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首页> 外文期刊>Proceedings of the Society for Experimental Mechanics >Thin and Thermally Stable Periodic Metastructures
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Thin and Thermally Stable Periodic Metastructures

机译:薄和热稳定的周期性亚结构

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摘要

We design, fabricate, and test thin thermally stable metastructures consisting of bi-metallic unit cells and show how the coefficient of thermal expansion (CTE) of these metastructures can be finely and coarsely tuned by varying the CTE of the constituent materials and the unit cell geometry. Planar and three-dimensional finite element method modeling (FEM) is used to drive our design and inform experiments, and predict the response of these metastructures. We develop a robust experimental fabrication procedure in order to fabricate thermally stable samples with high aspect ratios. We use digital image correlation (DIC) and an infrared camera to experimentally measure displacement and temperature during testing and compute the CTE of our samples. The samples, composed of an aluminum core and an external titanium frame, exhibit a CTE of 2.6 ppm/℃, which is significantly lower than either constituent. These unit cells can be assembled over a large area to create thin low-CTE foils. Finally, we demonstrate how the approach developed in this work can be used to fabricate metastructures with CTE's ranging from -3.6 ppm/℃ to 8.4 ppm/℃.
机译:我们设计、制造并测试薄热稳定的亚结构bi-metallic组成单位细胞和展示的系数热膨胀(CTE)的亚结构可以通过改变细和粗调CTE的组成材料和单位细胞几何。有限元法(FEM)用于建模驱动我们的设计和通知实验,预测这些亚结构的响应。开发一个健壮的实验制造为了制造过程热稳定样品具有高纵横比。图像相关性(DIC)和一个红外摄像机实验测量位移和温度测试和计算CTE的期间我们的样品。核心和外部钛架、展览CTE 2.6 ppm /℃,显著降低比组成。组装在一个大区域创建薄low-CTE衬托。方法可用于开发的这项工作制造与CTE的从亚结构-3.6 ppm /℃至8.4 ppm /℃。

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