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First versus second gradient energies for planar sheets with two families of inextensible fibres: Investigation on deformation boundary layers, discontinuities and geometrical instabilities

机译:第一次与平面板的第二梯度能量,有两个不可泛美纤维的两个家庭:对变形边界层,不连续性和几何不稳态的调查

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摘要

We present a homogenized model for the analysis of a 2D continuum with two straight families of inextensible fibres embedded in it. The kinematics of the continuum is analyzed and, motivated by phenomenological observations, it is assumed that the strain energy depends on the shear deformation of the fibres and on their bending curvature. It is shown that in order to account for the latter deformation it is necessary to introduce second gradient strains. The problem is formulated as a nonlinear constrained minimization, after introducing a suitable discretization of the domain. Some deformation processes are simulated using different constitutive hypotheses, comparing the predictions obtained assuming the presence of only first gradient or second gradient deformations, or a combination of both. It is found that the first gradient model leads to the presence of discontinuities in the rotation of the fibres, while the second gradient model regularizes these discontinuities by means of boundary layers. In particular in some deformation processes an instability of geometrical nature is observed when the second gradient model is used, that can be suppressed by the first gradient contribution.
机译:我们呈现了一个均质模型,用于分析2D连续体,其中嵌入其中的两种直线纤维。通过现象学观察分析连续素的运动学,假设应变能取决于纤维的剪切变形以及它们的弯曲曲率。结果表明,为了考虑后一种变形,需要引入第二梯度菌株。在引入域的合适离散化之后,该问题被制定为非线性约束最小化。使用不同的组成型假设来模拟一些变形过程,比较假设仅存在第一梯度或第二梯度变形的预测,或两者的组合。发现第一梯度模型导致在纤维的旋转中存在不连续性,而第二梯度模型通过边界层将这些不连续性正规化。特别地,在一些变形过程中,当使用第二梯度模型时,观察到几何性质的不稳定性,这可以通过第一梯度贡献来抑制。

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