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Early detection of wire fracture in 7-wire strands through multiband wavelet analysis of acoustic emission signals

机译:通过声发射信号的多频带小波分析,早期检测7线股中的线断裂

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摘要

In this study, acoustic emission (AE) features to predict and detect wire fracture in seven-wire strands were characterized with multiband wavelet analysis. Two steel strands were tested up to 89 kN with each instrumented with a pair of AE sensors at two ends. The cross section of one wire was locally reduced up to 90% in 10% increment at center and support of the two strands, respectively. For both strands, the AE parameters (hits, energy, and counts) changed little up to 80% reduction in cross section of the partially cut wire, and suddenly jumped at the fracture (under 73 kN) of the notched wire with 90% reduction in cross section. The acoustic signals of inter-wire slippage and fracture initiation are significantly shorter in time duration than the signal of fracture. Their dominant frequencies and frequency bandwidths are increasingly higher and wider. The frequency band of the fracture signal is significantly broader than that of either the fracture-induced echo or artificial tapping noises. The time duration of artificial tapping noises is substantially longer than that of either fracture or fracture-induced echo. These distinct time-frequency characteristics allow an early detection and localization of wire fracture following the proposed procedure.
机译:在这项研究中,通过多频带小波分析来表征预测和检测七线绞合线断裂的声发射(AE)功能。对两根钢绞线进行了高达89 kN的测试,每根钢绞线的两端都装有一对AE传感器。一根线的横截面分别在两根绞线的中心和支撑处以10%的增量局部减小至90%。对于两股钢绞线,AE参数(击中,能量和支数)变化不大,直至部分切割的钢丝的横截面减小了80%,突然在有缺口的钢丝的断裂处(73 kN以下)跳跃,减小了90%在横截面中。导线间打滑和断裂开始的声波信号的持续时间明显短于断裂信号。它们的主要频率和频率带宽越来越高和越来越宽。裂缝信号的频带明显宽于裂缝引起的回声或人为敲击噪声的频带。人工敲击噪声的持续时间明显长于断裂或断裂诱发的回声的持续时间。这些截然不同的时频特性允许按照提出的程序及早发现和定位钢丝断裂。

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