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Aging material evaluation and studies by non-destructive techniques (AMES-NDT) -- a European network project

机译:通过无损技术进行老化材料评估和研究(AMES-NDT)-欧洲网络项目

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This paper presents results obtained in a round-robin action organized in a concerted action of ten partners in the EURATOM program of the European Community. The objective of the research was to document the state of the art of available non-destructive testing (NDT) techniques in order to characterize material aging phenomena based on a reduction of Charpy-V energy and a shift in the fracture appearance transition temperature. Therefore, samples from the Japanese nuclear reactor pressure vessel JRQ-steel (ASMT Standard A533-B Class 1) have been thermally treated at 700℃ for 18 h with a subsequent water quenching. Besides micromagnetic and electromagnetic NDT, the positron annihilation technique, ultrasonic reverberation by using Laser ultrasonics and the thermo-electrical power have been applied to characterize the aged material states.
机译:本文介绍了在欧洲共同体的EURATOM计划中由十个合作伙伴共同采取的循环行动中获得的结果。这项研究的目的是记录可用的无损检测(NDT)技术的最新状态,以便根据夏比-V能量的降低和断裂外观转变温度的变化来表征材料的老化现象。因此,日本核反应堆压力容器JRQ钢(ASMT标准A533-B 1类)的样品已在700℃热处理18小时,随后进行水淬。除了微磁和电磁NDT外,还应用了正电子an没技术,使用激光超声的超声混响以及热电功率来表征时效材料的状态。

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