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首页> 外文期刊>Magazine of Concrete Research >Concrete strength development and sustainability: the limestone constituent cement effect
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Concrete strength development and sustainability: the limestone constituent cement effect

机译:具体的力量发展和可持续性:石灰石构成水泥效应

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摘要

In this paper, a systematic analysis, evaluation and modelling of the sourced global strength data of concrete where Portland cement (PC) is partially replaced with ground limestone (GLS) is presented. The data - sourced from literature published in English language since 1976, by 250 researchers working at 160 institutions in 43 countries - yielded a matrix of 14 707 data points. The effect of the addition of GLS together with its fineness, concrete design strength, curing duration and water/cement (w/c) ratio are studied. It is shown that concrete strength decreases with the addition of GLS, and at an increasing rate with GLS content. However, this loss in strength of concrete may, to a limited extent, be modified by means of GLS fineness, design strength, curing and the w/c ratio. At a fixed w/c ratio, the GLS content would most likely limit strength development, with the mix unable to develop an equal strength to that of the control PC mix. It is also shown that perceived sustainability benefits would be negated where concrete mixes are designed for specific 28 d strength. This is the case particularly for high-strength PC-limestone cement (PLC) concrete. Notwithstanding this, the use of PLC at higher content than in the corresponding PC can be beneficial with low-strength, S4 slump class or self-compacting concrete, where the filler effect of GLS ensures production of stable concrete mixes free from bleeding and segregation risks and the specified strength is achieved by reducing the w/c ratio of such mixes.
机译:本文提出了一种系统分析,评价,评价,建模的混凝土的全球强度数据,其中波特兰水泥(PC)部分用地底石灰岩(GLS)替换。自1976年以来,从1976年出版的文学中发表的文学数据,由250名在43个国家工作的研究人员工作,产生了14个707个数据点的矩阵。研究了加入GL的效果以及其细度,混凝土设计强度,固化持续时间和水/水泥(W / C)比例。结果表明,使用GLS的增加,混凝土强度随着GLS的增加而降低。然而,这种混凝土强度的损失可以通过GLS细度,设计强度,固化和W / C比来修改。以固定的为固定的W / C比,GLS含量最有可能限制强度发展,混合物无法对控制PC混合的混合物产生相等的强度。还表明,在特定的28d强度设计混凝土混合物的情况下,将否定感知可持续性益处。这种情况是特别适用于高强度PC - 石灰石水泥(PLC)混凝土。尽管如此,在较高的内容中使用PLC比相应的PC更高的PLC可能是有益的,低强度,S4坍落度或自压制混凝土,GLS的填充效果确保了稳定的混凝土混合的产生,没有出血和隔离风险通过降低这种混合物的W / C比率来实现特定的强度。

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