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首页> 外文期刊>Journal of materials in civil engineering >Influence of Fiber Content on Acoustic Emission Characteristics Related to Steel Fiber-Reinforced Concrete Subjected to Unconfined Uniaxial Compression
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Influence of Fiber Content on Acoustic Emission Characteristics Related to Steel Fiber-Reinforced Concrete Subjected to Unconfined Uniaxial Compression

机译:纤维含量对钢纤维增强混凝土有关的声发射特性的影响,对非整齐的单轴压缩

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摘要

This article reports the experimental study of the influence of the fiber volume content in steel fiber-reinforced concrete (SFRC) on the acoustic emission (AE) characteristics. Plain concrete and SFRC specimens with various steel fiber contents were tested under unconfined uniaxial compression in the laboratory. Both AE testing and ultrasonic pulse velocity (UPV) methods were used to study the fracture process in the specimens. During the fracture process, the generated AE and axial compressive strain were recorded. The differences in AE characteristics of plain concrete and SFRC specimens were discussed. An absence of a considerable amount of AE for a certain period was observed (silent period of AE) near the peak load for SFRC specimens. The AE-based b-value suddenly decreased near the peak load during the fracture process in plain concrete. However, in the case of SFRC specimens, a sudden decrease near the peak load was not observed, and the b-value decreased gradually until failure, at which point it attained its minimum value. More AE related to shear cracking was observed in the case of SFRC specimens. This was due to interlocking between steel fibers, cement matrix, and coarse aggregates. AE testing is useful for studying the material characterization of SFRC, and is beneficial for assessing damage in structures constructed with SFRC.
机译:本文介绍了对钢纤维增强混凝土(SFRC)纤维体积含量对声发射(AE)特性的影响的实验研究。在实验室的无限单轴压缩下测试具有各种钢纤维内容的普通混凝土和SFRC样本。 AE测试和超声波脉冲速度(UPV)方法均用于研究样本中的断裂过程。在断裂过程中,记录产生的AE和轴向压缩菌株。讨论了普通混凝土和SFRC标本的AE特性的差异。在SFRC样本的峰值载荷附近观察到一定时期的相当量的Ae的不存在一定的Ae。基于AE的B值突然在普通混凝土中的断裂过程中突然降低。然而,在SFRC样本的情况下,未观察到峰值载荷附近的突然减少,并且B值逐渐降低,直到失效,此时它达到其最小值。在SFRC标本的情况下观察到更多的AE与剪切裂解相关的AE。这是由于钢纤维,水泥基质和粗聚集体之间的互锁。 AE测试可用于研究SFRC的材料表征,并且有利于评估由SFRC构建的结构的损伤。

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