Volume 39 Issue 4
Aug.  2025
Turn off MathJax
Article Contents
Gan Jizhong, Zhang Xuan, Chen Dun, Mu Yanhu, Mao Yuncheng, Zhang Wei, Zhang Kun, Ning Longqing. Research progress on hydraulic and mechanical properties of red beds[J]. GEOTECHNICAL ENGINEERING TECHNIQUE, 2025, 39(4): 475-486. doi: 10.20265/j.cnki.issn.1007-2993.2024-0436
Citation: Gan Jizhong, Zhang Xuan, Chen Dun, Mu Yanhu, Mao Yuncheng, Zhang Wei, Zhang Kun, Ning Longqing. Research progress on hydraulic and mechanical properties of red beds[J]. GEOTECHNICAL ENGINEERING TECHNIQUE, 2025, 39(4): 475-486. doi: 10.20265/j.cnki.issn.1007-2993.2024-0436

Research progress on hydraulic and mechanical properties of red beds

doi: 10.20265/j.cnki.issn.1007-2993.2024-0436
  • Received Date: 2024-09-24
  • Accepted Date: 2025-03-06
  • Rev Recd Date: 2025-02-16
  • Publish Date: 2025-08-08
  • The red bed is a red sedimentary rock composed of sandstone, conglomerate, shale and argillaceous rocks, which is widely distributed in the southeastern, southwestern, and northwestern China. Due to its characteristics of poor stress, easy weathering, poor water rationality and easy disintegration, its road performance is poor, which seriously threatens the long-term stability of founda tion engineering in red bed area. The water physical and mechanical properties of red beds are summarized through literature research. The water physical properties of red beds are introduced from the aspects of water swelling, disintegration, softening and permeability. The static characteristics of red beds are summarized through strength and deformation analysis. The research progress of red bed dy namics is summarized from the aspects of dynamic parameters, dynamic strength and cumulative deformation, and the development trend is prospected.

     

  • loading
  • [1]
    冯 强. 四川红层泥岩的分布及其路用性能研究[D]. 成都: 西南交通大学, 2011. (FENG Q. The distribution and road behavior of Sichuan red mudstone[D]. Chengdu: Southwest Jiaotong University, 2011. (in Chinese)

    FENG Q. The distribution and road behavior of Sichuan red mudstone[D]. Chengdu: Southwest Jiaotong University, 2011. (in Chinese)
    [2]
    杨子文. 四川某水库岩石试验研究——岩体工程分级 应用实例[J]. 四川水力发电,1984(1):8-26. (YANG Z W. Rock test study of a reservoir in Sichuan-an application example of rock mass engineering classification[J]. Sichuan Hydroelectric Power,1984(1):8-26. (in Chinese)

    YANG Z W. Rock test study of a reservoir in Sichuan-an application example of rock mass engineering classification[J]. Sichuan Hydroelectric Power, 1984(1): 8-26.
    [3]
    居恢扬, 顾仁杰. 我国南方红层滑坡的初步研究[M]//滑坡文集委员会. 滑坡文集(4). 北京: 中国铁道出版社, 1984: 22-31. (JU H Y, GU R J. Preliminary study on red bed landslides in Southern China[M]//Landslide Collection Committee. Landslide Collection (4). Beijing: China Railway Publishing House, 1984: 22-31. (in Chinese)

    JU H Y, GU R J. Preliminary study on red bed landslides in Southern China[M]//Landslide Collection Committee. Landslide Collection (4). Beijing: China Railway Publishing House, 1984: 22-31. (in Chinese)
    [4]
    程 强, 周德培, 寇小兵.红层软岩地区公路建设中的主要岩土工程问题[C]//第八次全国岩石力学与工程学术大会论文集. 中国岩石力学与工程学会, 2004: 4. (CHENG Q, ZHOU D P, KOU X B. Main geotechnical engineering problems in highway construction in red bed soft rock area [C]// Proceedings of the Eighth National Academic Conference on Rock Mechanics and Engineering. Chinese Society of Rock Mechanics and Engineering, 2004 : 4. (in Chinese)

    CHENG Q, ZHOU D P, KOU X B. Main geotechnical engineering problems in highway construction in red bed soft rock area [C]// Proceedings of the Eighth National Academic Conference on Rock Mechanics and Engineering. Chinese Society of Rock Mechanics and Engineering, 2004 : 4. (in Chinese)
    [5]
    周 斌. 湘西红砂岩顺层边坡稳定可靠度分析和风险评估[D]. 长沙: 中南大学, 2010. (ZHOU B. Reliability analysis and risk assessment on bedding slope of red sandstone in western Hunan[D]. Changsha: Central South University, 2010. (in Chinese)

