在超高性能混凝土中高效使用水泥

IF 0.7 Q4 CONSTRUCTION & BUILDING TECHNOLOGY
I. Lande, R. T. Thorstensen
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引用次数: 1

摘要

摘要:本文介绍了用惰性材料代替水泥含量的研究,在一个典型的本地生产UHPC混合料中。进行了结构化的文献综述,以丰富讨论,并对研究社会中已经报道的调查结果进行基准测试。水泥替代在UHPC中的研究经常被报道。然而,通常水泥被其他粘合材料所取代——通常是来自其他工业的火山灰副产品。在UHPC中使用惰性材料替代水泥的调查报告似乎很少。一个包括210个测试样本的实验程序被执行。这个程序包括评估几个嵌入到如何在保持所有其他变量不变的情况下替代水泥的问题。结果表明,高达40%的水泥可以用惰性材料替代,而不会显著改变硬化UHPC的抗折强度或抗压强度。需要注意两个前提条件:确保替代材料的粒径分布(PSD)与水泥几乎相同,从而保持颗粒填充;通过对替代材料进行预处理,保持水分平衡。提出了改进对标的建议。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Towards Efficient Use of Cement in Ultra High Performance Concrete
Abstract This paper presents an investigation on substituting the cement content with an inert material, in a typical locally produced UHPC mix. A structured literature review was performed to enrichen the discussion and to benchmark the results towards already reported investigations in the research society. Investigations on cement substitution in UHPC are frequently reported. However, usually the cement is substituted with other binding materials – often pozzolanic by-products from other industries. Reports from investigations on the use of inert materials for cement substitution in UHPC seem scarce. An experimental program that included a total of 210 test specimens was executed. This program included evaluating several questions embedded to the problem on how to substitute cement while keeping all other variables constant. It is concluded that up to 40% of the cement can be substituted with an inert material, without significantly changing the flexural tensile strength or compressive strength of the hardened UHPC. Two preconditions were caretaken: the particle packing was maintained by securing that the substitution material had a Particle Size Distribution (PSD) near identical to the cement and that the water balance was maintained through preconditioning of the substitution material. Suggestions are made for improving benchmarking.
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来源期刊
Nordic Concrete Research
Nordic Concrete Research CONSTRUCTION & BUILDING TECHNOLOGY-
自引率
20.00%
发文量
8
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