Affiliation:
1. 1Department of Aerospace Engineering, University of Michigan-Ann Arbor, MI 48109, USA
Abstract
AbstractThe critical energy release rate, defined as Gc=2γ+γp (where γ is the cohesive energy and γp is the plastic work), is widely used as a macroscopic fracture criterion. During embrittlement of aluminum by gallium, impurity segregation is localized to a small region along the grain boundary and the bulk plastic properties are unaffected. Yet, the critical energy release rate (which is predominantly described by the plastic work [γp] since γp>>γ) significantly decreases. In this work, we recognize that as the cohesive energy (γ) decreases during corrosion due to an increase in impurity concentration, the stress needed at the notch tip to form the crack decreases, and this, in turn, decreases the plastic work by reducing dislocation emission at the notch tip. We study two different models proposed in the past that can capture this dependence of γp on γ during liquid metal (Ga) embrittlement of aluminum alloy (Al 7075). The parameters in these models are computed from first principles atomistic calculations and recent experiments. We compare and contrast these models on their ability to describe various aspects of embrittlement such as fracture toughness, KIC, and subcritical value of stress intensity, KIscc. Extension of the approach to predict threshold fatigue crack initiation in Al7075 is suggested.
Subject
General Materials Science,General Chemical Engineering,General Chemistry
Reference46 articles.
1. microscopic theory of brittle fracture in deformable solids : a relation between ideal work to fracture and plastic work;Jokl;Acta Mater,1980
2. The influence of age hardening on fatigue crack propagation behaviour in aluminium alloy in vacuum;Lafarie;Fatigue Eng Mater Struct,1983
3. Chemical potential and surface energy in stress corrosion cracking;West;Met Sci,1980
4. Classification of environmentally assisted fatigue crack growth behavior;Vasudevan;Int J Fatigue,2009
5. The influence of age hardening on fatigue crack propagation behaviour in aluminium alloy in vacuum;Lafarie;Fatigue Eng Mater Struct,1983
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