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大跨径悬索桥索塔高标号混凝土配合比设计及优化研究
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(中交路桥华东工程有限公司, 上海 201210)

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Xiaoliang Zhu, B.E., Senior Engineer. Graduated from Nanchang University in 2013. Research Direction: Large Span Bridge Construction.

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Study on the Design and Optimization of the Mix Proportion for High-Grade Concrete for the Pylon of a Long-Span Suspension Bridge
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(CCCC Road and Bridge East China Engineering Co., Ltd., Shanghai 201210, China)

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    摘要:

    本文围绕龙潭长江大桥北塔 C55高流动性泵送大体积混凝土的配合比设计及优化展开深入研究。在配合比试配与初调整阶段,依据相关规范确定水胶比,综合考量集料的性能指标,科学选定粗、细集料,基于性能与成本确定矿物掺合料的掺比范围。通过一系列实验研究得到不同因素对混凝土工作性能的影响,并初步确定了配合比。进一步探索水泥品种与功能集料影响,结果显示项目水泥工作性能逊于小野田水泥,但因成本原因未更换;功能集料可从多个方面提升混凝土性能,但会使抗压强度略降。对多目标配合比再次优化并进入性能验证环节,在优化的配合比的混凝土中加入功能集料后,混凝土工作性能表现良好,强度满足要求;保温集料缓温升,储热集料入模初控温佳。经 20 余组实验、多步骤优化与验证,明确了配合比设计关键因素及作用规律,为高强高流动性大体积混凝土配合比设计提供系统方法与实践依据,有力保障工程安全性与耐久性。

    Abstract:

    In this paper, an in-depth study was conducted on the design and optimization of the mix proportion of C55 high-fluidity pumped mass concrete for the northern pylon of the Longtan Yangtze River Bridge. During the mix proportion trial and initial adjustment phase, the W/B ratio was determined in accordance with relevant standards, and the performance indicators of the aggregates were comprehensively considered to select coarse and fine aggregates based on scientific evidence. The range of mineral admixture proportions was determined on the basis of performance and cost considerations. Through a series of experimental studies, the influence of various factors on the workability of concrete was determined, and the initial mix proportion was preliminarily established. Further exploration of the effects of cement type and functional aggregates revealed that the workability of the project cement was inferior to that of Onoda cement, but the concrete was not replaced for cost reasons. Functional aggregates can enhance concrete performance from various aspects, but may slightly reduce compressive strength. The multiobjective mix proportion was further optimized and subjected to performance verification. After functional aggregates were added to the optimized mixture, the concrete exhibited excellent workability and met the strength requirements. Thermal insulation aggregates effectively mitigated an increase in concrete temperature, whereas heat-storage aggregates provided good initial temperature control during pouring. Through more than 20 sets of experiments, multistep optimization, and verification, the key factors and their mechanisms in mix proportion design were clarified. This study provides a systematic methodology and practical basis for the design of high-strength, high-fluidity mass concrete, ensuring the safety and durability of projects.

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Xiaoliang Zhu, Baoan Quan, Sheng Fang, Hao Wei, Junchen Zhao Study on the Design and Optimization of the Mix Proportion for High-Grade Concrete for the Pylon of a Long-Span Suspension Bridge. Prestress Technology 2025,3(01):48-63. 10.59238/j. pt.2025.01.004

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  • 收稿日期:2024-12-07
  • 最后修改日期:2025-03-10
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  • 在线发布日期: 2025-03-29
  • 出版日期: 2025-03-30