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Nano-Engineering of Concrete

机译:混凝土的纳米工程

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This paper summarizes recent developments in the field of nanoindentation analysis of highly heterogeneous composites. The fundamental idea of the proposed approach is that it is possible to assess nanostructure from the implementation of micromechanics-based scaling relations for a large array of nanoindentation tests on heterogeneous materials. We illustrate this approach through the application to calcium-silicate-hydrate (C-S-H), the binding phase of all cement-based materials. For this important class of materials, we show that C-S-H exists in at least three structurally distinct but compositionally similar forms: low density, high density and ultra-high density. These three forms differ merely in the packing density of 5-nm sized particles. The proposed approach also gives access to the solid particle properties of C-S-H, which can now be compared with results from atomistic simulations. By way of conclusion, we show how this approach provides a new way of analyzing complex hydrated nanocomposites, in addition to classical microscopy techniques and chemical analysis. This approach will turn out invaluable in our quest of adding the necessary "green" value to a commodity, concrete, by nano-engineering higher strength and toughness from first principles.
机译:本文总结了高度异质复合材料的纳米压痕分析领域的最新进展。所提出方法的基本思想是,可以通过对异质材料进行大量纳米压痕测试,通过基于微力学的比例关系的实现来评估纳米结构。我们通过将其应用到所有水泥基材料的粘结相硅酸钙水合物(C-S-H)中来说明这种方法。对于这类重要的材料,我们表明C-S-H至少以三种结构上不同但组成相似的形式存在:低密度,高密度和超高密度。这三种形式仅在5nm大小的颗粒的堆积密度上有所不同。所提出的方法还可以访问C-S-H的固体颗粒特性,现在可以将其与原子模拟的结果进行比较。作为结论,我们展示了这种方法除了经典的显微镜技术和化学分析之外,如何提供一种分析复杂水合纳米复合材料的新方法。这种方法对于我们寻求通过从第一性原理纳米工程化更高的强度和韧性为商品,混凝土增加必要的“绿色”价值方面将具有无价的价值。

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