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Effect of artificial cementation on cone tip resistance and small strain shear modulus of sand

Authors
Lee, Moon-JooChoo, HyunwookKim, JaejeongLee, Woojin
Issue Date
5월-2011
Publisher
SPRINGER HEIDELBERG
Keywords
Cementation; Cone tip resistance; Small strain shear modulus; Stress level
Citation
BULLETIN OF ENGINEERING GEOLOGY AND THE ENVIRONMENT, v.70, no.2, pp.193 - 201
Indexed
SCIE
SCOPUS
Journal Title
BULLETIN OF ENGINEERING GEOLOGY AND THE ENVIRONMENT
Volume
70
Number
2
Start Page
193
End Page
201
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/112595
DOI
10.1007/s10064-010-0312-0
ISSN
1435-9529
Abstract
A series of cone penetration and bender element tests were performed on sands artificially cemented with gypsum in a calibration chamber to investigate the effect of cementation on the cone tip resistance (q(c)) and small strain shear modulus (G(max)) of sand. It was found that both the q(c) and G(max) of cemented sand are significantly affected by the degree of cementation while the effects of stress and density are reduced due to the cementation bonds. As the degree of cementation increases, the relationship between the q(c)-D-R-sigma(v)' v of cemented sand is observed to be similar to that of quartz sand with low compressibility. As the density and stress level affect q(c) more significantly than G(max), the G(max)/q(c) of cemented sand decreases with increasing q(c). However, as the cementation causes a larger increase in G(max) than q(c), the G(max)/q(c) ratio of cemented sand increases as the gypsum content increases. It was also observed from the G(max)/q(c) - (q(c)/p(a)) (p(a)/sigma(v)')(0.5) relation that the G(max)/q(c) ratio of cemented sand locates above the upper bound suggested by previous studies.
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LEE, Woo jin
공과대학 (건축사회환경공학부)
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