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Nanostructural evolution of Cr-rich precipitates in a Cu-Cr-Zr alloy during heat treatment studied by 3 dimensional atom probe

机译:通过三维原子探针研究了热处理过程中Cu-Cr-Zr合金中富Cr沉淀物的纳米结构演变

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摘要

Nanostructural evolution of Cr (Cr-rich) precipitates in a Cu-0.78%Cr-0.13%Zr alloy has been studied after aging and overaging (reaging) by laser assisted local electrode 3 dimensional atom probe (Laser-LEAP). This material is a candidate for the first wall and divertor components of future fusion reactors. After prime aging at 460°C, Cr precipitates enriched with Zr were observed. Further reaging at 600°C caused the precipitates to grow to almost spherical Cr precipitates with 5 nm (1 h) in diameter and plate-like ones with 20 nm (4 h), respectively. Zr and impurities of Si and Fe were concentrated around the Cr precipitates, resulting in an almost pure Cr cores with interface regions enriched with Zr and the impurities. Probably, the strain induced by the incoherency of BCC Cr with matrix FCC Cu is relaxed by the formation of the enriched regions.
机译:经过激光辅助局部电极三维原子探针(Laser-LEAP)的时效和过时效(再时效)后,研究了Cu-0.78%Cr-0.13%Zr合金中Cr(富Cr)沉淀物的纳米结构演变。该材料是未来聚变反应堆第一壁和分流器组件的候选材料。在460°C进行一次时效处理后,观察到Cr沉淀物富含Zr。在600°C下进一步老化,沉淀物生长成直径约为5 nm(1 h)的几乎球形的Cr沉淀物,而直径为20 nm(4 h)的板状Cr沉淀物。 Zr和Si和Fe的杂质集中在Cr析出物周围,形成几乎纯净的Cr核,其界面区域富含Zr和杂质。可能是由于BCC Cr与基质FCC Cu不相干而引起的应变通过富集区域的形成而得到缓解。

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