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Stainless Steel 304N Stud Bolts have a robust chemical composition, including 18% chromium, 8%-10.5% nickel, and 0.08%-0.10% nitrogen. This combination of elements provides the bolt with superior strength and longevity. It also helps to increase its resistance to atmospheric oxidation, making it an ideal material for various industrial applications. Additionally, Stainless Steel 304N contains manganese and carbon, which give it an increased level of machinability and helps imparts improved weldability characteristics. The combination of these features makes Stainless Steel 304N Stud Bolts the go-to choice for many uses ranging from corrosive environment conditions to heavy construction projects - no matter what task they are used in, they will surely stand up to the challenge!

304N SS Stud Bolts are among the most versatile and dependable fasteners used to secure components in various industrial applications. Their excellent strength-to-weight ratio makes them ideal for high-load, lightweight assemblies, and their polyvalent nature means that they can be used for bolted or welded joints. Furthermore, stainless steel provides superior corrosion resistance properties and bolts electrical conductivity. They can also accommodate wide variations in assembly configurations due to their versatility. This makes them suitable for use in various situations, such as temperature extremes, marine environments, and harsh conditions. As such, Stainless Steel 304N stud bolts continue to be highly regarded and sought after by worldwide industries.

FAQ's for Stainless Steel 304N Stud Bolts

Stainless Steel 304N Stud Bolts Starts At Rs 10/Piece To Rs 12/Piece.

Yes, stainless steel 304N stud bolts are relatively easy to install compared to other types of fasteners. The use of a torque wrench can help ensure that the correct tension is applied during installation and that the bolt is securely fastened.

Yes, stainless steel 304N stud bolts have excellent heat resistance which allows them to maintain their properties even when exposed to higher temperatures for extended periods of time.

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