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Non Destructive Monitoring of Fiber Dispersion and Flow-Induced Orientation in Self-Compacting SFRC: A Method Based on Magnetic Properties

机译:纤维分散体的非破坏性监测和自压制SFRC中的流动引起的取向:一种基于磁性的方法

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Steel fiber reinforced concrete (SFRC) is a composite material which is becoming more and more widely employed in building construction. The mechanical behaviour of the material and the performance of structural elements may significantly depend on the fiber dispersion and orientation with respect to the stress pattern. Non-destructive monitoring of fiber dispersion related issues hence becomes of the foremost importance in order to reliably anticipate the structural performance of elements made with fiber reinforced cementitious composites, as well as for quality control during manufacturing. In this paper a new method for the detection of fiber density and orientation is presented, which is based on the employment of a probe sensitive to the magnetic properties of the steel fibers. The presence and the relative position of steel fibers modify the flux linked by the winding of the probe thus resulting in an impedance variation. The local average concentration and orientation of the fibers can be thus assessed by measuring the variation of the probe inductance. The performance of the method has been analyzed with reference to a self-consolidating high performance fiber reinforced cementitious composite slab. Besides its good sensitivity, the method is also characterized by ease of use, since it just requires to lean the probe on the surface of the specimen, without any particular care about the coupling. This guarantees a high degree of repeatability and low uncertainty in the measurements, even, e.g. on vertical elements or slabs accessible from the bottom.
机译:钢纤维钢筋混凝土(SFRC)是一种复合材料,在建筑施工中变得越来越广泛。材料的力学行为和结构元件的性能可以显着取决于光纤分散和相对于应力图案的取向。因此,无损监测光纤分散问题因此成为最重要的重要性,以便可靠地预测用纤维增强水泥复合材料制成的元素的结构性能,以及在制造过程中的质量控制。本文提出了一种检测光纤密度和取向的新方法,基于对钢纤维的磁性磁性敏感的探针的使用。钢纤维的存在和相对位置改变通过探针的绕组连接的磁通量,从而导致阻抗变化。因此,可以通过测量探针电感的变化来评估纤维的局部平均浓度和取向。已经参考了自合并高性能纤维增强水泥化合物板分析了该方法的性能。除了其良好的敏感性外,该方法还具有易于使用的特征,因为它只是需要在样本表面上倾斜探针,而不特别地关心偶联。这可以保证测量中具有高度的可重复性和低的不确定性,即使是,例如,在垂直元素或从底部可访问的板上。

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