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服役条件和配合比设计对路面碾压混凝土物理力学性能的影响

Influence of Service Conditions and Mix Design on the Physical-Mechanical Properties of Roller-Compacted Concrete for Pavement.

作者信息

Pulecio-Díaz Julián, Sol-Sánchez Miguel, Moreno-Navarro Fernando

机构信息

Faculty of Engineering, Universidad Cooperativa de Colombia, Ibague 730006, Colombia.

Laboratory of Construction Engineering, University of Granada, 18071 Granada, Spain.

出版信息

Materials (Basel). 2024 Jan 23;17(3):552. doi: 10.3390/ma17030552.

Abstract

This research focuses on the behavior of roller-compacted concrete (RCC) used in pavements, which are prone to deterioration affecting their performance. These deteriorations result from various causes, including traffic load, errors during construction, mix design, and ambient conditions. Among these, ambient conditions could lead to a marked variable impact on material behavior and durability depending on the conditions associated with each region. Accordingly, this study aims to deepen the understanding of the effect, which a broader range of ambient conditions and different mix designs have on the physical and mechanical properties of RCC. Measurements such as the amount of water vapor per kilogram of air were used to apply the findings comprehensively. The RCC analysis encompassed experimentation with different compositions, altering the cement water ratio amount, and adding a superplasticizer. The impact of curing on the materials was evaluated before subjecting them to various humidity and temperature conditions. Laboratory tests were conducted to measure performance, including moisture, shrinkage, compressive strength, and the progression of flexural fracture resistance over curing periods of up to 90 days. The results revealed a logarithmic correlation between shrinkage and ambient humidity, which is the most determining factor in performance. Mix optimization through increased cement and reduced water enhanced the tensile strength of the material. Furthermore, the curing process was confirmed to increase resistance to shrinkage, especially in the long term, establishing it as a crucial element for the structural stability of RCC, which is relatively insensitive to variations in ambient conditions.

摘要

本研究聚焦于路面用碾压混凝土(RCC)的性能,这种混凝土易于劣化,从而影响其性能。这些劣化由多种原因导致,包括交通荷载、施工过程中的失误、配合比设计以及环境条件等。其中,环境条件会因各地区相关条件的不同,对材料性能和耐久性产生显著的可变影响。因此,本研究旨在加深对更广泛的环境条件和不同配合比设计对碾压混凝土物理和力学性能影响的理解。采用了每千克空气中水蒸气含量等测量方法来全面应用研究结果。碾压混凝土分析包括对不同成分进行试验、改变水泥水灰比以及添加高效减水剂。在将材料置于各种湿度和温度条件之前,评估了养护对材料的影响。进行了实验室测试以测量性能,包括水分、收缩、抗压强度,以及在长达90天的养护期内抗折强度的变化情况。结果显示收缩与环境湿度之间存在对数关系,这是性能的最主要决定因素。通过增加水泥用量和减少用水量进行配合比优化可提高材料的抗拉强度。此外,养护过程被证实能增强抗收缩能力,尤其是长期来看,这确立了养护是碾压混凝土结构稳定性的关键因素,而碾压混凝土对环境条件变化相对不敏感。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/474f/10856101/0c42e4f8657a/materials-17-00552-g001.jpg

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