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Quantitative Non-Destructive Testing of Metallic Foam Based on Direct Current Potential Drop Method

机译:基于直流电势降法的泡沫金属定量无损检测

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摘要

To detect cavity defects in metallic foam and to predict its size, a quantitative nondestructive testing (NDT) method based on the direct current potential drop (DCPD) technique was proposed and validated in this study. At first, an efficient forward analysis scheme was introduced to simulate the DCPD signals. In order to obtain measured signals for defect reconstruction, specimens of practical aluminum metal foam with defects of different sizes were fabricated and inspected then by using a DCPD testing system. Third, an inverse analysis scheme in model based optimization category was proposed and implemented for sizing cavity defects in the metal foam. Through inversion of both simulated and measured DCPD signals, the validity of both the forward and the inverse analysis schemes was demonstrated for the quantitative DCPD evaluation of the metallic foam.
机译:为了检测金属泡沫中的空腔缺陷并预测其尺寸,提出了一种基于直流电势降(DCPD)技术的定量无损检测(NDT)方法,并在本研究中进行了验证。首先,引入了一种有效的前向分析方案来模拟DCPD信号。为了获得用于缺陷重建的测量信号,制造了具有不同尺寸缺陷的实用泡沫铝样品,然后使用DCPD测试系统对其进行了检查。第三,提出了一种基于模型的优化类别的逆分析方案,并将其用于确定泡沫金属中空腔缺陷的尺寸。通过对模拟和测量的DCPD信号进行反演,证明了正向和反向分析方案对金属泡沫定量DCPD评估的有效性。

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