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The mechanical properties of X10CrNiMoTi1810 steel play a crucial role in determining its suitability for energy generation applications. This steel exhibits a tensile strength of at least 550 MPa, making it highly resistant to deformation under high-pressure conditions. Additionally, it has a yield strength of 300 MPa, indicating its ability to withstand significant loads without permanent deformation.

X10CrNiMoTi1810 steel also demonstrates excellent toughness, which is essential in energy generation applications where the material may be subjected to high-stress and impact loads. Its high toughness allows it to absorb energy without fracturing or losing its structural integrity.

Furthermore, this steel possesses good corrosion resistance due to its chemical composition. The presence of chromium and molybdenum enhances its resistance to corrosion from various corrosive media, such as water, steam, and chemicals. Moreover, the addition of titanium improves its resistance to oxidation at high temperatures, further enhancing its durability in energy generation environments.

The chemical composition of X10CrNiMoTi1810 steel, commonly known as AISI 321, consists of:

– Carbon (C): 0.08% max
– Silicon (Si): 1% max
– Manganese (Mn): 2% max
– Phosphorus (P): 0.045% max
– Sulfur (S): 0.03% max
– Chromium (Cr): 17.0 – 19.0%
– Nickel (Ni): 9.0 – 12.0%
– Molybdenum (Mo): 0.7 – 1.0%
– Titanium (Ti): 5 x (C% – 0.02%) min

This specific chemical composition provides X10CrNiMoTi1810 steel with its desired mechanical properties and corrosion resistance, making it a suitable choice for energy generation applications.
X10CrNiMoTi1810 Steel grade
1698808959