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Erscheint vorauss. 30. April 2026
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This cutting-edge text covers current experimental approaches to quantify the fracture resistance in non-conventional specimens, assessment of ductile tearing and brittle fracture, and new approaches to estimate welded joints under high and low cycle and combined actions. It also presents a digital twin approach for the fatigue crack sizing and life assessment, along with the example of an offshore structure with applications for welded joints. Using experimental quantification this bridges the gap between material fracture resistance and fracture resistance for realistic cracks in engineering…mehr

Produktbeschreibung
This cutting-edge text covers current experimental approaches to quantify the fracture resistance in non-conventional specimens, assessment of ductile tearing and brittle fracture, and new approaches to estimate welded joints under high and low cycle and combined actions. It also presents a digital twin approach for the fatigue crack sizing and life assessment, along with the example of an offshore structure with applications for welded joints. Using experimental quantification this bridges the gap between material fracture resistance and fracture resistance for realistic cracks in engineering structures such as surface cracks in structural components. Ductile and brittle fracture assessment integrates physics-enhanced models into new engineering assessment approaches applicable to welded joints under high and low and combined cycle fatigue. This suits as a textbook for graduate students and a reference for practising engineers in structural, mechanical, and marine and offshore engineering.
Autorenporträt
Liuyang Feng is a senior engineer at Foxconn Industrial Internet, Singapore, specialized in additive manufacturing and structural integrity assessment. Xudong Qian is an Associate Professor and Director of the Centre for Offshore Research and Engineering and of the Centre for Advanced Materials and Structures at the National University of Singapore. He is a member of the ASTM technical committee on Fatigue and Fracture.