, and cryogenic applications. Its properties make it an ideal choice in industries requiring superior mechanical strength, excellent fabrication ability and long-term durability. It is also preferred because its low carbon content prevents grain boundary chromium carbide precipitation, which would typically reduce the corrosion resistance of stainless steel under high temperatures or extreme pressure conditions. Furthermore, its good formability enables it to be fabricated into complex shapes as needed by various applications.

FAQ's for Stainless Steel 304L PN 25 Flanges

The Harmonized System Nomenclature (HSN) Code for 25 Flanges of Stainless Steel 304L is 73079990.

Testing Stainless Steel 304L PN 25 Flanges involves the use of a variety of methods and techniques to determine their quality and performance. Commonly used tests include visual inspection, pneumatic leak testing, hardness testing, chemical composition analysis, strength and ductility testing, impact testing, corrosion testing and hardness mapping

Identifying the grade of Stainless Steel 304L PN 25 Flanges can be done by performing visual inspections and chemical composition tests. Visual inspection is used to identify any mechanical or structural defects in the flange, while chemical composition tests are used to check the specific alloy content of the flange.

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