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UNS  S44002

Stainless Steel UNS S44002 Bolts are fasteners made from chromium, nickel, and manganese alloys. This combination of metals produces an incredibly durable material that can withstand temperatures up to 900⁰F, making it ideal for specialized construction projects and industrial machinery. The chromium also provides a higher level of corrosion resistance and makes them easier to clean, making these bolts perfect for applications that require frequent sanitization. The chemical composition of this stainless steel alloy allows for a wide range of flexibility with customized thread sizes and diameters, meaning it can be configured to fit the exact requirements of any project.

SS UNS S44002 Bolts offer users a range of different properties, making them ideal in many situations. Not only are these bolts overall corrosion resistant for use in harsher environments, but they are also equipped with high tensile strength. This allows the bolts to be securely fastened without compromising their general performance. Additionally, the characteristics of the samarium alloy allow for heat treatment operations, so one can tailor the heat treatment parameters according to their specific needs. These bolts are commonly used in exhaust manifold bolts, jet engine assemblies and fuel pumps, illustrating their versatility in any given environment requiring durability or mechanical resistance.

FAQ's for Stainless Steel UNS S44002 Bolts

Stainless Steel UNS S44002 Bolts Starts At Rs 11/Piece To Rs 15/Piece

Stainless Steel UNS S44002 bolts can be classified under the Harmonized System of Nomenclature (HSN) code 73079100. This HSN code is applicable to articles of iron or steel not elsewhere specified, including steel pins and taper pins, bolts and nuts.

Welding Stainless Steel UNS S44002 bolts is a process that involves joining two pieces of metal together to form a stronger joint. It's important to prepare the area and use the right welding technique to ensure successful results. There are several methods for welding stainless steel, including shielded metal arc, gas tungsten arc, and flux-cored arc welding. Each method will involve cleaning the surface of the parts to be joined, preheating the base material if necessary, selecting the best type of filler rod and selecting an appropriate shielding gas. Additionally, it's important to perform post-weld heat treatments where required to ensure optimum properties in the final product.

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