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Processing of high-performance fiber-reinforced cement-based composites

机译:高性能纤维增强水泥基复合材料的加工

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摘要

High-performance fiber-reinforced cement-based composites (HPFRCC) are characterized by their high elastic limit and strain hardening and a progressive multiple cracking type of response to mechanical loading. The parameters that influence the performance of such composites include: fiber type(s). matrix properties and processing. Processing can substantially influence fiber dispersion, quality of performance and cost of production. In spite of its importance, relatively little is known about the relationship between processing and composite performance. This paper summarizes the results of two studies in which the influence of processing on the performance of Hatschek- and extrusion-produced HPFRCC was investigated. The effect of applying external pressure to freshly-formed, Hatschek-produced fiber-reinforced cement board was systematically evaluated. The results indicate that pressure can be used to enhance freeze-thaw durability. In addition, a rheological study was successfully carried out on extruded composites to reduce cost by altering the matrix composition.
机译:高性能纤维增强水泥基复合材料(HPFRCC)的特征在于其高弹性极限和应变硬化,以及对机械载荷的渐进多重开裂类型。影响此类复合材料性能的参数包括:纤维类型。基质性质和加工。加工会严重影响纤维的色散,性能质量和生产成本。尽管很重要,但对加工与复合材料性能之间的关系知之甚少。本文总结了两项研究的结果,其中研究了加工对Hatschek和挤出生产的HPFRCC性能的影响。系统地评估了向刚成型的,由哈切克生产的纤维增强水泥板施加外部压力的效果。结果表明压力可用于增强冻融耐久性。另外,成功地对挤出复合材料进行了流变学研究,以通过改变基质成分来降低成本。

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