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Low-Frequency ultrasonic imaging of composite structures with squirter-based water-coupled and air-coupled transducers

机译:喷水式和空气耦合换能器对复合结构的低频超声成像

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Emergent requirements for lower frequency, higher penetration ultrasound for inspection of ever-lower weight and larger cross-sectional area composite materials components are successfully being addressed through research and development efforts on improved transducers, coupling, and instrumentation. Newly developed squirter and air-based ultrasonic transducers and associated instrumetnation are described. A 250 kHz squirter-based transducer pair is designed to favor increased llop sensitivity in through-transmission mode. Enhanced loop sensitivity, or voltage gain, increases the signal amplitude in proximity to the tranducer before noise is impressed upon it in cable paths or via amplifiers. The transducers afforded a minimum 6 dB increase in amplitude compared to conventional devices when testing difficult to penetrate foam and honeycomb core composite materials, essentially doubling the signal to baselien noise level and enabling inspection of severla components heretofore not adequately penetrated with ultrasound. Results are also presented from severla applications employing enhanced air-coupled ultrasonic transducers. Anovel horn collimators are discussed that enabled improved imaging of internal structure and near-edge defects. These collimators with integral acoustic shielding also minimized wrap-around of the signal, thereby enabling an increased pulse repetition rate that supported scan speeds up to 0.8 m/s at a 3 mm pixel increment.
机译:通过对改进的换能器,耦合和仪器的研究和开发工作,已成功满足了对低频,高穿透超声检查越来越低的重量和更大的截面积复合材料组件的紧急要求。描述了新开发的喷水器和基于空气的超声换能器以及相关的仪器仪表。设计了一个基于250 kHz鞘管的换能器,以在直通模式下提高双稳态灵敏度。增强的环路灵敏度或电压增益可在传感器通过电缆路径或通过放大器施加噪声之前,增加靠近传感器的信号幅度。当测试难以穿透的泡沫和蜂窝状芯复合材料时,与传统设备相比,该传感器的振幅至少增加了6 dB,从而使信号基本加倍,达到了基本噪声水平,并且能够检查迄今为止未能被超声波充分穿透的几部分。在使用增强型空气耦合超声换能器的severla应用中也给出了结果。讨论了Anovel喇叭准直器,该准直器可以改善内部结构和近边缘缺陷的成像。这些具有整体声屏蔽功能的准直器还使信号的回绕最小化,从而实现了更高的脉冲重复率,在3 mm像素的增量下支持高达0.8 m / s的扫描速度。

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