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Multifunctional periodic cellular solids and the method of making same

机译:多功能周期性多孔固体及其制备方法

摘要

Methods of making truss-based periodic cellular solids that have improved structural properties and multifunctional design. Many materials (metals, ceramics, glasses, polymers, composites and even semiconductors) can be shaped into cellular, truss-like architectures with open, closed or mixed types of porosity and then very uniformly arranged in controlled, three-dimensional space-filling arrays. The truss-like elements do not necessarily have a constant cross-section, nor are they necessarily straight or solid throughout (they could be hollow). Their cross sections can be circular, square, triangular, I-beam or other shapes of interest depending on multifunctional needs. When bonded together by solid state, liquid phase, pressing or other methods at points of contact, a cellular structure of highly repeatable cell geometry and few imperfections results. The bonds hold the truss elements together in a desired configuration, allow load to be efficiently transferred amongst them and make the resulting structure significantly more rigid when bent, compressed or sheared. These constructed cellular solids offer a broad range of multifunctional structural uses with a tremendous freedom for choosing the truss type, orientation and distribution. Multiple materials can be intermixed.
机译:制备具有改进的结构特性和多功能设计的基于桁架的周期性多孔固体的方法。许多材料(金属,陶瓷,玻璃,聚合物,复合材料甚至半导体)可以成型为具有开孔,闭孔或混合孔隙类型的蜂窝状桁架式结构,然后非常均匀地排列在受控的三维空间填充阵列中。桁架状的单元不一定具有恒定的横截面,也不一定必须是直的或实心的(它们可以是空心的)。它们的横截面可以是圆形,正方形,三角形,工字梁或其他感兴趣的形状,具体取决于多功能需求。当通过固态,液相,压制或其他方法在接触点结合在一起时,会形成具有高度可重复的细胞几何形状且几乎没有缺陷的细胞结构。粘结将桁架元件以期望的构型保持在一起,允许载荷在它们之间有效地传递,并且在弯曲,压缩或剪切时使所得结构明显更坚固。这些构造的蜂窝状固体提供了广泛的多功能结构用途,并为选择桁架类型,方向和分布提供了极大的自由。可以混合多种材料。

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