Type: Article
A path-independent integral for fracture of solids under combined electrochemical and mechanical loadings
Journal: Journal of the Mechanics and Physics of Solids (00225096)Year: November 2014Volume: 71Issue: Pages: 1 - 14
Haftbaradaran H.a Qu J.
DOI:10.1016/j.jmps.2014.06.007Language: English
Abstract
In this study, we first demonstrate that the J-integral in classical linear elasticity becomes path-dependent when the solid is subjected to combined electrical, chemical and mechanical loadings. We then construct an electro-chemo-mechanical J-integral that is path-independent under such combined multiple driving forces. Further, we show that this electro-chemo-mechanical J-integral represents the rate at which the grand potential releases per unit crack growth. As an example, the path-independent nature of the electro-chemo-mechanical J-integral is demonstrated by solving the problem of a thin elastic film delaminated from a thick elastic substrate. © 2014 Elsevier Ltd.