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首页> 外文期刊>NDT & E International: Independent Nondestructive Testing and Evaluation >Heating characterization of the thickness-through fatigue crack in metal plate using sonic IR imaging
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Heating characterization of the thickness-through fatigue crack in metal plate using sonic IR imaging

机译:用SONC IR成像加热厚度疲劳裂纹的金属板

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摘要

In sonic IR imaging, a major problem is exploring the heating characteristics of crack vicinity to guide the optimization of the test conditions. In this paper, the crack's heating characteristics of the metallic plate with an artificial fatigue crack has been studied. Experimental results showed that the during ultrasonic excitation the temperature rise of crack vicinity at the plate's excitation side is higher than that at its opposite side, whereas the total heating efficiency of the crack face appears to be stable. Through the profile mapping of the crack face, the frictional heating is mainly concentrated near the excitation side. Based on this phenomenon, we built a mathematical heat transfer model to calculate the temperature distribution of the crack vicinity and investigated the heating features of crack faces. Additionally, the mathematical model gives a quantitative relation between the depth of the heat source and the ratio of the temperature distribution of the crack vicinity at opposite side to that at the front side. This study aims to provide a quantitative evaluation method for locating the frictional heating areas in sonic IR imaging.
机译:在Sonic IR成像中,一个主要问题在于探索裂缝附近的加热特性,以指导测试条件的优化。本文研究了具有人工疲劳裂纹的金属板的裂缝的加热特性。实验结果表明,在超声波激发期间,板的激发侧的裂缝附近的温度升高高于其相对侧的温度升高,而裂缝面的总加热效率似乎是稳定的。通过裂缝面的轮廓映射,摩擦加热主要集中在激发侧附近。基于这种现象,我们建立了一种数学传热模型,以计算裂缝附近的温度分布,并研究了裂纹面的加热特征。另外,数学模型在热源的深度与在前侧的相对侧的裂缝附近的温度分布与前侧的相对侧的温度分布的比率之间进行定量关系。该研究旨在提供用于定位Sonic IR成像中的摩擦加热区域的定量评估方法。

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