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Revealing ultralarge and localized elastic lattice strains in Nb nanowires embedded in NiTi matrix

机译:揭示嵌入NiTi基体中的Nb纳米线中的超大和局部弹性晶格应变

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摘要

Freestanding nanowires have been found to exhibit ultra-large elastic strains (4 to 7%) and ultra-high strengths, but exploiting their intrinsic superior mechanical properties in bulk forms has proven to be difficult. A recent study has demonstrated that ultra-large elastic strains of ~6% can be achieved in Nb nanowires embedded in a NiTi matrix, on the principle of lattice strain matching. To verify this hypothesis, this study investigated the elastic deformation behavior of a Nb nanowire embedded in NiTi matrix by means of in situ transmission electron microscopic measurement during tensile deformation. The experimental work revealed that ultra-large local elastic lattice strains of up to 8% are induced in the Nb nanowire in regions adjacent to stress-induced martensite domains in the NiTi matrix, whilst other parts of the nanowires exhibit much reduced lattice strains when adjacent to the untransformed austenite in the NiTi matrix. These observations provide a direct evidence of the proposed mechanism of lattice strain matching, thus a novel approach to designing nanocomposites of superior mechanical properties.
机译:已经发现独立的纳米线表现出超大的弹性应变(4%至7%)和超高的强度,但是事实证明,以散装形式利用其固有的优越机械性能是困难的。最近的研究表明,根据晶格应变匹配原理,嵌入NiTi基体中的Nb纳米线可以实现6%左右的超大弹性应变。为了证实这一假设,本研究通过拉伸变形过程中的原位透射电子显微镜测量研究了嵌入NiTi基体中的Nb纳米线的弹性变形行为。实验工作表明,在NiTi基体中与应力诱导的马氏体畴相邻的区域,Nb纳米线中诱发了高达8%的超大局部弹性晶格应变,而当相邻时,纳米线的其他部分则表现出大大降低的晶格应变NiTi基体中未转变的奥氏体。这些观察结果提供了所提出的晶格应变匹配机制的直接证据,因此是一种设计具有优异机械性能的纳米复合材料的新颖方法。

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