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首页> 外文期刊>Acta biomaterialia >Structural characterization and viscoelastic constitutive modeling of skin
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Structural characterization and viscoelastic constitutive modeling of skin

机译:皮肤结构表征和粘弹性本构型建模

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A fascinating material, skin has a tensile response which exhibits an extended toe region of minimal stress up to nominal strains that, in some species, exceed 1, followed by significant stiffening until a roughly linear region. The large toe region has been attributed to its unique structure, consisting of a network of curved collagen fibers. Investigation of the structure of rabbit skin reveals that it consists of layers of wavy fibers, each one with a characteristic orientation. Additionally, the existence of two preferred layer orientations is suggested based on the results of small angle X-ray scattering. These observations are used to construct a viscoelastic model consisting of collagen in two orientations, which leads to an in-plane anisotropic response. The structure-based model presented incorporates the elastic straightening and stretching of fibrils, their rotation towards the tensile axis, and the viscous effects which occur in the matrix of the skin due to interfibrillar and interlamellar sliding. The model is shown to effectively capture key features which dictate the mechanical response of skin.
机译:一种迷人的材料,皮肤具有拉伸响应,其表现出延伸的脚趾区域的最小胁迫,其在一些物种超过1的标称菌株中,然后在大致线性区域直到大致加强。大脚趾区域归因于其独特的结构,由弯曲的胶原纤维网络组成。对兔皮肤结构的研究表明它由波纹纤维层组成,每个具有特征取向。另外,基于小角度X射线散射的结果提出了两个优选的层取向的存在。这些观察结果用于构建由两个取向的胶原蛋白组成的粘弹性模型,这导致面内各向异性反应。呈现的基于结构的模型包括纤维的弹性矫直和拉伸,其朝向拉伸轴的旋转,以及由于intervibrillar和层滑动而在皮肤基质中发生的粘性效果。该模型显示有效地捕获指示皮肤机械响应的关键特征。

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