Strength at the Interface of CNT Films Made by Surface Decomposition of SiC
Adherence of carbon nanotube film made by surface decomposition of SiC was studied. For this purpose we carried out scratch tests in nano- and microscale. By microscratch test, it was found that adherence at the interface was higher for CNT films with shorter CNTs and CNTs were not broken at the mid...
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Japanese Society of Tribologists
2008
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oai:doaj.org-article:5a7d5b5ba9d74a5595168e4786c2e88c2021-11-05T09:28:35ZStrength at the Interface of CNT Films Made by Surface Decomposition of SiC1881-219810.2474/trol.3.352https://doaj.org/article/5a7d5b5ba9d74a5595168e4786c2e88c2008-12-01T00:00:00Zhttps://www.jstage.jst.go.jp/article/trol/3/7/3_7_352/_pdf/-char/enhttps://doaj.org/toc/1881-2198Adherence of carbon nanotube film made by surface decomposition of SiC was studied. For this purpose we carried out scratch tests in nano- and microscale. By microscratch test, it was found that adherence at the interface was higher for CNT films with shorter CNTs and CNTs were not broken at the middle but removed from the interface. To clarify the dominant force (shear force or moment of force) which caused different adherence, we also carried out nanoscratch test by using AFM. In nanoscratch, AFM tip made of diamond coated silicon applied shear force to CNT films from lateral direction. And there was no significant change of adherence by lateral force (shear force at the interface). We conclude that bending-induced moment of force is dominant on the interface strength of CNT films.Yosuke TsukiyamaNoritsugu UmeharaMichiko KusunokiJapanese Society of Tribologistsarticlecarbon nanotubeinterfacescratchafmPhysicsQC1-999Engineering (General). Civil engineering (General)TA1-2040Mechanical engineering and machineryTJ1-1570ChemistryQD1-999ENTribology Online, Vol 3, Iss 7, Pp 352-355 (2008) |
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carbon nanotube interface scratch afm Physics QC1-999 Engineering (General). Civil engineering (General) TA1-2040 Mechanical engineering and machinery TJ1-1570 Chemistry QD1-999 |
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carbon nanotube interface scratch afm Physics QC1-999 Engineering (General). Civil engineering (General) TA1-2040 Mechanical engineering and machinery TJ1-1570 Chemistry QD1-999 Yosuke Tsukiyama Noritsugu Umehara Michiko Kusunoki Strength at the Interface of CNT Films Made by Surface Decomposition of SiC |
description |
Adherence of carbon nanotube film made by surface decomposition of SiC was studied. For this purpose we carried out scratch tests in nano- and microscale. By microscratch test, it was found that adherence at the interface was higher for CNT films with shorter CNTs and CNTs were not broken at the middle but removed from the interface. To clarify the dominant force (shear force or moment of force) which caused different adherence, we also carried out nanoscratch test by using AFM. In nanoscratch, AFM tip made of diamond coated silicon applied shear force to CNT films from lateral direction. And there was no significant change of adherence by lateral force (shear force at the interface). We conclude that bending-induced moment of force is dominant on the interface strength of CNT films. |
format |
article |
author |
Yosuke Tsukiyama Noritsugu Umehara Michiko Kusunoki |
author_facet |
Yosuke Tsukiyama Noritsugu Umehara Michiko Kusunoki |
author_sort |
Yosuke Tsukiyama |
title |
Strength at the Interface of CNT Films Made by Surface Decomposition of SiC |
title_short |
Strength at the Interface of CNT Films Made by Surface Decomposition of SiC |
title_full |
Strength at the Interface of CNT Films Made by Surface Decomposition of SiC |
title_fullStr |
Strength at the Interface of CNT Films Made by Surface Decomposition of SiC |
title_full_unstemmed |
Strength at the Interface of CNT Films Made by Surface Decomposition of SiC |
title_sort |
strength at the interface of cnt films made by surface decomposition of sic |
publisher |
Japanese Society of Tribologists |
publishDate |
2008 |
url |
https://doaj.org/article/5a7d5b5ba9d74a5595168e4786c2e88c |
work_keys_str_mv |
AT yosuketsukiyama strengthattheinterfaceofcntfilmsmadebysurfacedecompositionofsic AT noritsuguumehara strengthattheinterfaceofcntfilmsmadebysurfacedecompositionofsic AT michikokusunoki strengthattheinterfaceofcntfilmsmadebysurfacedecompositionofsic |
_version_ |
1718444350283710464 |