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卵石混凝土路面性能评估:苏克雷公路项目研究

Performance Evaluation of Pebble Concrete for Pavement: A Study on the Sucre Highway Project.

作者信息

Feng Zhuqing, Lu Jue, Liu Simin, Xia Jingliang, Wang Jing, Leng Faguang, Ma Xinxin

机构信息

China Harbour Engineering Co., Ltd., Beijing 100027, China.

Institute of Building Materials, China Academy of Building Research, Beijing 100013, China.

出版信息

Materials (Basel). 2024 Oct 12;17(20):4994. doi: 10.3390/ma17204994.

Abstract

Bolivia has abundant pebbles, while the supply of crushed stone is limited and unstable. Thus, the resource utilization of local pebble as a coarse aggregate and the guarantee of concrete durability are the key scientific issues in the Sucre Highway Project. In this paper, a comparative analysis was conducted of the performance of crushed stone concrete and pebble concrete. Additionally, the impact of fly ash on the water permeability resistance of concrete was investigated. The results indicate that the apparent density, bulk density, and void ratio of pebbles are lower than those of crushed stone, and the aggregate gradation of pebbles is dispersed. The type of aggregate is the primary factor influencing the splitting tensile strength of concrete, with the main failure modes of pebble concrete being slurry cracking, aggregate crushing, and interface debonding. While aggregate and fly ash have a minor effect on compressive strength, they significantly impact flexural tensile strength; however, all concretes meet the requirements for extra-heavy, very heavy, and heavy traffic load levels. In terms of impermeability, fly ash effectively mitigates the negative impact of aggregate type on the impermeability of concrete. These findings support the application of pebble concrete in the highway project.

摘要

玻利维亚卵石资源丰富,而碎石供应有限且不稳定。因此,将当地卵石作为粗集料的资源利用以及混凝土耐久性的保证是苏克雷公路项目中的关键科学问题。本文对碎石混凝土和卵石混凝土的性能进行了对比分析。此外,研究了粉煤灰对混凝土抗水渗透性的影响。结果表明,卵石的表观密度、堆积密度和空隙率均低于碎石,且卵石的集料级配较为分散。集料类型是影响混凝土劈裂抗拉强度的主要因素,卵石混凝土的主要破坏模式为浆体开裂、集料破碎和界面脱粘。虽然集料和粉煤灰对抗压强度影响较小,但对弯曲抗拉强度有显著影响;然而,所有混凝土均满足超重、特重和重交通荷载等级的要求。在抗渗性方面,粉煤灰有效减轻了集料类型对混凝土抗渗性的负面影响。这些研究结果支持了卵石混凝土在公路工程中的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/58da/11509135/3c7e72272499/materials-17-04994-g001.jpg

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