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首页> 外文期刊>International Journal of Damage Mechanics >Damage Mechanisms in Nanolayered Metallic Composites
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Damage Mechanisms in Nanolayered Metallic Composites

机译:纳米金属复合材料的损伤机理

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摘要

The strengths of metallic multilayers, composed of alternating layers of soft metals such as Cu and Nb, approach the theoretical limit of material strength when the bilayer periods are on the order of a few nanometers. We have investigated the damage mechanisms in these ultra-high strength nanolayered composite materials subjected to monotonic deformation. Large strain plastic deformation such as room temperature rolling does not lead to any dislocation cell structure formation within the layers indicating that the deformation and dislocation storage mechanisms in nanostructured materials are completely different from the bulk. In bulk metals, dislocation pile-ups lead to heterogeneous slip, but in nano-materials, deformation by single dislocations on closely spaced glide planes results in more homogeneously distributed slip. The implications of the high tensile strengths and homogeneous slip on the fatigue properties of nanolayered materials are also discussed.
机译:当双层周期为几纳米量级时,由诸如铜和铌的软金属交替层组成的金属多层的强度接近材料强度的理论极限。我们已经研究了这些单调变形的超高强度纳米复合材料的损伤机理。诸如室温滚动的大应变塑性变形不会导致在层内形成任何位错单元结构,这表明纳米结构材料中的变形和位错存储机制与本体完全不同。在散装金属中,位错堆积会导致异质滑移,但在纳米材料中,由于在紧密间隔的滑行面上单位错而产生的变形会导致滑移分布更均匀。还讨论了高拉伸强度和均匀滑移对纳米层材料疲劳性能的影响。

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