2009
DOI: 10.1177/1056789509338318
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Experimental and Theoretical Investigation of Size Effects on the Ductile/Brittle Fracture Toughness of a Pressure Steel

Abstract: Detailed un-standard experiments of fracture toughness in which SENB specimens of five different thicknesses were included, were carried out to investigate the size effect on the ductile and brittle fracture. It is found that the fracture toughness on the upper shelf increases with the size of the specimens, which have the similar geometry and then decreases gradually to the plane strain fracture toughness. The ductile fracture toughness increases with the size in the range of 4-16 mm for the increment of the … Show more

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Cited by 9 publications
(1 citation statement)
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“…In addition, the microstructures of alloys, especially the pattern and precipitation position of intermetallic phases, have a significant influence on the ductility (Chen et al, 2015;Cvijovic´et al, 2011;Horstemeyer et al, 2000;Poole et al, 2005;Westermann et al, 2014). In general, the fracture strain increases with increasing temperature and decreases with increasing strain rate (Raj and Ashby, 1975;Rakin et al, 2004;Liu and Fu, 2014;Wang et al, 2010).…”
Section: Introductionmentioning
confidence: 99%
“…In addition, the microstructures of alloys, especially the pattern and precipitation position of intermetallic phases, have a significant influence on the ductility (Chen et al, 2015;Cvijovic´et al, 2011;Horstemeyer et al, 2000;Poole et al, 2005;Westermann et al, 2014). In general, the fracture strain increases with increasing temperature and decreases with increasing strain rate (Raj and Ashby, 1975;Rakin et al, 2004;Liu and Fu, 2014;Wang et al, 2010).…”
Section: Introductionmentioning
confidence: 99%