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Microfiller effect on rheology, microstructure, and mechanical properties of high-performance concrete.

机译:微填料对高性能混凝土的流变性,微观结构和力学性能的影响。

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摘要

The objective of this study was to develop a fundamental understanding of the microfiller effect in high-performance concrete.;The mechanisms underlying the microfiller effect on the rheology were investigated in cement paste using a coaxial-cylinders viscometer, a mini slump test, the Marsh cone flow time, and a pressure bleed test. They were also studied in mortars using the ASTM flow-table test, and in concrete using a computer-controlled rheometer, a slump-flow test, the conventional slump test, and an induced bleeding test. It was found that microfillers enhance the superplasticizer efficiency because they increase the surface layer water and reduce the bulk water through a reduced void space in the particulate mixture. Ultrafine particles also decrease the bleed water, which reduces the occurrence of bleed channels and low density microstructural features at interfaces. It was also demonstrated that triple-blended cements containing pozzolanic and non-pozzolanic fillers can achieve superior rheological properties.;The microfiller effect on mechanical properties was investigated in mortars and in concrete both at early and later ages. It was discovered that this effect depends on the initial porosity of the system. Thus, up to 15% replacement of cement by a non-cementitious filler caused significant increases in strength. This was even more significant in triple-blended cements containing combinations of pozzolanic and non-pozzolanic fillers for which up to 30% partial replacement of cement resulted in significant strength increases.;Ultrafine carbonate fillers increased the very early age strength by about one order of magnitude, because certain microfillers appear to present energetically preferential substrates for the germination and growth of calcium hydroxide. Removal of calcium ions from the solution catalyzes the dissolution of C;Quantitative image analysis of backscattered electron micrographs was used to quantify the microfiller effect on the microstructure of high-performance concrete. Analysis was carried out on cement paste and concrete both at 1d and at 28d. The acceleration of the hydration reactions at early ages due to carbonate microfillers was confirmed by this technique. Microfillers generally decreased the porosity and refined the microstructural features.;The microfiller effect in high-performance concrete was studied from the standpoint of the theory of particle packing. An insight into particle packing models, the effects of particle packing on rheology, and the effects of particle size distribution on hydration reactions was obtained. A new parameter, the microfiller efficiency factor was developed, based on an estimation of packing density and microfiller effect on hydration rate. A close correlation was found between the microfiller efficiency factor and compressive strength. In addition, a new model relating microstructure to strength was proposed. The model proposed herein considers for the first time a quantitative value representing the nature of the hydration products to help estimate strength. (Abstract shortened by UMI.)
机译:这项研究的目的是对高性能混凝土中的微填料效应有一个基本的了解。;使用同轴圆柱体粘度计,微型坍落度试验,Marsh在水泥浆中研究了微填料效应对流变学的潜在机理。锥流时间和压力排放测试。还使用ASTM流表测试在灰浆中研究了它们,并使用计算机控制的流变仪,坍落度测试,常规坍落度测试和诱导渗漏测试在混凝土中对它们进行了研究。发现微填料提高了超塑化剂的效率,因为它们增加了表层水并通过减小了颗粒混合物中的空隙空间而减少了散装水。超细颗粒还减少了渗出水,从而减少了渗出通道和界面处低密度微结构特征的出现。还证明了含有火山灰和非火山灰填料的三掺水泥可以达到优异的流变性能。在早期和晚期,研究了砂浆和混凝土中微填料对力学性能的影响。已经发现,这种影响取决于系统的初始孔隙率。因此,用非胶凝填料最多替代水泥的15%会导致强度显着提高。在含有火山灰和非火山灰填料组合的三掺水泥中,这一点更为显着,对于这些水泥,部分取代水泥的比例高达30%会导致强度显着提高;超细碳酸盐填料的早期强度提高了约一个数量级。因为某些微填料似乎在能量上优先呈现氢氧化钙发芽和生长的基质。从溶液中去除钙离子可催化C的溶解;使用反向散射电子显微照片的定量图像分析来量化微填料对高性能混凝土微观结构的影响。在第1天和第28天对水泥浆和混凝土进行了分析。该技术证实了由于碳酸盐微填料而在早期引起的水合反应的加速。微填料通常会降低孔隙率并改善其微观结构特征。;从颗粒填充理论的角度研究了高性能混凝土中的微填料效应。深入了解颗粒堆积模型,颗粒堆积对流变学的影响以及粒度分布对水合反应的影响。在估算填充密度和微填料对水合速率的影响的基础上,开发了一个新参数,即微填料效率因子。发现微填料效率因子与抗压强度之间存在密切的相关性。此外,提出了一种将微观结构与强度联系起来的新模型。本文提出的模型首次考虑了代表水合产物性质的定量值,以帮助估算强度。 (摘要由UMI缩短。)

著录项

  • 作者

    Nehdi, Moncef.;

  • 作者单位

    The University of British Columbia (Canada).;

  • 授予单位 The University of British Columbia (Canada).;
  • 学科 Engineering Civil.;Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 1998
  • 页码 186 p.
  • 总页数 186
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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