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Puncturing of soft tissues: experimental and fracture mechanics-based study

穿刺 超弹性材料 断裂力学 奥格登 机械 弹性(物理) 刚度 断裂韧性 材料科学 线弹性 有限元法 结构工程 复合材料 物理 计算机科学 工程类 电信
作者
Matteo Montanari,Roberto Brighenti,Michele Terzano,Andrea Spagnoli
出处
期刊:Soft Matter [Royal Society of Chemistry]
卷期号:19 (20): 3629-3639 被引量:15
标识
DOI:10.1039/d3sm00011g
摘要

The integrity of soft materials against puncturing is of great relevance for their performance because of the high sensitivity to local rupture caused by rigid sharp objects. In this work, the mechanics of puncturing is studied with respect to a sharp-tipped rigid needle with a circular cross section, penetrating a soft target solid. The failure mode associated with puncturing is identified as a mode-I crack propagation, which is analytically described by a two-dimensional model of the target solid, taking place in a plane normal to the penetration axis. It is shown that the force required for the onset of needle penetration is dependent on two energy contributions, that are, the strain energy stored in the target solid and the energy consumed in crack propagation. More specifically, the force is found to be dependent on the fracture toughness of the material, its stiffness and the sharpness of the penetrating tool. The reference case within the framework of small strain elasticity is first investigated, leading to closed-form toughness parameters related to classical linear elastic fracture mechanics. Then, nonlinear finite element analyses for an Ogden hyperelastic material are presented. Supporting the proposed theoretical framework, a series of puncturing experiments on two commercial silicones is presented. The combined experimental-theoretical findings suggest a simple, yet reliable tool to easily handle and assess safety against puncturing of soft materials.
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