Interfacial energy states of moisture-exposed cracks in mica


Autoria(s): Wan, Kai-Tak; Aimard, Nicholas; Lathabai, S.; Horn, Roger G.; Lawn, Brian R.
Data(s)

01/01/1990

Resumo

Results of crack growth observations on mica in water-containing environments are described. The study focuses on equilibrium crack states for reversed loading cycles, i.e., for initial propagation through virgin solid and subsequent retraction-repropagation through healed or misoriented-healed interfaces. Departures from these equilibrium states are manifest as steady-state forward or backward crack velocities at specific applied loads. The equilibria are thereby interpreted as quiescent, threshold configurations <i>G</i> = <b>W</b><sub>E</sub>, with <i>G</i> the Griffith mechanical-energy-release rate and <b>W</b><sub>E</sub> the Dupré work of adhesion, on crack velocity (<i>v-G</i>) diagrams. Generally, <b>W</b><sub>E</sub> is found to decrease with concentration of water, in accordance with a Gibbs formalism. Hysteresis is observed in the forward-backward-forward crack propagation cycle, signifying a reduction in the adhesion energy on exposure of the open interface to environmental species prior to healing. This hysteresis is especially marked for those interfaces that are misoriented before healing, indicating that the structure of the underlying solid substrate as well as of the intervening fluid is an important consideration in the interface energetics. The equilibrium states for different environments can be represented on a simple energy-level diagram, as differences between thermodynamic end-point states: initial, closed-interface states refer to crystallographic bonding configurations ahead of the crack-tip adhesion zone; final, open interface states refer to configurations behind the crack-tip zone. The significance of this diagram in relation to the fundamental atomic structure of interfaces in fracture and other adhesion geometries, including implications concerning kinetics, is discussed.<br />

Identificador

http://hdl.handle.net/10536/DRO/DU:30041490

Idioma(s)

eng

Publicador

Materials Research Society

Relação

http://dro.deakin.edu.au/eserv/DU:30041490/horn-interfacialenergy-1990.pdf

http://dx.doi.org/10.1557/JMR.1990.0172

Direitos

1990, Materials Research Society

Palavras-Chave #moisture-exposed cracks in mica #mica #energy states
Tipo

Journal Article