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Theory of thin thermoelastic rods made of porous materials

机译:多孔材料制成的细热弹棒的理论

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In this paper, we consider thin rods modeled by the direct approach, in which the rod-like body is regarded as a one-dimensional continuum (i.e., a deformable curve) with a triad of rigidly rotating orthonormal vectors attached to each material point. In this context, we present a model for porous thermoelastic curved rods, having natural twisting and arbitrary shape of cross-section. To describe the porosity, we employ the theory of elastic materials with voids. The basic laws of thermodynamics are applied directly to the one-dimensional continuum, and the nonlinear governing equations are established. We formulate the constitutive equations and determine the structure of constitutive tensors. We prove the uniqueness of solution to the boundary-initial-value problem associated with the deformation of porous thermoelastic rods in the framework of linear theory. Then, we show the decoupling of the bending-shear and extension-torsion problems for straight porous rods. Using a comparison with three-dimensional equations, we identify and give interpretations to the relevant fields introduced in the direct approach. Finally, we consider the case of orthotropic materials and determine the constitutive coefficients for deformable curves in terms of three-dimensional constitutive constants by means of comparison between simple solutions obtained in the two approaches for porous thermoelastic rods.
机译:在本文中,我们考虑通过直接方法建模的细棒,其中棒状体被视为一维连续体(即可变形曲线),并且在每个实体点上附加了三重刚性旋转的正交法向矢量。在这种情况下,我们提出了一种多孔热弹性弯曲杆的模型,该杆具有自然扭曲和任意形状的横截面。为了描述孔隙率,我们采用了具有空隙的弹性材料理论。将热力学的基本定律直接应用于一维连续体,并建立非线性控制方程。我们制定本构方程并确定本构张量的结构。在线性理论的框架下,我们证明了与多孔热弹性棒变形相关的边界初值问题解的唯一性。然后,我们显示了直多孔棒的弯曲剪切和延伸扭转问题的解耦。通过与三维方程的比较,我们识别并解释了直接方法中引入的相关领域。最后,我们考虑正交各向异性材料的情况,并通过比较在两种方法中获得的多孔热弹性棒的简单解,根据三维本构常数确定可变形曲线的本构系数。

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