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5086

Aluminium 5086 Swage Nipple Pipe Fittings are made from a specific alloy of magnesium, silicon, iron, copper, chromium and manganese. This combination allows the pipe fittings to survive in extreme temperatures and resist corrosion even in harsh environments due to their increased strength and elongation. In addition, these pipe fittings also contain small traces of zinc and titanium, which help improve the overall performance and increase its lifespan, making it suitable for use in many engineering applications.

5086 Aluminium Swage Nipple Pipe Fittings is a secure connection between two pipes or tubes for transferring fluids like oil, steam, water and natural gas. These fittings are produced from 90% and 10% industrial-grade magnesium alloy, known for their excellent corrosion resistance properties. The mechanical properties of the metal ensure that the fitting can be reused even after it has undergone high-pressure fluxing and bending. Further, they offer good tensile strength at elevated temperatures and better durability than copper-based products such as copper-nickel alloys. A temperature range of -200°C to +400°C makes these pipe fittings suitable for high-pressure fluid applications in extreme temperatures.

In conclusion, Aluminium 5086 Swage Nipple Pipe Fittings are cost-effective solutions with excellent properties, making them perfect components for various industries.

FAQ's for Aluminium 5086 Swage Nipple Pipe Fittings

Aluminium 5086 Swage Nipple Pipe Fittings have a pressure rating of up to 6,000 psi (414 bar) at the highest gauge.

No, Aluminium 5086 Swage Nipple Pipe Fittings are highly resistant to corrosion and rust because of their alloy composition, which includes manganese and magnesium, along with aluminium. It also has a higher resistance to saltwater environments than many other alloys.

Aluminium 5086 Swage Nipple Pipe Fittings are non-magnetic as they contain very low amounts of iron or other magnetic elements. The aluminium alloy used in these fittings has a maximum 0.4% Iron content, which makes them an effectively non-magnetic material.

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