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    Study on the Mechanical Properties of Steel Slag Cement–Solidified Silt Soil and the Law of Chloride Ion Transport under Different Erosion Times

    Source: Journal of Highway and Transportation Research and Development (English Edition):;2023:;Volume ( 017 ):;issue: 001::page 9
    Author:
    Yan-kai Wu
    ,
    Xiao-yang Guo
    ,
    Yan-hui Ma
    ,
    Sheng-yao Miao
    DOI: 10.1061/JHTRCQ.0000853
    Publisher: ASCE
    Abstract: To study the influence of chloride erosion on the mechanical properties of steel slag cement–solidified silt soil and the law of chloride ion migration, indoor tests were carried out on the physical and mechanical properties and microstructure of steel slag cement–solidified silt soil under chloride erosion, through unconfined compressive strength tests and chloride ion concentration measurement tests. The macroscopic physical and mechanical properties, microstructure changes, and internal chloride ion migration of solidified soil eroded by chlorine salt and solidified using steel slag cement under different conditions were studied using SEM tests. The test results show that with the increase of erosion time, the mass change rate of the steel slag cement soil sample is significantly higher than that of cement soil under the erosion of chlorine salt. The maximum mass change rate is 1.78 times more than that of cement soil, and the maximum difference of water content can reach 9.17% and 8.54%. With the increase of erosion time, the unconfined compressive strength of specimens cured for 7 days showed an overall growth trend; and the broken line of unconfined compressive strength of specimens cured for 28 days showed first increasing and then decreasing. The unconfined compressive strength of the cement soil sample is significantly higher than that of the steel slag cement soil; and its maximum strength is 2.34 times that of steel slag cement soil. With the increase in erosion time, the internal chloride ion concentration first increases and then tends to be stable. The chloride ion corrosion resistance of the cement soil sample is better than that of the steel slag cement soil sample. Compared with the maximum chloride ion concentration, the steel slag cement soil sample is 1.52 times higher than that of cement soil. Microscopically, SEM test results show that with the increase of chloride erosion time, the internal structure arrangement of the cement soil samples becomes relatively loose, which can seriously damage the internal structure of samples and reduce their bearing capacity.
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      Study on the Mechanical Properties of Steel Slag Cement–Solidified Silt Soil and the Law of Chloride Ion Transport under Different Erosion Times

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    http://yetl.yabesh.ir/yetl1/handle/yetl/4293638
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    • Journal of Highway and Transportation Research and Development (English Edition)

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    contributor authorYan-kai Wu
    contributor authorXiao-yang Guo
    contributor authorYan-hui Ma
    contributor authorSheng-yao Miao
    date accessioned2023-11-27T23:31:57Z
    date available2023-11-27T23:31:57Z
    date issued3/1/2023 12:00:00 AM
    date issued2023-03-01
    identifier otherJHTRCQ.0000853.pdf
    identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4293638
    description abstractTo study the influence of chloride erosion on the mechanical properties of steel slag cement–solidified silt soil and the law of chloride ion migration, indoor tests were carried out on the physical and mechanical properties and microstructure of steel slag cement–solidified silt soil under chloride erosion, through unconfined compressive strength tests and chloride ion concentration measurement tests. The macroscopic physical and mechanical properties, microstructure changes, and internal chloride ion migration of solidified soil eroded by chlorine salt and solidified using steel slag cement under different conditions were studied using SEM tests. The test results show that with the increase of erosion time, the mass change rate of the steel slag cement soil sample is significantly higher than that of cement soil under the erosion of chlorine salt. The maximum mass change rate is 1.78 times more than that of cement soil, and the maximum difference of water content can reach 9.17% and 8.54%. With the increase of erosion time, the unconfined compressive strength of specimens cured for 7 days showed an overall growth trend; and the broken line of unconfined compressive strength of specimens cured for 28 days showed first increasing and then decreasing. The unconfined compressive strength of the cement soil sample is significantly higher than that of the steel slag cement soil; and its maximum strength is 2.34 times that of steel slag cement soil. With the increase in erosion time, the internal chloride ion concentration first increases and then tends to be stable. The chloride ion corrosion resistance of the cement soil sample is better than that of the steel slag cement soil sample. Compared with the maximum chloride ion concentration, the steel slag cement soil sample is 1.52 times higher than that of cement soil. Microscopically, SEM test results show that with the increase of chloride erosion time, the internal structure arrangement of the cement soil samples becomes relatively loose, which can seriously damage the internal structure of samples and reduce their bearing capacity.
    publisherASCE
    titleStudy on the Mechanical Properties of Steel Slag Cement–Solidified Silt Soil and the Law of Chloride Ion Transport under Different Erosion Times
    typeJournal Article
    journal volume17
    journal issue1
    journal titleJournal of Highway and Transportation Research and Development (English Edition)
    identifier doi10.1061/JHTRCQ.0000853
    journal fristpage9
    journal lastpage20
    page12
    treeJournal of Highway and Transportation Research and Development (English Edition):;2023:;Volume ( 017 ):;issue: 001
    contenttypeFulltext
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