    ZHOU B. Reliability analysis and risk assessment on bedding slope of red sandstone in western Hunan[D]. Changsha: Central South University, 2010. (in Chinese)
    [6]
    HUANG K, DAI Z J, YAN C Z, et al. Swelling behaviors of heterogeneous red-bed mudstone subjected to different vertical stresses[J]. Journal of Rock Mechanics and Geotechnical Engineering,2024,16(5):1847-1863. doi: 10.1016/j.jrmge.2023.08.004
    [7]
    YU F, TONG K W, DAI Z J, et al. Macro‐and microresearch on swelling characteristics and deformation mechanism of red‐bed mudstone in central Sichuan, China[J]. Geofluids,2022,2022:6431590.
    [8]
    胡文静, 丁 瑜, 夏振尧, 等. 重庆地区红层泥岩侧限膨胀性能试验研究[J]. 防灾减灾工程学报,2015,35(5):607-611. (HU W J, DING Y, XIA Z Y, et al. Experimental study on the constrained swelling performance of red mudstone in Chongqing area[J]. Journal of Disaster Prevention and Mitigation Engineering,2015,35(5):607-611. (in Chinese)

    HU W J, DING Y, XIA Z Y, et al. Experimental study on the constrained swelling performance of red mudstone in Chongqing area[J]. Journal of Disaster Prevention and Mitigation Engineering, 2015, 35(5): 607-611. (in Chinese)
    [9]
    张国栋, 巫锡勇, 凌斯祥, 等. 初始含水率对膨胀性红黏土胀缩及崩解特性的影响[J]. 工程地质学报,2023,31(1):32-42. (ZHANG G D, WU X Y, LING S X, et al. Influence of initial moisture content on swelling-shrinkage and slaking features of expansive red clay[J]. Journal of Engineering Geology,2023,31(1):32-42. (in Chinese)

    ZHANG G D, WU X Y, LING S X, et al. Influence of initial moisture content on swelling-shrinkage and slaking features of expansive red clay[J]. Journal of Engineering Geology, 2023, 31(1): 32-42. (in Chinese)
    [10]
    钟志彬, 李安洪, 邓荣贵, 等. 川中红层泥岩时效膨胀变形特性试验研究[J]. 岩石力学与工程学报,2019,38(1):76-86. (ZHONG Z B, LI A H, DENG R G, et al. Experimental study on the time-dependent swelling characteristics of red-bed mudstone in central Sichuan[J]. Chinese Journal of Rock Mechanics and Engineering,2019,38(1):76-86. (in Chinese)

    ZHONG Z B, LI A H, DENG R G, et al. Experimental study on the time-dependent swelling characteristics of red-bed mudstone in central Sichuan[J]. Chinese Journal of Rock Mechanics and Engineering, 2019, 38(1): 76-86. (in Chinese)
    [11]
    朱宝龙, 任 龙. 考虑温度影响的岩石三向膨胀力测量仪及其实验设计[J]. 实验科学与技术,2024,22(1):9-15. (ZHU B L, REN L. Design of a three-dimensional swelling force measuring instrument for rock considering temperature and its teaching experiment[J]. Experiment Science and Technology,2024,22(1):9-15. (in Chinese) doi: 10.12179/1672-4550.20230319

    ZHU B L, REN L. Design of a three-dimensional swelling force measuring instrument for rock considering temperature and its teaching experiment[J]. Experiment Science and Technology, 2024, 22(1): 9-15. (in Chinese) doi: 10.12179/1672-4550.20230319
    [12]
    刘观仕, 陈永贵, 曾宪云, 等. 环境湿度与温度对压实膨胀土裂隙发育影响试验研究[J]. 岩土工程学报,2020,42(2):260-268. (LIU G S, CHEN Y G, ZENG X Y, et al. Effects of ambient air humidity and temperature on crack development of compacted expansive soils[J]. Chinese Journal of Geotechnical Engineering,2020,42(2):260-268. (in Chinese) doi: 10.11779/CJGE202002007

    LIU G S, CHEN Y G, ZENG X Y, et al. Effects of ambient air humidity and temperature on crack development of compacted expansive soils[J]. Chinese Journal of Geotechnical Engineering, 2020, 42(2): 260-268. (in Chinese) doi: 10.11779/CJGE202002007
    [13]
    冯高顺, 余 飞, 戴张俊, 等. 川中红层泥岩吸水膨胀时效特征的试验研究[J]. 岩石力学与工程学报,2022,41(S1):2780-2790. (FENG G S, YU F, DAI Z J, et al. Experimental study on time effect characteristics of red mudstone swelling in central Sichuan[J]. Chinese Journal of Rock Mechanics and Engineering,2022,41(S1):2780-2790. (in Chinese)

