论文标题

各向异性弹性板的各向异性肿胀

Anisotropic swelling of anisotropic elastic panels

论文作者

Wood, H. G., Hanna, J. A.

论文摘要

尽管近年来已经对薄弹性板的各向同性内面积膨胀问题进行了广泛的研究,但许多可编程的材料,包括nematic固体和3D打印结构,都是各向异性的,大多数工业材料都是各向异性的。在这项理论工作中,我们考虑了与工程木材复合板的生产相关的纵横比和材料特性的中心肿胀和收缩,其中平面膨胀和物质刚度都是高度正交性,从而导致能量尺度的多个分离。扭曲的板在柔软的方向上横向肿胀,并且在僵硬的方向上梯度采用了两种不同类型的构型,即轴对称和扭曲,我们用玩具模型来说明。我们采用了两个参数的同量法家族来嵌入肿胀编程的度量标准,从而将问题降低到一个单独减少弯曲能量的方法。一个简单的论点被认为可以仔细地预测平均轴对称曲率。虽然纯粹的圆柱形形状无法通过纯净的面内肿胀取代,但它们可以在高度各向异性的系统中紧密近似。但是,各向异性可以有利于扭曲,并打破与各向同性材料中最小表面相关的退化软变形模式。从轴对称到扭曲形状的分叉可以由各向异性或中央收缩曲线的某些属性诱导。最后,我们注意到我们的发现如何通过观察扭曲的构象来表明对制成面板中水分不均匀性诊断的实际限制,这是由于定性响应对档案细节的敏感性。

While isotropic in-plane swelling problems for thin elastic sheets have been studied extensively in recent years, many shape-programmable materials, including nematic solids and 3D-printed structures, are anisotropic, as are most industrial sheet materials. In this theoretical work, we consider central swelling and shrinkage of plates of aspect ratio and material properties relevant to the manufacture of engineered wood composite panels in which both in-plane swelling and material stiffness are highly orthotropic, leading to multiple separations in energy scales. With transverse swelling in the soft direction, and gradients in the stiff direction, the warped plates adopt two distinct types of configurations, axisymmetric and twisted, which we illustrate with toy models. We employ a two-parameter family of isometries to embed the metric programmed by the swelling, thus reducing the problem to one of minimizing bending energy alone. A simple argument is seen to closely predict averaged axisymmetric curvatures. While purely cylindrical shapes are unobtainable by pure in-plane swelling, they can be closely approximated in a highly anisotropic system. However, anisotropy can favor twisting, and breaks a degenerate soft deformation mode associated with minimal surfaces in isotropic materials. Bifurcations from axisymmetric to twisted shapes can be induced by anisotropy or by certain attributes of a central shrinkage profile. Finally, we note how our findings indicate practical limitations on the diagnosis of moisture inhomogeneities in manufactured panels by observation of warped conformations, due to the sensitivity of the qualitative response to specifics of the profile.

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