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ESTIMATING THE PROPERTIES OF A FINE AGGREGATE FIBRE REINFORCED CEMENTITIOUS COMPOSITE USING NON-DESTRUCTIVE METHODS

机译:使用非破坏性方法估算细聚集纤维增强胶质复合材料的性质

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摘要

The paper proposes a method of estimating the properties of a fine aggregate steel fibre reinforced cementitious composite using non-destructive methods. Two methods were selected to identify the properties of such a composite. One of them uses electromagnetic induction in order to estimate the content of steel fibres dispersed in the composite space, while the other is based on the determination of ultrasonic wave velocity propagating through the composite. Having defined correlations between the properties of the fibre reinforced composite and non-destructive testing parameters, regression equations were determined. Seven relationships between properties of fibre reinforced composite as the dependent variables and two independent variables, i.e.: amperage and ultrasonic wave velocity, were established. Knowing the amperage and the ultrasonic wave velocity, the basic properties of the fibre reinforced composite can be determined from the regression equations in a non-destructive manner. In order to verify the equations, three plates with different amounts of steel fibres were made in field under natural conditions, and next subjected to non-destructive tests. The tests showed good compatibility between the experimental results and those of calculations, which indicates the correctness of the formulated equations.
机译:本文提出了一种使用非破坏方法估算细聚集钢纤维增强水泥复合材料的性能的方法。选择两种方法以鉴定这种复合材料的性质。其中一个使用电磁感应,以估计分散在复合空间中的钢纤维的含量,而另一个基于通过复合材料传播的超声波速度的确定。确定了光纤增强复合材料和非破坏性测试参数的性质之间的相关性,确定了回归方程。建立了纤维增强复合物性能与两个独立变量的七种关系,即Cherate和超声波速度。了解热量和超声波速度,纤维增强复合材料的基本性质可以以非破坏性方式从回归方程确定。为了验证等式,在天然条件下,在田间制造具有不同量的钢纤维的三块板,并进行未破坏性测试。该测试表明实验结果与计算的良好相容性,这表明配制方程的正确性。

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