Based on strengthening a damaged bridge deck in the field, this paper conducted flexural experiments on a scaled damaged bridge deck strengthened by reinforced ultrahigh performance concrete (UHPC)layer with high temperature steam and normal temperature curing; this paper investigates cracking capacity, ultimate capacity, deformation features and failure mode of RC-UHPC composites under positive bending moment and negative bending moment, respectively. Experimental results indicate that cracking and ultimate capacity of composites increased by about 2.5 and 2 times respectively with UHPC located at tension face comparing with intact RC slab; while for UHPC at compression face, no change in cracking capacity was observed and ultimate capacit...
To investigate the normal section strength and cracking bending moment of normal concrete–ultra-high...
With the occurrence of higher and more frequent axle loads on roads, in particular bridge deck slabs...
The cracking of concrete in the negative moment region for a composite beam subjected to a negative ...
Steel–concrete composite continuous bridges can take full advantage of concrete and steel, but in re...
This paper investigated the flexural behavior of large-scale damaged reinforced concrete (RC) bridge...
The use of ultra-high performance concrete (UHPC) to strength existing reinforced concrete (RC) stru...
For the Honghe Bridge project located in Yunnan Province, Southwest China, a steel/ultrahigh-perform...
The strengthening method of bridge deck slabs by means of an Ultra High Performance Fiber Reinforced...
The concrete in tension zone of traditional reinforced concrete bridge deck is liable to crack under...
Reinforced/Prestressed concrete bridges are subjected to environmental effects that cause premature ...
There is currently a need to develop lightweight bridge deck systems with solid riding surfaces to r...
An original concept is presented for the durable rehabilitation of concrete bridge deck slabs. The m...
Using high strength wire (HSW) as a longitudinal reinforcement in UHPC can make full use of the outs...
This paper presents an experimental study on the flexural behavior of an innovative CA-UHPC (ultrahi...
Over the past few decades, premature deterioration of reinforced concrete structures exposed to seve...
To investigate the normal section strength and cracking bending moment of normal concrete–ultra-high...
With the occurrence of higher and more frequent axle loads on roads, in particular bridge deck slabs...
The cracking of concrete in the negative moment region for a composite beam subjected to a negative ...
Steel–concrete composite continuous bridges can take full advantage of concrete and steel, but in re...
This paper investigated the flexural behavior of large-scale damaged reinforced concrete (RC) bridge...
The use of ultra-high performance concrete (UHPC) to strength existing reinforced concrete (RC) stru...
For the Honghe Bridge project located in Yunnan Province, Southwest China, a steel/ultrahigh-perform...
The strengthening method of bridge deck slabs by means of an Ultra High Performance Fiber Reinforced...
The concrete in tension zone of traditional reinforced concrete bridge deck is liable to crack under...
Reinforced/Prestressed concrete bridges are subjected to environmental effects that cause premature ...
There is currently a need to develop lightweight bridge deck systems with solid riding surfaces to r...
An original concept is presented for the durable rehabilitation of concrete bridge deck slabs. The m...
Using high strength wire (HSW) as a longitudinal reinforcement in UHPC can make full use of the outs...
This paper presents an experimental study on the flexural behavior of an innovative CA-UHPC (ultrahi...
Over the past few decades, premature deterioration of reinforced concrete structures exposed to seve...
To investigate the normal section strength and cracking bending moment of normal concrete–ultra-high...
With the occurrence of higher and more frequent axle loads on roads, in particular bridge deck slabs...
The cracking of concrete in the negative moment region for a composite beam subjected to a negative ...