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可重构细胞复合材料。

Reversibly assembled cellular composite materials.

机构信息

Center for Bits and Atoms, Massachusetts Institute of Technology, Cambridge, MA 02139, USA.

出版信息

Science. 2013 Sep 13;341(6151):1219-21. doi: 10.1126/science.1240889. Epub 2013 Aug 15.

Abstract

We introduce composite materials made by reversibly assembling a three-dimensional lattice of mass-produced carbon fiber-reinforced polymer composite parts with integrated mechanical interlocking connections. The resulting cellular composite materials can respond as an elastic solid with an extremely large measured modulus for an ultralight material (12.3 megapascals at a density of 7.2 milligrams per cubic centimeter). These materials offer a hierarchical decomposition in modeling, with bulk properties that can be predicted from component measurements and deformation modes that can be determined by the placement of part types. Because site locations are locally constrained, structures can be produced in a relative assembly process that merges desirable features of fiber composites, cellular materials, and additive manufacturing.

摘要

我们介绍了一种复合材料,它是通过可逆地组装由大量生产的碳纤维增强聚合物制成的三维晶格零件,这些零件具有集成的机械互锁连接。所得到的多孔复合材料可以作为具有极高测量模量的弹性固体来响应,对于超轻材料(密度为每立方厘米 7.2 毫克时为 12.3 兆帕斯卡)。这些材料在建模方面提供了一种分层分解,其整体特性可以从组件测量中预测,而变形模式可以通过零件类型的放置来确定。由于位置受到局部限制,因此可以在相对组装过程中生产结构,该过程结合了纤维复合材料、多孔材料和增材制造的优点。

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