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Investigation of moisture condition and Autoclam sensitivity on air permeability measurements for both normal concrete and high performance concrete

机译:普通混凝土和高性能混凝土的湿度条件和Autoclam对透气度测量的敏感性研究

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摘要

While on site measurement of air permeability provides a useful approach for assessing the likely long term durability of concrete structures, no existing test method is capable of effectively determining the relative permeability of high performance concrete (HPC). Lack of instrument sensitivity and the influence of concrete moisture are proposed as two key reasons for this phenomenon. With limited systematic research carried out in this area to date, the aim if this study was to investigate the influence of instrument sensitivity and moisture condition on air permeability measurements for both normal concrete and HPC. To achieve a range of moisture conditions, samples were dried initially for between one and 5 weeks and then sealed in polythene sheeting and stored in an oven at 50 ℃ to internally distribute moisture evenly. Moisture distribution was determined throughout using relative humidity probe and electrical resistance measurements. Concrete air permeability was subsequently measured using standardised air permeability (Autoclam) and water penetration (BS EN: 12390-8) tests to assess differences between the HPCs tested in this study. It was found that for both normal and high performance concrete, the influence of moisture on Autoclam air permeability results could be eliminated by pre-drying (50 ± 1 ℃, RH 35%) specimens for 3 weeks. While drying for 5 weeks alone was found not to result in uniform internal moisture distributions, this state was achieved by exposing specimens to a further 3 weeks of sealed pre-conditioning at 50 ± 1 ℃. While the Autoclam test was not able to accurately identify relative HPC quality due to low sensitivity at associated performance levels, an effective preconditioning procedure to obtain reliable air permeability of HPC concretes was identified.
机译:尽管现场测量透气度为评估混凝土结构可能的长期耐久性提供了一种有用的方法,但是没有任何现有的测试方法能够有效确定高性能混凝土(HPC)的相对渗透率。缺乏仪器灵敏度和混凝土水分的影响被认为是造成这种现象的两个主要原因。迄今为止,在这一领域进行的系统研究有限,目的是要研究仪器灵敏度和湿度条件对普通混凝土和高性能混凝土的透气度测量的影响。为了达到一定的湿度条件,首先将样品干燥1至5周,然后将其密封在聚乙烯薄膜中,并保存在50℃的烘箱中,以在内部均匀分配水分。整个湿度分布是通过使用相对湿度探针和电阻测量来确定的。随后,使用标准化的透气度(Autoclam)和水渗透性(BS EN:12390-8)测试来测量混凝土的透气度,以评估此研究中测试的HPC之间的差异。结果发现,对于普通混凝土和高性能混凝土,通过将样品预干燥(50±1℃,RH 35%)3周,可以消除水分对Autoclam透气性结果的影响。虽然仅干燥5周并没有导致均匀的内部水分分布,但这种状态是通过将样品在50±1℃下再进行3周的密封预处理而达到的。尽管由于相关性能水平下的灵敏度低,Autoclam测试无法准确识别相对HPC质量,但已确定了一种有效的预处理程序,以获得可靠的HPC混凝土透气性。

著录项

  • 来源
    《Construction and Building Materials》 |2013年第11期|306-314|共9页
  • 作者单位

    School of Planning, Architecture and Civil Engineering, Queen's University Belfast, UK,College of Material Science and Engineering, Chongqing University, China;

    School of Planning, Architecture and Civil Engineering, Queen's University Belfast, UK;

    School of Planning, Architecture and Civil Engineering, Queen's University Belfast, UK;

    School of Planning, Architecture and Civil Engineering, Queen's University Belfast, UK,Department of Civil, Environmental and Geomatic Engineering, University College London, England, UK;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    In situ air permeability test; High performance concrete; Relative humidity; Resistance; Water penetration test;

    机译:原位透气性测试;高性能混凝土;相对湿度;抵抗性;透水测试;

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