2003
DOI: 10.1023/b:msat.0000009785.61892.eb
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Effect of Si and Cr Additives on Electrochemical Corrosion and Mechanical Properties of Austenitic Steel

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Cited by 1 publication
(2 citation statements)
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“…Studies are under way to test the compositions of corrosion-resistant Cr-Mn-Ni steels alloyed together by nitrogen and carbon [25], which significantly expands the γ-region on the equilibrium-phase diagram and improves the properties of steels [26]. It was shown [27] that doping with copper facilitates the passivation of steel and increases its technological plasticity, ensuring the achievement of high strength due to large degrees of deformation [19,28,29].…”
Section: Corrosion Behavior Of Cold-deformed Austenitic Steelsmentioning
confidence: 99%
See 1 more Smart Citation
“…Studies are under way to test the compositions of corrosion-resistant Cr-Mn-Ni steels alloyed together by nitrogen and carbon [25], which significantly expands the γ-region on the equilibrium-phase diagram and improves the properties of steels [26]. It was shown [27] that doping with copper facilitates the passivation of steel and increases its technological plasticity, ensuring the achievement of high strength due to large degrees of deformation [19,28,29].…”
Section: Corrosion Behavior Of Cold-deformed Austenitic Steelsmentioning
confidence: 99%
“…in Table 3. It shows that steel without Mo, doped with Si (1) or Si and N (2), is prone to IGC after tempering for 1-500 h [27]. The steels X16H15M3 [14] (3) and 03X20H19AM2 (4) alloyed together with nitrogen and molybdenum are corrosion-resistant after tempering only for 1 h. Alloying of these steels with silicon (see grade 03X17H13C2AM2 (5)) makes it corrosionresistant after 100 H of heating.…”
Section: Increasing the Resistance Of Steels Against Igc In A Weakly mentioning
confidence: 99%