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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Swelling, mechanical properties and microstructure of beryllium irradiated at 200 degrees C up to extremely high neutron doses
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Swelling, mechanical properties and microstructure of beryllium irradiated at 200 degrees C up to extremely high neutron doses

机译:高达200℃的中子剂量辐照铍的溶胀,力学性能和微观结构

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摘要

The paper reports on an investigation of four beryllium grades (TE-56, TE-30, TIP, DIP) produced in Russia using the technology of hot extrusion (HE) and hot isostatic pressing (HIP). Specimens were irradiated in the SM reactor at a temperature of 200 degrees C to neutron doses in the range of (0.7-13.1) x 10(22) cm(-2) (E > 0. 1 MeV) and then subjected to post-irradiation examination. Beryllium swelling, microhardness and mechanical tensile and compression tests results as a function of neutron dose are presented. In addition, the paper contains the results of irradiated beryllium microstructure examination. Swelling increases with dose and does not exceed 4%. Microhardness also increases steadily with neutron dose. The irradiation induced embrittlement of all the tested specimens with increasing dose leads to significant decrease of brittle strength. The void size and density tend to increase in the microstructure of irradiated beryllium. Crown Copyright (C) 2007 Published by Elsevier B.V. All rights reserved.
机译:该论文报告了对使用热挤压(HE)和热等静压(HIP)技术在俄罗斯生产的四种铍等级(TE-56,TE-30,TIP,DIP)的调查。样品在200摄氏度的温度下在SM反应堆中辐照至(0.7-13.1)x 10(22)cm(-2)(E> 0. 1 MeV)范围内的中子剂量,然后进行后处理。辐射检查。给出了铍膨胀,显微硬度以及机械拉伸和压缩试验结果与中子剂量的关系。此外,本文还包含了铍辐照显微组织检查的结果。肿胀随剂量增加而不超过4%。显微硬度也随着中子剂量的增加而稳定增加。随着剂量的增加,所有测试样品的辐照引起的脆化导致脆性强度显着降低。空隙尺寸和密度倾向于在被辐照的铍的微观结构中增加。 Crown版权所有(C)2007,Elsevier B.V.保留所有权利。

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