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DIN 1.4001

Stainless Steel Din 1.4001, also known as X12Cr13, is ferritic stainless steel. It contains chromium (12-13%), small amounts of carbon (0.1-0.2%), and other trace elements such as nickel and molybdenum. This combination of elements gives the steel its corrosion resistance, good formability, and high toughness. Additionally, the low carbon content of this steel makes it less susceptible to intergranular corrosion, making it a popular choice for applications in harsh environments. However, this steel is not as resistant to corrosion as austenitic grades, like 304 or 316, and is best suited for mild to moderately corrosive conditions.

Stainless Steel Din 1.4001 Channels are widely used in construction, architectural, and engineering applications due to their high resistance to corrosion and sturdiness. Its high strength, durability, and low maintenance make it a popular choice for various industries, including chemical, food processing, and marine. The channel's dimensional accuracy and ease of fabrication make it a preferred choice for creating structural support systems. Additionally, its resistance to high temperature and fire makes it a suitable option for applications in high-risk environments. With its non-toxic and non-reactive properties, SS Din 1.4001 Channels are also used in the medical and pharmaceutical industries. Its versatility, durability and sustainability make it a sought-after material in the construction and engineering industries.

FAQ's for Stainless Steel DIN 1.4001 Channels

The industries that commonly use Stainless Steel Din 1.4001 Channels include construction, architectural, engineering, chemical, food processing, marine, medical, pharmaceutical and many more due to its high resistance to corrosion and sturdiness.

Yes, Stainless Steel Din 1.4001 Channels are suitable for use in high-risk environments due to their resistance to high temperatures and fire.

The fabrication process of Stainless Steel Din 1.4001 Channels does not affect its overall performance as it has dimensional accuracy and is easy to fabricate, making it a preferred choice in the creation of structural support systems. This allows for precision and consistency in the production process, leading to reliable and high-quality results.

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