    FENG G S, YU F, DAI Z J, et al. Experimental study on time effect characteristics of red mudstone swelling in central Sichuan[J]. Chinese Journal of Rock Mechanics and Engineering, 2022, 41(S1): 2780-2790. (in Chinese)
    [14]
    周翠英, 景兴达, 刘 镇. 华南红层风化土崩解特性及其改性研究[J]. 工程地质学报,2019,27(6):1253-1261. (ZHOU C Y, JING X D, LIU Z. Disintegration characteristics and modification of weathered soil in red beds in Southern China[J]. Journal of Engineering Geology,2019,27(6):1253-1261. (in Chinese)

    ZHOU C Y, JING X D, LIU Z. Disintegration characteristics and modification of weathered soil in red beds in Southern China[J]. Journal of Engineering Geology, 2019, 27(6): 1253-1261. (in Chinese)
    [15]
    刘凤云, 郑文凤, 谢 飞, 等. 改良川西红层软岩填料崩解特性试验研究[J/OL].工程地质学报,1-18[2025-02-16]. https://doi.org/10.13544/j.cnki.jeg.2023-0172. (LIU F Y, ZHENG W F, XIE F, et al. Experimental study on disintegration characteristics of improved red-bed soft rock filler in western Sichuan[J]. Journal of Engineering Geology, 1-18[2025-02-16]. https://doi.org/10.13544/j.cnki.jeg.2023-0172. (in Chinese)

    LIU F Y, ZHENG W F, XIE F, et al. Experimental study on disintegration characteristics of improved red-bed soft rock filler in western Sichuan[J]. Journal of Engineering Geology, 1-18[2025-02-16]. https://doi.org/10.13544/j.cnki.jeg.2023-0172. (in Chinese)
    [16]
    曾庆建, 刘宝臣, 张炳晖, 等. 红黏土崩解特性试验研究[J]. 水文地质工程地质,2018,45(3):93-97,105. (ZENG Q J, LIU B C, ZHANG B H, et al. An experimental study of the disintegration characteristics of red clay[J]. Hydrogeology and Engineering Geology,2018,45(3):93-97,105. (in Chinese)

    ZENG Q J, LIU B C, ZHANG B H, et al. An experimental study of the disintegration characteristics of red clay[J]. Hydrogeology and Engineering Geology, 2018, 45(3): 93-97,105. (in Chinese)
    [17]
    尹红亮, 文良东, 吴国庆, 等. 干湿循环条件下红层泥岩崩解特性及规律研究[J]. 公路交通科技,2023,40(4):94-102. (YIN H L, WEN L D, WU G Q, et al. Study on disintegration characteristics and rule of red-bed mudstone under action of dry-wet cycles[J]. Journal of Highway and Transportation Research and Development,2023,40(4):94-102. (in Chinese) doi: 10.3969/j.issn.1002-0268.2023.04.012

    YIN H L, WEN L D, WU G Q, et al. Study on disintegration characteristics and rule of red-bed mudstone under action of dry-wet cycles[J]. Journal of Highway and Transportation Research and Development, 2023, 40(4): 94-102. (in Chinese) doi: 10.3969/j.issn.1002-0268.2023.04.012
    [18]
    赵顺良, 查焕奕. 不同pH条件下红层泥岩崩解特性研究[J]. 人民长江,2022,53(9):140-146. (ZHAO S L, ZHA H Y. Disintegration characteristics of red bed mudstone under different pH conditions[J]. Yangtze River,2022,53(9):140-146. (in Chinese)

    ZHAO S L, ZHA H Y. Disintegration characteristics of red bed mudstone under different pH conditions[J]. Yangtze River, 2022, 53(9): 140-146. (in Chinese)
    [19]
    SHEN P W, TANG H M, HUANG L, et al. Experimental study of slaking properties of red-bed mudstones from the Three Gorges Reservoir area[J]. Marine Georesources & Geotechnology,2019,37(8):891-901.
    [20]
    胡俊卿, 李旭庆, 曾兵兵, 等. 干湿循环作用下红层泥岩强度及变形特性研究进展[J]. 价值工程,2023,42(20):138-141. (HU J Q, LI X Q, ZENG B B, et al. Research progress on the characteristics of mudstone in red bed under dry and wet cycles[J]. Value Engineering,2023,42(20):138-141. (in Chinese) doi: 10.3969/j.issn.1006-4311.2023.20.044

