纤维膨胀剂协同改性混凝土耐硫酸盐侵蚀机理研究
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(1.河海大学苏州高等研究院;2.河海大学水利水电学院;3.南京江北新区建设和交通工程质量安全监督站 )

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田正宏(1966—),男,教授,博士,主要从事水利土木工程智慧施工研究。E-mail:zh-tian@hhu.edu.cn

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Study on mechanism of sulfate erosion resistance of concrete modified by synergistic action of fiber and expansive agent
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(1.SuzhouInstitute for Advanced Research of Hohai University; 2.Collegeof Water Conservancy and Hydropower Engineering, Hohai University; 3.Nanjing Jiangbei New Area Construction and Traffic Engineering Quality and Safety Supervision Station)

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    摘要:

    针对高硫酸盐环境下混凝土的侵蚀劣化问题,通过硫酸盐干湿循环试验,系统研究了聚酯纤维、玄武岩纤维及U型膨胀剂不同复掺方式对混凝土耐硫酸盐侵蚀性能的影响;通过分析试件外观损伤、质量损失及孔结构演变的劣化规律,评价了混凝土耐硫酸盐侵蚀的特性,揭示了纤维与膨胀剂协同抑制混凝土劣化的机理。结果表明:玄武岩纤维体积分数为0.15%、U型膨胀剂质量分数为4%(以胶凝材料计)的混凝土耐蚀性能最优,50次循环后试件外观保持完整,无浆体脱落,质量损失率为6.12%(对照组为9.52%),无害孔占比较试验前降低了5.55个百分点(对照组降低了10.00个百分点);膨胀剂与纤维的协同作用优化了混凝土的孔隙结构,提升了混凝土的抗渗和耐侵蚀性能。

    Abstract:

    To address the deterioration of concrete exposed to high-sulfate environments, sulfate wet-dry cycling tests were conducted to systematically investigate the effects of different combined incorporation methods of polyester fiber, basalt fiber, and U-type expansive agent on the sulfate erosion resistance of concrete. By analyzing the deterioration patterns of specimen appearance damage, mass loss, and pore structure evolution, the sulfate erosion resistance of concrete was evaluated, and the synergistic mechanism by which fibers and expansive agent inhibit concrete deterioration was revealed.The results show that the concrete incorporating 0.15% basalt fiber by volume and 4% U-type expansive agent by mass of cementitious materials exhibited the best sulfate erosion resistance. After 50 cycles, the specimens remained intact in appearance, with no paste spalling observed. The mass loss rate was 6.12%, compared with 9.52% for the control group. The proportion of harmless pores decreased by 5.55 percentage points relative to that before the test, while that of the control group decreased by 10.00 percentage points. The synergistic effect of the expansive agent and fibers optimized the pore structure of concrete, thereby improving its impermeability and resistance to sulfate erosion.

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田正宏,颜伟,胡桂宝,等.纤维膨胀剂协同改性混凝土耐硫酸盐侵蚀机理研究[J].水利水电科技进展,2026,45(4):21-27.(Tian Zhenghong, Yan Wei, Hu Guibao, et al. Study on mechanism of sulfate erosion resistance of concrete modified by synergistic action of fiber and expansive agent[J]. Advances in Science and Technology of Water Resources,2026,45(4):21-27.(in Chinese))

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  • 收稿日期:2025-07-15
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  • 在线发布日期: 2026-08-07
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