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Special nanostructures in Al-Mg alloys subjected to high pressure torsion 被引量:2
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作者 刘满平 Hans J.ROVEN +4 位作者 刘新涛 Maxim MURASHKIN Ruslan Z.VALIEV Tamas UNGáR Levente BALOGH 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2010年第11期2051-2056,共6页
Deformation twins and stacking faults were observed in nanostructure A1-Mg alloys subjected to high pressure torsion. These observations are surprising because deformation twinnings have never been observed in their c... Deformation twins and stacking faults were observed in nanostructure A1-Mg alloys subjected to high pressure torsion. These observations are surprising because deformation twinnings have never been observed in their coarse-grained counterparts under normal conditions. Experimental evidences are introduced on non-equilibrium grain boundaries, deformation twinnings and partial dislocation emissions from grain boundaries. Some of these features can be explained by the results reported from molecular-dynamics simulations of pure FCC metals. Special emphasis is laid on the recent observations of high density hexagonal and rhombic shaped nanostructures with an average size of 3 nm in the A1-Mg alloys processed by high pressure torsion. A possible formation process of these nanostructures is proposed based on molecular-dynamics simulations. 展开更多
关键词 aluminum alloys severe plastic deformation high pressure torsion grain boundary structure deformation twinning NANOSTRUCTURES
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碳纳米圆环的分子动力学研究
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作者 王晓波 《佳木斯教育学院学报》 2013年第4期3-3,9,共2页
运用分子动力学的方法,选用PCFF力场研究了实验上发现的碳纳米圆环的动力学性质,在计算结果中发现了一种特殊的纳米扭结结构,对于圆环线长为81.5nm时这种纳米扭结会均匀的分布在环状结构的内表面上。
关键词 纳米圆环 纳米扭结 PCFF力场
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Straight and kinked InAs nanowire growth observed in situ by transmission electron microscopy 被引量:1
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作者 Filip Lenrick Martin Ek +2 位作者 Knut Deppert Lars Samuelson L. Reine Wallenberg 《Nano Research》 SCIE EI CAS CSCD 2014年第8期1188-1194,共7页
Live observations of growing nanowires using in situ transmission electron microscopy (TEM) is becoming an increasingly important tool for understanding the dynamic processes occurring during nanowire growth. Here w... Live observations of growing nanowires using in situ transmission electron microscopy (TEM) is becoming an increasingly important tool for understanding the dynamic processes occurring during nanowire growth. Here we present observations of growing InAs nanowires, which constitute the first reported in situ growth of a In-V compound in a transmission electron microscope. Real time observations of events taking place over longer growth lengths were possible due to the high growth rates of up to I nm/s that were achieved. Straight growth (mainly in 〈111〉B directions) was observed at uniform temperature and partial pressure while intentional fluctuations in these conditions caused the nanowires to form kinks and change growth direction. The mechanisms behind the kinking are discussed in detail. In situ observations of nanowire kinking has previously only been reported for nonpolar diamond structure type materials (such as Si), but here we present results for a polar zinc blende structure (InAs). In this study a closed cell with electron and X-ray transparent a-SiN windows was used in a conventional high resolution transmission electron microscope, enabling high resolution imaging and compositional analysis in between the growth periods. 展开更多
关键词 environmental TEM NANOWIRES in situ INAS group III-V KINKING
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Micromagnetic modeling of magnetization dynamics driven by spin-transfer torque in magnetic nanostructures
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作者 LIU YaoWen ZHANG ZongZhi 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2013年第1期184-195,共12页
Magnetization orientation of a nanoscale ferromagnet can be manipulated by an electric current via spin-transfer torque(STT) effect,which holds great promise in the applications of non-volatile magnetic random access ... Magnetization orientation of a nanoscale ferromagnet can be manipulated by an electric current via spin-transfer torque(STT) effect,which holds great promise in the applications of non-volatile magnetic random access memory(MRAM) and spintorque oscillators.We review the fundamental mechanism and experimental progress of the STT effect.Then,different formula of STT torque has been classified,which can be added to the conventional Landau-Lifshitz-Gilbert equation.After that,we show some simulation results that mainly concern the STT-driven vortex dynamics,magnetization oscillations excited by a perpendicular polarizer,and the detail dynamics by in-plane and out-of-plane dual spin polarizers. 展开更多
关键词 spin-transfer torque (STT) micromagnetic simulations magnetization dynamics
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