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首页> 外文期刊>Magazine of Concrete Research >Potential use of small-diameter concrete cores for in situ compressive strength assessment
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Potential use of small-diameter concrete cores for in situ compressive strength assessment

机译:潜在利用小直径混凝土芯,用于原位压缩强度评估

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摘要

This paper examines the potential use of small-diameter cores (D 100 mm), for estimating the in situ cube strength of concrete. The assessment is based on systematic analysis and evaluation of data sourced from published work since 1961, by 243 researchers working at 128 institutions in 32 countries, that yielded a matrix of 32 953 data points. The effects of core diameter (D), length to diameter ratio (L/D) and core diameter to maximum aggregate size (A) ratio (D/A) formed the main basis of the analysis. It is shown that there appears to be no technical justification for having requirements that limit D to 100 mm and/or D/A = 3. Conversion factors are proposed for estimating, from the test results of small cores, the strength of cores having D = 100 mm and L/D between 1.0 and 1.2, which is currently the required size of cores to estimate the in situ compressive cube strength of concrete in the UK. It is shown that, in complying with the test data variability requirement, damage to structural elements through the coring can be reduced by adopting the use of small-diameter cores, down to 25 mm, where the damage is 10% that of 100 mm dia. cores.
机译:本文研究了小直径芯(D <100 mm)的潜在使用,用于估计混凝土的原位立方体强度。该评估基于自1961年以来,在1961年以来,从1961年出版的工作中的数据进行了系统分析和评估,在32个国家工作的243名研究人员,产生了32 953个数据点的矩阵。芯直径(D),长度与直径比(L / D)和芯直径的影响和最大骨料尺寸(A)比(D / A)形成了分析的主要基础。结果表明,对于将D到100 mm和/或D / A> = 3.提出了用于估计的转换因子,从小核心的测试结果,似乎没有技术理由,从而具有核心的力量d = 100 mm和l / d之间的1.0和1.2,这是目前所需的核心尺寸,以估计英国混凝土的原位压缩立方体强度。结果表明,在符合测试数据可变性要求的情况下,通过采用小直径芯,下降到25毫米,可以减少通过芯片的结构元件的损坏,其中损坏是100毫米直径的10% 。核心。

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