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Using Acoustic Emission to Quantify Damage in High-Performance Fiber-Reinforced Cement Composites under Cyclically Compressive Loading

机译:在循环压缩负载下使用声学发射来量化高性能纤维增强水泥复合材料的损伤

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High performance fiber-reinforced cement composites (HPFRCCs) show multiple cracks and a limited damage tolerance capability due to the debonding of the fibers of the cement matrix. For practical applications, it is necessary to investigate the fractural behavior of HPFRCCs to understand the mechanism of the microbehavior of a cement matrix containing reinforcing fibers. We have investigated the acoustic emission (AE) signals in HPFRCCs under monotonic and cyclic uniaxial compressive loads. Four types of specimen were tested. The experimental parameters studied were: the type of fiber (polyethylene or polyvinyl alcohol), the hybrid type (with steel cord), and the loading pattern. The data shows that the progress of the damage in HPFRCCs in the compressive mode is characteristic of the type of hybrid fiber and its volume fraction. From the AE data, the second and third compressive load cycles resulted in a successive decrease in the amplitude compared to the first compressive load cycle. In addition, an AE Kaiser effect was observed in HPFRCCs specimens up to 80% of their ultimate strength. These observations suggest that the AE Kaiser effect has potential for use as a new tool to monitor the loading history of HPFRCCs.
机译:高效纤维增强水泥复合材料(HPFRCC)由于水泥基质的纤维的剥离而显示多种裂缝和有限的损坏容差能力。对于实际应用,有必要研究HPFRCCS的含量含有增强纤维的水泥基质微生物的机理的疏散性能。我们已经在单调和循环单轴压缩载荷下调查了HPFRCC中的声发射(AE)信号。测试了四种类型的样本。研究的实验参数是:纤维(聚乙烯或聚乙烯醇),杂化型(用钢丝帘线)和装载图案。数据表明,压缩模式中HPFRCCS损伤的进展是混合纤维类型及其体积分数的特征。根据AE数据,与第一压缩负载循环相比,第二和第三压缩载荷循环导致幅度的连续降低。此外,在HPFRCC标本中观察到AE Kaiser效应高达其最终强度的80%。这些观察结果表明,AE Kaiser效应具有用作监控HPFRCC的装载历史的新工具。

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