【24h】

Ultrasonic NDE in a reactor core

机译:堆芯中的超声波NDE

获取原文
获取原文并翻译 | 示例

摘要

We have irradiated bulk single crystal piezoelectric AlN operating as an ultrasonic transducer up to a fast and thermal neutron fluence of 1.85×1018 n/cm2 and 5.8×1018 n/cm2 respectively along with a gamma dose of 26.8 MGy. Our primary interest was in the radiation effects on the piezoelectric performance of the AlN crystal. Ideally standard procedures for extracting material properties from the impedance spectra would have been applied. However, this procedure was anticipated to be very error prone due the effects of radiation on passive components, such as electrodes and cabling. As a result the transducer was coupled to an aluminum cylinder and operated in pulse echo mode throughout the irradiation. In addition to the pulse echo testing impedance data were obtained. Although, material parameters such as d33 could not be measured in-situ during irradiation with our procedure, our work is the only publication, to the author''s knowledge, showing the operation of an ultrasonic transducer in a reactor core. Further, the piezoelectric coefficient was measured prior to irradiation and found to be 5.5 pC/N which is unchanged from as-grown samples, and in fact higher than the measured d33 for many as-grown samples. Further proof of the viability of utilizing ultrasonic transducers in a reactor core is provided by means of successful time of flight (TOF) measurements throughout the irradiation. The TOF data was used to measure the gamma heating of an aluminum cylinder. The heating due to short lived isotopes in the Al was also detected via TOF.
机译:我们已经对作为超声换能器的块状单晶压电AlN进行了辐照,其快速和热中子注量分别为1.85×10 18 n / cm 2 和5.8×10 18 n / cm 2 以及26.8 MGy的伽马剂量。我们的主要兴趣在于辐射对AlN晶体压电性能的影响。理想情况下,应该采用从阻抗谱中提取材料特性的标准程序。但是,由于辐射对无源组件(如电极和电缆)的影响,预计此过程非常容易出错。结果,换能器连接到铝制圆柱体,并在整个照射过程中以脉冲回波模式运行。除脉冲回波测试外,还获得了阻抗数据。尽管用我们的程序在辐照过程中无法现场测量诸如d33之类的材料参数,但据作者所知,我们的工作是唯一的出版物,显示了反应堆堆芯中超声换能器的操作。此外,在辐照之前测量了压电系数,发现压电系数为5.5 pC / N,对于刚生长的样品没有变化,实际上比许多刚生长的样品的d33高。通过在整个辐照过程中成功进行飞行时间(TOF)测量,进一步证明了在反应堆堆芯中利用超声换能器的可行性。 TOF数据用于测量铝制圆柱体的伽马加热。还通过TOF检测到由于Al中寿命短的同位素引起的加热。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号