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WPHY 46

Carbon Steel WPhy 46 Lateral Tee Pipe Fittings are composed of various components. It contains carbon, manganese, phosphorus, sulfur, silicon, and added metals such as chromium and molybdenum. The added metals provide strength and durability, while the silicon improves weldability. This type of steel is highly resistant to rusting in both moist and corrosive environments due to its high levels of chromium content. The combination of components allows for a robust fitting lasting for decades with minimal maintenance.

46 Carbon steel WPhy lateral tee pipe fittings are beneficial and versatile components in various mechanical systems. Taking advantage of their strength and comprehensive pressure ratings, these fittings are designed to safely transfer liquids, air, gas, steam, oil, and more. Apart from their ability to directly connect two pipes at 90-degree angles, they also can be used as reducers that allow fitting two different-diameter lines into one another. Additionally, the smooth interior glaze of carbon steel WPhy 46 provides an unrestricted internal fluid flow. Furthermore, their superior corrosion resistance makes them durable against harsh environmental conditions. Carbon steel WPhy 46 lateral tee pipe fittings provide reliable operation throughout many years of use.

FAQ's for Carbon Steel WPHY 46 Lateral Tee Pipe Fittings

The HSN code for Carbon Steel WPhy 46 Lateral Tee Pipe Fittings is 74121000. It is used by customs authorities worldwide to determine tariffs and other duties on the import and export of these fittings.

Welding Carbon Steel WPhy 46 Lateral Tee Pipe Fittings involves welding a joint between two adjoining pipes. This can be done either with gas welding or arc welding, depending on the type of application and environment in which it is being performed. The weld should then be tested for tightness, strength and structural integrity.

Yes, Carbon Steel WPhy 46 Lateral Tee Pipe Fittings are magnetic as they contain a high proportion of iron within their composition which makes them magnetic when a magnet is brought into close contact with them.

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