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Drying shrinkage of ternary blends in mortar and concrete.

机译:砂浆和混凝土中三元混合物的干缩。

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摘要

The work presented in this thesis involves the study of drying shrinkage behavior of mortars and field concrete mixtures made with ternary cementitious blends. The thesis is composed of two papers resulting from the study: (1) Short-Term Drying Shrinkage of Ternary Blends and (2) Drying Shrinkage of Ternary Blends for Use in Transportation Structure. In the former, statistical response surface analysis was employed to develop shrinkage models to better understand the drying shrinkage behavior of mortar mixes made with ternary blends. In the latter, ternary blend concrete mixtures used for pavement and bridge deck structures in different states were selected. Factors affecting drying shrinkage behavior of these ternary blend concretes were also investigated.;In Paper 1, shrinkage behavior of mortar mixes made with various ternary blends was studied. Ternary blends consisting of different combinations of portland or blended cement, slag cement, fly ash (Class C and F) and/or silica fume were considered: the amounts of slag cement, fly ash and silica fume ranged between 15--35%, 13--30%, and 3--10% by mass of cementitious, respectively. Mortar bars were made with the ternary blends and subjected to a drying condition (i.e., T = 73 +/- 3 °F and RH = 50 +/- 4%) after standard curing for 28 days. Free shrinkage of the mortar bars was measured up to 28 days. Based on the test results, a response surface analysis was done to examine the effects of blend proportions on shrinkage behavior of the mortars and a statistical model was developed for predicting the mortar shrinkage behavior. Furthermore, to validate the models, shrinkage strains of an independent group of mortar mixes were measured, and the measured values were compared with the predicted values. The results indicated that among the three supplementary cementitious materials in the ternary blends studied, slag cement showed a dominant effect on mortar shrinkage. The contribution of Class C fly ash to the mortar free shrinkage was slightly less than that of slag cement. Increasing silica fume content slightly increased free shrinkage, while an increase in Class F fly ash content slightly decreased free shrinkage of the mortar. There was a good correlation between the measured shrinkage strain and the strain predicted from the shrinkage model developed from the response surface analysis.;The work discussed in Paper 2 investigated the drying shrinkage behavior of ternary blend concretes that were used in transportation structures. Factors affecting drying shrinkage behavior of ternary blend concretes were studied. Five concrete mixes, used for either pavement or bridge deck construction, were tested for both restrained and unrestrained shrinkages. The effects of blend materials and mix proportion on the concrete shrinkages were assessed. The results indicated that shrinkage strain rate linearly increased with clay content of fine aggregate, cementitious material content, paste-to-void ratio (by volume), and dosage of water reducer of the concrete mixes.;The study demonstrates that the supplementary cementitious materials (SCMs) can be used to develop a statistical model in order to quantitatively predict drying shrinkage strain. The study gives a better understanding on how SCMs affect mortar and concrete drying shrinkage behavior. Both free and restrained shrinkage methodologies provide efficient analyses on interacted drying shrinkage influence factors. The cracking potential derived from restrained ring shrinkage test can be used to predict drying shrinkage cracking potential of ternary blend concrete mixtures.
机译:本文所涉及的工作涉及砂浆和由三元水泥混合料制成的现场混凝土混合物的干缩性能研究。本论文由研究得出的两篇论文组成:(1)三元共混物的短期干燥收缩和(2)运输结构中三元共混物的干燥收缩。在前者中,采用统计响应表面分析来开发收缩模型,以更好地理解由三元混合物制得的砂浆混合物的干燥收缩行为。在后者中,选择了用于不同状态的路面和桥面板结构的三元混合混凝土混合物。还研究了影响这些三元掺混混凝土干缩性能的因素。在论文1中,研究了由各种三元掺混料制成的砂浆混合物的收缩性能。考虑了由硅酸盐水泥或混合水泥,矿渣水泥,粉煤灰(C和F级)和/或硅粉的不同组合组成的三元共混物:矿渣水泥,粉煤灰和硅粉的量在15--35%之间,水泥的质量分别为13--30%和3--10%。用三元共混物制备砂浆棒,并在标准固化28天后经受干燥条件(即,T = 73 +/- 3°F和RH = 50 +/- 4%)。砂浆棒的自由收缩测量到长达28天。根据测试结果,进行了响应面分析,以检查掺合比例对砂浆收缩性能的影响,并建立了统计模型来预测砂浆的收缩性能。此外,为验证模型,测量了一组独立的砂浆混合物的收缩应变,并将测量值与预测值进行了比较。结果表明,在三元掺合料的三种辅助胶结材料中,矿渣水泥对砂浆的收缩起主要作用。 C级粉煤灰对砂浆无收缩性的贡献略小于矿渣水泥。硅粉含量的增加会稍微增加自由收缩率,而F级粉煤灰含量的增加会稍微降低砂浆的自由收缩率。实测收缩应变与根据响应面分析建立的收缩模型预测的应变之间具有良好的相关性。论文2中讨论的工作研究了用于运输结构的三元混合混凝土的干燥收缩行为。研究了影响三元掺混混凝土干缩性能的因素。测试了用于路面或桥面板施工的五种混凝土混合物的收缩率和自由度。评估了混合材料和混合比例对混凝土收缩率的影响。结果表明,收缩应变速率随细骨料中粘土含量,胶凝材料含量,浆孔比(体积比)和混凝土配合剂减水剂用量的增加而线性增加;研究表明,补充胶凝材料(SCM)可用于开发统计模型,以便定量预测干燥收缩应变。该研究对SCM如何影响砂浆和混凝土的干燥收缩行为提供了更好的理解。自由收缩收缩方法和约束收缩收缩方法都可以对相互作用的干燥收缩影响因素进行有效分析。由约束环收缩试验得出的开裂潜力可用于预测三元混合混凝土混合物的干缩开裂潜力。

著录项

  • 作者

    Wang, Xuhao.;

  • 作者单位

    Iowa State University.;

  • 授予单位 Iowa State University.;
  • 学科 Engineering Civil.
  • 学位 M.S.
  • 年度 2011
  • 页码 267 p.
  • 总页数 267
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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