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Connecting Non-destructive Fiber Dispersion Measurements with Tensile HPFRCC Behavior

机译:用拉伸HPFRCC行为连接非破坏性光纤分散测量

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Successful application with advanced fiber reinforced cement based materials relies on reliable design prescriptions and design-oriented test methodologies for the identification of relevant material properties, together with consistent and effective quality control procedures. The "randomly uniform" dispersion of fibers within a structural element is a crucial issue to be tackled, which, if not achieved, may lead to the activation of unanticipated failure mechanisms, thus lowering the load bearing capacity and jeopardizing the structural performance. It is henceforth evident that non-destructive techniques for fiber dispersion monitoring need to be developed and calibrated, as it has been going on for at least the last lustrum, and their outcomes to be effectively correlated to the mechanical performance of the material. In this paper a non-destructive method based on the magnetic properties of the composite has been applied to monitor the fiber dispersion and orientation in HPFRCC slabs. The results have been correlated to the tensile behavior, measured according to the newly conceived "Double Edge Wedge Splitting" technique. The work herein presented stands as a step towards the assessment of non-destructive methods for fiber dispersion monitoring and their inclusion into a sound quality control procedure in a design oriented perspective.
机译:使用先进的纤维基于水泥的材料的成功应用依赖于可靠的设计处方和设计为导向的测试方法,用于识别相关材料特性,以及一致有效的质量控制程序。纤维在结构元件内的“随机均匀”分散是要解决的至关重要的问题,如果没有实现,可能导致激活意外的失效机制,从而降低承载能力和危险结构性能。因此,目的是,需要开发和校准用于光纤分散监测的非破坏性技术,因为它至少是最后的林业,并且它们的结果与材料的机械性能有效相关。本文已经应用了基于复合材料磁性的非破坏性方法,以监测HPFRCC板中的光纤分散和取向。结果与拉伸行为相关,根据新构思的“双边缘楔分裂”技术测量。本文的作品提出了朝着评估纤维分散监测的非破坏性方法的阶段,并在设计导向的观点中纳入音质控制过程。

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