Journal of Shandong University(Engineering Science) ›› 2026, Vol. 56 ›› Issue (1): 72-79.doi: 10.6040/j.issn.1672-3961.0.2024.266

• Civil Engineering • Previous Articles    

Mechanical characteristics of rapid impact compaction technology treating pulverised soil foundations based on large triaxial tests

JIANG Dahai1, LIU Yazhen2, QI Di1, LÜ Bin1, GONG Haixia1, WANG Chuyi2, ZHANG Hongbo2   

  1. JIANG Dahai1, LIU Yazhen2, QI Di1, LÜ
    Bin1, GONG Haixia1, WANG Chuyi2, ZHANG Hongbo2(1. Qilu Expressway Co., Ltd., Jinan 250101, Shandong, China;
    2. School of Qilu Transportation, Shandong University, Jinan 250002, Shandong, China
  • Published:2026-02-03

Abstract: To reveal the mechanical characteristics of rapid impact compaction treatment on pulverized soil foundations, an indoor triaxial test was conducted on compacted pulverized soil. This test simulated the effects of different tamping energies, determined the stress-strain behavior of pulverized soil under varying tamping energies and confining pressures, and calculated the mechanical parameters based on the Duncan-Chang model. The results showed that as tamping energy increases, the peak stress of the pulverized soil specimens also increases. Specifically, the peak strain of the pulverized soil foundation treated with 150 kJ of tamping energy could reach up to 396 kPa, which was 1.3 to 1.5 times greater than that of the foundation treated with 70 kJ. The shrinkage of the foundation after treatment at 150 kJ of tamping energy level was most pronounced in the impact tamping. Moreover, under the same tamping energy level, the peak stress of the pulverized soil specimens increased with the rise in confining pressure, with the peak stress corresponding to the strain of the specimen. For instance, at a confining pressure of 200 kPa, the peak stress of the soil treated with 150 kJ of tamping energy could reach 530 kPa, which was double that observed under the same treatment conditions at a confining pressure of 100 kPa. Using the Duncan-Chang calculation model, the mechanical parameters of the pulverized soil foundation after treatment with different tamping energies were calculated. These research findings provided theoretical support for the promotion and application of RIC technology.

Key words: rapid impact compaction, pulverized soil foundations, indoor large triaxial test, shear characteristics, Duncan-Chang model

CLC Number: 

