Yin Liqiang, Yan Changwang, Liu Shuguang
School of Materials Science and Engineering, Inner Mongolia University of Technology, Hohhot 010051, China.
School of Mining and Technology, Inner Mongolia University of Technology, Hohhot 010051, China.
Materials (Basel). 2018 Sep 14;11(9):1721. doi: 10.3390/ma11091721.
Cement-based materials are usually not exposed to an independent deterioration process but are exposed to a combination of mechanical load and environmental effects. This paper reports the frost resistance durability of strain-hardening cement-based composites (SHCC) under combined flexural loading at different levels and under chloride attack. The loss of mass, dynamic elastic modulus, and microstructure characteristics of SHCC specimens were determined, and the influence of loading level on frost resistance was analyzed. In addition, the effect of freeze⁻thaw action on the flexural performance and diffusion properties of chloride in SHCC under the combined loads was investigated. The results show that the process of degradation was accelerated due to the simultaneous action of flexural loading and freeze⁻thaw cycles in the chloride environment, and SHCC suffered more serious damage at a higher loading level. However, flexural strength decreased by only 13.87% after 300 freeze⁻thaw cycles at load level S = 0.36. The diffusion properties of chloride in SHCC under constant flexural loading were affected by the freezing and thawing cycle. The free chloride concentration increased with the development of freezing and thawing at the same diffusion depth, and a bilinear relationship was found between the chloride diffusion coefficient and the number of freeze⁻thaw cycles.
水泥基材料通常不会经历独立的劣化过程,而是会受到机械荷载和环境作用的综合影响。本文报道了应变硬化水泥基复合材料(SHCC)在不同水平的组合弯曲荷载作用下以及氯化物侵蚀环境下的抗冻耐久性。测定了SHCC试件的质量损失、动态弹性模量和微观结构特征,并分析了荷载水平对抗冻性的影响。此外,还研究了冻融作用对组合荷载作用下SHCC弯曲性能和氯化物扩散性能的影响。结果表明,在氯化物环境中,由于弯曲荷载和冻融循环的共同作用,劣化过程加速,且在较高荷载水平下SHCC遭受的损伤更严重。然而,在荷载水平S = 0.36下经过300次冻融循环后,弯曲强度仅下降了13.87%。在恒定弯曲荷载作用下,SHCC中氯化物的扩散性能受冻融循环的影响。在相同扩散深度下,自由氯化物浓度随冻融作用的发展而增加,且氯化物扩散系数与冻融循环次数之间存在双线性关系。