首页> 外文会议>International Conference on Concrete under Severe Conditions - Environment and Loading >Evaluation of Water Permeability in Fibre Reinforced Hydraulic Lime Mortar intended for Conservation
【24h】

Evaluation of Water Permeability in Fibre Reinforced Hydraulic Lime Mortar intended for Conservation

机译:纤维增强液压石灰砂浆渗透性评价

获取原文

摘要

Much of the existing water infrastructure across the world was constructed using masonry in the last 200 years and many of these structures were built with pre-Portland cement binders. Although these mortars exhibit good workability and high water retention in the plastic state, the water tightness deteriorates over the years resulting in a pressing need for suitable repair materials. The addition of polypropylene micorfibre in cement-based systems was found to be effective in reducing water permeability. But the effect of polymeric fibres on the permeability coefficient of hydraulic lime mortar (HLM) is unknown. Therefore, this paper focuses on measuring water permeability in fibre reinforced HLM. Besides, this study examined the application of nano-lime onto the aforementioned mortars and its effect on their water permeability. Accordingly, a permeability cell was setup to monitor the onset of the steady state condition in fluid flow. Companion data was generated for the mechanical performance of these mortars. The results show that in hydraulic lime mortar, there is likely an optimal fibre dosage in order to reduce the permeability coefficient. Unlike with Portland cement mortar, this dosage is significantly lower. As well, applying nano-lime was most beneficial in limiting water permeability in the natural hydraulic lime mortars.
机译:在过去的200年里,世界各地的现有水基础设施的大部分都是在过去的200年里建造的,并且许多这些结构都是用Portland水泥粘合剂建造的。虽然这些砂浆在塑料状态下表现出良好的可加工性和高保留水,但多年来的水密封性会使迫切需要加压适用于合适的修复材料。发现在基于水泥的系统中添加聚丙烯MICORFIBRE在降低水渗透性方面有效。但聚合物纤维对液压灰砂浆(HLM)渗透系数的影响是未知的。因此,本文侧重于测量纤维增强HLM中的水渗透性。此外,该研究检查了纳米石灰在上述砂浆上的应用及其对水渗透性的影响。因此,设置渗透性细胞以监测流体流动中稳态条件的开始。为这些砂浆的机械性能产生了伴侣数据。结果表明,在液压石灰砂浆中,有可能是最佳的纤维剂量,以降低渗透系数。与波特兰水泥砂浆不同,这种剂量显着降低。同样,纳米石灰在自然液压石灰砂浆中限制水渗透性最有利。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号