paper

Tuning the periodic V-peeling behavior of elastic tapes applied to thin compliant substrates

arXiv:1911.08810 · doi:10.1016/j.ijmecsci.2019.105331

Abstract

In this paper, we investigate the periodic peeling behavior of opposing symmetric peeling fronts involving an elastic tape peeled off from a deformable substrate of finite thickness, backed onto a rigid foundation. We treat the problem by means of an energetic formulation, and we found that, depending on the values of the initial detached length , substrate thickness , and peeling periodicity , the translational invariance of the peeling process is lost and restored, as the elastic interaction between the peeling fronts is limited by the substrate thickness. Indeed, given and , a critical value of the detached length can be found, which is able to prevent unstable peeling of the tape under a fixed applied load, thus resulting in enhanced adhesion strength, with respect to the classical Kendall's solution for peeling from a rigid substrate. On the other hand, given the geometrical system configuration (i.e. the detached length ) the load necessary to trigger the peeling can be minimized by conveniently tuning the ratio . This feature might be of interest for the development of innovative designs for future biomedical devices, such as Transdermal Drug Delivery Systems or wound dressing, requiring low peel adhesion for safe successive removals.

Accepted manuscript on International Journal of Mechanical Science. This project has received funding from the European Union's Horizon 2020 research and innovation programme under the Marie Sklodowska-Curie grant agreement No 845756 (N.M. Individual Fellowship). D.D. acknowledges the support received from the EPSRC through his Established Career Fellowship EP/N025954/1

References in corpus (1)

Tuning the periodic V-peeling behavior of elastic tapes applied to thin compliant substrates · wovepaper