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首页> 外文期刊>Materials Evaluation >Isolating Tensile Failure Mechanisms in Fiberglass Epoxy from Acoustic Emission Signal Parameters
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Isolating Tensile Failure Mechanisms in Fiberglass Epoxy from Acoustic Emission Signal Parameters

机译:从声发射信号参数中隔离玻璃纤维环氧树脂中的拉伸破坏机理

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摘要

Acoustic emission signal parameters were used to isolate the failure mechanisms in a 0 degree unidirectional, fiberglass epoxy tensile test specimen. Since several failure mechanisms were known to be present, the lack of any distinctly identifiable bands in the original amplitude distribution indicated that there was considerable overlap between the acoustic emission signals from the various failure mechanisms. In order to separate the amplitude bands associated with each mechanism, it was necessary to sort on the duration of the acoustic emission signal. Two additional plots, counts versus amplitude and hits versus counts, were used to verify that the amplitude distributions were comprised of a single predominant mechanism. A total of seven failure mechanisms were isolated from the original data set, all but two having a shape similar to that of a normal distribution.
机译:声发射信号参数用于隔离0度单向玻璃纤维环氧拉伸试样的破坏机理。由于已知存在几种故障机制,因此原始幅度分布中缺少任何可明确识别的频段,表明来自各种故障机制的声发射信号之间存在相当大的重叠。为了分离与每种机制相关的振幅带,有必要对声发射信号的持续时间进行分类。使用两个额外的图(计数与振幅以及命中与计数)来验证振幅分布是否由单个主要机制组成。从原始数据集中总共隔离了七个故障机制,除了两个以外,其他所有机制的形状都与正态分布相似。

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