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Energetic approach based on IRT to assess plastic behaviour in CT specimens

机译:基于IRT的能量学方法评估CT样品的塑性行为

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In this work, the Thermographic technique (IRT) was used to characterize the fracture mechanics behaviour of stainless steels. In particular, IRT is proposed for evaluating the dissipated energy and the plastic area around the crack tip in order to study the fatigue crack growth. Experimental approaches used for the measure of dissipated energy require an accurate equipment and suitable techniques that may restrict the applications just to laboratory tests. The proposed approach is based on thermal signal investigation in the frequency domain in order to separate the two heat sources related to the material behaviour during fracture mechanics test: thermoelastic sources and intrinsic dissipations. These latter are directly related to the plastic phenomena around the crack tip and occur at the twice of the loading frequency. Both amplitude and phase signals at the twice of the loading frequency can be used for evaluating the crack growth rate. In particular, the first index through an estimation of the heat dissipated while the second due to the effects occurring at the crack tip. It was also demonstrated as the proposed approach is capable of monitoring the crack growth over time and in automatic way by means of such the contactless and full field technique.
机译:在这项工作中,热成像技术(IRT)用于表征不锈钢的断裂力学行为。特别是,IRT被提出来评估耗散的能量和裂纹尖端周围的塑性区域,以便研究疲劳裂纹的扩展。用于测量耗散能量的实验方法需要精确的设备和合适的技术,这可能会将应用程序限制为仅用于实验室测试。所提出的方法基于频域中的热信号调查,以便在断裂力学测试中分离与材料行为相关的两个热源:热弹性源和固有耗散。后者与裂纹尖端周围的塑性现象直接相关,并以加载频率的两倍发生。加载频率的两倍的振幅和相位信号均可用于评估裂纹扩展速率。特别地,第一指标是通过估计散热量而第二指标是由于裂纹尖端处产生的影响而产生的热量。还证明了所提出的方法通过这种非接触和全场技术能够随时间监视裂纹扩展并以自动方式自动进行。

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