Journal of Engineering

High Performance Concrete Materials with Applications in Building and Civil Engineering


Publishing date
10 Feb 2017
Status
Published
Submission deadline
23 Sep 2016

Lead Editor

1Zhengzhou University, Zhengzhou, China

2Beijing Jiaotong University, Beijing, China

3SINTEF Building and Infrastructure, Trondheim, Norway

4Iowa State University, Ames, USA


High Performance Concrete Materials with Applications in Building and Civil Engineering

Description

High performance concrete materials have grown tremendously in recent years. Researchers are targeting developments of high performance concrete and also working on the mechanism research for special properties, preparation technology, testing methods, modeling, and applications of various high performance building materials. The development of high performance concrete materials will provide better materials for specific projects in civil engineering. We invite authors to submit original research and review articles that investigate the development of high performance concrete materials, especially for the cementitious composites.

Potential topics include, but are not limited to:

  • Preparation technology and basic properties
  • Durability and sustainability
  • Properties and modeling
  • Cementitious composites building materials
  • High performance and ultrahigh performance concrete
  • High ductility and fibre-reinforced materials
  • Self-sensing/self-healing concrete
  • Admixtures for high performance building materials
  • Functional coatings for buildings
  • Testing methods and standardization in civil engineering
  • Fresh properties and constructability
  • Shrinkage and creep
  • Structural performance and modeling
  • Field applications

Articles

  • Special Issue
  • - Volume 2017
  • - Article ID 8161026
  • - Editorial

High Performance Concrete Materials with Applications in Building and Civil Engineering

Peng Zhang | Song Han | ... | Xu-Hao Wang
  • Special Issue
  • - Volume 2017
  • - Article ID 7329540
  • - Research Article

Model of the Mechanical Behavior of Cementitious Matrices Reinforced with Nanomaterials

Victor D. Balopoulos | Nikolaos Archontas | Stavroula J. Pantazopoulou
  • Special Issue
  • - Volume 2016
  • - Article ID 2857270
  • - Research Article

Flexural Behavior of High-Volume Steel Fiber Cementitious Composite Externally Reinforced with Basalt FRP Sheet

Seungwon Kim | Cheolwoo Park
  • Special Issue
  • - Volume 2016
  • - Article ID 6819190
  • - Research Article

Bending and Shear Experimental Tests and Numerical Analysis of Composite Slabs Made Up of Lightweight Concrete

F. P. Alvarez Rabanal | J. Guerrero-Muñoz | ... | J. E. Martinez-Martinez
  • Special Issue
  • - Volume 2016
  • - Article ID 6547391
  • - Research Article

In Situ Determination of the Transport Properties of Near-Surface Concrete Using AC Impedance Spectroscopy Techniques

Lipeng Wu | Peng Dai | Yong Li
  • Special Issue
  • - Volume 2016
  • - Article ID 7615385
  • - Research Article

The Hysteresis Performance and Restoring Force Model for Corroded Reinforced Concrete Frame Columns

Guifeng Zhao | Meng Zhang | ... | Dawang Li
  • Special Issue
  • - Volume 2016
  • - Article ID 2630186
  • - Research Article

Determination of the Transport Properties of Structural Concrete Using AC Impedance Spectroscopy Techniques

Lipeng Wu | Peng Dai | Yong Li
  • Special Issue
  • - Volume 2016
  • - Article ID 1670615
  • - Research Article

The Mechanical Properties of the Concrete Using Metakaolin Additive and Polymer Admixture

Adel Al Menhosh | Yan Wang | Yu Wang
  • Special Issue
  • - Volume 2016
  • - Article ID 1894027
  • - Research Article

An Improved Micromechanical Framework for Saturated Concrete Repaired by the Electrochemical Deposition Method considering the Imperfect Bonding

Qing Chen | Zhengwu Jiang | ... | Yaqiong Wang
Journal of Engineering
 Journal metrics
See full report
Acceptance rate10%
Submission to final decision100 days
Acceptance to publication17 days
CiteScore3.600
Journal Citation Indicator0.430
Impact Factor2.7
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