Analysis of thermal embrittlement of a low alloy steel weldment using fracture toughness and microstructural investigations

Author:

Boåsen MagnusORCID,Lindgren KristinaORCID,Öberg Martin,Thuvander MattiasORCID,Faleskog JonasORCID,Efsing PålORCID

Funder

SSM

Publisher

Elsevier BV

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

Reference48 articles.

1. Ductile-to-brittle transition temperature of thermally segregated WWER-1000 base metal;Debarberis;Int J Microstruct Mater Prop,2007

2. Chemical composition effect on VVER-1000 RPV weld metal thermal ageing;Gurovich;J Nucl Mater,2015

3. A. A. Chernobaeva, E. A. Kuleshova, B. A. Gurovich, D. Yu Erak, O. O. Zabusov, D. A. Maltsev, D. A. Zhurko, V. B. Papina and M. A. Skundin, “Thermal ageing effects of VVER-1000 weld metal under operation temperature,” in Fontevraud 8, Avignon, 2014.

4. Thermal ageing mechanisms of VVER-1000 reactor pressure vessel steels;Shtrombakh;J Nucl Mater,2014

5. Effect of thermal ageing on properties of pressure vessel low alloy steel;Joly,2013

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