...
首页> 外文期刊>Nature reviews Cancer >Air-Coupled Reception of a Slow Ultrasonic A(0) Mode Wave Propagating in Thin Plastic Film
【24h】

Air-Coupled Reception of a Slow Ultrasonic A(0) Mode Wave Propagating in Thin Plastic Film

机译:在薄塑料薄膜中传播缓慢超声波A(0)模式波的空气耦合接收

获取原文
获取原文并翻译 | 示例
           

摘要

At low frequencies, in thin plates the phase velocity of the guided A(0) mode can become slower than that of the ultrasound velocity in air. Such waves do not excite leaky waves in the surrounding air, and therefore, it is impossible to excite and receive them by conventional air-coupled methods. The objective of this research was the development of an air-coupled technique for the reception of slow A(0) mode in thin plastic films. This study demonstrates the feasibility of picking up a subsonic A(0) mode in plastic films by air-coupled ultrasonic arrays. The air-coupled reception was based on an evanescent wave in air accompanying the propagating A(0) mode in a film. The efficiency of the reception was enhanced by using a virtual array which was arranged from the data collected by a single air-coupled receiver. The signals measured at the points corresponding to the positions of the phase-matched array were recorded and processed. The transmitting array excited not only the A(0) mode in the film, but also a direct wave in air. This wave propagated at ultrasound velocity in air and was faster than the evanescent wave. For efficient reception of the A(0) mode, the additional signal-processing procedure based on the application of the 2D Fourier transform in a spatial-temporal domain. The obtained results can be useful for the development of novel air-coupled ultrasonic non-destructive testing techniques.
机译:在低频时,在薄板中,引导A(0)模式的相速度可能比空气中的超声速度变慢。这种波在周围的空气中不会激发漏漏,因此,不可能通过传统的空气耦合方法激发和接收它们。该研究的目的是开发用于在薄塑料薄膜中接收缓慢A(0)模式的空气耦合技术。该研究通过空气耦合超声阵列展示了拾取塑料薄膜中拾取子源A(0)模式的可行性。空气耦合接收基于在膜中传播A(0)模式的空气中的渐逝波。通过使用由由单个空气耦合接收器收集的数据布置的虚拟阵列来增强接收的效率。记录并处理在对应于相位匹配阵列的位置的点处测量的信号。发送阵列不仅激发胶片中的A(0)模式,而且在空气中进行直接波。该波以空气中的超声速度传播,比渐逝波更快。为了有效地接收A(0)模式,基于空间域中的2D傅里叶变换的应用的附加信号处理过程。所得结果可用于开发新型空气耦合超声波无损检测技术。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号