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Nanoscale assembly of high-temperature oxidation-resistant nanocomposites

机译:纳米组装的高温抗氧化纳米复合材料

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摘要

Structural considerations for designing a high-temperature oxidation-resistant metallic material are proposed, based on the dependence of the material structure on a promotion of the development of a protective scale of chromia or alumina. The material should have numerous sites on its surface for nucleating the protective oxides at the onset of oxidation and abundant grain boundaries in deeper areas for simultaneously supplying sufficient flux of the protective-oxide-forming elements toward the surface for a rapid linkage of the oxide nuclei through their lateral growth. Based on these considerations, we fabricated, using an electrochemical deposition method, novel nanocomposites which have a nanocrystalhne metal matrix containing Cr and/or Al nanoparticles dispersed at the nano length scale. The validity of the design considerations is verified by comparing the high-temperature oxidation of a typical Ni-Cr nanocomposite system with two types of conventional Ni-Cr materials having similar or higher Cr content but different structure: one is a composite having a nanocrystalline Ni matrix containing Cr microparticles dispersed at the microscale and the other are micron-grained Ni-Cr alloys with the Cr distribution at the atomic length scale.
机译:结构设计方面的考虑高温抗氧化金属材料,提出了基于的依赖材料结构的推广保护克劳莉娅规模或发展氧化铝。在其表面成核保护氧化物的氧化和丰富晶界在更深的领域同时提供足够的流量protective-oxide-forming元素向表面氧化物核的快速链接通过他们的横向发展。考虑,我们捏造的,使用一个电化学沉积方法,小说nanocrystalhne金属的纳米复合材料矩阵含有铬和/或纳米粒子分散在纳米长度尺度。验证设计的注意事项比较的高温氧化典型的镍铬纳米复合材料系统两种类型传统的镍铬材料相似或铬含量较高,但不同的结构:一是复合纳米晶体镍矩阵含铬微粒子分散的微尺度,另一个是micron-grained镍铬与铬合金原子分布长度范围。

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