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A Numerical Study of a Biaxial Sollicitation to Set-Up the Displacement Field Measurement of Ex Vivo Mouse Skin

机译:对外鼠皮肤置换脱位场测量的双轴张力的数值研究

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The behavior of the skin is an important issue in many applications, but is always not well understood. Nevertheless, skin is well-known to be mainly composed of collagen and has a very hierarchical microstructure that influences its mechanical behavior at different scales. To correlate and to characterize the macroscopic behavior with the microstructure, a bi-axial tensile test coupled with a macroscopic (digital image correlation) and microscopic (second harmonic generation) measurement has been developed. This study aims at presenting the method used to identified the mechanical properties of mice ex vivo skin. A full-field displacement is firstly acquired using digital image correlation (DIC) and, then, a specific finite element model is used to optimize the mechanical properties. The skin is modelled with a Holzapfel hyperelastic behavior which presents the particularity of being strongly based on the microstructure. The purpose of this article is to prepare the identification process. To this aim, a sensitivity approach is developed to choose the configuration with the highest sensitivity. Finally, the displacement and strain field is measured with DIC.
机译:皮肤的行为是许多应用中的一个重要问题,但总是不太了解。然而,众所周知,皮肤主要由胶原蛋白组成,并且具有非常分层的微观结构,可以在不同的尺度下影响其机械行为。为了与微观结构进行相关性并表征宏观行为,已经开发了与宏观(数字图像相关)和微观(第二谐波产生)测量耦合的双轴拉伸试验。本研究旨在提出用于确定小鼠exvivo皮肤的机械性能的方法。首先使用数字图像相关(DIC)获取全场位移,然后,使用特定的有限元模型来优化机械性能。皮肤采用Holzapfel超弹性行为建模,其呈现基于微观结构的强烈的特殊性。本文的目的是准备识别过程。为此目的,开发了一种灵敏度方法来选择具有最高灵敏度的配置。最后,用DIC测量位移和应变场。

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