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Variational Framework for FIC Formulations in Continuum Mechanics: High Order Tensor-Derivative Transformations and Invariants

机译:连续力学中FIC公式的变分框架:高阶张量-导数变换和不变量

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This is part of an article series on a variational framework for continuum mechanics based on the Finite Increment Calculus (FIC). The formulation utilizes high order derivatives of the classical fields of continuum mechanics integrated over control regions to construct stabilizing modification terms. Fields may include displacements, body forces, strains, stresses, pressure and volumetric strains. To support observer-invariant FIC formulations, we have catalogued field transformation equations as well as sets of linear and quadratic invariants of fields and of their derivatives up to appropriate order. Attention is focused on the two-dimensional case of a body in plane strain under the drilling-rotation transformation group. Results are presented for displacement and body-force derivatives of orders up to 4, and for stress, strain, pressure and volumetric strain derivatives of order up to 3. The material assembled here is self-contained because this catalog is believed to be useful beyond FIC applications; for example gradient-based, nonlocal constitutive models of multiscale mechanics and physics that involve finite characteristic dimensions analogous to FIC steplengths.
机译:这是基于有限增量演算(FIC)的连续体力学变体框架文章系列的一部分。该公式利用整合在控制区域上的连续介质力学经典领域的高阶导数来构造稳定的修饰项。字段可能包括位移,体力,应变,应力,压力和体积应变。为了支持观察者不变的FIC公式,我们对场变换方程以及场及其派生变量的线性和二次不变量集进行了分类(按适当顺序排列)。注意力集中在钻-旋转变换组下的平面应变物体的二维情况下。给出的结果是位移和体力导数最高为4的结果,应力,应变,压力和体积应变导数最高为3的结果。这里组装的材料是自包含的,因为据信该目录在以下方面是有用的FIC申请;例如,基于梯度的,多尺度力学和物理学的非局部本构模型,涉及类似于FIC步长的有限特征尺寸。

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