首页> 外文会议>Symposium on effects of radiation on materials >IRRADIATION INDUCED GROWTH AMD MICROSTRUCTURE EVOLUTION OF Zr-1.2Sn-1Nb-0.4Fe UNDER NEUTRON IRRADIATION TO HIGH DOSES
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IRRADIATION INDUCED GROWTH AMD MICROSTRUCTURE EVOLUTION OF Zr-1.2Sn-1Nb-0.4Fe UNDER NEUTRON IRRADIATION TO HIGH DOSES

机译:辐照诱导Zr-1.2sn-1nb-0.4fe下中子辐射Zr-1.2sn-1nb-0.4fe的辐射amd微观结构演化

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Zirconium alloy components subjected to long-term operation and high doses in thermal reactors need to be highly irradiation resistant to provide integrity of components, primarily, their geometrical sizes. Transmission and scanning electron microscopy, energy dispersive X-ray microanalysis used to investigate thin foils and extraction replicas of irradiated zirconium, Zr-1Nb (E110) and Zr-l.2Sn-lNb-0.4Fe (E635) alloys allowed us to analyze the evolution of their microstructure under neutron irradiation. The experimental irradiations that were conducted at 350°C to 10~(27) n/m~2 (E ≥ 0.1 MeV) show that the most irradiation resistant alloy proved to be a multi-component E635 alloy. It is not essentially subject to growth. Dislocation structure and phase composition were studied as interrelated to different stages of irradiation induced growth. The accelerated growth correlates with a high density of basal - plane -component dislocations.
机译:在热反应器中经过长期操作和高剂量的锆合金组分需要具有高度照射,以提供组分的完整性,主要是它们的几何尺寸。传输和扫描电子显微镜,能量分散X射线微基分析用于研究薄箔和辐射锆,ZR-1NB(E110)和Zr-L.1.2Sn-LNB-0.4Fe(E635)合金的溶剂复制品允许我们分析中子辐照下微观结构的演变。在350℃至10〜(27)n / m〜2(E≥01mev)下进行的实验照射表明,最具辐射抗性合金被证明是多组分E635合金。它基本上不受增长。研究了脱位结构和相组合物与相互关联的辐照诱导生长的不同阶段。加速的生长与高密度的基底平面 - 符合脱位相关。

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