首页> 外文会议>Workshop on Metastable and Nanostructured Materials(NANOMAT 2006); 20060605-08; Rio de Janeiro(BR) >Mechanical Alloying of Zr-Nb5at. Powders: Microstructural Evolution and Hydrogenation Properties
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Mechanical Alloying of Zr-Nb5at. Powders: Microstructural Evolution and Hydrogenation Properties

机译:Zr-Nb5%at的机械合金化。粉末:微观结构演变和加氢性能

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Zircaloy~(R) is commonly applied as structural element in nuclear reactors owing to the gamma radiation transparency of Zr. One of the research interests in Zr-Nb alloys is related to its behavior in H_2O-rich environments due to hydrogen embrittlement. In the present work the microstructural evolution (crystallite size and microhardness), crystallography and hydrogenation behavior (after milling) due to mechanical alloying (MA) are studied for the Zr-Nb5%at and pure Zr. The MA study of Zr and the Zr-Nb system showed that frequency of rotation in a planetary mill and alloy composition play a major role on the evolution of crystallite size and microhardness. Nb addition was found to induce a partial allotropic transformation of the Zr structure (α→ω) during MA. Indeed, for milling experiments with significant Fe contamination the formation of an fcc phase was observed. Further, MA for extended times (over 5 hours) was found to reduce the hydrogen absorption capacity of Zr and the Zr-Nb system studied.
机译:由于Zr的伽马辐射透明性,Zircaloy®通常被用作核反应堆的结构元件。 Zr-Nb合金的研究兴趣之一与其因氢脆而在富含H_2O的环境中的行为有关。在本工作中,研究了由于机械合金化(MA)导致的Zr-Nb5%at和纯Zr的微观组织演变(晶粒尺寸和显微硬度),晶体学和氢化行为(铣削后)。对Zr和Zr-Nb系统的MA研究表明,行星式轧机的旋转频率和合金成分对微晶尺寸和显微硬度的演变起主要作用。发现添加Nb可以诱导MA期间Zr结构的部分同素异形转变(α→ω)。实际上,对于具有大量铁污染的研磨实验,观察到了fcc相的形成。此外,发现延长时间(超过5小时)的MA降低了Zr和研究的Zr-Nb系统的氢吸收能力。

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