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2:00pm - 2:15pmThe microstructure and fracture mode of physically simulated heat-affected zones of a weld metal used with 500 MPa offshore steel – part 1: impact toughness test results  Marcell Gáspár1, Judit Kovacs1, Henri Tervo2, Antti Kaijalainen2, Vahid Javaheri2, Johannes Sainio3, Jukka Kömi2 1Institute of Materials Science and Technology, University of Miskolc, Miskolc, Hungary; 2Materials and Mechanical Engineering, Centre for Advanced Steel Research, University of Oulu, Oulu, Finland; 3SSAB Europe, Raahe, Finland 
 
 
2:15pm - 2:30pmThe microstructure and fracture mode of physically simulated heat-affected zones of a weld metal used with 500 MPa offshore steel – part 2: fractographies, inclusions and microstructures  Henri Tervo1, Marcell Gáspár2, Judit Kovács2, Antti Kaijalainen1, Vahid Javaheri1, Johannes Sainio3, Jukka Kömi1 1Materials and Mechanical Engineering, Centre for Advanced Steel Research, University of Oulu, Finland; 2Institute of Material Science and Technology, University of Miskolc, Hungary; 3SSAB Europe, Raahe, Finland 
 
 
2:30pm - 2:45pmQUANTITATIVE FATIGUE FRACTURE ANALYSIS  Wolfgang von Bestenbostel, Francois Pradat Airbus, Germany 
 
 
2:45pm - 3:00pmTHE QUANTITATIVE FRACTOGRAPHY IN THE DBT REGIME OF 9Cr-1Mo FERRITIC/MARTENSITIC STEEL  Swastik Soni, Abhishek Tiwari IIT Ropar, India 
 
 
3:00pm - 3:15pmOPTIMIZATION OF TMCP PARAMETERS TO IMPROVE MECHANICAL PROPERTIES IN 201LN STAINLESS STEEL FOR CRYOGENIC APPLICATIONS  Ahmed W. Abdelghany1,2, Sumit Ghosh2, Tun Tun Nyo2, Ali Smith3, Frank Hoffmann4, Marta Muratori5, Mahesh Mahesh2 1University of Oulu, Kerttu Saalasti Institute, Future Manufacturing Technologies (FMT), Pajatie 5, Nivala, FI-85500, Finland.; 2University of Oulu, Centre for Advanced Steels Research, Materials and Mechanical Engineering, Oulu, FI-90014, Finland.; 3Rina Consulting-Centro Sviluppo Materiali SpA, Castel Romano, Italy.; 4Technische Universität Bergakademie Freiberg, Freiberg, 09599, Germany.; 5Acerinox Europa S.A.U, Los Barrios, Spain. 
 
 
3:15pm - 3:30pmAPPLICATION OF CONFIGURATIONAL FORCE BASED CONCEPT OF MATERIAL INHOMOGENEITY TO ENHANCE CRACK RESISTANCE OF MATERIALS  Rohit Upadhyaya, Abhishek Tiwari Indian Institute of Technology Ropar, India |