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Lightweight Mechanical Metamaterials with Tunable Negative Thermal Expansion

机译:具有可调负热膨胀的轻质机械超材料

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摘要

Ice floating on water is a great manifestation of negative thermal expansion (NTE) in nature. The limited examples of natural materials possessing NTE have stimulated research on engineered structures. Previous studies on NTE structures were mostly focused on theoretical design with limited experimental demonstration in two-dimensional planar geometries. In this work, aided with multimaterial projection microstereolithography, we experimentally fabricate lightweight multimaterial lattices that exhibit significant negative thermal expansion in three directions and over a temperature range of 170 degrees. Such NTE is induced by the structural interaction of material components with distinct thermal expansion coefficients. The NTE can be tuned over a large range by varying the thermal expansion coefficient difference between constituent beams and geometrical arrangements. Our experimental results match qualitatively with a simple scaling law and quantitatively with computational models.
机译:冰漂浮在水面上是自然界中负热膨胀(NTE)的重要体现。具有NTE的天然材料的有限例子刺激了工程结构的研究。以前对NTE结构的研究主要集中在理论设计上,而在二维平面几何中的实验证明很少。在这项工作中,借助多材料投影微立体光刻技术,我们实验制造了轻质的多材料晶格,这些晶格在三个方向上以及在170度的温度范围内表现出明显的负热膨胀。这种NTE是由具有不同热膨胀系数的材料成分之间的结构相互作用引起的。通过改变组成梁和几何布置之间的热膨胀系数差异,可以在很大范围内调整NTE。我们的实验结果在质量上与简单的缩放定律匹配,在数量上与计算模型匹配。

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