    HU J Q, LI X Q, ZENG B B, et al. Research progress on the characteristics of mudstone in red bed under dry and wet cycles[J]. Value Engineering, 2023, 42(20): 138-141. (in Chinese) doi: 10.3969/j.issn.1006-4311.2023.20.044
    [21]
    刘晓明, 颜 圣, 刘 凯, 等. 干湿循环作用下红层软岩填料强度特性试验研究[J]. 公路交通科技,2020,37(3):24-30. (LIU X M, YAN S, LIU K, et al. Experimental study on strength properties of red bed weak rock filler under dry-wet cycles[J]. Journal of Highway and Transportation Research and Development,2020,37(3):24-30. (in Chinese)

    LIU X M, YAN S, LIU K, et al. Experimental study on strength properties of red bed weak rock filler under dry-wet cycles[J]. Journal of Highway and Transportation Research and Development, 2020, 37(3): 24-30. (in Chinese)
    [22]
    吴道祥, 刘宏杰, 王国强. 红层软岩崩解性室内试验研究[J]. 岩石力学与工程学报,2010,29(S2):4173-4179. (WU D X, LIU H J, WANG G Q. Laboratory experimental study of slaking characteristics of red-bed soft rock[J]. Chinese Journal of Rock Mechanics and Engineering,2010,29(S2):4173-4179. (in Chinese)

    WU D X, LIU H J, WANG G Q. Laboratory experimental study of slaking characteristics of red-bed soft rock[J]. Chinese Journal of Rock Mechanics and Engineering, 2010, 29(S2): 4173-4179. (in Chinese)
    [23]
    ZHANG S, XU Q, HU Z M. Effects of rainwater softening on red mudstone of deep-seated landslide, Southwest China[J]. Engineering Geology,2016,204:1-13. doi: 10.1016/j.enggeo.2016.01.013
    [24]
    周翠英, 邓毅梅, 谭祥韶, 等. 软岩在饱水过程中微观结构变化规律研究[J]. 中山大学学报(自然科学版),2003,42(4):98-102. (ZHOU C Y, DENG Y M, TAN X S, et al. Research on the variation regularities of microstructures in the testing of interaction between soft rocks and water[J]. Acta Scientiarum Naturalium Universitatis Sunyatseni,2003,42(4):98-102. (in Chinese) doi: 10.3321/j.issn:0529-6579.2003.04.025

    ZHOU C Y, DENG Y M, TAN X S, et al. Research on the variation regularities of microstructures in the testing of interaction between soft rocks and water[J]. Acta Scientiarum Naturalium Universitatis Sunyatseni, 2003, 42(4): 98-102. (in Chinese) doi: 10.3321/j.issn:0529-6579.2003.04.025
    [25]
    廖 进, 兰春晖, 吴勇桃, 等. 红层软岩软化的微–细–宏观界面关联过程与跨尺度级联效应[J]. 岩石力学与工程学报,2024,43(5):1241-1254. (LIAO J, LAN C H, WU Y T, et al. Micro-meso-macro interface correlation processes and cross-scale cascade effects in red-bed soft rocks softening[J]. Chinese Journal of Rock Mechanics and Engineering,2024,43(5):1241-1254. (in Chinese)

    LIAO J, LAN C H, WU Y T, et al. Micro-meso-macro interface correlation processes and cross-scale cascade effects in red-bed soft rocks softening[J]. Chinese Journal of Rock Mechanics and Engineering, 2024, 43(5): 1241-1254. (in Chinese)
    [26]
    LIU Z, LIAO J, XIA C, et al. Micro-meso-macroscale correlation mechanism of red-bed soft rocks failure within static water based on energy analysis[J]. Acta Geotechnica,2023,18(12):6457-6474, doi: 10.1007/s11440-023-01893-6
    [27]
    MAUGERI M, RAGUSA A, TORRISI M. Underground pollution: some solutions of the transport equation[J]. Mathematical and Computer Modelling,2003,37(5/6):583-587.
    [28]
    YIN Y C, WANG Q, YANG J T, et al. Metal chloride perovskite thin film based interfacial layer for shielding lithium metal from liquid electrolyte[J]. Nature Communications,2020,11(1):1761. doi: 10.1038/s41467-020-15643-9
    [29]
    ZHANG Z J, ZHOU Q, YUAN Z T, et al. Adsorption of Mg2+ and K+ on the Kaolinite(001) surface in aqueous system: a combined DFT and AIMD study with an experimental verification[J]. Applied Surface Science,2021,538:148158. doi: 10.1016/j.apsusc.2020.148158
    [30]
    朱凤贤. 特殊软岩软化机制与力学耦合效应研究[D]. 广州: 中山大学, 2009. (ZHU F X. Study on softening mechanism and mechanical coupling effect of special soft rocks[D]. Guangzhou: Sun Yat-sen University, 2009. (in Chinese)

