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DESIGN OF HIGH-TEMPERATURE ULTRASONIC LINEAR ARRAYS FOR UNDER-SODIUM VIEWING

机译:高温超声线性阵列设计钠钠观景

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This paper summarizes the design process for high-temperature ultrasonic phased array transducers for imaging in liquid sodium at temperatures up to 260°C. The project is funded by the USDOE Generation IV Reactor Program and includes collaboration with the Japanese Atomic Energy Agency. The transducer system is being designed to be able to provide images inside a sodium-cooled fast reactor, to support operation and maintenance activities, potentially including location of loose or damaged parts during service outages. Considerations in the design process include array dimensions and spacing, frequency, diffraction effects, ultrasonic beam properties, coupling to sodium, backing materials, and protection from the corrosive sodium environment. Array parameters were evaluated using simulation software. The prototype transducer array is being designed for 8 to 16 rectangular lead niobate (K-81) or bismuth titanate (K-15) 3MHz piezoelectric elements. The theoretically ideal spacing is λ/2 (wavelength in sodium), but a spacing of λ is acceptable and has practical advantages. A nickel or nickel alloy faceplate serves as the sodium wetting surface. The scan angle of the focused ultrasonic beam is ±30°. The imaging spatial resolution is < 15 mm. The array is designed to be operated using a commercial phased-array control system and it is planned that array testing will be performed in room temperature water, hot oil (260°C), and molten sodium (260°C).
机译:本文总结了高温超声相位阵列换能器的设计方法,用于在高达260℃的温度下在液体钠中成像。该项目由USDOE生成IV反应堆计划资助,包括与日本原子能机构的合作。换能器系统旨在能够在钠冷却的快速反应器内提供图像,以支持操作和维护活动,可能包括在服务中断期间零件松动或损坏的位置。设计过程中的考虑因素包括阵列尺寸和间距,频率,衍射效果,超声波束性能,与钠,背衬材料的耦合,以及免受腐蚀性钠环境的保护。使用仿真软件评估阵列参数。原型换能器阵列被设计为8至16个矩形铌酸铌(K-81)或钛酸铋(K-15)3MHz压电元件。理论上理想的间距是λ/ 2(钠中的波长),但λ的间距是可接受的并且具有实际优点。镍或镍合金面板用作润湿表面。聚焦超声波束的扫描角为±30°。成像空间分辨率<15毫米。该阵列设计用于使用商业相控阵控制系统操作,计划在室温水,热油(260℃)和熔融钠(260℃)中进行阵列测试。

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