  • U416.1
[1] 窦启文. 快速液压夯实技术在不良地基中的应用分析[J]. 建材技术与应用, 2022(2): 15-17. DOU Qiwen. Application analysis of rapid hydraulic tamping technology in bad foundation[J]. Reseach & Application of Building Materials, 2022(2): 15-17.
[2] 庄仲欣. 高速液压夯实技术在高速铁路路基工程中的应用研究[J]. 路基工程, 2018(3): 153-156. ZHUANG Zhongxin. Application research of rapid hydraulic compaction techniques in high-speed railway subgrade engineering[J]. Subgrade Engineering, 2018(3): 153-156.
[3] 董金玉, 李日运, 孙文怀, 等. 快速夯实法(RIC)在高速公路高填方及台背填土施工中的技术研究[J]. 工程地质学报, 2008(3): 135-139. DONG Jinyu, LI Riyun, SUN Wenhuai, et al. Study of RIC construction technology for dynamic consolidation of high embankment and abutment backside fill soil in highway[J]. Journal of Engineering Geology, 2008(3):135-139.
[4] 刘明华, 王吉庆. 高速液压夯实机补强台背路基的施工工艺及工程应用[J]. 公路与汽运, 2016(4): 217-219. LIU Minghua, WANG Jiqing. Construction process and engineering application of high-speed hydraulic compaction machines for reinforcing backfill subgrades[J]. Highways & Automotive Applications, 2016(4): 217-219.
[5] 曹斌, 刘岩. 高速液压夯实机在高速公路路基填筑中的应用[J]. 公路, 2016, 61(11): 71-75. CAO Bin, LIU Yan. Application of high-speed hydraulic compactors in highway subgrade filling[J]. Highway, 2016, 61(11): 71-75.
[6] 李玉华. 浅谈高速液压夯实机在路基施工中的补强夯实作用[J]. 现代工业经济和信息化, 2015, 5(7): 47-48. LI Yuhua. Introduction to high speed hydraulic rammer ramming role in construction of the roadbed[J]. Modern Industrial Economy and Informationization, 2015, 5(7): 47-48.
[7] 贺志军, 阿斯嘎, 邹金锋. 加筋含细粒土砂的大型三轴试验分析[J]. 铁道科学与工程学报, 2019, 16(10): 2451-2458. HE Zhijun, A Siga, ZOU Jinfeng. Research for reinforced fine-grained sand based on large-scale triaxial tests[J]. Journal of Railway Science and Engineering, 2019, 16(10): 2451-2458.
[8] 石熊, 张家生, 孟飞, 等. 改良粗粒土填料大型三轴试验[J]. 中南大学学报(自然科学版), 2015, 46(2): 645-652. SHI Xiong, ZHANG Jiasheng, MENG Fei, et al. Large-scale triaxial test on modified coarse-grained fillers[J]. Journal of Central South University(Science and Technology), 2015, 46(2): 645-652.
[9] VUKADIN V. The improvement of the loosely deposited sand silts with the rapid impact compacton technique on Breice test sites [J].Engineering Geology, 2013(160): 69-80.
[10] JIA M, YANG Y, LIU B, et al. PFC/FLAC coupled simulation of dynamic compaction in granular soils[J]. Granular Matter, 2018, 20(4): 76.
[11] 李晋, 崔言晨, 姜鹏, 等. 快速液压夯动力补强效果无损评价试验[J]. 科学技术与工程, 2022, 22(9): 3744-3751. LI Jin, CUI Yanchen, JIANG Peng, et al. Test on nondestructive evaluation of dynamic reinforcing effect of rapid hydraulic impactor[J]. Science Technology and Engineering, 2022, 22(9): 3744-3751.
[12] 周志军, 张志鹏, 郭涛, 等. 黄土路基补强分层压实度检测方法[J]. 铁道科学与工程学报, 2020, 17(12): 3052-3062. ZHOU Zhijun, ZHANG Zhipeng,GUO Tao,et al. Layered compactness detection method of reinforcement the of loess subgrade[J]. Journal of Railway Science and Engineering, 2020, 17(12): 3052-3062.
[13] 中华人民共和国交通部. 公路土工试验规程: JTG E40—2007[S]. 北京: 人民交通出版社, 2007.
[14] 宋修广, 张宏博, 王松根, 等. 黄河冲积平原区粉土路基吸水特性及强度衰减规律试验研究[J]. 岩土工程学报, 2010, 32(10): 1594-1602. SONG Xiuguang, ZHANG Hongbo, WANG Songgen, et al. Hydrophilic characteristics and strength decay of silt roadbed in Yellow River alluvial plain[J]. Chinese Journal of Geotechnical Engineering, 2010, 32(10): 1594-1602.
[15] ANDERSEN K H, SCHJETNE K. Database of friction angles of sand and consolidation characteristics of sand, silt, and clay[J]. Journal of Geotechnical & Geoenvi-ronmental Engineering, 2012, 139(7): 1140-1155.
[16] 殷德顺, 王保田, 王云涛. 不同应力路径下的邓肯-张模型模量公式[J]. 岩土工程学报, 2007(9): 1380-1385. YIN Deshun, WANG Baotian, WANG Yuntao. Tangent elastic modulus of Duncan-Chang model for different stress paths[J].Chinese Journal of Geotechnical Engineering, 2007(9):1380-1385.
[1] Guoren LÜ,Jiandong GE,Haitao XIAO. Treatment of coastal soft foundation with cement-soil mixing pile [J]. Journal of Shandong University(Engineering Science), 2020, 50(3): 73-81.
[2] Shulei JIANG,Shifeng YANG,Linghang YANG,Wenming SHI,Fuqing ZOU,Qinghong SHAN. The technology of spanning deep pond of the urban expressway nearby paralleling high-speed railway [J]. Journal of Shandong University(Engineering Science), 2019, 49(1): 91-100.
[3] SONG Xiuguang, ZHOU Jian, HOU Yue, GE Zhi, SUN Renjuan. Properties of anti-dispersing pervious concrete [J]. JOURNAL OF SHANDONG UNIVERSITY (ENGINEERING SCIENCE), 2016, 46(4): 60-67.
[4] GUO Yongjian, CAO Zhouyang, SHENG Lijuan. The centrifugal model test of cable stress monitoring for rock slope [J]. JOURNAL OF SHANDONG UNIVERSITY (ENGINEERING SCIENCE), 2016, 46(2): 101-107.
[5] YI Xiao-ming1,2, WANG Song-gen2, SONG Xiu-guang1*, ZANG Ya-nan1. Theoretical analysis of evaluation index for allowable
subgrade uneven settlement
[J]. JOURNAL OF SHANDONG UNIVERSITY (ENGINEERING SCIENCE), 2013, 43(5): 68-73.
[6] ZHANG Qingtao, LIU Xiaowei, GAO Jian, SUN Yuhai, YAN Qingliang, LIU Yuan, WANG Hao. Bearing capacities of reinforced slope with scrap tire strips under vertical loading [J]. Journal of Shandong University(Engineering Science), 2022, 52(3): 70-79.
[7] SUN Jie, ZHANG Hongbo, CHENG Yu, LIU Yu, ZHANG Hongbo, LIU Zhikun. Bearing characteristics of reinforced sand slope with scrap tire strips and TDA backfills [J]. Journal of Shandong University(Engineering Science), 2023, 53(1): 49-59.
[8] JIANG Hongguang, HUANG Beibei, MA Chuanyi, LIU Yiyi, WANG Kai, YAO Zhanyong. Moisture field of fine-soil subgrade with the influence of groundwater and rainfall [J]. Journal of Shandong University(Engineering Science), 2023, 53(5): 74-82.
[9] MA Chuanyi, FENG Haojie, JIANG Hongguang, HOU Tianxin, YAO Zhanyong, YANG Weimin. Numerical simulation study on the effect of wicking-geotextile on humidity control of subgrade [J]. Journal of Shandong University(Engineering Science), 2024, 54(4): 141-149.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
No Suggested Reading articles found!