    ZHU F X. Study on softening mechanism and mechanical coupling effect of special soft rocks[D]. Guangzhou: Sun Yat-sen University, 2009. (in Chinese)
    [31]
    ZHOU Z, CHEN S X, WANG Y H, et al. Crack evolution characteristics and cracking mechanism of red beds in central Sichuan during seepage and swelling[J]. Geofluids,2021,2021:9981046.
    [32]
    HUANG K, YU F, ZHANG W, et al. Relationship between capillary water absorption mechanism and pore structure and microfracture of red-layer mudstone in central Sichuan[J]. Bulletin of Engineering Geology and the Environment,2023,82(4):100. doi: 10.1007/s10064-023-03115-5
    [33]
    宋 磊. 红层软岩遇水软化的微细观机理研究[D]. 成都: 西南交通大学, 2014. (SONG L. Research of micro-and meso-softening mechanism of redbeds soft rock with water[D]. Chengdu: Southwest Jiaotong University, 2014. (in Chinese)

    SONG L. Research of micro-and meso-softening mechanism of redbeds soft rock with water[D]. Chengdu: Southwest Jiaotong University, 2014. (in Chinese)
    [34]
    ZHOU C Y, YANG X, LIANG Y H, et al. Classification of red-bed rock mass structures and slope failure modes in South China[J]. Geosciences,2019,9(6):273. doi: 10.3390/geosciences9060273
    [35]
    YAO H Y, JIA S P, GAN W N, et al. Properties of crushed red‐bed soft rock mixtures used in subgrade[J]. Advances in Materials Science and Engineering,2016,2016:9624974.
    [36]
    ZHANG S G, YUN X, SONG Y, et al. Fluid-structure coupling creep characteristics of red-bed soft rock in South China[J]. Water,2022,14(24):4088. doi: 10.3390/w14244088
    [37]
    肖桂元, 陈学军, 韦昌富, 等. 酸雨作用下红黏土渗透性影响机制及压实度控制[J]. 岩石力学与工程学报,2016,35(S1):3283-3290. (XIAO G Y, CHEN X J, WEI C F, et al. Mechanism of permeability and control of compaction for red clay under the influence of acid rain[J]. Chinese Journal of Rock Mechanics and Engineering,2016,35(S1):3283-3290. (in Chinese)

    XIAO G Y, CHEN X J, WEI C F, et al. Mechanism of permeability and control of compaction for red clay under the influence of acid rain[J]. Chinese Journal of Rock Mechanics and Engineering, 2016, 35(S1): 3283-3290. (in Chinese)
    [38]
    白志鹏, 马天驰, 尹红亮, 等. 红层泥岩在不同浸水条件下填料强度特性试验研究[J]. 中国煤炭地质,2022,34(5):37-42. (BAI Z P, MA T C, YIN H L, et al. Experimental study on filler strength features of red beds mudstone under different soaking conditions[J]. Coal Geology of China,2022,34(5):37-42. (in Chinese) doi: 10.3969/j.issn.1674-1803.2022.05.08

    BAI Z P, MA T C, YIN H L, et al. Experimental study on filler strength features of red beds mudstone under different soaking conditions[J]. Coal Geology of China, 2022, 34(5): 37-42. (in Chinese) doi: 10.3969/j.issn.1674-1803.2022.05.08
    [39]
    周翠英, 孔令华, 崔光俊, 等. 基于天然红层材料的软岩成型模拟研究[J]. 岩土力学,2020,41(2):419-427. (ZHOU C Y, KONG L H, CUI G J, et al. Molding simulation of soft rock based on natural red bed materials[J]. Rock and Soil Mechanics,2020,41(2):419-427. (in Chinese)

