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Compression of micron-sized pillars of anodic aluminium oxide nano-honeycomb
Authors
Y Lin
KY Ng
AHW Ngan
Publication date
1 January 2011
Publisher
'Elsevier BV'
Doi
Cite
Abstract
Micro-pillars of anodic aluminium oxide with nano-sized honeycomb channels along the pillar axis exhibit compressive stressstrain response with large excursions corresponding to discrete, inhomogeneous deformation events. Each excursion is found to associate with the severe distortion of a material layer at the pillar's head, whereas the remaining of the pillar remains intact. The stresses at which these excursions occur do not exhibit any significant dependence on the pillar size. A simple model is proposed to describe the response of pillars under compression, which energetically, as well as kinetically, explains as to why the localized deformation always takes place at the pillar head. Predictions on the occurrence of instability events from this model also quantitatively agree with the experimental observations. © 2010 2010 Elsevier Ltd. All rights reserved.postprin
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oai:hub.hku.hk:10722/134412
Last time updated on 01/06/2016
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info:doi/10.1016%2Fj.jmps.2010...
Last time updated on 23/12/2020