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首页> 外文期刊>International journal of materials and structural integrity >Tailoring the orientation of fibres in high performance fibre reinforced cementitious composites: part 2 -correlation to mechanical properties and design implications
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Tailoring the orientation of fibres in high performance fibre reinforced cementitious composites: part 2 -correlation to mechanical properties and design implications

机译:量身定制高性能纤维增强水泥基复合材料中纤维的取向:第2部分-与机械性能和设计意义的关系

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摘要

Incorporating fibres into a matrix with adapted rheology can lead, thanks to the elimination of vibration and to the rheological stability of the same matrix, to a randomly uniform dispersion of fibres within structural elements. It has also been recently recognised that, through a suitably balanced performance of the fluid mixture, fibres can be effectively aligned along the casting-flow direction. This highlights the need, in promoting high end engineering applications of advanced fibre reinforced cementitious composites, of designing the material for the performance required by the intended structural application. Furthermore, the casting process can be tailored to obtain, e.g., the required, or most suitable, alignment of fibres, e.g., as close as possible with the direction of principal tensile stresses within the element when in service. In part 1 of this paper, the experimental evidence was revision of a flow induced orientation of fibres in highly flowable FRCCs, the mechanisms of orientation of fibres in a yield stress fluid flow and the most recent developments in the field of predictive modelling and non-destructive monitoring of fibre dispersion. This second part of the companion paper will highlight the outcomes of the aforementioned phenomena in terms of structural design of engineering applications.
机译:由于消除了振动并提高了同一基质的流变稳定性,将纤维掺入具有合适流变性的基质中可导致纤维在结构元件中的随机均匀分散。最近还认识到,通过流体混合物的适当平衡的性能,纤维可以沿着流延方向有效地排列。这突出表明,在促进高级纤维增强水泥基复合材料的高端工程应用中,需要设计材料以达到预期结构应用所需的性能。此外,铸造工艺可被调整以获得例如所需的或最合适的纤维的排列,例如在使用时尽可能地与元件内的主要拉伸应力的方向接近。在本文的第1部分中,实验证据是对高流动性FRCC中纤维的流动诱导取向进行了修正,屈服应力流体流动中纤维取向的机制以及预测建模和非预测性领域的最新进展。破坏性监测纤维分散。随附论文的第二部分将在工程应用程序的结构设计方面重点介绍上述现象的结果。

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