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Biomimetic Nanostructured Interfaces for Hierarchical Composites

机译:用于仿生复合材料的仿生纳米结构界面

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Creating a hierarchical interface between the reinforcement and matrix phases of fi ber reinforced polymer composites has become an effective strategy toward development of bioinspired structural composites. The resulting materials display exceptional characteristics such as having both high stiffness and high toughness simultaneously, which is rare in homogeneous materials. Although the effi cacy of nanostructured interfaces has been established, the mechanisms associated with their performance have not been explored yet. Here, strain transfer across a nanowire interphase is visualized in order to understand the working principles of physical interface modifi cations. This is accomplished by using a functionally graded piezoelectric interface composed of nanowires, as their piezoelectric properties can be utilized to control the strain on one side of the interface. It is demonstrated that the nanowire“whiskers” cause an even strain transfer from the reinforcement phase into the matrix phase, eliminating stress concentration between the phases.
机译:在纤维增强聚合物复合材料的增强相和基体相之间创建分层界面已成为开发生物启发性结构复合材料的有效策略。所得材料显示出优异的特性,例如同时具有高刚度和高韧性,这在均质材料中很少见。尽管已经建立了纳米结构界面的功效,但尚未探索与其性能相关的机制。在这里,可以看到跨纳米线相间的应变传递,以便了解物理界面修饰的工作原理。这是通过使用由纳米线组成的功能渐变压电界面来实现的,因为可以利用其压电特性来控制界面一侧的应变。事实证明,纳米线“晶须”引起从增强相到基体相的均匀应变转移,消除了相之间的应力集中。

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