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Wiley电子期刊(2)
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Elsevier电子期刊(365)
在“
Elsevier电子期刊
”中,
命中:
365
条,耗时:小于0.01 秒
在所有数据库中总计命中:
436
条
1.
Fatigue behaviour of transversely restrained precast steel fibre reinforced
concrete
slabs in a deconstructable composite
deck
作者:
Masoud Moradi
;
Hamid Valipour
;
H.Valipour@unsw.edu.au
;
Stephen Foster
关键词:
Arching action
;
Bridge
deck
;
Fatigue life
;
Precast slabs
;
Steel fibre
刊名:Construction and Building Materials
出版年:2017
2.
Full-scale load tests of Pearl-Chain arches
作者:
Philip S. Halding
a
;
phsh@byg.dtu.dk
;
Kristian D. Hertz
a
;
khz@byg.dtu.dk
;
Jacob W. Schmidt
a
;
jws@byg.dtu.dk
;
Bryan J. Kennedy
b
;
bryanken@uw.edu
关键词:
Full-scale
;
Pearl-Chain arches
;
Ultimate capacity
;
Arch
bridge
;
Concrete
;
Post-tensioning
;
Structural behavior
;
Plastic hinges
;
Super-Light
Deck
elements
;
Testing to failure
刊名:Engineering Structures
出版年:2017
3.
The Effect of Environment on Timber-
concrete
Composite
Bridge
Deck
作者:
Viktó
;
ria Bajzecerová
;
a
;
viktoria.bajzecerova@tuke.sk" class="auth_mail" title="E-mail the corresponding author
;
Já
;
n Kanó
;
cz
b
关键词:
timber-
concrete
;
bridge
deck
;
effect of environment.
刊名:Procedia Engineering
出版年:2016
4.
Understanding depth-amplitude effects in assessment of GPR data from
concrete
bridge
deck
s
作者:
Kien Dinh
a
;
kien.dinh@rutgers.edu" class="auth_mail" title="E-mail the corresponding author
;
Nenad Gucunski
b
;
gucunski@rci.rutgers.edu" class="auth_mail" title="E-mail the corresponding author
;
Jinyoung Kim
a
;
rutgers.no1@rutgers.edu" class="auth_mail" title="E-mail the corresponding author
;
Trung H. Duong
a
;
trung.duong@rutgers.edu" class="auth_mail" title="E-mail the corresponding author
关键词:
Ground penetrating radar (GPR)
;
Nondestructive evaluation (NDE)
;
Bridge
deck
;
Concrete
;
Inspection
;
Condition assessment
;
Deterioration
刊名:NDT and E International
出版年:2016
5.
Application of ultrasonic surface wave techniques for
concrete
bridge
deck
condition assessment
作者:
Mengxing Li
a
;
mlzg9@mst.edu" class="auth_mail" title="E-mail the corresponding author
;
Neil Anderson
a
;
nanders@mst.edu" class="auth_mail" title="E-mail the corresponding author
;
Lesley Sneed
b
;
sneedlh@mst.edu" class="auth_mail" title="E-mail the corresponding author
;
Norbert Maerz
a
;
norbert@mst.edu" class="auth_mail" title="E-mail the corresponding author
关键词:
Concrete
bridge
deck
;
Hydrodemolition
;
Light detection and ranging
;
Portable seismic property analyzer
;
Ultrasonic surface wave
刊名:Journal of Applied Geophysics
出版年:2016
6.
A super lightweight UHPC-HSS
deck
panel for movable
bridge
s
作者:
Sahar Ghasemi
a
;
Pedram Zohrevand
a
;
Amir Mirmiran
b
;
amirmiran@uttyler.edu" class="auth_mail" title="E-mail the corresponding author
;
Yulin Xiao
c
;
Kevin Mackie
c
关键词:
Concrete
;
Lightweight
bridge
deck
s
;
High-strength steel
;
Movable
bridge
s
;
Ultra high performance
concrete
(UHPC)
刊名:Engineering Structures
出版年:2016
7.
Development of shrinkage limit specification for high performance
concrete
used in
bridge
deck
s
作者:
Tengfei Fu
;
felixftf@gmail.com" class="auth_mail" title="E-mail the corresponding author
;
Tyler Deboodt
;
Jason H. Ideker
关键词:
High performance
concrete
;
Bridge
deck
;
Drying shrinkage
;
Cracking
刊名:Cement and
Concrete
Composites
出版年:2016
8.
Effectiveness of Post-tensioned Prestressed
Concrete
Road
Bridge
Realization in the Light of Research Under Dynamic Loads
作者:
Arkadiusz Mordak
a
;
a.mordak@po.opole.pl" class="auth_mail" title="E-mail the corresponding author
;
Zbigniew Zee Mańko
b
关键词:
road
bridge
;
water plant
;
dynamic load test
;
post-tensioned prestressed
concrete
beam
;
deck
slab
;
dynamic coefficient
;
vibration frequency
;
vibration velocity
刊名:Procedia Engineering
出版年:2016
9.
Pedestrian
Bridge
Over Türr-channel Baja, Hungary: A Unique Arch Bridge Design
作者:
Gá
;
bor Pá
;
l
;
hiros.karoly@specialterv.hu" class="auth_mail" title="E-mail the corresponding author
;
Ká
;
roly Hiros
关键词:
Unique arch
bridge
;
concrete
filled steel tubes
;
calculation
;
technology
;
load test
刊名:Procedia Engineering
出版年:2016
10.
Fatigue Behavior Assessment Method of the Orthotropic Steel
Deck
for a Self-anchored Suspension Railway
Bridge
作者:
Chong Wu
;
Yuan Yuan
;
Xu Jiang
;
jiangxu@tongji.edu.cn" class="auth_mail" title="E-mail the corresponding author
关键词:
Orthotropic steel
deck
;
Railway load
;
Fatigue assessment
;
FEM
;
Self-anchored suspension
bridge
刊名:Procedia Engineering
出版年:2016
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