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在“
Elsevier电子期刊
”中,
命中:
93
条,耗时:0.0529751 秒
在所有数据库中总计命中:
1,665
条
1.
Strength development of
cement
-
treated
soil
s: Effects of water content, carbonation, and pozzolanic reaction under drying curing condition
作者:
Lanh Si Ho
a
;
silanh2771987@gmail.com
;
Kenichiro Nakarai
b
;
nakarai@hiroshima-u.ac.jp
;
Yuko Ogawa
b
;
ogaway@hiroshima-u.ac.jp
;
Takashi Sasaki
c
;
takashi-sasaki@denka.co.jp
;
Minoru Morioka
c
;
minoru-morioka@denka.co.jp
关键词:
Cement
-
treated
soil
;
Carbonation
;
Compressive strength
;
Water content
;
Suction
;
Calcium carbonate
刊名:Construction and Building Materials
出版年:2017
2.
The effect of size and repla
cement
content of nanosilica on strength development of
cement
treated
residual
soil
作者:
Sayed Hessam Bahmani
a
;
h.bahmani.eng@gmail.com" class="auth_mail" title="E-mail the corresponding author
;
Nima Farzadnia
b
;
Afshin Asadi
b
;
Bujang B.K. Huat
a
关键词:
Nanosilica
;
Cement
treated
residual
soil
;
Chemical composition
;
Microstructural properties
;
Curing time
刊名:Construction and Building Materials
出版年:2016
3.
Predicting the Behaviour of Fibre Reinforced
Cement
Treated
Clay
作者:
Lam Nguyen
a
;
Lam.D.Nguyen@student.uts.edu.au" class="auth_mail" title="E-mail the corresponding author
;
Behzad Fatahi
b
;
Behzad.Fatahi@uts.edu.au" class="auth_mail" title="E-mail the corresponding author
;
Hadi Khabbaz
c
;
Hadi.Khabbaz@uts.edu.au" class="auth_mail" title="E-mail the corresponding author
关键词:
cement
treated
fibre reinforced
soil
s
;
constitutive modeling
;
cement
ation degradation
;
fibre failure mechanism
刊名:Procedia Engineering
出版年:2016
4.
Behaviour of
cement
stabilized
treated
coir fibre-reinforced clay-pond ash mixtures
作者:
Jitendra Singh Yadav
jitendershine@gmail.com
;
Suresh Kumar Tiwari
;
sktiwari.ce@mnit.ac.in
关键词:
Treated
coir fibres
;
Cement
stabilized clay-pond ash mixtures
;
Unconfined compressive strength
;
Split tensile strength
刊名:Journal of Building Engineering
出版年:2016
5.
Effect of graphene oxide nanosheets on the geotechnical properties of
cement
ed silty
soil
作者:
Farzad Naseri
a
;
Mohammad Irani
b
;
irani_mo@ut.ac.ir" class="auth_mail" title="E-mail the corresponding author
;
Masoud Dehkhodarajabi
c
关键词:
GO nanosheets
;
Soil
stabilization
;
Cement
ed
soil
;
Geotechnical properties
;
Unconfined compressive strength
刊名:Archives of Civil and Mechanical Engineering
出版年:2016
6.
Long Term Cyclic Response of a
Soil
-
Cement
Mixture: Experimental Study and Modelling
作者:
Fabrizio Panico
;
fabrizio.panico@fe.up.pt" class="auth_mail" title="E-mail the corresponding author
;
Antó
;
nio Viana da Fonseca
viana@fe.up.pt" class="auth_mail" title="E-mail the corresponding author
关键词:
Soil
&ndash
;
cement
mixtures
;
Soil
improvement
;
Subgrade layers
;
Cyclic Triaxial tests
;
Porosity/
cement
ratio
;
Constitutive modelling
刊名:Procedia Engineering
出版年:2016
7.
Mechanical Fatigue of a Stabilized/
Treated
Soil
Tested with Uniaxial and Biaxial Flexural Tests
作者:
Mathieu Preteseille
;
Thomas Lenoir
;
Thomas.lenoir@ifsttar.fr" class="auth_mail" title="E-mail the corresponding author
关键词:
High Speed Rails infrastructures
;
mechanical fatigue
;
biaxial flexural test
;
stabilized/
cement
-
treated
soil
s
;
High Speed Rails design
刊名:Transportation Research Procedia
出版年:2016
8.
Contribution of the fiber reinfor
cement
on the fatigue behavior of two
cement
-modified
soil
s
作者:
Thomas Lenoir
;
Thomas.lenoir@ifsttar.fr" class="auth_mail" title="E-mail the corresponding author
;
Mathieu Preteseille
;
Sophie Ricordel
关键词:
Land transport infrastructures
;
Mechanical fatigue
;
Stabilized/
cement
-
treated
soil
s
;
Fiber reinfor
cement
刊名:International Journal of Fatigue
出版年:2016
9.
Strength and micro-structure evolution of compacted
soil
s modified by admixtures of
cement
and metakaolin
作者:
Zilong Wu
a
;
Yongfeng Deng
a
;
noden@seu.edu.cn" class="auth_mail" title="E-mail the corresponding author
;
Songyu Liu
a
;
Qianwen Liu
a
;
Yonggui Chen
b
;
Fusheng Zha
c
关键词:
Metakaolin
;
Cement
-based modified
soil
;
Compactability
;
Strength performance
;
Microstructure
刊名:Applied Clay Science
出版年:2016
10.
Structural test at the laboratory scale for the utilization of stabilized fine-grained
soil
s in the subgrades of High Speed Rail infrastructures: Experimental aspects
作者:
Mathieu Preteseille
;
Thomas Lenoir
;
Thomas.lenoir@ifsttar.fr" class="auth_mail" title="E-mail the corresponding author
关键词:
High Speed Rails infrastructures
;
Mechanical fatigue
;
Biaxial flexural test
;
Stabilized/
cement
-
treated
soil
s
;
High Speed Rails design
刊名:International Journal of Fatigue
出版年:2016
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