生物聚合物改良花岗岩残积土力学特性及机理研究
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1.三峡库区地质灾害教育部重点实验室三峡大学;2.中国南方电网有限责任公司超高压输电公司电力科研院

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国家自然科学基金高铁联合基金重点项目(U2034203)


Mechanical characterization and mechanism of granite residual soil improved by biopolymers
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1.Key Laboratory of Geological Hazards on Three Gorges Reservoir Area (China Three Gorges University);2.China Three Gorges University;3.CSG EHV Power Transmission Company, Guangzhou

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National Natural Science Foundation of China High Speed Rail Joint Fund Priority Program(U2034203)

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    摘要:

    花岗岩残积土力学性能改良对于相应工程灾害防治具有重要意义。为探究低环境影响的生物聚合物对花岗岩残积土力学性能的改良效果,使用黄原胶(XG)、瓜尔豆胶(GG)及其复合胶(G-X)对花岗岩残积土进行改性,通过无侧限抗压、三轴剪切及扫描电镜试验,研究了生物胶类型、掺量、养护方式、养护龄期对改良效果的影响规律及其强化机理。结果表明,XG、GG、G-X均能够提高花岗岩残积土抗压强度,标养条件下改良土抗压强度随聚合物掺量持续增长但增幅变缓,而室温养护下改良土抗压强度会出现峰值,聚合物最优掺量约在1.0%~1.5%;复合胶G-X改良土具有较好的抗压强度(可达素土的2倍以上)和龄期稳定性,且抗剪性能提升明显(黏聚力约为素土的2.4倍),兼具了GG的粘结作用和XG的填充作用,体现出“协同增效”的改良效果。

    Abstract:

    The improvement of mechanical properties of granite residual soil is of great significance for the corresponding engineering disaster prevention and control. In order to investigate the improvement effect of low environmental impact biopolymers on the mechanical properties of granite residual soil, xanthan gum (XG), guar gum (GG) and its composite gum (G-X) were used to modify granite residual soil, and the effects of type of biopolymer, mixing amount, maintenance mode, and maintenance age on the improvement effect and their reinforcement mechanism were investigated through the tests of unconfined compression, tri-axial shear and scanning electron microscopy. The results show that XG, GG, G-X can improve the compressive strength of granite residual soil, the compressive strength of improved soil under standard condition increases continuously with the polymer dosage but the increase slows down, while the compressive strength of improved soil under room temperature maintenance will have a peak, and the optimal dosage of polymer is about 1.0%~1.5%; Composite G-X improved soil has better compressive strength (up to more than 2 times of unimproved soil) and age stability, and the shear resistance is obviously improved (the cohesive force is about 2.4 times of unimproved soil), which combines the bonding effect of GG and the filling effect of XG, and reflects the improvement effect of “synergistic efficiency”.

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  • 收稿日期:2025-01-05
  • 最后修改日期:2025-03-27
  • 录用日期:2025-04-08
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