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Nanobubble Fragmentation and Bubble-Free-Channel Shear Localization in Helium-Irradiated Submicron-Sized Copper

机译:氦辐照亚微米级铜的纳米气泡碎裂和无气泡通道剪切定位

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摘要

Helium bubbles are one of the typical radiation microstructures in metals and alloys, significantly influencing their deformation behavior. However, the dynamic evolution of helium bubbles under straining is less explored so far. Here, by using in situ micromechanical testing inside a transmission electron microscope, we discover that the helium bubble not only can coalesce with adjacent bubbles, but also can split into several nanoscale bubbles under tension. Alignment of the splittings along a slip line can create a bubble-free channel, which appears softer, promotes shear localization, and accelerates the failure in the shearing-off mode. Detailed analyses unveil that the unexpected bubble fragmentation is mediated by the combination of dislocation cutting and internal surface diffusion, which is an alternative microdamage mechanism of helium irradiated copper besides the bubble coalescence.
机译:氦气泡是金属和合金中典型的辐射微结构之一,极大地影响了它们的变形行为。然而,到目前为止,在应变作用下氦气泡的动态演化还很少被探索。在这里,通过在透射电子显微镜内进行原位微机械测试,我们发现氦气气泡不仅可以与相邻气泡聚结,而且在张力下还可以分裂成几个纳米级气泡。裂缝沿着滑移线的排列可以创建无气泡通道,该通道看起来更柔软,促进了剪切局部化,并加速了剪切模式下的破坏。详细的分析表明,意外的气泡破裂是由位错切割和内表面扩散的结合所介导的,这是除了气泡聚结以外氦辐照铜的另一种微损伤机理。

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