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Flexural Strength Prediction Models for Soil–Cement from Unconfined Compressive Strength at Seven Days

机译:基于7天无侧限抗压强度的水泥土抗弯强度预测模型

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摘要

Soil–cement is an environmentally friendly road construction technique for base and subbase materials, which allows employing soils placed in the right-of-way of the road or in the surroundings, by improving its engineering properties. With this technique, it is possible to reduce the over-exploitation of quarries, the necessity of landfills and the pollutant gas emission due to the reduction of aggregate fabrication and transport. The manufacturing of soil–cement is generally controlled by means of the Uniaxial Compressive Strength (UCS) test at seven days, according to the regulations of each country. Nonetheless, one of the properties that best defines the performance of soil–cement is the Flexural Strength (FS) at long term, usually at 90 days. The aim of this paper is to develop new equations to correlate the UCS and the FS at long term and the UCS at seven days and at 90 days. Obtained results validate the proposed models and, hence, the flexural strength can be predicted from the Uniaxial Compressive Strength at seven days, allowing, if necessary, correcting measures (recalculation or rejection) in early stages of the curing time to be taken.
机译:土壤水泥是一种用于基础和次基材料的环保道路施工技术,通过改善其工程特性,允许使用放置在道路通行权或周围环境中的土壤。通过这种技术,可以减少采石场的过度开发,减少堆填区的必要性以及减少集料制造和运输带来的污染物气体排放。根据每个国家的规定,通常在7天之内通过单轴抗压强度(UCS)测试来控制土壤水泥的生产。尽管如此,最能定义水泥土性能的特性之一是长期(通常为90天)的抗弯强度(FS)。本文的目的是开发新的方程式,以长期关联UCS和FS,以及将7天和90天的UCS相关联。获得的结果验证了所提出的模型,因此可以从7天的单轴抗压强度预测弯曲强度,并在必要时允许在固化时间的早期阶段采取纠正措施(重新计算或剔除)。

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