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A420 WPL3

A420 WPL3 Low-Temperature Carbon Steel 3D Pipe Bend is an alloy combining iron and carbon with manganese, sulphur, phosphorus and silicon components. The chemical composition of this bend comprises 0.29-1.20% of carbon, 1.30-1.60% manganese, no more than 0.025% of sulphur and 0.025-0.080% phosphorus; aside from these essential components, Low-Temperature Carbon Steel A420 WPL3 3D Pipe Bend may also contain 0.10-0.50% Silicon for improved performance characteristics such as better machining capacities in a wide range of industrial applications which require low-temperature services like gas pipelines etcetera.

Low-Temperature Carbon Steel A420 WPL3 3D Pipe Bend is a versatile and robust material widely used due to its exceptional properties and adaptability in various industries. One of the critical attributes of this steel lies in its ability to withstand shallow temperatures without compromising on its strength and flexibility, making it suitable for applications such as the processing and transportation of cryogenic liquids and natural gas industries. The 3D bending technology provides smooth transitions and evenly distributed stress along the bend, allowing for efficient fluid flow and reduced turbulence in piping systems. Additionally, the A420 WPL3 alloy offers impressive resistance to corrosion and wear, thanks to its balanced chemistry, ensuring a prolonged lifespan for your infrastructure. With its blend of durability, flexibility, and resilience, Low-Temperature Carbon Steel A420 WPL3 3D Pipe Bend is the optimal choice for engineers and industry professionals seeking effective, sustainable, and reliable solutions for their piping needs.

FAQ's for Low Temperature Carbon Steel A420 WPL3 3D Pipe Bend Pipe Fittings

The HSN Code for A420 WPL3 3D pipe bend is 73079990.

Low-temperature welding of A420 WPL3 pipe bends can be achieved by using a low hydrogen electrode and preheating to 200-300°F before welding.

Yes, Low Temperature Carbon Steel A420 WPL3 3D Pipe Bend is magnetic as this material has a ferritic microstructure which contains iron, making it magnetic.

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