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Frictional contact induced crack initiation in incompressible substrate
Authors:YJ Xie  XZ Hu  XH Wang
Affiliation:aDepartment of Mechanical Engineering, Liaoning Shihua University, Fushun, 113001 LN, PR China;bSchool of Mechanical Engineering, The University of Western Australia, Perth, WA 6009, Australia
Abstract:Surface crack initiation in an incompressible substrate induced through frictional fretting contact is analyzed using an energy-based fracture mechanics model. A closed-form energy release rate for surface crack initiation at the contact boundary has been derived with the crack growth angle determined by the mixed mode singular stress field at the contact edge. The driving forces in the form of Ji-integral, the critical energy release rate and the critical load for crack initiation from the crack free surface have been formulated. The relations between the friction coefficient and crack initiation angle, critical load have been specified.
Keywords:Indentation stress intensity factor  Fracture  Rock cutting  Indentation
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