    ZHOU C Y, KONG L H, CUI G J, et al. Molding simulation of soft rock based on natural red bed materials[J]. Rock and Soil Mechanics, 2020, 41(2): 419-427. (in Chinese)
    [40]
    LIU Z, HE X F, ZHOU C Y. Influence mechanism of different flow patterns on the softening of red-bed soft rock[J]. Journal of Marine Science and Engineering,2019,7(5):155. doi: 10.3390/jmse7050155
    [41]
    罗崇亮, 余云燕, 包得祥, 等. 基于三轴试验红层泥岩的邓肯–张模型参数研究[J]. 地震工程学报,2019,41(2):436-444. (LUO C L, YU Y Y, BAO D X, et al. Duncan-Zhang model parameters of red mudstone based on triaxial test[J]. China Earthquake Engineering Journal,2019,41(2):436-444. (in Chinese) doi: 10.3969/j.issn.1000-0844.2019.02.436

    LUO C L, YU Y Y, BAO D X, et al. Duncan-Zhang model parameters of red mudstone based on triaxial test[J]. China Earthquake Engineering Journal, 2019, 41(2): 436-444. (in Chinese) doi: 10.3969/j.issn.1000-0844.2019.02.436
    [42]
    赵 蕊, 左双英, 王 嵩, 等. 不同含水量贵阳重塑红黏土三轴抗剪强度试验研究[J]. 水文地质工程地质,2015,42(5):90-95. (ZHAO R, ZUO S Y, WANG S, et al. Experiment and mechanism analysis of water contents on triaxial shear strength of the remodeled red clay of Guiyang[J]. Hydrogeology & Engineering Geology,2015,42(5):90-95. (in Chinese)

    ZHAO R, ZUO S Y, WANG S, et al. Experiment and mechanism analysis of water contents on triaxial shear strength of the remodeled red clay of Guiyang[J]. Hydrogeology & Engineering Geology, 2015, 42(5): 90-95. (in Chinese)
    [43]
    LIU Y Z, CAI Y T, HUANG S B, et al. Effect of water saturation on uniaxial compressive strength and damage degree of clay-bearing sandstone under freeze-thaw[J]. Bulletin of Engineering Geology and the Environment,2020,79(4):2021-2036. doi: 10.1007/s10064-019-01686-w
    [44]
    蔺鹏杰, 赵丽娜, 范文晓. 含水率对红层泥岩填料剪切强度与小应变刚度影响研究[J]. 铁道科学与工程学报,2024,21(12):5071-5079. (LIN P J, ZHAO L N, FAN W X. Effect of water content on shear strength and small strain stiffness of red mudstone as subgrade fill material[J]. Journal of Railway Science and Engineering,2024,21(12):5071-5079. (in Chinese)

    LIN P J, ZHAO L N, FAN W X. Effect of water content on shear strength and small strain stiffness of red mudstone as subgrade fill material[J]. Journal of Railway Science and Engineering, 2024, 21(12): 5071-5079. (in Chinese)
    [45]
    刘先峰, 马 杰, 袁胜洋, 等. 干密度和含水率对压实红层泥岩路基填料强度特性的影响研究[J]. 铁道科学与工程学报,2022,19(10):2910-2918. (LIU X F, MA J, YUAN S Y, et al. Experimental research on the influence of dry density and water content on the strength characteristics of compacted red mudstone fill material[J]. Journal of Railway Science and Engineering,2022,19(10):2910-2918. (in Chinese)

    LIU X F, MA J, YUAN S Y, et al. Experimental research on the influence of dry density and water content on the strength characteristics of compacted red mudstone fill material[J]. Journal of Railway Science and Engineering, 2022, 19(10): 2910-2918. (in Chinese)
    [46]
    刘爱民, 付建宝. 高液限红黏土用作路基填料的改良方法研究[J]. 地基处理,2024,6(S1):15-21. (LIU A M, FU J B. Research on the improvement methods of using high liquid limit red clay as subgrade filler[J]. Journal of Ground Improvement,2024,6(S1):15-21. (in Chinese)

    LIU A M, FU J B. Research on the improvement methods of using high liquid limit red clay as subgrade filler[J]. Journal of Ground Improvement, 2024, 6(S1): 15-21. (in Chinese)
    [47]
    戴张俊, 郭建华, 周 哲, 等. 川中红层高铁路基长时上拱变形反演与预测[J]. 岩石力学与工程学报,2020,39(S2):3538-3548. (DAI Z J, GUO J H, ZHOU Z, et al. Inversion and prediction of long-term uplift deformation of high-speed railway subgrade in central Sichuan red-bed[J]. Chinese Journal of Rock Mechanics and Engineering,2020,39(S2):3538-3548. (in Chinese)

