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X2CrNiMoN17-13-3 EN 10222-5 1.4429 Stainless Steel Flange EN1092-1 Type 01
Material Overview
1.4429 is a stainless steel grade designation (according to EN standard) that corresponds closely to AISI 316LN. It is an austenitic stainless steel designed for excellent corrosion resistance, particularly in chloride-containing environments, and applications requiring higher mechanical strength.
Chemical Composition
Typical chemical composition of 1.4429 (in weight %):
Element
Content Range
Carbon (C)
max. 0.03%
Chromium (Cr)
16.5–18.5%
Nickel (Ni)
10.0–13.0%
Molybdenum (Mo)
2.0–2.5%
Nitrogen (N)
0.10–0.22%
Manganese (Mn)
max. 2.0%
Silicon (Si)
max. 1.0%
Phosphorus (P)
max. 0.045%
Sulfur (S)
max. 0.015–0.030%
Key Element Functions
Carbon (C): Low carbon content improves resistance to intergranular corrosion by reducing carbide precipitation at grain boundaries
Chromium (Cr): Primary element for corrosion resistance and passivation - the fundamental property that makes it "stainless"
Nickel (Ni): Stabilizes the austenitic structure, enhances toughness, and contributes to corrosion resistance
Molybdenum (Mo): Significantly improves resistance to pitting and crevice corrosion, especially in chloride environments like seawater and saline atmospheres
Nitrogen (N): Key differentiator from standard 316/316L - increases strength (particularly yield strength) and further enhances pitting corrosion resistance
Manganese (Mn) & Silicon (Si): Aid in deoxidation during steelmaking and help stabilize the austenitic structure
Phosphorus (P) & Sulfur (S): Kept at low levels to prevent negative impacts on toughness and corrosion resistance
Performance Advantages
Compared with 1.4404 / 316L, the added nitrogen in 1.4429 provides:
Higher mechanical strength
Enhanced pitting corrosion resistance
The combination of low carbon content plus molybdenum and nitrogen makes this material ideal for aggressive environments including chemical plants, offshore applications, medical devices, and cryogenic applications where both corrosion resistance and strength are critical.
Quality Assurance
For exact composition values from specific suppliers or standards (e.g., EN 10088-3), always verify the mill certificate or technical datasheet, as minor ranges can vary slightly by standard and manufacturer.