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Interplay of Cohesive, Griffith, and Geometric Scales in the Nucleation of Friction
Songlin Shi1,2, Jay Fineberg2
1Shanghai Jiao Tong University, Department of Engineering Mechanics, School of Ocean and Civil Engineering, Shanghai 200240, China.
Abstract:
Rupture of the contacts forming a frictional interface governs frictional failure in both natural and engineered systems. Often such failure is governed by brittle fracture, where a small cohesive length ξ regularizes the singular rupture tip. We experimentally study rupture nucleation under conditions where ξ is large, exceeding the interface width. Within ξ, initially 2D expanding fronts transition into slow 1D rupture fronts while still establishing ξ. Rapid rupture only ensues after ξ is established, at the Griffith length. This cohesive-scale-driven nucleation should be generic when ξ dominates geometrical scales, with ramifications for material failure, friction, and fault-zone dynamics.
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