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UNS S44003

Stainless Steel UNS S44003 Bolts are composed of a number of different chemical ingredients, all combined to create a durable and high-performing product. While the exact composition can vary from manufacturer to manufacturer, typically these bolts feature 18% chromium, 8% nickel, and 0.15% molybdenum; meaning they're highly resistant to corrosion as well as temperature changes. In addition, they also include Iron, Silicon, Manganese, Copper and Carbon - essential elements in order to create the hardy nature considered necessary for use in industrial settings. As such it's clear the careful consideration put into the formulation of Stainless Steel UNS S44003 Bolts is what makes these fasteners so reliable.

SS UNS S44003 bolts are high-grade industrial fasteners that offer exceptional strength and durability. They have a wide range of applications from modern construction to the automotive industry. These bolts are noted for their corrosion resistance and oxidation resistance, making them a great choice for components in wet conditions. In addition, their high tensile strength makes them great for heavy machinery and installations that require additional support, such as electronics enclosures. Stainless Steel UNS S44003 bolts conform to standard specifications, making them easy to use and available in many different sizes and styles to fit various needs. Their wide availability makes them an ideal option for a variety of applications that need reliable hardware with robust performance at affordable prices.

FAQ's for Stainless Steel UNS S44003 Bolts

Stainless Steel UNS S44003 Bolts Starts At Rs 11/Piece To Rs 15/Piece

Stainless Steel UNS S44003 bolts can be classified under the Harmonized System of Nomenclature (HSN) code 73079200.

Stainless Steel UNS S44003 bolts are not magnetic as they contain nickel, molybdenum and nitrogen which reduce the ferrite content. These alloys are often referred to as austenitic stainless steels due to their non-magnetic properties. However, it is possible for the bolts to become slightly magnetic if exposed to very high temperatures.

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