Field test on bearing characteristics of surface foundation by in-situ stabilization
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Affiliation:

1.College of Transportation; 1b. College of Civil Engineering and Architecture, Shandong University of Science and Technology, , Shandong, P. R. China; , Shandong Qingdao 266590, P. R. China;2.College of Civil Engineering and Architecture, Shandong University of Science and Technology, Shandong Qingdao 266590, P. R. China;3.Key Laboratory of Ministry of Education for Geomechanics and Embankment Engineering, Hohai University, Nanjing 210098, P. R. China

Clc Number:

TU472.3;U416.1

Fund Project:

Natural Science Foundation of Shandong Province (Nos. ZR2019PEE044, ZR2021ME067); Key Laboratory of Ministry of Education for Geomechanics and Embankment Engineering, Hohai University (No. 2019001)

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    Abstract:

    Based on the ground treatment of the north extension of No. 31 provincial road in the urban section of Shaoxing in Zhejiang Province, the feasibility and treatment effect of two methods, i.e., ALLu strong stirring head stirring method with homemade equipment and ALLu strong stirring head combined application, by in-situ curing foundation treatment were studied. Plate loading test, unconfined compressive strength (UCS) test, standard penetration test and static cone penetration test were carried out, respectively. Meanwhile, in order to obtain the stress and deformation of the in-situ curing foundation, field monitoring was carried out by arranging the earth pressure box and settlement plate. The test results showed that the bearing capacity of foundation by in-situ curing were increased by at least 30% compared with the traditional replacement method. At 28 days of curing time, the ratio of UCS of curing soil in-situ to that of indoor value was 0.35-0.65. The bearing capacity of foundation was improved by standard penetration test and static cone penetration test,and the calculating bearing capacity were consistent with the measured results of plate loading test. The stress and additional stress coefficient of the two groups of road sections were analyzed, and the artificial crust layer had better effect on the diffusion stress, which can be used for detection of in-situ shallow stabilization in engineering practice.

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王颖,王朝杰,胡振华,陈永辉,肖洪天.就地固化表层地基承载特性现场试验研究[J].土木与环境工程学报(中英文),2024,46(3):9~15

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History
  • Received:November 08,2021
  • Revised:
  • Adopted:
  • Online: May 20,2024
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