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The effect of the aggregates characteristics on the performance of portland cement concrete.

机译:骨料特性对硅酸盐水泥混凝土性能的影响。

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摘要

Aggregate shape, texture, and grading have a significant effect on the performance of fresh concrete. Aggregate blends with well-shaped, rounded, and smooth particles require less paste for a given slump than blends with flat, elongated, angular, and rough particles. At the same time, uniform gradings with proper amounts of each size, result in aggregate blends with high packing and in concrete with low water demand. Optimized aggregate blends have high packing, requiring low amounts of paste. As a result, they are less expensive and will have less durability problems caused by the paste such as heat generation, porosity, and drying shrinkage.; Current ASTM C 33 standard limits the amount of material passing the N 200 sieve (micro fines) to 7 percent. However, manufactured fine aggregate (MFA) usually has between 10 and 20 percent micro fines. These limits, intended for natural sands, force MFA producers to wash aggregate incrementing costs and generating environmental issues. Research at the University of Texas and experience in other countries show that good quality concrete can be made with MFA with high micro fines content.; Many proportioning methods such as ACI 211 do not consider high amounts of micro fines, considers partially the effect of shape and texture of aggregates, and do not encourage optimization of aggregate.; The effect of shape, texture and grading of aggregates on fresh concrete was evaluated experimentally, quantified by means a proportioning method based on packing density concepts, the Compressible Packing Model (CPM), and analyzed by an empirical tool suggested by Shilstone. The effect of different types and amounts of micro fines was evaluated simultaneously as well as the impact of chemical admixtures and pozzolanic additions on concrete with high micro fines was also evaluated experimentally. And it was concluded that chemical admixtures and some pozzolanic additions could be used to improve the workability of concrete with high micro fines without negatively affecting hardened concrete.; Guidelines for proportioning and optimizing aggregate blends were made based on Shilstone's Coarseness Chart and the 0.45 Power Chart and CPM equations and procedures.
机译:骨料的形状,质地和等级对新鲜混凝土的性能有重要影响。与给定的坍落度相比,具有良好形状,圆形和光滑颗粒的骨料共混物与具有扁平,细长,有角和粗糙的颗粒的共混物所需的糊剂更少。同时,以适当的大小混合均匀的每种尺寸,导致骨料掺和量高,而混凝土的需水量低。优化的骨料混合物具有高填充性,需要少量的糊剂。结果,它们更便宜,并且具有较少的由糊剂引起的耐久性问题,例如发热,孔隙率和干燥收缩。当前的ASTM C 33标准将通过N 200筛(超细粉)的材料量限制为7%。但是,人造细骨料(MFA)通常具有10%到20%的细粉。这些限制适用于天然沙,迫使MFA生产商洗净增加的总成本并产生环境问题。得克萨斯大学的研究和其他国家的经验表明,可以使用高微细粉含量的MFA制成高质量的混凝土。许多配比方法(例如ACI 211)没有考虑大量的细粉,部分地考虑了骨料的形状和质地的影响,并且不鼓励骨料的优化。实验评估了骨料的形状,质地和等级对新鲜混凝土的影响,通过基于堆积密度概念的比例法,可压缩堆积模型(CPM)进行量化,并使用Shilstone建议的经验工具进行分析。同时评估了不同类型和数量的超细粉的影响,还通过实验评估了化学掺合料和火山灰添加物对高超细粉的混凝土的影响。得出的结论是,可以使用化学外加剂和一些火山灰添加剂来改善具有高微细度的混凝土的可加工性,而不会对硬化混凝土产生负面影响。根据Shilstone的粗度图和0.45功率图以及CPM方程和程序,制定了比例配比和优化骨料混合物的准则。

著录项

  • 作者

    Quiroga, Pedro Nel.;

  • 作者单位

    The University of Texas at Austin.;

  • 授予单位 The University of Texas at Austin.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2003
  • 页码 399 p.
  • 总页数 399
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;
  • 关键词

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