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首页> 外文期刊>Russian Journal of Nondestructive Testing >Full Curve Damage Process of Polypropylene Fiber Reinforced Mortars under Dynamic Tensile Loading Based on Acoustic Emission Technique
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Full Curve Damage Process of Polypropylene Fiber Reinforced Mortars under Dynamic Tensile Loading Based on Acoustic Emission Technique

机译:基于声发射技术的动态拉伸载体下聚丙烯纤维增强砂浆的全曲线损伤工艺

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摘要

The study of the full curve damage process of polypropylene fiber reinforced mortars under medium strain rate (10(-6) s(-1)-10(-4) s(-1)) could enrich the understanding of the dynamic damage characteristics of polypropylene fiber reinforced structures. In order to explore the physical mechanisms of polypropylene fiber in the dynamic damage process of the polypropylene fiber reinforced mortars. The real-time dynamic acoustic emission (AE) technology was applied to monitor the damage process of polypropylene fiber reinforced mortars at different strain rates. The analysis of characteristics of AE wavelet energy spectrum and the average AE peak frequency of polypropylene fiber reinforced mortars with different polypropylene fiber content at different strain rates were conducted. The results show that with the accumulation of damage, the AE wavelet energy spectrum in ca8 frequency band increases first and then decreases and the average AE peak frequency increases gradually. The AE wavelet energy spectrum in ca8 frequency band and the average AE peak frequency decreases gradually with the increase of the strain rate, but them increases first and then decreases with the increase of polypropylene fiber content. The above AE characteristics could provide important information for the identification of dynamic damage mechanism of polypropylene reinforced fiber mortars.
机译:中等应变率下聚丙烯纤维增强砂浆的全曲线损伤过程(10(-6)S(-1)-10(-4)S(-1))可以丰富了解动态损伤特征聚丙烯纤维增强结构。为了探讨聚丙烯纤维在聚丙烯纤维增强砂浆的动态损伤过程中的物理机制。应用实时动态声学发射(AE)技术,以监测不同应变率的聚丙烯纤维增强砂浆的损伤过程。对不同应变率不同聚丙烯纤维含量的聚丙烯纤维增强砂浆的AE小波能谱特性分析及不同应变率的不同聚丙烯纤维含量。结果表明,随着损坏的累积,CA8频带中的AE小波能谱首先增加,然后降低,并且平均AE峰值频率逐渐增加。随着应变速率的增加,CA8频带中的AE小波能谱和平均AE峰值频率逐渐降低,但是它们首先增加,然后随着聚丙烯纤维含量的增加而降低。上述AE特性可以提供用于识别聚丙烯增强纤维砂浆的动态损伤机理的重要信息。

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