The development of high-performance repair materials for hydraulic infrastructure remains critical given the deteriorating effects of extreme environmental on aging concrete structures. Hence, this study proposes a performance-targeted inverse design strategy that integrates orthogonal experimental design, response surface methodology and a neural network algorithm (NNA) to formulate a modified epoxy mortar with balanced mechanical strength and thermal compatibility for hydraulic repair applications. The effects of epoxy resin, curing agent, medium sand and fine sand on the mechanical properties and deformation characteristics of epoxy mortar were studied. The results demonstrated that the resin-to-curing agent ratio (REC) is the primary determinant of mechanical strengths, while fine sand dosage served as a secondary factor affecting tensile and compressive performance. Medium sand dosage functioned as the secondary influence specifically on adhesive strength. NNA analysis identified an optimal REC of 14.5:1 to achieve the target linear expansion coefficient of 7.98 × 10−6/°C. The optimised proportion with 25% fine sand and 55% medium sand demonstrates enhanced mechanical strength while meeting expansion requirements. Field validation at a hydropower station’s silt-releasing tunnel in Henan Province, China, exposed the restored surface to sediment-laden flows with a maximum monitored sediment concentration of approximately 703.0 kg/m³. Follow-up inspections in 2023 and 2024 showed no visible cracking, hollowing, peeling or detachment in the repaired area, indicating good field applicability of the optimised epoxy mortar.
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Research Article|
July 21 2026
Effect of mix ratio on modified epoxy mortar performance and field application
Jie Liu;
Jie Liu
School of Hydraulic and Ocean Engineering,
Changsha University of Science & Technology
, Changsha, China
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Haowei Zhang;
Haowei Zhang
School of Hydraulic and Ocean Engineering,
Changsha University of Science & Technology
, Changsha, China
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Yiwen Yang;
Yiwen Yang
3rd Construction Co., Ltd. of China Construction 5th Engineering Bureau
, Changsha, China
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Jingsen Yang;
Jingsen Yang
Hunan Water Planning & Design Institute Co., Ltd
., Changsha, China
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Xingyu Qiu;
Xingyu Qiu
School of Hydraulic and Ocean Engineering,
Changsha University of Science & Technology
, Changsha, China
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Guijin Zhang;
Guijin Zhang
School of Hydraulic and Ocean Engineering,
Changsha University of Science & Technology
, Changsha, China
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Ming Fan;
Ming Fan
Changsha Puzhao Material Technology Co., Ltd
., Changsha, China
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Zhen Zhao;
Zhen Zhao
3rd Construction Co., Ltd. of China Construction 5th Engineering Bureau
, Changsha, China
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Jingcheng Chen;
Jingcheng Chen
3rd Construction Co., Ltd. of China Construction 5th Engineering Bureau
, Changsha, China
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Xiaowei Yu
School of City and Architecture Engineering,
Zaozhuang University
, Zaozhuang, China
Corresponding author Xiaowei Yu (yuxiaowei0101@163.com)
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Corresponding author Xiaowei Yu (yuxiaowei0101@163.com)
Declaration of competing interest The authors declare that they have no known competing financial interests or personal relationships that could have appeared to influence the work reported in this paper.
Publisher: Emerald Publishing
Received:
August 07 2025
Accepted:
June 08 2026
Online ISSN: 2051-803X
Funding
Funding Group:
- Award Group:
- Funder(s): financial support by the Scientific Research Foundation of Hunan Provincial Education Department
- Award Id(s): 24B0292
- Funder(s):
- Award Group:
- Funder(s): Water Resources Science and Technology Project of Hunan Province
- Award Id(s): XSKJ2022068-26,XSKJ2023059-41,XSKJ2024064-57
- Funder(s):
- Funding Statement(s): The authors gratefully acknowledge the financial support by the Scientific Research Foundation of Hunan Provincial Education Department (24B0292) and Water Resources Science and Technology Project of Hunan Province (XSKJ2022068-26, XSKJ2023059-41, XSKJ2024064-57).
© 2026 Emerald Publishing Limited
2026
Emerald Publishing Limited
Licensed re-use rights only
Environmental Geotechnics 1–17.
Article history
Received:
August 07 2025
Accepted:
June 08 2026
Citation
Liu J, Zhang H, Yang Y, Yang J, Qiu X, Zhang G, Fan M, Zhao Z, Chen J, Yu X (2026;), "Effect of mix ratio on modified epoxy mortar performance and field application". Environmental Geotechnics, Vol. ahead-of-print No. ahead-of-print. https://doi.org/10.1680/jenge.25.00149
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