Characterization of surface hardness and microstructure of high performance concrete

被引:0
作者
Yonggan Yang
Yunsheng Zhang
Wei She
机构
[1] Southeast University,School of Materials Science and Engineering
来源
Journal of Wuhan University of Technology-Mater. Sci. Ed. | 2018年 / 33卷
关键词
high performance concrete; rebound test; parameter analysis; strength curve;
D O I
暂无
中图分类号
学科分类号
摘要
The relationship between compressive strength obtained by universal testing machine and rebound value obtained by the hammer of high performance concrete was systematically investigated at the macro level. And a model of high performance concrete strength curve was established from them. At the micro level, the microstructure, hydration products and pore structure of concrete surface were analyzed by scanning electron microscopy (SEM), comprehensive thermal analysis (TG-DSC) and mercury intrusion porosimetry (MIP), respectively. The effect of carbonation on surface strength was also investigated. The results showed that the concrete surface hardness layer grew rapidly at early stage and then stabilized at last with ongoing curing age; the rebound value and compressive strength of concrete with slag were higher than those of concrete with the same content of fly ash. In addition, the strength curve obtained by the least square method can satisfy the local standard requirements with an average relative error of 8.9% and a relative standard deviation of 11.3%. When the carbonation depth was 6 mm, the compressive strength calculated by national uniform strength curve was 25 PMa higher than that by high performance concrete.
引用
收藏
页码:124 / 132
页数:8
相关论文
共 40 条
  • [1] McCann DM(2001)Review of NDT Methods in the Assessment of Concrete and Masonry Structures[J] NDT & E International 34 71-84
  • [2] Forde MC(2011)Rebound Surface Hardness of Concrete: Introduction of an Empirical Constitutive Model[J] Construction and Building Materials 25 2480-2487
  • [3] Katalin S(2014)Extensive Statistical Analysis of the Variability of Concrete Rebound Hardness Based on a Large Database of 60 years Experience[J] Construction and Building Materials 53 333-347
  • [4] Adorján B(2009)The Effect of Sample Size on Schmidt Rebound Hardness Value of Rocks[J] International Journal of Rock Mechanics & Mining Sciences 46 725-730
  • [5] István Zsigovics(2004)A Method for Normalization of Schmidt Hammer Rebound Values[J] International Journal of Rock Mechanics & Mining Sciences 41 1211-1214
  • [6] Katalin S(2016)The Foundations of the Environmental Rebound Effect and Its Contribution Towards a General Framework[J] Ecological Economics 125 60-69
  • [7] Adorján B(2012)Nondestructive Evaluation of Concrete Strength: An Historical Review and a New Perspective by Combining NDT Methods[J] Construction and Building Materials 33 139-163
  • [8] István Zsigovics(2015)The Mix Design for Self-compacting High Performance Concrete Containing Various Mineral Admixtures[J] Materials and Design 72 51-62
  • [9] Demirhag S(2011)Compressive Strength and Permeability of High-performance Concrete[J] J. of Wuhan University of Technology-Materials Science Edition 1 137-141
  • [10] Yavuz H(2007)Porosity and Water Permeability Study of Supercritically Carbonated Cement Pastes Involving Mineral Addition[J] Industrial & Engineering Chemistry Research 46 2488-2496