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Inconel 600 Concentric Reducer Fittings have a chemical composition containing 75-80% Nickel, 15-17% Chromium, and 6-10% Iron. They also contain small traces of Manganese, Carbon, Lead, Silicon, and Molybdenum. Inconel 600 is beneficial in high-temperature environments due to its excellent stress rupture strength and creep-rupture strength. Additionally, Inconel 600 has the capacity to be fabricated into different shapes while maintaining its temperature resistance qualities – making it ideal for pipe fittings, mainly if they will be used with fluids that require high levels of temperature control.

600 Inconel Concentric Reducer Pipe Fittings provide a highly versatile solution for industrial piping and are often used in the chemical and oil refining industries. They offer resistance to solid substances such as chloride-ion stress-corrosion cracking and oxidation, strong acids, and other corrosion-resistant properties. In addition, they can withstand extreme temperatures, which makes them great for high-temperature applications such as heat exchangers, boiler parts, and cooling systems. Inconel 600 reducers also have a high tensile strength of up to 95 ksi, which ensures it is well suited to complex pressure-containing systems like pipes, tubes, and valves. These properties combine to make it an incredibly efficient solution for any industry needing a reliable and durable pipe-fitting solution that can handle harsh conditions.

FAQ's for Inconel 600 Concentric Reducer Pipe Fittings

The Harmonised System of Nomenclature (HSN) code for Inconel 600 Concentric Reducer Pipe Fittings is 73079990.

The best way to weld Inconel 600 concentric reducer pipe fittings is by using gas tungsten arc welding (GTAW) process with a filler metal matched to the base metal’s composition. Special attention should be paid to preheating and post-weld heat treatment for maximum strength and corrosion resistance.

No, Inconel 600 Concentric Reducer Pipe Fittings are not magnetic due to their low iron content and high nickel content which have strong non-magnetic properties.

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