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Published in: Tribology Letters 2/2006

01-11-2006

Ni nanodot-patterned surfaces for adhesion and friction reduction

Authors: Min Zou, Hengyu Wang, P.R. Larson, K.L. Hobbs, M.B. Johnson, O.K. Awitor

Published in: Tribology Letters | Issue 2/2006

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Abstract

Surface nano-patterning with Ni nanodot arrays was investigated for adhesion and friction reduction of contacting interfaces. Self-assembled anodized aluminum oxide (AAO) templates in conjunction with thermal evaporation was used to fabricate nano-patterned surfaces with ordered Ni nanodot arrays on Si substrates. Surface morphology of the Ni nanodot-patterned surfaces (NDPSs) was characterized by scanning electron microscopy (SEM). Adhesion and friction studies on a Ni NDPS and a baseline smooth Si(100) surface were conducted using a TriboIndenter employing a diamond tip with 100 μm nominal radius of curvature. The results show that the ordered Ni nanodot-patterning reduced the adhesion forces and coefficients of friction up to 92 and 83%, respectively, compared to those of the smooth silicon surface. Surprisingly, the nanoscale multi-asperity contact between the diamond tip and inhomogeneous Ni NDPSs under low loads follows a continuum contact mechanics model.

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Metadata
Title
Ni nanodot-patterned surfaces for adhesion and friction reduction
Authors
Min Zou
Hengyu Wang
P.R. Larson
K.L. Hobbs
M.B. Johnson
O.K. Awitor
Publication date
01-11-2006
Published in
Tribology Letters / Issue 2/2006
Print ISSN: 1023-8883
Electronic ISSN: 1573-2711
DOI
https://doi.org/10.1007/s11249-006-9157-x

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