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High Frequency Non-Contact Ultrasonic Analysis: A Practical Reality

机译:高频非接触超声分析:实际现实

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Air-coupled transducers in less than MHz range have been known for some time. However, non-contact transducers up to 5MHz with sensitivity only 30dB lower than conventional contact transducers described here, open new possibilities for industrial and bio-medical applications. In comparison the NCU mode rivals the contact liquid-coupling mode of ultrasound. This development in conjunction with the NCA 1000 now allows execution of routine NDE tasks plus analysis equivalent to materials characterization methods based upon other wave phenomena. By documentary evidence we have shown the transducer characteristics, proof of very high sensitivity, and a few applications of interest to industry and health care. The NCA 1000 is a sophisticated laboratory tool that can be easily adapted to on-line applications. It should be of interest to note that this system and transducers have been successfully integrated into factories and laboratories worldwide. For further information about our work into non-contact ultrasound, please see the following: 1. Bhardwaj, M.C., "Innovation in Non-Contact Ultrasonic Analysis: Applications for Hidden Objects Detection," Mat. Res. Innovat. (1997) 1:188-196. 2. Jones, J.P, Lee, D., Bhardwaj, M., Vanderkam, V., and Achauer, B., "Non-Contact Ultrasonic Imaging for the Evaluation of Burn-Depth and for Other Biomedical Applications," Acoust. Imaging, V. 23 (1997). 3. Bhardwaj, M.C., "Non-Contact Ultrasonic Characterization of Ceramics and Composites," Proceedings Am.Cer.Soc., V 89 (1998). 4. T. Carneim, D.J. Green & M.C. Bhardwaj, "Non-Contact Ultrasonic Characterization of Green Bodies," Cer. Bull., April 1999. 5. Bhardwaj, M.C., "High Transduction Piezoelectric Transducers and Introduction of Non-Contact Analysis," a chapter submitted for the Encyclopedia of Smart Materials, ed. J.A. Harvey, Wiley, New York (2000).
机译:一段时间内已知小于MHz范围的空气耦合换能器。然而,非接触式传感器高达5MHz的灵敏度仅为此处描述的传统接触传感器30dB,为工业和生物医疗应用开辟了新的可能性。相比之下,NCU模式对抗超声波的接触液耦合模式。该开发与NCA 1000结合现在允许执行常规NDE任务加上基于其他波现象的材料表征方法的分析。通过纪录的证据,我们已经显示了传感器特征,敏感性非常高的证明,以及工业和医疗保健的少数兴趣。 NCA 1000是一种复杂的实验室工具,可以很容易地适应在线应用。值得注意的是,该系统和传感器已成功融入全球工厂和实验室。有关我们对非接触超声的进一步信息,请参阅以下内容:1。BHARDWAJ,M.C.,“非接触式超声波分析中的创新:隐藏物体检测的应用”垫子。 res。创新。 (1997)1:188-196。 2. Jones,J.P,Lee,D.,Bhardwaj,M.,Vanderkam,V和Achauer,B。,“非接触超声成像,用于评估烧伤深度和其他生物医学应用”。成像,V. 23(1997)。 3. BHARDWAJ,M.C.,“陶瓷和复合材料的非接触式超声波表征,”CORCALIPS .CER.SOC,V 89(1998)。 4. T. Carneim,D.J.绿色&米。 BHARDWAJ,“绿色尸体的非接触超声波表征”CER。公牛。,1999年4月。5. Bhardwaj,M.C.,“高转导压电传感器和非接触分析的引入”一章提交了智能材料的百科全书,ED。 J.A.哈维,威利,纽约(2000)。

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