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601

Inconel 601 Split Tee Pipe Fittings contain a combination of nickel, chromium and iron as their primary chemical composition. The alloy is a solid solution-strengthened construction containing up to 24% chromium for resistance from oxidation at high temperatures. It offers excellent mechanical properties, weldability, and formability in high-temperature environments. In addition to its resilience against harsh environments, it resists chloride ion stress corrosion cracking and intergranular corrosion when exposed to atmospheres that contain sulfuric acid or other similar compounds. Furthermore, this alloy is resistant to corrosion in many organic acids, such as formic and acetic acids. Consequently, Inconel 601 is a highly reliable material that can be used in industrial applications where resistance to high temperatures or corrosive atmospheres is required.

601 Inconel split tee pipe fittings are used in many industries, including the power and oil & gas sectors. Designed with high strength and corrosion resistance in mind, they offer excellent thermal conductivity, effectively reducing vibration from pressure or temperature. Additionally, these fittings have outstanding mechanical properties at temperatures up to 2200°F (1205°C), making them ideal for use in high-temperature or pressure applications. The cylindrical shape makes Inconel 601 split tee pipe fittings easier to install than conventional tees, and their malleability allows for significant customizability. Finally, this type of fitting is especially suited for heat-resistant joints as it exhibits substantially greater fatigue strength than other alloys.

FAQ's for Inconel 601 Split Tee Pipe Fittings

The Harmonized System Nomenclature (HSN) Code of Inconel 601 split tee pipe fittings falls under Chapter 74. The specific HSN code for these fittings is 7418 1990.

No, Inconel 601 split tee pipe fittings are highly resistant to corrosion and are not susceptible to rusting. This means that they can be used in a variety of applications where exposure to water and other corrosive elements is a possibility, without fear of damage from corrosion.

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