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A novel method for a multi-level hierarchical composite with brick-and-mortar structure

机译:一种具有实体结构的多层分层复合结构的新方法

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The fascination for hierarchically structured hard tissues such as enamel or nacre arises from their unique structure-properties-relationship. During the last decades this numerously motivated the synthesis of composites, mimicking the brick-and-mortar structure of nacre. However, there is still a lack in synthetic engineering materials displaying a true hierarchical structure. Here, we present a novel multi-step processing route for anisotropic 2-level hierarchical composites by combining different coating techniques on different length scales. It comprises polymer-encapsulated ceramic particles as building blocks for the first level, followed by spouted bed spray granulation for a second level, and finally directional hot pressing to anisotropically consolidate the composite. The microstructure achieved reveals a brick-and-mortar hierarchical structure with distinct, however not yet optimized mechanical properties on each level. It opens up a completely new processing route for the synthesis of multi-level hierarchically structured composites, giving prospects to multi-functional structure-properties relationships.
机译:对分层结构的硬组织(例如牙釉质或珍珠质)的迷恋源于它们独特的结构-属性-关系。在过去的几十年中,这极大地推动了复合材料的合成,模仿了珍珠质的实体结构。但是,仍然缺乏显示出真正层次结构的合成工程材料。在这里,我们通过在不同的长度尺度上组合不同的涂层技术,提出了一种各向异性2级分层复合材料的新颖多步骤处理路线。它包含聚合物封装的陶瓷颗粒作为第一阶段的基础材料,然后进行喷头流化床造粒第二阶段,最后进行定向热压以各向异性固结复合材料。所获得的微观结构揭示了一个实体层次结构,在每个级别都具有独特但尚未优化的机械性能。它为多层多层结构复合材料的合成开辟了一条全新的加工路线,为多功能结构-特性关系提供了前景。

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