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基于多标准使用早强波特兰水泥和化学高效减水剂改善海洋混凝土性能

Improving Marine Concrete Performance Based on Multiple Criteria Using Early Portland Cement and Chemical Superplasticizer Admixture.

作者信息

Lee Taegyu, Lee Jaehyun, Jeong Jaewook, Jeong Jaemin

机构信息

Department of Fire and Disaster Prevention, Semyung University, 65, Semyeong-ro, Jecheon-si 27136, Korea.

Department of Safety Engineering, Seoul National University of Science and Technology, 232 Gongneung-ro, Nowon-gu, Seoul 01811, Korea.

出版信息

Materials (Basel). 2021 Aug 28;14(17):4903. doi: 10.3390/ma14174903.

Abstract

This study sought to examine the performance design of concrete mix proportions to ensure chloride resistance and early strength with respect to C35 (35 MPa), which is the minimum compressive strength class of concrete used in a marine environment. For the proposed concrete mixture, C24 (24 MPa) was selected and binders for concrete were manufactured using a blend of OPC (ordinary Portland cement), EPC (early Portland cement), and GGBS (ground granulated blast-furnace slag). The results of the experiment confirmed that the combined use of EPC and GGBS greatly improve the early-strength development and chloride resistance of concrete. An analysis revealed that the time for removal of forms can be reduced by 5-9 h from the aspect of early concrete strength. Moreover, in terms of construction productivity, EPC and GGBS were reduced by up to 16.39 h/cycle compared to other concretes. Regarding economic and environmental impacts, EPC and GGBS were more effective than C35 concrete. This study is significant as its findings help make it possible to examine the most economical concrete mix design in relation to strength development according to the application of EPC, GGBS, and PC-based admixtures.

摘要

本研究旨在探讨混凝土配合比的性能设计,以确保在海洋环境中使用的最低抗压强度等级为C35(35MPa)的混凝土具有抗氯化物性能和早期强度。对于所提出的混凝土混合物,选用了C24(24MPa),并使用普通硅酸盐水泥(OPC)、早强硅酸盐水泥(EPC)和磨细粒化高炉矿渣(GGBS)的混合物来生产混凝土胶凝材料。实验结果证实,EPC和GGBS的联合使用大大提高了混凝土的早期强度发展和抗氯化物性能。分析表明,从混凝土早期强度方面来看,拆模时间可减少5 - 9小时。此外,在施工生产率方面,与其他混凝土相比,EPC和GGBS每循环可减少多达16.39小时。在经济和环境影响方面,EPC和GGBS比C35混凝土更有效。本研究具有重要意义,因为其研究结果有助于根据EPC、GGBS和基于PC的外加剂的应用,研究与强度发展相关的最经济的混凝土配合比设计。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f8fe/8432681/2fe88d3e2c9d/materials-14-04903-g015.jpg

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