    DAI Z J, GUO J H, ZHOU Z, et al. Inversion and prediction of long-term uplift deformation of high-speed railway subgrade in central Sichuan red-bed[J]. Chinese Journal of Rock Mechanics and Engineering, 2020, 39(S2): 3538-3548. (in Chinese)
    [48]
    肖尚德, 唐辉明, 唐睿旋, 等. 恩施盆地红层边坡变形破坏模式研究[J]. 工程地质学报,2016,24(6):1080-1087. (XIAO S D, TANG H M, TANG R X, et al. Study on deformation and failure modes of red layer slope in Enshi Basin[J]. Journal of Engineering Geology,2016,24(6):1080-1087. (in Chinese)

    XIAO S D, TANG H M, TANG R X, et al. Study on deformation and failure modes of red layer slope in Enshi Basin[J]. Journal of Engineering Geology, 2016, 24(6): 1080-1087. (in Chinese)
    [49]
    吴红刚, 马惠民, 侯殿英, 等. 青海高原龙穆尔沟红层滑坡变形机制的地质分析与模型试验研究[J]. 岩石力学与工程学报,2010,29(10):2094-2102. (WU H G, MA H M, HOU D Y, et al. Geological analysis and model experimental study of deformation mechanism of ditch-moore red bed landslide at Qinghai Plateau[J]. Chinese Journal of Rock Mechanics and Engineering,2010,29(10):2094-2102. (in Chinese)

    WU H G, MA H M, HOU D Y, et al. Geological analysis and model experimental study of deformation mechanism of ditch-moore red bed landslide at Qinghai Plateau[J]. Chinese Journal of Rock Mechanics and Engineering, 2010, 29(10): 2094-2102. (in Chinese)
    [50]
    陈 康, 刘先峰, 袁胜洋, 等. 含水率对红层泥岩填料刚度劣化特性及微观结构影响研究[J]. 岩土力学,2024,45(7):1976-1986. (CHEN K, LIU X F, YUAN S Y, et al. Effect of water content on stiffness degradation and microstructure of red mudstone fill material[J]. Rock and Soil Mechanics,2024,45(7):1976-1986. (in Chinese)

    CHEN K, LIU X F, YUAN S Y, et al. Effect of water content on stiffness degradation and microstructure of red mudstone fill material[J]. Rock and Soil Mechanics, 2024, 45(7): 1976-1986. (in Chinese)
    [51]
    蒋关鲁, 房立凤, 王智猛, 等. 红层泥岩路基填料动强度和累积变形特性试验研究[J]. 岩土工程学报,2010,32(1):124-129. (JIANG G L, FANG L F, WANG Z M, et al. Experimental study on dynamic strength and accumulated deformation characteristics of red-mudstone filling[J]. Chinese Journal of Geotechnical Engineering,2010,32(1):124-129. (in Chinese)

    JIANG G L, FANG L F, WANG Z M, et al. Experimental study on dynamic strength and accumulated deformation characteristics of red-mudstone filling[J]. Chinese Journal of Geotechnical Engineering, 2010, 32(1): 124-129. (in Chinese)
    [52]
    陈 康, 刘先峰, 蒋关鲁, 等. 饱和红层泥岩填料动力及耗散能特性试验研究[J]. 岩土工程学报,2023,45(3):571-579. (CHEN K, LIU X F, JIANG G L, et al. Experimental study on dynamic and dissipated energy behaviors of saturated red mudstone fill materials[J]. Chinese Journal of Geotechnical Engineering,2023,45(3):571-579. (in Chinese) doi: 10.11779/CJGE20211550

    CHEN K, LIU X F, JIANG G L, et al. Experimental study on dynamic and dissipated energy behaviors of saturated red mudstone fill materials[J]. Chinese Journal of Geotechnical Engineering, 2023, 45(3): 571-579. (in Chinese) doi: 10.11779/CJGE20211550
    [53]
    陈 康, 刘先峰, 袁胜洋, 等. 饱和红层泥岩填料累积变形特性及安定界限研究[J]. 岩土力学,2022,43(5):1261-1268. (CHEN K, LIU X F, YUAN S Y, et al. Experimental study of accumulative deformation behaviour and shakedown limit of saturated red mudstone fill material[J]. Rock and Soil Mechanics,2022,43(5):1261-1268. (in Chinese)

