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Self-organization of helium precipitates into elongated channels within metal nanolayers

机译:氦的自组织沉淀到金属纳米组内的细长通道中

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Material degradation due to precipitation of implanted helium (He) is a key concern in nuclear energy. Decades of research have mapped out the fate of He precipitates in metals, from nucleation and growth of equiaxed bubbles and voids to formation and bursting of surface blisters. By contrast, we show that He precipitates confined within nanoscale metal layers depart from their classical growth trajectories: They self-organize into elongated channels. These channels form via templated nucleation of He precipitates along layer surfaces followed by their growth and spontaneous coalescence into stable precipitate lines. The total line length and connectivity increases with the amount of implanted He, indicating that these channels ultimately interconnect into percolating “vascular” networks. Vascularized metal composites promise a transformative solution to He-induced damage by enabling in operando outgassing of He and other impurities while maintaining material integrity.
机译:由于植入氦气(HE)沉淀导致的物质降解是核能的关键问题。几十年的研究已经绘制了他在金属中沉淀的命运,从成核和平衡气泡和空隙的成长,形成和破裂表面泡罩。相比之下,我们表明他限制在纳米级金属层内的沉淀出来,偏离了古典的生长轨迹:它们自我组织成伸长的渠道。这些通道通过模板化成核形式沿着层表面沉淀,然后将其生长和自发的聚结成稳定的沉淀物。总线长度和连接随着植入量的增加而增加,表明这些通道最终互连到渗透的“血管”网络中。血管化金属复合材料通过在保持物质完整性的同时使Operando除去He和其他杂质,使他诱导的伤害成为他诱导的伤害。

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