Self-Replicating Cracks: A Collaborative Fracture Mode in Thin Films

Marthelot J.; Roman B.; Bico, J; Teisseire, J; Dalmas, D; Melo F.

Abstract

Straight cracks are observed in thin coatings under residual tensile stress, resulting into the classical network pattern observed in china crockery, old paintings, or dry mud. Here, we present a novel fracture mechanism where delamination and propagation occur simultaneously, leading to the spontaneous self-replication of an initial template. Surprisingly, this mechanism is active below the standard critical tensile load for channel cracks and selects a robust interaction length scale on the order of 30 times the film thickness. Depending on triggering mechanisms, crescent alleys, spirals, or long bands are generated over a wide range of experimental parameters. We describe with a simple physical model, the selection of the fracture path and provide a configuration diagram displaying the different failure modes.

Más información

Título según WOS: Self-Replicating Cracks: A Collaborative Fracture Mode in Thin Films
Título según SCOPUS: Self-replicating cracks: A collaborative fracture mode in thin films
Título de la Revista: PHYSICAL REVIEW LETTERS
Volumen: 113
Número: 8
Editorial: AMER PHYSICAL SOC
Fecha de publicación: 2014
Idioma: English
DOI:

10.1103/PhysRevLett.113.085502

Notas: ISI, SCOPUS - ISI