Atomic scale fluctuations govern brittle fracture and cavitation behavior in metallic glasses

P. Murali;T. F. Guo;Y. W. Zhang;R. Narasimhan;嫕 李;华健 高

Agency for Science; Technology and Research;Indian Institute of Science Bangalore;National University of Singapore;Brown University

发表时间:2011-11-14

期 刊:Physical Review Letters

语 言:English

U R L: http://www.scopus.com/inward/record.url?scp=81155132139&partnerID=8YFLogxK

摘要

We perform atomistic simulations on the fracture behavior of two typical metallic glasses, one brittle (FeP) and the other ductile (CuZr), and show that brittle fracture in the FeP glass is governed by an intrinsic cavitation mechanism near crack tips in contrast to extensive shear banding in the ductile CuZr glass. We show that a high degree of atomic scale spatial fluctuations in the local properties is the main reason for the observed cavitation behavior in the brittle metallic glass. Our study corroborates with recent experimental observations of nanoscale cavity nucleation found on the brittle fracture surfaces of metallic glasses and provides important insights into the root cause of the ductile versus brittle behavior in such materials.

相关科学

物理学和天文学

被引量

期刊度量

Scopus度量

年份 CiteScore SJR SNIP
1996
1997
1998
1999 5.771 2.903
2000 5.36 3.104
2001 5.884 3.274
2002 5.386 3.146
2003 4.661 2.692
2004 3.847 2.133
2005 4.082 2.128
2006 4.781 2.471
2007 5.95 2.75
2008 6.194 2.845
2009 6.325 3
2010 6.45 2.806
2011 13.7 6.314 2.908
2012 13.1 6.292 2.857
2013 13.5 5.675 2.762
2014 14.4 5.232 2.664
2015 15.1 4.656 2.555
2016 15.8 4.196 2.623
2017 15.7 3.622 2.707
2018 15.4 3.571 2.66
2019 15.6 3.588 2.505
2020 15.2 3.688 2.362
2021 13.4

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