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Chloride Permeability of Damaged High-Performance Fiber-Reinforced Cement Composite by Repeated Compressive Loads

机译:反复压缩载荷作用对受损高性能纤维增强水泥复合材料的氯离子渗透性

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摘要

The development of cracking in concrete structures leads to significant permeability and to durability problems as a result. Approaches to controlling crack development and crack width in concrete structures have been widely debated. Recently, it was recognized that a high-performance fiber-reinforced cement composite (HPFRCC) provides a possible solution to this inherent problem of cracking by smearing one or several dominant cracks into many distributed microcracks under tensile loading conditions. However, the chloride permeability of HPFRCC under compressive loading conditions is not yet fully understood. Therefore, the goal of the present study is to explore the chloride diffusion characteristics of HPFRCC damaged by compressive loads. The chloride diffusivity of HPFRCC is measured after being subjected to various repeated loads. The results show that the residual axial strain, lateral strain and specific crack area of HPFRCC specimens increase with an increase in the damage induced by repeated loads. However, the chloride diffusion coefficient increases only up to 1.5-times, whereas the specific crack area increases up to 3-times with an increase in damage. Although HPFRCC shows smeared distributed cracks in tensile loads, a significant reduction in the diffusion coefficient of HPFRCC is not obtained compared to plain concrete when the cyclic compressive load is applied below 85% of the strength.
机译:混凝土结构中裂纹的发展导致显着的渗透性并因此导致耐久性问题。控制混凝土结构裂缝发展和裂缝宽度的方法已引起广泛争议。最近,人们认识到,高性能纤维增强水泥复合材料(HPFRCC)通过在拉伸载荷条件下将一个或几个主要裂纹涂抹到许多分布的微裂纹中,可以为这种固有的裂纹问题提供可能的解决方案。但是,尚未完全了解HPFRCC在压缩载荷条件下的氯化物渗透性。因此,本研究的目的是探索受压缩载荷破坏的HPFRCC的氯离子扩散特性。 HPFRCC的氯离子扩散度是在经受各种重复载荷后测量的。结果表明,HPFRCC试件的残余轴向应变,横向应变和比裂纹面积随重复荷载引起的损伤的增加而增加。但是,氯化物扩散系数仅增加到1.5倍,而比裂纹面积增加到3倍,而损伤增加。尽管HPFRCC在拉伸载荷中显示出涂抹的分布裂纹,但是当施加循环压缩载荷低于强度的85%时,与普通混凝土相比,HPFRCC的扩散系数并未显着降低。

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