【2h】

Mechanical cloak design by direct lattice transformation

机译:通过直接晶格变换设计机械斗篷

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摘要

Spatial coordinate transformations have helped simplifying mathematical issues and solving complex boundary-value problems in physics for decades already. More recently, material-parameter transformations have also become an intuitive and powerful engineering tool for designing inhomogeneous and anisotropic material distributions that perform wanted functions, e.g., invisibility cloaking. A necessary mathematical prerequisite for this approach to work is that the underlying equations are form invariant with respect to general coordinate transformations. Unfortunately, this condition is not fulfilled in elastic–solid mechanics for materials that can be described by ordinary elasticity tensors. Here, we introduce a different and simpler approach. We directly transform the lattice points of a 2D discrete lattice composed of a single constituent material, while keeping the properties of the elements connecting the lattice points the same. After showing that the approach works in various areas, we focus on elastic–solid mechanics. As a demanding example, we cloak a void in an effective elastic material with respect to static uniaxial compression. Corresponding numerical calculations and experiments on polymer structures made by 3D printing are presented. The cloaking quality is quantified by comparing the average relative SD of the strain vectors outside of the cloaked void with respect to the homogeneous reference lattice. Theory and experiment agree and exhibit very good cloaking performance.
机译:空间坐标变换已经帮助简化数学问题并解决了物理学中的复杂边值问题,这已有数十年的历史了。最近,材料-参数变换也已经成为用于设计不均匀和各向异性的材料分布的直观而强大的工程工具,该材料分布执行所需功能,例如隐形隐身。这种方法起作用的必要数学前提是,相对于一般坐标变换,基本方程是形式不变的。不幸的是,对于这种可以用普通弹性张量描述的材料而言,这种条件在弹性-固体力学中是无法满足的。在这里,我们介绍一种不同且更简单的方法。我们直接变换由单一成分材料组成的2D离散晶格的晶格点,同时保持连接晶格点的元素的属性相同。在证明了这种方法在各个领域都可行之后,我们将重点介绍弹性-固体力学。作为一个苛刻的例子,相对于静态单轴压缩,我们用有效的弹性材料掩盖了空隙。给出了通过3D打印制成的聚合物结构的相应数值计算和实验。通过比较隐蔽空隙之外的应变向量相对于均匀参考晶格的平均相对SD,可以量化隐蔽质量。理论与实验相吻合,并表现出很好的隐身性能。

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