Effect of boron addition on hydrogen embrittlement sensitivity in Fe–Ni based alloys
Author:
Publisher
Elsevier BV
Subject
Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science
Reference22 articles.
1. Microstructural development and creep behavior in A286 superalloy
2. Hydrogen performance of precipitation-strengthened stainless steels based on A-286
3. High temperature properties of several chromium-containing Co-based alloys reinforced by different types of MC carbides (M=Ta, Nb, Hf and/or Zr)
4. Phase transformation of η and σ phases in an experimental nickel-based superalloy
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1. Inhibition of the second phase precipitation and improvement of intergranular corrosion resistance by boron segregation at the grain boundary of S31254 superaustenitic stainless steel;Corrosion Communications;2024-09
2. Hydrogen embrittlement susceptibility of CoCrFeNiTi-based multiprincipal element alloys formed by laser powder bed fusion;Materials Today Communications;2024-08
3. Suppressing hydrogen embrittlement of a CrCoNi medium-entropy alloy by triggering co-segregation of carbon, boron, and Cr;Corrosion Science;2024-08
4. Designing hydrogen embrittlement-resistant grain boundary in steel by alloying elements segregation: First-principles calculations;Applied Surface Science;2024-05
5. Carbon and Titanium Effect on Tensile Behavior of Aged A286 Nickel-Iron Based Superalloy;Key Engineering Materials;2023-10-13
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