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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >High temperature ultrasonic transducers for imaging and measurements in a liquid Pb/Bi eutectic alloy
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High temperature ultrasonic transducers for imaging and measurements in a liquid Pb/Bi eutectic alloy

机译:高温超声换能器,用于液态Pb / Bi共晶合金的成像和测量

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摘要

In some nuclear reactors or accelerator-driven systems (ADS) the core is intended to be cooled by means of a heavy liquid metal, for example, lead-bismuth (Pb/Bi) eutectic alloy. For safety and licensing reasons, an imaging method of the interior of ADS, based on application of ultrasonic waves, has thus to be developed. This paper is devoted to the description of developed various ultrasonic transducers suitable for long term imaging and measurements in the liquid Pb/Bi alloy. The results of comparative experimental investigations of the developed transducers of different designs in a liquid Pb/Bi alloy up to 450/spl deg/C are presented. Prototypes with different high temperature piezoelectric materials were investigated: PZT, bismuth titanate (Bi/sub 4/Ti/sub 3/O/sub 12/), lithium niobate (LiNbO/sub 3/), gallium orthophosphate (GaPO/sub 4/) and aluminum nitride (AlN). For acoustic coupling with the metal alloy, it was proposed to coat the active surface of the transducers by diamond-like carbon (DLC). The radiation robustness was assessed by exposing the transducers to high gamma dose rates in one of the irradiation facilities at SCK/spl middot/CEN. The experimental results proved that the developed transducers are suitable for long-term operation in harsh conditions.
机译:在某些核反应堆或加速器驱动系统(ADS)中,堆芯旨在通过重液态金属(例如铅-铋(Pb / Bi)共晶合金)进行冷却。出于安全和许可的原因,因此必须开发基于超声波的应用对ADS内部进行成像的方法。本文致力于描述适用于液态Pb / Bi合金中的长期成像和测量的各种超声换能器。提出了在高达450 / spl deg / C的液态Pb / Bi合金中开发的不同设计换能器的对比实验研究结果。研究了具有不同高温压电材料的原型:PZT,钛酸铋(Bi / sub 4 / Ti / sub 3 / O / sub 12 /),铌酸锂(LiNbO / sub 3 /),正磷酸镓(GaPO / sub 4 / )和氮化铝(AlN)。为了与金属合金进行声耦合,提出用类金刚石碳(DLC)涂覆换能器的有效表面。通过将换能器置于SCK / spl middot / CEN的辐射设施之一中的高伽玛剂量率下,评估辐射的鲁棒性。实验结果证明,开发的换能器适合在恶劣条件下长期运行。

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