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Fatigue Damage Monitoring by means of Acoustic Emission and Thermography in Ti grade 5 specimens

机译:疲劳损伤通过TI级标本的声发射和热成像监测

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In this paper the crack propagation process in Titanium grade 5 specimens subjected to uniaxial fatigue loading was studied by adopting two different non-destructive technique (NDT) namely Acoustic Emission (AE) and Thermography. A couple of sensors placed on the sample and acoustically coupled with the metal through a coupling gel allowed to detect elastic waves produced inside the sample as a consequence of activation of inner defects. Part of the overall acoustic activity can be directly referred to the crack propagation process. At the same time the superficial temperature of the specimens was continuously monitored during the whole test to detect variation in temperature in the sample. In particular the rise of temperature around the crack tip was monitored in order to evaluate the advancing of the crack during the test. Finally the two methods were compared in order to underline differences in capability of predicting incumbent catastrophic failure.
机译:本文通过采用两种不同的非破坏性技术(NDT)即声学发射(AE)和热成像,研究了对单轴疲劳负载进行的钛级5样本中的裂纹繁殖过程。 放置在样品上的几个传感器并通过耦合凝胶声学耦合,允许检测样品内部产生的弹性波作为内部缺陷的激活。 一部分整体声学活动可以直接参考裂缝传播过程。 同时,在整个测试期间连续监测样品的浅表温度以检测样品中温度的变化。 特别地,监测裂纹尖端周围的温度的升高,以便在测试期间评估裂缝的前进。 最后,比较了两种方法,以强调预测现有灾难性失败的能力的差异。

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