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Research progress in advanced nanomechanical characterization of cement-based materials

机译:水泥基材料先进纳米机械表征研究进展

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摘要

Advanced characterization techniques have provided powerful tools for characterizations of materials at micro and nano-scales worldwide. Although some overviews on nanomechanical characterizations of cement-based materials have been published, they have often focused on nanoindentation. Very limited reviews have been reported on the applications of modulus mapping, PeakForce quantitative nanomechanical mapping, and nanoscratch for researches on the micro and nanoscale compositions, structures and mechanical properties of modem cement-based materials. This paper is aimed at filling this blank. Based on an extensive literature review and authors' own experience, the basic knowledge (e.g., general concepts, developments, and progresses) involved in the state-of-the-art nanomechanical characterization techniques have been systematically summarized in this paper. The critical issues (e.g., sample preparation procedures and requirements, measurements, and data analysis methods) of these techniques have been discussed in details. The applications of these techniques, especially their suitability for critical characterization of different scales of interfaces of cement-based materials are compared. Finally, the future perspectives of these nanomechanical characterization techniques are highlighted. It is expected that the outlook of this paper can help future researchers make scientific justification on selection of nanomechanical characterization methods and steer inquisitive readers into substantial details that may lead them to successful applications of these advanced techniques.
机译:高级表征技术提供了强大的工具,用于在全球微型和纳米秤上的材料表征。虽然已经公布了对基于水泥材料的纳米机械表征的一些概述,但它们经常集中在纳米狭窄上。已经有限的评论已经报道了模量测绘,Peakforce定量纳米机械映射和纳秒用于研究MODEM水泥基材料的微型和纳米组合物,结构和机械性能的研究。本文旨在填补这种空白。基于广泛的文献综述和作者自己的经验,本文已经系统地总结了涉及最先进的纳米力学表征技术所涉及的基本知识(例如,一般概念,发展和进展)。已经详细讨论了这些技术的关键问题(例如,样品制备程序和要求,测量和数据分析和数据分析方法)。比较了这些技术的应用,特别是它们对基于水泥材料界面的不同尺度的关键表征的适用性。最后,突出了这些纳米力学表征技术的未来观点。预计本文的前景可以帮助未来的研究人员对纳米力学表征方法的选择进行科学的理由,并将正性读者转化为可能导致这些先进技术的成功应用的大量细节。

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