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Bubbles formation in helium ion irradiated Cu/W multilayer nanocomposites: effects on structure and mechanical properties

机译:氦离子辐照Cu / W多层纳米复合材料中的气泡形成:对结构和机械性能的影响

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摘要

This study investigates the effects of He bubbles on structural and mechanical properties of sputter-deposited Cu/W multilayers. A multilayer with a periodicity of 10 nm was deposited and subjected to helium ion irradiation with two different fluences. He bubbles formed mostly in Cu layers and their distribution was affected by He concentration and radiation damage. According to SRIM calculations, in low He concentration regions bubbles formed mostly along interfaces, while more homogeneously distributed bubbles were found in Cu layers and along columnar grain boundaries in higher He concentration regions. We suggest that the capability of interfaces to annihilate point defects is weakened by the He bubbles shielding effect. Nanoindentation tests revealed a hardness decrease amounting to ?0.5 and ?1 GPa for low and high fluences, respectively. The observed softening effect is attributed to He storage-induced changes in residual stresses and columnar grain boundary/interfacial sliding facilitated by He bubbles.
机译:这项研究调查了He气泡对溅射沉积的Cu / W多层膜的结构和力学性能的影响。沉积具有10 nm周期性的多层,并以两种不同的通量对其进行氦离子辐照。 He气泡主要在Cu层中形成,并且它们的分布受到He浓度和辐射损伤的影响。根据SRIM计算,在低He浓度区域中,气泡主要沿界面形成,而在Cu层和高He浓度区域中,沿柱状晶界发现气泡分布更均匀。我们建议,界面的an灭点缺陷的能力会因He气泡屏蔽作用而减弱。纳米压痕测试显示,对于低和高通量,硬度降低分别为〜0.5和〜1 GPa。观察到的软化作用归因于氦气存储引起的残余应力的变化以及氦气泡促进的柱状晶界/界面滑动。

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