Superelasticity in bcc nanowires by a reversible twinning mechanism

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Superelasticity in bcc Nanowires by a Reversible Twinning Mechanism

Suzhi Li,1 Xiangdong Ding,1,2,*,† Junkai Deng,1,3 Turab Lookman,2,*,‡ Ju Li,1,4 Xiaobing Ren,1,3 Jun Sun,1 and Avadh Saxena2 1State Key Laboratory for Mechanical Behavior of Materials, Xi’an Jiaotong University, Xi’an 710049, China 2Theoretical Division, Los Alamos National Laboratory, Los Alamos, New Mexico 87545, USA 3Ferroic Physics Group, National Institute for Materials Science, Tsukuba, 3...

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Reversible twinning in pure aluminum.

Twinning in metals is normally a permanent plastic deformation mechanism. Here we report reversible twinning in high stacking fault energy (SFE) aluminum. Twinning and spontaneous detwinning at the crack tip have been captured in situ during tensile straining under a transmission electron microscope. Both the in situ observation and the molecular dynamics simulations reveal a two-stage detwinni...

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Energy landscape of deformation twinning in bcc and fcc metals

Shigenobu Ogata,1,3,4,5 Ju Li,6 and Sidney Yip1,2,* 1Department of Nuclear Science and Engineering, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, USA 2Department of Materials Science and Engineering, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, USA 3Handai Frontier Research Center, Osaka University, Osaka 565-0871, Japan 4Center for Atomic and ...

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We present atomistic simulations of the tensile and compressive loading of single crystal facecentered cubic (FCC) nanowires with h1 0 0i and h1 1 0i orientations to study the propensity of the nanowires to deform via twinning or slip. By studying the deformation characteristics of three FCC materials with disparate stacking fault energies (gold, copper and nickel), we find that the deformation...

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ژورنال

عنوان ژورنال: Physical Review B

سال: 2010

ISSN: 1098-0121,1550-235X

DOI: 10.1103/physrevb.82.205435