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Performance of high alkali slag concretes in the context of alkali-silica reaction

机译:碱-硅反应中高碱渣混凝土的性能

摘要

The depletion of natural resources, the requirement for sustainable development and environmental restrictions, such as those associated with the Kyoto Agreement, makes the re-use of waste materials increasingly important as we enter the new millennium. The use of one such material in concrete, ground granulated blast furnace slag is well-accepted in many parts of the world. However much research and experience of use is based on slags with low alkali levels and low chloride contents. Environmental and economic constraints may force the increased use of slags with higher alkali levels and chloride contents in future works. The alkali level parameter raises concern in respect of alkali-silica reaction (ASR) where susceptible aggregates are used. The performance of high alkali slags in the context of ASR was assessed by a modified version of the concrete prism expansion test, X-Ray diffraction and scanning electron microscopy. Variables in the test programme were binder combination, slag alkali level, aggregate combination, and storage temperature. Previous research by the authors had identified Irish argillaceous limestone aggregate as potentially classifiable as ASR-vulnerable, despite a low silica content and a satisfactory service record. The performance, in the context of ASR, of argillaceous limestone slag concretes was specifically studied. The study found that inclusion of slag in concrete can be beneficial in inhibiting ASR irrespective of the alkali content of the slag. The particular case of argillaceous limestone slag concrete is commented on.
机译:自然资源的枯竭,对可持续发展的要求以及对环境的限制(例如与《京都议定书》有关的限制),使得在我们进入新千年时,废物的再利用变得越来越重要。在世界许多地方,在混凝土,磨碎的高炉矿渣中使用一种这样的材料已被广泛接受。但是,许多研究和使用经验都是基于碱含量低,氯化物含量低的炉渣。环境和经济限制可能会迫使在未来的工作中更多地使用碱含量和氯化物含量更高的炉渣。对于其中使用易感聚集体的碱-二氧化硅反应(ASR),碱水平参数引起关注。通过改良的混凝土棱镜膨胀试验,X射线衍射和扫描电子显微镜对ASR中高碱渣的性能进行了评估。测试程序中的变量是粘合剂组合,炉渣碱水平,骨料组合和存储温度。作者先前的研究发现,尽管硅土含量低且服务记录令人满意,爱尔兰的泥质石灰石骨料仍可能被归类为易受ASR侵蚀的骨料。在ASR的背景下,专门研究了灰质石灰石矿渣混凝土的性能。研究发现,不论矿渣的碱含量如何,将矿渣包含在混凝土中都可以有利于抑制ASR。评论了泥质石灰石矿渣混凝土的特殊情况。

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