The Distortion Effect of Thin-walled Wide Hollow PC Beam Under
Bridge Deck Pavement
Houxuan Wu
1
, Juanyan Li
2
and Hanbin Yi
3
1
Jiangxi Ganyue Expressway CO.,LTD,, Nanchang, Jiangxi, China
2
Jiangxi transportation vocational technical institute, Nanchang,Jiangxi, China
3
Jiangxi transportation institute, Nanchang, Jiangxi, China
Keywords: PC wide open hollow plate, distortion effect, elastic foundation beam analogy method, finite element
method, bridge deck pavement.
Abstract: The distortion stress of thin wall hollow slab is solved by using elastic foundation beam analogy method and
finite element method. The influence of the structure distortion effect on 10cm thick concrete pavement was
considered. The results show that the numerical solution and the finite element method are consistent, and
the finite element method is simpler and more efficient. The transverse tensile stress of calculation point 1
and 2 decreased by 13.2% and 13.6% respectively when considering the effect of deck pavement. The
distortion effect causes a large transverse tensile stress on the bottom plate.
1 INTRODUCTION
Thin-walled PC wide open hollow plate has been
widely used in highway Bridges in the 1990s due to
its characteristics such as large hollowing-out rate,
thick wall thickness, structural economy and light
weight. Due to the thin wall thickness of hollow
wall, the effect of transverse tensile stress caused by
the distortion cannot be ignored. At present, the
scholars all over the world have focused on the study
of distortion effect mainly in the steel box girder.
The theoretical calculation methods mainly include
the method of substitute the beam, the Kupfer
method and the generalized coordinate method. In
this paper, an example of thin-walled PC wide slabs
is given based on an expressway bridge, the elastic
foundation beam analogy method and the finite
element method were used respectively to calculate
the distortion of the hollow slab stress, the torsional
effect and the influence of Poisson effect on
structure horizontal stress is analysed. In addition,
the influence of concrete pavement on the stress of
structural distortion is considered.
The superstructure of bridge is constructed of a
20-meter PC wide open hollow slab and a total
length of 9.1 km. There are 8 hollow plates in each
transverse section, with height of 0.9 m, width 1.55
m, bottom and top plate 10cm thick, and the web
thickness is 11cm, as shown in Fig.1. Each board
has 15 ASTMA416-90a270 (0.6 inch diameter) steel
hinge lines.
The lateral layout of the deck is: 0.5m guardrail
+11.5m carriageway +0.5m guardrail +2m central
divider with +0.5m guardrail +11.5m carriageway
+0.5m guardrail (total 27m). Design load of the
bridge: car - super 20 level; Trailer - 120; the crowd
- 3.5 KN/m
2
.
7.5 7.5
21.5 21.55×21.4
150
155
90
5 17.5 2×22.5 22.5
14×10
Figure 1: the transverse section of thin wall hollow slab
(unit: cm)