Investigation of the Influence of Pre-Charged Hydrogen on Fracture Toughness of As-Received 2.25Cr1Mo0.25V Steel and Weld
Author:
Publisher
MDPI AG
Subject
General Materials Science
Link
http://www.mdpi.com/1996-1944/11/7/1068/pdf
Reference23 articles.
1. Effect of reheating processes on grain boundary heritance for 2.25Cr–1Mo–0.25V steel
2. Effects of weld thermal cycles and post-welding tempering on second phase particles in 2·25Cr–1Mo–0·25V steels
3. Slow strain rate tensile test results of new multiphase 17%Cr stainless steel under hydrogen cathodic charging
4. Effect of lattice matching degree and intermetallic compound on the properties of Mg/Al dissimilar material welded joints
5. Effects of microstructural asymmetries across friction stir welded AA2024 joints on mechanical properties
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1. The fatigue crack growth behavior of hydrogenated 9Cr‐1Mo steel: An experimental and numerical study;Fatigue & Fracture of Engineering Materials & Structures;2024-02-21
2. Hydrogen Impact: A Review on Diffusibility, Embrittlement Mechanisms, and Characterization;Materials;2024-02-19
3. Experimental and Modeling Analysis of Hydrogen Motion Behavior in Welding Zone of 2.25Cr–1Mo–0.25 V Steel Welded Joint with Hydrogen Corrosion;Metals and Materials International;2023-01-28
4. Coupling effect of hydrogen and strain rate on 2.25Cr1Mo0.25V steel deformed over wide strain rate ranges;International Journal of Hydrogen Energy;2023-01
5. Swin–UNet++: A Nested Swin Transformer Architecture for Location Identification and Morphology Segmentation of Dimples on 2.25Cr1Mo0.25V Fractured Surface;Materials;2021-12-07
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