Fatigue strength of high-strength steel after shipyard production process of plasma cutting, grinding, and sandblasting

Author:

Lillemäe-Avi Ingrit,Liinalampi Sami,Lehtimäki Eero,Remes Heikki,Lehto Pauli,Romanoff Jani,Ehlers Sören,Niemelä Ari

Publisher

Springer Science and Business Media LLC

Subject

Metals and Alloys,Mechanical Engineering,Mechanics of Materials

Reference31 articles.

1. DNV GL (2015a) DNVGL-RU-9111:2015–7, “rules for classification, part 3 hull, chapter 9 fatigue”. DNV GL, Oslo

2. DNV GL (2015b) Class guideline DNVGL-CG-0129: “fatigue assessment of ship structures”. DNV GL, Oslo

3. Hobbacher A (2009) Recommendations for fatigue design of welded joints and components, IIW doc. 1823–07, Welding Research Coiuncil Bulletin 520, New York

4. De Jesus AMP, Matos R, Fontoura BFC, Rebelo C, de Silva LS, Veljakovic M (2012) A comparison of the fatigue behavior between S355 and S690 steel grades. J Constr Steel Res 79:140–150

5. Remes H, Korhonen E, Lehto P, Romanoff J, Niemelä A, Hiltunen P, Kontkanen T (2013) Influence of surface integrity on the fatigue strength of high-strength steels. J Constr Steel Res 89:21–29

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