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Thermal Stability of Self-Supported Metallic Multilayered Thin Films

机译:自支撑金属多层薄膜的热稳定性

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摘要

The morphological stability and strength retention following elevated temperature exposure or thermal cycling will be crucial in exploiting the extremely high strengths of nanolayered materials in advanced engineering applications. The effects of elevated temperature (≤ 800℃) vacuum annealing on the morphological stability and mechanical properties of sputter deposited Cu-Nb multilayers with 75 nm bilayer period are reported here. Even after 800℃/ 1 hour anneal, the continuity of the layered structure is maintained and the bilayer periods are unchanged. The in-plane grain sizes in both Cu and Nb coarsened but were anchored at grooved boundaries preventing further growth. For a constant bilayer period, the effect of increasing the in-plane grain size on the multilayer hardness is found to be insignificant. After annealing, the layers are observed to be offset by shear along a vertical plane at the triple point junctions that have equilibrium groove angles aligned in a zig-zag pattern. A new mechanism is proposed for the evolution of this "anchored" structure that is resistant to further morphological instability.
机译:高温暴露或热循环后的形态稳定性和强度保持对于在高级工程应用中利用纳米层材料的极高强度至关重要。报道了高温(≤800℃)真空退火对溅射沉积的具有75 nm双层周期的Cu-Nb多层膜的形态稳定性和力学性能的影响。即使在800℃/ 1小时退火后,仍可以保持层状结构的连续性,并且双层周期不变。 Cu和Nb的面内晶粒尺寸均已粗化,但固定在沟槽边界处,阻止了进一步的生长。对于恒定的双层周期,发现增加面内晶粒尺寸对多层硬度的影响是微不足道的。退火后,观察到这些层在三点连接处被沿垂直平面的剪切力偏移,该三点连接具有以锯齿形排列的平衡槽角。为这种“锚定”结构的演化提出了一种新的机制,该机制可抵抗进一步的形态不稳定。

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