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Development of a non-destructive testing technique using ultrasonic wave for evaluation of irradiation embrittlement in nuclear materials

机译:研发用于评估核材料辐射脆性的超声波无损检测技术

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摘要

To develop a non-destructive testing technique for evaluating embrittlement of irradiated materials, the correlation between ultrasonic characteristics and embrittlement was investigated from the results of the ultrasonic wave measurement and the Charpy impact test of irradiated specimens of commercial A533B-1 steel and welded material at the hot laboratory of the Japan Materials Testing Reactor (JMTR) in the Japan Atomic Energy Research Institute (JAERI). After irradiation at 523 or 563 K up to a fast neutron fluence of 1 X 10(24) N/m(2) (E > 1 MeV), velocities of both shear and longitudinal waves in the irradiated specimen were lower than those in the unirradiated one. The decrease in the velocities may be caused by the reductions of the shear and Young's moduli in the irradiated specimen. The attenuation coefficient of the longitudinal wave in the irradiated specimens increased compared with unirradiated ones. With increasing the shift amount of the Charpy transition temperature at 41 J absorbed energy, the velocity and attenuation coefficient of the ultrasonic waves decreased and increased, respectively. (C) 2002 Elsevier Science B.V. All rights reserved. [References: 11]
机译:为了开发一种用于评估辐照材料脆性的非破坏性测试技术,从超声波测量结果和商品A533B-1钢和焊接材料的辐照试样的夏比冲击试验的夏普冲击试验结果研究了超声特性与脆性之间的相关性。日本原子能研究所(JAERI)的日本材料测试反应堆(JMTR)的热实验室。在523或563 K辐照后,快速中子通量达到1 X 10(24)N / m(2)(E> 1 MeV),辐照样品中的横波和纵波速度均低于辐照后的速度。未经辐照的。速度的降低可能是由于被辐照样品的剪切力和杨氏模量的降低所致。与未辐照样品相比,辐照样品中纵波的衰减系数增加。随着夏比转变温度在41 J吸收能量上的偏移量增加,超声波的速度和衰减系数分别减小和增加。 (C)2002 Elsevier Science B.V.保留所有权利。 [参考:11]

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