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Efficiency study of superplasticizers to ensure durability of concrete placed by pump.

机译:高效减水剂的效率研究,以确保泵送混凝土的耐久性。

摘要

Production of contemporary, high-performance concrete is almost impossible without chemical admixtures, particularly when plastic concrete is placed by pump or when adequate consistency has to be kept from manufacturing to placing of concrete in most environmental conditions. This was the starting point of my diploma work: to choose a chemical admixture - superplasticizer that will be sufficiently effective, practical to use and compatible with available basic materials. I obtained the basic proportion of concrete mix in the laboratory of a concrete plant, where I carried out experiments and, according to the results obtained, developed and adapted it to each type of superplasticizer. I made 59 different mix proportions, with 11 different superplasticizers. I carried out tests of consistency with most of the mixtures immediately after mixing of the concrete, as well as half an hour and an hour later. Then I made standard concrete cubes for compressive strength determination at the age of 1, 3, 7 and 28 days. In the diploma work I describe in detail properties of concrete mixtures made by the best 4 superplasticizers. As it turned out, the influence of used superplasticizers on properties of concrete mixtures differs substantially. Some require a large quantity of fine particles in the mixture (I used limestone filler), others cause a large percentage of air bubbles in fresh concrete. I found out that it is necessary to start from the requirements regarding the properties of concrete in fresh and hardened state and to adjust the composition of the concrete to meet the requirements. It also means selection of adequate superplasticizer, which has to be compatible with the basic materials for concrete that are available in concrete plant. IV
机译:如果没有化学外加剂,几乎不可能生产出当代高性能的混凝土,特别是当用泵将塑料混凝土浇注时,或者在大多数环境条件下必须保持从制造到浇筑混凝土的足够稠度时。这就是我的文凭工作的出发点:选择一种化学混合物-高效减水剂,它将足够有效,实用,可使用并与可用的基础材料兼容。我在混凝土工厂的实验室中获得了混凝土混合物的基本比例,在该实验室中进行了实验,并根据获得的结果开发并使其适合每种类型的高效减水剂。我用11种不同的高效减水剂制成了59种不同的混合比例。在混凝土混合后以及半小时和一个小时后,我立即对大多数混合物进行了稠度测试。然后,我制作了1、3、7和28天龄时用于确定抗压强度的标准混凝土立方体。在文凭工作中,我详细介绍了由最好的4种高效减水剂制成的混凝土混合物的性能。事实证明,所用的高效减水剂对混凝土混合物性能的影响差异很大。有些会在混合物中需要大量细小颗粒(我用石灰石填料),有些则在新鲜混凝土中引起很大比例的气泡。我发现有必要从对新鲜和硬化状态下混凝土性能的要求开始,并调整混凝土的组成以满足要求。这也意味着选择适当的高效减水剂,该减水剂必须与混凝土厂中可用的混凝土基础材料兼容。 IV

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    Kodelja Matej;

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  • 年度 2009
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  • 原文格式 PDF
  • 正文语种 {"code":"sl","name":"Slovene","id":39}
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