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首页> 外文期刊>International journal of applied electromagnetics and mechanics >Effect of fatigue damage on the notch frequency of the prestressing strand based on magnetostrictive guided waves
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Effect of fatigue damage on the notch frequency of the prestressing strand based on magnetostrictive guided waves

机译:疲劳损伤对基于磁致伸缩引导波的预应力绞线槽频的影响

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摘要

Recently, some researchers found that there was a notchfrequency phenomenon when the guided wave propagated in the pre-stressing strand under tension. The notch frequency has a linear relationship with the logarithm of tension. According to their results, a force measurement method for the strand was proposed. However, fatigue damage is often encountered inservice strands. In this paper, we study the effect of fatigue damage on the notch frequency of the pre-stressing strand under tension based on the magnetostrictive guided wave technology. The relationship between the cyclic loading times and the notch frequencies under the same tension is obtained from four pre-stressing strands. The results show that the notch frequencies are variable with the cyclic loading times. At first, the notch frequency increases slightly, then decreases suddenly, and then increases almost linearly with increasing of the cyclic loading times. Our research indicates that the tension measurement method by using the notch frequency for strands should consider the effect of the fatigue damage. Moreover, the notch frequency can also be employed to evaluate the fatigue damage of strands after 1.85 million cyclic loading times.
机译:最近,一些研究人员发现,当在张力下的预应力链中传播的导波时,存在对存在的运动不当现象。陷波频率与张力的对数具有线性关系。根据它们的结果,提出了一种用于股线的力测量方法。然而,经常遇到疲劳损坏。本文基于磁致伸缩引导波技术研究了疲劳损伤对张力预应力滞留槽频率的影响。在相同张力下的循环加载时间和凹口频率之间的关系是从四个预应力的股线获得的。结果表明,Notch频率是可变的,循环加载时间。首先,陷波频率略微增加,然后突然减小,然后随着循环加载时间的增加而几乎线性增加。我们的研究表明,张力测量方法通过使用缺口频率的钢绞线应考虑疲劳损坏的效果。此外,还可以采用凹口频率来评估循环加载时间185万后股线的疲劳损伤。

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