Cutting-edge insights: Crack growth rates in 9% Ni steel from room to cryogenic conditions influenced by crack closure and effective stress intensity factors

Author:

Lin Yu-Yao,Jang Beom-Seon,Han Sang-Woong,Park Young-Hwan,Hwang Jinha,Kim Do Kyun

Publisher

Elsevier BV

Reference72 articles.

1. A study on microstructural and mechanical properties of gas tungsten arc welded thick cryogenic 9% Ni alloy steel butt joint;Serindağ;CIRP J Manuf Sci Technol,2022

2. On the prediction of ductile fracture in ship structures with shell elements at low temperatures;Cerik;Thin-Walled Struct,2020

3. An experimental study for fatigue performance of 7% nickel steels for type b liquefied natural gas carriers;Kim;J Offshore Mech Arct Engng,2016

4. An experimental study on fatigue performance of cryogenic metallic materials for IMO type B tank;Lee;Int J Nav Archit Ocean Engng,2013

5. Fatigue crack growth mechanism of Ni-based weld metal in a 9% Ni steel joint;Li;Mater Sci Engng A,2022

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