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Development of ultrasonic waveguide techniques for under-sodium viewing

机译:用于钠下观察的超声波导技术的发展

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摘要

An ultrasonic imaging system based on waveguide techniques was developed to provide in-service inspection of reactor core of a sodium-cooled fast reactor (SFR) and potential applications in other hostile environments. By using the ultrasonic waveguide techniques, we overcome the major technical challenge in developing an under-sodium viewing (USV) system that can withstand the high-temperature and corrosive environment. The chosen design of the prototype waveguide (WG) is a hybrid of bundle and spiraled-sheet WG. The prototypes show high detection sensitivity with minimal background noise by effectively reducing spurious echoes and mode conversions. Tests on prototype waveguide transducers were conducted in liquid sodium up to 340 °C (650 °F). C-scan images of the targets were successfully developed from both time-oMight and amplitude variations of the reflected echoes. The ultrasonic waveguide imaging system demonstrates a capability of detecting defects with 1 mm width and 0.5 mm depth under molten sodium.
机译:开发了一种基于波导技术的超声成像系统,可对钠冷快堆(SFR)的反应堆堆芯进行在役检查,并在其他恶劣环境中进行潜在应用。通过使用超声波波导技术,我们克服了开发可承受高温和腐蚀性环境的钠下观察(USV)系统的主要技术挑战。原型波导(WG)的选定设计是束和螺旋板WG的混合。原型通过有效地减少寄生回波和模式转换,显示了高检测灵敏度和最小的背景噪声。在高达340°C(650°F)的液态钠中对原型波导换能器进行测试。通过反射回波的时间和幅度变化,成功开发了目标的C扫描图像。超声波导成像系统展示了在熔融钠下检测宽度为1毫米,深度为0.5毫米的缺陷的能力。

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