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Numerical Modelling and Analysis of Infrared Testing in Delaminations of Pressurepipes Using ANSYS

机译:使用ANSYS的压力骨分层红外测试的数值建模与分析

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Numerical modeling of high temperature pressure pipes including delaminations were constructed using ANSYS, then heat flux and convection are loaded on the outside surface. The influence of pulse excitation parameters, depth of defects, thickness of defects, length of defects on maximum thermal contrast and time for maximum thermal contrast are analysised. Length of defects are measured by using the methed of full width at half maximum .According to the research result, it is known that the maximum thermal contrast increased linearly with the product of excitation time and heat flux. It increases also as the defect gets thicker and less deeper, but will not increase always as the length of defects increase. As to the time for maximum thermal contrast, it appears more later with longer excitation time, deeper and thicker defects, however, which has nothing to do with the heat flux. Full wide at half maximum is a good method to measure the length of defects for its small error.
机译:使用ANSYS构建包括分层的高温压力管的数值建模,然后加热通量和对流。分析了脉冲激励参数,缺陷深度,缺陷厚度,缺陷长度的影响分析了对最大热对比度的缺陷长度。通过使用半宽的全宽度以半最大的全宽度测量缺陷的长度。根据研究结果,已知最大热对比度随着激发时间和热通量的产物线性增加。随着缺陷变得更厚,更深的缺陷,它也会增加,但随着缺陷的长度增加,不会随着缺陷的长度而增加。关于最大热对比的时间,随着更长的激发时间,更深层和更厚的缺陷,它看起来更稍后,这与热通量无关。全宽半最大是测量其小错误的缺陷长度的好方法。

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