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In situ monitoring of PVDF ultrasound transducers under gamma irradiation

机译:γ辐照下PVDF超声换能器的原位监测

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摘要

Ultrasonic transducer (UT) systems are used for non-destructive testing and evaluation across a wide range of industries. In the nuclear industry, radiation damage of the UTs can lead to performance degradation or even complete failure. We have investigated the radiation resilience of a new piezo-polymer (PVDF) UT design. The irradiations were performed in a Cobalt-60 gamma facility with total ionising doses up to 10.5 MGy. Continuous pulse-echo measurements were taken in-situ allowing the performance as a function of time to be monitored. In addition to the UT irradiations and measurements, high fidelity Monte Carlo particle transport simulations were performed to study the radiation environments and the ionising dose profiles within the devices under test. These dose profiles were used to gain insight into the behaviour of PVDF under irradiation. Results show that all sensors were able to withstand the doses achieved without suffering complete failure, with the best performing device only losing 47% of its initial amplitude. Dose profiles for the PVDF show piezoelectric performance to increase by up to 7% at doses around 500 kGy after which performance was found to drop linearly at a rate of between 6.5% and 10% per MGy.
机译:超声波换能器(UT)系统用于广泛行业的非破坏性测试和评估。在核工业中,UTS的辐射损坏可能导致性能下降甚至完全失败。我们研究了一种新的压电聚合物(PVDF)UT设计的辐射弹性。在钴-60伽马设施中进行照射,总电离剂量高达10.5 mg。采用连续脉冲回波测量,允许性能作为要监控的时间的函数。除了UT照射和测量外,还进行高保真蒙特卡罗颗粒传输模拟,以研究辐射环境和所经验装置内的装置内的电离剂量曲线。这些剂量型材用于深入了解PVDF在照射下的行为。结果表明,所有传感器都能够承受在不遭受完全失败的情况下实现的剂量,最佳性能的装置只失去其初始幅度的47%。 PVDF的剂量曲线显示压电性能,以在500kGy的剂量下增加高达7%,之后发现性能下降,以每变化的6.5%和10%的速度下降。

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