    CHEN K, LIU X F, YUAN S Y, et al. Experimental study of accumulative deformation behaviour and shakedown limit of saturated red mudstone fill material[J]. Rock and Soil Mechanics, 2022, 43(5): 1261-1268. (in Chinese)
    [54]
    DENG Y Y. Study on the effects of drying–wetting cycles on the dynamic elasticity modulus of weathered red sandstone soil[J]. SN Applied Sciences,2023,5(9):242. doi: 10.1007/s42452-023-05461-1
    [55]
    高永青, 刘建锋, 林庆元, 等. 微风化红层砂泥岩动三轴力学特性试验研究[J]. 力学与实践,2023,45(5):981-989. (GAO Y Q, LIU J F, LIN Q Y, et al. Experimental study on dynamic triaxial mechanical properties of sand and mudstone in breezy red bed[J]. Mechanics in Engineering,2023,45(5):981-989. (in Chinese) doi: 10.6052/1000-0879-23-397

    GAO Y Q, LIU J F, LIN Q Y, et al. Experimental study on dynamic triaxial mechanical properties of sand and mudstone in breezy red bed[J]. Mechanics in Engineering, 2023, 45(5): 981-989. (in Chinese) doi: 10.6052/1000-0879-23-397
    [56]
    MA H Y, ZHUANG Y L, CHEN L L, et al. Experiments and modeling of the attenuation of the dynamic elastic modulus of saturated red clay under cyclic loading[J]. Sustainability,2022,15(1):26. doi: 10.3390/su15010026
    [57]
    穆 坤, 郭爱国, 柏 巍, 等. 循环荷载作用下广西红黏土动力特性试验研究[J]. 地震工程学报,2015,37(2):487-493. (MU K, GUO A G, BAI W, et al. Experimental study on dynamic properties of red clay in Guangxi under cyclic loading[J]. China Earthquake Engineering Journal,2015,37(2):487-493. (in Chinese) doi: 10.3969/j.issn.1000-0844.2015.02.0487

    MU K, GUO A G, BAI W, et al. Experimental study on dynamic properties of red clay in Guangxi under cyclic loading[J]. China Earthquake Engineering Journal, 2015, 37(2): 487-493. (in Chinese) doi: 10.3969/j.issn.1000-0844.2015.02.0487
    [58]
    胡安华, 蒋关鲁, 魏永幸, 等. 200km/h客货共线铁路红层泥岩基床填料动力特性研究[J]. 铁道学报,2010,32(6):120-123. (HU A H, JIANG G L, WEI Y X, et al. Dynamic triaxial experimental study on red mudstone filling for mixed passenger and freight railway with the speed of 200 km/h[J]. Journal of the China Railway Society,2010,32(6):120-123. (in Chinese) doi: 10.3969/j.issn.1001-8360.2010.06.020

    HU A H, JIANG G L, WEI Y X, et al. Dynamic triaxial experimental study on red mudstone filling for mixed passenger and freight railway with the speed of 200 km/h[J]. Journal of the China Railway Society, 2010, 32(6): 120-123. (in Chinese) doi: 10.3969/j.issn.1001-8360.2010.06.020
    [59]
    CHENG Y Z, YANG G Y, LONG Z L, et al. Dynamic characteristics of overconsolidated remolded red clay in Southwest China: an experimental study[J]. Bulletin of Engineering Geology and the Environment,2022,81(5):176. doi: 10.1007/s10064-022-02683-2
    [60]
    YANG B B, HE M M, CHEN Y S. Experimental study of nonlinear damping characteristics on granite and red sandstone under the multi-level cyclic loading-unloading triaxial compression[J]. Arabian Journal of Geosciences,2020,13(2):72. doi: 10.1007/s12517-019-5022-8
    [61]
    孔祥辉, 蒋关鲁, 邹祖银, 等. 循环荷载下红层泥岩的动力特性及路用性能研究[J]. 岩石力学与工程学报,2013(9):1813-1819. (KONG X H, JIANG G L, ZOU Z Y, et al. Dynamic characteristics and pavement performance of red mudstone subjected to cyclic loading[J]. Chinese Journal of Rock Mechanics and Engineering,2013(9):1813-1819. (in Chinese) doi: 10.3969/j.issn.1000-6915.2013.09.012

    KONG X H, JIANG G L, ZOU Z Y, et al. Dynamic characteristics and pavement performance of red mudstone subjected to cyclic loading[J]. Chinese Journal of Rock Mechanics and Engineering, 2013(9): 1813-1819. (in Chinese) doi: 10.3969/j.issn.1000-6915.2013.09.012
  • 加载中

Catalog

    通讯作者: 陈斌, bchen63@163.com
    • 1. 

      沈阳化工大学材料科学与工程学院 沈阳 110142

    1. 本站搜索
    2. 百度学术搜索
    3. 万方数据库搜索
    4. CNKI搜索

    Figures(5)

    Article Metrics

    Article views (1) PDF downloads(0) Cited by()
    Proportional views
    Related

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return