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Porosity detection in ceramic armor tiles via ultrasonic time-of-flight

机译:通过超声波飞行时间检测陶瓷铠装砖的孔隙率

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摘要

Some multilayer armor panels contain ceramic tiles as one constituent, and porosity in the tiles can affect armor performance. It is well known that porosity in ceramic materials leads to a decrease in ultrasonic velocity. We report on a feasibility study exploring the use of ultrasonic time‐of‐flight (TOF) to locate and characterize porous regions in armor tiles. The tiles in question typically have well‐controlled thickness, thus simplifying the translation of TOF data into velocity data. By combining UT velocity measurements and X‐ray absorption measurements on selected specimens, one can construct a calibration curve relating velocity to porosity. That relationship can then be used to translate typical ultrasonic C‐scans of TOF‐versus‐position into C‐scans of porosity‐versus‐position. This procedure is demonstrated for pulse∕echo, focused‐transducer inspections of silicon carbide (SiC) ceramic tiles.
机译:一些多层装甲板包含瓷砖作为一种成分,并且瓷砖中的孔隙率会影响装甲性能。众所周知,陶瓷材料中的孔隙度会导致超声速度降低。我们报告了一项可行性研究报告,探讨了使用超声波飞行时间(TOF)来定位和表征装甲瓷砖中的多孔区域。所讨论的瓷砖通常具有良好控制的厚度,从而简化了将TOF数据转换为速度数据的过程。通过结合对选定样品的UT速度测量和X射线吸收测量,可以构建一条将速度与孔隙率相关的校准曲线。然后可以使用该关系将TOF对位的典型超声波C扫描转换为孔隙率对位的C扫描。演示此程序用于碳化硅(SiC)瓷砖的脉冲回波,聚焦换能器检查。

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