热扩散率
热成像
纤维增强塑料
材料科学
标准差
复合材料
无损检测
热的
铝
相对标准差
光学
红外线的
数学
统计
气象学
物理
检出限
量子力学
作者
Sri Addepalli,Yifan Zhao,John Ahmet Erkoyuncu,Rajkumar Roy
出处
期刊:Sensors
[Multidisciplinary Digital Publishing Institute]
日期:2021-08-14
卷期号:21 (16): 5480-5480
被引量:6
摘要
Pulsed thermography has been used significantly over the years to detect near and sub-surface damage in both metals and composites. Where most of the research has been in either improving the detectability and/or its applicability to specific parts and scenarios, efforts to analyse and establish the level of uncertainty in the measurements have been very limited. This paper presents the analysis of multiple uncertainties associated with thermographic measurements under multiple scenarios such as the choice of post-processing algorithms; multiple flash power settings; and repeat tests on four materials, i.e., aluminium, steel, carbon-fibre reinforced plastics (CFRP) and glass-fibre reinforced plastics (GFRP). Thermal diffusivity measurement has been used as the parameter to determine the uncertainty associated with all the above categories. The results have been computed and represented in the form of a relative standard deviation (RSD) ratio in all cases, where the RSD is the ratio of standard deviation to the mean. The results clearly indicate that the thermal diffusivity measurements show a large RSD due to the post-processing algorithms in the case of steel and a large variability when it comes to assessing the GFRP laminates.
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