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混杂玄武岩纤维混凝土孔隙结构及抗冻性

邵善庆 龚爱民 罗加辉 王福来 黄逸尔 金镯 雍康

水力发电学报2025,Vol.44Issue(2):116-124,9.
水力发电学报2025,Vol.44Issue(2):116-124,9.DOI:10.11660/slfdxb.20250210

混杂玄武岩纤维混凝土孔隙结构及抗冻性

Pore structure and frost resistance of mixed basalt fiber concrete

邵善庆 1龚爱民 1罗加辉 1王福来 1黄逸尔 1金镯 1雍康1

作者信息

  • 1. 云南农业大学 水利学院,昆明 650201
  • 折叠

摘要

Abstract

Basalt fiber fly ash concrete conforms to the concept of green and economically viable development.To improve the reliability of its practical application in engineering,this paper presents a study on the characterization of its pore structure,frost resistance by the formation of pores,pore physical phase distribution,and fractal dimension,through the hydration process of fly ash and cement under the conditions of different basalt fiber lengths(6,12,and 18 mm)in single mixing and blending scenarios.The results show that after 300 freeze-thaw cycles,the degree of freeze-thaw damage to fly ash concrete from high to low is unadulterated basalt fiber,single-adulterated basalt fiber,and mixed-adulterated basalt fiber.From pore structure characterization,basalt fiber admixture refines the pore space,that is,the maximum pore diameter and porosity both are reduced.From pore phase distribution and fractal dimension,the pore space of single admixture is mainly concentrated around the fiber,so that the internal pore space forms a linear concentrated distribution,causing the concrete to be prone to frost stress concentration.In the blending case,pore concentration is reduced significantly,and the small pore dispersion effect is conducive to reducing the role of frost stress.The fly ash component improves the pore structure through delaying the hydration micro-filling effect,and the fibers'bridging effect prevents radial cracks in the pore space from further development,thus improving the frost resistance of concrete.

关键词

玄武岩粉煤灰混凝土/单掺/混杂/孔隙结构表征/抗冻性

Key words

basalt fly ash concrete/single admixture/hybrid/pore structure characterization/frost resistance

分类

建筑与水利

引用本文复制引用

邵善庆,龚爱民,罗加辉,王福来,黄逸尔,金镯,雍康..混杂玄武岩纤维混凝土孔隙结构及抗冻性[J].水力发电学报,2025,44(2):116-124,9.

基金项目

云南省教育厅科学研究基金项目(2022Y286) (2022Y286)

水力发电学报

OA北大核心

1003-1243

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