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Effects of Manufactured Sand Characteristics on Water Demand of Mortar and Concrete Mixtures

机译:人工制砂特性对砂浆和混凝土混合物需水量的影响

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Manufactured sands are produced by crushing rock deposits to produce a fine aggregate that is generally more angular and has a rougher surface texture than naturally weathered sand particles. Manufactured sands can also contain significant quantities of rock dust. As natural sand deposits become depleted near some areas of metropolitan growth and viable sand sources non-susceptible to alkali-silica reactivity are consumed, the use of manufactured sands as a replacement fine aggregate in concrete is receiving attention. Designers, specifiers, contractors, and material suppliers need to understand the effects of manufactured sand angularity, as well as fines content on concrete water demand and concrete durability. As part of a comprehensive research program, various manufactured sand properties and their effects on fresh and hardened concrete properties were investigated. This paper investigates the effects of manufactured sand properties on water demand of mortar and concrete. The relationships between manufactured sand characteristics and hardened concrete properties are discussed in subsequent papers. Manufactured sands with a wide range of particle angularities and fines contents were included in the testing program. The program involved measurement of various sand attributes, and a subsequent testing phase on mortar workability that isolated and evaluated the effect of the subject sand attributes on water demand and workability of mortars. The testing phase, using mortars rather than full-scale concrete mixtures, enabled the isolation of sand attributes, such as particle angularity, particle size, and fine-particle content; it also enabled the evaluation of the effect of each attribute on water demand. Results of mortar testing confirmed that particle angularity and fineness of the sand gradation (as quantified by fineness modulus) influenced the water demand of mortars. Testing performed on a paired comparison basis on individual sizes with substantially different angularities indicated that, as the particle size decreased, the exponential increase in surface area overshadowed any difference caused by particle angularity between particles of comparable size. The results of sand and mortar testing were used in the development of the subsequent testing phase, examining the effects of manufactured sand properties on concrete water demand utilizing full-scale concrete mixtures. A statistically based water demand model was developed for conventional strength concrete. The regression-based model enabled the evaluation of the contribution of each attribute and the relative importance and statistical significance of each contribution. Particle angularity was found to be the dominant contributor to water demand with the secondary contribution from fineness of the overall sand gradation, as quantified by the fineness modulus and quantity of very fine particles. The influence of these factors was statistically significant. Effects caused by well-graded particle distributions were not found to be significant, contrary to initial expectations.
机译:人造砂是通过压碎岩石沉积物来生产的,其细集料通常比自然风化的砂粒更具棱角,并且表面纹理更粗糙。人造沙也可能含有大量的岩石粉尘。随着大都市生长区域附近自然砂沉积物的枯竭以及对碱-硅反应性不敏感的可行砂资源被消耗,使用人造砂作为混凝土中的替代细骨料受到关注。设计师,规格师,承包商和材料供应商需要了解人造砂的棱角以及细粉含量对混凝土需水量和混凝土耐久性的影响。作为全面研究计划的一部分,研究了各种人造砂的性能及其对新鲜和硬化混凝土性能的影响。本文研究了人工制砂性能对砂浆和混凝土需水量的影响。人造砂特性与硬化混凝土性能之间的关系将在随后的论文中讨论。测试程序中包括了具有广泛的颗粒角度和细粉含量的人造砂。该计划涉及各种砂属性的测量,以及随后的砂浆可加工性测试阶段,该阶段隔离并评估了主题砂属性对砂浆的需水量和可加工性的影响。测试阶段使用砂浆而不是全尺寸混凝土混合物,能够隔离砂的属性,例如颗粒的角度,粒径和细颗粒含量。它还可以评估每个属性对需水量的影响。砂浆测试的结果证实,颗粒的角度和砂级的细度(由细度模量定量)会影响砂浆的需水量。在成对比较的基础上,对具有明显不同角度的单个尺寸进行的测试表明,随着粒度的减小,表面积的指数增加掩盖了由可比尺寸的颗粒之间的颗粒角度引起的任何差异。砂浆和砂浆测试的结果用于后续测试阶段的开发中,以使用全尺寸混凝土混合物检查人造砂性能对混凝土需水量的影响。为常规强度混凝土开发了基于统计的需水模型。基于回归的模型可以评估每个属性的贡献以及每个贡献的相对重要性和统计意义。发现颗粒角度是水需求的主要因素,其次是总砂度的细度,其次是细度模量和极细颗粒的数量。这些因素的影响具有统计学意义。与最初的预期相反,没有发现由良好渐变的粒子分布引起的影响是显着的。

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