用于介质涂层无损检测的宽带微波探头

A. Grishin, V. Denysenkov
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引用次数: 4

摘要

本文报道了热障涂层(TBC: YSZ/MCrAlY/Ni-superalloy)的无损表征。为了检测TBC,我们采用了电磁缺陷检查的方法。采用微波探针代替射频线圈,实现了该方法的现代化:采用开放式同轴探针测量介电材料的复介电常数/spl epsiv/ = /spl epsiv/' + /spl epsiv/'”。探头基本上是一条同轴传输线,其开口端与被测样品紧密机械接触。根据探针-样品界面的微波反射系数计算样品材料的复介电常数。利用探针可以在很宽的频率范围内测量复介电常数。这种宽带光谱可以检测到异相夹杂物、介电层分层和陶瓷/金属衬底界面上的裂纹等。微波探头可以实现小面积和大面积表面的无创和无损检测。被测陶瓷层中的缺陷表现为介电常数在几乎恒定/spl /背景下的异常,这是材料其余部分的特征。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Broad band microwave probe for nondestructive test of dielectric coatings
We report on nondestructive characterization of Thermal Barrier Coatings (TBC: YSZ/MCrAlY/Ni-superalloy). To test TBC we have employed the method of electromagnetic defectoscopy. We have modernized this method by applying microwave probe instead of RF coil: an open-ended coaxial probe was used to measure complex permittivity of dielectric material /spl epsiv/ = /spl epsiv/' + /spl epsiv/". The probe is basically a coaxial transmission line with an open end put into tight mechanical contact with the sample under test. Complex permittivity of the sample material was calculated from the coefficient of microwave reflection from the probe-sample interface. Using the probe the complex permittivity can be measured in a wide frequency range. Such broadband spectroscopy enables detection of foreign phase inclusions, delamination of dielectric layer and cracks on the ceramics/metal substrate interface, etc. Microwave probe enables noninvasive and nondestructive test of both small-area and large-area surfaces. Defects in the ceramic layer under test are revealed as anomalies of the dielectric permittivity on the background of almost constant /spl epsiv/, which is characteristic for the rest of the material.
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