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Influence of pre-deformation on the precipitation of Cu-rich clusters in RPV model steel

机译:预变形对RPV模型钢中富Cu团簇析出的影响

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The effect of pre-deformation on the precipitation process of Cu-rich clusters in reactor pressure vessels (RPV) model steel is studied. In this research, Fe-1.16wt%Cu binary alloy is selected as RPV model steel to simulate the precipitation process of Cu-rich clusters. The solid-solution Fe-Cu alloys were cold rolled with pre-deformation of 0, 10%, 25%, 40%, 60%, followed by aging at 450~(°)C for a series time. The dislocation density, Vickers hardness and microstructure evolution of Fe-Cu alloys after aging were determined. It is revealed that the Vickers hardness of un-deformed specimens reaches to peak hardness after aging at 450~(°)C for 100 h, while the specimens with larger dislocation density reach to peak hardness faster from the Vickers hardness test result. The result of transmission electron microscopy (TEM) indicates that pre-deformation promotes the process of precipitation of Cu-rich clusters and inhibits the growth of the Cu-rich clusters.
机译:研究了预变形对反应堆压力容器(RPV)模型钢中富铜团簇析出过程的影响。本研究选择Fe-1.16wt%Cu二元合金作为RPV模型钢,以模拟富Cu团簇的析出过程。将固溶Fe-Cu合金冷轧,使其预变形为0%,10%,25%,40%,60%,然后在450°C下进行一系列时效处理。测定了时效后Fe-Cu合金的位错密度,维氏硬度和组织演变。结果表明,未变形试样的维氏硬度在450〜(°C)时效100 h后达到峰值硬度,而位错密度较大的试样从维氏硬度测试结果可以更快地达到峰值硬度。透射电子显微镜(TEM)的结果表明,预形变促进富铜团簇的沉淀过程并抑制富铜团簇的生长。

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