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Cited article:

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Investigation into the Impact Toughness of API 5L X80 Steel Weldments and its Relationship with Safe Welding Procedures

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Impact Toughness of Subzones in the Intercritical Heat-Affected Zone of Low-Carbon Bainitic Steel

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Fracture-Toughness and Fatigue Crack Growth Evaluation in the Transversal Direction of the Longitudinal Weld of an API X52 Steel Pipeline

D. Angeles-Herrera, A. Albiter, R. Cuamatzi-Meléndez, G. Terán and Gilberto Ochoa-Ruiz
Journal of Testing and Evaluation 46 (5) 2110 (2018)
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Micromechanism of Decrease of Impact Toughness in Coarse-Grain Heat-Affected Zone of HSLA Steel with Increasing Welding Heat Input

R. Cao, J. Li, D. S. Liu, J. Y. Ma and J. H. Chen
Metallurgical and Materials Transactions A 46 (7) 2999 (2015)
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A new method to study the effect of M–A constituent on impact toughness of IC HAZ in Q690 steel

Zhenshun Li, Lei Tian, Bin Jia and Shengli Li
Journal of Materials Research 30 (12) 1973 (2015)
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Investigation of abnormal high impact toughness in simulated welding CGHAZ of a 8%Ni 980MPa high strength steel

R. Cao, W. Feng, Y. Peng, et al.
Materials Science and Engineering: A 528 (2) 631 (2010)
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Mechanical and metallurgical investigation of martensite–austenite constituents in simulated welding conditions

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