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Universal composition-structure-property maps for natural and biomimetic platelet-matrix composites and stacked heterostructures

机译:天然和仿生血小板基质复合材料和堆叠异质结构的通用组成-结构-性质图

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摘要

Many natural and biomimetic platelet–matrix composites—such as nacre, silk, and clay-polymer—exhibit a remarkable balance of strength, toughness and/or stiffness, which call for a universal measure to quantify this outstanding feature given the structure and material characteristics of the constituents. Analogously, there is an urgent need to quantify the mechanics of emerging electronic and photonic systems such as stacked heterostructures. Here we report the development of a unified framework to construct universal composition–structure–property diagrams that decode the interplay between various geometries and inherent material features in both platelet–matrix composites and stacked heterostructures. We study the effects of elastic and elastic-perfectly plastic matrices, overlap offset ratio and the competing mechanisms of platelet versus matrix failures. Validated by several 3D-printed specimens and a wide range of natural and synthetic materials across scales, the proposed universally valid diagrams have important implications for science-based engineering of numerous platelet–matrix composites and stacked heterostructures.
机译:许多天然的和仿生的血小板-基质复合材料(如珍珠母,丝绸和粘土聚合物)都表现出强度,韧性和/或刚度的显着平衡,鉴于结构和材料特性,这就要求采取通用措施来量化这一突出特征的成分。类似地,迫切需要量化新兴的电子和光子系统(如堆叠的异质结构)的力学。在这里,我们报告了一个统一框架的开发,该框架用于构建通用的成分-结构-性质图,该图可解码血小板-基质复合材料和堆叠异质结构中各种几何形状与固有材料特征之间的相互作用。我们研究了弹性和完全弹性塑性矩阵,重叠偏移率以及血小板与基质破坏的竞争机制的影响。所提出的普遍有效的图表已通过数个3D打印的标本以及各种规模的天然和合成材料进行了验证,这对众多血小板-基质复合材料和堆叠异质结构的基于科学的工程设计具有重要意义。

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