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On the scaling behavior of hardness with ligament diameter of nanoporous-Au: Constrained motion of dislocations along the ligaments

机译:纳米多孔金的韧度随韧带直径的缩放比例行为:沿韧带错位的约束运动

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摘要

The scaling behavior of hardness with ligament diameter and vacancy defect concentration in nanoporous Au (np-Au) has been investigated using a combination of Vickers Hardness, Scanning electron microscopy, and positron lifetime measurements. It is shown that for np-Au, the hardness scales with the ligament diameter with an exponent of −0.3, that is, at variance with the conventional Hall-Petch exponent of −0.5 for bulk systems, as seen in the controlled experiments on cold worked Au with varying grain size. The hardness of np-Au correlates with the vacancy concentration CV within the ligaments, as estimated from positron lifetime experiments, and scales as CV1/2, pointing to the interaction of dislocations with vacancies. The distinctive Hall-Petch exponent of −0.3 seen for np-Au, with ligament diameters in the range of 5–150 nm, is rationalized by invoking the constrained motion of dislocations along the ligaments.
机译:结合维氏硬度,扫描电子显微镜和正电子寿命测量,研究了纳米孔金(np-Au)中硬度随韧带直径和空位缺陷浓度的缩放行为。结果表明,对于np-Au,硬度随韧带直径的变化而变化,指数为-0.3,即与常规的Hall-Petch指数为-0.5的块状系统不同,如冷实验中所见加工的金具有不同的晶粒尺寸。根据正电子寿命实验估算,np-Au的硬度与韧带中的空位浓度CV相关,标度为CV 1/2 ,表明位错与空位的相互作用。通过调用沿韧带的位错的约束运动,可以使np-Au的-0.3独特的Hall-Petch指数(韧带直径在5–150 nm范围内)合理化。

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