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Lithography-based ceramic manufacture (LCM) of auxetic structures: present capabilities and challenges

机译:基于平版印刷的膨胀结构陶瓷制造(LCM):当前的能力和挑战

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摘要

Auxetic metamaterials are known for having a negative Poisson's ratio (NPR) and for displaying the unexpected properties of lateral expansion when stretched and densification when compressed. Even though a wide set of micro-manufacturing resources have been used for the development of auxetic metamaterials and related devices, additional precision and an extension to other families of materials is needed for their industrial expansion. In addition, their manufacture using ceramic materials is still challenging. In this study we present a very promising approach for the development of auxetic metamaterials and devices based on the use of lithography-based ceramic manufacturing. The process stands out for its precision and complex three-dimensional geometries attainable, without the need of supporting structures, and for enabling the manufacture of ceramic auxetics with their geometry controlled from the design stage with micrometric precision. To our knowledge it represents the first example of application of this technology to the manufacture of auxetic geometries using ceramic materials. We have used a special three-dimensional auxetic design whose remarkable NPR has been previously highlighted.
机译:众所周知,辅助超材料的泊松比(N泊松)为负,并且在拉伸时表现出意想不到的横向膨胀,在压缩时表现出致密的特性。尽管已经使用了广泛的微制造资源来开发膨胀型超材料和相关设备,但要实现其工业扩张,就需要更高的精度并扩展到其他材料系列。另外,它们使用陶瓷材料的制造仍然具有挑战性。在这项研究中,我们提出了一种非常有希望的方法,用于基于平版印刷的陶瓷制造技术来发展流变超材料和设备。该工艺以其精确度和复杂的三维几何形状(无需支撑结构)而突出,并且能够在设计阶段以微米级精度控制其几何形状,从而能够制造陶瓷膨胀剂。据我们所知,它代表了该技术在使用陶瓷材料制造膨胀几何形状中应用的第一个例子。我们使用了特殊的三维声学设计,其非凡的NPR先前已得到强调。

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