Research Progress of High Performance ConcreteII: Durability and Life Prediction Model

被引:0
|
作者
Dong F. [1 ]
Zheng S. [1 ]
Song M. [1 ]
Zhang Y. [1 ]
Zheng J. [1 ]
Qin Q. [1 ,2 ]
机构
[1] School of Civil Engineering, Xi'an University of Architecture and Technology, Xi'an
[2] Civil and Architecture Engineering, Xi'an University of Science and Technology, Xi'an
来源
Cailiao Daobao/Materials Review | 2018年 / 32卷 / 02期
关键词
Damage model; Durability; High performance concrete; Service life prediction design;
D O I
10.11896/j.issn.1005-023X.2018.03.021
中图分类号
学科分类号
摘要
This paper reviewed the progress of research on durability of high performance concrete, including anti-chloride ion permeability, freeze-thaw resistance, carbonation resistance, salt corrosion resistance, and durability under the coupling of multiple factors of high performance concrete, discussed the damage model and life prediction model of high performance concrete, and analyzed the existing problems of research on durability of high performance concrete. Results demonstrated that the durability of high performance concrete is influenced by the type and amount of material, the experimental conditions, et al. The appropriate amount of mineral admixtures and additives can reduce the number of harmful holes in the concrete, increase the density and improve the durability of concrete. Besides, the study on durability, damage model and life prediction model of concrete under multi-factor coupling effect, is more close to the actual circumstances of the structure, and this will become a hot spot of durability of high performance concrete. © 2018, Materials Review Magazine. All right reserved.
引用
收藏
页码:496 / 502and509
相关论文
共 43 条
  • [11] Wang C., Zhang Y., Effect of mineral admixture on durability of high performance self-compacting concrete for marine structure, Concrete, 1, (2014)
  • [12] Bokyeong L., Gyuyong K., Jeongsoo N., Et al., Compressive strength, resistance to chlorideion penetration and freezing/thawing of slag-replaced concrete and cementless slag concrete containing desulfurization slag activator, Construction & Building Materials, 128, (2016)
  • [13] Harbec D., Zidol A., Tagnit-Hamou A., Et al., Mechanical and durabi-lity properties of high performance glass fume concrete and mortars, Construction and Building Materials, 134, (2017)
  • [14] Yao Z., Wu B., Mechanical properties and fast freezing-thawing characteristics of double admixture high performance concrete, Concrete, 9, (2015)
  • [15] Cao H., Yuan F., Bao M., Et al., Research on frost resistance performance of high-performance concrele mixed wiIh fly ash in Urumqi area, Coal Ash, 28, 4, (2016)
  • [16] Micah H.W., Freyne Seamus F., Russell Bruce W., Examining the frost resistance of high performance concrete, Construction & Building Materials, 23, 2, (2009)
  • [17] Beata L.-P., The type of air-entraining and viscosity modifying admixtures and porosity and frost durability of high performance self-compacting concrete, Construction & Building Materials, 40, 3, (2013)
  • [18] Eva V., Martin K., Pavla R., Et al., Pro-perties of high performance concrete containing fine-ground ceramics as supplementary cementitious material, Cement & Concrete Composites, 34, 1, (2012)
  • [19] Fu Y., Cai L., Cao D., Et al., Freeze-thaw durability and damage mechanics model of high performance alkali-slag concrete, Engineering Machanics, 3, (2012)
  • [20] Zhang D., Xu D., Cheng X., Carbonation resistance of sulphoaluminate cement-based high performance concrete, Journal of Wuhan University of Technology-Materials Science Edition, 24, 4, (2009)