This paper investigates the mechanical behavior of soft elastomeric membranes under indentation by a rigid spherical object, with a particular focus on the failure mechanisms leading to puncture. The study examines both pristine membranes and those with pre-existing flaws, such as cracks, to explore how these imperfections affect the mechanical response and failure characteristics. An analytical axisymmetric model, based on a nonlinear solution for a hyperelastic, incompressible membrane, is presented. The prediction of the model are validated with experimental data obtained from indentation tests on silicone membranes. The study considers both stretch-based and energy-based criteria for fracture, providing insight into the conditions necessary for membrane failure and crack propagation.

Indentation and Puncturing of Pristine and Flawed Soft Membranes / Montanari, M.; Brighenti, R.; Monchetti, S.; Spagnoli, A.. - In: FATIGUE & FRACTURE OF ENGINEERING MATERIALS & STRUCTURES. - ISSN 8756-758X. - 48:6(2025), pp. 2787-2800. [10.1111/ffe.14640]

Indentation and Puncturing of Pristine and Flawed Soft Membranes

Montanari M.;Brighenti R.;Monchetti S.;Spagnoli A.
2025-01-01

Abstract

This paper investigates the mechanical behavior of soft elastomeric membranes under indentation by a rigid spherical object, with a particular focus on the failure mechanisms leading to puncture. The study examines both pristine membranes and those with pre-existing flaws, such as cracks, to explore how these imperfections affect the mechanical response and failure characteristics. An analytical axisymmetric model, based on a nonlinear solution for a hyperelastic, incompressible membrane, is presented. The prediction of the model are validated with experimental data obtained from indentation tests on silicone membranes. The study considers both stretch-based and energy-based criteria for fracture, providing insight into the conditions necessary for membrane failure and crack propagation.
2025
Indentation and Puncturing of Pristine and Flawed Soft Membranes / Montanari, M.; Brighenti, R.; Monchetti, S.; Spagnoli, A.. - In: FATIGUE & FRACTURE OF ENGINEERING MATERIALS & STRUCTURES. - ISSN 8756-758X. - 48:6(2025), pp. 2787-2800. [10.1111/ffe.14640]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11381/3023813
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