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Layered and Functionally Graded Nanocomposite Thin Films with Unique Mechanical Properties

机译:具有独特机械性能的层状和功能梯度纳米复合薄膜

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摘要

A novel electrochemical deposition method for manufacturing functionally graded, oxide-dispersion strengthened metal matrix nanocomposites will be presented. Using a rotating disk electrode and depositing from an electrolyte containing a suspension of oxide nanoparticles, metal-ceramic nanocomposites have been produced. This method leads to precise control over the volume fraction of the oxide in the nanocomposite and allows for the manufacturing of compositionally uniform, periodically layered, or functionally graded structures. In the higher order structures the composition variation can be finely tuned with nanometer resolution, and the characteristic microstructural length scale (e.g., individual layer thickness) can range from microns up to millimeters. Using indentation methods, the nanocomposites are shown to display enhanced and tunable mechanical properties.
机译:将提出一种新型的电化学沉积方法,用于制造功能梯度的,氧化物弥散强化的金属基体纳米复合材料。使用旋转盘电极并从包含氧化物纳米颗粒悬浮液的电解质中沉积,已经生产出金属陶瓷纳米复合材料。该方法导致对纳米复合材料中氧化物的体积分数的精确控制,并允许制造组成均匀,周期性分层或功能渐变的结构。在更高阶的结构中,可以以纳米分辨率精细地调整组成变化,并且特征性的微结构长度尺度(例如,各个层的厚度)可以在微米至毫米的范围内。使用压痕方法,纳米复合材料显示出增强的和可调的机械性能。

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