Experimental investigation on UHPC shrinkage of full-scale steel-UHPC composite bridge deck

Author:

Li Chuanxi,Shi Yu,Zhou Jiale,Fang Changle,He Jun,He Longfei

Funder

National Natural Science Foundation of China

Publisher

Elsevier BV

Subject

Computer Graphics and Computer-Aided Design,Computer Science Applications,Materials Science (miscellaneous),Building and Construction,Civil and Structural Engineering,Architecture

Reference34 articles.

1. Ultra High Performance Fibre-Reinforced Concretes Recommendations [S];AFGC-Setra,2013

2. Standard Test Methods for Fiber Reinforced concrete[S],2009

3. Creep and Shrinkage of High Performance Concrete, the Adam Neville Symposium: Creep and Shrinkage Structural Design Effects.SP-194;Dilger,2000

4. Enhancing cracking resistance of ultra-high-performance concrete slabs using steel fibers;Lee;Mag. Concr. Res.,2015

5. Effectiveness of shrinkage-reducing admixture in reducing autogenous shrinkage stress of ultra-high-performance fiber-reinforced concrete;Banthia;Cement Concr. Compos.,2015

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